Philips EM5.3A P, EM5.3A M Service Manual

Colour Television Chassis
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EM5.3A P/M
CL 36532017_000.eps
240403

Contents Page Contents Page

1. Technical Specifications, Connections, and Chassis Overview 2
2. Safety Instructions, Warnings, and Notes 4
3. Directions for Use 6
4. Mechanical Instructions 7
5. Service Modes, Error Codes, and Faultfinding 11
6. Block Diagrams, Test Point Overviews,
and Waveforms
Wiring Diagram 21 Block Diagram Supply and Deflection 22 Testpoint Overview LSP and CRT Panel 23 Block Diagram Video 24 Block Diagram Video (DW Sets Only) 25 Testpoint Overview SSB 26 Block Diagram Audio 1 (excl. Wireless Audio Details) 27
2
C-IC Overview 28
I Supply Lines Overview 29
7. Circuit Diagrams and PWB Layouts Diagram PWB Main Supply (Diagram A1) 30 39-45 Stand-by Supply (Diagram A2) 31 39-45 Line Deflection (Diagram A3) 32 39-45 Frame Deflection & E/W Drive (Diagram A4) 33 39-45 Rotation Circuitry (Diagram A5) 34 39-45 Audio Amplifier (Diagram A6) 35 39-45 Tuner SIMM connector (Female) (Diagram A8) 36 39-45 Receiver (Diagram A9) 37 39-45 Front (Diagram A10)37 39-45 Inputs/Outputs (Diagram A11)38 39-45 SIMM connector (Male) (Diagram B1) 46 58-63 IF, I/O Videoprocessing (Diagram B2) 47 58-63 PICNIC (Diagram B3A)48 58-63 Falconic (FEM) (Diagram B3B)49 58-63
©
Copyright 2004 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.
Eagle (Diagram B3C)50 58-63 Columbus (Diagram B3D)51 58-63 FBX Supply (Diagram B3E)52 58-63 HOP (Diagram B4) 53 58-63 OTC (Diagram B5) 54 58-63 Audio Demodulator (Diagram B6) 55 58-63 Anti Moiré (Diagram B9) 56 58-63 Headphone Amplifier (Diagram B10)57 58-63 DW Panel (Diagram C1) 64 69-70 DW Panel: Tuner (Diagram C2) 65 69-70 DW Panel: I/O Processing (Diagram C3) 66 69-70 DW Panel: IF Video Sync (Diagram C41)67 69-70 DW Panel: V-Chip Processor (Diagram C5) 68 69-70 DW Panel: NV ROM (Diagram C6) 68 69-70 Mains Switch Panel (Diagram E) 71 72 CRT Panel (Diagram F1) 73 75-76 CRT/ Auto SCAVEM Panel (Diagram F2) 74 75-76 DC Shift Panel (Diagram G) 77 77 VDAF + 2nd Orders Panel (Diagram I) 78 79 Jack-High Defenition:Control (Diagram N1) 80 83 Jack-High Defenition:Inputs/Outputs(Diagr. N2) 81 83 Jack-High Defenition:Sync Slicer (Diagram N3) 82 83 Jack-High Defenition:Matrix (Diagram N4) 82 83 Side I/O Panel (Diagram O) 84 85 Top Control Panel (Diagram P) 86 86 Auto SCAVEM (Diagram SC1)87 89 Auto SCAVEM PCR (Diagram SC3)88 89
8. Alignments 91
9. Circuit Description 98 Abbreviation List 104 IC Data Sheets 106
10 Spare Parts List 109 11 Revision List 123
Published by WO 0472 Service PaCE Printed in the Netherlands Subject to modification EN 3122 785 14610
EN 2 EM5.3A P/M AA1.
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Technical Specifications, Connections, and Chassis Overview

1. Technical Specifications, Connections, and Chassis Overview

Index of this chapter:

1.1 Technical Specifications

1.2 Connection Overview

1.3 Chassis Overview
Note: Figures below can deviate slightly from the actual situation, due to the different set executions.
1.1 Technical Specifications

1.1.1 Vision

1.2 Connection Overview
Note: The following connector color abbreviations are used
(acc. to DIN/IEC 757): Bk= Black, Bu= Blue, Gn= Green, Gy= Grey, Rd= Red, Wh= White, and Ye= Yellow.
Note: figures below can deviate slightly from the actual situation, due to the different set executions.

1.2.1 Top Control and Front / Side Connections

Display type : CRT-DV-RF Screen sizes : 29” (74 cm), 4:3
: 32" (82 cm), 16:9
: 34" (86 cm), 4:3 Tuning system : PLL Colour systems : NTSC 3.58, 4.43
: PAL B/G, D/K, I, M Video playback : NTSC 3.58, 4.43
: PAL B/G, D/K, I, M
: SECAM B/G, D/K, L/L’ Channel selections : 100 presets
: UHF
:VHF
: Hyper-band
: S-band Aerial input : 75 ohm, Coax
:IEC-type

1.1.2 Sound

IR-RECEIVER
STANDBY LED
Figure 1-1 Top control and Front / Side connections
S-Video: In
1 - Ground Gnd H 2 - Ground Gnd H 3 - Y 1 V_pp / 75 ohm j 4 - C 0.3 V_pp / 75 ohm j
-+
LIGHT SENSOR
-+
P/CHVOLUME
M
3.5
AUDIO R
AUDIO L
290502
SK 1
SVHS
VIDEO
CL 26532058_008.eps
Sound systems : FM/FM B/G (except
29PT9221), : NICAM B/G, D/K, I, L : 2CS D/K (29PT9221)
Maximum power : 4 x 15 W rms (int.)
: 3 x 15 W (29PT9221)

1.1.3 Miscellaneous

Mains voltage : 90 - 276 Vac(/56/69)
: 220 - 240 Vac(/79/93)
Mains frequency : 50 / 60 Hz Ambient temperature : +5 to +45 °C Maximum humidity : 90 % R.H.
:
Power consumption :
- Normal operation : 109 W
- Standby : < 1 W
Cinch: In
Ye -Video-CVBS 1 V_pp / 75 ohmfmsymbol jq Wh - Audio - L 0.5 V_rms / 10 kohm jq Rd - Audio - R 0.5 V_rms / 10 kohm jq
Mini Jack: Headphone - Out
- Headphone 32 - 600 ohm / 10 mW ot

1.2.2 Rear Connections

75 Ohm
SERVICE
CONNECTOR
(COMPAIR)
Y
AUDIO AUDIO
Pb
Pr
AV4 IN AV3 IN
AUDIO
OUT
Y
RGB
L
Pb
R
Pr
MONITOR
S
L
R COMPONENT VIDEO INPUT
AV1
OUT
Y
VY
PbPrL
L
R
L
R
AV2
IN
IN
R
CL 26532058_009.eps
Y
S-VIDEO
L
R
060601
Figure 1-2 Rear view
Aerial - In
- IEC-type Coax, 75 ohm D
Technical Specifications, Connections, and Chassis Overview
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Audio-out (except on 29PT9221)
1 - Audio S (0.5 Vrms / 10 kohm kq 2 - Audio L (0.5 Vrms / 10 kohm) kq 3 - Audio R (0.5 Vrms / 10 kohm) kq
Monitor out
1 - Video 1 Vpp / 75 ohm kq 2 - Audio L (0.5 Vrms / 10 kohm) kq 3 - Audio R (0.5 Vrms / 10 kohm) kq
AV1 in
1 - Y 0.7 Vpp / 75 ohm jq 2 - Pb 0.7 Vpp / 75 ohm jq 3 - Pr 0.7 Vpp / 75 ohm jq
EN 3EM5.3A P/M AA 1.
AV2 in (SVHS)
1 - Gnd H 2 - Gnd H 3 - Y 1 Vpp / 75 ohm j 4 - C 0.3 Vpp / 75 ohm j
AV3 in (D-sub connector)
1 - Pr (R) 0.35 Vpp (0.7 Vpp) / 75 ohm jq 2 - Y (G) 0.7 Vpp (0.7 Vpp) / 75 ohm jq 3 - Pb (B) 0.35 Vpp (0.7 Vpp) / 75 ohm jq 4 - H 5 Vpp / 1 kohm jq 5 - V 5 Vpp / 1 kohm jq
AV1 in
4 - Video 1 Vpp / 75 ohm jq 5 - Audio L (0.5 Vrms / 10 kohm) jq 6 - Audio R (0.5 Vrms / 10 kohm) jq
AV2 in
1 - Video 1 Vpp / 75 ohm jq 2 - Audio L (0.5 Vrms / 10 kohm) jq 3 - Audio R (0.5 Vrms / 10 kohm) jq

1.3 Chassis Overview

F
CRT PANEL
SIDE I/O PANEL
O
JACK HIGH
N
DEFINITION INTERFACE
AV3 and AV4 in (cinch)
1 - Y (G) 0.7 Vpp (0.7 Vpp) / 75 ohm jq 2 - Pb (B) 0.35 Vpp (0.7 Vpp) / 75 ohm jq 3 - Pr (R) 0.35 Vpp (0.7 Vpp) / 75 ohm jq
AV3 and AV4 in (cinch)
1 - Audio L (0.5 Vrms / 10 kohm) jq 2 - Audio R (0.5 Vrms / 10 kohm) jq
TOP CONTROL PANEL
SMALL SIGNAL BOARD
P
P
B
AUTO-SCAVEM
SC
PIP/DOUBLE
C
WINDOW PANEL (optional)

Figure 1-3 PWB locations

MAINS SWITCH PANEL
LARGE SIGNAL PANEL
DC-SHIFT (optional)
DAF PANEL
CL 26532079_001.eps
E
A
G
I
171204
EN 4 EM5.3A P/M AA2.
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Safety Instructions, Warnings, and Notes

2. Safety Instructions, Warnings, and Notes

Index of this chapter:

2.1 Safety Instructions

2.2 Maintenance Instructions

2.3 Warnings

2.4 Notes
Note: Figures below can deviate slightly from the actual situation, due to the different set executions.
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 (> 800 VA).
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 Mohm and 12 Mohm.
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.
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
3. Clean the picture tube panel and the neck of the picture
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_dc). Discharge until the meter reading is 0 V (after approx. 30 s).
V
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,
– 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.
chassis.
tube.
E_06532_007.eps
250304

Figure 2-1 Discharge picture tube

connection box, extension cable and earth cable) 4822 310 10671.
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.
Safety Instructions, Warnings, and Notes
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EN 5EM5.3A P/M AA 2.

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 “Service Modes, ....”) with a colour bar signal and
stereo sound (L: 3 kHz, R: 1 kHz unless stated otherwise) and picture carrier at 475.25 MHz for PAL, or 61.25 MHz for 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.
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.

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= x 10^-6), nano-farads (n= x 10^-9), or pico-farads (p= x 10^-
12).
Capacitor values may also use the value multiplier as the decimal point indication (e.g. 2p2 indicates 2.2 pF).
An "asterisk" (*) indicates component usage varies. Refer to the diversity tables for the correct values.
The correct component values are listed in the Electrical Replacement Parts List. Therefore, always check this list when there is any doubt.

2.4.3 Rework on BGA (Ball Grid Array) ICs

General
Although (LF)BGA assembly yields are very high, there may still be a requirement for component rework. By rework, we mean the process of removing the component from the PWB and replacing it with a new component. If an (LF)BGA is removed from a PWB, the solder balls of the component are deformed drastically so the removed (LF)BGA has to be discarded.
Device Removal
As is the case with any component that, it is essential when removing an (LF)BGA, the board, tracks, solder lands, or surrounding components are not damaged. To remove an (LF)BGA, the board must be uniformly heated to a temperature close to the reflow soldering temperature. A uniform temperature reduces the chance of warping the PWB. To do this, we recommend that the board is heated until it is certain that all the joints are molten. Then carefully pull the component off the board with a vacuum nozzle. For the appropriate temperature profiles, see the IC data sheet.

2.4.4 Lead Free Solder

Area Preparation
When the component has been removed, the vacant IC area must be cleaned before replacing the (LF)BGA. Removing an IC often leaves varying amounts of solder on the mounting lands. This excessive solder can be removed with either a solder sucker or solder wick. The remaining flux can be removed with a brush and cleaning agent. After the board is properly cleaned and inspected, apply flux on the solder lands and on the connection balls of the (LF)BGA. Note: Do not apply solder paste, as this has shown to result in problems during re-soldering.
Device Replacement
The last step in the repair process is to solder the new component on the board. Ideally, the (LF)BGA should be aligned under a microscope or magnifying glass. If this is not possible, try to align the (LF)BGA with any board markers. To reflow the solder, apply a temperature profile according to the IC data sheet. So as not to damage neighbouring components, it may be necessary to reduce some temperatures and times.
More Information
For more information on how to handle BGA devices, visit this URL: www.atyourservice.ce.philips.com (needs subscription, not available for all regions). After login, select “Magazine”, then go to “Workshop Information”. Here you will find Information on how to deal with BGA-ICs.
Philips CE is going to produce lead-free sets (PBF) from
1.1.2005 onwards.
P
b
Figure 2-2 Lead-free logo
This sign normally has a diameter of 6 mm, but if there is less space on a board also 3 mm is possible.
Regardless of this logo (is not always present), one must treat all sets from this date onwards according to the next rules.
Due to lead-free technology some rules have to be respected by the workshop during a repair:
Use only lead-free soldering tin Philips SAC305 with order code 0622 149 00106. If lead-free solder paste is required, please contact the manufacturer of your soldering equipment. In general, use of solder paste within workshops should be avoided because paste is not easy to store and to handle.
Use only adequate solder tools applicable for lead-free soldering tin. The solder tool must be able – To reach at least a solder-tip temperature of 400°C. – To stabilise the adjusted temperature at the solder-tip. – To exchange solder-tips for different applications.
Adjust your solder tool so that a temperature around 360°C
- 380°C is reached and stabilised at the solder joint. Heating time of the solder-joint should not exceed ~ 4 sec. Avoid temperatures above 400°C, otherwise wear-out of tips will rise drastically and flux-fluid will be destroyed. To avoid wear-out of tips, switch “off” unused equipment or reduce heat.
Mix of lead-free soldering tin/parts with leaded soldering tin/parts is possible but PHILIPS recommends strongly to avoid mixed regimes. If not to avoid, clean carefully the solder-joint from old tin and re-solder with new tin.
EN 6 EM5.3A P/M AA3.
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Directions for Use
Use only original spare-parts listed in the Service-Manuals. Not listed standard material (commodities) has to be purchased at external companies.
Special information for lead-free BGA ICs: these ICs will be delivered in so-called "dry-packaging" to protect the IC against moisture. This packaging may only be opened short before it is used (soldered). Otherwise the body of the IC gets "wet" inside and during the heating time the structure of the IC will be destroyed due to high (steam­)pressure inside the body. If the packaging was opened before usage, the IC has to be heated up for some hours (around 90°C) for drying (think of ESD-protection !). Do not re-use BGAs at all!
For sets produced before 1.1.2005, containing leaded soldering tin and components, all needed spare parts will be available till the end of the service period. For the repair of such sets nothing changes.
In case of doubt wether the board is lead-free or not (or with mixed technologies), you can use the following method:
Always use the highest temperature to solder, when using SAC305 (see also instructions below).
De-solder thoroughly (clean solder joints to avoid mix of two alloys).
Caution: For BGA-ICs, you must use the correct temperature­profile, which is coupled to the 12NC. For an overview of these profiles, visit the website www.atyourservice.ce.philips.com (needs subscription, but is not available for all regions) You will find this and more technical information within the "Magazine", chapter "Workshop information". For additional questions please contact your local repair­helpdesk.

2.4.5 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 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.

3. Directions for Use

You can download this information from the following website:
http://www.philips.com/support

4. Mechanical Instructions

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Mechanical Instructions
EN 7EM5.3A P/M AA 4.
Index of this chapter:

4.1 Service Connector (for ComPair)

4.2 Set Disassembly

4.3 Service Positions

4.4 Assembly / Board Removal
4.5 Set Reassembly
Note: Figures below can deviate slightly from the actual product, due to different set designs.
4.1 Service Connector (for ComPair)
To perform service diagnostics with ComPair, it is not necessary to disassemble the set. You simply have to connect the ComPair interface box, with the appropriate cable, to the service connector (on the rear of the set, see figure below), and start the ComPair program (see chapter 5).
4.3 Service Positions

4.3.1 Control-Jack-High-Definition-Interface Panel Solder Side

4.2 Set Disassembly
Follow the disassembly instructions below.

4.2.1 Back Cover Removal

3
1. Disconnect the loudspeaker cable at the top of the subwoofer box.
2. The subwoofer is fixed in the bottom plate with two “rubber feet”.
3. Pull the subwoofer box upwards, and remove it.
This chassis has several predefined service positions, for better accessibility. They are explained below in more detail.
2
1
4
4
3
1
3
2
Warning: Disconnect the AC power cord before you remove the back cover.
First, remove the top cover (plate with “saucer”):
1. Remove the three screws [1] that hold the cover plate.
2. Pull the cover (horizontally) backward.
Service connector
Figure 4-1 Rear Cover Removal
To access the electronics of the set, you must remove the back cover:
1. Remove the screws [2] of the rear jack panel cover plate.
2. Remove the remaining screws [3] at the two sides, and the top of the back cover.
3. Remove the back cover. Make sure that wires and cables are not damaged while removing the cover.

4.2.2 Subwoofer Removal

Caution: Do not disconnect the loudspeaker cable from the
subwoofer box while the set is operating, because the class-D amplifier cannot handle a change in load during operation. There is no problem when the subwoofer is disconnected before operation, but a change from connected to disconnected during operation can damage the amplifier.
11
CL 26532058_011.eps
040602
CL 26532058_012.eps
290502
Figure 4-2 Service position 1
To remove or access the “Control-Jack-High-Definition­Interface” panel, do the following:
1. Remove the screw [1].
3
2. To release the peg, push it toward the CRT [2].
3. At the same time, pull the complete module away from the LSP [3]. It hinges in the LSP bracket.
4. To remove the panel, remove the four panel screws [4].

4.3.2 LSP Component Side

SSB top-bracket
SSB
AUTO-SCAVEM
bracket
CONNECTOR SUPPORT
bracket
Bottom tray
To better access the component side of the LSP, do the following (see figure above):
1. Remove the LSP bracket from the bottom tray by pulling it backwards.
2
Figure 4-3 Service position 2
LOT - bracket
LSP
1
1
2
CL 26532058_013.eps
290502
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2. Hook the bracket in the first row of holes of the bottom tray. In other words, reposition the bracket from [1] to [2].

4.3.3 LSP Solder Side

Mechanical Instructions
1
2
1
1502
Figure 4-5 SSB removal (part 1)
1. Put the LSP in service position 2 (as described above).
2. Release the two clamps at the top of the SSB bracket [2] and pull the bracket upward (it hinges in the bracket on the LOT side).
3. You can now remove the complete SSB bracket.
3
1
SSB
2
CL 26532058_015.eps
290502
3
CL 26532058_014.eps
Figure 4-4 Service position 3
To access the bottom side (solder side) of the LSP, do the following (see figure above):
1. Remove the DAF module (see paragraph “DAF Assembly/ Panel” below).
2. To disconnect the degaussing coil from the LSP, remove the cable from connector 1502 [1].
3. Release the wires from their clamps to make room to reposition the LSP.
4. Turn the LSP 90 degrees clockwise [2], and place it in the hole at the left side of the bottom tray [3].

4.3.4 Small Signal Board (SSB)

There is no predefined service position for the SSB. Most test points are located on the A-side (the side that faces the tuner). If you have to replace ICs, you must take the complete SSB module out of the SIMM-connector. Note: For access to the A-side, it is necessary to remove the Auto-Scavem assembly (at the left side of the SSB). See the description in the “Auto-Scavem Assembly/Panel” section below.
To access the SSB test points, do the following:
290502
2
2
CL 26532041_068.eps
Figure 4-6 SSB removal (part 2)
1. Push the top of the SSB toward the LOT [1].
2. Due to the pressure, the two metal clamps at both sides of the SIMM-connector will release [2].
3. Take the complete SSB out [3].
110402
Mechanical Instructions
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4.4.2 Side-I/O Assembly and Panel

EN 9EM5.3A P/M AA 4.
2
SSB
1
1
1. Once you have taken out the SSB, remove the shieldings
2. Replace the SSB module in the SIMM-connector in reverse
Notes:
For better access to the SSB, it is possible to order an
If it is necessary for measurements, you can put the LSP in

4.4 Assembly / Board Removal

Figure 4-7 SSB removal (part 3)
[2]. Sometimes it is necessary to unsolder some solder tags before doing this [1].
order.
“extension board,” which is part number 9965 000 05769.
“service position 2” (as described above).
SAM
SDM
CL 26532041_069.eps
110402
3
2
Figure 4-9 Side I/O assembly
1. Release the snap hook [1] with your finger.
2. At the same time, pull the assembly backward [2].
3. Release the two clamps on the right side of the bracket (the board hinges at the left side).
4. Remove the board from the bracket.

4.4.3 AC Power Switch Assembly/Panel

1
1
2
2
1
CL 16532149_069.eps
061201
Sometimes, it may be necessary to swap a complete assembly or Circuit Board Assembly (CBA). This procedure is explained below.

4.4.1 Top Control Assembly/Panel

Top control board
Figure 4-8 Top control assembly
1. Release both screws (about 5 full turns).
2. Pull the complete assembly back and upwards (the assembly hinges in the cabinet front).
3. Flip the assembly, and you can access the board by (carefully) releasing the four clamps.
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Figure 4-10 AC Power Switch Assembly
1. Release the two clamps by pushing them upward [1]. At the same time, pull the complete assembly backward [2]. Note: Be aware that the degaussing coil may hamper this.
2. Release the two clamps on the two sides of the bracket (the board hinges at the connector side).
3. Remove the board from the bracket.
4. If the light guide (located in the cabinet, in front of the LEDs) is defective, you can replace it by pushing it forward at the left side (it hinges at the right side, seen from the rear).
EN 10 EM5.3A P/M AA4.
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Mechanical Instructions

4.4.4 DAF Assembly/Panel

1
4
2
4
3
3
1. Remove the screw [1] (if present).
2. Push the clamp [2] down, and, at the same time, pull the complete bracket away from the CRT [3]. The module is now free from the LSP bracket.
3. Release the clamps [4], in order to remove the board from its bracket.

4.4.5 Auto-SCAVEM Assembly/Panel

This panel is placed on the left side of the SSB (See figure “Service Position 2”). Because most of its components are located on the bottom side, you must lift the panel from its bracket before you can perform measurements.
1. Release the two clamps at the top.
2. Lift the panel from the bracket (it hinges at the bottom).
To remove the bracket:
1. First, remove the panel from the bracket, as described above.
2. Remove the two screws at the bottom.
3. Lift the Auto-Scavem bracket slightly up, and at the same time bend the top slightly away from the tuner.
4. Push the bracket in the direction of the CRT, and lift it out of the LSP-bracket.
Figure 4-11 DAF module
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This panel is placed in a bracket that is located on the left side of the tuner. To remove the bracket:
1. Pull the release handle [1] backwards. This will lift the release catch, and the bracket can be pulled out backwards.
2. Release the two securing clamps [2] and lift the board out of the bracket.
3. Both sides of the panel are now easy accessible.

4.4.7 Small Signal Board (SSB)

See section 4.3.4 “Small Signal Board (SSB)” above.

4.4.8 Large Signal Panel (LSP)

1. Remove the SSB (see paragraph “Small Signal Board (SSB)” above).
2. Remove the Auto-Scavem assembly (see paragraph “Auto Scavem Assembly/Panel” above).
3. Disconnect the necessary cables.
4. Release the clamps on the left of the LSP-bracket (the board hinges at the right side).
5. Remove the board from the bracket.

4.5 Set Reassembly

To reassemble the set, perform all disassembly processes in reverse order.
Before replacing the back cover:
Be sure the AC power cord is mounted correctly in its guiding brackets.
Be sure all wires/cables are returned to their original positions. This is very important due to the large “hot” area of the set

4.4.6 Double Window Assembly/Panel

2
2
DW - MODULE
1
Figure 4-12 Double Window module
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Service Modes, Error Codes, and Fault Finding
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5. Service Modes, Error Codes, and Fault Finding

EN 11EM5.3A P/M AA 5.
Index of this chapter:

5.1 Test Points

5.2 Service Modes

5.3 Problems and Solving Tips (related to CSM)
5.4 ComPair
5.5 Error Codes
5.6 The Blinking LED Procedure
5.7 Protections
5.8 Repair tips
5.1 Test Points
The EM5 chassis is equipped with test points printed on the circuit board assemblies. They refer to the schematic 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.
Perform measurements under the following conditions:
Set in Service Default Mode.
Video: color 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").
Note: This chassis is equipped with a LED configuration with separate blue and red LEDs. This is different from the bicoloured version we know from EM5E. The blue LED is controlled by software (via ON_OFF_LED). The red LED will light in anti-phase to the blue one, but with a time delay. This means that if the blue LED is blinking fast, the red LED will stay off. But after the blue LED is "OFF" long enough, the red LED will go "ON". So take care: In certain service modes (e.g. blinking LED, stepwise start-up, etc.) you must observe the blue LED and ignore the red LED.

5.2.1 Service Default Mode (SDM)

Purpose
To create a pre-defined setting, to get the same measurement results as given in this manual.
To override SW protections.
To start the blinking LED procedure.
Specifications
Tuning frequency: 475.25 MHz for PAL/SECAM. Tuning frequency: 61.25 MHz for NTSC.
Colour system: PAL B/G or NTSC.
All picture settings at 50 % (brightness, colour, contrast).
All sound settings at 50 %, except volume at 25 %.
All service-unfriendly modes (if present) are disabled, like: – (Sleep) timer. – Child/parental lock. – Blue mute.

5.2.2 Service Alignment Mode (SAM)

– Automatic volume limiter (AVL). – Auto switch-off (when no video signal was received for
10 minutes). – Skip/blank of non-favourite pre-sets. – Smart modes. – Auto store of personal presets. – Auto user menu time-out.
How to enter SDM
Use one of the following methods:
Use the standard RC-transmitter and key in the code
"062596", directly followed by the "MENU" button. Note: It is possible that, together with the SDM, the main
menu will appear. To switch it off, push the "MENU" button again.
When you shorten for a moment the two solder pads on the 'external part' of the SSB print, with the indication "SDM". Activation can be performed in all modes, except when the set has a problem with the main-processor. Caution: If the SDM is entered via the pins, all the software-controlled protections are de-activated.
Use the "DEFAULT" button in the DST-emulation feature of ComPair.
Use the "DEFAULT" button on the Dealer Service Tool (RC7150).
After entering this mode, "SDM" will appear in the upper right corner of the screen.
How to navigate
When you press the "MENU" button on the RC transmitter, the set will toggle between the SDM and the normal user menu (with the SDM mode still active in the background).
How to exit SDM
Use one of the following methods:
Switch the set to STANDBY via the RC-transmitter.
Press the "EXIT" button in the DST-emulation feature of ComPair.
Via a standard customer RC-transmitter: key in "00"­sequence.
Purpose
To perform (software) alignments.
To change option settings.
To easily identify the used software version.
To view operation hours.
To display (or clear) the error code buffer.
Specifications
Operation hours counter.
Software version.
Option settings.
Error buffer reading and erasing.
Software alignments.
How to enter SAM
Use one of the following methods:
Via a standard RC transmitter: key in the code "062596" directly followed by the "OSD [i+]" button. After activating SAM with this method a service warning will appear on the screen, you can continue by pressing any digit key on the RC.
Short for a moment the two solder pads on the 'external part' of the SSB print, with the indication SAM. Depending on the software version it is possible that the service warning will appear, you can continue by pressing any digit key on the RC.
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Service Modes, Error Codes, and Fault Finding
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" will appear in the upper right corner of the screen.
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: EM53AP_
1.0_01234 = AAAABB-X.Y_NNNNN).
AAAA= the chassis name.
BB= the region: EU= Europe, AP= Asia Pacific PAL/Multi, AN= Asia Pacific NTSC, US= USA, LT= LATAM.
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.
FBX VERSION. The 12NC-number of the build in
Feature Box software.
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" sub­menu.
DEALER OPTIONS. Extra features for the dealers.
SERVICE OPTIONS. Extra features for Service.
INITIALISE NVM. When an NVM was corrupted (or replaced) in the former EM3 chassis, the microprocessor replaces the content with default data (to assure that the set can operate). However, all pre-sets and alignment values are gone now, and option numbers are not correct. Therefore, this was a very drastic way. In this chassis, the procedure is implemented in another way: The moment the processor recognises a corrupted NVM, the "INITIALISE NVM" line will be highlighted. Now, you can do two things (dependent of the service instructions at that moment): – Save the content of the NVM via ComPair for
development analysis, before initialising. This will give the Philips Service department an extra possibility for diagnosis (e.g. when Development asks for this).
– Initialise the NVM (same as in the past, however now it
happens conscious).
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.
SW MAINTENANCEUPGRADE. Not applicable for this chassis – EVENTS. Not useful for service purposes. In case of
specific software problems, the development department can ask for this info.
BDM INFO. Broadcast Debug Menu info. The purpose
of this menu is to debug the broadcast, NOT the TV.
P r e s e t n r : -- UTC: - - : - - : -- P r e s e t n a m e : ----- LTO: - - : - - : -- Time: - - : - - : -- C N I N V M : ---- Date: - - / - - / ---- C N I F 1 : ---- C N I F 2 : ---- Time TXT: - - : - - : -- C N I V P S : ---- Time 8/30 F1: - - : - - : -- M o r n i n g P r o g : --- Date 8/30 F1: - - / - - / ---- N a m e 8 / 3 0 F 1 : ----- LTO 8/30 F1: - - : - - : -- N a m e 8 / 3 0 F 2 : ----- N a m e T X T : ----- WSS G1: - - - - S i g n a l S t r e n g t h :--- WSS G2: - - - - WSS G3: - - - E P G S e r v i c e : --- WSS G4: - - -
Figure 5-1 Broadcast debug menu overview.
Table 5-1 Broadcast debug menu explanation
Item Source Description
Presetnr Set Presetnumber of the current selected
Presetname Set Presetname of the current selected
CNI NVM Broadcaster CNI number stored in NVM for the
CNI F1 Broadcaster CNI number from transmitted Packet 8/
CNI F2 Broadcaster CNI number from transmitted Packet 8/
CNI VPS Broadcaster CNI number from transmitted VPS line.
Morning Prog Broadcaster "ARD" or "ZDF" according to dedicated
Name 8/30 F1 Broadcaster Name extracted from status message of
Name 8/30 F2 Broadcaster Name extracted from status message of
Name TXT Broadcaster Name extracted from TXT header.
Signal Strength FBX Noise figure measured for selected
EPG Service Set EPG Service stored in NVM for current
UTC Set UTC (Universal Time Code formerly
LTO Set LTO (Local Time Offset) used in the set.
Time Set Current time running in the set. Was
Date Set Current date running in the set. Was
Time TXT Broadcaster TXT header time from the selected
Time 8/30 F1 Broadcaster UTC time from 8/30 Format 1.
Date 8/30 F1 Broadcaster Date from 8/30 Format 1.
LTO 8/30 F1 Broadcaster LTO from 8/30 Format 1.
WSS G1 Broadcaster WSS Group 1 (Aspect Ratio) bits 0 1 2 3
WSS G2 Broadcaster WSS Group 2 (Enhanced Services) bits 4
WSS G3 Broadcaster WSS Group 3 (Subtitles) bits 8 9 10
WSS G4 Broadcaster WSS Group 4 (Reserved) bits 11 12 13
How to navigate
In SAM, you can select the menu items with the "CURSOR UP/DOWN" key on the RC-transmitter. The selected item will be highlighted. When not all menu items fit on the screen, move the "CURSOR UP/DOWN" key to display the next/previous menu items.
With the "CURSOR LEFT/RIGHT" keys, it is possible to: – (De) activate the selected menu item. – Change the value of the selected menu item. – Activate the selected submenu.
The menu gives an overview of what is received on the current preset. Following items are displayed:
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preset.
preset.
current preset.
30 Format 1.
30 Format 2.
bit in 8/30 Format 1.
8/30 Format 1.
8/30 Format 2.
preset.
preset displayed as "TXT", "MCP", "SCP", "OCP".
known as Greenwich Mean Time) used in the set.
Used by EPG for all Nextview displays. (= Time TXT header - Time 8/30 F1 )
extracted at startup, then maintained by software.
extracted at startup, then maintained by software.
preset.
5 6 7
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EN 13EM5.3A P/M AA 5.
How to exit SAM
Use one of the following methods:
Press the "MENU" button on the RC-transmitter, or
Switch the set to STANDBY via the RC-transmitter, or
Press the "EXIT" button on the DST.

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 than 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: EM53AP_1.0_01234). Displays the build in software version. In case of field problems related to software, software flash-RAM pos.7006 must be changed by a new one. Do this via soldering. 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 build 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 5 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 5 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 NTSC­DVD-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".
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 signalling 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".
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.
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
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(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 "NO". When you change this (automatically found) frequency via "fine tune" adjustment (installation menu - manual installation), the displayed value will change to "YES". Therefore, when you see the value "YES" 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, "OFF" or "ON". 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.
MOVIE RATINGS LOCK. Only applicable for US.
V-CHIP TV STATUS. 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).
AVL. Indicates the last status of AVL (Automatic Volume Level): "ON" or "OFF". Change via "MENU", "TV", "SOUND", "AVL"
DELTA VOLUME. Indicates the last status of the delta volume for the selected preset as set by the customer: from "-12" to "+12". Change via "MENU", "TV", "SOUND", "DELTA VOLUME".
FRONT SPKR DIST. Indicates the last status of the distance to the front speakers as set by the customer: "1m",
"2m", or "3m",.... Change via "MENU", "SETUP",
"SPEAKERS", "TO FRONT".
SURR. SPKR DIST. Indicates the last status of the distance to the surround speakers as set by the customer: "1m", "2m", or "3m",. Change via "MENU", "SETUP", "SPEAKERS", "TO SURROUND".
How to exit CSM
Use one of the following methods:
After you press a key on the RC-transmitter (with exception of the "CHANNEL", "VOLUME" and digit (0-9) keys), or
After you switch the TV-set "OFF" with the mains switch.

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 also high on other programs, check the aerial cable/aerial system. For some software versions, the noise figure will only be valid when "Active Control" is set to "medium" or "maximum".
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 "MENU", "TV", "PICTURE", "SMART PICTURE". 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 "MENU", "TV", "PICTURE", "SMART PICTURE". 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 8 "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.
Service Modes, Error Codes, and Fault Finding
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EN 15EM5.3A P/M AA 5.
White line around picture elements and text
1. Press "MENU", "TV", "PICTURE", "SMART PICTURE". In case the picture improves, decrease the "Sharpness" value. The new value is automatically stored (in "personal" pre-set) 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 "No", 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.

5.4.2 Specifications

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.
Menu text not sharp enough
1. Press "MENU", "TV", "PICTURE", "SMART PICTURE". 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 " Volume". The new value(s) are automatically stored (in "personal" pre-set) for all TV channels.

5.4 ComPair

5.4.1 Introduction

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. For this 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 can access the I and receive I 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.
2
C bus of the television. ComPair can send
2
C commands to the micro controller of the
2
C level. ComPair
2
C busses
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.
2
C level) and
2
C commands

5.4.3 Stepwise Start-up

Under normal circumstances, a fault in the power supply, or an error during start-up, will switch the television to protection mode. ComPair can take over the initialisation of the television. In this way, it is possible to distinguish which part of the start­up routine (hence which circuitry) is causing the problem. Take notice that the transition between two steps can take some time, so give the set some time to reach a stable state. During the transition time the LED can blink strangely.
Stepwise start- up explanation
This is realised via ComPair and is very helpful when a protection is activated (see also chapter "Protections").
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Service Modes, Error Codes, and Fault Finding
Table 5-2 Stepwise start-up table
State Description mode

5.4.4 How To Connect

0 Low power standby: 5V2/3V3 present,
uP in standby-mode
1 High power Standby: TV-set in standby-
mode
2 Main Power On: HOP in standby, 5V/8V
present, I2C protections on, SSB is powered by standby-supply (5V/8V). Degaussing (12 s) has been activated, MSP is reset.
3 Initialized (Semi standby): most IC's are
initialized, HOP still in standby
4 HOP: HOP fully powered and working,
EHT is present, rest of IC's initialized, black current stabilisation is off, picture is still blanked
5 On: TV-set operates, black current
stabilisation is on, picture is unblanked.
Note (*):
When the set is in stepwise mode and, due to stepping-up, a protection is activated, the set will really go into protection (blinking LED). The set will not leave the stepwise-mode however. If state X is the state where the set went to protection, stepwise start-up will return to state X-1. At state (X-1) diagnostic measurements can be performed. Also, in the short time the set is in state X but not yet in protection, you can also do some measurements.
This is described in the chassis fault finding database in ComPair .
TO
UART SERVICE
CONNECTOR
Display LED
On None
Wait 1s, flash 1 x
Wait 1s, flash 2 x
Wait 1s, flash 3 x
Wait 1s, flash 4 x
Wait 1s, flash 5 x
TO I2C SERVICE CONNECTOR
Enabled protection
None
4 & 5
Plus 1, 6 & 18
Plus 2 & 16

5.4.5 How To Order

ComPair order codes (EU/AP/LATAM):
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), 3122 785 60130 (year 2004).
ComPair interface cable: 3122 785 90004.
ComPair firmware upgrade IC: 3122 785 90510.
Transformer (non-UK): 4822 727 21632.
Transformer UK: 4822 727 21633.
Additional ComPair interface cable: 3139 131 03791.
Note: If you encounter any problems, contact your local support desk.
Figure 5-2 ComPair interface connection
PC VCR I2CPower
9V DC
E_06532_021.eps
180804

5.5 Error Codes

5.5.1 Introduction

The error code buffer contains all detected errors since the last time the buffer was erased. The buffer is written from left to right, new errors are logged at the left side, and all other errors shift one position to the right. When an error has occurred, the error is added to the list of errors, provided the list is not full or the error is a protection error. When an error occurs and the error buffer is full, then the new error is not added, and the error buffer stays intact (history is maintained), except when the error is a protection error. To prevent that an occasional error stays in the list forever, the error is removed from the list after 50+ operation hours. When multiple errors occur (errors occurred within a short time span), there is a high probability that there is some relation between them.

5.5.2 How to read the Error Buffer

Use one of the following methods:
On screen via the SAM (only if you have a picture). Examples: – 0 0 0 0 0: No errors detected – 6 0 0 0 0: Error code 6 is the last and only detected
9 6 0 0 0: Error code 6 was first detected and error
Via the blinking LED procedure (when you have no picture). See next paragraph.
•Via ComPair.

5.5.3 How to clear the Error Buffer

Use one of the following methods:
By activation of the "RESET ERROR BUFFER" command in the SAM menu.
With a normal RC, key in sequence "MUTE" followed by "062599" and "OK".
When you transmit the commands "DIAGNOSE" - "99" ­"OK" with ComPair (or with a DST).
If the content of the error buffer has not changed for 50+ hours, it resets automatically.

5.5.4 Error Codes

In case of non-intermittent faults, clear the error buffer before you begin the repair. This to ensure that old error codes are no longer present. Before clearing the buffer, write down the content, as this history can give you significant information.
If possible, check the entire contents 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).
There are various errors:
2
C device errors.
•I
2
C bus errors.
•I
Protection errors.
Errors not related to an I – BLACK CURRENT LOOP (ERROR 28): detection of a
FEM (ERROR 26): at start-up, after initialisation of the
EAGLE (ERROR 27): at start-up, after initialisation of
error
code 9 is the last detected error
2
C device, but of importance:
continuous fail of the black current stabilisation loop of the HOP.
PICNIC, the presence of the FALCONIC can be checked.
the PICNIC, the presence of the Eagle can be checked.
Service Modes, Error Codes, and Fault Finding
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Table 5-3 Error table.
Error Device Description Def. item Defect. module indication Diagram
1 M24C32 NVM, spontaneous blinking error 1 7011 Control B5a
Note:
Error codes 1, 6, or 18 are protection codes and in this case, 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.
2 Hfail Protection Horizontal Flyback protection / Horizontal Flyback /
3 SAA4978 PICNIC 7713 Feature Box B3a
4 Supply 5V 5V protection / +5V Supply B5a
5 Supply 8V 8V protection / +8V Supply B5a
6 Slow I2C bus blocked Spontaneous blinking error 6 / Slow I2C Blocked /
7 TDA9330 HOP High-end Output Processor 7301 Video Controller B4
8 TDA932x HIP High-end Input Processor 7323 Chroma IF IO B2
12 TDA9178 Topic 7302 Video Controller B4
13 UV1318/... Tuner protection 1T01 Tuner A8
14 MSPxxxx ITT sound processor 7651 Audio module B6a
16 FBX Feature Box Protection / +3V (Fbx) Supply B3
18 Fast I2C bus blocked Spontaneous blinking error 18 / Fast I2C Blocked /
19 TDA8444 Auto Scavem DAC 7500 Auto Scavem SC1
26 SAA4998 FEM 7760 +3V (Fbx) Supply B3b
27 T6TX5EF Eagle 7720 +3V (Fbx) Supply B3c
28 Black current loop Black current loop / Video Controller /
32 M29W400BT Flash Ram (EPG) 7012 EPG Memory B5a
35 T6TU5XB Columbus 7752 Video Controller B3d

5.6 The Blinking LED Procedure

5.6.1 Introduction

Via this procedure, you can make the contents of the error buffer visible via the front LED. This is especially useful for fault finding, when there is no picture.
When the SDM is entered, the front LED will show (blink) the contents of the error-buffer. Error-codes = 10 are shown as follows:
A long blink of 750 ms (which is an indication of the decimal digit),
A pause of 1.5 s,
"n" short blinks (where "n" = 1 - 9),
When all the error-codes are displayed, the sequence finishes with a LED blink of 3 s,
The sequence starts again.
Example: Error 12 9 6 0 0. After activation of the SDM, the red front LED will show:
1 long blink of 750 ms (which is an indication of the decimal digit) followed by a pause of 1.5 s,
2 short blinks followed by a pause of 3 s,
9 short blinks followed by a pause of 3 s,
6 short blinks followed by a pause of 3 s,
1 long blink of 3 s to finish the sequence,
The sequence starts again.
Note: If errors 1, 6 or 18 occur, the LED always gives the last occurred error even if the set is NOT in service mode.

5.6.2 How to Enter

Use one of the following methods:
Enter the SDM (only via soldering pads marked "SDM" on SSB). The blinking red front LED will show the entire contents of the error buffer (this works in "normal operation" mode and in "protection" mode).
Transmit the commands "MUTE" - "062500" - "OK" with a normal RC. The complete error buffer is shown. Take notice that it takes some seconds before the blinking led LED starts.

5.7 Protections

5.7.1 Introduction

EN 17EM5.3A P/M AA 5.
Transmit the commands "MUTE" - "06250x" - "OK" with a normal RC (where "x" is a number between 1 and 5). When x= 1 the last detected error is shown, x= 2 the second last
error, etc.... Take notice that it takes some seconds before
the blinking led LED starts.
"DIAGNOSE X" with the DST (where "x" is a number between 1 and 5). When x= 1 the last detected error is
shown, x= 2 the second last error, etc.... When x = 0 all
errors are shown.
This chassis has only one microprocessor (OTC), which remains active during Standby. This because power of the microprocessor and the attached memory chip set is coming from the 3V3 supply, which is derived from the 5V Standby­circuitry. Therefore, in both Power-on as in Standby mode, the microprocessor is connected to this power supply.
If a fault situation is detected, an error code will be generated and if necessary, the set is put in protection mode. The protection mode is indicated by the blinking of the front LED at a frequency of 3 Hz (or by a coded blinking in special cases). In some error cases however, the microprocessor does not put the set in the protection mode (this is the case with the ­hardware - loudspeaker protection of the audio amplifier).
The content of the error buffer can be read via the service menu (SAM), the blinking LED procedure or via DST/ComPair.
To get a quick diagnosis, this chassis has three service-modes implemented:
The Customer Service Mode (CSM).
The Service Default Mode (SDM). Start-up of the set in a predefined way.
The Service Alignment Mode (SAM). In this mode, items of the set can be adjusted via a menu.
You can enter both SDM and SAM modes via the 'service pads' on the SSB, via an RC-transmitter (DST or standard RC), or via ComPair. It is not possible to enter the SAM in "standby"; the TV has to be in "normal operation" mode.
The "Protection Diagram" shows the structure of the protection system. See diagram below.
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Service Modes, Error Codes, and Fault Finding
7301
HFB
EHT-info
Flash detect
XPR (43)
HOP
FLS (5)
HFB-XRAY-PROT
I2C
7001
I2C PROTECTIONS
HIP
HOP
PICNIC
TUNER
NVM
DNR
MSP
TOPIC
FBX PROTECTION
PICNIC 3V3
+8V_CON
+5V_CON
I2C
+8V SENSE (105)
+5V SENSE (106)
OTC
I2C
There are several types of protections:
•I
OTC related protections (via polling on I/O pins or via
HOP related protections (mainly for deflection items).
Hardware errors that are not sensed by the OTC (e.g.
All protections are explained below.

5.7.2 I2C Related Protections

In normal operation, some registers of the I refreshed every 200 ms. During this sequence, the I and the I An I short-circuited to ground, or to each other. An I occur, if the power supply of the IC is missing (e.g. FBX_PROT (error 16)).
Figure 5-3 Protection diagram
2
C related protections.
algorithms).
vertical flyback protection, bridge coil protection, E/W protection, arcing protection).
2
C ICs are checked.
2
C protection will take place if the SDA and SCL lines are
CL 16532044_024.eps
090501
2
C controlled ICs are
2
C busses
2
C error will also

5.7.3 OTC Related Protections

If a protection is detected at an OTC input, the OTC will start to scan all protection inputs every 200 ms for 5 times. If the protection on one of the inputs is still active after 1 s, the microprocessor will put the set in the protection mode. Before the scanning is started, a so-called "ESD refresh" is carried out. This is done, because the interrupt on one of the inputs is possibly caused either by a flash or by ESD. As a flash or ESD can influence IC settings, the HIP, MSP, 3D Comb (US only) and wireless module are initialised again, to ensure the normal picture and sound conditions of the set.
8 V and 5 V protection: The microprocessor senses the presence of the 8 V and 5 V (via the "+5V_CON" and "+8V_CON" lines). If one (or both) of these voltages is (are) not present, an error code is stored in the error buffer of the NVM, and the set is put in the protection mode.
of the inputs of the HOP, the relevant error bit in the HOP register is set to "high". If this error bit is still "high" after 1 s, the OTC will store the error code in the error buffer of the NVM and, depending on the relevancy of the error bit, the set will either go into the protection mode or not.
The following protections are implemented:
HFB (Horizontal Flyback): If the horizontal flyback is not present, this is detected via the HOP (HFB_X­RAY_PROT). One status bit is set to "high". The error code is stored in the error buffer and the set will go into the protection mode.
XPR (X-ray protection): If the HFB pulses are too low (level detection), the HOP will detect this via the XPR-bit. The error will be logged in the error buffer and the set will go into protection mode.
Note: Both errors will be logged as HFB-failure.

5.7.5 Hardware Related Protections

Due to the architecture ("hot" deflection), some protections cannot be sensed by the microprocessor. Three of these protections will lead to a protection on set level (Standby mode and blinking LED), while another will only lead to a circuit protection.
TV-set Protection
The following fault conditions will lead to a "complete" set protection:
BRIDGECOIL protection: This is sensed via the "EW" signal going to the base of TS7652 (via R3495 and D6499). In a normal situation, the voltage on C2498 (diagram A4) is high and TS7652 is conducting. When bridge coil 5422 (diagram A3) is short circuited, the voltage on C2498 changes to low, which will block TS7652. In this case, also TS7641 will block and the voltage on 2642 will rise until TS7443 is forced in conduction. The "SUP-ENABLE" signal (in normal operating condition -20 V) is shorted now to ground level, which will force the Main Power Supply to Standby mode.
ARC protection: If there are "open" connections (e.g. bad solder joints) in the high-energy deflection circuitry, this can lead to damaging effects (read: fire). For that reason, the E/ W current is sensed (via 3479//3480). If this current becomes too high, the "thyristor" circuit (TS7653 and TS7654) is triggered. TS7442 is switched "on" and TS7443 is forced into conduction. . The "SUP-ENABLE" signal is shorted now to ground level, which will force the Main Power Supply to Standby mode.
NON_VFB (No vertical Flyback) protection: If the frame stage generates no pulses, TS7641 will block. TS7443 is now switched "on", which will lead to Standby mode. Therefore, in normal operation condition, TS7641 and TS7652 are conducting, while TS7443 is blocked.
Circuit Protection
The following fault condition will lead to a "partly" set protection:
PROT1 (DC) protection: When a DC-voltage (positive or negative) is sensed on one of the loudspeaker outputs, the protection circuit (TS7704, 7705, 7706 and 7707 in diagram A6) will put the IC7700 in Standby mode (via tri­state input pin 6). For more details, see chapter "Circuit Descriptions".

5.7.4 HOP Related Protections

Every 200 ms, the status register of the HOP is read by the OTC (via the I
2
C bus). If a protection signal is detected on one
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EN 19EM5.3A P/M AA 5.

5.8 Repair tips

5.8.1 Miscellaneous

The relay you hear when you switch the set "on" (from Standby or via the mains switch), is from the degaussing circuitry. It is not used for switching the Power Supply (as done in the MG­chassis).
Take care not to touch the "hot" heatsink while disconnecting the SSB, despite the fact that the mains cord is out of the mains socket. There can still be an annoying rest-voltage on the heatsink for a short while. This, because the discharge resistors 3502 and 3503 (on the LSP between hot and cold part) are not stuffed for Europe. Instead, discharge resistors 3066 and 3057 on the Mains Switch panel are used, but because they are located before the Mains switch, they only discharge when this switch is "on". Advice: when you remove the SSB, disconnect the Mains cord, but keep the Mains Switch "on".
Do not try to measure on the SSB side, which is facing the 'hot' heatsink. This is dangerous. Most service test points are guided to the 'tuner' side and are indicated by the 'service' printing. Where the circuitry was too "crowded" for service printing, you can find the correct location on the "test point overviews" in this manual. A very large part of the LSP is "hot", such as:
The primary part of the Standby Supply.
The whole Main supply (except for the secondary Audio supply).
And the complete deflection circuitry (so notice that the deflection coil is hot!).

5.8.3 ComPair

5.8.4 Protections

5.8.2 Start-up Sequence

COLD
HOT
EHT-INFO
5
START/STOP
8V
I2C BUS
1
5V
CON
RESET
8V
CON
106 105
OTC
99 104
POR
3
POR 7445
Figure 5-4 Start-up circuitry
The start up sequence differs from other sets (e.g. MG-sets or EM2E-sets, but is same as in EM3E-set):
1. When the set is switched "on", the 5 and 8 V lines ("+5V_CON" and "+8V_CON") of the standby power supply are activated.
2. After the OTC senses them, the P will address the HOP via
2
C-bus, to start the drive [1].
the I
3. Via the "SUP-ENABLE" signal, the Main Supply is switched "on" and will deliver the V_BAT to the Line deflection stage [2].
4. EHT generation is now started.
17/39
STANDBY low 7131/41 closed high 7131/41 open
29
HOP
START/STOP
7141
7131
+11D
OUT
CUTOFF (from CRT panel)
5V
STBY
8V
SUPPLY
MAIN SUPPLY
SUP-ENABLE
Vbat
LINE DEFL. (BRIDGECOIL
-PROT) (ARC-PROT)
FRAME
DEFL
(NON-VFB)
220 VAC
PROT-
SENSING
CL16532044_023.eps
2
140501

5.8.5 Main Supply

5. The OTC will un-blank the picture.
6. When you switch "off" the set, this is done in a controlled way via the POR signal [3].
Note: Standby is not directly achieved via the Standby line of the microprocessor, but indirectly via the HOP circuitry.
This chassis does not have an IR transmitting LED (as in MG­sets). Therefore, a "Service" (ComPair) connector is implemented at the rear side of the set, which is directly accessible (as in A10-, EM2E-, EM3E and EM5E-sets). In addition to this, there is also a blinking LED procedure to show the contents of the error buffer.
When you use ComPair, you have the possibility to activate a "stepwise start-up" mode. With this mode, you can initiate the start-up sequence step by step. This also means that in certain steps, some protections are not activated. This is sometimes very convenient during repair.
Activating SDM via the "service pads" will overrule the processor-controlled protections, but not the hardware protections. This means, that the A/D-input protections (5 and 8 V) and the I (FBX) and of the Tuner are overruled. Caution: When doing this, the service technician must know what he is doing, as it could lead to damaging the set.
The "ARC"- and/or "BRIDGECOIL" protection are hardly ever triggered, however:
When you suspect the "ARC" protection, look for bad solder joints and smell. By interrupting resistor 3497, this protection is disabled (special attention needed!).
When you suspect the "BRIDGECOIL" protection, which can also be due to a too wide picture amplitude, shorten G and S of the E/W MOSFET 7480. This will disable the protection. You will now have minimal horizontal amplitude. Re-align the horizontal amplitude in the SAM menu and remove the G/S short of TS7480.
The simplest way is, to replace the components of the Main Supply with repair kit 3122 785 90310.
More detailed way:
1. Replace FET 7504 and zener 6505.
2. Remove the SSB panel.
3. Short B and E of TS7529, in order to put the Main Supply in "on"-mode (TS7529 is blocking then). Caution: To prevent that R3403 and TS7443 will be damaged, first disable the HW-protection of the deflection circuit. Therefore short circuit C2642 on the LSP (diagram A4).
4. Attach a load of 500 O to V_BAT capacitor C2515 (the supply can not work without a minimum load).
5. Use a variac, and slowly increase the V_MAINS. Measure over sensing resistors R3514//15, if a nice sawtooth voltage becomes available.
6. Also measure the V_BAT. This may never exceed +141 V. If it does, there is something wrong in the feedback circuitry (e.g. regulator 7506).
Note: Be careful when measuring on the gate of FET TS7504. This circuitry is very high ohmic and can easily be damaged (first connect ground to measuring equipment, than measure the gate).
2
C "not-acknowledging" info of the feature box
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Service Modes, Error Codes, and Fault Finding

5.8.6 Standby Supply

The simplest way is to replace the components of the Standby Supply with repair kit 3122 785 90460.

5.8.7 Line Deflection

The simplest way is to replace the components of the Line Deflection circuitry with repair kit 3122 785 90330.

5.8.8 Frame Deflection

Caution: When the Frame Deflection circuitry is suspected,
one must be careful. Because there is a DC-voltage on the frame deflection, the beam current could damage the CRT
neck, leading to a defective CRT.
To prevent this from happening, you must:
1. Interrupt the resistors 3403 and 3404 on the CRT panel (diagram F1), in order to remove the "filament" voltage from the tube (no beam current, so no chance of destroying the CRT).
2. Interrupt resistor 3403 on the LSP (diagram A4) to disable the "SUP-ENABLE" line.
3. Measure with a multi-meter, or better with a oscilloscope, the functionality of the Frame stage.
4. After you have found the cause, exchange the defective component (e.g. TDA8177), and re-solder the interrupted resistors.
Table 5-4 Repair Tips
Phenomenon Possible Cause Repair tip
No picture, no LED. Standby Supply defective. Measure circuitry (see diagram A2). Start at test-point A19.
No picture, no LED. Bad connection of SSB in SIMM-
No picture, LED blinking at 3 Hz. Set is in protection due to various
No picture, LED blinking with code 6-6-6 or 18-18-18.
No picture, LED blinking with code 1-1-1.
No picture, no sound. Set is making audible squeaking sound
No picture, no sound. Power LED works fine
No RC-reception. LED does not echo RC-commands.
Relay (degaussing) is not audible, when set is switched from 'off' or 'standby' to 'on'.
Picture is rotated. Rotation circuitry on diagram A5, or
Picture is continuously switching 'off' and 'on', showing heavy 'switch' spots (set does not go into protection).
Picture is not sharp. Focus is possibly mis-aligned or
Picture is not synchronised. The sync is derived in the HIP from
Picture is distorted. Check video-path in Service Default
No menu, no OSD. Probably a defective uP. Measure test points B61to B64 on diagram B5.
How to measure if soldering connections of a BGA are OK
How to measure on other IC's It is advisable to measure both on the pins itself and the solder pads on the PWB. This to find
connector.
causes. For error codes see error­code list.
No communication on slow I2C- or fast I2C-bus.
No communication on NVM- I2C bus to the uP.
Supply is possibly in hiccup-mode, which is audible via a squeaking supply transformer.
Supply does not work correctly. If e.g. V
uP circuitry or RC-receiver is defective.
uP is not working correctly.When pin 115 is low, the degaussing must be activated.
related supply to it, malfunctions.
200 V is missing on CRT panel. Probably a bad connection from LSP connector 1424 to CRT connector 1424 (diagram F), or an
SCAVEM-circuitry does not work correctly.
x-tal 1305 and/or 1308.
Mode.
When the Mains switch is 'on', this voltage must always be available
In case of a bad connection, it can happen that there is no picture, and that the Standby LED is not controllable. Re-place the SSB.
You have no picture, so:
- Read the error buffer via ComPair (error buffer is accessible when set is in protection, compare­file will guide you to this)
- Read the blinking LED information via standard remote command <mute>06250X<ok>
- Or you read the error code sequence via standard remote command <mute>062500<ok>.
When you have found the error, check the circuitry related to the supply voltage and I2C­communication or the circuitry that triggers the protection.
As processor cannot communicate with one of the 2 busses it the standby -led spontaneously starts blinking 6-6-6... or 18-18-18... If in the error buffer somewhere is an error 6 or 18, these will have the highest priority starting the mentioned blinking. Measure dependent of the error on the I2C-bus which device is loading the bus. (Use I2C -overview)
As the uP cannot communicate with the NVM I2C bus, it spontaneously starts blinking 1-1-1. Note: when there is no access to the NVM, a lot of picture setting can go wrong.
Possible causes:
- V
is shorted (caused by short circuited line transistor 7421), or
BAT
- Sound winding is shorted (amplifier is shortening the power supply lines), or
- D6514 is shorted (due to a too high V
Remove excessive load, to see what causes the failure, or check feedback circuit. See repair tip 'Main Power Supply' (supply needs a minimal load).
is only about 90 V, it is possible that the regulator IC (7506) is defective.
BAT
In case the set does react on a local keyboard operation, you must check the RC-receiver circuitry.
Check RESET-circuitry on diagram B5. Check the level on pin 115 when you switch the set 'on'. Signal must be low initially and go to high after approx. 12 s.
Measure test points on diagram A5.
interruption of the 200 V supply line (e.g. R3341 on circuit F is interrupted).
Re-align the 'focus' potmeter on the Line Output Transformer, or check the SCAVEM circuitry on the CRT-panel (diagram F). It is also possible that the DAF circuitry is defective (see diagram I). Check the Vdc values.
Maybe the crystals 1305 and/or 1308 are making a bad contact.
Investigate whether there is an error code present in the error buffer. In case there is one, check the I2C -bus and/or supply lines (see overview supply lines). Measure and check signal path Tuner-HIP-PICNIC-HOP-RGB amplifier.In case it is a geometry issue, check on diagram A4 opto-coupler 7482, Opamps 7440/7450 and the Frame circuitry alignments or a possible corrupted NVM (7011) on diagram B5.
For most BGA's the pins/balls are ESD protected via diodes to ground, it is possible to measure these diodes with a multi-meter. Overload means no or bad connection.
possible solder faults.
BAT
).
Block Diagrams, Testpoint Overviews, and Waveforms
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6. Block Diagrams, Testpoint Overviews, and Waveforms

EN 21EM5.3A P/M AA 6.

