Philips _dptv355_aa Datasheet

Page 1
Colour Television Chassis
DPTV355
55" model
CL 26532103_100.eps
050902
Contents Page Contents Page
1 Technical Specifications, Connection Facilities,
and Chassis Overview 2
2 Safety and Maintenance Instructions, Warnings,
and Notes 5 3 Directions for Use 7 4 Mechanical Instructions 21 5 Service Modes, Error Codes, and Fault Finding 25 6 Wiring Diagram, I2C, and Supply Lines Overview
Wiring Diagram 33
I2C Overview 34
Supply Lines Overview 35 7 Circuit Diagrams and PWB Layouts Diagram PWB
Auto Convergence Panel (Diagram ACS1) 36 38-39
Auto Convergence Panel (Diagram ACS2) 37 38-39
SSB: SIM Connector (Diagram B1) 40 49-54
SSB: IF, I/O Videoprocessing (Diagram B2) 41 49-54
SSB: PICNIC (Diagram B3A) 42 49-54
SSB: Falconic (Diagram B3B) 43 49-54
SSB: Eagle (Diagram B3C) 44 49-54
SSB: HOP (Diagram B4) 45 49-54
SSB: OTC (Diagram B5) 46 49-54
SSB: Audio Demodulator (Diagram B6) 47 49-54
SSB: Headphone Amplifier (Diagram B10) 48 49-54
3D Comb Filter (Optional) (Diagram CB1) 55 56
Center Channel Switch (Diagram CH1) 57 57
CRT Panel: Blue Tube (Diagram D(B)1) 58 61
CRT Panel: Green Tube (Diagram D(G)1)59 61
CRT Panel: Red Tube (Diagram D(R)1)60 61
PIP / DW (Diagram F1) 62 66-67
PIP / DW: Tuner (Diagram F2) 63 66-67
PIP / DW: Diversity Table 63 66-67
PIP / DW: I/O Processing (Diagram F3) 64 66-67
PIP / DW: IF Video Sync (Diagram F4) 65 66-67
HOP Panel (Diagram H1) 68 70-71
©
Copyright 2003 Philips Consumer Electronics B.V. Eindhoven, The Netherlands. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, or otherwise without the prior permission of Philips.
HOP Panel (Diagram H2) 69 70-71 Side Jack Panel (Diagram I/O) 72 73 Large Signal Panel (Diagram L1) 74 77-78 Large Signal Panel (Diagram L2) 75 77-78 Large Signal Panel (Diagram L3) 76 77-78 Mains Switch Panel (Diagram M1) 79 79 Keyboard/Light Sensor Panel (Diagram P1) 80 81 SSM (Diagram S1) 82 91-94 SSM (Diagram S2) 83 91-94 SSM (Diagram S3) 84 91-94 SSM (Diagram S4) 85 91-94 SSM (Diagram S5) 86 91-94 SSM (Diagram S6) 87 91-94 SSM (Diagram S7) 88 91-94 SSM (Diagram S8) 89 91-94 SSM: Diversity Tables 90 91-94
AC Input Panel (Diagram W) 95 96 8 Alignments 97 9 Circuit Descriptions 103
List of Abbreviations 129
IC Data Sheets 133 10 Spare Parts List 142 11 Revision List 156
Published by JA 0372 Service PaCE Printed in the Netherlands Subject to modification EN 3122 785 14410
Page 2
EN 2 DPTV3551.
Technical Specifications, Connections, and Chassis Overview

1. Technical Specifications, Connections, and Chassis Overview

1.1 Technical Specifications

1.1.1 Reception

Tuning System : PLL Nr. Of Presets : 100
: 181 (only /61)
Color Systems Off-air : PAL B/G, D/K, I
: SECAM B/G, D/K, K1 : NTSC M (only /61)
A/V Connections : 480p
: 576p (not for /61) : 1080i : 1152i (not for /61) : NTSC 3.58 : NTSC 4.43 : NTSC Pl.bk. : PAL B/G Pl.bk.
(not for /61)
Sound Systems Off-air : BTSC DBX (only /61)
: FM/FM (only /61) : Bi-NICAM BG/D : FM/FM (Korea, B/G,
China)
: NICAM B/G, D/K, I, L
Frequency Bands : UHF
: VHF : S-Channels : Hyperband
Aerial Input : 75 Ohm coax, IEC
type

1.1.2 Picture

Display Type : Rear Projection
: 3 CRTs
Aspect Ratio : 16:9 Picture Screen Diameter : 46” (117 cm)
: 55” (140 cm)
Visible Screen Size : 46” (117 cm)
: 55” (140 cm)
Picture Enhancements : 100 Hz Dig. Scan (*)
: 576p (50 Hz) : 1152i (50 Hz) : Progressive Scan : Interlaced Scan : Motion Comp. : Digital Combfilter : Dynamic Contrast : Pixel Plus
Color Enhancements : Digital CTI
: Digital Histogram : Digital NR : Tint Control (3 Modes)
Active Control : Auto Sharpness
: Auto DNR

1.1.4 Miscellaneous

Ambient Temperature : +5/+45 deg. C Mains Voltage : 160-276V_ac(only93)
: 90 - 276V_ac
Mains Frequency : 50/60 Hz
Power Consumptions: Normal Operation : 180 W avg. Standby : 0.7 W
Product Dimensions (WxDxH cm): 46 inch model : 113 x 60 x 134 55 inch model : 134 x 65 x 145
Product Weight: 46 inch model : 80 kg (176 lbs) 55 inch model : 85 kg (187 lbs)

1.2 Connections

_
INTELLISENCE
INPUT-AV 2 SUBWOOFEROUTPUT
VIDEO
L
S-VIDEO
AUDIO
R
MENU
VOLUME CHANNEL

Figure 1-1 Keyboard overview

1.2.1 Rear Jack Panel

ANTENNA IN 75
VIDEO
S-VIDEO
ComPair
Figure 1-2 Rear I/O overview
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
AUDIO
R
AMP SWITCH
EXT INT
Y
Pb
Pr
CL 3653207_053.eps
Rear of TV
HD INPUTS: AV3/AV4, 480p/1080i-60Hz, 576p/1152i-50Hz
AV4-RGB
AV4-480p/1080i-60Hz, 576p-50Hz
G/Y
R/Pr
B/Pb
V
L
SYNC
AUDIO
H
R
CL 36532079_054.eps
POWER
051203
AUDIO
031203
L
R
(*) 100 Hz Digital Scan or Progressive Scan can be switched with the “On Screen Display" menu.

1.1.3 Sound

Loudspeakers : 2 x 2” Tweeters
: 2 x 5” Woofers
AutoSound™ Control : Theatre, Voice,
Music, Personal Stereo : Digital NICAM Sound Output : 2 x 15 W_rms
Page 3
Technical Specifications, Connections, and Chassis Overview
EN 3DPTV355 1.
AV1 (Hosiden: SVHS - In)
1 - Y Ground H 2 - C Ground H 3 - Y 1.0 Vpp / 75 ohm j 4 - C 0.3 Vpp / 75 ohm j
AV1 (Cinch)
Ye- Video (CVBS) 1.0 V_pp / 75 ohm jq W h - Audio L 0.5 V_rms / 10 kohm jq R d - Audio R 0.5 V_rms / 10 kohm jq G n - Y 1.0 V_pp / 75 ohm jq Bu- Pb 0.7 V_pp / 75 ohm jq R d - Pr 0.7 V_pp / 75 ohm jq
Monitor Out (Cinch)
Ye- Video (CVBS) 1.0 V_pp / 75 ohm kq W h - Audio L 0.5 V_rms / 10 kohm kq R d - Audio R 0.5 V_rms / 10 kohm kq
AV2 (Cinch)
Ye- Video (CVBS) 1.0 V_pp / 75 ohm jq W h - Audio L 0.5 V_rms / 10 kohm jq R d - Audio R 0.5 V_rms / 10 kohm jq
2 - Green 0.7 V_pp / 75 ohm j 3 - Blue 0.7 V_pp / 75 ohm j 4 - Ground H 5- 6 - Ground H 7 - Ground H 8 - Ground H 9- 10 - Ground H 11 - Ground H 12 - 13 - H-sync 0 - 5 V j 14 - V-sync 0 - 5 V j 15 -

1.2.2 Side Jack Panel

Side Jack Panel
AV2 (Hosiden: SVHS - In)
1 - Y Ground H 2 - C Ground H 3 - Y 1.0 Vpp / 75 ohm j 4 - C 0.3 Vpp / 75 ohm j
SubWoofer Output (Cinch)
Bk-Variable 0 to 2 V_rms kq
AV3 - (Cinch)
G n - G/Y 1.0 V_pp jq R d - R/Pr 0.7 V_pp jq Bu- B/Pb 0.7 V_pp jq Bk-V-sync 3.0 V_pp / 1 kohm jq G y - H-sync 3.0 V_pp / 1 kohm jq W h - Audio L 0.5 V_rms / 10 kohm jq R d - Audio R 0.5 V_rms / 10 kohm jq
AV4 (Cinch, In)
W h - Audio L 0.5 V_rms / 10 kohm jq R d - Audio R 0.5 V_rms / 10 kohm jq
CL 36532079_068.eps
051203
Figure 1-4 Side I/O overview
Side I/O (Cinch)
Ye- Video (CVBS) 1.0 V_pp / 75 ohm jq W h - Audio L 0.5 V_rms / 10 kohm jq R d - Audio R 0.5 V_rms / 10 kohm jq
Side I/O (3.5 mm jack)
Bk-Headphone 10 mW / 8 - 620 ohm t
Side I/O (Hosiden: SVHS - In)
1 - Y Ground H 2 - C Ground H 3 - Y 1.0 Vpp / 75 ohm j 4 - C 0.3 Vpp / 75 ohm j
AV4 (Sub-D 15p, In)
1
6
11
5
10
15
CL 16532023_043.eps
210901
Figure 1-3 VGA Connector
1 - Red 0.7 V_pp / 75 ohm j
Page 4
EN 4 DPTV3551.

1.3 Chassis Overview

Technical Specifications, Connections, and Chassis Overview
CRT
PANEL
DW/PIP
SSB
ACS
SSM
LSP
HOP

Figure 1-5 PWB location

FOCUS
BLOCK
(FG2)
POWER SUPPLY
(AC INPUT)
CL 26532103_001.eps
161203
Page 5
Safety and Maintenance Instructions, Warnings, and Notes

2. Safety and Maintenance Instructions, Warnings, and Notes

EN 5DPTV355 2.

2.1 Safety Instructions

Safety regulations require that during a repair:
• Due to the chassis concept, a very large part of the circuitry (incl. deflection) is 'hot'. Therefore, connect the set to the mains via an isolation transformer.
• Replace safety components, indicated by the symbol h, only by components identical to the original ones. Any other component substitution (other than original type) may increase risk of fire or electrical shock hazard.
• Wear safety goggles when you replace the CRT.
Safety regulations require that after a repair, you must return the set in its original condition. Pay, in particular, attention to the following points:
• General repair instruction: as a strict precaution, we advise you to re-solder the solder connections through which the horizontal deflection current is flowing. In particular this is valid for the:
1. Pins of the line output transformer (LOT).
2. Fly-back capacitor(s).
3. S-correction capacitor(s).
4. Line output transistor.
5. Pins of the connector with wires to the deflection coil.
6. Other components through which the deflection current
flows.
Note: This re-soldering is advised to prevent bad connections due to metal fatigue in solder connections, and is therefore only necessary for television sets more than two years old.
• Route the wire trees and EHT cable correctly and secure them with the mounted cable clamps.
• Check the insulation of the mains cord for external damage.
• Check the strain relief of the mains cord for proper function, to prevent the cord from touching the CRT, hot components, or heat sinks.
• Check the electrical DC resistance between the mains plug and the secondary side (only for sets that have an isolated power supply). Do this as follows:
1. Unplug the mains cord and connect a wire between the
two pins of the mains plug.
2. Turn on the main power switch (keep the mains cord
unplugged!).
3. Measure the resistance value between the pins of the
mains plug and the metal shielding of the tuner or the aerial connection of the set. The reading should be between 4.5 MΩ and 12 MΩ.
4. Switch the TV 'off' and remove the wire between the
two pins of the mains plug.
• Check the cabinet for defects, to prevent the possibility of the customer touching any internal parts.

2.3 Warnings

• In order to prevent damage to ICs and transistors, avoid all high voltage flashovers. In order to prevent damage to the picture tube, use the method shown in Fig. 2-1, to discharge the picture tube. Use a high voltage probe and a multi-meter (position V reading is 0 V (after approx. 30 s).
V

Figure 2-1 Discharge picture tube

• All ICs and many other semiconductors are susceptible to electrostatic discharges (ESD, w). Careless handling during repair can reduce life drastically. Make sure that, during repair, you are connected with the same potential as the mass of the set by a wristband with resistance. Keep components and tools also at this potential. Available ESD protection equipment: – Complete kit ESD3 (small tablemat, wristband,
connection box, extension cable and ground cable) 4822 310 10671.
– Wristband tester 4822 344 13999.
• Together with the deflection unit and any multi-pole unit,
flat square picture tubes form an integrated unit. The deflection and the multi-pole units are set optimally at the factory. We do not recommend adjusting this unit during repair.
• Be careful during measurements in the high voltage section and on the picture tube.
• Never replace modules or other components while the unit is 'on’.
• When you align the set, use plastic rather than metal tools. This will prevent any short circuits and the danger of a circuit becoming unstable.
). Discharge until the meter
DC
CL 26532103_096.eps
280802

2.2 Maintenance Instructions

We recommend a maintenance inspection carried out by qualified service personnel. The interval depends on the usage conditions:
• When a customer uses the set under normal circumstances, for example in a living room, the recommended interval is three to five years.
• When a customer uses the set in an environment with higher dust, grease, or moisture levels, for example in a kitchen, the recommended interval is one year.
• The maintenance inspection includes the following actions:
1. Perform the 'general repair instruction' noted above.
2. Clean the power supply and deflection circuitry on the
chassis.
3. Clean the picture tube panel and the neck of the picture
tube.

2.4 Notes

2.4.1 General

• Measure the voltages and waveforms with regard to the
chassis (= tuner) ground (H), or hot ground (I), depending on the tested area of circuitry.
• The voltages and waveforms shown in the diagrams are indicative. Measure them in the Service Default Mode (see chapter 5) with a colour bar signal and stereo sound (L: 3 kHz, R: 1 kHz unless stated otherwise) and picture carrier at 475.25 MHz (PAL) or 61.25 MHz (NTSC, channel 3).
• Where necessary, measure the waveforms and voltages with (D) and without (E) aerial signal. Measure the voltages in the power supply section both in normal operation (G) and in standby (F). These values are indicated by means of the appropriate symbols.
Page 6
EN 6 DPTV3552.
• The picture tube panel has printed spark gaps. Each spark gap is connected between an electrode of the picture tube and the Aquadag coating.
• The semiconductors indicated in the circuit diagram and in the parts lists, are interchangeable per position with the semiconductors in the unit, irrespective of the type indication on these semiconductors.
• Manufactured under license from Dolby Laboratories. ‘Dolby’, ‘Pro Logic’ and the ‘double-D symbol’, are trademarks of Dolby Laboratories.
Figure 2-2 Dolby PL Symbol

2.4.2 Schematic Notes

• All resistor values are in ohms and the value multiplier is often used to indicate the decimal point location (e.g. 2K2 indicates 2.2 kOhm).
• Resistor values with no multiplier may be indicated with either an 'E' or an 'R' (e.g. 220E or 220R indicates 220 Ohm).
• All Capacitor values are expressed in Micro-Farads (µ=
-6
x10
• Capacitor values may also use the value multiplier as the
• An 'asterisk' (*) indicates component usage varies. Refer to
• The correct component values are listed in the Electrical
), Nano-Farads (n= x10-9), or Pico-Farads (p= x10
decimal point indication (e.g. 2p2 indicates 2.2 pF).
the diversity tables for the correct values.
Replacement Parts List. Therefore, always check this list when there is any doubt.
Safety and Maintenance Instructions, Warnings, and Notes
-12
).

2.4.3 Practical Service Precautions

• It makes sense to avoid exposure to electrical shock. While some sources are expected to have a possible dangerous impact, others of quite high potential are of limited current and are sometimes held in less regard.
• Always respect voltages. While some may not be dangerous in themselves, they can cause unexpected reactions - reactions that are best avoided. Before reaching into a powered TV set, it is best to test the high voltage insulation. It is easy to do, and is a good service precaution.
• Before powering up the TV set with the back cover off (or on a test fixture), attach a clip lead to the CRT DAG ground and to a screwdriver blade that has a well insulated handle. After the TV is powered "on" and high voltage has developed, probe the anode lead with the blade, starting at the case of the High Voltage Transformer (flyback - IFT). Move the blade to within two inches of the connector of the CRT.
If there is an arc, you found it the easy way, without getting a shock! If there is an arc to the screwdriver blade,
replace the part that is causing the problem; the High Voltage Transformer or the lead (if it is removable).
Page 7

3. Directions for Use

V
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L
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Directions for Use
STANDBY
Switches the TV on or
activates standby mode.
REMOTE SENSOR
Receives infrared commands to acti-
vate controls when the remote-con-
trol handset is aimed at it and remote
keys are pushed.
MENU
Press to activate th on-screen menu.
Navigate the menu by using the
Volume and Channel buttons.
EN 7DPTV355 3.
focus feature.
®
IntelliSense
When pressed, automatically adjusts
the set’s picture convergence using
the Auto IntelliSense
TV K
SING THE
U
Do not place
the TV in
direct
sunlight or
near a heat-
ing appliance.
5
R E W O P
NU E M
E S EN IS L TEL N I
EL N N A H C
E M LU VO
fi
or
%
key selects channels in
%fi
%
key selects channels in descend-
fi
ascending order. When using the on-
screen menu, press Channel
ing order.The
CHANNEL
The
to navigate up and down.
Standby
Key
fi%
MAINS POWER KEY
Switches the mains power on or off.
VOLUME
%
or
fi
When using the on-
key adjusts the sound
%
key adjusts the sound volume
fi
softer.The
screen menu, press Volume
volume louder.
The
to navigate right and left and down.
15 cm
15 cm
TV
ANTENNA IN 75Ω
Socket on the rear of
15 cm
NSTALLING THE
I
The major benefit of this projection tele-
vision is its large viewing screen.To see
the large screen at its best, test various
locations in the room to find the optimal
spot for viewing.
Be sure to allow a minimum of 15 cm
of space around the TV.
To avoid cabinet warping, cabinet color
changes, and increased chance of set
failure, do not place the TV where tem-
peratures can become excessively
hot—for example, in direct sunlight or
near a heating appliance.
Magnetic fields, such as those of external
speakers, may cause the picture to dis-
tort if the speakers are placed too close
to the television. Move the magnetic field
1
the TV
source away from the TV until there is
no picture distortion.
Insert the aerial plug firmly into the
ANTENNA IN 75Ω socket at the rear
of the set. 3Insert the mains plug in the wall sock-
et. Refer to the back of the TV set for
the correct operation voltage. Consult
your local dealer if your main supply is
2
different. To prevent damaging the
mains (AC) cord, which could cause
hazard, do not place the TV on the
cord.4Remove the cover of the battery com-
partment on the remote control. Insert
the two batteries supplied
(Type R6-1.5V).
The batteries supplied do not contain
the heavy metals mercury and cadmi-
um. Nevertheless, in many countries
exhausted batteries may not be dis-
posed of with your household waste.
Please check on how to dispose of
exhausted batteries according to local
regulations.
See the battery caution statement on
page 2.
Note : This remote control functions
with TVs that use the RC5 signalling
standard.5Switch the TV on : Press the mains
4
Key
Mains Power
power switch on the front of the TV. If
Standby key is lighted, press the CH
+/– keys, digit keys, or the Standby
key on the remote control. Or press the
CHANNEL or Standby keys on the
front of the TV.
Page 8
EN 8 DPTV3553.
7
STANDBY
• Switches the set on and off from standby mode. (The red light indi-
cator lights up when the set is in standby mode.)
No Function
CURSOR UP
Press to navigate the menus and adjust the settings.
TELETEXT ON/OFF
Press to access Teletext information (if provided).
CURSOR RIGHT
Press to navigate the menus and adjust the settings.
CURSOR DOWN
Press to navigate the menus and adjust the settings.
MENU ON/OFF
Press to turn the on-screen menu on and off.
MUTE
Press to mute the sound. To restore the sound, press the key again.
CHANNEL +/–
Press to select channels in ascending and descending order.
SMART SURF
Press to use the Smart Surf feature. If you have Smart Surf set to 2-
channels, it will return you to the previously viewed channel. If
Smart Surf is set to 9-channel a menu appears with the 9 previously
viewed channels.
TELETEXT ENLARGE
Press to enlarge the teletext page.
PICTURE FORMAT
Press to select a picture format. A menu appears with the following
options: Automatic, Super Zoom, 4:3, Movie Expand 14:9, Movie
Expand 16:9, 16:9 Subtitle;e, and Wide Screen. Press the button to
scroll through the choices.
No Function
ACTIVE CONTROL™
Press to switch the Active Control™ feature on or off. When Active
Control™ is on, it measures and corrects all incoming signals to pro-
vide the best picture-quality settings, controlling Sharpness and Noise
Reduction continuously and automatically. The onscreen Active
Control™ display items cannot be selected. See page 22.
SMART PICTURE
Press to select from a list of preset picture options.
U
SING THE
R
EMOTE
C
ONTROL
K
EYS
6
SELECT ACCESSORY
Press to select the AV input for the device you want to use: AV1, AV2,
AV3, AV4, or side
ACCESSORY MODE
Press to control an accessory device with the remote control. You can
control a video recorder, DVD, amplifier, or other auxiliary device
(CD or SAT). A green indicator lights up. To return to TV mode press
the button again, or wait for the light to go out.
PICTURE-IN-PICTURE (PIP)
Press to access the Picture-in-Picture and Dual-window features.
FREEZE
Press to freeze the main picture when PIP is off. In teletext mode,
press to hold a page.
VCR BUTTONS
Use with a Video recorder. Press
®
to record,
Ò
and
†
to search,
‡
to stop and
π
to play.
PIXEL PLUS™
Press to see a demonstration of Pixel Plus. The Left half of the screen
has Pixel Plus and Digital Natural Motion turned on and right half of
the screen has Pixel Plus and Digital Natural Motion turned off. Press
the button again to switch the demonstration off.
CURSOR LEFT
Press to navigate the menus and adjust the settings.
OK
Press to activate or select menu choices
VOLUME +/–
Increases or decreases volume.
DIGITS 0-9
Press to select a channel. For Channels with two digits, you must
press the second digit within 2 seconds.
i+ (STATUS/EXIT)
• Press to display information about the current channel and pro-
gramme, or .when navigating the On-Screen-Display menus. infor-
mation about the selected item.
TIME DISPLAY
Press to display the time.
SURROUND MODE
Press to select the surround sound mode:
Dolby* Virtual
Dolby Virtual uses two speakers to simulate the surround effect pro-
duced by a multichannel system.
Incredible Surround™
• The Incredible Surround™ feature provides the feeling that the speakers are
farther apart to enhance the home-cinema effect.
SMART SOUND
Press to select a preset sound setting.
ACTIVE CONTROL™
Press to select the Active Control level (Off, Minimum, medium,
Maximum). Active Control monitors the incoming signal and the sur-
rounding ambient light to provide the best picture by constantly adjust-
ing the contrast, dynamic contrast, brightness, and colour picture set-
tings.
*Manufactured under license from Dolby Laboratories. “Dolby”
and the double-D symbol are trademarks of Dolby Laboratories.
Pixel Plus, Incredible Surround, and Active Control are trademarks
of Philips Consumer Electronics. Copyright 2003 Philips
Consumer Electronics. All rights reserved.
U
SING THE
R
EMOTE
C
ONTROL
K
EYS
Directions for Use
v
B
v
B
MENU
b
†
‡π
Sb fi
Sb fi
Ò
®
PLUS
PIXEL
b
†
‡π
Ò
®
PLUS
PIXEL
MENU
VCR DVD AMP AUX
VCR DVD AMP AUX
CH
Ï
213
¬
OK
V
CH
Ï
¬
OK
V
546
213
546
0
h
879
0
i
0
879
0
i
ZOOM
U
Q q c
h
ZOOM
U
Q q c
SMART
ACTIVE
CONTROL
SMART
SMART
ACTIVE
CONTROL
SMART
h
Ma
h
Ma
Page 9
Directions for Use
SMARTSMART
213
546
B
w
b
Ï
VCR DVD AMP AUX
¬V CH
Sb fi
OK
MENU
PIXEL
PLUS
b
Ï
B
Sb fi
VCR DVD AMP AUX
w
MENU
¬V CH
PLUS
PIXEL
OK
0
213
546
Language
879
0
i
Install
English
....
.....
System
Programme
Search
Fine tune
Antenna level
Store
Install Start
Automatic install
Manual install
EN 9DPTV355 3.
9
NSTALL
:I
ENUS
M
SING THE
U
Press the MENU Ï key on the remote control.
When you switch on your TV for the first time and no chan-
nels are stored so far, the menu Language automatically
appears on the screen. This menu also has an additional
item Exit with which the menu can be dismissed. The
explanation appears in different languages one at a time.
Choose your preferred language and press the OK key on
1
Follow the instructions on screen.
Use the cursor down to select Install.
Use the cursor right to select Language.
the remote control. Proceed with the Install menu.
2
Use the cursor up/down to select your preferred
3
language and press the OK key to confirm your
4
selection.5Proceed with the Install menu.
Install
You can now search for and store the TV channels in
two different ways:using Automatic Installation or
Manual Installation (tuning-in channel by channel).
Select your choice with the cursor right.
Note: Channel numbers and names will always be written in
Latin characters, even when a language has been selected
appears.
Start
in the Install menu.
Automatic installation
Note: All channels must be unlocked in order to autopro-
gram. If requested, enter your PINto unlock all channels.
(See TV, Features menu, Child lock, p. 13.)
Select
Press the cursor down.
The autoprogramming option label
Press the cursor right.
The message Searching appears and the progress
of autoprogramming is displayed.
Automatic Channel installation
1
2
3
4
which uses other characters.
When the Automatic installation is complete, the puck
navigates to Install again.
The programme list is automatically filled with all the
programme numbers of the TV channels transmitted.
Searching for and storing TV channels is
done channel by channel.You must go
through every step of the Manual
Install
Select Manual installation in the Install menu.2Press the cursor down.
Follow the instructions on screen.
Manual Channel installation
Installation menu
Note: Search or direct selection of a TV channel. If you know
the frequency, enter the 3 digits of the frequency directly with
the digit keys 0 to 9 (e.g. 048). Press the cursor down to pro-
ceed.
1
Repeat to search for another TV channel.
3
VERVIEW
:O
ENUS
M
SING THE
U
pipes
abouts in the menu structure.
The puck surrounds the ball indicating the user’s current
position in the menu hierarchy.The puck is always present
when the menu system is displayed.
balls
The puck is divided into 4 parts.They correspond to the
directional controls (up/down, left/right) on the remote con-
trol.The arrows on the cursor indicate which directions to
choose.
When menu items cannot can fit on the TV display, only a
portion is shown.
Picture Sound Features
TV
Those omitted are indicated by a cluster of.
Direct selection and control
Menu items are controlled as soon as they are selected.
100 Hz Dig. Scan
Only a few items require information with the OK key.
Pixel Plus
Double lines
Digital options
List controls
A list control is used to select one or more items from a
list of options. Press the right key to move the puck into
the list.At least one item is the current value and is high-
lighted.
Moving the puck up or down with the up/down key causes
the list to move up or down.
8
puck
OK key to acti-
vate
cursor to select
return or switch
to summon the main menu.
Note: Should your remote control be lost or broken you
can still use the keys on the front of the TV. See p. 8.
Press the MENU Ï key on the remote control
1
Press the cursor button up or down to select the
TV, Settings,Install or Demo menu.
Note: Sometimes not all the menu items are visible on
the screen. Press the cursor down to reveal all items.3Use the cursor button left or right to select the
2
adjustments
main menu
on/off
menu item.4Use the cursor button up or down again to select
the control you want to select or to adjust. For
instance, see Picture menu.5Press the MENU Ï key to turn off the main
menu.
The menu system
Pipes, balls and a puck
The hierarchy of menus and controls is represented by an
animated visual mechanism of pipes, balls and a puck.The
animated mechanism constantly shows the current where-
Page 10
EN 10 DPTV3553.
11
U
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ENUS
:P
ICTURE
Picture Sound Features
Smart picture
Contrast
Brightness
Colour
Sharpness
Tint
Digital options
Dynamic contrast
DNR
Colour enhancement
(Hue)
Picture format
TV
OK
key to acti-
vate
cursor to select
adjustments
return or switch
main menu on/off
Picture menu
Use the Picture menu to adjust picture settings.
Use the on-
screen Menu-Info i for more information about the menu
items.
1
Press the
MENU
Ï key on the remote control to
summon the main menu.
2
Press the cursor right to select
Picture
.
3
Select the menu items in the Picture menu with the
cursor up/down.4Adjust the settings with the cursor left/right or enter
the list of submenu items with the cursor right.
5
Select a submenu item with the cursor up/down.
The modified adjustments for Contrast, Brightness,
Colour,Sharpness, Tint, Digital options and Dynamic
Contrast are automatically stored.
Select
Factory settings
in the Setup menu, General,to
restore the predefined factory settings, see p. 14.
Digital options with PAL signals
Although Pixel Plus is the most ideal setting, it may be
preferable, dependent on your own preference, to select
Double lines, or 100 Hz Digital Scan.
•
100 Hz Dig. Scan
100 Hz + Dig. Scan (Field and line flick-
er reduction) without motion compensation.
•
Pixel Plus
creates near High Definition performance
inside the TV on the basis of a regular input signal.
The number of lines are increased and the number of pix-
els on a line are doubled in combination with Digital
Natural Motion.As such Pixel Plus enhances both regular
broadcast signals and DVD or Digital TV input towards
unparalleled sharpness and depth, near High Definition
and natural detail.
•
Double Lines
provides for a doubling of vertical and hori-
zontal resolution which adds astonishing sharpness and a
total absence of visible picture lines.
Motion compensation reduces jitter and offers smooth,
yet sharp motion reproduction.
Digital options with NTSC signals
•
Progressive Scan
line doubling eliminates line flicker.
•
Pixel Plus
Note:
- Pixel Plus is not active when Multipip, Teletext (Except when
Subtitling is activated) or Teletext Dual screen is selected.
- When having selected Pixel Plus, the size of the menus on
screen is reduced.This is a nor mal behaviour.
- Interference, caused by fluorescent lights just above the TV, may
occur when having selected Pixel Plus.
10
U
SING THE
M
ENUS
:I
NSTALL
It is possible to change the name stored in the
memory or to assign a name to a TV channel
for which a name has not yet been entered.A
name with up to 5 letters or numbers can be
given to the programme numbers 0 to 99. For
example SUPER, BBC1,... Before programme
number 0 you can also enter a name for the
peripherals that are connected to an external
input.
Give name
1
Select Give Name in the Install menu and press the
cursor down.2Select the programme number.
Note: keep the cursor up/down pressed to scroll
through the programme list quickly.3Press the cursor right. A keyboard appears on the
screen. Only European characters are displayed.
Note:
- Dependent on the language selected in the language
menu, the key Special is available or not.
- When you select Arabic, you can toggle the Special key
to display Arabic or English characters.The Shift key is
changed to More. Press the More key to toggle between
part 1, 2 or 3 of the Arabic character sets.
Press the cursor right to enter the keyboard.
Press the cursor up/down, left/right to select the first
character and press OK. Repeat for every character you
want to enter.
Select Space to enter a space; Delete to erase the
highlighted character in the name entered; Shift to display
upper- or undercast characters on the keyboard; Special
to display special characters on the keyboard.Press OK
to confirm.
4
Press the cursor left repeatedly when you have fin-
ished naming the selected channel or peripheral.
5
Select another programme number and repeat steps
3 to 5.
Reshuffle the programme list
According to your preference you can change the
order of the stored TV channels.
1
Select Reshuffle in the Install menu and press the
OK key.2Follow the instructions on screen.
Select Favourite TV channels
1
Select Favourite programmes in the Install
menu.2Select your programme number with the cursor
up/down.3Select Ye s or No with the cursor right.
4
Repeat 2 and 3 for every TV channel or external
you want to make a favourite or a non-favourite TV
channel or external.
VCR1
BBC1
BBC2
CNN
TVE
π
.....
pπ
® Space ® Delete
ABCDEFG 1 23
HIJKLMN 4 56
OPQRSTU 7 89
VWXYZ 0
® Shift (® Special)
VCR1
BBC1
BBC2
CNN
TVE
π
.....
π
Reshuffle Favorite channels
pπ
Yes • No
Yes • No
Yes • No
Yes • No
Yes • No
Yes • No
π
Favorite channels
pπ
Reshuffle Favorite channels
VCR1
BBC1
BBC2
CNN
TVE
2
Directions for Use
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PIXEL
OK
Page 11
Directions for Use
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Programme lock
EN 11DPTV355 3.
Features
EATURES
:F
ENUS
M
Use the on-
SING THE
U
Features menu
Use the Features menu to adjust sound settings.
Channel list
TV
screen Menu-Info i for more information about the menu
items
Subtitle
Sleeptimer
Ï key on the remote control to
MENU
Press the
Zoom
On timer
Child lock
summon the main menu.
Press the cursor right to select Features.3Select the menu items in the Features menu with the
1
return or switch
main menu on/off
cursor up/down and adjust the settings with the cur-
sor left/right.
2
channel or external.
•Press the OK key to switch over to the selected TV
Channel list
Select subtitles
from the index.
•Switch on teletext and select the proper subtitle page
key to acti-
vate
cursor to select
adjustments
OK
the selected TV channel.
been selected they will automatically be displayed on
the selected TV channels if subtitles are in the transmis-
•Once subtitles have been stored and Subtitle On has
•Switch off teletext. Now the subtitle page is stored for
Lock
Custom lock
Unlock
Features
Subtitle
On timer
Child lock
Sleeptimer
Programme list
TV
Select Child lock with the cursor down.2Press the cursor right to enter the Child lock menu.
Enter the access code.
Note:You have to re-enter your code each time you enter
sion.
subtitles automatically displayed when the sound has
been muted with the ¬ key on the remote control.
•A symbol will indicate that the mode is on.
•Select On during mute when you want to have the
Child lock
the child lock menu.
1
Important: If you have forgotten your code:
• Select Cancel with the cursor down.
• Select Set/Change code in the Setup menu. See
General menu, Set/Change code,p. 13.
• Press OK.
• Press the cursor right and enter the overriding code 8-
8-8-8.
code.The previous code is erased and the new code is
stored.
• Press the cursor again and enter a new personal 4-digit
Note:The over riding code only works in the Set/Change code
Select one of the menu items of the child lock menu.
• Select Lock if you want to lock all channels and
externals.
• Select Custom lock and press the cursor right.
menu.
Select Programme lock if you want to lock the
3
13
externals at once.
programmes from a certain TV channel or external.
• Select Unlock to unlock all locked channels and
key to acti-
vate
cursor to select
adjustments
return or switch
main menu on/off
Ï
MENU
OK
OK
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12
OUND
:S
ENUS
M
SING THE
U
Sound
Smart sound
TV
Use the on-
Volume
Equalizer
Balance
.
Sound
Loudness
Headphone volume
Dual I-II
Mono/Stereo
Surround mode
AVL
Delta volume
Nicam/Analogue
b
B
Sb fi
VCR DVD AMP AUX
w
PLUS
PIXEL
Ï key on the remote control to
MENU
summon the main menu.
Press the
Press the cursor right to select
Select the menu items in the Sound menu with the
cursor up/down and adjust the settings with the cur-
sor left/right.
Remember,control settings are at normal mid-range
levels when the bar scale is centred.
settings.
mission.
sion.
ume level to avoid excessive level differences, especially when
switching to another channel or during commercial breaks.
Note:
- Smar t Sound allows you to select from a list a preset sound
- Dual X is only available with dual sound transmission.
- Mono/Stereo is only selectable in case of analogue stereo trans-
Sound menu
Use the Sound menu to adjust sound settings.
1
2
items.
screen Menu-Info i for more information about the menu
3
- Nicam/Analogue is only selectable in case of Nicam transmis-
been connected.
- AVL (Automatic Volume Leveller) Automatically controls the vol-
- Sur round modes can not be modified when a headphone has
Surround Modes
Dependent on the sound signal broadcasted, select one of
the Surround modes.
Incredible Surround™ enhances stereo
programs by making the sound broader and
fuller
Dolby* virtual creates a virtual surround
sound experience from two speakers.
Dolby Virtual retains all the original multi-
channel audio information and provides the
listener with the sensation of being sur-
rounded by additional speakers.
Page 12
EN 12 DPTV3553.
Source
Use this menu to select the peripheral you connected to
one of the external inputs.Use the on-screen Menu-Info i
for more information about the menu items
1
Press the
MENU
Ï key on the remote control to
summon the main menu.
2
Press the cursor down to select
Setup
.
3
Press the cursor right to select
Source
.
4
Press the cursor down to select one of the external
inputs.5Press the cursor right to enter the list of names of
peripherals attached to the selected input.
6
Select the peripheral device with the cursor up/down.
Once you have selected the source, e.g.VCR, this AV-input
will automatically be selected when your remote control is
in VCR mode and when you press the VCR button on the
remote control. See p.23.
15
Source
AV1
AV2
AV3
AV4
Side
Setup
U
SING THE
M
ENUS
:S
OURCE AND
C
ONVERGE
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MENU
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OK
key to acti-
vate
cursor to select
adjustments
return or switch
main menu on/off
Converge
IntelliSense
Manual convergence
Setup
Converge red
Converge blue
Multipoint red
Multipoint blue
Save multipoint
Undo multipoint
Restore factory
Converge
With a projection TV the picture is created by projecting
light from multiple sources onto the screen. How well these
light sources align is called Convergence. Convergence can
get misaligned. You can tell by the appearance of “halos”
around the objects in the picture.You can either set the
convergence manually or have the TV do it automatically.
1
Press the
MENU
Ï key on the remote control to
summon the main menu.
2
Press the cursor down to select
Setup
.
3
Press the cursor right to select
Converge
.
4
Press the cursor down to select IntelliSense or
Manual Convergence.
• To use IntelliSense, press OK. the TV will do the
rest.
• To use Manual Convergence, select the setting you
need to adjust.and use the Cursor to line up the
cross signs.
5
If you select Manual convergence, choose a type of
convergence to set.
Remember: Use the on-screen Menu-Info i for more
information about the menu items
Activating IntelliSense
®
Using the TV Key
With the TV on, press the IntelliSense key on the front of
the TV. Picture convergence will be adjusted automatically in
20 seconds.
Press to begin
automatic
picture
convergence
14
General
Menu background
Smart surf
Dual Screen Format
Freeze format
Factory settings
OSD
Programme title
Teletext level 2.5
Change code
Colour
Setup
General menu
Use the General menu to adjust settings that are not
changed often. Use the on-screen Menu-Info i for more
information about the menu items
1
Press the
MENU
Ï key on the remote control to
summon the main menu.
2
Press the cursor down to select
Setup
.
3
Press the cursor right to select
General
.
4
Select the menu items in the General menu with the
cursor up/down and adjust the settings with the cur-
sor left/right.
Note:
- Menu Background places a background behind the menu to
make it easier to read.
- Smar t Surf sets the Smart surf button for either a 9-channel
surf list or a previous channel toggle.
- Dual Screen For mat sets the PIP button b to display a dual
screen, or a number of PIP windows.
- Freeze format sets which type of default Freeze option you
want to appear when you press the Freeze button S.
- Factor y Settings resets the picture and sound settings to the
factory defaults.
- OSD sets the size of the volume and channel display.
- Programme title sets the TV to display the programme title
according to the teletext information.
- Teletext level 2.5 sets the TV to use Teletext level 2.5 which
supports more colors and and backgrounds.
- Change Code is used to set a new 4-digit personal code .
- Colour sets the cor rect colour system.
213
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OK
key to acti-
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cursor to select
adjustments
return or switch
main menu on/off
U
SING THE
M
ENUS
:G
ENERAL
Directions for Use
Intelli Sense
>
CHANNEL
?
A
+
MENU
VOLUME
A
-
Page 13
(PIP)
D
OK
¬
CH
V
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MENU
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ICTURE
-P
IN
-
ICTURE
P
SING
U
SOURCE
POWER
SELECT
Directions for Use
Ò
VCR DV
v
b
®
PLUS
PIXEL
MENU
CC
i
INFO+
CD
Q
AMP
EXIT
DVD
VCR
l
VCR Prog.
SAT
CBL
DNR
TV
HD
q
q
PLUS
PIXEL
Ï
OK
S
EN 13DPTV355 3.
b
17
Press the b key on the remote control to
switch PIP on. You can set the defualt PIP size
in the General Menu, under Dual Screen format,
p. 14.2Press and hold the b key choose another PIP
The Picture-in-Picture (PIP) feature allows you to call up
a subscreen within your main screen to watch two more
or channels or a channel and a peripheral at the same
time.
The Dual-window feature allows you to divide the main
screen into two subscreens so that two channels or a
channel and an external source can be watched simultane-
ously.
1
- Light sensor
Auto demo
Dual screen
Zoom
Teletext
Install
Main menu
Picture
Speakers
Active control
EMO
:D
ENUS
M
SING THE
U
TV
Setup
Install
Demo
Dealer demo - Digital options
size.
- Comb filter
Switching Screens
Use the Cursor to select the PIP window. The
selected window will be outlined in yellow.
Press OK and they will change places.
Changing PIP Channels.
USe the cursor to select the PIP window and
change channels normally.
return or switch
main menu on/off
key to acti-
vate
cursor to select
adjustments
OK
16
Ï key on the remote control to
MENU
summon the main menu.
Press the
Select Demo in the Main menu with the cursor
down.3Select Auto demo or one of the features with the
cursor right and press the OK key on the remote
control.
•If Auto demo has been selected the demo will
automatically present all the features sequentially in a
loop.
•Press one of the cursor keys to stop the Auto demo.
•If one of the features has been selected, this particu-
lar feature demo will run one time only, until activat-
The Demo menu allows to demonstrate the TV features
separately or in a continuous loop.
1
2
ed again, and the Demo menu will reappear.
On or Off to really see the difference in picture quality.
In Dealer Demo mode it is possible to change channels
Select Dealer Demo
Select Digital options, Light sensor and Comb filter
with - CH + and to adjust the volume.
Note: the Dealer Demo is not part of the automatic sequence
and can only be activated separately.
Page 14
EN 14 DPTV3553.
19
U
SING
T
ELETEXT
(
IF PROVIDED
)
Quickly Running Through the Teletext Pages
Press the cursor up/down or the CH +/– keys to run through the pre-
vious or the following pages.
Selecting the Index Teletext Page
Press the
m
key to return to the main index (usually
p. 100).
Selecting Subpages
When a selected teletext page consists of different subpages, one of the
subpages appears on the screen.
Arrows in front of the page number indicate that other subpages are
available.
The other subpages can be selected in two ways :
With the cursor left/right
The other subpage numbers appear in white as soon as the transmis-
sion has found them.They are stored in the memory so that they are
available while the teletext page is on screen.
Use the cursor left/right to select the previous or the following sub-
page.
Using Special Teletext Functions
Enlarge
Press h repeatedly to display the upper part and the lower part, and
then to return to the normal page size.When the upper part is dis-
played, you can scroll the text, line by line using the cursor up/down.
To select
pages
Cursor to
select pages
18
U
SING
T
ELETEXT
(
IF PROVIDED
)
Many TV channels broadcast information via teletext. Each channel
that broadcasts teletext transmits a page with information on how to
use its teletext system. Look for the teletext page with the main index
(usually p. 100).
Depending on the TV channel, teletext is transmitted in different sys-
tems. The colours used in the options line correspond with the colour
keys of your remote control.
About Teletext
Easy Text considerably reduces the waiting time (on condition that
the teletext broadcast of the particular TV channel is received for at
least half a minute) by :
• a direct selection of previous and following pages that are in trans-
mission and of the pages referred to in the options line at the bot-
tom of the teletext screen;
• a habit watcher list : frequently used pages are put automatically
in a list of preferred pages so that they are immediately available;
• the precapturing of the page numbers referred to in the displayed
page; and
• the precapturing of all the subpages.
Switching Teletext on and off
1
Press the
b
k
ey to switch the teletext on.
The main index page appears on the screen together with two
information lines at the top and one option line at the bottom
of the screen.
2
Press the
b
key again to overlay the teletext page on the TV
programme.
3
Press the
b
key once again to switch the teletext off.
Selecting a Teletext Page
With the digit keys
Enter the desired page number with the digit keys.
The page counter seeks the page or the page appears immedi-
ately when the page number has been stored in the memory.
A message appears when you have entered a nonexistent or incor-
rect page number. Page numbers beginning with 0 or 9 do not exist.
Choose another number.
With the option line
Use the colour keys—which correspond to the coloured
options at the bottom of the screen—to select the desired
subject.
If the option line is not on the screen, press the selected
colour key TWICE.
Continue to the next page.
Directions for Use
CH
MENU
b
B
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h
ACTIVE
CONTROL
Ma
SMART
B
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SMART
Page 15
Directions for Use
2
REAR OF TV
1
according to :
Accepts Video Sync
EIA/CEA-770.2-C
EIA/CEA-770.3-C
ITU-R BT.1358
Video Description
1080i (60Hz)
576p (50Hz)
EN 15DPTV355 3.
QUIPMENT
E
ERIPHERAL
P
ONNECTING
C
Overview : High-definition Inputs
AV3 —use to connect digital equipment with a 1080i/480p (60Hz)
or 576p (50Hz) signal output, such as digital set-top boxes or
DVD players with progressive-scan capability.You can connect
equipment with YPbPr component video or RGB outputs to the
AV4 sockets.H and V Sync connections may or may not be
The AV3 and AV4 sockets allow you to connect digital equipment with
1080i/480p (60Hz) or 576p (50Hz) signal output.
1
REAR OF TV
7
QUIPMENT
E
1
Input
High-definition Inputs—Video Synchronizing Reference
required for RGB connections. Use the AV4 L(eft) and R(ight)
AUDIO sockets for sound connections.
See the handbook for the device you are connecting.2AV4 —use to connect digital equipment with a 1080i/480p (60Hz)
or 576p (50Hz) signal output, such as digital set-top boxes or
DVD players.The AV5 socket accepts a DB15 connector.Note ,
however, that adapters can also be used to connect from compo-
nent video output to this DB15 socket. Use the AV5 L(eft) and
AV3 AV4 480p (60Hz)
R(ight) sockets for sound connections.
See the handbook for the device you are connecting.
7
3
4
5 2
6
4
5
3
G
SIDE OF TV
4
3
21
5
Note : The
side panel is
AV3.
8
ERIPHERAL
P
ONNECTING
C
You can connect a wide range of video and audio equipment to your TV
in various ways.This page and the next one provide an overview of signal
compatabilities and the types of equipment you can connect to the sock-
ets. Connection examples follow on subsequent pages.As necessar y, also
Overview : Standard Inputs/Outputs
standard in your area. Use to connect radio-frequency (RF) signals
from VHF/UHF antennas or a cable system.
ANTENNA IN 75Ω socket—compatible with the broadcast
refer to the handbook for peripheral equipment.
1
YPbPr (component video input [CVI] sockets)—compatible
with 480i and 576i signals. Use to connect equipment having com-
ponent video outputs, such as DVD players,laser-disc players,
video-game players, satellite receivers, or other equipment.Use
2
the INPUT-AV 1 L(eft) and R(ight) AUDIO sockets for sound con-
nections.3S-VIDEO (super video) sockets—compatible with 480i and
576i signals. Use to connect peripherals having Super VHS (S-VHS)
outputs, such as VCRs, DVD players, laser-disc players, video-game
players, satellite receivers, or other equipment.
VIDEO (composite) sockets
(INPUT-AV 1, INPUT-AV 2, and TV’s side socket panel
[AV3])—compatible with 480i and 576i signals. Use to connect
peripherals having composite video outputs, such as VCRs, video-
game players, or other equipment.
4
AUDIO inputs (INPUT-AV 1, INPUT-AV 2, and TV’s side
MONITOR OUT (VIDEO/AUDIO)—use to connect to a VCR
socket panel [AV3])—use to connect from the audio output
sockets on VCRs, DVDs, or other peripherals.
5
use to make optional surround-sound
—
Headphone socket (stereo, 3.5 mm)—use to connect
to record programmes from the TV. Or use the AUDIO outputs
to connect to an audio hi-fi system.
AMP SWITCH, CENTER
CHANNEL AMP INPUT, and
SUBWOOFER Output
6
7
n
connections.
headphones for personal listening.The headphone impedance must
20
be between 8 and 4000 Ohms.
8
Page 16
EN 16 DPTV3553.
23
Video Recorder : Recording
To record S-VHS quality, connect an S-VHS peripheral directly to the
video recorder.
Recording a TV Programme
1
Select the channel number on your video recorder.2Set your video recorder to record.
See the handbook for your video recorder.
Switching channel numbers on your TV does not disturb recording
.
Recording a Programme on Your Video Recorder Connected
to MONITOR OUT from Audio/Video Equipment Connected
to AV1, AV2, or to the Sockets on the Side of the TV (AV3)
1
Switch on the equipment.
2
Select the correct external source on your TV and on your video
recorder.3Set your video recorder to record.
You record what you are watching on the screen.
Do not switch channel numbers and do not switch off your TV when
you are recording.
C
ONNECTING
P
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22
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Video Recorder : Playback
1
Connect the RF cable to the RF socket on your video recorder.2Connect another RF cable from the output of your video
recorder to the ANTENNA IN 75Ω socket on your TV.3Better playback quality can be obtained if you also connect the
Video,Audio Left and Right (only for stereo equipment) cables to
the VIDEO and AUDIO L (mono) and R inputs of
INPUT-AV 2.
Note : In case of mono equipment,only the left loudspeaker
reproduces sound. Use a mono-to-stereo adapter (not supplied)
for sound reproduction via the internal loudspeakers.
The MONITOR OUT connectors can be used for daisy chaining
or recording programmes from your TV. See page 23.
S-VHS-Video quality with an S-VHS video recorder is obtained by
connecting the S-VHS-Video cable with the S-VIDEO input instead
of connecting the video recorder to the VIDEO input. See the
handbook for the video recorder.
If You Do Not Make the Video and Audio
Connections in Step 3 Above :
Search for and store the test signal of the video recorder.
1
Unplug the RF cable from the RF socket of your video recorder.2Switch on your TV and put the video recorder on the test signal
or play a prerecorded tape. See the handbook for your video
recorder.3Search for the test signal of your video recorder in the same way
you searched for and stored the TV signals. See pages 9 and 10.
4
Store the test signal under programme number 0 or between 90
and 99.5Replace the RF cable in the RF socket of your video recorder
after you have stored the test signal.
Directions for Use
1
CABLE
L
R
AUDIO
L
R
AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
AV4-480p/1080i-60Hz, 576p-50Hz
L
S-VIDEO
VIDEO
L
R
INPUT-AV 2 SUBWOOFERMONITOR
AUDIO
_
OUT
Y
Pr
Pb AMP SWITCH EXT INT
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
R
AUDIO
VIDEO
L
S-VIDEO
ANTENNA IN 75Ω
RF IN
3
A/V OUT
VIDEO RECORDER
RF OUT
2
Page 17
Directions for Use
EN 17DPTV355 3.
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S-Video Equipment
Note : Progressive-scan DVD players can be connected to the AV3 or
AV4 inputs only.
L
R
AUDIO
L
R AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
AV4-480p/1080i-60Hz, 576p-50Hz
L
S-VIDEO
VIDEO
L
R
INPUT-AV 2 SUBWOOFERMONITOR
AUDIO
_
OUT
Y
Pr
Pb
AMP SWITCH
EXT INT
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
R AUDIO
VIDEO
L
S-VIDEO
ANTENNA IN 75Ω
REAR OF TV
Connect an S-VIDEO cable to the INPUT-AV 2 S-VIDEO input.2Connect the audio cables to the equipment’s AUDIO L (mono)
and AUDIO R sockets and to the INPUT-AV 2 AUDIO L (mono)
and AUDIO R sockets on your TV.
1
REAR OF TV
1
REAR OF TV
S-VIDEO OUTAUDIO OUT
DVD PLAYER
2
25
AV3 and AV4 Digital High-definition Inputs
even combinations of these on your screen, check to see if the con-
sync.” Output standards for digital equipment,however, may vary by man-
ufacturer. No industry standards have been established for HD television
When you have digital equipment with 1080i or 480p signal output
(60Hz) or 576p signal output (50Hz), connect it to the AV3 or AV4 inputs
on your TV. Examples of such equipment are digital set-top boxes and
progressive-scan DVD players.
Connecting to AV3
Connect digital equipment with component video output (usually labeled
Y-Pb-Pr) or with RGB output (phono-type connectors) to the AV3 inputs
for video and audio left and right.Also connect to the H and V SYNC
inputs on the TV if required for your digital equipment.
RGB signal systems, timing,synchronization, and signal strengths. If the
Note :The AV3 sockets are compatible with some digital equipment hav-
ing RGB outputs with “sync on green” or RGB with “separate H and V
digital equipment you want to connect to your TV offers both compo-
nent video and RGB outputs, component video is the suggested connec-
tion to use. See the handbook for the digital equipment.
Connecting to AV4
Connect digital equipment with RGB or Y-Pb-Pr output to the AV4 inputs
for video and audio left and right.A DB15 cable or adapter cable with a
DB15 connector is required.
Note :The AV4 input cannot be used to connect a computer or any
other VGA device.
Notes regarding connecting to either AV3 or AV4 :
nections have been done properly.
• See the handbook for the high-definition equipment.
• If you notice scrolling images, wrong colors or no color,no picture or
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Connect the RF cable to the RF socket on your A/V peripheral
equipment.2To obtain better picture quality, also connect the Video and Audio
Video Recorder and Other A/V Peripherals
AMP SWITCH EXT INT
ANTENNA IN 75Ω
left and Audio right (only for stereo equipment) cables to the
VIDEO and AUDIO L (mono) and AUDIO R input of the INPUT-
1
1
CABLE
2
L
R
AUDIO
L
R AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
AV4-480p/1080i-60Hz, 576p-50Hz
L
S-VIDEO
VIDEO
L
R
INPUT-AV 2 SUBWOOFERMONITOR
AUDIO
_
OUT
Y
Pr
Pb
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
R AUDIO
VIDEO
L
S-VIDEO
REAR OF TV
4
5
AV 2 sockets.
Note : In case of mono equipment,only the left loudspeaker
reproduces sound. Use a mono-to-stereo adapter (not supplied)
for sound reproduction via the internal loudspeakers.3Connect the RF output of the A/V peripheral equipment to the RF
input on the video recorder.4When a video recorder is not connected to MONITOROUT on
your TV, you can record a programme only from the aerial or
A/V PERIPHERAL
RF OUT RF IN
3
RF INRF OUT
A/V IN A/V OUT
VIDEO RECORDER
from the cable system.
Only when a video recorder is connected to MONITOROUT is it
possible to record a programme from other equipment connected
to the TV. See page 32.
Connect Video and Audio left (mono) and Audio right cables from
the video recorder A/V inputs to the VIDEO and
AUDIO L (mono) and AUDIO R sockets of the MONITOROUT
on your TV.5Connect from the RF output on the video recorder to the
L
R
AUDIO
L
R
AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
AV4-480p/1080i-60Hz, 576p-50Hz
INPUT-AV 2 SUBWOOFERMONITOR
_
OUT
Y
AMP SWITCH
EXT INT
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
ANTENNA IN 75Ω
L
R
AUDIO
L
R AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
AV4-480p/1080i-60Hz, 576p-50Hz
L
S-VIDEO
VIDEO
L
R
INPUT-AV 2 SUBWOOFERMONITOR
AUDIO
_
OUT
Y
Pr
Pb
AMP SWITCH
EXT INT
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
R AUDIO
VIDEO
L
S-VIDEO
ANTENNA IN 75Ω
REAR OF TV
OUT
1
COMPONENT VIDEO
L
S-VIDEO
VIDEO
L
R
AUDIO
Pr
Pb
L
R
AUDIO
VIDEO
L
S-VIDEO
2
DVD PLAYER
A/V OUT
24
DVD Player
Connect the cables of your DVD player with component video
output to the Y-Pb-Pr INPUT-AV 1 sockets on your TV.2Connect the cables from the Video and Audio (L and R) outputs
on the DVD player to the INPUT-AV 1 VIDEO and AUDIO L
(mono) and R inputs on your TV.
See the handbook for your DVD player.
Note :The names of the component video sockets may differ
depending on the DVD player or digital source equipment used.
For example, besides YPbPr, you may see R-Y/B-Y/Y or CrCbY.
Although abbreviations and terms may vary, the letters B and R
stand for the blue and red color component signal connectors,
respectively.The Y indicates the luminance signal. If necessary, see
ANTENNA IN 75Ω socket on your TV.
Note : Progressive-scan DVD players can be connected to the AV4 or
AV5 inputs only.
1
the handbook for the digital equipment for more information.
Page 18
EN 18 DPTV3553.
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Additional Audio Connections : Surround Sound
Your TV has extra sockets that allow you to connect to an external
audio amplifier system and powered subwoofer.This connection will pro-
vide a surround-sound experience similar to a movie theatre or concert
hall.
1
Connect speaker wires from the Center Speakers Output of the
surround-sound amplifier to the corresponding (+, –) CENTER
CHANNEL AMP INPUT sockets on the TV.2Connect audio cables from the AUDIO L and R MONITOR OUT
sockets of the TV to the AUDIO L and R inputs sockets on the
surround-sound amplifier.3Connect speaker wires from the surround-sound amplifier’s front
and surround-sound speaker sockets to the front and surround-
sound speakers.4Connect an audio cable from the SUBWOOFER output of the TV
to the Low Level Input sockets on the powered subwoofer.5Adjust volume for the surround-sound amplifier and powered sub-
woofer at those pieces of equipment.
26
Additional Audio Connections : External Hi-fi
If you would like to hear TV programmes through your audio hi-fi sys-
tem, your TV offers this capability.
1
Connect the audio cables to the AUDIO L and R input sockets of
your amplifier and to the AUDIO L (mono) and R
MONITOR OUT sockets of the TV.2Turn the TV and audio system on.
3
Control the volume of the hi-fi system at the hi-system’s amplifier.
Volume adjustments made to the TV do not affect the volume of
the hi-fi system.
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QUIPMENT
Camera and Camcorder
Connect your camera or camcorder to sockets at the side of your TV.
1
Connect the equipment to the VIDEO or S-VIDEO socket.
Note : S-VHS quality with an S-VHS camcorder is obtained by
connecting an S-VIDEO cable with the S-VIDEO socket instead of
making a connection to the VIDEO socket.
2
Connect the equipment to the AUDIO L socket for mono or
both the AUDIO L and R for stereo.
Headphone
1
Insert the plug into the headphone socket ; at the right side of the
TV
.
2
Press
H
on the remote control to switch off the internal loud-
speakers of the TV.
Notes :
• The headphone impedance must be between 8 and 4000 Ohms.
• The headphone socket has a 3.5 mm socket.
• In the SOUND menu,select HEADPHONE to adjust the headphone
volume and balance.
Directions for Use
Rear
Rear
Speaker
Speaker
Front
POWERED
SUBWOOFER
Speaker
4
TV
L
R
AUDIO
L
R
AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
AV4-480p/1080i-60Hz, 576p-50Hz
L
S-VIDEO
VIDEO
L
R
INPUT-AV 2 SUBWOOFERMONITOR
AUDIO
_
OUT
Y
Pr
Pb
AMP SWITCH
EXT INT
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
R
AUDIO
VIDEO
L
S-VIDEO
ANTENNA IN 75Ω
REAR OF TV
2
1
AMPLIFIER
(Center Speakers)
Front
Note: The gray circle indicates the primary viewing area.
Speaker
3 3
Powered
Subwoofer
G
L
VIDEO
R
AUDIO
S-VIDEO
SIDE OF TV
G
L
VIDEO
R
1
2
1
or
SIDE OF TV
AUDIO
S-VIDEO
1
L
R
AUDIO
L
R
AUDIO
R/Pr
B/PbVH
G/Y
SYNC
AV5-RGB, 480p/1080i-60Hz, 576p-50Hz
TYPICAL
CAMCORDER
AV4-480p/1080i-60Hz, 576p-50Hz
L
S-VIDEO
VIDEO
L
R
INPUT-AV 2 SUBWOOFERMONITOR
AUDIO
_
OUT
Y
Pr
Pb
AMP SWITCH
EXT INT
+
CENTER CHANNEL AMP INPUT
INPUT-AV 1
L
R
AUDIO
VIDEO
L
S-VIDEO
ANTENNA IN 75Ω
REAR OF TV
1
HI-FI AMPLIFIER
Page 19
IPS
T
AND
,
LEANING
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ARE
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Directions for Use
EN 19DPTV355 3.
29
WARNING Concerning Stationary Images on the TV Screen :
Do not leave stationary or “letterbox” images on screen for extended periods of time.This can cause
IEWING
V
v
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uneven picture-tube aging.
Normal use of the TV should involve the showing of pictures that contain constantly moving and changing images that fill the
screen. Be careful not to leave nonmoving images on screen for extended periods of time or to display the same images on
screen too frequently, because subtle ghost images can be left on the picture tubes.Avoid showing the same stationary images
more than 15 percent of your total viewing in any one week. Sources of stationary images may be DVD discs, laser discs, video
games, CD-i discs,videotapes, digital television boxes, broadcast channels,cable channels, satellite channels, and others. Here are
some examples of stationary images (this is not an all-inclusive list; you may encounter others in your viewing) :
• DVD menus—listings of DVD disc content
•“Letterbox” black borders—black bars shown along the edges of the picture when a widescreen (16:9) movie is played on
MENU
b
Accessory
VCR DVD AMP AUX
buttons
†
‡π
Sb fi
Ò
®
PLUS
PIXEL
B
v
Do not use household cleaners.Wipe the front screen with a clean cloth dampened with water. Use even,easy, vertical strokes
when cleaning.
detergent. Use a clean,dr y cloth to dry the wiped surfaces.
cabinet finish.
TV
to cause uneven aging of the picture tube
• Video-game images and scoreboards
• Television station logos—present a problem if they are bright and stationary; moving or low-contrast graphics are less likely
CH
Ï
¬
OK
V
screen.
• Stock-market tickers—presented at the bottom of the TV screen
• Shopping channel logos and pricing displays—bright and shown constantly or repeatedly in the same location on the TV
All picture tubes age with use, with their light output diminishing over time. But by maintaining normal use—mixing television pic-
ture types—you will create conditions for the tubes to age at an even rate.The result will be a TV picture that is evenly bright
over the entire screen.
213
546
LACEMENT OF THE TV
• See page 4.
P
LEANING
• To avoid possible shock hazard, be sure the TV is unplugged from the electrical outlet before cleaning.
C
• Regularly dust the TV with a dry, nonscratching duster to keep the TV clean.
• When cleaning the TV, take care not to scratch or damage the screen surface.Avoid wearing jewelry or using anything abrasive.
• Gently wipe the cabinet surfaces with a clean cloth or sponge dampened in a solution of cool, clear water and a mild soap or
• Occasionally vacuum the ventilation holes or slots in the back cover of the set.
• Never use thinners, insecticide sprays, or other chemicals on or near the cabinet, as they might cause permanent marring of the
demagnetised set supports good picture quality.
IPS
T
• Do not leave your set on standby mode for a prolonged period of time. Switch the set off to allow it to be demagnetised.A
ND-OF-LIFE DISPOSAL OF THE TV
• Do not shift or move the set around when it is switched on. Unevenness in colour in some parts of the screen may occur.
E
ISPOSAL OF EXHAUSTED BATTERIES
Philips is making its products environmentally friendly.Your new TV contains materials that can be recycled and reused. Specialised
companies can dismantle your discarded TV at the end of its life, concentrating on the reusable materials and minimising the
amount of materials to be disposed. Please be sure to dispose of your old TV according to local regulations.
D
The batteries supplied do not contain the heavy metals mercury and cadmium. Nevertheless, in many countries exhausted batter-
ies may not be disposed of with your household waste. Please ensure you dispose of exhausted batteries according to local regu-
lations.
28
ELECTING
S
Equipment Connected with an Aerial Cable Only
Select the channel number under which you have stored the test signal
to select the AV input for the device you want to use:
w
AV1,AV2,AV3,AV4, or side
Press
Press the Accessory buttons to control an accessory device with
the remote control. You can control a video recorder, DVD, ampli-
fier,or other auxiliar y device (CD or SAT). A green indicator
lights up. To return to TV mode press the button again,or wait for
the light to go out.
with the digit keys.
Equipment Connected to the back or to the side
of the TV
1
2
TV Channels
Enter the channel number of the TV channel you want to watch with the
digit keys.
Page 20
EN 20 DPTV3553.
31
I
NDEX
a audio inputs, 20
AV3, 21, 25
AV4, 21, 25
automatic tuning of channels, 9
c camcorder, 26
cleaning, 29
child lock, 13
converge. 15
d demo, 16
Dolby* virtual, 6
dual screen, see PIP
DVD, 24
f favorite channel list, 10
features menu, 13
freeze, 6
g general menu, 14
give name, 10
h headphone, 35
HD inputs, 10
i information on screen (i+ key), 6
intellisense, 5, 15
m manual installation, 9
menu use, 8
p picture menu, 11
pip, 18
r remote control, 6-7
s s-video, 20, 25
sound menu, 12
source menu, 15
t teletext, 18-19
troubleshooting (before calling service), 30
v video recorder, 22
volume, 5
y ypbpr, 20
30
B
EFORE
C
ALLING
S
ERVICE
TV remote control does not
work
• Check that the batteries are installed correctly.
• Replace the batteries, if necessary.
• Clean the remote control and the remote-sensor window on the TV.
• Be no farther than 6 meters from the TV when using the remote control and aim the remote
toward the TV’s remote-sensor window.
• If the remote still will not work, use the keys on the TV.
No power
• Check that the TV’s power cord is plugged into the mains socket. If there is still no power, discon-
nect the plug. Wait for 60 seconds and reinsert the plug and then switch on the TV again.
• See if the outlet is controlled by a wall switch.
• If you are using an AC power strip, be sure the fuse on the power strip is not blown.
No picture
• Check the antenna connection at the rear of the TV to see if it is properly connected to the TV
input terminal.
• The broadcast station may be experiencing difficulty. Try another channel.
• Adjust the contrast and brightness settings or select another picture setting with the Smart Picture
key on the remote control.
• If using peripheral equipment through the A/V inputs, be sure it is properly connected.
• Be sure you have selected the correct signal source for viewing.
• If you are attempting to view a picture from a progressive-scan-capable DVD player connected to
the AV4 or AV5 sockets, be sure you have switched the DVD player to progressive-scan mode.
• If you are using an HD receiver, be sure its output is set correctly (to HD or SD), based on the
connection to the TV you have made.
Snowy picture and noise
• Check the antenna connection.
Colour patch (unevenness)
• Switch off the TV by the mains power key. Wait for 20 minutes before switching on again.
• Be sure you have made connections correctly.
• If you have connected digital equipment to the AV4 or AV5 sockets, check the colour-space setting
on the equipment or TV and change the setting on either if necessary.
• Check to be sure the TV is not placed too near speakers or magnetic objects.
• Adjust the TV’s convergence.
Horizontal dotted lines
• This may be caused by electrical interference from appliances such as hair dryers or vacuum
cleaners or other sources such as neon lights. Turn off the appliance or move the TV.
One white line across the screen
• Switch the TV off immediately and consult a qualified service person.
Good picture but no sound
• Increase the volume.
• Check that the TV is not muted; press the H key on the remote control.
• When no signal is detected, the TV automatically switches off the sound. This is proper operation
and does not indicate a malfunction.
• Check the transmission system’s sound settings on the set.
Good sound but poor colour or
no picture
• Adjust the contrast and brightness setting or select another picture setting with the Smart Picture
key on the remote control.
• Check the transmission system’s colour settings on this set.
Poor picture
• Poor picture quality sometimes occurs when an S-VHS camera or camcorder has been connected
to the side panel (AV3) of the TV when another peripheral is connected to AV1 or AV2 simultane-
ously. In this case, switch off one of the other peripherals.
Double images or “ghost” images
• High-rise building or hills may be obstructing reception. Try using a highly directional antenna to
improve the picture.
• Converge the picture using IntelliSense or Manual Converge.
NICAM sound distortion
(crackling noise)
• This could be due to antenna siting or reflected signal.
• Switch over to “MONO” by pressing the I-II key on the remote control.
If your problem is not solved, switch the TV off and then back on again once. Never attempt to repair a defective TV yourself. Check with
your dealer or call a TV technician.
Directions for Use
motpmyS odottahW
Page 21

4. Mechanical Instructions

Index of this chapter:
1. Disassembly Procedures
2. Service Position
3. Picture Tube Replacement
4. Re-assembly
Notes:
• Figures below can deviate slightly from the actual situation, due to the different set executions.
• Follow the disassembly instructions in described order.

4.1 Disassembly Procedures

All numbers, found in the following text, refer to the drawing below and apply to both the 46” and 55” models. Note:
• Not all shown items are available for all models.
• If you are servicing a PWB or speaker, you do not need to
remove the plastic Upper Back Cover (4).
Mechanical Instructions
EN 21DPTV355 4.
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4.1.1 Lower Center Back Cover Removal (86)

1. Remove all screws (B and C).
2. Remove the Lower Center Back Cover.

4.1.2 Side Back Cover Removal

Remove all screws (F) from each of the Side Back Covers (some prying may be necessary to dislodge covers).
Note: This allows access to the Side Jack Panel and to the Left and the Right Speakers.

Figure 4-1 Exploded view

4.1.3 Large Signal Board Removal (LSB)

Note: See for the location of the panels figure "PWB location"
in Chapter 1 "Technical Specifications, Connection Facilities, and Chassis Overview".
1. Disconnect all cables.
2. Remove three screws from the center of the PWB and pull
three tabs on the right of the bracket.
3. Lift the right side of the LSB and slide the panel up and out.

4.1.4 AC Input Panel Removal

1. Disconnect all cables.
Page 22
EN 22 DPTV3554.
Mechanical Instructions
2. Remove four screws from the PWB.
3. Lift the AC Input Panel up and out.

4.1.5 Small Signal Module Removal (SSM)

1. Remove three screws along the rear of the chassis frame.
2. Remove two screws, which hold the chassis frame and are
located between the LSB and SSB panels.
3. Remove one screw, which holds the chassis frame and is located between the Input Power and LSB panels
4. Remove the rear Jack Panel cover (76).
5. Slide the Chassis assembly rearward to allow access to the
Module Bracket.
6. Remove the screws, which secure the Module Bracket, and release the cables.
7. Remove two screws from the centre of the SSM PWB.
8. Pull three tabs on the right of the panel bracket.
9. Lift the right side of the SSM, then move the SSM to the
right to remove it.

4.1.6 Side Jack Panel Removal

1. Remove the Left Side Back Cover (see procedure above excluding the Module Bracket removal).
2. Remove two screws from the panel.
3. Slide the Side Jack Panel PWB out of the bracket.

4.1.7 PIP Panel Removal (if present)

1. Remove the rear Jack Panel cover (76).
2. Remove three screws from the PIP panel.

4.1.8 Small Signal Board Removal (SSB)

4.1.12 Upper Back Cover Removal (4)

1. Remove all screws (A and B).
2. Lift the cover up to dislodge from pegs (J) and remove the
cover.

4.1.13 Plastic Light Barrier Removal (Optical Assembly)

Remove two screws (E) (one each at either end of the plastic light barrier).

4.1.14 Mirror Mounting Board Removal (57)

Remove all screws, located in the mirror mounting board brackets, and remove the board.
Note: Take care not to place fingerprints or smudges on the mirror.

4.1.15 Complete Optical Assembly or Individual CRT Assembly Removal

1. Remove the Plastic Light Barrier.
2. Disconnect the CRT panels, 2nd anode leads (at HVT),
and the yoke connectors from assemblies to be removed.
3. To remove the complete Optical Assembly, remove four
screws (G) and lift the assembly up and out.
4. To remove individual CRT assemblies, remove four screws
(H) from the desired assembly and lift the assembly up and out.
Caution: Do not disturb the focus assembly wing nuts, as this will misadjust mechanical focus.
First, remove the Module Bracket (see the chapter “Small Signal Module Removal”).
1. Release the metal retainer clips, located at the front and rear edges of the SIMM connector.
2. Tilt the SSB to the right and then pull it up.

4.1.9 Convergence Panel Removal (ACS)

First, remove the Module Bracket (see the chapter “Small Signal Module Removal”).
1. Carefully pull the ACS panel upward to separate it from the SSM connectors.
2. Disconnect the cable assemblies.

4.1.10 Wide Band Video Panel Removal (HOP)

First, remove the Module Bracket (see the chapter “Small Signal Module Removal”).
1. Remove the rear Jack Panel cover (76).
2. Disconnect the ribbon cable connectors.
3. Carefully separate the HOP panel from the SSM
connectors.

4.1.11 Front Control Panel and Left or Right Speaker Removal (5)

1. Remove the Left and Right Side Back Covers.
2. Remove the two screws (on either side) of the speaker
location.
3. Release two tabs on either side of the speaker baffle and pull the baffle forwards.
4. Loosen the ribbon cable and the grounding wire to allow working space.
5. Remove two screws to remove the Front Control Panel (4527).
6. Remove four screws each to remove the speakers (5208/
5206).
Caution: Do not use or add water as an alternative to the prescribed coupling fluid.

4.2 Service Position

1. Remove the Side Back Covers.
2. Remove the Front Speaker Baffle.
3. Remove the Front Control Panel.
4. Route the ribbon cable and the wire through opening and
into the back of the unit.
5. Reconnect the ribbon cable to the Front Control Panel.
6. Remove the Side Jack Panel to allow room for cable
movement.
7. Remove the rear Jack Panel cover (76).
8. Being careful with the PIP Panel, pull the Chassis Frame
out and tilt up.
9. Place the Chassis Frame on the bottom board of the PTV.

4.3 Picture Tube Replacement

Replacement of the cathode ray tube (CRT) and/or optical system components of a Projection TV (PTV) can be easily accomplished by following general guidelines. Use care when working around the CRT and optical systems of the PTV. The PTV light path encompasses a number of precision optical components. These include lenses, mirrors, the lenticular screen, and Fresnel lens. The PTV incorporates three separate CRTs, representing green, red, and blue outputs. Each CRT uses an independent deflection/convergence yoke, magnetic centring ring, coupler, C-element lens, and output lens (A/B lens). Each tube is mechanically fastened to a coupler which houses fluid (a glycol-type substance) used to cool the high temperatures generated by the small (7") CRTs. The fluid also provides an optical characteristic supporting the optical system of the PTV. When replacement of a CRT or optical component is required, caution must be exercised in preventing fluid spillage. The technician must carefully reassemble the CRT/ optical components, ensuring a proper seal of the coupling fluid. Use only factory original coupling fluid.
Page 23
Note: Upon completion of CRT/optical assembly repair, the centring, convergence, grey scale, mechanical and electrical focus adjustments are required. If more than one assembly requires repair, it is recommended the service technician fully complete one assembly at a time, using the existing assemblies as a reference for the alignment of the centring and convergence.
The following procedure should be used when performing repairs on the CRT/optical assemblies of the Projection TV.

4.3.1 Disassembly Procedure

A. Removal of a single CRT/Lens Assembly from the light rack
1. Remove AC power from the PTV.
2. Remove the upper and lower back covers (1/4" screws).
3. Remove the barrier board and the shield cover from around
the lens assemblies (1/4" screws).
4. Carefully remove the CRT Socket Board from the CRT of the CRT/optical assembly being serviced.
5. Remove the yoke and convergence plugs, of the CRT/ optical assembly being serviced, from the Large Signal Module.
6. Remove the high voltage anode lead from the HV splitter block on the Large Signal Module of the CRT/optical assembly being serviced. Remove ground lug connectors from the coupler frame.
7. Remove the four 1/4" screws that secure the CRT/lens assembly to the light rack. These four screws are located in each corner, on the top of the coupler assembly. Caution: Do not remove the bolts with pressure springs or the inverted Torx screws of the CRT/lens assembly. The removal of these components could result in fluid spillage into the PTV cabinet.
8. Carefully remove the CRT/Lens assembly from the PTV cabinet.

4.3.2 Servicing the CRT/Lens Assembly

Warning: Coupling fluid is a poisonous solution containing a
high concentration of ethylene glycol. Do not leave exposed fluid unattended. Prevent children or pets from coming into contact with the fluid. Clean up spills immediately.
Caution: Do not attempt any repairs on the CRT/optical block assembly without first removing the CRT coupling fluid. Removal of the delta output lens will result in spillage of the coupling fluid.
B. Removing the PTV Coupling Fluid
All repairs made to the CRT/optical block assembly require the removal of the coupling fluid. The following procedure describes how to remove the PTV coupling fluid.
1. Lay the CRT assembly on its side with the plug pointing up.
2. Remove the plug (X8).
3. Remove some of the fluid from the coupler to prevent
spillage when the CRT is removed. An empty coupling fluid bottle with a cone top is recommended to lower the fluid level within the coupler. Squeeze and hold the bottle and insert the tip of the cap into the drain hole of the coupler. Loosen the grip on the bottle, allowing the fluid to be pulled up into the bottle. Save the fluid.
4. Reinstall the plug (X8).
5. Stand the CRT assembly up with the neck of the CRT
pointing up.
6. With an awl or marking pen, outline the edges of the CRT onto the coupler. Note: The correct positioning of the CRT to the coupler is critical to the optimum performance of the optical system.
7. Remove the four CRT mounting bolts (A) (with springs and spacers) and remove the mounting bracket (D).
Mechanical Instructions
8. Remove the four CRT mounting ear screws.
Note: The CRT mounting ear screws are not used on some assemblies.
9. Gently remove any metal shavings from around the screw holes. Do not allow the metal shavings to get into the fluid. Note the position of the high voltage anode cap with respect to the coupler.
10. Carefully remove the CRT from the coupler. Wipe any excess fluid from the faceplate of the CRT. Set the CRT aside.
11. Use an empty coupling fluid bottle to extract the remainder of the fluid from the coupler. Note: Complete removal of the coupling fluid is not necessary when only replacing the CRT.
12. Clean any remaining fluid from the coupler and the CRT gasket channel using absorbent tissue. Refer to "C". Cleaning the Coupler, C-element Lens, and CRT Faceplate procedure if the fluid is discoloured or contaminated.
13. Make all necessary repairs.
C. Cleaning the Coupler, C-Element Lens, and CRT Faceplate
1. Remove CRT coupling fluid as described in steps B1 through B13.
2. Using denatured alcohol on a cloth made of 100% cotton or a lens cleaning tissue, gently clean the C-element (fisheye) lens, coupler and the CRT faceplate. Thoroughly clean the coupler assembly, including the expansion chamber bladder, and allow to fully dry. Caution: Do not use soap or detergent type substances to clean the coupler and its related assemblies. Water can be used as an alternative to denatured alcohol, but the assemblies must be completely dry before reassembly of the coupler and the addition of the coupling fluid. A hair dryer may be used to dry the coupler and its assemblies before reassembly. If contaminated fluid is discovered, the coupler and its related assemblies must be completely disassembled and cleaned to prevent a reoccurrence.
3. Replace the CRT and C-element lens gaskets.
4. Reassemble the C-element lens and the output lens to the
coupler.
5. Refer to "Replacing the CRT Coupling Fluid" upon completion of necessary repairs and cleaning of the optical/coupler assemblies.
D. Replacement of the CRT
1. Remove CRT coupling fluid as described in steps B1 through B13.
2. Remove the plastic protective coating (if present) from the faceplate of the replacement CRT.
3. Refer to "Replacing the CRT Coupling Fluid" to complete the CRT replacement.
E. Repair or Replacement of the Optical/Coupler Assembly
1. Remove CRT coupling fluid as described in steps B1 through B13.
2. Remove the four inverted-type Torx screws, which secure the Delta output lens to the coupler. An inverted-type Torx socket can be purchased using part number 4835 395
17303.
3. Removal of the Delta output lens will allow access to the C­element lens, C-element gasket, coupler, and its assemblies.
4. Refer to "Replacing the CRT Coupling Fluid" upon completion of necessary repairs to the optical/coupler assemblies.
F. Replacing the PTV Coupling Fluid
Notes:
• Before replacing the CRT coupling fluid, ensure the expansion chamber bladder is fully collapsed. This can be easily inspected by viewing the bladder through the small hole on the expansion chamber assembly. If the rubber of
EN 23DPTV355 4.
Page 24
EN 24 DPTV3554.
the bladder is not easily visible through the small hole, then the bladder may be considered collapsed and fluid can be added. If the rubber of the expansion chamber bladder is visible at the hole of the expansion chamber, then replacement of the expansion chamber bladder is required.
• The CRT coupling fluid is critical to the optical performance of the PTV. Use only part number 4835 310 67032 (3 bottle kit) or 4835 310 67031 (1 bottle) to ensure the optical integrity and performance reliability of the PTV when replacing the CRT coupling fluid.
1. Reinstall the CRT gasket into the gasket channel of the coupler. Confirm the placement of the CRT, C-element lens, and vent plug gaskets.
2. Place the CRT onto the coupler with the high voltage anode lead positioned as marked in step 10 of procedure B.
3. Carefully position the CRT onto the coupler, using the outline defined in step 6 of procedure B as a reference.
4. Start the CRT mounting ear screws but do not tighten them.
5. Tighten the CRT mounting ear screws in a star pattern (like tightening lug nuts on the wheel of a car). Make sure the CRT does not shift position from the outline defined in step B6. Caution: do not over tighten the CRT ear screws (the CRT mounting ear screws are not used on some assemblies).
6. Install the CRT mounting bracket and start the four CRT mounting bracket bolts with springs.
7. Tighten the bolts in a star pattern.
8. Lay the CRT assembly on its side with the plug pointing up.
9. Remove the plug.
10. Using the PTV coupling fluid bottle with the cone top, refill
the coupler with fluid through the drain access hole. Completely fill the coupler chamber so the fluid is level with the top of the coupler at the plug. Wipe any excess fluid from around the coupler.
11. Reinstall the plug and check for any fluid leaks.
12. Install the repaired CRT/optical block assembly into the
PTV and perform any necessary adjustments.
Mechanical Instructions

4.4 Set Re-assembly

To re-assemble the whole set, execute all processes in reverse order.
Note: While re-assembling, make sure that all cables are placed and connected in their original position
Page 25
Service Modes, Error Codes, and Fault Finding

5. Service Modes, Error Codes, and Fault Finding

EN 25DPTV355 5.
Index of this chapter
1. Test Conditions
2. Service Modes
3. ComPair
4. Error Codes
5. The "Blinking LED" Procedure
6. Trouble Shooting Tips

5.1 Test Conditions

The chassis is equipped with test points printed on the circuit board assemblies. They refer to the diagram letters. The numbering is in a logical sequence for diagnostics. Always start diagnosing (within a functional block), in the sequence of the relevant test points for that block.
Measurements should be performed under the following conditions:
• Service Default Mode.
• Video: Colour Bar Signal.
• Audio: 3 kHz left, 1 kHz right.

5.2 Service Modes

Service Default Mode (SDM) and Service Alignment Mode (SAM) offer several features for the service technician, while the Customer Service Mode (CSM) is used for communication between a Philips Customer Care Centre (P3C) and a customer.
There is also the option of using ComPair, a hardware interface between a computer (see requirements below) and the TV chassis. It offers the ability of structured troubleshooting, test pattern generation, error code reading, software version readout, and software upgrading. Minimum requirements: a Pentium processor, Windows 95/ 98, and a CD-ROM drive (see also paragraph “ComPair”).

5.2.1 Service Default Mode (SDM)

Introduction
The Service Default Mode (SDM) is a technical aid for the service technician. The Service Default Mode (SDM) establishes fixed, repeatable settings of customer controls, which allow consistent measurements to be made. The SDM also initiates the blinking LED procedure and, if necessary, overrides the 5 V protection.
The SDM places the set in the following pre-defined conditions:
• Tuning frequency set to channel 3.
• Volume level set to 25% (of the maximum volume level).
• Other picture and sound settings set to 50% (mid-range).
The following functions are turned OFF while in SDM:
• Timer
• Sleep timer
The following functions are disabled during SDM (and enabled after leaving SDM):
• Parental lock
• Blue mute
• Hospitality Mode
• No-ident Timer (normally the set is automatically switched
off when no video signal (IDENT) is received for 15 minutes).
All other controls operate normally.
How to enter SDM
To enter the Service Default Mode, press the following key sequence on the remote control transmitter 0-6-2-5-9-6­MENU. Do not allow the display to time out between entries while keying the sequence. Upon entry into the Service Default Mode, the letters "SDM" will be displayed at the upper right corner of the screen.
Special SDM functions
• Access to normal user menu: Pressing the "MENU" button on the remote control switches between the SDM and the normal user menus (with the SDM mode still active in the background).
How to exit SDM
To exit the Service Default Mode, enter “0” twice or press the Power button.
Note: To save the error codes, unplug the AC power cord without turning off the set. When the power is turned back on, the Service Default Mode will still be active.

5.2.2 Service Alignment Mode (SAM)

The Service Alignment Mode (SAM) is used to align the set and/or adjust the option settings and to display/clear the error code buffer values.
How to enter SAM
• To enter the Service Alignment Mode (SAM), press the following key sequence on the remote transmitter: 0-6-2­5-9-6-[i+]. Do not allow the display to time out between entries. After entering SAM with this method a service warning will appear on the screen, you can continue by pressing any digit key on the RC.
• Use the DST-emulation feature of ComPair.
• Press the ALIGN button on the DST while the set is in the
normal operation
After entering this mode, “SAM” the following menu structure will appear on the screen:
Page 26
EN 26 DPTV3555.
OPERATION HOURS
HARDWARE INFO
ERRORS
DEFECTIVE MODULE
RESET ERROR BUFFER
ALIGNMENTS
DEALER OPTIONS
SERVICE OPTIONS
STORE
FUNCTIONAL TEST
DUAL SCREEN
PIP/DUAL SCREEN
TXT/EPG DUAL SCREEN
YES NO
NO YES
PERSONAL OPTIONS
PICTURE MUTE
VIRGIN MODE
AUTO STORE MODE
TXT PREFERENCE
TELETEXT
LIGHT SENSOR
2D COMB FILTER
NO YES
NO YES
MOV PDC-VPS TXT PAGE PDC-VPS-TXT
FLOF TOP
PIXEL PLUS
VIDEO
REPRO
Service Modes, Error Codes, and Fault Finding
LUM DEL
LUM DELAY PAL I
GROUP 1
GROUP 2
STORE OPTIONS
YES NO
YES NO
YES NO
SOURCE
SELECTION
LUMA GAIN
IF PRIME AFC
TUNER AGC
TUNER AGC TUNER 2
BLEND INTENSITY
AUDIO
REPRO
TUNER TYPE
GENERAL
IF AFC
35
80
20
8
16
MISCELLANEOUS
NO YES
TEDE9 UV1316
38.0 IF
LUM DELAY PAL BG
LUM DELAY SECAM
LUM DELAY BYPASS
7
7
7
6
OPT NO
GDE SAM
OK
SWID:GDE ERR:
DISPLAY MODE
SERVICE BLANK
GEOMETRY
PICTURE
WHITE TONE
CLAMP PULSE
CONV PROC
GDE SAM
1.26 INPUT 480p
75HZ
OFF
>
>
>
NORMAL
ENABLED
CL 36532079_056.eps
031203
Figure 5-1 SAM menu (Example)
Contents of SAM
• OPERATION HOURS. Displays the accumulated total of
operation hours (not the standby hours).
• HARDWARE INFO – ROM VERSION. Displays the date of the software and
the software version of the ROM (example: EM5EU1_1.0_01234 = AAABBC_X.Y_NNNNN).
• AAA= the chassis name.
• BB= the region: EU= Europe, AP= Asia Pacific
PAL/Multi, AN= Asia Pacific NTSC, US= USA, LT= LATAM.
• C= the language cluster number.
• X.Y= the software version, where X is the main
version number (different numbers are not compatible with one another) and Y is the sub version number (a higher number is always compatible with a lower number).
• NNNNN= last five digits of 12nc code software.
– SW VERSION RDS RADIO. Displays the software
version of the RDS radio (if RDS radio is present).
• ERRORS (followed by maximal 10 errors). The most recent error is displayed at the upper left (for an error explanation see paragraph “Error Codes”).
• DEFECTIVE MODULE. Here the module that generates the error is displayed. If there are multiple errors in the buffer, which are not all generated by a single module, there is probably another defect. It will then display the message “UNKNOWN” here.
• RESET ERROR BUFFER. When you press the “OK” button, the error buffer is reset.
• ALIGNMENTS. This will activate the “ALIGNMENTS” sub- menu.
• DEALER OPTIONS. Extra features for the dealers.
• SERVICE OPTIONS. Extra features for Service.
• INITIALIZE NVM: Not Accessible
• STORE. All options and alignments are stored when
pressing the “OK”-button
• FUNCTIONAL TEST. All devices are tested via the “OK” button. Eventual errors are displayed in the error buffer. The error buffer is not erased, the content returns when this test is terminated.
• DAILY MENUS. With the “OK” button, you can go to the
normal user menu. SAM is still active in the background. With the “MENU” button, you return from the user menu to SAM menu. This feature can be helpful to quickly change some settings in the user menu.
How to navigate
Menu items may be selected using the cursor UP/DOWN keys. The selected item will be highlighted. When not all menu items will fit on the screen, pressing the cursor UP/DOWN keys on the remote transmitter will display the next/previous menu items.
With the cursor LEFT/RIGHT keys, it is possible to:
• Activate/deactivate the selected menu item (e.g. TUNER)
• Change the value of the selected menu item (e.g. VER-
SLOPE)
• Activate the selected submenu (e.g. SERV-BLK)
Access to normal user menu Pressing the "MENU" button on the remote control switches between the SAM and the normal user menus (with the SAM mode still active in the background). Pressing the "MENU" key in a submenu will return the screen to the previous menu.
Menu and Sub-menu Definitions Clear Errors: Erases the contents of the error buffer. Select the CLEAR ERRORS menu item and press the LEFT or RIGHT cursor key. The contents of the error buffer are cleared.
The functionality of the OPTIONS and ALIGNMENTS (TUNER, WHITE TONE, GEOMETRY, SOUND, and SMART SETTING) sub-menus are described in the "Alignments" section (chapter
8).
How to exit SAM
To exit the Service Alignment Mode, enter ”0” twice or press the Power button.
Note: To save the error codes, unplug the AC power cord without turning off the set. When the power is turned back on, the Service Alignment Mode will still be active.
Page 27
Service Modes, Error Codes, and Fault Finding
EN 27DPTV355 5.

5.2.3 Customer Service Mode (CSM)

Purpose
When a customer is having problems with his TV-set, he can call his dealer. The service technician can then ask the customer to activate the CSM, in order to identify the status of the set. Now, the service technician can judge the severity of the complaint. In many cases, he can advise the customer how to solve the problem, or he can decide if it is necessary to visit the customer. The CSM is a read only mode; therefore, modifications in this mode are not possible.
How to enter CSM
Use one of the following methods:
• Press the 'MUTE' button on the RC-transmitter
simultaneously with the 'MENU' button on the TV (top control) for (at least) 4 seconds.
• Key in the code '123654' via the standard RC transmitter.
Note: Activation of the CSM is only possible if there is no (user) menu on the screen!
How to navigate
By means of the 'CURSOR-DOWN/UP' knob on the RC­transmitter, you can navigate through the five menus.
Contents of CSM
Customer Service Menu 1
• SOFTWARE VERSION (example: EM6EU1-1.0_01234).
Displays the built-in software version. In case of field problems related to software, software can be upgraded (for more details, see paragraph Software downloading). You will find details of the software versions in the chapter “Software Survey” of the “Product Survey - Colour Television” publication. This publication is generated four times a year.
• FEATURE BOX. The 12NC-number of the built-in Feature
Box software
• SET TYPE. This information is very helpful for a helpdesk/
workshop as reference for further diagnosis. In this way, it is not necessary for the customer to look at the rear of the TV-set.
• CODE 1. Gives the latest five errors of the error buffer. As
soon as the built-in diagnose software has detected an error the buffer is adapted. The last occurred error is displayed on the leftmost position. Each error code is displayed as a 3-digit number. When less than 10 errors occur, the rest of the buffer is empty (000). See also paragraph Error Codes for a description.
• CODE 2. Gives the first five errors of the error buffer. See
also paragraph Error Codes for a description.
• VOLUME. Gives the last status of the volume as set by the
customer. The value can vary from 0 (volume is minimum) to 100 (volume is maximum). Volume values can be changed via the volume key on the RC-transmitter.
• BRIGHTNESS. Gives the last status of the brightness as
set by the customer. The value can vary from 0 (brightness is minimum) to 100 (brightness is maximum). Brightness values can be changed via the “CURSOR LEFT” and “CURSOR RIGHT” keys on the RC-transmitter after pressing the “MENU” button and selecting “PICTURE” and “BRIGHTNESS”.
• CONTRAST. Gives the last status of the contrast as set by
the customer. The value can vary from 0 (contrast is minimum) to 100 (contrast is maximum). Contrast values can be changed via “CURSOR LEFT” and “CURSOR RIGHT” keys on the RC-transmitter after pressing the “MENU” button and selecting “PICTURE” and “CONTRAST”.
• COLOUR. Gives the last status of the colour saturation, as
set by the customer. The value can vary from 0 (colour is minimum) to 100 (colour is maximum). Colour values can
be changed via “CURSOR LEFT” and “CURSOR RIGHT” keys on the RC-transmitter after pressing the “MENU” button and selecting “PICTURE” and “COLOUR”.
• HUE. Only relevant for NTSC-signals (e.g. some NTSC-
DVD-discs).
Customer Service Menu 2
• SHARPNESS. Gives the sharpness value. The value can
vary from 0 (sharpness is minimum) to 7 (sharpness is maximum). In case of bad antenna signals, a too high value of the sharpness can result in a noisy picture. Sharpness values can be changed via the “CURSOR LEFT” and “CURSOR RIGHT” keys on the RC-transmitter after pressing the “MENU” button and selecting “PICTURE” and “SHARPNESS”.
• HEADPHONE VOLUME. Gives the last status of the
headphone volume, as set by the customer. The value can vary from 0 (volume is minimum) to 100 (volume is maximum). Headphone volume values can be changed via the “CURSOR LEFT” and “CURSOR RIGHT” keys on the RC-transmitter after pressing the “MENU” button and selecting “SOUND” and “HEADPHONE VOLUME”.
• DOLBY. Indicates whether the received transmitter
transmits Dolby sound (“ON”) or not (“OFF”). Attention: The presence of Dolby can only be tested by the software on the Dolby Signaling bit. If a Dolby transmission is received without a Dolby Signaling bit, this indicator will show “OFF” even though a Dolby transmission is received.
• SURROUND MODE. Indicates the by the customer
selected surround mode (or automatically chosen mode). In case the set is a Non-Dolby set, there will be displayed “0”. If it is a Dolby-set then is displayed: “STEREO”, “3 STEREO”, “HALL”, “3DSURROUND”, “DOLBY PRO LOGIC”, or “DOLBY DIGITAL”. These settings can be influenced after pressing the “MENU” button and selecting “SOUND” and SURROUND MODE”. It can also have been selected automatically by signaling bits (internal software).
• TUNER FREQUENCY. Indicates the frequency the
selected transmitter is tuned to. The tuner frequency can be changed via the “CURSOR LEFT” and “CURSOR RIGHT” keys for fine tune after opening the installation menu and selecting “INSTALL” and “MANUAL INSTALL”.
• FRONT L TRIM. Indicates the difference between main volume and volume of front left speaker. Change via: 'MENU', 'SETUP', 'SPEAKERS', and 'FRONT LEFT VOLUME'. The value can vary from '-10' to '+10'
• FRONT R TRIM. Indicates the difference between main volume and volume of front right speaker. Change via: 'MENU', 'SETUP', 'SPEAKERS', and 'FRONT RIGHT VOLUME'. The value can vary from '-10' to '+10'
• DIGITAL OPTION. Gives the selected digital mode, “100 HZ”, “DIGITAL SCAN”, “NATURAL MOTION”, “DOUBLE LINES”, or “PIXEL PLUS”. Change via “MENU”, “PICTURE”, “DIGITAL OPTIONS”.
• CENTRE TRIM. Indicates the difference between main volume and volume of centre speaker. Change via: “MENU”, “SETUP”, “SPEAKERS”, and “CENTRE VOLUME” (not available when “Surround Mode” is set to “STEREO” or “HALL”). The value can vary from “-10” to “+10”
• TV SYSTEM. Gives information about the video system of the selected transmitter.
– BG: PAL BG signal received. – DK: PAL DK signal received. – I: PAL I signal received. – L/La: SECAM L/La signals received. – M: NTSC M signal received with video carrier on 38.9
MHz.
Customer Service Menu 3
• BALANCE. Indicates the balance settings, between “-50” and “+50”. Change via “MENU”, “SOUND”, and “BALANCE”. Not applicable for Dolby Pro Logic sets.
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EN 28 DPTV3555.
Service Modes, Error Codes, and Fault Finding
• CENTRE MODE. Indicates if centre mode is set “ON” or
“OFF”. When centre mode is on, all TV speakers are used as one centre speaker. Change Centre mode via “MENU”, “SETUP”, “SPEAKERS”, and “CENTRE MODE”.
• DNR. Gives the selected DNR setting (Dynamic Noise
Reduction), “OFF”, “MINIMUM”, “MEDIUM”, or “MAXIMUM”. Change via “MENU”, “PICTURE”, “DNR”
• NOISE FIGURE. Gives the noise ratio for the selected
transmitter. This value can vary from 0 (good signal) to 127 (average signal) and to 255 (bad signal). For some software versions, the noise figure will only be valid when “Active Control” is set to “medium” or “maximum”.
• SOURCE. Indicates which source is used and the video/
audio signal quality of the selected source. (Example: Tuner, Video/NICAM) Source: “TUNER”, “EXT1”, “EXT2”, “EXT3”, “EXT4”, “SIDE”, “AV1”, “AV2”, “AV3” or “AV4”. Video signal quality: “VIDEO”, “S-VIDEO”, “RGB 1FH”, “YPBPR 1FH 480P”, “YPBPR 1FH 576P”, “YPBPR 1FH 1080I”, “YPBPR 2FH 480P”, “YPBPR 2FH 576P”, “YPBPR 2FH 1080I”, “RGB 2FH 480P”, “RGB 2FH 576P” or “RGB 2FH 1080I”. Audio signal quality: “STEREO”, “SPDIF 1”, “SPDIF 2”, or “SPDIF”.
• AUDIO SYSTEM. Gives information about the audio
system of the selected transmitter: “ANALOGUE MONO”, “ANALOGUE STEREO”, “PCM 2/0”, “DD 1/0”, “DD 2/0 LtRt”, “DD 2/0 L0R0”, “DD 2/1”, “DD 2/2”, “DD 3/0”, “DD 3/ 1”, “DD 3/2”, “DD 1+1”, “MPEG 1/0”, “MPEG 2/0”, “MPEG 2/0 LtRt”, “MPEG 2/1”, “MPEG 2/2”, “MPEG 3/0”, “MPEG 3/1”, “MPEG 3/2”, “MPEG 1+1” or “MPEG 2+2”.
• TUNED BIT. Gives information about the tuning method of
the stored pre-set. If a channel is found via “automatic installation”, you will see the value “Yes”. When you change this (automatically found) frequency via “fine tune” adjustment (installation menu - manual installation), the displayed value will change to “No”. Therefore, when you see the value “No” in this line, it is an indication that the received channel is a non-standard signal (e.g. of a VCR).
• SURROUND SPEAKERS. Indicates if the surround
speakers are present “YES” or “NO”. Change via “MENU”, “SETUP”, “SPEAKERS”, and “SURROUND SPEAKERS”.
• ON TIMER. Indicates if the “On Timer” is set “ON” or “OFF”
and if the timer is “ON” also displays start time, start day and program number. Change via “MENU”, “TV”, “FEATURES”, and “ON TIMER”.
• PRESET LOCK. Indicates if the selected preset has a child
lock: “LOCKED” or “UNLOCKED”. Change via “MENU”, “TV”, “FEATURES”, “CHILD LOCK”, and “CUSTOM LOCK”.
Customer Service Menu 4
• CHILD LOCK. Indicates the last status of the general child
lock: “UNLOCK”, “LOCK”, or “CUSTOM LOCK”. Change via “MENU”, “TV”, “FEATURES”, “CHILD LOCK”, and “LOCK”.
• AGE LOCK. Indicates the last status of the EPG rating for
child lock: “OFF”, “4 YEARS”, “6 YEARS”, “8 YEARS”, “10 YEARS”, “12 YEARS”, “14 YEARS” or “16 YEARS”. This is only displayed if child lock is set to “CUSTOM LOCK”
• LOCK AFTER. Indicates at what time the child lock is set:
“OFF” or e.g. “18:45” (lock time). This is only displayed if child lock is set to “CUSTOM LOCK”
• CATEGORY LOCK. Indicates the last status of the EPG
theme childlock: “MOVIES”, “NEWS”, “SHOWS”, “SPORTS”, “CHILDREN”, “MUSIC”, “CULTURE”, or “SERIES”. This is only displayed if child lock is set to “CUSTOM LOCK”. It is possible that more than one value is shown.
• PROGRAM CATEGORY. Indicates the theme of the
selected transmitter: “MOVIES”, “NEWS”, “SHOWS”, “SPORTS”, “CHILDREN”, “MUSIC”, “CULTURE”, or “SERIES”.
• TV RATINGS LOCK. Only applicable for US.
Customer Service Menu 5
• V-CHIP MOVIE STATUS. Only applicable for US.
• OPTIONS 1. Gives the option codes of option group 1 as
set in SAM (Service Alignment Mode).
• OPTIONS 2. Gives the option codes of option group 2 as
set in SAM (Service Alignment Mode).
SW Event-log
This item contains 'software event logging' information that can be delivered to the development centre on special request.
How to exit CSM
Use one of the following methods:
• Press a key on the remote control transmitter with exception of the 'CHANNEL', 'VOLUME' and digit (0-9) keys)
• Press the ‘POWER’ button on the remote control transmitter or on the TV set.

5.3 Problems and Solving Tips (related to CSM)

Note: Below described problems are all related to the TV
settings. The procedures to change the value (or status) of the different settings are described above. New value(s) are automatically stored.

5.3.1 Picture Problems

Snowy/noisy picture
1. Check line 24 'Noise Figure'. In case the value is 127 or higher, and the value is high on other programs, check the aerial cable/aerial system.
2. Check lines 11 'Sharpness' and 24 'Noise Figure'. In case the value of line 11 is 3 or 4 and the value of line 24 is high (127 or higher), decrease the 'Sharpness' value.
Picture too dark
1. Press 'Smart Picture' button on the RC-transmitter. In case the picture improves, increase the 'Brightness' or the 'Contrast' value. The new value(s) are automatically stored (in 'personal' pre-set) for all TV channels.
2. Check line 7 'Brightness' and 8 'Contrast'. If the value of line 7 is low (< 10) or the value of line 8 is low (< 10), increase the 'Brightness' or the 'Contrast' value.
Picture too bright
1. Press 'Smart Picture' button on the RC-transmitter. In case the picture improves, decrease the 'Brightness' or the 'Contrast' value. The new value(s) are automatically stored (in 'personal' pre-set) for all TV channels.
2. Check lines 7 'Brightness' and 6 'Contrast'. If the value of line 7 is high (> 40) or the value of line 8 is high (> 50). Decrease the 'Brightness' value or increase the 'Contrast' value.
White line around picture elements and text
1. Press 'Smart Picture' button on the Remote Control. In case the picture improves, decrease the 'Sharpness' value. The new value is automatically stored (in “personal” pre­set) for all TV channels.
2. Check line 11 'Sharpness'. Decrease the 'Sharpness' value. The new value is automatically stored for all TV channels.
No picture
Check line 27 'Tuned bit'. In case the value is 'On', install the required program again. Open the installation menu and perform manual installation.
Blue picture
No proper signal is received. Check the aerial cable/aerial system.
Page 29
Service Modes, Error Codes, and Fault Finding
EN 29DPTV355 5.
Blue picture and/or unstable picture
A scrambled or decoded signal is received.
Black and white picture
Check line 9 'Colour'. In case the value is low (< 10), increase the 'Colour' value. The new value is automatically stored for all TV channels.
No colours/colour lines around picture elements or colours not correct or unstable picture
Check line 20 'TV System'. If a “strange” system pops up, something has gone wrong during installation. Re-install the channel.
Menu text not sharp enough
1. Press 'Smart Picture' button on the RC-transmitter. In case picture improves, decrease the contrast value. The new value(s) are automatically stored for all TV channels.
2. Check line 8 'Contrast'. The value of line 8 is high (> 50). Decrease the contrast value.

5.3.2 Sound Problems

No sound from left and right speaker
Check line 6 'Volume'. The value is low. Increase the value of 'Volume'. The new value(s) are automatically stored (in “personal” pre-set) for all TV channels.
Sound too loud for left and right speaker
Check line 6 'Volume'. The value is high. Decrease the value of 'LS Volume'. The new value(s) are automatically stored (in “personal” pre-set) for all TV channels.

5.4 ComPair

5.4.1 Introduction

ComPair (Computer Aided Repair) is a service tool for Philips Consumer Electronics products. ComPair is a further development on the European DST (service remote control), which allows faster and more accurate diagnostics. ComPair has three big advantages:
• ComPair helps you to quickly get an understanding on how to repair the chassis in a short time by guiding you systematically through the repair procedures.
• ComPair allows very detailed diagnostics (on I is therefore capable of accurately indicating problem areas. You do not have to know anything about I yourself because ComPair takes care of this.
• ComPair speeds up the repair time since it can automatically communicate with the chassis (when the microprocessor is working) and all repair information is directly available. When ComPair is installed together with the SearchMan electronic manual of the defective chassis, schematics and PWBs are only a mouse click away.

5.4.2 Specifications

2
C level) and
2
C commands
2
can access the I and receive I
C bus of the television. ComPair can send
2
C commands to the micro controller of the television. In this way, it is possible for ComPair to communicate (read and write) to devices on the I of the TV-set.
• Manually (by asking questions to you): Automatic
diagnosis is only possible if the micro controller of the television is working correctly and only to a certain extends. When this is not the case, ComPair will guide you through the faultfinding tree by asking you questions (e.g. Does the
screen give a picture? Click on the correct answer: YES / NO) and showing you examples (e.g. Measure test-point I7 and click on the correct oscillogram you see on the oscilloscope). You can answer by clicking on a link (e.g.
text or a waveform picture) that will bring you to the next step in the faultfinding process.
By a combination of automatic diagnostics and an interactive question / answer procedure, ComPair will enable you to find most problems in a fast and effective way.
Beside fault finding, ComPair provides some additional features like:
• Up- or downloading of pre-sets.
• Managing of pre-set lists.
• Emulation of the Dealer Service Tool (DST).
• If both ComPair and SearchMan (Electronic Service
Manual) are installed, all the schematics and the PWBs of the set are available by clicking on the appropriate hyperlink. Example: Measure the DC-voltage on capacitor C2568 (Schematic/Panel) at the Mono-carrier. – Click on the 'Panel' hyperlink to automatically show the
PWB with a highlighted capacitor C2568.
– Click on the 'Schematic' hyperlink to automatically
show the position of the highlighted capacitor.

5.4.3 How To Connect

1. First, install the ComPair Browser software (see the Quick Reference Card for installation instructions).
2. Connect the RS232 interface cable between a free serial (COM) port of your PC and the PC connector (marked with 'PC') of the ComPair interface.
3. Connect the mains adapter to the supply connector (marked with 'POWER 9V DC') of the ComPair interface.
4. Switch the ComPair interface 'OFF'.
5. Switch the television set 'OFF' with the mains switch.
6. Connect the ComPair interface cable between the
connector on the rear side of the ComPair interface (marked with 'I
2
C') and the ComPair connector at the rear side of the TV (situated below the tuner input, see also chapter 1).
7. Plug the mains adapter in a mains outlet, and switch the interface 'ON'. The green and red LEDs light up together. The red LED extinguishes after approx. 1 second while the green LED remains lit.
8. Start the ComPair program and read the 'Introduction' chapter.
2
C busses
ComPair consists of a Windows based faultfinding program and an interface box between PC and the (defective) product. The ComPair interface box is connected to the PC via a serial or RS232 cable. In case of the EM5E chassis, the ComPair interface box and the TV communicate via a bi-directional service cable via the service connector.
The ComPair faultfinding program is able to determine the problem of the defective television. ComPair can gather diagnostic information in two ways:
• Automatic (by communication with the television):
ComPair can automatically read out the contents of the entire error buffer. Diagnosis is done on I
2
C level. ComPair
Page 30
EN 30 DPTV3555.
Service Modes, Error Codes, and Fault Finding
Note: By leaving SDM or SAM via the Mains switch, the error buffer will not be reset.

5.5.4 Error codes

EXTERNAL 2
L
R
AUDIO EXTERNAL 1
SERVICE
CONNECTOR
PC VCR I2CPower
9V DC
Figure 5-2 ComPair Interface connection

5.4.4 How To Order

ComPair order codes:
• Starter kit ComPair32/SearchMan32 software and ComPair interface (excl. transformer): 3122 785 90450.
• ComPair interface (excluding transformer): 4822 727
21631.
• Starter kit ComPair32 software (registration version): 3122 785 60040.
• Starter kit SearchMan32 software: 3122 785 60050.
• ComPair32 CD (update): 3122 785 60070 (year 2002,
3122 785 60110 (year 2003).
• SearchMan32 CD (update): 3122 785 60080 (year 2002), 3122 785 60120 (year 2003).
• ComPair interface cable: 3122 785 90004.
• ComPair firmware upgrade IC: 3122 785 90510 (only for
sets with software upgrade facilities).
• Transformer Europe / AP: 4822 727 21632.
Note: If you encounter any problems, contact your local support desk.

5.5 Error Codes

5.5.1 Introduction

The error code buffer contains all errors detected since the last time the buffer was erased. The buffer is written from left to right. When an error occurs that is not yet in the error code buffer, the error code will appear at the left side and all other errors shift one position to the right.

5.5.2 How to read the error buffer

Use one of the following methods:
• On screen via the SAM (only possible when you have a picture). Examples:
– ERR: 0 0 0 0 0 0 0 : No errors detected. – ERR: 6 0 0 0 0 0 0 : Error code 6 is the last and only
detected error.
– ERR: 9 6 0 0 0 0 0 : Error code 6 was first detected and
error code 9 is the last detected (newest) error.
• Via the "blinking LED" procedure, if no picture is available. See explanation of "The blinking LED procedure" below.

5.5.3 How to clear the error buffer

The error code buffer will be cleared in the following cases:
• By activating "CLEAR ERRORS" in the SAM menu.
• By exiting SDM or SAM with the "Standby" command on
the remote control.
• Upon automatic reset, when the content has not changed for 50 consecutive hours.
CL96532156_029.eps
190600
In case of non-intermittent faults, clear the error buffer before starting the repair. This to ensure that "old" error codes are no longer present. Before clearing the buffer, write down the content, as the history can give you valuable information. If possible, check the entire content of the error buffer. In some situations, an error code is only the result of another error code, and not the actual cause (e.g. a fault in the protection detection circuitry can also lead to a protection).
Table 5-1 Error Code Table
Error Device Description
1 M24C32 NVM (1) 7011 SSB Control B5 3 SAA4978 Picnic 7713 SSB Feature
4 Supply 5V 5V Protection SSB +5V Supply B3a 5 Supply 8V 8V Protection SSB +8V Supply B3a 6 Slow I2C bus
blocked
8 TDA9320 HIP Video
13 UV1316/
TEDE9
14 MSP3411/
3412/3452
15 UPD64083 3D Combfilter
16 FBX Feature Box
18 Fast I2C bus
blocked
21 M62320P PIP I/O
22 TDA888X PIP BOCMA 7301 DW/PIP F4 23 TELE9 PIP Tuner 7201 DW/PIP F2 24 SAB9081 PIP Muppet 7801 DW/PIP F1 26 SAA4992 Falconic 7718 SSB +3V3 (FBX) B3b 27 Eagle Eagle 7724 SSB +3V3 (FBX) B3c 32 Flash RAM
(EPG)
100 TDA8177 GDE Vertical
101 TDA8177 GDE Horizontal
102 TDA8444T GDE DAC failure 7800 HOP H1 103 SAA5667H HDS-GDE
104 TDA9331H GDE HOP failure 7600 HOP H1 105 SAA5667H GDE I2C failure I2C bus ACS ACS 106 SAA5667H GDE
107 SAA5667H GDE
108 SAA5667H GDE Reception
109 SAA5667H GDE Display
110 BA7657H GDE AV Switch 7110,
111 SAA5667H GDE System
112 SAA5667H GDE non Critical
114 CXA2089S SSM AV Switch
1) This error must start the Blinking LED procedure when it occurs.2) This error has the highest priority, so if other errors occur simultaneously, this error should go first.
Blinking LED (2) I2C bus SSB
Processing Tuner Protection 1106 SSM Tuner S1
ITT Sound Processor
protection
Protection Blinking LED I2C bus SSB
Expander
Flash RAM (EPG)
Output
failure
communication Failure
Communication Failure
Transmission failure
failure
Config failure
failure
Error
Error
Item number Module Diagram
Box
7323 SSB IF I/O B2
7651 SSB Audio
Module
7023 3D Comb
Module
7711 SSB +3V3 (FBX) B3
7403 DW/PIP F3
7012 Control B5
7600 HOP H1
7600 HOP H1
I2C bus ACS ACS
Serial
ACS ACS
bus
Serial
ACS ACS
bus
Serial
ACS ACS bus Serial
ACS ACS bus
HOP H2 7210 Serial
ACS ACS bus Serial
ACS ACS bus 7017 SSM S1
B3a
B6
CB1
Note: Error codes 1,2, 3, and 4 are protection codes, and in this case, the supplies of some circuits will be switched "off". Also, in protection, the LED will blink the number of times equivalent to the most recent error code.
Page 31
Service Modes, Error Codes, and Fault Finding
EN 31DPTV355 5.

5.6 The Blinking LED Procedure

5.6.1 Introduction

The contents of the error buffer can also be made visible through the "blinking LED" procedure. This is especially useful when there is no picture.
When the SDM is entered, the LED will blink the number of times equal to the value of the error code. – The ON/OFF indicator going out for 500 ms precedes all
error code sequences. (There is a possibility of up to 10.)
– After the 500 ms delay, the ON/OFF indicator will slowly
flash the first number of the first code.
– This immediately follows by rapid flashes for the second
number in the first code. If an error code is smaller than 10, the ON/OFF indicator will rapidly flash 1-9 times to indicate the code. (EXP. Six rapid flashes indicate an error code of
6.)
– There will be a delay of approximately 3 seconds between
codes.
– For error codes of 10 and higher, the ON/OFF indicator will
slowly flash the correct number of times to indicate the first digit, and will then rapidly flash the correct number of times to indicate the second digit. (EXP. Three slow flashes followed by six rapid flashes indicate an error code of 36.)
– When all error-codes are displayed, the sequence is
finished and the ON/OFF indicator turns OFF for 300 ms. At this point the sequence will begin again as indicated by the ON/OFF indicator turning ON for 300 ms and repeating all error codes.
Example: 112 024 036 0 0
After entering SDM: – The sequence will begin by the ON/OFF indicator turning
off for 500 ms.
– Then slowly blink 11 times followed by two rapid blinks
(indicating error code 112).
– Next the LED will pause for 300 ms followed by 2 slow
blinks follow by 4 rapid blinks, (indicating error code 024).
– Next the LED will pause for 300 ms, then slowly blink 3
times followed by 6 rapid blinks (indicating error code 36).
– Then pause 300 ms ending the sequence in this example. – If there were error codes in positions 4 and 5, those
sequences would also be given.
Note: If errors 1, 2, 3, or 4 occur, the LED always blinks indicating the last error that occurred, even if the set is not in service mode.
Checking the Screen voltage from the Focus G2 block will indicate whether the High voltage circuit is working or not. Horizontal and Vertical drive from the HOP panel must be present for the High voltage to be present. Horizontal drive should be present on Pin 9 of 1510 and Vertical drive should be present on Pin 3.

5.7.3 No Picture

If Audio is present but there is no Picture, press the Index button on the Remote control. If OSD is present, High voltage is working and the CRT drive circuits are working. If the signal is NTSC, YUV from the SSM is fed to the HOP on connector
1250. YUV from the SSB can be checked on Pins 25, 24, and 23 of connector 1020.

5.7.4 No Audio

The Audio amplifier is located on the SSM. The Audio is powered by a supply located on the Large Signal panel. This voltage can be checked on Pins 10 and 11 of connector 1516. These voltages will measure a plus 23 and a minus 23 Volts. Speaker output can be checked on connector 1349. A Centre Channel Amp switch panel will be present on the Core models

5.7 Trouble Shooting Tips

5.7.1 Introduction

Before the set can be repaired to a component level, it is necessary to determine which board is defective. The Wiring interconnect diagram is a useful tool for this (see chapter 6).

5.7.2 Dead set

The Standby Power supply and Rectifiers are located on the Input panel. Control for power On/Off is performed by the Microprocessor located on the SSB. This Processor is powered by the 5 Volt standby voltage from the Input Panel. For a Dead Set condition, check the 5 Volt standby supply on Pin 1 of 1102. If this voltage is present, check the Standby line on Pin 3. This line will be approximately 2.6 Volts in standby and zero Volts when the set is turned "on". If the Standby line goes Low, check the 130 Volt source on Pin 8 of connector 1518. If this voltage is present, the Full Power supply on located on the Large Signal panel is working. If the Picture is not present but audio is, the High voltage or video drive circuits may have failed.
Page 32
EN 32 DPTV3555.
Personal Notes:
Service Modes, Error Codes, and Fault Finding
Page 33

6. Wiring Diagram.

Wiring Diagram

R G2
R FOCUS
1504
FOCUS
G G2
G FOCUS
B G2
B FOCUS
321
1002
4
HV MODULE
1 2
3
1501
4
1 2
3
1502
4
1 2
3
1503
4
123
4
1102 1202
HORIZ_HI HORIZ_LO
VERT_HI
VERT_LO
HORIZ_HI HORIZ_LO
VERT_HI
VERT_LO
HORIZ_HI HORIZ_LO
VERT_HI
VERT_LO
1
1108
4
12345
GND_HANCSTARTUPNCRAWDC 12345
FOCUS G2 BLOCK
DF
DF-RET
1 2
3
DAG
+200V
GND
FIL
123
LSB
YOKES
RED
GREEN
BLUE
1500
1500
INPUT FILTER
STANDBY POWER SUPPLY
1110 GND
Wiring Diagram.
DAG
1201
1202
1207 1210
12354
+8
BIAS
+12
G1 4
1516
1518
1102
1510
12
11
10 9 8 7
6 5
4 3
2 1
1
2
3 4 5 6
7 8
9 10
11 12
1
2
3 4 5 6
7 8
9 10
11 12
1
2
3 4 5 6
7 8
9 10
11 12
BLUE CRT BOARD
B AKB
GND
GND
-V_AUDIO
+V_AUDIO
GND +35V
+22V +22V GND-C
GND-C
-22V
-22V
-35V
VERT VERT
FLASH
HBLANK DEF-GND
VFB
GND NC STANDBY
+5V_STBY +130V
GND PWR_FAIL
GND +15V
+5VSTBY GND
STANDBY GND +15V GND
+5V2 +5V2
GND GND
+9V +9V
ABL
GND
EWO EHT
GND HDR
SCO
HFP DPC
+200V
GND
FIL
312
1212
123
BLUE
GND
GND
G1 4
1204
+8V
1
1
BIAS
2
2
3
3
+12V
1217
4 5
12
11
10 9 8 7
6
1516
5
4 3
2 1
1
2
3 4 5 6
7
1518
8
9 10
11 12
GND G AKB
1207
4 5
1
2
3 4 5 6
7 8
9 10
11 12
142
GND
+200VG1FIL
DAG
213
1201
1202
GREEN CRT BOARD RED CRT BOARD
+8
BIAS
+12
12345
1721 1720 1711 1710 1701 1700
123456789
GND
1510
AV1
Y
V
L
Pb Pr
R
TUNER
1102
3
5
6987101112
1
4
1210
123
GND
GND
B AKB
1950
HF
SCL
+5V
ACS CONTROL MODULE
3D FRAME COMB
OUTPUT
V-OUT
L-OUT
R-OUT
GND2+200V
G1
FIL
G2G2
3
4
1212
1204 1204
GND
GRN
GND
BLUE
GND
123
SDA
GND
+8V
-15V
+12V
SSM
AV2
V L
R
1003 GND
33DPTV355 6.
+8V
1
1
BIAS
2
2
3
3
+12V
1217
4 55
12354
132
HD O
1681
1303
123
CVBS_PIP
123
1207
4
GND G AKB
HOP MODULE
1250 1610
45687
GND
GND
VD O
U-SSB
12501950
1020
1
1
HFB
2
2
GND
VFB
3
3
1
Y-OUT
GND
2
COUT
3 4
GND
5
CVBS
1272 1222
142
GND
CVBS_TER_OUTNCGND
1
0272 0200
TUNER
DAG
1201
GND 123
V-SSB
1000
1681
1303
253
3
1
2G14
1202
GND
GRN
9
GND
GND
Y-SSB
FBL-TXT
1098765432
SSB
3
C_TO-PIP
4
GND
1043
312
4
586
GND
BTXT
GTXT
RTXT
1401
123456789
5
GND
Y-CVBS_TO-PIP
SDA
142
142
3
0205
FIL
+200V
GND
123
1212
1210
123
GND
RED
21345
RI2
GI2
1610
7109
GND
RXD
GND
1201
SCL
GND
STATUS1_PIP
3
0201
5
698710
G2
4
RED CONV
GND
YOKE
RV-OUT
RV-RET
RH-OUT
RH-RET
123
44231
1005 1006 1007
RED
G/Y
4
+5V
521
R/Pr
1
2
3 4
5
6
1682
7 8
9
10
+8V
+33V
GND
B/Pb
AUX5
Y-OUT
GND
U-OUT V-OUT
GND
Y-PIP+MAIN-IN
GND U-PIP+MAIN-IN
V-PIP+MAIN-IN
PIP_AUD_IN
10
GND
312
BI2
BL2
TXD
GND
1
VFB
SANDCASTLE
5
698710
HDR2003 US WIRING INTERCONNECT 06/26/03
GREEN CONV YOKE
GV-OUT
GV-RET
GND 3
H
PIP PANEL
AUX4 AUX5
GH-OUT
L
R
V
RGB IN
11
12
13
14
15
GH-RET
L
R
AUX4
6
7
8
9
10
BV-OUT 1
1
2
3
4
5
BLUE CONV YOKE
BV-RET
1010
1002
BH-OUT
BH-RET
324
1335
1344
1014
1349
Y/C_CVBS_SENSE_FRNT
1
Y_FRNT_SVHS
2
GND
3
Y_CVBS_FRNT
4
GND
5
C_FRNT_SVHS
6
7
GND L_FRNT
8
GND
9
R_FRNT
10 10
L_HP_AMP
1
GND
2
R_HP_AMP
3
1
+5V_STBY KEYBOARD
2 3
GND
4
NC
5
ON-OFF-LED
6
NC RC5
7
1
RIGHT
2
GND
3
GND N/C
4 5
LEFT
1
2 3
1349
4 5
KOREAN SETS ONLY
3D FRAME COMB
1
2 3
4 5 6
7 8 9
1
2 3
1335
SIDE JACK
1344
PANEL
GND
1
2 3
4 5
1014
6
7
CENTER CHANNEL AMP SWITCH
CORE VERSION ONLY
1
2 3
4 5 6
7 8 9
1
2 3
4 5 6
1009 1008
7 8 9
GND
FRONT CONTROLS
GND
CVBS GND
NC GND
GND
C-OUT GND
Y-OUT
GND
SDA_1 GND
SCL_1 GND
+9V
GND +5V
+5V
1321
1
2 3
4 5
B-SC1-IN_U-IN
R-SC1-IN_VIN
C-SC2_SVHS-IN
CVBS-SC2_MON-OUT
CVBS_TER_OUT
FRAMEDRIVE-
LIGHT SENSOR
SOUND_ENABLE L-SC2_AV2-IN
Y-CVBS_FRONT-IN (NU)
HEADPHONE-L L-CL_VL-OUT
ON-OFF-LED
KEYBOARD
W
W
SENSOR
SENSOR
GND
1
SENSOR 2
SENSOR 3
SENSOR 4
SENSOR
GND
SENSOR
GND
SENSOR
GND
IF-TER
V-SSB Y-SSB
+3.3V
SCL-IN
AUDIO-L
T
T
1
3
GND
5
7
9 11
13 15
AGC GND
17
19
NC
21
NC
23 25 27
GND
29
31
NC NC
33
NC
35 37
39
NC
41
NC
+9V
43
45
+5V
47
49
51 53
NC
55
GND
57
NC
59
NC
61
63
NC
65 67
69
71
GND
73
NC
75
77
79
1
2 3
1010
4
1
2
ACS CONTROL MODULE
3
1011
4
1000/1020
1000
1001
2
G-SC1-IN_Y-IN 4
6
Y-CVBS-SC2_AV2-IN
8
GND 10
NC 12
GND
14
GND 16
CVBS-PIP_TUN1-2-CVBS-IN
STATUS_1_PIP-AFT_50-60HZ
18
NC
20
GND
22
U-SSB
24
H-SSB
26
VSYNC-SSB
28
GND
30
32
HBLANK 34
NC
36
STANDBY 38
IRQ
+5VSTBY
40
42
GND 44
+3.3V
+3.3V
46 48
SDA-IN
PWR_FAIL
50
L-SC1_AV1-IN
52
GND
54
NC
56
R-SC2_AV2-IN
58
R-SC1_AV1-IN
60
FRONT DETECT
62
C_FRONT-IN (NU)
64
66
NC 68
HEADPHONE_R 70
R-CL_VL-OUT
NC
72
AUDIO_SW
74
AUDIO-R
76 78
RC5 80
NC
1
SCL_A_TXD
2
SDA_A_RXD
3
GND
4
SCL_C H SYNC
5
SDA_C
6
GND
7
R
8 9
GND
10
G
11
GND
B
12
GND
13 14
FB
15
GND
1
GND
2
+9V
3
GND
4
-8V STANDBY
5
VBLANK
6
HBLANK
7
GND
8 9
RV
10
RH
11
GV
GH
12
BV
13 14
BH
15
GND
CL 36532079_086.eps
161203
+5V
Page 34

I2C-IC Overview

IIC
OTC
B5
88
87
7001
SAA5801H
SET
PROCESSOR
3064-D5
3064-C6
+5V2_CON
3044
7012 M29W400BT FLASH RAM
EPG
ERR
32
+5V2_CON
3069
SDA-F
SCL-F
ERR
Wiring Diagram.
I/O, VIDEO PROC.
B2
3376
18
3377
47 46
7323
TDA9320H
HIP
ERR
8
AUDIO
B6
DEMODULATOR
3656
3655
21
7651
MSP3452G
AUDIO
DECODER
ERR
14
PICNIC
B3A
3710
SDA-D SCL-D SN-DA-E SN-CL-E
54
SAA4978H
PICNIC
SDA-F
SCL-F
7713
ERR
3
3709
1
2
34DPTV355 6.
B3C
EAGLE
9741-D5
32 26
7724
T8F24EF
EAGLE
ERR
27
9741-C6
+5V
3758
SN-DA
SN-CL
B3B
FALCONIC
26 27
SAA4992
FALCONIC
7718
ERR
26
AUTO CONVERGENCE
ACS2
PANEL
7100
SAA5667HL
uP
ERR
103
ERR
105
ERR
106
ERR
107
ERR
108
ERR
109
ERR
111
ERR
112
+5V2_CON
3064-B7
86
3064-A8
85
91
SDA
92
SCL
7011
M24C32
(NVM)
EEPROM
+5V
3206
84
83
+5V
3208
+5V
3210
28
13
+5V2-CON
3079
+3V3-INTOTC
3001 3002
56
ERR
1
+5V
3207
SDA-C
3205
3204
SCL-C
+5V
3209
SDA-A
3203
3202
SCL-A
43084307
+5V
3211
SDA-B
SCL-B
3088
1000
6
4
SDA-S
SCL-S
N.C.
ERR
SIM.
B1
CONN.
5918
5912
6
SMALL SIGNAL MODULE
S6
1000
SDA-C
6
SCL-C
4
SDA-C
AUTO CONVERGENCE
ACS1
5 6
7000
M24128
EEPROM
SMALL SIGNAL MODULE
S6 S6
1000 1205
48
49
4004
9016
SDA-IN
SCL-IN
H1 H2
1950
1950
5
4
7021
5
4
+3V3 +3V3
3011
9031
9030
SCL-C
5 6
7001
M24128
EEPROM
OPTIONAL
SMALL SIGNAL MODULE
S1
1028
1
2
3
COMPAIR
CONNECTOR
FOR SERVICE
HOP PANEL
SDA-2
SCL-2
3965
11
7600
TDA9331H
HOP
ERR
104
7020
3012
3966
10
7022
+3V3 +3V3
7024
3115
1106
ENV56
TUNER
ERR
13
3955 3956
4 3
7800
TDA8444T
DAC
ERR
102
+3V3
3013
3114
45
3010
7023
3014
9027 9026
3131 3130
7017
CXA2089S
SWITCH
ERR
114
HOP PANEL
1111
SDA
12
SCL
11
7
7002
STV2050A
CONVERGENCE
PROCESSOR
8
9
3233
N.C.
SDA-IN
SCL-IN
SDA-IN
SCL-IN
SDA-IN
SCL-IN
SDA-C
SCL-C
SSM
SSM
1201
1009
1033
S6
12
10
1
2
2
4
8
6
F3
0201
1009
TO MMI N.C.
CB1
I/O PROCESSING
SDA
1
SCL
2
3431
3432
23
7403
M6232OP
I/O
EXPANDER
ERR
21
3D COMB FILTER
SDA-1
2
SCL-1
4
3082
3083 SDA
SCL
Error Device Description Item number Module Diagram
1 M24C32 NVM (1) 7011 SSB Control B5 3 SAA4978 Picnic 7713 SSB Feature Box B3a 4 Supply 5V 5V Protection SSB +5V Supply B3a 5 Supply 8V 8V Protection SSB +8V Supply B3a 6 Slow I2C bus blocked Blinking LED (2) I2C bus SSB
8 TDA9320 HIP Video Processing 7323 SSB IF I/O B2 13 UV1316/ TEDE9 Tuner Protection 1106 SSM Tuner S1 14 MSP3411/3412/3452 ITT Sound Processor 7651 SSB Audio Module B6 15 UPD64083 3D Combfilter protection 7023 3D Comb Module CB1 16 FBX Feature Box Protection 7711 SSB +3V3 (FBX) B3 18 Fast I2C bus blocked Blinking LED I2C bus SSB 21 M62320P PIP I/O Expander 7403 DW/PIP F3 22 TDA888X PIP BOCMA 7301 DW/PIP 23 TELE9 PIP Tuner 7201 DW/PIP 24 SAB9081 PIP Muppet 7801 DW/PIP 26 SAA4992 Falconic 7718 SSB +3V3 (FBX) B3b 27 Eagle Eagle 7724 SSB +3V3 (FBX) B3c 32 Flash RAM (EPG) Flash RAM (EPG) 7012 Control B5
100 TDA8177 GDE Vertical Output 7600 HOP H1 101 TDA8177 GDE Horizontal failure 7600 HOP H1 102 TDA8444T GDE DAC failure 7800 HOP H1 103 SAA5667H HDS-GDE communication Failure I2C bus ACS ACS 104 TDA9331H GDE HOP failure 7600 HOP H1 105 SAA5667H GDE I2C failure I2C bus ACS ACS 106 SAA5667H GDE Communication Failure Serial bus ACS ACS 107 SAA5667H GDE Transmission failure Serial bus ACS ACS 108 SAA5667H GDE Reception failure Serial bus ACS ACS 109 SAA5667H GDE Display Config failure Serial bus ACS ACS 110 BA7657H GDE AV Switch 7110, 7210 HOP H2 111 SAA5667H GDE System failure Serial bus ACS ACS 112 SAA5667H GDE non Critical Error Serial bus ACS ACS 114 CXA2089S SSM AV Switch Error 7017 SSM S1
1) This error must start the Blinking LED procedure when it occurs.
2) This error has the highest priority, so if other errors occur simultaneously, this error should go first.
F1
5024
5025
DW PANEL
3852 3854
7801
SAB9081
PIP
CONTROL-
LER
ERR
24
3067
3068
7374
UPD6408GF
60
59
F2
UV1316/AI-2
7023
COMB
FILTER
ERR
15
TUNER
3267 3268
45
7201
TUNER
ERR
23
IF-VIDEO-
F4
SYNC
3330 3329
7301
TDA8885
BOCMA
ERR
1718
22
CL 36532079_088.eps
F4 F2 F1
191203
Page 35

Supply Lines Overview

Wiring Diagram.
35DPTV355 6.
MAINS SWITCH
AC INPUT PANEL
FILTER FILTER
1104 1106
141
4
1
1000
4 1
1002
4
1
7,8
11,12
5
3
STANDBY
+5V_STBY POWER FAIL
+35
-35
+22
-22
+V_AUDIO
-V_AUDIO
+130V
1102
1014
1
+5V_STBY
+5V2
+9V
1518
1518
+15V
7610812
6710812
6
8
1
3000 47K
1516
8
1
816210
1516
6034 33V
7106
6102
7103
3011 100
TUNER
11
11
STANDBY
+8V-HOP
+12V
6004
7017 SWITCH
2
+8V
HORIZ OUTPUT
BLANKING AND SHUTDOWN
7105
SMALL SIGNAL PANEL
+33V +8V
+5V-PIP
9
8 77
0201
9
8
PIP
0201
1020
40
45
43
36
SSB
1000
7101
-22V
7104
-12V
5V
8V
-12V
7102
12V
3.3V
3 7
9
1950
8
1721
1
+8V
3
+12V
ACS
1001
2
7007
4
5V
3.3V
7006
-8V
HOP
5
HORIZONTAL POWER UP
+13V
-13V
7811 VERTICAL OUTPUT
7
7700 AUDIO AMPLIFIER
4
7044 CONVERGENCE AMPLIFIER HORIZONTAL
7045 CONVERGENCE AMPLIFIER VERTICAL
VERTICAL POWER UP
1102
STANDBY SUPPLY
POWER ON SWITCH
RECTIFIERS
+5V_STBY
+5V2
+9V
+15V
160V
1500
135
KEY BOARD
STARTUP
160V
HOT GND
1
3
5
1
FULL POWER SUPPLY
1500
+130V
+15V
-200V HVG-ON
3
LARGE SIGNAL
PANEL
5904 HVG
HV
FOCUS
DYNAMIC FOCUS
G1
+200V
FILAMENT
1202
413
413
1202
3
1207
BLUE CRT GREEN CRT
+12V
+8V
1
1
+200V
3
FIL
1212
4
G1
+8V
1
+12V
33
1217
1
3
1202
4
1
1207
1212
1217
1
+200V
FIL
3 4
G1
+8V
1
+12V
3
1
3
1202
4
1
3
1207
RED CRT
CL 36532079_051.eps
161203
Page 36
Circuit Diagrams and PWB Layouts