Wiring Diagram

TOP CONTROL PANEL
P
0346 3P
(COMPONENT VIEW)
F
TWEETER
BLUE BLUE
RIGHT
SPEAKER
CVBS (YELLOW)
SVHS
LEFT (WHITE)
RIGHT (RED)
HEADPHONE
O
1328
1326
1327
SIDE I/O PANEL
1936
11P
1955
3P
1440
11P
AUTO SCAVEM
1940
11P
8440
8955
3P
1681
B
SSB
(SMALL SIGNAL BOARD)
6P
1680
1000
SC
HD-JACK PANEL
N
1304
7P
8304
1304
7P
1680
8680
1104
5P6P
CRT PANEL
1434
1P
1940
11P
8346
8936
80P
CRT
SOCKET
8937
CENTRE
SPEAKER
BLACK
BLACK/
WHITE
RED
BLACK
1435
LSP(LARGE SIGNAL PANEL)
A
1146
5P
1947
5P
1946
9P
1945
3P
2P 2P
8951
1948
3P
8940
1943
3P compair interface
4P
0207
DW PANEL
F
(OPTIONAL)
TUNER
N.C.
N.C.
1937
1735
1951
10P
1955
1940
TUNER
4P
8946
5P
3P
11P
1620
3P
0236
3P
PAN E L
1205
80P
SSB
1483
1424
1936
1935
11P
0200
3P
7P
5P
1933
5P
1737
3P
1738
3P
3P
4P
1953
1499
0201
2P
8483
8737
10P
8338
1693
DEGAUSSING COIL
SCAVEM
COIL
CRT
FRAME
ROTATION
COIL
2P
3P
AQUADAG
CRT PANEL
5205
2P
1505
2P
1502
1417
1491
8417
2P
LOT
8424
8498
1625
3P 3P 3P
1424
7P
1498
2P
1492 1492
8625
5203
8492
EHT CRT
HORIZONTAL
I
DAF PANEL
1417 1418
2P 2P
1419
2P
1491
A (LOT)
8000
1497
1P
8418
8202
DC SHIFT
G
(OPTIONAL)
0317
2P
MAINS SWITCH PANEL
E
MAINS
SWITCH
02010202
2P2P 3P9P
8190
MAINS CORD
TWEETER
LEFT
SPEAKER
0241
(optional)
SUB
WOOFER
E_14600_061.eps
BROWN BROWN
161204
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Block Diagram Supply and Deflection

EN 22EM5.3A P/M AA 6.
SUPPLY DEFLECTION
MAINS SWITCH
E
PAN EL
MAIN SUPPLY
A1
5502
220V
0201
1031
or
2
1
1051
3
4
MAINS
SWITCH
1
2
0202
0202
1501
2
2
1
T5A
3509
1
V
5503 5504
5511 5516
MAINS
FILTER
6525 GBU4K
4
-
2
+
3
V-START
A1
1503
1
+
2.5A
2516
+375V
GND-STB
5517
STAND-BY SUPPLY
A2
6109
STARTUP
7100 7101 7105 7120
CONTROL
CIRCUIT
-20V
5101 5109
7102 STP3NB60
A11
3108 3118
-20V
G
A13
5102
2102
A12
5113
D
S
6103
A10
5104
5
4
3
2
1
5107
A15
5100
7103 OR
7104
65
7
8
10
1
2
3514
3520
3527
A16
5
4
3
1
2515
GND-STB
HOT
5506
COLD
A6
6
7 8
9
10
-20V
-20V
7504 STP5NB60FP
D
S
A3
3531
ACTIVATING
CIRCUIT
G
7529
A2
7502 7530
A4
7507
TCET1103
7506 TL431CZP
MAIN SUPPLY
CONTROL
CIRCUIT
324
1
3506
A5
1
3
2
VBATT ADJUSTMENT
3530
3510
3526
GND-SUPGND-STB
SUP-ENABLE
3507
HOT GROUND
3550
21
RP
0+
RS
3
1
1550 4
7501 7528
ACTIVATING
CIRCUIT
6110
A17
6113
5112
3161
6130
5111
5130
6111
5103
3113
6122
3124
3114
A7
65355507
+
2512
+
55096536 5513
A8
2511
+VBATT
8+
5515
3537
DEGAUSSING
3115
3116
+8V6-SWITCH 7131
D
G
CONTROL
+5V-SWITCH
7141
D
G
CONTROL
7132
5514
2
3
+5.2V_MP
VTUN
2118
A20
S
7133 7130
A21
S
7140
+
2542
+
2543
1502
2
DEG. COIL
1
HOT
COLD
B5
OTC
A8
+11V_STBY
A18
+11V
+8V6
2126
A19
+5.2V
+5.2V_MP
+5V
+8V6
STANDBY
B5
OTC
+16V+19V
AUDIO SUPPLY
GND-AUD
-16V-19V
AUDIO SUPPLY
COLD
HOT
LINE DEFLECTION
A3
+VBATT
HOT COLD
+11D
+5.2V
LINEDRIVE 1
B4
HOP
FRAME DEFLECTION
A4
E/W DRIVE
EW-DRIVE 1
B4
HOP
+8V6
3455
3456
HFB_X-RAY-PROT
B4
HOP
FRAMEDRIVE +
B4
HOP
B4
HOP FRAMEDRIVE -
COLD HOT
3660
7611
CURRENT SOURCE
5 6
3404
3459
A33
A34
3658
+8V6
3640
+
6456
A37
2403
7440-B
7
3419
7440-A
3 2
A35
3657
6627 6626 6625
3631
7612
3457
7441
7455
1
3642
A39
5 6
+8Vb
3632
6408
6407
341434062492
3654
7450-B
3 2
3415
3416
A22
7409
A23
3404
1693
6615
7
A38
FRAME DEFLECTION
2457
+8Vb
7614
7450-A
1
A36
TV
3638
3643
3630
3634
DC-SHIFT
G
A24
7408
COLD HOT
E/W - DRIVE
TO 1693
I
DAF
1
2
1 5
3641
+13V-LOT
7620
TDA8177
7
1
A40
5400
5410
5621
3623
DC-
SHIFT
CIRCUIT
A25
94 61
7482
7487
6
10
6620
OP. AMP
-15V-LOT
SUP-ENABLE
5
4
(OPTIONAL)
1430
400 mA
+141V
5401
5426
A26
7421 BU2520DX
+8V-S +141V
3492
3484
A45
7442, 7654 7653
PROTECTION
CIRCUIT
7641 7443 7652
PROTECTION
CIRCUIT
2622 +
62
FLYBACK
GENERATOR
THERMAL
PROTECTION
4
3493
EW
ARC-PROT
7486
6622
3
3488
3481
3483
A42
5
6491
A43
A44
OUTPUT CIRCUIT
A46
5620
3620
317
or
318
1 2
LINE
+
EW
CORR.
7480
STP3NB60
G
3479
6499
SUP-ENABLE
-15V_LOT
3647
3627
6619
1625
1419
1
2
1417
1
2
TO
A4
E/W
DRIVE
A28
2443
5461
A30
1
1
+11D
7445
A31
A32
1497
1693
1492
1
FILAMENT
6460
2462
2464
34993498
5
8
5430
LOT
5
1
2430
5421
EW
6480
5467
A47
D
S
A48
3480
EW
1 2 3
VERT. DEFL. COIL
3431
2431
3
4
6
HOT COLD
+13V-LOT
3635
A50
1
7613
TL431
A5
OTC
B5
TILT
3636
3
3637
2
+11D +8Vb
ROTATING CIRCUITRY
+11V_ROT
3686
7681 7682
SWITCH OFF
CIRCUIT
IN STAND-BY
5463
5465
3449
EHT
FOCUS A
FOCUS B
VG2
10
8
11
9
12
125mA
3450 3451
3400
3463
3462
3465
3464
A49
1601
3685
DYNAMIC FOCUS
TO
F1
CRT
+11D
6400
3454
FILAMENT
3460
3461
6463
6462
6465
6464
+8V-S
7680
TDA7052
2 3
3684
6080
EHT-INFO
1
+Vp
6
DAF
I
5800
HOR. DAF
CIRCUIT
+11D
VER. DAF
CIRCUIT
3
2
FILA-
MENT
HFB_X-RAY-PROT.
EHT-INFO
A8
TUNER, SIM
A29
+11D
PORPOR
POR FLASH
+13V - LOT
-15V - LOT
+13V LOT
-12V8
1620
1
ROTATION
2
DEFLECTION
3
COIL
E_14600_062.eps
1491
1
PULSES
11V
B4
HOP
A6
AUDI O
B5
OTC
161204
1418
HOT
COLD
1424
COLD HOT
1495
HOT COLD
1
2
1
2
3
4
5
6
7
1
2
3
4
LINE DEFLECTION COIL
TO
1224
F
CRT
TO PAN E L ON CRT NECK
Block Diagrams, Testpoint Overviews, and Waveforms
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Testpoint Overview LSP and CRT Panel

LSP COPPER TRACK SIDE
A
B
C
D
E
12345678910
S
154
8
7680
ROTATION
A14
A18
A17
A15 A16
A13
A20
D
STANDBY
TRAFO
5100
A10
A11
G
7131 +8V6
106
15
D
7102
STANDBY
SUPPLY
G
A19
A21
S
G
7141
D
A7
+5V
A8
MAINS
106
TRAFO
AUDIO
15
5506
A6
A4
A5
A12
S
A2
D
S
G
7504
A3
MAIN
SUPPLY
A1
F
A71
G
MAIN
SWITCH
A1
12345678910
PM3394B
A2
PM3394B
A3
PM3394B
A4
PM3394B
A5
PM3394B
50V / div DC
2us / div
A18
PM3394B
50V / div DC
5us / div
A19
PM3394B
50V / div DC
5us / div
A22
PM3394B
50V / div DC
5us / div
A23
PM3394B
5V / div DC
10us / div
A24
PM3394B
5V / div DC
5us / div
A41
PM3394B
1V / div DC
5us / div
A42
PM3394B
1V / div DC
10us / div
A43
PM3394B
200mV / div DC
10us / div
A44
PM3394B
5V / div DC
10us / div
A45
PM3394B
200mV / div DC
2ms / div
A70
PM3394B
20V / div DC
2ms / div
F4
10V / div DC
2ms / div
F5
200mV / div DC
2ms / div
F6
1V / div DC
10µs / div
F7
2V / div DC
50us / div
50V / div DC
10µs / div
50V / div DC
10µs / div
50V / div DC
10µs / div
50V / div DC
10µs / div
A59
125
7700
L+R
A56
A58
7702
AUDIO
C+SUB
G
A46
7480
E/W
A6
PM3394B
20V / div DC
10us / div
A25
PM3394B
2V / div DC
10us / div
A46
PM3394B
500mV / div DC
10µs / div
F8
50V / div DC
10µs / div
A57
80
A67
A64
125
D
A66
A63
A62
A68
A26
A45
S
A48
A47
COLDHOTCOLD HOT
A10
PM3394B
50V / div DC
5us / div
A33
PM3394B
500mV / div DC
2ms / div
A47
PM3394B
50V / div DC
10µs / div
F9
50V / div DC
10µs / div
SIM CON.
A61
A23
A60
7421 LINE
A11
5V / div DC
5us / div
A34
500mV / div DC
2ms / div
A48
500mV / div DC
10µs / div
F15
10 V / div DC
10µs / div
EN 23EM5.3A P/M AA 6.
A33
A35
A34
A22
A24
A25 A50
ECB
6
58 49 3
10
2
11
1
12
LOT
PM3394B
PM3394B
PM3394B
A12
2V / div DC
A35
500mV / div DC
A56
200mV / div DC
SC3
1 V / div DC
A49
A28
PM3394B
5us / div
2ms / div
2ms / div
10µs / div
PM3394B
A68
A38
A37
A32
FRAME
1
A31
A41
7620
A57
A69
5
TUNER
A70
A36
A39
A42
A40
1
A44
A43
A29
A13
PM3394B
5V / div DC
10us / div
A36
PM3394B
200mV / div DC
10us / div
PM3394B
20V / div AC
2us / div
SC4
2 V / div DC
10µs / div
A30
A
B
C
D
E
F
G
A14
PM3394B
200mV / div DC
10us / div
A37
PM3394B
500mV / div DC
2ms / div
A58
200mV / div DC
2ms / div
SC5
2 V / div DC
10µs / div
A1 A3 A4 A5 A6 A7 A8 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19 A20 A21 A22 A23 A24 A25 A26 A28 A29 A30 A31 A32 A33 A34 A35 A36 A37 A38 A39 A40 A41 A42 A43 A44 A45 A46 A47 A48 A49 A50 A56 A57
E4
A58
D4
A59
C4
A60
C4
A61
C5
A62
A4
A63
B4
A64
C2
A66
C2
A67
D3
A70
D1
A71
D1
A88 C1 C1 B1 A1 A3 A2 A3 D8 D8 D8 D8 D7 G9 G10 G10 E9 E9 C8 D9 C9 D10 D9 C9 D10 E10 E10 E10 F10 E10 D7 E6 E7 E7 C9 D9 C6 B6
A15
500mV / div DC
5ms / div
A38
200mV / div DC
10us / div
A59
10V / div DC
2us / div
SC6
2 V / div DC
10µs / div
PM3394B
PM3394B
C6 B5 D7 C8 D7 D7 C7 C7 C7 A10 F1 A9
SC23
2 V / div DC
100µs / div
A16
5V / div DC
5ms / div
A39
PM3394B
2V / div DC
10us / div
A68
PM3394B
200mV / div DC
5us / div
SC7
2 V / div DC
10µs / div
CRT PANEL (COPPER TRACK SIDE)
1940
1
11
9
8
F9
7
F8
6
7340 7350 7330
F5 F4 F6
888
10
11
F7
12
5
CRT
SOCKET
AUTO SCAVEM PANEL (COPPER TRACK SIDE)
SC10
1 V / div DC
10µs / div
SC24
2 V / div DC
100µs / div
16
A17
PM3394B
1940
SC7
7022
B
E
1
SC23
SC8
7006
20V / div DC
5us / div
A40
PM3394B
200mV / div DC
2ms / div
A69
PM3394B
2V / div DC
50us / div
SC8
2 V / div DC
10µs / div
9
SC3
SC10
7500
34
SC24
7026
B
E
EB
C
7012
SC4
C
111
F15
7042
B
C
E
9
8
C
C
BE
B
SC5
E
E_14600_052.eps
1424
1
7
SC6
7008
C
131204
Block Diagrams, Testpoint Overviews, and Waveforms
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Block Diagram Video

VIDEO
TUNER
A8
SIMCONNECTOR
1200 UV1318S
CVBS-TER-OUT
+5VT
7
TUNER
3201
3200
9
3
N.C.
6200
15114
3250
1205 1000
A2
VTUN
IF-TER
A68
AGC
SDA-S
SCL-S
A11
A11 A11
A11 A11
A11
CVBS-SC1-AV1-IN
Y_CVBS-SC2_AV2-IN C-SC2-SVHS-IN
Y-CVBS-FRONT-IN C-FRONT-IN
CVBS-SC2-MON-OUT
A11 A11 A11 N.C.
SC1-R-IN_V-IN SC1-G-IN_Y-IN SC1-B-IN_U-IN FBL-SC1-IN
11
13
15
10
6 7
63 64
9
3 2 1 4
B1
IF,IO
B2
VIDEOPOCESSING
AGC
MONITOR
B5
CVBS-SC1-AV1-IN
Y-CVBS-SC2-AV2-IN C-SC2-SVHS-IN
Y-CVBS-FRONT-IN C-FRONT-IN
CVBS-SC2-MON-OUT
R-SC1-IN_V-IN G-SC1-IN_Y-IN B-SC1-IN_U-IN FBL-SC1-IN
5403
7402
40,4
SAW FILTER
VIDEO
VIF1 VIF2
1410 1408
SAW FILTER
AUDIO
SIF2 SIF1
1409
1411 7410
7411
EF
7323 TDA9321H
2
PLL
3
DEM
62
TUNER AGC
QSS
64
MIXER
63
AM
DEMO
SOUND-OUTPUT
CVBS-TER-OUT
1406 1407
SOUND
FILTER
I6
V1 V1
10 12 13 14
GROUP
DELAY
COR.
PSS-AM
5
QSS-AM
B5
SDA-F
SCL-F
7322
EF
HIP
SEE BLOCK DIAGRAM AUDIO
3377
3376
TUNER
A11
A8
AV2
VIDEO
IN
AV1
VIDEO
IN
SIMM-CONNECTOR
SC2-CVBS_MON-OUT
Y_CVBS-SC2_AV2-IN
34
SVHS
2C1
1901
1900
F
H
G
I
7993,7992
7991,7990
1900
7995,7994
AV2
L
VIDEO
OUT
Y_CVBS-SC2_AV2-IN
CVBS-SC1_AV1-IN
C-SC2_SVHS-IN
SC1-G-IN_Y-IN
SC1-B-IN_U-IN
SC1-R_V-IN
INPUTS/OUTPUTS
N2
JACK-HIGH DEFINITION INTERFACE
1994
A
Pr2-in
AV4
VIDEO
AV3
VIDEO
IN
IN
A8
A8
A8
A8
A8
A8
C
Y2-in
B
Pb2-in
1993
A
Pr1-in
C
Y1-in
B
Pb1-in
1990
1
R-IN
2
B-IN
10
15
5
3
G-IN
13
1
H-IN
6
11
14
V-IN
SIDE I/O
O
Y
C
34
SVHS
1328
251
CVBS
1326
1936
22 44 77
TUNER
A8
SIMCONNECTOR
1936
Y-CVBS-FRONT-IN
C-FRONT-IN
N.C.
7901
BA7657F 1 7
3 9
5 11
B5
CVBS-TXT
OTC
7320
EF
26 29 28
VIDEO
SWITCH
+
CONTROL
16
20 21
23 24
32
34
47
46
MATRIX
N4
JACK-HIGH DEFINITION INTERFACE
PR
21
19
PB
15
SYNC SLICER
N3
JACK-HIGH DEFINITION INTERFACE
Y
Y
PROC.
C
PROC.
SYNC
SEPAR.
CVBS PIP
7451
7453
7453
7700 LM1881M
2
SEPARATOR
Y
C
R
SCART1
36 37 38 39
EF
EF
EF
H/V
GB
Y
Y/U/V
U
SWITCH
V
UU
VY V
DECODER
PAL
NTSC
SECAM
V-SYNC
PROC.
H-SYNC
PROC.
V
UY
RGB
MATRIX
RGB
41 42 43 40
7400-A
7450-A
7400-B
7450-B
7400-C
7450-C
7750 74HCT4538D
14
H/V
SEPARATOR
11
3
7404
49 50 51
61
60
32
(N.C.)
1305
54
4.43MHz
1308
57
3.57MHz
SCART2
CONTROL
N1
JACK-HIGH DEFINITION INTERFACE
RA
RA
RN
BA
RN
BN
GA
BA
GN
FBLYPbPr
BN
GA
GN
H-770-2
6
H-770-3
5
H
V-770
V
+8VP
F404
F405
F406
F407
F408
7107
BA7657F 1 7
3 9
5 11
5
2 4
Y50
U50
V50
VA50
HA50
COLUMBUS
B3D
7753 MSN56V16160F-7TS
SDRAM
21
19
15
7102 74HC4052D
AUDIO
B6
DEMODULATOR
9609
9608
9607
COL_SD
R-MATRIX
G-MATRIX
B-MATRIX
FBL_RGB
7105
7108
EN 24EM5.3A P/M AA 6.
Y-PIP+MAIN-IN
U-PIP+MAIN-IN
V-PIP+MAIN-IN
7752 T6TU5XB
R
G
B
EF
EF
COLUMBUS
MEMORY
INTERFACE
SWAN
3D COMB
NOICE REDUCT
656
ENCOD
MUX
656
DECOD
MUX
7101 BA7657F
1
21
7
3
19
9
5
15
11
14
B3A
MUX
N2
R-OUT
G-OUT
B-OUT
FBL
H-OUT
V-OUT
AUDIO DEMODULATOR
3713
3714
3715
UVB
UVA
1304
1
2
3
5
5
6
F8
F7
B1
1000 1205
B5A
1483
1 2 3
8
6
11
TUNER
A8
SIMM CONNECTOR
32
33
25
24
23
21
PROTECTION
31
29
28
26
B5B
7019 7020
ONE
SHOT
1ms
+8V
HFB-X-RAY-PROT
EHT-INFO
CUTOFF
6401 6402
CIRCUIT
TO BLOCK DIAGRAM
A4
DEFLECTION
ANTI-MOIRE
2064
B5
PWM-ANTIMOIRE
SCAVEM COIL
HOT
COLD
VG1
VG2
FG-A
1434
SIN
FROM
LOT
LINE
DEFL.
E_14600_063.eps
R-CRT
G-CRT
B-CRT
7017 7018
FG-B
A3
FLIP
FLOP
EHT
3367
CRT
3032
2063
161204
1940
2
4
7
8
9
11
HOP
B4
FROM
BLOCK
DIAGRAM
Y/U/V
MATRIX
2120
HD100
FBL_2FH
4
7500 7501
7503 7504
7506 7507
RGB
HOP
PH1-2
91413
VD
6
5
SCAVEM
PROC.
EF
EF
EF
+200A
VSVM
'CONROL'
B5
R-TXT
G-TXT
35 36 37 38
RGB
INSERTION
OUTPUT
AMPL.
CATHODE
CALIBR.
RAMP
GEN
STARISTOP
H-DRIVE
29
3510
3520
3530
CONTROL
B-TXT
FBL-TXT
R
G
B
E/W
DRIVE
FRAME
5
22
+200V
7330 TDA6118JF
VIDEO
OUTPUT
AMPLIFIER
7340
VIDEO
OUTPUT
AMPLIFIER
7350
VIDEO
OUTPUT
AMPLIFIER
7303
7361 7362
B4 B4
43
40
41
42
44
3
4
2 1
8
3340
V28
3341
V29
3342
V30
F20
F18
3367
F19
L13
7310 7311
PULSE
FORMER
F6
F5
F4
7308
7309
7319
FRAMEDRIVE-
FRAMEDRIVE+
3368
530us
POR_FLASH
5300
R
3350
3351
G
3510
B
EHT-INFO
R-CRT
G-CRT
B-CRT
CUTOFF
EW-DRIVE
LINEDRIVE1
ANTI-MOIRE
VSYNC
EHT-INFO
TILT
POR
SC3
3340
3339
3510
7711
64K
M27C512
PROM
7713
YB-UVB
YA- UVA
B3B
2740
F162
2741
F163
2742
F164
3726
3727
7714 MS81V04160
FALCONIC
SAA4978H
23
25
3x
ADC
26
29
28
BUS B
BUS A
BUS C BUS D
DA
FIELD
MEMORY
1
MF
BUS A
FALCONIC
EMBEDDED
MEMORY
AUTOSCAVEM
SC1
1955
TO 1955
1
A8
2
LSP
1940
1 2 3 4
6 7 8
9 10 11
PICNIC
BACK END
HISTOGRAM
REDUCTION
FRONT
END
7760 SAA4998H/V1
BUS F
BUS G
SDA-S
SCL-S
+11V
+8V6
7736
EF
7735
EF
7734
EF
3730
YB
YA
LATCH
PEAKING
MUX
MID END
NOICE
TBC/SRC
MUX
B3C
HFB_X_RAY_PROT
EHT-INFO
R-CRT G-CRT B-CRT
CUT_OFF
7712
74HC573D
AD
3x
DAC
EAGLE
YF - UVF
YG - UVG
7719 MSN56V16160F-6TS
DRAM
7500 TDA8444T
3 4
EAG_SD
I/O
EXP.
R
G
B
Y_EAGLE_E
U_EAGLE_E
V_EAGLE_E
7720 T6TX5EF
EAGLE
1C
6x
SCAVEM
PROC.
9004 9005 9006
VD_E
HD_E
3x
DAC
7500 7000-7042
OUTPUT
FILTER
3721
7703
55
64
OUTPUT
FILTER
71
27
7717
26
SC10
HFB_X_RAY_PROT
EHT_INFO
SVM
+8V+12V
R-DL G-DL B-DL
CUT-OFF
SEE BLOCK DIAGRAM DEFLECTION
3782
3782
F105
F104
7728
7729
7730
3782
Y100
F100
U100
F101
V100
F102
VD100
HD100
+8V_CON
1440
1 2 3 4
5 6 7 8 9
10 11
FROM
1424
OF
A3
(LINE
DEFL.)
Y_EAGLE_E
U_EAGLE_E
V_EAGLE_E
+3V3EA
VD_E
HD_E
+2V5ED
F2
F1
1940
1 2 3 4
5 6 7 8 9
10 11
1424
1
2
3
4
5
6
7
F330
F331
F332
7304
CRT AUTOSCAVEM
CRT PANEL
N.C. HFB_X-RAY_PROT
EHT-INFO
Y-SCAVEM
+8V
R-CRT G-CRT B-CRT
CUTOFF
Filament pulses
HFB_X-RAY_PROT
EHT-INFO
N.C.
200V
F15
F359
VD
L12
HD100
SDA-F
SCL-F
2323
2431
2321
R-2FH G-2FH B-2FH FBL_2FH
3363
3331
3321
3320
1424
+8V
3417
5309
5310
7301 TDA9330H
28
27
26
YUV
30
RGB
31
YUV
32
MATRIX
33
23
24
PH1-1
11
10
1301
12MHz
HFB-X-RAY-PROT
B1
HFB
B5
DYN-FASE-COR.
B1
R-2FH
G-2FH
2
1
3341
3301
B-2FH
3
3300
Block Diagrams, Testpoint Overviews, and Waveforms
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Block Diagram Video (For Dual Window Versions)

VIDEO
TUNER
A8
SIMCONNECTOR
CVBS-TER-OUT
N.C.
+5VT
1200
3
7
TEDH9
TUNER
C2
3201
3200
SDA-S
SCL-S
1205 1000
A2
VTUN
6200
9
IF-TER
A68
15114
AGC
3250
CVBS-SC1-AV1-IN
A11
Y_CVBS-SC2_AV2-IN
A11
C-SC2-SVHS-IN
A11
Y-CVBS-FRONT-IN
A11
C-FRONT-IN
A11
CVBS-SC2-MON-OUT
A11
11
13
15
10
6 7
63 64
9
B1
IF,IO
B2
VIDEOPOCESSING
AGC
MONITOR
B5
CVBS-SC1-AV1-IN
Y-CVBS-SC2-AV2-IN C-SC2-SVHS-IN
Y-CVBS-FRONT-IN C-FRONT-IN
CVBS-SC2-MON-OUT
7402
5403
40,4
SAW FILTER
VIDEO
VIF1 VIF2
1410 1408
SAW FILTER
AUDIO
SIF2 SIF1
1409
1411 7410
7411
EF
7323 TDA9321H
2
PLL
3
DEM
62
TUNER AGC
QSS
64
MIXER
63
AM
DEMO
SOUND-OUTPUT
CVBS-TER-OUT 1406 1407
SOUND FILTER
I6
V1 V1
10 12 13 14
GROUP
DELAY
COR.
PSS-AM
5
QSS-AM
B5
SDA-F
SCL-F
7322
EF
HIP
SEE BLOCK DIAGRAM AUDIO
3377
3376
B5
OTC
7320
EF
16
20 21
23 24
32
N.C.
34
47
46
SC1-R-IN_V-IN
A11
SC1-G-IN_Y-IN
A11 A11
N.C.
SC1-B-IN_Y-IN
A11
SC1-G-IN_Y-IN
A11
SC1-R_V-IN
A11
A11
A11
Y-CVBS-SC2-AV2-IN
A11
A11
A8
SC1-B-IN_U-IN FBL-SC1-IN
1933
C-FRONT-IN
Y-CVBS-FRONT-IN
CVBS-SC1-AV1-IN
C-SC2-SVHS-IN
TUNER SIMM-CONNECTOR
SC2-CVBS_MON-OUT
1
2
3
C2
TUNER PAN EL
7201 UV1316/A
1953
11
33
1935
11
33
55
+5VS
5262
TUNER
3267
SDA
C3
0236
0200
7
9
6
15114
3268
F1
SCL
I/O PROCESSING
Y-CVBS-FRONT-IN
CVBS-SC1-AV1-IN
Y-CVBS-SC2-AV2-IN
1900
L
AV2
IN
AV1
IN
SIDE I/O
SVHS
1328
CVBS
1326
2C1
1900
F
H
G
I
251
Y_CVBS-SC2_AV2-IN
34
SVHS
1901
34
7993,7992
7991,7990
Y
C
7995,7994
1936
22 44
A8
1
936
VIDEO
VIDEO
O
3 2 1 4
C4
+33V
2269
IF-TER
F2
AGC
3264
C-FRONT-IN
C-SC2-SVHS-IN
AV2
VIDEO
OUT
C-SC2_SVHS-IN
Y_CVBS-SC2_AV2-IN
SC1-G-IN_Y-IN
SC1-B-IN_U-IN
SC1-R_V-IN
CVBS-SC1_AV1-IN
TUNER SIMCONNECTOR
Y-CVBS-FRONT-IN
C-FRONT-IN
R-SC1-IN_V-IN G-SC1-IN_Y-IN B-SC1-IN_U-IN FBL-SC1-IN
IF VIDEO SYNC
2351
1
F3
12 13
1 2
5 3
1352
3316
7401 HEF4053BT
A8
A8
A8
A8
A8
A8
7301-A TDA8889H
F5
BOCMA
1
5
PLL
VIDEO
2
4
DEM
7
AGC
14
11
15
SEL-MAIN-FRNT-RR
10
4
SEL-MAIN-RIR2
9
INPUTS/OUTPUTS
N2
JACK-HIGH DEFINITION INTERFACE
AV4
VIDEO
IN
AV3
VIDEO
IN
SOUND TRAPS
PLL
AUDIO
DEM
10
5
1
+8VS
7305
3372
PIP-AUDIO
B6
+8VS
7411
C-PIP-IN
MAIN-CVBS-EXT-IN
1333
3
7901
BA7657F 1 7
3 9
5 11
1
21
19
15
16
VIDEO AMPL.
8
+8VS
7412
1994
A
Pr2-in
C
Y2-in
B
Pb2-in
1993
A
Pr1-in
C
Y1-in
B
Pb1-in
1990
1
R-IN
2
B-IN
15
3
G-IN
13
H-IN
6
11
14
V-IN
CVBS-TXT
26 29 28
Y
Y
PROC.
VIDEO
SWITCH
+
CONTROL
C
C
PROC.
SYNC
SEPAR.
CVBS PIP
GB
R
SCART1
36 37 38 39
7301-B TDA8889H
2301
24
7331
2306
20
2335
29
7301-C TDA8889H
BOCMA
SYNC
SEPERATOR
MATRIX
N4
JACK-HIGH DEFINITION INTERFACE
7451
EF
PR
7453
EF
Y
7453
EF
PB
SYNC SLICER
N3
JACK-HIGH DEFINITION INTERFACE
7700 LM1881M
H/V
2
SEPARATOR
Y
Y/U/V
U
SWITCH
V
UU
VY V
DECODER
PAL
NTSC
SECAM
V-SY NC PROC.
H-SYNC PROC.
V
UY
RGB
MATRIX
RGB
41 42 43 40
LUM
DELAY
BOCMA
PAL/NTSC/SECAM
DEMODULATOT
51 52
1327
12MHz
VCO
+
CONTROL
57
7400-A
7450-A
7400-B
7450-B
7400-C
7450-C
7750 74HCT4538D
14
H/V
SEPARATOR
11
3
+8VP
7404
49 50 51
VA50
61
HA50
60
32
(N.C.)
1305
54
4.43MHz
1308
57
3.57MHz
SCART2
C3
0207
1
2
3
BASE BAND
DELAY
49
HORIZONTAL
OUTPUT
SANDCASTLE
CONTROL
N1
JACK-HIGH DEFINITION INTERFACE
RA
RA
RN
BA
RN
BN
GA
BA
GN
FBLYPbPr
BN
GA
GN
H-770-2
6
H-770-3
5
H
V-77 0
V
EN 25EM5.3A P/M AA 6.
1434
FROM
TUNER
B1
A8
SIMM CONNECTOR
1000 1205
32
HFB-X-RAY-PROT
33
25
24
23
21
6401 6402
PROTECTION
CIRCUIT
31
29
A4
28
26
ANTI-MOIRE
B5B
7019 7020
B5A
FG-A
A3
LOT
LINE
DEFL.
FG-B
EHT
ONE
SHOT
1ms
PWM-ANTIMOIRE
CRT
2064
B5
EHT-INFO
R-CRT
G-CRT
B-CRT
CUTOFF
TO BLOCK DIAGRAM DEFLECTION
7017 7018
FLIP FLOP
3367
E_14600_080.eps
1940
2
4
7
8
9
11
3032
2063
131204
AUDIO
B6
DEMODULATOR
DW PANEL
C1
7803
1682 0205
11
Y50
F404
33
U50
F405
V50
44
F406
TUNER
A8
SIM CONN.
1948
1681
11
33
YCVI
B
G
R
43
42
41
F13
40
Y
Y
RGB
Y/U/V
MATRIX
F10
U
45
U
RGB2
F11
INPUT
V
V
46
7385 7386
SANDCASTLE
56
7808
3807
7809
3809
1937
66
55
Y
U
V
VFB
HFB­SANDCASTLE
SY
SU
SV
SV-SYNC
EF
EF
C3
0201
Y
U
V
F407
F408
I/O PROCESS.
HFB­SANDCASTLE
VFB
+5VS
7828
7810
7807
7895 7824
PULS
FORMER
+5VS
7806
7805
7892-7894
PULS
FORMER
MM1389XFBE
1
DY
16
14
DU
11
8
DV
9
7801 SAB9083H
2832
3839
98
2814
3811
2
2846
3846
100
70
7871 7874
HA
7876
94
2831
3831
83
2828
3828
79
2829
3829
81
3827
72
3834
87
0205
66
3
88
5
99
6
MUPPET
1682
AUDIO
B3A
DEMODULATOR
7711
64K
M27C512
PROM
7712
74HC573D
PICNIC
BACK END
PEAKING
MID END
HISTOGRAM
NOICE
REDUCTION
TBC/SRC
FRONT
END
BUS C BUS D
DA
1
MF
7760 SAA4998H/V1
BUS F
BUS G
MUX
MUX
LATCH
B3C
AD
3x
DAC
BUS B
BUS A
EAGLE
YF - UVF
YG - UVG
7719 MSN56V16160F-6TS
DRAM
EAG_SD
YB-UVB
YA- UVA
Y_EAGLE_E
U_EAGLE_E
V_EAGLE_E
COLUMBUS
B3D
7752 T6TU5XB
COLUMBUS
7720 T6TX5EF
DAC
EAGLE
1C
F100
OUTPUT
FILTER
F101
F102
F105
3721
VD_E
7703
HD_E
3x
F104
7753 MSN56V16160F
SDRAM
COL_SD
+8V_CON
7728
55
7729
64
OUTPUT
FILTER
7730
71
3782
3782
27
7717
26
3782
Y-PIP+MAIN-IN U-PIP+MAIN-IN V-PIP+MAIN-IN
7736
3713
7735
3714
7734
3715
3730
2867
DY
3812
8
F22
2864
DV
3816
10
F24
2866
DU
3818
12
F23
7832
74
SDA
HA
3854
73
SCL
EF
EF
EF
2740
2741
B3B
23
F162
25
F163
2742
26
F164
3726
29
3727
28
7714 MS81V04160
FALC ON IC
EMBEDDED
7713 SAA4978H
3x
ADC
FIELD
MEMORY
BUS A
FALCONIC
MEMORY
Y100
U100
V100
VD100
HD100
Y_EAGLE_E
U_EAGLE_E
V_EAGLE_E
+3V3EA
+2V5ED
VD_E
HD_E
HOP
B4
FROM
BLOCK DIAGRAM 'CONROL'
CONTROL
B5
R-TXT
G-TXT
B-TXT
FBL-TXT
7301 TDA9330H
2323
28
F330
2431
27
F331
2321
26
F359
VD
L12
HD100
SDA-F
SCL-F
R-2FH G-2FH B-2FH
FBL_2FH
3363
3331
3321
3320
1424
YUV
30
RGB
31
YUV
32
MATRIX
33
23
24
PH1-1
11
10
1301
12MHz
HFB-X-RAY-PROT
B1
HFB
B5
DYN- FAS E- CO R.
B1
R-2FH
G-2FH
2
1
B-2FHVDHD100
3
F332
7304
MATRIX
2120
FBL_2FH
4
Y/U/V
RGB
HOP
PH1-2
91413
6
5
35 36 37 38
RGB
INSERTION
OUTPUT
AMPL.
CATHODE
CALIBR.
RAMP GEN
STARISTOP
H-DRIVE
29
E/W
DRIVE
FRAME
22
B4 B4
43
EHT-INFO
7308
3340
40
R
41
G
42
B
44
3
4
2 1
8
5
7303
7361 7362
V28
3341
V29
3342
V30
F20
F18
3367
F19
L13
7310 7311
FORMER
7309
7319
FRAMEDRIVE-
FRAMEDRIVE+
3368
PULSE
530us
POR_FLASH
R-CRT
G-CRT
B-CRT
CUTOFF
EW-DRIVE
LINEDRIVE1
ANTI-MOIRE
VSYNC
EHT-INFO
TILT
POR
N2
7107
BA7657F 1 7
3 9
5 11
7102 74HC4052D
5
2
4
AUTOSCAVEM
SC1
7500
1955
TO 1955
1
SDA-S
A8
2
SCL-S
7101
R-MATRIX
G-MATRIX
B-MATRIX
FBL_RGB
7105
7108
BA7657F 1 7
R
3
G
9
5
B
11
EF
EF
21
19
15
1304
1
21
R-OUT
2
G-OUT
19
3
B-OUT
15
5
FBL
14
5
H-OUT
6
V-OUT
LSP
1940
+11V
1
HFB_X_RAY_PROT
2 3
EHT-INFO
4
6
+8V6
R-CRT
7
G-CRT
8
B-CRT
9
10
CUT_OFF
11
TDA8444T
3
I/O
4
EXP.
R
6x
7500 7000-7042
SC10
SCAVEM
G
PROC.
B
HFB_X_RAY_PROT
EHT_INFO
SVM
9004 9005 9006
+8V+12V
R-DL
G-DL
B-DL
CUT-OFF
SEE BLOCK DIAGRAM DEFLECTION
CRT AUTOSCAVEM
F2
CRT PANEL
F1
1440
1940
1
1 2 3 4 5 6 7 8
9 10 11
1424
1
2
3
HFB_X-RAY_PROT
4
5
6
7
N.C. HFB_X-RAY_PROT
EHT-INFO
Y-S C A V E M
+8V
R-CRT G-CRT B-CRT
CUTOFF
Filament pulses
EHT-INFO
N.C.
200V
F15
2 3 4 5 6 7 8
9 10 11
FROM
1424
OF
A3
(LINE
DEFL.)
3300
+8V
7500 7501
EF
7503 7504
EF
7506 7507
EF
3417
3341
5309
5310
+200A
3301
VSVM
SCAVEM
PROC.
3510
+200V
7330 TDA6118JF
F6
R
VIDEO
OUTPUT
AMPLIFIER
7340
VIDEO
OUTPUT
AMPLIFIER
7350
VIDEO
OUTPUT
AMPLIFIER
F5
G
B
F4
3520
3530
5300
1483
SC3
1 2
SCAVEM COIL
3
HOT
COLD
3340
3350
3351
3510
8
F8
3339
6
F7
3510
11
VG1
VG2
SIN
+8V
Block Diagrams, Testpoint Overviews, and Waveforms
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Testpoint Overview Small Signal Board

EN 26EM5.3A P/M AA 6.
SSB SIDE A
1402
5
1
5
1
1303
48125
31
EPG
FLASH
RAM 7012
24
60
18 10
1408
19
V1
151
V2
I6
14
19 33
B55
30
61
643252
HIP
7323
26
20
V30
1001
1
OTC 7001
V30
34
2
V10
V22
V29
1
120
91
90
V25
V9
L13
V28
V24
V26
B73
21
29
4
1651
20
PROM
30 1
B76
B71
7711
231
B67
14
B66
SSB SIDE Z
7730
42
22
18
F764
C
105
104
53
52
48125
7006
1409
1
24
E
B
7729
B E
F763
10
9
C
F762
E
B
7728
C
31
30
26
1
100
DRAM
7719
25
156
157
FEM 7760
50
81
80
100
1
75
50
51
FM1
7714
25
267650
51
50
SDRAM
1
COLUMBUS
B53
L9
V21
V20
7753
7752
B63 B64
B54
B62
B61
V19
34
44
F18
81120
121
80
PICNIC
13
5
4
1681
160
1
B75 B74
F104
B65
64
1
3
1
7713
1
L6
L5
49
48
41
40
L7
L3
L2
L1
7651
17
32
33
16
6
B68
1680
B70
B72
B77
F17
26
25
L8
F19
B58
B58
33
HOP 7301
1
208
B60
B51
6
3064
B56
B57
V8
L12
24
22
12
11
2
F20
1
B52
F14
EAGLE
7720
1
DRAM
7007
21
V7 V6
B51
PM3394B
B52
PM3394B
1 80
B53
PM3394B
2V / div DC
100us / div
I6
PM3394B
2V / div DC
100us / div
L1(F100)
2V / div DC
5ms / div
L2(F101)
V7(F405)
PM3394B
1 V / div DC
10µs / div
V8(F407)
PM3394B
1 V / div DC
10µs / div
V19(F330)
500mV / div DC
20us / div
1V / div DC
20us / div
1V / div DC
10us / div
B54
2V / div DC
5ms / div
L3(F102)
1 V / div DC
10µs / div
V20(F331)
1V / div DC
10us / div
PM3394B
B55
2V / div DC
250ns / div
l4(F104)
1 V / div DC
10ms / div
V21(F332)
1V / div DC
10us / div
PM3394B
B57
PM3394B
500mV / div AC
10us / div
L5(F105)
1 V / div DC
20µs / div
V28
PM3394B
1V / div DC
10us / div
B58
PM3394B
1V / div DC
5ms / div
L6(F162)
PM3394B
500mV / div DC
10us / div
V29
PM3394B
1V / div DC
10us / div
B60
PM3394B
500mV / div DC
10us / div
L7(F163)
PM3394B
500mV / div DC
10us / div
V30
PM3394B
1V / div DC
10us / div
B65
PM3394B
500mV / div DC
2us / div
L9(F710)
PM3394B
1V / div DC
250ns / div
B66
PM3394B
50mV / div DC
50us / div
L12
1V / div DC
10us / div
B67
PM3394B
50mV / div DC
50us / div
L8
1 V / div DC
20µs / div
80 1
B76
1V / div DC
250ns / div
L24(F762)
1 V / div DC
10µs / div
PM3394B
F14(F407)
1V / div DC
5ms / div
L25(F763)
1 V / div DC
10µs / div
F17(F359)
1V / div DC
5ms / div
L26(F764)
1 V / div DC
10µs / div
F18
PM3394B
500mV / div DC
5ms / div
V1
PM3394B
1V / div DC
10us / div
INDICATED ON SERVICE PRINTING
NOT INDICATED ON SERVICE PRINTING
F19
500mV / div DC
5ms / div
V2
1V / div DC
10us / div
PM3394B
PM3394B
F357
PM3394B
500mV / div DC
5ms / div
V6(F404)
PM3394B
500mV / div DC
20us / div
E_14600_054.eps
131204
Block Diagrams, Testpoint Overviews, and Waveforms
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Block Diagram Audio 1 (Exclusive Wireless Audio Details)

AUDIO
IF
B2
SEE ALSO BLOCK DIAGRAM VIDEO
7323 TDA9321H/N2
HIP
3380
5
SOUND-OUTPUT
7410
IF VIDEO SYNC
F4
7301 TDA8889H
BOCMA
Only for Dual Window Only for Dual Window
INPUTS/OUTPUTS
A11
AV1
AUDIO
L/R IN
AV2
AUDIO
L/R IN
1900
SIF1
E
D
B
A
PIP-AUD
8
L-SC1-AV1-IN
R-SC1-AV1-IN
L-SC2-AV2-IN
R-SC2-AV2-IN
DW PANEL
F1
A8
0205
10 10
1205 1000
AUDIO DEMODULATOR
B6
B5
1682
B1
52
60
53
58
RESET AUDIO
PIP_AUD_INPIP-AUD
L-SC1-AV1-IN
R-SC1-AV1-IN
L-SC2-AV2-IN
R-SC2-AV2-IN
QSS_AM
7674
RESET AUDIO
2651
2653
7651 MSP3412G
16
50
47
44
45
41
42
SOUND DEMO-
DULATOR
NICAM-
DECODER
SIDE I/O
O
1326
AUDIO
L/R
INPUTS/OUTPUTS
N2
JACK-HIGH DEFINITION INTERFACE
1991
1992
SND1_L_IN
SND1_R_IN
SND2_L_IN
SND2_R_IN
AV3
AUDIO
L/R
AV4
AUDIO
L/R
L
R
7902 HEF4053BT
3 5
1 2
SND_L_OUT
4
SND_R_OUT
15
1936
66
88
1936
1680
65
66
1680
33
11
L-FRONT-IN
R-FRONT-IN
SDA-F
B5
SCL-F
B5
SNDL-SC3-IN 35
SNDR-SC3-IN
3655
3656
38
39
2
1
36
DSP
ADC
DIGITAL
SOUND
PROC.
ADC
SCART SWITCHING FACILITIES
18M432
54
DAC
DAC
DAC
LOUDSPEAKER
DAC
DAC
SC2 OUT
DAC SC1 OUT
DAC
HEADPHONE
1651
B76
55
DACM-SUB
DACM-S
DACM-C
EN 27EM5.3A P/M AA 6.
TUNER SIMM CONECTOR
B1
7675,7668
+5V2
ANTI-PLOP
12 13
12 13
2 1
5 3
SELECT_AUDIO_LR
7680
SELECT
INPUTS/OUTPUTS
B10
R-HEADPHONE
L-HEADPHONE
CIRCUIT
7652 74HC4053PW
11
7653 74HC4053PW
11 7653
9.10
7652
2 1
5 3
9.10
9676
9677
14
14
15
4
15
4
7681 MC33178D
5
3
1
7
AUDIO-SW
AUDIO-SL
7677
AUDIO-C
AUDIO-R
AUDIO-L
R-CL_VL-OUT
7678-A
L-CL_VL-OUT
7678-B
R-SC2-OUT
7679-A
L-SC2-OUT
7679-B
HEADPHONE-R
HEADPHONE-L
+5V_AUD
7666
23
7654
60
MUTE
SW
24
22
R
20
L
21
R
25
L
26
7667
61
SELECT
AUDIO LR
R
28
29
L
R
17
L
18
23
MUTE SW
7656
23
7663
23
7664
23
7665
23
EF
EF
EF
EF
EF
A8
1000 1205
74
72
73
76
75
70
69
59
55
68
67
AUDIO-SL
AUDIO-C
AUDIO-R
AUDIO-L
R-CL_VL-OUT
L-CL_VL-OUT
R-SC2-OUT
L-SC2-OUT
HEADPHONE-R
HEADPHONE-L
1936
11 11
10 10
A11
O
1936
INPUTS/OUTPUTS
R-SC2-OUT
L-SC2-OUT
AUDIO-SL
R-CL_VL-OUT
L-CL_VL-OUT
SIDE I/O
R
L
1900
1902
HEADPHONE
3.5 mm SOCKET
AV2
AUDIO
L/R OUT
AUDIO
L/R/S OUT
AUDIO AMPLIFIER
A6
7702
A62
TDA7490L
10 3
6
STBY-MUTE
18
A60
7700
A58
TDA7490
18
STBY-MUTE
6
10
A56
B5
SOUND-ENABLE
A3
A3
POR
-16V-19V +16V+19V
24
PWM
OSC
PWM
24 22
24 22
PMW
OSC
PMW
24
7701 : 7707
SOUND ENABLE
+16V+19V
4
-16V-19V
-16V-19V
AUDIO SUPPLY PROT, CIRCUIT
23
23
3
+16V+19V
PROT1
PROT-AUDIO-SUPPLYHFB-X-RAY-PROT
3745
6745
+16V+19V
1737
1738
1735
1
SUBWOOFER 15W/8ohm
2
1
CENTRE 15W/8ohm
2
1
R-Speaker 15W/8ohm
2
1
L-Speaker 15W/8ohm
2
A63
5721
3728
A61
5720
3729
A57
5702
3717
A59
5701
3718
CONTROL
TOP CONTROL
P
5x
CHANNEL+ CHANNEL-
VOLUME+ VOLUME-
MENU
KEYBOARD
MAINS SWITCH PANEL
E
3082
6051
3
1
TLUV5300
GREEN
RED
1040
IR-
RECEIVER
LIGHT
6070
SENSOR
0345
2 2
3655
5V_STANDBY
3084
E1
1
+5V STANDBY
7070
LIGHT SENDER
2
7
ON/OFF LED
+8V6
RC5
COLD
N.C.
0241
O
A10
1946
11
22
33
44
55
66
77
88
99
1945
SIDE I/O
FRONT
N.C.
N.C.
DETECT
ON-OFF LED
+5V2
LIGHT-SENDER
+8V
KEYBOARD
SIM
A8
CONN.
1936
1936
RC
B1
1205 1000
62
77
78
79
37
SIM CONN.
B5
OTC
SEE ALSO BLOCK DIAGRAM VIDEO
7001 SAA5801H
B60
CVBS-TXT R-TXT
B2
B4
B4
+5V2_CON
A11
7015
VSYNC
7016
7005 LD1117
47
1
7002 : 7004
RESET
7013, 7014
RESET
FLASH
RAM
FORNT-DETECT
7009
P50
ON-OFF-LED
7010
+3V3
5
B57
83HFB
B58
84
+3V3 INTOTO
3017
B56
74
RESET
RP
114
97
113
100
RC
107KEYBOARD
110LIGHT_SENSOR
77
78 G-TXT
79 B-TXT
OTC
80 FBL-TXT
88 SDA-F
87 SCL-F
86 SDA-S
85 SCL-S
104 STANDBY
95 SOUND-ENABLE
94 RESET AUDIO
115 DEGAUSSING
117
116
103
SDA
91
9256
SCL
ADDRESS
DATA
CONTROL
16
17
B61
B62
B63
B64
B53
B54
B51
B52
7011 MC24C32
EEPROM
B55
1001
NVM.
SEL_IN_2
SEL_IN_1
PWW_ANTIMOIRÉ
7007 MSM51V18165F
DRAM
(TXT)
B4
SEE ALSO IIC DIAGRAM
A2
A6
B6
A1
B6
B6
B9
7006 LH28F320BJE
PROGRAM
FLASH-RAM
SEE ALSO BLOCK DIAGRAM VIDEO
SET SW
7012 M29W400BT
EPG-
FLASH-RAM
RP
E_14600_064.eps
171204
Block Diagrams, Testpoint Overviews, and Waveforms
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I2C IC’s overview

EN 28EM5.3A P/M AA 6.
IIC
OTC
B5
SAA5801H
PROCESSOR
7001
SET
88
87
3064-D5
3064-C6
+5V2_CON
3069
3044
SDA-F
SCL-F
ERR
18
I/O, VIDEO PROCESSING
B2
3377
47 46
7323
TDA9320H
HIP
ERR
8
86
85
3064-B7
3064-A8
+5V2_CON
3088
3079
+3V3-INTOTC
SDA-S
SCL-S
ERR
SIMM
B1
CONN.
1000
5918
5912
6
91
92
ADDRESS
DATA
CONTROL
SDA
SCL
EEPROM
7011
M24C32
(NVM)
3001
3002
56
ERR
1
7006
LH28F320BJE
PROGRAM
FLASH-RAM
3376
48
49
A8
1205
TUNER, SIM. CONN.
3201
1200
UV1318
TUNER
B4
ERR
13
HOP
3321113320
7301
TDA9330
HOP
ERR
3200
45
AUDI O
B6
DEMODULATOR
SDA-F
SCL-F
3656
3655
SDA-S
SCL-S
SDA-S
SCL-S
21
7651
MSP3452G
AUDI O
DECODER
ERR
14
1937
1
2
1943
1
COMPAIR CONNECTOR FOR SERVICE
2
(REACHABLE VIA HOLE IN REAR
3
COVER)
1955
1
2
10
7
3261
3262
PICNIC
B3A
3710
3709
54
7713
SAA4978H
PICNIC
ERR
I/O PROCESSING
F3
0201
1
2
Only for Dual Window
3
3431
3 2
M6232OP
EXPANDER
1
2
7403
I/O
ERR
21
+5V
3758
7711
M27C512
PROM
7714
MS81V04160A
FM1
SDA
SCL
3432
SDA-D
SCL-D
SN-DA
SN-CL
DW_PANEL
F1
7832
HA
Only for Dual Window
AUTOSCAVEM
SC1
1955
1
2
COLUMBUS
B3D
9817
A15 B15
3854
74
73
7801
SAB9081H
PIP
CONTROLLER
ERR
24
9818
9815
C14 D14
7752-2
T6TU5XB
COLUMBUS
CTRL
ERR
35
TUNER PANEL
F2
3267
54
7201
UV1316/A
TUNER
ERR
23
Only for Dual Window
9816
3268
7753
MSM56V16160
SDRAM
IF-VIDEO-SYNC
F4
3330
18
TDA8889H
BOCMA
Only for Dual Window
7301
ERR
22
B3C
3329
9757
17
EAGLE
7720
EAGLE1C
EAGLE
ERR
27
9755
33 24
7719
MSM56V1616
DRAM
B3B
FALCONIC
SN-DA
SN-CL
34 41
7760
SAA4998H/V1
FALCONIC
EMBEDDED
MEMORY
ERR
26
7007
MSM51V18165F
DRAM
(TXT)
7012
M29W400BT
ERR
32
SDA-S
SCL-S
1951
11
22
N2
1104
I/O JACK
CONTROL JACK
N1
3132
EXPANDER
3130
32
7106
M62320
I/0
ERR
XX
3502
3500
43
7500
TDA8444T
DAC
ERR
19
E_14600_065.eps
131204
Block Diagrams, Testpoint Overviews, and Waveforms
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Supply Lines Overview