7. Circuit Diagrams and PWB Layouts

Auto Convergence Panel

36DPTV355 7.
8
+3.3V
+5V
1K0
3082
+3.3V
33p
15K
2019
10n
3016
10K
3021
10K
1n5
15K
3022
1n5
2018
10n
2017
A
B
C
D
E
F
G
H
ACS1
1000
S15B-JL-R
1 2 3 4 5 6 7 8
9 10 11 12 13 14 15 16 17
4
AUTO CONVERGENCE PANEL
+5V
7000
8
M24128-MN6
EEPROM
16Kx8
7
WC NC
65
SDASCL
4
+5V NOT USED 7001
8
M24128-MN6
SDA_B
SCL_B
SYNC_H
SYNC_V
Reset_ST
F101
F104
F106
F102
3-K2,2-G13
3-K2,2-G13
3-J2,2-H13
3-J2,2-H13
2-H2,2-N13
3-I8,2-H2
3-E2
3-C11
3-F11
3-D11
3-G5
3-H11
2-K13
SCL_A_Txd SDA_A_Rxd
3-G5
SCL_C HORIZ_SYNC
SDA_C
R
G
B
BLANK
EEPROM
16Kx8
7
WC NC
65
SDASCL
4
+3.3V
10K
3011
BC857B 7021
3012
10K
BC857B
7024
3013
F700
4K7
53
1
3079
2 3
10K
1 2 3
3010
10K
7020 BC847B
BC847B 7023
+3.3V
4K7
3014
I
2K2
2022
120p
3027
J
F112
2004
VBLNK HBLNK
RV RH GV GH BV BH
F114
2006
1001
K
S15B-JL-R
1 2 3 4 5 6 7 8
L L
9 10 11 12 13 14 15 16 17
+9V
16V10u
100n
2001
16V10u
2003
100n
2021
120p
3025
-8V
5K6
3024
F116
F117
3026
2K2
7026 BC847B
1K5
3032
3029
5K6
2024
120p
3030
3031
2K2
7027 BC847B
1K5
NVM_wc_N
4000
4001
7022 BC847B
F709
BC857B 7025
2023
1K5
2-N13
120p
2025
61
1002
WRITE PROTECT
7036 BC847B
3080
F707
F708
+3.3V
4K7
3028
120p
1K0
3033
1
BC857B
7028
BC847B
+3.3V
4K7
7037
SYNC_H
+3.3V
7
3081
1K0
3083
1K0
2016
3020
82K
F727
F728
3023
2020
SYNC_V
2026
120p
9
6000
BAS216
7006
LD1117DT33C
32
OUTIN
COM
100n
2010
1
+3.3V
5005
7 SDAO
8 SDAI
9 SCLS
71 ADS0
3015
10K
2002
1 SDAM
2 SCLM
21 OSCL
22 GRES
25 FLT2
24
27
28 SYNV
13 REST
11 TEST
40 TBU0
39 TBU1
38 TBU2
37 TBU3
36 TBU4
10n
35 TBU5
34 TBU6
33 TBU7
10 VBLK
75 MLIN
74 OPTT
72
F774
F002 F003
10u
2011
2040
390n
5006
FILT
SYNH
ECLK14
OPTI
47
+3.3V
16V10u
2014
100n
2009
5
12
VCCQ
2
I C
SLAVE
2
I C
MASTER
400 KHz
2 I C
OSC.
PLL
VERT.
FILTER
BUS EXPANDER
TIMEBASE
DAC
TIMING
GRID
GNDA59GNDB67GNDC
1003 GND
2034
73
VCCN
PLL
MEMORY
GNDD
20 23
100n
LOGIC
REGISTER
1
100n
2013
2029
100n
6
32
VCCL
VCCM
MEM CTRL
DAC ENABLE
START LOGIC
SYS CLK
SYSTEM RESET VSYNC
BUS
2
I C
PARALLEL
BUS
GNDF43GNDG41GNDH
VCCK
1110
+9V
2030
100n
100n
2031
2015
100n
44
42
31
VCCJ
VCCH
RED MEM
GREEN
MEM
BLUE MEM
FOCUS
PROC.
FOCUS
29
M
3005
2-N13
ON_OFF
N
Ref Des
3135_037_10241_01 NAFTA Manual Conv FN2
3045 NOT USED
O
7001 NOT USED NOT USED
P
100R
2005
100p
6006
BAS216
3135_037_10251_01 3135_037_11391_01 NAFTA Auto Conv FN1
NOT USED NOT USED NOT USED 319802151030
3135_037_11381_01 2K3 NAFTA Manual Conv FN5
NOT USED NOT USED 932211746668
2K3 NAFTA Auto Conv FN6
RESERVED FN0
10K
EEPROM M24128-MN6 F 16Kx8
3-H8
2-C3
2-C3
2-C3
TBU0
3-I8,2-J13
TBU1
TBU2
OPTT
BLANK_ST
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
26
VCCG
2028
100n
VCCF
GNDJ4GNDK30GNDL
76
100n
2012
19
POLATION
OFFSET
GNDM
+5V
-8V
12
6001
BAS216
7007
L78M05CDT
13
COM 2
1u0
2007
2032
2035
100n
2033
100n
100n
50
70
VCCA62VCCB
VCCD
VCCC
INTER-
GAIN/
LOOP
011111h
VIDEO
PATTERN
GEN.
GNDN56GNDP3GNDQ
53
15
3045
10K
NOT USED
OUTIN
100n
2041
VERT
FILTER
HOR.
FILTER
GNDI
3043
PORT
10u 16V
6
6
INTERF.
4
4
4
5K6
BC857B
3044
10K
100n
2008
D
14
D
14
D
14
D
14
D
14
D
14
D
D
BANDGAP
D
D
D
7038
13
F001
7002 STV2050A
A
A
A
A
A
A
A
A IREF
A
A
A
+5V
3042
5K6
DARH 52
REFC
OGAV 58
PORC 78
3041
7029
BC847B
14 15
66DARV
65DNRV
64DAGV
63DNGV
61DABV
60DNBV
51DNRH
49DAGH
48DNGH
46DABH
45DNBH
3035
69FOCS
10K
3036
68FOCR
10K
55
BAND GAP ADJUST
F754
1005
1
57OGAH
54REFN
77POUT
80PORA
79PORB
16VIDR
17VIDG
18VIDB
4K7
3040
33K
2027
3034
1K0
3-F8
BLUE_ST
3-D8
GRN_ST
120p
3-B8
RED_ST
2042
10p
8
4
8
4
2045
10p
2044
10p
8
4
8
4
2047
10p
2046
10p
8
4
8
4
2043
10p
7004-2 LM833D
7
7004-1 LM833D
1
7003-2
LM833D
7
7003-1
LM833D
1
7005-2
LM833D
7
7005-1
LM833D
1
17
162
3050
10K
3049
100R
3048
100R
3064
100R
3063
100R
3058
100R
3059
100R
3074
100R
3073
100R
3068
100R
3069
100R
3054
5
6
3
2
3065
10K
3060
10K
5
6
3
2
3075
10K
3070
10K
5
6
3
2
3055
100R
10K
3053
100R
3135 013 3233.6
1
2
3
6
7
8
9
10 11 17
14131245
15
16
18
3087
100R
10u
2054
100n
2055
3051
330R
3066
330R
3086
100R
10u
2053
2052
100n
3085
100R
10u
2050
100n
2051
3061
330R
3076
330R
3084
100R
10u
2049
2048
100n
3089
100R
10u
2059
2058
100n
3071
330R
3056
330R
3088
100R
10u
2057
100n
2056
RV
BC847B
-8V
BC847B
-8V
BC847B
GH
-8V
19
+9V
F004
F005
BC847B
BC847B
BC847B
3052
220R
F006
3067
220R
7033
F007
3062
220R
F008
3077
220R
7031
F009
3072
220R
F010
3057
220R
7035
7032
RH
+9V
BV
7030
BH
+9V
GV
7034
CL 36532079_014.eps
19
20
+5V
1004
B2B-EH-A
1 2
101103
2018
1000 E1 1001 L1 1002 B6
A
1003 B10 1004 B20 1005 J14 2001 K3 2002 K9
B
2003 L3 2004 K3 2005 O2 2006 L3
C
2007 B12 2008 B12 2009 F10 2010 C9 2011 C9
D
2012 F11 2013 E11 2014 E10 2015 F11 2016 H7
E
2017 L8 2018 K8 2019 J7 2020 K7 2021 K4
F
2022 J5 2023 K6 2024 M5 2025 L6 2026 M7
G
2027 J14 2028 E11 2029 F10 2030 E11 2031 F11
H
2032 E12 2033 F12 2034 E10 2035 E12 2040 E10
I
2041 F12 2042 B16 2043 N16 2044 G16 2045 F16
J
2046 K16 2047 J16 2048 J17 2049 J17 2050 G17
K
2051 G17 2052 F17 2053 F17 2054 B17 2055 B17 2056 N17 2057 N17 2058 K17 2059 K17 3005 N2
M
3010 F5 3011 G4 3012 G4 3013 H5
N
3014 H5 3015 H9 3016 H8 3020 H7 3021 H8
O
3022 K8 3023 J7 3024 L4 3025 L4 3026 K5
P
3027 J5 3028 K6 3029 M4
3030 M5 3031 L5 3032 L5 3033 M6 3034 J14 3035 I14 3036 J14 3040 M14 3041 M13 3042 M13 3043 M12 3044 N12 3045 N12 3048 C15 3049 C15 3050 B16 3051 C17 3052 C19 3053 N15 3054 M15 3055 M16 3056 M17 3057 M19 3058 G15 3059 G15 3060 G16 3061 H17 3062 H19 3063 F15 3064 F15 3065 F16 3066 E17 3067 E19 3068 K15 3069 K15 3070 K16 3071 L17 3072 L19 3073 J15 3074 J15 3075 J16 3076 I17 3077 I19 3079 B5 3080 C6 3081 C7 3082 C8 3083 E7 3084 I18 3085 G18 3086 E18 3087 B18 3088 M18 3089 K18 4000 B6 4001 C6 5005 F9 5006 F10 6000 B9 6001 112 6006 O2 7000 B4 7001 E4 7002 F13 7003- I17 7003-2
H17
7004-1
E17
7004-2
C16
7005-1
M17
7005-2
K17 7006 C9 7007 B12 7020 G5 7021 G4 7022 F6 7023 H5 7024 H4 7025 K6 7026 K4
7027 M5 7028 L6 7029 N13 7030 H18 7031 J19 7032 C18 7033 F19 7034 L18 7035 M19 7036 C6 7037 E7 7038 N13
Page 37

Auto Convergence Panel

Circuit Diagrams and PWB Layouts
37DPTV355 7.
ACS2
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
3135 013 3233.6
1
2 125
4
AUTO CONVERGENCE PANEL
+5V
2200
100n
74HCT4051
0
8X
2
G8
SHIELD
1234
4
7141
VCC
MDX
0 7
7
0002
2251
100u 16V
16
GNDVEE
8
ADC_GND
BOTTOM
SHIELD
0
1
2
3
4
5
6
7
2207
SYNC_H
SYNC_V
Reset_N
SENSOR MUX
1-O8
1-O8
1-O8
6405
F019
F020
F021
F022
2201
BZX284-C5V1
SHIELD
ADC_GND
TOP
TBU0
TBU1
TBU2
3405
-8V
150R
1-H2,2-N13
3-I8,1-H2
3-E2
11
10
9
6
3
2252
100n
100u 16V
F170
2205
56p
12M
1200
2204
56p
0001
SHIELD
1234
7
81
10
INPUT FROM
SENSOR
1010
41
21 42
43
48
47
46
52 68 74
16 17 18 22 24 13 28 29
76 78 79 80 83 84 81 82
100
93 94 95 96 97 98
1
2 4 5 6
44
54 59 25
58 57 56
51 50
ADC_GND
ADC_GND
F100
B4B-EH-A
B5B-EH-A
F142
F193 F194 F195 F196
1 2 3 4
1011
1 2 3 4 5
+5V
3206
4307
4308
3241
1K0
3220
1K0
3222
1K0
3215
100R
ADC_GND
F012
4K7
4K7
3K3
3207
3221
1K0
3230
100R
3K3
3208
3209
NOT USED
3294
3295
100R
100R
13
14
15
12
1
5
2
4
2206
100n
47u 16V
2223
3240
100n
24K
3229
3228
100R
100R
3234
F172
100R
2311
3296
3297
100R
100R
3298
100R
3299
3400
100R
3401
100R
100R
NOT USED
1K0
3213
7100
SAA5667HL
31
32
34
35
53
55
70
71
69
72
73
10n
61
20
14
9
10
19
85 86 87 88 89 90 91 92
49 40 39 38 27 26 23 15 67 66 65 64 37 36 8 7 77 3 33
45
CVBS0
CVBS1
SYNC_FILTER
IREF
HSYNC
VSYNC
XTALIN
XTALOUT
OSCGND
RESET
RESET
INTD
ALE
EA
RD
WR
PSEN
AD<0:7>
0
7
A<0:17>
0
14 A15_LN A16_LN A17_LN A15_BK
VSSC
VSSA
3011629912
VDDA
SENSOR_1
SENSOR_2
SENSOR_3
SENSOR_4
+3.3V
5200
75
63
VDDC
100u
FRAME
VDDP
MOVX_WR
MOVX_RD
P0<0:7>
P1<0:7>
P2<0:7>
PWM
P3<0:7>
ROMBK
RAMBK
VSSP
VPE1 VPE2
INT
SCL1 SDA1 SCL0 SDA0
TPWM
ADC
T2EX
PWM7
60
F015
F016
F017
F018
COR
R
G
B
VDS
RX
TX
2 3 4
T2
NT1
T0
INT0
T1
0 1 2 3 4 5 6
0 1 2 3
INT5
0 1 2
0 1
3210
NOT USED
119
+5V
3418
100R
2279
10u
2280
100n
7140-1 TL074C
3
4
1
2
11
2281
3419
-8V
100R
100n
2282
10u 16V
3K3
3K3
3211
3231
100R
3232
100R
7227
BF570
3291
33K
2250
3n3
3205
100R
3204
3203
100R
100R
3202
100R
3212
3214
100R
3216
100R
1K0
3233
100R
3225
3217
1K0
3235
1K0
100R
3218
3219
1K0
1K0
3226
22K
10K
3227
13 14
SAMPLE & HOLD
7140-2 TL074C
5
4
7
6
11
3-K2,1-D2
SDA_C
3-K2,1-D2
SCL_C
3-G2
SDA_A
3-G2
SCL_A
3-J2,1-F2
SDA_B
3-J2,1-G2
SCL_B
3-B10
RED_uP
3-D10
GRN_uP
3-E10
BLUE_uP
3-G10
BLANK_uP
3-H5
Rxd
3-G2
Txd
+3.3V
3-I8,1-O9
OPTT
+3.3V
+3.3V
1-D2
HORIZ_SYNC
+3.3V
1-H2,2-H2
SYNC_H
1-N1
ON_OFF
1-A5
NVM_wc_N
6230
3292
100R
BAS216
7540
BC847B
ADC_GND
+5V
6K8
3236
F013
10n
10K
2235
3237
+3.3V
2K2
3224
F014
3223
4K7
10n
2224
2253
ADC_GND
3293
1K0
IR
1018
1 2 3
B3B-EH-A
SH_CLEAR
KEYBOARD
1019
1 2
B2B-EH-A
15
163
7140-3 TL074C
10
4
3282
8
9
470n
100R
11
F011
6231
ADC_GND
17
BZX284-C5V1
18
3-J8
ADC_IN
3-I8
SH_CLEAR
196
20
A
B
C
D
E
0001 M4 0002 M5 1010 B8 1011 C8 1018 J14 1019 M14 1200 I4 2200 B5 2201 E3 2204 I4 2205 I4 2206 G5 2207 G5 2210 F16 2211 F16 2223 H5 2224 N14 2235 K13 2250 E11 2251 B5 2252 E4 2253 D15 2279 B11
3418 B11 3419 D11 4306 I17 4307 G9 4308 G9 5200 F7 6208 F16 6209 G17 6230 C14 6231 D16 6405 E3 7100 G6 7101 G16 7140-2
C13
7140-1
C11
7140-3
C15 7141 C4 7227 K11 7540 E14
2280 C11
2211
10u 16V
2210
100n
7
CLK CS_
6
DO
5
REF
+3.3V
7101
8 TLV0831CD
VCC
IN+
IN-
GND 4
+3.3V
1K0
3243
6208
BAS216
6209
BAS216
3242
1
100R
2
NOT USED
3
ADC_GND
F
G
H
2281 D11 2282 D11 2311 J5 3202 G12 3203 G12 3204 G12 3205 G12 3206 G9 3207 G9 3208 G10 3209 G10 3210 G10 3211 G11 3212 I12 3213 G6 3214 I12 3215 N9
4306
I
3216 I12 3217 J12 3218 J12 3219 J12 3220 M9 3221 M9
J
3222 M9 3223 M14 3224 M14 3225 J12 3226 K12
K
3227 K12 3228 I5 3229 H5 3230 M9 3231 J11
L
3232 K11 3233 I12 3234 I5 3235 J12 3236 J14
M
3237 K14 3240 H5 3241 K9 3242 G17
N
3243 F17 3282 D16 3291 E12 3292 C13 3293 E15
O
3294 B6 3295 B7 3296 C6 3297 D7 3298 D6
P
CL 36532079_015.eps
65
7
8
109
11
12
13
14
15
1623
17 18
19
101103
20
3299 D6 3400 D6 3401 E6 3405 E3
Page 38
Circuit Diagrams and PWB Layouts

Layout ACS Panel (Top Side)

38DPTV355 7.
0001 F7 1000 H8 1001 H3 1002 D3 1003 D2 1004 F11 1005 E6 1010 C11 1011 B11 1018 A6
A
B
C
1019 A5 1200 B8 1300 A9 1301 G5 1302 F11 2001 G1 2003 G2 2004 G1 2006 G2 2007 C2
1 2 3 4 5 6 7 8 9 10 11 12
2008 C3 2009 E5 2011 F4 2012 E5 2013 D5 2014 D4 2015 F5 2027 E6 2028 F5 2029 F5
2030 F6 2031 F6 2032 E7 2033 D6 2034 D5 2035 D6 2040 E4 2041 F4 2046 E8 2047 E8
2048 E10 2049 E10 2050 D10 2051 D10 2052 E9 2053 E9 2054 E9 2055 E9 2056 F10 2057 F9
2058 E9 2059 E9 2200 B9 2201 B9 2206 B7 2207 B7 2210 B6 2211 B6 2235 B7 2251 C10
2252 B10 2279 C3 2280 B4 2281 B4 2282 B3 2310 F10 2312 E10 2313 F11 2314 F10 2315 F10
3021 E4 3034 E6 3045 D4 3048 E7 3049 E7 3053 F8 3054 F7 3063 F8 3064 F7 3068 F8
3069 F7 3070 E8 3073 E8 3074 E7 3075 E8 3084 D9 3218 B6 3219 B6 3235 B7 3236 B8
3237 B7 3294 C11 3295 C11 3296 C11 3297 B11 3331 F9 3332 E10 3333 E10 3418 C4 3419 B5 4306 C6 5005 F6 5006 F5 5200 C7
A
6001 C3 6208 B6 6405 B9 7000 E3 7001 F3 7002 E5 7003 D9
B
7004 E8 7005 F9 7006 F4 7007 C3 7100 C8 7101 B6 7140 B4
C
7141 C10 7301 F10 c001 B10 c002 B10
D
E
F
G
D
E
F
G
H
CL 36532079_043.EPS
1 2 3 4 5 6 7 8 9 10 11 12
H
271103
Page 39
Circuit Diagrams and PWB Layouts

Layout ACS Panel (Bottom Side)

39DPTV355 7.
0002 F6 2002 E8 2005 H10 2010 E9 2016 E9 2017 F9 2018 F9 2019 F8 2020 F9 2021 G11 2022 G9
A
B
C
D
E
F
G
H
2023 G9 2024 G10 2025 G9 2026 G9 2042 E5 2043 F5 2044 D5 2045 E5 2204 B5 2205 B5 2223 C4
1 2 3 4 5 6 7 8 9 10 11 12
1 2 3 4 5 6 7 8 9 10 11 12
2224 B8 2250 B9 2253 B9 2311 C5 2317 H6 2318 H7 2319 G6 2320 G5 3005 H11 3010 D10 3011 D10
3012 D10 3013 E10 3014 D11 3015 D9 3016 D9 3020 E9 3022 F9 3023 F8 3024 G11 3025 G11 3026 G10
3027 G10 3028 G9 3029 G11 3030 G10 3031 G10 3032 G9 3033 G9 3035 E8 3036 E7 3040 C9 3041 C9
3042 C9 3043 D9 3044 D9 3050 D5 3051 E5 3052 E4 3055 F5 3056 F4 3057 F3 3058 D7 3059 D7
3060 D4 3061 D4 3062 E3 3065 E5 3066 F5 3067 D4 3071 E4 3072 F3 3076 D4 3077 D4 3079 E10
3080 F10 3081 F10 3082 F9 3083 F9 3085 D5 3086 E4 3087 E5 3088 E3 3089 E5 3200 B3 3201 B4
3202 C7 3203 D7 3204 D7 3205 D7 3206 D6 3207 D6 3208 C7 3209 C7 3210 B4 3211 C3 3212 D8
CL 36532079_044.EPS
271103
3213 C7 3214 D8 3215 C8 3216 D6 3217 D5 3220 D6 3221 D6 3222 D5 3223 B7 3224 B7 3225 B7 3226 B8 3227 B8 3228 B4 3229 B4 3230 B4 3231 B7
A
3232 B7 3233 C8 3234 C4 3240 C4 3241 C8 3242 C8 3243 C8
B
3282 B8 3291 B9 3292 B9 3293 C10 3298 B3 3299 B3 3306 F5
C
3307 F4 3308 F3
6309 G6 6310 H7 6311 H6 6312 G6 6313 G5 6314 G6 6315 G5 7014 G5 7015 G4 7016 G4 7017 G4 7020 D10 7021 D10 7022 D10 7023 E10 7024 E10 7025 G9 7026 G10 7027 G10 7028 G9 7029 C9 7030 D3 7031 D4 7032 E4 7033 E4 7034 E4 7035 F4 7036 F10 7037 F11 7038 D9 7227 B7 7540 B9
3309 G4 3314 G5 3315 G5 3316 G4 3317 G4
D
3322 H5 3323 H5 3324 H4 3325 H4 3326 G3 3327 F5 3328 G4 3329 G5
E
3348 G8 3349 G8 3350 G8 3351 G8 3400 B3 3401 B3
F
3405 C3 4000 E9 4001 F10 4300 H6 4301 H6 4302 G7 4303 G7 4304 G7
G
4305 G6 4307 B4 4308 C6 6000 E10 6006 H10 6209 B8
H
6230 B9 6231 B9 6308 G6
Page 40
Circuit Diagrams and PWB Layouts

Small Signal Board: SIM Connector (Male)

v21 G6
v1 G3 v2 G3 v3 G3 v4 G3 v5 G3
v6 G3 v7 G4 v8 G4 v9 G4 v10 G4
1 2 3 4 5 6 7 8 9 101112131415
v11 G5 v12 G5 v13 G5 v14 G5 v15 G5
v16 G5 v17 G6 v18 G6 v19 G6 v20 G6
v22 G6 v23 G7 v24 G7 v25 G7
v26 G7 v27 G7 v28 G7 v29 G8 v30 G8
v31 G8 v32 G8 v35 G9 v36 G9 v37 G10
v38 G10 v39 G10 v40 G10 v41 G10 v42 G10
SIM CONNECTOR ( MALE )
v43 G11 v44 G11 v45 G11 v46 G11 v47 G11
v48 G11 v49 G12 v50 G12 v51 G12 v52 G12
v53 G12 v54 G12 v55 G12 v56 G13 v57 G13
v58 G13 v59 G13 v60 G13
v62 G14
v63 G14 v64 G14 v65 G8 v71 G12 0001 C1
0002 C1 0003 C1 0004 C2 0005 D1 0006 D1
0007 D1 0008 D2 0009 E1 0010 E1 0011 E1
0012 E2 0013 E2 1000 H2 2900 G14 2901 G13
40DPTV355 7.
2902 G14 2903 G14 2904 G10 2905 G8 2906 G9
2907 G5 2908 G1 2909 G1 2910 G1 2911 G2
2912 G2 5900 F1 5901 F1 5902 F2 5903 F2
5904 F2 5910 F14 5911 F14 5912 F9 5913 F13
5914 F14 5915 F8 5917 F10 5918 F9v61 G13 5919 F10
5920 F5 6926 D4 6927 E4 6928 E4 6929 E5
6956 D4 6957 D5 9901 F3 9902 F3 9903 F3
9904 F3 9905 F3 9906 F4 9907 F4 9908 F4
9909 F3 9910 G3 9911 G3 9912 G3 9913 G3
9914 G3 9915 G4 9916 G4 9917 G4 9918 G2
9919 F5 9920 F5 9921 F5 9922 G5 9923 G5
9924 G5 9925 D6 9927 F5 9928 F6 9929 F7
9930 G5 9934 G5 9935 F8 9936 G8 9937 F11
9938 F11 9939 F12 9940 G11 9941 G11 9942 G12
9944 D6 9945 D6 9946 F6 9947 F6 9948 F7
9949 F7 9950 F7 9951 F7 9952 F7 9953 F8
9954 F8 9955 G8 9962 G7 9963 G7 9964 G7
9965 G8 9966 G8
A
B6-105
B6-94
B6-95
B6-97
L-SC2_AV2-IN
L-SC1_AV1-IN
B6-96
L-SC2-OUT
L-SC1_AV-OUT
B6-89
+3V3_SIM
B6-88
SDA-F
B5-86
SDA-F
B4-84
SDA-F
B3-82
SDA-F
SCL-F
B5-87
SCL-F
B4-85
SCL-F
B3-83
SCL-F
B5-90
SDA-S
B5-91
SCL-S
B5-93
B5-92
POR
SOUND-ENABLE
B
SOLDERLAND
SOLDERLAND 1
0002
C
D
E
0001
SOLDERLAND 1
0005
SLOT 1.2x3.2 1
0009
0006
0010
SOLDERLAND
1
1
0004
0003
SOLDERLAND
SOLDERLAND 1
1
0007
0008
SLOT 1.2x3.2
SLOT 1.2x3.2
1
1
0012
0011
SOLDERLAND 1
SOLDERLAND 1
SLOT 1.2x3.2
SLOT 1.2x3.2 1
1
0013
6926
6927
BAS316
+8V
BAS316
+8V +8V
6956
BAS316
6928
BAS316
6957
6929
BAS316 BAS316
B5-63
P50
SC1-STATUS
B4-64
CUTOFF
GND-RGB-CRT
B4-65
B-CRT
9925
G-CRT
9944
B4-66
9945
B4-67
R-CRT
LINEDRIVE1
B4-69
B4-68
B4-70,B4-75
FRAMEDRIVE+
GND-LINEDRIVE
B4-71
B4-72
EW-DRIVE
FRAMEDRIVE-
B4-76
B4-77
B4-74,B4-139,B4-140
B4-73
TILT
EHT-INFO
DYN-FASE-COR
HFB_X-RAY-PROT
B5-141
STANDBY
B4-78
B4-79
LIGHT-SENSOR
B5-152
PIP-MONO
IRQ-DIGITAL
B4-152
IRQ-DIGITAL
B4-155
Y-SCAVEM
B6-100
B6-98
B6-99
R-SC2-OUT
R-SC1_AV1-IN
R-SC2_AV2-IN
B6-101
R-SC1_AV-OUT
B5-102
FRONT-DETECT
B6-106
L-FRONT-IN
R-FRONT-IN
B6-107
B6-109
B6-108
L-CL_VL-OUT
HEADPHONE-L
HEADPHONE-R
B6-110
GND-AUD
R-CL_VL-OUT
B6-111
B6-112
AUDIO-C
AUDIO-SL
B6-114
B6-113
AUDIO-L
AUDIO-SW
B6-115
AUDIO-R
B5-116
ON-OFF-LED
B5-
RC
B5-117
B5-118
KEYBOARD
DEGAUSSING
B6
AUDIO DEMODULATOR
B5
OTC
B4
VDP-HOP
B3a/b/c
FEATURE-BOX
A
B
C
D
E
+5V_CON
F
5900
2909
2908
100n
G
+5V
H
8204_000_8131.5
1234
+5V_VDP
+5V_AUD
5902
5901
2911
100n
2910
100n
+5V
+5V
( SIM CON. FEMALE )
+8V_AUD
5903
100n
2912
+8V
TO 1205
+8V_VDP
5904
100n
+8V
9909
9918
v1
1
1000
B2-51
B2-50
B2-52
R-SC1_V-IN
B-SC1-IN_U-IN
G-SC1-IN_Y-IN
9902
9901
9912
9911
9910
v2
v3
3
F203
F201
F202
B2-53
FBL-SC1-IN
9903
v4
5
F204
B2-54
B2-55
C-SC2_SVHS-IN
Y-CVBS-SC2_AV2-IN
9904
9905
9914
9913
v6
v5
7
F205
F207
F206
F208
B2-56
B2-57
B2-58
B2-59
IF-TER
CVBS-TER-OUT
CVBS-SC1_AV1-IN
9907
9906
9908
CVBS-SC2_MON-OUT
F212
9930
v10
v11
F213
F214
9917
9916
9915
v9
v7
v8
9
101112131415161718
F211
F210
F209
B2-61
B2-150
B2-60
AGC
SC1-STATUS
9927
9919
9921
9920
CVBS-PIP_TUN1-2-CVBS-IN
9923
9922
9924
v13
v12
v14
19220
F216
F217
F219
F218
5
F215
B2-62
5920
600R
SEL-SVHS-RR_STATUS2
2907
9934
100p
v15
F220
v16
v17
2223242526
21
F223
F221
F222
v18
F224
B2-80
B2-81
5917
5912
600R
600R
5915
600R
9950
9963
v26
F232
9951
9929
9964
v27
333435
F233
F234
v28
9952
2905
F235
9955
9965
100p
v31
v30
v29
37
36
F237
F236
9948
9946
9928
v20
v19
v21
v22
27
F227
F225
F226
28
9947
F228
v23
29
F229
9949
9962
v24
303132
F231
F230
v25
9954
9953
9966
v32
38
394404142
F238
F239
9936
+5V2
v65
F240
9935
4344454647
F242
F241
+8V
F243
F244
+5V
F245
F246
F247
5918
v35
48
F248
600R
v36
49
5919
2906
100p
v37
505152
F250
F249
600R
v38
2904
F251
100p
v39
F252
v40
535455
F254
F253
v42
v41
56
F256
F255
v43
57
F257
v45
v44
58
596606162
F259
F258
F260
v46
F261
Y-CVBS-FRONT-IN
9938
9937
9940
9941
v47
v48
63
F263
F262
B2-103
B2-104
C-FRONT-IN
9939
9942
v49
64
F264
v50
65
v51
666768
F265
F266
5910
5911
600R
600R
5914
5913
600R
600R
2900
2901
100p
v59
v60
v52
v53
v54
69
F269
F268
F267
v57
v71
v56
v55
7071727374
F271
F270
F272
F273
v61
v58
75
77
76
F277
F276
F274
F275
2903
2902
100p
100p
100p
v63
v62
v64
79880
78
F278
F280
F279
CL 36532017_018.eps
6 7 8 9 10 11 12 13 14 15
B2
VDP-HIP
F
G
H
230403
Page 41
Circuit Diagrams and PWB Layouts

Small Signal Board: IF. I/O Video Processing

1234
IF,I/O VIDEOPROCESSING
A
1403
F 500mA
441
B
+5V_VDP
B1-59
IF-TER
C
D
LMN
E
F
G
LMN
H
I
F416
5411
F437
0u33
3423
5K6
3R9
3402
BC847BW
8204_000_8130.7
1234567891011121314
2412
4n7
2425
7405
2390
F438
2405
3433
100n
100u
4n7
BC847B
3K9
5415
*
+8VP
1SS356
+5V2_CON
+5VCOM
+8VP+8VP
2K7
3411
*
7403
9403
6402
1SS356
3406
47R 6404
COIL 40.4 SUPPRESSION
6403
*
BA792
3414
*
*
4K7
9405
6405
1SS356
3434
2K7
7401
BC847BW
5K6
3407
2K7
3409
*
2406
220p
5
6
5CCE
78
5403
*
1234
I5
20mV / div AC
5401
9402
F400
10us / div
+8V+5V2
6u8
*
*
PM3394B
3410
2407
2408
2391
9415
+8VP
2K7
9401
*
68p
2p7
5416
100n
1409-A SAW-FILTER AUDIO
2
3
1409-B
OFWK3953L
56910131415
1184
1410-A
SAW-FILTER-VIDEO
2
3
1410-B
10131415
1184569
1408-A
*
SAW-FILTER VIDEO
2
3
1408-B
1184 5 6 9 10131415
= NOT USED IN PTV
*
I6
PM3394B
1V / div DC
10us / div
+8V_CON
7
8
111216
7
8
111216
7
8
111216
V1
1V / div DC
10us / div
41DPTV355 7.
56
AGC
B1-60
B5-163
AGC-MONITOR
+5VS
9410
9407
F411
F412
NCMT
17
NCMT
17
NCMT
17
V2
PM3394B
1V / div DC
10us / div
10K
3415
4K7
3463
100R
39K
3441
I5
F409
F410
9416
3419
82R
9418
*
5402
3u9
1406
TPW
1
3421
5K6
7406
BC847BW
3417
5K6
3435
LMN
BG
V5
PM3394B
1V / div DC
10us / div
+8V_VDP
3408
+8V_VDP
3416
2413
3
2
7407 BC857B
+8VP
4K7
BC847BW
3405
PM3394B
3400
F413
4R7
+8VP
1
2
6R8
34
F414
MODULATOR COIL
47u
5406
2u2
1407
TPW
1
2
9420
*
+8VP
4K74K7
3456
1K
QSS_AM
SFSCC
3
2
3457
SOUND-OUTPUT
V6
500mV / div DC
20us / div
7410
B6-119
2u2
2377
2394
5CCE 5408
78
6
5
7411
BC847B
9417
F439
3
3445
470R
1K
3420
1411
1
B1-150
CVBS-PIP_TUN1-2-CVBS-IN
V7
PM3394B
500mV / div DC
20us / div
3436
9412
*
100u
5V4
2V4
3439
*
3474
+8VP
3404
2401
2411
100n
F436
220R
+8VP
470R
9413
1K
7402
*
BC847BW
560R
PM3394B
2417
470n
7 8 9 10 11 12 13 14
3401
100K
2403
7V6
3473
2399
5417
2402
5404
6u8
5405
6u8
22n
470n
2418
F401
2V7
2409
2u2
2404
1u
4p7
0p47
V1
9414
*
7322 BC847BW
3382
390R
1K
68p
68u
3403
330p
9408
B1-58
V8
1V / div DC
20us / div
F419
2378
100n
F420
100n
2376
64
4V7
4V7
63
4V7
4V7
1
3V7
F402
2
4V7
3
4V7
F403
4
4V7
3418
6
2V7
390R
7
3V8
8
3V8
2419
62
1V5
3437
10
3V4
1K
I6
12
4V9
13
3V4
9419
14
3V9
V2
2384
100n
3385
470R
220R
B1-57
CVBS-TER-OUT
V9
PM3394B
SOUND-OUTPUT
3380
100R
F440
5
9
3V3
GND_2
QSS_AM
SIF2
SIF1
AGCSIF
VIF1
VIF2
AGCDEC
PLLRILT
VCO1
VCO2
IF DEM
TUNERAGC
VIFOUT
GROUP DELAY COR.
IN
OUT
CVBSINT
CVBS118CVBS2 16
3V5
2365
100n
2366
3381
100R
10p
2339
B6-154
CVBS-SC1_AV1-IN
AV3-CVBS-IN
PM3394B
2V / div DC 200us / div
B1-61
SC1-STATUS
c002
22n
2u2
2375
2374
100n
2373
F421
F422
44
35
33
0V
GND_1
4V1
DEC
5V1
DIGDEC
31
0V
DIGGND
48
0V
ADSEL
0V
11
7V8
7V8
+8_145+8_2
SUPPLY CTRL
HIP
7323
TDA9320H
I/O SWITCH
Y_CVBS323Y_CVBS4
C324C4 21
20
3V5
3V5
0V1
3V5
2369
100n
2367
F417
100n
2368
100n
3446
9322
F418
5409
F415
B1-103
C-SC2_SVHS-IN
Y-CVBS-SC2_AV2-IN
CVBS-AV3-IN
Y-CVBS-FRONT-IN
V10
B1-55
B1-53
0V1
100n
2370
100R
150p
2420
6u8
B1-104
2V / div DC
200us / div
C-FRONT-IN
PM3394B
PIPOUT 32
2V8
100n
CVBSOUT 34
3389
V5
COMBOUT 26
3V3
3370
100R
BC847BW
10p
2387
B5-122
CVBS-SC2_MON-OUT
PIP-OUT
F14
1V / div DC
5ms / div
15
AV117AV2
7V6
B1-81
B1-62
SEL-SVHS-RR_STATUS2
0V
+8VP
100R 7320
3372
B1-80
BG
LMN
SCL-F
SDA-F
3377
3376
100R
V10
46
19
22
47
0V
0V
4V9
4V9
SCL
SDA
SW0
SW01
LUMA & CHROMA PROC.
YCOMBIN
SYS127SYS2
CCOMBIN
28
25
29
2V8
47R
3371
470R
F423
COMB-Y_CVBS-OUT
COMB-C-OUT
L8
1V / div DC
20us / div
SYS1
CVBS-TXT
100R V9
2372
3378
4V1
SYS2
F14
1u
2371
15K
61
58
0V
VA
HPLL
SYNC
FBL1IN
FBL2IN
X3.579
X3.575
X3.582
COL_PLL
SEC_DEC
SVBCOUT
SCOUT
59
30
FSC
SC
B3a-123
B3a-124
VA50
HA50
F407
F408
4n7
60
0V3
HA
36
R1IN
1V2
37
G1IN
2V
38
B1IN
2V2
39
0V
41
R2IN
42
G2IN
43
B2IN
OUTP SWITCH
40
49
YOUT
50
UOUT
51
VOUT
57
56
55
54
X4.43
52
53
2356
9324
*
2424
100n
3303
3468
100K
B5-122
CVBS-TXT
L8
2V7
2V3
2V2
2V5
2V5
5V2
0V
2351
100n
3475
V7
F405
3393
100n
2357
+5VCOM
9319
*
9318
F435
100K F433
2388
F434
SC
3444
1K
100K
100n
2358
2350
100n 2352
100n
33n
820K
2305
100n 2316
100n
2322
100n
3379
100R
1305
3n3
7307 TDA9181
INPSEL2
Y|CVBS112
Y|CVBS23
CIN1
SC7
2359
+8VP
BC857B
3447
HC-49/U
15p
2360
7408
39K
3373
100R
3374
100R
3375
100R
2327
10p
7404 BC847BW
3412
1306
4M433619
1p2
2379
CLAMP
CLAMP
SAND-
CASTLE
AGND
DGND
13
4
G-SC1-IN_Y-IN
B-SC1-IN_U-IN
+8VP
2u2
2389
2355
10p
2364
10p
2383
10p
F406
+8VP
1K
V6
HC-49/U
15p
2380
7307-p4
R-SC1_V-IN
7409
BC857B
6K8
3448
2K2
3449
FBL-SC1-IN
R-SC3-IN
G-SC3-IN
B-SC3-IN
FBL-SC3-IN
V8
B3a-127
B3a-125
F404
PAL N
3M582056
1p5
+5VCOM
2354
100n
FILTER
TUNING
F432
2353
FSC
B3a-126
1307
2381
VCC
B1-52
B1-51
B1-50
CVBS-3D-COMB
COUT-3D-COMB
YOUT-3D-COMB
B1-54
B5-174
B5-175
B5-176
B5-177
U50
Y50
V50
Y50
PAL M
1308
HC-49/U
3M575611
1p5
15p
2382
2362
2385
100n
65
VDD
2H/4H DELAY
ADAPTIVE
COMB FILTER
CLOCK
GEN
SYS111SYS2
FSC9FSCSEL
8
3301
100K
100n
SYS1
SYS2
B1 B10
HC-49/U
3M579545
12p
2361
Y|CVBSO
OUTSEL
10
15
*
1303
3460
7413
BFS20
NTSC M
1p2
COUT 16
1303 B13 1305 E11 1306 E12 1307 E12 1308 E13 1403 A1 1406 E5 1407 E5 1408-A F4 1408-B G3 1409-A C4 1409-B C3 1410-A E4
A
1410-B E3 1411 G6 2302 H14 2305 C11 2316 C11 2322 C11 2327 D12
F354
5
4
3
2
1
2426
*
+8VP
3K3
2422
100n
9406
*
F428
14
V4
5309
*
100MHZ
F355
5310
*
100MHZ
F356
5311
*
100MHZ
10p
10p
2428
*
10p
2427
*
+8VP
1K8
3461
1K5
3462
F424
COMB-Y_CVBS-OUT
7412
*
BC857BW
F426
3451
270R
3452
150R
5312
*
*
33u
V3
F430
2302
F431
100n
CL 36532079_077.eps
CVBS-TXT
COUT-3D
YOUT-3D
+5VS
3450
*
F425
F427
10p
2421
2423
*
*
7307-p4
YOUT-3D
COMB-C-OUT
COUT-3D
171203
2339 H8 2350 A11 2351 A11 2352 A11
B
2353 I12 2354 G12 2355 C12 2356 F11 2357 F11 2358 F11 2359 F11 2360 F12 2361 F13 2362 F13 2364 C12 2365 F7
C
2366 F8 2367 F8 2368 F8 2369 F8 2370 F8 2371 B10 2372 A10 2373 B8 2374 B8 2375 B8 2376 B7 2377 B6
D
2378 B7 2379 F12 2380 F12 2381 F12 2382 F12 2383 D12 2384 F7 2385 G13 2387 H9 2388 A11 2389 B12
E
2390 B1 2391 B3 2394 B6 2399 F7
1K
2401 C6 2402 G7 2403 C7 2404 C7 2405 D1 2406 G2 2407 G3 2408 H3
F
2409 C7 2411 D6 2412 C1 2413 D5 2417 E7 2418 D7
6p8
2419 D7 2420 G8 2421 F14 2422 E13 2423 F14 2424 G11
G
2425 B1 2426 C13 2427 C14 2428 C14 3301 I12 3303 H10 3370 F9 3371 G9 3372 G9 3373 C12 3374 C12
H
3375 C12 3376 A10 3377 A10 3378 B10 3379 D11 3380 B7 3381 H8 3382 F7 3385 G7 3389 F9 3393 F11 3400 B5
I
3401 B7 3402 B1 3403 G7 3404 I6 3405 H5 3406 G2 3407 F2 3408 B5 3409 G2 3410 E3 3411 C2
3412 E12 3414 D2 3415 A5 3416 D5 3417 G5 3418 D7 3419 E5 3420 G6 3421 F5 3423 H1 3433 G1 3434 E2 3435 G5 3436 E6 3437 D7 3439 E6 3441 B5 3444 B11 3445 F6 3446 F8 3447 B11 3448 B12 3449 B12 3450 E14 3451 F14 3452 F14 3456 G5 3457 H5 3460 D13 3461 D14 3462 D14 3463 B5 3468 H11 3473 F7 3474 F6 3475 C11 5309 B14 5310 B14 5311 B14 5312 F14 5401 D2 5402 E5 5403 H2 5404 B7 5405 B7 5406 E6 5408 C6 5409 G8 5411 C1 5415 A2 5416 A3 5417 G7 6402 E2 6403 D2 6404 G2 6405 E2 7307 G11 7320 F9 7322 E7 7323 D9 7401 E2 7402 H7 7403 D2 7404 D12 7405 H1 7406 F5 7407 F5 7408 A12 7409 A12 7410 G5 7411 D6 7412 F14 7413 D13 9318 G11 9319 G11 9322 F8 9324 G11 9401 F3 9402 E3 9403 E2 9405 E2 9406 F13 9407 A4 9408 H7 9410 A4 9412 F6 9413 F6 9414 E7 9415 C3 9416 D5 9417 D6 9418 E5 9419 E7 9420 F6 F354 B14 F355 B14 F356 B14 F400 G3 F401 D7 F402 C7 F403 C7 F404 E12 F405 D11 F406 D12 F407 B10 F408 B11 F409 C5 F410 C5 F411 C4 F412 C4 F413 B6 F414 D5 F415 H8 F416 C1 F417 F8 F418 G8 F419 B7
F420 B7 F421 B8 F422 B8 F423 G9 F424 E14 F425 F14 F426 F14 F427 F14 F428 F13 F430 H14 F431 H14 F432 H12 F433 H11 F434 H11 F435 H11 F436 D6 F437 C1 F438 B1 F439 E6 F440 B8 c002 A8
Page 42

Small Signal Board: PICNIC

12 345 6
PICNIC
A
B
C
D
E
F
G
H
I
J
B3c-171
B4-128
B3c-172
B4-129
B3c-173
B4-130
B4-148
B4-132
B2-125
B2-126
B2-127
B2-124
B2-123
B1
Y_EAGLE_E
F100
Y100
U_EAGLE_E
F101
U100
V_EAGLE_E
F102
V100
L4
HD100
F104
VD100
SCL-F
SDA-F
2713
+3V3A
RSTR
+5VA
Y-PIP+MAIN-IN
F108
U-PIP+MAIN-IN
F109
V-PIP+MAIN-IN
F110
180R
HA50
VA50
B10
3715
2723
F105
2724
3713
180R
3714
180R
F119
F112
2722
9736
L1
9737
L2
9738
L3
3729
68R
56p
3721
680R
L5
100p
F115
F114
22p
3719
3720
3730
680R
100p
* SEE MAPPING I1 ON B3c
** SEE MAPPING G1 ON B3c
K
+3V3_FBX
L
8204_000_8124.6
5706
2728
1
3703
330R
2700
3p9
5700
12p
3K3
10K
2718
2719
2720
2701
F103
2704
2707
F120
3722
15p
15p
15p
3726
10u
2702
2u2
3704
330R
2703
3p9
5701
12p
2705
1u
3705
330R
2706
3p9
5702
12p
2708
1u
7703 PMBT2369
4K7
3733
4K7
3731
3735
1R
3734
1K2
RES
1R
SDA-D
3709
100R
3710
100R
22p
2714
7715 PMBT2369
2831
3716
100K
100K
3717
3718
100K
100p
2721
3728
150R
1K2
KF25BDT 13
IN
2729
100n
2 345 6789 10 11 12
SCL-D
Circuit Diagrams and PWB Layouts
789 10
+3V3_FBX
3751
7708
BC847B
220K
F145
F707
100n
2743
100n
150K
2744
3754
F708
3737
1K
1K
7710 BC847B
12K
+3V3_E
5712
5713
2752
5736
6u8
2881
27p
F122
F123
F124
F125
F126
F127
18K
9701
3760
1701
CX-5F
1702
3743
RES
1M
100n
2755
100n
+2V5B
2
3750
RES
MF(18)
2749
SN-DA
RES
RES
12M
CSTCV
12M
SN-CL
10u
F155
F156
3759
220R
3K3
9702
2748
2750
2759
18K
3742
13
18p
RES
F706
4K7
100R
100n
100n
L9
18pRES
3K9
F128
F129
N.C.
3752
3753
1R
+3V3_FBX
+3V3P
F161
2757 22n
2753
100n
F710
9704
TD0MA
1R
3746
RES
9703
RES
TRST
TMS
2756
9700
F118
F788
F160
100n
RES
+5VA
+3V3PR
AD(00)
AD(01)
AD(02)
AD(03)
AD(04)
AD(05)
AD(06)
AD(07)
Q7
1
PROM
A4
A5
A6
A7
A828A9
A10
A3
6
7
615
714
AD(04)
AD(05)
AD(04)
AD(05)
153
152
151
P0-4
P0-5
P0
5
4
813
912
AD(06)
AD(07)
AD(06)
AD(07)
150
149
P0-6
P0-7
29
100n
VDDO3
A1127A12
24
2766
148
147
146
145
P2-0
P2-1
P2-2
PSP
3 X DAC
7713
PICNIC
SAA4978H
3 X ADC
FRONT
END
BUS A
YA054YA155YA256YA357YA458YA559YA660YA761YA8
VDDO1
UVA751UVA8
52
53
50
100n
2760
+3V3P
3758
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
TD0
+3V3PR
9732
F784
F785
4K7 1
SN-DA
SN-CL
VSSO6
SCL
SDA
UP-RST
WD-RST
RSTW
RSTR
FBL
VDDA1
Y-OUT
VSSA1
U-OUT
V-OUT
VSSA2
BGEXT
H-D
V-D
AGND
DIFFIN
VDDA2
Y-IN
VDDA3
U-IN
VIN
VSSA3
H-A
V-A
HREF-EXT
VDDA4
VSSA4
VSSX
OSC-I
OSC-O
TEST
TRST
TMS
TDI
TDO
F152
+5VA
RES
5711
7712
9731
2823
9733
20
74HC573
1
T1TCK
VSSO1
41
TCK
5710
1n
2745
2824
2746
100n
Vcc
EN
ALE
INT1
159T0160
OSC
42
3712
47K
9730
1n
BST
RES
15
18Q319Q420Q521Q622
13Q014
Q2
Q1
32
VCC
7711
100n
A010A1
A2
M27C512
9
8
11
10
GND
1D
C1
417
516
219
318
11
AD(00)
AD(01)
AD(02)
AD(03)
F786
AD(00)
AD(01)
AD(02)
F787
158
INT0
INT1
AD(03)
156
155
154
157
P0-0
P0-1
P0-2
P0-3
MICRO-PROCESSOR
ANALOG
PROCESSING
CLK
PLL
TIMING
UVA0
UVA145UVA246UVA347UVA448UVA549UVA6
43 44
+3V3P
+3V3_FBX
BC847B
3K9
4K7
3739
+2V5_E
+5VA
+3V3PR
+3V3A
+2V5B
7709
F165
F166
3736
15K
3756
F164
L8
+2V5B
100R
F709
8K2
+1V5_E
9735
9734
RES
+3V3_FBX
RSTW
5714
2751
100n
F162
L6
F163
L7
1710
HREF_EXT
FMN
3748
3747
3741
3738
+3V3_FBX
2758
1
2
3
4
5
6
7
F157
3706
390R
12p
RES
3707
F158
390R
12p
RES
F147
2730
9705
3749
7707 BC847B
3755
2740
22n
2741
22n
2742
22n
L10
VAP
L11
RES
RES
9706
100u
3708
390R
12p
F159
RES
HD_E
9725
VD_E
9726
68p
3727
150R
3K3
3725
7706
OUT
GND
2
42DPTV355 7.
11 12 13 14 15 16 17
L6
PM3394B
500mV / div DC
10Ks / div
17
26
12
NC
A1331A14
3
30
142
144
143
P2-4
P2-5
P2-3
P2
16
VSS
FBX
E_
G_
A15
SOFTWARE
2
23
25
+3V3P
+3V3P
1K
10R
141
P2-6
CLK
TIMING
ALE
F151
139
140
ALE
P2-7
VSSD4
intern
3764
3765
RES
135
137
138
136
EAN
PSEN
VSSD3
VDDD4
+5VF
+3V3_INT
2765
100n
134
132
131
133
UVC0
UVC1
VSSO5
UVC2
127 126
130
129
128
UVC5
UVC6
UVC4
UVC7
UVC3
BACK END
PEAKING
MUX
MID END HISTOGRAM
NOISE
REDUCTION
TIMING
TBC/SRC
MUX
BUS B
WE-A
VSSD1
VSSO2
VDDD1
63
62
64
2761
100n
+3V3P
YB668YB767YB8
WE-B
65
69
66
YB074YB173YB272YB371YB470YB5
75
5744
5737
125
BUS C
124
UVC8
F700
2870
F701
2767
+3V3P
123
VDDO2
BUS D
CLK
L7
500mV / div DC
10us / div
+5VA
10u
+3V3FM
100n
2764100n
122
121
YC0
YC1
YC2
YC3
YC4
YC5
YC6
YC7
YC8
WE-C
IE-C
VSSO4
RE-D
YD8
YD7
YD6
YD5
YD4
YD3
YD2
YD1
YD0
VDDD3
UVD8
UVD7
UVD6
UVD5
UVD4
UVD3
UVD2
UVD1
UVD0
VSSD2
CLK32
CLK16
VDDD2
VSSO3
CLK-AS
UVB0
UVB1
UVB2
UVB3
UVB479UVB578UVB677UVB776UVB8
80
PM3394B
120
119
118
117
116
115
114
113
112
111
110
9710-A
109
18
108
107
106
9709-A
105
18
104
103
102
101
100
9708-A
99
18
98
97
96
9707-A
18
95
94
93
92
91
90
3763
89
22R
88
87
86
85
84
83
82
81
DA(15)
DA(14)
DA(13)
DA(12)
DA(11)
DA(10)
DA(09)
DA(08)
DA(07)
DA(06)
DA(05)
DA(04)
DA(03)
DA(02)
DA(01)
DA(00)
10R
27
10R
27
10R
27
10R
27
3762
100R
L9
PM3394B
1V / div DC 250ns / div
DA(15)
DA(14)
DA(13)
DA(12)
DA(11)
DA(10)
DA(09)
DA(08)
+3V3FM
+3V3FM
+3V3FM
+3V3FM
DA(07)
DA(06)
DA(05)
DA(04)
DA(03)
DA(02)
DA(01)
DA(00)
F148
F149
F150
9711 RES
9710-B
10R
9710-C
36
9710-D
10R
45
9709-C
36
10R
45
+3V3P
9708-C
36
10R
45
9707-C
36
10R
45
F139
CLK32P
F140
CL16
+3V3P
10R
9709-D
10R
9708-D
10R
9707-D
10R
9709-B
10R
2763
100n
9708-B
10R
9707-B
10R
100n
2762
L1
1 V / div DC
10µs / div
13 14 15 16 17
100n
RE_F
2769
YF(7)
YF(6)
YF(5)
YF(4)
YF(3)
YF(2)
YF(1)
YF(0)
UVF(7)
UVF(6)
UVF(5)
UVF(4)
UVF(3)
UVF(2)
UVF(1)
UVF(0)
L2
L10
CL16
1 V / div DC
10µs / div
1V / div DC
20us / div
TO B3c*
1
NC1
2
DI23
3
VSS1
4
DI24
5
DI25
6
DI26
7
DI27
8
NC2
9
VSS2
10
VSS3
11
VCC1
12
VCC2
13
SWCK
14
VCC3
15
VCC4
16
VSS4
17
VSS5
18
NC3
19
DI17
20
DI16
21
DI15
22
DI14
23
VSS6
24
DI13
25
NC4
TO B3c**
L11
1V / div DC
5ms / div
RSTR
+3V3FM+3V3FM+3V3FM
RSTW
100
97
DI2098DI2199DI22
NC17
RSTW2
2781
100n
9760
VCC13
82
85
84
88
81
87
83
89
RE2
NC1590NC16
NC1386NC14
VSS18
VCC12
RSTR2
MODE1
96
94
95
91
93
92
IE2
WE2
VSS19
VSS20
VCC14
7714
MS81V04160
FM1
VCC643VCC7
MODE242MODE3
37
36
41
2773
+3V3FM
F702
5729
2871
5733
F703
RES
2877
5731
F705
2874
SLOT 1.2x3.2
SLOT 1.2x3.2
RSTR1
RE1
45
44
9761
+3V3FM
RSTR
10u
2872
10u
2878
RES
10u
L4
1 V / div DC
10ms / div
RSTW
NC5
26
RSTW1
WE1
IE1
DI1028DI1127DI12
30
31
29
+3V3_FBX
L3
1 V / div DC
10µs / div
VSS735VSS839VSS9
VCC5
NC638NC740NC8
33
32
34
100n
+3V3FM
0018
1
0019
1
+3V3FM
80
OE2
VSS1049VSS11
NC946OE1 47
100n
+3V3A
100n
+3V3PR
100n
RES
+3V3_INT
MF(18)
76
77
78
NC1179NC12
VSS16
VSS17
75
VCC11
74
DO20
73
DO21
72
VSS15
71
DO22
70
DO23
69
DO24
68
DO25
67
VSS14
66
DO26
65
DO27
64
VCC10
63
SRCK
62
VCC9
61
DO17
60
DO16
59
VSS13
58
DO15
57
DO14
56
DO13
55
DO12
54
VSS12
53
DO11
52
DO10
51
VCC8
NC10
48
50
2775
2779
2778
100n
9739
100n
2777
+3V3FM
MF(01)
MF(02)
MF(03) MF(04) MF(06) MF(07)
MF(08) MF(09)
CLK32FM1
MF(10) MF(11)
MF(12) MF(13) MF(14) MF(15)
MF(16) MF(17)
+3V3FM
100n
MF(18)
CLK32FM1
CLK32
TO B3b
L5
1 V / div DC
20µs / div
CL 36532079_078.eps
171203
A
B
C
D
E
F
G
H
K
L
I
J
0018 K15 0019 K15 1701 J5 1702 K5 1710 K4 2700 A2 2701 B2 2702 B2 2703 B2 2704 B2 2705 B2 2706 C2 2707 C2 2708 C2 2713 F1 2714 F2 2718 H2 2719 H2 2720 I2 2721 I2 2722 J1 2723 D1 2724 E1 2728 L2 2729 L2 2730 L3 2740 H4 2741 H4 2742 H4 2743 B4 2744 B5 2745 B6 2746 C6 2748 E5 2749 E5 2750 E5 2751 G4 2752 H4 2753 I5 2755 G5 2756 J5 2757 H5 2758 K4 2759 K5 2760 L8 2761 L9 2762 J13 2763 H13 2764 E12 2765 E10 2766 E8 2767 C11 2769 D13 2773 F15 2775 F16 2777 F17 2778 F17 2779 D17 2781 C15 2823 B6 2824 C6 2831 G2 2870 B11 2871 H15 2872 H16 2874 J15 2877 I15 2878 I16 2881 I5 3703 A2 3704 B2 3705 C2 3706 A3 3707 B3 3708 C3 3709 E2 3710 F2 3712 L6 3713 G1 3714 H1 3715 I1 3716 H2 3717 H2 3718 I2 3719 F2 3720 G2 3721 E2 3722 E2 3725 I3 3726 J2 3727 I3 3728 I2 3729 D2 3730 I2 3731 D2 3733 D2 3734 E2 3735 E2 3736 B4 3737 C4 3738 C4 3739 C4 3741 C4 3742 C4 3743 C5 3746 C5 3747 B4 3748 B4 3749 C3 3750 C5 3751 A5 3752 B5 3753 B5 3754 B5 3755 C3
3756 D4 3758 E6 3759 H5 3760 J5 3762 J12 3763 J12 3764 E9 3765 E10 5700 B2 5701 B2 5702 C2 5706 L1 5710 B6 5711 C6 5712 D4 5713 E4 5714 G4 5729 H15 5731 I15 5733 I15 5736 I5 5737 C11 5744 B11 7703 D2 7706 K2 7707 C3 7708 B5 7709 C4 7710 C5 7711 B7 7712 D6 7713 H8 7714 D15 7715 F2 9700 A6 9701 E5 9702 D5 9703 G5 9704 K5 9705 K3 9706 K3 9707-A I12 9707-B I13 9707-C I13 9707-D I13 9708-A H12 9708-B I13 9708-C I13 9708-D I13 9709-A H12 9709-B H13 9709-C H13 9709-D H13 9710-A G12 9710-B G13 9710-C G13 9710-D G13 9711 G13 9725 D3 9726 E3 9730 B6 9731 B6 9732 C6 9733 C6 9734 E4 9735 D4 9736 A1 9737 B1 9738 C1 9739 G17 9760 C15 9761 F15 F100 A1 F101 B1 F102 C1 F103 B2 F104 D1 F105 E1 F108 G1 F109 H1 F110 I1 F112 I1 F114 F2 F115 E2 F118 H6 F119 I1 F120 C2 F122 K5 F123 K5 F124 K5 F125 L5 F126 L5 F127 L5 F128 E5 F129 F5 F139 J13 F140 J13 F145 B5 F147 L3 F148 F13 F149 G13 F150 G13 F151 E9 F152 K6 F155 F5 F156 G5 F157 A3 F158 B3 F159 C3 F160 H6 F161 H5 F162 H4 F163 H4 F164 I4 F165 I4
F166 I4 F700 B11 F701 C11 F702 H15 F703 I15 F705 I15 F706 B5 F707 B5 F708 C5 F709 C4 F710 J5 F784 D6 F785 E6 F786 E7 F787 E6 F788 G6
Page 43

Small Signal Board: Falconic

1
23 4 567
FALCONIC
A
B28
B
PM3394B
1V / div DC
20s / div
C
D
2780
5716
2784
100n
100n
7717 MSM54V12222A
1
VSS1
2
NC1
3
DIN11
4
DIN10
5
DIN9
6
DIN8
7
DIN7
8
DIN6
9
DIN5
10
DIN4
11
DIN3
12
DIN2
13
DIN1
14
DIN0
15
SWCK
16
RSTW
17
WE
18
IE
19
NC2
VCC120VCC2
+3V3_INT
E
F
FB(11)
FB(10)
FB(09)
FB(08)
FB(07)
FB(06)
G
FB(05)
FB(04)
FB(03)
FB(02)
FB(01)
FB(00)
H
RSTR RSTR
FB(12)
I
CLK32
8204_000_8124.6
1
B29
1V / div DC
F782
40
VSS3
39
VCC3
38
DOUT11
37
DOUT10
36
DOUT9
35
DOUT8
34
DOUT7
33
DOUT6
32
DOUT5
31
DOUT4
30
DOUT3
29
DOUT2
28
DOUT1
FIELD MEMORY
27
DOUT0
26
SRCK
25
RSTR
24
RE
23
OE
FM2
9769
22
VSS2
21
23 4 567 8 9
Circuit Diagrams and PWB Layouts
PM3394B
20s / div
YC0
YC1
YC2
YC3
YC4
YC5
YC6
YC7
UVC0
UVC1
UVC2
UVC3
9713
CLK32FM2CLK32FM2
9715
9714
CLK32FM2
9712
2782
RES
RES
YC0
YC1
YC2
YC3
YC4
YC5
YC6
YC7
UVC0
UVC1
UVC2
UVC3
REC
100n
REC
+3V3FA
+3V3FA
TRST
+3V3FA
+3V3FA
TDOA
+3V3FA
+3V3FA
+3V3FA
+2V5FB
RES
SN-DA
TMS
TD0
TCK
9717 3767
B29
3773
47K
3774
47K
47K
+2V5FB
3782
3781
47K
3783
+3V3FA
+3V3FA
47K
47K
2785
100n 2786
100n
9716
3766
2788
100n
100n
2787
RSTR
SN-CL
B28
3740
1K
9720
RES
MF(01)
MF(02)
FROM B3a
47K
MF(03)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
MF(04)
VSS-C1
YC0
YC1
YC2
YC3
YC4
YC5
YC6
YC7
UVC0
UVC1
UVC2
UVC3
RE-C
VSS-C2
VSS-1
VDD-1
JUMP0
JUMP1
VDD-2
VSS-2
RAMTSTL
SN-RST
SN-DA
SN-CL
VSS-S
RAMTST2
TEST
TRST
TMS
TDI
TDO
TCK
VSS-AL
UVA0
UVA1
UVA2
UVA3
FB(11)
FB(10)
159 158
160
YB1
YB0
VSS-B2
DECOMPRESS
SNERT
INTER
CONTROL
BST
UVA441UVA542UVA643UVA7
MF(06)
MF(07)
MF(08)
MF(09)
+3V3FA
FB(09)
FB(08)
FB(07)
FB(06)
FB(05)
2899
100n
157
156
155
154
152
153
YB2
YB3
YB4
YB5
YB6
VDD-B
COMPRESS
DNR
YA045YA146YA247YA348YA449YA550YA651YA7
44
MF(10)
MF(11)
MF(12)
MF(13)
MF(14)
MF(15)
FB(03)
FB(02)
FB(01)
150
UVB0
149
UVB1
148
UVB2
FB(00)
147
UVB3
FB(12)
FB(04)
151
YB7
LEFT MPRAM
VECTORS
VSS-A2
VSS-355VSS-4
RE-A
52
54
53
MF(16)
MF(17)
MF(18)
43DPTV355 7.
+3V3FA
2801
100n
+2V5FB
2800
138
VDD-7
146
WE-B
145
VSS-B1
+2V5FB
2802
143
VSS-K
100n
142
VDD-K
FALCONIC
7718
SAA4992
DEINTERLACER
VECTORS
MOTION ESTIMATOR
VECTORS
UPCONVERSION
VERTICAL
PEAKING
VSS-FL
VDD-356VDD-4
2789
100n
+2V5FB
RE-F
61
59
57
58
60
RE_F
YF(4)
YF(5)
YF(6)
YF(7)
8 9 10 11 12 13 14
PHILIPS
OKI
X
4721 4722 4723 4724 4712 4713 X 4714 4715
100n
137
VSS-7
FE(00)
FE(12)
136139140141144
135
133
134
IE-E
UVE3
VSS-E2
PIXEL PEAK
VERTICAL ZOOM
YF1
YF266YF365YF464YF563YF662YF7
YF0
6867
2790
YF(2)
YF(1)
+3V3FA
YF(0)
YF(3)
VDD-F
69
100n
X
X
X
X
X
X
FE(04)
FE(03)
FE(02)
FE(01)
129
130
131
132
YE7
UVE0
UVE1
UVE2
RIGHT MPRAM
UVF5
UVF6
UVF7
72
71
70
UVF(5)
UVF(6)
UVF(7)
FE(05)
128
YE6
UVF4
73
UVF(4)
FE(06)
127
YE5
UVF3
74
UVF(3)
FE(07)
126
YE4
UVF2
75
UVF(2)
FE(08)
125
YE3
UVF1
76
UVF(1)
FE(09)
124
YE2
UVF0
77
UVF(0)
FE(11)
FE(10)
122
123
121
YE0
YE1
VSS-E1
120
VSS-D2
119
YD0
118
YD1
117
YD2
116
YD3
115
YD4
114
YD5
113
VDD-D
112
YD6
111
YD7
110
UVD0
109
UVD1
108
UVD2
107
UVD3
106
WE-D
105
VSS-DI
104
VSS-6
103
VDD-6
102
101
VDD-5
100
VSS-5
99
VSS-G2
98
UVG0
97
UVG1
96
UVG2
95
UVG3
94
UVG4
93
UVG5
92
UVG6
91
UVG7
90
VDD-G
89
YG0
88
YG1
87
YG2
86
YG3
85
YG4
84
YG5
83
YG6
82
YG7
81
VSS-G1
VSS-CLK
VSS-F2
CLK32
80
78
79
CLK32
10 11 12 13
+3V3FA
2797
100n
2795
2798
+2V5FB
2796
100n
100n
100n
UVG(0)
UVG(1)
UVG(2)
UVG(3)
UVG(4)
UVG(5)
UVG(6)
UVG(7)
+3V3FA
YG(0)
YG(1)
YG(2)
YG(3)
YG(4)
YG(5)
YG(6)
YG(7)
+3V3FA
YD0
YD1
YD2
YD3
YD4
YD5
YD6
YD7
UVD0
UVD1
UVD2
UVD3
WED
YD0
YD1
YD2
YD3
YD4
YD5
YD6
YD7
UVD0
UVD1
UVD2
UVD3
CLK32FM3
RSTR
WED
CLK32 CLK32FM3
2776
19
20
100n
+3V3FA
27942792
+2V5FB
7719 MSM54V12222A
1
VSS1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
VSS3
VCC3
NC1
DIN11
DOUT11
DOUT10
DIN10
DOUT9
DIN9
DOUT8
DIN8
DOUT7
DIN7
DOUT6
DIN6
DOUT5
DIN5
DIN4
DOUT4
DIN3
DOUT3
DIN2
DOUT2
DOUT1
DIN1
FIELD MEMORY
DOUT0
DIN0
SRCK
SWCK
RSTR
RSTW
WE
FM3
IE
VSS2
NC2
VCC2
VCC1
9768
F780
10u
F781
10u
RE
OE
40
39
38
37
36
35
34
33
32
31
30
29
28
27
26
25
24
23
21
5719
2793
100n
5718
100n
2791
+3V3_INT
5717
F783
RES
9721
9722
9723
22
RES
9724
2819
100n
CL 36532017_021.eps
14
+3V3_FBX
+2V5B
2799
100n
CLK32FM3
FE(11)
FE(10)
FE(09)
FE(08)
FE(07)
FE(06)
FE(05)
FE(04)
FE(03)
FE(02)
FE(01)
FE(00)
RSTR
FE(12)
230403
A
B
C
D
E
F
G
H
I
2776 I12 2780 I1 2782 I3 2784 E1 2785 D4 2786 E4 2787 F4 2788 E4 2789 I6 2790 I8 2791 E14 2792 E13 2793 D14 2794 D13 2795 G11 2796 E11 2797 E11 2798 C11 2799 E14 2800 B8 2801 B7 2802 B7 2819 I14 2899 B5 3740 G4 3766 E4 3767 E3 3773 G3 3774 H3 3781 G3 3782 G4 3783 H4 5716 E1 5717 E14 5718 D14 5719 C14 7717 F1 7718 C7 7719 F13 9712 F3 9713 F2 9714 I2 9715 I2 9716 E4 9717 E3 9720 G4 9721 F14 9722 F14 9723 H14 9724 I14 9768 I13 9769 I2 F780 C13 F781 D13 F782 E2 F783 E14
Page 44

Small Signal Board: Eagle

12 3 4 56 7 8 9
EAGLE
A
UVG(0)
UVG(1) UVG(2)
B
UVG(3)
UVG(4) UVG(5) UVG(6)
UVG(7)
C
YG(0) YG(1)
YG(2) YG(3)
D
YG(4)
YG(5)
YG(6)
YG(7)
E
F
UVF(0)
UVF(1) UVF(2)
G
UVF(3)
UVF(4) UVF(5)
UVF(6) UVF(7)
+3V3FC2 +3V3FC2
H
YF(0) YF(1)
YF(2) YF(3)
YF(4)
I
YF(5)
YF(6)
YF(7)
J
8204_000_8124.6
F712
1 2
DI23
3
VSS1
4
DI24
5
DI25
6
DI26
7
DI27
8
NC2
9
VSS2
10
VSS3
11
VCC1
12
VCC2
13
SWCK
14
VCC3
15
VCC4
16
VSS4
17
VSS5
18
NC3
19
DI17
20
DI16
21
DI15
22
DI14
23
VSS6
24
DI13
25
NC4
2817
100n
+3V3FC1 +3V3FC1
CLK32OFM4
+3V3FC1 +3V3FC1
F718
RSTW_YUV
F719
1
NC1
2
DI23
3
VSS1
4
DI24
5
DI25
6
DI26
7
DI27
8
NC2
9
VSS2
10
VSS3
11
VCC1
12
VCC2
13
2843
CLK32OFM5
+3V3FC2
100n
+3V3FC2
SWCK
14
VCC3
15
VCC4
16
VSS4
17
VSS5
18
NC3
19
DI17
20
DI16
21
DI15
22
DI14
23
VSS6
24
DI13
25
NC4
F723
12 3 4 56 7 8 9
Circuit Diagrams and PWB Layouts
RSTW_YUV
96
97
100
DI2098DI2199DI22
NC17
RSTW2
RSTW1
NC5
IE1
DI1028DI1127DI12
26
31
29
30
RSTW_YUV
100n
2820
+3V3FC1
96
99
100
DI2097DI2198DI22
NC17
RSTW2
MS81V04160
RSTW1
NC5
IE1
DI12
DI1029DI11
30
26
31
28
27
+3V3FC2
RSTW_YUV
+3V3FC1
WEYUV_G
+3V3FC1
93
92
95
94
91
IE2
WE2
VSS19
VSS20
VCC14
7722
MS81V04160
FM4
VSS735VSS839VSS9
VCC537VCC643VCC7
NC6
WE1
33
32
34
36
100n
2821
WEYUV_G
+3V3FC1
+3V3FC2
+3V3FC2
WEYUV_F
+3V3FC2
2829
92
90
91
95
93
94
IE2
WE2
VSS19
VSS20
VCC14
7723
FM5
WE1
VSS733VSS8
VCC534VCC637VCC7
NC636NC738NC8
35
32
100n
2838
WEYUV_F
+3V3FC2
+3V3FC1
2813
89
VCC13
NC740NC8
38
2822
100n
89
VCC13
VSS9
39
87
VSS18
100n
87
VSS18
40
100n
85
MODE1
MODE242MODE3
41
9763
9764
85
MODE1
MODE241MODE3
42
9765
+3V3FC2
+3V3FC1
9762
84
NC1386NC1488NC1590NC16
VCC12
RSTR1
RSTRY
+3V3FC1
+3V3FC2
NC1384NC1486NC1588NC16
VCC12
RSTR1
43
RSTRY
RSTRUV
83
RSTR2
RE1
44
REY
RSTRUV
83
RSTR2
RE1
44
REY
REUV
81
82
RE2
45
+3V3FC1
REUV
82
81
RE2
45
46
+3V3FC2
+3V3FC1
79
80
OE2
NC12
VSS1049VSS11
NC946OE1
48
47
+3V3FC2
80
79
OE2
NC12
VSS1048VSS11
NC947OE1
VSS17
VSS17
49
76
77
78
NC11
VSS16
VCC11NC1
DO20 DO21
VSS15
DO22 DO23 DO24 DO25
VSS14
DO26 DO27
VCC10
SRCK VCC9 DO17 DO16
VSS13
DO15 DO14 DO13 DO12
VSS12
DO11 DO10 VCC8
NC10
50
76
77
78
NC11
VSS16
VCC11
DO20 DO21
VSS15
DO22 DO23 DO24 DO25
VSS14
DO26 DO27
VCC10
SRCK VCC9 DO17 DO16
VSS13
DO15 DO14 DO13 DO12
VSS12
DO11 DO10 VCC8
NC10
50
+3V3FC1
2810
75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53 52 51
+3V3FC2
2832
75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53 52 51
+3V3FC2
100n
CLK32OFM4
100n
+3V3FC1
100n
CLK32OFM5
2835
2825
+3V3_E
+3V3_E
100n
2811
2812
F717
F722
F721
F716
5727
100n
5726
100n
UVG0(0)
UVG0(1)
UVG0(2)
UVG0(3)
UVG0(4)
UVG0(5)
UVG0(6)
UVG0(7)
2845
100n 2846
100n
YG0(0) YG0(1)
YG0(2) YG0(3) YG0(4) YG0(5)
YG0(6) YG0(7)
F756
2809
F758
2826
UVF0(0)
UVF0(1)
UVF0(2)
UVF0(3)
UVF0(4)
UVF0(5)
UVF0(6)
UVF0(7)
2833
100n
YF0(0) YF0(1)
YF0(2) YF0(3) YF0(4) YF0(5)
YF0(6) YF0(7)
100n
100n
INT1
+3V3FC1
+3V3FC1
+3V3FC2
+3V3FC2
+3V3FC2
+5VA
3744
UVG0(0:7)
YG0(0:7)
CLK32O
CLK32P
SN-DA
HREF_EXT
UVF0(0:7)
SN-CL
YF0(0:7)
7731
BFS20
2K2 7725 PMBT2369
VAP
3785
F720
1K
3745
UVF0(0:7)
+3V3FCD
+1V5FCC
2709
+1V5FCC
2710
+1V5FCC
3795
15R
3771
3772
9741-A
18
9741-B
27
9741-C
36
330R
+3V3FCD
2K2
3793
INT1_E
+1V5FCC
UVF0(0) UVF0(1) UVF0(2) UVF0(3) UVF0(4) UVF0(5) UVF0(6) UVF0(7)
YF0(0) YF0(1) YF0(2)
100n
YF0(3) YF0(4)
YF0(0:7)
YF0(5) YF0(6) YF0(7)
+3V3FCD
100n
2867
100n
9750
9740
9741-D
45
10R
CLK32OFM5CLK32O
15R
CLK32OFM4CLK32O
15R
HREF_EXT_E
10R
VAP_E
10R
SN-CL_E
10R
2827
100n
7728 BFS20
1K5
3788
82R
3807
F729
3810
2839
390R
44DPTV355 7.
10 11 12 13 14
+3V3FCD
2731
100n
UVG0(4)
180
UVG4
VDDC18
VDDC683VDDC789VDDC890VDDC9
VSS10
81
100n
3805
470R
UVG0(0:7)
UVG0(2)
UVG0(3)
178
179
UVG3
UVG2
PDN
82
100n
3801
+1V5FCC
F766
3814
2851
100n
SEE MAPPING D12
YOUT(0)
YOUT(1)
UVG0(0)
UVG0(1)
174
172Y0171Y1170Y2169Y3168Y4167Y5166Y6163Y7162Y8161
173
175
176
177
UVG0
UVG1
VSS28
VDDA10
VSS1188VSS12
87
84
100n
2859
F768
1K
RES
9766
+3V3FCD
2830
100n
7733
BFS20
75R
75R
3815
YOUT(3)
YOUT(2)
2735
+1V5FCC
3787
10 11
YOUT(5)
YOUT(4)
VDDC1095VDDC11
330R
YOUT(6)
94
100n
165
164
VSS27
VDDC17
VSS1397VSS14
96
2860
+1V5FCC
7730 BFS20
3790
3809
3816
YOUT(8)
YOUT(7)
560R
220R
F731
390R
YOUT(9)
Y9
VDDA4
100
100n
+3V3FCD
F761
+3V3FCD
160
VSS26
VDDA9
CLK32I
TESTSEL0
101
CLK32I
2783
2841
159
102
2716
+3V3FCD
TDOA
TD0MA
SN-DA_E
+3V3FCD
100n
HREF_EXT_E
CLK32
CLK32I
2861
100n
2848
100n
SN-CL_E
SN-DA_E
2711
100n
RSTR HD_E
VD_E INT1_E VAP_E
TRST
9753
REUV
REY
RSTRY
RE_F
WEYUV_G
+3V3FCD
F724
208
VDDA12
VSSA1
53
F725
3757
9754
206
207
REFIN
WEYUV-G
AOUTPY
AOUTNY
55
54
F726
47R
205
REY
FALREF
VREFY
VBSY
56
F715
204
57
F727
203
RSTRY
FSADJY
58
F728
202
REUV
100n
2712
1
VDDC1
2
VSS1
3
VDDA1
4
UVF0
5
UVF1
6
UVF2
7
UVF3
8
UVF4
9
UVF5
10
UVF6
11
UVF7
12
VSS2
13
VDDC2
14
YF0
15
YF1
16
YF2
17
YF3
18
YF4
19
YF5
20
YF6
21
YF7
22
VSS3
23
VDDC3
24
VDDA2
25
VSS4
26
SNCK
27
SNRST
F769
28
HD
29
VD
F770
30
INTR1
31
VA
32
SNDA
33
HREF
34
TRST
35
TMS
3711
+3V3FCD
TMS
36
VDDC4
37
VDDC5
38
VSS5
39
VSS6
40
VDDA3
41
VSS7
42
TDI
43
TDO
44
TCK
TCK
45
NC1
46
NC2
47
NC3
48
NC4
49
NC5
47K
50
NC6
51
NC7
52
NC8
RSTRUV
WEYUV_F
F711
F714
200
201
RSTRUV
WEYUV-F
VSS8
VDDB159VDDBA1
60
61
RSTW_YUV
+1V5FCC
100n
2747
198
199
VSS32
VDDC19
RSTW-YUV
AOUTNU
AOUTPU
VSSA2
62
63
197
64
F713
196
VSS31
VREFU
65
3794
CLK32O
+3V3FCD
15R
195
194
VSS30
CLK32O
VDDA11
VSADJU
VDDBA2
VBSU
66
67
2768
100n
YG0(7)
193
68
YG0(0:7)
YG0(5)
YG0(6)
YG0(2)
YG0(1)
YG0(4)
YG0(3)
187
188
189
190
191
192
YG2
YG3
YG4
YG5
YG6
YG7
T8F24EF
EAGLE - IC
NC9
NC11
NC10
AOUTNV
AOUTPV
VSSA3
72
69
71
70
73
74
+1V5FCC
UVG0(0:7)
YG0(0)
UVG0(7)
UVG0(6)
UVG0(5)
181
185
186
182
183
184
YG0
YG1
UVG5
UVG6
UVG7
VSS29
7724
VSS9
VREFV
VDDBA3
NC1285NC1386NC1491NC1592NC1693NC1798NC1899NC19
VBSV
FSADJV
78
76
77
80
75
79
2855
2886
100n 2887
100n
3800
3825
100n 2888
150R
3826
150R
3827
150R
3822
3824
100n 2892
100n 2898
100n
150R
3802
150R
3803
150R
3821
75R
382375R
75R
2893
2889
100n
100n
+2V5FCA
100n
2896
+2V5FCD
2890
100n
2897
+2V5FCA
100n
2894
2891
100n
100n
+2V5FCA
2866
2895
+2V5FCA
75R
3786
3812
7732
BFS20
75R
330R
L24 L25 L26
F762
Y_EAGLE_E
B3a-171
F765 F767
3791
470R
2p2
75R
3811
2815
220p
RES
2717
12p
5739
2u2
2726
2725
12p
27p
7729 BFS20
3789
3808
3813
220R
820R
390R
2828
2840
100n
F763
220p
RES
2727
12p
5740
2u2
2736
U_EAGLE_E
B3a-172
2885
12p
27p
2816
2p2
+1V5FCC
158
157
VSS25
VDDC16
VDDCA1
VDDC15
CLK64SEL
CLK64O
VDDC14
VDDC13
VDDC12
TESTSEL1
TESTSEL2
103
104
3819
75R
3820
75R
5705
1K
100n
F764
2738
12p
220p
RES
+5VA
+2V5B
9718
7720 LD1117
10u
100n
2807
1K
3804
1K
2864
100n
2734
100n
SEE MAPPING A11
2865
100n 2854
100n
2853
100n
5724
7726 LD1117
3
IN2OUT
10u
2876
100n
9719
RES
IN3OUT
GND
1
+1V5FCA
+1V5FCC
+3V3FCD
+3V3_E
F760
2805
100n
GND
1
+3V3FCD
2880
2847
100n 2754
100n
2732
100n
VSS24 VSSA4
NC25 NC24 NC23 NC22
VSS23
NC21
NC20 RESET VSS22 VDDA8
CLK64I VSS21
VSS20 VDDA7 VSS19
VSS18 VDDA6
VSS17
VSS16
VSS15 VDDA5
+5VA
RES
5721
5723
+1V5FCC
2808
156 155 154 153 152 151 150 149 148 147
IS1
146
IS0
145 144 143 142 141 140 139 138 137 136 135 134 133 132
U0
131
U1
130
U2
129
U3
128
U4
127
U5
126
U6
125
U7
124
U8
123
U9
122 121 120
V0
119
V1
118 117 116
V2
115
V3
114
V4
113
V5
112
V6
111
V7
110
V8
109
V9
108 107 106 105
2857
F754
U_VOUT(0) U_VOUT(1) U_VOUT(2) U_VOUT(3) U_VOUT(4) U_VOUT(5) U_VOUT(6) U_VOUT(7) U_VOUT(8) U_VOUT(9)
100n
2733
100n
3792
CLK64
+3V3_E
5738
2875
+8V_CON
2814
100n
V_EAGLE_E
B3a-173
5741
2u2
2737
3806
470R
12p
2739
27p
2818
3817
75R
3818
75R
2p2
12 13 14
F750
2
2806
+3V3FCD
9744
9746
+3V3FCD +1V5FCC
+3V3FCD
+1V5FCC
+1V5FCC
+3V3FCD
F759
+2V5_E
9745
RES
5742
100u
100u
RES
+3V3FCD
RES
+1V5_E
9747
+1V5_E
5745
30R
RES
B1
2770
+2V5_E
10u
+3V3_FBX
5725
F751
100n
2804
5722
F752
2803
100n
5743
F753
100n
2774
5728
F755
2884
100n
7727
LF15AB
F757
3
IN1OUT
GND
2
100n
2771
+3V3_E
2772
L24
1 V / div DC
10µs / div
L25
1 V / div DC
10µs / div
L26
1 V / div DC
10µs / div
B10
CL 36532017_022.eps
+2V5FCA
+2V5FCD
+1V5FCA
+1V5FCC
+1V5_E
100u
230403
A
B
C
D
E
F
G
H
I
J
2709 C6 2710 D6 2711 E7 2712 A8 2716 D7 2717 J7 2725 J7 2726 J7 2727 J9 2731 A10 2732 B12 2733 C12 2734 D13 2735 G11 2736 J9 2737 J12 2738 J12 2739 J12 2747 A9 2754 A12 2768 A9 2770 F14 2771 F14 2772 F14 2774 C14 2783 I11 2803 B14 2804 B14 2805 G13 2806 B13 2807 B13 2808 B12 2809 E5 2810 B4 2811 E5 2812 F5 2813 B3 2814 I12 2815 J7 2816 J10 2817 C1 2818 J12 2820 E2 2821 E3 2822 E3 2825 D4 2826 F5 2827 I6 2828 I9 2829 F3 2830 I10 2832 G4 2833 H5 2835 I4 2838 J3 2839 J6 2840 J9 2841 J11 2843 H1 2845 C5 2846 C5 2847 A12 2848 B7 2851 A11 2853 F13 2854 E13 2855 G7 2857 F12 2859 G10 2860 G11 2861 B7 2864 D13 2865 E13 2866 G10 2867 E6 2875 H12 2876 H13 2880 H13 2884 D14 2885 J10 2886 G7 2887 G7 2888 G7 2889 G8 2890 G9 2891 G9 2892 G7 2893 H8 2894 H9 2895 H10 2896 H8 2897 H9 2898 H7 3711 F7 3744 A5 3745 B6 3757 B8 3771 F6 3772 G6 3785 I6 3786 I8 3787 I11 3788 I6 3789 I9 3790 I11 3791 J7 3792 C12 3793 A6 3794 A9
3795 F6 3800 G7 3801 H10 3802 G7 3803 H7 3804 C13 3805 J10 3806 J12 3807 J6 3808 J9 3809 J11 3810 J6 3811 J8 3812 J8 3813 J9 3814 J10 3815 J10 3816 J11 3817 J13 3818 J13 3819 G12 3820 G12 3821 H7 3822 H7 3823 H7 3824 H7 3825 G7 3826 G7 3827 H7 5705 H12 5721 A12 5722 B14 5723 A12 5724 F13 5725 B14 5726 F5 5727 E5 5728 D14 5738 G12 5739 J7 5740 J9 5741 J12 5742 F13 5743 C14 5745 G14 7720 A13 7722 C3 7723 H3 7724 D10 7725 B6 7726 G13 7727 E14 7728 I6 7729 I9 7730 I11 7731 J6 7732 J8 7733 J11 9718 A13 9719 A13 9740 F6 9741-A G6 9741-B G6 9741-C G6 9741-D F6 9744 C13 9745 C13 9746 C13 9747 C13 9750 F6 9753 E7 9754 B8 9762 B3 9763 E3 9764 G3 9765 I3 9766 H10 F711 B8 F712 B1 F713 B9 F714 B8 F715 B8 F716 B5 F717 D5 F718 E1 F719 F1 F720 B6 F721 G5 F722 I5 F723 I1 F724 A8 F725 A8 F726 A8 F727 B8 F728 A8 F729 J6 F731 J11 F750 A13 F751 B14 F752 B14 F753 C14 F754 D12 F755 D14 F756 E5 F757 E14 F758 F5 F759 G13 F760 F13 F761 H11
F762 I7 F763 I9 F764 I12 F765 J8 F766 J10 F767 J13 F768 H10 F769 D7 F770 D7
Page 45

Small Signal Board: HOP

HOP
A
B3a-128 Y100
B3a-129 U100
V100
B
C
D
E
F
G
H
I
B3a-130
SDA-F
SCL-F B1-79
LIGHT-SENSOR
HD100 B3a-148
SANDCASTLE
FBL_2FH
R_2FH
G_2FH
B_2FH
B1-85 SCL-F
SDA-F
GND-RGB-CRT
B3a-132 VD100
NOHOP1A
VD B3-131 HD100
R_2FH
G_2FH
B_2FH
FBL_2FH
HD100
VD
NOHOP1B
NOHOP1A
HD100
NOHOP2B
ONLY FOR NO HOP (PTV)
8204_000_8130.7
(NOT USED IN PTV)
*
7302 TDA9178
3454
100R
3455
100R
B1-84
+8VS
5303 100MHZ
100MHZ
5304
100MHZ
5305
100MHZ
5306
100MHZ
5307
5308
100MHZ
10p
2349
9311
9312
22
F301
2348
6
YIN
8
UIN
9
VIN
CF
F334
+8V_VDP
3329
2314
+5VS
10p
TOPIC
13 12 2 10 23 24
NC
LUMA
PROCESSING
CHROMA
PROCESSING
CONTROL
SCL14SDA
ADR
11
7
2301
6308
MCL4148
3453
33K
3397
100R
*
5302
6u8
2332
100u
3349
4K7
7304 PDTC144EU
3387
100R
10p
10p
2347
2346
6322
Circuit Diagrams and PWB Layouts
2398
AD14AD25AD3
DEC
15
100n
F333
5301
6u8
100n
2345
3
6320 BAV99BAV99
SPEC­TRAL PROC
ADC
3396
100R
3398
100R
2315
F321
10p
3305
100n
GND
100n
18
68K
VCC
SOUT
YOUT
UOUT
VOUT
WIN­DOW
2396
100n
3320
100R
3321
100R
2317
2344
20
SC
F335
3339
F312
3363
1K
+5VS
10p
6321 BAV99
+8VS
V100
V21
9302
21
19
17
16
F332
2321
1
6K8
3395
100R
2395
100n 2397
100n
10p
2309
10p
2310
F338
1u
22n
2318
c200
2363
1K
3333
3331
1K
10p
2320
F348
F349
F350
F351
F352
F353
F362
PDZ-6.8B
100n
1
2
3
4
5
6
7
V20
470p
1304
9303
2431
V22
V23
F339
2307
100n
F17
L12
6302
U100
F331
2323
100n
3302
1K
F358
F303
F359
N.C.
2FH-HD100
2FH-VD100
Y100
9304
V19
9305
2429
100n
F330
100n
ONLY FOR NO HOP (PTV)
*
7301 TDA9330
28
YIN
27
UIN
SWITCH
26
VIN
33
BL1
30
RI1
RGB-YUV
31
GI1
MATRIX
32
BI1
SCL
10
11
SDA
17
VP1
SYNC+GEO
39
VP2
RGB
18
DECBG
BANDGAP
19
GND2
ANAGND
7
DECVD
DIGSUP
6
GND1
DIGGND
23
VD
24
HD
12
HSEL
Hsel
F364
XTALI21XTALO
20
13
2
1301
12M CSTCV
2FH-FBL
2FH-B
2FH-G
2FH-R
Yltp
9308
9309
9310
Y
U
V
VUY
I2C
1PHI-
SANDCASTLE
HFB
SUPPLY
6334
F363
3334
R
SATUR’N
CONTROL COLOUR
DIFF
MATRIX
Y
BLACK
STRETCH
G B
SAT
CONTRAST
AND
BRIGHTNESS
CONTROL
CONTR
BRIGHT
HOP
(NOT USED IN PTV)
PHI-2
SC
SCO
HFB
DPC
9
13
14
F306
F305
RES
3327
100n
2325
3323 RES
BAS316
1K
4K7
3324
6306
B3-73
HFB_X-RAY-PROT
100K
BZM55-C5V6
3326
2311 RES
6307
100K
68p
BAT254
B1-76
DYN-FASE-COR
100K
B1-92
V24
R-TXT
B5-134
V25
2330
2329
100n
35
RI2
R
G
RGB-INSERTION
B
START/STOP
H-DRIVE
LPSU
FBCSO5FLASH
22
29
1K
BC847BW
3336
22K
3472
2324
POR
V26
B-TXT
B5-135
B5-136
G-TXT
FBL-TXT
100n
2331
100n
36
37
BI2
GI2
BL2
F307
7362
PDTC144EU
10n
B5-92
POR_FLASH
38
V27
B5-137
R
G
7361
WHITE POINT
CONTROL
PWL +
BEAM CURR
LIMITER
+8VS
47K
3361
2328
22p
B_2FH
3332
F367
F326
WHITE P.
3311
B1-77
TILT
R
G
BB
100K
45DPTV355 7.
G_2FH
1K
3335
34
PWL
6-BITS
GENERATOR
2304
R_2FH
1K
3330
OUTPUT
AMPL
+ BUFFER
+ BLUE
STRETCH
CONTIN’S CATHODE CALIBR’N
DAC
EW
FRAME
RAMP
10p
3314
+8VS
10K
6312
1K
2342
100n
BLKIN
DACOUT
EHTIN
VDOB
VDOA
HOUT
+8VS
BAS316
BC857BW
BCL
EWO
IREF
VSC
RO
GO
BO
7303
81234567
3355
81234567
+8VS
3360
40
41
42
44
43
25
3
F357
4
2
1
16
15
8
100K
F366
33K
F311
F315
2334
F20
L13
+8VS
3315
+8VS
3471
3470
6316
BAS316
3345
10K
2u2
2336
3306
220R
F317
F18
1K
6303
BZM55-C47
6313
BZM55-C22
910111213
100K
7375
33K
BC847BW
6319
BAS316
2u2
3394
+8VS
3318
2308
BAS316
BAS316
F316
4K7
2303
1K
10p
6304
6314
FBL_2FH
3347
1u
3317
220R
+8VS
3467
7305
BC847BW
3346
33K
F314
22K
6310
BZM55-C6V8
3390
220R
3308
18K
3307
3328
39K
2313
100n
2312
33n
F329
470p
2306
10K
3348
2K2
220K
+8VS
3310
Yltp
47K
3316
47K
3325
100K
33K
3465
V29
+8VS
2333
2u2
7318
BC857BW
F19
7312
PDTC144EU
0014
9421
SLOT 1.2x3.2 1
+8VS+8VS +8VS
+8VS
BC847BW
3352
10K
2343
100n
V28
3341
100R
3344
2K2
F365
V30
10K
F360
F368
3359
3364
2319
1n5
100K
100K
3340
100R
3342
100R
3312
F361
7306
3351
F310
7314
BC847BW
3350
100K
3362
3366
220R
1K
F309
3313
100K
680K
3388
10R
BAS316
6309
3367
220R
7311
+5V_VDP
B1-155
Y-SCAVEM
7315 PMBT2369
+5VS
2386
3304
2340
1K
3353
BZM55-C22
6311
2326
BC857BW
3386
22K
220p
3R9
100u
10n
+8VS
3354
F320
3343
68K
2K2
7313
PMBT2369
F347
6301
BAS316
6317
BAS316
UL ONLY
3391
F304
4K7
3322
1K
F340
2392
+5VS
4n7
7310
C001
FBL-TXT
3358
3459
3442
22K
3319
100R
1K8
F319
2K2
220K
3368
1M
+5VS
3365
BC847BW
+8VS
7340 BC847BW
3399
CUTOFF
EHT-INFO
EW-DRIVE
EHT-INFO
1u
3443
HFB_X-RAY-PROT
ANTI-MOIRE
FRAMEDRIVE-
9313
10K
RES ONLY PTV
NOHOP1B
FRAMEDRIVE+
HD@HOME
LINEDRIVE1
GND-LINEDRIVE
NOHOP2B
EHT-INFO
CL 36532079_081.eps
9 10111213
B1 B10
BCL
B5-120
10K
B1-67
R-CRT
B1-66
G-CRT
B1-65
B-CRT
B1-64
B1-140
B1-77
TILT
B1-72
B1-74
2393
B1-73
B9-167
B1-70
B5-142
VSYNC
B5-141
B5-166
B1-68
B1-69
B1-139
171203
A
B
C
D
E
F
G
H
I
0014 I10 1301 G4 1304 G3 2301 B2 2303 E9 2304 G7 2306 H9 2307 F4 2308 G9 2309 D3 2310 E3 2311 H5 2312 F9 2313 F9 2314 E2 2315 E2 2317 E3 2318 E3 2319 F11 2320 G3 2321 B3 2323 B4 2324 I6 2325 G5 2326 E12 2328 B7 2329 B6 2330 A6 2331 B6 2332 E2 2333 D10 2334 E8 2336 E8 2340 I11 2342 A8 2343 A10 2344 H3 2345 H2 2346 H2 2347 H2 2348 H1 2349 H1 2363 F3 2386 G11 2392 F12 2393 E13 2395 D3 2396 D3 2397 D3 2398 A3 2429 A4 2431 B3 3302 C4 3304 I11 3305 C3 3306 E9 3307 E9 3308 E9 3310 E9 3311 G7 3312 E11 3313 E11 3314 G8 3315 G8 3316 H10 3317 G9 3318 F9 3319 E12 3320 D3 3321 D3 3322 D12 3323 H5 3324 I5 3325 A10 3326 G5 3327 G6 3328 F9 3329 E2 3330 A8 3331 G3 3332 A7 3333 F3 3334 H5 3335 A7 3336 H6 3339 C3 3340 C11 3341 C10 3342 C11 3343 D12 3344 D10 3345 D9 3346 C9
3347 D9 3348 D9 3349 F2 3350 B11 3351 B10 3352 A10 3353 A11 3354 A12 3355 B8 3358 A12 3359 B10 3360 A8 3361 G7 3362 F11 3363 F3 3364 F10 3365 F13 3366 G11 3367 F11 3368 E13 3386 F12 3387 G2 3388 C11 3390 D9 3391 F12 3394 E9 3395 C3 3396 D3 3397 D2 3398 D3 3399 B13 3442 E12 3443 E13 3453 C2 3454 B1 3455 C1 3459 B12 3465 B10 3467 A9 3470 B8 3471 A8 3472 I6 5301 E2 5302 E2 5303 G1 5304 G1 5305 H1 5306 H1 5307 H1 5308 H1 6301 E12 6302 I3 6303 H9 6304 H9 6306 I5 6307 I5 6308 C2 6309 D11 6310 D9 6311 D12 6312 G8 6313 H9 6314 H9 6316 C9 6317 E12 6319 D9 6320 I2 6321 I3 6322 I2 6334 H5 7301 B4 7302 A1 7303 G8 7304 F2 7305 B9 7306 A10 7310 F12 7311 F11 7312 F10 7313 A12 7314 A11 7315 B12 7318 E10 7340 B13 7361 H7 7362 H6 7375 B9 9302 A3 9303 A3 9304 A4 9305 A4 9308 B4 9309 B4
9310 B4 9311 I1 9312 I1 9313 F13 9421 B10 C001 H12 F301 E2 F303 E4 F304 I12 F305 G5 F306 G5 F307 G6 F309 D11 F310 D10 F311 D8 F312 E3 F314 C9 F315 D8 F316 D9 F317 E9 F319 B12 F320 A12 F321 F3 F326 B7 F329 H9 F330 B4 F331 B4 F332 B3 F333 C2 F334 C2 F335 B3 F338 E3 F339 E4 F340 F12 F347 D12 F348 G3 F349 G3 F350 H3 F351 H3 F352 H3 F353 H3 F357 E8 F358 D4 F359 F4 F360 F10 F361 F11 F362 H3 F363 H5 F364 F4 F365 E10 F366 A8 F367 B7 F368 B10 c200 F3
F17
1V / div DC
5ms / div
F18
PM3394B
500mV / div DC
5ms / div
F19
PM3394B
500mV / div DC
5ms / div
F20
PM3394B
500mV / div DC
5ms / div
L12
1V / div DC
10us / div
V19
1V / div DC
10us / div
V20
1V / div DC
10us / div
V21
1V / div DC
10us / div
V28
PM3394B
1V / div DC
10us / div
V29
PM3394B
1V / div DC
10us / div
V30
PM3394B
1V / div DC
10us / div
Page 46

Small Signal Board: OTC

OTC
A
B6-145
SEL_IN_2
(DEGAUSS-INPUT)
B1-118
DEGAUSSING
B4-102
B
C
D
E
F
G
H
I
J
B1-116 B6-144
B1-B2-79
B2-163
B6-168
B1-121 B1-117
B4-141
B6-160
B9-170
B1/B4-92
B1-152
B1-63
B1-90
B1-91
B1-86
B1-87
B1-93
B6-147
B4-166
B3-148
B4-141
B2-122
FRONT-DETECT
ON-OFF-LED
SEL_IN_1
LIGHT-SENSOR
AGC-MONITOR
SC3_STATUS
+5V2_CON
SC4_STATUS
KEYBOARD
STANDBY
STATUS_SC3
PWM_ANTIMOIRE
RC
POR_FLASH
IRQ-DIGITAL
P50
BC847BW
SDA-F
SCL-F
SDA-S
SCL-S
SOUND-ENABLE
RESET-AUDIO
HD@HOME
SDA-S
SDA-F
SCL-S
SCL-F
TxD
RxD
RESET
+3V3_INTOTC
HD100
HFB
+3V3_INTOTC
VSYNC
CVBS-TXT
8204_000_8129.7
+3V3_INTOTC
B10B1
9014
3058
RES
+3V3_INTOTC
6K8
3075
RES
3025
220R
0015
10K
7008
F053
F081
SLOT 1.2x3.2
3094
47K
3005
10K
3041
4K7
2014
150p
3095
47K
3042
4K7
3059
9015
2020
220p
F068
F044
9003
9004
9002
3096
+3V3_INTOTC
4K7
3080
620R
3027
B53
RES
RES
9001
3040
47K
+5V_CON
3068
2058
100p
+3V3_INTOTC
+5V2_CON
6001
47K
1PS76SB10
B54
4
VSS
SDA
5
VCC
8
+3V3_INTOTC
4K7
7016 PMBT2369
Circuit Diagrams and PWB Layouts
3020
2K7
3021
2059
100p
3091
470R
BAT54WS
M24C32
7011
NVM
7015 PMBT2369
+8V_CON
3018
10K
3019
10K
3039
120R
F067
9016
3047
470R
6004
3024
27K
2022
100n
B51
3074-A
18
470R
WC_
SCL
E2
E1
E0
1
SDM
10K
RES
IRQ-FTV
4K7
3078-D
470R
+3V3_INTOTC
3077
1PS76SB10
2K2
3044
B52
7
F046
6
3
2
F064
9006
2061
100p
3078-C
470R
7010 BC857BW
RES
10K
3076-B
470R
6003
+5V2_CON
2K2
3069
3079
3074-C
36
+3V3_INTOTC
F002
F083
2007
100n
F043
3097
470R
470R
3074-D
+3V3_INTOTC
3076-C
470R
+3V3_INTOTC
7009 BC847BW
4K7
4K7
3088
3064-C
3
100R
3064-A
1
470R
F045
2001
33p
2002
27p
B56
RES
2006
2005
3033
10K
100R
SAM
9005
RES
6005
PLVA2650A
3099-D
470R
3099-B
NC.
470R
3073-D
470R
3073-B
470R
3090-D
470R
3090-C
3090-B
470R
470R
3090-A
470R
3078-B
470R
4K7
3026
3064-D
4
5
100R
6 3064-B
27
100R
8
F088
3074-B
27
470R
4K7
4K7
3002
3001
6M
1001
CX-5F
B57
B58
2008
F065
100n
24K
3003
2004
100n
F042
2060
3099-A
3073-C
3073-A
3076-D
3076-A
B55
220n
470R
470R
470R
470R
470R
B60
2003
100p
3081
3099-C
F047
220n
470R
470R
105
106
120
119
118
117
116
115
114
113
110
109
108
107
104
103
100
99
98
97
96
95
92
91
90
89
88
87
86
85
93
94
16
17
18
74
83
84
82
5
4
7
6
2
3
8
2023
100n
P2-2|ADC0
P2-3|ADC1
P3-7|CBB
P3-6|TTC
P3-5|TTD
P3-4
P3-3
P3-2
P3-1|LED1
P3-0|LED0
P2-7|ADC5
P2-6|ADC4
P2-5|ADC3
P2-4|ADC2
P2-1|PWM1
P2-0|PWM0
P1-7|RC
P1-6|INT3
P1-5|INT2
P1-4|INT1
P1-3|INT0
P1-2|T2
P0-7
P0-6|CORN
P0-5|TxDo
P0-4|RxDo
P0-3|SDA1
P0-2|SCL1
P0-1|SDA0
P0-0|SCL0
P1-0|T0
P1-1|T1
OSCOUT
OSCIN
OSCGND
RESET
HSYNC
VSYNC
FRAME
CVBS0
CVBS0_R
CVBS1
CVBS1_R
IREF_DEC
1
IREF
REF+
STN|BLACK
20
VDD1
2025
100n
VDDP138VDDP2
9
VDDA
2024
100n
19
VDDN1
OTC
AND
DISPLAY TIMING
CLOCK GENERATOR
TXT
CAPTION
EPG
USA
CLOSE
TXT
VSSA10VSSD121VSSD276VSSD3
VSSP139VSSP250VSSP3
102
654321
111
VDDP3 A1
A2
A3
A4
A5
A6
A7
A8
A9
A10
A11
A12
A13
A14
A15
A16
A17
A18
A19
A20
A21
A22
A23
D0
D1
D2
D3
D4
D5
D6
D7
D8
D9
D10
D11
D12
D13
D14
D15
EAn
15
2029
100n
R
G
B
5
4
SAA5801H
OTC
45
47
51
53
55
57
59
61
62
60
58
56
54
52
48
46
44
63
65
64
66
67
68
36
32
28
24
23
27
31
35
34
30
26
22
25
29
33
37
40
41
43
42
69
72
71
70
73
77
78
79
80
81
F052
7001
4
1
4
2
AA(0)
AA(1)
AA(2)
AA(3)
AA(4)
AA(5)
AA(6)
AA(7)
AA(8)
AA(9)
AA(10)
AA(11)
AA(12)
AA(13)
AA(14)
AA(15)
AA(16)
AA(17)
AA(18)
AA(19)
AA(20)
DD(0)
DD(1)
DD(2)
DD(3)
DD(4)
DD(5)
DD(6)
DD(7)
DD(8)
DD(9)
DD(10)
DD(11)
DD(12)
DD(13)
DD(14)
DD(15)
3034-D
100R
3034-A
100R
3035-D
100R
3035-B
100R
3008-A
1
+3V3_INTOTC
C
8
2027
2026
2028
100n
100n
100n
49
101
VDDD275VDDD3
EXTERNAL CODE AND DATA INTERFACE
ROM_OEn
RAM_OEn
ROM_CSn
RAM_CSn
RASn
CASLn
CASHn
WEn
FADING
DISPLAY
INTERFACE
DATA
VIDEOn
TEST011TEST112TEST213TEST314TEST4
112
3006
3007-A470R
3007-C470R
27
18
36
470R3007-D
470R3007-B
470R
3010
150R
A
5
8
5
F070
7
RES
7
3008-B
2
AA(0)
AA(1)
AA(2)
AA(3)
AA(4)
AA(5)
AA(6)
AA(7)
AA(8)
AA(9)
AA(10)
AA(11)
AA(12)
AA(13)
AA(14)
AA(15)
AA(16)
AA(17)
AA(18)
AA(19)
AA(20)
DD(0)
DD(1)
DD(2)
DD(3)
DD(4)
DD(5)
DD(6)
DD(7)
DD(8)
DD(9)
DD(10)
DD(11)
DD(12)
DD(13)
DD(14)
DD(15)
46DPTV355 7.
789101112
3 1
36
1
3
1
3
1
4
2
4
2
F014
4
F016
2
F018
4
2
4
3
1
F004
2
F057
2
2
2
2
3
3
3
3
4
4
4
4
1
1
1
1
3034-C
36
100R
3034-B
27
100R
3035-A
18
100R
3035-C
6
3
100R
3011
470R
6
5
3008-C
3008-D
150R
150R
3
4
68R
3009
3048-C
3048-A
3049-C
3049-A
3050-C
3050-A
3051-C
3051-A
3052-D
3051-B
3051-D
3050-B
3050-D
3049-B
3049-D
3048-B
3048-D
3052-C
3052-A
3052-B
3053
100R
3054-B
3055-B
3056-B
3057-B
3057-C
3056-C
3055-C
3054-C
3054-D
3055-D
3056-D
3057-D
3057-A
3056-A
3055-A
3054-A
ROM_OE
RAM_OE
ROM_CS
+3V3_INTOTC
8
6
150R
6
A(0)
8
A(1)
A(2)
8
A(3)
6
A(4)
8
A(5)
6
A(6)
8
A(7)
5
A(8)
7
A(9)
5
A(10)
7
A(11)
5
A(12)
7
A(13)
5
A(14)
7
A(15)
5
A(16)
6
A(17)
8
A(18)
7
A(19)
A(20)
7
D(0)
7
D(1)
7
D(2)
7
D(3)
6
D(4)
6
D(5)
6
D(6)
6
D(7)
5
D(8)
5
D(9)
5
D(10)
5
D(11)
8
D(12)
8
D(13)
8
D(14)
8
D(15)
RAM_CS
RAS
CASL
CASH
3012-A
100R
3012-C
100R
B
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
D
+3V3_INTOTC
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
WE
1
3012-B
100R
3
3012-D
54
100R
E
2033
+3V3_INTOTC
E
+3V3_INTOTC
F069
82p
2034
27
F048
2009
87654321
B
A(0)
A(1)
A(2)
A(3)
A(4)
A(5)
A(6)
A(7)
A(8)
A(9)
A(10)
A(11)
A(12)
A(13)
A(14)
A(15)
A(16) A(17)
A(18)
A(19)
A(20)
ROM_CS
ROM_OE
E
F071
82p
2035
F056
RES
2010
82p
10K
10K
3061
10K
F072
RAM_OE
2036
47p
+3V3_INTOTC
3031
3029
RAS
CASL
CASH
82p
F055
2011
2031
100n
F021
25
A0
24
A1
23
A2
22
A3
21
A4
20
A5
19
A6
18
A7
8
A8
7
A9
F010
6
A10
F012
5
A11
4
A12
3
A13
2
A14
F020
1
A15
F022
48
A16
F005
17
A17
F003
16
A18
9
A19
10
A20
F024
47
BYTE_
F023
26
CE_
F001
11
WE_
F025
28
OE_
12
RP_
F060
14
WP_
100n
2038
+3V3_INTOTC
MSM51V18165F
17
AA(0)
F017
18
AA(2)
F013
19
AA(4)
F009
20
AA(6)
F006
23
AA(7)
F007
24
AA(8)
F008
25
AA(9)
F011
26
AA(5)
F015
27
AA(3)
F019
28
AA(1)
14
RAS
31
CASL
30
CASH
13
WE
29
RAM_OE
11
12
NC
15
F074
47p
2012
B2-174
B2-176
B2-175
R-SC3-IN
G-SC3-IN
B-SC3-IN
9101112 13
WE
2037
A
F073
82p
F054
47p
37 13
VCC
7006
LH28F320BJE
PROGRAM
FLASH-RAM
(Set SW)
DQ15|A_1
RY|BY_
GND
27 46
+3V3_INTOTC
1
A0
VCC16VCC221VCC3
A1
7007
A2
DRAM
A3
(TXT)
A4
A5
A6
A7
A8
A9
RAS_
LCAS_
UCAS_
WE_
OE_
VSS137VSS242VSS3 22
F058
F059
F062
F063
B2-177
FBL-SC3-IN
F066
VCCW
29
DQ0
31
DQ1
33
DQ2
35
DQ3
38
DQ4
40
DQ5
42
DQ6
44
DQ7
30
DQ8
32
DQ9
34
DQ10
36
DQ11
39
DQ12
41
DQ13
43
DQ14
45
15
+3V3_INTOTC
100n
2019
2
DQ1
3
DQ2
4
DQ3
5
DQ4
7
DQ5
8
DQ6
9
DQ7
10
DQ8
33
DQ9
34
DQ10
35
DQ11
36
DQ12
38
DQ13
39
DQ14
40
DQ15
41
DQ16
16
NC
32
1402
1
2
3
4
5
3062
10K
F033
F026
F061
PH
TO 1402 OF
3rd SCART
9008
RxD
F036
F035
F039
F040
F032
F031
F028
F027
F041
F038
F037
F029
F030
F034
B61
3098
100R
D(0)
D(1)
D(2)
D(3)
D(4)
D(5)
D(6)
D(7)
D(8)
D(9)
D(10)
D(11)
D(12)
D(13)
D(14)
D(15)
DD(5)
DD(2)
DD(3)
DD(4)
DD(6)
DD(1)
DD(7)
DD(0)
DD(11)
DD(12)
DD(10)
DD(15)
DD(8)
DD(14)
DD(13)
DD(9)
F075
B64
2053
10p
D
E
RAM_CS
C
F079
B
2013
BC857BW
TxD
A(1)
A(2)
A(3)
A(4)
A(5)
A(6)
A(7)
A(8)
A(9)
A(10)
A(11)
A(12)
A(13)
A(14)
A(15)
A(16) A(17)
A(18)
RAM_CS
RAM_OE
WE
+5V2_CON
7002
9009
+3V3_INTOTC
M29W400BT
25
24
23
22
21
20
19
18
48
17
15
26
28
11
12
47
10K
3093
100u
MCL4148
6002
3015
470K
F089
3067
470K
B62
9010
9011
9012
9013
3045
100R
2040
100n
7012
A0
A1
A2
A3
FLASH-RAM
A4
A5
A6
A7
8
A8
7
A9
6
A10
5
A11
4
A12
3
A13
2
A14
1
A15
A16
A17
RB_
E_
G_
W_
RP_
BYTE_
RES
9007
3014
6K8
F049
100n
2017
F076
100n
2039
100R
3046-B
2052
10p
3004
100R
3046-A
VCC
EPG-
15K
RES
7003 BC847BW
3016
7013 BC847BW
3046-D
100R
3046-C
100R
2054
37
DQ0
DQ1
DQ2
DQ3
DQ4
DQ5
DQ6
DQ7
DQ8
DQ9
DQ10
DQ11
DQ12
DQ13
DQ14
DQ15|A-1
VSS127VSS2
46
7005
LD1117
4
IN
5 8
3013
10K
+3V3_INTOTC
1K5
4K7
3065
3066
47K
B63
F087
F086
8
7
F085
6
10p
5
4
3
F078
2
1
13
29
D(7)
31
D(6)
33
D(5)
35
D(4)
38
D(3)
40
D(2)
42
D(1)
44
D(0)
30
32
34
36
39
41
43
45
A(0)
16
13
14
NC
9
10
2
O1
3
O2
6
O3
+3V3_INTOTC
7
O4
GND
1
2016
4K7
3017
F050
RESET
7004 BC847BW
+3V3_INTOTC
7014 BC857BW
F077
B4-134
R-TXT
B4-135
G-TXT
B-TXT
B4-136
B4-137
RES
F084
F082
2055
F080
10p
2057
FBL-TXT
10p
2056
10p
N.C.
IRQ-FTV
1401
10
9
CL 36532017_024.eps
D
B
F051
100u
230403
A
B
C
D
E
F
G
H
I
J
0015 G1 1001 G3 1401 I13 1402 I10 2001 G3 2002 G3 2003 J4 2004 J4 2005 J3 2006 J3 2007 J3 2008 H3 2009 I8 2010 I8 2011 I9 2012 I9 2013 F12 2014 I1 2016 F13 2017 G12 2019 F10 2020 D1 2022 E2 2023 A4 2024 A5 2025 A5 2026 A5 2027 A6 2028 A6 2029 A6 2031 A9 2033 H8 2034 H8 2035 H8 2036 H9 2037 H9 2038 E9 2039 H12 2040 A12 2052 J12 2053 J11 2054 J13 2055 J13 2056 I13 2057 I13 2058 C2 2059 C2 2060 A4 2061 A3 3001 F3 3002 F4 3003 J3 3004 F12 3005 H1 3006 J5 3007-A J5 3007-B J6 3007-C J6 3007-D J6 3008-A I6 3008-B I7 3008-C I7 3008-D I7 3009 J7 3010 I7 3011 I7 3012-A I7 3012-B I8 3012-C I7 3012-D I8 3013 F13 3014 F12 3015 G12 3016 G12 3017 F13 3018 A2 3019 A2 3020 A2 3021 B2 3024 D2 3025 E1 3026 E3 3027 E2 3029 D9 3031 D9 3033 C3 3034-A H6 3034-B H7 3034-C G7 3034-D G6 3035-A H7 3035-B H6 3035-C H7 3035-D H6 3039 B2
3040 I2 3041 I1 3042 J1 3044 E2 3045 J12 3046-A J12 3046-B J12 3046-C I13 3046-D I13 3047 C2 3048-A B7 3048-B D7 3048-C A7 3048-D D7 3049-A B7 3049-B C7 3049-C B7 3049-D C7 3050-A B7 3050-B C7 3050-C B7 3050-D C7 3051-A B7 3051-B C7 3051-C B7 3051-D C7 3052-A D7 3052-B D7 3052-C D7 3052-D C7 3053 D7 3054-A G7 3054-B E7 3054-C F7 3054-D F7 3055-A G7 3055-B E7 3055-C F7 3055-D F7 3056-A G7 3056-B E7 3056-C F7 3056-D F7 3057-A G7 3057-B E7 3057-C E7 3057-D F7 3058 C1 3059 C1 3061 E9 3062 A10 3064-A F3 3064-B E4 3064-C E3 3064-D E4 3065 G13 3066 G13 3067 H12 3068 A2 3069 E3 3073-A C4 3073-B C4 3073-C B4 3073-D B4 3074-A F2 3074-B F3 3074-C F3 3074-D A3 3075 C1 3076-A D4 3076-B D3 3076-C D3 3076-D D4 3077 D3 3078-B C4 3078-C A3 3078-D B3 3079 E3 3080 A1 3081 A4 3088 E3 3090-A C3 3090-B C4 3090-C C3 3090-D C4 3091 C2 3093 E12 3094 H1 3095 I1 3096 J1 3097 A3 3098 J11 3099-A B4 3099-B B4 3099-C A4
3099-D B4 6001 E2 6002 F12 6003 E3 6004 D2 6005 A4 7001 A6 7002 F12 7003 G13 7004 G13 7005 E13 7006 A10 7007 F10 7008 E1 7009 D3 7010 C3 7011 G2 7012 A12 7013 H13 7014 G13 7015 I2 7016 J2 9001 H2 9002 I1 9003 F1 9004 G1 9005 A4 9006 A3 9007 F12 9008 J10 9009 J12 9010 I12 9011 I12 9012 I12 9013 J12 9014 C1 9015 D1 9016 C2 F001 D9 F002 H3 F003 D9 F004 D7 F005 C9 F006 F9 F007 G9 F008 G9 F009 F9 F010 B9 F011 G9 F012 C9 F013 F9 F014 C7 F015 G9 F016 C7 F017 F9 F018 C7 F019 G9 F020 C9 F021 A9 F022 C9 F023 D9 F024 D9 F025 D9 F026 D11 F027 G11 F028 G11 F029 H11 F030 H11 F031 G11 F032 F11 F033 C11 F034 H11 F035 F11 F036 F11 F037 G11 F038 G11 F039 F11 F040 F11 F041 G11 F042 A4 F043 A3 F044 F1 F045 F3 F046 G3 F047 H4 F048 I8 F049 G12 F050 G13 F051 F13 F052 J6 F053 J1 F054 I9 F055 I9 F056 I8 F057 D7
F058 I10 F059 J10 F060 E9 F061 D11 F062 J10 F063 J10 F064 H3 F065 H4 F066 A10 F067 B3 F068 E1 F069 G8 F070 H7 F071 H8 F072 H9 F073 H9 F074 H9 F075 D11 F076 H12 F077 H13 F078 J13 F079 J11 F080 J13 F081 D1 F082 J13 F083 I3 F084 I13 F085 J13 F086 I13 F087 I13 F088 F4 F089 G12
B51
PM3394B
2V / div DC
100us / div
B52
PM3394B
2V / div DC
100us / div
B53
PM3394B
2V / div DC
5ms / div
B54
PM3394B
2V / div DC
5ms / div
B55
PM3394B
2V / div DC
250ns / div
B57
PM3394B
500mV / div AC
10us / div
B58
PM3394B
1V / div DC
5ms / div
B60
PM3394B
500mV / div DC
10us / div
Page 47
Circuit Diagrams and PWB Layouts

Small Signal Board: Audio Demodulator

1234 56
AUDIO DEMODULATOR
5656
+8VC
A
B
C
D
E
F
G
H
I
J
B1 B10
6u8
9606
RES
B5-147 RESET-AUDIO
B1-113
B1-113
AUDIO-SW SCL-F
B1-89
B1-88 SDA-F
B2-164 SNDR-SC3-IN
B2-165 SNDL-SC3-IN
B2-154 CVBS-AV3-IN
STATUS_SC3
B5-160
3576
*
5667
HA50
*
5668
VA50
*
2588
B2-119 QSS_AM
RES
PIP_AUDIO
PIP_AUD_IN
F623
SNDR-SC3-IN B4-164
*
2562
SNDL-SC3-IN
B4-165
*
2563
B1-106
R-FRONT-IN
2564
B1-105
L-FRONT-IN
2565
B1-98 R-SC2_AV2-IN
2566
B1-95
L-SC2_AV2-IN
2567
B1-100
R-SC1_AV1-IN
2568
B1-94
L-SC1_AV1-IN
2569
0017
0016
1
COMPONENTS WITH DIVERSITY (SEE SPARE PARTS LIST)
*
8204_000_8128.8
123
9652
*
100R
100R
100R
100R
100R
100R
100R
100R
3560
3562
3564
3567
3570
3571
3572
3574
5663
2K7
100p
1n
1n
1n
1n
1n
1n
1n
1n
1
2592
3531
8K2
2695
2589
RES
+5V_AUD
100n
RES
9604
3650
2R2
F674
BAT54WS
F671
+8VA
2670
100u
A
A
3577
100R
1n
F620
F669
F622
9694
F652
*
1680
1
2
3
4
5
6
3656
100R 3655
100R
TO 1680
I/O 3d SCART
F680
1n
*
*
2570
2571
100p
1681
F645
*
1
TO 1948
2
3
TUNER SIM/CONNECTOR
F666
2551
*
2659
2660
2663
2664
2552
2553
2554
2555
F647
F628
F627
3n3
470p
F630
470p470p
470p
470p
470p
470p
470p
2653
330n
F626
F625
F629
2654
F660
2593
1n
2594
1n
2595
1n
C100
F610
100p
3692
6K8
3693
6K8
3654
6K8
3653
6K8
3688
6K8
3689
6K8
3684
6K8
3685
6K8
F624
F646
3551
*
*
1K
2506
*
330n
22K
RES
3694
*
2507
330n
22K
3695
RES
*
2661
330n
22K
RES
3651
2662
*
330n
22K
RES
3652
2504
*
330n
22K
RESRES
3690
2505
*
330n
22K
3691
*
2502
330n
22K
RES
3686
*
2503
330n
22K
RES
3687
9603
6650
470p
RES
A
F673
6651
RES
F661
5651
5652
2665
F611
10u
2682
2550
F644
330p
RES
3550
2698
100n
2697
*
*
A
A
F681
F602
100u
2666
*
7666-B
BC847BPN
2681
1K
5655
150K
2u2
+8VA
MUTE_SW
47DPTV355 7.
7 8 9 1011121314
7668
BC857BW
MUTE_SSB
9689
RES
6654
2591
RES
RES
FMN
100p
5664
5665
100MHZ
RES
RES
I2S-WS
DSP
for MSP3410D only
for MSP3415D only
Switching Facilities
SCART
TESTEN
53
F675
9607
9608
*
*
+5V2
1K
3532
MCL4148
F606
10u
2640
220n
1683
345
F651
5669
100MHZ
100MHZ
RES
54
3
I2S-CL
I2S-DA-OUT1
I2S INTERFACE
I2SL/R I2SL/R
LOUDSPEAKER R
LOUDSPEAKER L
NC159NC2
AUD-CL-OUT
58
57
9682
*
9683
*
9684
*
9609
*
9685
*
9686
*
9687
*
F695
RES
RES
+5DB
1
2
5670
100MHZ
RES
6
I2S-DA-IN112I2S-DA-IN2
HEADPHONE R
HEADPHONE L
SCART-R
SCART-L
D-CTR-IO1
60
5657
*
5658
*
5659
*
5660
*
5661
*
5662
*
5666
*
MCL4148
N.C.
100u
100n
3626
F601
+8VA
B75
22u
*
2n2
2610
4
3
7666-A
*
BC847BPN
3639
1K
2651
100n
B65
2611
+8VA
*
5
*
*
B74
2652
47p 2501
47p
7654-A
*
BC847BS
*
3552
10K
F682
+5DA
+5DB
1n
1K2
3624
6
1
3634
120R
A
7651
*
MSP3411G
1
I2C_CL
2
I2C_DA
46
VREFTOP
51
ANA_IN-
52
ANA-IN2+
50
ANA_IN1+
47
MONO_IN
SCART 4
36
SC4-IN-R
35
SC4-IN-L
SCART 3
39
SC3-IN-R
38
SC3-IN-L
SCART 2
42
SC2_IN_R
41
SC2_IN_L
SCART 1
45
SC1_IN_R
44
SC1_IN_L
F683
7654-B
*
BC847BS
BC847BW
*
*
+8VA
*
3627
7667
*
MUTE_SW
3699
180K
2
56K
3630
A
VREF119VREF2
27
A
A
10K
+5V
2693
2632
F643
*
330n
2634
A
8
ADR-WS
DEMODULATOR
NICAM
DECODER
AHVSS
ASG2
33
*
3628
22K
22K
*
3554
3555
F607
1n
F639
ASG1
4037
F684
*
22K
5654
220p
7
ADR-DA
3553
22K
3533
2584
RES
ASG0
43
F685
F649
ADR-CL
IDENT
A/D
A/D
9
AVSS
48
10K
100p
2585
RES
+5VF
2690
100n
2691
2u2
2516
1u
F650
100p
62
ADR_SEL
TP1
56
Y50
U50
V50
Y-PIP+MAIN-IN
U-PIP+MAIN-IN
V-PIP+MAIN-IN
PIP_AUD_IN
3540
10K
2586
RES
F687
7674
BC847BW
2590
100p
RES
FM1 FM2 NICAM A NICAM B
IDENT
SCART-L
SCART-R
DVSS
11
B2/B3-125
B2/B3-126 B2/B3-127
*
SELECT_AUDIO_LR
45 67 89 10
3519
10K
9523 6656
D-CTR-IO0
61
RES
*
NC3
64
2556
2559
RES
+5DA
BC847BS
AVSUP
49
+5V2
100K
3523
F691
7675-A
2508
F605
F637
31
AHVSUP
D/A
D/A
D/A
D/A
D/A
D/A
AUDIO PLL
XTAL_IN55XTAL_OUT
54
1651
CX-5F
18M432
3p3
2667
RES
RES
100p
100p
2557
*
*
2560
100p
100p
RES
ANTI-PLOP
CIRCUIT
F696
9520
9521
15n
RES
2514
1n
2609
100u
6652
5653
BZX284-C10
*
10u
10u
2678
2677
F638
+8VC
30
32
CAPL-A
STANDBYQ
CAPL-M
RESETQ
DACM-C
DACM-S
DACM-SUB
DACM_R
LOUDSPEAKER
DACM_L
HEADPHONE
SC2-OUT-R
SC2-OUT-L
SC1_OUT_R
SC1_OUT_L
NC414NC515NC6
13
B76
3p3
2668
F631
F632
F633
F634
100p
2558
2561
RES
100p
2587
RES
F686
100p
F617
F618
F619
F697
RES
+8V_AUD
3644
RES
6653
*
DVSUP
AGNDC
DACA-R
DACA-L
*
1
2
3
4
5
6
7 8
9
10
TO 0205
1682
C1
DW
9522
*
9688
63
10
16
22
24
23
34
20
21
17
18
25
26
28
29
+5V2
3524
100K
7675-B BC847BS
4R7
BAT54 COL
9691
*
F698
+5DB
F656
3642
100R
3643
100R
F658
2686
A
2680
A
+8V_AUD
2612
*
3619
*
3617
*
+3V3_SIM
+5V_AUD
+8V_AUD
F688
1n
10u
1u
1K
10K
2679
3525
680K
B66
F664
100n
A
+8V_AUD
3618
*
2515
9692
9693
RES
F689
2512
2644
A
2649
A
2645
330n F668
1n
2694
A
+8V_AUD
10K
*
7670 BC847BW
5672
30R
100p
220n
A
2643
330n
1n
2u2
B67
*
2513
RES
2646
2u2
3666
3667
3668
7669 LE80AB
8
IN
INH5NC
23 67
5671
30R
6657
PDZ-2.7B
6658
MCL4148
3526
1M5
10u
3658
3637
F655
3657
150K
F665
82K
2
F657
56K
F663
2687
OUT
GND
+3V3_FBX
150K
F659
82K
56K
A
2
F690
3527
+8VA
3671
6 7665-A BC847BPN 1
3669
1n
1
4
100R
+8VA
3698
6 7664-A BC847BPN 1
3636
1K2
BC847BPN
5
3670
270R
A
+8VC
3640
100R
1K2
5
3546
1K
270R
B68
A
1K
B69
B7-162
L-HEADPHONE
F667
2674
A
A
F670
3641
100R
2673
A
BC847BPN
4
7664-B
3
F608
4
7665-B 3
F609
B7-161
R-HEADPHONE
5672 J9 6650 A3 6651 D3 6652 C8 6653 C8 6654 B6 6656 A7 6657 A10 6658 A10 7651 D4 7652 H12 7653 D13 7654-A H4 7654-B I4 7656-A B12 7656-B B12 7663-A B14 7663-B B14 7664-A C10 7664-B C11 7665-A E10 7665-B E11 7666-A C4 7666-B B4 7667 I5 7668 A6 7669 H10 7670 I9 7674 B6 7675-A A8 7675-B A9 7677 C14 7678-A E14 7678-B E14 7679-A H14 7679-B I14 7680 G13 9520 A8 9521 A8 9522 B9 9523 A7 9603 A3 9604 A2 9606 A1 9607 I6 9608 I6 9609 I6 9610 D13 9611 G11 9632 H13 9642 D13 9645 E13 9652 E1 9676 J12 9677 J12 9682 H7 9683 H7 9684 I7 9685 I7 9686 I7 9687 I7 9688 C8 9689 A6 9691 C9 9692 A9 9693 A9 9694 C2 C100 J3 F601 A4 F602 A4 F603 B11 F604 A13 F605 C8 F606 B7 F607 B5 F608 D11 F609 E11 F610 D3 F611 D3 F617 I8 F618 I8 F619 I8 F620 B2 F622 B2 F623 E1 F624 D2 F625 H2 F626 G2 F627 G2 F628 F2 F629 E3 F630 E2 F631 H8 F632 H8 F633 I8 F634 I8 F637 C8 F638 C8 F639 C5 F641 H13 F642 I13 F643 C5 F644 E3 F645 D2 F646 D2 F647 E2 F648 B12 F649 C5 F650 C6 F651 C7 F652 C2 F653 B13 F654 B11 F655 D10 F656 E9 F657 E10 F658 F9 F659 C10 F660 H3 F661 H3 F662 I14 F663 F10 F664 C9 F665 E10 F666 D2 F667 A11 F668 E9 F669 B2 F670 B11 F671 A2 F673 A3 F674 A3
F675 H6 F680 C2 F681 J3 F682 J4 F683 I4 F684 H5 F685 I5 F686 J8 F687 A6 F688 A9 F689 A9 F690 A10 F691 A8 F692 C14 F693 E14 F694 E14 F695 A7 F696 A8 F697 A8 F698 C9 F699 I14
B65
500mV / div DC
2us / div
B66
50mV / div DC
50us / div
B67
50mV / div DC
50us / div
B74
2V / div DC
20ms / div
B75
2V / div DC
20ms / div
B76
1V / div DC 250ns / div
PM3394B
PM3394B
PM3394B
PM3394B
PM3394B
PM3394B
3527 B10
0016 I1
3528 C14
0017 I1
3529 E14
1651 H8
3530 E14
1680 B2
3531 C1
1681 C2
3532 B6
1682 H8 1683 C7
3533 B5
2501 E4
3540 A6 2502 H2 2503 I2 2504 G2 2505 H2 2506 E2 2507 E2 2508 C8 2509 B12 2510 D13 2511 E13 2512 B9 2513 B10 2514 B8 2515 J9 2516 C6 2546 G13 2547 G13 2548 H13 2549 I13 2550 E3 2551 D2 2552 G2 2553 H2 2554 H2 2555 I2 2556 I7 2557 I7 2558 I8 2559 J7 2560 J7 2561 J8 2562 E1 2563 F1 2564 F1 2565 G1 2566 G1 2567 H1 2568 H1 2569 I1 2570 C1 2571 C2 2572 C14 2573 C13 2574 D14 2575 E13 2576 E13 2577 F14 2580 G14 2581 G14 2582 I13 2583 I13 2584 C5 2585 C5 2586 C6 2587 J8 2588 D1 2589 D1 2590 C6 2591 B6 2592 B1 2593 I3 2594 I3 2595 J3 2600 D11 2601 D11 2602 E11 2603 E11 2604 F11 2609 C8 2610 A4 2611 A4 2612 H9 2629 B11 2630 A13 2632 C5 2634 C5 2637 A11 2640 B6 2643 C10 2644 D9 2645 E9 2646 C10 2649 E9 2651 E4 2652 E4 2653 D2 2654 D3 2659 E2 2660 F2 2661 F2 2662 G2 2663 F2 2664 G2 2665 A3 2666 A4 2667 H7 2668 H8 2670 A2 2673 B11 2674 A11 2677 C8 2678 C8 2679 G9 2680 G9 2681 D4 2682 D3 2686 F9 2687 G10 2690 B6 2691 B6 2693 A5 2694 F9 2695 A1 2697 I3 2698 I3 2699 A11 3519 A7 3520 C12 3521 E13 3522 E13 3523 A7 3524 A9 3525 A9 3526 A10
3544 B11
3545 A12
3546 D10
3547 B13
3550 E3
3551 D2
3552 I4
3553 I5
3554 I5
3555 J5
3556 B14
3557 C13
3558 D14
3559 E13
3560 E1
3561 E13
3562 E1
3563 F13
3564 F1
3567 G1
3568 G14
3569 G14
3570 G1
3571 H1
3572 H1
3573 H13
3574 I1
3575 I13
3576 C1
3577 B2
3578 I14
3579 I14
3601 D12
3602 D12
3603 E12
3604 E12
3605 E12
3606 E12
3607 F12
3608 F12
3609 F12
3612 G13
3613 G13
3614 I14
3615 I14
3616 G14
3617 I9
3618 H9
3619 I9
3624 B4
3626 I4
3627 H4
3628 I5
3630 C4
3634 C4
3636 D10
3637 C10
3639 C4
3640 A11
3641 B11
3642 E9
3643 E9
3644 B8
3650 A2
3651 F2
3652 G2
3653 G2
3654 F2
3655 B3
3656 B3
3657 D10
3658 C10
3659 A13
3663 B13
3664 B14
3666 E10
3667 E10
3668 F10
3669 F10
3670 E10
3671 E10
3673 G12
3675 B12
3676 B11
3677 B13
3680 A13
3681 A11
3682 B12
3683 H13
3684 H2
3685 I2
3686 H2
3687 I2
3688 G2
3689 H2
3690 G2
3691 H2
3692 E2
3693 E2
3694 E2
3695 F2
3698 C10
3699 B4
5651 A3
5652 A3
5653 C8
5654 A5
5655 E4
5656 A1
5657 H7
5658 H7
5659 I7
5660 I7
5661 I7
5662 I7
5663 C1
5664 C6
5665 C6
5666 J7
5667 D1
5668 D1
5669 C7
5670 C7
5671 J10
A
B
C
D
E
F
G
H
I
J
*
*
*
*
9642
9645
*
7680
3659
3677
3547
2510
3521
1u
3563
2511
100R
150K
F604
100K
47K
*
9610
B71
1u
100K
3522
3612
47K
3613
47K
3573
100R
3575
100R
2
*
100R
2573
3559
3561
100R
100K
2582
2583
*
*
1n
*
*
+8VA
3680
6 7663-A BC847BPN 1
3663
*
BC847BW
3558
100R
2575
2576
2577
3568
*
100R
3569
*
100R
3683
*
1n
1n
1K2
4 BC847BPN 7663-B
5
3
B73
*
3664
*
1K
180R
3556
100R
*
2572
AUDIO-C
1n
A
*
7677
1n
1n
*
22K
3614
3615
AUDIO-SL
F692
3528
*
1K
MUTE_SSB
AUDIO-C
AUDIO-L
1n
2574
R-CL_VL-OUT
7678-A
F693
3529
MUTE_SSB
BC847BS
L-CL_VL-OUT
SELECT_AUDIO_LR
7678-B
F694
MUTE_SSB
BC847BS
AUDIO-R
1n
R-SC1_AV-OUT
2580
*
10n
L-SC1_AV-OUT
2581
*
1n
3616
SEL_IN_2
2K7
R-SC2-OUT
7679-A
F699
3578
47K
MUTE_SSB
BC847BS
L-SC2-OUT
7679-B
F662
3579
47K
MUTE_SSB
BC847BS
CL 36532079_083.eps
*
B1-112
B1-111
B1-112
B1-114
B1-109
1K
B1-110
1K3530
B1-115
B1-101
B5-145
B1-99
B1-96
B1-97
1K
1K
171203
2637
*
330n
+8VA
1n
*
*
3681
2699
*
2u2
3676
2629
*
*
330n
F654
1n
*
3544
150K
F603
100K
47K
1K2
3545
4 BC847BPN
7656-B
5
6 7656-A BC847BPN 1
3682
1K
180R
A
3
*
B72
*
F648
10u
2509
*
47K
3520
2
*
3675
2630
*
2u2
A
*
F653
3557
*
100R
*
+8VA
22K
3601
2600
*
*
1u
A
3602
120K
*
2601
*
1u
3603
220K
*
3604
120K
A
2602
*
2603
*
2604
*
9611
*
11
1u
1u
1u
B1-112
*
*
AUDIO-C
*
3605
220K
3606
120K
A
*
3607
220K
3608
A
*
3609
220K
A
+8VA
7652
16
74HC4053
VCC
G3
MUXDX
12
1y0
13
1y1
2
2y0
1
2y1
5
3y0
3
3y1
VEE
GND
8
7
A
A
12 13 14
+8VA
*
7653
16
74HC4053
*
6
VCC
G3
A
14
MUXDX
12
1y0
11
13
1y1
15
2
2y0
10
1
2y1
4
5
9
3y0
3
3y1
GND
VEE
8
7
A
A
120K
2546
10u
2547
*
10u
3673
*
10K
B70
*
6
A
14
11
F641
15
10
4
9
BC847BW
9632
*
B77
2548
10u
B78
*
2549
10u
F642
9676
*
9677
*
Page 48
Circuit Diagrams and PWB Layouts