EN 29EM5.3A P/M AA 6.
SUPPLYLINE OVERVIEW
MAIN SWITCH PANEL
E
0201
1
2
1051
0202
A1
0202
11
22
5517
A2
MAIN SUPPLY
1501
T5A
3509
1503
+375V
2.5A
5506
3514
7504
3
Control
1
STAND-BY SUPPLY
6103
5100
2
54015400
5502
-20V
5503 5504 5511 5516
V
6525
2
3
HOT
COLD
6535
5507
6
+5.2V_MP
6535
5509
10
5102
COLD
6
3115
6110
3116
6113
5112
7
6113
5111
5103
8
HOT
6111
5514
5513
+11V_STBY
7131
Control
7141
Control
COLD
HOT
1
+16V+19V
-16V-19V
VBATT
-20V
VTUN
+11V
+8V6
+5.2V
+5.2V_MP
+5V
A8
A2
A2
A2
A6
A1
A2
A6
A3
A1
A8
A2
A8
A10
A8
1940
1
6
A8 A3
A1 A9
SC1
1940
A8
1
6
A3
VBATT
A1
ROTATING SECURITY
A5
+11V_ROT +11V_ROT
A2
AUDIO AMPLIFIER
A6
+16V+19V +16V+19V
A1
-16V-19V -16V-19V
A1
RECEIVER
A9
+5.2V_MP +5.2V_MP
A2
FRONT
A10
+5V2 +5V2
A2
+8V +8V
A8
A2
1946
77
77
J
0241
TUNER SIMM CONNECTOR
+5.2V +5.2V
+5V +5V
7910
5904
+11V +11V
5903
+8V6 +8V6
5902
7911
5901
3941
3904
+8VS2
VTUN VTUN
+8V
+11V5
+8V
AUTOSCAVEM
+11V +11V
+8V6 +8V6
3600
5600
LINE DEFLECTION
5400
5401
6464
6462
-15-LOT
+13V-LOT
3464
3462
1495
+141V
1
TO CRT PANEL
2
5465
5463
+141V
+5.2V
MAIN SWITCH
+5V2 +5V2
+8V
+8V_+12V
+8V
5601
3400
8
LOT
5
3
6
3460
12
+141V
-15-LOT
+13V-LOT
+5.2V
+8V
+3V3
+5VA
+11V5
+8V
+5VT
+8VS
+5VA
+8V
+5VA
+8V
6400
1205
1951
1937
1440
1424
1492
+11D
SIMM CONNECTOR
B1
1000
40 44
46
47
45
59001
43
59004
4
N2
5
N2
7
F3
Only for
8
Dual Window
F3
9
F3
PCR
SC3
+8V_+12V
CRT PANEL
F1
1940
+8V_+12V +8V_+12V
66
3305
1424
200V 200V
77
5309
5310
DAF
I
1492
11V DC 11V DC
11
FRAME DEFLECTION E/W DRIVE
A4
+11D
3449
+141V
-15-LOT
+13V-LOT
3635
5900
5902
5903
COLD
HOT
3341
3301
5308
5303
+5V2
+3V3_SIM
+5V
+5V_CON
+5V_VDP
+5V-AUD
+8V
+8V_AUD
+8V_VDP
+8V_+12V
+8V
+8V-SVM
+200A
VSM
+11D
+8Vb
+141V
-15-LOT
+13V-LOT
+8V-S
IF/IO
B2
1403
+5V2
B1
B2,B6
B1
B6
B1
B6
B1
B5,B5a
B2,B4
B4
B6
B2,B6, B10
B6,B10
B3e
B2
B3e
B6
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
B3e
F500mA
+8V
+5V_VDP +5VCOM
+8V_VDP
+5VS +5VS
PICNIC
B3A
+1V8FA +1V8FA
+2V5_FBXA +2V5_FBXA
+3V3_FBX +3V3_FBX
+3V3_FBXA +3V3_FBXA
+3V3_FBXB +3V3_FBXB
+3V3PA +3V3PA
+3V3PB +3V3PB
+3V3PC +3V3PC
+3V3Pr +3V3Pr
+5V2Pr +5V2Pr
+8VPA +8VPA
FALCONIC
B3B
+1V8FA +1V8FA
+3V3FA +3V3FA
+3V3FB +3V3FB
EAGLE
B3C
+1V5EA +1V5EA
+1V5EB +1V5EB
+2V5EA +2V5EA
+2V5EB +2V5EB
+2V5EC +2V5EC
+2V5ED +2V5ED
+3V3EA +3V3EA
+3V3EB +3V3EB
+3V3EC +3V3EC
+5V2Pr +5V2Pr
+8V_CON +8V_CON
COLUMBUS
B3D
+1V5CA +1V5CA
+3V3CA +3V3CA
+3V3CB +3V3CB
+2V5EB +2V5EB
+5V2Pr +5V2Pr
5415
5416
3402
3400
+5V2_CON
+8V_CON
+8V_VDP
+8VP
FBX SUPPLY
B3E
+3V3_FBX
B5
B6
B3c,e
B4
+5VF
B6
+8V_CON
B2
B4
+5V_VDP +5V_VDP
B1
+8V_VDP +8V_VDP
B2
B5A
+5V2_CON
B2
+5V_CON +5V_CON
B1
B5B
+5V_CON +5V_CON
B1
HOP
OTC
ANTI-MOIRE
5719
5720
5772
13
1 3
5754
13
5760
13
5784
5723
7773
7774
5721
5722
7770
7772
4 7
7005
3304
3329
5767
5768
5769
5770
5771
5773
5763
5755
5752
5764
5713
5762
5750
5751
5765
5724
5756
5753
5757
5761
+3V3_FBX
+3V3_FBXA
+3V3PA
+3V3PB
+3V3PC
+3V3FA
+3V3FB
+3V3Pr
+1V8FA
+2V5_FBXA
+2V5ED
+2V5EC
+2V5EA
+2V5EB
+5VF
+5V_FBXA
+3V3_FBXB
+3V3EA
+3V3EB
+3V3EC
+3V3ED
+3V3CA
+3V3CB
+1V5_FBXA
+1V5EA
+1V5_FBXB
+1V5EB
5758
+1V5CA
5759
+5V2Pr
+8VPA
+5VS
+8VS
+5V2_CON
+3V3_INTOTC
AUDIO DEMODULATOR
B6
+5V_AUD +5V_AUD
B1
B3a
+8V_AUD +8V_AUD
B1
B3a
B3a
B3a
B1
B3b
B3b
B1
B3a
B1
B3a,b
B3a
B3a
B1
B3c
B3c
B3c,d
N2
N2
N2
B3c
1104
B3c
A8
B3c
A8
B3c
B3d
B3d
B3c
N2
B3c
N2
B3d
B3a,c,d
B3a
F1
F3
B2
F3
F3
0201
A8
A8
A8
F3
F3
7669
81
+5V +5V
5654
+5V2 +5V2
+3V3_SIM +3V3_SIM
5672
HEADPHONE-AMPLIFIER
B10
+8V_AUD
CONTROL JACK-HIGH DEFINITION INTERFACE
N1
5Vs
8Vvideo 8Vvideo
8Vd 8Vd
INPUTS/OUTPUTS JACK-HIGH DEFINITION INTERFACE
N2
3940
+5VA 5Vs
4
3941
+8V
5
3942
SYNC SLICER JACK HIGH DEFINITION INTERFACE
N3
5Vs 5Vs
MATRIX JACK-HIGH FEFINATION INTERFACE
N4
8Vvideo 8Vvideo
3424
DW_PANEL
+5VS +5VS
7802
13
Only for Dual Window
TUNER PANEL
F2
+5VS
+33V +33V
Only for Dual Window
I/O PROCESSING
F3
5401
+5V
7
+8V
8
+33V
9
Only for Dual Window
IF VIDEO SYNC
F4
+8VS +8VS
+3.3V +3.3V
Only for Dual Window
5671
5903
5904
5900
5901
5902
3941
3941
6703
3862
3863
5651
5652
5656
+5DA
+5DB
+8VC
+8VA
+5VF
+3V3_FBX
+8V_AUD
5Vs
8Vs
8Vvideo
8Vd
8Vaudio
Vref
+3.3V
+3VD
+3V
+5VS
+5VD
+5VS
+8VS
+33V
B3e
B3a,e
N1,N3
N1,N4
N1
F4
F1,F2
F4
F2
E_1460_066.eps
131204
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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7. Circuit Diagrams and PWB Layouts

EN 30EM5.3A P/M AA 7.
132 54 7689
MAIN SUPPLY

Large Signal Panel: Main Supply

T5AH- 250V FOR AP
A
1501
T6,3AH-250V
for US
1
4
5516
3
2
5511
54A-0018
21
34
DSP
1591
B
1500 SDDF
56
9502
C
MAINS SWITCH
DEGAUSSING
0043
D
FROM
0202 OF
PANEL
TO
COIL
HEATSINK
123
RES
3554
6M8
E
3555
680K
3560
1M2
3503
3556
GND-SUP
F
4M7
HOT
*
V
3509
13
24
1505
2
1
1502
1
2
GND-STB
VBATT
47K
3557
220K
3502
4M7
COLD
2507
3521
4M7
9501
2520
MCL4148
6522
BC857B
7505
2545
1n
10u
2539
3561
2505
1510
TO
0301 OF
FOR LATAM - AP SETS
470n
1M
*
DSP
3501
100n
3558
2
1590
100R
9516
5515
33u
3537
1K
TUNERGND
5503
3
14 2
5504
3
BF423 7508
47K
4
10K
3559
2521
GND-SSP
COLD
1
9507
3562
100R
9503
5502
23
4
1
9504
1R
3500
2529
470p
HOT
9519
100n
9513
3551
3548
65136508
6507
VBATT
330R
1K
BZX384-C56
BZX384-C56
BZX384-C47
132 54 7689
2509
22n
2537
BT151
6525
2508
2516
7503
A2-42
A1
GBU4J
22n
22n
*
3550
2
232266296
Rp
1
+t
F4AH-250V for US AP NTSC
7504
2517
*
Rs
+t
9518
2
3516
1
F2,5AH-250V for AP-PAL
1503
6505
BZX79-C15
*
3552
7530
BC847B
3553
*
2544
10n
3
GND-STB
7529
BC546B
Vbe= 0V7
(Vbe= 0V)
143V FOR 120V SETS 277V FOR 230V SETS
A2-8
A2
83R
5517
5519
0V
A3
*
*
3531
*
3518
BZX79-C33
143V
30R
6530
BYV95C
22n
2504
A4
7507
TCET1103(G)
14
6538
BAS316
10n
2538
3517
47K
6537
BAS316
144V
6510
3546
6520
3519
3513
330K
*
220R
3547
1N4148
3514
6515
BZV85-C6V8
2535
3
4n7
2501
1n
2
9510
*
2530
6523
BAS216
3545
15K
3504
2K2
*
9505
A2-12
3515
*
5505
6517
BAT254
1u
47R
83R
3536
2541
*
33K3538
3544
39K
6518
BZX284-C27
6506
5518
3535
9511
3525
47R
A5
3506
5K6
6K8
3522
7506 TL431
1K5
2518
330p
2K2 3511
3508
15R
7502
1n5
2525
BAT254
5520
BY359X-1500
6509
1
0V
6516
BAS216
6533
BAS216
6519
BYD33D
BC547B
*
3505
83R
6534
2510
2523 47u
3520
33K
2513
470p
BAS216
6
3
2
2532
1u
2540
*
3539
39K
2527
2V5
220p
2515 47u
2502
3526
0R1
3542
0R15
3543
HOT
*
*
2503
3512
69
*
5
4
470p
5506
56
4
3
A6
1
2n2
3523
2514
10n
2506
*
3533
15R
2526
2n2
COLD
5512
S419C4-01
10
11
12
132
7
8
9
10
3540
3507
160K
1M
3530
1K
2524
A1
50V / div DC
10µs / div
A5
5V / div DC
10us / div
GND-AUD
*
2531
10n
3527
GND-SUP
A3-A4-23
A2-44
PM3394B
*
2K
A2
50V / div DC
5507
83R
2522
STPS8H100
23
3510
820R
3549
220K
HOT
5us / div
STPS8H100
2n2
6536
COLD
PM3394B
6535
2519
2n2
-18V
1550
14
BC337-25
GND-SUP
A3
50V / div DC
5us / div
18V
2512
2511
5509
83R
A8
7528
3528
PM3394B
A7
5514
33u
2m2
2m2
6511
6512
7501
10K
A4
A6
5513
33u
BAS216
BAS216
3529
BC847B
GND-SSP
3541
22R
PM3394B
50V / div DC
5us / div
PM3394B
20V / div DC
10us / div
2542
2543
4K7
3524
3534
47K
+16V+19V
470u
GND-AUD
470u
-16V-19V
VBATT
3532
33K
2528
1u
GND-SUP
2533
4n7
CL 26532067_001.eps
A2-43
A8-30
47K
190602
A
B
C
D
E
F
0043 D1 1500 B1 1501 A1 1502 C1 1503 A4 1505 C1 1510 F2
1550 D8
1590 B2 1591 A3 2501 C5 2502 E6 2503 A6
2504 B4 2505 F1 2506 E6 2507 B2 2508 B3 2509 A3 2510 C6 2511 B8 2512 B8 2513 D6 2514 D6 2515 C6 2516 C3 2517 C4 2518 A6 2519 B8 2520 D2 2521 F2 2522 C8 2523 C6
2524 E7 2525 B6
2526 F6 2527 B6
2528 E9
2529 E2 2530 F5 2531 D7
2532 F6 2533 F9
2535 C5 2537 B3 2538 D4
2539 E1 2540 F6 2541 A5
2542 B9 2543 B9
2544 C4 2545 E1 3500 C2
3501 C2 3502 F1
3503 F1 3504 A5 3505 B6 3506 D5
3507 D7 3508 A6
3509 B1 3510 D7
3511 A6 3512 B6 3513 A5 3514 B5 3515 B5 3516 E4 3517 E4
3518 A4 3519 F5 3520 D6 3521 B1 3522 E5 3523 D6
3524 E9 3525 D5 3526 E6 3527 E7 3528 E8 3529 E8 3530 E7 3531 D4 3532 E9 3533 F6 3534 F9 3535 C5 3536 E5 3537 D2 3538 A5 3539 A6 3540 D7 3541 F8 3542 E6 3543 A6
3544 A5 3545 A5
3546 A5 3547 B5
3548 E3
3549 E7 3550 D3 3551 E3
3552 B4 3553 C4
3554 E1 3555 E1 3556 E1
3557 E1 3558 E2 3559 E2
3560 E1 3561 E1
3562 B3 5502 B3 5503 B2 5504 B2 5505 C5
5506 C6 5507 B7 5509 C8
5511 A2
5512 B7 5513 C9
5514 B8 5515 C2
5516 A2 5517 A4 5518 C5 5519 A4 5520 B6 6505 B4 6506 B5
6507 F3 6508 F3 6509 D6 6510 A5 6511 D8 6512 E8
6513 F3 6515 C5 6516 F5 6517 F5 6518 A5 6519 A6 6520 B5
6522 E1 6523 F5 6525 A3 6530 A4 6533 F6 6534 C6 6535 A8 6536 C8 6537 F4 6538 C4 7501 E8 7502 A6 7503 E3
7504 A4 7505 E2
7506 E5 7507 C4
7508 E2
7528 E8 7529 F4 7530 B4
9501 B1 9502 B1
9503 B3 9504 B3 9505 F5
9507 B3 9510 D5 9511 C5
9513 C3 9516 C2
9518 D4 9519 D3
Circuit Diagrams and PWB Layouts
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家电维修资料网
免费下载各种维修资料

Large Signal Panel: Stand-by Supply

1146 E10 1147 C10 1148 B7 2100 C5 2101 C1 2102 B1 2103 C1 2104 C6 2105 C1
2106 A10 2107 C6 2108 B4
A
2109 E7 2110 D2 2111 D1 2112 D3 2114 B2 2115 C7 2116 A5 2118 C6 2119 C7
2120 A7 2121 A2 2122 A2
STAND-BY SUPPLY
A1-44
-20V
TO
5106
-14V
2123 D4 2124 E3 2126 A10 2130 C9 2131 A8 2132 A9 2140 E8 2141 B8 2143 B6
2144 D3 2145 C2 2147 D9
12 3 4 5 6 7 9810
30R
3120
2148 A7 2149 E7 2150 B9 2151 A1 2152 B4 2153 E4 2154 A8 2155 A2
2156 A2
2157 A3 2159 C2 2160 C2
10R
2161 B2 2162 B10 3101 B2 3102 D1 3103 C1 3104 C2 3105 C1 3106 B1 3107 B1
3108 C4 3109 C8 3111 C1
2121
220n
3113 D7 3114 E6 3115 A6 3116 A6 3117 C3 3118 C4 3120 A1 3121 A3 3123 D6
3124 E6 3125 D1 3126 E2
2122
220n
100u
9123
2151
2102 100u
A1-12
B
STARTUP V-START
A1-42
GND-STB
-14V
BYD33D
3107
6103
9129
1K
3106
2101
9128
1K
2n2
5131
C
5102
10u
2103
100p
3103
A13
3111
1K5
2105
100p
3105
3102
47n2111
D
E
3125
BC557B
7100
8204 000 8222.4
12 3 4 5 6 7 9810
2155
100n
100u
2161
1K
470p
2160
1K
1K
GND-STB
15R
680p
3126
6114
BYD33D
2156
3170
138V
6109
1N5062 (COL)
166V
470p
2159
GND-STB
10K
3127
5K6
10n
3169
1K
47K
100n2114
3101
4M7
MCL41486144
GND-STB
2110
6108
BAT254
6106
1u
BC847B
47R3104
470p
2145
3152 1K
BZX79-B22
3127 E2 3130 A8 3131 B7 3132 B8 3133 C10 3134 C10
3135 B9 3136 B8 3137 C7
3138 B3 3140 A9 3141 E8
3121
10R
7120
6104
PDZ-27B
3138
1M
7101
BC337-25
A14
6142
BAT254
2157
GND-STB
A11
47R
3117
6115 BAT254
1K
3160
1u2144
BC557B
2K23147
3145
220R
3142 E8 3143 E8 3144 A7 3145 E3 3146 E4 3147 E3 3148 D3 3149 D4 3150 C3
3151 B9 3152 D2 3153 B9
3n3
BZX79-C15
10n
2112
7105
2124 10u
3155 D9 3156 A10 3157 C9 3158 B10 3159 C8 3160 D3 3161 B6 3162 A7 3164 A8
3165 B10 3166 D8
3167 C8
FROM
+375V
A1-8
5101
2108
GND-STB
7102 STP3NB60
150V
6105
A12
100R3150
10K
*
3108
GND-STB
RES
22R3148
3149
2123
100n
GND-STB
9101
5109
83R
10n
5113
3118
6116
47R
3168 A9 3169 A2 3170 B2 3171 C7 3172 C8 5100 B5 5101 A4 5102 C1 5103 C6
5104 B4 5105 B6 5106 A1
2152
220n
GND-STB
5104
83R
A10
83R
*
BZX79-C6V8
5108
GND-STB
BZM55-C5V6
3146
5107 C4 5108 D4 5109 A4 5110 B5 5111 A6 5112 B6
5113 C4 5130 A8 5131 B1
6103 B1 6104 B3 6105 C3
HOT
5100
S22992-02
56
3
2
110
30R
5107
6147
GND-STB
15n
2153
A16
EN 31EM5.3A P/M AA 7.
6106 E2 6107 C6 6108 D2 6109 B2 6110 A5 6111 C6 6112 A9 6113 B6 6114 E2
6115 C3 6116 D4 6120 D6
COLD
5110
7
8
2100
*
A15
9103
9106
7104
TCDT1102G
4
3
5
4
-14V
(-10V)
6121 E6 6122 E7 6130 A7 6132 B10 6133 A7 6134 A8 6141 D9 6142 D3 6144 D2
6147 C4 6148 B6 6149 B10
BYV27-200
6110
2116
100p
5103
TCET1102
1
7103
2
1
2
9112
5112 83R
5105
2u2
100R
7100 E1 7101 C3 7102 B3 7103 E6 7104 E5 7105 D3 7120 A3 7130 B9 7131 A8
7132 C9 7133 A8 7140 D9
A17
3161
STPS8H100
3114
7141 D10 9101 A4 9102 C8 9103 E5 9106 E5 9112 B6 9122 B7 9123 A1 9126 C10
9128 A1 9129 B1
3116
A8-47
*
3115
5111
*
83R
BYW29EX
6113
2143
2n2
6148
BYV27-200
6107
12
SB360
6111
2107
3n3
3124
68R
220R
GND-SSP
0V
10R
3123
35v(0V0
VTUN
6130
12
STPS8H100
2120
1n5
13V1
(0V)
+11V_STBY
1148
1A25
MP125
9122
1m
2118
A19
2m2
2119
2104
6120
1N4148
6121
1N4148
12V
3137
2m2
3113
6122
2109
2149
3162
2148
3n3
A18
+11V
A3-48
4K7
2115
22R
BZX79-B3V9
1u
1u
470R
220R3144
6133
MCL4148
3131
470R
*
22u
3171
9102
3109
680R
3167
680R
3166
680R
GND-SSP
5130 83R
2141
*
3172
3130
6134
MCL4148
BC857B
GND-SSP
10u
GND-SSP
+5.2V_MP
2154
33n
47R
7133
3159
2140
13V
STP16NE06
10V5
BZX384-C10
3132
3136
10R
18V(0V)
10K
GND-SSP
10u
GND-SSP
7131
6112
3164100K
2131
1n
47R
GND-SSP
+8V6
2K7
3141
3K3
3142
7132
BC847B
15n
2147
3155
100R
GND-SSP
100R3143
A20
8V5(0V)
100K
3135
100R
7130
BC847B
0V(0V7)
3157
GND-SSP
7140 BC847B
4V6
(0V)
+5.2V_MP
3168
3140
10K
19v(0V)
GND-SSP
VTUN
+11V
4K7
4K7
3153
3151
100R
10n
2130
GND-SSP
5V(0V)
2n2
2132
3156
10n
2150
GND-SSP
3134
1K
+11V_STBY
+5V -switch
7141
STP16NE06
(0V3)
6141
(0V)
2106
100R
6132
100R
3158
47K
3133
5V2 (5V3)
5V1 (0V)
BZM55-C15
1146
1
2
3
4
5
2126
GND-SSP
2n2
1u
2162
GND-SSP
BZX384-C6V8
100R
6149
3165
STANDBY
+5.2V
1147
1A6
MP160
9126
A21
N.C.
CL 26532067_002.eps
+8V6
2m2
MCL4148
A8-9
A1-43
+5.2V_MP
+5V
A
B
C
D
E
171204
Circuit Diagrams and PWB Layouts
ersity table
ection [A3]
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料
EN 32EM5.3A P/M AA 7.

Large Signal Panel: Line Deflection

0042 F8 1417 B8 1424 C13 1430 A10 1491 D13 1492 E14 1493 D10 1495 A13
1498 D13 1499 D13 2400 D6 2401 E8 2402 D12 2405 G9 2409 C4 2412 B4
2413 B4 2414 B4 2415 C3 2417 B6 2418 B6 2419 C8 2420 B6 2421 E7
2422 E7 2423 E6 2424 D8
2426 B7 2430 C8 2431 C8 2432 D7
2433 D8 2434 D8 2435 B7 2440 F4 2441 G12 2442 F10 2443 G11 2444 H10
2445 G12 2450 D10 2460 E13 2461 E12 2462 A11 2463 A11 2464 B11 2465 B11
2468 D11 2469 E10 2488 B7 2492 C3 2494 A6 2495 A7 3400 D11 3401 E9
3402 F9 3404 D4 3406 C3 3407 C4 3409 B5 3410 A6 3411 B4 3414 C4
3415 A4 3416 A4 3417 C6 3423 B8 3425 C7 3426 C7 3431 C9 3435 D8
1
2
345
LINE
A
DEFLECTION
+11D
+5.2V
11V2
5V2
6408
BYD33D
6407
MCL4148
10V4
B
A8-3
LINEDRIVE1
100u
2492
3406
100R
C
2415
6406
MCL4148
A8-3
GND-LINEDRIVE
D
3414
330R
220p
2413
3407
A22
E
PM3394B
1V / div DC
10us / div
A23
PM3394B
F
200mV / div DC
10us / div
A24
PM3394B
G
5V / div DC
10us / div
A25
PM3394B
H
2V / div DC
10us / div
POR-CIRCUIT = f(V + 11D)
22K
3441
3440
1K
BC847B
A6-A8-45
7445
3442
470K
3436 D8 3440 F3 3441 F3 3442 F4 3443 F4 3444 F12 3445 F13 3446 F13
COLD
15R
3415
3416
3411
10u
47n
A22
7409 BC847B
10K
A23
3404
3443
680K
2440
COLD HOT
100R
39R
2412
6V6
2414
2409
470R
1u
5423 B7
3447 F11 3448 H10 3450 C10 3451 C11 3452 H11 3453 H11 3454 F11 3460 E11
3461 E11 3462 A10 3463 A10 3464 B10 3465 B10 3469 E12 3498 A12 3499 A12
3689 E10 5400 D6 5401 E9 5402 A72425 B7 5410 B5 5411 B5 5421 C8 5422 E7
5424 E7 5425 C7 5426 A6 5430 C10 5461 E12 5463 A10 5465 B10
5466 E10 5469 D10 6400 D11 6406 C3 6407 A4 6408 A4 6409 F10 6410 F11
67
HOT
GND-SUP
6
4
5410
CE165T
1
9
47n
A24
47p
6V6
7408
BC368
VBATT
Item 28" 32" 36"
1492 4P 3P 2420 1.5nF 1nF 1nF 2425 10nF 9.1nF 9.1nF 2426 22nF 27nF 27nF 2433 430nF 390nF 360nF 2441 22nF 2442 6.8nF 2445 22nF 3444 1 3454 1 1 4.7 3498 5.6 3499 5.6 5421 LINCOR COIL 28" LINCOR COIL 32" LINCOR COIL 36" 5422 BRIDGE COIL 28" BRIDGE COIL 32"/36" BRIDGE COIL 32"/36" 5430 LOT 28" LOT 32" LOT 36" 9411 Wire
3409
1K
9623
5411
560n
A25
7421 BU2520DX
2417
3417
5400
33u
Div
3410
47R
9417
220n
10R
GND-SUP
2494
220n 220n
A26
90R
9426
5426
0V
1n2
470p
2418
2420
RES
+141V
47u
2400
*
470n
2423
GND-SUP
Line defl
5402
150u
83R
9n1
2488
2426
9425
6434 D8 6435 D8 6460 E12 6462 A11 6463 A11 6464 B11 6465 B11 7407 H11
430n
27n
3425
6411 F10 6412 F10 6413 G10 6414 G10 6415 H10 6421 A7 6422 C7 6423 B8
**
*
11n
2425
2435
5425
RES
2422
*
1u2
2421
GND-SUP
680n
*
435422
*
7408 C5 7409 C4 7421 A6 7445 F3 9401 E9 9410 D10 9417 B6 9423 B8
2495
SUP-ENABLE
LINE
6421
RES
9423
5423
560n
10R
10R
3426
6422
RES
*
*
2433
2432
680n
43
*
5424
CU2012
EW
A4-46
9425 C7 9426 A6 9623 B5
89
SIN
A1-A4-23
1430
1
DEFLECTION
BY359X-1500
1417
TO
VA
1
6R8
6423
3423
RES
2419
BY229X-600
*
2434
470n
680n
21
CU15
GND-SUP
GND-SUP
470p
+141V
BY228/20
2430
3n3
3u6
5421
2431
3n3
2u2
RES
2424
33K
3435
RES
0042
123456
2
LINE DEFLECTION COI
L
3431
6435
BYD33J
33K
3436
RES
6434
BYD33J
RES
9401
5401
18u
2401
6n8
HEATSINK
GND-SUP
1417
DAF
220R
RES
RES
GND-SUP
3401
27R
3402
100R
GND-SUP
1
5
4
6
HOT
TO
RES
2405
1n5
5430
OV2076
8
11
9
123
COLD
EHT
FOCUS
G2
10
10
5463
5465
TO
CRT PANEL
1493
1
#
6412
#
6413
#
6414
#
6415
#
2444
SIN
RES
5469
9410
3689
1K
2469
3n3
5466
22u
BAS316
6409
BAS316
BAS316
PDZ-8.2B
1u
3462
3463
3464
3450
2450
x
PDZ-15B
1R
1R
1R 3465
1R
10K
100n
3400
3448
2K7
#
0V4
6R8
BAS316
#
11 12 13 14
A31
2463
470p
6462
BYW76
6463
0V
BYV29X-500
2465
470p
6464
BYW76
6465
BYV29X-500
10K
3451
x
BZM55-C27
6410
x
2442
100n
6411
x
3452
470R
BYV95C
6400
2468
470p
x
GND-SUP
13V7
A32
-15V2
EHT-INFO
3460
1R
3461
1R
3444
7407 BC817-25
#
2K2
x
2462
2464
3454
1K8
3445
3453
100R
1m
1m
GND-SUP
33u
2402
5461
A30
*
2K2
x
x
x
#
+13V-LOT
3498
6R8
-15V-LOT
FILAMENT
2461
470p
6460
BYV95C
FILAMENT PULSES
3447
100R
2K2
3446
1u
2441
1u
2445
3499
6R8
-1V4
5V8
211V
A28
A29
3469
2443
EH-B
0V
0V
0V
0V
0V
0V
1K
560p
+13V-LOT
1424
1
2
3
4
5
6
7
1
2
1491
13V7
-12V8
2460
0V
1m
1495
1
2
3
4
WH4D-1
TO
1424
CRT
PANEL
TO
1424
VDAF
1
2
1498
x
#
TO PCB ON CRT
-ASSY
1499
1
2
+11D
1492
EH-B
+11D
1
2
3
= DC FILAMENT
= USA XRAY PROT
A8-20
EHT-INFO
+11D+11D
TO 1492
DAF
CL 26532067_034.eps
A
B
HOT
COLD
C
D
E
F
G
H
171204
3
412 678910
5
11 12 13
14
Circuit Diagrams and PWB Layouts
Item 28" 32" 36"
1693 1P 2493 3.3nF 3480 3488 3621 3622 3625 3626 3654 3661 6499 BZX384-C10 PDZ9.1B BZX384-C10
6624 BAS316 BAS316
Diversity table Frame deflection [A4]
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家电维修资料网
免费下载各种维修资料

Large Signal Panel: Frame Deflection E/W Drive

1625 C13 1627 C13
1693 F4 2403 D3 2404 D2
2448 B12 2451 G2 2454 F3
2457 E4 2458 E2 2466 D12 2480 F9
2481 F9 2482 G10
2487 A12 2490 E8 2491 F12
2493 G4 2497 E12 2498 F13
2499 E13 2603 C6 2604 C9 2605 C5
1 34567892
2620 C9 2621 D10
2622 A10 2623 C3 2624 C11
2625 C10 2627 C11 2628 A8
2629 C12 2630 C9 2631 B9 2633 D7
2635 A8 2642 B11
2653 D10 2656 B2 2657 B3
2659 C2 2660 F11 3403 A13
3412 D5 3418 F9 3419 D3 3420 C3
3421 D2 3422 D3
3449 F2 3455 D2 3456 D2
3457 C4 3458 E3 3459 E2
3466 E12 3467 A12 3472 E12 3474 E12
3475 F11 3476 E12
3478 F11 3479 F10 3480 F10
3481 F10 3482 F9 3483 F9
3484 F8 3485 F7 3486 E3 3487 F3
3488 E9 3489 F9
3490 E5 3491 F12 3492 E8
3493 E8 3495 F13 3496 G8
3497 D13 3610 B5 3611 C3 3620 D10
FRAME DEFLECTION
A
E/W DRIVE
8Vb
8Vb
A45
B
C
D
2V / div DC
10s / div
A46
1V / div DC
20s / div
A47
50V / div DC
20s / div
A48
E
500mV / div DC
10s / div
A8-10
FRAMEDRIVE+
A8-11
FRAMEDRIVE-
22n
3K3
3455
3421
470K
6K8
3456
2404
2458
A8-41
560p
HFB_X-RAY-PROT
22n
2656
3658
2659
2K2
3659
5
6
1n
3459
470R
A8-6
F
G
EW-DRIVE
+11D
3449
100R
2451
1m
6457
BZX384-C5V6
NOTE
BRIDGECOIL PROTECTION (5422) IS TRIGGERED VIA EW
12K
3655
1V1
1K2
3656
22K
8Vb8Vb
8
4
A49
BZX384-C2V7
6458
A33
3
1V1
2
A3
7440-B LM358N
6455
8Vb
4
MCL4148
2454
7
3419
470K
8
4
0V
3657
22K
2623
2n2
15n
2657
2403
3422
3K3
3486
1
2
3487
1V3
7440-A LM358N
1n
3458
470R
6K8
6456
8K2
10n
A35
1
3611
8Vb
3420
7441 BC857B
7455
PMBT2369
0V5
3
BAV99
3
1V2
2
1V3
2K2
8Vb
1K5
3K3
3457
0V
0V
15n
2457
A37
9405
3654
4K7
(SEE DIAGRAM A3 ALSO)
2493
3n3
123456789101112
8
7V9
4
0V
1V6
1V2
3621 D11 3622 D11
3623 D10 3624 C11 3625 C12
3626 C12 3627 C12 3628 A7
3629 C12 3630 C8 3631 B7 3632 C6
A36
1
0V4
7450-A LM393D
8Vb
7V9
5
0V7
6
TO
1693
VDAF
A33
500mV / div AC
7450-B
8
LM393D
4
A38
5ms / div
3633 B7 3634 C9
3635 A9 3636 A9 3637 A9
3638 B8 3639 C6 3640 A7
3641 C5 3642 B7 3643 B8 3644 B12
6K8
3610
MCL4148
7
7V9
6616
2V6
6614
BAT254
0V4
6615
9481
3645 A11 3646 C12
3647 C11 3652 B12 3653 C11
3654 F4 3655 B2 3656 B2
3657 C3 3658 C2 3659 C2 3660 B6
COLD
5621
S13974
56
3
1
1n
2605
3641
470R
3V5
7614 BC847B
0V
1K8
3412
3K3
3490
MCL4148
14
15
2
A34
500mV / div AC
5ms / div
HOT
+8V-S
10
GND-SUP
3639
-0V9
RES
7483 TCET1102
32
7482 TCDT1102G
4
HOTCOLD
3661 C12 3662 B6
3663 C12 3688 G10 5467 F10
5620 B11 5621 A5 6405 A12
6442 B12 6455 E3 6456 F3 6457 G2
MCL4148
6627
6618
3660
MCL4148
5K6
6617
1K5
3662
MCL4148
56K
220p
2603
A39
4V1
7612 BC847B
0V1
GND-SUP
HOT GROUND
A35
2V / div DC
20s / div
6458 G2 6480 E10
6481 F9 6482 F8 6483 F10
6491 E13 6493 F12 6494 F12
6499 F13 6614 C5 6615 E5 6616 C5
MCL4148
6626
3628
100R
RES
3632
39K
2633
EN 33EM5.3A P/M AA 7.
MCL4148
6625
0V4
56K
3633
GND-SUP
3n3
GND-SUP
A36
500mV / div DC
20s / div
6617 B6 6618 A6
6619 C11 6620 A10 6621 A10
6622 B10 6623 B11 6624 C12
6625 A7 6626 A7 6627 A6 6628 C12
2K2
3640
7611 BC847B
9483
RES
9482
3485
3631
470R
3642
2K2
GND-SUP
7440-A B3 7440-B D3
7441 D3 7442 D13 7443 A12
7450-A B4 7450-B F5 7455 D3
7480 F10 7482 F6 7483 E6 7486 F8
+8V-S
2628
100u
GND-SUP
330K
47K
3643
+8V-S
EW
3492
100R
100u
2490
A45
BC847B
7487
GND-SUP
A37
500mV / div DC
5ms / div
7487 F8 7611 A7
7612 D6 7613 A8 7614 C5
7620 B9 7641 A12 7652 B12
7653 F12 7654 E12 9405 F3 9481 F5
+13V-LOT
A50
2635
12
7613
TL431CZ
3638
470K
33K
3630
GND-SUP
-
FRAME
3493
4K7
3484
BC847B
6482
BAS216
2K7
3496
GND-SUP
A38
500mV / div DC
100n
2631
2630
3634
39K
150K
7486
3483
5ms / div
9482 F7 9483 E7
9499 F12 9620 B10 9622 B11
3635
330R
8V2
1
2
0V
GND-SUP
2u2
2u2
5V7
RES
2481
1V
1K8
3
1V9
RES
+141V
3482
2480
2604
2n2
3636
3637
220n
3488
100R
4n7
A39
22K
10K
A40
1
7
1A4
2620
220n
-15V-LOT
680K
3418
0V
6481
BZX284-C15
GND-SUP
2V / div DC
10us / div
10 11 12
+13V-LOT
FRAME DEFLECTION
13V7
6621
-3V6
BYD33D
9620
2
VSUP VSUPO
GND
4
-15V2
2625
470n
2621
100n
GND-SUP
18K
2653
3n3
7480
STP3NB60
G
A46
6483
3688
100K
A4-46
GND-SUP
EW
A40
200mV / div DC
2ms / div
2622
100u
6622
13V7
6
FLYBACK
GENERATOR
THERMAL
PROTECTION
GND-SUP
22V5
6480
BYD33D
22V7
5467
D
S
4R7
3479
PM3394B
BZV85-C
3
FLYB
OUT
2624
470n
*
3620
A47
A48
3480
9622
BYV27-200
13V7
7620 TDA8177
IN-
IN+
56K
3481
100R
3489 15K
47n
2482
PM3394B
6620
POWER AMPLIFIER
3623
BAT254
+141V
A42
2642
GND-SUP
0V2
GND-SUP
A43
5
1R5
3624
0V9
2627
*
*
1R
1R
3621
3622
3478
100R
4R7
GND-SUP
GND-SUP
A41
PM3394B
200mV / div DC
2ms / div
3645
5620
3R3
150K
90R
3475
4K7
6623
100u
470p
2R2
6619
BYD33D
10u
3653
GND-SUP
1n
2660
6405
BZX79-C47
220R
MCL4148
2448
3647
3646
22K
3627
+141V
3476
3472
GND-SUP
6493
BAT254
6494
RES
MCL4148
GND-SUP
A42
5V / div DC
2ms / div
PROTECTION CIRCUIT
BC847B
7443
10u
3467
100K
100R
RES
100n
RES
21V7
7654
BC857B
10u
A43
2487
GND-SUP
7652
BC847B
6628
6624
MCL4148
3661
3663
150R
A44
-14V2
7442
BC857B
56K
3474
9499
7653 BC847B
5V / div DC
2ms / div
GND-SUP
RES
MCL4148
150R
2499
A4-46
EW
BC847B
7641
3644
6442
BZX284-C15
47K
3625
120R
3626
100R
22K
21V7
2466
100n 3466
220K
4K7
39K
2497
3491
33n
3629
2629
47K
3652
100R
2491
13 14
GND-SUP
(SEE NOTE)
3403
100R
1625
EH-B
1
FRAME
2
DEFLECTION
3
COIL
1627
EH-B
1
2
3
3497
33K
3n3
6491
1PS76SB10
RES
6499
3495
33K
2498
470n
GND-SUP
A44
500mV / div DC
10ms / div
13 14
A1-A3-23
SUP-ENABLE
BZX384-C10
CL 26532067_035.eps
171204
A
B
C
D
E
F
G
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料

Large Signal Panel: Rotation Circuitry

1601 A2 1620 C4 2601 C2
3681 D2 3682 E2 3683 D1
3684 C2 3685 C1 3686 B1
3687 C3 6080 C2 6081 B3
6082 B2 6083 C4 7680 B2
7681 D2 7682 D2
1
23
ROTATION CIRCUITRY
EN 34EM5.3A P/M AA 7.
Personal Notes:
4
A
B
A8-49
TILT
A52
3686
56K
27K
C
3685
3684
6082
BAT254
6K8
2601
RES
+11V
RES
100n
7680
TDA7052
2
3
+11V
1601
1
+Vp
6080
125mA
13V1
6
OV6
MCL4148
MP13
3687
820R
A
B
A53
5
6081
RES
OV
BZM55-C15
8
7
4
RES
6083
+11V
BZM55-C15
3
2
1
1620
TO ROTATION DEFLECTION COIL
EH-B
C
D
E
3681
470R
OV6
1V2
7681
BC847B
3682
100K
0V1
7682 BC368
0V1
CL 26532067_036.eps
171204
3683
10K
1V3
1234
D
E
Circuit Diagrams and PWB Layouts
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Large Signal Panel: Audio Amplifier

21
AUDIO AMPLIFIER
A8-13
AUDIO-L
A8-14
AUDIO-R
A
-Vf11
220n
-Vf1
2708
22n
2786
B
4K7
3721
56K
C
3723
3722
68K
-Vf11
-16V-19V
D
100p
2777
2788
+16V+19V
3745
5707
83R
5708
83R
1K
470p
470p
220n
2789
2721
2722
100p
2724
2790
100p
OV
OV
100n
2779
A56
2704
1n
3791
10K
FEED4
19
FEED3
17
NC
20
-VCC3
24
+VCC2
22
2726
33n
220n
1K
3792
IN2 18
G=2.5
STAGE2
BOOT221
22K
220n
8R2
PRE-AMP2
INTERGR 2
PWM
OUT223
330p
3725
2720
3705
VREG 25
-19V
T215
2728
2707
-VCC1 1
OV
100n
-5V 16
OSC
OSC8
OV
22K
OV
GND 13
3710
+5V 12
PRE-AMP1
INTERGR 1
STAGE2
T111
OV
330p
2716
A58
OUT13
2706
STBY-MUTE
PWM
1735
EH-B
2727
1n
A57
4
3
2
1
68u
5702
3712
3750
10K
680n
2K2
2718
2729
22p
3743
2K2
100K
3717
68u
2717
PROT1
PROT_AUDIOSUPPLY
E
15W/8
F
15W/8
3726
6745
BZX384-C10
3724
220R
2711
1n
220R
-Vf11
R
L
21
3
100n
1K
FEED1
G=2.5
FEED2
CURREF
-VCC2
+VCC1
BOOT15
9V6
2714
33n
A59
2715
1n
5701
680n
5703
30R
3793
2702
1n
3790
10K
TDA7490
7700
IN1 10
3718
PROT1
6
7
9
14
2
4
2719
1n
-Vf1
100K
OV
OV
3711
120K
-Vf1
7707
9706
100n
2712
3727
EN 35EM5.3A P/M AA 7.
4 87653
A57
20V / div AC
2us / div
1K
100p
2795
2796
2K2
3751
PM3394B
2755
1n
3796
10K
FEED4
19
FEED3
17
NC
20
-VCC3
24
+VCC2
22
100p
2743
2759
1n
3729
PROT1
AUDIO-C
2754
3794
33n
5720
100K
2758
A58
200mV / div DC
2ms / div
A8-18
2u2
220n
1K
220n
8R2
A60
18IN2
G=2.5
INTERGR 2
PWM
STAGE2
21 BOOT2
22K
3733
3741
68u
680n
-Vf21
PRE-AMP2
23 OUT2
2742
10K
3755
2K2
A56
200mV / div DC
2ms / div
PROT1
3748 3749
2778
BC847B
2710
470p
2780
220R
4u7
2781
220n
220R
9717
7704
BC847B
+16V+19V
5712
83R
5711
83R
220n
3709
1K
3704
10K
7705
BC857B
3714
47K
3746
22K
+16V+19V
-16V-19V
3715
47K
7706
3707
0045
3703
33K
3702
10K
BC847B
2709
470p
68K
56K
3708
3716
47K
3706
6701
3798
4K7
7701
BC847B
BAS216
15K
3701
2705
470n 2713
470n
7703
10K
3713
3720
BC847B
1K2
56K
+16V+19V
3730
220R
-Vs
2794
A61
220R
3739
-Vf21
3742
83R
68K
5723
83R
2782
100p
5722
4K7
470p
470p
2723
1n
220n
2757
3740
2760
2756
100n
220n2784
CENTRE
-Vf21
-16V-19V
EH-B
3
2
1
1738
15W/8
POR
SOUND-ENABLE
A8-6
A3-A8-45
4 9
-Vf2
2787
22n
2762
2753
3738
1-VCC1
25VREG
15 T2
330p
2741
+16V+19V
2763
3732
22p
0044
A59
10V / div DC
2us / div
100n
16-5V
OSC
8 OSC
22K
3744
-Vf2
13GND
11 T1
A63
100K
PM3394B
12+5V
PRE-AMP1
INTERGR 1
STAGE2
2745
330p
A62
3 OUT1
5721
A8-19
AUDIO-SW
2749
1K
3795
10IN1
STBY-MUTE
FEED1
G=2.5
FEED2
CURREF
PWM
-VCC2
+VCC1
5 BOOT1
2744
33n
2746
1n
68u
2740
680n
8765
2u2
2750
1n
3797
10K
3728
PROT1
-16V-19V
2751
100n
TDA7490 7702
6
7
9
120K
14
2
4
-Vf2
2725
1n
100K
3752
5725
83R
3734
100n
2748
2785
2K2
9
-Vs
7708
BC847B
3735
68K
2783
2792
2798
220n
100p
2797
100p
5715
83R
2791
220n
220n
3731
220R
3719
220R
SUBWOOFER
3
2
1
EH-B
1737
15W/8
CL 26532041_015.eps
3747
47K
4K7
470p470p
220n
5716
83R
-Vs
+16V+19V
-Vf2
3737
2761
2747
56K
090402
3736
A
B
C
D
E
F
0044 F7
0045 E5 1735 F2 1737 F9 1738 F6 2702 B3 2704 B2 2705 A5 2706 B3 2707 B2 2708 A2 2709 C5 2710 C4 2711 E1
2712 D4 2713 A5 2714 D3 2715 E3 2716 D3
2717 F3 2718 E2 2719 E4 2720 B2
2721 B1 2722 C1 2723 E6 2724 D1 2725 E8 2726 D2 2727 E2
2728 D2
2729 F2 2740 F8 2741 E7 2742 E7 2743 E7 2744 E8
2745 E8
2746 E8 2747 D9 2748 E9 2749 B8
2750 C8 2751 A8 2753 B7 2754 B7 2755 C7 2756 D6 2757 D6 2758 F7
2759 E7 2760 C6 2761 C9 2762 B7 2763 B7 2777 D1 2778 B4
2779 D1 2780 D4
2781 D4
2782 D6 2783 D9 2784 E6
2785 E9 2786 A2 2787 A7 2788 D1 2789 D1 2790 D1 2791 E9 2792 D9 2794 D6 2795 D6 2796 E6 2797 D9
2798 D9 3701 E5
3702 A5 3703 A5 3704 A5 3705 B2 3706 E5 3707 C5
3708 E5 3709 E4 3710 D3
3711 C4 3712 E2 3713 C5 3714 B4 3715 B5 3716 B5 3717 F3 3718 F3
3719 E9 3720 E6 3721 B1 3722 C1 3723 B1 3724 E1
3725 D2
3726 E1 3727 E4 3728 F8 3729 F7 3730 E6 3731 E9 3732 E7 3733 E7
3734 D9 3735 C9 3736 D9
3737 C9
3738 C7 3739 C6 3740 B6 3741 E7
3742 D6 3743 E3 3744 E8 3745 D1 3746 C5
3747 B9
3748 A5 3749 A6 3750 F2
3751 F6
3752 F9 3755 F7 3790 B3 3791 B2 3792 B2 3793 B3
3794 B7 3795 B8 3796 C7 3797 C8 3798 C5 5701 E3 5702 E2
5703 A3 5707 C1 5708 D1 5711 D4 5712 C4 5715 E9 5716 D9 5720 F7 5721 E8 5722 E6 5723 D6 5725 A9 6701 C5 6745 E1 7700 C3
7701 B5 7702 C8
7703 B5 7704 B4 7705 B5 7706 B5 7707 C4 7708 B9
9706 C4
9717 A4
Circuit Diagrams and PWB Layouts
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Large Signal Panel: Tuner SIM Connector (Female)

TUNER SIM CONNECTOR (FEMALE)
3907
47R
7V5
7912
+8V
3904
2915
5902
33u
5903
33u
9980
9909
MC78M05
IN OUT
GND
0V
7911
L78L05
IN OUT
GND
6R8
10u
3910
68R
2201
4V9
4V9
+8VS2
A68
10
11
7
6
220n
+11V5
5901
10u
+8V
3941
2914
FM
2V2
0V
8
NC GND
TUNER
IF1
MB2
1200
MB1
TU2
9
33V
7910
LD1086
IN OUT
GND
2200
6R8
+8VS
10u
2
TEDE9
AGC
1
1V7
10u
*
+8VS
+5VT
9906
SDA
SCL
3999
1K
A68
+3V3
100u
2940
8V1
7901
BC847B
2V4
3930
1997
1
2
0V
12131415
A69
3201
5
4
AS
3
5V
100R 3200
100R
A70
4V9
3V
9908
3929
560R
EH-S
FROM EXTERNAL
FM
5V
200mV / div DC
20s / div
2916
330p 3928
100R
10K
3261
100R
3262
CVBS-TER-OUT
TER-CVBS-OUT
COMPAIR
CONNECTOR
SDA-S
SCL-S
100R
SDA-S
SCL-S
B
+8V6 +8V
+11V
+5V
+5.2V
+8V
E
+5VT
F
AUTO SCAVEM
SDA-S
SCL-S
IF-TER
GND-CVBS-OUT
GND-CVBS-OUT
0V
AGC
0V
4V1
2V6
1
1201
TO
1510
SUPPLY
GND-LINEDRIVE
components with diversity
*
I
c001
GND
c002
TO
1000
SIM CONN MALE
2951
10n
220n
2202
9215
A2-47
VTUN
6200
BZM55-C33
B-SC1-IN_U-IN
G-SC1-IN_Y-IN
0V
0V
1205
1
100u
2950
10n
R-SC1_V-IN
0V
3
2203
FBL-SC1-IN
Y_CVBS-SC2_AV2-IN
0V
GND-RGB-SC1_YUV
0V
0V
4
6201
*
6202
*
3250
22K
C-SC2_SVHS-IN
CVBS-SC2_MON-OUT
GND-CVBS-IN
0V
0V
2V7
7
9
CVBS-SC1_AV1-IN
CVBS-TER-OUT
A11-59
0V
2V7
0V
111213141516171819220
10
EHT-INFO
R-SC1_V-IN
G-SC1-IN_Y-IN
B-SC1-IN_U-IN
FBL-SC1-IN
SC1-R_V-IN
A11-53
A11-52
SC1-G-IN_Y-IN
A11-51
SC1-B-IN_U-IN
SC1-FBL-IN
A11-54
Y_CVBS-FRONT-IN
A11-60
TO
1943
1
2
3
EH-S
1955
1
2
3
EH-B
PIP-CVBS
GND-PIP
0V
CVBS-PIP_TUN1-2-CVBS-IN
C-FRONT-IN
L-FRONT-IN
FRONT-DETECT
R-FRONT-IN
GND-AUD
HEADPH-L
HEADPH-R
+11V5
HFB_X-RAY-PROT
EHT-INFO
R-CRT
G-CRT
B-CRT
CUTOFF
A11-69
A11-67
P50
CUTOFF
SC1-STATUS
A8-61
SEL-SVHS-RR_STATUS2
0V
0V
3V2
5V7
21
9990
A7-37
A7-30
B-CRT
G-CRT
GND-RGB-CRT
3V
3V
0V
222324
9989
+8V
R-CRT
3V
252627
9988
9250
9251
9982
GND-RGB-CRT
A3-4
A3-3
A4-10
LINEDRIVE1
FRAMEDRIVE+
GND-LINEDRIVE
0V
2V5
1V1
3
4
5
6
9987
4
3
2
1
1
2
3
4
5
6
7
8
9
10
11
1
0V
2
0V
3
6V
4
2V8
5
8V4
6
3V
7
3V
8
3V
9
10
0V
11
5V7
A4-11
GND
FRAMEDRIVE-
0V9
0V
303132
28
29
1934
EH-B
1
2
RESERVED
1933
EH-B
PIP
2
1
EH-B
1965
1936
1940
EH-B
A4-6
A4-41
EW-DRIVE
HFB_X-RAY-PROT
1V4
1V6
3427
56K
NC
PIP
TO
SIDE IO
A11-70
A11-71
TO
1940
CRT
A3-20
A5-49
TILT
EHT-INFO
1n
2455
2947
DYN-FASE-COR
2V3
6V
4V
0V
3334353637
EN 36EM5.3A P/M AA 7.
2496
GND
AUDIO-SL
R-CL_VL-OUT
L-CL_VL-OUT
C-FRONT-IN
Y_CVBS-FRONT-IN
PIP-MONO
PIP-CVBS
TER-CVBS-OUT
CVBS-SC1_AV1-IN
C-SC2_SVHS-IN
Y_CVBS-SC2_AV2-IN
PANORAMA
A2-9
IRQ-DIGITAL
STANDBY
LIGHT-SENSOR
4u7
A10-31
0V
38
BZX384-C5V6
10n
+5.2V
PIP-MONO
2941
100n
5V2
0V
404142
39
6401
3428
330K
3429
100K
9905
Y-SCAVEM
2V8
3432
100K
9206
9205
2930
1n
3V2
+8V
100n
2942
2943
8V1
+3V3
3V5
0V
4344454647
3430
100K
2931
1n
5904
100n
5V1
SCL-S
83R
3V5
+5VA
+3V3
BAS316
6402
2483
4n7
1961
1
2
3
4
5
1953
1
2
3
1952
1
2
3
1935
1
2
3
4
5
1
2
1
2
SDA-S
+5V
3V5
1932
PH-B
1966
SDA-S
5V
5V
48
EW-DRIVE
PH-B
MULTI MEDIA
EH-B
PIP
EH-B
PIP US
EH-B
PIP
RESERVED
PH-B
ANTI MOIRE
A6-2
A3-45
POR
SCL-S
SOUND-ENABLE
0V
0V
495505152
SDA-S SCL-S
SC1-STATUS
HFB_X-RAY-PROT
PROT_AUDIOSUPPLY
3210
C-FRONT-IN
CVBS-SC2_MON-OUT
A11-55
A11-65
L-SC2-OUT
L-SC2_AV2-IN
L-SC1_AV1-IN
GND-SCART-AV
0V
0V
0V
54
53
10 11 12 13 14567891234
VTUN
1K
A11-61
A11-57
L-SC1_AV-OUT
0V
0V
55
56
10 11 12 13 14567891234
+8V
2K2
3211
3212
100R 7210 BC847B
2929
220n
3938
2V7
100R
3939
A11-64
A11-62
R-SC2-OUT
R-SC2_AV2-IN
GND-SCART-AV
0V
0V
0V
58
596606162
57
9907
9213
9983
3213
15R
3942
100R
8V1
10K
3940
A9-50
R-SC1_AV1-IN
R-SC1_AV-OUT
FRONT-DETECT
A11-56
A8-58
0V
0V
0V8
NOT EUR
AUDIO-SL
7211 BC847B
+8VS2
10K
3943
8V1
1V7
1V1
2K7
3903
3945
7902 BC847B
2918
2V7
560R
L-FRONT-IN
C-FRONT-IN
Y_CVBS-FRONT-IN
0V
0V
0V
63
64
+5.2V
+5VA
+8V
+11V5
VTUN
2917
7908 BC847B
560R
+8VS
100n
R-FRONT-IN
0V
666768
65
NOT EUR
100n
A11-74
HEADPH-L
HEADPH-R
2948
100u
2949
100u
HEADPHONE-L
HEADPHONE-R
4V5
0V
4V5
9904
9203
9201
9901
9902
9903
9984
220n
SC2-CVBS_MON-OUT
A11-72
L-CL_VL-OUT
R-CL_VL-OUT
GND-AUD
0V
0V
7071727374
69
SDA-S
SCL-S
NOT EUR
A6-18
A11-73
AUDIO-SL
0V
VA
A11-66
SC2-C-OUT
A11-68
A6-19
AUDIO-C
AUDIO-SW
3V5
4V3
+5V
+8V
HA
A6-13
AUDIO-L
2945
9998
3V6
75
1951
1
2
3
4
5
EH-B
1937
1
2
3
4
5
6
7
8
9
10
EH-B
1948
1
2
3
A6-14
AUDIO-R
2u2
2u2
2946
3V5
76
3D COMB
PIP
PIP
PH-B
A9-24
A9-27
A10-25
RC
KEYBOARD
ON-OFF-LED
0V
3V3
3V1
78
77
TO
C
2437
.
.
-
-
DEGAUSSING
3V
79880
CL 26532067_003.eps
A11
190602
9989 B6
1200 F2
9990 B5
1201 G1
9998 I13
1205 I2 1932 F9 1933 B6
c001 H1
1934 A6
c002 H1
1935 E9 1936 D6 1937 B13 1940 E6 1943 E4 1948 D13
A
1951 A13 1952 D9 1953 D9 1955 F4 1961 B9 1965 C6 1966 G9 1997 E3 2200 C2 2201 F1 2202 G2 2203 G2
B
2455 H7 2483 B9 2496 A7 2914 E2 2915 E1 2916 C4 2917 E12 2918 F11 2929 E10 2930 E8 2931 C8 2940 B3
C
2941 I8 2942 I8 2943 I8 2945 H13 2946 H13 2947 I7 2948 H12 2949 H12 2950 G3 2951 G2 3200 F3
D
3201 E3 3210 D10 3211 C10 3212 D11 3213 C11 3250 H3 3261 E4 3262 E4 3427 A7 3428 A8 3429 B8 3430 A8
E
3432 A8 3903 E11 3904 D1 3907 C1 3910 C1 3928 C4 3929 D3 3930 D3 3938 F10 3939 G10 3940 G11 3941 D2
F
3942 E11 3943 E11 3945 E11 3999 A3 5901 C2 5902 A1 5903 A1 5904 H8 6200 G2 6201 G3 6202 G3
G
6401 A8 6402 A9 7210 D10 7211 D11 7901 C3 7902 F11 7908 E11 7910 B2 7911 C1 7912 C1 9201 C12 9203 C12
H
9205 E8 9206 D8 9213 B11 9215 G2 9250 E6 9251 E6 9901 C12 9902 C12 9903 C12 9904 C12 9905 F8 9906 E3
I
9907 B11 9908 C3 9909 B1 9980 B1 9982 E6 9983 C11 9984 E12 9987 B6 9988 B6
Circuit Diagrams and PWB Layouts
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EN 37EM5.3A P/M AA 7.