Small Signal Board: Headphone Amplifier

12345 6789
HEADPHONE-AMPLIFIER
A
B6-161 L-HEADPHONE
B
C
B6-162 R-HEADPHONE
D
E
B6-161
+8V_AUD +8V_AUD
3512
F507
2528
B6-162
150K
3513
100n
2521
100n
270K
2524
100n
7682
BC847B
3516
F506
3K9
3510
3514
F500
47K
47K
F503
2523
2526
48DPTV355 7.
2520 A6 2521 A4 2522 C5 2523 C5
A
B
C
D
E
2524 C4 2525 E5 2526 E5 2528 B4 2529 B5 2530 D5 2531 C5 2532 E5 2578 E9 2579 B9 2596 C7 3500 B5 3501 B6 3504 C5 3505 E5 3506 E6 3509 E5 3510 A4 3511 B5 3512 B4 3513 B4 3514 C4 3515 D5 3516 B4 3535 C7 3536 C6 3537 C7 3538 C8 3539 C8 3541 D6 3543 E7 6660 C8 6661 C8 7681-A C6 7681-B A6 7682 B4 7684-A C6 7684-B E6 7685-A C7 7685-B C6 F500 A5 F501 A6 F502 A5 F503 C5 F504 D6 F505 D5 F506 B4 F507 B4
+8V_AUD
2520
100n 7681-B
8
4
3511
100K
3500
15K
2522
470p
+8V_AUD
8
4
3515
100K
3505
15K
2525
470p
MC33178D
7
7681-A MC33178D
1
F501
7685-B
BC847BPN
F504
BC847BPN
3501
100K
7684-A
BC847BPN
7684-B
3536
3541
3506
100K
220R
220R
3535
A
7685-A
BC847BPN
47K
3543
A
47K
3537
100K
2596
BAS316
6660
3538
470K
10u
3539
PDZ-2.4B
6661
220R
+5V_AUD
HEADPHONE-L
B1-107
1n
2579
A
HEADPHONE-R
B1-108
1n
2578
A
B1 B10
5
F502
6
1u
2529
1n
2531
A
1n
2532
A
12K
3504
100p
A
A
3
F505
2
1u
2530
12K
3509
100p
A
A
8204_000_8128.8
12345 6789
CL 36532017_027.eps
140403
Page 49
Circuit Diagrams and PWB Layouts

Layout Small Signal Board (Overview Top Side)

PART 1 CL 36532017_35a.eps
PART 2 CL 36532017_35b.eps
49DPTV355 7.
3104_303_3747.8
CL 36532017_035.eps
230403
0009 E1 0010 E2 0011 E3 0012 E4 0013 E4 0014 D1 0015 B1 0016 D4 0017 C4 0018 A1 0019 A2 1000 E3 1001 B2 1303 C1 1305 D2 1306 D2 1307 D1 1308 D2 1402 B1 1403 E1 1408 D1 1651 D4 1680 D4 1681 D4 1701 C3 1702 C3 1710 B3 2001 B2 2002 B2 2004 B2 2005 B2 2006 B2 2007 B2 2008 B2 2009 C3 2010 C3 2011 C3 2012 C2 2016 B1 2020 B3 2023 B2 2025 C2 2027 C3 2028 C2 2029 C3 2034 C1 2035 C1 2037 C1 2039 C1 2040 C1 2058 B1 2059 B1 2301 D3 2305 D2 2314 D2 2315 D2 2316 D2 2317 D2 2318 D2 2322 D2 2324 E3 2327 D1 2329 D3 2330 D3 2331 D3 2332 D2 2333 E3 2334 D3 2336 D3 2339 D1 2340 D3 2344 C1 2345 C1 2346 C1 2347 C1 2348 C1 2349 D1 2350 E2 2351 E2 2352 E2 2353 E2 2355 D1 2356 D2 2357 D2 2358 D2 2359 D2 2360 D2 2361 D2
2362 D2 2363 D2 2364 D1 2365 E1 2367 E2 2368 E2 2373 E2 2376 D2 2377 D2 2379 D1 2380 D1 2381 D1 2382 D1 2383 D1 2387 D1 2388 E2 2389 E2 2391 E1 2393 E2 2394 D2 2395 D2 2396 D2 2397 D2 2398 D3 2401 D2 2403 D1 2404 D1 2405 D1 2406 D1 2407 D1 2408 D1 2409 D1 2411 D1 2412 D1 2413 E1 2417 D1 2425 E3 2427 C1 2428 D1 2429 D3 2508 E3 2514 E4 2515 E4 2528 D3 2546 E4 2547 E4 2548 E4 2549 E3 2562 D4 2563 D4 2564 E4 2565 E4 2566 E4 2567 E4 2568 E4 2569 E3 2570 D4 2571 D4 2572 E4 2573 E4 2574 E4 2575 E4 2576 E4 2577 E4 2578 E4 2579 E4 2580 E4 2581 E4 2582 E4 2583 E4 2588 D4 2589 D4 2591 D4 2592 E4 2593 D4 2594 E3 2600 D4 2601 E4 2602 E4 2603 E4 2604 D4 2609 E3 2665 D4 2666 D3 2667 D4 2668 D4 2670 D4 2677 D4
2678 E4 2680 D4 2682 D4 2687 D4 2693 E4 2695 D4 2709 A2 2710 A2 2711 B2 2716 B2 2718 C3 2719 C3 2720 C3 2721 C4 2722 D3 2729 B4 2735 B1 2740 C4 2741 C4 2742 C4 2743 C4 2744 C4 2745 C4 2752 C4 2754 A1 2758 C4 2759 C4 2763 B4 2764 C4 2767 B4 2770 C3 2771 C3 2772 C3 2774 A1 2776 A3 2780 B4 2782 B3 2783 B1 2790 B3 2791 A3 2792 B3 2793 B3 2794 B3 2796 A3 2797 A3 2798 A3 2803 B2 2804 B2 2805 B2 2806 B1 2807 A1 2808 A1 2809 A2 2811 A2 2813 A2 2814 B1 2817 A2 2819 A2 2823 C4 2825 A2 2829 B2 2831 C4 2838 B3 2840 B2 2843 B2 2845 A2 2846 A2 2848 A2 2855 B2 2859 B1 2860 B1 2861 A2 2866 B1 2867 B2 2870 C4 2874 B4 2877 C4 2878 D4 2881 C4 2884 A1 2886 B2 2887 B2 2888 B2 2889 B2 2890 B2 2891 B1 2892 B1 2893 B2
2894 B1 2895 B1 2896 B2 2897 B2 2898 B2 2912 E3 3003 B2 3004 D1 3010 C2 3011 C2 3012 C2 3018 C3 3019 C3 3020 C3 3021 C3 3024 B3 3025 B3 3026 B3 3027 B3 3029 C1 3031 C1 3033 B3 3034 C2 3035 C2 3039 B3 3047 B1 3048 C1 3049 C2 3050 C2 3051 C2 3052 C1 3053 C1 3054 C1 3055 C1 3056 B2 3057 B2 3058 B3 3059 C3 3062 C1 3065 C1 3066 D1 3067 D1 3068 C3 3073 C3 3074 C3 3075 C3 3076 C3 3077 C3 3078 C2 3080 C3 3090 C3 3091 B1 3093 C1 3099 C3 3301 E2 3302 D3 3304 D3 3306 E2 3317 E2 3318 D2 3320 D2 3321 D2 3322 E3 3329 E3 3330 D2 3332 D2 3335 D2 3336 E3 3340 E2 3341 E2 3342 E2 3343 E3 3344 D3 3345 E3 3346 E3 3347 E3 3348 E3 3349 D2 3353 E3 3361 D3 3363 D2 3370 E2 3371 E2 3372 E2 3373 D1 3374 D1 3375 D1 3376 D2
3377 D2 3379 D1 3381 D1 3387 D2 3388 E3 3389 D1 3390 E3 3393 D2 3394 D2 3395 D3 3396 D2 3397 D2 3398 D2 3399 E3 3400 E3 3402 D2 3404 E1 3406 D1 3409 D1 3411 D1 3412 D2 3416 E1 3418 D1 3423 E1 3433 D1 3436 E1 3437 D1 3439 E1 3442 E2 3443 E2 3444 E2 3447 E2 3448 E2 3449 E2 3460 D2 3461 D2 3462 D2 3472 E3 3510 D4 3512 D3 3513 D3 3514 D4 3516 D3 3519 E4 3520 E4 3523 E4 3524 E4 3525 E4 3526 D4 3527 D4 3528 E4 3529 E4 3530 E4 3531 D4 3552 E4 3553 D4 3554 D4 3555 E4 3560 D4 3562 D4 3576 D4 3578 D3 3579 D3 3601 E4 3602 E4 3603 E4 3604 E4 3605 E4 3606 D4 3607 D4 3608 D4 3609 D4 3612 E4 3613 E4 3614 E4 3615 E3 3616 E4 3626 D4 3627 D4 3628 D4 3640 D4 3641 D4 3642 D4 3643 D4 3650 D4 3655 D4 3656 D4 3673 E4
3683 E4 3713 C3 3714 C3 3715 D3 3716 C3 3717 C3 3718 C3 3719 C4 3720 C4 3725 C4 3726 D4 3727 C4 3728 D4 3730 D4 3736 C4 3737 C4 3738 C4 3739 C4 3740 B4 3741 B4 3742 B4 3743 B4 3744 C4 3745 C4 3746 B4 3747 C4 3748 C4 3749 C4 3750 B4 3751 C4 3752 C4 3753 C4 3754 C4 3755 B4 3756 C4 3760 C4 3762 B4 3763 B4 3772 A2 3773 B4 3774 B4 3781 B4 3782 B3 3783 B4 3793 C4 3794 A2 3800 B2 3801 B1 3802 B1 3803 B2 3811 B2 3812 B2 3814 B2 3815 B2 3817 B1 3818 B2 3819 B1 3820 B2 3821 B2 3822 B2 3823 B2 3824 B2 3825 B2 3826 B1 3827 B1 5301 D2 5302 D2 5303 C1 5304 C1 5305 C1 5306 C1 5309 C1 5310 C1 5311 D1 5403 D1 5405 D2 5406 E1 5411 D1 5416 E1 5651 D3 5652 D3 5653 E3 5656 D3 5663 D4 5667 D4 5668 D4 5705 B1 5706 B4
5710 C4 5716 A4 5718 A3 5719 B3 5721 A2 5722 B2 5723 A2 5724 B2 5725 B2 5727 A2 5728 A1 5731 B4 5733 D4 5736 C4 5737 B4 5742 C3 5743 A1 5744 C4 5745 C3 5902 E3 5903 E3 5904 E3 5910 E3 5911 E3 5912 E3 5913 E3 5914 E3 5915 E3 5917 E3 5918 E3 5919 E3 5920 E3 6001 B3 6003 B3 6301 E3 6302 C1 6309 D3 6310 E3 6311 E3 6316 E3 6319 D3 6320 C1 6321 C1 6322 C1 6404 D1 6650 D4 6652 D3 6653 E3 6656 E4 6657 E4 6658 E4 7001 B2 7005 B1 7008 B3 7009 B3 7010 B3 7012 C1 7013 C1 7014 D1 7304 D2 7320 E2 7323 D2 7340 E3 7361 D3 7362 D3 7402 E1 7404 D2 7405 D1 7408 E2 7409 E2 7411 E1 7413 D2 7652 D4 7653 D4 7654 D4 7667 D4 7668 E4 7675 E4 7677 E4 7678 E4 7679 D3 7680 E4 7682 D4 7706 A4 7707 C4 7708 C4 7709 C4 7710 B4
7711 C4 7715 C4 7717 A4 7719 A3 7720 A1 7723 A2 7725 C4 7727 B3 9014 C3 9016 C3 9302 D3 9303 D3 9304 D3 9305 D3 9322 E2 9408 E1 9412 E1 9414 E1 9416 D1 9417 E1 9419 E1 9520 E4 9521 E4 9522 E4 9523 E4 9603 D3 9604 D4 9606 E3 9607 D3 9608 D3 9609 D3 9611 E4 9632 E4 9642 E4 9645 D4 9677 D4 9682 D3 9683 D3 9684 D3 9685 D3 9686 D3 9687 D3 9688 E3 9689 E4 9692 D3 9693 D3 9694 D4 9700 C4 9703 C4 9705 B4 9706 B4 9714 B4 9715 B4 9718 A2 9719 A2 9720 B4 9721 A3 9730 C4 9731 C4 9739 B4 9740 B4 9741 B4 9744 A1 9745 A1 9746 A1 9747 A1 9750 B4 9762 A2 9763 A2 9764 B2 9765 B3 9766 B1 9768 A3 9769 A3 9901 E2 9902 E2 9903 E2 9904 E2 9905 E2 9906 E2 9907 E1 9908 E1 9909 E2 9919 E2 9920 E1 9921 E1 9925 E2 9927 E2
9928 E2 9929 E2 9935 E3 9937 E3 9938 E3 9939 E3 9944 E2 9945 E2 9946 E2 9947 E2 9948 E2 9949 E2 9950 E2 9951 E2 9952 E3 9953 E1 9954 E3
Page 50
Circuit Diagrams and PWB Layouts

Layout Small Signal Board (Part 1 Top Side)

PART 1
50DPTV355 7.
CL 36532023_35a.eps
140403
Page 51
Circuit Diagrams and PWB Layouts

Layout Small Signal Board (Part 2 Top Side)

51DPTV355 7.
PART 2
CL 36532017_35b.eps
240403
Page 52
Circuit Diagrams and PWB Layouts

Layout Small Signal Board (Overview Bottom Side)

PART 1 CL 36532017_36a.eps
PART 2 CL 36532017_36b.eps
52DPTV355 7.
3104_303_3747.8
CL 36532017_036.eps
230403
0009 E4 0010 E3 0011 E2 0012 E1 0013 E1 0014 C4 0015 B4 0016 D1 0017 C1 0018 A4 0019 A3 1000 E2 1301 D3 1304 C4 1305 D3 1306 D4 1307 D4 1308 D3 1401 C4 1406 E4 1407 E4 1409 D4 1410 D4 1411 D3 1682 D1 1683 D1 2003 C3 2013 B4 2014 D3 2017 D3 2019 C3 2022 C2 2024 C3 2026 C3 2031 C4 2033 C3 2036 C3 2038 C3 2052 C4 2053 B4 2054 B4 2055 B4 2056 B4 2057 B4 2060 B4 2061 B4 2062 C3 2063 C3 2064 C3 2065 C3 2066 C3 2067 B2 2302 E3 2303 D3 2304 D3 2306 E3 2307 D3 2308 D3 2309 D3 2310 D3 2311 D3 2312 D3 2313 D3 2319 D3 2320 D3 2321 D3 2323 D3 2325 D3 2326 E3 2328 D2 2342 E2 2343 E2 2354 E3 2366 E4 2369 E3 2370 E2 2371 D3 2372 D3 2374 E3 2375 E3 2378 D4 2384 E4 2385 E3 2386 E2 2390 E4 2392 E3 2399 E4
2402 E4 2418 D3 2419 D3 2420 E3 2421 E3 2422 E4 2423 E3 2424 E3 2426 C4 2431 D3 2501 D1 2502 D1 2503 D1 2504 D1 2505 D1 2506 D1 2507 D1 2509 E1 2510 E1 2511 E1 2512 E1 2513 E1 2516 D1 2520 D2 2521 E2 2522 D2 2523 E2 2524 E1 2525 D1 2526 E2 2529 D2 2530 D1 2531 D2 2532 D2 2550 D1 2551 D2 2552 D1 2553 D1 2554 D1 2555 D1 2556 D1 2557 D1 2558 D1 2559 D1 2560 D1 2561 D1 2584 D1 2585 D1 2586 D1 2587 E1 2590 D1 2595 E1 2596 E1 2610 D1 2611 D1 2612 E2 2629 D1 2630 E1 2632 E1 2634 D1 2637 D1 2640 D1 2643 D1 2644 D1 2645 D1 2646 E1 2649 E1 2651 D1 2652 D1 2653 D2 2654 D1 2659 D1 2660 D1 2661 D1 2662 D1 2663 D1 2664 D1 2673 D1 2674 D1 2679 D1 2681 D1 2686 D1 2690 D1 2691 D1 2694 D1 2697 E1 2698 E1
2699 D1 2700 C2 2701 C2 2702 C2 2703 C2 2704 C2 2705 C2 2706 D2 2707 D2 2708 D2 2712 A3 2713 C1 2714 C1 2717 B3 2723 C1 2724 D1 2725 B3 2726 B3 2727 B3 2728 A1 2730 A1 2731 A4 2732 A4 2733 A4 2734 B4 2736 B3 2737 B4 2738 B4 2739 B4 2746 C1 2747 A3 2748 C1 2749 C2 2750 C2 2751 C2 2753 C1 2755 C1 2756 C1 2757 C1 2760 C2 2761 C2 2762 B1 2765 C1 2766 C1 2768 A3 2769 B1 2773 B1 2775 B1 2777 B1 2778 B1 2779 A1 2781 A1 2784 A1 2785 A1 2786 A1 2787 B1 2788 B1 2789 B2 2795 B2 2799 A2 2800 A2 2801 A2 2802 A2 2810 A3 2812 B3 2815 B3 2816 B3 2818 B4 2820 A3 2821 A3 2822 A3 2824 C1 2826 B3 2827 B3 2828 B3 2830 B4 2832 B3 2833 B3 2835 B3 2839 B3 2841 B4 2847 A4 2851 A4 2853 B4 2854 B4 2857 B4 2864 A4
2865 B4 2871 C2 2872 C2 2875 C1 2876 C1 2880 C1 2885 B3 2899 A2 2900 E2 2901 E2 2902 E2 2903 E2 2904 E2 2905 E2 2906 E2 2907 E2 2908 E3 2909 E2 2910 E2 2911 E2 3001 C3 3002 C3 3005 D3 3006 C3 3007 C3 3008 C3 3009 C3 3013 C4 3014 D4 3015 C4 3016 D3 3017 C3 3022 C3 3023 C3 3028 C3 3030 C3 3032 C3 3036 C3 3037 C3 3038 C2 3040 C3 3041 C3 3042 C2 3043 C3 3044 C3 3045 C4 3046 B4 3060 C3 3061 C4 3063 C3 3064 C3 3069 C3 3070 C2 3071 C3 3072 C3 3079 C3 3081 B4 3088 C3 3094 C3 3095 C3 3096 C2 3097 B4 3098 C4 3303 E3 3305 D2 3307 D3 3308 E3 3310 D3 3311 D3 3312 E3 3313 E3 3314 D3 3315 E3 3316 E3 3319 E3 3323 D3 3324 D3 3325 E2 3326 D3 3327 D3 3328 D3 3331 D3 3333 D3 3334 D3 3339 E2 3350 E2 3351 E2
3352 E2 3354 E2 3355 E2 3358 D2 3359 E2 3360 E2 3362 D3 3364 D3 3365 E3 3366 D3 3367 D3 3368 D2 3378 D3 3380 D3 3382 E4 3385 E4 3386 E2 3391 E3 3401 D4 3403 E4 3405 E3 3407 D4 3408 D3 3410 D4 3414 D3 3415 D3 3417 D4 3419 E4 3420 D3 3421 D4 3434 D4 3435 E4 3441 D3 3445 D4 3446 E3 3450 D3 3451 E4 3452 E3 3453 D2 3454 D2 3455 D2 3456 D3 3457 D3 3459 D2 3463 D3 3465 E2 3467 E2 3468 E3 3470 E2 3471 E2 3473 E4 3474 E4 3475 D3 3500 D2 3501 E2 3504 D2 3505 D1 3506 E1 3509 D2 3511 D2 3515 D2 3521 E1 3522 E1 3532 D1 3533 D1 3535 E2 3536 E2 3537 E2 3538 E2 3539 E1 3540 D1 3541 E2 3543 E1 3544 D1 3545 D1 3546 D1 3547 D1 3550 D1 3551 D2 3556 E1 3557 E1 3558 E1 3559 E1 3561 E1 3563 E1 3564 E1 3567 E1
3568 E1 3569 E1 3570 E1 3571 E1 3572 E1 3573 E1 3574 E2 3575 E1 3577 E1 3617 E2 3618 D2 3619 E2 3624 E1 3630 E1 3634 E1 3636 D1 3637 D1 3639 E1 3644 E2 3651 D1 3652 D1 3653 D1 3654 D1 3657 D1 3658 E1 3659 D1 3663 D1 3664 D1 3666 E1 3667 E1 3668 E1 3669 D1 3670 E1 3671 E1 3675 D1 3676 D1 3677 D1 3680 D1 3681 E1 3682 D1 3684 D1 3685 D1 3686 D1 3687 D1 3688 D1 3689 D1 3690 D1 3691 D1 3692 D1 3693 D1 3694 D1 3695 D1 3698 E1 3699 E1 3703 C2 3704 C2 3705 D2 3706 C2 3707 C2 3708 D1 3709 C1 3710 C1 3711 B3 3712 C2 3721 D1 3722 D1 3729 C1 3731 C1 3733 C1 3734 C1 3735 C1 3757 A3 3758 C1 3759 C1 3764 C1 3765 C1 3766 A1 3767 B1 3771 B3 3785 B3 3786 B3 3787 B4 3788 B3 3789 B3 3790 B4 3791 B3 3792 A4
3795 B2 3804 A4 3805 B4 3806 B4 3807 B3 3808 B3 3809 B4 3810 B3 3813 B3 3816 B4 5307 C4 5308 D4 5312 E3 5401 D3 5402 E4 5404 D4 5408 D4 5409 E3 5415 E4 5417 E4 5654 E1 5655 D1 5657 D1 5658 D1 5659 D1 5660 D1 5661 D1 5662 D1 5664 D1 5665 D1 5666 E1 5669 D1 5670 D1 5671 D1 5672 E1 5700 C2 5701 C2 5702 D2 5711 C1 5712 C1 5713 C2 5714 C2 5717 A2 5726 B3 5729 C2 5738 C1 5739 B3 5740 B3 5741 B4 5900 E3 5901 E2 6002 B4 6004 C2 6005 B4 6006 C3 6007 C3 6303 E3 6304 E3 6306 D3 6307 D3 6308 E2 6312 D3 6313 D3 6314 E3 6317 E3 6334 D3 6402 D4 6403 D3 6405 D4 6651 D1 6654 D1 6660 E2 6661 E2 6926 E3 6927 E3 6928 E3 6929 E3 6956 E3 6957 E3 7002 D4 7003 D4 7004 D3 7006 C4 7007 C4 7011 C3 7015 D3 7016 C2
7017 B3 7018 C3 7019 B2 7020 C2 7301 D2 7302 D2 7303 E3 7305 E2 7306 E2 7307 E3 7310 E3 7311 D2 7312 D3 7313 E2 7314 E2 7315 E2 7318 D3 7322 E4 7375 E2 7401 D4 7403 D4 7406 D4 7407 D4 7410 D3 7412 E3 7651 D1 7656 D1 7663 D1 7664 E1 7665 E1 7666 E1 7669 D2 7670 E2 7674 D1 7681 D1 7684 E2 7685 E2 7703 C1 7712 C1 7713 C1 7714 B1 7718 A2 7722 A3 7724 B4 7726 B1 7728 B3 7729 B3 7730 B4 7731 B3 7732 B3 7733 B4 9001 D3 9002 C2 9003 C2 9004 C3 9005 B4 9006 B4 9007 B4 9008 C3 9009 C3 9010 C3 9011 C3 9012 C3 9013 C3 9015 C2 9308 D3 9309 D3 9310 D3 9311 D3 9312 D3 9313 E2 9318 E3 9319 E3 9324 E3 9401 D4 9402 D4 9403 D4 9405 D4 9406 E4 9407 D3 9410 D3 9413 E4 9415 D4 9418 D4 9420 E4 9421 E2 9610 E1
9652 D2 9676 D1 9691 E2 9701 C1 9702 C1 9704 C2 9707 B2 9708 B2 9709 B2 9710 B2 9711 B2 9712 A1 9713 A1 9716 A1 9717 B1 9722 A2 9723 A2 9724 A2 9725 C1 9726 C1 9732 C1 9733 C1 9734 C1 9735 C1 9736 C2 9737 C2 9738 D2 9753 B3 9754 A3 9760 A1 9761 B1 9910 E3 9911 E3 9912 E3 9913 E3 9914 E3 9915 E3 9916 E4 9917 E4 9918 E3 9922 E3 9923 E4 9924 E4 9930 E3 9934 E2 9936 E2 9940 E2 9941 E2 9942 E2 9955 E2 9962 E3 9963 E2 9964 E2 9965 E4 9966 E2
Page 53
Circuit Diagrams and PWB Layouts

Layout Small Signal Board (Part 1 Bottom Side)

PART 1
53DPTV355 7.
CL 36532023_36a.eps
140403
Page 54
Circuit Diagrams and PWB Layouts

Layout Small Signal Board (Part 2 Bottom Side)

54DPTV355 7.
PART 2
CL 36532023_36b.eps
140403
Page 55
Circuit Diagrams and PWB Layouts

3D Comb Filter (Optional)

55DPTV355 7.
1
CB1
3D COMB FILTER
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
1303
Y-OUT
GND
C-OUT
GND
CVBS
UTV, MTV, FTV
PTV ONLY
1008
GND
CVBS
GND
GND
GND
C-OUT
GND
Y-OUT
1382
FSC
8V6
C-OUT
CVBS
GND
Y-OUT
5V2
SDA-S
SCL-S
UTV, MTV, FTV
UTV, MTV, FTV
SDA
SCL
GND-LSP
5V2
8V6
1009
GND
SDA-1
GND
SCL-1
GND
+9V
GND
+5V
+5V
PTV ONLY
1104
F005
1 2 3 4
5
F011
1 2 3
4 5 6 7 8 9
1 2
3 4 5 6 7
8 9
F010
1951
1
1
2
2
3
3
4
4
5
5
1 2 3
4 5 6 7 8 9
3135 033 3279.2
F008
4000
3082
2
F006
F009
47R
SDA
SCL
3083
5017
5013
47R
F013
S+8.2V
A+8.2V
F012
3000
10R
BAV99
S+8.2V
3015 10R
S+8.2V
5011
3096
5014
5015
6000
6001
BAV99
F007
3
180R
3103
+t
MF-USMD
3104
+t
MF-USMD
2004
100u
3105
560R
F021
5009
22u
5008
22u
BAV99
3085
6002
7000
BC847B
7004
BC847B
2041 100n
470R
2056
56
3016
33R
47R
3004
7001
BC857B
3002
120R
3006
3003
120R
3001
47R
3019
47R
7005
BC857B
3020
3018
100R
270R
3017
3032
3030
820R
3031
6004
S1D
7021
DT33
LD1117
3
IN2OUT
GND
2044
100n
6005
S1D
7022
LD1117DT25
IN3OUT
GND
10u
2047
100n
4321
3007
3005
2000
3021
3022
2003
1
1
3009
120R
3033
2048
7002
BF570
7008
BC847B
2045
BF570
7006
150R
100n
100n
3024
3023
2042
3008
2049
2046
330R
120R
330R
120R
100n
47u
3036
3035
3034
5007
3010
3097
3025
22p
2059
3098
270R
7009
BC857B
180R
180R
F001
47u
2043
5012
F002
47u
10u
F003
120R
330R
120R
22p
180R
330R
22p
12K
12K
2
5
789
2K7
3013
3011
560R
BC847B
5K6
5003
1K8
5K6
5K6
3038
3037
A+8.2V
I_O+3.3V
A+2.5V
D+2.5V
7010
5004
78
78
10R
470R
123
MTMT
6
123
6
76
4FUS
4FUS
4
4
3026
560R
7003
BC857B
7007
BC857B
3039
3040
3012
3028
3027
7011
BC847B
10R
470R
10R
2K7
10R
3041 820R
3014
10R
3029
10R
1
5006
78
MT
6
2001
100n
2
34
4FUS
3042
3K3
98 1915
10 114
5000
A+8.2V
47u
2002
2010
100n
3056
2009
3055
220R
1u
1n
3057
2008
A+2.5V
5028
5029
22p
22p
2069
2070
2006
1K5
100n
2005
3043
7012
BF550
10R
3044
Ref Des 313503710261 313503710281 RESERVED 1008 242202516046 NOT USED NOT USED
1009 242202516046
1104 NOT USED 242202515848
1303 NOT USED 242202510428 1382 NOT USED 242202511243 NOT USED
1951 NOT USED 242202515848
4000 NOT USED NOT USED 319802190030
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
2036
1u
5030
10u
2035
2031
5001
A+8.2V
47u
F004
1110
100n
D+2.5V
NOT USED NOT USED
NOT USED
NOT USED
NOT USED
12
1K
2K2
2033 100n
2027
3059
3058
2065
7015
BC847B
27K
220K
2032 100n
100n2029 100n
100n
7016
BC857B
3060
470R
2034 100n
100n2030
100n2028
100n2026
5021
2024
100n
313503710261 X 313503710281
RESERVED
I_O+3.3V
5027
3061
7017
BC847B
100
2064
100n
81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99
4K7
AVDD3 CBPC ACO AYO CBPY AGND3 AGND4 AYI VCLY VRBY VRTY AVDD4 AVDD5 VRTC VRBC ACI AGND5 TEST25 TEST26 DVDD3
N T U
S E D
X
F015
3100
3099
79
78
77
80
KIL
LINE
RPLL
DGND4
DGND1
TEST015TEST026TEST037TEST048TEST059TEST0610TEST07
TESTIC13TESTIC2
1
4
2
U T
TPO
V
V
X
1K
470R
76
75
CSI
ALTF
12345
141312
6003
2057
TLMH3100
D+2.5V
2011
100n
70
DYCO571DYCO672DYCO773DYCO874DYCO9
7023
UPD64083GF
TEST0812TEST0913TEST1014TEST1115TEST1216TEST1317TEST14
11
0002 MECHPART
15
2067
F014
150p
3065
64
65
DVDD2
DYCO066DYCO167DYCO268DYCO369DYCO4
SDA
22p
5024
560R
47R
3067
63
60
61
ST062ST1
SDA
NSTD
EXTALIF19EXTDYCO020EXTDYCO121EXTDYCO222EXTDYCO3
18
0001
MECHPART
SCL
2068
5025
1K
3101
2063
47R
3068
57
59
56
58
SCL
SLA0
CLK8
RSTB
EXTDYCO424EXTDYCO525EXTDYCO626EXTDYCO727EXTDYCO828EXTDYCO9
23
NC
22p
55
DGND3
22p
54
CKMD
1613
3069
53
52
AVDD2
DVDRAM2
29
16
7019
LM809M3X-3.08
1
100K
F016
2012
100n
2013
51
FSCI
AGND2 FSCO
AGND1
XO
XI AVDD1 DVDD1 TEST24 TEST23 TEST22 TEST21 DGND2 TEST20
DVDIO TEST19 TEST18 TEST17 TEST16 TEST15
DVD RAM1
DGND
RAM2
DGNDRAM1
30
10n
GND
22p
P+2.5V
50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31
2
RESET_
2061
2021
VCC
100n
3
3102
100R
17
17
2019
1K
2016
100n
2051
18
F018
P+2.5V D+2.5V
I_O+3.3V
2014
3089
3088
150R
F019
1PS76SB10
150p
100n
3095
3072
2037
2K7
100n
3071
5022
6006
F017
10R
100n
3091
1K5
7020
BC847B
3074
330R
3073
330R
I_O+3.3V
D+2.5V
2066
100n
18
100K
10n
2062
2020
5019 10u
10u
19
5005
10u
2055
2015
10u
100n
F020
BAS17
6007
5020
10u
10u
2053
2052
5010
15u
2018
2017
150p
3077
220R
P+2.5V
D+2.5V
1001
AT-49
CL 36532079_012.eps
20M
2054
150p
10u
2023
10u
3076
D+2.5V
I_O+3.3V
1K
22p
2022
2014
22p
111103
20
0001 J15 0002 J14
A
1001 H19 1008 D1 1009 M1
B
1104 J1 1303 A1 1382 F1 1951 J2
C
2000 D5 2001 B9 2002 B9
D
2003 H5 2004 I3 2005 I10 2006 I10
E
2008 F11 2009 E11 2010 E11
F
2011 F14 2012 F16 2013 F16 2014 B18
G
2015 B19 2016 F17 2017 F18
H
2018 F19 2019 H17 2020 H17 2021 I16
I
2022 H20 2023 H19 2024 I13
J
2026 H12 2027 H12 2028 H12
K
2029 H12 2030 H12 2031 H11 2032 G12
L
2033 G12 2034 G12 2035 H11
M
2036 H11 2037 I17 2041 J4 2042 L6
N
2043 L6 2044 M4 2045 M5
O
2046 M6 2047 O4 2048 O5 2049 O6
P
2051 I17
2052 E18 2053 E18 2054 E19 2055 B19 2056 O4 2057 E14 2059 G6 2061 D16 2062 G17 2063 F15 2064 I13 2065 I12 2066 I18 2067 D15 2068 D15 2069 H9 2070 H10 3000 B3 3001 E5 3002 C4 3003 D4 3004 B4 3005 C5 3006 D5 3007 B5 3008 D6 3009 B6 3010 C6 3011 B7 3012 D8 3013 B8 3014 C8 3015 E3 3016 B5 3017 G4 3018 G4 3019 F4 3020 G5 3021 F5 3022 G5 3023 G6 3024 F5 3025 G6 3026 F7 3027 H8 3028 F8 3029 F8 3030 I5 3031 K5 3032 I5 3033 I5 3034 K6 3035 J6 3036 I6 3037 K7
3038 I7 3039 I7 3040 K7 3041 J8 3042 K9 3043 I9 3044 K9 3055 E11 3056 E12 3057 F12 3058 F12 3059 E12 3060 F12 3061 D13 3065 E15 3067 F15 3068 F15 3069 C16 3071 E18 3072 F17 3073 F18 3074 F18 3076 F19 3077 G19 3082 O2 3083 O2 3085 J4 3088 C17 3089 C17 3091 E18 3095 C17 3096 H3 3097 D6 3098 H6 3099 F14 3100 E14 3101 E15 3102 G17 3103 K3 3104 M3 3105 K3 4000 K2 5000 A10 5001 I10 5003 C7 5004 G7 5005 B19 5006 J8 5007 N6 5008 M4 5009 K4 5010 F19 5011 H3 5012 M6 5013 E3
5014 K3 5015 M3 5017 A3 5019 I17 5020 E19 5021 I12 5022 I18 5024 D15 5025 E15 5027 D13 5028 G11 5029 G11 5030 H10 6000 B3 6001 E3 6002 I4 6003 E14 6004 L5 6005 N5 6006 C18 6007 C19 7000 C4 7001 B5 7002 C5 7003 C7 7004 F4 7005 F5 7006 F5 7007 F7 7008 J5 7009 I6 7010 J7 7011 I8 7012 J9 7015 E12 7016 E13 7017 E13 7019 C16 7020 F18 7021 L5 7022 N5 7023 H14
Page 56
Circuit Diagrams and PWB Layouts

Layout 3DComb Filter (Top and Bottom Side)

56DPTV355 7.
A
B
C
0001 A1
12
A
B
C
0002 B2 1001 A2 1008 C1 1009 A1 1104 A1 1303 C1 1382 B1 1951 A1 2000 C2 2001 C2 2002 C2 2003 C2 2004 B1 2005 C1 2006 C1 2008 B2
A
B
C
2009 B2 2010 B2 2011 B2 2012 B2 2013 B2 2014 B2 2015 B2 2016 B2 2017 B1 2018 B1 2019 B2 2020 B2 2021 B2 2022 A2 2023 A2 2024 B2
2026 B2 2027 B2 2028 B2 2029 B2 2030 B2 2031 C2 2032 B2 2033 B2 2034 B2 2035 C2 2036 C2 2037 B2 2041 C1 2042 A2 2043 A2 2044 A2
12
2045 A2 2046 A2 2047 A2 2048 A2 2049 A2 2051 B2 2052 B2 2053 B2 2054 B1 2055 B2 2056 A2 2057 B2 2059 C2 2061 B2 2062 B2 2063 B2
2064 B2 2065 C2 2066 A2 2067 B1 2068 B1 2069 C2 2070 C2 3000 C2 3001 C2 3002 C2 3003 C2 3004 C2 3005 C2 3006 C2 3007 C2 3008 C2
3009 C2 3010 C2 3011 C2 3012 C2 3013 C2 3014 C2 3015 C2 3016 C2 3017 C2 3018 C2 3019 C2 3020 C2 3021 C2 3022 C2 3023 C2 3024 C2
3025 C2 3026 C2 3027 C2 3028 C2 3029 C2 3030 C1 3031 C1 3032 C1 3033 C1 3034 C1 3035 C1 3036 C1 3037 C1 3038 C1 3039 C1 3040 C1
3041 C1 3042 C1 3043 C1 3044 C1 3055 C1 3056 B2 3057 B2 3058 B2 3059 B2 3060 B2 3061 B2 3065 B2 3067 B2 3068 B2 3069 B1 3071 B2
A
B
C
3072 B2 3073 B1 3074 A1 3076 B1 3077 B2 3082 B1 3083 B1 3085 C1 3088 B1 3089 B1 3091 B2 3095 B1 3096 B1 3097 C2 3098 C2 3099 B2 3100 B2 3101 B2 3102 B2 3103 A1 3104 A1 3105 C1 4000 A1 5000 C2 5001 C1 5003 C2 5004 C2 5005 B2 5006 C1 5007 A2 5008 A1 5009 A1 5010 A1 5011 C1 5012 A2 5013 C2 5014 A1 5015 A1 5017 C2 5019 B2 5020 B1 5021 B2 5022 A2 5024 B2 5025 B2 5027 B2 5028 C2 5029 C2 5030 C2 6000 C2 6001 C2 6002 C1 6003 B1 6004 A2 6005 A1 6006 B1 6007 B1 7000 C2 7001 C2 7002 C2 7003 C2 7004 C2 7005 C2 7006 C2 7007 C2 7008 C1 7009 C1 7010 C1 7011 C1 7012 C1 7015 B2 7016 B1 7017 B2 7019 B1 7020 B2 7021 A2 7022 A2 7023 B2
Page 57
Circuit Diagrams and PWB Layouts
57DPTV355 7.

Center Channel Switch

1000 A4 1002-B B2 1321 B4 1349 B1
CH1
I001 B1 I002 B1 I003 B2 I004 B2
CENTER CHANNEL SWITCH
A
1349
42892
5
B
4
3
1
C
I005 B3 I006 A4 I007 A4 I008 B4
I009 C4 I010 C4 I011 C4
1234
1000 YKD21-180
1
2
1321 42892
5
3
2
1
I001
I002
I004
I003
I006
I007
1002-B GF-642
12
11
10
6
5
4
I005
9
8
7
3
2
1
I008
I009
I010
I011
A
B
C

Layout Center Channel Switch

12
A
B
1000 C1 1002 B2
1321 A1 1349 A2
A
B
CL 36532079_017.eps
101203
1234
C
8235 013 3529.4
12
C
CL 36532079_045.eps
261103
Page 58

CRT Panel: Red Tube

Circuit Diagrams and PWB Layouts
58DPTV355 7.
D(R)1
A
B
C
D
E
3208
100R
F
3213
680R
G
H
I
J
I133
3135 013 3267.3
1
RED CRT PANEL
To HOP Panel
1210
EH-S
-.7V
I104
RV1
22R
3201
75R
3200
I112
-.1V
3203
7200
BF570
4V
100n
RV6
3.3V
3209
1K5
3223
3226
3227
470R
2K2
2 13
RV5
RV3
BAS216
4V
2209
100u
2211
3225
RV11
1n
2K2
6204
6K8
2201
.5V
7202
BF570
8.1V
RV2
RV4
330R
3204
100R
RV10
1217
EH-B
1207
EH-S
1211 TMPJ02X-A1
2219
2p2
RV13
RV7
I123
8.1V
1
I114
2.2V
3214
.3V
2
RV12
N/U
4V
3.2V
I134
100R
11.6V
3
IIN5
VIN+4
VIN-2
2204
1n
2207
1u
N/U
2212
1n
2215
1u
I135
11.2V
RC-
2.5V
3224
1K
3215
680R
4
3212
22K
6 VCC
MIRROR
1X
RC+ 3
1
3.3V
2210
3216
10R
N/C
5
To HOP Panel
2214
47n
206V
10
VDD
MIRROR
4X
CURRENT
INPUT
NC
911
10p
2213
1n
100u
2216
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACE­ MENT PART ONLY.
4. FOR VALUE SEE TABLE.
I102
CASCODE
CASCODE
3220
100R
7201
TDA6120Q
GND 8
N/U
4u7
OUTC 12
OUT 13
OUTM 7
2217
21.5V
2203
128V
100p
65
EH-B
1212
1
206V
3217
1R
2221
129V
3206
I119
RV8
I115
47R
5202
0u47
6201
BAS21
3211
10K
5200
1209
DSP
5203
0u47
RV1
100n
2200
200mV~ 10.0us
6543 12111098
1202
EH-S
2
I107
1n
1208
RT-01T
3218
I113
3
5201
1204
220R
6.2V
SLV
7
4
3202
1
7
I106
1K5
BYD33M
129V
2206
To LSP Panel
6200
2218
100p
3210
10K
I128
1n
2208
100p
N/U
RV2
100mV~ 10.0us
RV8
50.0 V~ 10.0us
RV9
I117
I121
I127
1205
DSP
1206
DSP
I118
I125
-18V
6.2V
1203 HPS0521
4
5
6
7
8
9
10
11
12
RV3
100mV~ 10.0us
RV9
50.0 V~ 10.0us
98
131211104321
0001 G9 1201 C12 1202 A7 1203 D9
A
1204 F7 1205 F8 1206 F8 1207 I2 1208 E7 1209 F6 1210 B2 1211 B3
B
1212 B6 1217 I2 2200 D7 2201 D2 2203 E5 2204 F3
I111
I108
1201
VH
C
2206 F7 2207 F3 2208 F7 2209 F1 2210 F3 2211 G1 2212 G3 2213 H4 2214 C4 2215 G3
D
2216 H4 2217 B5 2218 E7 2219 C3 2221 C7 3200 C2 3201 C2
E
3202 D7 3203 D2 3204 E2 3206 E6 3208 F1 3209 F2 3210 F7 3211 G6
F
3212 C3
1
3213 F1 3214 G3 3215 F3 3216 H3 3217 B6 3218 F7 3220 F5
G
3223 F2
0001
HEATSINK
3224 E3 3225 H1 3226 G2 3227 H2
H
5200 D6 5201 D7 5202 G6 5203 G6 6200 D7 6201 F6
RV4
12
3
RV5
RV6
RV7
6204 D2
7200 D2 7201 C5
1.00 V~ 10.0us
RV10
100mV~ 10.0us
1.00 V~ 10.0us
RV11
100mV~ 10.0us
1.00 V~ 10.0us
RV12
100mV~ 10.0us
1.00 V~ 10.0us
RV13
100mV~ 10.0us
CL 36532079_031.eps
101203
I
J
7202 F2
Page 59

CRT Panel: Green Tube

Circuit Diagrams and PWB Layouts
59DPTV355 7.
D(G)1
A
B
C
D
E
3208
100R
F
3213
680R
G
H
I
J
I133
3135 013 3267.3
1
GREEN CRT PANEL
To HOP Panel
1210
EH-S
-.7V
I104
GV1
22R
3201
75R
3200
GV2
I112
-.1V
3203
7200
BF570
4V
3226
1K5
3209
3227
2K2
GV4
330R
3204
100R
GV10
1217
EH-B
1207
EH-S
100n
GV6
3.3V
8.1V
3223
470R
2 13
GV5
GV3
BAS216
4V
GV11
2209
1n
100u
2211
3225
2K2
6204
6K8
2201
.5V
7202
BF570
1211 TMPJ02X-A1
2219
2p2
GV13
GV7
I123
8.1V
1
I114
3214
.3V
2
2.2V
N/U
4V
3.2V
I134
100R
11.6V
3
GV12
IIN5
VIN+4
VIN-2
2204
1n
2207
1u
N/U
2212
1n
2215
1u
I135
RC-
2.5V
3224
3215
680R
4
3212
22K
11.2V
MIRROR
1X
1
1K
3216
10R
5
6 VCC
RC+ 3
3.3V
2210
N/C
To HOP Panel
10p
4u7
7201
TDA6120Q
OUTC 12
OUTM 7
GND 8
N/U
2217
OUT 13
21.5V
2203
2214
47n
206V
10
VDD
MIRROR
4X
CURRENT
INPUT
NC
911
2213
1n
100u
2216
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGE REPRESENTS PCEC
REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
I102
CASCODE
CASCODE
3220
100R
128V
100p
65
EH-B
1212
1
206V
3217
1R
2221
129V
3206
I119
GV8
I115
47R
5202
0u47
6201
BAS21
3211
10K
100n
2200
5200
1209
DSP
5203
0u47
GV1
200mV~ 10.0us
6543 12111098
1202 EH-S
2
I107
1n
1208
RT-01T
3218
I113
5201
220R
3
6.2V
1204 SLV
7
4
3202
1
7
I106
1K5
6200
BYD33M
2218
100p
129V
2206
To LSP Panel
3210
10K
I128
1n
2208
100p
NU
GV2
100mV~ 10.0us
GV8
50.0 V~ 10.0us
GV9
I117
I121
I127
1205
DSP
1206
DSP
I118
-18V
6.2V
I125
1203 HPS0521
4
5
6
7
8
9
10
11
12
1
GV3
100mV~ 10.0us
GV9
50.0 V~ 10.0us
98
131211104321
0001 G9 1201 C12 1202 A7 1203 D9
A
1204 F7 1205 F8 1206 F8 1207 I2 1208 E7 1209 F6 1210 B2 1211 B3
B
1212 B6 1217 I2 2200 D7 2201 D2 2203 E5 2204 F3 2206 F7
I111
I108
1201
VH
C
2207 F3 2208 F7 2209 F1 2210 F3 2211 G1 2212 G3 2213 H4 2214 C4 2215 G3
D
2216 H4 2217 B5 2218 E7 2219 C3 2221 C7 3200 C2 3201 C2 3202 D7
E
3203 D2 3204 E2 3206 E6 3208 F1 3209 F2 3210 F7 3211 G6
F
3212 C3 3213 F1 3214 G3 3215 F3 3216 H3 3217 B6 3218 F7 3220 F5
G
3223 F2
0001
HEATSINK
3224 E3 3225 H1 3226 G2 3227 H2 5200 D6
H
5201 D7 5202 G6 5203 G6 6200 D7 6201 F6
GV4
12
3
GV5
GV6
GV7
6204 D2 7200 D2 7201 C5 7202 F2
1.00 V~ 10.0us
GV10
100mV~ 10.0us
1.00 V~ 10.0us
GV11
100mV~ 10.0us
1.00 V~ 10.0us
GV12
100mV~ 10.0us
1.00 V~ 10.0us
GV13
100mV~ 10.0us
CL 36532079_032.eps
I
J
101203
Page 60

CRT Panel: Blue Tube

Circuit Diagrams and PWB Layouts
60DPTV355 7.
D(B)1
A
B
C
D
E
3208 100R
F
3213
680R
G
H
I
J
I133
3135 013 3267.3
1
BLUE CRT PANEL
To HOP Panel
1210
EH-S
-.6V
I104
BV1
22R
3201
75R
3200
BV2
I112
-.1V
3203
.5V
7202 BF570
8.1V
3.3V
100n
470R
BV6
3223
4.1V
3226
1K5
7200
BF570
3209
3227
BV4
100R
330R
2K2
2 13
BV5
BV3
BAS216
4.1V
2209
100u
2211
BV11
1n
3225
2K2
6204
6K8
2201
3204
BV10
1217
EH-B
1207
EH-S
1211 TMPJ02X-A1
2219
2p2
BV13
BV7
I123
I114
8.1V
1
2.2V
3214
.3V
2
BV12
N/U
4V
3.2V
I134
100R
11.6V
3
IIN5
VIN+4
VIN-2
2204
1n
2207
1u
N/U
2212
1n
2215
1u
I135
RC-
2.5V
3224
3215
680R
4
3212
22K
11.2V
MIRROR
1X
1
1K
3216
10R
5
6 VCC
RC+ 3
3.3V
10p
2210
N/C
To HOP Panel
4u7
7201
TDA6120Q
OUTC 12
OUTM 7
GND 8
N/U
2217
OUT 13
2214
47n
206V
10
VDD
MIRROR
4X
CURRENT
INPUT
NC
911
2213
1n
100u
2216
NOTES
1. CAPACITANCE VALUES ARE IN FARADS:
2. RESISTANCE VALUES ARE IN OHMS:
I102
CASCODE
CASCODE
3220
100R
m=MILI u=MICRO n=NANO p=PICO f=FEMTO
R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
21.5V
2203
123V
100p
65
EH-B
1212
1
206V
3217
1R
2221
124V
3206
I119
BV8
I115
47R
5202
0u47
6201
BAS21
3211
10K
100n
2200
5200
1209
DSP
5203
0u47
BV1
6543 12111098
7
1202 EH-S
2
3
4
6.2V
I107
3202
1n
5201
1208
RT-01T
1204
SLV
1
3218
220R
I113
200mV~ 10.0us
7
I106
1K5
BYD33M
124.3V
2206
To LSP Panel
6200
2218
100p
3210
10K
I128
1n
2208
100p
N/U
I117
I121
BV9
I127
1205
DSP
1206
DSP
BV2
100mV~ 10.0us
BV8
50.0 V~ 10.0us
I118
I125
-18V
6.2V
1203 HPS0521
4
5
6
7
8
9
10
11
12
1
BV3
100mV~ 10.0us
BV9
50.0 V~ 10.0us
98
131211104321
0001 G9 1201 C12 1202 A7 1203 D9
A
1204 F7 1205 F8 1206 F8 1207 I2 1208 E7 1209 F6 1210 B2 1211 B3
B
1212 B6 1217 I2 2200 D7 2201 D2 2203 E5 2204 F3 2206 F7
I111
I108
1201
VH
C
2207 F3 2208 F7 2209 F1 2210 F3 2211 G1 2212 G3 2213 H4 2214 C4 2215 G3
D
2216 H4 2217 B5 2218 E7 2219 C3 2221 C7 3200 C2 3201 C2 3202 D7
E
3203 D2 3204 E2 3206 E6 3208 F1 3209 F2 3210 F7 3211 G6
F
3212 C3 3213 F1 3214 G3 3215 F3 3216 H3 3217 B6 3218 F7 3220 F5
G
3223 F2
0001
HEATSINK
3224 E3 3225 H1 3226 G2 3227 H2 5200 D6
H
5201 D7 5202 G6 5203 G6
12
3
6200 D7
BV4
BV5
BV6
BV7
6201 F6 6204 D2 7200 D2 7201 C5 7202 F2
1.00 V~ 10.0us
BV10
100mV~ 10.0us
1.00 V~ 10.0us
BV11
100mV~ 10.0us
1.00 V~ 10.0us
BV12
100mV~ 10.0us
1.00 V~ 10.0us
BV13
100mV~ 10.0us
CL 36532079_033.eps
101203
I
J
Page 61

Layout CRT Panels

A
B
C
Circuit Diagrams and PWB Layouts
12
0001 A2 1201 C1 1202 B2 1203 B1 1204 B1 1205 C1 1206 C1
A
1207 B2 1208 B2 1209 B1 1210 A2 1211 A2 1212 B2 1217 B2 2206 B1 2208 C1 2211 A2
B
2216 B2 2217 B2 2218 C2 3202 C2 3210 B1 3212 A1 3217 B2 3218 B1 3226 A2 5200 B2 5201 B2
C
6200 C2 7201 A2 9000 B2
61DPTV355 7.
Personal Notes:
12
12
2200 B1 2201 A1 2003 A1 2004 B1 2207 B1 2009 A1 2210 A1
A
B
C
A
B
C
2212 B1 2213 B1 2214 B1 2215 B1 2219 A1 2221 B1 3200 A1 3201 A1 3203 A1 3204 A1 3206 B2 3208 A1 3209 A1 3211 B2 3213 A1 3214 B1 3215 A1 3216 B1 3220 A1 3223 A1 3224 A1 3225 A1 3227 A1 5202 B2
5203 B2 6201 B1 6204 A1 7200 A1 7202 A1
12
CL 36532079_047.eps
271103
Page 62

DW/PIP Panel

Circuit Diagrams and PWB Layouts
62DPTV355 7.
A
+5VS
B
SANDCASTLE
FBLK
+5VS
+3.3V
C
2861 10u
D
+5VS
VFB
F3-3
F3-4
E
PIP-AUDIO
V-PIP+MAIN-IN
U-PIP+MAIN-IN
GND
F
G
H
I
J
Y-PIP+MAIN-IN
GND
V-MAIN-OUT
U-MAIN-OUT
GND
Y-MAIN-OUT
TO 0205 OF
VIDEO FEATURES
3807
4824
3808
HFB-SANDCASTLE
F3-5
+5VS
7809
BC847BW
3810
F3-6
FB_OUT
2891
3892
3139 188 0154
1
100n
2862
0205
C2
220R
F815
3893
4V4
7802
LM317T
390R
3881
3857
10K
3856
10K
7808
BC847BW
680R
3809
4825
1n
4K7
7891
BC847BW
DW/PIP PANEL
3895
3894
2K2
3
PIP-AUDIO
10
9 8
7
6
5
4
3
2
1
680R
7892
BC847BW
1K5
I2O
A
1
1V8
7895
BC847BW
3858 4K7
4834
F805
F808
V
U
Y
+5VS
220R
3880
240R
2896
F809
47n2872
100R
3887
47p
RES
2886
##
470R
2V8
F806
F807
F810
1u
100R
3886
47p
RES
2885
2897
2871
3897
3868
1K8
47p
47n
2873
100R3888
47p2887
RES
1K53896
220R
7893
BC847BW
4833
74HC1G32GW
2V8
5
2
0V
1
3
3876
2878
F804
3863
3862
2863 22u
47p
1u
47n
47n
2876
2877
2874
DY
DV
DU
654321
FBlk(not connected)
+3VD
BC847BW
0V
+3V
680R
8K2
100n 100u
3889 100R
1
2
3
4
5
6
0273
2882
2883
1u
5848
12u
+3V
7828
3844
3843
F26
220R
3801
4821
3802
1u
3882
3828
2843
3829 2K2
3831
2848
2899
3834
5851 3837
5853
+5VS
2854
4V6
2853 10u
0V
680R3884
RES
8K2
RES
8K2
100n2846
3811
+3V
3849
RES
+5VS
3823
680R
3890
3891 100R
F27
7805
BC847BW
680R
8K2
2K2
100n
8K23883
220R
100n
10u
1K8
12u5849
3839
220R
8K2
RES
8K2 8K23848
4826
7810
BC847BW
100R
3803
3804
3827
3833
2849
2898
12u
1K5
3836 3K3
12u 100n
3885
2856
2814
3851
3847
2857
3825
220R
65
+5VS
2829 2825
2831 2847
3832
RES
RES
4822
100n
10u
RES
220R
2842
2828
4827
100n2832
100n
8K2
8K2
150p
BC847BW
2844
8K2
560p
47p2893
F4-7
SV-SYNC
F802
F4-9
SV
F803
F4-10
SY
F801
F4-8
SU
F1-11
1K3898
DFB
+3V
+3VD
7824
3K3
3805
1K3866
IOCNTR
FBI1
FBI2
FBO
VIDOa
VIDOb
VIDOc
GND
RES
220R
4823
47p
16
15
14
13
12
11
10
HA
220R3877
7807
BC847BW
+8VS
4832
0V6
0V
0V
0V9
1V9
1V9
9
2888
2889 2890
4
+3V
4K7
3822
4830
2868
2869
RES
RES RES RES
RES
3806
3846
RES
V17
+5VS
F25
47p 47p 47p
7894
BC857BW
6802
UDZ-3.9B
7804
0V
4
4K7
100n
+3.3V
F21
1R
1R
4829
RES
3824 10K
BC847BW
RES
3869
2895 47p
4831
2894 47p
V18
2892
##
RES
7803
1
7V5
Vp
2
1V9
VIDIa1
3
2V
VIDIb1
4
2V
VIDIc1
5
0V
SEL
2V2
6
VIDIa2
2V2
7
VIDIb2
2V2
8
VIDIc2
TDA8601
32 131211109
7806
1K8
3K33826
100n 560p
560p
39K
3K3
2851
1u
+5VS
680R
10u
39K3838
+3VD
+3V
100n
2852
7
HA
SCL
150p
100n
4828
SDA
5839
12u
81
1V6
82
2V3
83
1V1
84
1V6
85
86
2V8
87
0V2
88
0V
89
2V7
90
91
100n
92
2V7
93
94
0V2
95
2V8
96
97
1V6
98
1V
99
2V3
100
1V1
2812 100n
2811 100n
2813 150p
2819
2821
F811
F812
F813
7
6803
3864
RES
BC847BW
RES
1V6 0V9
Vref(B)
SV
Vref(T)
SY
Vbias(SA)
VSSD(SA)
VDDD(SA)
SHSYNC
T6
VDDA(SP)
VSSA(SP)
VSSA(DP)
VDDD(MA)
T7
DHSYNC
VDDD(MA)
VSSD(MA) Vbias(MA)
MY
Vref(T)(MA)
MV
Vref(B)(MA)
0V9
100n
V17
500mV~ 10.0us
MCL4148
3865 3K3
7832
3852
100R
10u
2841
2V7
777879880
SU
VSSA(SA)
VDDA(SF)
CLAMP &
ADC
CLAMP &
ADC
VSSA(MA)
VDDA(MF)
MU
4
3 30
11 0
1V4
2V7
2817 100n
2816
10u
10u
12u5816
5818 12u
2867
2866
2864
1u
47n
47n
2879 100n
100n
2838 10u
2839
##
2V8
2V7
POR
I2-BUS CONTROL
VDDA(SA)
PLL & CLOCK
GENERATOR
PLL & CLOCK
GENERATOR
VDDA(MA)
VDDA(DA)
5
2V6
2V7
RES
3K33855
3854 100R
3V6
3V5
SCL
SDA
DY
VSSA(DA)
0V3
3812 47R
V18
500mV~ 10.0us
8
RES
BC847BW
7829
3853
0V
0V1
0V
0V
SVSYNC
Vbias(DA) 9
0V9
22K
3814
F22
DCLK
DAC
&
BUFFER
DV
1V
47R
3816
150R
3813
FBL
PKOFF
DVSYNC
DISPLAY
CONTROL
SAB9081H
DU
Vref(T)(DA)
Vref(B)(DA)
11 12 13 1415161718
2V8
1V
0V
100n
100n
2823
2824
3818 47R
47p
47p
150R3817
RES
RES
2858
F24
3K3
RES
7801
2859
F21 F22 F23 F24 F25 F26 F27
2V8
2V8
VDDD(D)
VDDD(DA)
2V8
HFB-SANDCASTLE
F3-12
2837 100n
VSSD(D)
VSSD(P2)
VDDD(P2)
LINE MEMORY
TEST
CONTROL
INTERNAL
DRAM
VDDD(P1)
VSSD(DA)
VSSD(P1)
RES
47p
3821 150R
2860
3872
470R
4V6
4V6
3871
0V6
2K2
7871
BC847BW
6263646566676869770717273747576
N.C
VSSD(T9)
VSSD(T8)
VSSD(RP)
N.C
VDDD(RP)
VSSD(T2)
VSSD(T1)
192
20 21 22 23 24 25 26 27 28 29
2V8
F23
7874
BC847BW
3873
1K5
N.C
N.C
2836
5834
2834
2833
5827 12u
100n
12u 10u
100n
10u2827
100n2826
3V3
4820
3874
1K5
3879
220R
6801
UDZ-3.9B
N.C
VDDD(RM)
VSSD(RM)
VSSD(RL)
VDDD(RL)
N.C
4V6
51525354555657585966061
VSSD(T7)
50
VSSD(T6) VSSD(T5)
49
VSSD(T4)
48
47
TCBR
TCBC
46
TCBD
45
TM
44
TCLK
43
42
41
40
39
TC
38
T0
37
T1
36
T2
35
T3
34
T4
33
T5
32
31
N.C
VSSD(T3)
CL 36532079_018.eps
1312111098
+5VS
4V6
7876
BC857BW
0V3
HA
F814
3878
1K
2822 100n
2818 100n
+3VD
191203
F1-11
A
B
C
D
E
F
G
H
I
J
0205 E1 0273 B5 2811 G7 2812 G7 2813 G7 2814 G6 2816 G8 2817 G8 2818 E13 2819 G7 2821 H7 2822 E13 2823 G9 2824 G9 2825 C6 2826 H11 2827 H11 2828 C6 2829 C6 2831 C6 2832 F6 2833 H11 2834 G11 2836 G11 2837 B10 2838 C8 2839 C8 2841 C8 2842 C6 2843 C5 2844 C6 2846 G5 2847 D6 2848 D5 2849 E6 2851 E6 2852 E7 2853 F5 2854 F5 2856 F6 2857 H6 2858 H9 2859 H9 2860 H10 2861 D1 2862 D1 2863 E3 2864 I7 2866 H7 2867 H7 2868 G4 2869 H4 2871 H2 2872 G2 2873 G2 2874 H2 2876 H3 2877 H3 2878 D3 2879 A8 2882 C5 2883 C5 2885 J2 2886 J2 2887 J2 2888 J4 2889 J4 2890 J4 2891 J1 2892 G3 2893 I6 2894 G3 2895 F3 2896 F2 2897 E2 2898 E6 2899 D5 3801 A5 3802 A5 3803 A6
3804 B6 3805 F3 3806 G4 3807 H1 3808 H1 3809 I1 3810 I1 3811 G5 3812 G8 3813 H9 3814 G9 3816 G9 3817 H9 3818 G9 3821 H10 3822 E4 3823 I5 3824 E3 3825 I6 3826 B6 3827 B6 3828 C5 3829 C5 3831 C5 3832 D6 3833 D6 3834 D5 3836 E6 3837 E5 3838 F6 3839 F6 3843 F5 3844 F5 3846 G4 3847 H6 3848 G5 3849 G5 3851 G6 3852 B8 3853 A9 3854 A9 3855 B8 3856 D2 3857 D1 3858 E2 3862 D3 3863 D3 3864 A7 3865 A8 3866 H3 3868 E2 3869 F3 3871 B10 3872 A11 3873 B11 3874 A12 3876 D3 3877 D4 3878 B13 3879 A12 3880 C2 3881 D2 3882 C5 3883 C5 3884 F5 3885 F6 3886 H2 3887 H2 3888 H2 3889 I4 3890 I5 3891 I5 3892 J1 3893 B1 3894 B2 3895 B2 3896 B2 3897 B2 3898 C3 4820 B12
4821 A5 4822 B6 4823 G4 4824 H1 4825 I2 4826 H6 4827 D6 4828 E7 4829 E3 4830 E4 4831 F3 4832 H4 4833 C3 4834 E2 5816 H7 5818 H7 5827 H11 5834 G11 5839 B7 5848 D5 5849 D5 5851 E5 5853 E5 6801 B12 6802 B3 6803 A8 7801 D9 7802 C2 7803 H3 7804 C3 7805 A6 7806 A7 7807 F4 7808 G1 7809 I1 7810 H6 7824 E3 7828 F5 7829 A9 7832 A7 7871 B11 7874 B11 7876 A13 7891 J2 7892 B2 7893 B3 7894 B3 7895 D2
Page 63
Circuit Diagrams and PWB Layouts
63DPTV355 7.

DW/PIP Panel: Tuner

12
TUNER PANEL
A
F4-13
AGC
B
+5VS
5261
10u
C
F1
D
2.00 V~ 2.00ms
3139 188 0154.
12
100u
2261
3264
3263
3K9
RES
2262
RES
F2
1.00 V~ 10.0us
3265
4K7
RES
10K
RES
3270

DW/PIP Panel: Diversity Table

3
45
0255 D5 2261 C1 2262 C2
F1
F201
A
2265 A3 2269 D5
2270 B4
2271 B5
2265 100u
2272 D3 3263 B2
3264 A2
B
C
D
3265 B2 3267 D3
3268 D3 3270 C2 5261 C1 7201 C4 F201 A2
1
GND
0255
2271
47n
IF1
IF2|GND
15
CL 36532079_019.eps
11
10
2269 47n
F2
IF-TER
0V
F4-15
+33V
181203
VSPLL
9
33V
2270
47n
7
12 13 14
4V5
0V
68
2
3
100R
3268
NC
AS
*:
SEE DIVERSITY TABLE
5
2V3
100R
3267
SDA
AGC
7201
4V5
2272
*
VST
1
10n
VT
0R
SCL4SDA
2V4
SCL
345
Item /69, /79 12NC /61 12NC /93 12NC
1333 Filter TPWCC16B BS 242254944311 Filter TPWCC16B BS 242254944311 1352 SAW 38.9MHz K7260M 242254944223 SAW 45.75MHz M1962M 242254943074 SAW 38MHz K6287K 242254944223 2321 3.9nF 50V 10% 0805 223858016622 4.7nF 50V 0805 319801704720 3.9nF 50V 10% 0805 223858016622 2349 10nF 50V 0805 319801701030 10nF 50V 0805 319801701030 2350 319802551090 319802551090 2392 56pF 50V 0603 319801635690 47pF 50V 0603 319801634790 56pF 50V 0603 319801635690 2393 100pF 50V 0603 319801631010 1nF 25V 0603 319801631020 100pF 50V 0603 319801631010 3335 319802151210 319802151210 3352 319802132220 319802132220 3353 319802136820 319802136820 3354 319802132220 319802132220 3355 319802132730 319802132730 3356 319802131830 319802131830 3364 319802131020 3365 212010891451 3372 Jumper 0603 319802190030 319802131010 Jumper 0603 319802190030 3417 319802151010 3418 319802151010 3419 319802155610 3422 319802155610 3423 319802155610 3424 319802155610 3451 319802134720 3458 319802134710 3461 319802134720 4305 Jumper 0805 319802190020 Jumper 0805 319802190020 4308 Jumper 0603 319802190030 4309 Jumper 0603 319802190030 4314 Jumper 0805 319802190020 4315 Jumper 0805 319802190020 Jumper 0805 319802190020 5334 319801866880 319801866880 5352 319801866880 319801866880 6301 1SS356 932210737685 1SS356 932210737685 7201 Tuner TEDE9X700A 242254290075 Tuner TEDH9X700A 242254290077 Tuner TEDE99X701A 242254290076 7301 TDA8889H/N1 935263873557 TDA8887H/N1 935263872557 TDA8889H/N1 935263873557 7332 BC847BW 319801042310 BC847BW 319801042310 7368 BC847BW 319801042310 7402 HEF4053BT 933372960653 7421 BC847BW 319801042310 7422 BC847BW 319801042310
CL 36532079_087.eps
191203
Page 64
Circuit Diagrams and PWB Layouts

DW/PIP Panel: I/O Processing

64DPTV355 7.
1
F1-16
A
F2-14,F4-25
B
C
TO 0209 OF
GUIDE + PNL K1
0209
0272
TO 0236 OF
SSP-CINCH A5
0236
D
TO 0200 OF
SSP-CINCH A5
E
0200
F1-5,12
F1-3
F
+5VD
0201
G
H
TO 0201 OF SSP - TUNER A4
+33V
+8VS
I
J
3139 188 0154.
1
32
I/O PROCESSING
RESET
6
FB_OUT
F426
5
RESET
F418
SEL_YUV_RGB
4
CVBS_TER_PIP
3
F419
F401
2
1
CVBS_TER_OUT
3
F402
2
F403
1
CVBS-PIP_TUN1-2-CVBS-IN
F408
3
Y-CVBS-FRONT-IN
2
F407
1
F409
C-FRONT-IN
Y-CVBS-SC2_AV2-IN
5
F404
4
GND
C-SC2_SVHS-IN
3
F405
2
1
F406
CVBS-SC1_AV1-IN
+5VS
HFB-SANDCASTLE
VFB
SCL
SDA
1
SDA
2
SCL
F417
3
4
5
VFB
HFB-SANDCASTLE
6
7
+5V
8
+8V
9
+33V
F421
10
47p
2438
6436
3436
390R
3439
390R
F14
F414
F415
F416
47p
2439
1SS355
F410
F411
F15
2437
47p
2440
3n3
5401
BC636
0237
3458
100R
3404
3405 100R
3403
100R
F412
F413
6u85402
4u7
7434
3434
4K7
1
3437
*
100R
2401
1u
100R3401
2402
1u
100R3402
2403
1u
2432
3456 4K7
3457
3460
3431
100R
3432
100R
3462
2R2
4434
4K7
0V
2404
1u
2405
1u
4K7
4K7
3V6
3V6
4403
7401-A
Y0
12
HEF4053BT
Y1
13
Vee
Vss
7
8
7401-C
Y0
5
HEF4053BT
Y1
3
Vee
Vss
7
8
4402
4401
7401-B
Y0
2
HEF4053BT
Y1
1
Vee
0V
45
7403
0V8
Vss
7
8
0V
6
0V
7
0V
11
0V
0V
10
0V
F16
100n
3V4
12
3
2
13
0V
M6232OP
89
14 15 16
4437
7435
BC636
7438
BC847BW
3417
100R
8
*
3418
*
8
100R
12
13
2
1
5
3
*
Y0
HEF4053BT
Y1
Vss
8
4419
*
Y0
HEF4053BT
Y1
Vss
8
4423
7402-C
Y0
HEF4053BT
Y1
Vss
8
9
7402-A
Vee
7
7402-B
Vee
7
Vee
7
16
Vdd
S
11
Z
14
E
6
16
Vdd
S
10
Z
15
E
6
3463
4K7
16
Vdd
S
9
Z
4
E
6
TP1
F18
*
3419
560R
*
3423
BC857BW
4438
10
654
3411
16
Vdd
S
11
Z
14
E
6
16
Vdd
S
9
Z
4
E
6
16
Vdd
S
10
Z
15
E
6
SEL-MAIN-FRNT-RR
SEL-MAIN-R1R2
SEL-TUNER1
SEL-TUNER2
3453
4K7
2434
100n
SEMI-STD-BY
3438 470R
2431
100n
3452
4K7
2436 100u
3414
3415
3461
4K7
432 11
47K
3412
2412
47K
220n
47K
2415 220n
47K
**
3451 4K7
SEE DIVERSITY TABLE
*:
65
6412
1SS355
7412
BC847BW
3V3
6415
1SS355
BC847BW
3V3
3416 1K
2411
7411
10u
7V8
2V7
3413
1K
7
+8VS
7V8
V19
2V9
V20
7
*
7422
560R
*
3422 560R
+5VS
F14 F15 F16 F17 F18 V19 V20
4424
*
3424
560R
+5VS
F422
7421 BC857BW
F423
F424
F425
12
F17
*
PIP_CVBS_OUT
MAIN-CVBS-EXT-IN
CVBS-PIP-INT-IN
SEL_PIP_CVBS
131211109
PIP-CVBS-MON
CVBS-PIP-OUT
YCVI
C-PIP-IN
CL 36532079_030.eps
+5VD
FBLK
F4-16
F4-24
F4-17
F4-19
F4-18
F5-22
F4-23
F4-20
F4-21
F1-2
181203
13
A
B
C
D
E
F
G
H
I
J
0200 E1 0201 F1 0209 C1 0236 D1 0237 I2 0272 C1 2401 C3 2402 D3 2403 E3 2404 C3 2405 C3 2411 B7 2412 C6 2415 D6 2431 F5 2432 E3 2434 H4 2436 H5 2437 G2 2438 H2 2439 H2 2440 H2 3403 E2 3404 C2 3405 C2 3411 B6 3412 C6 3413 D7 3414 C6 3415 D6 3416 F6 3417 B8 3418 A9 3419 C11 3422 C11 3423 D11 3424 C12 3431 F3 3432 F3 3434 I2 3436 I1 3437 J2 3438 J4 3439 I2 3451 G6 3452 G5 3453 G4 3456 E3 3457 F3 3458 B2 3460 F3 3461 G6 3462 H3 3463 D10 4401 D3 4402 D3 4403 B4 4419 C9 4423 D9 4424 D11 4434 I3 4437 H3 4438 G11 5401 H2 6412 C6 6415 D6 6436 I1 7401-A B4 7401-B C4 7402-A B9 7402-B C9 7402-C D9 7403 G3 7411 E7 7412 C6 7421 D12 7422 C11 7434 I2 7435 I3 7438 J3
Page 65
Circuit Diagrams and PWB Layouts

DW/PIP Panel: IF-Video-Sync.

65DPTV355 7.
A
5352
+8VS
6u8
B
GND-IF
F2-15
F2-13
F3-25
F1-4
F3-18
IF-TER
AGC
RESET
C
D
E
F3-17
F
F3-19
G
+8VS PIP-CVBS-MON
F3-16
3366
F3-20
H
MAIN-CVBS-EXT-IN
F3-21
C-PIP-IN
F1-7
SV-SYNC
F1-10
F3-23
YCVI
I
J
+3.3V
3139 188 0154
F3
*
*
10n
*
2349
2350 10u
*
*
*
F302
F301
3355
*
3356
F303
7V6
7305
BC847BW
4307
4304
CVBS-PIP-OUT
*
1334 TPSCC
1
CVBS-PIP-INT-IN
100R
560R
3365
*
SY
TO 0207 OF
1
IF-VIDEO-SYNC
2K23352
6K8
1SS355
*
100R
3372
5334
1
2
3
4
6301
10n
2351
*
1333
3
2
7368
*
BC847BW
F305
F307
F306
F308
*
*
6u8
1
4314
4315
3334
470R
*
F3
3353
2K2
5349
3354
820n
*
27K
*
7332
18K
BC847BW
PIP-AUDIO
SEL_PIP_CVBS
3V9
3V1
3327
560R
*
4305
*
4306
*
4309 4308
*
3335
*
120R
3
2
TPWCC16B-TC10
3391
560R
0207
SSP-CINCH A5
F4
321
F9
1352
*
OFWK6272K
10
SWI
1
IN
2
ING
3316
3317
2303
2301 1u
F6
1K
1u
1u2311
3364
2335
## NO SYMBOL FOR THE "CLASS 5"
F5
4
O1
1u
5348
5
O2
GND
38
680R
15K
2321
*
2302 820p
3305
4n7
4301
*
26 CVBS2OUT
2V3
54 CVBS1OUT
2V3
24 CVBSINT
3V6
29 CVBS|Y2
3V4
CVBS|Y321
3V4
20 C3
1V4
10n
2306
F8
F12 F11
1V9
1V9
F5
4V6
22n
2316
4n7
10u2322
2K7
4u72304
F4
TDA88857301-B
3333
3324 390R
3325
2V7
15 PLLIF
SWITCH
VIDEO
IDENT
*
1 IFIN1
2 IFIN2
7 AGCOUT
2V4 2V5 3V1
CVBS
2327
2328
3383
3382
3381 100R 3321
680R
4M7
PLL VIDEO DEMOD
432
F6
10u
100n
2K2
RES
3340
7V6
QSSO|AMOUT
11
3V7
3306
U
V
FSCOUT
0V
1u 470n
100R
8K23322
10p
6
5332
7337
BC847BW
50
BASE BAND
DELAY
LINE
F13
65
6u8
560R
3347
4337
AMPLIFIER
OUTPUT
VOLUME
CONTROL
DECBG
DECDIG6GND
55
4V
5V
2332
1K
Y
U
V
YIN40YOUT
41
2V9
2V9
4312
F8
3302 560R
3336 1K
VIDEO
MUTE
+
2331
220n
RGB-2 INPUT
RGB / YUV
MATRIX
G|2
R|2
42
43
2V6
2V6
7
IFVO|AUDOUT 27
22n2334 2u2
4303
0V
22
SWO160SWO2
SW OUT
Y
U
V
BL|2
B|2
1V3
2V6
F10
7
47p
2390
16IFVO
3V9
12VIDEO|SIF
3V2
1K
3301
CD
MATRIX
SATURATION
CONTROL
UO|BL348VI|RI
VO|YI|GI
UI|BI
46
47
45
2V3
2V3
2V3
4311
*:
F9
5350
2393
*
3323
4V
1K
3326
4V9
13
HALFT
RGB
MATRIX
WHITE /
BLACK
STRETCH
+
RGB1
INPUT
+
TINT
WHSTR
G|1
R|1
1939
2V3
7V5
4310
SEE DIVERSITY TABLE
B|1
37
35
36
8
F10
3371 15K
1u
2373
3844
3V9
BL|1
4n7
2372
3311
2V1
27K
R
G
B
15u
2391
1n 1K
7301-C TDA8885
PH1LF59
EHTO3
3312
2V5
17
18
SCL
IIC BUS
CONTROL
RGB
OUTPUT
BLKIN
30
3V3
2V3
SDA
CALIBRATION
54
2380
2319
1V9
1V3
2324
100n
3328
4M7
TDA88857301-A
IF AMPLIFIER
AFC
CALIBRATION
AGC
AGC + NARROW BAND AUDIO FM
PLL DEMODULATOR
DE-EMPHASIS
SIF19SIF2
SIFAGC
8
10
LUM-
DELAY
PEAKING
CORING
CHROMA
BAND-
PASS CATHODE
+TRAP
F7
33p
33p
100R
100R
10K
7331
BC857BW
SWITCHABLE
SOUND TRAPS
4.5 / 5.5 / 6 / 6.5
SECPLL
28
2V3
2317
PAL / NTSC /
SECAM
DEMODULATOR
OSCIN52OSCOUT
1V6
51
1327
12MHZ
2354 470n
2355
2356
3318
2357
F7
23
VP1
MHZ
220n
49
1V6
RES
RES
RES
100p
SYNC
SEPARATOR
VERTICAL
SYNC
SEPARATOR
10n2312
10K
RES
3339
F11
2338
25
3390 5351
GND1
I301
10K
4K73389
2392
*
61
0V
2336
2313
2n2
GND2
33R
32G
31B
34BCLIN
470R
15u
47p
2V2
58
2V6
2V5
2V5
RES
0V7
57
FBISO
PH2LF
VCO
+
CONTROL
4M7
3313
7V8
2V2
3338
3329
3330
3348
3344 47R
3341
##
3V3
3350
820p
100n
F12
4313
IREF
5
4
3V9
2V9
7307
BC847BW
RES
RES
RES
RES
RES
11109
53
VP2
VCS
3V9
560R
100R
100R
0R
47R
180K 150K3351
7V6
HORIZONTAL
VERTICAL
3314
2314
7385
3346
2348
2345
2342
5333
5309
2309 100n
2V9
14
LPST-UP
OUTPUT
OUTPUT
E / W
OUTPUT
3V6
BC847BW
560R
RES
RES
RES
2333
H-DRIVE 56
DR+ 63
EW-DRIVE 62
4M7 100n
39K3315
0V4
2386
470p
0V2
2385
BC847BW
47p 47p
47p
100n
F13
PIP-CVBS-MON
F304
+8VS
6u8
6u8
1V2
4V7
DR- 64
4V9
2376
5V7
22n2374
10K
3386
4K73385
470p
7386
CL 36532079_020.eps
1312111098
+8VS
SANDCASTLE
+3.3V
1n
100R
3370
2375
2377
1n
1n
10K
4K7
3388
3374
10K
3384
3387
0V7
SCL SDA
1312
39K
SV
SU
F3-24
F1-1
F1-9
F1-8
191203
A
B
C
D
E
F
G
H
I
J
0207 I2 1327 H5 1333 G2 1334 G1 1352 B3 2301 F3 2302 D3 2303 D3 2304 E3 2306 H3 2311 H3 2316 C4 2312 D9 2309 B12 2317 E5 2313 I10 2319 A5 2321 D3 2322 D3 2314 E11 2324 B5 2327 H4 2328 I4 2331 E7 2332 E6 2335 H3 2334 E7 2333 G11 2336 H10 2338 B10 2349 B1 2350 B1 2342 G11 2351 C2 2345 G11 2348 G11 2354 I5 2355 I5 2356 I5 2357 J5 2372 D9 2373 D9 2380 A5 2375 C13 2376 D12 2377 C12 2385 F12 2386 F12 2390 B8 2391 A9 2392 B10 2393 A9 3305 D3 3301 D8 3302 A7 3306 E6 3316 C3 3311 E9 3317 C3 3312 D9 3318 J5 3313 E11 3314 D11 3321 J4 3315 E11 3322 J5 3324 B4 3325 B4 3327 E2 3323 B9 3328 B5 3326 D8 3334 F2 3333 B4 3335 F2 3329 F11
3330 G11 3336 A7 3340 B5 3339 H9 3338 F11 3341 G11 3352 A1 3347 A6 3344 G11 3353 B2 3354 C2 3355 D1 3346 F11 3356 D1 3348 G11 3350 G11 3351 H11 3365 H1 3364 G3 3366 G1 3372 E2 3371 C9 3370 C12 3381 I4 3374 E12 3382 I4 3383 I4 3391 G2 3385 F12 3384 E13 3386 E12 3389 I10 3387 E13 3390 A10 3388 D13 4301 E3 4304 E1 4305 F2 4306 F2 4307 E1 4303 E7 4308 F2 4309 F2 4314 B2 4315 C2 4310 I8 4312 I6 4311 I8 4313 A11 4337 B6 5309 B12 5334 F2 5332 A6 5333 B12 5348 B3 5349 C2 5352 B1 5350 A9 5351 A10 6301 B2 7301-CB9 7301-AB4 7301-BF3 7305 E1 7307 F11 7332 D2 7331 B5 7337 B6 7368 H2 7385 F11 7386 F12
1.00 V~ 10.0us
500mV~ 10.0us
500mV~ 10.0us
10.0 V~ 2.00ms
20.0 V~ 2.00ms
500mV~ 10.0us
10.0 V~ 5.00ms
1.00 V~ 10.0us
2.00 V~ 2.00ms
2.00 V~ 5.00ms
Page 66
Circuit Diagrams and PWB Layouts

Layout DW/PIP Panel (Top Side)

66DPTV355 7.
1333 B3 2301 A3 2306 B3 2311 B3 2316 B2 2317 A3 2319 A3 2327 A2 2328 A2 2333 A2 2348 A2 2349 B1 2351 B2 2355 A2
2385 A1 2386 A2 2390 B2 2391 B2 2392 B2 2393 B3 2401 A3 2402 A3 2403 A3 2404 A3 2405 A3 2412 A3 2415 A2 2431 A3
2432 A3 2434 B3 2502 A1 2503 A1 2504 A1 2505 A1 2506 A1 2508 A1 2509 A1 2811 A5 2812 A5 2813 A5 2823 A5 2824 A5
2828 B5 2833 A5 2836 A5 2842 B5 2843 B5 2844 B5 2857 A5 2858 A5 2859 A5 2860 A4 2862 C4 2864 A5 2866 A5 2867 A5
2868 A4 2871 A4 2872 A5 2873 A5 2874 A5 2876 A5 2877 B4 2885 A4 2886 A4 2887 A4 2888 A4 2889 A5 2890 B4 2892 A5
2893 A5 2894 A5 2897 A5 3301 A3 3306 B2 3316 B2 3317 B2 3318 A2 3321 A2 3322 A2 3327 B2 3333 A3 3334 A3 3336 A3
3340 B3 3346 A3 3347 B3 3348 A3 3352 B1 3353 B2 3354 B2 3355 B1 3356 B1 3364 A2 3366 A2 3372 B3 3374 A2 3384 A2
3385 A2 3386 A2 3387 A1 3388 A1 3389 B3 3390 B2 3401 A3 3402 A3 3404 A4 3411 A3 3412 A3 3413 A2 3414 A3 3415 A3
3416 A3 3431 C3 3432 C3 3438 C3 3451 C3 3452 B3 3453 B3 3456 C3 3457 C4 3458 A3 3459 A3 3460 B3 3461 B3 3463 A2
3502 A1 3503 A1 3504 A1 3506 A1 3508 A1 3812 A5 3813 A5 3814 A5 3816 A5 3817 A5 3818 A5 3821 A4 3822 B4 3824 B4
3826 B4 3827 B4 3828 B5 3829 A4 3831 A4 3832 B5 3833 B5 3834 B5 3836 B5 3837 B5 3838 B5 3852 B5 3853 B5 3854 B5
3855 B5 3866 A4 3868 B4 3869 B4 3871 C6 3872 C6 3873 C6 3874 C6 3877 B4 3878 C6 3879 C6 3880 C4 3881 B4 3882 B5
3883 A4 3886 A4 3887 A4 3888 A4 3889 A5 3890 A5 3891 B4 3893 B5 3894 B6 3895 B5 3896 B6 3897 B5 3898 B5 4301 B2
4303 B3 4304 B3 4307 B3 4308 B3 4309 B3 4310 A2 4311 A2 4312 A3 4337 B3 4403 A3 4438 B3 4811 B4 4812 B4 4813 B4
4814 B4 4816 B4 4817 B4 4819 B4 4820 C6 4821 B4 4823 B4 4824 B4 4826 B4 4827 B5 4828 B5 4829 B4 4830 B4 4831 A5
4832 A4 4833 B5 5309 B3 5332 A3 5333 A2 5334 A3 5350 B2 5351 B2 5352 B1 5501 A1 6801 C6 6802 B5 7301 A2 7307 A3
7331 A3 7332 B1 7337 B3 7368 A2 7385 B2 7386 B2 7401 A3 7403 B3 7501 A1 7801 B5 7803 A4 7804 B4 7824 B4 7829 C4
7832 C5 7871 C5 7874 C5 7876 B6 7891 A4 7892 B6 7893 B6 7894 B5
CL 06532045_045.eps
181203
Page 67
Circuit Diagrams and PWB Layouts

Layout DW/PIP Panel (Bottom Side)

67DPTV355 7.
2262 A5 2267 A6 2268 A6 2269 A5 2302 B4 2303 B4 2309 B4 2312 B5 2313 B4 2314 C5
2321 C4 2324 C4 2332 C5 2334 C5 2335 C4 2336 C4 2338 C5 2342 C4 2345 C4 2354 C4
2356 C5 2357 C5 2372 C5 2374 B5 2375 C5 2376 B5 2377 C5 2501 C6 2511 C6 2512 C6
2814 C2 2817 B2 2818 B3 2819 C2 2822 B2 2825 B2 2826 C3 2829 B2 2831 B2 2832 C1
2837 B2 2839 B2 2846 C1 2847 B2 2848 B2 2849 B2 2852 B2 2854 B2 2856 C1 2878 B3
2882 B2 2883 B3 2891 C3 3263 B6 3264 B6 3265 A6 3267 B5 3268 A6 3269 A6 3270 A6
3302 C4 3305 B5 3311 B5 3312 B5 3313 C5 3314 C5 3315 C5 3323 B5 3324 C4 3325 C4
3326 B5 3328 C4 3329 B4 3330 B4 3335 B3 3338 B4 3339 C4 3341 C4 3344 C4 3350 C5
3351 C5 3365 C5 3370 C5 3371 B5 3381 C5 3382 C5 3383 C4 3403 C5 3405 C5 3417 B4
3418 B4 3419 A3 3421 A3 3422 A3 3423 A3 3424 A4 3434 A2 3436 A3 3437 A2 3439 A3
3440 C6 3441 C6 3444 A4 3465 A4 3501 C6 3507 C6 3509 C6 3510 C6 3512 C6 3513 C6
3811 C2 3839 C1 3843 C1 3844 C1 3846 C1 3847 C1 3848 C2 3849 C2 3851 C1 3876 B3
3884 C1 3885 C1 3892 C3 4201 A6 4305 B4 4313 C5 4314 B5 4315 B5 4401 C4 4402 C4
4419 A3 4423 B3 4424 A4 4434 A2 4437 A2 4818 B3 4822 B3 5261 B5 5348 B5 5349 B5
5816 C2 5818 C2 5827 C2 5834 C3 5839 B2 5848 B2 5849 B2 5851 B1 5853 B1 6301 B5
6412 C4 6415 C4 6436 A3 7305 B5 7402 B4 7411 C4 7412 C4 7421 A4 7422 A3 7438 A3
7502 C6 7828 C1
CL 06532045_046.eps
181203
Page 68

HOP Panel

Circuit Diagrams and PWB Layouts
68DPTV355 7.
1700 A8 1710 A6 1720 A4 1030 G10 1510 H2 1601 L7 1610 G9 1701 C1 1711 C1 1721 D1
1
H1
A
B
C
D
E
HOP PANEL
+8V +12V DAC
3750
1701
1
1711
1
1721
To Blue CRT Panel 1207
1
F750
2740
2750
3740
2
2
2
F740
100n
1R
1K
2702
F
G
2903
10p
2905
2901
F902
1u
F3
2904 10p
1n
2906
2907
1n
1n
2909
10p
2910
3911
10p
2912
47K
2913
100n
H
I
J
K
L
M
N
O
P
3135 013 3275.2
1
1950 M5 2409 C15 2410 F20 2416 E18 2419 C17 2420 F18 2421 E19 2422 E19 2424 C16 2429 H15
23
To Blue CRT Panel 1210
+8V
4K7
39K
3732
3725
1n
2741
EH-B
22K
3724
345
1u
1K1
3730
3731
2731
2724
EH-B
5
F644
100p
EH-B
1K
100n
3727
+8V
220R
+12V
7900-A
8
LM393D
1
4
2911
1u
2900
1u
18K
3901
6643
1
F901
2
BAS316
F2
3601
F903
3
F904
4
.7V
F905
5
F906
6
F907
7
8
9
F910
10
F911
11
F912
12
Hf
3602
100R
3603
100R
3604
100R
100R
3605
100R
L2
F909
2-L2
3607
3608
1K
3609
47R
3613
100R
2K2
+8V
3614
100R
+5V
2968
100n
2958
47u
4957
3957
2957
100n
F961
123456789
F962
3 20
3
4
345
F760
F730
100n
100n
2644
To LSP 1510
1.5V
.7V
4.3V
2.9V .6V
1V
4V
1n
2
3644
1510 EH-B
2430 J20 2436 I18 2439 H17 2440 J18 2441 J19 2442 I19 2444 H16 2449 L15 2450 N20 2456 M18
4
1
BV1
3726
7730
3723
BF550
1K
3K3
1K2
3722
7720
BF570
1u
2720
10K
3903
F642
3
3902
2
10K
1u
2933
1u
2902
2601
2602
1n
1n
+8V
+8V +12V
3965
100R
F963
F957
6963
3966
100R
1R
2963
47u
3953
F955
F967
F954
F966
4.9V
4.9V
100R
3955
2953
3956
100R
4
2
7721 BF550
2607
9.1V
5721
3720
47n
EH-B1720
F722
-12V
3952
100n
3
100R
S1D
1R
F958
11.9V
2952
0u82
100R
3643
100R
3721
F952
3951
2951
F959
100n
-8V
2721
100n
680R
1
VDOA
2
VDOB
3
EWO
4
EHTIN
5
FLASH
6
GND1
7
DECVD
8
HOUT
9
SCO
10
SCL
11
SDA
F951
1R
1R
1950
JL
12V
100n
2459 L17 2460 N18 2461 N19 2462 M19 2464 L16 2470 E15 2471 E16 2472 F16 2473 D15 2480 I15
5
To Green CRT Panel 1210
+8V
39K
3715
22K
3714
100n
2714
3711
5711
0u82
3710
F641
43
44
BCL
BLKIN
HFB
HSEL
12
13
2615
100n
2616
47u
2961
47u
To SSM Panel 1950
5
680R
100R
42
BO
DPC
14
3616
39K
C2
C2
41
GO
VSC
15
2617
22n
C1
C1
GV1
1K2
3712
7710
BF570
2710
+8V
40
RO
7600
TDA9331H
IREF
16
F616
+8V
2481 I16 2482 J16 2483 I15 2490 M15 2491 M16 2492 N16 2493 L15 2601 H4 2602 H4 2607 J4
6
EH-B1710
3
1
2
F712
3716
100R
7711 BF550
3713
1K
+8V
3707
3708
1u
2638
47u
2639
100n
37
38
39
BI2
BL2
VP2
VP1
DECBG
GND2
18
19
17
2620
6
7
To Red CRT Panel 1210
+8V
-8V 3705
100n
2711
3704
2704
75R
47R
3639
2637
100R
2636
100n 2635
100n 2634
100n
22n
35
36
34
RI2
GI2
PWL
33
BL1
32
BI1
31
GI1
30
RI1
29
FBCSO
28
YIN
27
UIN
26
VIN
25
DACOUT
24
HD
23
VD
XTALI21XTALO
LPSU
20
22
1601
DSX840
12M
12p
12p
2621
2618
2u2
2619
22n
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
7
39K
22K
100n
7700
BF570
3645
2633
RV1
3702
2700
100R
3646
1u
3633
2632
100n 2630
100n
2627
100n
DAC
3623
100R
F956
BC807-25
2615 L5 2616 L5 2617 L6 2618 M6 2619 M6 2620 L6 2621 L7 2626 J8 2627 J8 2628 I8
123
F702
3706
3703
1K
1K2
1u
3647
100R
1K
3634
1K
2631
100n
2628
100n 2626
100n
3624
100R
-8V
7922
3922
-12V
EH-B1700
7701 BF550
5701
3700
10R
8
100R
100R
F640
0u82
3637
3635
100R
3648
47R
47R
3923
-8V
2701
3701
680R
10K
3632
10R
3630
10R
F627
F626
F624
6923
BZX284-C6V8
2923
1K
2922
2630 I8 2631 I8 2632 I8 2633 H7 2634 H7 2635 G7 2636 G7 2637 G7 2638 F6 2639 G6
910
SDA
2-A15
B-BIAS
G-BIAS
R-BIAS
47u
2924
100n
F623
3631
10R
3628
10R
3626
10R
F615
F614
F613
F612
F611
3627
10R
F632
1610
5
4
3
2
1
EH-B
To SSM Panel 1610
F631
F630
F628
2-C8
2-G8
2-K2
2-L2
U
V
HD
VD
SDA
SCL
3638
3636
+8V
47R
47R
1u
47u
9
2-A15
SCL
+12V
2800
TDA8444T/N4
1
2
3
BV1
C2
F3
2644 F2 2700 E7 2701 C8 2702 E2 2704 D7 2710 E6 2711 C6 2714 C5 2720 E4 2721 C5
11
3S DA
4S CL
REFERENCE
Max
2V
VOLTAGE
GENERATOR
100n
GND
DAC010DAC111DAC212DAC313DAC4
7800
8
9
3810
1K
3809
F809
F810
F811
6495
3495
F812
1030 JQ-S
BAS316
3496
22K
100K
2810
2809
200mV~ 10.0us
2.00 V~ 20.0us
1.00 V~ 10.0us
1110
Vp
100n
1
1K
3811
100n
2811
SHARP
5
NC
I C BUS
SLAVE RECEIVER
DAC0-7
1K
3812
1K
3813
2812
100n
100n
2813
6A07
2
2724 C3 2731 C3 2740 E2 2741 C2 2750 E1 2800 C10 2802 D14 2809 E11 2810 E11 2811 E11
12 13
A1
DAC515DAC616DAC7
14
10K
10K
3816
3814
15K
10K
3815
F813
F814
F815
F816
10K
3825
2816
100n
2814
100n
10K
3824
100n
3826
100n
2815
C1
2.00 V~ 5.00us
F2
1.00 V~ 10.0us
GV1
200mV~ 10.0us
12
+12V
3818
3817
2-H7,2-D7
2-A15
2-L12
2-J3
10K
13
100K
100K
TINT
VS1
VS2
SYNCSEL
2812 E11 2813 E11 2814 E12 2815 E12 2816 E12 2900 G3 2901 H2 2902 G4 2903 H1 2904 I2
14
7413
BF550
+12V
1K
3801
1K
3802
2802
SHARP
SREF
SHARP
7453
BF550
SREF
SHARP
L2
2.00 V~ 10.0us
14
2905 I1 2906 I2 2907 I2 2909 J2 2910 J1 2911 G3 2912 J2 2913 J2 2922 M8 2923 L9
15 16 17
+12V
1K
3426
3429
180R
7412
BF550
+12V
+12V
+12V
2473
2483
2493
100n
100n
100n
3441
3471
1K
3481
3491
3424
390R
2424
2409
100n
1K
3470
1K
2471
1n
2470
2472
+12V
3443
100R
7432
BF550
3444
390R
2444
2429
100n
1K
3480
1K
2481
1n
2480
2482
3460
180R
7452
BF550
3464
390R
2464
2449
100n
1K
3490
1K
2491
1n
2490
2492
+12V
3427
390R
SREF
1u
F802
7433
BF550
1K
3466
3467
390R
RV1
200mV~ 10.0us
15
100n
1n
100n
1n
100n
1n
3p3
13
10 11
12
14
3p3
13
10
11
12
14
3p3
13
10
11
12
14
470R
8
9
470R
8
9
470R
8
9
3422
3425
+CARRIER
NC4
-CARRIER
NC3
-OUTPUT
NC2
VEE
3449
180R
3445
+CARRIER
NC4
-CARRIER
NC3
-OUTPUT
NC2 VEE
3468
3465
+CARRIER
NC4
-CARRIER
NC3
-OUTPUT
NC2
VEE
3448
22R
3428
220R
+12V
MC1496D
22R
+12V
MC1496D
22R
3462
220R
+12V
MC1496D
2924 C9 2933 G4 2951 N5 2952 O4 2953 N4 2957 M3 2958 L3 2961 L5 2963 M4 2968 L3
3420
+OUTPUT
7410
-SIG_INP
GAIN_ADJ2
GAIN_ADJ1
+SIG_INP
3447
390R
3442
220R
+OUTPUT
7430
-SIG_INP
GAIN_ADJ2
GAIN_ADJ1
+SIG_INP
3463
+OUTPUT
7450
-SIG_INP
GAIN_ADJ2
GAIN_ADJ1
+SIG_INP
1716
7414 BF550
1K
NC1
BIAS
7434 BF550
2439
10p
NC1
BIAS
7454 BF550
1K
NC1
BIAS
18 19
3421
1K
3419
430R
2419
10p
7411
BF570
+12V
7
3K9
3416
6
2416
5
3415
100n
4
22R
3
3414
2
100R
1
3413
22R
3446
1K
3439
430R
7431
BF570
+12V
7
3K9
3436
6
2436
5
3435
100n
4
22R
3
3434
2
100R
1
3433
22R
3461
1K
3459
430R
2459
10p
7451
BF570
+12V
7
3K9
3456
6
2456
5
3455
100n
4
22R
3
3454
2
100R
1
3453
22R
3410 F19 3411 F19 3412 F19 3413 F18 3414 E18 3415 E18 3416 E18 3418 E18 3419 C18 3420 D17
+12V
3418
5411
5410
2420
+12V
3438
5431
5430
2440
+12V
3458
5451
5450
2460
2-E3
VV
F414
22R
2422
68p
1u5
2421
33p
0u68
3412
180R
4p7
22R
2442
68p
1u5
2441
33p
0u68
3432
180R
4p7
2-A4
UU
F454
22R
2462
68p
1u5
2461
33p
0u68
3452
180R
4p7
CL 36532079_023.eps
1918
+12V
+12V
+12V
3410
3411
3430
3431
3450
3451
15K
F410
5K6
15K
F430
5K6
15K
F450
5K6
3421 C17 3422 D16 3424 C15 3425 D16 3426 B14 3427 C15 3428 D17 3429 C15 3430 J19 3431 J19
208
2410
2-J9
BPb
47u
2430
2-I9
GY
47u
2450
2-I9
RPr
47u
101103
3432 J19 3433 J18 3434 J18 3435 I18 3436 I18 3438 I18 3439 G17 3441 G15 3442 H17 3443 G15 3444 G15 3445 H16 3446 G17
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
3447 H17 3448 H16 3449 G16 3450 N19 3451 N19 3452 N19 3453 N18 3454 N18 3455 M18 3456 M18 3458 M18 3459 K18 3460 K15 3461 K17 3462 L17 3463 L17 3464 K15 3465 L16 3466 K14 3467 K15 3468 L16 3470 D15 3471 E15 3480 H15 3481 I15 3490 L15 3491 M15 3495 F10 3496 F10 3601 H3 3602 I3 3603 I3 3604 I3 3605 I3 3607 I4 3608 J3 3609 J3 3613 J3 3614 K3 3616 L6 3623 J8 3624 J8 3626 J9 3627 J9 3628 I9 3630 I8 3631 I9 3632 I8 3633 H8 3634 H8 3635 G8 3636 G9 3637 G8 3638 G9 3639 G7 3643 H5 3644 E2 3645 F7 3646 G8 3647 F8 3648 G8 3700 E8 3701 D8 3702 D7 3703 C8 3704 C7 3705 C7 3706 B8 3707 D6 3708 D6 3710 E5 3711 D5 3712 C6 3713 C6 3714 C5 3715 B5
3716 B6 3720 E4 3721 D5 3722 C4 3723 C4 3724 C3 3725 B3 3726 B4 3727 D3 3730 C3 3731 C3 3732 B3 3740 C2 3750 B1 3801 D14 3802 D14 3809 D11 3810 D11 3811 D11 3812 D11 3813 D11 3814 D12 3815 D12 3816 D12 3817 D13 3818 C13 3824 E12 3825 E12 3826 E13 3901 H3 3902 G4 3903 E4 3911 J2 3922 M8 3923 M8 3951 M4 3952 M4 3953 M4 3955 N4 3956 O4 3957 M3 3965 L4 3966 L4 4957 M3 5410 F18 5411 E18 5430 J18 5431 J18 5450 N18 5451 N18 5701 D8 5711 D5 5721 D4 6495 E10 6643 H3 6923 L9 6963 L4 7410 E17 7411 D18 7412 C16 7413 C14 7414 C17 7430 I17 7431 H18 7432 G16 7433 G15 7434 G17 7450 M17 7451 L18 7452 K16 7453 K14 7454 K17 7600 I6 7700 D7 7701 C8 7710 D6 7711 C6 7720 D4 7721 B4 7730 C4 7800 C10 7900-A F3 7922 L8
Page 69

HOP Panel

Circuit Diagrams and PWB Layouts
69DPTV355 7.
1
H2
HOP PANEL
A
B
C
D
E
3540
F
G
H
I
J
K
L
1-J9
HD
1-K9
VD
1-N3
Hf
M
N
O
P
3135 013 3275.2
23456 16 17
BF570
+12V
7511
BF570
+12V
330R
7521
2330
100n
3339
100R
2509
100n
1K8
3513
3511
22R
15K
3512
3530
330R
1K8
3523
3521
22R
15K
3522
SYNCSEL
7330
+5V +5V
74HC157D
16
G1
VCC
8
EN
GND
MUX 1~
4
7
9
12
UU
1-K19
10R
3510
2511
47u
47u
2510
3515
TREF
22R
3516
1K0
3519
3K9
+12V
VV
1-C19
10R
3520
2521
47u
47u
2520
3525
22R
1K0
3526
TREF
3529
3K9
+12V
1-E13
1M0
3331
1
100n
2331
15
2
3
1
5
6
11
10
14
3332
13
3335
100R
VOUT2
+SIG_INP
1
3517
GAIN_ADJ1
2
470R
GAIN_ADJ2
3
HOUT2
3518
22R
100n
25192529
3527
470R
3528
22R
100n
6331
BAS316
3333
100R
100R
3336
100R
MC1496D
-SIG_INP
4
BIAS
5
+OUTPUT
6
NC1
7
+SIG_INP
1
GAIN_ADJ1
2
GAIN_ADJ2
3
MC1496D
-SIG_INP
4
BIAS
5
+OUTPUT
6
NC1
7
16
CX
10 14
RCX
>
1
9
8
4321 2019
7510
7520
R
74HC4538D
15
12
11
13
7328-B
-OUTPUT
-CARRIER
+CARRIER
-OUTPUT
-CARRIER
+CARRIER
2329
14
VEE
9
NC2
12
11
NC3
10
13
NC4
2502
8
2500
14
VEE
9
NC2
12
2506
11
NC3
1n0
10
13
NC4
2507
100n
8
1n0
2505
2K2
3325
100n
2325
470p
3326
1K0
68p
2326
+5V
65
78 189 101112
+12V
7540 BF570
3542
TINT
74HC4538D
1
4
57
3
TINT
7328-A
2806
1n0
7530 BF570
2931
1n0
3K3
+5V
1-J9
U
4K7
BC847B
4K7
2321
470p
2322
470p
+12V
4K7
3803
7805
1u0
2804
3K
1K0
3805
3804
+5V
2291
100n
2290
47u
20
1-N20
RPr
1-J20
GY
1-F20
BPb
VOUT2
HOUT2
F217
CSO
F222
F214
9
VCC
R-OUT21
G-OUT19
15 B-OUT
VD-OUT14
22 HD-OUT
DET
17 C-S-OUT C-V-IN 18
SYNC SEPA
LOGIC
GROUND
10
BA7657F
1
2
1
2
1
2
VD1-IN
1
VD2-IN
2
HD1-IN
1
HD2-IN
2
HD-S-SIG-DET
46810
R1-IN
R2-IN
G1-IN
G2-IN
B1-IN
B2-IN
7210
CTL 16
2210
47u
1
7
3
9
5
11
12
13
24
23
3248
2
470K
100n
2216
3K3
3532
3806
TREF
1u0
3807
2807
1-J9
V
+5V
68K
3324
2324
470p
2K2
3320
4K7
3321
4K7
3322
8
3531
2501
22R
3501
1n0
22R
3502
100n
220R
3500
1-E13,2-H7
22R
1n0
F805
F807
TBIAS
+12V
3541
22R
22R
3506
3507
220R
1-E13,2-D7
3505
22R
16
CX
62
RCX
>
1
R
2K2
3323
8
7
13
F201
VOUT1
F202
4210
2220
47u
4220
2230
47u
4230
VOUT1
HOUT1
2248
470p
3247
+5V
1-E13
68K
VS2
1u0
2247
1211
2191
100n
R-OUT
21
19 G-OUT
B-OUT15
14 VD-OUT
HD-OUT22
HOUT1
C-S-OUT17 18C-V-IN
4221
4213
F281
F286
3286
1250
JL
1
F251
3285
14
17
16
2190
47u
20
VCC
DET
SYNC SEPA
LOGIC
GROUND
4211
4231
4223
F270
3281
2270
220R
3271
220R
3456789
2
F254
F252
1K0
3270
1K0
3280
1413
15 20
SDA
+5V
VS1
SCL
1-A10
1-A10
1-E13
F012
F014
F011
9
15
+5V
BA7657F
1
2
G1-IN
1
G2-IN
2
1
2
VD1-IN
1
VD2-IN
2
HD1-IN
1
HD2-IN
2
HD-S-SIG-DET
46810
F260
47u
2260
47R
3261
F255
F256
75R
3260
R1-IN
R2-IN
B1-IN
B2-IN
1011121314
F015
F013
F010
7110
1
7
3
9
5
11
12
13
24
23
2
16CTL
100n
2111
F250
47u
47u
2250
47R
47R
3251
F258
75R
75R
3250
F004
F006
F008
15
19
1110 C19 1111 A16
A
1111 JET
+5VA
1
2345678
6112
BAS316
2110
3111
47R
47u
F002
+5VA
6111
BAS316
6122
BAS316
2120
BAS316
BAS316
BAS316
BAS316
BAS316
BAS316
47u
6121
BAS316
2130
47u
+5VA
6142
+5VA
6141
61476146
BAS316
BAS316
+5V
2944
2150
47u
+5VA
6162
BAS316
2160
47u
6161
BAS316
2170
47u
+5VA
6182
BAS316
6181
BAS316
+5VA
6187
6186
+5VA
6132
6131
+5VA
6152
6151
+5VA
6172
6171
3944
10R
100n
BAS316
BAS316
3121
47R
3131
47R
BAS316
BAS316
3151
47R
3161
47R
3171
47R
3181
220R
3186
220R
75R
3110
1110
SUB-D
1
F111
2
F112
3
4
75R
3120
5
6
F113
7
8
75R
3130
9
10
11
12
F114
3141
220R
3146
220R
13
14
1K0
15
3140
16 17
F115
1K0
3145
+5VA
F953
100n
2945
1150-A
2
YKC21
F152
1
75R
3150
1150-B YKC214
F162
3
75R
3160
1150-C YKC21
6
F172
5
75R
3170
1180-A YKC21
2
F182
1
1K01K0
3180
1180-B YKC21
4
F185
3
3185
1150-A H19 1150-B I19 1150-C J19 1180-A L19
B
1180-B M19 1250 L13 2110 B17 2111 G15
C
2120 C17 2130 D17 2150 H17 2160 I17
D
2170 K17 2190 C14 2191 C13 2210 H11
E
2216 L11 2220 H12 2230 H12 2247 L12
F
2248 K12 2250 K14 2260 K14 2270 K14
G
2290 H10 2291 H10 2321 L8 2322 M8
H
2324 K8 2325 K6 2326 L6 2329 K5
I
2330 J2 2331 J3 2500 D6 2501 C6
J
2502 D6 2505 H6 2506 G6 2507 G6
K
2509 B3 2510 C4 2511 B3 2519 D4
L
2520 F3 2521 F3 2529 H4 2804 E9
M
2806 C8 2807 E8 2931 F8 2944 H17
N
2945 H18 3110 C18 3111 B18 3120 D18
O
3121 C18 3130 E18 3131 D18 3140 F18
P
CL 36532079_024.eps
1716
18
101103
3141 E18 3145 G18
3146 F18 3150 I18 3151 H18 3160 J18 3161 J18 3170 K18 3171 K18 3180 M18 3181 L18 3185 N18 3186 M18 3247 K12 3248 K11 3250 M14 3251 L14 3260 M14 3261 L14 3270 M14 3271 L14 3280 M13 3281 K13 3285 M13 3286 L13 3320 K8 3321 L8 3322 L8 3323 L6 3324 K8 3325 K6 3326 K6 3331 J4 3332 L4 3333 K4 3335 L4 3336 L4 3339 L2 3500 D7 3501 D7 3502 D6 3505 G7 3506 G7 3507 G6 3510 B4 3511 B3 3512 C3 3513 B3 3515 C3 3516 C3 3517 C4 3518 C4 3519 D4 3520 F3 3521 F3 3522 F2 3523 F2 3525 F4 3526 G3 3527 G4 3528 G4 3529 G4 3530 C2 3531 C7 3532 D8 3540 E2
3541 F6 3542 G7 3803 D9 3804 E9 3805 E9 3806 D8 3807 E8 3944 G18 4210 H11 4211 G14 4213 H13 4220 H12 4221 H13 4223 H14 4230 H13 4231 H14 6111 C17 6112 B17 6121 D17 6122 C17 6131 E17 6132 D17 6141 F17 6142 E17 6146 G17 6147 F17 6151 I17 6152 H17 6161 J17 6162 I17 6171 K17 6172 K17 6181 L17 6182 L17 6186 N17 6187 M17 6331 I4 7110 C14 7210 H11 7328-A L7 7328-B L5 7330 J3 7510 C5 7511 B2 7520 G5 7521 F2 7530 C8 7540 F7 7805 D9
Page 70
Circuit Diagrams and PWB Layouts

Layout HOP Panel (Top Side)

70DPTV355 7.
CL 36532079_040.eps
161203
1030 A3 1110 A4 1111 A4 1150 B4 1180 C4 1250 C4 1510 B1 1601 B2 1610 A2 1700 A2 1701 A1 1710 A2 1711 A1 1720 A1 1721 A1 1950 C1 2110 A4 2111 A4 2120 A4 2130 A4 2150 A4 2160 B4 2170 B4 2190 B4 2191 B4 2210 B4 2216 A3 2220 B4 2230 A4 2247 B3 2248 B4 2250 C4 2260 C4 2270 C4 2290 B3 2291 B3 2321 C3 2322 C3 2324 C4 2325 C4 2326 C3 2329 C3 2330 C3 2331 C3 2409 A2 2410 A3 2416 A3 2419 A2 2420 A3 2421 A3 2422 A3 2424 A2 2429 A2 2430 B3 2436 B3 2439 A2 2440 A3 2441 A3 2442 A3 2444 A2 2449 B2 2450 B3 2456 B3 2459 B2 2460 B3 2461 B3 2462 B3 2464 B2 2470 A2 2471 A3 2472 A3 2473 A2 2480 B2 2481 B3 2482 B3 2483 B2 2490 B2 2491 B3 2492 B3 2493 B2 2500 B3 2501 B3 2502 C3 2505 B2 2506 B2 2507 C2 2509 C2 2510 C3 2511 C3 2519 C2 2520 C2
2521 C2 2529 C2 2601 B1 2602 B1 2607 B1 2615 B1 2616 B1 2617 B1 2618 B1 2619 B1 2620 B1 2621 B2 2626 B2 2627 B2 2628 B2 2630 B2 2631 B2 2632 B2 2633 B2 2634 B2 2635 B2 2636 A2 2637 A2 2638 A1 2639 A1 2644 A1 2700 A2 2701 A2 2702 A1 2704 A2 2710 A2 2711 A2 2714 A2 2720 A1 2721 A1 2724 A1 2731 A1 2740 A1 2741 A1 2750 A1 2800 A4 2802 A3 2804 C3 2806 B2 2807 C2 2809 A3 2810 A3 2811 A3 2812 A3 2813 A3 2814 A4 2815 A4 2816 A3 2900 A1 2901 B1 2902 A1 2903 B1 2904 B1 2905 B1 2906 B1 2909 B1 2910 B1 2911 A1 2912 B1 2913 B1 2922 C1 2923 C1 2924 A2 2931 C2 2933 A1 2944 B4 2945 B4 2951 C2 2952 C1 2953 C1 2957 C1 2958 C1 2961 C1 2963 C1 2968 C1 3110 A4 3111 A4 3120 A4 3121 A4 3130 A4 3131 A4 3140 A4 3141 A4 3145 A4 3146 A4 3150 A4
3151 A4 3160 B4 3161 B4 3170 C4 3171 C4 3180 C4 3181 C4 3185 C4 3186 C4 3247 B3 3248 B4 3250 C4 3251 C4 3260 C4 3261 C4 3270 C4 3271 C4 3280 C4 3281 C4 3285 C4 3286 C4 3320 C4 3321 C3 3322 C3 3323 C3 3324 C4 3325 C4 3326 C3 3331 C3 3332 B3 3333 C3 3335 C3 3336 C3 3339 C3 3410 A3 3411 A3 3412 A3 3413 A3 3414 A3 3415 A3 3416 A3 3418 A3 3419 A2 3420 A2 3421 A2 3422 A2 3424 A2 3425 A2 3426 A2 3427 A2 3428 A2 3429 A2 3430 B3 3431 A3 3432 A3 3433 A3 3434 A3 3435 A3 3436 B3 3438 A3 3439 A2 3441 B2 3442 B2 3443 B2 3444 A2 3445 B2 3446 A2 3447 A2 3448 B2 3449 A2 3450 B3 3451 B3 3452 B3 3453 B3 3454 B3 3455 B3 3456 B3 3458 B3 3459 B2 3460 B2 3461 B3 3462 B2 3463 B2 3464 B2 3465 B2 3466 B2 3467 B2 3468 B2 3470 A3 3471 A2 3480 B3
3481 B2 3490 B3 3491 B2 3495 A3 3496 A2 3500 C3 3501 C2 3502 C3 3505 C2 3506 B2 3507 C2 3510 B3 3511 C3 3512 C3 3513 C2 3515 C2 3516 C3 3517 C2 3518 C3 3519 C3 3520 C2 3521 C2 3522 C2 3523 C2 3525 C2 3526 C2 3527 C2 3528 C2 3529 C2 3530 C2 3531 C2 3532 B2 3540 C2 3541 C2 3542 B2 3601 B1 3602 B1 3603 B1 3604 B1 3607 B1 3608 B1 3609 B1 3613 B1 3614 B1 3616 B1 3623 B2 3624 B2 3626 B2 3627 B2 3628 B2 3630 B2 3631 B2 3632 B2 3633 B2 3634 B2 3635 B2 3636 A2 3637 A2 3638 A2 3639 A2 3643 B1 3644 A1 3645 B2 3646 A2 3647 A2 3648 A2 3700 A2 3701 A2 3702 A2 3703 A2 3704 A2 3705 A2 3706 A2 3707 A2 3708 A2 3710 A2 3711 A2 3712 A2 3713 A2 3714 A2 3715 A2 3716 A2 3720 A1 3721 A1 3722 A1 3723 A1 3724 A1 3725 A1 3726 A1 3727 A1 3730 A1
3731 A1 3732 A1 3740 A1 3750 A1 3801 A3 3802 A3 3803 C3 3804 C3 3805 C3 3806 C2 3807 C2 3809 A3 3810 A3 3811 A3 3812 A3 3813 A3 3814 A4 3815 A4 3816 A3 3817 A3 3818 A3 3824 A4 3825 A4 3826 A3 3901 B1 3902 A1 3903 A1 3911 B1 3922 C1 3923 C1 3944 B4 3951 C1 3952 C1 3953 C1 3955 C1 3956 C1 3957 C1 3965 C1 3966 C1 4210 B4 4211 B4 4213 A4 4220 B4 4221 B4 4223 B4 4230 B4 4231 B4 4605 B1 4907 B1 4957 C1 5410 A3 5411 A3 5430 A3 5431 A3 5450 B3 5451 B3 5701 A2 5711 A2 5721 A1 6111 A4 6112 A4 6121 A4 6122 A4 6131 A4 6132 A4 6141 A4 6142 A4 6146 A4 6147 A4 6151 B4 6152 B4 6161 B4 6162 B4 6171 B4 6172 B4 6181 C4 6182 C4 6186 C4 6187 C4 6331 C3 6495 A3 6643 B1 6923 C1 6963 C1 7110 B4 7210 B4 7328 C4 7330 C3 7410 A3 7411 A2 7412 A2
7413 A2 7414 A2 7430 B3 7431 A2 7432 B2 7433 B2 7434 A2 7450 B3 7451 B2 7452 B2 7453 B2 7454 B2 7510 C3 7511 C2 7520 C2 7521 C2 7530 C2 7540 B2 7600 B1 7700 A2 7701 A2 7710 A2 7711 A2 7720 A1 7721 A1 7730 A1 7800 A4 7805 C3 7900 A1 7922 C1
Page 71
Circuit Diagrams and PWB Layouts

Layout HOP Panel (Top Side)

71DPTV355 7.
1 2 3 4 5 6 7 8 9 10 11
1030 B6 1110 B2 1111 C3 1150 E2
A
A
1180 G2 1250 H3 1510 E10 1610 D8 1700 B8 1701 B10
B
B
1710 B9 1711 B10 1720 B9 1721 B10 1950 H9
C
C
D
G
D
E
F
E
F
G
H
1 2 3 4 5 6 7 8 9 10 11
CL 36532079_041.eps
161203
H
Page 72

Side Jack Panel

Circuit Diagrams and PWB Layouts
72DPTV355 7.
SIDE JACK PANEL
I/O
A
B
C
D
NOTES
1. CAPACITANCE VALUES ARE IN FARADS:
2. RESISTANCE VALUES ARE IN OHMS:
E
3135 013 3217.3
3. SAFETY TRIANGE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
1 2 3 4 5 6 7 8
2009
1
2
1337
6n8
PCB-TAB4.8x0.5
6012
I022
10K
3027
6013
F023
BZX284-C6V8
BZX284-C6V8
F022
9
1002-A
YKF51-5347
m=MILI u=MICRO n=NANO p=PICO f=FEMTO
R=OHM K=KILO M=MEGA G=GIGA T=TERA
1
2
7
3
8
YKC21-5617
YKC21-5617
YKC21-5617
4
I000
Y_CVBS_FRNT
1001-B
1001-C
*
10
5
1001-A
11
1002-B
YKF51-5347
6
3030
1K8
1
2
F010
4
6
5
F011
7
9
8
F012
L_FRNT
R_FRNT
I004
I015
6003
I003
6005
6006
6007
6008
6009
F014
6000
I002
6002BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
C_FRNT_SVHS
Y_FRNT_SVHS
BZX284-C6V8
BZX284-C6V8
3002
330p
2002
2006
330p
75R
3000
3006
3009
75R
22K
22K
I023
6001
6004
BZX284-C6V8
BZX284-C6V8
2000
220N
F016
F017
3005
1K
3007
1K
3K9
3029
YKB21-5101A
1007
3001
2005
2001
75R
330p
330p
I016
F015
I008
F018
F019
5
4
2
F020
3
7
8
1
I009
F021
1335
EH-B
1
2
3
4
5
6
7
8
9
10
3023
10R
3028
10R
3019
10R
3020
10R
2008
6n8
3026
10K
I021
6011
BZX284-C6V8
6010
BZX284-C6V8
1
2
3
EH-B 1344
CL 36532079_026.eps
131103
A
B
C
D
E
1001-A B2 1001-B C2 1001-C D2 1002-A A1 1002-B A2 1007 D5 1335 B6 1337 A7 1344 E8 2000 A5 2001 C5 2002 C3 2005 C5 2006 D3 2008 E6 2009 E7 3000 B3 3001 A5 3002 B3 3005 B5 3006 C3 3007 C5 3009 D3 3019 E6 3020 E6 3023 D6 3026 E6 3027 E7 3028 D6 3029 D5 3030 B2 6000 B3 6001 B4 6002 B3 6003 B3 6004 B4 6005 C3 6006 C3 6007 D3 6008 D3 6009 D3 6010 E6 6011 E6 6012 E7 6013 E7
1 2 3 4 5 6 7 8
Page 73

Layout Side Jack Panel

Circuit Diagrams and PWB Layouts
73DPTV355 7.
1 2 3 4 5
A
B
C
D
E
A
B
C
D
E
1001 E2 1002 B2 1007 G2 1335 E4 1337 G4 1344 F4 9000 C3 9001 D3 9002 C4
C
D
1
A
B
E
2 3 4
A
B
C
D
E
2000 B4 2001 E3 2002 E3 2005 E3 2006 E3 2008 F3 2009 G3 3000 E2 3001 B4 3002 D3 3005 E3 3006 E3 3007 E3 3009 E3 3019 F3 3020 F3 3023 G3 3026 F3 3027 G3 3028 F3 3029 G3 3030 C3 6000 C3 6001 B4 6002 C3 6003 D3 6004 B3 6005 D3 6006 D3 6007 D3 6008 F3 6009 F3 6010 F2 6011 F3 6012 G3 6013 G3
F
G
H
1 2 3 4 5
F
G
H
F
G
H
1 2 3 4
F
G
H
CL 36532079_048.eps
271103
Page 74

Large Signal Panel

Circuit Diagrams and PWB Layouts
74DPTV355 7.
0032 E10 0033 A14 0034 F8 0035 D14 0037 E14 0039 G18 0041 B14 0043 I17
0045 C14 0047 F14 0213 K11 1001 G20 1300 B4 1305 D7 1500 C2 1506 C19
1516 D20 1518 K20 2267 M8 2268 L5 2269 M10 2270 K6 2271 L5 2276 M11
241
L1
A
B
LARGE SIGNAL PANEL
To Pow er Supply Panel 1500
1
2
81.2V
3
56.5V
4
5
152.4V
VH
164V
1500
C
7302 MC44603A
D
GND_C
E
GND_
GND_C
GND_C
F
1K
3316
G
GND_C
H
82K
3314
.24V
2309
Vdem in
8
I135
82p
C
3315
15K
P7
2310
680p
3317
GND_C
I148
13.5V
I143
47K
2.5V
F106
2.5V
220p
2353
VCC
3.5V
9
10
15
12
14
1n
2311
13
3318
150K
Sync C
T
R standby
F
R standby
P
2.5V VOLTAGE FEEDBACK
E/A OUT
FOLDBACK INPUT
I150
I
J
K
L
CQY80NG
I159
13.5V
7303
19V
M
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
N
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACEMENT PART ONLY.
4.
PART VALUE / USAGE VARIES, REFER TO PARTS LISTS
*
VCC
42
19V
0V
TL431
3329
330R
I156
3328
100R
0V
20V
I157
15
4K7
3326
0V
I158
18.9V
3327
100R
I160
0V
1
7304
2333
3
18.8V
2
2277 L12 2278 L11 2279 N10 2300 B9 2301 C9 2302 C8 2303 C6 2304 E9
3
GND_C
DEMAGNETICATION
MANAGEMENT
Vdem out
Iref
OSCILLATOR
(REDUCED FREQUENCY)
ERROR
AMP
FOLDBACK
5
1.2V
3319
GND_C
1u
2328
3325
47K
2n2
I161
0V
2305 F7 2306 H5 2307 H10 2308 I10 2309 D2 2310 E2 2311 G2 2312 H18
I164
I111
3313
10K
2.5V
Rref
Vosc prot
Vosc
Iref
STANDBY
CURRENT SENSE INPUT
15K
+130VS
3324
100K
I188
47K
3350
4n7
2334
2K7
3323
470R
1300
5A0 5HT
I132
16
Vref
REFERENCE
BLOCK
I162
3322
Iref
3-K2,2-F2
HOUT
2313 I19 2314 J18 2315 E13 2316 E15 2317 E16 2318 E17 2319 F13 2320 F15
2390
I166
I113
I118
Vref enable
CURRENT SENSE
7
.14V
2n2
5330
I110
W8051
5315
SUPPLY &
INITIALIZATION BLOCK
QSet Latch Reset
THERMAL
SHUTDOWN
Dmax & SOFT-START
CONTROL
Iref
I149
3338
GND_C
+15V
3267
150R
100u
2268
3K3
3294
2321 F17 2322 E19 2323 A13 2324 B17 2325 D19 2326 D19 2327 B18 2328 J3
I165
I114
GND_C
GND_C
Soft Start & Dmax
11
2.4V
10K
2306
GND_C
9210
BUFFER
Vovp out
Vref
OVERVOLTAGE
MANAGEMENT
UVLO1
1u
100p
2271
3300
22K
2354
47u
2303
100u
2346
100n
13.5V
Vcc
UVLO1
OUTPUT
Vcc
OVERVOLTAGE
PROTECTION
Vref
47K
3285
47K
3286
2329 B13 2330 C15 2331 C16 2332 D17 2333 L3 2334 L3 2335 F18 2336 M19
6
F107
I130
3311
4R7
1
0V
18V
Vc
I136
2
I139
3
2.8V
GND
4
GND_C
I146
6
1.9V
3320
2270
100n
I889
G5PA-1-5VDC
75R
5302
2361 G13 2362 G15 2363 G16 2364 C13 2365 D15 2366 D16 2370 K14 2371 L14
2
14
1N4148
8
F111
152.4V
164V
2337
I163
470p
2302
5312
I125
6301
BYV95C
+5VSTDBY
6313
1K
3304
.8V
0V
I140
5301
3306
7
1305
I134
BC547B
7300
2337 B8 2338 B8 2339 G19 2346 D6 2349 D9 2350 I17 2353 F2 2354 C6
13.5V
VCC
3
3312
5303
13V
P8
470p
2305
GND_C
BZX55-C15
GND_C
VCC
I152
8
NE555D
VCC
COMP
COMP
FF
GND
1
*PART VALUE / USAGE VARIES, REFER TO PARTS LISTS
I891
5CTRL
2TR
4RES
3OUT
0034 HEATSINK
1234
3321
8K2
8K2
GND_C
I890
6322
7214
6THR
7 DISC
2372 M15 2390 A4 2391 C11 3267 K5 3277 L10 3280 M9 3281 M9 3285 L6
470u
2338
F108
3307
4R7
0V
BC547B
.8V
3303
100K
P9
I141
15R
3.4V
9211
I892
2267
470u
7309
3305
10n
2300
.7V
.4V
STW13NB60
1
0V
GND_C
GND_C
2349
10K
3280
3281
3286 M6 3291 N10 3294 L5 3300 B6 3301 B9 3302 B10 3303 E8 3304 E8
9
470u
220R
3344
I128
10n
3343
83V
164V
5305
7301
2
3
0V .1V
I144
9K1
6211
270R
2301
15K
15K
330p
3310
I893
3301
I116
F117
21
2304
390R
BAT254
I894
3305 F9 3306 E8 3307 C8 3308 G10 3309 G10 3310 H9 3311 D6 3312 D7
10
3302
220R
220R
2n2
STANDBY
1-L17
P10
0032 MECHPART
12345
6302
1N5062
3308
0R22
GND_C
3309
0R22
GND_C
4n7
2307
4n7
2308
GND_C
5240
3277
2n2
2269
3291
100R
1506
1
2
PCB-TAB4.8x0.5
2325
+35V
+22V
2322
- 22V
-37V
2339
F120
2313
F125
F134
F127
.8V
F128
F129
F135
PWR FAIL
F131
10u
F136
F137
9001
3345
10R
AGND
F141
100n
100n
F140
F139
F133
-22V
470u
RESERVED
470u
6310
3351
1
2
3
4
5
6
7
8
9
10
11
12
7305 L16 7309 C9 9000 K12 9001 A19 9210 L5 9211 L8
20
RESERVED
AGND
EH-B 1516
To SSM
12
Panel
11
1516
10
9
8
7
6
5
4
3
2
1
1001
EH-B
3
2
1
+130VS
BYD33D
150R
+130VHV
1518
EH-B
To SSM Panel 1518
PROTECT
2-L2
Ref Des 313503711061 313503711071 0034 NOT USED NOT USED NOT USED NOT USED 313501104591a
A
0213 NOT USED NOT USED NOT USED NOT USED 313501104201
1001 NOT USED
2267 NOT USED NOT USED NOT USED
2268 NOT USED NOT USED NOT USED NOT USED 319802531010
2269 NOT USED
B
2270 NOT USED NOT USED NOT USED NOT USED
2271
NOT USED NOT USED NOT USED NOT USED 319801601010
NOT USED NOT USED
2276
2277 NOT USED NOT USED NOT USED NOT USED 319801952220
2278 NOT USED NOT USED NOT USED NOT USED 202055890555
C
2279 NOT USED
2300 202002490682
470u
2333 NOT USED NOT USED NOT USED NOT USED 319801912220
2337 NOT USED
D
2338 NOT USED NOT USED NOT USED
2339 NOT USED NOT USED NOT USED NOT USED 319802644710
2391 NOT USED
3267 NOT USED NOT USED NOT USED NOT USED
E
3277 NOT USED NOT USED NOT USED NOT USED 319802151030
3280
NOT USED NOT USED
3281 NOT USED NOT USED NOT USED
3285 NOT USED NOT USED NOT USED NOT USED 319802154730
3286 NOT USED
F
3291 NOT USED NOT USED NOT USED NOT USED
3294 NOT USED NOT USED NOT USED NOT USED 319801103320
NOT USED NOT USED
3320
3321 NOT USED NOT USED NOT USED NOT USED 319801108220
3338 NOT USED NOT USED NOT USED NOT USED 319802151030
G
FAN
3339 NOT USED
5240 NOT USED NOT USED NOT USED NOT USED
5241 NOT USED NOT USED NOT USED NOT USED 319801890020
6211 NOT USED NOT USED
H
6212 NOT USED NOT USED NOT USED NOT USED 933910440112
NOT USED NOT USED NOT USED NOT USED 934038720115
6213
6304 NOT USED
6314 NOT USED NOT USED NOT USED NOT USED 934038020127
7213 NOT USED NOT USED NOT USED NOT USED 932209027687
I
7214 NOT USED NOT USED 933656110623
9001 NOT USED NOT USED NOT USED NOT USED 319803690010 9210 NOT USED 9211 NOT USED NOT USED NOT USED NOT USED 319803690010
J
K
313503711061 X 313503711071 X
L
313503711081 313503711091 NOT_USED X
NOT USED NOT USED NOT USED 241202000725
NOT USED NOT USED NOT USED 202031090057
NOT USED NOT USED
202002490682 470u
NOT USED 202002490562
NOT USED NOT USED NOT USED 202055490173
NOT USED NOT USED NOT USED 319802154730
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED NOT USED 319803690010
A M
M
V
V
4
1
b
6
y
b
3 E
9 E
X
X
T
T
X
X
313503711081 313503711091 NOT_USED
NOT USED NOT USED 222236585104
NOT USED NOT USED
470u
NOT USED NOT USED 232273469102
NOT USED NOT USED 319801108220
NOT USED NOT USED 934039300115
NOT USED NOT USED
C
C
RA
HIE
H
S
I
N
E
N A
A
R
1
V
4
6y
E
b
b
D
y
y
3
9
E
E
X
X
T
T
AMV 16:9 EXTAMV 4:3 EXTCHINA 16:9 EXTCHINA 4:3 EXT
HEATSINK
HEATSINK
NOT USED 319801701030
NOT USED 222236585104
202002490562 470u
NOT USED 202002191321
NOT USED 319802152710
NOT USED 232225141689
NOT USED 934038020127
EH-B
10n
100u
2n2 319802321040 100n
100p
100n
2n2
470p
100n NOT USED
2n2 NOT USED
470u
470u
2n2 319801211510 150R
10K
9K1
270R
47K
47K 319802151010
100R
3K3
8K2
8K2
10K
68R 319801890020
BAT254
BYV28-200/20
BZX284-C15
BY229X-600
BY229X-600
MTP6P20E
NE555D
M
N
4K7
F114
HEATSINK
HBLANK
DEFGND
VBLANK
+5VSTDBY
F943
100n
0039
+15V
F113
F118
2335
3339
12
I145
2-D20
2-C20
2-N19
3347
10K
.3V
19
-18V
F142
2326
68R
5304
P27
2336
6322 F7 7213 L11 7214 L7 7300 E7 7301 E9 7302 D2 7303 K1 7304 L2
100n
- AUDIO
+ AUDIO
5336
10u
6313 D7 6314 J17 6315 I17 6316 D13 6317 F14 6318 K14 6320 M17 6321 M18
18
1m
2327
3352
AGND
AGND
18V
F115
100n
F116
22V
100n
F119
4K7
3356
2312
470p
I147
6305
MUR8100E
6304
BY229X-600
F121
5311
P25
470u
2314
L42
F12
F132
6321
1N4148
1N4148
17
I169
4K7
AGND
4K7
5309
10u
MUR8100E
BY229X-600
6K8
3K3
2324
1m
470p
2350
6315
6314
STANDBY
+130VS
AGND
3355
3359
68K
1m
4K7
2321
HEATSINK
0043
1-C10
6303 F10 6304 I18 6305 H18 6306 E13 6307 E14 6308 A13 6309 C13 6310 I19
5317
10u
2332
2318
1m
5306
12
131V
I151
6320
5300 C12 5301 E8 5302 E7 5303 E6 5304 H19 5305 E9 5306 H17 5307 D16
14
0033
12
0V -18.1V
0041
12
0V 18.2V
HEATSINK
0045
12
35.9V
0V
HEATSINK
0035
12
0V 22V
0037
HEATSINK
12
6307
0V -22V
HEATSINK
0047
12
6317
0V -37V
P18
I153
2370
I189
VSCAN
2371
BY229X-600
I170
BY229X-600
I173
BY229X-600
5323
P13
BY229X-600
I122
I174
BY229X-600
I137
BY229X-600
2-C2
HDR2K3 LSP AP
3359 K17 3360 L15 3361 M14 3362 L16 3363 M16 3365 B10 5240 K10 5241 M11
470p
2323
6308
470p
2329
6309
2364
470p
6316
6306
470p
2315
2319
470p
2361
470p
3313 D4 3314 D2 3315 F2 3316 G1 3317 G2 3318 H2 3319 H3 3320 G6
3321 G7 3322 M4 3323 M4 3324 K4 3325 L3 3326 K2 3327 L2 3328 K2
3329 J2 3338 H5 3339 G19 3343 D9 3344 C9 3345 B19 3347 L18 3350 L4
12
3365
US54018
P17
2278
BYV28-200/20
I898
P11
5300
13
14
15
16
17
18
I127
19
20
21
22
I129
9000
2277
470p
2391
GND_C
0213
MTP6P20E
7213
BZX284-C15
2276
152V
123
100n
2n2
11 12
10
8
6
164V
2
1
HEATSINK
6212
5241
I120
I142
6303
1N5062
GND_C
I895
10K
6213
I896
2279
100n
3351 I19 3352 B18 3353 C16 3354 D16 3355 E17 3356 F17 3357 G16 3358 L14
135 11
5308
1u
5321
1u
P12
I115
AGND
I117
I119
I121
5319
P14
I124
P15
P16
P15
5320
5324
I897
2n2
5308 A13 5309 F17 5310 I14 5311 I18 5312 C8 5313 B15 5314 F15 5315 B5
15
HEATSINK
P19
HEATSINK
P20
I171
5313
P21
I112
P22
I123
2316
P24
I138
I154
5310
6318
100p
BYV95C
P26
18K
3358
100n
I190
3360
100R
4K7
3361
5316 B16 5317 A17 5318 A16 5319 E13 5320 F13 5321 B13 5322 C16 5323 C13
16
I168
I172
5316
10u
1m
2330
AGND
5322
10u
1m
2365
1m
P23
I133
2320
1m
5314
10u
2362
2363
1m
7305
TL431
I191
0V
3
2.6V
100n
2372
5324 F13 5330 A5 5336 L19 6211 M9 6212 L11 6213 L10 6301 C8 6302 F10
5318
1m
2331
3353
AGND
1m
3354
2366
5307
10u
2317
1m
4K7
3357
I192
0V
1.8V
1
3362
2
3363
O
P
3135 033 3347.1
1
P16
50.0 V~ 10.0us
2
P17
50.0 V~ 10.0us
F12
2.00 V~ 5.00ms
3
L42
4
P18
50.0 V~ 10.0us
2.00 V~ 10.0us
5
P19
5.00 V~ 10.0us
P7
5.00 V~ 10.0us
6
P20
5.00 V~ 10.0us
P8
10.0 V~ 5.00us
8
P21
1.00 V~ 10.0us
P9
10.0 V~ 5.00us
9
10
P22
1.00 V~ 10.0us
P10
50.0 V~ 5.00us
11
P23
500mV~ 10.0us
P11
20.0 V~ 10.0us
12
P24
500mV~ 10.0us
P12
20.0 V~ 10.0us
13
14
P25
20.0 V~ 10.0us
P13
20.0 V~ 10.0us
15 1917
P14
16
P26
5.00 V~ 5.00ms
20.0 V~ 10.0us
P27
20.0 V~ 10.0us
P15
20.0 V~ 10.0us
187
CL 36532079_001.eps
161203
20
O
P
Page 75