Large Signal Panel: Receiver

1950 A1 2900 B2 3900 A3 3901 B3 3902 C3 6900 B3
RECEIVER
A
1950
AGC
M1 45
CTRL
CIRCUIT
BAND PASS
M2
DEM
INP
PIN
RC RECEIVER
VS 2
OUT 1
GND
RES
3
2900
3900
220R
100u
B
C
3901
6900
3902
A71
470R
TLDR5400
1K8
+5.2V_MP

Large Signal Panel: Front

321
4321
FRONT
A
B
C
1945 E3 1946 B2 1947 A2 1949 B2 3999 E1 9970 A3 9973 B3
A8-24
A8-27
A
B
C
A
B
C
TACT
TO
0241
SWITCH
PANEL
NC
PH-B
NC
EH-B
1947
1949
1946
2
1
2
1
1
2
3
4
5
6
7
8
9
9978
5
4
3
2V
3V1
5V2
0V
0V
3V3
0V
8V2
ON-OFF-LED
RC
+5.2V
9970
9973
ON-OFF-LED
KEYBOARD
LIGHT-SENSOR
+8V
RC
RC
+5.2V
+8V
A8-27
A8-24
A8-24
A8-27
A8-24
A8-25
A8-31
CL 26532067_004.eps
120602
4321
D
E
A8-25
KEYBOARD
TO
0345
TOP CONTROL
PANEL
CL 26532067_005.eps
050602
3V3
1945
1
0V
2
3
0V
123
D
E
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Large Signal Panel: Inputs/Outputs

123456789
A
3950
10K
1901
6
5
AV2:
B
C
INPUTS/OUTPUTS
SVHS-IN:
2
4
3
1900-C
1900-A
1
1900-B
2
3
1988
1
6
4
1990
5
1989
1987
1991
3969
1K
3970
1K
3995
3968
2998
2999
75R
75R
SEL-SVHS-RR_STATUS2
3996
100R
3967
100R
100p
100p
C-SC2_SVHS-IN
Y_CVBS-SC2_AV2-IN
AV1:
D
18
15
1900-F
1900-H
14 17
1900-G
13 16
1983
1996
1995
3958
3960
3962
3957
100R
75R
3959
100R
75R
3961
100R
75R
25
E
F
9
12
1900-I
1994
1900-E
811
1993
1900-D
710
1992
3964
3965
1K
3966
1K
75R
3963
100R
2993
2994
CVBS-SC1_AV1-IN
100p
100p
1
123456789
A8-69
A8-70
A8-71
R-SC2_AV2-IN
A8-64
L-SC2_AV2-IN
A8-65
A8-59
L-SC1_AV1-IN
A8-55
R-SC1_AV1-IN
A8-56
2996
2u2
2995
2997
2u2
2u2
3982
10R
3974
10R
3990
10R
3979
3983
3971
3975
3987
3991
EN 38EM5.3A P/M AA 7.
100K
7993 BC847B
27K
100K
7995 BC847B
39K
100K
7991 BC847B
39K
3980
3984
3972
3976
3988
3992
1K
150R
1K
270R
1K
330R
3985
180R
3977
470R
3993
100R
3981
BC857B 7992
3986
3973
BC857B 7994
3978
3989
BC857B 7990
3994
1K
1K
1K
1K
1K
1K
SC1-G-IN_Y-IN
A8-52
SC1-B-IN_U-IN
A8-51
SC1-R_V-IN
A8-53
:
A8
2988
SC2-CVBS_MON-OUT
A8-68
L-SC2-OUT
A8-61
R-SC2-OUT
A8-62
AUDIO-SL
A8-73
L-CL_VL-OUT
A8-74
R-CL_VL-OUT
A8-72
100n
2989
100u
3997
150R
3946
150R
3948
150R
5900
5u6
3954
150R
3956
150R
3952
75R
+8VS
2991
2992
2987
2986
2985
330p
330p
330p
330p
330p
3953
150R
3955
150R
3951
150R
3947
150R
3949
150R
AV2 OUT:
1900-L
2124
1984
1900-K
2023
1999
1900-J
1922
1998
AUDIO-OUT
YKC21-2675
1982
YKC21-2675
1981
YKC21-2675
1980
63
1902-C
2
5
1902-B
41
1902-A
CL 26532067_006.eps
290502
1900-A B1 1900-B B1 1900-C B1 1900-D F1 1900-E F1 1900-F C1 1900-G D1 1900-H D1 1900-I E1
A
1900-J C9 1900-K B9 1900-L A9 1901 A1 1902-A F9 1902-B E9 1902-C D9 1980 F9 1981 E9
B
1982 D9 1983 C1 1984 B9 1987 A2 1988 A2 1989 C2 1990 B2 1991 B2 1992 F1
C
1993 F1 1994 E1 1995 D1 1996 D1 1998 C9 1999 B9 2985 F8 2986 E8 2987 D8 2988 A7
D
2989 A7 2991 B8 2992 C8 2993 F2 2994 F2 2995 D4 2996 A4 2997 E4 2998 B2
E
2999 C2 3946 E7 3947 E8 3948 F7 3949 F8 3950 A1 3951 D8 3952 A8 3953 B8
F
3954 B7 3955 C8 3956 C7 3957 C3 3958 C2 3959 D3 3960 D2
3961 D3 3962 D2 3963 E3 3964 E2 3965 F2 3966 F2 3967 B3 3968 B2 3969 B2 3970 C2 3971 C5 3972 C5 3973 C6 3974 C4 3975 D5 3976 D5 3977 C5 3978 D6 3979 A5 3980 A5 3981 A6 3982 A4 3983 B5 3984 B5 3985 B5 3986 B6 3987 D5 3988 D5 3989 D6 3990 E4 3991 E5 3992 E5 3993 E5 3994 E6 3995 A2 3996 A3 3997 D7 5900 A7 7990 E6 7991 E5 7992 A6 7993 A5 7994 C6 7995 C5
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Layout Large Signal Panel (Top Side)

EN 39EM5.3A P/M AA 7.
CL 26532067_007.eps
050602
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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EN 40EM5.3A P/M AA 7.

Large Signal Panel: Mapping Top Side

0042 C8 0043 C5 0044 E7 0045 F5 1146 G2 1147 G3 1148 F2 1200 G10 1201 G6 1205 F8 1417 B8 1424 A10 1430 C9 1491 A7 1492 A10 1493 A8 1495 C10 1498 A10 1499 D9 1500 A2 1501 B2 1502 A3 1503 C3 1505 A3 1510 D5 1550 B3 1590 A3 1591 B4 1601 G1 1620 F1 1625 B10 1627 B10 1693 D9 1735 G5 1737 F7 1738 F7 1900 E10 1902 F10 1932 E8 1933 E10 1934 F10 1935 F9 1936 F7 1937 G7 1940 F9 1943 G10 1945 G5 1946 G5 1947 G4 1948 G8 1949 G2 1950 B1 1951 G7 1952 G9 1953 E7 1955 G8 1961 G7 1965 E9 1966 F8 1997 G10 2100 E3 2101 D2 2102 E2 2104 F3 2107 F3 2108 C2 2111 D1 2114 C1 2115 E2 2116 E1 2118 F2 2119 F3 2120 G2 2121 E2 2122 E2 2124 C1 2126 G2 2132 F2 2140 G4 2141 G2 2143 F2 2148 F1 2151 E1 2152 E3 2157 E2 2161 C2 2200 G9 2203 G9 2400 B6 2401 A7 2402 A10 2405 A7 2413 D8 2418 C8 2419 C7 2420 C8 2421 B6 2422 A5 2423 A6 2424 C5 2425 C7 2426 C6 2430 B7 2431 B7 2432 B6 2433 B6 2434 B6 2435 C8 2450 A10 2451 D10
2460 A10 2461 A10 2462 C10 2463 C9 2464 C10 2465 C9 2468 A9 2469 A8 2487 A7 2488 C8 2490 D6 2491 A6 2492 E8 2501 D4 2503 D3 2505 D5 2506 E5 2507 A2 2508 B5 2509 B4 2510 D3 2511 G5 2512 G4 2515 D5 2516 B4 2517 C4 2518 D3 2519 F4 2520 A3 2521 B2 2522 F4 2523 D4 2526 D4 2527 C3 2529 C5 2531 E4 2537 B4 2539 C5 2540 F4 2541 C3 2542 G4 2543 G5 2622 C10 2624 B10 2625 B10 2627 B10 2628 D10 2642 A6 2717 G5 2729 G6 2740 E7 2758 E7 2778 D6 2900 B1 2914 F10 2915 E9 2940 F7 2947 G2 2948 F7 2949 F7 2989 F10 3101 C2 3102 D2 3103 D2 3104 D2 3105 D2 3106 D1 3107 D1 3108 C2 3111 D2 3113 E2 3114 E1 3115 G2 3116 G2 3117 D2 3118 C2 3123 F1 3124 E1 3125 D1 3126 E1 3127 E1 3137 G1 3141 G3 3144 F2 3161 F2 3162 F2 3171 F2 3172 F1 3213 F7 3400 A9 3401 A7 3402 A7 3403 A7 3409 C9 3411 D8 3415 D8 3416 E8 3417 C8 3418 C6 3423 C7 3425 C6 3426 C6 3431 B7 3435 B6 3436 B5 3449 E9 3450 A10 3451 B10 3460 A10 3461 A10
3462 C9 3463 C9 3464 C9 3465 C9 3469 A10 3476 A7 3478 C6 3479 C6 3480 C6 3488 C5 3492 D7 3493 C6 3495 A6 3498 C10 3499 C10 3500 A4 3501 A3 3502 D6 3503 D5 3505 E3 3507 E5 3508 E4 3509 B2 3511 D3 3513 C3 3514 E4 3515 D5 3516 B4 3518 C3 3520 E4 3521 A2 3526 E5 3533 F4 3537 A3 3540 E4 3541 D5 3542 E5 3543 D3 3545 D3 3546 D3 3548 C5 3550 B4 3551 C5 3554 C5 3555 C5 3559 C5 3562 B4 3620 C10 3621 C10 3622 C10 3623 C10 3624 B10 3625 C10 3626 C10 3628 D9 3634 C10 3635 C9 3641 D10 3642 B10 3645 A7 3661 C10 3663 C10 3681 G1 3687 G1 3689 A8 3711 F6 3713 E6 3728 F6 3747 E6 3749 D7 3755 E6 3904 E9 3941 F10 3952 F10 3958 E10 3960 E10 3962 F10 3963 E10 3964 E10 3968 D10 3992 F10 3994 F10 3995 D10 5100 E3 5101 C2 5102 D1 5103 F3 5104 E2 5105 F2 5108 C2 5109 D2 5110 E1 5111 E2 5112 E2 5113 D2 5130 F2 5131 E2 5400 C5 5401 A7 5402 B8 5410 D9 5411 C8 5421 B7 5422 A6 5423 C7 5424 A6 5425 C7 5426 C8 5430 B10 5461 A10
5463 C9 5465 C8 5466 A8 5467 C6 5469 A8 5502 A5 5503 A3 5504 A3 5505 D4 5506 E5 5507 F4 5509 F4 5511 A4 5512 E5 5513 F5 5514 F4 5515 A3 5516 A5 5517 D4 5518 D5 5520 E3 5620 B10 5621 D10 5701 F6 5702 F6 5707 G6 5708 F6 5711 G5 5712 F6 5715 E7 5716 E6 5720 E7 5721 E6 5722 D7 5723 D7 5725 E5 5900 F10 5901 G9 5902 G3 5903 G1 5904 G8 6103 D2 6105 D2 6106 D1 6107 F3 6109 C2 6110 E1 6111 F3 6113 F2 6114 D2 6120 F1 6121 F1 6122 E1 6130 F3 6147 C2 6148 F2 6400 A9 6405 A7 6408 E8 6421 D8 6422 D7 6423 C7 6434 B6 6435 C6 6460 A10 6462 C9 6463 C9 6464 C9 6465 C9 6480 C7 6505 D4 6510 C3 6515 D5 6519 E3 6520 E3 6525 B5 6530 D3 6534 D3 6535 F4 6536 G5 6619 B10 6620 C10 6621 C10 6622 C10 6900 B1 7100 D1 7101 C2 7102 D3 7103 E1 7104 E1 7105 C1 7131 F3 7141 G4 7408 D8 7421 D8 7440 D9 7480 D6 7482 D8 7483 D8 7502 E3 7503 D5 7504 D4 7506 E4 7507 E4 7508 C5 7528 B2 7529 F4 7613 D9 7620 C10 7680 F1
7682 G1 7700 F6 7702 E6 7910 G7 7911 G9 7912 G9 9101 C2 9102 G3 9112 F2 9114 D2 9117 E2 9118 G2 9119 G2 9120 G2 9121 G3 9122 F2 9123 E1 9124 F2 9125 G1 9126 G3 9127 E2 9223 G7 9224 G7 9260 E10 9261 E10 9262 D10 9263 E10 9264 D10 9266 F10 9267 E10 9268 E10 9269 E10 9270 F10 9401 B7 9402 B5 9403 C5 9404 C5 9405 E9 9406 B7 9408 C10 9409 A10 9410 A8 9411 A10 9412 E8 9413 E9 9414 E9 9415 E9 9423 C7 9425 C6 9426 C8 9501 A2 9502 A2 9503 B4 9504 B5 9507 B4 9508 D4 9509 C4 9510 D4 9511 C4 9513 B5 9516 A4 9517 E4 9518 C3 9519 B4 9551 B4 9552 F4 9554 C4 9556 E5 9557 E4 9558 E3 9563 E5 9564 C3 9565 B3 9566 E4 9570 F5 9571 F5 9620 C10 9622 C10 9623 C9 9650 C10 9651 C10 9652 A10 9655 A10 9656 A10 9658 C8 9659 B6 9660 B6 9661 B5 9663 B5 9664 C10 9665 C8 9666 C8 9667 C7 9669 D7 9670 C7 9671 B6 9674 A8 9675 A10 9701 E6 9703 E6 9708 D7 9712 E6 9715 D6 9718 E6 9719 E6 9720 E6 9721 D6 9901 G7 9902 G8 9903 G8
9906 G10 9907 G7 9909 G6 9910 E8 9911 E8 9912 E8 9913 E8 9914 E8 9915 E9 9916 E8 9917 E8 9918 E10 9919 E9 9920 E9 9921 E9 9922 E10 9923 E10 9924 E10 9925 F10 9926 F10 9929 G9 9930 G8 9931 F9 9932 G9 9933 F10 9934 F9 9935 G9 9936 G9 9937 G8 9938 G9 9939 F8 9940 G9 9942 F7 9943 G8 9944 G8 9945 G8 9946 G9 9947 G8 9948 F8 9949 F7 9950 F7 9951 G1 9952 G6 9953 G6 9954 F8 9955 G6 9956 G6 9957 B1 9958 B1 9959 F9 9961 F8 9963 G10 9964 G4 9965 G4 9967 G6 9968 F8 9969 F9 9971 G10 9972 G10 9974 G6 9975 G4 9976 B1 9977 E9 9980 G6 9982 F8 9996 F7
CL 26532067_08m.eps
300502

Large Signal Panel: Mapping Bottom Side

2103 D9 2105 D9 2106 G9 2109 F10 2110 C10 2112 C9 2123 C10 2130 G8 2131 G9 2144 C10 2145 C9 2147 G8 2149 F10 2150 G9 2153 E10 2154 F9 2155 E9 2156 E9 2159 D9 2160 D9 2162 G9 2201 G1 2202 G1 2403 D2 2404 D2 2409 D3 2412 D3 2414 D3 2415 D3 2417 C3 2440 D2 2441 B2 2442 B2 2443 B2 2444 B1 2445 B1 2448 A5 2454 E2 2455 F3 2457 D1 2458 E3 2466 A5 2480 C5 2481 C5 2482 D5 2483 F2 2493 E2 2494 B3 2495 B4 2496 F2 2497 A5 2498 A5 2499 A5 2502 E7 2504 D8 2513 E7 2514 E7 2524 E7 2525 E8 2528 B9 2530 E8 2532 F7 2533 D6 2535 D6 2538 E7 2544 D7 2545 C6 2601 F10 2603 D1 2604 C1 2605 D1 2620 C1 2621 C1 2623 D2 2629 B1 2630 D1 2631 D1 2633 C1 2635 D2 2653 C1 2656 D2 2657 D2 2659 D2 2660 A5 2661 C1 2662 E2 2702 E5 2704 E5 2705 D5 2706 F5 2707 F5 2708 F5 2709 F6 2710 F6 2711 F5 2712 F6 2713 D5 2714 F6 2715 F6 2716 F5 2718 F5 2719 G6 2720 F5 2721 F5 2722 F5 2723 E4 2724 F5 2725 E5 2726 F5 2727 F5 2728 F5 2741 E4
2742 E4 2743 E4 2744 E5 2745 E4 2746 E5 2747 E4 2748 D5 2749 D5 2750 E4 2751 E4 2753 E4 2754 D4 2755 D4 2756 E4 2757 D4 2759 E4 2760 E4 2761 E5 2762 E4 2763 E4 2777 F5 2779 F5 2780 F6 2781 F6 2782 E4 2783 E5 2784 E4 2785 E5 2786 F6 2787 E5 2788 F5 2789 F5 2790 F5 2791 E5 2792 E5 2794 E4 2795 D4 2796 E4 2797 E4 2798 E5 2916 F1 2917 E2 2918 F1 2929 E4 2930 F2 2931 F4 2941 F3 2942 G3 2943 G3 2945 F4 2946 F4 2950 G1 2951 G2 2985 F1 2986 F1 2987 F1 2988 F1 2991 F1 2992 F1 2993 E1 2994 E1 2995 E1 2996 E1 2997 F1 2998 E1 2999 E1 3109 G10 3120 E9 3121 E9 3130 F9 3131 G9 3132 G9 3133 F8 3134 G8 3135 G9 3136 G8 3138 D9 3140 F10 3142 G8 3143 G8 3145 D9 3146 C10 3147 D10 3148 C10 3149 C10 3150 C9 3151 G9 3152 C10 3153 F9 3155 G8 3156 G9 3157 G8 3158 G9 3159 G8 3160 C9 3164 F9 3165 G9 3166 G10 3167 G10 3168 F10 3169 E9 3170 E9 3200 G1 3201 G1 3210 F5 3211 G5 3212 F5 3250 G2 3261 G1 3262 G1 3404 D3 3406 D3
3407 D3 3410 C3 3412 D2 3414 D3 3419 D2 3420 D2 3421 D2 3422 D2 3427 F2 3428 F3 3429 F2 3430 F3 3432 F2 3437 B2 3440 E2 3441 D2 3442 D2 3443 D2 3444 B2 3445 B2 3446 B2 3447 B2 3448 B1 3452 B1 3453 B1 3454 B2 3455 D2 3456 D2 3457 D2 3458 E3 3459 E3 3466 A5 3467 A4 3472 A5 3474 A5 3475 A6 3481 D5 3482 D5 3483 D5 3484 D4 3485 D3 3486 D2 3487 E2 3489 D5 3490 D4 3491 A5 3496 D4 3497 A4 3504 E7 3506 E7 3510 E7 3512 D7 3517 E7 3519 E7 3522 E7 3523 E7 3524 B9 3525 E7 3527 E6 3528 B9 3529 B9 3530 E7 3531 E7 3532 B9 3534 B9 3535 D6 3536 E7 3538 D8 3539 D8 3544 D8 3547 D7 3549 E6 3552 D7 3553 D7 3556 C6 3557 C6 3558 C6 3560 C6 3561 C7 3610 D2 3611 E2 3627 B1 3629 B1 3630 C1 3631 D1 3632 D1 3633 D1 3636 D2 3637 D1 3638 C1 3639 D1 3640 D1 3643 C1 3644 A4 3646 B1 3647 B1 3652 A5 3653 B1 3654 E2 3655 D2 3656 E2 3657 D2 3658 E2 3659 D2 3660 D1 3662 D1 3664 D2 3665 A5 3682 G10 3683 G10 3684 F10 3685 G10
3686 G10 3688 C5 3690 C1 3701 E5 3702 E5 3703 D5 3704 E5 3705 F5 3706 F5 3707 F5 3708 F6 3709 G6 3710 F5 3712 F5 3714 E5 3715 D5 3716 D5 3717 G5 3718 G5 3719 E5 3720 D4 3721 F5 3722 F5 3723 F5 3724 F5 3725 F5 3726 F5 3727 G6 3729 E3 3730 D4 3731 E5 3732 E4 3733 E4 3734 E4 3735 E4 3736 E5 3737 E4 3738 E4 3739 E4 3740 E4 3741 E4 3742 E4 3743 G5 3744 E4 3745 G5 3746 E6 3748 D5 3750 G6 3751 E4 3752 E4 3760 F5 3790 E5 3791 F5 3792 E5 3793 F5 3794 D4 3795 D4 3796 D4 3797 E4 3798 E6 3900 B10 3901 B10 3902 B10 3903 F2 3907 G2 3910 G2 3928 F1 3929 F1 3930 G1 3938 F1 3939 F1 3940 F1 3942 E3 3943 F2 3945 F2 3946 F1 3947 F1 3948 F1 3949 F1 3950 F1 3951 F1 3953 F1 3954 F1 3955 F1 3956 F1 3957 E1 3959 E1 3961 F1 3965 E1 3966 E1 3967 D1 3969 E1 3970 E1 3971 E1 3972 E1 3973 E1 3974 E1 3975 E1 3976 E1 3977 E1 3978 E1 3979 E1 3980 E1 3981 E1 3982 E1 3983 E1 3984 E1 3985 E1 3986 E1 3987 F1 3988 F1 3989 F1
3990 F1 3991 F1 3993 F1 3996 D1 3997 F1 3999 B10 5106 E8 5107 E8 5519 D7 5703 F5 6080 G10 6081 F10 6082 F10 6083 F10 6104 D9 6108 D10 6112 G9 6115 C9 6116 C10 6132 G9 6133 F9 6134 F9 6141 G7 6142 C10 6144 C9 6149 G9 6200 G1 6201 G2 6202 G2 6401 B1 6402 F2 6406 D3 6407 E3 6409 B2 6410 B2 6411 B2 6412 B2 6413 B2 6414 B2 6415 B1 6442 B1 6455 D3 6456 E1 6457 E2 6458 E2 6481 C5 6482 D5 6483 C5 6491 A5 6493 A5 6494 A5 6499 A5 6506 E8 6507 D6 6508 D6 6509 E7 6511 C9 6512 C9 6513 D6 6516 E7 6517 E7 6518 D8 6522 C6 6523 F7 6533 F7 6537 E7 6538 E8 6614 D2 6615 D3 6616 D2 6617 D1 6618 D1 6624 B1 6625 D2 6626 D2 6627 D2 6628 B1 6701 E5 6745 G5 6901 F3 7120 E9 7130 G9 7132 G8 7133 G9 7140 G7 7210 G4 7211 F5 7407 B1 7409 D3 7441 D2 7442 A5 7443 A4 7445 D2 7450 D1 7455 E3 7486 D5 7487 D4 7501 B9 7505 C6 7530 E7 7611 D1 7612 C1 7614 D1 7641 A4 7652 B5 7653 A5 7654 A5 7681 G10 7701 E5 7703 E5 7704 E5 7705 D5
7706 E5 7707 E5 7708 D4 7901 G1 7902 G1 7908 F2 7990 F1 7991 F1 7992 E1 7993 E1 7994 E1 7995 E1 9103 E10 9106 E10 9111 E10 9128 D10 9129 D10 9130 G8 9200 F3 9201 G4 9202 F2 9203 G3 9204 F3 9205 G2 9206 G2 9207 G3 9208 G3 9209 B10 9210 F4 9211 F4 9212 G2 9213 G4 9214 G2 9215 G2 9216 G1 9217 G1 9218 G1 9219 F1 9221 G9 9222 G9 9250 F4 9251 F4 9271 F1 9272 F1 9273 F1 9274 E1 9275 F1 9276 F1 9277 D1 9278 D1 9279 D1 9280 E1 9281 E1 9282 E1 9283 E1 9284 E1 9285 E1 9288 F1 9289 F1 9291 F1 9293 D1 9294 D1 9295 D1 9296 E1 9297 E1 9298 F1 9417 C3 9418 A5 9421 E2 9422 E3 9424 D4 9427 E2 9428 D2 9429 E2 9430 E2 9431 D2 9432 E2 9433 D3 9434 D2 9435 D1 9436 D2 9437 E3 9438 C1 9440 G10 9441 D1 9443 D3 9481 E2 9482 D4 9483 D4 9499 A5 9505 F8 9560 D7 9561 E7 9567 E7 9621 G10 9624 D5 9676 E2 9677 D1 9702 E5 9705 F5 9706 E6 9707 E5 9709 F5 9711 D5 9713 D5 9714 F6 9716 F6 9717 F5 9904 G3 9905 E3 9908 G1 9927 E3
9928 F4 9960 G6 9962 G6 9966 G7 9970 G7 9973 G7 9978 G7 9979 G7 9981 G2 9984 E1 9985 E1 9986 E1 9987 F2 9988 F1 9989 F1 9990 F1 9991 F1 9992 F1 9993 F1 9994 F1 9995 F2 9997 F3 9998 F4
CL 26532067_07m.eps
300502
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Layout Large Signal Panel (Overview Bottom Side)

EN 41EM5.3A P/M AA 7.
Part 2
CL 26532067_08b.eps
Part 1
CL 26532067_08a.eps
Part 4
CL 26532067_08d.eps
Part 3
CL 26532067_08c.eps
CL 26532067_008.eps
300502
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Layout Large Signal Panel (Part 1 Bottom Side)

EN 42EM5.3A P/M AA 7.
CL 26532067_08a.eps
300502
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Layout Large Signal Panel (Part 2 Bottom Side)

EN 43EM5.3A P/M AA 7.
CL 26532067_08b.eps
300502
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
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Layout Large Signal Panel (Part 3 Bottom Side)

EN 44EM5.3A P/M AA 7.
CL 26532067_08c.eps
300502
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Layout Large Signal Panel (Part 4 Bottom Side)

EN 45EM5.3A P/M AA 7.
CL 26532067_08d.eps
300502
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Small Signal Board: SIM Connector (Male)

v1 G3 v2 G3
v3 G3 v4 G3 v5 G3
v11 G5
v6 G3
v12 G5
v7 G4
v8 G4
v13 G5
v9 G4
v14 G5
v10 G4
v15 G5
12
v16 G5 v17 G6
v18 G6 v19 G6 v20 G6
v21 G6 v22 G6
v23 G7 v24 G7 v25 G7
SIM CONNECTOR ( MALE )
v26 G7
v31 G8 v27 G7
v28 G7 v35 G9
v36 G9
v29 G8
v37 G10
v30 G8
3 7
v38 G10 v39 G10
v40 G10 v41 G10 v42 G10
v48 G11
v43 G11
v49 G12
v44 G11
v45 G11
v50 G12 v51 G12
v46 G11 v47 G11
v52 G12
456
v53 G12 v54 G12v32 G8
v55 G12
v57 G13
v58 G13 v59 G13
v60 G13
v62 G14
EN 46EM5.3A P/M AA 7.
0002 C1
v63 G14
0003 C1
v64 G14
0004 C2 9962 G7
v65 G8
0005 D1
v71 G12
0006 D1
0001 C1
0012 E2 9909 F3
0007 D1 0008 D2
0009 E1 0010 E1 0011 E1 9948 F7
2902 G14 9914 G3
0013 E2
2903 G14
1000 H2
2904 G10
2900 G14
2905 G8
2901 G13
2906 G9
2907 G5 2908 G1
2909 G1 2910 G1 2911 G2
2912 G2 5900 F1
5901 F1 5902 F2 5903 F2
8
5914 F14
5904 F2 5910 F14 9920 F5
5911 F14 5912 F9v56 G13 5913 F13
5920 F5
5915 F8
6926 D4
5917 F10 9927 F5
6927 E4 6928 E4
5918 F9v61 G13 5919 F10
6929 E5
910
6956 D4 6957 D5
9901 F3 9902 F3 9903 F3
9904 F3 9905 F3
9906 F4 9907 F4 9908 F4
9910 G3
9911 G3 9912 G3 9913 G3
11 12 13 14
9919 F5 9954 F8
9915 G4
9921 F5
9916 G4
9922 G5
9917 G4 9918 G2 9923 G5
9924 G5 9925 D6 9966 G8
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
9949 F7 9950 F7
9951 F7 9952 F7 9953 F8
9955 G8
9963 G7 9964 G7
9965 G8
15
A
B
SOLDERLAND
SOLDERLAND
SOLDERLAND
SOLDERLAND 1
1
C
000110002
1
0004
0003
SOLDERLAND
SOLDERLAND
SOLDERLAND 1
0006
D
0005
SOLDERLAND
1
1
1
0007
0008
E
0009
SLOT 1.2x3.2 1
0010
SLOT 1.2x3.2
1
0011
SLOT 1.2x3.2 1
0012
SLOT 1.2x3.2 1
0013
SLOT 1.2x3.2 1
+8V +8V
6926
BAS316
6927
BAS316
6956
BAS316
6928
BAS316
6957
BAS316
6929
BAS316
+8V
B1,B2
SC1-STATUS
P50
B5a
B4-
CUTOFF
B10
B10
A
B10
HEADPHONE AMPLIFIER
HEADPHONE-L
HEADPHONE-R
B6-
B6-
B6-
SCL-F
SDA-F
L-SC2_AV2-IN
L-SC1_AV1-IN
B5a
B5-
NC
STANDBY
PIP-MONO
IRQ-DIGITAL
B4-
B4-
B4-
B-CRT
GND-RGB-CRT
9925
B4-
LINEDRIVE1
FRAMEDRIVE+
GND-LINEDRIVE
B4-
B4
FRAMEDRIVE-
B4-
EW-DRIVE
B4-
B4-
B4-
R-CRT
G-CRT
9944
9945
B4(2x)
HFB_X-RAY-PROT
B4 (3X)
EHT-INFO
B4(2x)
TILT
DYN-FASE-COR
B4- B5a
IRQ-DIGITAL
LIGHT-SENSOR
B4
Y-SCAVEM
B5a
B5a
B5a(2x)
SCL-F
SCL-S
SDA-F
SDA-S
SOUND-ENABLE
B4
POR
SCL-F
SDA-F
B6-
B6-
L-SC2-OUT
L-SC1_AV-OUT
B6-
R-SC2_AV2-IN
B6-
B6-
R-SC2-OUT
R-SC1_AV1-IN
B6-
R-SC1_AV-OUT
B5a
FRONT-DETECT
B6-
B6-
NC
B6-
B6-
B6-
B6-
B6-
B6(3x)
B6
B
AUDIO DEMODULATOR
AUDIO-L
AUDIO-R
AUDIO-C
GND-AUD
AUDIO-SL
L-FRONT-IN
R-FRONT-IN
L-CL_VL-OUT
R-CL_VL-OUT
AUDIO-SW
B5a
B5a
B5a
RC
KEYBOARD
ON-OFF-LED
B5a
DEGAUSSING
B5
OTC
B4
VDP-HOP
C
D
B3
SCL-F
SDA-F
FEATURE-BOX
E
+5V_CON
F
5900
100n
2908
G
+5V
H
8204 000 8261.4
1
2909
5901
100n
+5V_VDP
2910
+5V
5903
100n
+8V_VDP
+8V_AUD
5904
100n
2912
+8V
+8V
5902
100n
+5V_AUD
2911
+5V
TO 1205
( SIM CON. FEMALE )
2
9918
v1
1000
B2-
B2-
B-SC1-IN_U-IN
G-SC1-IN_Y-IN
9909
9901
9910
9911
v2
v3
3
1
F202
F201
R-SC1_V-IN
9902
F203
B2-
B2-
FBL-SC1-IN
9903
9912
v4
F204
3
9913
v5
F205
B2-
B2-
C-SC2_SVHS-IN
Y-CVBS-SC2_AV2-IN
9904
9905
9914
v6
7
F206
F207
B2-
B2-
CVBS-TER-OUT
CVBS-SC1_AV1-IN
9908
9917
v9
F212
F211
4
B2-
IF-TER
v10
F214
F213
B2-
9907
9906
CVBS-SC2_MON-OUT
9915
9916
v7
v8
9
101112131415161718
F209
F208
F210
B2-
B2-
AGC
SC1-STATUS
9927
9919
9920
CVBS-PIP_TUN1-2-CVBS-IN
9930
9922
9924
v11
v13
v12
F215
F217
F216
5
9923
F218
B1,B2
9921
v14
19220
SEL-SVHS-RR_STATUS2
2907
F219
B2-
100p
v15
F220
5920
600R
9934
v17
v16
2223242526
21
F221
F222
F223
B2-
B2-
B2
5911
5910
600R
600R
v62
78
100p
F278
5914
v63
79880
2902
F279
600R
100p
v64
F280
600R
2903
100p
5917
5912
600R
600R
5915
600R
9948
9946
9928
v21
v20
v19
F225
F226
v22
27
F227
v18
F224
28
9947
F228
v23
29
303132
F229
F230
9949
9962
v24
v25
F231
9951
9929
9950
9964
9963
v28
v27
v26
3334353637
F234
F232
F233
9952
2905
F235
9965
9955
100p
v31
v30
v29
F237
F236
9954
9953
9966
v32
38
394404142
F239
F238
+5V2
9936
F240
v65
9935
F241
+8V
434445
F243
F242
+3V3_SIM
F244
+5V
F245
46
F246
5918
v35
47
F247
5919
600R
2906
v37
v36
0V2
48
495505152
F249
F248
100p
F250
600R
v38
0V
2904
F251
100p
v39
v40
535455
F253
F252
F254
v42
v41
56
F256
F255
v45
v44
v43
v46
616263
58
59660
57
F257
F258
F259
F260
F261
9940
v47
9937
F262
9941
v48
9938
Y-CVBS-FRONT-IN
9942
F263
C-FRONT-IN
9939
v71
v50
v49
65
64
F264
F265
v51
v52
666768
F266
F267
v54
v53
69
F268
F269
v57
v55
v56
7071727374
F271
F270
F272
F273
5913
2900
2901
100p
v58
v60
v61
v59
0V
3V3
75
77
76
F275
F276
F274
F277
E_14600_001.eps
VDP-HIP
6
7
8 9 10 11
12
13 14 15
F
G
H
220304
Circuit Diagrams and PWB Layouts
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Small Signal Board: IF. I/O Video Processing

1
IF,I/O VIDEOPROCESSING
23
A
1403
F 500mA
441
B
+5V_VDP
B1-
IF-TER
3R9
3402
F416
C
0u33
5411
F437
D
B2(3x)
LMN
E
2412
5415
2390
100n
F438
100u
2425
4n7
4n7
2405
BC847B
+8VP
+5VCOM
3411
7403
9403
6402
1SS356
+8VP+8VP
2K7
3434
2K7
+5V2_CON
0V5
BC847BW
6405
7401
6403
3414
4K7
1SS356
5401
9405
9402
+8V+5V2
6u8
3410
5416
100n
2391
SAW-FILTER AUDIO
2
3
9415
1409-B
OFWK3953L
118456
+8VP
2K7
SAW-FILTER-VIDEO
2
3
1410-B
OFWK9656L
9401
1184 5 6 9 1013 1415
1409-A
OFWK3953L
9 10131415
1410-A
OFWK9656L
F
G
1SS356
3K9
3433
7405
3423
BC847BW
5K6
B2(3x)
LMN
H
I
5K6
3407
2K7
3409
3406
47R 6404
78
2406
220p
5
6
5CCE 5403
1234
COIL 40.4 SUPPRESSION
F400
2407
2408
68p
1408-B
OFWK3953L
2p7
1408-A
OFWK3953L
SAW-FILTER VIDEO
2
3
1184 5 6 9 1013 1415
45678
B5a
AGC-MONITOR
+8V_CON
111216
111216
11
7
8
7
8
7
8
9407
F411
F412
NCMT
17
NCMT
17
NCMT
121617
8204 000 8260.5
1234
9410
EN 47EM5.3A P/M AA 7.
9101112
B1(2x)
B1-
48
ADSEL
7323
TDA9320H
COMBOUT
26
100R
7320
3413
680R
3422
B2
BG
SC1-STATUS
SEL-SVHS-RR_STATUS2
0V
5V10V0V5
17
AV115AV2
+8VP
2430
100n
2K2
2337
3371
3372
470R
CVBS-TXT
B1-
B2(3x)
B1-
LMN
SCL-F
SDA-F
100R
3377
3376
100R
19
22
46
47
SCL
SDA
SW0
SW01
LUMA & CHROMA PROC.
YCOMBIN
SYS125SYS2
CCOMBIN
28
29
0V
5V1
100n
47R
F423
COMB-C-OUT
COMB-Y_CVBS-OUT
SYS1
B2B2B2
B2
B2
AGC
B1-
9419
V2
4V5
2V8
F419
100n
100n
SOUND-OUTPUT
c002
3380
100R
F440
F420
5
9
45
3V3
+8_2
GND_2
QSS_AM
64
63
1
2
3
4
6
7
8
62
10
I6
12
13
SUPPLY CTRL
SIF2
SIF1
AGCSIF
VIF1
VIF2
AGCDEC
PLLRILT
VCO1
VCO2
TUNERAGC
VIFOUT
IN
OUT
IF DEM
GROUP DELAY COR.
HIP
2375
F421
2u2
22n
2374
2373
100n
F422
4V2
5V1
35
33
44
GND_1
31
DEC
DIGDEC
DIGGND
11
+8_1
I/O SWITCH
14
2384
3385
100n
470R
B1-
CVBSINT
2365
CVBS-SC1_AV1-IN
100n
NC
CVBS116CVBS2
3381
2339
B6-
AV3-CVBS-IN
2366
100R
18
2367
100n
9322
F415
10p
Y-CVBS-SC2_AV2-IN
CVBS-AV3-IN
B1-
Y_CVBS320Y_CVBS4
C321C4
23
100n
2369
100n
2370
100n
2368
F417
2420
150p
3446
100R
F418
6u8
5409
B1-
B1-
C-FRONT-IN
Y-CVBS-FRONT-IN
C-SC2_SVHS-IN
B1-
24
2387
100n
10p
3389
NC
PIPOUT
32
100R
PIP-OUT
B1
CVBSOUT
34
3370
3V7
BC847BW
2335
100n
CVBS-SC2_MON-OUT
LMN
B2(3x)
+5VS
3415
3463
3441
3421
5K6
3417
5K6
10K
4K7
39K
F409
F410
1
BC847BW
9416
1406
100R
TPW
5V1
3435
BG
B2
5402
7406
3419
82R
9418
3u9
3408
+8V_VDP
2
4K7
+8V_VDP
3416
2413
7407
BC857B
+8VP
BC847BW
3405
3
7410
B6-
F414
47u
1K
QSS_AM
3400
F413
4R7
+8VP
78
1
2
6R8
34
MODULATOR COIL
5406
2u2
1407
TPW
1
3
2
9420
+8VP
4K7
3456
1411
SFSCC
3V4
3
2
4K7
3457
SOUND-OUTPUT
2u2
2394
2377
100u
5CCE 5408
6
5
7411
BC847B
9417
3436
F439
3439
9412
3445
470R
3474
1K
3420
1
+8VP
3404
CVBS-PIP_TUN1-2-CVBS-IN
B2
F436
2401
220R
9413
2411
100n
2417
470n
+8VP
470R
1K
7402
BC847BW
560R
100K
3401
3473
2399
5417
2402
2403
22n
470n
3V5
5404
6u8
5405
6u8
2418
F401
2409
2404
68u
3V2
2u2
1u
4p7
V1
9414
7322
BC847BW
1K
68p
330p
0p47
B1-
2378
2376
F402
F403
3418
390R
2419
3437
1K
4V
3382
390R
3403
220R
9408
CVBS-TER-OUT
B2(2x),B5a
56
7 8 9 10 11
27
SYS2
2372
3378
58
HPLL
SVBCOUT
30
1u
15K
SYNC
FSC
B2
B3a-B6
VA50
F407
4n7
2371
61
60
VA
HA
R1IN
G1IN
B1IN
FBL1IN
R2IN
G2IN
B2IN
OUTP SWITCH
FBL2IN
YOUT
UOUT
VOUT
X3.579
X3.575
X3.582
X4.43
COL_PLL
SEC_DEC
SCOUT
59
3303
CVBS-TXT
SC
B2
B2(2x),B5a
B3a-B6
HA50
F408
9324
2424
100n
36
37
38
39
41
42
43
40
49
50
51
57
56
55
54
52
53
100K
2356
3468
2351
100n
3475
3393
100n
2357
+5VCOM
100K
F433
F405
9319
9318
F435
B2
2388
3444
1K
100K
2358
100n
F434
SC
2350
100n
2352
100n
33n
820K
2305
100n
2316
100n
2322
100n
3379
100R
3V4
1305
3n3
2359
7307 TDA9181
2 INPSEL
12 Y|CVBS1
3 Y|CVBS2
1 CIN
7SC
3447
HC-49/U
15p
R-SC1_V-IN
B1
G-SC1-IN_Y-IN
B1
B-SC1-IN_U-IN
+8VP
7409
BC857B
B1
+8VP
7408
BC857B
NC
6K8
3448
NC
39K
2389
NC
2K2
2u2
3449
B1-
100R
3375
1p2
1306
3412
2379
DGND
4
F406
7307-p4
B2
2355
10p
2364
10p
10p
+8VP
1K
HC-49/U
15p
2383
F404
3M582056
2380
2354
100n
FILTER
TUNING
FBL-SC1-IN
R-SC3-IN
G-SC3-IN
B-SC3-IN
FBL-SC3-IN
B3a-
PAL N
1307
1p5
2381
+5VCOM
VCC VDD
F432
2353
FSC
B2
B2
U50
V50
B2
Y50
HC-49/U
3M575611
15p
2382
6
2H/4H DELAY
ADAPTIVE
COMB FILTER
CLOCK
FSC8FSCSEL
9
3301
100K
100n
3373
100R
3374
100R
2327
10p
7404
BC847BW
4M433619
2360
CLAMP
CLAMP
SAND-
CASTLE
AGND
13
12 13 14
13 14
CVBS-3D-COMB
COUT-3D-COMB
YOUT-3D-COMB
B5a
B5a
B5a
B5a
B2,B6
Y50
B2,B6
1308
PAL M
HC-49/U
3M579545
12p
1p5
2361
2362
2385
100n
5
Y|CVBSO
GEN
OUTSEL
SYS110SYS2
11
SYS1
SYS2
B2
B2
N.C.
NTSC M
15
BFS20
1p2
7413
1303
3460
B
14
16COUT
1303 B13 1305 E11 1306 E12 1307 E12 1308 E13 1403 A1 1406 E5 1407 E5 1408-A F4 1408-B G3 1409-A B4 1409-B C3 1410-A E4
A
1410-B E3 1411 G6 2302 H14 2305 C11 2316 C11 2322 C11
F354
5
4
F355
3
2
F356
1
10p
2426
2428
10p
2427
+8VP
+8VP
1K8
3K3
3461
1K5
3462
F424
100n
2422
9406
3451
F428
270R
3452
2302
F430
100n
B2(2x),B5a
5309
CVBS-TXT
100MHZ
5310
COUT-3D
100MHZ
5311
YOUT-3D
100MHZ
10p
COMB-Y_CVBS-OUT
+5VS
3450
F425
7412
BC857BW
F426
150R
F427
5312
33u
10p
2421
2423
7307-p4
YOUT-3D
COMB-C-OUT
F431
COUT-3D
E_14600_002.eps
300304
2327 D12 2335 G9 2337 G9 2339 H8 2350 A11
B2
B
2351 A11 2352 A11 2353 I12
B2
2354 G12 2355 C12 2356 F11 2357 F11 2358 F11 2359 F11 2360 F12 2361 F13 2362 F13
C
2364 C12 2365 F7 2366 F8 2367 F8 2368 F8 2369 F8 2370 F8 2371 B10 2372 A10 2373 B8 2374 B8 2375 B8
D
2376 B7 2377 B6 2378 B7 2379 F12 2380 F12 2381 F12
B2
2382 F12 2383 D12 2384 F7 2385 G13 2387 H8
E
2388 A11 2389 B12 2390 B1 2391 B3
1K
2394 B6 2399 F7 2401 C6 2402 G7 2403 C7 2404 C7 2405 D1 2406 G2
F
2407 G3 2408 H3 2409 C7 2411 C6 2412 C1 2413 D5
6p8
2417 E7 2418 D7 2419 D7 2420 F8 2421 F14
B2
2422 E13
G
2423 F14 2424 G11 2425 B1 2426 C13
B2
2427 C14 2428 C14 2430 F9 3301 I12
B2
3303 H10 3370 F9 3371 H9
B2
3372 H9
H
3373 C12 3374 C12 3375 C12 3376 A10 3377 A10 3378 B10 3379 D11 3380 B7 3381 H8 3382 F7 3385 G7
I
3389 F9 3393 F11 3400 B6 3401 B7 3402 B1 3403 G7 3404 I6 3405 H5 3406 G2 3407 F2 3408 B5
3409 G2 3410 E3 3411 C2 3412 E12 3413 F9 3414 D2 3415 A5 3416 D5 3417 G5 3418 C7 3419 D5 3420 G6 3421 F5 3422 G9 3423 H1 3433 G1 3434 E2 3435 G5 3436 E6 3437 D7 3439 E6 3441 B5 3444 B11 3445 F6 3446 G8 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 D3 5402 E5 5403 H2 5404 B7 5405 B7 5406 E6 5408 C6 5409 H8 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 H9 F424 E14 F425 F14 F426 F14 F427 F14 F428 F13 F430 H14 F431 H14 F432 H12 F433 H11 F434 G11 F435 H11 F436 D6 F437 C1 F438 B2 F439 E6 F440 B8 c002 A8
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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EN 48EM5.3A P/M AA 7.

Small Signal Board: PICNIC

123
4 5 6 7 8 9 10 11 12
PICNIC
A
B
C
D
E
F
G
H
B4(2x)
B4(2x)
B3c
B4(4x),B5a
B3a(2x)
B3c,d
B3c-
B3c-
B4-
B3c-
B3c
B4-
B3D
B3D
B6
RST-FEM
RST_COL
RST_PIC_EAG
Y_EAGLE_E
F100
Y100
U_EAGLE_E
F101
U100
V_EAGLE_E
F102
V100
HD_E
HD100
F104
VD_E
VD100
SCL-D
SDA-D
SCL-F
SDA-F
2713
RSTW
RSTR_I
Y-PIP+MAIN-IN
3713
F108
180R
F105
9736
6p8
2701
F103
I722
9737
15p
2704
I724
9738
12p
2707
F120
7703
3729
PMBT2369
68R
56p
2723
9739
4K7
3722
2724
100p
F115
F114
22p
2714
15p
2718
3716
100K
220R
3877
9713
I
U-PIP+MAIN-IN
3714
B6
F109
180R
3826
220R
2719
15p
100K
3717
J
K
L
B3c,d
B2,B6
B2,B6
V-PIP+MAIN-IN
B6
HA50
VA50
VAP
F110
3715
180R
F119
F112
3892
220R
15p
3718
100K
2720
3730
560R
1K2
3726
2722
100p
BC857BW 7736
+8VPA
3728
150R
2700
5700
2703
5701
2706
5702
3709
100R 3710
100R
220R
9729
I720
3703
390R
I721
F157
3706
3p9
390R
12p
2702
2u2
RES
3704
270R
I723
3707
3p9
1u5
3p9
1u
I726
3731
22p
3721
F158
390R
12p
2705
+3V3_FBXA
RES
3705
270R
I725
2708
3733
10K
8K2
3735
3K3
3734
1R
+8VPA
3852
2923
680R
3829
9714
9715
BC857BW 7734
100p
2721
3708
390R
12p
F159
680R
47p
3821
BC857BW 7735
3893
680R
3878
220R
3725
3749
9725
9726
+3V3PA
+5V2Pr
5706
6u8
2930
680R
18p
47p
2922
680R
3828
3827
220R
5708
6u8
2933
18p
+8VPA
2926
3879
680R
47p
3727
150R
3K3
+3V3_FBXA
9809
47K
3747
7709
3903
100K
BC847BW
3K9
7707
BC847BW
0V7 0V7
4K7
3755
24K
3739
24K
3904
+1V5_FBXA
+1V8FA
+5V2Pr
+3V3Pr
3719
7715 PMBT2369
3K3
3720
0V8
10K
2740
22n
2931
150p
5707
2741
6u8
2932
22n
18p
2915
150p
2742
22n
150p
2916
F165
F166
3736
3756
2747
F164
N.C.
M
B
B3b,c,d
HREF_EXT
3740
4K7
3732
0V2
47K
+1V8FA
3748
120K
F145
100n
2743
100R
0V2
3737
1K
1K
3738
F709
22K
RES
10K
3741
3742
+3V3_FBXB
+3V3_FBXA
+2V5_FBXA
5712
9735
9734
RES
+3V3PA
5714
2749
68p
100n
F162
F163
2800
5705
6u8
2737
27p
3723
RES
1M
1703
12MHz
CSTCV
1702
RES
13
12M
18p
2935
2
RES
1710
1
F122
2
F123
3
F124
4
F125
5
F126
6
F127
7
FMN
8204 000 8308.6
12345
13 14 15
5703
F107
5
7706
74LVC1G14GW
1 VCC
NC
A2
7705 BC847BW
2917
RES
100n
2918
+3V3_FBXA
3K3
3751 7708 BC847BW
F706
F707
0V8
100n
2744
3754
+3V3_FBXA
F708
7710 BC847BW
3K9
10K
3743
3750
4K7
3905
B3a,B3b
MF(17)
9702
2748
B3b,c,d
SN-DA
9701
SN-CL
RES
B3b,c,d
F155
F156
2806
100n
3759
100n
220R
2804
100n
F710
9706
18p
2929
RES
TDOC
B3c
6 7 8 9 10 11 12 13 14
RES
9700
3752
1R
3753
1R
100R
3K9
3746
RES
100n
3758
F128
F129
0V2
0V1
F788
9703
N.C.
I727
RES
F160
F161
2757
1V5
22n
F118
2920
100n
0V1
2807
100n
1K0
3701
47K
+3V3PB
TMS
TRST
B3b,c,d
B3b,c,d
220n
+3V3Pr
4K7 1 SN-DA
2 SN-CL
3 VSSO6
4 SCL
5 SDA
6 UP-RST
7 WD-RST
8 RSTW
9 RSTR
10 FBL
11
VDDA1
Y-OUT
12
13
VSSA1
14 U-OUT
15 V-OUT
16 VSSA2
17 BGEXT
18 H-D
19 V- D
20 AGND
21 DIFFIN
VDDA2
22
23 Y-IN
24 VDDA3
25 U-IN
VIN26
27 VSSA3
28 H-A
29 V- A
HREF-EXT
30
31 VDDA4
32 VSSA4
VSSX
33
34 OSC-I
35 OSC-O
TEST
36
37 TRST
38
TMS
39
TDI
40 TDO
3712
F152
TDO
GND
+5V2Pr
RES
9732
9733
5711
7712
74HC573
F784
F785
T1TCK
41
TCK
B3b,c,d
Y4
2709
3
+5V2Pr
+3V3Pr
AD(00)
RES
9731
9730
13
Q014Q1
5710
32
VCC
1n
2732
2745
100n
A010A1
M27C512
11
2754
1n
2746
100n
10
20
Vcc
GND
1D
EN
C1
1
219
11
B3a
ALE
AD(00)
B3d
INT1
F786
AD(00)
F787
159T0160
157
158
156
P0-0
INT0
INT1
ANALOG
PROCESSING
PLL
OSC
BST
VSSO1
UVA145UVA246UVA347UVA4
UVA0
42
43 44
UVA(0)
UVA(1)
UVA(2)
CLK
TIMING
+3V3_FBXA
100n
AD(03)
AD(04)
AD(05)
AD(06)
18Q319Q420Q521Q622
A37A4
A5
A6
8
6
5
516
615
714
813
AD(03)
AD(04)
AD(05)
AD(06)
AD(03)
AD(04)
AD(05)
AD(06)
150
153
152
151
P0-6
P0-3
P0-4
P0-5
P0
AD(07)
Q7
PROM
A7
A828A9
4
24
29
912
AD(07)
2731
100n
AD(07)
148
149
147
P0-7
P2-0
P2-1
VDDO3
A10
146
P2-2
AD(01)
AD(02)
15
Q2
7711
A2
9
318
417
AD(01)
AD(02)
AD(01)
AD(02)
155
154
P0-1
P0-2
MICRO-PROCESSOR
PSP
3 X DAC
7713
PICNIC
SAA4978H
3 X ADC
FRONT
END
BUS A
YA054YA155YA256YA357YA458YA559YA660YA761YA8
VDDO1
UVA5
UVA650UVA751UVA8
48 49
52
53
100n
2735
UVA(3)
+3V3PB
UVA(4)
UVA(5)
UVA(6)
UVA(7)
UVA(8)
YA(3)
YA(2)
YA(1)
YA(0)
1
A1127A12
3
145
P2-3
17
144 143
YA(4)
30
P2-4
P2
12
A1331A14
YA(5)
26
16
NC
VSS
FBX
E_
G_
A15
SOFTWARE
2
23
25
B3a
10R
ALE
3702
F151
139
142
141
140
137
138
ALE
P2-5
P2-6
CLK
TIMING
EAN
P2-7
PSEN
VSSD4
MID END
HISTOGRAM
REDUCTION
TIMING
WE-A66WE-B
VSSD1
VSSO2
VDDD1
62
63
64
2736
100n
+3V3PB
YA(8)
YA(7)
YA(6)
WE-A
+3V3PB
2727
100n
1K
intern
3711
RES
133
134
135
136
UVC0
VSSD3
VSSO5
VDDD4
BACK END
PEAKING
MUX
NOISE
TBC/SRC
MUX
65
WE-B
YB(8)
YB(7)
YB(6)
+3V3PB
2726100n
122
121
132
131
130
129
128
UVC1
UVC2
UVC3
UVC4
UVC5
YB(2)
YB(3)
YB(4)
YB(5)
127 126
BUS B
YB(1)
UVC6
YB074YB173YB272YB371YB470YB569YB668YB767YB8
YB(0)
123
125
124
YC0
YC1
UVC7
UVC8
VDDO2
BUS C
BUS D
UVB8
76
75
UVB(6)
UVB(7)
UVB(8)
120
YC2
119YC3
118YC4
117YC5
YC6
116
115YC7
YC8
114
113WE-C
112
IE-C
111
VSSO4
110
RE-D
9710-A
YD8
109
18
108YD7
107YD6
106YD5
9709-A
105YD4
18
104YD3
YD2
103
YD1
102
101
YD0
100VDDD3
9708-A
99UVD8
18
98UVD7
97UVD6
96UVD5
9707-A
95
18
UVD4
94
UVD3
93UVD2
92UVD1
91UVD0
VSSD2
90
89CLK32
CLK
88CLK16
87VDDD2
86VSSO3
85CLK-AS
84UVB0
83UVB1
82UVB2
81UVB3
UVB479UVB578UVB677UVB7
80
UVB(5)
UVB(4)
UVB(3)
B3a CLK32FM1
B3a,B3b
MF(17)
B3b,B3c RSTR_O
B3a,B3b MF(17)
B3b,B3c RSTR_O
DA(00) DA(01) DA(02) DA(03) DA(04) DA(05) DA(06) DA(07)
DA(15) DA(14) DA(13) DA(12) DA(11) DA(10) DA(09) DA(08)
B3a
F148
F149
F150
10R
36
7
10R
36
2733
100n
10R
36
10R
36
F139
F140
100n
2734
UVB(0)
CLK-AS
9710-C
10R
9709-C
10R
9708-C
10R
9707-C
10R
9711
B3a,c
CLK32P
RES
3761
100R
B3a,b
CLK32NE
9710-D
45
10R
9709-D
45
10R
9708-D
45
10R
9707-D
45
10R
CL16
B3a,d
+3V3PB
B3a,c CLK32P CLK32NE
B3a
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)
9710-B
10R
27
9709-B
10R
2
10R
9708-B
27
10R
9707-B
27
3700
22R
UVB(1)
UVB(2)
B3a,b
100n
100n
100n
2725
2712
2717
100n
7714
MS81V04160A
RES
3760
100R
B3a,d
13
B3b,c
+3V3PB
RE_F
UVF(7)
UVF(6)
UVF(5)
UVF(4)
UVF(3)
UVF(2)
UVF(1)
UVF(0)
B3a(2X)
B3a(2X)
YF(7)
YF(6)
YF(5)
YF(4)
YF(3)
YF(2)
YF(1)
YF(0)
CL16
RSTW
RSTW
SWCK
63
SRCK
9728
85
MODE1
41
MODE2
32
WE1
45
RE1
31
IE1
46
OE1
30
RSTW1
44
RSTR1
94
WE2
81
RE2
95
IE2
80
OE2
96
RSTW2
82
RSTR2
29 28
11
27
12
24
13
22
14
21
15
20
16
19
17
IN OUT
97
20
98
21
99
22
2
23
4
24
5
25
6
26
7
27
3
101617
TO B3c
TO B3c
B3D
15 16 17
16 17 18 19
+3V3PC
2710
100n
2711
100n
100n
2716
11
121415
(262,214 x 8) x 2
233335
3437435162
VCC
Φ
DUAL FIFO
FM1
VSS
39
4849545967
6475838992
7277788791993
NC
1010 11 12 13 14 15 16 17
20 21 22 23 24 25 26 27
2738
1
8 18 25 26 36 38 40
RES
42 47
9727
50 76 79 84 86 88 90
100
52 53 55 56 57 58 60 61
74 73 71 70 69 68 66 65
+3V3PC
MF(16) MF(15) MF(14) MF(13) MF(12) MF(11) MF(10)
MF(9)
MF(1) MF(2) MF(3) MF(4) MF(5) MF(6) MF(7) MF(8)
3724
CLK32FM1
100R
CLK32
B3
0018
SLOT 1.2x3.2
1
0019
SLOT 1.2x3.2
1
E_14600_003.eps
18 19
B3a
B3b,c
0018 J18
3760 D15
3761 A14 3821 I4
3826 I3
3827 I4
3828 I4
3829 I4 3852 H4
3877 H3
3878 J4
3879 J4
3892 J3 3893 J4
3903 C5
3904 E5 3905 E6
5700 B3 5701 C3
5702 D3
5703 A8
5705 I6 5706 H4
5707 I5
5708 I4
5710 C8
5711 D7 5712 E6
5714 G6
7703 D3
7705 A6
7706 A7 7707 D5
7708 B6
7709 C5
7710 D6
7711 C8 7712 E7
7713 I9
7714 C16
7715 G5
7734 J4 7735 I4
7736 H3
9700 B7
9701 F6 9702 E6
9703 G7
9706 K6
9707-A J14
9707-B J14 9707-C J14
9707-D J14 9708-A I14
9708-B I14
9708-C I14 9708-D J14
9709-A H14
9709-B H14
9709-C I14
9709-D I14 9710-A H14
9710-B H14
9710-C H14
9710-D H14
9711 H14 9713 H3
9714 I4
9715 J4
9725 D4 9726 F4
9727 D18
9728 D15
9729 A4
9730 C8 9731 C7
9732 C7
9733 C7 9734 E5
9735 E5 9736 B3
9737 C3
9738 D3
9739 E3
9809 B5 F100 B2
F101 C2
F102 D2
F103 B3
F104 D3 F105 E3 F107 A8
F108 G2
F109 I2 F110 J2
F112 K3
F114 F3
F115 F3
F118 I7 F119 K3
F120 D3
F122 L6
F123 L6
F124 L6 F125 L6
F126 L6
F127 M6
F128 F6 F129 F6 F139 K14
F140 K14
F145 B6
F148 G14
F149 G14 F150 H14
F151 F10
F152 L7
F155 G6 F156 G6
F157 B4
F158 C4
F159 D4
F160 I7 F161 I7
F162 H5
F163 I5
F164 J5
F165 J5
F166 J5
F706 B6 F707 C6
F708 C6
F709 D5
F710 K6
F784 E7 F785 F7
F786 E8
F787 E8
F788 G7
I720 A4 I721 B4
I722 C3
I723 C4
I724 C3
I725 C4 I726 D3
I727 G6
0019 K18 1702 K6
1703 K6
1710 L5
2700 B3
2701 B3 2702 B4
A
2703 C3
2704 C3
2705 C4
2706 D3 2707 D3
2708 D4
2709 A8 2710 C17
2711 C17
B
2712 C15
2713 G2
2714 G3
2716 C16 2717 C15
2718 H3
2719 J3
2720 J3
2721 K3 2722 L3
C
2723 E3
2724 E3
2725 C16
2726 F13 2727 E11
2731 E9 2732 C7
2733 I14
2734 K14
D
2735 L9
2736 L10
2737 J6
2738 C18
2740 H5 2741 I5
2742 I5
2743 C6
2744 C6
E
2745 C8
2746 D8
2747 G5
2748 E6
2749 H6 2754 D8
2757 I7
300304
M
F
G
H
I
J
K
L
2800 I6
2804 J6 2806 G6 2807 K7
2915 I5
2916 I5
2917 A7
2918 A7 2920 J7
2922 I4
2923 H4
2926 J4
2929 K6 2930 H4 2931 H5
2932 I5
2933 I4 2935 K5
3700 K14
3701 L6
3702 E11
3703 B3 3704 C4
3705 C4
3706 B4
3707 C4
3708 D4 3709 F3
3710 F3
3711 E11
3712 L7
3713 G2 3714 I3
3715 J3
3716 H3
3717 J3
3718 J3 3719 G5
3720 H5
3721 H3
3722 E3 3723 K6
3724 H18
3725 K4
3726 L3
3727 K4 3728 K3
3729 D3
3730 K3
3731 E3 3732 A6 3733 D4
3734 E4
3735 E4
3736 C5
3737 C6 3738 C5
3739 D5
3740 A6
3741 D5
3742 D6 3743 D6
3746 C6 3747 C5
3748 B5 3749 C4
3750 D6
3751 B6
3752 B7
3753 C6 3754 C6
3755 D5
3756 D5
3758 F7
3759 I6
B3b
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Small Signal Board: FEM Falconic Embedded Memory

1234
A
FEM FALCONIC EMBEDDED MEMORY
B
+1V8FA
100n
2875
2876
100n
2877
100n
2887
2888
100n
100n
C
+3V3FA
100n
D
2886
TO B3c
E
TO B3c
+3V3FB
2885
100n
TO B3a
B3a,c,d B3a,c,d
B3d B3c
F
YG(5) YG(4)
YG(3) YG(2) YG(1) YG(0) UVG(7) UVG(6) UVG(5) UVG(4) UVG(3)
UVG(2) UVG(1) UVG(0)
TRST TMS TDOA TDOB
3880
3890
47K
3881
1K0
1K0
47K
3885
3888
1K0
9810
3886
3891
3882
47K
1K0
3889
1K0
1K0
3887 1K0
3883
47K
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
YG5|DPIP5 YG4|DPIP4 VDDE1 VSSE1 YG3|DPIP3 YG2|DPIP2 YG1|DPIP1 YG0|DPIP0 UVG7|QPIP7 UVG6|QPIP6 UVG5|QPIP5 UVG4|QPIP4 UVG3|QPIP3 NC|LLC VSSE2 NC|SWCK2 UVG2|QPIP2 UVG1|QPIP1 UVG0|QPIP0 NC|RSTW2 NC|OIE2 NC|IE2 VDDP NC|WE2 ACV|RE2 NC|RSTR2 TRSTN TMS TDI TDO
EN 49EM5.3A P/M AA 7.
5678910
B3a,c
B3a(2x)
B3a,c
CLK32NE
CLK32
31
YG(6)
100
TCK
32
+1V8FA
97
99
98
VSSM4
VDDM4
YG6|DPIP6
OUT
RST
SNDA34SNRST
35
33
96
VSSM3
VDDM3
VDDE2
PIPON
36
YG(7)
95
UVF(0)
UVF(1)
+1V8FA
94
91
VD
UVF093UVF192UVF289UVF3
YG7|DPIP7
FEM
7760
SAA4998H/V1
VSSM137VSSM2
VDDM138VDDM2
39
40
41
UVF(3)
UVF(2)
88
87
90
VSSA
VDDA
UVA042UVA143UVA244UVA345UVA446UVA5
SNCL
+1V8FA
86
VSSD3
VDDD3
85
VSSS2
47
84
VDDS2
OUT
VDDD1
48
83
CLK32
IN
VSSD1
49
UVF(4)
81
82
VSSE4
TWOFMON
50
UVF4
UVF5 UVF6 UVF7
VDDE3
YF0 YF1 YF2 YF3 YF4 YF5
VSSE3
YF6 YF7
REF VSSD2 VDDD2
REA
YA7 YA6 YA5 YA4 YA3 YA2 YA1
YA0 UVA7 UVA6
VSSS1 VDDS1
IE
9808
RES
3876
100R
UVF(5)
RE_F
B3a,c
UVF(6) UVF(7)
YF(0) YF(1) YF(2) YF(3) YF(4) YF(5)
YF(6) YF(7)
MF(17) MF(16) MF(15) MF(14) MF(13) MF(12) MF(11) MF(10)
MF(9) MF(8) MF(7)
B3a,c
TO B3a,c
TO B3a
2878
2879
+3V3FA
100n
+1V8FA
100n
80 79 78 77 76 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
A
B
C
D
E
F
2875 B1 2876 B1 2877 B2 2878 D9 2879 E9 2880 G7 2881 G6 2882 H6 2883 H5 2884 H5 2885 E2 2886 D2 2887 B2 2888 B2 3876 C7 3880 F3 3881 F4 3882 F4 3883 F4 3884 G5 3885 E4 3886 E4 3887 E4 3888 E4 3889 E4 3890 E4 3891 E4 7760 E6 9808 C6 9810 F4 9811 G5
G
H
8204 000 8308.6
12
+1V8FA
B3a,c,d
TCK
B3a
9811
RST-FEM
RSTR_O
B3a,b
B3a,c,d
SN-DA
2884
100n
2883
100n
SN-CL
B3a,c,d
2882
MF(1)
MF(2)
B3a
100n
MF(3)
MF(4)
MF(5)
MF(6)
+1V8FA
2881
100n
2880
100n
+3V3FA
+3V3FA
+3V3FA +3V3FA
+3V3FA
3456789
3884
47K
+3V3FA
G
H
E_14600_004.eps
300304
10
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
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EN 50EM5.3A P/M AA 7.