Large Signal Panel

Circuit Diagrams and PWB Layouts
75DPTV355 7.
2
A
L2
LARGE SIGNAL PANEL
FILAMENT
2-L11
3 125
B
VSCAN
1-L14
C
D
+130VS
E
I842
3834
HOUT
3-K2,1-M4
F
CHINA 4:3 EXT CHINA 16:9 EXT AMV 4:3 EXT AMV 16:9 EXT
Ref Des 313503711061 313503711071 313503711081 313503711091 NOT_USED 1002 NOT USED NOT USED NOT USED NOT USED 242202512479
G
1102 NOT USED NOT USED NOT USED NOT USED 242202512479
2816 NOT USED
2819 NOT USED NOT USED NOT USED NOT USED 222237590219
3820 319801211080
1R0
5802 242253595282
H
47u
5805 NOT USED
9203 NOT USED NOT USED NOT USED NOT USED 319803690010
NOT USED NOT USED NOT USED 222247990022
319801211580 1R0 1R0 242253595282 47u NOT USED NOT USED NOT USED
I840
47R
2846
319801211080 1R0
242253595282 47u
330p
I
+15V
J
K
L
M
N
3135 033 3347.1
F2
6824
PROTECT
NEG-HORIZ-PULSE
1
BZX284-C10
F9
1-N20
L25
2-A20
I882
2
I865
2838
F3
6814
BZX284-C10
3844
1n
3846
1R
470K
2837
1u
10K
3842
I871
22K
1n
22K
2839
3845
6822
F808
BYV95C
2840
BAS216
24.7V
4
3
2
1
I811
2-B20
+15V
2804
2847
I857
14.6V
BC857B 7814
14.6V
3858
4K7
FILAMENT
11
1801
T2A MRT
470u
BYV95C
22u
2802
47u
2833
470p
6827
BYV27-200
L10
6830
BAS216
2-A2
200V
12
0085
HEATSINK
I818
2803
470p
6802
6832
BZX284-C15
I852
3829
68K
3822
1R0
VDOA
F2
3-K2
F3
VDOB
3-K2
3835
470R
319801211580 1R0 1R0 242253595282 47u
3841
F10
3843
2K2
L26
3847
100K
2n2
I832
5.2V
7906 BC847B
2.2V
.5V
3832
100K
1K
6818
BAS216
BZX79-C18
3860
7
47u
2801
I833
1m5
2835
3838
1R
I854
2845
100n
L29
I867
3852
1.5V
100R
L32
2843
100n
9818
1u
2842
4
RESERVED
9203
*
5802
*
47u
3840
4K7
I827
3839
4K7
100n
2836
7807
BSN304
BZX284-C10
7809 BC847B
10K
3861
I838
47K
3850
L27
3867
100R
6828
2.8V
7810 BC847B
L3
I841
2.3V
2K2
6813
3836
EH-B
EH-B
430n
22n 319801211080 1R0
NOT USED
242253600272 90u
7808
2.8V
BC847B
I866
-.4V
6815
BAS216
2.8V
.2V
6829
BAS216
+15V
27K
3848
I884
-.4V
10n
2841
6823
BAS216
1
2
2834
3837
BZX79-C68
3868
1K
5808
UD15201
62V
2831
470p
4K7
6816
BZX284-C10
I877
-200V
6
1820
4
3
L4
1n
I849
6812
BZX79-C68
+15V
3851
I858
2.8V
I861
6817
BAS216
L28
BF423
7812
I868
L30
6819
2K2
3849
I874
L31
47K
15K
3859
I880
15K
3862
15K
3864
8 15
206V
L5
2821
100n
+15V
4.8V
L7
5.3V
10n
18K
2832
3833
+15V
10K
3854
L33
I864
3855
.03V
.7V
3853
330R
7813 BC847B
10K
F944
5809
47u
G1
2830
2844
F800
F802
7801 BU2520AF
-.5V
3809
4R7
3866
150R
3826
27K
5
6
22n
1002 EH-B
9
L22
5811
7803-B
8
LM393D
4
6820
I862
BZX284-C10
10u
4
3
2
1
RESERVED
10
3801
0R68
100n
2806
47u
2810
1K5
3824
100R
L9
3856
4K7
1102 EH-B
I848
BZX284-C10
L34
4
3
2
1
+30V_CLAMP
L8
7802
2SK2232
.8V
3827
1K
I859
10K
3857
6831
13.9V
L35
1202 EH-B
To BLUE CRT Panel 1202
.7V
7
3825
I844
6825
HDR2K3 LSP AP
4 14
5
F4
6
F5
7
F6
F7
11
F8
128
F9
0081 MECHPART
12
2817
3823
0082 HEATSINK
1
13
345
560p
5810
47K
3812
100R
3811
100R
234
133
I810
L24
6.8V
148V, 1200Vp-p
123
BYM357DX
2819
6821
BAS216
5807
3m3
2824
3817
1R
3808
13V12.9V
470R
2829
TDA8177 7811
PROTECTION
THERMAL
GENERATOR
FLYBACK
6
.03V
I878
16
I812
5801 US40213
89
7
6
5
3
1
2815
I836
10u
47R
5803
3807
1n
2825
470n
2828
F12
OUT 5
FLYB 3
100u
BYV27-200
F8
16
2816
430n
2850
510n
6811
F7
6826
BZX79-C18
2200u
I850
F6
-12.5V
I845
L19
I847
150p
2848
2826
100n
2827
100n
3815
2K7
179
141 18
2805
470p
6801
BY229X-200
L21
I822
0180
HEATSINK
123
L6
Taken w/100:1 Scope Probe
8n2
2818
.6V
9
.7V
3814
3821
5805
10
5812-2
UC28211
1K87
I881
1R5
6809
90u
2820
IN+7
IN-1
3819
470R
BYD33J
4u7
I875
3820
AMPLIFIER POWER
1R0
I835
5804
5u1
-13V
4
GND
VSUP2VSUPO
3818
1R5
L20
I873
I869
25.2V
4n7
6810
22n
2823
2822
I843
15n
2849
5812-1
47
120u
F806
F4
3813
2n2
F5
4n7
3
1K87
15
F10
A
B
C
D
E
F
G
H
I
J
K
L
M
N
L5
0081 D13 0082 L13 0085 A12 0180 D14 1000 A18 1002 L8 1102 L9 1202 L10 1501 J19 1502 K19 1503 L19 1801 A11 1804 E19 1805 F19 1820 C6 1915 P19 2010 P20 2801 C7 2802 D11 2803 C12 2804 B10 2805 A14 2806 B9 2807 B18 2808 B18 2810 F10 2811 D18 2812 E19 2813 E19 2814 E18 2815 E16 2816 F16 2817 E13 2818 E14 2819 G13 2820 G14 2821 D8 2822 L14 2823 K14 2824 J13 2825 K15 2826 L16 2827 L17 2828 L15 2829 H15 2830 H8 2831 G6 2832 G8 2833 G11 2834 G5 2835 E7 2836 E5 2837 J3 2838 L2 2839 L3 2840 M3 2841 M4 2842 M7 2843 K7 2844 K8 2845 I7 2846 F3 2847 G11 2848 K16 2849 G14 2850 G16 3801 A10
1917
1000
BY229X-200
I813
I830
I837
F809
18
HEATSINK
L15
I814
6803
2807
470p
3810
I825
L11
L12
L13
BYV27-200
1-K19
3-L2
3803
2811
470p
6805
2814
470p
6806
BYV27-200
148V
148V
148V
I876
+13V
VBLANK
VPULSE
3816
1R
2808
22u
100V
10R
L16
F803
3802
1K
I828
1804
T1A
MRT
I834
1805
T1A
MRT
DYN-FOCUS-LOW
3-C2
DYN-FOCUS-HIGH
3-D2
DM-INPUT
3-L19
HOT-COLLECTOR
3-N2
VERT-PARABOLA
3-F2
3-K19
HVG-ON
1501
1
2
3
I860
3804
4
220R
1
2
3
3805
4
220R
1503
1
2
3
3806
4
220R
CL 36532079_002.eps
19
L4
L23
1R
10
12
13
14
15
16
L14
-13V
F12
3865
2K2
L3
20
NEG-HORIZ-PULSE
2-M2
28V
+30V_CLAMP
2-F11
DEFGND
1-K19
6804
BZX79-C4V7
HBLANK
1-K19
F804
+13V
1m
2812
6807
BAS216
1m
2813
-13V
F805
6808
BAS216
To RED Deflection Yoke
LV
To GREEN
1502
Deflection Yoke
LV
To BLUE Deflection Yoke
LV
161203
2010
3802 D18 3803 D18 3804 J18 3805 L18 3806 M18 3807 F15 3808 F15 3809 D8 3810 C18 3811 K13 3812 J13 3813 J14 3814 L14 3815 N17 3816 B19 3817 C15 3818 L15 3819 L14 3820 M15 3821 M14 3822 H12 3823 G13 3824 F9 3825 G9 3826 F8 3827 H10 3829 G12 3832 G6 3833 G8 3834 F3 3835 F4 3836 F4 3837 H5 3838 E7 3839 E5 3840 D5 3841 J3 3842 K3 3843 J4 3844 K3 3845 L3 3846 M2 3847 M4 3848 L4 3849 K6 3850 J5 3851 I6 3852 K7 3853 K7 3854 J8 3855 J8 3856 J9 3857 J10 3858 K11 3859 L6 3860 L6 3861 M4 3862 M6 3864 M6 3865 N18 3866 E8 3867 J5 3868 J5 5801 C17 5802 C5 5803 F16 5804 F15
L6
5805 F14 5807 H13 5808 D6 5809 L8 5810 E13 5811 E9 5812-1G14 5812-2H14 6801 A14 6802 C12 6803 B18 6804 D19 6805 E18 6806 F18 6807 E19 6808 F19 6809 F14 6810 E14 6811 L16 6812 H6 6813 F4 6814 J2 6815 K4 6816 H6 6817 J6 6818 J6 6819 K6 6820 J9 6821 G13 6822 M3 6823 M4 6824 J1 6825 H9 6826 N16 6827 G11 6828 K5 6829 L4 6830 H11 6831 J10 6832 F12 7801 D8 7802 G10 7803-B F9 7807 E5 7808 J4 7809 K5 7810 M5 7811 I15 7812 K6 7813 K8 7814 K10 7906 J6 9203 B5 9818 L7
1.00 V~ 10.0us
L7
1.00 V~ 20.0us
L22
1.00 V~ 10.0us
1.00 V~ 10.0us
L8
2.00 V~ 10.0us
L23
20.0 V~ 10.0us
500mV~ 10.0us
L9
2.00 V~ 10.0us
L24
1.00 V~ 10.0us
500mV~ 10.0us
L10
10.0 V~ 10.0us
L25
20.0 V~ 10.0us
10.0 V~ 2.00ms
L21
20.0 V~ 10.0us
L26
500mV~ 10.0us
20.0 V~ 2.00ms
L12
50.0 V~ 10.0us
L27
1.00 V~ 5.00ms
500mV~ 10.0us
L13
50.0 V~ 10.0us
L28
1.00 V~ 5.00ms
10.0 V~ 5.00ms
L14
50.0 V~ 10.0us
L29
1
500mV~ 2.00ms
1.00 V~ 10.0us
L15
1.00 V~ 10.0us
L30
50.0 V~ 5.00ms
2.00 V~ 5.00ms
L16
2.00 V~ 10.0us
L31
50.0 V~ 5.00ms
2.00 V~ 10.0us
L18
1.00 V~ 10.0us
L32
500mV~ 10.0us
50.0 V~ 10.0us
L19
50.0 V~ 10.0us
L33
500mV~ 10.0us
5.00 V~ 10.0us
L20
5.00 V~ 10.0us
L34
1.00 V~ 10.0us
2 V~ 10.0us
L21
20.0 V~ 10.0us
L35
1.00 V~ 10.0us
Page 76

Large Signal Panel

Circuit Diagrams and PWB Layouts
76DPTV355 7.
1
L3
A
C
D
LARGE SIGNAL PANEL
To Focus/G2 Block
LV
DYN FOCUS
DYN-FOCUS-LOW
DYN-FOCUS-HIGH
E
F
VERT-PARABOLA
G
To SSM
H
Panel 1510
I
J
K
L
1510
EH-B
ABL
VERT
VERT
EWO
EHT
FLASH
HDR
SCO
HFP
DPC
F3
VDOA
2-J13
VDOB
2-L13
HOUT
2-F2,1-M4
VPULSE
2-O19
+15V
-200V
M
HOT-COLLECTOR
2-G19
N
O
P
3135 033 3347.1
1
3
1504
F900
1
2
181V
3
2-F19
2-G19
2-I19
F933
1
1.5V
F934
F941
2
F935
3
F936
4
.7V
.7V
5
6
7
8
9
2.9V
10
11
12
4V
3927
2M2
I958 I954
2 12
F938
6902
BZX79-C18
F946
DSP
1900
3907
100R
I918
100n
2901
2903
I927
4u7
2910
33n
F942
F2
F937
4.7V
I936
3929
10K
100n
2905
F939
L2
.6V
F904
I941
1.1V L39
1n
2906
3928
10K
3926
220K
I957
3935
2M2
18K
3
4
3902
3K3
W8073 14
I919
3901
100R
+330V
330K
I928
3904
22K
3900
2K7
1
3931
R
3930
100 K
I956
.6V
7902
-.4V
BC847B
3932
Ref Des 313503711061 313503711071 313503711081 313503711091 NOT_USED 1505 NOT USED NOT USED NOT USED NOT USED 242201518552
5903
4
5
I914
8
5901
I917
6
2n2
1K5
3909
3903
180.5V
7901
BF487
-.37V
27K
10n
3905
2904
3936
10R
2908
220p
2907
CHINA 4:3 EXT CHINA 16:9 EXT AMV 4:3 EXT7AMV 16:9 EXT
NOT USED NOT USED NOT USED NOT USED 319801890020
6
2902
I924
6901
BAS216
I931
1K
10R
3925
3933
I955
3934
4K7
4n7
BAT85
6910
6906
BZX79-C8V2
3940
100K
PCB-TAB4.8x0.5
5
6905
6903
BZX79-C4V7
BZX79-C3V9
8
6904
BAS216
4R7
3937
47u
2911
9
3923
470R
3924
47K
102
BC327-25
I935
11 13
EHT
VFOC
5904
HVG
TRANSFORMER
VAUX
ABL RTN VAUX
NC
11 0234
-2.2V
+15V
2K2
3915
1.3V
7903
-12.4V
6909
3916
-13V
3920
120K
1N4148
2926
4n7
I929
6908
BAS216
.7V
I932
10u
10R
2912
+15V
120K
3919
6912
BAS216
10u
2914
1K
3906
+15V
I949
3922
HDR2K3 LSP AP
10 206
F3
1.00 V~ 10.0us
11
F2
1.00 V~ 10.0us
8
9 19
12
BGR
EHT EHT
DRIVER & CONTROL
OVP
ON /
GND
TEST
OFF GND
9.8V
+130VS
6K8
3910
56K
3911
F945
8K2
3913
10.4V
BC857B 7905
.09V
.09V
3918
680R
2927
3921
470K
100n
L2
2.00 V~ 10.0us
VB+
140Vp-p
3912
1K5
NC NC
56789 11121314
2.1V
3914
1K
2921
100n
3917
22K
9.8V
7904
BC847B
10K
6919
BAT254
131V
100n
15
I910
MT
I916
L36
I920
420Vp-p
I923
L38
16
47u
2917
3908
22R
2919
340Vp-p
2925
100p
BYV27-600
17
I915
2922
100p
I921
6917
BYV27-400
1n
2924
100p
I925
6916
BYV27-600
L37
6915
18
5902
47u
4u7
2920
2n2
2918
19147
I912
F902
(-216V Measured)
F903
(+345V Measured)
20
1504 B2 1505 G19
A
1510 H2
+130VHV
1900 B3 1901 C19 2901 D3 2902 D5
BB
C
2903 F3 2904 G4 2905 J3 2906 K3 2907 N5
1901
1
2
TEST
3
EH-B
2908 M5 2910 G3
-200V
2911 I8
D
2912 H11 2913 H12 2914 J11 2915 K13
E
+330V
2916 J14 2917 B15 2918 F17 2919 E16 2920 E17
F
2921 I12
5902 B17 5903 G13 5904 A11 6901 F5 6902 K2 6903 H8 6904 H8 6905 I7 6906 N6 6908 F11 6909 H10 6910 N6 6912 J11 6913 J14 6914 I13 6915 F16 6916 E17 6917 D17 6919 L11 7901 F5 7902 L4 7903 G10 7904 J11 7905 J12
2922 D17 2924 E17 2925 F16
G
2926 K10 2927 K12 3900 G4 3901 D4 3902 B4
H
5903
100n
2913
I930
RESERVED
-2.2V
PCB-TAB4.8x0.5
1505
1
2
DAG
3903 E4 3904 F4 3905 G5 3906 K11
6914
BAS216
100n
2916
6913
BAS216
I
3907 C3 3908 D15 3909 E5 3910 F12
J
3911 G12 3912 G12
2915
HVG-ON
2-I19
3913 H12 3914 G11 3915 F10
K
3916 H10
2-G19
DM-INPUT
3917 I12 3918 K12 3919 J11
L
3921 K12 3922 L11 3923 H9 3924 H9
M
3925 L7 3926 L3 3927 L2 3928 K3 3929 I3
N
3930 L4
L36
L37
L38
L39
3931 K4 3932 M3 3933 L6
O
3934 M6 3935 L3
P
3936 H5 3937 I8 3940 N7 5901 D5
13
1 V~ 2.00us
14
15
1 V~( X100) 2.00us
16
50mV~(x100) 5.00ms
17
18
2.00 V~ 10.0us
CL 36532079_003.eps
161203
Page 77
Circuit Diagrams and PWB Layouts

Layout Large Signal Panel (Top Side)

77DPTV355 7.
0032 D5 0033 H3 0034 D6 0035 J6 0037 J7 0039 G9 0041 H5 0043 E9 0045 J5 0047 I8 0081 H13 0082 J15
A
B
C
D
E
F
G
H
I
J
K
L
0085 E11 0180 G14 0213 J10 1000 H12 1001 L6 1002 B10 1102 A10 1202 B10 1300 C9 1305 F5 1500 B8 1501 E12
12345678910111213141516171819
12345678910111213141516171819
1502 E12 1503 D12 1504 A11 1505 F18 1506 L4 1510 L17 1516 K2 1518 K13 1801 E11 1804 H12 1805 H13 1900 B11
1901 F15 2268 K9 2269 K9 2276 J10 2277 I10 2278 I10 2279 J10 2300 B7 2301 C6 2302 F5 2303 F4 2304 C6
2305 D3 2306 B3 2307 C4 2308 B4 2309 C4 2310 B4 2311 B3 2312 F9 2313 H10 2314 D10 2315 J6 2316 J5
2317 J3 2318 J3 2319 J7 2320 J7 2321 K5 2322 K3 2323 H4 2324 H5 2325 K2 2326 J2 2327 H3 2328 G2
2329 I5 2330 I4 2331 I2 2332 J3 2333 H2 2334 H2 2335 K3 2336 K11 2337 B7 2338 B7 2339 K7 2346 C3
2349 G3 2350 E10 2353 B4 2354 C3 2361 I8 2362 J8 2363 K5 2364 J6 2365 I5 2366 I3 2370 J9 2371 I8
2372 J9 2390 A9 2391 F5 2801 F10 2802 C10 2803 D11 2804 D11 2805 E11 2806 B10 2807 I12 2808 I12 2810 G17
2811 H12 2812 I12 2813 I13 2814 H13 2815 B11 2816 C12 2817 H14 2818 G14 2819 G15 2820 H15 2821 H14 2823 K15
2825 K14 2828 J15 2829 I18 2831 I17 2833 I17 2834 J17 2835 I14 2836 I15 2837 G18 2840 F14 2842 E18 2844 F17
2847 I16 2848 K14 2849 G15 2850 C12 2901 C12 2902 B14 2903 H18 2907 H13 2908 H14 2911 K18 2912 J15 2913 E18
2914 F16 2917 C13 2918 B17 2919 B18 2920 B18 2922 B18 2924 B17 2925 B18 3267 K10 3294 K13 3300 B2 3301 B5
3302 B5 3305 C4 3307 F6 3308 C4 3309 C5 3310 C4 3311 C2 3312 C2 3314 C4 3320 C3 3321 C3 3322 G3
3323 H2 3324 K11 3325 H1 3339 K7 3345 G6 3347 G3 3350 G3 3351 F10 3352 K2 3353 J2 3354 J3 3355 J3
3356 K3 3357 K4 3358 I9 3359 J10 3360 J9 3361 I9 3362 J9 3365 B4 3801 C11 3802 J12 3803 H11 3804 F12
3805 E12 3806 D12 3807 B12 3808 F14 3809 H14 3810 H12 3811 K16 3812 K16 3815 K13 3816 I12 3817 E11 3818 J14
3819 J11 3820 I12 3821 I13 3822 H17 3829 I17 3834 K17 3837 J18 3838 I15 3839 J16 3840 J17 3844 J18 3846 F13
3850 F16 3859 D18 3860 E18 3862 C18 3864 C18 3866 J18 3900 I18 3901 B12 3902 A12 3903 A17 3904 H18 3905 I18
3907 B11 3908 B18 3909 A15 3910 J17 3911 J18 3912 G18 3913 J18 3914 J18 3915 J18 3916 J15 3925 K17 3926 K17
3927 D18 3931 K16 3933 L15 3934 K13 3935 K18 3936 K17 3937 K18 3940 L14 5240 H9 5241 I10 5300 G7 5301 D4
5302 D3 5303 B3 5304 H9 5305 D6 5306 H9 5307 J4 5308 H5 5309 K5 5310 E9 5311 D9 5312 F5 5313 H4
CL 36532079_035.eps
5314 L5 5315 A8 5316 I3 5317 H4 5318 G4 5319 I7 5320 I7 5321 I6 5322 I4 5323 I6 5324 I7 5330 C8
031203
A
B
C
D
E
F
G
H
I
J
K
L
5336 K11 5801 G12 5802 G10 5803 C11 5804 F14 5805 G16 5807 G17 5808 H15 5809 B11 5810 G15 5811 I15 5812 G16 5901 B13 5902 C10 5903 F18 5904 D15 6212 I9 6301 F5 6302 D5 6303 C5 6304 G9 6305 G9 6306 J6 6307 J7 6308 H4 6309 I5 6310 G10 6313 G5 6314 E9 6315 E9 6316 J5 6317 I8 6318 J8 6320 K12 6321 K12 6322 D3 6801 E11 6802 D11 6803 H11 6804 J12 6805 H12 6806 H13 6809 F14 6810 G14 6811 J14 6812 D12 6816 F15 6819 F18 6822 F13 6826 K16 6827 I16 6902 K15 6903 K18 6905 K18 6906 L15 6909 I17 6910 L15 6915 B17 6916 A17 6917 B18 7213 J10 7300 G4 7301 D5 7302 C3 7303 G2 7304 G2 7305 J9 7309 G4 7801 H14 7802 H16 7807 J17 7811 K15 7812 F17 7901 B16 7903 I18 9000 H9 9001 G6 9106 C13 9109 C3 9110 C12 9138 F2 9139 F3 9140 F5 9141 J18 9142 H2 9143 K2 9146 G11 9149 B8
9153 L13 9156 F11 9158 F11 9161 H9 9162 I11 9165 I11 9166 G11 9167 G11 9168 I12 9169 I13 9170 I11 9171 I11 9172 I11 9173 I12 9176 J13 9177 H16 9178 I17 9179 K12 9180 K15 9181 C10 9187 L13 9188 K13 9189 F17 9190 E16 9191 E17 9193 K16 9195 K17 9198 J19 9203 G10 9210 K10 9211 K9 9302 I14 9303 B6 9304 D16 9307 L12 9308 K10 9309 B12 9804 H10 9805 H10 9807 J15 9808 K15 9809 J8 9811 K14 9813 I17 9814 J14 9815 B17 9816 H11 9818 D19
Page 78
Circuit Diagrams and PWB Layouts
78DPTV355 7.

Layout Large Signal Panel (Bottom Side)

2267 K11 2270 K11 2271 K10 2822 K6 2824 K5
2826 J6 2827 J5 2830 H3 2832 H3 2838 K7
2839 G2 2841 F5 2843 E3 2845 F3 2846 K3
2904 B3 2905 K4 2906 L4 2910 H2 2915 F4
2916 E5 2921 F4 2926 I2 2927 I2 3277 J10
3280 K11 3281 K11 3285 K11 3286 K11 3291 K12
3303 G16 3304 G16 3306 D16 3313 C17 3315 B17
3316 B17 3317 B17 3318 C17 3319 C17 3326 G18
3327 G18 3328 G18 3329 G18 3338 C16 3343 G17
3344 G17 3363 K8 3813 K5 3814 K6 3823 J2
3824 H3 3825 H4 3826 H3 3827 I3 3832 I2
3833 H3 3835 J3 3836 J3 3841 G2 3842 G2
3843 G2 3845 G2 3847 F6 3848 F5 3849 F4
3851 F3 3852 E3 3853 E3 3854 F3 3855 F3
3856 F4 3857 F4 3858 F5 3861 F5 3865 K7
3867 F2 3868 F2 3906 F4 3917 F4 3918 F4
3919 F4 3920 F3 3921 I2 3922 I2 3923 K2
3924 K2 3928 K4 3929 K4 3930 K4 3932 K3
4101 F4 4103 G2 6211 K11 6213 J10 6807 H8
6808 H7 6813 J3 6814 H2 6815 G2 6817 F2
6818 F3 6820 F4 6821 J2 6823 F5 6824 I2
6825 H4 6828 F4 6829 G2 6830 J3 6831 F4
6832 H3 6901 B3 6904 K2 6908 I2 6912 F4
6913 E5 6914 F5 6919 I2 7214 K11 7803 H3
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19
7808 G2 7809 G2 7810 F5 7813 E3 7814 F5
7902 J3 7904 F4 7905 F4 7906 F2
A
B
C
D
E
F
A
B
C
D
E
F
G
H
I
J
K
L
CL 36532079_036.eps
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19
G
H
I
J
K
L
101203
Page 79
Circuit Diagrams and PWB Layouts
79DPTV355 7.

Mains Switch Panel

M1
MAINS SWITCH PANEL
A
B
1234
A
VH
1000
I001
4
1
I003
1001
SDKE
1
3
5689
2
4
I002
I004
4
1
1002
VH
B
CL 36532079_027.eps
101103
1234

Layout Mains Switch Panel

1000A1 1001A2 1002A4
I001 A2 I002 A3 I003 B2
I004 B3
CL 36532079_042.eps
111103
Page 80
Circuit Diagrams and PWB Layouts

Keyboard/Light Sensor Panel

80DPTV355 7.
A
C
D
E
1
P1
KEYBOARD/LIGHT SENSOR PANEL
1201
1 2 3 4 5 6 7
S7B-EH
1202
1 2
106957
6105 TSOP1736UU1
OUT
GND
2
+5V_STANDBY KEYBOARD
+9V ON_OFF_LED LIGHT_SENSOR
RC5
ON_OFF_LED
I001
2
VS
VS
3
OUT
1
GND
I005
2103
100u 16V
I004
3
6K8
10K
3108
3114
I021
3107
330R
3109
470R
4120
I002
I003
I022
ORANGE-RED6101-1
+5V_STANDBY
RC5
GREEN
TLUV5300
6101-2
1301 LED-HOLDER
TLUV5300
I024
3121
560R
2101
10u 16V
I006
+9V
BPW46
65
KEYBOARD
2102
470n
3110
1M5
6104
1M5
I009
3115
7
8
94
1110
1201 A1 1202 C1 1301 C5 1401 C8 1402 C8
A
I020
1403 C9 1404 C9 1405 C10 1406 C10 1407 C11 2101 D5
I013
6102
BZX284-C6V8
6103
BZX284-C6V8
SKQNAB
1401
100R
SKQNAB
1402
3101
I014
3102
240R
SKQNAB
1403
I015
470R
SKQNAB
1404
3103
I016
1K5
3104
SKQNAB
1405
I017
3105
820R
I018
SKQNAB
1406
3K6
3106
I019
SKQNAB
1407
BB
2102 D6 2103 E3 2104 E8 3101 B8 3102 B9 3103 B9 3104 B10 3105 B10 3106 B11 3107 D4 3108 E3
C
3109 E4 3110 D6 3111 D8
D
E
3112 D8 3113 E10 3114 E3 3115 E6 3116 E8 3117 E8 3118 E10 3121 B5 4120 B4 6101-1 C4 6101-2 C5 6102 B7 6103 C7 6104 E6 6105 D1 7000-1 E7
I007
+9V
I008
I010
7000-1
84
3
2
LM358DR2
1
3111
10K
3112
3K3
2104
470n
84
5
6
7000-2 LM358DR2
7
I012
LIGHT_SENSOR
I011
3113
4K7
7000-2 E9
3K3
3116
1K0
3117
3K3
3118
F
G
3135 033 3343.2
1 10
2
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
4
53
6
7
8
9
CL 36532079_025.eps
101103
11
F
G
Page 81
Circuit Diagrams and PWB Layouts

Layout Keyboard/Light Sensor Panel

123 456
Top Side
A
B
123 456
81DPTV355 7.
1201 B4 1202 A1 1301 B2
A
1401 A6 1402 A5
3109 B2 6101 B2 6104 B3 6105 A3
9102 A4 1403 A4 1404 A5 1405 A4
B
1406 A3 1407 A2 2101 B4 2103 A2
123 456
Bottom Side
A
B
123 456
3101
4101
3108
2102 B3 2104 B2 3101 A1
A
3102 A2 3103 A2 3104 A3 3105 A3 3106 B6 3107 A4
B
3108 A5 3110 B3 3111 B3
3113 B3
3114 A5
3115 B2
3116 B2
3117 B2
3118 B3
3121 B4
4101 B3
4120 B5
6102 B5
6103 B6
7000 B2 3112 B2
CL 36532079_037.eps
101203
Page 82

Small Signal Module

Circuit Diagrams and PWB Layouts
82DPTV355 7.
6-F3
74
2095
22u
50V
2103
I157
I158
I159
I160
I161
I162
F129
F131
2025
1u0
9014
123
N/U
100n
3022
4K7
3023
1K0
3024
4K7
2099
2u2
F130
9015
4
46
3.6V
42
3.9V
1
3.4V
48
3
4.2V
44
39
3.5V
37
4.2V
35
43
4.4V
45
4.4V
47
4.4V
36
4.4V
38
4.4V
34
3.2V
32
3.2V
33
31
41
I167
F115
7
1
S1
SMALL SIGNAL MODULE
21
3
5
A
100n
2089
100n
2085
2091
470n
2093
470n
50V
50V
15
14
RF-IN
I155
I156
I117
I118
I119
3122
1K2
I120
3126
1K2
I121
3121
1K2
I122
3125
1K2
I123
3127
1K2
S-1
S-2
1u0
47n
2013
3026
3.9V
3.9V
3.9V
3.9V
3.9V
3.9V
3.9V
4.3V
4.3V
4.3V
4.4V
I116
4.4V
4.4V
I115
4.4V
4.4V
I114
4.4V
I113
4.4V
4.4V
I112
4.4V
2-D6
2-H4
100R
0-106451-1
0-106451-1
0-106451-1
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMT
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACEMENT PART ONLY.
*
4.
5
I151
I150
3-B9,2-H7
AV1-Y_CVBS
AV2-Y_CVBS
F100
F103
F105
F107
F110
I101
5007
5u6
3114
47R
C2
3115
47R
I1
Y
2-B6
2-F6
AV1-C
AV2-C
AV5-L
AV1-L
AV2-L
AV4-L
AV5-R
AV1-R
AV2-R
AV4-R
BZX284-C33
I105
I104
.01V
2-C6
2-F6
2-F8
2-A6
2-E5
2-D8
2-F8
2-A6
2-E5
2-C8
6034
3015
15K
F112
2000
I144
3016
I141
I139
I137
I135
I108
I136
47R
I142
I140
I138
12
13
I143
2014
1u0
2018
1u0
2022
1u0 50V
2017
1u0 50V
2021
1u0
I109
24V
MT1
MT2
IF11IF
10u
2083
I130
50V
I131
50V
I132
I133
I134
50V
3109
22K
BAS216
6010
6011
BAS216
4.8V
3.2V
3.2V
5
4
SDA
SDA
3
SCLSCL
9
BTLBTL
TUNER
NC1
NC2
NC3
6
8
10
220u
2084
4.8V
1n0
FRONT-DETECT
B
C
Y-CVBS-FRONT-IN
D
To Side
Jack Panel
B10B-EH-A
FRONT-DETECT
GND
GND
C-FRONT-IN
GND
L-FRONT-IN
GND
R-FRONT-IN
1 2 3 4 5 6 7 8 9
10
6-F7
I148
1V
1335
F101
F102
F104
F106
E
2u2
2114
2116
AGC
F
+5V
SCL_IN
SDA_IN
G
1028 S3B-EH
GND
SCL_IN
SDA_IN
1302
H
I I
J
1 2
IF-TER
1 2
TUNER_B+
+130V
B2B-PH-K
1301 B2B-PH-K
+33V
10u 50V
6-D4
6-H6,6-A10,1-F12
6-H6,6-A11,1-F12
C1
F108
3 2 1
6-D4
6-J3
6-E11
6-E11
F109
I107
3000
15K
3011 100R
2092
470n
2094
470n
2088
100n
3120
1K2
3124
1K2
3128
1K2
3123
1K2
3129
1K2
ADDADD
I110
3.9V
1.7V
2
TUTU
V-SUPPLYV-SUPPLY
7
I102
I152
I154
I153
2087
I129
I128
2016
I127
1u0
2020
I126
1u0
2015
I125
1u0 50V
2019
1u0 50V
I124
2023
1u0 50V
100u
25V
2078
F111
1
AGCAGC
MT4
MT3
1106
ENV56
3135 033 3345.5
2 13
3
4
6
+9V
1 2
1 2
1 2
40
8.8V
VCC
6dB
6dB
6dB
6dB
SWITCHES
6dB
6dB
BIAS
6dB
0dB
6dB
0dB
SWITCHES
6dB
6dB
LOGIC
GND
2
F113
R-SC2_AV2-IN
4.4V
1002
1003
1010
7017 CXA2089S
5
7
14
21
29
9
16
23
11
18
25
4
8
15
22
28
6
10
17
24
30
12
19
26
13
20
27
TV
V1
V2
V3
V4
Y1
Y2
Y3
C1
C2
C3
LTV
LV1
LV2
LV3
LV4
RTV
RV1
RV2
RV3
RV4
S2-1
S2-2
S2-3
S-1
S-2
S-3
FOR VALUE SEE TABLE.
61
VOUT1
YIN1
YOUT1
TRAP1
COUT1
CIN1
VOUT2
YOUT2
COUT2
BIAS
LOUT1
ROUT1
LOUT2
ROUT2
DC-OUT
SCL
SDA
ADR
MUTE
F114
6-F7
L-SC2_AV2-IN
I186
I165
I166
6-F7
6-F7
R-SC1_AV1-IN
L-SC1_AV1-IN
B4B-EH-A
1015
8
3175
1.7V
3177
1K0
3174
1344
B3B-EH-A
123
3021
1K0
I185
1016
B4B-EH-A
4 3 2 1
N/U
C1
C2
8-B7
8-D7
TO SIDE INPU
HP_OUT_L
HP_OUT_R
HDR2K3_SSM_AP
6-C6
6-D4
F126
Y-CVBS-SC2_AV2-IN
9036
4002
10R
7208 BC847B
1.1V
9028
11
F121
F122
F123
F117
F119
6-H6,6-A10,1-F1
6-H6,6-A11,1-G1
9029
1K0
4K7
3130
220R
9
8.8V
3176
1V
7003 BC847B
4K7
3118
470R
3131
220R
SDA-C
SCL-C
3028
10R
3116
2.1V
I172
I180
470R
+9V
3030
7209
BC847B
6-C8,6-H6
6-C8,6-H6
2086
10R
1.4V
I168
10
100n
8.8V
3117
2090
3027
7002 BC847B
470R
100n
1.8V
I173
9025
+9V
10R
I178
3119
470R
F125
9024
C-SC2_SVHS-IN
9035
4001
3029
8.8V
9026
9027
9023
I169
9022
T
1030
123
03JQ-BT
GND
SCL-C
SDA-C
O
C1
2.00 V~ 5.00us
C2
2.00 V~ 20.0us
I1
1
500mV~ 5.00us
91011
12
TO 3D COMB 1008
GND
GND
CVBS
123456789
F127
F128
I183
1017 B4B-EH-A
1 2 3 4
F118
SCL_IN
SDA_IN
C2
I171
3.1V
C1
I170
+9V
128
GND
I182
3.2V
+5V
GND
C-OUT
GND
6-F3
6-F7
10
11
13
Y-OUT
12
13
09JL-BT-E
1008
11
10
I181
1303
B5B-PH-K
5
CVBS
4
GND
C-OUT
3 2
GND
1
Y-OUT
To SSB 1303
Y-CVBS_FRONT-IN
C_FRONT-IN
1018 B4B-EH-A
1 2 3 4
5
Y-CVBS_TO-PIP
4
GND
3
C_TO-PIP GND
2
TO PIP
1
1 2 3 4 5 6 7 8 9
GND SDA_1 GND SCL-1 GND +9V
GND +5V +5V
0200
TO 3D
COMB
1009
161203
1222 B5B-EH-A
12 13
1009 09JL-BT-E
CL 36532079_004.eps
A
B
C
D
E
F
G
H
J
1002 G6 1003 H6 1008 B13 1009 H12 1010 I6 1015 I7 1016 D8 1017 C12 1018 D12 1028 G1 1030 H10 1106 I4 1222 F12 1301 I1 1302 H1 1303 B13 1335 C1 1344 G9 2000 J3 2013 G5 2014 D3 2015 E4 2016 D4 2017 E3 2018 D3 2019 E4 2020 D4 2021 E3 2022 E3 2023 F4 2025 B7 2078 F4 2083 J3 2084 J4 2085 G4 2086 B10 2087 C4 2088 C4 2089 D4 2090 E10 2091 B4 2092 B4 2093 B4 2094 B4 2095 A7 2099 D7 2103 A7 2114 E1 2116 E1 3000 J2 3011 J2 3015 F3 3016 F3 3021 B8 3022 B7 3023 C7 3024 C7 3026 G5 3027 B10 3028 A9 3029 E10 3030 E9 3109 F4 3114 G2 3115 G2 3116 C9 3117 C10
3118 F9 3119 F10 3120 D4 3121 E5 3122 D5 3123 E4 3124 D4 3125 E5 3126 D5 3127 F5 3128 E4 3129 E4 3130 F9 3131 G9 3174 F9 3175 F8 3176 C9 3177 C9 4001 D10 4002 D11 5007 F2 6010 F4 6011 F4 6034 J3 7002 B10 7003 B9 7017 A6 7208 E10 7209 F10 9014 F7 9015 F7 9022 G10 9023 G10 9024 G10 9025 G10 9026 F10 9027 G10 9028 G10 9029 G11 9035 B10 9036 B11
Page 83

Small Signal Module

Circuit Diagrams and PWB Layouts
83DPTV355 7.
1
1 10
SMALL SIGNAL MODULE
S2
1024-11
YKC21-2921
A
B
L
D2
1024-10
YKC21-2921
R
D1
1024-12
YKC21-2921
V
D3
C
AV1 IN
D
F234
1024-2 YKC21-2921
L
E
F
A2
1024-1 YKC21-2921
R
A1
1024-3
YKC21-2921
V
A3
G
AV2 IN
H
F243
I
J
3135 033 3345.5
1
6031
12
I241
I240
6030
BZX284-C6V8
F202
F203
2831
1n0
F204
2830
F205
F210
F217
F218
F219
F221
75R
F207
F208
F213
F216
2829
1n0
2826
1n0
15
18
14
17
13
16
F206
V4
F209
F214
F215
3059
100R
3108
8-C12
8
YKC21-2921
11
7
YKC21-2921
10
9
YKC21-2921
12
AV OUT
1
2
3
1n0
2827
1
4
5
2
3
1n0
2828
1024-9
YKC21-2921
1024-8
YKC21-2921
1024-7
YKC21-2921
131
SUB_WOOF
1024-5
L
B2
1024-4
R
B1
1024-6
V
B3
1021
JPJ9811-01-320
1n0
1027
JPJ9822-01-320
Y
C3
Pb
C2
Pr
C1
A
B
C
D
E
F
G
H
I
I
1011 E7 1021 D13 1024-1 E1 1024-10 B1 1024-11 A1 1024-12 B1 1024-2 E1 1024-3 F1 1024-4 B13 1024-5 B13 1024-6 C13 1024-7 H13 1024-8 G13 1024-9 G13 1025 C2 1026 G2 1027 E13 1029 A10 1031 I8 1207 I6 2062 B3 2063 B4 2066 F3 2067 F4 2068 C4 2069 C5 2070 C10 2071 G4 2072 G5 2073 I11 2074 I10 2075 I8 2076 D4 2077 H3 2079 D9 2080 F9 2081 D9 2082 F9 2102 B4 2104 A8 2822 A2 2823 B2 2824 E2 2825 F2 2826 E12 2827 E12 2828 F12 2829 F12 2830 C12 2831 B12 3002 B3 3003 B3 3004 F3 3005 F3 3006 D8 3007 F8 3008 D9
3050 E2 3051 F4 3052 F3 3053 D11 3054 D11 3055 F11 3056 F11 3057 H9 3058 H10 3059 H11 3072 C11 3073 A11 3100 B11 3101 C10 3102 C3 3103 C3 3104 G3 3105 G3 3106 I9 3107 I10 3108 I12 3142 A4 3144 A9 3145 A8 3146 B9 4016 F2 6012 F10 6013 F10 6014 B10 6016 E9 6017 F10 6018 D5 6019 F10 6020 D5 6021 G4 6022 D10 6023 G5 6024 H8 6025 E10 6026 D10 6027 D10 6028 H10 6029 H11 6030 A12 6031 A11 6032 E8 6037 F8 6038 F9 7016 A9 9011 G7 9012 G7 9013 H7
3009 F9 3012 E11 3013 E11 3045 A2 3046 B2
J
J
3047 C4 3048 C3 3049 E2
12
CL 36532079_005.eps
101203
13
3002
3102
3004
3104
I200
I209
47K
75R
47K
75R
3
2062
330p
3003
3048
100R
75R
3103
2066
330p
3005
3052
100R
75R
3105
2077
330p
2
2
F225
20
23
19
22
21
24
2
3
8
7
F233
2
5
1
4
3
6
F242
2
3
8
7
F244
2822
1n0
2823
1n0
1025
YKF51-5347
2824
1n0
2825
1n0
1026
YKF51-5347
1
1
F235
F231
F237
F239
F228
I208
F226
F229
F230
F236
F241
F238
F240
F227
94
94
3050
100R
3045
100R
3046
100R
3049
100R
105
105
I216
116
4016
I204
116
1-F5
47K
2076
47K
2063
3047
100R
2068
330p
2067
2071
4
8.5V
+Vp
I217
3142
1R0
2102
100n
330p
8.5V
+Vp
22p
6018
1-D2
1-E2
330p
8.5V
+Vp
3051
100R
22p
6021
S-2
BAV99
BAV99
2069
AV2-L
AV2-R
2072
5
I218
8.5V
+Vp
22p
6020
8.5V
+Vp
22p
6023
3-E9
3-H9
Pb
Pr
HDR2K3_SSM_AP
21
2 10
3
4
5
BAV99
BAV99
1-D2
1-E2
1-B2
1-C2
1-F5
1-B2
1-C2
63
AV1-L
+9V
AV1-R
AV1-Y_CVBS
AV1-C
S-1
AV2-Y_CVBS
AV2-C
I224
I225
4
Pr
GND
N/U
6
CVBS-SC2_MON-OUT
1207
B4B-EH-A
123
Y
Pb
123
3145
1K0
I227
1031
6-F3
6-F7
1-E2
1-D2
1-E2
1-D2
I228
B5B-EH-A
8
2104
100n
V2
F249
F222
F223
V1
1
500mV~ 10.0us
2.5V
F247
F248
3006
BZX284-C6V8
F224
BZX284-C6V8
3007
6024 BAV99
2075
Y
3-B9,1-A2
9011
9012
9013
7
V1
6-D4
F251
L-CL_VL-OUT
R-CL_VL-OUT
AV4-R
AV4-L
1 2 3
1011 B3B-EH-A
AV5-R
AV5-L
I226
4
5
GND
GND
N/U
78
47K
6032
6037
47K
8.8V
1.8V
22p
2079
2080
7016 BC847B
3146
9
3144
10R
1K0
3008
330p
6016
BZX284-C6V8
6038
BZX284-C6V8
3009
330p
3057
100R
3106
V2
1
500mV~ 10.0us
9
I221
47K
47K
75R
V3
2081
2082
8.5V
+Vp
330p
330p
+9V
1029 YKC21-3416
3101
150R
6026
BZX284-C6V8
6022
BZX284-C6V8
6017
BZX284-C6V8
6012
BZX284-C6V8
6028 BAV99
2074
3
2
1
3058
100R
22p
V3
1
500mV~ 10.0us
F200
6014
BAV99
22p
2070
BZX284-C6V8
6027
BZX284-C6V8
6025
6019
BZX284-C6V8
6013
BZX284-C6V8
3107
F201
75R
11
3073
150R
11
3012
100R
3013
100R
3055
100R
3056
100R
+Vp
110
3053
100R
3054
100R
8.5V
6029 BAV99
2073
V4
1
BZX284-C6V8
3100
68R
3072
150R
F211
F212
22p
500mV~ 10.0us
Page 84

Small Signal Module

Circuit Diagrams and PWB Layouts
84DPTV355 7.
1
SMALL SIGNAL MODULE
S3
3
4
6
7
82
95
10
11
+9V
+9V
12
+9V
13
A
5.4V
1.3V
5.6V
1.9V
3807
BC857B 7801
3808
+9V
3817
BC857B 7803
3818
1K0
F306
1K0
1K0
1K0
I344
I338
F308
F307
6-C6
F309
6-C4
G-SC1-IN_Y-IN
B-SC1-IN_U-IN
68K
3854
C
3852
V9
B
V-SSB
6-D4
F304
V6
F305
2811
2u2
I315
3851
100R
I316
4.1V
3853
68K
6.8V
3.4V
3855
680R
7808 BC847B
680R
I317
I318
D
68K
3844
3842
V13
I308
F302
F303
2809
2u2
6-D7
E E
U-SSB
V8
3841
100R
4V
3843
68K
I309
3.3V
3845
680R
6.8V
7810 BC847B
680R
I310
I311
V10
3856
680R
3846
680R
V14
I319
I312
4.6V
3857
4.7V
3858
3847
3848
680R
7.4V
BC857B 7809
I320
22K
680R
7.5V
BC857B 7811
I313
22K
V11
V15
V16
V12
8-G8
8-G8
V-SSB-N
U-SSB-N
RTXT
R_OSD
GTXT
G_OSD
BTXT
B_OSD
6-B2
6-C7
6-B2
6-C7
6-B2
6-C7
I321
3304
10R
3305
10R
3313
10R
3314
10R
3321
10R
3322
10R
I322
I323
I324
8-H12
8-H12
8-H12
REDTXT
GRNTXT
BLUTXT
Y
Pb
2-H7,1-A2
2-I5
2801
2u2
2803
2u2
I339
I333
3801
10R
3811
10R
3802
I340
1.6V
3803
+9V
3812
I334
2V
3813
100K
27K
100K
39K
4.8V
.9V
1.3V
1K0
3804
I341
4.8V
7800 BC847B
3806
180R
3805
150R
I342
+9V
1K0
3814
I336
3815
7802 BC847B
270R
5V
3816
470R
I335
5V
F
3826
100R
6V
1.6V
+9V
1K0
3827
F310
6-C4
BC857B 7805
I331
1K0
3828
12 13
R-SC1-IN_V-IN
CL 36532079_006.eps
101203
G
H
I
I
J
3135 033 3345.5
1
Y-SSB
+9V
3821
10R
3822
3823
+9V
2.1V
I328
100K
39K
1.5V
3824
3825
1K0
5.4V
7804 BC847B
330R
11
I330
5.4V
I329
3809
10R
68K
10R
3834
3832
V17
I301
F301
F300
2807
2u2
6-D4
V7
3831
100R
2
I302
2.8V
39K
3833
Ref Des 3135_037_11351_01
3835 NOT USED 319802156810
3837 NOT USED 319801106810
7807
3
I303
7806 BC847B
2.2V
3835
680R
I304
CHINA CORE
NOT USED 319801042150
3836
100R
3135_037_11361_01 AP
680R
680R
BC857B
4
3837
3838
680R
I306
BC857B 7807
N/U
I305
330R
*
2813
6801
BZX384-C9V1
V18
3135_037_11371_01 NAFTA CORE (KOREA)
NOT USED
NOT USED
NOT USED
25V470u
2814
100n
8-F8
Y-SSB-N
+15V
FBLTXT
FBL
6-C7
FRAMEDRIVE-
HDR2K3_SSM_AP
65
6-B2
6-E4
I326
I325
3329
10R
3330
10R
4005
6-H7,6-E11
7
VFB
8-H12
TXTFBL
I327
2-I5
2805
2u2
10
Pr
98
A
B
C
D
F
G
H
J
I
I
2801 B10 2803 E10 2805 H10 2807 H2 2809 E2 2811 B2 2813 G5 2814 G5 3304 B7 3305 B7 3313 C7 3314 D7 3321 E7 3322 F7 3329 G7 3330 G7 3801 B10 3802 B10 3803 C10 3804 B11 3805 C11 3806 C11 3807 B11 3808 C11 3809 G5 3811 E10 3812 D10 3813 F10 3814 D11 3815 F11 3816 E11 3817 D11 3818 F11 3821 H10 3822 G10 3823 H10 3824 G11 3825 H11 3826 H11 3827 G11 3828 H11 3831 H3 3832 G3 3833 H3 3834 G3 3835 H3 3836 H4 3837 G4 3838 H4 3841 E3 3842 D3 3843 F3 3844 D3 3845 F3 3846 E4 3847 D4 3848 F4 3851 B3 3852 B3 3853 C3 3854 B3 3855 C3 3856 C4 3857 B4 3858 C4 4005 H7
6801 G4 7800 B11 7801 B11 7802 E11 7803 E11 7804 H11 7805 H11 7806 H3 7807 H4 7808 B3 7809 B4 7810 E3 7811 E4
V6
500mV~ 10.0us
V7
500mV~ 10.0us
V9
500mV~ 5.00us
V10
200mV~ 10.0us
V11
200mV~ 10.0us
V12
500mV~ 10.0us
V13
500mV~ 10.0us
V14
200mV~ 10.0us
V15
200mV~ 10.0us
V16
500mV~ 5.00us
V17
500mV~ 10.0us
V18
500mV~ 10.0us
Page 85

Small Signal Module

1
SMALL SIGNAL MODULE
S4
A
+35V
6-H11,5-A1
-35V 6-G11,5-I12,4-I5
B
C
GND-C
F403
D
VccPSW-H
E
F
G
H
I
J
3135 033 3345.5
F5
26.2V
5-B1
F402
G1
BH
6-C11
F401
G2
GH
6-C11
F400
G3
RH
6-C11
2060
GND-C
3K3
3092
3091
GND-C
GND-C
-36.9V
I401
3167
4K7
22K
3034
I400
10u
2043
GND-C
1
Circuit Diagrams and PWB Layouts
2 11
2028
GND-C
0045 HEATSINK
I408
2057
150p
2056
150p
-35.8V
3K3
7007 BC817-25
-36.9V
150p
GND-C
GND-C
3K3
3090
GND-C
I402
I403
2133
GND-C
Ref Des
9009 NOT USED 319803690010 NOT USED 9010
3
100u
100u
2030
GND-C
35.7V
PRE_POS
5
CH1_IN_POS
-.5V
6
-.5V
CH1_IN_NEG
100u
-.05V
-.05V
-36.9V
2132
GND-C
.2V
.2V
7
CH1_NEG
8
CH2_IN_POS
14
CH2_IN_POS
13
CH2_NEG
12
CH3_IN_POS
15
CH3_IN_NEG
16
CH3_NEG
17
PRE_NEG
4
100n
-22V
GND-C
(KOREA)
150p
2100
2101
150p
150p
2112
100n
3135_037_11351_01 CHINA CORE NAFTA CORE
NOT USED 319803690010 NOT USED
2032
GND-C
2037
100u
GND-C
3135_037_11361_01 3135_037_11371_01 AP
2134
100n
VCC
MUTING
CH1_OUT
CH2_OUT
CH3_OUT
SUB_GND
GND
9044
6-H11,5-I1
-22V
I410
26.2V
10
-35.8V
3
.8V
9
.6V
11
7044
STK392-120
.8V
18
1
2
GND-C
9045
6-G11,5-I12,4-B1
-35V
I404
2008
GND-C
2038
GND-C
G4
G5
G6
I438
I416
3169
G15
100u
4K7
100u
GND-C
I411
2131
2042
GND-C
2109
100n
-36.9V
3033
150p
22K
10u
GND-C
GND-C
-35.8V
-36.9V
3095
I412
3K3
2130
GND-C
GND-C
F404
G7
7005
BC817-25
I417
100n
3154
9009
9010
GND-C
6R8
7
3147
GND-C
BV
3153
6-C11
3K3
6R8
2026
GND-C
3162
100R
150p
G8
2096
GND-C
85DPTV355 7.
F405
150p
GND-C
GND-C
I427
8
3099
2061
GV
2107
6-C11
F406
3K3
3161
G14
150p
G16
100R
150p
3148
GND-C
RV
I421
6-B11
G9
3094
2064
3K3
3K3
GND-C
150p
3152
2065
6R8
2051
150p
3151
GND-C
35.6V
150p
-24.5V
I420
G17
6R8
-.1V
-.1V
.01V
.05V
.04V
-36.9V
2113
PRE_POS
5
CH1_IN_POS
6
CH1_IN_NEG
7
CH1_NEG
8
CH2_IN_POS
14
CH2_IN_POS
13
CH2_NEG
12
CH3_IN_POS
15
CH3_IN_NEG
16
CH3_NEG
17
PRE_NEG
4
150p
2111
150p
3096
3K3
106
3097
3157
GND-C
3K3
6R8
G13
3155
GND-C
3158
GND-C
HDR2K3_SSM_AP
4
G1
G2
G3
5
G4
6
7
G6
8
G7
9
G8
1032 13
G9
6R8
GND-C
6R8
I429
3156
VCC
MUTING
CH1_OUT
CH2_OUT
CH3_OUT
SUB_GND
GND
6R8
2105
24V
10
-35.8V
3
9
.5V
7045 STK392-120
.1V
11
G11
18
G12
1
2
3093
150p
11
.5V
GND-C
12 1345 9
0045 C2 1005 E13 1006 F13
A
B
1007 H13 2008 B6 2026 C7 2028 B2 2030 C4 2032 I3 2037 I3
G10
F407
3160
I436
5-D12
VccPSW-V
GND-C
6R8
6R8
3159
2038 E6
3165
100R
3098
3K3
2115
150p
G18
I435
5-A6
RV_OUT
F408
5-G12
VccNSW-V
G12
F423
GND-C
G11
F422
GND-C
G23
6R8
F411
F413
F414
F415
F416
GND-C
G19
F412
F421
F409
F417
F419
G6
G21
G10
G4
1005
B4P-VH
RV-OUT
1
RV-RET
2 3
RH-OUT
4
RH-RET
5-F4
RH_OUT
5-A6
GV_OUT
1006
B4P-VH
G5
5-F4
5-A6
B4P-VH
5-F4
1007
GV-OUT
1 2
GV-RET
3
GH-OUT
4
GH-RET
GH_OUT
BV_OUT
1
BV-OUT
2
BV-RET
3
BH-OUT
4
BH-RET
BH_OUT
F410
G20
3164
100R
G22
3163
100R
F418
G24
F420
3166
100R
3K3
3150
3149
6R8
GND-C
GND-C
2042 E6 2043 I1 2051 B9 2056 F2
C
2057 F2 2060 F2 2061 D8 2064 C8 2065 C9 2096 C8 2100 E3
D
2101 F3 2105 I11 2107 G8 2109 G6 2111 G10 2112 F3
E
2113 F9
TO RED YOKE
2115 C12 2130 E7 2131 B6 2132 I4 2133 I2
F
2134 I4 3033 D6 3034 H1 3090 G2
TO GREEN YOKE
3091 G2 3092 G1
G
3093 I11 3094 G8 3095 G6 3096 G10 3097 F10 3098 C12
H
3099 C8 3147 C7
TO BLUE YOKE
3148 D8 3149 I12 3150 I11 3151 G9
I
3152 G8 3153 G7 3154 G7 3155 F10 3156 F10 3157 H10
J
3158 H10
CL 36532079_007.eps
101203
3159 B12 3160 B12
3161 G8 3162 G7 3163 G11 3164 F11 3165 C12 3166 H11 3167 H2 3169 D6 7005 D7 7007 H2 7044 F5 7045 B11 9009 H7 9010 H7 9044 H5 9045 H5
12
G10
G12
G13
500mV~ 10.0us
G14
1.00 V~ 10.0us
1.00 V~ 10.0us
G15
1.00 V~ 10.0us
1.00 V~ 10.0us
G16
1.00 V~ 10.0us
1.00 V~ 10.0us
G17
1.00 V~ 10.0us
10.0 V~ 10.0us
G18
1.00 V~ 10.0us
10.0 V~ 10.0us
G19
1.00 V~ 10.0us
2.00 V~ 5.00ms
G20
1.00 V~ 10.0us
1
2.00 V~ 5.00ms
G21
1.00 V~ 10.0us
2.00 V~ 5.00ms
G22
1.00 V~ 10.0us
10.0 V~ 5.00ms
G23
1.00 V~ 10.0us
1
10.0 V~ 5.00ms
G24
1.00 V~ 10.0us
1.00 V~ 10.0us
Page 86

Small Signal Module

Circuit Diagrams and PWB Layouts
86DPTV355 7.
10 11 13
2K7
2058
GND-C
470R
I517
7012 BC817-25
7013
BC807-25
I516
470R
I510
3061
6R8
I520
470u
GND-C
I518
3197
7010
BC817-25
7011 BC807-25
3200
2159
STP16NE06
470R
I521
3198
6R8
470R
1n0
3202
10R
7022
2156
GND-C
I519
2157
1n0
6006
BYD33D
GND-C
1n0
IRF9Z24N
1
2160
1n0
2161
9041
7020
100n
3084
GND-C
3
2
3201
10R
33K
BYD33D
3086
GND-C
6008
3082
2050
GND-C
33K
9040
10R
1n0
3083
2052
GND-C
12
4-A13
6-G11,6-C9
4-D13
10R
1n0
6-G11,4-B1,4-I5
VccPSW-V
-22VR
VccNSW-V
-35V
3074
3K3
3079
3170
6044
GND-C
9
10K
3199
3K3
I509
680R
BZX284-C6V8
I515
I514
2K7
3041
3196
3077
3065
C
1
SMALL SIGNAL MODULE
S5
A
VccPSW-H
(NOT USED IN CURRENT PRODUCTION)
+22V
6-H11
+35V
6-H11,4-A1
4-D1
2
INDICATES JUMPER WIRES USED TO BY-PASS CIRCUITRY
I504
3190
2K7
3
3191
470R
7009 BC817-25
I505
7008 BC807-25
3195
470R
D D
3194
3K3
2153
GND-C
100u
2154
GND-C
E
3112
3132
6033
GND-C
2055
GND-C
10K
680R
BZX284-C6V8
1n0
G
H
4K7
3168
3110
220K
7004 BC847B
F
7024
PMBT2369
3134
100R
2044
330p
6035
3067
BAS216
3078
100K
GND-C
I
-22V
6-H11,4-I5
3K3
7023 PMBT2369
3133
100R
2059
GND-C
470u
4
2150
100u
10R
1n0
4-G13
8K2
BAS216
GND-C
3
9042
2
3193
10R
RH_OUT
4-E13
3137
6051
CHINA CORE
GND-C
3192
6R8
3135
6039
7021
IRF9Z24N
1
2152
I503
1n0
BYD33D
6007
1n0
3081
2047
GND-C
BH_OUT
GH_OUT
4-H13
8K2
3136
6050
BAS216
Ref Des 3135_037_11351_01
3190 NOT USED NOT USED 319802152720
3085
8K2
BAS216
5
33K
3135_037_11361_01AP3135_037_11371_01
BV_OUT
3042
GV_OUT
4-E13
4-G13
8K2
3035
8K2
3044
6045
BAS216
BAS216
NAFTA CORE (KOREA)
2K7
6
RV_OUT
4-D13
8K2
BAS216
6046
6047
6042
BAS216
6041
BAS216
6040
BAS216
3020
GND-C
GND-C
100K
3031
3037
100R 2040
330p
2035
330p
3038
100R
100K
6048
BAS216
7
6043
BAS216
3062
3K3
3019
7001 BF550
3043
220K
7015 PMBT2369
3032
220K
3K3
3060
3036
100R
7006 BF550
BC857B
4K7
3080
3063
6049
GND-C
7014
8
4K7
7018 PMBT2369
100R
BZX284-C6V8
3064
3066
680R
10K
7019 BC847B
J
3135 033 3345.5
HDR2K3_SSM_AP
2
3 13
65
7
8
941
10
11 12
CL 36532079_008.eps
101203
A
BB
C
E
F
G
H
I
J
2035 C7 2040 G6 2044 G1 2047 E4 2050 E11 2052 H12 2055 I3 2058 E9 2059 I3 2150 B3 2152 D4 2153 E3 2154 E3 2156 B11 2157 C11 2159 E10 2160 G11 2161 H11 3019 H7 3020 G6 3031 E6 3032 E7 3035 B6 3036 H7 3037 F6 3038 D7 3041 I9 3042 B5 3043 B7 3044 C6 3060 F7 3061 G10 3062 F7 3063 D8 3064 F8 3065 I9 3066 H8 3067 G2 3074 H9 3077 G9 3078 H1 3079 B9 3080 B8 3081 E4 3082 E11 3083 G11 3084 E11 3085 B5 3086 G11 3110 E2 3112 E3 3132 G3 3133 G2 3134 F1 3135 G4 3136 G4 3137 G4 3168 E2 3170 D9 3190 B3 3191 B3 3192 C4 3193 D4 3194 E3 3195 D3 3196 B9 3197 B10
3198 C10 3199 C9 3200 D10 3201 C11 3202 G10 6006 D11 6007 D4 6008 F11 6033 H3 6035 G1 6039 H4 6040 D6 6041 C6 6042 C6 6043 E7 6044 E9 6045 E6 6046 F6 6047 G6 6048 F7 6049 F8 6050 H4 6051 H4 7001 F7 7004 F3 7006 G8 7008 D3 7009 C3 7010 C10 7011 C10 7012 G9 7013 H9 7014 G8 7015 D7 7018 C8 7019 C8 7020 C11 7021 C4 7022 H10 7023 F2 7024 F2 9040 C12 9041 H11 9042 C5
Page 87

Small Signal Module

Circuit Diagrams and PWB Layouts
87DPTV355 7.
S6
SMALL
A
MODULE
B
SIGNAL
10
GND
9
TXD
8
GND
7
RXD
6
GND
5
RTXT
4
GTXT
3
BTXT
TO SSB, 1002
2
GND
1
FBLTXT
1043
10FMN-BTRK-A
C
D
CVBS-PIP_ TUN1-2-CVBS-IN
CVBS_TER_OUT
TO PIP
0272
GND
+5V
1 2 3
B3B-EH-A
E
F
G
TO PIP
H
STATUS_1_PIP-AFT_50-60HZ
VFB_PIP HFB_PIP
I
VFB_PEMG
HFB_PEMG
J
3135 033 3345.5
1
C1
1272
SDA_IN SCL_IN
GND
+33VT2
GND
2024
+8V
B10B-EH-A
1 2 3 4 5 6 7
+5V
8
+8V
9
10
B3B-PH-K
3 2 1
3-B7 3-C7 3-E7
3-G7
2m2 10V
1201
1681
3075
1K0
3076
1K0
FBLTXT
3018 1K0
I613
6-H10,6-A3
C2
RTXT GTXT BTXT
4010
4020 4021 4022 4023
I
6004
1n02045
+9V
21
5008
2
1
2
9017
BYD33D
I600
+5V_STBY
6-C8
6-C8
I
GND
TPS4.5MB2
2034
5006
I601
5009
15u
1200
4M5
C1
100n
6-H10
2029
TXD
RXD
3
O
O
+3.3V
6-E7,6-H9
SOUND_ENABLE
L-SC2_AV2-IN
Y-CVBS_FRONT-IN
HEADPHONE_L
I606
+5V-PIP
I605
5005
I602
47n
2012
F1
+8V
6-H10,6-G2
3070
560R
3017
330R
V1
9019
9007
L-CL_VL-OUT
AUDIO-L
3025
100R
I603
1u0
2002
1-I1
TUNER_B+
3
3069
820R
2031
120p
1u0
2048
5010
B-SC1-IN_U-IN R-SC1-IN_V-IN
C-SC2_SVHS-IN
CVBS-SC2_MON-OUT
IF-TER
AGC
V-SSB
V6
Y-SSB
V7
FRAMEDRIVE-
7-C1 1-I6
1-D13
8-B1 2-B8
7-F1
I604
2
10u
8-F10,7-A10,7-A11,6-E11,6-E7,6-A
+5V_STB Y
9016
4
F11
10p
4015
3068
330R
3039
330R
SSB CONNECTOR
5.6V
3-D12
6V
3-G12
1.4V
1-A10
2.5V
2-A7
2.4V
1-I1
1.7V
1-F1
1.5V
3-B1
1.2V
3-H1
.09V
3-H7
.09V
7.9V
4.9V
3.2V 5V
.01V
4.4V
1V
.2V
0V
3.4V
.8V
3.3V
I608
BC817-25
7027
4003
I607
1
+5V_STBY
7025 BC847B
2046
68p
3010
180R
ROW_A
1020-A 1 3 5 7 9 11 13 15 17 19 21 23 25 27 29 31 33 35 37 39 41 43 45 47 49 51 53 55 57 59 61 63 65 67 69 71 73 75 77 79
81
+9V
34567
2
GND
KEYBOARD
V5
ROW_B
1020-B
10 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40 42 44 46 48 50 52 54 56 58 60 62 64 66 68 70 72 74 76 78 80
82
81
82
4K7
3001
1014
RC5
TO FRONT
ON-OFF-LED
CONTROLS
1214
5
L1
7026 BC847B
3071
I616
2
1.3V
4
1.9V
6
1V
8
2.4V
1.4V
1.4V .05V
.19V
4.4V
4.4V
1.3V
3014
B7B-EH-A
1K0
.5V
0V 5V
3.2V
.3V
4.4V
1.4V
.2V
0V
0V
3.4V
3.1V
47K
I609
64
7
8
TO ACS CONTROL, 1000
GND
FBL
GND
B_OSD
G_OSD
GND
GND
1-B2
F614
3-F7
1-D13
.01V
B_OSD
1-G8
1-G8
2-C8
7-E1
.01V
I619
3-D7
1-I6
8-E1
8-B9
8-G10
R_OSD
9
1011121314
.01V
I620
3-B7
R_OSD
G_OSD
+5V
+15V
STANDBY
IRQ
+5V_STBY
+3.3V
PWR_FAIL
L-SC1_AV1-IN
R-SC2_AV2-IN R-SC1_AV1-IN FRONT-DETECT C_FRONT-IN
HEADPHONE_R
R-CL_VL-OUT
AUDIO_SW AUDIO-R
LED_DRV
17
19
15
15JL-BT-E
1000
16
18
.2V
I617
I618
3-G7
FBL
3-B12
G-SC1-IN_Y-IN
Y-CVBS-SC2_AV2-IN
1-A11
10K
3182
0V
3-E1
U-SSB
8-F8
H-SSB
8-F8
VSYNC-SSB
6-D11
HBLANK
470R3111
0V
4004
C2
4007
SDA-C
1-G10,6-C8
4008 4009
SCL-C
1-G10,6-C8
SDA_IN
5V
3183
V8 L1
F1
L40
8-F10,7-C12,6-E11
9018
F613
4006
SCL_IN
VFB
3-H8,6-E11
1-F12,1-F1,6-A10
1-F12,1-G1,6-A11
15K
6-E3,6-H9
IRQ
H-HOP
SDA-C
GND
.3V
4.9V
4.9V
I622
1-G10,6-H6
1-G10,6-H6
SDA-C
I623
2054
RXD
TXD
SCL-C
GND
45678
1
2
3
3.1V
3.3V
I635
I621
6-B2
6-A2
TXD
RXD
SCL-C
IN OUT
GND
1u0
2027
HEATSINK
I624
+5V
6015
S1D
7104
*
LF33CV
IN
OUTIN
COM
GND
1u0
GND-C
6003
S1D
COM
0103
2001
9030
9031
OUTIN
7103 L7812CV
-22.1V
100n
OUT
IN OUT
F609
2053
8-B11
6001
S1D
7101
L7912CV
COM
+3.3V
6-E3,6-E7
100n
9
TO WB/HOP, 1950
+12V
+12V
12
13
11
10
F610
-22VR
5-F12,6-G11
10u
5011
2005
100n
-11.9V
OUTIN
GND
2010
0104 HEATSINK
-12V
6-F10
-12V
2007
HOP
9.1V
8-C10
HOP
-22.1V
1u0
+5V
H-HOP
SCL-2
GND
SDA-2
.3V
I637
I636
S1D
6002
7102
L7908CV
OUTIN
IN OUT
COM
GND
100u
0102 HEATSINK
-12V
6-C9
F605
F606
0101 HEATSINK
2003
100n
+8V
6-G2,6-A3
IN
7.9V
1u0
2097
GND
123456789
1950
I638
9032
-7.9V
6005
S1D
7105
L7805CV
OUTIN
COM
09JL-BT-E
9033
2011
GND
+5V
SCL_IN
2006
100n
F607
F608
1u0
2004
100n
VFB
8-F10,8-G5,8-D7,3-G6,6-D8
+15V
+5V-PIP
6-H3
OUT
5V
2098
100n
SDA_IN
+9V
1-F12,1-G1,6-H6
1-F12,1-F1,6-H6
5000
2039
10u
3-H8,6-H7
7
6036
BZX384-C4V
2033
+V_AUDIO
-V_AUDIO
0105 HEATSINK
10u
2041
L40
HBLANK
F11
STANDBY
+5V_STBY
+130V
PWR_FAIL
100n
-35V
-22VR
-22V
+22V
+35V
5001
10u
10u
2049
GND-C
4-A8
RV
4-F1
RH
4-A8
GV
4-E1
GH
4-A7
BV
4-E1
BH
6-E7
I632
+33V
1-J1 8-F10,7-C12,6-E7
8-F10,7-A10,7-A11,6-J4,6-E7,6-A2 1-J1
7-A9,6-E7
5-I12,4-B1,4-I5
5-F12,6-C9
5-I1,4-I5
5-A1
5-A1,4-A1
7-H12
7-G12
100n
2036
GND-C
I640
5002
10u
F603
F602
100n
5004
10u
F600
5003
10u
1211103
I631
I630
I639
GND-C
F615
GND-C
I628
8.9V
-7.9V
.09V
-.05V
-.1V
-.5V
.09V
.3V
14.6V
.8V
16 17 18 19
1516 B12B-EH-A
F604
1001 15JL-BT-E
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
1518 B12B-EH-A
1 2 3 4 5 6 7 8 9 10 11 12
-35V
1
-22V
2
-22V
3
GND-C
4 5
GND-C +22V
6
+22V
7
+35V
8
GND
9
+V_AUDIO
10
-V_AUDIO
11
GND
12
135
GND +9V
GND
-8V STANDBY VFB
HBLANK
DEF_GND RV
RH GV GH BV BH
GND
HBLANK DEF_GND VFB GND
+33V
STANDBY +5V_STBY +130V
GND PWR_FAIL GND
+15V
0101 G10 0102 E10 0103 E8 0104 I9
A
0105 I11 1000 B6 1001 B13 1014 J5 1020-A C5 1020-B C5
B
1033 I7 1043 C1 1200 D3 1201 H2 1272 D1 1516 G12 1518 D13
TO ACS CONTROL, 1001
C
1681 I2 1950 B10 2001 G8 2002 J3 2003 G9 2004 E10 2005 D9
D
2006 C10 2007 D9 2010 G9 2011 E10
L
2012 J3 2024 E1
E
2027 D8 2029 J3 2031 B3 2033 F11
TO LARGE SIGNAL, 1518
2034 F2 2036 B11 2039 D11
F
2041 B11 2045 D2 2046 B5 2048 B4 2049 B11 2053 I8
G
2054 I8 2097 I9 2098 I10 3001 H5 3010 C5 3014 H5 3017 D3
H
TO LARGE SIGNAL, 1216L
3018 D2 3025 I3 3039 C4 3068 A4 3069 A4 3070 B3 3071 B5
I
I
4008 E6 4009 F6 4010 C2 4015 C4 4020 B2 4021 B2 4022 B2 4023 B2 5000 B11 5001 A11 5002 H11 5003 H12 5004 H12 5005 I3 5006 I2 5008 J2 5009 C3 5010 B4 5011 D9 6001 F9 6002 D10 6003 D8 6004 F2 6005 H10 6015 H8 6036 E11 7025 B4 7026 A5 7027 H4 7101 F9 7102 D10 7103 D8 7104 H8 7105 H10 9007 E3 9016 F4 9017 E2 9018 E7 9019 E3 9030 B8 9031 C8 9032 C10 9033 B10
3075 A2 3076 A2
J
3111 E6 3182 D6 3183 C7 4003 H4 4004 G6 4006 G6 4007 G6
6
GND
SDA-C
9
101112
GND
SCL-C
TO MMI
L40
GND
SDA_IN
GND
SCL_IN
45678
RC5
3
GND
2
VFB
1
7
B12B-EH-A
1033
HDR2K3_SSM_AP
V1
CL 36532079_009.eps
8
V5
9
10
V6
11
V7
12
V8
101203
13
2.00 V~ 5.00us
2.00 V~ 20.0us
2.00 V~ 2.00ms
2.00 V~ 2.00ms
2.00 V~ 10.0us
2.00 V~ 10.0us
1
500mV~ 10.0us
1
500mV~ 10.0us
500mV~ 10.0us
500mV~ 10.0us
500mV~ 5.00us
Page 88

Small Signal Module

1
SMALL SIGNAL MODULE
S7
A
B
F700
C
SOUND_ENABLE
6-F3
F701
D
E
AUDIO-R
AUDIO-
6-G7
6-G3
F702
F703
F
G
H
I
I
J
3135 033 3345.5
14
A1
3701
10K
50V
50V
Ref Des 3135_037_11351_01
2735
2701
2703
1u0
1u0
100K
I711
3727
I708
CHINA CORE
NOT USED
2
A2
Circuit Diagrams and PWB Layouts
I709
3704
I710
I738
2706
2707
NAFTA CORE (KOREA)
NOT USED
10K
I751
100n
100n
I705
4
A8
A9
470p
2722
2721
3722
.01V
32
I714
I713
2702
2704
3702
6K8
5.2V
7701 BC847B
I707
1n0
3790
4K7
3793
10K
3792
10K
3791
4K7
I750
1n0
3135_037_11361_01AP3135_037_11371_01
319802951090 10u
L
2708
2720
3705
2705
3712
2718
3703
10K
22p
10R
33K
1u0
A1
I704
220n
I702
220n
3
A4
A5
3708
56K
3706
5K6
2709
470p
I718
470p
68K
2710
I717
3721
470p
-16.8V
2.6V
-.1V
.04V
5.1V
-7.6V
5.3V 18V
18.1V
0V
0V
0V
0V
5K6
5
3707
68K
3711
120K
14
8
7 9
17 19
6
4
22
HEATSINK
5
A6
CURREF
OSC
FEED1 FEED 2
IN1101
IN2182
FEED3 FEED4
STBY-MUTE
VREG25VREG +5V12+5V +VCCPOW1 +VCCPOW2
0001
BOOT151
OUT131
OUT2
BOOT2
NC1
GND
-VCCSIGNSUB
-VCCPOW1
-VCCPOW2
T111T1
T2
-5V16-5V
2735
2712
220n
3723
56K
6
3798
47K
10u
100K
7700 TDA7490
-.1V
9.3V
2.6V
23
2.1V
9.3V
21
.05V
15
20
13
1
-18V
-5.3V
-18V
2
24
-18.1V
HDR2K3_SSM_AP
6
A7
88DPTV355 7.
7
5.1V
.3V
7710
3797
BC847B
I719
2725
220n
2723
2714
33n
A4
A2
A6
A7
A5
2726
33n
2727
1n0
220n
I747
.06V
I723
2715
1n0
A8
I739
2711
1n0
7
A8
I703
5.1V
I721
I746
8
3716
7707 BC847B
5703
68u
5701
68u
2719
1n0
3725
22K
2728
330p
5704
68u
5702
68u
3724
100R
2732
8
5.2V
3714
47K
220n
47K
I722
I736
2724
2733
I720
A9
5.2V
BC857B 7706
.06V
3709
100R
5711
220n
5712
220n
I742
3794
100K
5710
2731
PWR_FAIL
6-E11,6-E7
47K
3799
.06V
I724
2m2
9
6702
BZX284-C6V8
100R
100K
5709
I743
I735
2m2
2730
9
3795
1V
7711 BC847B
3789
5713
10u
5714
10u
A10
2716
330p
3710
22K
I726
3713
2713
+5V_STBY
I725
8-F10,6-A2,6-E7,6-E11,6-J4,7-A11
3K3
3726
I727
3719
1K0
100R
I728
100n
F708
680n
2777
F709
I745
I744
2780
100n
2781
10
3715
1702
47K
BT169B
3796
100n
1110
+5V_STBY
8-F10,6-A2,6-E7,6-E11,6-J4,7-A10
1K0
3720
5V
BC857B
5V
7708
.8V
I729
10K
3717
100K
F704
5716
2737
10n
F706
2736
10n
2763
680n
1701 MRT
T2000mA
T 2000mA
1700 MRT
11
A11
3718
A10
5715
F705
F707
2778
100K
5.2V
.04V
2u2
A11
12
7705 BC847B
2u2
2775
2776
8-F10,6-E11,6-E7
3732
3733
6-H11
6-H11
12
3730
100R
2u2
2773
2K2
2K2
-V_AUDIO
+V_AUDIO
2u2
2774
STANDBY
1349
26-62-6051
13
I730
5.2V
3731
7704 BC847B
.04V
2u2
RIGHT
1
GND
2
GND
3
LEFT
5
CL 36532079_010.eps
13
0001 G5 1349 E12 1700 H11 1701 G11
A
1702 C10 2701 E2 2702 D3 2703 F2 2704 F3 2705 D3
B
2706 G4 2707 H4 2708 H3 2709 C4 2710 D5 2711 G7
100R
C
2712 D6 2713 D9 2714 E7 2715 E7 2716 E9 2718 E3 2719 E8 2720 H3
D
2721 G4 2722 G4 2723 D6 2724 H8 2725 D7 2726 F7
E
2727 G7 2728 F8
TO CENTER CHANNEL
2730 I9 2731 I9 2732 I8 2733 I8 2735 C6
F
2736 E11 2737 D10 2763 F11 2773 C12 2774 C12 2775 C12 2776 C11
G
2777 E10 2778 C11 2780 I10 2781 I10 3701 C2 3702 C3 3703 C3 3704 C4 3705 G3 3706 B4 3707 C5 3708 B4 3709 E8
IHI
3710 F9 3711 D5 3712 E3 3713 C9 3714 C8 3715 B10 3716 B8
J
3717 D11
101203
3718 D11 3719 C10
3720 B11 3721 G5 3722 H4 3723 G6 3724 G8 3725 F8 3726 B10 3727 D2 3730 B12 3731 C13 3732 D12 3733 E12 3789 D9 3790 D3 3791 F3 3792 F3 3793 E3 3794 C9 3795 B9 3796 D10 3797 C6 3798 B6 3799 B9 5701 D8 5702 F8 5703 D8 5704 F8 5709 F9 5710 F9 5711 G8 5712 H8 5713 G9 5714 H9 5715 F11 5716 D10 6702 B9 7700 E6 7701 C3 7704 C13 7705 B11 7706 B8 7707 C8 7708 C11 7710 C7 7711 C9
2.00 V~ 500ns
2.00 V~ 2.00us
20.0 V~ 2.00us
20.0 V~ 2.00us
20.0 V~ 2.00us
20.0 V~ 2.00us
1
200mV~ 50.0us
1
200mV~ 50.0us
500mV~ 5.00us
200mV~ 5.00us
Page 89

Small Signal Module

SMALL SIGNAL MODULE
S8
A
B
HEADPHONE_L
6-F3
+5V
C
D
HEADPHONE_R
E
6-F7
F
1606
1607
G
1608
1609
H
I
GND-C
GND-C
J
3135 033 3345.5
1
2
F802
100u
100u
F800
F801
1
SIN-21T-1.8S(B)
1
SIN-21T-1.8S(B)
1
SIN-21T-1.8S(B)
1
SIN-21T-1.8S(B)
9037
9038
2
2412
2413
100n
3415
3K3
2421
50V
50V
2411
470n
2423
470n
GND-C
GND-C
Circuit Diagrams and PWB Layouts
I813
I811
GND-C
3422
3423
3K3
3418
9046
9039
I815
10K
10K
1604
SIN-21T-1.8S(B)
1605
SIN-21T-1.8S(B)
1601
SIN-21T-1.8S(B)
1600
SIN-21T-1.8S(B)
31
3412
33K
2414
100p
2
2.4V
3
2.4V
I814
6
2.4V
5
2.4V
I810
1
1
1
1
GND-C
GND-C
3
INA_NEG
INA_POS
INB_NEG
INB_POS
9048
9047
4
1611
SIN-21T-1.8S(B)
1602
RTB-1.5-1F
4
+5V
8
4.9V
VDD
VSS
4
2417
100p
3416
33K
1
1
SIN-21T-1.8S(B)
1603
1
OUTA
OUTB
I816
1
2.4V
7403
TDA1308
7
2.4V
I809
+5V
1206
B5B-EH-A
USED ON CERTAIN
MODELS ONLY
+15V
HDR2K3_SSM_AP
5
+9V
50V
50V
2467
2418
12345
100u
100u
65
3419
3420
6
F804
10K
F806
10K
F805
2415
2416
L1
I807
GND-C
F1
7
HP_OUT_L
1-G8
6n8
HP_OUT_R
1-G8
6n8
I806
F1
I805
.05V
.6V
F811
1250
1234567
09JL-BT-E
GND
HSYNC
VSYNC
TO WB/HOP
2.00 V~ 2.00ms
7
89DPTV355 7.
7.5V
F813
GND
V-SSB-N
+15V
V18
1.6V
GND
U-SSB-N
9008
F810
V15
F814
7.4V
F815
10
12
8
9
GND
Y-SSB-N
L1
2.00 V~ 10.0us
89
USED WITH SUB-WOOFER MODELS ONLY
F809
0106 HEATSINK
I800
9006
9005
F812
9003
V11
11
13
3140
1R0
8
AUDIO_SW
BAS316
7106 LM317T
32
IN OUT
14.5V
100n
2108
I801
H-SSB
6-D7
VSYNC-SSB
6-D7
Y-SSB-N
3-H5
9004
3-D5
3-B5
U-SSB-N
V-SSB-N
V11
200mV~ 10.0us
6-G7
6052
9.1V
ADJ
7.9V
1
2K7
3138
6-F11,6-D8,3-G6,8-D7,8-G5
9
6053
2106
7-C12,6-E11,6-E7
F808
BAS316
1u0
+5V_STBY
STANDBY
+15V
+5V
LED_DRV
+9V
2440
50V10u
3139
430R
6-H7
V18
500mV~ 10.0us
2818
2110
6-C9
10
I819
HOP
10n
47u
2819
11 12
13
0106 C8 1102 F12 1206 H5 1250 H6
A
1600 H3
9038 I2 9039 I3 9046 I3 9047 I4
9048 I4 1601 G3 1602 G4 1603 H4 1604 F3 1605 G3 1606 F2
B
1607 G2 1608 G2 1609 H2 1610 H12 1611 G4 2009 G11 2106 E9
C
2108 E8 2110 E10 2140 G12 2141 G12 2411 B2 2412 C2 2413 C2 2414 B3
D
2415 C6
3442
1K0
I822
3447
100K
3440
100K
I821
3441
3443
+12V
6-A9
220R
I820
7415 BC847B
470R
2441
50V 10u
2442
3444
220u
100K
2-A13
SUB_WOOF
2416 E6 2417 E4 2418 D6 2421 D2 2423 E2 2440 C10
E
2441 C11
1102
2442 C12 2467 C6 2802 E11 2815 G11 2816 G11 2817 G10
F
2818 G10 2819 G10 2820 G10 2821 G11 3138 E9 3139 E9 3140 D8
G
3412 A3 3415 D2 3416 E4 3418 E3
2802
220u 16V
1102
B12B-EH-A
+5V_STBY
1 2
GND STANDBY
3 4
GND +15V
5 6
F612
GND
+5V
7
+5V
8
GND
9 10
GND +9V
11 12
+9V
TO INPUT BOARD
F611
10n
2817
100u 25V
2820
10n
10n
2821
2009
100n
2815
100n
2816
100n
2140
100u
2141
F816
100u
3419 C6 3420 E6 3422 B3
H
1610
3423 C3 3440 C11 3441 B11 3442 C10 3443 D11 3444 D12 3447 D10 6052 C9
I
TXTFBL BLUTXT GRNTXT REDTXT
3-G8
3-F8 3-D8
3-B8
1610
B5B-EH-A
5
TXTFBL
4
BLUTXT
3
GRNTXT
2
REDTXT
1
GND
TO WB/HOP
6053 E9 7106 D9
V15
200mV~ 10.0us
1110
12
CL 36532079_011.eps
101203
13
7403 C5 7415 C11 9003 G8 9004 G8 9005 G8
J
9006 F8 9008 F7 9037 I2
Page 90
Circuit Diagrams and PWB Layouts

Small Signal Module: Diversity Tables

90DPTV355 7.
A
B
C
D
E
G
H
32
4
651
7
98
1110
12
13
A
S1 S2 S3 S4
Ref Des 3135_037_11351_01
1008 NOT USED NOT USED 242202516049
1009 NOT USED
1015
1016 NOT USED 242202512479
1017 NOT USED 242202512479
1018 NOT USED 242202512479
1301
1303 NOT USED
2014 NOT USED
2015 NOT USED 319802551080
3011 NOT USED
3016 NOT USED
3030 NOT USED
3118 NOT USED
3120 319801101220
3121
3174
F
7209
9022 9023 NOT USED 319803690010
9025
CHINA CORE
NOT USED 242202512479
NOT USED 242202509405
1K2 319801101220
1K2 NOT USED 319801104720
NOT USED 319801042030
NOT USED 319803690010 NOT USED
NOT USED9024
I
3135_037_11361_01AP3135_037_11371_01
NOT USED 242202516049
B4B-EH-A
B4B-EH-A
B4B-EH-A
B4B-EH-A
B2B-PH-K
NOT USED 242202510428
319802551080
1u0 50V
1u0 50V
319801101010
100R 319802154790
47R 319802151090
10R 319802154710
470R
4K7
BC847B
NAFTA CORE (KOREA)
09JL-BT-E
09JL-BT-E
NOT USED
NOT USED
NOT USED
NOT USED
242202509405 B2B-PH-K
B5B-PH-K
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USEDNOT USED
NOT USEDNOT USED
NOT USED
NOT USED
NOT USED NOT USED319803690010 NOT USED319803690010NOT USED
Ref Des 3135_037_11351_01 3135_037_11361_01 3135_037_11371_01 1011 241202000725
1027 242202605294
1029 242202604425
1031 NOT USED 242202512481
1207 NOT USED 242202512479
2080 319801603310
2082 319801603310
3007 319802154730
3009 319802154730
3012 319802151010
3013 319802151010
3055 319802151010
3056 319802151010
3073 319802151510
4011 NOT USED 319802190020 NOT USED 6012 934038640115
6013 934038640115
6016 934038640115
6017 934038640115
6019 934038640115
6030 934038640115
6031 934038640115
6032 934038640115
6037 934038640115
6038 934038640115
B3B-EH-A
JPJ9822-01-320
YKC21-3416
330p
330p
47K
47K
100R
100R
100R
100R
150R
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
BZX284-C6V8
3135_037_11351_01 X 3135_037_11361_01
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
B5B-EH-A
B4B-EH-A
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
N
A
C
P
A
H
F
I N
T A
A
_ C O R E
X
X3135_037_11371_01
NOT USED
NOT USED
NOT USED
NOT USED
CHINA CORE
0104
NOT USED
1033 NOT USED 242202508333
1200 NOT USED NOT USED
1272 NOT USED
2031 NOT USED NOT USED 319801601210
2045 NOT USED 202055293477
NOT USED NOT USED 319801606890
2046
NOT USED 319802321040
2053
NOT USED 319802551080
2054
NOT USED 319802154720
3001
3010 NOT USED NOT USED 319802151810
3014 NOT USED 319802154730
3017 NOT USED NOT USED
3018 NOT USED NOT USED
3039 NOT USED NOT USED
3068 NOT USED NOT USED 319802153310
3069 NOT USED
3070 NOT USED
3071 NOT USED
4004 NOT USED 4008
NOT USED 319802190020 NOT USED 4010 NOT USED NOT USED 319802190020 5009 NOT USED NOT USED 319801831590
5010
NOT USED NOT USED 319801831080
6015
NOT USED 932212869685
7025
NOT USED NOT USED 319801042030
7026
NOT USED NOT USED 319801042030
7027 NOT USED 319801043230
7104 NOT USED 932211656687
9016 NOT USED 319803690010 9018 NOT USED 9019
NOT USED 319803690010 NOT USED 9032 NOT USED 319803690010 9033 NOT USED 319803690010 NOT USED
3135_037_11361_01Ref Des 3135_037_11351_01 AP
313501103291a HEATSINK
B12B-EH-A
NOT USED 241202000725
1n0
100n
1u0
4K7
47K
NOT USED 319802158210
NOT USED 319802155610
NOT USED 319802151020
319802190020 NOT USED
S1D
BC817-25
LF33CV
319803690010 NOT USED
3135_037_11371_01 NAFTA CORE (KOREA)
NOT USED
NOT USED
242254943302 TPS4.5MB2
4M5
B3B-EH-A
120p NOT USED
68p NOT USED
NOT USED
NOT USED
180R NOT USED
319802153310
330R 319802151020
1K0 319802153310
330R
330R
820R
560R
1K0
15u
1u0 NOT USED
BC847B
BC847B
NOT USED
NOT USED
NOT USED
NOT USED
Ref Des 3135_037_11351_01
1206
1600
1601 NOT USED 242201519411
1602 NOT USED 242201519411
1603 NOT USED 242202400628
1604 NOT USED
1605
1606 NOT USED 242201519411
1607 NOT USED 242201519411
1608 NOT USED 242201519411
1609 NOT USED
2440
2441 319802951090
2442 319802532210
3440
3441
3442
3443
3444 319802151040
3447 319802151040
7415 319801042030
9037 NOT USED 319803690010 9038 NOT USED 9039
CHINA CORE
NOT USED 242202512481
NOT USED 242201519411
NOT USED 242201519411
319802951090
50V 10u
50V 10u
220u 319802151040
100K 319802152210
220R 319801101020
1K0 319802154710
470R
100K
100K
BC847B
NOT USED 319803690010 NOT USED
J
HDR2K3_SSM_AP
3135_037_11361_01AP3135_037_11371_01
B5B-EH-A
SIN-21T-1.8S(B)
SIN-21T-1.8S(B)
SIN-21T-1.8S(B)
RTB-1.5-1F
242201519411
SIN-21T-1.8S(B)
SIN-21T-1.8S(B)
SIN-21T-1.8S(B)
SIN-21T-1.8S(B)
SIN-21T-1.8S(B)
242201519411
SIN-21T-1.8S(B)
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
NOT USED NOT USED
319803690010 NOT USED
NAFTA CORE (KOREA)
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
B
C
D
E
F
G
H
I
J
CL 36532079_028.eps
1
2 13
3
4
6
7
8
95
121110
111103
Page 91
Circuit Diagrams and PWB Layouts
91DPTV355 7.

Layout Small Signal Module (Top Side)

0001 B18 0045 J14 0101 J5 0102 K4 0103 K6 0104 C15 0105 B6 0106 K10 1000 G11 1001 G14 1002 A3 1003 B2 1005 F17 1006 G19
1007 H19 1008 B9 1009 B12 1010 A2 1011 L3 1014 A14 1015 E5 1016 C3 1017 B7 1018 B8 1020 D9 1021 K2 1024 E2 1025 C2
1026 G2 1027 K2 1028 B2 1029 H2 1030 H7 1031 E3 1033 G6 1043 I9 1102 E11 1106 B3 1200 C5 1201 A5 1206 F11 1207 F5
1222 A7 1250 J3 1272 C5 1301 D7 1302 B5 1303 B8 1335 H6 1344 C13 1349 D17 1516 L19 1518 K8 1600 C3 1601 E13 1602 C10
1603 E13 1604 I19 1605 E13 1606 F8 1607 B15 1608 F3 1609 F5 1610 H9 1611 C11 1681 B5 1700 E19 1701 E19 1702 D16 1950 J7
2000 L6 2002 A4 2007 K5 2008 I18 2010 K6 2011 K5 2012 B4 2013 B3 2014 K4 2015 K4 2016 I3 2017 I4 2018 I5 2019 I4
2020 I5 2021 I6 2022 K2 2023 K3 2024 C8 2027 K7 2028 K19 2030 F16 2032 I14 2037 K14 2038 J14 2039 F12 2041 B7 2042 I18
2043 J14 2054 C14 2058 E15 2059 J10 2078 B2 2083 B3 2088 I5 2093 I5 2095 G5 2097 B7 2106 K10 2110 K9 2114 C7 2140 F11
2141 E12 2150 F16 2153 H16 2412 C14 2418 D13 2421 D13 2440 E10 2441 H3 2442 I2 2467 D13 2701 E10 2703 B15 2705 B17 2730 B19
2731 D19 2735 D15 2763 D18 2777 D17 2780 E18 2781 E20 2802 E12 2813 F10 2817 F10 3000 L6 3011 K6 3021 G4 3022 G4 3024 H4
3026 B3 3035 I15 3042 I16 3044 I16 3047 C3 3049 G3 3050 G3 3051 G2 3052 G3 3057 E3 3061 I15 3072 F3 3100 E2 3101 F3
3120 J4 3121 J4 3127 K4 3128 J3 3135 I12 3136 H12 3137 H11 3140 L9 3142 D3 3144 D3 3145 D3 3149 H18 3150 H18 3151 F18
3152 F18 3153 E17 3154 F17 3155 G18 3156 G18 3157 J19 3158 J19 3159 E18 3160 E18 3161 F18 3162 G17 3163 I19 3164 G18 3165 G17
3166 I18 3174 G5 3175 G5 3176 G4 3177 G4 3183 C6 3192 F15 3198 G15 3322 H9 3330 H9 3418 D11 3422 D11 3442 I3 3701 A16
3705 C19 3711 B18 3713 C15 3715 C16 3724 C19 3732 D17 3733 D18 3792 A18 3793 B17 3798 B16 3801 E5 3809 F10 3811 E5 3821 E4
3826 C5 3832 F8 3834 F8 3837 F8 5000 F12 5001 F12 5002 J19 5003 J19 5004 K10 5007 B5 5011 J10 5701 C17 5702 D19 5703 C17
5704 D19 5709 B18 5710 B18 5713 D19 5714 D19 5715 D18 5716 D17 6004 B7 6006 G16 6007 G15 6008 K14 7017 H4 7020 G16 7021 G16
7022 J15 7044 I12 7045 I16 7101 K5 7102 K5 7103 K6 7104 C14 7105 B6 7106 L10 7700 C18 9003 F7 9004 F7 9005 F7 9006 F6
9007 C9 9008 F7 9009 E14 9010 E13 9011 E4 9012 E4 9013 F4 9014 E4 9015 E4 9016 C9 9017 C9 9018 D9 9019 E9 9022 B14
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
A
B
C
D
E
F
G
H
I
J
K
L
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
9023 B14 9024 G6 9025 G5 9026 G6 9027 G6 9028 C12 9029 C12 9030 H7 9031 H7 9032 G7 9033 G7 9037 J9 9038 J9 9039 G9
9040 H16 9041 J17 9042 G16 9044 J11 9045 J13 9046 D15 9047 G12 9048 H9 9049 J9 9050 I9 9100 D2 9101 C4 9102 C4 9103 C4
CL 36532079_049.eps
9104 D4 9105 D4 9106 C5 9107 D4 9108 G4 9109 J4 9110 J4 9111 E4 9112 F4 9113 F4 9114 F4 9115 F4 9116 I2 9117 K5
101203
A
B
C
D
E
F
G
H
I
J
K
L
9118 K7 9119 J8 9120 J8 9121 I6 9122 I7 9123 I7 9124 K8 9125 I8 9126 I8 9127 I7 9128 I7 9129 H7 9130 H7 9131 G7 9132 H6 9133 J18 9134 F6 9135 F6 9136 F6 9137 F6 9138 G5 9139 F5 9140 F5 9141 F6 9142 E5 9143 E6 9144 E5 9145 E6 9146 E6 9148 D6 9149 C6 9150 C6 9151 C7 9152 C7 9153 C7 9154 B7 9155 C7 9156 B5 9157 B5 9158 F6 9159 C10 9160 B4 9161 A5 9162 C9 9163 C8 9164 E7 9165 E7 9166 E7 9167 E8 9168 E8 9169 E8 9170 E8 9171 E9 9172 C12 9173 E9 9174 E9 9175 E10 9176 E10 9178 F9 9179 G10 9180 I11 9181 I9 9182 I9 9183 J9 9184 I11 9185 F15 9186 K8 9187 K8 9188 K9 9189 K9 9190 K9 9191 J12 9192 F16 9193 I13 9194 H13 9195 H14 9196 G11 9197 G11 9198 G13 9199 K14 9200 G13 9201 F11 9203 E13 9204 E13
9206 E13 9207 D14 9208 C12 9209 B13 9210 B13 9211 B13 9212 B13 9213 B14 9214 B15 9215 C15 9216 E15 9217 D14 9218 E16 9219 G14 9220 G14 9221 G14 9222 G14 9223 G9 9224 B15 9225 B15 9226 H14 9227 I15 9228 K13 9229 J15 9230 E12 9231 I15 9232 I15 9233 I16 9234 D11 9235 J16 9236 J15 9237 K14 9238 E12 9239 K18 9240 I17 9241 I17 9242 C10 9243 H17 9244 I17 9245 C10 9246 H17 9247 H17 9248 I13 9249 C19 9250 C19 9251 C17 9252 B15 9253 G13 9254 G15 9255 K18 9256 C12 9257 I7 9258 J8 9259 J9 9260 I13 9261 F13 9262 G9 9263 G3 9264 C18 9265 C18 9266 B6 9267 E12 9268 F12 9269 B11 9270 C13 9271 B13
Page 92
Circuit Diagrams and PWB Layouts
92DPTV355 7.

Layout Small Signal Module (Overview Bottom Side)

2001 K16 2003 K15 2004 J16 2005 J14 2006 J14 2009 F9 2025 H17 2026 J4 2029 B17 2031 C14 2033 L13 2034 C12 2035 I11 2036 G6
2040 I11 2044 H9 2045 C16 2046 C15 2047 G6 2048 C14 2049 H6 2050 H5 2051 J4 2052 J6 2053 C7 2055 J11 2056 J9 2057 J9
2060 J10 2061 J5 2062 D18 2063 D19 2064 J5 2065 J5 2066 G18 2067 G18 2068 D19 2069 D18 2070 D18 2071 G18 2072 H19 2073 E19
2074 E18 2075 E18 2076 C18 2077 H19 2079 K18 2080 K18 2081 J18 2082 K18 2084 B18 2085 B18 2086 H17 2087 H17 2089 H15 2090 H17
2091 I17 2092 H17 2094 H15 2096 J5 2098 B15 2099 H17 2100 I9 2101 I9 2102 G18 2103 H17 2104 D18 2105 I9 2107 I9 2108 K12
2109 I10 2111 I5 2112 I10 2113 I5 2115 I6 2116 C17 2130 J4 2131 J4 2132 J8 2133 J8 2134 J10 2152 F6 2154 H11 2156 G5
2157 G5 2159 G5 2160 K6 2161 J7 2411 D11 2413 C8 2414 D9 2415 C8 2416 C8 2417 D8 2423 D11 2702 B3 2704 B3 2706 B3
2707 B3 2708 B2 2709 C4 2710 C3 2711 C2 2712 B4 2713 D5 2714 C4 2715 C4 2716 C3 2718 B3 2719 C4 2720 B2 2721 C3
2722 C3 2723 B4 2724 B3 2725 C4 2726 C3 2727 C2 2728 C3 2732 C2 2733 B3 2736 D3 2737 D4 2773 D5 2774 D5 2775 D5
2776 C5 2778 D5 2801 F16 2803 F16 2805 E17 2807 E13 2809 E13 2811 E12 2814 F12 2815 E10 2816 F11 2818 E11 2819 F10 2820 E10
2821 F10 2822 D19 2823 D20 2824 G18 2825 G19 2826 J19 2827 J19 2828 K19 2829 K19 2830 F19 2831 E19 3001 B7 3002 D18 3003 D19
3004 G18 3005 G18 3006 K18 3007 K18 3008 J18 3009 K18 3010 C16 3012 L19 3013 L19 3014 B7 3015 B18 3016 B19 3017 C16 3018 C16
3019 I10 3020 J11 3023 G16 3025 B17 3027 G17 3028 G17 3029 G17 3030 G17 3031 I11 3032 H11 3033 J3 3034 J7 3036 I10 3037 I11
3038 I11 3039 C15 3041 H10 3043 H11 3045 D19 3046 D18 3048 C19 3053 K19 3054 J19 3055 K19 3056 K18 3058 E19 3059 E19 3060 I11
3062 I11 3063 H11 3064 I11 3065 H10 3066 I10 3067 G9 3068 C15 3069 C15 3070 C15 3071 C15 3073 H19 3074 H11 3075 I12 3076 I12
3077 I10 3078 H9 3079 H11 3080 H11 3081 F6 3082 H5 3083 J6 3084 H5 3085 G6 3086 K6 3090 J9 3091 J9 3092 J10 3093 I9
3094 I9 3095 I10 3096 I5 3097 I5 3098 I6 3099 J5 3102 C19 3103 C19 3104 G19 3105 G19 3106 E19 3107 E19 3108 E19 3109 B19
3110 H9 3111 D13 3112 G9 3114 C18 3115 C18 3116 B12 3117 B12 3118 A14 3119 B14 3122 I17 3123 I17 3124 I16 3125 I16 3126 I16
3129 H15 3130 H16 3131 G16 3132 G9 3133 G9 3134 H9 3138 K11 3139 K12 3146 D19 3147 J4 3148 J5 3167 J8 3168 H9 3169 J3
3170 H11 3182 D15 3190 E6 3191 E7 3193 F6 3194 E6 3195 F7 3196 E7 3197 E7 3199 F7 3200 F7 3201 G5 3202 K6 3304 J12
3305 G10 3313 I12 3314 G10 3321 I13 3329 I13 3412 D9 3415 D8 3416 D8 3419 C8 3420 C8 3423 C8 3440 I18 3441 I18 3443 H19
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
A
B
C
D
E
F
Part 1
CL 36532079_50a.eps
CL 36532079_50b.eps
Part 2
G
H
I
J
K
L
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
3444 H19 3447 H19 3702 A4 3703 B3 3704 B3 3706 C4 3707 C3 3708 C4 3709 C4 3710 C3 3712 B3 3714 B5 3716 B5 3717 D5
3718 E3 3719 D6 3720 D5 3721 C3 3722 C3 3723 C3 3725 C3 3726 D6 3727 A5 3730 C5 3731 C5 3789 C5 3790 B3 3791 B3
CL 36532079_050.eps
3794 D6 3795 D6 3796 C5 3797 B5 3799 D6 3802 D16 3803 D15 3804 D16 3805 D16 3806 D15 3807 D16 3808 D15 3812 D16 3813 D16
101203
A
B
C
D
E
F
G
H
I
J
K
L
3814 D16 3815 D17 3816 D16 3817 D16 3818 D17 3822 D17 3823 D17 3824 D16 3825 D16 3827 D16 3828 D16 3831 E13 3833 F13 3835 E14 3836 F14 3838 E14 3841 E13 3842 F13 3843 E12 3844 F13 3845 E13 3846 E13 3847 F13 3848 F13 3851 E12 3852 F12 3853 E12 3854 F12 3855 E12 3856 E12 3857 F12 3858 E12 4001 B13 4002 B13 4003 A7 4004 D12 4005 D13 4006 D12 4007 D12 4008 D12 4009 D11 4010 C16 4011 H18 4012 I16 4013 I16 4014 C18 4015 C14 4020 H10 4021 H10 4022 H10 4023 H10 4024 C6 5005 B16 5006 A16 5008 A17 5009 C16 5010 D14 5711 C2 5712 B2 6001 J15 6002 J16 6003 K14 6005 B15 6010 B19 6011 B19 6012 K17 6013 K17 6014 E18 6015 D6 6016 L19 6017 K19 6018 D19 6019 K18 6020 D18 6021 G18 6022 K18 6023 H18 6024 E18 6025 J18 6026 K18 6027 J18 6028 E18 6029 E18 6030 I19 6031 H19
6032 K19 6033 G9 6034 A17 6035 H9 6036 K14 6037 L18 6038 L18 6039 H9 6040 I11 6041 I11 6042 I11 6043 I11 6044 H11 6045 I11 6046 J11 6047 J11 6048 I11 6049 I11 6050 H9 6051 H9 6052 L11 6053 K12 6702 D6 6801 E12 7001 I11 7002 G17 7003 H17 7004 H8 7005 J4 7006 I11 7007 J8 7008 F7 7009 E7 7010 F7 7011 F7 7012 H10 7013 H10 7014 I11 7015 I11 7016 D18 7018 H11 7019 H11 7023 H9 7024 G9 7025 C15 7026 C15 7027 A7 7208 G17 7209 G17 7403 D8 7415 H18 7701 A4 7704 C5 7705 C5 7706 B5 7707 B5 7708 D5 7710 B5 7711 C6 7800 D16 7801 D15 7802 D16 7803 D16 7804 C16 7805 D16 7806 F13 7807 F14 7808 F12 7809 F12 7810 F13 7811 F13 9035 C14 9036 C14
Page 93
Circuit Diagrams and PWB Layouts
93DPTV355 7.

Layout Small Signal Module (Part 1 Bottom Side)

1 2 3 4 5 6 7 8 9 10 11 12 13 14
A
Part 1
B
C
D
E
G
H
F
I
J
K
L
1 2 3 4 5 6 7 8 9 10 11 12 13 14
CL 36532079_50a.eps
191203
Page 94
Circuit Diagrams and PWB Layouts
94DPTV355 7.

Layout Small Signal Module (Part 2 Bottom Side)

7 8 9 10 11 12 13 14 15 16 17 18 19 20
Part 2
A
B
C
D
E
G
H
F
I
J
CL 36532079_50b.eps
7 8 9 10 11 12 13 14 15 16 17 18 19 20
K
L
191203
Page 95

AC Input Panel

12
W1
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
AC INPUT PANEL
1108 VH
F212
1
4
F213
1110
1
2
0218
HEATSINK
123
GND_HC
Ref Des 313503710131 313503710141 1005
242254943369 82665500L
NOT USED
1103
1104 242202515503VH242202515503
1106
242202515503 VH
2002 NOT USED NOT USED 202055490173
2010 202002490682
470u
2013 NOT USED 202002191321
NOT USED
2014 NOT USED
2214
NOT USED
NOT USED NOT USED 202002490557
2219
202002490679
2220
220u
3000
NOT USED NOT USED 232224213475
3001
NOT USED
3002 NOT USED NOT USED
232224213475
3004
4M7
3009 NOT USED
3010 NOT USED 232225141108
NOT USED 232225141108
3013
3014 NOT USED 232225141108
5001
242254944591 JLB2806
5002 242253102547
9004 NOT USED NOT USED 9005
NOT USED
92181RNOT USED
242254943369 82665500L
NOT USED
VH 242202515503
VH
NOT USED NOT USED
202002490562 470u 202002490559 220u
NOT USED NOT USED
NOT USED 232224213475
232224213475 4M7 2322251411081RNOT USED
1R
1R 242254944591
JLB2806 NOT USED NOT USED
NOT USED NOT USED
3135 033 3331.3
1
P1
GND_TUNER
P2
5HT 5A0
1000
1003
1002
2003
1001
GND_HB
RESERVE NOT USED
242202512479 EH-B
NOT USED
NOT USED
2n2
470u NOT USED
NOT USED
220u
4M7
4M7 232224213475 4M7 NOT USED
NOT USED
NOT USED
NOT USED
NOT USED
319803690010 319803690010 319803690010
3
I001
3011
2000
680n
1005
82665500L
GND_TUNER
3001
2n2
4M7
3000
=
& 120V Mains = 220V Mains = 233V to 290V
470p
2293
5.9V
5.9V
I120
P30
Circuit Diagrams and PWB Layouts
4
5000
43
1
V
2
JLB2806
I003
4M7
3002
4M7
3004
4M7
2002
I004
Depending on Mains Input
133V to
GND_HB
7218
TOP246Y
7
2
D
L
1
C
CTRL
F
S4X
3
5
1.1V
8K2
3203
1.2V
313503710131 313503710141 X RESERVE
P3
5
I002
2011
2n2
5001
4
1
2004
DSP
F211
470p
2012
470p
6 1413
VH
1104
1
4
JLB2806
2
F215
3012
1M
3003
470R
GND_HB
GND_HC
W8051
1
2
5201
4
3
P29
F214
3
166V
2292
1n
Amplitude will vary with Mains Voltage
P31
I113
143V
&
330p
2218
5204
2294
330p
0V
3208
220R
GND_HB
C
A
R
H
E
M
I
V
S
N
E
A
R V E
X
X
6
P4
95DPTV355 7.
2005
2220
2228
100p
6207
BYD33D
220n
470u
2206
GND_HB
3224
2283
GND_HB
@
2219
GND_HC
220u
6R8
47u
8
5002
220u
8432
3013
3010
5
1
3009
3014
GBU4J
6001
@
120V Mains = 154V 166V
220V Mains = 242V 290V
7
VH
1106
1
4
F216
F217
2214
470u
GND_HC
GND_HC
I115
I121
10u
5240
I129
7
P5
9
10
= 160V to 329V Depending on Mains Input
$
120V Mains = 152V to 166V
1R
1R
4
8
1R
1R
2
14
3
I100
I101
I102
1n
2008
1n
2009
220V Mains = 233V to 316V
1n
GND_HA
1n
9004
RESERVE
GND_HC
= 160V to 329V Depending on Mains Input
2295
470p
5202 US28103
56
7
3
8
2
9
110
2204
470p
GND_HC
+5VSTDBY
I130
7.8V
9.3V
5
7213
CQY80NG
6.4V
6.4V
7212 TL431
4
3.6V
3.6V
3225
100R
9
I131
4.7V
4.7V 1
2
3.6V
1
2
3.6V
I006
3223
3244
2226
2227
2n2
2.5V
3
2.4V
3239
10
P6
11
GND_HA
2010
3
2006
6000
14
$
GBU4J
2
120V Mains = 90V 60V
2007
220V Mains = 148V 98V
0060
HEATSINK
123
GND_HA
47R
33K
22n
I135
3247
10K7
10K
NOTES
1. CAPACITANCE VALUES ARE IN FARADS: m=MILI u=MICRO n=NANO p=PICO f=FEMTO
2. RESISTANCE VALUES ARE IN OHMS: R=OHM K=KILO M=MEGA G=GIGA T=TERA
3. SAFETY TRIANGLE REPRESENTS PCEC REPLACEMENT PART ONLY.
4. FOR VALUE SEE TABLE.
*
11
P28
470u
2013
RESERVE
RESERVE
12
470u
9218
9005
To LSP
2014
470u
Panel 1500
1500
F200
5
4
P28
F201
3
2
F210
1
VH
GND_HA
P1
I108
6203
BY229X-200
I116
I123
2210
100p
2208
100p
6204
PBYR10100X
2269
100p
6231
PBYR10100X
470p
2215
33R
3205
P2
2216
470p
10R
3206
P3
2217
470p
10R
3207
13
P29
+15V
6240
BZX79-F10
10K
3259
0V .6V
10K
3261
0035
HEATSINK
12
I106
3202
33R
0204
HEATSINK
2
1
3201
100R
3216
100R
2270
0231
HEATSINK
12
2213
I117
2m2
I124
2m2
14
15
+5VSTDBY
3262
0V
0V
7221 BC547B
2296
2282
3246
39K
25V 22u
3248
22K
P4
1m
33K
2284
3210
+5VSTDBY
5237
P5
1m
2286
P6
I125
5234
10u
33K
3209
15
39K
10u
20.6V
14.9V
BC547B
5243
BC547B
I105
7205
+15VUVFAULT
3263
100K
7222
0V
20.6V
2.7V
0V
3K9
3249
I118
16
7215
IRF9Z24N
+15VUVFAULT
5.1V
5.1V
7216
13.2V 9V
7217
16
.6V
3.9V
3264
14.8V
0V
3260
0V
STP16NE06
STP16NE06
0V
3255
P30
3.4V
0V
39K
3253
14.6V
I126
10K
0V
14.6V
1K
P31
3265
10K
+5VSTDBY
I119
1K
.9V
I128
5V
17 18
STANDBY
10K
3250
I107
0V
3.4V
7220 BC547B
5244
10u
1m
2289
3254
100K
6236
1N4148
9V
1u
2290
17
+5VSTDBY
STANDBY
I104
7214
BC547B
.4V
19
I112
5238
F202
10u
2.6V
I122
+15V
+5V2
+9V
I109
.6V
10n
2288
I127
185 12
F203
.84V
F206
5247
10u
5242
10u
3252
10K
10K
3251
1m
2291
+5VSTDBY
5246
10u
I005
F207
F208
15VSTDBY
2m2
2285
10K
3256
STANDBY
CL 36532079_013.eps
19
20
1102
1
To SSM
2
Panel 1102
3
4
5
6
7
8
9
10
11
12
EH-B
1105
PCB-TAB4.8x0.5
1
2
1103
EH-B
1
2
3
RESERVE
4
+15V
+5V2
+15V
+9V
111103
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
0035 G14 0060 D10 0204 I14 0218 H2 0231 K14 1000 B3 1001 F3 1002 E3 1003 D3 1005 D3 1102 A19 1103 E19 1104 B5 1105 D19 1106 B7 1108 B2 1110 F2 1500 C12 2000 C3 2002 E4 2003 F3 2004 D5 2005 C7 2006 B10 2007 C10 2008 D9 2009 E9 2010 B11 2011 E4 2012 E5 2013 B11 2014 B11 2204 I9 2206 K8 2208 I13 2210 H13 2213 L13 2214 E7 2215 H12 2216 J12 2217 L12 2218 H5 2219 E8 2220 E7 2226 L10 2227 L10 2228 J7 2269 K13 2270 J13 2282 G15 2283 L8 2284 H14 2285 G19 2286 J15 2288 I17 2289 J16 2290 M16 2291 L18
2292 G5 2293 H3 2294 H5 2295 G9 2296 D15 3000 F3 3001 E4 3002 D4 3003 D6 3004 E4 3009 C8 3010 B8 3011 C3 3012 B6 3013 A8 3014 D8 3201 I13 3202 H13 3203 I4 3205 H12 3206 J12 3207 L12 3208 I5 3209 L14 3210 H14 3216 K13 3223 J10 3224 L8 3225 L8 3239 N10 3244 K10 3246 G14 3247 M11 3248 G15 3249 I15 3250 H16 3251 I18 3252 H18 3253 K16 3254 J17 3255 M16 3256 H18 3259 C14 3260 I16 3261 D14 3262 C15 3263 C15 3264 D16 3265 D16 5000 C4 5001 C5 5002 C8 5201 E6 5202 H9 5204 H6 5234 L14 5237 J14 5238 A18
5240 I7 5242 F18 5243 J15 5244 J17 5246 L18 5247 B18 6000 C10 6001 E8 6203 G13 6204 J13 6207 J7 6231 L13 6236 K17 6240 C14 7205 H15 7212 M9 7213 K9 7214 H17 7215 G16 7216 J16 7217 L16 7218 H4 7220 H16 7221 D14 7222 D15 9004 D10 9005 F11 9218 E11
20
20.0 V~ 5.00us
10.0 V~ 5.00us
10.0 V~ 5.00us
2.00 V~ 10.0us
2.00 V~ 10.0us
2.00 V~ 10.0us
2.00 V~ 5.00ms
2.00 V~ 5.00ms
20.0 V~ 5.00us
50.0 V~ 5.00us
Page 96
Circuit Diagrams and PWB Layouts

Layout AC Input Panel (Top Side)

0035 A9 0060 B6 0204 B10 0218 B7 0231 C10 1000 B1 1005 A2 1102 A12 1103 A9 1104 A4 1105 C11
1106 A4 1108 B1 1110 A3 1500 A6 2000 B2 2002 A1 2003 A2 2004 B3 2005 A4 2006 B5 2007 A5
2008 B5 2009 B5 2010 A7 2011 A2 2012 A3 2013 A7 2014 A7 2204 A8 2206 B8 2208 B10 2210 B9
21 3 4 5 6 7 8 9 10 11 12
2213 C10 2214 C6 2215 B9 2216 B9 2217 C9 2218 C8 2219 C6 2220 C6 2226 A8 2227 A8 2228 B8
2269 C10 2270 B10 2282 B10 2283 B7 2284 B10 2285 A10 2286 B11 2288 A11 2289 C12 2290 C11 2291 C12
2292 C8 2293 B7 2294 B8 2295 C9 2296 B11 3000 A2 3001 A2 3002 B3 3003 B3 3004 A3 3009 B5
3010 B4 3011 B1 3012 A3 3013 B4 3014 B4 3201 B10 3202 A9 3203 B7 3205 B9 3206 B9 3207 C9
3208 B8 3209 C10 3210 B9 3216 C9 3223 A9 3224 B7 3225 B7 3239 A8 3244 A8 3246 B10 3247 B11
96DPTV355 7.
3248 A10 3249 A11 3250 B11 3251 A11 3252 A11 3253 B11 3254 B11 3255 C11 3256 B11 3259 B12 3260 A10
3261 B12 3262 B11 3263 B11 3264 B11 3265 B11 5000 B2 5001 B3 5002 B4 5201 C7 5202 B9 5204 B8
5234 C11 5237 B11 5238 A11 5240 B8 5242 A10 5243 B11 5244 B12 5246 B12 5247 B12 6000 B6a 6001 B5
6203 A9 6204 B10 6207 B8 6231 C10 6236 B11 6240 A12 7205 A11 7212 A8 7213 A8 7214 A11 7215 A10
7216 C11 7217 C11 7218 B7 7220 A10 7221 B11 7222 B11 9004 B6 9005 C7 9007 B6 9012 A9 9213 B11
9214 B11 9215 B11 9216 B11 9218 B7 9219 B5 9220 B8
A
B
C
21 3 4 5 6 7 8 9 10 11 12

Layout AC Input Panel (Bottom Side)

0035 A9 0060 B6 0204 B10 0218 B7 0231 C10 1000 B1 1001 A2 1002 A2 1003 A2 1005 A2 1102 A12 1103 A9 1104 A4 1105 C11
1106 A4 1108 B1 1110 A3 1500 A6 2000 B2 2002 A1 2003 A2 2004 B3 2005 A4 2006 B5 2007 A5 2008 B5 2009 B5 2010 A7
2011 A2 2012 A3 2013 A7 2014 A7 2204 A8 2206 B8 2208 B10 2210 B9 2213 C10 2214 C6 2215 B9 2216 B9 2217 C9 2218 C8
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8. Alignments

Alignments
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Index of this chapter
1. General alignment conditions
2. Hardware alignments
3. Software alignments
4. Convergence and Geometry Adjustments
5. Option settings

8.1 General Alignment Conditions

8.1.1 Start Conditions

Perform all electrical adjustments under the following conditions:
• Power supply voltage: according to countries standard (± 10 %).
• Connect the set to the mains via an isolation transformer with low internal resistance.
• Allow the set to warm up for approximately 10 to 20 minutes.
• Measure the voltages and waveforms in relation to chassis ground (with the exception of the voltages on the primary side of the power supply). Caution: never use the cooling fins/plates as ground.
• Test probe: Ri > 10 Mohm, Ci < 20 pF.
• Use an isolated trimmer/screwdriver to perform the
alignments.

8.2 Hardware alignments

5. Repeat steps two through four to adjust the focus of the two remaining CRTs.
Note: Before beginning the following adjustment procedures set the customer picture, sharpness, brightness, and tint controls to midrange and the customer colour control to minimum.
Optical Focus Adjustment
1. Remove the back cover of the set and the light shield, then turn these on and inject an NTSC crosshatch pattern signal into the antenna terminal. Note: The crosshatch pattern will appear clearer if the front of the screen is covered with a dark cloth.
2. Cover tow of the CRT output lenses with cardboard pieces (or other non-conductive, opaque material) and observe the magnified reflection of the other picture tube on the backside of the viewing screen.
3. Loosen the "lens retaining wing nuts" on the CRT Focus Assembly.
4. Move the wing nut in the slot of the uncovered lens to locate the optimum optical focus viewing the picture from the back side of the screen), then re-tighten the wing nut.
5. Confirm correct focus by viewing the screen from the front of the set.
6. Repeat steps two through five to adjust the focus of the two remaining CRTs.

8.3 Software Alignments

8.2.1 VG2 Set-up

Preferred Method
1. Connect a Black Level signal to the aerial input of the set.
2. Preset all G2 controls on the Focus/G2 Combo Block to
minimum (fully CCW).
3. Connect an Oscilloscope to the Collector of the output transistor on the Green CRT board. Set the probe to x10.
4. Adjust the Green G2 control until the Black Level is at 200 V.
5. Repeat steps 3 and 4 for the Red and Blue CRTs.
Alternate Method
1. Connect a Black Level signal to the aerial input of the set.
2. Preset all G2 controls on the Focus/G2 Combo Block to
minimum (fully CCW).
3. Turn each G2 control clockwise until each CRT is barely illuminated.

8.2.2 Focus adjustment

Note: Before beginning the following adjustment procedures
set the customer picture, sharpness, brightness, and tint controls to midrange and the customer colour control to minimum.
Electrical Focus Adjustment
1. Remove the back cover of the set and the light shield, then turn the set on and inject a crosshatch pattern signal into the antenna terminal. Note: The crosshatch pattern will appear clearer if the front of the screen is covered with a dark cloth.
2. Cover two of the CRT output lenses with cardboard pieces (or other non-conductive opaque material) to observe the magnified reflection of the other picture tube on the backside of the viewing screen.
3. Adjust the CRTs focus control (located on the Screen/ Focus Control Block) for the sharpest raster image.
4. Confirm correct focus by viewing the screen from the front of the set.
With the software alignments, it is possible to align e.g. Geometry, White Tone, and Tuner IF settings. Put the set in the SAM (see chapter 5 "Service Modes, Error Codes, and Faultfinding"). The SAM menu will now appear on the screen. Select, via the cursor, one of the sub-menus.
Enter the Service Alignment Mode (SAM) by pressing the following key sequence on the remote control transmitter: 0-6-2-5-9-6-[i+]. Do not allow the display to time out while entering the key sequence. The following menu will appear:

Table 8-1 Alignments menu and default values

Alignments Item Default
General Luma gain 3
IF AFC 80 IF Lprime AFC 80 Tuner AGC 20 Tuner AGC Tuner 2 8 Blend Intensity 16
Lum. Delay Lum. Delay Pal B/G 11
Lum. Delay Pal I 8 Lum. Delay Secam 8 Lum. Delay Bypass 11
GDE SAM See menu on screen

8.3.1 General

LUMA GAIN
Fixed setting of "2".
IF AFC
Supply, via a service generator or via off-air, a TV-signal with a signal strength of at least 1 mV and a frequency of 475.25 MHz (PAL) or 61.25 MHz (NTSC). Alignment procedure:
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1. During the IF AFC-parameter adjustment, one can see OSD feedback on the screen.
2. The OSD feedback can give 4 kinds of messages:
3. The first item (IN/OUT) informs you whether you are in or
out of the AFC-window.
4. The second item (HIGH/LOW) informs you whether the AFC-frequency is too high or too low.
Table 8-2 OSD feedback of AFC alignment
AFC-window AFC-frequency vs. reference
Out High
In High In Low
Out Low
1. Adjust the IF AFC parameter until the first value is within the AFC window (= IN).
2. Next, adjust the IF AFC parameter until the second value is LOW.
IF LPRIME AFC
Same procedure as described above but with other signal source (SECAM L').
TUNER AGC
1. Connect the RF output of a video pattern generator to the antenna input.
2. From the generator, input a PAL B/G TV signal with a signal strength of approximately 2 mV and a frequency of
475.25 MHz (PAL) or 61.25 MHz (NTSC).
3. Measure the DC voltage on pin 1 of the (main) Tuner. You can adjust this voltage by adjusting the TUNER AGC item in the SAM menu. Alignment is correct when the DC voltage is just below 3.5 V.
IF AFC TUNER 2 (if present)
Use the same procedure as described above (under IF AFC) with the set switched to the DW source.
IF LPRIME AFC TUNER 2 (if present)
Use the same procedure as described above (under IF LPRIME AFC) with the set switched to the DW source.
TUNER AGC TUNER 2
Use the same procedure as described above (under TUNER AGC) with the set switched to the DW source. Measure on pin “1” of the DW Tuner.
BLEND INTENSITY
Use this alignment when you replace the microcontroller or the HOP. It aligns the level of transparency of the menu-picture blended into the main-picture. Position the "Brightness", "Contrast", and "Colour" setting in the middle position (in the customer "Picture" menu).
1. Apply a signal with a 100 % white video pattern (white raster).
2. Connect an oscilloscope to pin 8 of connector 1298 of the CRT panel and measure the Red output level.
3. Align the BLEND INTENSITY parameter so that the blended signal is 65 % of the black-white amplitude. This will be about 1.3 V (blended signal) versus 2 V (full white signal).
4. The parameter can be adjusted from 0 to 31.
• LUM. DELAY PAL BG: Apply a PAL BG colour bar / grey
scale pattern as a test signal. Adjust this parameter until the transients of the colour part and black and white part of the test pattern are at the same position. Default value is "9".
• LUM. DELAY PAL I: Apply a PAL I colour bar/grey scale
pattern as a test signal. Adjust this parameter until the transients of the colour part and black and white part of the test pattern are at the same position. Default value is "9".
• LUM. DELAY SECAM: Apply a SECAM colour bar/grey
scale pattern as a test signal. Adjust this parameter until the transients of the colour part and black and white part of the test pattern are at the same position. Default value is "11".
• LUM. DELAY BYPASS: apply a NTSC colour bar/
greyscale pattern as a test signal. Adjust this value until the transients of the colour and black and white part of the test area are at the same position. Default value is "10".

8.3.3 GDE SAM

Specifications:
• Set display mode in service mode.
• Service blanking.
• Set geometry.
• Preset picture.
• Set white tone.
• Convergence disable for setting geometry.
The GDE SAM mode (GDE = Generic Display Engine), allows the Service Technician to set Geometry and White Tone (Grey Scale). This mode is controlled by the GDE microprocessor located on the ASC module. These settings are stored in an EEPROM located on the ASC module. The GDE SAM displays the Software version of the GDE microprocessor and the GDE Errors.
There are three settings for Geometry in the 4x3 aspect ratio sets and two for the 16x9 aspect ratio sets. The signal for the 480p mode can be applied to the set via the HD YPbPr inputs or from the SSB when the set is in the NTSC mode. All Geometry alignments for this mode should be done with an NTSC signal selected. Adjustments for the 1080i should be done with an HD 1080i signal applied to the set. The 4x3 aspect ratio sets have both a Full and Compressed mode that requires alignment. The Service Blanking selection (SERV BLANK) will blank the bottom half of the picture. This selection is useful when adjusting the Yokes to level the picture. The Clamp Pulse should be set to Normal for a 480p or NTSC signal. It should be set to 1080i for an HD signal. The Convergence Processor selection will enable or disable Convergence drive. Convergence should be disabled when performing Cantering or Geometry alignments.

8.3.2 LUM. DEL. (Luminance Delay)

With this alignment, you place the luminance information exactly on the chrominance information (brightness is pushed onto the colour). Use a colour bar / grey scale pattern as test signal.
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8.4 Convergence and Geometry Adjustments

8.4.1 Introduction

If the ACS module has been replaced, the following adjustments will be required in the order as shown:
1. Geometry.
2. Convergence.
3. Grey Scale (White Tone).
If the Large Signal Board (LSB) has been changed the following adjustment are required:
1. Geometry.
2. Convergence.
If one or more CRTs have been replaced:
1. Geometry.
2. Convergence.
3. Grey Scale (White Tone).
If the SSM (Small Signal Module has been changed:
1. Convergence.
Enter the Service Alignment Mode (SAM) by pressing the following key sequence on the remote control transmitter: 0-6-2-5-9-6-[i+]. Do not allow the display to time out while entering the key sequence.
Cursor down to the Alignments level and then Cursor right to locate the GDE SAM. Press the OK button to enter the GDE SAM mode.
Note: Read the complete following text before starting the alignments.

8.4.2 Screen Centring

If one or more CRTs are replaced, it will be necessary to perform Screen Centring.
1. Place the Convergence Template on the TV screen or place a string from corner to corner to determine the screen centre.
2. Apply a centre cross pattern to the TV.
3. Enter the SAM mode, described in the Geometry section
and disable Convergence.
4. Cover the Red and Blue CRTs.
5. Using the Centring rings on the Green CRT, centre the
cross onto the centre of the template.
6. Uncover the Red CRT and centre the Red onto the Green cross.
7. Follow the same procedure with the Blue CRT.
Note: Only perform the Screen Centring for the first mode to be adjusted. Do not repeat the adjustment for the other modes.

8.4.3 Geometry Alignment

The Geometry alignment data is stored in the NVM, located on the ACS module. Whenever the ACS module or the Large Signal Board (LSB) have been changed, a Geometry alignment will be necessary. The Geometry Alignment is performed in the GDE SAM alignment mode. Make sure the set is in the mode in which you wish to align before entering the SAM mode. Use the AV button on the Remote to select the input with a signal, applied after entering the SAM mode.
Apply a crosshatch pattern to the set. Cursor Down to CONV PROC in the menu and press the Right Cursor button to select. This will disable the Convergence drive. Select GEOMETRY in the menu and enter the following default values for the mode being adjusted.
Table 8-3 Geometry Default Values
480p 1080i 1152i 100Hz 75Hz 576p
Wide blank 7 7 7 7 7 7 7 7 Horizontal Shift 25 21 32 26 26 26 32 28 Horizontal Para 38 8 43 38 8 8 8 8 E-W Width 31 44 31 31 31 31 31 31 E-W Para 38 38 43 38 38 38 38 38 E-W Trap 26 26 26 26 26 26 26 26 Horizontal Bow 7 7 7 7 7 7 7 7 Vertical Slope 36 36 27 36 0 36 27 27 Vertical Ampl 35 36 50 36 33 34 40 40 S Correction 31 31 31 31 31 31 31 31 Vertical Shift 31 31 31 31 14 31 31 31 Fast Blank 0 1 0 0 0 0 0 0
After entering the default values, the E-W WIDTH, VERTICAL SLOPE, and VERTICAL AMP should be the only settings requiring further adjustment.
Note: Perform (and store) Convergence alignment after any changes to the Geometry.

8.4.4 Convergence Mode

There are two new screen sizes for the AP region incorporating a Digital Convergence system using 208 adjustment points. The Convergence Processor is located on the ACS (Automatic Convergence System) module. The Convergence drive circuits are located on the SSP (Small Signal Panel). Data for the Convergence and Geometry settings are stored in the EEPROM located on the ACS module. If the CRTs, the Large Signal Panel (LSP), or the Small Signal Module (SSM) are changed, a complete Geometry and Convergence alignment will be necessary. If the ACS module, the Small Signal Panel (SSP), or CRTs are changed, a complete Convergence alignment will be necessary. To obtain the correct Geometry during Convergence, a template must be used.There are eight Geometry and Convergence settings, stored in the EEPROM on the ACS Module.
• 55 inch 16x9 aspect ratio - Use Template ST4181
• 46 inch 16x9 aspect ratio - Use Template ST4180

8.4.5 Convergence Alignment

Enter the Service Alignment Mode (SAM) by pressing the following key sequence on the remote control transmitter: 0-6-2-5-9-6-[i+]. Do not allow the display to time out while entering the key sequence.
Make sure that a signal is applied to the set for the mode being adjusted. Make sure that the set is in the mode you wish to adjust before entering the Convergence Alignment mode.
576p DVD
480p
DVD
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0 6 2 5 9 7 I+
USE CURSOR KEYS TO HIGHLIGHT USE MENU KEY TO SELECT USE STATUS KEY TO RETURN
CURSOR KEYS TO ADJUST
MENU TO CHANGE STEP SIZE
I+ TO RETURN
CURSOR RIGHT TO SELECT POWER OFF TO EXIT CONVERGENCE
CONVERGENCE ADJUSTMENTS SENSOR TEST
1
2
4
MENU
I+
I+
3
CURSOR KEYS TO NAVIGATE
MENU TO ADJUST
I+ TO RETURN
MANUAL CONVERGENCE WO VIDEO MANUAL CONVERGENCE W VIDEO
RESTORE FACTORY
RESTORE DEFAULTS
CURSOR RIGHT TO SELECT I+ TO RETURN
SENSORS NOT VERIFIED AT LOCATIONS______
MENU TO TEST AGAIN I+ TO RETURN
SENSORS OK
I+ TO RETURN
CURSOR RIGHT
I+
GREEN RED TO GREEN BLUE TO GREEN GREEN TO RED BLUE TO RED SP RED SP BLUE MP RED MP BLUE STORE
I+
MENU TO SAVE DATA
I+ TO RETURN
MENU TO SAVE DATA
I+ TO RETURN
MENU
Figure 8-1 Convergence menus
Use the Cursor Up-Down button to highlight the selection. Press the Cursor Right button to make the selection. In the second menu:
• MANUAL CONVERGENCE WO VIDEO means that the screen behind the adjustment grid will be blank. This does not mean that Convergence can be performed without a signal being applied to the set.
• MANUAL CONVERGENCE W VIDEO displays the applied video behind the adjustment grid.
• RESTORE FACTORY loads the values from the last saved convergence alignment.
• RESTORE DEFAULT loads values from the ROM on the ACS Microprocessor.
• RESTORE FACTORY or RESTORE DEFAULT will overwrite all eight Convergence modes.
If the ACS module has been changed, there may not be data in the NVM for RESTORE FACTORY. The RESTORE DEFAULT settings will then be loaded.
An internally generated grid will be displayed in the Convergence mode as shown on the following page. The shaded area is the visible screen area. Horizontal lines A and M are displayed on the top and bottom edge of the visible screen area. Lines 1 and 15 are also displayed on the left and right edge of the visible screen area. Vertical line 0 is adjustable but not visible.
0
123456789101112131415
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B
C
D
E
F
G
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Figure 8-2 Convergence grid

8.4.6 Single Tube Replacement Convergence

If a single tube has been replaced, it is not necessary to do a Major Convergence alignment.
1. Enter the Convergence mode and select the adjustment needed.
2. Select "Red to Green", for example if the Red tube has been replaced.
3. Adjust the centring rings on the CRT to centre the Red pattern onto the Green pattern.
4. Starting with the centreline, adjust the Red icon onto the Green pattern.
Best results are obtained when navigating from left to right. Two or three passes may be necessary to obtain satisfactory results.
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