Small Signal Board: Eagle

12
EAGLE
3456
A
+2V5EC
+2V5ED
+1V5EA
2750
2751
1n0
1n0
1n0
2752
1n0
2753
1n0
2805
1n0
2755
1n0
2756
1n0
2808
1n0
2809
1n0
2759
1n0
1n0
2794
2768
1n0
2769
1n0
2770
1n0
2771
1n0
2772
1n0
2773
1n0
2795
1n0
2796
1n0
2797
1n0
2777
1n0
B
B3a,b,c
UVF(0) UVF(1) UVF(2) UVF(3) UVF(4)
UVF(0:7)
UVF(5) UVF(6)
B3b,c
I732
I714
100n
100n
100n
4K7
I733
EAG_SD_DQ(0) EAG_SD_DQ(1) EAG_SD_DQ(2) EAG_SD_DQ(3) EAG_SD_DQ(4) EAG_SD_DQ(5) EAG_SD_DQ(6) EAG_SD_DQ(7) EAG_SD_DQ(8) EAG_SD_DQ(9)
EAG_SD_DQ(0:15)
EAG_SD_DQ(10) EAG_SD_DQ(11) EAG_SD_DQ(12) EAG_SD_DQ(13) EAG_SD_DQ(14) EAG_SD_DQ(15)
YF(0:7)
UVG(0:7)
YG(0:7)
9756
9758
9765
9766
UVF(7) YF(0)
2789
2791
2793
9740
YF(1) YF(2) YF(3) YF(4) YF(5) YF(6) YF(7)
UVG(0) UVG(1) UVG(2) UVG(3) UVG(4) UVG(5) UVG(6) UVG(7)
YG(0) YG(1) YG(2) YG(3) YG(4) YG(5) YG(6) YG(7)
I713
100n
100n
100n
C
D
RES
I731
SN-CL RSTR_I SN-DA RSTR_O
+2V5EA
EAG_DQM RST_PIC_EAG
9763
3799
RES
3798
9712
9723
RES
4K7
B3a,b,d
B3a,d
B3a,b,d
B3a,b
E
B3c
B3a,b
+3V3EA +3V3EA
F
G
B3c
RES
+3V3EA
+3V3EA
3819
3820
9704
4K7
9705
4K7
RES
7720
9095104
111
29
83
EAGLE1C
2 3 4 5 6 7 8 9 12 13 14 15 16 17 18 19 190 191 192 193 194 195 196 197 32 201 202 203 204 205 206 207 208 24 25
9755
33 23
9757
57
2788
58 66
2790
67 73
2824
74 146 48
0V2
159 158 49 50
176 175 174 171 170 169 166 165 177 179 180 181 186 187 188 189
53 153 154 164
0 1 2 3
UVF
4 5 6 7 0 1 2 3
YF
4 5 6 7 0 1 2 3
UVG
4 5 6 7 0 1 2 3
YG
4 5 6 7 SNCL SNRST SNDA SNRSTO VREFY VBSY VREFU VBSU VREFV VBSV DQM RESET IS0 IS1 BISTEN PLLND2
0 1 2 3 4 5 6 7
DQ
8 9 10 11 12 13 14 15
1
28
VDD
DATA SDRAM
528598
INPUT BUS F
INPUT BUS G
SNERT
VSS
107
117
447896
113
131
143
112
10
21
3087101
VDD2 VDDC VDDS
151
167
182
199
Φ
VIDEO ENHANCEMENT
PROCESSOR
EAGLE - IC
2034437786
11
145
148
124
135
160
173
184
VSS2
97
108
114
H
I
8204 000 8308.6
123456789
2778
1n0
697660
AVDD U
123
2798
1n0
130
2780
2781
2782
1n0
1n0
1n0
61
152
AVDDV
AVDDY
AVDPLL
CLOCK
BOUNDARY SCAN
ADDRESS SDRAM
144
150
156
2762
2760
2761
2785
2784
2799
1n0
1n0
1n0
1n0
1n0
1n0
2251125
139
149
162
LUMINANCE
COLOUR DIFFERENCE
637054
161
168
178
183
200
2763
2764
1n0
1n0
172
185
OUTP_VAL
TESTSEL
SDCLKOUT
AVSS V
AVSSU
2821
1n0
198
UV
HREF AOUTNY AOUTPY
FSADJY AOUTNU AOUTPU
FSADJU AOUTNV AOUTPV
FSADJV
FALREF
REFIN
CLK32O
CLK64O
CLKSEL
ADDR
RASN CASN
SDCLKIN
AVSS Y
AVSPLL
155
2822
Y
INTR
CLKI
TRST
TMS
TDO TCK
WEN
62
7 8 9 10111213
B3a(2x)
CLK32P
B3c
CLK32O CLK32
B3a,d
VAP
+1V5EB
+2V5EA
+2V5EB
+3V3EA
116
0
115
1
110
2
109
3
106
4
105
5
103
6
102
7
100
8
99
9
94
0
93
1
92
2
91
3
89
4
88
5
84
6
82
7
81
8
80
9
79 26
HD
27
VD VA
35 55 56 59 64 65 68 71 72 75 31 46 47
163 147 118 157
36 37 38
TDI
39 40 41
0
42
1
45
2
136
0
134
1
133
2
132
3
119
4
120
5
121
6
122
7
126
8
127
9
137
10
138
11
140 141 142 128 129
DVSS
RES
3785
I735
7731
BFS20
3850
YOUT(0) YOUT(1) YOUT(2) YOUT(3) YOUT(4) YOUT(5) YOUT(6) YOUT(7) YOUT(8)
YOUT(9) 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) O_VAL
0V1
9753
9754
I715
I716
9759
9760
9761
9762
9773 9774 9775
3912-4
2925
RES
1n0
3919
3911-3
3911-1
3921
3912-1
3901
7728 BFS20
3788
I739
3807
3810
120R
F729
1K5
390R
68R
68R
68R
68R
68R
68R
68R
68R
2803
2765
68R
68R
68R
68R
68R
68R
68R
82R
330R
4K7
100n
NC
220p
2767
15p
RES
75R
3771
75R
3794
3776
I717
3796
RES
3912-3
3918
3911-4
3911-2
3920
3912-2
7
3900
3902
EAG_SD_CLKOUT
F762
5715
2u2
2838
B3a,c,d
75R
3773
3772
75R
75R
3800
F718
+3V3EA
EAG_SD_A(0) EAG_SD_A(1) EAG_SD_A(2) EAG_SD_A(3) EAG_SD_A(4) EAG_SD_A(5) EAG_SD_A(6) EAG_SD_A(7) EAG_SD_A(8)
EAG_SD_A(9) EAG_SD_A(10) EAG_SD_A(11)
EAG_SD_RASN EAG_SD_CASN
EAG_SD_WEN
EAG_SD_CLKIN
F762
Y_EAGLE_E
B3a-
2766
15p
27p
HREF_EXT
75R
F714
3801
3792
3894
I719
B3c
EAG_SD_A(0:11)
B3c
2p2
2815
2786
RES
3791
470R
150R
150R
150R
RES
9764
I734
68p
RES
9750
7717
PMBT2369
I730
2825
2827
2823
4K7
F765
75R
3811
3822
27R 3823
68R 3824
10R
3825
10R
3812
3782
1K0
3802
3757
3795
3766
100n
100n
100n
I717
BFS20
75R
+3V3EA
3797
7732
B3a
F718
1K0
HD_E
3786
HREF_EXT_E
150R
150R
150R
I719
+3V3EA
330R
CLK32IN
VAP_E
7729 BFS20
3789
3808
3813
B3c
B3a,b
B3c
B3c
F715
2787
RES
VAP_E
HREF_EXT_E
CLK32IN
CLK32O
CLK64
2813
120R
I737
680R
390R
9751
7718
PMBT2369
68p
RE_F
TRST TMS TDOB
TDOC
TCK
F720
100n
F763
I740
9768
+3V3EB
7719
MSM56V16160F-6TS
3778
9752
I736
7733
2928
1n0
3857
82R
3787
21
0
22
1
23
2
24
3
27
4
28
5
29
6
30
7
31
8
32
9
20
10
19
A11
4K7
35
CLK
34
CKE
18
CS
17
RAS
16
CAS
15
WE
82R
3906
RES
1n0
2936
RES
+3V3ED
CY2305SC-1
2K2
3856
2K2
3858
330R
7730 BFS20
3790
560R
82R
3809
F731
3816
390R
EAG_SD_A(0) EAG_SD_A(1) EAG_SD_A(2) EAG_SD_A(3) EAG_SD_A(4) EAG_SD_A(5) EAG_SD_A(6)
EAG_SD_CLK
EAG_SD_RASN EAG_SD_CASN EAG_SD_WEN
B3c
+3V3EB
EAG_SD_A(7) EAG_SD_A(8) EAG_SD_A(9) EAG_SD_A(10)
EAG_SD_A(11)
B3c B3c
RES
3783
1K0
EAG_SD_A(0:11)
+3V3EA
RES
1K0
3765
VD_E
RES
B3a
+2V5ED+2V5ED
B3a,b
B3c B3c NC B3a,b,d B3a,b,d B3b B3a
B3a,b,d
3793
7725
2K2
B3a
+5V2Pr
3744
INT1
+3V3EA
2K2
PMBT2369
1V1
1K
3745
+3V3EA
F763 F764
U_EAGLE_E
B3a-
5716
2u2
2779
2801
12p
12p
27p
220p
RES
2842
2816
2840
1n0
EAG_SD_CLKOUT
100n
2812
F766
3805
390R
BFS20
2p2
75R
75R
3814
3815
2831
2830
100n
100n
1
25
VDD
512K X 16 X 2
0
A
512K-1
VSS
26
50
7702
F761
2783
I738
9767
DRAM
1
100n
F764
2776
12p
220p
RES
2832
100n
100n
71338
VDDQ
Φ
VSSQ
4
104147
VDD
CLKOUT
REF
GND
4
9716
RES
5717
2u2
2774
2833
CLK1
CLK2
CLK3
CLK4
100n
D
+3V3ED
6
5718
2775
12p
27p
2834
DQM
2839
1n0
100n
44
8
3
2
5
7
NC
2835
10 11 12 13 14 15 16
1 2 3 4 5 6 7 8 9
U
L
2814
V_EAGLE_E
2818
2937
2938
+3V3EC
33 37
3762
2
68R
3 5
3764
6
68R
8
3768
9
68R
3770
11
68R
12
3775
39 40
68R
42
3779
43
68R
45
3781
46
68R
48
3804
49
68R
36 14
EAG_SD_DQ(0)
3763
EAG_SD_DQ(1)
68R
EAG_SD_DQ(2)
3767
EAG_SD_DQ(3)
68R
EAG_SD_DQ(4)
3769
EAG_SD_DQ(5)
68R
EAG_SD_DQ(6)
3774
EAG_SD_DQ(7)
68R
EAG_SD_DQ(8)
3777
EAG_SD_DQ(9)
68R
EAG_SD_DQ(10)
3780
EAG_SD_DQ(11)
68R
EAG_SD_DQ(12)
3784
EAG_SD_DQ(13)
68R
EAG_SD_DQ(14)
3803
EAG_SD_DQ(15)
68R
EAG_SD_DQ(0:15)
EAG_DQM
B3c
RES
10p
3859
100R
RES
10p
3860
100R
9718
9717
RES
RES
EAG_SD_CLKIN
EAG_SD_CLK
9721
RES
15p
2940
+8V_CON
16V10u
2758
100n
B3a-
F767
3806
390R
2p2
3817
75R
3818
75R
B
E_14600_005.eps
171204
2750 A2 2751 A3 2752 A3 2753 A3 2755 A3 2756 A3 2758 H12 2759 A3 2760 A5 2761 A5 2762 A5 2763 A5 2764 A5 2765 I6
A
2766 I7 2767 I6 2768 A3 2769 A3 2770 A3 2771 A4 2772 A4 2773 A4 2774 I12 2775 I12 2776 I11 2777 A4
B
2778 A4 2779 I9 2780 A4 2781 A4 2782 A4 2783 H11 2784 A4 2785 A4 2786 D7 2787 D8 2788 E2
C
2789 E1 2790 E2 2791 E1 2793 E1 2794 A3 2795 A4 2796 A4 2797 A4 2798 A4 2799 A4 2801 I9 2803 H6
D
2805 A3 2808 A3 2809 A3 2812 H10 2813 H9 2814 H12 2815 I7 2816 I9 2818 I12 2821 A5 2822 A5 2823 E8
E
2824 E2 2825 D8 2827 E8 2830 A11 2831 A11 2832 A11 2833 A12 2834 A12 2835 A12 2838 I7 2839 E12
F
2840 F10 2842 I9 2925 H6 2928 E10 2936 D11 2937 F12 2938 F12 2940 F13 3744 F9 3745 G9 3757 E8 3762 B13
G
3763 B13 3764 B13 3765 C9 3766 C8 3767 B13 3768 B13 3769 B13 3770 B13 3771 C6 3772 C7 3773 C7 3774 B13
H
3775 C13 3776 D6 3777 C13 3778 C10 3779 C13 3780 C13 3781 C13 3782 D8 3783 D9 3784 C13 3785 H5 3786 H8 3787 H10
I
3788 I6 3789 I8 3790 I11 3791 I7 3792 E7 3793 F9 3794 D7 3795 E8 3796 E7
3797 F8 3798 F1 3799 F1 3800 D7 3801 D7 3802 D8 3803 C13 3804 C13 3805 I10 3806 I12 3807 I6 3808 I8 3809 I11 3810 I6 3811 I7 3812 I8 3813 I8 3814 I10 3815 I10 3816 I11 3817 I12 3818 I13 3819 H1 3820 H1 3822 A8 3823 A8 3824 A8 3825 B8 3850 H5 3856 E11 3857 F10 3858 F11 3859 F12 3860 F12 3894 E7 3900 G6 3901 G6 3902 G7 3906 C11 3911-1 G6 3911-2 G7 3911-3 G6 3911-4 F7 3912-1 G6 3912-2 G7 3912-3 F7 3912-4 F6 3918 F7 3919 F6 3920 G7 3921 G6 5715 I7 5716 I9 5717 I12 5718 H12 7702 E11 7717 C8 7718 C9 7719 A11 7720 B2 7725 G9 7728 H6 7729 H8 7730 H11 7731 I5 7732 I8 7733 I10 9704 H1 9705 H1 9712 E1 9716 G12 9717 F13 9718 F13 9721 F13 9723 F1 9740 F1 9750 C7 9751 C9 9752 C10 9753 D6 9754 D6 9755 E2 9756 E1 9757 E2 9758 E1 9759 E6 9760 E6 9761 E6 9762 F6 9763 F1 9764 F7 9765 F1 9766 F1 9767 I11 9768 I9 9773 F6 9774 F6 9775 F6 F714 C7 F715 C8 F718 E8 F720 G9 F729 I6 F731 I11 F761 H11 F762 H6 F763 H9 F764 H11 F765 I7 F766 I10 F767 I12 I713 E2 I714 E1 I715 E6 I716 E6 I717 E8 I719 E8 I730 D8
I731 E1 I732 E1 I733 F1 I734 B7 I735 H5 I736 H10 I737 I9 I738 I11 I739 I6 I740 I9
10 11 12 13
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料

Small Signal Board: Columbus

1234
COLUMBUS
A
2850
100n
2851
100n
2852
+3V3CB
2853
100n
100n
2854
100n
2855
100n
+3V3CB
1
0 1 2 3 4 5 6 7 8 9 10
A11
35 34
CKE CS RAS CAS WE
25
VDD
512K X 16 X 2
0
A
512K-1
MSM56V16160F-7TS
CLK
VSS
26 50
B
COL_SD_A0 COL_SD_A1 COL_SD_A2 COL_SD_A3 COL_SD_A4 COL_SD_A5 COL_SD_A6 COL_SD_A7 COL_SD_A8 COL_SD_A9 COL_SD_A10
C
D
COL_SD_A11
COL_SD_CLK
+3V3CB
COL_SD_RASN COL_SD_CASN COL_SD_WEN
4K7
3846
9803
9802 9801 9800
21 22 23 24 27 28 29 30 31 32 20
19
18 17 16 15
133844
7
VDDQ
Φ
DRAM
SDRAM
7753
VSSQ
4
104147
33
NC
1 2 3 4 5 6 7
D
8
9 10 11 12 13 14 15 16
36
U
14
DQM
L
E
(ONLY FOR 3D COMB)
F
G
+3V3CA
2856
100n
2857
2859
100n
2860
100n
2861
100n
2862
100n
2863
100n
2858
100n
100n
2866
100n
2867
+1V5CA
100n
2868
100n
2869
100n
2870
100n
2819
100n
2836
100n
H
2865
100n
I
37
2 3 5 6 8 9 11 12 39 40 42 43 45 46 48 49
2864
100n
COL_SD_DQ1 COL_SD_DQ2 COL_SD_DQ3 COL_SD_DQ4 COL_SD_DQ5 COL_SD_DQ6 COL_SD_DQ7 COL_SD_DQ8
COL_SD_DQ9 COL_SD_DQ10 COL_SD_DQ11 COL_SD_DQ12 COL_SD_DQ13 COL_SD_DQ14 COL_SD_DQ15 COL_SD_DQ16
TO B3
B3a,b,c
B3a,b,c
COL_DQM
B3a
B3b
RST_COL
+3V3CA
TCK TDO TDOA TMS TRST
EN 51EM5.3A P/M AA 7.
5678910
7752-1
COLUMBUS
COL_DQM
3853
+3V3CA
L14
DQM
COL_SD_RASN COL_SD_CASN COL_SD_CLK COL_SD_WEN
COL_SD_A0 COL_SD_A1 COL_SD_A2 COL_SD_A3 COL_SD_A4 COL_SD_A5 COL_SD_A6 COL_SD_A7 COL_SD_A8 COL_SD_A9 COL_SD_A10 COL_SD_A11
9804
+3V3CA
4K7
3847
9806
47K
4K7
3848
9805
9807
B3a(2x)
B3a
B3a
B3a,c
B3a,c,d
B3a
+3V3CA
3854
3855
I801
4K7
4K7
9812
CL16 WE-A
YA(0) YA(1) YA(2) YA(3) YA(4) YA(5) YA(6) YA(7) YA(8)
VAP HREF_EXT
UVA(0) UVA(1) UVA(2) UVA(3) UVA(4) UVA(5) UVA(6) UVA(7) UVA(8)
G15
H15
H14
G14
A7
D15 F15 E15 E14 F14
A8 F1 H3
B8
7752-2
COLUMBUS
RESET
CLKSEL
CLKEXT
A0IIC
656SEL
TCK TDI
TDO TMS TRST
TST1 TST2 TST3
BISTEN
K15
RAS_
K14
CAS_
J14
CLK
J15
WE_
P6
A0
R6
A1
P5
A2
R5
A3
R1
A4
R2
A5
R3
A6
P3
A7
R4
A8
P4
A9
R7
A10
P7
A11
H1 G1
CLKASA
B13 A1
WEA / DAVA
B7
YA0 / Di9
B9
YA1
A9
YA2
B10
YA3
A10
YA4
B11
YA5
A11
YA6
B12
YA7
A12
YA8
A13
VA
A14
HREF
A2
UVA0 / Di0
B3
UVA1 / Di1
A3
UVA2 / Di2
B4
UVA3 / Di3
A4
UVA4 / Di4
B5
UVA5 / Di5
A5
UVA6 / Di6
B6
UVA7 / Di7
A6
UVA8 / Di8
+3V3CA
N3
C4
C12
N8
G3
M3
G13
L13
VDDS
P13
N11
N14
COLUMBUS_CTRL
VSS
C9
M13
C5C6C13
D13
B2
C10N4N12
N13P2P14
B14E3F3
656
Decod
C8C7D3
F13C3J3
COLUMBUS_IO
Memory
Interface
3D Comb
SWAN 3D
MUX
MUX
+1V5CA
N6
N9
E13
C11
H13
VDDC
K13L3N5N7N10R9R11
J13
Noise Reduct
656
Encod
K3
MUX
AVD
SNDA
SNCL
SNRST
SDA
NC_2 NC_3
AVS
SCL
DQ1 DQ2 DQ3 DQ4 DQ5 DQ6 DQ7 DQ8
DQ9 DQ10 DQ11 DQ12 DQ13 DQ14 DQ15 DQ16
CLKASB
WEB / DAVB
YB0 / Do9
UVB0 / Do0 UVB1 / Do1 UVB2 / Do2 UVB3 / Do3 UVB4 / Do4 UVB5 / Do5 UVB6 / Do6 UVB7 / Do7 UVB8 / Do8
YB1 YB2 YB3 YB4 YB5 YB6 YB7 YB8
P12
R12
P11 P10
R10
P9 P8
R8 R13 R14 R15
P15 N15 M14 M15
L15
G2
F2 E2
E1 D2 D1 C2 C1
B1
M2 M1
L2
L1
K2
K1
J2 J1
H2
+1V5CA
5800 I718
2792
N1
P1
C14
D14
C15
F735
A15
B15
F736
D4 N2
3831
3833
68R
3835
68R
3837
3839
3841
3844
3845
3914-1
3915-1
3913-3 22R
3913-1 22R
3914-3
3917-2
3917-4
3916-2
3915-4
100n
9815
9816
4K7
3851
+5V2Pr
3849
68R
68R
68R
68R
68R
68R
22R
22R
22R
22R
22R
22R
22R
22R
9817
4K7
+5V2Pr
11 12
3830
68R
3832
68R
3834
68R
3836
68R
3838
68R
3840
68R
3842
68R
3843
68R
3916-4
22R
3915-2
22R
3913-4
3913-222R
3914-4
22R
3914-2
22R
3917-1
22R
3917-3
22R
3916-3
22R
3916-1
22R
3915-3
22R
9722
9818
SN-DA
SN-CL
RSTR_I
SDA-D
SCL-D
COL_SD_DQ1 COL_SD_DQ2 COL_SD_DQ3 COL_SD_DQ4 COL_SD_DQ5 COL_SD_DQ6 COL_SD_DQ7 COL_SD_DQ8
COL_SD_DQ9 COL_SD_DQ10 COL_SD_DQ11 COL_SD_DQ12 COL_SD_DQ13 COL_SD_DQ14 COL_SD_DQ15 COL_SD_DQ16
CLK-AS
WE-B
YB(0) YB(1) YB(2) YB(3) YB(4) YB(5) YB(6) YB(7) YB(8)
UVB(0) UVB(1) UVB(2) UVB(3) UVB(4) UVB(5) UVB(6) UVB(7) UVB(8)
B3a,b,c
B3a,b,c
B3a,c
B3a
B3a
B3a
A
B
C
D
E
G
H
2792 G10 2819 H3 2836 H3 2850 A1 2851 A1 2852 A1 2853 A2 2854 A2 2855 A2 2856 G2 2857 G2 2858 G2 2859 G2 2860 G3 2861 G3 2862 G3 2863 G3 2864 G4 2865 H2 2866 H2 2867 H2 2868 H2 2869 H3 2870 H3 3830 B11 3831 B10 3832 B11 3833 B11 3834 B10 3835 B11 3836 B11 3837 B10 3838 B11 3839 B10 3840 B11 3841 B11 3842 C10 3843 C11 3844 C11 3845 C10 3846 D1 3847 G5 3848 G6 3849 H10 3851 H10 3853 H5 3854 H6 3855 I6 3913-1 C10 3913-2 C10 3913-3 C10 3913-4 C10 3914-1 C10 3914-2 D10 3914-3 D10 3914-4 D10 3915-1 C10 3915-2 C10 3915-3 E10 3915-4 E10 3916-1 D10 3916-2 D10 3916-3 D10 3916-4 C10 3917-1 D10 3917-2 D10 3917-3 D10 3917-4 D10 5800 F10
F
7752-1 A7 7752-2 G6 7753 C3 9722 G11 9800 D2 9801 D2 9802 D2 9803 D2 9804 G6 9805 G6 9806 H5 9807 H5 9812 B6 9815 G10 9816 G10 9817 H10 9818 H11 F735 H10 F736 H10 I718 F10 I801 G6
I
8204 000 8308.6
1234 11 12
5678910
E_14600_006.eps
220304
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料

Small Signal Board: FBX Supply

1 23456789
FBX SUPPLY
A
+3V3_FBXA
I744
5767
F790
+3V3PA
2739
100u
2890
100n
B
5768
F791
C
5769
5770
2891
2892
100n
F793
2893
100n
100n
F792
+5V_FBXA
+3V3PB
+3V3PC
+3V3FA
6730
6731
S1D
S1D
6719
S1D
D
5771
2894
100n
F794
+3V3FB
2843
100n
10u
2729
F748
100n
+3V3Pr
7773
LF18ABT
1
IN OUT
GND
2
3
2919
5773
E
5772
I752
2728
8204 000 8308.6
+3V3_FBXA
5775
2895
GND
RES
5709
RES
5784
+8V_CON
F795
100u
RES
2730
2715
5760
2927
2802
10u
10u
100n
5763
100u
GND
2898
100n
I748
5723
RES
10u
F796
2817
7774
KF25BDT
1
IN3OUT
GND
2
LF15AB
1
IN
100n
2897
LF15AB
1
IN
2899
100n
+1V8FA
100n
GND
RES
7701
GND
7772
GND
2
2
2934
GND
3
OUT
3
OUT
I743
2889
F799
2896
F713
2871
100n
100u
100u
100u
+8VPA
2924
GND
+1V5_FBXB
5761
+1V5_FBXA
+2V5_FBXA
100n
+2V5_FBXA
+2V5_FBXA
+2V5_FBXA
+2V5_FBXA
EN 52EM5.3A P/M AA 7.
+3V3_FBX
+5VF
5719
5720
5721
5722
5752
5764
5713
5762
F798
2849
F712
2921
F711
2872
F797
2873
100n
100n
100n
100n
+3V3_FBXA
+5V_FBXA
+2V5ED
+2V5EC
+2V5EA
+2V5EB
+5V_FBXA
+5V_FBXA
2828
5754
10u
2820
F749
+1V5_FBXA
+1V5_FBXB
+1V5_FBXB
3
100n
5755
7770 LD1117
IN
GND
2847
5757
5758
5759
RES
1
F750
OUT
10u
F745
2844
F746
2826
F747
2874
+3V3_FBXA
5777
I745
2
2829
100n
2848
+1V5EA
100n
+1V5EB
100n
+1V5CA
100n
100u
2837
16V100u
+5V2Pr
+3V3_FBXB
+3V3_FBXB
+3V3_FBXB
+3V3_FBXB
+3V3_FBXB
+3V3_FBXB
+3V3_FBXB
5750
5751
5765
5724
5756
5753
F740
100n
2811
F741
+3V3EB
2810
100n
F742
2845
2846
+3V3EC
2841
100n
+3V3ED
100n
2939
F744
+3V3CA
100n
F743
+3V3CB
100n
E_14600_007.eps
+3V3EA
220304
A
B
C
D
E
2715 B3 2728 E2 2729 E2 2730 E3 2739 B1 2802 A3 2810 B9 2811 A9 2817 E3 2820 B7 2826 E7 2828 B6 2829 B7 2837 B8 2841 B9 2843 E2 2844 D7 2845 D9 2846 E9 2847 C7 2848 C7 2849 C6 2871 C4 2872 E6 2873 E6 2874 E7 2889 A4 2890 B2 2891 B2 2892 C2 2893 D2 2894 D2 2895 A3 2896 B4 2897 B4 2898 C3 2899 C4 2919 E3 2921 D6 2924 A4 2927 D3 2934 D4 2939 D9 5709 B3 5713 E5 5719 B5 5720 B5 5721 B5 5722 C5 5723 D3 5724 C9 5750 A9 5751 A9 5752 C5 5753 E9 5754 A6 5755 B7 5756 D9 5757 D7 5758 D7 5759 E7 5760 C3 5761 B4 5762 E5 5763 E3 5764 D5 5765 B9 5767 A2 5768 B1 5769 C1 5770 D1 5771 D1 5772 E1 5773 E1 5775 A3 5777 A7 5784 C3 6719 C3 6730 B3 6731 C3 7701 B4 7770 A7 7772 C4 7773 E2 7774 A4 F711 E6 F712 D6 F713 C4 F740 A9
F741 A9 F742 B9 F743 E9 F744 D9 F745 D7 F746 D7 F747 E7 F748 E2 F749 B6 F750 B7 F790 A2 F791 B1 F792 C2 F793 D2 F794 D2 F795 E3 F796 E3 F797 E6 F798 C6 F799 B4 I743 A4 I744 A1 I745 A7 I748 C3 I752 E2
1 234
5678
9
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料
EN 53EM5.3A P/M AA 7.

Small Signal Board: HOP

12345
A
B3a-B4
B3a-B4
B3a-B4
B
C
D
B1-B5a
B4(2x)
B4(2x)
B4(2x)
B4(2x)
E
F
B3a,B4(3x),B5a
G
B4(2x)
H
B4(2x)
B4(2x)
B4(2x)
B3a,B4(3x),B5a
I
B3a,B4(3x),B5a
8204 000 8260.5
HOP
1813 12 2 10 23 24
WIN­DOW
5
68K
2396
100n
100R
100R
20
VCC
SOUT 21
YOUT 19
SC
F335
3339
3320
3321
F312
2317
3363
1K
+5VS
10p
2344
6321
BAV99
B3a,B4
+8VS
2321
1
6K8
3395
100R
2395
100n
2397
100n
2309
2310
1u
2318
c200
1K
3333
10p
2320
F348
F349
F350
F351
F352
F353
F362
2398
DEC
2301
3397
100R
5301
2332
3387
100R
AD13AD24AD3
15
100n
F333
6u8
100n
2345
6320
SPEC­TRAL PROC
ADC
3396
100R
3398
100R
2315
F321
10p
100n
GND
3305
100n
B3a-
B3a-
B4
B1
B4
B4
B4
B4
B4
B4
Y100
U100
V100
SDA-F
SCL-F
LIGHT-SENSOR
HD100
SANDCASTLE
FBL_2FH
R_2FH
G_2FH
B_2FH
SCL-F
SDA-F
GND-RGB-CRT
VD100
NOHOP1A
VD
HD100
R_2FH
G_2FH
B_2FH
FBL_2FH
HD100
VD
NOHOP1B
NOHOP1A
HD100
NOHOP2B
5304
5305
5306
5307
5308
9311
9312
7302
TOPIC
TDA9178
YIN6
UIN
8UOUT17
VIN9 VOUT 16
CF22
3454
100R
3455
100R
F334
+8V_VDP
3329
F301
+8VS
2314
+5VS
0V8
100MHZ5303
100MHZ
100MHZ
100MHZ
100MHZ
100MHZ
10p
10p
2349
2348
ONLY FOR NO HOP
LUMA
PROCESSING
CHROMA
PROCESSING
CONTROL
SCL11SDA
14
6308
MCL4148
3453
33K
*
5302
6u8
100u
3349
4K7
7304
PDTC144EU
10p
10p
2347
2346
6322
BAV99 BAV99
ADR
NC
7
123
B3a,B4
V100
U100
9303
9302
F331
F332
100n
2431
100n
3302
1K0
10p
F358
10p
F338
F339
22n
2307
100n
F359
470p
2363
L12
3331
1K
1304
N.C.
1
2
3
4
5
6
7
6302
PDZ-6.8B
2FH-HD100
2FH-VD100
456789
B3a,B4
Y100
9304
2323
F303
F364
2FH-FBL
NC
F330
28
27
26
17
23
2FH-B
100n
2
7301 TDA9330
YIN
UIN
VIN
BL133
RI130
GI131
BI132
SCL10
SDA11
VP1
VP239
DECBG18
GND219
DECVD7
GND16
VD
HD24
HSEL12
CSTCV
12M
2FH-G
B4
Yltp
9305
2429
100n
ONLY FOR NO HOP
9308
9309
9310
SWITCH
VUY
RGB-YUV
MATRIX
I2C
SYNC+GEO
RGB
BANDGAP
ANAGND
DIGSUP
DIGGND
1PHI-
Hsel
XTALI20XTALO
21
13
1301
2FH-R
SANDCASTLE
B4
B5a
6789
B4(2x)
B4(2x)
B4(2x)
2328
22p
WHITE P.
3311
B1,B4
B4(2x)
B_2FH
G_2FH
1K
1K
3335
33321K3330
F367
F326
34
PWL
R
G
+ BUFFER
BB
CONTIN’S
CATHODE
CALIBR’N
6-BITS
DAC
GENERATOR
10p
100K
2304
3314
TILT
R_2FH
OUTPUT
AMPL
+ BLUE
STRETCH
EW
FRAME
RAMP
10K
+8VS
6312
2342
100n
3355
RO 4 0
GO 41
BO 42
BLKIN 44
BCL 43
DACOUT 25
EWO 3
EHTIN 4
VDOB 2
VDOA 1
IREF 16
VSC 15
HOUT 8
+8VS
7303
BAS316
BC857BW
+8VS
3360
100K
33K
2334
F357
F311
F315
L13
+8VS
3315
+8VS
3471
F366
3470
BAS316
2u2
2336
3306
1K
6303
BZX384-C47
6313
BZX384-C22
F317
6316
3345
10K
F18
100K
33K
6319
BAS316
2u2
3394
+8VS
3318
2308
7375
BC847BW
BAS316
BAS316
B4,B5a
B4,B5a
B4,B5a
B4,B5a
B-TXT
R-TXT
G-TXT
FBL-TXT
2330
100n
100n
2329
100n
2331
35
36
37
38
BI2
RI2
GI2
BL2
SATUR’N
CONTROL COLOUR
DIFF
MATRIX
Y
BLACK
STRETCH
R
G
B
SAT
CONTRAST
BRIGHTNESS
CONTR
Y
U
V
AND
CONTROL
BRIGHT
R
G
RGB-INSERTION
B
R
G
WHITE POINT
CONTROL
PWL +
BEAM CURR
LIMITER
HOP
SUPPLY
3327
68p
BAT54 COL
DYN-FASE-COR
B1-
START/STOP
H-DRIVE
FBCSO29FLASH
100K
1K
3336
22K
3472
POR
B1-
LPSU
22
BC847BW
2324
POR_FLASH
10n
B5a
5
F307
7362
PDTC144EU
7361
+8VS
3361
47K
PHI-2
SC
HFB
SCO
DPC
13
9
14
F306
F305
*
100K
2325
100n
3326
*
*
100K
3323
6334
BAS316
F363
1K
3334
3324
HFB
HFB_X-RAY-PROT
4K7
6306
2311
6307
BZX384-C5V6
B1,B4
10 11
B4(2x)
+8VS
FBL_2FH
10K
3467
7305
BC847BW
3346
33K
F314
3348
2K2
22K
3347
6310
BZM55-C6V8
F316
3390
220R
4K7
3308
220K
1u
18K
3307
2303
3328
39K
2313
100n
2312
1K
33n
3317
220R
10p
6304
F329
6314
2306
470p
+8VS
3310
B4
+8VS+8VS +8VS
BC847BW
3351
F310
7306
+8VS
3352
100K
2343
100n
7314
F368
BC847BW
10K
3359
100K
V28
3340
100R
3341
3342
100R
100R
V30
3344
2K2
F365
3312
10K
3364
2319
F360
1n5
Yltp
3325
100K
33K
3465
9421
V29
+8VS
2333
2u2
7318
12V
47K
BC857BW
F19
7312
PDTC144EU
2V3
3316
47K
SLOT 1.2x3.2 1
0014
12 13 14
B1-
Y-S C A V E M
1K
3353
7315
PMBT2369
1K
3350
3388
10R
F309
BAS316
6309
3313
100K220R
100K
3367
220R
7311
F361
4V5
3362
680K
3366
220R
+5V_VDP
3304
2340
10 11 12 13
+8VS
+5VS
2386
3354
PMBT2369
F320
BZX384-C22
6311
2326
BC857BW
3386
22K
220p
3R9
100u
3344 D11 3345 D9 3346 C10 3347 D10
3348 D10 3349 F3 3350 B12 3351 B11 3352 A11
3353 A12 3354 A12 3355 B9 3356 B14
3357 B14 3358 A13 3359 B11 3360 A9 3361 G7
3362 G12 3363 F4 3364 F11 3365 F13 3366 G12
3367 F12 3368 E13 3383 B13 3384 C13
3386 F12 3387 G3 3388 C12 3390 D10 3391 G13
3394 E9 3395 C4 3396 D3 3397 D3 3398 D3
3399 C14 3442 E13 3443 E13 3453 C3
3454 B2 3455 C2 3459 B13 3465 B10 3467 A10
3470 B9 3471 A9 3472 I7 5301 E3 5302 E3
5303 G2 5304 H2 5305 H2 5306 H2
5307 H2 5308 H2 6301 E13 6302 I4 6303 H9
6304 H10 6306 I6 6307 I6 6308 C3 6309 D12
6310 D10 6311 D12 6312 H8 6313 H9 6314 H10
6316 C9 6317 E13 6319 D9 6320 I3
6321 I4 6322 I3 6334 H5 7301 B5 7302 A2
7303 G9 7304 F3 7305 B10 7306 A11 7308 B13
7309 B14 7310 G13 7311 F12 7312 F11
7313 A13 7314 B11 7315 B12 7318 E11 7319 C13
7340 C14 7361 I7 7362 H7 7375 B10
9302 A4 9303 A4 9304 A4 9305 A5 9308 B5
9309 B5 9310 B5 9311 I2 9312 I2
9313 F14 9314 B13 9315 B13 9316 C13 9421 B11
C001 H13 F301 E2 F303 F4 F304 I13 F305 G6
F306 G6 F307 G7 F309 D12 F310 D11
F311 D9 F312 E4 F314 D10 F315 D9 F316 D10
F317 E9 F319 B13 F320 A12 F321 F3 F326 B8
F329 H10 F330 B4 F331 B4 F332 B4
F333 C3 F334 C2 F335 B3 F338 E4 F339 E4
F340 F13 F347 D13 F348 G4 F349 H4 F350 H4
F351 H4 F352 H4 F353 H4 F357 E9
F358 E4 F359 F4 F360 F11 F361 F12 F362 H4
F363 H5 F364 F4 F365 E11 F366 A9 F367 B8
F368 B11 c200 F4
0014 I10 1301 G5 1304 G4 2301 C3
2303 E10 2304 G8
A
B
C
D
E
F
G
H
I
2306 H10 2307 F4 2308 G9
2309 D4 2310 E4 2311 H6 2312 F10
2313 F10 2314 E2 2315 E3 2317 F3 2318 F4
2319 F11 2320 G4 2321 B4 2323 B4 2324 I7
2325 G6 2326 E12 2328 B8 2329 B7
2330 A7 2331 B7 2332 E3 2333 D11 2334 E9
2336 E9 2338 C13 2340 I12 2342 A9 2343 A11
2344 H3 2345 H3 2346 H3 2347 H2
2348 H2 2349 H2 2363 F4 2386 G12 2392 G13
2393 E14 2395 D4 2396 D4 2397 D4 2398 A3
2429 B5 2431 B4 3302 C4 3304 I12
3305 C3 3306 E9 3307 E10 3308 E10 3310 E10
3311 G8 3312 E11 3313 E12 3314 G8 3315 G9
3316 H10 3317 G10 3318 G9 3319 E13 3320 D4
3321 E4 3322 D13 3323 H6 3324 I6
3325 A10 3326 H6 3327 G6 3328 F10 3329 E2
3330 A8 3331 G4 3332 A8 3333 G4 3334 I5
3335 A8 3336 H7 3337 A13 3338 B14
3339 C4 3340 C11 3341 C11 3342 C11 3343 D13
B4,B5a
R-CRT
+8VS
G-CRT
47R
B-CRT
BCL
10K
CUTOFF
EHT-INFO
TILT
EW-DRIVE
EHT-INFO
2393
ANTI-MOIRE
FRAMEDRIVE-
9313
RES ONLY PTV
VSYNC
NOHOP1B
FRAMEDRIVE+
HD@HOME
LINEDRIVE1
NOHOP2B
EHT-INFO
E_14600_008.eps
B
B1-
B1-
B1-
NC
B1-
B1-
B1-B4
B1­B1-
B1-B4
B5b
B1-
B5a,B5b
B4
B1
B5a
B1-
B1­B4
B1-
171204
FBL-TXT
2K2
7313
3V0
10n
9316
3343
68K
F347
6301
BAS316
BAS316
UL ONLY
0V7
3391
F304
3358
3459
6317
4K7
1K8
2K2
BC857BW 7319
3322
1K
F340
2392
+5VS
F319
3V2
3383
680R
3384
47R
4n7
BC857BW
3V1
3442
22K
7310
C001
7308
3319
100R
9314
+8VS
100n
2338
BC847BW
3368
1M
9315
220K
+5VS
3365
+8VS
3337
680R
3443
10K
3338
47R
3356
680R 3357
BC857BW 7309
+8VS
7340
BC847BW
3399
1u
HFB_X-RAY-PROT
GND-LINEDRIVE
14
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Small Signal Board: OTC Flash

1234567
9006
SDM
2061
RES
3078-C
470R
3V4
+3V3_INTOTC
7010
BC857BW
RES
3077
10K
3076-B
470R
6003
+5V2_CON
2K2
3069
3079
36
+3V3_INTOTC
F046
F002
F064
F083
2007
F043
3097
100p
3074-D
2V8
+3V3_INTOTC
3076-C
470R
7009 BC847BW
4K7
3088
3074-C
470R
2V3
2001
33p
2002
27p
B56
RES
2006
100n
470R
470R
3033
10K
3090-C
3090-A
+3V3_INTOTC
4K7
3064-C
3
100R
3064-A
18
100R
F045
2005
3020
2K7
3068
3021
2059
100p 3091
2058
470R
100p
+5V2_CON
6001
47K
1PS76SB10
B54
4
VSS
M24C32
SDA
5
NVM
VCC
8
+3V3_INTOTC
7015 PMBT2369
4K7
7016 PMBT2369
+8V_CON
10K
10K
3039
120R
3047
470R
6004
BAT54WS
2022
B51
7011
10K
3018
IRQ-FTV
B5a
4K7
3019
3078-D
470R
F067
9016
3024
27K
1PS76SB10
100n
2K2
3044
B52
3074-A
18
470R
WC_
7
SCL
6
E2
3
E1
2
E0
1
A
B
C
D
E
F
G
B6-
B1-
B1-
B1-
NC
B1-B4-
B2-
B1,B5a
B1(2x)
B5a,B1-
B5a,B1-
B5a,B1-
B5a,B1-
NC
B1-
B1-
B
SEL_IN_2
(DEGAUSS-INPUT)
DEGAUSSING
FRONT-DETECT
ON-OFF-LED
AGC-MONITOR
SC3_STATUS
+5V2_CON
NC
B1-
KEYBOARD
STANDBY
B6-
STATUS_SC3
B5b-
PWM_ANTIMOIRE
B1-
RC
B4-
IRQ-DIGITAL
B1-
P50
SDA-F
SCL-F
SDA-S
SCL-S
B1-
SOUND-ENABLE
B6-
RESET-AUDIO
B4-
HD@HOME
SDA-S
SDA-F
SCL-S
B1-
SCL-F
SEL_IN_1
LIGHT-SENSOR
3058
6K8
3075
RES
10K
SC4_STATUS
POR_FLASH
7008
BC847BW
3025
220R
0015
+3V3_INTOTC
RES
F081
SLOT 1.2x3.2
+3V3_INTOTC
+3V3_INTOTC
4K7
3080
9014
3059
620R
9015
2020
220p
3027
F068
B53
F044
RES
9003
RES
9004
+5V_CON
+3V3_INTOTC
TxD
B5a
OTC
H
I
J
RxD
B5a
RESET
+3V3_INTOTC
B5a
A3a,B4(4x)
B4-
B5B,
B4-
B2(2x)
HD100
HFB
+3V3_INTOTC
VSYNC
CVBS-TXT
F053
3095
47K
3042
4K7
3094
47K
3005
10K
3041
4K7
2014
150p
9002
3096
9001
3040
47K
8204 000 8259.5
1234567891011121314
SAM
9005
RES
6005
PLVA2650A
2V9
3099-D
470R
NC.
3099-B
3099-A
470R
470R
3073-D
3073-C
470R
3073-B
470R
470R
3090-D
470R
3090-B
470R
470R
3078-B
470R
470R
0V2
4K7
3026
3064-D
5
4
100R
6
3064-B
27
100R
F088
3074-B
27
0V
470R
4K7
4K7
3002
3001
6M
1001
CX-5F
3V4
B57
B58
F065
2008
100n
24K
3003
100n
2004
F042
2060
3073-A
470R
3076-D
470R
3V4
3076-A
470R
0V
B55
B60
220n
2003
100p
3081
3099-C
0V
0V
3V4
3V2
0V3
2V9
3V4
220n
F047
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
90
89
88
87
86
85
93
94
74
83
84
82
91
16
17
18
5
4
7
6
1
2
3
8
2023
100n
9
VDDA
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
IREF
REF+
STN|BLACK
VSSA
10
2024
100n
20
19
VDD1
VDDN1
OTC
AND
DISPLAY TIMING
CLOCK GENERATOR
TXT
CAPTION
EPG
USA
CLOSE
TXT
VSSD176VSSD2
VSSP150VSSP2
21
39
2025
2026
100n
100n
38
VDDP149VDDP2
EXTERNAL CODE AND DATA INTERFACE
VSSD3
VSSP3
TEST012TEST113TEST214TEST315TEST4
102
112
11
3006
470R
470R3007-A
2027
2028
100n
100n
75
101
VDDD2
VDDD3
A10
A11
A12
A13
A14
A15
A16
A17
A18
A19
A20
A21
A22
A23
D10
D11
D12
D13
D14
D15
ROM_OEn
RAM_OEn
ROM_CSn
RAM_CSn
RASn
CASLn
CASHn
WEn
EAn
FADING
DISPLAY
INTERFACE
DATA
VIDEOn
3007-B470R
3007-D470R
27
18
36
470R3007-C
2029
100n
111
VDDP3
A1
A2
A3
A4
A5
A6
A7
A8
A9
D0
D1
D2
D3
D4
D5
D6
D7
D8
D9
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
4
41
43
1
42
69
4
72
71
2
70
73
77
78
79
80
81
F052
+3V3_INTOTC
7001
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
3V5
8
3008-A
1
C
5
8
5
7
3010
150R
A
F070
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)
3008-C
150R
3
2
1
3
6
3
F014
F016
F018
F004
F057
3034-C
100R
3034-B
100R
3035-A
100R
3035-C
100R
3011
470R
150R
EN 54EM5.3A P/M AA 7.
8 9 10 11 12
+3V3_INTOTC
2
2
2
2
3
3
3
3
4
4
4
4
1
1
1
1
5
3008-D
4
3009
3048-C
3
3048-A
1
3049-C
3
3049-A
1
3050-C
3
3050-A
1
3051-C
3
3051-A
1
3052-D
4
3051-B
2
3051-D
4
3050-B
2
3050-D
4
3049-B
2
3049-D
4
3048-B
2
3048-D
4
3052-C
3
3052-A
1
3052-B
2
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
6
7
8
6
+3V3_INTOTC
150R
68R
6
8
6
8
6
8
6
8
5
7
5
7
5
7
5
7
5
6
8
7
7
7
7
7
6
6
6
6
5
5
5
5
8
8
8
8
ROM_OE
RAM_OE
ROM_CS
RAM_CS
CASH
3012-A
8
100R
3012-C
6
100R
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)
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)
RAS
CASL
WE
1
3
B
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
+3V3_INTOTC
100R
E
100R
+3V3_INTOTC
D
+3V3_INTOTC
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
E
82p
2034
2033
3012-B
27
100R
F048
3012-D
54
100R
2009
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
F069
82p
RES
F071
2035
E
F056
2010
F072
82p
3031
10K
3029
10K
3061
10K
CASL
CASH
RAM_OE
82p
2036
F055
47p
2011
RAS
WE
2037
A
F073
82p
F054
47p
2031
100n
F021
F010
F012
F020
F022
F005
F003
F024
F023
F001
F025
F060
MSM51V18165F
AA(0)
F017
AA(2)
F013
AA(4)
F009
AA(6)
F006
AA(7)
F007
AA(8)
F008
AA(9)
F011
AA(5)
F015
AA(3)
F019
AA(1)
RAS
CASL
CASH
WE
RAM_OE
F074
47p
2012
B2-
B2-
R-SC3-IN
25
A0
24
A1
23
A2
22
A3
21
A4
20
A5
19
A6
18
A7
8
A8
7
A9
6
A10
5
A11
4
A12
3
A13
2
A14
1
A15
48
A16
17
A17
16
A18
9
A19
10
A20
47
BYTE_
26
CE_
11
WE_
28
OE_
12
RP_
14
WP_
100n
2038
+3V3_INTOTC
17
A0
18
A1
19
A2
20
A3
23
A4
24
A5
25
A6
26
A7
27
A8
28
A9
14
RAS_
31
LCAS_
30
UCAS_
13
WE_
29
OE_
11
12
NC
15
B2-
G-SC3-IN
B-SC3-IN
F066
37
VCC
VCCW
7006
LH28F320BJE
PROGRAM
FLASH-RAM
(Set SW)
DQ10
DQ11
DQ12
DQ13
DQ14
DQ15|A_1
RY|BY_
GND
27 46
+3V3_INTOTC
+3V3_INTOTC
VCC11VCC26VCC3
7007
DRAM
(TXT)
DQ10
DQ11
DQ12
DQ13
DQ14
DQ15
DQ16
VSS122VSS237VSS3
F058
F059
F062
F063
B2-
FBL-SC3-IN
DQ0
DQ1
DQ2
DQ3
DQ4
DQ5
DQ6
DQ7
DQ8
DQ9
21
DQ1
DQ2
DQ3
DQ4
DQ5
DQ6
DQ7
DQ8
DQ9
42
1
2
3
4
5
13
100n
2019
NC
1402
3062
10K
29
31
33
35
38
40
42
44
30
F033
32
34
36
39
41
43
F026
45
F061
15
2
3
4
5
7
8
9
10
33
34
35
36
38
39
40
41
16
32
PH
TO 1402 OF
B5a
RxD
F036
F035
F039
F040
F032
F031
F028
F027
F041
F038
F037
F029
F030
F034
B61
3th SCASRT
3098
100R
9008
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
F079
D
E
RAM_CS
C
B5a
BC857BW
TxD
B
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
2013
7002
9009
+3V3_INTOTC
M29W400BT
10K
3093
100u
MCL4148
6002
3015
470K
F089
3067
470K
B62
9010
9011
9012
9013
3045
100R
13 14
2040
100n
7012
A0
A1
A2
EPG-
A3
FLASH-RAM
A4
A5
A6
A7
A8
A9
A10
A11
A12
A13
A14
A15
A16
A17
RB_
E_
G_
W_
RP_
BYTE_
15K
RES
3004
RES
4V0
1V5
100n
3016
0V7
100n
100R
3046-D
100R
3046-C
100R
3046-A
2052
10p
37
VCC
DQ15|A-1
VSS146VSS2
27
3013
10K
7003 BC847BW
+3V3_INTOTC
1K5
3065
7013 BC847BW
B63
100R
10p
2054
F078
25
24
23
22
21
20
19
18
48
17
15
26
28
11
12
47
F049
F076
8
7
6
5
4
3
2
1
3014
6K8
2017
2039
9007
3046-B
4K7
F085
DQ10
DQ11
DQ12
DQ13
DQ14
0V8
3066
F087
F086
4
5 8
47K
DQ0
DQ1
DQ2
DQ3
DQ4
DQ5
DQ6
DQ7
DQ8
DQ9
NC
7005
LD1117
IN
GND
8
7
6
5
4
3
2
1
2V9
1401
10
9
29
31
33
35
38
40
42
44
30
32
34
36
39
41
43
45
16
13
14
9
10
O1 O2 O3 O4
1
0V
2 3 6 7
3017
F050
7004 BC847BW
+3V3_INTOTC
F077
B4-
B4-
B4-
B4(2x)
RES
10p
2057
10p
2056
F084
10p
2055
N.C.
F080
F082
D(7)
D(6)
D(5)
D(4)
D(3)
D(2)
D(1)
D(0)
D
A(0)
B
+3V3_INTOTC
F051
2016
100u
4K7
B5a
RESET
7014 BC857BW
R-TXT
G-TXT
B-TXT
FBL-TXT
IRQ-FTV B5a
0015 G2 1001 G4 1401 I14
1402 I11 2001 G4 2002 G4
A
2003 J4 2004 J4
2005 J4 2006 J4 2007 J3 2008 H4 2009 I9
2010 I9 2011 I9
B
2012 I10 2013 F12
2014 I2 2016 F14 2017 G13 2019 F11 2020 D2
2022 E3 2023 A5 2024 A5
C
2025 A6
2026 A6
2027 A6 2028 A6 2029 A7 2031 A10
2033 H8 2034 H9 2035 H9
D
2036 H9 2037 H9
2038 E10 2039 H13 2040 A13 2052 J13 2053 J12
2054 J13 2055 J14
E
2056 I14 2057 I14
2058 C2 2059 C3 2060 A4 2061 A3 3001 F4
3002 F4 3003 J4 3004 F13
F
3005 H2 3006 J6
3007-A J6 3007-B J6 3007-C J6 3007-D J6 3008-A I7
3008-B I7 3008-C I7
G
3008-D I8 3009 J8
3010 I7 3011 I8 3012-A I8 3012-B I8 3012-C I8
3012-D I8 3013 F13
H
3014 F13 3015 G13 3016 G13
3017 F14 3018 A3 3019 A3 3020 A3
3021 B3 3024 D3 3025 E1
I
3026 E4 3027 E2
3029 D9 3031 D9 3033 C4 3034-A H7 3034-B H8
3034-C G8 3034-D G7
J
3035-A H8 3035-B H7
3035-C H8 3035-D H7 3039 B3
E_14600_009.eps
171204
3040 I2 3041 I2 3042 J2
3044 E3 3045 J13 3046-A J13 3046-B J13 3046-C I13
3046-D I13 3047 C3 3048-A B8 3048-B D8 3048-C A8
3048-D D8 3049-A B8 3049-B C8 3049-C B8
3049-D C8 3050-A B8 3050-B C8 3050-C B8 3050-D C8
3051-A B8 3051-B C8 3051-C B8 3051-D C8 3052-A D8
3052-B D8 3052-C D8 3052-D C8 3053 D8
3054-A G8 3054-B E8 3054-C F8 3054-D F8 3055-A G8
3055-B E8 3055-C F8 3055-D F8 3056-A G8 3056-B E8
3056-C F8 3056-D F8 3057-A G8 3057-B E8
3057-C E8 3057-D F8 3058 C2 3059 C2 3061 E9
3062 A11 3064-A F4 3064-B E4 3064-C E4 3064-D E4
3065 G13 3066 G13 3067 H13 3068 A2 3069 E3
3073-A C4 3073-B C4 3073-C B4 3073-D B4
3074-A F3 3074-B F4 3074-C F4 3074-D A4 3075 C2
3076-A D4 3076-B D3 3076-C D4 3076-D D4 3077 D3
3078-B C4 3078-C A3 3078-D B3 3079 E3
3080 A2 3081 A5 3088 E4 3090-A C4 3090-B C4
3090-C C4 3090-D C4 3091 C3 3093 E12 3094 H2
3095 I2 3096 J2 3097 A4 3098 J11
3099-A B4 3099-B B4 3099-C A5
3099-D B4 6001 E3 6002 F12
6003 E3 6004 D3 6005 A4 7001 A7 7002 F12
7003 G13 7004 G14 7005 E14 7006 A10 7007 F10
7008 E2 7009 D4 7010 C4 7011 G3
7012 A13 7013 H13 7014 G14 7015 I3 7016 J2
9001 H2 9002 I2 9003 F2 9004 G2 9005 A4
9006 A3 9007 F13 9008 J11 9009 J12
9010 I13 9011 I13 9012 I12 9013 J12 9014 C2
9015 D2 9016 C3 F001 D10 F002 H3 F003 D10
F004 D8 F005 C10 F006 F10 F007 G10
F008 G10 F009 F10 F010 B10 F011 G10 F012 C10
F013 F10 F014 C8 F015 G10 F016 C8 F017 F10
F018 C8 F019 G10 F020 C10 F021 A10 F022 C10
F023 D10 F024 D10 F025 D10 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 A4 F044 F2 F045 F4
F046 G3 F047 H5 F048 I9 F049 G13 F050 G14
F051 F14 F052 J7 F053 J2 F054 I10
F055 I9 F056 I9 F057 D8
F058 I10 F059 J10 F060 E10 F061 D11
F062 J10 F063 J10 F064 H3 F065 H4 F066 A11
F067 B3 F068 E2 F069 G9 F070 H7 F071 H9
F072 H9 F073 H9 F074 H10 F075 D12
F076 H13 F077 H14 F078 J13 F079 J12 F080 J14
F081 D2 F082 J14 F083 I3 F084 I14 F085 J13
F086 I13 F087 I13 F088 F4 F089 G12
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料

Small Signal Board: Anti Moiré

2062 B3
2063 C4
2064 C2 3028 B3
2065 D2
2066 A3
2067 E2
3022 A2 3060 D1
3023 A3
3030 B4
3032 B3
3036 B4
1
3037 C2 3071 D2
3038 C2
3043 D2
3063 D2
3070 E1
2
3072 C4
6006 C2
ANTI-MOIRE
+5V_CON
6007 C2
7017 A2
7018 C3
7019 D2
7020 E1
F090 A3
34
F091 A2
F092 B3
F093 B2
F094 C2
F095 C2
F096 D1
F097 D2
EN 55EM5.3A P/M AA 7.
Notes:
A A
B
B
C
+5V_CON
D
2K7
3060
F096
E E
B4,B5a
VSYNC
3070
10K
7020 BC847BW
2065
100n
2067
100n
3038
10K
RES
3071
3063
10K
150K
F097
F095
1K5
3043
7017
F093
6006
BAS316
F094
22n
2064
7019 BC847BW
39K
3022
2066
F091
3023
BC847BW
3028
4K7
2062
22n
6007
3037
47n
10K
BAS316
2K2
F090
F090
BC847BW
F092
7018
3032
470R
2063
3036
2K7
47n
+5V_CON
3030
PWM_ANTIMOIRE
3072
1K2
3K3
B4-
ANTI-MOIRE
B5a-
B
C
D
8204 000 8259.5
1
E_14600_010.eps
260304
234
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
家电维修资料网
免费下载各种维修资料

Small Signal Board: Audio Demodulator

AUDIO DEMODULATOR
A
B
B
C
+8VC
B5­RESET-AUDIO
B1-
B1-
AUDIO-SW
SCL-F
B1­SDA-F
B6­SNDR-SC3-IN
B6­SNDL-SC3-IN
B2­CVBS-AV3-IN
STATUS_SC3
B5a
5656
6u8 9606
RES
B1-
B2,B3a
D
E
F
5667
HA50
5668
VA50 B2,B3a
B2­QSS_AM
PIP_AUDIO NC
PIP_AUD_IN
B6
SNDR-SC3-IN B6-
SNDL-SC3-IN
B6-
B1­R-FRONT-IN
* *
F623
*
B1-
L-FRONT-IN
G
B1­R-SC2_AV2-IN
B1-
L-SC2_AV2-IN
H
B1-
R-SC1_AV1-IN
B1-
L-SC1_AV1-IN
I
0016
1
F671
2695
A
2592
5663
*
3531
8K2
2K7
*
3576
*
100p
2588
2589
RES
RES
*
9652
3692
3560
6K8
100R
1n
2562
3693
3562
6K8
100R
*
1n
2563
3564
3654
100R
1n
2564
3567
3653
100R
1n
2565
3688
3570
100R
1n
2566
3571
3689
100R
6K8
1n
2567
3572
3684
100R
1n
2568
3685
3574
100R
1n
2569
0017
1
100u
2570
100p
*
6K8
6K8
6K8
*
*
6K8
*
6K8
+5V_AUD
F669
F680
F645
F624
100p
RES
1
2
3
1680
1
2
3
4
5
6
1681
9604
3650
2R2
*
TO 1680
I/O 3d SCART
TO 1948
+8VA
2670
100n
A
3577
100R
1n
F620
F622
9694
F652
1n
*
2571
F646
TUNER SIM/CONNECTOR
F666
1K
22K
22K
22K
22K
22K
22K
22K
22K
2506
330n
2507
330n
2661
330n
2662
330n
2504
330n
2502
330n
2503
330n
2653
330n
3n3
2551
*
F647
470p
2659
F630
2660
470p
F628
470p
2663
F627
470p
2664
F626
2552
470p
F625
470p
2553
2554
470p
470p
2555
3551
*
*
*
RES
3694
3695
RES
*
RES
3651
*
RES
3652
*
3690
2505
330n
RES RES
3691
RES
3686
RES
3687
J
COMPONENTS WITH DIVERSITY
*
F674
F629
6650
BAT54WS
3656
100R
3655
100R
F610
2654
F660
2593
1n
2594
1n
2595
1n
C100
9603
RES
PIP Only
470p
F673
5651
5652
6651
2682
RES
2550
330p
F661
100n
2697
*
*
A
A
8204 000 8258.4
2698
2665
RES
F681
F611
F644
3550
A
F602
100u
2666
*
7666-B
BC847BPN
10u
2681
1K
5655
3626
150K
2u2
+8VA
MUTE_SW
B6-
F601
2610
100u
+8VA
4
3
BC847BPN
100n
2651
100n
22u
*
2n2
2611
7666-A
*
3639
1K
2V8
2652
47p
2501
47p
B65
BC847BS
3552
10K
*
*
+8VA
*
5
*
*
7654-A
F682
+5DA
+5DB
1n
1K2
3624
6
1
3634
120R
A
7651
*
MSP3452G
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
SC4-IN-L
35
SCART 3
SC3-IN-R
39
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
SELECT_AUDIO_LR
B6-
1
MUTE_SW
*
3699
2
*
3630
A
+8VA
3627
7667
B6
+5V
180K
2632
*
330n
56K
A
DEMODULATOR
VREF119VREF2
AHVSS
27
33
A
10K
*
3554
2693
F607
F643
1n
2634
F639
A
7
8
ADR-DA
ADR-WS
NICAM
DECODER
ASG2
ASG1
37
40
F684
*
3628
22K
22K
3553
*
22K
22K
3555
*
5654
220p
0V
3533
2584
RES
ASG0
43
F685
F649
ADR-CL
IDENT
A/D
A/D
10K
100p
9
AVSS
48
2585
RES
B2
B2
B2
B3a
B3a
B3a
B6
2690
100n
2691
2516
+5VF
3540
10K
2u2
1u
F650
100p
2586
RES
62
ADR_SEL
TP1
56
Y50
U50
V50
Y-PIP+MAIN-IN
U-PIP+MAIN-IN
V-PIP+MAIN-IN
PIP_AUD_IN
B6(5x)
F687
7674
BC847BW
FMN
2590
100p
RES
FM1
FM2 NICAM A NICAM B
IDENT
SCART-L
SCART-R
for MSP3410D only
for MSP3415D only
SCART
DVSS
11
7668
BC857BW
MUTE_SSB
9689
RES
6654
2591
RES
RES
5
100p
5664
100MHZ
RES
I2S-WS
DSP
TESTEN
53
F675
9608
9607
*
*
+5V2
5V1
+5DB
1K
3532
MCL4148
F606
10u
2640
220n
1683
2
4
3
F651
5669
5665
5670
100MHZ
100MHZ
RES
RES
3
54
I2S-CL
I2S-DA-OUT1
I2S INTERFACE
I2SL/R I2SL/R
LOUDSPEAKER R
LOUDSPEAKER L
HEADPHONE R
Switching Facilities
NC159NC2
AUD-CL-OUT
58
57
9682
*
9683
*
9684
*
9609
*
9685
*
9686
*
9687
*
F695
3519
10K
RES
9523
RES
6656
MCL4148
N.C.
1
100MHZ
RES
6
I2S-DA-IN112I2S-DA-IN2
HEADPHONE L
SCART-R
SCART-L
D-CTR-IO0
D-CTR-IO1
61
60
4V9
0V
5657
*
5658
*
5659
*
RES
*
5660
*
5661
*
5662
*
5666
*
NC3
64
2556
2559
RES
+5DA
7675-A
BC847BS
AVSUP
49
100p
100p
EN 56EM5.3A P/M AA 7.
+5V2
ANTI-PLOP
100K
3523
F691
2508
100u
2609
F605
*
2678
F637
8V6
7V6
31
AHVSUP
D/A
D/A
D/A
HEADPHONE
D/A
D/A
D/A
AUDIO PLL
XTAL_IN55XTAL_OUT
54
1651
CX-5F
18M432
3p3
2667
RES
RES
2558
2557
100p
*
*
2561
2560
100p
RES
RES
CIRCUIT
F696
9520
9521
0V
15n
RES
2514
1n
6652
5653 BZX384-C10
10u
10u
2677
F638
+8VC
7V6
30
32
CAPL-A
STANDBYQ
CAPL-M
RESETQ
DACM-C
DACM-SUB
DACM_R
LOUDSPEAKER
DACM_L
SC2-OUT-R
SC2-OUT-L
SC1_OUT_R
SC1_OUT_L
NC515NC6
NC4
14
13
B76
3p3
2668
F631
F632
F633
F634
100p
F617
F618
F619
F686
2587
100p
100p
RES
F697
RES
+8V_AUD
3644
RES
6653
*
DVSUP
DACM-S
AGNDC
DACA-R
DACA-L
*
1
2
3
4
5
6
7
8
9
10
N.C.
9522
*
63
10
16
22
24
23
34
20
21
17
18
25
26
28
29
1682
+5V2
3524
100K
7675-B BC847BS
4R7
BAT54 COL
9691
9688
*
+5DB
4V9
F656
3642
100R 3643
100R
F658
2686
2680
*
*
*
+3V3_SIM
+5V_AUD
+8V_AUD
0V5
F688
F698
3V9
1n
A
10u
A
+8V_AUD
1u
2612
1K
3619
10K
3617
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
*
8
6657
PDZ-2.7B
6658
MCL4148
3526
1M5
10u
2513
RES
2646
2u2
1V7
3666
F665
3667
F657
1V7
3668
7669 LE80AB
IN
INH5NC
GND
23 67
5671
30R
10987 65432 11 12 13 141
*
*
*
*
*
7680
100R
100R
3659
3677
3547
9642
2510
3521
1u
9645
3563
3573
3575
2511
100R
150K
F604
100K
47K
*
9610
B71
1u
100K
3522
3612
47K
3613
47K
2583
2
*
3559
100R
2573
3561
100R
100K
2582
+8VA
*
3680
*
3663
*
1n
100R
2575
2576
2577
*
100R
*
*
100R
*
0V
3683
*
1n
1n
3615
2637
F667
3640
100R
F690
3527
100R
3641
100R
+8VA
3658
3637
F655
3657
150K
82K 2
56K
F663
2687
OUT
+3V3_FBX
1K2
3698
150K
F659
8V
5
6
82K
2
7664-A BC847BPN
1
3546
1K
F608
56K
3636
B68
270R
+8VA
A
1K2
3671
BC847BPN
4
8V
7665-B
5
6
3
7665-A BC847BPN
1
3670
F609
1K
B69
3669
270R
A
1n
A
+8VC
1
4
B6-
R-HEADPHONE
L-HEADPHONE
10987 65432 11 12 13 14
2674
4
3
8V6
B6-
330n
1n
A
2699
*
A
2629
F670
*
330n
1n
2673
A
8V6 BC847BPN 7664-B
*
+8VA
*
*
3681
F603
2u2
3676
*
F654
*
3544
150K
100K
2
47K
3545
6 7656-A BC847BPN 1
*
3675
A
1K2
5
3682
180R
4
*
BC847BPN 7656-B 3
*
B72
*
1K
F648
10u
2509
*
47K
3520
A
*
*
3557
100R
2630
2u2
F653
*
+8VA
6
4
*
120K
*
11
10
9
3673
10K
A
9676
9677
B70
+8VA
*
7653
16
74HC4053
*
6
VCC
G3
A
14
MUXDX
12
1y0
11
13
1y1
15
2
2y0
10
1
2y1
4
5
3
9
3y0
3y1
VEE
GND
7
8
A
A
2546
10u
2547
*
10u
*
BC847BW
9632
*
B77
2548
F641
10u
B78
2549
10u
F642
*
*
A
*
*
*
*
*
*
2600
1u
2601
1u
2602
1u
2603
1u
2604
1u
9611
B1-B6(2x)
3601
*
3602
*
3603
*
3605
*
3607
3609
*
AUDIO-C
22K
120K
220K
3604
120K
A
*
220K
3606
120K
A
*
220K
3608
A
*
220K
A
+8VA
7652
16
74HC4053
VCC
G3
14
MUXDX
12
1y0
13
1y1
15
2
2y0
1
2y1
5
3y0
3
3y1
GND
VEE
8
7
AA
1K2
5
6 7663-A
*
BC847BPN 1
3664
*
1K
180R
A
*
7677
F692
BC847BW
3558
2574
7678-A
1n
BC847BS
SELECT_AUDIO_LR
7678-B
1n
BC847BS
1n
3568
2580
*
3569
10n
*
3616
*
2K7
22K
7679-A
47K
3614
BC847BS
7679-B
47K
BC847BS
E_14600_011.eps
4 BC847BPN
*
7663-B 3
B73
3556
100R
B1-B6(2x)
*
AUDIO-C
1n
2572
AUDIO-SL
3528
*
1K MUTE_SSB
AUDIO-C
AUDIO-L
1n
R-CL_VL-OUT
F693
3529
0V
MUTE_SSB
L-CL_VL-OUT
F694
0V
MUTE_SSB
AUDIO-R
R-SC1_AV-OUT
L-SC1_AV-OUT
2581
1n
SEL_IN_2
R-SC2-OUT
F699
0V
3578
MUTE_SSB
L-SC2-OUT
F662
3579
0V
MUTE_SSB
220304
3528 C14
6650 A3
0017 I1
3529 E14
1651 H8
3530 E14
1680 B2
3531 C1
1681 C2
1682 H8
3532 B6
1683 C7
3533 B5
2501 E4
3540 A6
3544 B11
2502 H2
A
B
B1-
C
B6
B1-B6
D
B1-
B1-
B6(5x)
1K
B6
B6(5x)
B1-
B1-
B5a
B1-
B6(5x)
B1-
B6(5x)
E
F
G
H
I
J
B1-
1K3530
B1-
1K
1K
2503 I2
2504 G2 2505 H2
2506 E2
2507 E2
2508 C7
2509 B12
2510 D13
2511 E13
2512 B9
2513 B10
2514 B8
2515 J9
2516 C5 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 F13
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 C9
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 B5
2691 B5
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
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 A10
3641 B11
3642 E9 3643 E9
3644 B8
3650 A2
3651 F2
3652 G2
3653 G1
3654 F1
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 H1
3685 I1
3686 H2
3687 I2
3688 G1
3689 H1
3690 G2 3691 H2 3692 E1
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
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 H9
7670 I9
7674 B6
7675-A A7
7675-B A9
7677 C14
7678-A E14
7678-B E14
7679-A H14 7679-B I14
7680 G13
9520 A8
9521 A8
9522 B8
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 C7
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 E2
F630 E2 F631 H8
F632 H8
F633 I8
F634 I8
F637 C8
F638 C8
F639 C5
F641 H12
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 A1
F673 A3
F674 A2
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
Circuit Diagrams and PWB Layouts
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Small Signal Board: Headphone Amplifier

12345
HEADPHONE-AMPLIFIER
A
B6-
L-HEADPHONE
B
C
B6-
R-HEADPHONE
D
E
8204 000 8258.4
12 56789
EN 57EM5.3A P/M AA 7.
3510
3514
F500
47K
47K
F503
2523
2526
1n
2531
A
A
1n
2532
A
A
2521
150K
3513
100n
100n
270K
2524
100n
7682
BC847B
3516
F506
3K9
+8V_AUD +8V_AUD
3512
F507
2528
34
F502
2529
3504
100p
F505
2530
3509
100p
6
+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
5
6
1u
12K
A
3
2
1u
12K
A
3535
A
7685-A
BC847BPN
47K
3543
A
7
47K
3537
100K
2596
6660
3538
470K
10u
3539
8
PDZ-2.4BBAS316
220R
6661
+5V_AUD
9
HEADPHONE-L
1n
2579
A
HEADPHONE-R
1n
2578
A
B
B1-
B1-
E_14600_012.eps
220304
A
B
C
D
E
2520 A6 2521 A4 2522 C5 2523 C5 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
Circuit Diagrams and PWB Layouts
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Layout Small Signal Board (Overview Top Side)

3104 313 6005.4
PART 1
E_14600_013a.eps
PART 2
E_14600_013b.eps
EN 58EM5.3A P/M AA 7.
E_14600_013.eps
011204
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 1702 C3 1703 C4 1710 B4 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 2335 E2 2336 D3 2337 E2 2338 E2 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 2430 E2 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 C4 2710 B4 2711 B4 2712 B4 2715 B3 2716 B4 2717 B4 2718 C3 2719 C3 2720 D3 2721 C4 2722 D4 2725 B4 2726 B4 2728 B4 2729 B4 2730 A4 2732 C4 2733 B4 2735 C4 2736 C4 2737 C4 2738 B4 2739 B4 2740 C4 2741 C4 2742 C4 2743 C4 2744 C4 2745 C4 2747 C4 2749 C4 2750 A1 2751 A1 2752 A1 2753 A1 2755 A1 2756 A1 2758 B1 2759 B2 2760 A2 2761 A2 2762 A2 2763 A2 2764 B2 2768 A1 2770 B1 2771 A2 2772 A2 2773 B2 2777 A2 2778 A1 2780 A1 2781 B1 2782 A2 2783 B1 2784 B1 2785 B2 2787 B2 2788 B1 2790 B1 2792 C3 2794 A2 2795 A2 2796 B2 2797 B2 2798 B1 2799 B1 2800 C4 2802 B1 2805 B2 2809 A1 2810 A3 2811 A3 2814 B1 2819 C3 2820 B2 2821 A2 2822 B2 2824 B1 2826 A2 2828 B2 2829 B2 2830 B2
2831 A2 2832 A3 2833 A2 2834 A2 2835 A3 2836 C3 2837 A3 2839 A2 2841 A3 2843 C4 2844 A2 2845 C4 2846 C4 2847 C4 2848 C4 2849 A1 2850 B3 2851 B3 2852 B3 2853 B3 2854 B3 2855 B3 2856 C3 2857 C3 2858 C3 2859 C3 2860 C3 2861 C3 2862 C3 2863 C3 2864 C3 2865 C3 2866 C3 2867 C3 2868 C3 2869 C3 2870 C3 2871 A1 2872 B2 2873 B2 2874 C4 2875 A3 2876 A3 2877 A3 2878 B3 2879 B4 2880 B4 2881 A4 2886 A3 2887 A3 2888 A3 2889 B1 2890 C4 2891 C4 2895 B1 2896 B3 2897 B3 2898 A1 2899 A1 2912 E3 2915 C3 2916 C3 2917 C4 2918 C4 2919 B4 2921 A1 2922 C3 2923 C4 2924 B1 2925 A2 2926 C3 2928 A2 2929 C3 2930 C4 2931 C4 2932 C3 2933 C3 2935 C3 2936 A3 2937 A2 2938 A2 2939 A2 2940 A2 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 3302 D3 3304 E3 3306 E2 3317 E2 3318 D2 3320 D2 3321 D2 3322 E3 3329 E3 3330 D2 3332 D2 3335 D2 3336 E3 3337 D2 3338 E2 3340 D3 3341 D3 3342 E2 3343 E3 3344 D3 3345 E3 3346 E3 3347 E3 3348 E3 3349 D2 3353 E3 3356 D2 3357 E2 3361 D3 3363 D2 3370 E2 3371 E2 3372 E2 3373 D1 3374 D1 3375 D1 3376 D2 3377 D2 3379 D1 3381 D1 3383 E2 3384 E2 3387 D2 3388 E3 3389 D1 3390 E3 3393 D2 3394 D2 3395 D3
3396 D2 3397 D2 3398 D2 3399 E3 3400 D2 3402 D2 3404 E1 3406 D1 3409 D1 3411 D1 3412 D2 3413 E2 3416 E1 3418 D1 3422 E2 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 3701 C4 3712 C4 3713 C3 3714 D3 3715 D3 3716 C3 3717 C3 3718 C3 3719 C4
3720 C4 3721 C4 3723 C4 3724 B4 3725 C4 3726 D4 3727 C4 3728 D4 3730 D4 3732 C4 3736 C4 3737 C4 3738 C4 3739 C4 3740 C4 3741 B4 3742 B4 3743 B4 3744 C4 3745 B2 3746 B4 3747 C4 3748 C4 3749 B4 3750 B4 3751 C4 3752 C4 3753 C4 3754 C4 3755 B4 3756 C4 3760 B4 3765 B2 3766 B2 3778 A3 3782 B2 3783 B2 3796 A2 3798 B2 3819 A2 3820 A2 3821 C4 3823 A2 3824 B2 3827 C3 3828 D3 3830 C3 3831 C3 3832 C3 3833 C3 3834 C3 3835 B3 3836 C3 3837 C3 3838 B3 3839 B3 3840 B3 3841 B3 3842 B3 3843 B3 3844 B3 3845 B3 3846 B3 3847 C3 3848 C3 3849 C4 3850 A2 3851 C4 3852 C4 3853 C3 3854 C3 3855 C3 3856 A2 3858 A2 3859 A2 3860 A2 3876 B3 3877 C3 3878 C3 3879 C3 3885 A3 3886 A4 3887 A4 3888 A4 3889 A4 3890 A4 3891 A4 3892 D3 3893 C3 3903 C4
3904 C4 3905 B4 3906 A3 3913 C3 3914 C3 3915 C3 3916 C3 3917 C3 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 5703 C4 5705 C4 5706 C4 5707 C3 5708 C3 5709 B3 5710 C4 5713 B2 5714 C4 5718 B1 5721 C4 5722 C4 5724 A2 5750 A3 5751 A3 5752 A1 5753 C4 5754 B2 5755 C4 5756 C4 5757 A2 5758 A2 5759 B3 5760 A1 5761 B3 5762 B2 5764 A1 5765 A3 5767 C4 5768 C4 5772 B4 5773 C4 5775 B1 5777 B2 5784 A1 5800 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 6719 A2 6730 A2 6731 A2 7001 B2 7005 B1 7008 B3 7009 B3 7010 B3 7012 C1 7013 C1 7014 D1 7304 D2 7308 D3 7309 D2 7319 E2 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 7701 A3 7702 A2 7705 C4 7706 C4 7707 C4 7708 C4 7709 C4 7710 B4 7711 C4 7715 C4 7717 B2 7718 B1 7725 B2 7734 C3 7736 C4 7770 B2 7772 A1 7773 B4 7774 B2 9014 C3 9016 C3 9302 D3 9303 D3 9304 D3 9305 D3 9314 D3 9315 D2 9316 E2 9322 E2 9408 E1 9412 E1 9414 E1 9416 D1 9417 E1 9419 E1 9520 E4 9521 E4 9522 E4 9523 E4 9603 D4 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 9704 A2 9705 A2 9713 C4 9715 C3 9716 A2 9717 A2 9718 A2 9721 A2 9722 C4 9727 B4 9728 B4 9729 C4 9730 D4 9731 D4 9750 B2 9751 B2 9752 A2 9761 A2 9762 A2 9800 C3 9801 B3 9802 C3 9803 B3 9804 C3 9805 C3 9806 C3 9807 C3 9808 B3 9809 C4 9810 A4 9812 C3 9815 B4 9816 B4 9817 C4 9818 C4 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
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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免费下载各种维修资料

Layout Small Signal Board (Part 1 Top Side)

EN 59EM5.3A P/M AA 7.
PART 1
E_14600_013b.eps
240304
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Layout Small Signal Board (Part 2 Top Side)

EN 60EM5.3A P/M AA 7.
PART 2
E_14600_013b.eps
240304
Circuit Diagrams and PWB Layouts
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Layout Small Signal Board (Overview Bottom Side)

3104 313 6005.4
PART 1
E_14600_014a.eps
PART 2
E_14600_014b.eps
EN 61EM5.3A P/M AA 7.
E_14600_014.eps
011204
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 D1 2707 C2 2708 D1 2713 C1 2714 C1 2723 C1 2724 D1 2727 C1 2731 C1 2734 B1 2746 C1 2748 D1 2754 C1 2757 C1 2765 B4 2766 B4 2767 B4 2769 A3 2774 A4 2775 A4 2776 A4 2779 B4 2786 B3 2789 B4 2791 B4 2793 A4 2801 B4 2803 A4 2804 C1 2806 C1 2807 C1 2808 B3 2812 A4 2813 B4 2815 B4 2816 B4 2817 A1 2818 A4 2823 A4 2825 B4 2827 A4 2838 B4 2840 A3 2842 A4 2882 A1 2883 A1 2884 A1 2885 A1 2892 A1 2893 A1 2894 A1 2900 E2 2901 E2 2902 E2 2903 E2 2904 E2 2905 E2 2906 E2 2907 E2 2908 E3 2909 E2 2910 E2 2911 E2 2920 C1 2927 C2 2934 C2 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 3301 E3 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 E2 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 3700 B1 3702 C1 3703 C2 3704 C2 3705 D1 3706 C2 3707 C2 3708 D1 3709 C1 3710 C1 3711 C1 3722 D1 3729 C1 3731 C1 3733 C1 3734 C1 3735 C1 3757 A4 3758 C1 3759 C1 3761 B1 3762 A3 3763 A3 3764 A3 3767 A3 3768 A3 3769 A3 3770 A3 3771 B4 3772 B4 3773 A4 3774 A3 3775 B2 3776 B4 3777 B2 3779 B2 3780 B2 3781 B2 3784 B2 3785 B4 3786 A4 3787 A4 3788 B4 3789 A4 3790 A4 3791 B4 3792 A4 3793 B3 3794 B4 3795 A4 3797 B3 3799 B4 3800 A4 3801 B4 3802 B4 3803 B2 3804 B2 3805 B4 3806 A4 3807 B4 3808 A4 3809 A4 3810 B4 3811 B4 3812 B4 3813 A4 3814 B4 3815 B4 3816 A4 3817 A4 3818 A4 3822 B1
3825 B3 3826 C2 3829 C2 3857 A3 3880 A1 3881 A1 3882 A1 3883 A1 3884 A1 3894 A4 3900 A3 3901 A3 3902 A3 3911 A3 3912 A3 3918 A3 3919 A3 3920 A3 3921 A3 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 5715 B4 5716 B4 5717 A4 5719 C1 5720 C1 5723 C2 5763 A1 5769 A1 5770 A1 5771 A1 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 7719 A2 7720 A3 7728 B4 7729 A4 7730 A4 7731 B4 7732 A4 7733 A4 7735 C2 7752 C2 7753 B2 7760 B1 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 9706 C1 9707 B1 9708 B1 9709 B1 9710 B1 9711 B1 9712 B3 9714 D2 9723 A3 9725 C1 9726 C1 9732 C1 9733 C1 9734 C1 9735 C1 9736 C2 9737 C2 9738 D2 9739 D1 9740 B4 9753 B3 9754 B3 9755 B3 9756 B3 9757 B3 9758 B3 9759 B4 9760 B4 9763 B4 9764 B3 9765 B4 9766 B4 9767 A4 9768 A4 9773 B3 9774 B3 9775 B4 9811 A1 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
Circuit Diagrams and PWB Layouts
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Layout Small Signal Board (Part 1 Bottom Side)

PART 1
EN 62EM5.3A P/M AA 7.
E_14600_014a.eps
230304
Circuit Diagrams and PWB Layouts
http://jdwxzlw.5d6d.com/?fromuser=森林
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Layout Small Signal Board (Part 2 Bottom Side)

PART 2
EN 63EM5.3A P/M AA 7.
E_14600_014b.eps
230304

Double Window Panel

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Circuit Diagrams and PWB Layouts
EN 64EM5.3A P/M AA 7.
123456789101112
C1 C1
A
B
C
D
E
F
G
H
DW_PANEL
+5VS
3895
BC847BW
3894
F815
SANDCASTLE
FBLK
+3.3V
+5VS
2861 10u
+5VS
F3-3
VFB
F3-4
PIP-AUDIO
V-PIP+MAIN-IN
U-PIP+MAIN-IN
GND
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
0205
C2
220R
3893
7802
LM317T
100n
2862
3857
10K
3856 10K
7808
BC847BW
680R
3809
4825
1n0
4K7
7891
BC847BW
2K2
3
4V4
3881
390R
PIP-AUDIO
10
9 8
7
6
5
4
V
3
U
2
1
Y
+5VS
220R
680R
I2O
1V8
4834
7892
1K5
A
1
3880
240R
7895
BC847BW
3858 4K7
F805
2896
F807
F810
F808
F809
100n
2872
100R
3887
47p
RES
2886
470R
2V8
##
F806
1u0
2871
100R
3886
47p2885
RES
3897
2863 22u
47p2897
47p
1u0
100n
2873
2874
100R3888
DY
RES
2887 47p
1K53896
220R
7893
BC847BW 4833
2V8
5
2
0V
1
3
74HC1G32GW
3876
2878
F804
3863
3862
47n
47n
2876
2877
2V2
1V9
2V2
2V
2V
2V2
DV
DU
7894
BC857BW
6802
UDZ-3.9B
7804
0V
4
4K7
100n
+3.3V
F21
1R
+3VD
1R
3868
1K8
2895 47p
4831
2894 47p
V18
2892
##
RES
RES
4832
MM1389XFBE
D?
VIDEO SWITCH
IN2A
IN1B IN2B
IN1C IN2C
CLAMP
F4-7
SV-SYNC
F4-9
F4-10
F4-8
F1-11
3898 1K0
DFB
220R3877
RES
+3V
4829
RES
3824 10K
BC847BW
RES
3869
BC847BW
220R
3805
4823
47p
1K03866
7V5
VCC
Φ
OUTAIN1A
CTLA
OUTB
CTLB
OUTC
CTLC
GND
3139 123 5952.1
123456789101112
SV
SY
SU
HA
7824
3K3
7807
+8VS
F802
F803
F801
6804 BAT760
+5VS
V17
3806
3846
2868 100n
2869
0V9
0V
1V9
0V
1V9
2888
RES
2889
RES
2890
RES
+3V
F25
FBlk(not connected)
4K7
RES
3822
RES
4830
680R
8K2
100u
47p 47p 47p
2883
+3VD
7828
BC847BW
0V
+3V
3889 100R
1
2
3
4
5
6
2882
1u0
3870
1K8
F26
0273
1u0
5848
12u
+3V
+5VS
4V6
0V
3844
3843
+3V
3823
3890
3891
7805
BC847BW
220R
3801
4821
3802
3882
3828
2843
3829 2K2
3831
2848
2899
3834
RES
RES
+5VS
680R
F27
680R
8K2
2K2
100n
8K23883
220R
100n
10u
1K8
12u5849
10R
3840
3841
56R
5851
12u
3837
5853
2854
2853 10u
3839 220R
680R3884
8K2
8K2
100n2846
3811 2814
8K2
RES
3849
8K2
RES
8K23848
4826
7810
BC847BW
100R
100R
3803
3804
3827
3833
2849
1K5
3836 3K3
12u
100n
3885
2856
3851
3847
2857
3825
220R
+5VS
2829 2825
2831 2847
3832
2898
4822
100uF
RES
RES
4827
100n
RES
7806
BC847BW
220R
1K8
3K33826
2842
2844
100n
560p
560p
39K
3K3
2851
100n2832
8K2
560p
100n
8K2
8K2
150p
47p2893
1u0
+5VS
680R
10u
39K3838
+3VD
+3V
100n
HA
150p
100n2828
2852
4828
SCL
SDA
5839
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
6803
3864
BC847BW
RES
3875
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)
100n
MCL4148
3865 3K3
RES
7832
3852
100R
10u
2841
33K
12u
2V7
SU
VDDA(SF)
CLAMP &
CLAMP &
VSSA(MA)
VDDA(MF)
MU
3 30
1V4
10u
2867
2866
2864
4
2V7
2817
100n
2816
10u
1u0
100n
100n
110 0V9
5818 12u
F21
2V / div DC
20µs / div
F22
200mV / div DC
20µs / div
2879 100n
100n
2839
2V7
VSSA(SA)
VDDA(SA)
ADC
PLL & CLOCK
ADC
VDDA(MA)
5
2V7
12u5816
GENERATOR
RES
3K33855
47uF
2838
##
3V5
3V6
2V8
SDA
POR
I2-BUS CONTROL
PLL & CLOCK
GENERATOR
DY
VSSA(DA)
VDDA(DA)
7
2V6
3812 47R
F23
200mV / div DC
20µs / div
F24
200mV / div DC
20µs / div
SCL
0V3
3854
100R
Vbias(DA)
22K
3814
F22
0V
SVSYNC
9
0V9
0V
70717273747576777879880
DCLK
DAC
&
BUFFER
DV
11
1V
47R
3816
150R
3813
RES
0V1
0V
PKOFF
DVSYNC
DISPLAY
CONTROL
DU
Vref(T)(DA)
12 13 1415161718 192
1V
0V
100n
2823
3818 47R
47p
RES
2858
F24
BC847BW
7829
3853
3K3
RES
FBL
SAB9081H
Vref(B)(DA)
2V8
100n
2824
47p
150R3817
RES
2859
HFB-SANDCASTLE
2837 100n
2V8
2V8
VSSD(D)
VDDD(D)
LINE MEMORY
7801
VDDD(DA)
VSSD(DA)
2V8
3821 150R
F25
500mV / div DC
F26
500mV / div DC
F3-12
VSSD(P2)
VDDD(P2)
CONTROL
INTERNAL
DRAM
VDDD(P1)
VSSD(P1)
RES
47p
2860
20µs / div
20µs / div
3871
0V6
2K2
BC847BW
N.C
VSSD(T9)
VSSD(T8)
VSSD(RP)
TEST
VDDD(RP)
VSSD(T2)
VSSD(T1)
20 21 22 23 24 25 26
2V8
F23
F27
500mV / div DC
20µs / div
V17
0,5V / div DC
10µs / div
N.C
7871
3872
470R
4V6
2836
5834
2834
2833
5827 12u
3873
1K5
N.C
4V6
7874
BC847BW
56575859660616263646566676869
N.C
100n
12u
10u
100n
10u2827
100n2826
V18
0,5V / div DC
10µs / div
3V3
4820
N.C
27 28 29
3874 1K5
3879
220R
6801 UDZ-3.9B
5152535455
VSSD(T7) VSSD(T6)
VSSD(T5)
VSSD(T4)
TCBR
TCBC
TCBD
TCLK
VDDD(RM)
VSSD(RM)
VSSD(RL)
VDDD(RL)
N.C
4V6
50
49
48
47
46
45
TM
44
43
42
41
40
39
TC
38
T0
37
T1
36
T2
35
T3
34
T4
33
T5
32
31
N.C
VSSD(T3)
+5VS
4V6
7876
BC857BW
0V3
HA
F814
3878
1K0
2822 100n
2818 100n
+3VD
F1-11
E_14600_073.eps
171204
A
B
C
D
G
H
0205 D2 0273 B5 2811 F7 2812 E7 2813 F7 2814 F6 2816 F8 2817 F8 2818 D12 2819 F7 2821 F7 2822 D12 2823 F8 2824 F9 2825 C6 2826 G10 2827 F10 2828 B6 2829 C6 2831 C6 2832 E6 2833 F10 2834 F10 2836 F10 2837 B9 2838 B8 2839 B8 2841 B7 2842 B6 2843 B5 2844 B6 2846 F5 2847 C6 2848 C5 2849 D6 2851 D6 2852 D7 2853 E5 2854 D5 2856 E6 2857 F6 2858 G8 2859 G9 2860 G9 2861 C1 2862 C2 2863 D3 2864 G7 2866 G7 2867 G7 2868 F4 2869 F4 2871 F2 2872 F2 2873 F3 2874 F3 2876 F3 2877 F3 2878 C3 2879 A8
E
2882 B5 2883 C5 2885 H2 2886 H2 2887 H2 2888 H4 2889 H4 2890 H4 2891 H2 2892 F3 2893 G6
F
2894 E3 2895 E3 2896 E2 2897 D3 2898 D6 2899 C5 3801 A5 3802 A5 3803 A6 3804 A6 3805 E4 3806 E4 3807 F1 3808 F1 3809 G2 3810 H2 3811 F5 3812 F8 3813 G8 3814 F8 3816 F8 3817 G9 3818 F9 3821 G9 3822 D4 3823 G5 3824 D3 3825 G6 3826 B6 3827 B6 3828 B5 3829 C5 3831 C5
3832 C6 3833 C6 3834 C5 3836 D6 3837 D5 3838 E6 3839 E6 3840 D5 3841 D5 3843 E5 3844 E5 3846 E4 3847 F6 3848 F5 3849 F5 3851 F6 3852 A7 3853 A9 3854 A8 3855 A8 3856 D2 3857 C2 3858 D2 3862 D3 3863 C3 3864 A7 3865 A7 3866 F3 3868 D3 3869 E3 3871 A10 3872 A10 3873 B10 3874 A11 3876 C3 3877 C4 3878 B12 3879 A11 3880 C2 3881 C2 3882 B5 3883 C5 3884 E5 3885 E6 3886 G2 3887 G2 3888 G3 3889 G4 3890 H5 3891 H5 3892 H1 3893 B2 3894 B2 3895 A2 3896 A3 3897 B3 3898 B4 4820 B11 4821 A5 4822 A6 4823 E4 4824 F2 4825 G2 4826 G6 4827 D6 4828 D7 4829 D3 4830 D4 4831 E3 4832 G4 4833 B3 4834 D2 5816 G7 5818 G7 5827 G10 5834 F10 5839 B7 5848 C5 5849 D5 5851 D5 5853 D5 6801 A11 6802 B3 6803 A7 6804 C4 7801 D9 7802 C2 7803 G3 7804 B3 7805 A5 7806 A6 7807 E4 7808 F2 7809 G1 7810 G5 7824 D3 7828 D5 7829 A9 7832 A7 7871 B10 7874 B11 7876 A12 7891 H2 7892 B2
7893 B3 7894 A3 7895 D2 F801 A4 F802 A4 F803 A4 F804 C3 F805 D2 F806 D2 F807 E2 F808 E2 F809 E2 F810 E2 F811 G7 F812 G7 F813 G7 F814 A12 F815 B2
Circuit Diagrams and PWB Layouts
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Double Window Panel: Tuner

EN 65EM5.3A P/M AA 7.
0255 C4 2261 C1
2262 C2 2265 A3
2269 D5 3263 A2
12345
12345
3264 A2 3265 B2
3267 D3 3268 D3
3270 C2 5261 B1
5262 B1 7201 B3
C2 C2
A
A
TUNER PANEL
AGC
F4-13
3263
3K9
RES
3264
10K
F201
F1
2265 100u
B
B
C
C
+5VS
5262
5u6
100u
2261
2262 1n0
3265
4K7
RES
0R
RES
3270
0V
2
3
VT
AS
SCL4SDA
2V4
2V3
100R
100R
68
NC
5
F201 A2
4V5
VSPLL
7201
UV1316/A I-2
VST
AGC
9
1
4V5
33V
7
F1
1V / div DC
20µs / div
F2
200mV / div DC
20µs / div
IF2|GND
GND
13 14
12
1
0255
IF1
15
Personal Notes:
A
A
F2
IF-TER
11
0V
10
F4-15
+33V
B
B
C
C
D
D
3139 123 5952.1
12345
12345
3268
SCL
SDA
3267
2269
47n
E_14600_074.eps
171204
D
D
E_06532_012.eps
131004
Circuit Diagrams and PWB Layouts
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Double Window Panel: I/O Processing

EN 66EM5.3A P/M AA 7.
123456789101112
C3 C3
I/O PROCESSING
A
B
C
D
E
F
G
H
F1-16 F2-14,F4-25
F1-5,12
F1-3
RESET
FB_OUT
6
F426
RESET
5
4
3
2
TO 0209 OF
GUIDE + PNL K1
1
0209
CVBS-PIP_TUN1-2-CVBS-IN
0272
3
TO 0236 OF
2
SSP-CINCH A5
1
0236
5
4
3
2
TO 0200 OF
1
SSP-CINCH A5
CVBS-SC1_AV1-IN
0200
+5VS
HFB-SANDCASTLE
VFB
SCL
SDA
+5VD
0201
TO 0201 OF SSP - TUNER A4
10
+33V
+8VS
F418
SEL_YUV_RGB
CVBS_TER_PIP
F419
F401
CVBS_TER_OUT
3
F402
2
F403
1
F408
Y-CVBS-FRONT-IN
F407
F409
C-FRONT-IN
Y-CVBS-SC2_AV2-IN
F404
GND
C-SC2_SVHS-IN
F405
F406
1
SDA
2
SCL
F417
3
4
F14
VFB
5
HFB-SANDCASTLE
6
F414
7
+5V
F415
8
+8V
F416
9
+33V
F421
47p
47p2438
2439
6436
3436 390R
3439
390R
F410
F411
47p
2440
1SS355
3404
3401 100R
3402 100R
F15
2437
3n3
F412
F413
5402 6u8
9000
7434
BC636
3434
4K7
0237
3458
100R
2441
470p
12
4439
2404
1u0
100R
2405
100R3405
1u0
2401
1u0
2402
1u0
3403
2403
1u0
100R
2432
100n
3456
4K7
3457
4K7
4K73460
3431
100R
3432
4u75401
1
3437
3V6
100R
3V6
0V
3462
2R2
4434
4K7
0V
7438
BC847BW
13
5
3
4402
4401
2
1
0V
3V4
12
45
3
2
13
7403
M6232OP
89
14 15 16
4437
7435
BC636
0V8
3139 123 5952.1
123456789101112
Y0
HEF4053BT
Y1
Vss
8
Y0
HEF4053BT
Y1
Vss
8
Y0
HEF4053BT
Y1
Vss
8
0V
6
7
11
10
4403
7401-A
Vee
7
7401-C
Vee
7
7401-B
Vee
7
0V
0V
0V
0V
0V
F16
E
6
E
6
E
6
16
Vdd
S
11
Z
14
16
Vdd
S
9
Z
4
16
Vdd
S
10
Z
15
SEL-MAIN-FRNT-RR
SEL-MAIN-R1R2
SEL-TUNER1
SEL-TUNER2
3453
4K7
2434 100n
SEMI-STD-BY
470R3438
4440
2431 100n
3452
4K7
2436 100u
3411
3414 47K
3415 47K
3461 4K7
3412 47K
3451 4K7
47K
2415 220n
2412 220n
6412
1SS355
7412
BC847BW
3V3
6415
1SS355
2411
10u
2V7
3413
7411
BC847BW
3V3
1K03416
F14
2V/div DC
10ms/div
F15
1V / div DC
20µs / div
F16
1V / div DC
7V8
1K0
7V8
2V9
5µs / div
+8VS
V20
V19
F17
F18
F19
3417
100R
1V/div DC
5ms/div
1V/div DC
10ms/div
1V/div DC
10ms/div
V20
1V/divDC 10us/div
3418 100R
12
13
2
1
5
3
7402-A
Y0
HEF4053BT
Y1
Vss
8
4419
7402-B
Y0
HEF4053BT
Y1
Vss
8
4423
7402-C
Y0
HEF4053BT
Y1
Vss
8
Vee
7
Vee
7
Vee
7
TP1 F9 0200 D2 0201 E2 0209 B2 0236 C2 0237 H2
A
B
C
D
E
G
H
F
0272 C1 2401 C3 2402 C3 2403 D3 2404 B3 2405 B3 2411 B6 2412 B6 2415 C6 2431 E5 2432 D3 2434 F4 2436 F5 2437 E2 2438 G2 2439 G2 2440 G2 2441 B3 3401 C2 3402 C3 3403 D3 3404 B2 3405 B2 3411 B5 3412 B6 3413 C6 3414 C5 3415 C5 3416 E6 3417 A7 3418 A8 3419 C10 3422 B10 3423 C10 3424 C11 3431 E3 3432 E3 3434 G2 3436 G2 3437 H3 3438 H4 3439 H2 3451 F6 3452 F5 3453 F4 3456 D3 3457 E3 3458 B3 3460 E3 3461 F5 3462 G3 3463 C10 4401 C3 4402 C4 4403 B4 4419 B8 4423 C8 4424 C11 4434 G3 4437 G3 4438 F10 4439 B4 4440 B5 5401 F2 5402 F2 6412 B6 6415 C6 6436 G2 7401-A B4 7401-B D4 7401-C C4 7402-A A8 7402-B B8 7402-C D8 7403 E4 7411 D6 7412 B6 7421 C11 7422 C10 7434 G2 7435 H3 7438 H3 9401 F2 F401 B2 F402 B2 F403 B2 F404 C2 F405 D2 F406 D2 F407 C2 F408 C2 F409 C2 F410 E2 F411 E2 F412 F2 F413 F2 F414 F2 F415 F2
PIP-CVBS-MON
CVBS-PIP-OUT
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
7422
560R
3422 560R
+5VS
4424
3424 560R
+5VS
F422
BC857BW 7421
F423
F424
F425
F17
CVBS-PIP-INT-IN
SEL_PIP_CVBS
PIP_CVBS_OUT
MAIN-CVBS-EXT-IN
C-PIP-IN
YCVI
+5VD
FBLK
F4-16
F4-24
F4-17
F4-19
F4-18
F5-22
F4-23
F4-20
F4-21
F1-2
E_14600_075.eps
171204
F416 F2 F417 E2 F418 A2 F419 B2 F421 F2 F422 C11 F423 E11 F424 E11 F425 F11 F426 A2
Circuit Diagrams and PWB Layouts
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Double Window Panel: IF Video Sync

EN 67EM5.3A P/M AA 7.
12
3456
C4
A
+8VS
B
C
D
E
F
G
H
IF-VIDEO-SYNC
5352
6u8
GND-IF
F2-15
F2-13
F3-25
F1-4
F3-18
F3-17
F3-19
F3-16
F3-20
F3-21
F1-7
F1-10
F3-23
3352 2K2
10n
10u2350
3353
2349
F302
IF-TER
F301
AGC
RESET
3355
3356
18K
F303
7V6
7305
BC847BW
3327
4307
4304
560R
CVBS-PIP-OUT
3335
120R
CVBS-PIP-INT-IN
133412
TPSCC
+8VS
PIP-CVBS-MON
3366
100R
560R
3365
MAIN-CVBS-EXT-IN
C-PIP-IN
SV-SYNC
SY
YCVI
TO 0207 OF
+3.3V
6K8
1SS355
F3
6301
2K2
10n
2351
5349
3354
820n
27K
7332
BC847BW
PIP-AUDIO
SEL_PIP_CVBS
3V9
3V1
100R
3372
4305
4306
4309 4308
5334
3
3
2
1333
TPWCC16B-TC10
3391
7368
560R
BC847BW
F305
0207
F307
1
F306
2
F308
3
4
SSP-CINCH A5
6u8
1
4314
4315
3334
1u02301
470R
1352
OFWK6272K
10
SWI
1
IN
2
ING
3316
3317
2321
4n7
2322 10u
2303
4n7
2304 4u7
+8VS
3392
100R
3393
470R
3395
100R
F6
1u02335
1u0
3364 1K0
2311
4
1u0
5348
5
F5
7387
3333
3324 390R
3325
2V7
7301-A TDA8885
PLLIF15
IFIN11
1V9
IFIN22
1V9
AGCOUT7
4V6
22n
2316
2V4 2V5 3V1
3394
470R
CVBS
SWITCH
VIDEO
IDENT
3383
F9
O1
O2
GND
38
680R
15K
820p2302
3305
2K7
4301
BC847BW
7301-B TDA8885
CVBS2OUT26
2V3
CVBS1OUT54
2V3
CVBSINT24
3V6
CVBS|Y229
3V4
21 CVBS|Y3
3V4
C320
1V4
10n
2306
F8
F12 F11
3139 123 5952.1
12345678910
789
3347
DECDIG
50
5V
4337
OUTPUT
VOLUME
CONTROL
GND
DECBG
6
55
4V
2332
1K0
Y
U
V
YIN39YOUT
40
2V9
2V9
4312
6u8
560R
VIDEO
AMPLIFIER
MUTE
+
220n
RGB-2 INPUT
RGB / YUV
MATRIX
R|2
G|2
41
42
2V6
2V6
F4
50mV / div AC
200ns / div
3336
2334 22n
2331
4303
SW OUT
BL|2
B|2
44
43
1V3
2V6
560R3302
1K0
IFVO 16
VIDEO|SIF 12
2u2
0V
60
SWO122SWO2
Y
U
SATURATION
V
UO|BL345VI|RI
2V3
F10
F5
50mV / div AC
47p
2390
3V9
27IFVO|AUDOUT
3V2
1K0
3301
CD
MATRIX
CONTROL
UI|BI
VO|YI|GI
47
48
46 19
2V3
2V3
2V3
4310
4311
200ns / div
4V
1K0
3326
WHSTR
35
7V5
F6
1V / div DC
20µs / div
13
RGB
MATRIX
WHITE /
BLACK
STRETCH
RGB1 INPUT
TINT
R|1
G|1
36
5350
2393
3323
4V9
HALFT
+
+
B|1
37
15K3371
3V9
4n72372
1u
2373
3311
BL|1
F7
500mV / div DC
2ms / div
2380
2319
680R
2324
3328
4M7
IF AMPLIFIER
PLL VIDEO DEMOD
AFC
CALIBRATION
AGC
AGC + NARROW
BAND AUDIO FM
PLL DEMODULATOR
DE-EMPHASIS
SIFAGC
10
LUM-
DELAY
PEAKING
CORING
CHROMA
BAND-
PASS CATHODE
+TRAP
F7
2327
2328
3382
3321
33p
33p
100R
100R
100R3381
10K
1V9
1V3
100n
4M7
SIF18SIF2
9
F4
PAL / NTSC /
DEMODULATOR
1V6
1327
12MHZ
7331
3340
BC857BW
23
VP1
SWITCHABLE
SOUND TRAPS
4.5 / 5.5 / 6 / 6.5 MHZ
SECPLL
28
2V3
2317
220n
SECAM
OSCIN51OSCOUT
52
49
1V6
RES
RES
2355
RES
2356
3318
3322 8K2
2357
10u
100n
2K2
RES
7V6
BC847BW
QSSO|AMOUT
11
3V7
3306
U
V
FSCOUT
0V
470n2354
1u0
470n
100R
10p
5332
7337
BASE
BAND
DELAY
LINE
F13
F3
200mV / div AC
100ns / div
15u
2391
1n0
1K0
7301-C TDA8885
PH1LF
59
3EHTO
2V1
2312 10n
3312
27K
2V5
2V3
17
18
SCL
SDA
IIC BUS
CONTROL
R
G
RGB
OUTPUT
B
CALIBRATION
BLKIN
3038
3339 10K
3V3
3389 4K7
100p
2338
SYNC
SEPARATOR
VERTICAL
SYNC
SEPARATOR
25
10K
RES
F8
1V / div DC
20µs / div
2392
2n2
0V
R33
G32
B31
BCLIN 34
2336
2313
470R
15u
47p
2V2
58
2V5
F9
1V / div DC
20µs / div
3390
5351
GND161GND2
I301
0V7
57
FBISO
PH2LF
VCO
+
CONTROL
3313
7V8
2V2
3338
3329
3330
2V6
3348
2V5
3341
##
3V3
3350
3351 150K
RES
820p
100n
IREF
5
3V9
4M7
BC847BW
RES
RES
RES
RES
RES
4313
53
VCS
4
3V9
2V9
7307
560R
100R
100R
0R
47R3344
47R
180K
F10
1V / div DC
20µs / div
10 11
5333
5309
2V9
7V6
14
VP2
LPST-UP
HORIZONTAL
OUTPUT
VERTICAL
OUTPUT
E / W
OUTPUT
3314
2314
3315 39K
7385
3346
2348
2345
2342
3V6
BC847BW
560R
RES
RES
RES
2333
4M7
100n
3385 4K7
0V4
470p
2385
47p
47p
47p
100n
F11
1V / div DC
20µs / div
6u8
6u8
100n2309
2386
0V2
7386
BC847BW
PIP-CVBS-MON
F304
SANDCASTLE
+8VS
+3.3V
100R
3370
56H-DRIVE
1V2
2377
1n0
63DR+
4V7
64DR-
4V9
2376
1n0
62EW-DRIVE
5V7
10K
4K7
22n
3388
3374
2374
10K
10K
3386
3384
470p
0V7
SCL
SDA
11
F12
2V / div DC
5ms / div
+8VS
F3-24
F1-1
1n02375
39K
3387
F1-9
SV
F1-8
SU
E_14600_076.eps
171204
F13
1V / div DC
20µs / div
0207 G1 1327 G4 1333 F1 1334 F1 1352 B2 2301 E2 2302 C2 2303 C2
A
2304 C2 2306 F3 2309 B10 2311 F2 2312 C8 2313 G9 2314 D10 2316 C3 2317 D5 2319 A4 2321 C2
B
2322 C2 2324 A4 2327 G4 2328 G4 2331 D6 2332 D5 2333 F10 2334 D6 2335 F2 2336 G9 2338 A8 2342 F10
C
2345 F10 2348 E10 2349 B1 2350 B1 2351 B2 2354 G4 2355 H4 2356 H4 2357 H4 2372 C8 2373 C8 2374 D11
D
2375 B11 2376 C11 2377 B11 2380 A4 2385 E10 2386 E10 2390 B7 2391 A8 2392 A9 2393 A7 3301 C7
E
3302 A6 3305 C3 3306 D5 3311 D8 3312 D8 3313 D9 3314 D10 3315 D10 3316 B2 3317 C2 3318 H4 3321 H4
F
3322 H4 3323 A7 3324 A3 3325 A3 3326 C7 3327 D1 3328 A4 3329 E9 3330 E9 3333 A3 3334 E2 3335 E1
G
H
3336 A6 3338 E9 3339 G8 3340 A5 3341 F9 3344 F9 3346 E10 3347 A5 3348 E9 3350 F9 3351 F9 3352 A1 3353 B1 3354 B1 3355 C1 3356 C1 3364 F2 3365 F1
I
3366 F1 3370 B11 3371 C7 3372 D2 3374 D11 3381 H4 3382 H4 3383 G4 3384 D11 3385 D10 3386 D11 3387 D11 3388 D11 3389 G8 3390 A9 3391 F1 3392 D2 3393 D2 3394 D3 3395 D2 4301 D3 4303 D6 4304 D1 4305 D1 4306 E1 4307 D1 4308 E1 4309 E1 4310 G7 4311 G7 4312 G5 4313 A10 4314 B2 4315 B2 4337 A6 5309 A10 5332 A5 5333 A10 5334 E2 5348 B3 5349 B1 5350 A7 5351 A9 5352 A1 6301 B2 7301-A B3 7301-B E3 7301-C B8 7305 D1 7307 E10 7331 A4 7332 C1 7337 A5 7368 F2 7385 D10 7386 E11 7387 D3 F301 B1 F302 B1 F303 C1 F304 A11 F305 G2 F306 G2 F307 G2 F308 G2 I301 C9
Circuit Diagrams and PWB Layouts
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EN 68EM5.3A P/M AA 7.

Double Window Panel V-Chip Processor

1501 B1 2501 A1
2502 B1 2503 B1
2504 C1 2505 C1
2506 B3 2507 A4
2508 C1 2509 C1
1234
V CHIP PROCESSOR
2511 B4 3501 A2
3502 A1 3503 B1
C5 C5
A
B
2502
2503 470R
C
3139 123 5952.1
##
7501
Z86130
22p2501
8p2
100n
3502
10M
1501
DT-38
3504
32K768
2505
56p
2509
3508
10M
3503
68n2504 6K8
100n
3501
470K
6n82508
1
SEL
2
H SEL
3
XOUT
4
SEN
5
HIN/XIN
6
SMS
7
VIDEO
8
CSYNC
9
LPF RREF
NC
NC
SDO
SCK
SDA
VIN
VDD
VSS
18
17
16
15
14
13
12
11
10
3506
1234
3504 C1 3506 B3
3509
5501
10K
2506 100n
3507 A4 3508 B1
100R
100R3510
6u8
3509 A3 3510 A3
3507
6K8
2511 100n
PIP_CVBS_OUT
5501 B3 7501 A2
1u2507
+5VD
SCL
SDA
E_14600_077.eps
F3-22
171204
A
B
C

Double Window Panel NV ROM

2512 A2 3512 B2 3513 B2 7502 A1
123
NV ROM
C6 C6
A
B
3139 123 5952.1
123
7502
M24C32-WMN6T
Φ
(4Kx8)
1 2 3
EEPROM
0 1
ADR
2SDA
4
WC
SCL
+5VS
2512 100n
7
3512
6
100R
5
3513
100R
SCL
SDA
A
B
E_14600_081.eps
171204
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Layout Double Window Panel (Top Side)

0200 A4 0201 A6 0205 A5 0207 A1 0209 A3 0236 A2 0237 C5 0255 C2 0272 A3 0273 A6 1327 A2
1333 B3 1334 B3 1352 B2 1501 A1 2261 C3 2265 B1 2301 A3 2304 B3 2306 B3 2311 B3 2316 B2
2317 A3 2319 A3 2322 C3 2327 A2 2328 A2 2331 A2 2333 A2 2348 A2 2349 B1 2350 A1 2351 B2
2355 A2 2373 A1 2380 B2 2385 A1 2386 A2 2390 B2 2391 B2 2392 B2 2393 B3 2401 A3 2402 A3
2403 A3 2404 A4 2405 A3 2411 A2 2412 A3 2415 A2 2431 A3 2432 A3 2434 B3 2436 B3 2437 A6
2438 A6 2439 A6 2440 A6 2441 A3 2502 A1 2503 A1 2504 A1 2505 A1 2506 A1 2507 A1 2508 A1
2509 A1 2811 A5 2812 A5 2813 A5 2816 A5 2821 A5 2823 A5 2824 A5 2827 A5 2828 B5 2833 A5
2834 A5 2836 A5 2838 B6 2841 B6 2842 B5 2843 B5 2844 B5 2851 B6 2853 A6 2857 A5 2858 A5
2859 A5 2860 A4 2861 B4 2862 C4 2863 B5 2864 A5 2866 A5 2867 A5 2868 A4 2869 A4 2871 A4
2872 A5 2873 A5 2874 A5 2876 A5 2877 B4 2879 C6 2885 A4 2886 A4 2887 A4 2888 A5 2889 A5
2890 B4 2892 A5 2893 A5 2894 A5 2897 A5 2898 A5 2899 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
EN 69EM5.3A P/M AA 7.
3386 A2 3387 A1 3388 A1 3389 B3 3390 B2 3391 A2 3401 A4 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 C3 3458 A3 3460 B3 3461 B3 3462 C4 3463 A2 3502 A1 3503 A1 3504 A1 3506 A1 3508 A1
3804 B5 3805 A6 3806 A6 3807 A5 3809 A5 3810 A5 3812 A5 3813 A5 3814 A5 3816 A5 3817 A5
3818 A5 3821 A4 3822 B4 3824 B4 3825 A5 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 3862 C5 3863 B5
3864 C5 3865 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 4306 B3 4307 B3
4308 B3 4309 B3 4310 A2 4311 A2 4312 A3 4337 B3 4403 A3 4438 B3 4439 A3 4440 A3 4820 C6
4823 A6 4825 A5 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 5401 B6 5402 B6 5501 A1 6801 C6 6802 B6 6803 C6
7201 C1 7301 A2 7307 A3 7331 A3 7332 B1 7337 B3 7368 A2 7385 A2 7386 A2 7401 A3 7403 B3
7434 C5 7435 C5 7501 A1 7801 B5 7802 C4 7803 A4 7804 B4 7805 A4 7806 B6 7807 A6 7808 A5
7809 A5 7810 A5 7824 B4 7829 C4 7832 B5 7871 C6 7874 C6 7876 C6 7891 A4 7892 B6 7893 B6
7894 B5 9401 B6
8204 000 5952.1
E_14600_078.eps
091204
Circuit Diagrams and PWB Layouts
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Layout Double Window Panel (Bottom Side)

2262 C5 2269 C5 2302 B4 2303 B4 2309 B4 2312 B5 2313 B4
2314 B5 2321 A4 2324 A4 2332 A5 2334 A5 2335 A4 2336 A4
2338 A5 2342 A4 2345 A4 2354 A5 2356 A5 2357 A5 2372 A5
2374 A5 2375 A5 2376 A5 2377 A5 2501 A6 2511 A6 2512 A6
2814 A2 2817 A2 2818 B3 2819 A2 2822 B3 2825 B2 2826 B3
2829 B2 2831 B2 2832 A1 2837 B2 2839 B2 2846 A2 2847 B2
2848 B2 2849 B2 2852 B2 2854 B2 2856 A1 2878 B3 2882 B2
2883 B3 2891 A3 2895 A2 2896 A2 3263 B6 3264 B6 3265 B6
3267 B6 3268 B6 3270 C6 3302 A4 3305 B4 3311 B5 3312 B5
3313 A5 3314 A5 3315 A5 3323 A4 3324 A4 3325 A4 3326 B5
3328 A4 3329 B4 3330 B4 3335 B4 3338 A4 3339 A4 3341 A4
3344 A4 3350 A5 3351 A5 3365 A5 3370 A5 3371 A5 3381 A5
EN 70EM5.3A P/M AA 7.
3382 A5 3383 A5 3392 B5 3393 B5 3394 B5 3395 B5 3403 A5
3405 A4 3417 B3 3418 B4 3419 C4 3422 C3 3423 C3 3424 C4
3434 C2 3436 C3 3437 C2 3439 C3 3501 A6 3507 A6 3509 A6
3510 A6 3512 A6 3513 A6 3801 A3 3802 B3 3803 B1 3808 A2
3811 A2 3823 A2 3839 A1 3840 B2 3841 B2 3843 A1 3844 A2
3846 A1 3847 A2 3848 A2 3849 A2 3851 A2 3856 C3 3857 C3
3858 C3 3870 B2 3875 B2 3876 B3 3884 A1 3885 A2 3892 A3
4305 B4 4313 A5 4314 B5 4315 B5 4401 A4 4402 A4 4419 C4
4423 B4 4424 C4 4434 C2 4437 C2 4821 B3 4822 B1 4824 A2
4826 A2 4834 C3 5262 B5 5348 B5 5349 B5 5816 A2 5818 A2
5827 B2 5834 A2 5839 B2 5848 B2 5849 B2 5851 B2 5853 B1
6301 B5 6412 A4 6415 A4 6436 C3 6804 B2 7305 B5 7387 B5
7402 B4 7411 A4 7412 A4 7421 C4 7422 C3 7438 C3 7502 A6
7828 A1 7895 C3
8204 000 5952.1
E_14600_079.eps
091204
Circuit Diagrams and PWB Layouts
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EN 71EM5.3A P/M AA 7.

Main Switch Panel

1234
A
MAIN SWITCH PANEL
MAINS
AC
IN
0201
HOT MAINS SWITCH
107V
2
107V
1
3M3
3066
3057
3M3
SDDF
1051
13
24
56
COLD
2V
6051
TLUV5300
GREEN
CTRL
CIRCUIT
BAND PASS
M1
45
5V2
0V
2070
220n
3071
330K
4
8
8V6
10u
3054
560R
4010
RC5-RECEIVER
DEM
M2
6053
BZX284-C3V3
3063
4R7
0V2
1
3K3
3079
8V6
0V2
3072
VS 2
OUT 1
GND 3
5
6
1K
8V6
4V8
3V
4000
3064
4R7
8
4
3073
10K
3082
4003
4002
0V
4001
3074
4K7
7070-B LM358N
7
1K5
3083
1V9
4004
6055
RES
TLDR5400
0V
RED
13
2
0V
B
3050
330R
1050
C
4V8
100u2051
2K2
3081
0V
BZX79-C3V3 6071
D
BC327-25
PIN
5V3
7050
SEND LED
13
0V
TSIP5201
INP
AGC
3061
3K3
6052
E
F
7070-A LM358N
2
0V
3
0V
3070
330K
2071
6070
0V
BPW46
LIGHT
SENSOR
1
2
1K5
3084
3076
3077
3075
4K7
6K8
10K
1K5
8V6
3051
470R
3078
1K
107V
2
107V
1
TO LSP
0V
0V
3V
5V3
3V5
0V
3V3
0V5
0V
3V3
0V
0202
9010
9011
9012
1
2
3
4
5
6
7
8
9
0245
1
2
3
FROM/TO 0345 OF
TOP CONTROL
3998
43
FROM/TO 1505 OF
Line deflection
OR
Top supply
EH-B
0240
2
N.C.
1
FROM/TO
1946 OF
0241
1K
CL 26532079_016.eps
A10
50Hz/60Hz
ON/OFF LED
RC5
+5V STANDBY
IR-LED
GND KEYBOARD
KEYBOARD
LIGHT SENSOR
+8V6
EH-S
GND KEYBOARD
KEYBOARD
GND KEYBOARD
090702
A
B
C
D
E
F
0201 A1 0202 A4 0240 B4 0241 C4 0245 E4 1050 C1 1051 A2 2051 C1 2070 E1 2071 F1 3050 B1 3051 C3 3054 B2 3057 A2 3061 D1 3063 E2 3064 E2 3066 A2 3070 F1 3071 E1 3072 F2 3073 F2 3074 E3 3075 F3 3076 C3 3077 D3 3078 F3 3079 F2 3081 D1 3082 B3 3083 B3 3084 B3 3998 F4 4000 D2 4001 D3 4002 C2 4003 C3 4004 B1 4010 C2 6051 B1 6052 E1 6053 D2 6055 B1 6070 F1 6071 C1 7050 D1 7070-A E1 7070-B F2 9010 B4 9011 B4 9012 B4
Personal Notes:
E_06532_012.eps
131004
Circuit Diagrams and PWB Layouts
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EN 72EM5.3A P/M AA 7.

Layout Main Switch Panel (Top Side)

0201 B2 0202 C2 0240 A2 0241 A2 0245 A2 1050 A1 1051 C2 2051 A1 2071 A1 3057 B2 3063 A1 3064 A2 3066 B2 3998 A1 6051 A1 6052 A1 6070 B1 6071 A1 7050 A2 7070 A2 9001 B2 9002 A2 9010 B1 9011 B1 9012 C1

Layout Main Switch Panel (Bottom Side)

3061
2070
3071
3072
3079
4009
3078
3075
3074
3077
3051
4011
6053
3073
3070
3076
4007
4010
3081
4001
4008
3050
4002
4003
4000
3054
3084
3082
4004
3083
2070 A1 3050 A2 3051 A1 3054 A2 3061 A1 3070 A2 3071 A1 3072 A1 3073 A1 3074 A1 3075 A1 3076 A2 3077 A1 3078 A1 3079 A1 3081 A2 3082 A2 3083 A2 3084 A2 4000 A2 4001 A2 4002 A2 4003 A2 4004 A2 4007 A2 4008 B2 4009 A1 4010 A2 4011 A1 6053 A1
CL 26532041_045.eps
180402
CL 26532041_046.eps
180402
Circuit Diagrams and PWB Layouts
Item
28" WSRF
29" RF
32" WSRF
34" RF
36" WSRF
DESCRIPTION
1237 X 9p f emale
1298 X X X 10p fem ale
1298 X 11p female
CRT socket
CRT socket
CRT socket
2324 X 1N 2324 X 1N5
2324 X X X 4N7 2403 X X X 100U 2404 X X X 100U 2405 X X X 470P 3303 X F USE 1K 3304 X X X X F USE 1K 3402 X X X 10R 3402 X X 150R 3403 X X FUSE 1R 3403 X F USE 1R5 3403 X X FUSE 1R 3404 X X FUSE 1R 3404 X F USE 1R5 3510 X 100R 3510 X X 150R 3510 X 220R 3510 X 560R 3520 X X 150R 3520 X 220R 3520 X 390R 3520 X 560R 3530 X 150R 3530 X 220R 3530 X 270R 3530 X 390R 3530 X 560R 3999 X 1 K5 3999 X 1K8 3999 X 2K2 3999 X 2K7 3999 X 3K9 5400 X X 33U 5400 X 18U
5400 X 27U 5400 X 39U 6405 X X X BYV29X-500 9301 X X X X J umper 9302 X Jumper 9303 X X X X J umper 9306 X X X X J umper 9308 X X X X J umper
9401 X X Jumper
[F1] CRT panel
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CRT Panel

0031 B7
0033 D7
0035 A7
1237-A F14
1237-B G11
1237-C F13
1237-D E11
1237-E F14
1237-F E11
1237-G F11
1237-H H11
1237-I D11
1298-A F14
1298-B F13
1298-C D11
1298-D F13
1298-E E11
1298-F F11
1298-G F11
1298-H D11
1298-I F11
1298-J G11
1298-K F14
1424 H2
1434 H15
1435 C11
1940 A1
2301 A4
2302 C4
2303 E4
2312 F8
2313 H5
2317 H14
2318 G12
2319 G9
2320 G9
2324 H14
2338 A7
2339 B7
2340 D7
2341 F5
2342 B9
2347 A13
2348 A13
2357 H10
2358 B13
2359 B13
2403 H8
2404 H8
2405 G7
2407 A15
2408 G1
2409 H3
2501 A3
2502 B4
2503 C3
2504 D4
2505 E3
2506 F4
2510 E8
2511 F8
2512 H2
2514 C1
3301 H5
3303 D1
3304 E1
3305 A12
3334 G12
3338 E10
3339 E10
3340 D10
3341 H4
3345 G8
3346 G11
3347 H14
3348 G13
3349 G12
3350 D9
3351 E9
3352 E9
3401 G5
3402 G3
3403 G4
3404 G4
3501 B2
3502 B2
3503 B3
3504 B3
3505 A3
3506 B4
3507 A4
3508 B4
3509 A5
3510 A5
3511 D2
3512 D3
3513 D3
3514 D3
3515 B8
A
1940
2V9
0V
6V3
B
3V8
8V1
3V7
3V7
3V7
0V
5V3
C
D
F117
F126
F128
E
F
G
H
8204_000_6570.3
CRT PANEL
3538
I205
3545
F101
BAS316
GND_RGB
I206
3546
100R
6501
BAS316
3542
I207
3547
100R
6502
BAS316
3543
I253
1
GND LS2
2
Filament Pulses
3
HFB_X-RAY-PROT
4
EHT-INFO
5
6
NC
7
200V
+8V
220R
I270
I271
100R
GND_RGB
6500
3540
220R
3541
GND_RGB
+8V
220R
I282
I283
470R
GND_RGB
3535
220R
100n
2501
GND_RGB
7500 BC847B
I201
3502
330R
3539
3501
470R
470R
GND_RGB
+8V
3536
220R
100n
I276
2503
GND_RGB
7503 BC847B
I208
3512
I277
330R
3511
470R
470R
GND_RGB
3537
220R
100n
2505
GND_RGB
7506 BC847B
I215
3522
330R
3521
470R
GND_RGB
3402
I231
10n2512
F125
GND_LS1
TO/FROM
1940
OF
1
HFB_X-RAY-PROT
2
GND_SSB
3
4
EHT-INFO
5
+8V_+12V
6
7
R-CRT
8
G-CRT
9
B-CRT
10
CUT OFF
11
F123
3303
3304
F103
3999
1K2
1K
1K
F119
GND_RGB
CUT_OFF
GND_RGB
GND_SSB
F104
I258
F105
F118
F127
F129
F113
2408
RES
GND_LS1
FROM
1424
LINE DEFLECTION
F121 Y-SCAVEM_In
2514
9310
3n3
9322
+8V_+12V
F120
100n
5305
GND_RGB
1424
GND_X
F102
GND_RGB
218V*
1234567
10R
F110
5500
SDL
5501 SDL
5502
SDL
-1V4
I202
3503
GND_RGB
I209
3513
GND_RGB
I216
3523
GND_RGB
I222
10n
2409
F111
+8V
1K2
3505
1K5
1K5
RES
3504
GND_RGB
+8V +8V
3531
1K5
RES
3514
GND_RGB
+8V
1K2
3525
RES
1K5
1K5
3524
GND_RGB
6V3
F15
RES
2301
1p
9501
RES
2303
1p
9503
RES
7501 BC847B
1K2
RES
2302
1p RES
9502
7504 BC847B
1K5
RES
RES
RES
7507 BC847B
RES
I223
+8V
+8V
3404
*
3403
3507
470R
I272
3506
470R
GND_RGB
3533
470R
I278
3532
470R
GND_RGB
3527
470R
I284
3526
470R
GND_RGB
+8V
3509
470R I274
7502
BC857B
I203
2502
I273
1p
RES 3508
820R 9323
+8V
3519
470R I280
7505
BC857B
I210
2504
I279
1p
RES
3534
820R 9324
+8V
3529
470R I288
7508
BC857B
I285
2506
1p
RES
I286
3528
820R 9325
I225
*
5309
5u6
5310
100u
3341
F112
47R
9320 RES 9321
RES
I289
3301
5k6
I232
3510
*
3520
*
3530
*
I226
150V
I275
I281
F109
I287
216V*
3516 B8
3517 B9
3518 C10
3519 C5
3520 C5
3521 F2
3522 F2
3523 F3
3524 F3
3525 E3
3526 F4
R
2341
RES
2313
GND_RGB
I227
GND_RGB
G
GND_RGB
B
GND_RGB
100n
GND_RGB
3401
100R
5400
39u
47u
VSVM
3527 E4
3528 F4
3529 E5
3530 E5
3531 C3
3532 D4
3533 C4
3534 D4
3535 A2
3536 C2
3537 E2
9303
*
GND_RGB
9304
9306
GND_RGB
9307
9308
GND_RGB
9309
+200A
EN 73EM5.3A P/M AA 7.
I281 C5
I282 E2
I283 F2
I284 F4
I285 E4
I286 F5
I287 E5
I288 E5
I289 H4
I290 D9
I291 D9
9402
2407
470p
GND_RGB
9300
GND_RGB
9403
GND_Y
9505
GND_RGB
GND_RGB
CRT
EHT
TO
1
LOT
SG1
1237-A
CRT THOMSOM
1434
F115
1
2
2317
*
PCB-TAB4.8x0.5
GND_LS1
CL 36532017_030.eps
TO
LINE DEFLECTION
I292 D10
I293 F11
I294 F8
I295 G11
140403
A
B
C
D
E
F
G
H
F4
1 V / div DC
5µs / div
F6
1 V / div DC
5µs / div
F8
50 V / div DC
5µs / div
F5
1 V / div DC
5µs / div
F7
50 V / div DC
5µs / div
F9
50 V / div DC
5µs / div
100n
100n
8VOC
5IOM
100n
GND_RGB
I269
I204
I268
+200A
2405
470p
9401
6405
BYV29X-500
6400
BYW76
6302 D10
6303 D9
6305 C9
6306 D9
6307 D9
6400 H7
6405 G7
6406 B9
6407 B9
6420 F8
6421 F8
0035
GND_RGB
9305
0031
GND_RGB
150V
9314
5V4
0033
GND_RGB
RES
RES
GND_LS1
3544
220K
6422 E8
6426 F9
6427 F9
6428 E9
6430 F8
6500 B2
6501 D2
6502 F2
6503 H13
7330 A6
7340 C6
GND_RGB
GND_RGB
6430
GND_RGB
9507
8 91234567
2510
100n
2511
100n
I294
100n
BZX384-C12
GND_RGB
2404
RES
8
100u
7350 E6
7500 A2
7501 A4
7502 A4
7503 D2
7504 D4
7505 C4
7506 E2
7507 E4
7508 E4
9300 A14
+8V
3515
3516
6422
BAV99
6421
BAV99
6420
BAV99
2312
3345
33R
100u
2403
RES
GND_RGB
47K I240
82K
BZX79-C3V3
RES
GND_RGB
F4
I236
F5
I237
F6
I238
GND_RGB
6406
RES
3517
I254
1K
3350
100R
3351
100R
3352
100R I211
I212
I213
9301 F10
9302 G11
9303 A5
9304 A6
9305 A7
9306 C6
9307 C6
9308 E6
9309 E6
9310 D1
9314 C7
I241
GND_RGB
+200A
6307
BAS321
6428
1N4148
6427
1N4148
6426
1N4148
2320
9
2342
BAS321
BAS321
6306
6301
3n3
2319
BAS321
9315 A12
9320 H5
9321 H5
9322 B2
9323 B4
9324 D4
9325 F4
9401 G7
9402 A14
9403 B14
9404 H13
330p
I239
6305
6303
BAS321
5304
50R
100 MHZ
10n
GND_RGB
3538 A2
3539 B3
3540 C2
3541 D2
3542 E2
3543 F2
3544 F7
3545 B2
3546 C2
3547 E2
3999 D1
+200A
7330 TDA61118JF
BIAS CIRC.
VIP1
& THERMAL
I260
2GS
VIN3
I261
7 BLS
NC 9
7340 TDA61118JF
BIAS CIRC.
1VIP
4V7
& THERMAL
I263
GS2
*
2V8
3VIN
I264
BLS7
NC 9
+200A
7350 TDA61118JF
BIAS CIRC.
VIP
1
& THERMAL
I266
2GS
*
VIN3
I267
7 BLS
NC 9
I229
216V*
PROT.
+
+
-
+200A
216V*
PROT.
+
+
-
GND_RGB
216V*
PROT.
+
+
-
6 VDD
-
GND_RGB
6 VDD
-
6 VDD
-
GND_RGB
5303 B12
5304 F9
5305 C2
5308 A12
5309 H4
5310 H4
5400 G5
5500 A3
5501 D3
5502 F3
6301 E9
2338
GND_RGB
VOC 8
IOM 5
GND
4
2339
GND_RGB
GND
4
2340
VOC 8
IOM 5
GND
4
6407
3518
I292
BAS321
I234
I235
F15
10 V / div DC
CUT_OFF
RES
BZM55-C5V6
RES
180R
GND_RGB
6302
3340
I233
220R
3339
220R
3338
220R
F114
10µs / div
9501 A4
9502 C4
9503 E4
9504 B14
9505 B15
9506 G10
9507 H8
F017 E10
F018 E10
F019 D10
F020 F10
10
F021 H14
F101 B2
F102 B2
F103 C1
F104 B1
F105 B1
F110 H3
F111 H3
F113 G1
F124
F7
F019
F8
F018
F9
F017
F020
9301
*
GND_LS1
9506
*
GND_LS1
10n
2357
GND_RGB
10 11
F114 F10
F115 H14
F116 A13
F117 D1
F118 D1
F119 B1
F120 C2
F121 B2
F123 C1
F124 C11
F125 H3
11 12 13 14 15
1435
1
1298-H
11
CB
1237-I
12
CB
1298-C
6
CG
1237-D
7
CG
1298-E
8
CR
1237-F
9
CR
1237-G
10
H1
1298-F
9
H1
1298-G
10
H2
1298-I
I293
12
GND
9302
*
1237-B
I295
5
GND
3346
*
1298-J
13
GND-BL
1237-H
11
H2
+8V_+12V
CRT THOMSON
F126 D1
F127 D1
F128 E1
F129 E1
I201 B3
I202 B3
I203 A4
I204 C7
I205 A2
I206 C2
I207 E2
I245
I208 D3
I209 D3
I210 C4
I211 E9
I212 F9
I213 F9
I214 G13
I215 F3
I216 F3
I222 G3
I223 G4
3305
I246
1R
I225 G5
I226 G5
I227 H5
I229 G6
I231 G3
I232 H5
I233 D10F109 D5
I234 E10
I235 E10
I236 D9F112 H4
I237 E9
9315
5308
5u6
I244
2347
GND_RGB
5303
5u6
470u
GND_X
F116
470u
2358
2348
GND_RGB
2359
GND_X
I238 E9
I239 B9
I240 B9
I241 B9
I244 A12
I245 A12
I246 A12
I248 G12
I249 G13
I250 G13
I251 H14
10n
+8V-SVM
10n
I253 G2
I254 G9
I258 B1
I260 A6
I261 A6
I263 C6
I264 C6
I266 E6
I267 E6
I268 E7
I269 A7
GND_SSB
+8V
GND_LS1
GND_LS1
GND_RGB
AQUADAG
1099
Blue
Green
Red
VG1
VG2
FOCUSB
FOCUSA
I248
3334
+8V
1K
2318
GND_RGB
1298-B
I249
3349
1K
22n
3348
6503
9404
I214
BYD33D
V
1237-C
2322593
1298-D
7
6
5
G1
G1
1
8
G2
G2
SG1
1298-A
1237-E
I250
3347
1K5
* DEPENDANT ON PICTURE TUBE FORMAT
12 13 14 15
1298-K
I251
2324
I270 A2
I271 B2
I272 B4
I273 B5
I274 A5
I275 A5
I276 C2
I277 D2
I278 D4
I279 D5
I280 C5
9504
2
SG2
*
F021
Circuit Diagrams and PWB Layouts
Item
28" WSRF
29" RF
32" WSRF
34" RF
36" WSRF
DESCRIPTION
5300 X X X Transformer 9310 X X Wire
9311 X X Wire
[F2] CRT autoscavem
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CRT/ Auto SCAVEM Panel

1483 C9
2410 C2
2411 B2
2420 B4
2428 D6
2430 C1
2431 C2
2435 D7
2436 A5
2437 D4
2438 B4
2439 B6
2445 C8
3310 C9
3356 C8
3410 A5
3411 B5
3412 D5
3413 E5
3416 C6
3417 C6
3422 D4
3423 B4
3424 B4
3425 B4
3448 B6
3449 C6
3451 C2
3453 B3
3454 D6
3456 B3
3458 B5
3459 B2
3460 D5
3465 C7
CRT AUTOSCAVEM
A
B
Y-SCAVEM_In
FROM F1
1940
C
BAS316
BAS316
GND_X
6432
6431
GND_X
I137
2430
3p3
3459
100R
RES
I133
2431
GND_X
7422 BFS20
10p
3451
GND_X
22n
2411
I135
1K
22n
2410
I140
D
3471 C6
3473 A7
3474 D3
3478 E7
3488 C3
3453
RES
3456
9409
3474
GND_X
I178
10K
I149
3K3
10K
7428 BC857B
RES
GND_X
3489 C3
3492 B4
5300 D8
5301 C8
6401 B7
I177
3489
I185
3488
+8V-SVM
7427 BC847B
I181
I182
10R
4R7
I187 I186
I180
6402 E7
6403 C7
6404 C7
6431 C1
6432 B1
3423
4R7
3492
10R
RES
7415 D7
7422 B2
7427 B3
7428 C3
2438
2n2
3424
2M2
I183
I184
I158
7429 C7
7430 C7
9311 D8
9312 C8
9406 C8
2420
2n2
3425
2M2
EN 74EM5.3A P/M AA 7.
I136
9407 E1
9408 E1
9409 C3
9410 E1
I127 E1
150V
3410
470R
56K
3411
56K
3412
3458
22R
I142
I128 C8
I129 D8
I130 A7
I131 B7
I132 B6
VSVM
2436
GND_Y
I179
22u
I139
I133 B2
I134 C6
I135 C3
I136 A5
I137 B1
GND_Y
GND_Y
22n
2439
22n
I138 C6
I139 B5
I140 D3
I141 D5
I142 C5
2428
VSVM
22K
18K
18K
I144
22K
GND_Y
I132
I138
3448
34163417
3454
I143 D77414 A7
I145 D6
I147 E5
I148 C8
3449
1K2
3471
1K2
I134
I145
I149 B3
I150 A7
I151 A7
I152 E7
I153 E7
150V
BCP53 7414
BCP53
7430
7429 BCP56
I150
VSVM
3473
I155 E1
I157 E4
I158 B4
I161 A7
I162 E7
I151
1R
I130
I161
I131
I143
BAS316
6404
6403
I167
6401
BAS316
I175
BAS316
GND_Y
I163 E7
I167 D7
I175 C7
I177 B3
I178 C3
100R
2435
3465
22n
9406 5301
RES
I179 A5
I180 B3
I181 B3
I182 B3
I183 B4
2445
5300 S13974
I190
I148
10p
I184 B4
I185 C3
I186 C3
I187 C3
I188 D1
9312
RES
56
3
110
9311 RES
I128
3356
I129
I189 E1
I190 D8I144 C6
1K0
3310
SC3
1K0
987654321
A
B
TO
SCAVEM
1483
1
2
3
C
D
9410
GND_XGND_X
E
9408
I188
GND_Y
I155
I127
GND_X
8204_000_6570.3
9407
GND_RGB
I189
3422
4R7
I157
2437
2n2
3413
GND_Y
I141
470R
3460
22R
I147
7415 BCP56
3478
I153
GND_Y
I152
I162
1R
BAS316
I163
6402
E
CL 36532017_031.eps
140403
987654321
Circuit Diagrams and PWB Layouts
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Layout CRT / Auto SCAVEM Panel (Top Side)

EN 75EM5.3A P/M AA 7.
3104_303_3819.3
CL 36532017_043.eps
230403
0031 A1 0033 A1 0035 A2 1237 A3 1298 C3 1424 B1 1434 B4 1435 B2 1483 C1 1940 A4 2313 B1 2317 A4 2319 B2 2320 A2 2324 A4 2338 A1 2339 A2 2340 A2 2347 A3 2357 A1 2358 C4 2403 B1 2404 B2 2405 B2 2436 C3 2512 B1 3301 C4 3303 C3 3304 B2 3305 A4 3334 A4 3338 A3 3339 B2 3340 B2 3341 B1 3345 B1 3346 B4 3347 B4 3348 B4 3349 B4 3350 A2 3351 A1 3352 A2 3401 B2 3402 B1 3403 B2 3404 B1 3473 C3 3478 C2 3510 A2 3520 A1 3530 A2 3544 A1 5300 C1
5301 C2 5303 B4 5304 B2 5308 A4 5309 C1 5310 C1 5400 B1 5500 A4 5501 A3 5502 A3 6400 B2 6405 B2 6406 A2 6426 A2 6427 A1 6428 A2 6503 B4 7330 A2 7340 A1 7350 A2 9304 A2 9309 A1 9311 C1 9312 C1 9320 C4 9321 B4 9407 A4 9416 B1 9417 C3 9418 C3 9423 A4 9424 A3 9430 A3 9431 A1 9435 A2 9436 A4 9451 B2 9460 C2 9461 C4 9462 C3 9463 C4 9464 C2 9506 B3 9507 B1
Circuit Diagrams and PWB Layouts
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Layout CRT / Auto SCAVEM Panel (Bottom Side)

EN 76EM5.3A P/M AA 7.
3104_303_3819.3
CL 36532017_044.eps
230403
2301 A1 2302 A2 2303 A2 2312 A3 2318 B1 2341 A4 2342 A2 2348 A2 2359 C1 2407 A1 2408 B4 2409 B4 2410 C1 2411 C1 2420 C2 2428 C2 2430 C1 2431 C1 2435 C3 2437 C2 2438 C2 2439 C2 2445 C4 2501 A1 2502 A1 2503 A1 2504 A2 2505 A2 2506 A3 2510 A3 2511 A4 2514 A1 3310 C4 3356 C4 3410 C2 3411 C2 3412 C2 3413 C2 3416 C2 3417 C2 3422 C2 3423 C2 3424 C2 3425 C2 3448 C2 3449 C2 3451 C1 3453 C1 3454 C2 3456 C1 3458 C2 3459 C1 3460 C2 3465 C4 3471 C2 3474 C1 3488 C1 3489 C1 3492 C1
3501 A1 3502 A1 3503 A1 3504 A1 3505 A1 3506 A2 3507 A2 3508 A2 3509 A2 3511 A1 3512 A2 3513 A2 3514 A2 3515 A3 3516 A3 3517 A3 3518 A2 3519 A2 3521 A2 3522 A2 3523 A2 3524 A2 3525 A2 3526 A2 3527 A2 3528 A2 3529 A3 3531 A2 3532 A2 3533 A2 3534 A2 3535 A2 3536 A1 3537 A2 3538 A1 3539 A1 3540 A1 3541 A1 3542 A2 3543 A2 3545 A1 3546 A2 3547 A2 3999 A4 5305 A1 6301 A3 6302 A3 6303 A4 6305 A3 6306 A4 6307 A3 6401 C2 6402 C3 6403 C4 6404 C2 6407 A3 6420 A3 6421 A4 6422 A2
6430 A4 6431 C1 6432 C1 6500 A1 6501 A1 6502 A1 7414 C3 7415 C3 7422 C1 7427 C1 7428 C1 7429 C3 7430 C2 7500 A1 7501 A2 7502 A1 7503 A1 7504 A2 7505 A2 7506 A2 7507 A3 7508 A3 9300 B4 9301 B2 9302 B3 9303 A3 9305 A3 9306 A4 9307 A4 9308 A4 9310 A1 9314 A4 9315 A1 9322 A1 9323 A2 9324 A2 9325 A3 9401 B3 9402 A1 9403 C4 9404 B1 9406 C4 9408 C2 9409 C1 9410 C1 9428 A1 9432 A3 9437 A3 9450 A2 9452 B3 9453 B3 9501 A1 9502 A2 9503 A2 9504 B3 9505 A2
Circuit Diagrams and PWB Layouts
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DC Shift Panel

DC-SHIFT
N.C.
318
1
2
9493
1430
400mA
MP
317
1
2
5493
43
CU15
2493
68n
2
1
6432
6430
BYD33V
TO 1419
I
DAF
40
BY228/20
2430
470p
5430
2431
470p
6431
6433
BY228/20
BYD33V
A
B
EN 77EM5.3A P/M AA 7.
Personal Notes:
317 B1 318 A1 1430 A3 2430 B3 2431 B4 2493 B2 5430 A3 5493 B2 6430 B3 6431 B4 6432 B3 6433 B4
3104 303 3654.5

Layout DC Shift Panel

317 A3 318 A2 1430 A2
1234
2430 A2 2431 A1 2493 A3
5430 A1 5493 A3 6430 A2
6431 A2 6432 A2 6433 A2
E_14600_047.eps
250304
9493 A3
C
3104 303 3654.5
E_14600_048.eps
250304
E_06532_012.eps
131004
Circuit Diagrams and PWB Layouts
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VDAF Panel + 2nd Orders

1 23456789
+
VDAF
2ND ORDERS
A
3821
47K
2820
100n
I413
I425
B
2892
FROM :
EMG
EMG STAR
1693
1693
F411
1
3818
4K7
I420
2818
10n
3828
100K
0393
C
I424
3819
7818 BC847B
4K7
3820
3K3
I426
7820 BC847B
D
TO
DEFLECTION
COIL
1418
2
1
F402
FROM : EMG
0317
EMG STAR
1417
E
TO
0318
F
DC-SHIFT
1417
1419
1
2
F405
1
2
I403
8204 000 6492.4
1 23456789
9803
5801
43
CU15
12
2821
68n
F401
F404
9800
9804
I404
I400
6
1R
3897
I402
5
-2ND ORDER S-
-VERTICAL DAF-
3823
3822
4K7
4u7
3824
4K7
I417
BC857B 7821
1
2
34
S21975
5800
1K8
I1
2824
10u
I418
3826
3827
2800
330p
V_Parabool
2822
100n
I412
3830
47K
2823
I419
4K7
7822
I423
5K6
BC847B
-HORIZONTAL DAF-
RES
2803
330p
2890
4u7
3833
3831
4K7
270p
4K7
EN 78EM5.3A P/M AA 7.
I405
3832
I411
BC857B 7823
RES
2891
1K8
I2
330p
2825
1u
2809
I429
3898
3899
F403
I406
I415
6812
VV
I401
3809
10R
100u
3813
470K
BZX79-C22
2322592
2322592
3811
4M7
I416
3815
1K
I422
9805
3805
4M7
VDAF SIGNAL
I414
7810
STP3NB80
1
I421
I407
I408
2
3
3816
3812
470K
I3
4K7
27K
2812
3814
100K
2813
3810
DAF OUTPUT
DAF GND
2816
220p
6810
BYD33V
10n
9806
10u
11V DC
RES
I409
43
5810
I427
2814
I410
12
CU15
V_Parabool
1n
1490
1
3808
15R
3807
I428
15R
F410
F406 F407
F400
F409
3998
100R
F408
1
2
3
1
2
1492
1497
1491
1
FROM :
EMG STAR
EMG 0392
TO dynamic
focus input
of LOT
TO
1491
E_14600_030.eps
1492
220304
A
B
C
D
E
F
1417 E1 1418 D1
1419 F1 1490 C8
1491 E9 1492 A9
1497 D9 1693 C1
2800 E4 2803 E4
2809 A5 2812 A7
2813 C7 2814 B8
2816 A7 2818 C1
2820 A3 2821 F2
2822 A5 2823 B4
2824 C4 2825 B5
2890 E5 2891 E5
2892 B3 3805 D6
3807 A8 3808 A8
3809 A6 3810 A7
3811 B6 3812 C7
3813 C6 3814 B7
3815 B6 3816 C7
3818 C1 3819 B2
3820 C2 3821 A3 3822 A3
3823 A3 3824 B3
3826 C4 3827 C4
3828 C1 3830 B4
3831 B5 3832 A5
3833 C5 3897 E2
3898 D5 3899 E5
3998 C9 5800 E3
5801 F2 5810 A8
6810 A7 6812 C6
7810 B7
7818 C2 7820 C3
7821 C3 7822 C5
7823 C5 9800 D2
9803 F2 9804 E2
9805 D6 9806 B7
F400 D9 F401 D2
F402 E1 F403 F6
F404 F2 F405 F1
F406 C8 F407 C9
F408 A9 F409 A9
F410 B8 F411 C1
I400 D2 I401 E6
I402 E2 I403 F1
I404 F2 I405 A5
I406 A6 I407 A7
I408 A7 I409 A7
I410 A8 I411 A5
I412 B5 I413 A3
I414 B7 I415 B6
I416 B6 I417 C3 I418 C4
I419 C4 I420 C1
I421 C7 I422 C6
I423 C4 I424 C2
I425 B2 I426 B3
I427 B8 I428 A8
I429 D6
Circuit Diagrams and PWB Layouts
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EN 79EM5.3A P/M AA 7.

Layout VDAF Panel (Top Side)

3104 303 3748.4
E_14600_031.eps
230304
1417 A1 1418 A1 1419 A1 1490 C2 1491 A3 1492 C3 1497 A3 1693 B3 2800 A3 2803 A3 2809 B3 2812 C2 2813 C3 2814 B3 2816 C3 2820 B3 2821 B1 2822 B3 2823 B3 2824 B3 2825 B3 2890 A3 2891 A3 2892 A3 3805 A3 3807 C3 3808 C3 3809 B3 3810 B3 3811 B3 3812 C3 3813 C3 3814 B3 3815 B3 3816 C3 3897 A2 3898 A3 3899 A3 3998 B1 5800 A2 5801 A1 5810 B2 6810 C2 6812 B3 7810 B3 9800 B3 9803 A2 9804 A2 9805 A3 9806 B2

Layout VDAF Panel (Bottom Side)

3104 303 3748.4
E_14600_032.eps
230304
2818 B1 3818 B1 3819 A1 3820 A1 3821 A1 3822 A1 3823 B1 3824 B1 3826 B1 3827 B1 3828 B1 3830 B1 3831 B1 3832 B1 3833 B1 7818 B1 7820 A1 7821 B1 7822 C1 7823 C1
Circuit Diagrams and PWB Layouts
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Jack-High Defenition Interface Panel: Control

456789123
N1 N1
CONTROL JACK-HIGH DEFINITION INTERFACE
A
9100
R-Matrix
R-OUT
9101
G-Matrix
G-OUT
9102
B-Matrix
B
C
B-OUT
R-Matrix
N2-
G-Matrix
N2-
G
B-Matrix
N2-
B
R
2101
22u
2105
22u 6.3V
2109
22u 6.3V
8Vvideo
6.3V
2103
22u
6.3V
2107
6.3V
22u
2111
22u 6.3V
10K
3106
D
3107
4K7
IO-21
E
RGB-OUTPUT SELECTION
R1-IN
R2-IN
G1-IN
G2-IN
B1-IN
B2-IN
VD1-IN
VD2-IN
HD1-IN
HD2-IN
HD-S-SIG-DET
C-V-IN
CTL
4
20
VCC
1
2
1
2
1
2
1
2
1
2
DET
SYNC SEPA
LOGIC
GROUND
6810
C-S-OUT
I128
2122
10n
2123
10n
7101 BA7657F
1
7
3
9
5
11
12
13
24
23
2
18
16
MATRIX-SELECTION
G-OUT
VD-OUT
HD-OUT
F
22u
2115
2119
2125
6.3V
6.3V22u
6.3V22u
8Vvideo
3100
3102
2117
2121
22u
2127
10K
4K7
5Vs
8Vvideo
6.3V22u
6.3V
6.3V22u
2147
2148
N4-
RN
RA
N4-
N4-
GN
GA
N4-
BN
G
H
I
N4-
N4-
BA
NO-FBL
N3- YPbPr
IO-1
N2-N3
N2-N4
7107 BA7657F
1
7
3
9
5
11
12
13
24
23
2
10n
18
10n
16
R1-IN
R2-IN
G1-IN
G2-IN
B1-IN
B2-IN
VD1-IN
VD2-IN
HD1-IN
HD2-IN
HD-S-SIG-DET
C-V-IN
CTL
468
20
VCC
1
2
1
2
1
2
1
2
1
2
DET
SYNC SEPA
LOGIC
GROUND
G-OUT
VD-OUT
HD-OUT
C-S-OUT
10
8204 000 6039.7
1234
R-OUT
B-OUT
R-OUT
B-OUT
5Vs
2113
5Vs
2130
EN 80EM5.3A P/M AA 7.
10 11
5Vs
3108
100K
3109
100K
I124
SWITCH-IC
7102-A
74HC4052D
16
VCC
VEE
GND
0
1
2
3
100K
0
1
G4
MDX
7
1
5
2
4
3110
10
9
68
3
3111
BC857B 7109
I125
10K
5Vs
3126
10K
I127
3112
100K
3127
22K
3150
7108 PMBT2369
7110 BC847B
I119
22R
N2-
V-OUT
NO-FBL-RGB
IO-3 IO-5 IO-4
220n
3113
21
10R
10p
2141
3114
19
10R
3115
15
10R
14
22
17
2143
10p 2142
3101
10p
1K
3103
1K
3105
3104
1K
2K2
R-OUT
N2-
G-OUT
N2-
B-OUT
N2-
N2-
V-770
N3-
N2-
V
I123
2102
470n
I122
2104
470n
FBL
IO-3 IO-5 IO-4
SWITCH-IC
74HC4052D
16
VCC
7
VEE
GND
12
MDX
0
14
1
15
2
11
3
SHIFT
REG
DATA LATCHES
I/O PORT
D0
7102-B
0
1
G4
1514
CS2
CHIP SELECT
C BUS
TRANSCEIVER
88
8
OUTI/OIN
888
D3
7D49D510 11
10
9
68
2131
I111 I112
2
CS0
I
PWR
RES
D6
12
7106
M62320
SCL 2
SDA 3
VDD 13
GND 8
D7
100p
3124
1K
13
5Vs
16
CS1
3125
10K
2140
2134
2135
100p
47p
47p
(Res)
3130
100R
3132
100R
N2-
3151
100R
I120
7105 PMBT2369
5Vs
2132
N2-
N2-
100n
H-OUT
SCL
SDA
E_14600_067.eps
091204
220n
9103
N3-
N2-
N3-
H-770_3
H
H-770_2
5Vs
2133
100n
I/O-expander
9108
5Vs
3139
9110
4K7
RES
3141
3142
4K7
RES
4K7
RES
3143
3144
4K7
RES
4K7
RES
3119
1
RES
I100
I101
I102
I103
I104
I106
4K7
SO
4D15D26
3116
21
10R
3117
19
10R
3118
15
10R
14
22
17
F100
R-Matrix
1K
10p
2144
3129
F101
G-Matrix
B-Matrix
2K2
IO-22
IO-1
IO-21
IO-3
IO-4
IO-5
N2-
N2-
N2-
IO-6
IO-7
IO-8
9107
9109
9106
9111
2145
2146
567891011
1K
3131
F102
10p 10p
1K
3133
3152
A
B
C
D
E
F
G
H
I
2101 B2 2102 C7 2103 B2 2104 D7 2105 C2 2107 B2 2109 C2 2111 C2 2113 A4 2115 F2 2117 F2 2119 G2 2121 G2 2122 D3 2123 D3 2125 G2 2127 G2 2130 F4 2131 E9 2132 G10 2133 E8 2134 F10 2135 G10 2140 F10 2141 B5 2142 C5 2143 D5 2144 G5 2145 G5 2146 H5 2147 H3 2148 H3 3100 H2 3101 B5 3102 H2 3103 C5 3104 D5 3105 D5 3106 D2 3107 D2 3108 C8 3109 D8 3110 C8 3111 C9 3112 D9 3113 B5 3114 B5 3115 C5 3116 F5 3117 G5 3118 G5 3119 G8 3124 F9 3125 F10 3126 B9 3127 C10 3129 G5 3130 F10 3131 G5 3132 G10 3133 H5 3139 G7 3141 G7 3142 G7 3143 G7 3144 G8 3150 B10 3151 E10 3152 I5 7101 B3 7102-A A9 7102-B E9 7105 E10 7106 F9 7107 F3 7108 B10 7109 C9 7110 D10 9100 A2 9101 B2 9102 B2 9103 E6 9106 H7 9107 G6 9108 G7 9109 G6 9110 G7 9111 H7 F100 F5 F101 G5 F102 G5
I100 H8 I101 H8 I102 H8 I103 H8 I104 H8 I106 I8 I111 E9 I112 E10 I119 B10 I120 E11 I122 D8 I123 C8 I124 C8 I125 C9 I127 D9 I128 E3
Circuit Diagrams and PWB Layouts
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Jack-High Defenition Interface Panel: Inputs / Outputs

12345678910111213
INPUTS/OUTPUTS JACK-HIGH DEFINITION INTERFACE
N2 N2
A
AV3
( YPbPr )
B
C
D
DB15
1990
AV3
( RGB )
E
F
G
AV4
( YPbPr )
H
I
J
8204 000 6039.7
1993-A
F900
F902
F901
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
1617
F943
F944
F945
12
34
56
12
34
56
F903
Pr1-in
1993-B
Pb1-in
1993-C
Y1-in
1994-A
Pr2-in
1994-B
Pb2-in
1994-C
Y2-in
12
1904
1916
1917
1918
1901
1903
1902
1905
1920
1921
1922
F907
F904
1906
H-in
V-in
F946
F947
F948
I900
I902
I901
R-in
G-in
B-in
I921
I922
I923
6900
6901
6904
6905
6902
6903
F912
F913
F914
6918
6919
6920
6921
6922
6923
BZX384-C6V8
75R
3900
BZX384-C6V8
BZX384-C6V8
75R
3902
BZX384-C6V8
BZX384-C6V8
75R
3901
BZX384-C6V8
BZX384-C6V8
75R
3920
BZX384-C6V8
BZX384-C6V8
75R
3921
BZX384-C6V8
BZX384-C6V8
75R
3922
BZX384-C6V8
YPbPr-SELECTION
1907
1908
F915
F916
I911
I912
2907
2910
2912
6906
6907
6908
6909
29066.3V22u
6.3V22u
6.3V22u
2908
6.3V22u
2911
6.3V22u
6.3V22u
BZX384-C6V8
3905
BZX384-C6V8
BZX384-C6V8
3906
BZX384-C6V8
1K
1K
2935
33n
9923
9915
9924
9917
9925
9916
345678910
2900
2901
3903
100R
47p
47p
2152
2153
10n
10n
3904
100R
3955
EN 81EM5.3A P/M AA 7.
1104 B13 1304 A13 1680 F13 1901 B1
N1-
R
N1-
G
N1-
N1-N4-
N1-N3-N4-
N1-N4-
I910
I913
GND-A
GND-A
GND-AGND-A
GND-A
B
3R3
R-OUT
G-OUT
B-OUT
FBL
H-OUT
V-OUT
0V
SDA
SCL
+5V2
+8V6
F937
1
2
3
4
5
6
7
1
2
3
4
5
GND-A
F935
F936
1304
1104
8Vaudio
3933
7903 BC847B
SND_R_OUT
GND
SND_L_OUT
4K7
F908
TO CON 1304
(VIDEO CONTROL, HOP)
TO CON 1951
OR
TO CON 1104
3D-COMB MODULE
I939
1680
1
2
3
4
GND
5
N.C.
6
N.C.
3999
68K
E_14600_068.eps
TO CON 1680
(AUDIO)
F909
091204
3940
1R5
3932
82K
22K
GND-A
22K
GND-A
22K
GND-A
22K
GND-AGND-A
8Vd
RES
RES
RES
RES
GND-A
8Vvideo
N1-N4
F934
F933
F932
F931
F930
F929
9905
5900
5u6
22u
2928
I904
5901
5u6
22u
2938
AUDIO-SELECTION
7902-B
HEF4053BT
Y0
2
Y1
1
Vee8Vss
7
GND-A
GND-A
7902-A
HEF4053BT
Y0
12
Y1
13
Vee8Vss
7
GND-A
GND-A
I946
7902-C
HEF4053BT
Y0
5
Y1
3
Vee8Vss
7
GND-A
GND-A
11 12 13
2918
2u2
2919
2u2
9904
2916
2u2
2917
2u2
9903
GND-A
I940
E
6
GND-A
8Vaudio
E
6
GND-A
8Vaudio
E
6
GND-A
I937
F906
8Vaudio
GND-A
16
Vdd
S
Z
16
Vdd
S
Z
16
Vdd
S
Z
8Vaudio
10
15
11
14
9
4
3941
2R2
2929
GND-A
I949
5902
5u6
22u
F938
F939
F940
F941
I938
F942
3942
F917
2915
100n
GND-A
GND-A
GND-A
N1-
N1-
N1-
N1-
PR
N1-
N1-
N1-
Y
N1-
5Vs
I931
I914
I933
I920
N1-
6924
6914
6915
6926
6927 6925
6916
6917
N1-N3
I903
8Vs
N3
IO-7
3926
1K
BZX384-C6V8
BZX384-C6V8
3909
1K
BZX384-C6V8
BZX384-C6V8
3929
1K
BZX384-C6V8
BZX384-C6V8
3912
1K
BZX384-C6V8
BZX384-C6V8
PB
N1-
IO-7
N1-
N1-
F949
1923
GND-A
F921
1913
GND-A
F950
1924
GND-A
F924
1912
GND-A
2914
I930
2920
I908
2904
I932
2921
I918
2905
22u
2939
100p
GND-A
100p
GND-A
100p
GND-A
100p
5903
5u6
9927
9910
9930
9913
F905
5904
5u6
22u
I941
3928
I944
3911
I945
3931
I948
3914
5Vs
7901
1
7
3
9
5
11
12
13
24
23
2
18
16
BA7657F
R1-IN
R2-IN
G1-IN
G2-IN
B1-IN
B2-IN
VD1-IN
VD2-IN
HD1-IN
HD2-IN
HD-S-SIG-DET
C-V-IN
CTL
468
20
VCC
1
2
1
2
1
2
1
2
1
2
DET
SYNC SEPA
LOGIC
GROUND
VD-OUT
HD-OUT
C-S-OUT
10
R-OUT
G-OUT
B-OUT
2913
220n
3120
21
10R
3121
19
10R
3122
15
10R
2151
2150
10p
14
22
17
2149
10p
9900
9901
9902
F951
3936
3935
1K
3934
1K
1K
F952
F953
10p
SIGNAL-DETECTION
1992-C
AV4
AV3
AV4
AV3
56
SND2_R_IN
GND-A
1991-C
F910
56
SND1_R_IN
GND-A
1992-B
F911
34
SND2_L_IN
1991-B
34
SND1_L_IN
GND-A
8Vd
820K
820K
2936
3947
3957
2u2
8Vd
3952
7904
BC857B
39K
22K
7906
BC857B
39K
2930
33n
3946
8Vd
10K
3956
7908
1K
6930
BC847B
BAS316
2932
33n
3951
8Vd
BC857B
3949
3948
3958
8Vd
3954
3953
7905
2K2
6K8
2931
3K9
6929
1PS76SB10 7909 BC847B
7907
BC857B
3K9
6K8
6928
1PS76SB10
2u2
2937
F919
2u2
2933
F918
100n
N1-
IO-6
6K8
3959
N1-
IO-8
A
B
C
D
E
F
G
H
I
J
1902 D1 1903 C1 1904 E1 1905 E1 1906 E1 1907 E3 1908 G3 1912 I8 1913 G8 1916 F1 1917 F1 1918 G1 1920 G1 1921 I1 1922 J1 1923 F8 1924 H8 1990 D1 1991-B I8 1991-C G8 1992-B H8 1992-C F8 1993-A A1 1993-B B1 1993-C C1 1994-A G1 1994-B H1 1994-C I1 2149 B7 2150 C7 2151 C6 2152 D4 2153 D4 2900 E4 2901 G4 2904 G9 2905 J9 2906 B4 2907 B4 2908 B4 2910 B4 2911 C4 2912 B4 2913 B6 2914 C9 2915 E12 2916 F10 2917 F10 2918 H10 2919 H10 2920 F9 2921 H9 2928 D10 2929 D12 2930 F5 2931 G7 2932 I5 2933 J7 2935 H4 2936 H5 2937 H7 2938 D10 2939 D9 3120 B6 3121 B6 3122 C6 3900 B2 3901 D2 3902 C2 3903 E4 3904 F4 3905 E4 3906 G4 3909 G9 3911 G10 3912 I9 3914 J10 3920 G2 3921 I2 3922 J2 3926 F9 3928 F10 3929 H9 3931 H10 3932 E10 3933 D13 3934 B7 3935 C7 3936 C7 3940 C10
3941 C12 3942 D12 3946 G5 3947 G6 3948 G6 3949 G6 3951 J5 3952 J6 3953 J6 3954 J6 3955 H4 3956 H5 3957 H6 3958 H6 3959 H7 3999 H13 5900 C11 5901 D11 5902 D12 5903 C9 5904 D10 6900 A2 6901 B2 6902 D2 6903 D2 6904 C2 6905 C2 6906 E3 6907 F3 6908 F3 6909 G3 6914 G9 6915 G9 6916 I9 6917 J9 6918 G2 6919 H2 6920 H2 6921 I2 6922 J2 6923 J2 6924 F9 6925 F9 6926 H9 6927 I9 6928 G7 6929 H7 6930 H5 7901 B5 7902-A G11 7902-B F11 7902-C H11 7903 E13 7904 F6 7905 F6 7906 I6 7907 I6 7908 H5 7909 H6 9900 B7 9901 B7 9902 B7 9903 F10 9904 I10 9905 B11 9910 G10 9913 I10 9915 B3 9916 C3 9917 B3 9923 B3 9924 B3 9925 B3 9927 F10 9930 H10 F900 A1 F901 C1 F902 B1 F903 A1 F904 C1 F905 C10 F906 C11 F907 B1 F908 H13 F909 H13 F910 G8 F911 H8 F912 E2 F913 E2 F914 E2 F915 E3 F916 F3 F917 D12 F918 G7
F919 J7 F921 G8 F924 I8 F929 B10 F930 B10 F931 B10 F932 B10 F933 A10 F934 A10 F935 F13 F936 F13 F937 F13 F938 B12 F939 C12 F940 C12 F941 C12 F942 C12 F943 G1 F944 H1 F945 I1 F946 G1 F947 H1 F948 I1 F949 F8 F950 H8 F951 B7 F952 B7 F953 C7 I900 B2 I901 D2 I902 C2 I903 C9 I904 D10 I908 G9 I910 E8 I911 E3 I912 F3 I913 E8 I914 G9 I918 I9 I920 I9 I921 G2 I922 I2 I923 J2 I930 F9 I931 F9 I932 H9 I933 H9 I937 C11 I938 C12 I939 E13 I940 E11 I941 F10 I944 G10 I945 H10 I946 H11 I948 I10 I949 D12
Circuit Diagrams and PWB Layouts
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家电维修资料网
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EN 82EM5.3A P/M AA 7.

Jack-High Defenition Interface Panel: Sync Slicer

2700 A3 2701 B1 2702 B4 2703 C3 2704 D2
2705 C2 2706 D1 2707 C1 2713 C4 2714 C3
N3 N3
A
SYNC SLICER JACK- HIGH DEFINITION INTERFACE
5Vs
IO-22
N1-N2-N4-
N1-
Y
V-770
B
C
F701
1PS76SB10
D
E
N1-N2
2715 D3 2716 A1 2717 A2 3701 B4 3702 B2
123 4
BC857B
7752
I703
2M2
3720
F700
5Vs
6701
2706
470p
2716
3707
680R
22n
2707
3704
1K
3705
5Vs 5Vs
3703
5Vs
2701
100n
8K2
I704
15K
100n
I701
1PS76SB10
3702
3703 D1 3704 C1 3705 C1 3707 B1 3715 C3
I702
2717
6700
10K
2705
2704
3716 C4 3717 D4 3718 D3 3719 A2 3720 A1
3719
100K
1n
7700 LM1881M
1
2
F704
3
4
5Vs
5Vs
7750-A 74HCT4538
1
CX
220p
RCX
4
>
1
57
3
R
7750-B 74HCT4538
15
CX
220p
RCX
12
>
1
11 9
13
R
CSYNC
VIN
VSYNC
GND
16
8
16
8
6700 B2 6701 C1 7700 B2 7713 C4 7750-A C2
O|E-FI
RSET
BG|BP
2703
62
F702
1014
F703
I715
VS
100n
9701
9702
(Res)
N2
8Vs
F
H-770_2
N1-
8204 000 6039.7
123 4
8
7
6
5
H-770_3
N1-
7750-B D2 7751-A C4 7751-B D4 7752 A1 9701 E3
2700
100n
5Vs
33K
2714
3715
5Vs
27K
2715
3718
9702 E3 F700 B1 F701 C1 F702 C3 F703 E3
8Vs
2702
100n
3701
330K
7751-A
74HCT4538
1
CX
1n
RCX
4
>
57
3
R
7751-B
74HCT4538
15
CX
1n
RCX
12
>
11 9
13
5Vs
R
F704 B2 F705 D4 F706 C4 I701 B1 I702 A2
5Vs
2713
100n
16
F706
62
1
8
5Vs
16
1
8
I719
3716
3717
F705
1014
E_14600_069.eps
I703 A1 I704 C1 I715 E3 I719 E4
22K
22K
BC847B
7713
YPbPr
N1-
091204
NO-FBL

Jack-High Defenition Interface Panel: Matrix

12 3
MATRIX JACK-HIGH DEFINITION INTERFACE
N4 N4
2405
PR
N1-N2-
A
A
2406
Y
B
B
C
D
E
F
C
D
E
F
N1-N2-N3-
N1-N2-
2403
N1-N2
PB
I413
I400
22u 6.3V
2407
8Vvideo
3424
6703
100n
BZX384-C3V9
8204 000 6039.7
3440
180R
6.3V22u 3433
22K
3441
180R
22K
3434
3442
180R
6.3V22u
22K
3435
470R
BAS316
Vref
F400
2408
6400
8Vvideo
12 3
100u
3417
820R
3423
1K1
8Vvideo
7451
BC847B
3430
I403
8Vvideo
7452
BC847B
3436
8Vvideo
7453
BC847B
3431
3419
Vref
3426
Vref
1K
1K
1K8
1K3 1K
Vref
I415
3401
820R
Vref
I405
Vref
Vref
3413
3414
560R
2K7 3429
3405
1K8
3409
1K5
1K0
I402
3402
1K3
3403
680R
I407
3406
1K3
3407
1K5
I409
3410
820R
3411
470R
I412
3415
470R
I416
3420
1K1
3422
2K7
I418
3427
1K3
5
6
I404
5
6
I408
10
9
I411
10
9
I414
12
13
I417
12
13
I419
8Vvideo
4
11
8Vvideo
4
11
8Vvideo
4
11
8Vvideo
4
11
8Vvideo
4
11
8Vvideo
4
11
7400-A
TSH93
3404
1K5
7450-A
TSH93
3408
3K0
3412
1K2
3416
1K2
3421
620R
3428
1K2
7400-B
TSH93
7450-B TSH93
7400-C
TSH93
7450-C
TSH93
2400
100n
RA
N1-
7
F401
100n
2404
RN
N1-
7
F402
N1-
BA
8
F403
BN
N1-
8
F404
GA
N1-
14
F405
GN
N1-
14
F406
E_14600_070.eps
091204
A
B
C
D
E
F
2400 A3 2403 F1 2404 B3 2405 A1 2406 B1 2407 C1 2408 F1 3401 A2 3402 A3 3403 A3 3404 A3 3405 B2 3406 B3 3407 C3 3408 C3 3409 C2 3410 C3 3411 D3 3412 D3 3413 D2 3414 D2 3415 E3 3416 E3 3417 E2 3419 E2 3420 E3 3421 E3 3422 F3 3423 F2 3424 E1 3426 F2 3427 F3 3428 F3 3429 F3 3430 A2 3431 C2 3433 A1 3434 B1 3435 C1 3436 B2 3440 A1 3441 B1 3442 C1 6400 F1 6703 E1 7400-A A3 7400-B C3 7400-C E3 7450-A B3 7450-B D3 7450-C F3 7451 A2 7452 B2 7453 C2 F400 E1 F401 A3 F402 B3 F403 C3 F404 D3 F405 E3 F406 F3 I400 E1
I402 A3 I403 A2 I404 A3 I405 B2 I407 B3 I408 C3 I409 C3 I411 D3 I412 D3 I413 D1 I414 D3 I415 E2 I416 E3 I417 E3 I418 F3 I419 F3
Circuit Diagrams and PWB Layouts
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EN 83EM5.3A P/M AA 7.

Layout Jack-High Defenition Interface Panel (Top Side)

3104 303 3769.7
E_14600_069.eps
091204
1104 D1 1304 B1 1680 D1 1990 C2 1991 B2 1992 C2 1993 B2 1994 D2 2101 A1 2102 A2 2103 A1 2104 A2 2105 A1 2107 A1 2109 A1 2111 A1 2113 A1 2115 A1 2117 A2 2119 A1 2121 A1 2122 A1 2123 A1 2125 A1 2127 A1 2130 A1 2131 A1 2132 A2 2133 A2 2134 A2 2135 A2 2140 A1 2141 A1 2142 A1 2143 A1 2144 A1 2145 A1 2146 A1 2147 A1 2148 A1 2405 A2 2406 A2 2407 A2 2408 A2 2700 A2 2701 A2 2702 A2 2707 A2 2716 A2 2717 A2 2906 C1 2907 C1 2908 C1 2910 C1 2911 C1 2912 C1 2913 C1 2914 A2 2915 D2 2917 D2 2919 D1 2928 A1 2929 D1 2930 C1 2931 C1 2932 D1 2933 C1 2935 C1 2936 B1 2937 B1 2938 A1 2939 A2 3100 A1 3101 A1 3102 A1 3103 A1 3104 B1 3105 A1 3106 A1 3107 A1 3108 A2 3109 A2 3110 A2 3111 A2 3112 A2 3113 A1 3114 A1 3115 A1 3116 A1 3117 A1 3118 A1 3119 A2 3124 A1 3125 A1 3126 B1 3127 B1 3129 A1 3130 D1 3131 A1 3132 D1 3133 A1 3139 A2 3141 A2 3142 A2 3143 A2 3144 A2 3150 B1
3151 B1 3152 A1 3433 A1 3434 A1 3435 A1 3440 A2 3441 A1 3442 A1 3701 A2 3702 A2 3707 A2 3719 A2 3720 A2 3911 D1 3914 D1 3932 D2 3933 D2 3941 A1 3946 C1 3947 C1 3948 C1 3949 C1 3951 D1 3952 D1 3953 C1 3954 C1 3955 C1 3956 B1 3957 B1 3958 B1 3959 B1 5900 A1 5901 C1 5904 A2 6700 A2 6928 C1 6929 B1 6930 B1 7101 A1 7102 A2 7105 B1 7106 A2 7107 A1 7108 B1 7109 A2 7110 A2 7700 A2 7752 A2 7902 D2 7903 D2 7904 C1 7905 C1 7906 D1 7907 C1 7908 B1 7909 B1 9100 A1 9101 A1 9102 A1 9103 A1 9106 A2 9107 A2 9108 A2 9109 A1 9110 A2 9903 D2 9904 D1 9910 D1 9913 D1

Layout Jack-High Defenition Interface Panel (Bottom Side)

3104 303 3769.7
E_14600_072.eps
091204
2149 C2 2150 B2 2151 B2 2152 C2 2153 B2 2400 A2 2403 A1 2404 A2 2703 A1 2704 A1 2705 A1 2706 A1 2713 A1 2714 A1 2715 A1 2900 C1 2901 C1 2904 B1 2905 B1 2916 D1 2918 D1 2920 C1 2921 C1 3120 C2 3121 B2 3122 B2 3401 A2 3402 A2 3403 A2 3404 A2 3405 A2 3406 A2 3407 A2 3408 A2 3409 A2 3410 A2 3411 A2 3412 A2 3413 A2 3414 A2 3415 A2 3416 A2 3417 A2 3419 A2 3420 A2 3421 A2 3422 A2 3423 A2 3424 A2 3426 A2 3427 A2 3428 A2 3429 A2 3430 A2 3431 A2 3436 A2 3703 A1 3704 A1 3705 A1 3715 A1 3716 A1 3717 A1 3718 A1 3900 B1 3901 B2 3902 B1 3903 B1 3904 B1 3905 C1 3906 C1 3909 B1 3912 B1 3920 D1 3921 D1 3922 D2 3926 C1 3928 D1 3929 C1 3931 D1 3934 C2 3935 B2 3936 B2 3940 A1 3942 D2 3999 D2 5902 D2 5903 A1 6400 A2 6701 A1 6703 A2 6900 B1 6901 B1 6902 B2 6903 B2 6904 B1 6905 B1 6906 C1 6907 C1 6908 C1 6909 C1 6914 B1 6915 B1 6916 B1 6917 B1 6918 C1 6919 D1
6920 C1 6921 D1 6922 C1 6923 D2 6924 C1 6925 C1 6926 C1 6927 C1 7400 A2 7450 A2 7451 A1 7452 A1 7453 A1 7713 A1 7750 A1 7751 A1 7901 C2 9111 A1 9701 A1 9702 A1 9900 B1 9901 B2 9902 B1 9905 D2 9915 C2 9916 C2 9917 C2 9923 C1 9924 C2 9925 C1 9927 D1 9930 D1
Circuit Diagrams and PWB Layouts
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Side I/O Panel

A
SIDE I/O
c/ 16/9
3845
4K7
1806
Y
2807
220n
4
3
2
1
6807
BZX284-C6V8
SVHS
6808
B
1328
YKF51-5564
5
BZX284-C6V8
1805
6801
1
CVBS
C
1326-A
2
CVBS
BZX284-C6V8
6802
BZX284-C6V8
L
R
4
7
5
4
2
3
7
8
1
GND_AUD
6
4800
1327
5
89
4801
GND_AUD
GNDB
1801
GND_AUD
GND_AUD
1800
GND_AUD
GNDB
2840
GNDB
2841
BZX284-C10
BZX284-C10
680p
1802
GNDB
680p
1803
6803
6804
BZX284-C10
6805
6806
BZX284-C10
1326-B
D
1326-C
E
HEADPHONE-OUT
F
YKB21-5101A
GNDB
GNDB
75R
3802
2803
2806
1804
GNDB
3828 120R
3829 120R
3801
680p
680p
75R
3816
3815
3805
3806
3809
39R
39R
33K
GND_AUD
33K
GND_AUD
2810
3812
3810
3830
GNDB
10K
3846
33n
150K
680K
3847
10K
3803
1K
3804
1K
2834
10K
3808
10n
GNDB
+8V6
2804
2805
7811 BC857B
3811
100p
100p
39K
7813 BC847B
2811
100u
3826 120R
3827 120R
EN 84EM5.3A P/M AA 7.
+8V6
5K6
3848
3K3
3849
3K9
3835
GND_AUD
+8V6
3842
GNDB
4803
7812 BC857B
3813
3814
10K
3K9
2K2
2832
GNDB
2u2
10n
9800
9810
2813
GNDB
4804
RES (SDM-EMG_S)
3999
150R
16/9
+8V6
Y
C
L
DETECT
R
DETECT
SOUND L-HEADPHONE-OUT
SOUND R-HEADPHONE-OUT
L
R
SOUND R-HEADPHONE-OUT
GNDB
SOUND L-HEADPHONE-OUT
5800
100u
GND
Y
C
L
R
GNDB
GND_AUD
10
11
10
11
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
1
2
3
1
2
3
1333 EH-B
1936 EH-B
1346
EH-B
1344 EH-B
9
GND
GND
GND
9
FROM/TO
0333
OF
FROM/TO
1936
OF
A8
(LSP SSP)
FROM/TO
0346
OF
( DOUBLE WINDOW )
FROM/TO
0344
OF
CL 36532017_050.eps
240403
A
B
C
D
E
F
1326-A C1 1326-B C1 1326-C D1 1327 E2 1328 B1 1333 A9 1344 F9 1346 E9 1800 E2 1801 C2 1802 F2 1803 F2 1804 E3 1805 B2 1806 A2 1936 C9 2803 C3 2804 C4 2805 D4 2806 D3 2807 A3 2810 B4 2811 B5 2813 C6 2832 E6 2834 F4 2840 F2 2841 F2 3801 A3 3802 C3 3803 C4 3804 D4 3805 C3 3806 D3 3808 B4 3809 A3 3810 C4 3811 C4 3812 B4 3813 B5 3814 C5 3815 C3 3816 B3 3826 E5 3827 E5 3828 F3 3829 F3 3830 F4 3835 D5 3842 E5 3845 A3 3846 A4 3847 A4 3848 A5 3849 A5 3999 F7 4800 D2 4801 D2 4803 F5 4804 C6 5800 A8 6801 B3 6802 C2 6803 C3 6804 D2 6805 D3 6806 E2 6807 A3 6808 B2 7811 B4 7812 B5 7813 A5 9800 F6 9810 B6
Circuit Diagrams and PWB Layouts
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EN 85EM5.3A P/M AA 7.

Layout Side I/O Panel (Top Side)

1326 B1 1327 A1 1328 C1 1333 A1 1344 A1 1346 A1 1936 A1 2811 B1 2813 A1 3802 C1 3803 B1 3804 B1 3826 A1 3827 A1 3828 A1 3829 A1 3830 A1 3835 A1 3842 A1 3999 A1 5800 A1 9800 B1 9802 A1 9803 A1 9810 A1

Layout Side I/O Panel (Bottom Side)

2803 B1 2804 B1 2805 B1 2806 B1 2807 C1 2810 C1 2832 A1 2834 A1 2840 A1 2841 A1 3801 C1 3805 B1 3806 B1 3808 C1 3809 C1 3810 C1 3811 B1 3812 C1 3813 B1 3814 B1 3815 C1 3816 C1 3845 C1 3846 C1 3847 C1 3848 C1 3849 C1 4800 B1 4801 B1 4802 A1 4803 A1 4804 B1 6801 C1 6802 C1 6803 B1 6804 C1 6805 B1 6806 B1 6807 C1 6808 C1 7811 C1 7812 B1 7813 C1
CL 26532041_054.eps
180402
CL 26532041_055.eps
180402
Circuit Diagrams and PWB Layouts
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EN 86EM5.3A P/M AA 7.

Top Control Panel

0345 A4 0346 B4 1701 D1 1702 D1
1703 D3 1704 D3 1705 D2 3001 E1
3002 E1 3003 E1 3004 E1 3005 E2
3006 E2 I705 E3 3007 E2 3008 D2 3009 E3
3010 D3 3011 E3 3012 C3 3013 C3
3999 D4 4001 D2 4002 E3 4003 D3
4004 E3 4005 C3 4006 C3 6005 E2
1
TOP CONTROL
P
234
I701 C3 I702 D3 I703 D3 I704 D2
I706 E3 I707 E2 I708 E1
I710
I711
I709 E1 I710 A3 I711 B3 I712 D4
0345
1
2
3
0346
1
2
3
I713 D4
GND_KEYBOARD
KEYBOARD
GND_KEYBOARD
GND_KEYBOARD
KEYBOARD
GND_KEYBOARD
P
FROM/TO
0245 of
MG MAINS SWTCH PANEL
FROM/TO
0945 of
EMG LARGE SIGNAL PANEL

Top Control Panel (Top Side)

CL 26532041_056.eps
180402

Top Control Panel Bottom Side)

A
CL 26532041_057.eps
180402
B
1701
VOLUME -
I709 I707I708 I706
VOLUME +
1702
3001
390R
*
3002
3K3
3003
*
200R
3004
1K5
3104 303 3691.2
1
I704
3005
*
4006
3013
560R
I701
*
3012
2K
*
3006
MENU
**
1K5
3007
1705
3K3
4001
3008
270R
6005
*
CHANNEL -
3009
1PS76SB10
I703
1K1
*
1704
4002
4003
3010
560R
4005
I702
*
CHANNEL +
I705
3011
620R
*
1703
4004
390R
I712
3999
1K
* FOR SAA56XX
E_14600_082.eps
234
C
D
I713
E
171204
Circuit Diagrams and PWB Layouts
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Auto SCAVEM Panel

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
A
B
C
F900
PCR
R-DL
G-DL
B-DL
3999
1K
9003
9007
GND
9004
9005
9006
D
RESERVED FOR FUTURE
E
9001
GND
F
GND_RGB
AUTOSCAVEM
F902
+11V
GND_SSB
EHT_INFO
Y-SCAVEM
+8V6
R-CRT
G-CRT
B-CRT
GND_RGB
CUTOFF
SDA-S
SCL-S
SDA-S
SCL-S
Y-SCAVEM
R-CRT
G-CRT
B-CRT
SDA-S
SCL-S
8V4
EH-B
N.C.
1940
1
HFB_X-RAY-PROT
2
3
4
5
6
7
8
9
10
11
1956
1
2
3
GND
1955
1
2
3
GND
2210
470n
9011
9010
SC3
I225
I227
DAC2
+8V_+12V
SC3
SC3
*
Y-DIFF
*
+8V
G
8V4
+8V6
+11V
3600
I600
9002
I602
9009
5600
I608
5u6
1R5
8V2
I228
22n
470u
2600
2607
3124
3125
3130
3131
3136
3137
BC847B
1K
1K
BC847B
1K
1K
BC847B
1K
1K
1K
3121
+8V
1K
3122
7003
1K
3123
1K
3126
+8V
+8V
1K
3127
7005
7007
3128
3129
1K
3132
+8V
+8V
1K
3133
31343135
1K
3138
H
5601
8V2
+8V_+12V
I
J
K
L
M
N
8V1
5u6
22n2602
+8V
100u
2208
PCR
R-CRT
PCR
G-CRT
PCR
B-CRT
8204 000 6494.7
123456
2212
RES
5p6
I119
RES
+8V_+12V
3000
100R
+8V_+12V
3002
100R
+8V_+12V
3004
100R
RES
3254
680R
3006
1K
I100
BC857B 7000
3008
1K
I102
BC857B 7002
3010
1K
I104
BC857B 7004
SCAVEM CONTROL
RES
10p
2500
3500
100R
I500
I502
3502
100R
+8V
2503
100n
1K1K
100n
2504
1K
1K
SC23
SC24
7500
TDA8444T
SDA
3
SCL
4
Vmax
2
RES
10p
2502
GND
8
I613
RES
7 8 9 10 11 12 13 14 15 16 17 18
I106
3012
3K3
2000
RES
2p2
I108
3014
1K8
2002
RES
4p7
I110
3016
8K2
2004
RES
1p
+8V
I609
5
1
NC
Vp
A06A1
2
I C BUS
SLAVE RECEIVER
REFERENCE
VOLTAGE
GENERATOR
DAC0-7
DAC09DAC110DAC211DAC312DAC413DAC514DAC6
+8V_+12V
I112
+8V
15
7006
BFS20
7
EN 87EM5.3A P/M AA 7.
6000 C10
1440 L16
7000 B7
1940 B3
7002 C7
1955 E4
7003 I5
1956 D4
7004 D7
2000 B8
7005 K5
2002 C8
7006 C8
2003 C9
7007 M5
2004 D8
A
7008 C10
2006 C8
7010 C10
2008 C9
7012 B11
2010 C11
7014 B13
2012 B12
7016 D13
2014 C12
7018 B14
B
C
D
E
F
G
H
I
J
K
L
M
N
2016 B14 2018 C15 2020 C15 2022 I12 2024 F12 2026 E12 2028 H11 2038 F15 2040 F16 2041 F16 2200 J14 2202 J14 2208 I3 2210 A6 2212 A7 2500 E7 2502 F7 2503 I6 2504 K6 2600 H3 2602 I3 2605 G11 2606 I13 2607 H3 2608 J12 3000 B6 3002 C6 3004 D6 3006 B7 3008 B7 3010 C7 3012 B8 3014 C8 3016 C8 3018 B8 3020 C8 3022 B9 3024 C9 3026 B9 3028 C9 3030 C9 3032 B10 3034 B10 3036 B10 3038 C10 3040 B11 3042 C11 3044 C11 3046 B12 3048 D12 3050 B13 3052 D13 3054 C14 3056 C14 3058 B14 3060 D14 3062 C15 3064 D15 3066 B15 3068 D15 3070 D9 3072 E11 3074 G11 3076 F11 3078 G11 3080 F12 3082 G12 3084 G12 3086 E13 3088 G13 3090 E13 3091 G15 3092 E14 3093 F14 3094 F14 3096 F14 3106 G15 3108 E15 3110 F15 3112 E16 3114 F15 3116 E16 3118 D10 3120 E10 3121 H5 3122 H6 3123 I6 3124 I5 3125 I5 3126 I5 3127 J5 3128 K6 3129 K6 3130 K5 3131 K5 3132 L5 3133 M5 3134 M6 3135 M6 3136 M5 3137 N5 3138 N5 3200 J10 3202 J10 3204 I14 3206 H11 3208 H14 3210 J11 3212 H15 3214 H11 3216 J11 3218 J12 3220 I12 3222 I16 3224 J16 3226 I12 3228 J12 3230 I12 3232 I13 3234 J13 3236 I13 3238 J13 3240 H14 3242 J15 3244 J15 3254 A7 3500 E6 3502 E6 3600 G2 3999 A3 5600 G3 5601 H3
7020 D14 7022 C15 7024 F11 7026 F11 7028 F13 7030 F13 7032 F13 7038 E14 7040 F16 7042 F17 7200 I13 7202 I14 7204 I14 7208 I15 7402 I12 7500 E7 7501 I10 7505 I11 9000 G13 9001 E2 9002 G2 9003 B3 9004 C3 9005 C3 9006 C3 9007 B2 9009 H2 9010 B5 9011 B5 F900 A2 F902 A3 I100 B7 I102 C7 I104 D7 I106 B7 I108 C7 I110 C7 I112 C8 I114 B8 I116 C9 I118 C9 I119 A6 I120 C11 I122 F12 I123 F14 I124 C11 I126 B12 I130 D12 I132 C12 I134 D13 I136 B13 I138 B14 I140 C14 I142 C14 I146 C15 I148 C15 I150 F11 I152 F11 I154 F13 I156 F12 I158 F12 I160 F13 I162 E14 I166 G13 I168 F14 I178 F15 I186 F15 I188 F16 I190 F16 I200 J10 I201 J11 I202 I11 I203 I12 I204 J12 I205 I12 I206 I14 I207 I13 I208 I15 I209 J13 I210 I15 I211 I11 I212 J16 I213 C9 I214 I14 I215 B10 I216 I15 I217 I13 I218 F16 I219 C11 I220 C14 I224 I10 I225 E6 I226 I16 I227 E6 I228 G3 I500 E6 I502 E6 I600 G2 I602 G2 I608 G2 I609 E8 I610 E9 I611 D9 I612 D9 I613 G7 I614 G9 I690 B11
8V2
I136
I134
BFS20
7018 BFS20
3058
BF824 7020
470R
I138
10p
2016
1K
3054
I142
1K
3056
I140
3060
470R
7022 BFS20
SC7
3062
I220
2K2
2018
RES
10p
8K2
3066
I148
2020
22n
I146
15R
3068
3064
680R
SCAVEM PROCESSING
2K2
39K
3090
3092
I162
7032
I166
9000
7038 BFS20
SC9
I178
3093
I168
I123
1K5
RES
2K2
3096
22K
3094
3091
27K
2K2
3108
3112
I186
2038
22n
1K
3106
RES
I188
7040 BFS20
I190
3K9
3110
4K7
56p
2040
3114
100R
RES
1K
3116
SC10
I218
7042
BF824
5p6
2041
SVM
LINE PARABOLA
1K8
3208
4K7
3240
3204
22K
7204
I214
BC857B
BC857B
2K2
3236
I217
3238
7202
I206
4n7
2200
22R
2202
12K
3212
I208
I216
7208
BC847B
I210
1n
3242
3244
100K
3222
6K8
I226
I212
68R
1K2
3224
HFB_X-RAY-PROT
PARAB
SC3
RES
47K
39K
680R
3018
3022
SC4
I114
I116
2003
27K
100n
2006
3024
3020
470R
I612
DAC7
16
3026
I118
2008
22n
4p7
68K
22K
3030
3028
I213
3070
I611
3118
8K2
I610
10K
I614
RES
2K2
1K8
3034
3032
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I215
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3K3
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13
I120
3042
3038
560R
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I150
7024 BFS20
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7505
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47K
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2012
100n
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3076
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470K
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I130
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47K
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SC8
I156
I122
2024
22n
1K2
6K8
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1K
1K5
3226
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2022
1u
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I204
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I158
I160
7030 BFS20
I154
1K
1K
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3230
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1
2
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4
5
6
8V1
7
8
9
10
11
HFB_X-RAY-PROT
GND_SSB
EHT_INFO
+8V
GND_RGB
CUTOFF
PCR
SVM
R-DL
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B-DL
SC1:SC3
E_14600_039.eps
220304
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Auto SCAVEM Panel Peak Contrast Reduction

1234567891011
PCR (PEAK CONTRAST REDUCTION)
A
B
C
D
+8V_+12V
47K
3402
I400
3404
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7504
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EN 88EM5.3A P/M AA 7.
2300 C5 2304 C7 2400 E3 2410 F5 2412 F6
(NOT USED)
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47K
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I455
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7414
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2K2
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I426
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SC19
1K
22K 39K
3420
3422
7408 BFS20
I430
7412
BFS20
I428
3426
I432
3424
1K
SC18
7410
BFS20
15K
2304
3442
SC14
I456
3316
1K
I306
100u
1K5
I304
3320
3444
3446
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47K
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47K
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22n
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3326
3448
3450
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3452
3454
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I310
3328
3K3
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560R
22R
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3330
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E_14600_040.eps
020404
C
D
E
F
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I428 E5 I430 E4 I432 F5 I434 F5 I436 F6 I438 E7 I440 E8 I442 E8 I444 F9 I446 E9 I448 F9 I450 E10 I453 E5 I454 C5 I455 F6 I456 F7 I457 E10
567891011
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EN 89EM5.3A P/M AA 7.

Layout Auto SCAVEM Panel (Top Side)

1440 A2 1940 C2 1955 B1 1956 B2
2208 B1 2304 B2 2600 C1 2608 A2
5600 C1 5601 B1 9001 C2 9004 A2
9005 A2 9006 A2 9021 A2 9022 A1
9023 A1 9024 B1 9025 A1 9026 B2
9027 A2 9028 A2 9029 B2 9030 B2
3104 303 3750.7
9031 B1 9032 B1 9033 A1 9034 A1
9035 A2 9036 C1 9037 C1 9038 A2
9039 A2 9040 A1 9041 A1 9042 C1
E_14600_041.eps
9043 B1 9044 C2
260304

Layout Auto SCAVEM Panel (Bottom Side)

2000 C1 2002 C1 2003 C2 2004 C1 2006 C1 2008 C2 2010 C2 2012 C2
2014 B2 2016 B2 2018 B2 2020 B1 2022 A1 2024 B2 2026 A2 2028 A1
2038 A2 2040 A2 2041 A2 2200 A1 2202 A1 2210 C1 2212 C1 2300 B1
3104 303 3750.7
2400 A1 2410 B1 2412 B1 2414 B1 2416 B1 2418 C1 2420 B1 2422 C1
2424 B1 2500 B1 2502 B2 2503 A1 2504 A1 2602 B2 2603 B1 2604 A1
2605 B1 2606 A2 2607 C2 3000 C1 3002 C1 3004 C1 3006 C1 3008 C1
3010 C1 3012 C1 3014 C1 3016 C1 3018 C2 3020 C1 3022 C1 3024 C1
3026 C2 3028 C2 3030 C2 3032 C2 3034 C2 3036 C2 3038 C2 3040 C2
3042 C2 3044 C2 3046 C2 3048 B2 3050 C2 3052 B2 3054 B2 3056 B2
3058 C2 3060 B2 3062 B2 3064 B1 3066 B2 3068 B1 3070 B1 3072 B2
3074 B1 3076 B2 3078 B1 3080 B2 3082 B2 3084 A2 3086 A2 3088 B2
3090 A2 3091 A1 3092 A2 3093 A2 3094 A2 3096 A2 3106 A2 3108 A2
3110 A2 3112 A2 3114 A2 3116 A2 3118 A2 3120 A2 3121 A1 3122 A1
E_14600_042.eps
260304
3123 A1 3124 A1 3125 A1 3126 A1 3127 A1 3128 A1 3129 A1 3130 A1
3131 A1 3132 A1 3133 A1 3134 A1 3135 A1 3136 A1 3137 A1 3138 A1 3200 A1 3202 A1 3204 A2 3206 A2 3208 A2 3210 A1 3212 A2 3214 A2 3216 A1 3218 A1 3220 A2 3222 A2 3224 A2 3226 A2 3228 A1 3230 A2 3232 A2 3234 A2 3236 A2 3238 A2 3240 A2 3242 A1 3244 A1 3254 C1 3300 B1 3302 B1 3304 B1 3306 B1 3308 B1 3310 B1 3312 A1 3316 A1 3318 A1 3320 A1 3322 A1 3324 A1 3326 A1 3328 A1 3330 A1 3400 A1 3402 A1 3404 A1 3406 B1 3408 A1 3410 A1 3418 B1 3420 B1 3422 B1 3424 B1 3426 B1 3428 B1 3430 B1 3432 B1 3434 B1 3436 B1 3438 B1 3440 B1 3442 B1 3444 C1 3446 B1 3448 C1 3450 B1 3452 C1 3454 C1 3456 C1 3458 B1 3460 C1 3500 B2 3502 B2 3600 C2 3999 B2 6000 C2 7000 C1 7002 C1 7003 A1 7004 C1 7005 A1 7006 C2 7007 A1 7008 C2 7010 C2 7012 C2 7014 B2 7016 C2 7018 B2 7020 B2 7022 C2 7024 B1 7026 B2 7028 A2 7030 B2 7032 A2 7038 A2 7040 A2 7042 A2 7200 A2 7202 A2 7204 A2 7208 A2 7300 B1 7400 A1 7402 A2 7408 B1
7410 B1 7412 B1 7414 B1 7416 B1 7418 B1 7420 C1 7422 B1 7500 A2 7501 A1 7502 A1 7503 B1 7504 A1 7505 A1 9000 B2 9002 C2 9003 C2 9007 C2 9009 C2 9010 C1 9011 C1 9020 A2 9045 A2 9046 C1 9047 C2
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Personal Notes:
EN 90EM5.3A P/M AA 7.
E_06532_013.eps
131004

8. Alignments

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Alignments
EN 91EM5.3A P/M AA 8.
Index of this chapter:

8.1 General Alignment Conditions

8.2 Hardware Alignments

8.3 Software Alignments
8.4 Option Settings
8.2 Hardware Alignments
8.1 General Alignment Conditions

8.1.1 Start Conditions

Perform all electrical adjustments under the following conditions:
Power supply voltage: 230 V
Connect the set to the mains via an isolation transformer with low internal resistance.
Allow the set to warm up for approximately 20 to 30 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.
Perform all electrical adjustments with the following start settings (for all CRTs):
Set LIGHT SENSOR "off", by setting ACTIVE CONTROL to "off" with the remote control.
Set CONTRAST to "75", BRIGHTNESS to "42" and COLOUR to "54" (via PICTURE menu).
Set COLOUR ENHANCEMENT to "off" (via PICTURE menu).
Set DIGITAL OPTIONS to "Pixel Plus" (via PICTURE menu), unless otherwise stated (for sets without "Pixel Plus" (= Eagle), set to "Natural Motion").
Set DYNAMIC CONTRAST to "off" (via PICTURE menu).
Set CATHODE DRIVE at "15" (via SAM - Alignments ­General - Drive - Cathode).
(± 10 %), 50/60 Hz.
AC

8.2.1 Vg2 Adjustment

8.1.2 Adjustment Sequence

Use the following adjustment sequence:
1. Set the correct TV-set "options" (after storing, restart the set!).
2. Rough adjustment of "Vg2".
3. Rough adjustment of "Focus".
4. Rough adjustment of "Geometry".
5. Allow the set to warm up.
6. Accurate adjustment of "Vg2" and "Focus".
7. Accurate adjustment of "Geometry".
8. Software alignments (cut-off, cathode drive, peak white, white drive, etc).
Note: The Service Alignment Mode (SAM) is described in chapter 5 of the Service Manual. Menu navigation is done with the "CURSOR UP, DOWN, LEFT or RIGHT" keys of the remote control (RC) transmitter.
1502
5430
SSB
TUNER

Figure 8-1 Top-view LSP

In the frame-blanking period of the R, G, and B signals applied to the CRT, the "HOP" video processor inserts a measuring pulse with different DC levels. Measure the black level pulse during the vertical flyback at the RGB cathodes of the CRT.
1. Go, via the MENU key, to the normal user menu, select "PICTURE", and set "CONTRAST" and "BRIGHTNESS" to "0".
2. Activate the SAM.
3. Connect the RF output of a pattern generator to the antenna input. Test pattern is a "black" picture (blank screen on CRT without any OSD info).
4. Set the channel of the oscilloscope to 20 V/div and the time base to 20 us/div. Use external triggering on the vertical pulse Caution: use a trigger point at the "cold" side!.
5. Ground the scope at the CRT panel ("cold" side) and connect a 10:1 probe to one of the cathodes of the picture tube socket (see diagram F).
6. Measure the cut-off pulse during first full line after the frame blanking. You will see two pulses, one being the cut­off pulse and the other being the white drive pulse. Choose the one with the lowest value; this is the cut-off pulse.
7. Select the cathode with the highest V alignment. Adjust the V (lower) potentiometer on the LOT to the correct DC-value, tolerance is +/- 3 V flyback lines are just visible and then slowly turn back until they are gone).
29 inch (4:3): 160 V for LGPD and Samsung.
32 inch (16:9): 160 V for LGPD or 170 V for MEC.
34 inch (4:3): 160 V for LGPD/Toshiba or 165 V for
Thomson.
8. Restore "CONTRAST" to "75" and "BRIGHTNESS" to "42".
CUTOFF
(align the Vg2 potmeter first till the
DC
LOT
Focus 1 Focus 2
Screen
VG2
3642
V.SHIFTCINCH CINCH
value for the
DC
of this gun with the SCREEN
B
Warning
All alignments are on hot-part !
C
A
CL 26532058_021.eps
0706402
EN 92 EM5.3A P/M AA8.
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0V Ref.
Method 2 (without oscilloscope)
Note: Use this software driven alignment only in cases when there is no oscilloscope available, because of the high spread and tolerances.
1. Enter SAM. To enter SAM, press the following key sequence on the remote control transmitter: 062596 directly followed by 'STATUS/EXIT' (do not allow the display to time out between entries while keying the sequence.)
2. Select 'Alignments.'
3. Select the 'General' sub menu.
4. Set 'Vg2 Test Pattern' to 'On'
5. You will now receive OSD feedback during Vg2 alignment.
6. First, turn the Vg2 potmeter on the LOT to the left. OSD will read 'Out/High.'
7. Turn the Vg2 potmeter slowly clockwise until the OSD toggles between 'In/High and In/ Low.' This is the correct value.

8.2.2 Focus alignment

Notes:
Tune the set to a "circle with crosshatch" test pattern (use an external video pattern generator).
Choose picture mode "NATURAL" with the "SMART PICTURE" button on the remote control transmitter.
ELDOR LOT outline: – Focus 1 (F1) = Static alignment (black wire). – Focus 2 (F2) = Dynamic alignment (red wire).
max.
V
Figure 8-2 Waveform Vg2 alignment
CUTOFF
[VDC]
Focus method for Philips 32 inch tube with bleeder gun
You can recognize a CRT with bleeder gun by its type number. Example:
•W76ERF042X044= with standard gun.
•W76ERF052X044= with bleeder gun.
•W76ERF062X044= with bleeder gun.
You can also recognize a bleeder gun by the ceramic rectangular plate (this is the bleeder resistance) you will see inside the gun (viewed from above).
1. Start the alignment with the STATIC focus (upper potmeter) turned to the left and the DYNAMIC focus (middle potmeter) to the right.
2. Adjust the DYNAMIC focus until the horizontal lines at the centre of the screen have minimum width, without introducing a visible haze.
3. Adjust the STATIC focus until the vertical lines at the sides of the screen have minimum width, without introducing a visible haze.
4. Adjust the DYNAMIC focus until the horizontal lines at the centre of the screen have minimum width, without introducing a visible haze.
5. Check overall spot performance and repeat steps 3 and 4 to achieve the best result.
Focus method for all other tubes
1. Start with the STATIC and DYNAMIC focus potentiometers on the LOT at midway.
Alignments
E_06532_011.eps
110204
2. Adjust the STATIC focus until the vertical lines at the sides of the screen have minimum width, without introducing a visible haze.
3. Adjust the DYNAMIC focus until the horizontal lines at the centre of the screen have minimum width, without introducing a visible haze.
4. Check overall spot performance and repeat steps 2 and 3 to achieve the best result: a compromise between minimal visible haze at the middle of the screen and sharp lines at the edges of the screen.

8.3 Software Alignments

8.3.1 Introduction

With the software alignments, it is possible to align the Geometry, White Tone, and Tuner IF settings. Put the set in the SAM (see chapter 5). The SAM menu will now appear on the screen. Select, via ALIGNMENTS, one of the sub-menus. They are explained below in the sequence of the sub-menus.
Notes:
All changes to menu items and alignments must be stored manually.
If the OPTION CODES have been changed and stored, the set has to be switched "OFF" and "ON" using the mains switch to activate the new settings (when switching via Standby, the option code settings are NOT read by the microprocessor).
If an empty EAROM (permanent memory) is detected, all settings are set to pre-programmed default values.

8.3.2 GENERAL

VG2 TEST PATTERN
In this sub-menu, you can turn "On" the OSD feedback for the Vg2 alignment (see chapter 8.2.1).
ADJUST PEAK WHITE LIMITER
Fixed setting: "9".
EHT COMPENSATION
Enter value "0" for the all picture tubes.
SOFT CLIPPER
Fixed setting: “Pwl + 0%”
LUMA GAIN
For sets without Columbus Comb Filter: “2”.
For sets with Columbus Comb Filter: “1”.
IF AFC
Supply, via an external video generator (e.g. PM5518), a TV signal with strength of at least 1 mV and a frequency of 475.25 MHz. Use system BG if possible, otherwise match the system of your generator with the received signal in the set.
Alignment procedure:
1. Go to the user "Installation" menu.
2. Select "Manual Installation".
3. Tune the TV-set to the system and frequency described above via "Search" - "475" - "OK".
4. If the frequency, showed in the line "Fine tune", is between
475.18 MHz and 475.31 MHz, you do not need to re-adjust the "IF AFC".
5. If not, adjust the frequency in the "Fine tune" line to 475.25 MHz and "Store" the program (this is very important because this will disable the AFC algorithm).
6. Now go to the SAM and select ALIGNMENTS - GENERAL
- IF AFC.
Alignments
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EN 93EM5.3A P/M AA 8.
7. During the IF AFC parameter adjustment, one can see OSD feedback in the top of the screen.
8. This OSD feedback can give 4 kind of messages:
Table 8-1 OSD feedback of AFC alignment
AFC-window AFC-frequency
Out High In High [In] [Low] Out Low
1. The first item (IN or OUT) informs you whether you are in or out the AFC-window.
2. The second item (HIGH or LOW) informs you about whether the AFC-frequency is too high or too low.
3. First, you must align the IF AFC parameter such that you come into the AFC-window (= IN).
4. Then you must look for the point where the IF AFC parameter changes from HIGH to LOW. This level is the value you are looking for.
5. After adjustment, STORE the value.
6. Now return to the user "Installation" menu.
7. Select "Manual Installation" - "Search" - "475" - "OK" and "Store". This will set the AFC "ON" again.
Service tip: If you do not trust the frequency accuracy of your service generator, connect it to a "good" TV set and check it with the "Fine tune"-line.
IF LPRIME AFC
Use the same procedure as for the IF AFC alignment, but set the video generator to SECAM L/L' (only necessary for countries that have or can receive this system).
TUNER AGC
1. Set the external pattern generator to a colour bar video signal and connect the RF output to the aerial input. Set the amplitude to 10 mV and set the frequency to 475.25 MHz.
2. Connect a DC multimeter between pin 1 and the shielding of the Tuner (item 1200 on the LSP).
3. Adjust the TUNER AGC value (default value is 25) with the LEFT/RIGHT cursor keys until the voltage at pin 1 of the tuner lies between 3.8 and 2.3 V.
4. STORE the alignment.
TUNER AGC TUNER 2 (only for sets with DW/PIP)
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 (this is only applicable for sets with 2-tuner DW execution).
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 (via the user PICTURE menu).
1. Apply a signal with a 100 % white video-pattern.
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 such, that the blended signal is 65 % of the black-white amplitude. In practice, this is about 1.3 V (blended signal) versus 2 V (full white signal).
4. The parameter can be adjusted in between "0" and "31".

8.3.3 DRIVE (Colour Alignments)

Note: Switch off all (available) colour-influencing features (e.g.
set the TV in ECO-mode).

8.3.4 LUM. DEL. (Luminance Delay)

Method 1 (with colour analyser):
1. Set, via the user menu, the "Contrast" to "100".
2. In SAM, select TEST PATTERN and turn it ON. During the following alignments, you will see a white block in the middle of the screen. Measure with the colour analyser on this area.
3. Set, via the user menu, the "Brightness" to a value between 350 and 400 Nit (rough setting, do not store!).
4. Select CATHODE and enter the value "15" (for all picture tubes).
5. Set the RED, GREEN and BLUE default values to "32".
6. RED BL OFFSET: the Black Level can be aligned very precisely here. The default value is "7".
7. GREEN BL OFFSET: the Black Level can be aligned very precisely here. The default value is "7".
8. Select a COLOR TEMPERATURE (e.g. COOL, NORMAL, or WARM).
9. Adjust the white level via RED, GREEN, and BLUE, according to the values in table "White levels".
Table 8-2 White levels
Colour Temp. Cool Normal Warm
X 256 266 289 Y 264 274 299
Method 2 (without colour analyser):
If you do not have a colour analyser, you can use the default values. This is the next best solution. The default values are average values coming from production (statistics).
1. Set, via the user menu, the "Contrast" to "100".
2. Select CATHODE and enter the value "15" (for all picture tubes).
3. RED BL OFFSET: the Black Level can be aligned very precisely here. The default value is "7".
4. GREEN BL OFFSET: the Black Level can be aligned very precisely here. The default value is "7".
5. Select a COLOUR TEMPERATURE (e.g. COOL, NORMAL, or WARM).
6. Set the RED, GREEN and BLUE default values according to the values in the "Tint settings" table.
Table 8-3 Tint settings
Cool Normal Warm
R- 4 39 + 6 G0 33 0 B+ 3 49 - 8
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.
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 = ”8” for PixelPlus2 sets or “9” for non­PixelPlus2 sets.
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 = “10” for PixelPlus2 sets or “9” for non­PixelPlus2 sets..
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.
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Alignments
Default value = “9” for PixelPlus2 sets or “11” for non­PixelPlus2 sets..
LUM. DELAY BYPASS: apply a NTSC colour bar/ greyscale pattern as a test signal. Adjust this value until the

8.3.5 GEO-NOR (Normal Geometry)

transients of the colour and black & white part of the test area are at the same position. Default value = “7” for PixelPlus2 sets or “10” for non­PixelPlus2 sets..
Note: Use for all geometry alignments an external pattern generator with a geometry pattern (e.g. crosshatch).
1
VERT. SLOPE
2
3
VERT. SHIFT
VERT. AMPLITUDE
4
V.S-CORRECTION
5
HOR. SHIFT
6
HOR. AMPLITUDE
Table 8-4 Vertical S-Correction default value
Picture Tube V. S-Correction default
28" RF 16:9 Mk2 16 29" RF 4:3 32 32" RF 16:9 16 32" RF 16:9 Bleeder 16 32" RF 16:9 EMEC 27 32" RF 16:9 DOD-2 20 34" RF 4:3 Toshiba / LG.Philips 31 / 28 36" RF 16:9 20
V. SHIFT AND V. AMPLITUDE (vertical alignment)
Align the vertical centre and height of the picture.
1. Use V. AMPLITUDE to align the vertical amplitude so that the entire test pattern is visible.
2. Set V. SHIFT to value "32".
3. Connect a voltmeter (V ground.
4. Adjust the DC voltage to "0" with potmeter R3642 (see figure 8-1).
5. Use V. SHIFT again to align the test pattern roughly vertically in the middle.
6. Repeat the alignment if necessary.
V. S-CORRECTION
Align for equal blocks on top, middle, and bottom of the picture tube. Align V. S-CORRECTION such that a block at the top (or bottom) of the picture has the same height as a block in the middle of the picture.
) between R3624 and "hot"
DC
7
E/W PARABOLE
8
UPPER E/W CORNER
9
LOWER E/W CORNER
10
E/W TRAPEZIUM
11
HOR. PARALLELOGRAM
12
HOR. BOW
Service tip: When the set is equipped with a rotation coil, use this menu item to check its correct alignment. If alignment is not correct, go to the INSTALLATION menu, choose SETUP, press OK, and choose PICTURE TILT. With the use of a crosshatch test pattern, align it to a correct horizontal picture.
V. SLOPE
Align the zero crossing of the frame deflection to the mechanical middle of the picture tube.
1. First, set the start conditions for the sets according to the
2. Align V. SLOPE (during alignment, the lower half of the
3. Repeat the alignment if necessary.
Figure 8-3 Geometry Alignments
table “Vertical S-Correction default value”. Position the boundary-stripes of the test pattern on the edges of the picture tube.
picture is blanked) such, that the middle line of the test pattern is matched with the edge of the pattern transient in the middle of the picture.
E_06532_010.eps
110204
H. SHIFT AND H. AMPLITUDE (horizontal alignment)
1. Use H. AMPLITUDE to align the horizontal amplitude so that the entire test pattern is visible.
2. Use H. SHIFT to align the picture horizontally in the middle.
3. Repeat the H. AMPLITUDE alignment if necessary.
Note: In case the horizontal linearity in wide-screen mode is out of tolerance, add a "DC-shift correction" panel (3104 328
06230) to connector 1419 of the DAF-panel [diagram I]. On the
DC-shift panel, cut diode 6433 for correction to the right or diode 6432 for correction to the left.
Caution: Be sure to switch "OFF" the set first. Never plug in a not pre-aligned module in a playing set!
EAST/WEST ALIGNMENT
1. Use EAST/WEST PARABOLA to align the vertical lines until straight.
2. Use UPPER EAST/WEST CORNER to align the vertical lines in the upper corners until straight.
3. Use LOWER EAST/WEST CORNER to align the vertical lines in the lower corners until straight.
4. Use EAST/WEST TRAPEZIUM to align for a rectangular.
5. Use HORIZONTAL BOW to correct the E/W parabola such, that it becomes symmetrical.
6. Use HORIZONTAL PARALLELOGRAM to align for straight vertical lines if necessary.
Repeat steps 1 to 6 if necessary.

8.3.6 GEO-4:3 (4:3 geometry alignment in 16:9 sets)

1. Use EAST/WEST PARABOLA to align the vertical lines until straight.
2. Use UPPER EAST/WEST CORNER to align the vertical lines in the upper corners until straight.
3. Use LOWER EAST/WEST CORNER to align the vertical lines in the lower corners until straight.
Alignments
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8.3.7 GEO-SW (Super Wide geometry alignment in 16:9 sets)

You only need to set the following values (if the normal geometry alignment has been performed correctly):
1. V. S-CORRECTION: enter value of the NORMAL GEOMETRY alignment.
2. H. AMPLITUDE: enter value of the NORMAL GEOMETRY alignment subtracted by "1".
3. EAST/WEST PARABOLA: enter value of the NORMAL GEOMETRY alignment.

8.3.8 GEO-100HZ (Digital Scan geometry alignment)

As all alignments are done in Pixel Plus mode (at 75 Hz), the 100 Hz mode needs an extra alignment:
Select GEO-100HZ. The set automatically switches to 100 Hz mode.
V. SLOPE: match the middle line of the test pattern with the upper edge of this blanking picture.
After the alignment, return to the previous menu. The set automatically returns to "Pixel Plus" mode.

8.4 Option Settings

EN 95EM5.3A P/M AA 8.

8.4.1 Introduction

The microprocessor communicates with a large number of I2C ICs in the set. To ensure good communication and to make digital diagnosis possible, the microprocessor has to know which ICs to address. The presence / absence of these specific ICs (or functions) is made known by the option codes.
You can set the "hardware related" options via the SAM ­ALIGNMENTS - OPTIONS or OPTION NUMBERS menu.
You can set the "software related" options via the SAM ­DEALER OPTIONS menu.
Notes:
After changing the option(s), save them with the STORE command.
The new option setting is only active after the TV is switched "off" and "on" again with the AC power switch (the EAROM is then read again).

8.4.2 DEALER OPTIONS

Select this sub-menu to set the initialisation codes (= options) of the set via text menu's.
Table 8-5 Dealer options overview
Menu name Subjects Options Physically in set
Personal Options
Picture Mute Yes Picture (blue) mute active in
No Noise in case of no picture
Virgin Mode Yes TV starts up (once) with
No TV does not start up (once) with
Auto Store Mode (only for EU and AP-PAL sets)
TXT Preference (only for EU and AP-PAL sets)
None Autostore mode disabled (not
PDC-VPS Autostore mode via ATS (PDC/
TXT page Autostore mode via ACI
PDC-VPS-TXT Autostore mode via ACI or ATS
TOP Preference to TOP Teletext
FLOF Preference to FLOF Teletext
case no picture detected
detected
language selection menu after mains switch on for the first time (virgin mode)
language selection menu after mains switch on for the first time (virgin mode)
in installation menu)
VPS) enabled
enabled
enabled
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8.4.3 SERVICE OPTIONS

Select this sub-menu to set the initialisation codes (= options) of the set via text menu's.
Alignments
Table 8-6 Option overview
Menu-item Subjects Options Description
Dual screen PIP/Dual Screen Yes Feature present.
Text/EPG Dualscreen Yes Feature present.
DS/PIP Tuner Yes Only selectable if Dual Screen option is set to "Yes"
Teletext Flash RAM Yes Feature present.
NexTView None Feature not present.
Display CRT Type 4 : 3 4:3 picture tube.
CRT size 28 / 32 / 36
Picture Rotation Yes Frame rotation circuitry present.
Video repro Featurebox type 1050i/1250i HD input
Lightsensor Yes Feature present.
3D Combfilter Yes Feature present.
Auto Scavem Yes Feature present.
Improv. Noise Reduction Yes Columbus present
Pixel Plus version 1 Sets without Columbus but with Eagle (1B)
Source Selection AV3 2fH Yes Not selectable yet
AV4 2fH Yes Not selectable yet
1152i Yes Feature present
Audio Repro Dolby None Set without Dolby
Rear speakers Speakerless Virtual Dolby (without rear speakers)
Subwoofer present Yes Feature present
Acoustic system None, FL9-DAS,
AVL On Automatic Volume Limiter 'on'
Miscellaneous Home Cinema Yes Set with Home Cinema Link (EU only)
Integrated RC Yes Control pheripheral equipment via TV IR receiver (EU only).
Tuner type UV1316 Set with Philips tuner.
38.0 IF Yes Feature present.
Integrated DVD Yes Feature present.
Integrated HDD Yes Feature present.
Integrated Radio Yes Feature present.
P50 DVD menu line Yes DVD control via user menu with TV IR receiver (only in sets with Home Cinema).
Option no. Group 1 Group 1 option code overview (see CRT sticker).
Group 2 Group 2 option code overview (see CRT sticker).
Note: Items in Italic are either fixed or not present.
No Feature not present.
No Feature not present.
No Feature not present.
No Feature not present.
Textguide only Feature present, but only as text guide. Nextview 2c3 Feature present, for countries that support this.
16 : 9 16:9 picture tube.
29 / 34 / 38 30 / 37 / 42
No Frame rotation circuitry not present .
Eagle 1B Eagle present (Pixel Plus). Eagle 1C Eagle present (Pixel Plus 2).
No Feature not present.
No Feature not present.
No Feature not present.
No Columbus not present
2 Sets with Columbus and Eagle (1C)
No
No
No Feature not present.
Pro Logic Set with Dolby ProLogic Virtual Sets with Virtual Dolby
Cordless Wireless active surroundbox present
No Feature not present
FL11, FL12, PV02, FL13, Soft Designline, Tech Designline.
Off Automatic Volume Limiter 'off'
No Set without Home Cinema Link
No Feature not present.
TEDE9 Set with Alps tuner.
No Feature not present.
No Feature not present.
No Feature not present.
No Feature not present.
No Feature not present.
CRT size (in inches). MEC= Panasonic, II= Mark 2
Indicates the cabinet styling
Alignments
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8.4.4 OPT. NO. (Option numbers)

Select this sub menu to set all options at once (expressed in two long strings of numbers).
An option number (or option byte) represents a number of different options. When you change these numbers directly, you can set all options very fast. All options are controlled via eight option numbers. When the EAROM is replaced, all options will require a re­setting. To be certain that the factory settings are reproduced exactly, you must set both option number lines. You can find the correct option numbers on a CRT sticker inside the TV set.
Example: The CRT sticker in the 28PW9502/12 gives the following option numbers (Note: this is just an example):
12660 16672 49984 00000 04118 00001 00032 18250
The first line (group 1) indicates options 1 to 4, the second line (group 2) options 5 to 8 (see tables below). Every 5-digit number represents 16 bits (so maximum number can be 65536 if all options are set). When all the correct options are set, the sum of the decimal values of each Option Byte (OB) will give the option number.
EN 97EM5.3A P/M AA 8.
EN 98 EM5.3A P/M AA9.
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Circuit Descriptions, Abbreviation List, and IC Data Sheets

9. Circuit Descriptions, Abbreviation List, and IC Data Sheets

Index of this chapter:

9.1 Introduction

9.2 Block Diagram

9.3 Feature Box
9.4 PICNIC
9.5 Columbus
9.6 FEM (Falconic Embedded Memory)
9.7 Eagle
9.8 Abbreviation list
9.9 IC Data Sheets
Note:
•Only new circuits, compared to its predecessor the EM5.1, are described. For the other circuit descriptions, see the EM5.1 manual.
Figures can deviate slightly from the actual situation, due to different set executions.
For a good understanding of the following circuit descriptions, please use the diagrams in chapter 6 and 7. Where necessary, you will find a separate drawing for clarification.
9.1 Introduction
This chassis contains the following new features/components:
FEM (Falconic Embedded Memories): is a new Falconic with internal Field memories and jagged line removal.
Improved 2D/3D Comb filter: The new key components are Columbus and SDRAM. When SDRAM is used, a 3D comb filter (or temporal comb filtering) is possible. Without SDRAM, only 2D comb filtering, (or spatial comb filtering) is possible. This is improved with respect to the previous 2D comb filter.
Improved noise reduction: This is a second function of the Columbus and SDRAM. Noise reduction is possible without SDRAM (2D) and with SDRAM (3D).
Pixel Plus 2: Eagle 1B is replaced by Eagle 1C. – Algorithms for Horizontal LTI and Vertical LTI are
improved. – Thin Line Control as part of the sharpness control. – Face Depending Peaking should allow less sharpness
in faces different from the rest of the picture. This could
be used to anti age faces versus the rest of the picture. – Vivid Colours 1 will result in more saturated colours. – The range/amount of Blue Stretch is extended. – More steps of Green Enhancement. – Improved Colour Dependent Sharpness. – Increased range of skin gain and skin tone.
The chassis consists of a full sized LSP/SSP combination and a smaller double sided four layer SSB, which is mounted on the SSP using a 80-fold SIMM connector. The main functionalities are:
LSP: supply, deflection, and sound amplification.
SSP: tuner input, SIMM interface, I/O, and interface provisions for extended functions such as PIP.
SSB: core TV functionalities, being TXT/control, video and audio decoding, feature box, video featuring, and sync/ geometry control.
The LSP (single sided) is built up very conventional, with hardly any surface mounted components on the copper side. Similar with the EM3 (but different as with the MG-chassis), the EM5 LSP has a very large “hot” part, including both deflection coils.
The SSB is a high tech module (four layer, 2 sides reflow technology, full SMC) with very high component density and complete shielding for EMC-reasons. Despite this, it is designed in such a way, that repair on component level is possible. To achieve this, attention was paid to:
The position of service test lands: most of them are at the Tuner side.
Accessibility (Tuner side). If there are still problems with the accessibility, one can order an extension board (see parts list).
Clearance around surface mounted ICs (for replacing).
Detailed diagnostics and fault finding is possible via ComPair.
The availability of Double Window (DW) or Picture In Picture (PIP) depends on the model range. There are two different executions, depending on the number of tuners:
One Tuner: The TV has only one tuner (on the LSP), so the PIP-picture can be either from this tuner or from an external AV-source.
Two Tuners: In this case there are two separate tuners, so the main picture and the DW picture are independently selectable. The IF signal from the main tuner is processed on the SSB, while the IF signal from the second tuner is processed by a second BOCMA video processor on the DW-panel. The source selection is done via an I/O expander.
9.2 Block Diagram
For the block diagram see chapter 6 “Wiring Diagram, Block Diagrams, and Overviews”.
The Tuner (item 1200) is a PLL tuner and delivers the IF-signal, via audio & video SAW-filters, to the HIP (High-end Input Processor). The HIP has the following functions:
IF modulation.
Video source- and record select.
Colour decoder.
Synchronisation.
Seven video input/output connections (with audio connections) are available:
1. Front: interfaces CVBS, SVSH.
2. AV1: interfaces CVBS, RGB- and YUV-input (1fH)
3. AV2: interfaces CVBS and Y/C (meant for VCR­connection.)
4. AV3+AV4: interfaces YPbPr/RGB (HD) inputs (2fH.)
5. Monitor out: interfaces CVBS out.
6. Audio out: interfaces external front and surround speakers. (Audio out not available on 29PT9221)
After the HIP, we come to the part that is called the Feature box (diagram B3x):
For Digital Scan, the PICNIC is required.
For Natural Motion, the FALCONIC (or FEM) is required.
For Pixel Plus, the EAGLE is required.
The HIP delivers YUV and sync signals to the PICNIC. This IC takes care of:
Analogue to Digital conversion and vice versa.
50 to 100 Hz conversion.
Panorama mode.
Noise reduction (or via Columbus when present).
Dynamic contrast.
Attached to the PICNIC is the Columbus chip. This 2D/3D Comb filter is used to separate chroma and luminance components out of a CVBS signal. Second function is noise reduction. It replaces the Comb filter that was attached to the HIP in the former chassis.
After the PICNIC, the (now 2fH) YUV-signals are fed to the FALCONIC (or FEM) for “Natural Motion” followed by the Eagle for “Pixel Plus” enhancement. The processed YUV signals (from Eagle or PICNIC) are, together with the sync-signals from
Circuit Descriptions, Abbreviation List, and IC Data Sheets
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EN 99EM5.3A P/M AA 9.
the PICNIC, then fed to the HOP (High-end Output Processor). This IC handles the video control and geometry part. The RGB­signals for TXT/OSD (from the microprocessor) are also inserted via the HOP. The video part delivers the RGB signals to the CRT-panel and the geometry part delivers the H-drive, V­drive, and a drive-signal for rotation.
Both deflection circuits are “hot” and located on the LSP. They are driven by the HOP. To make a galvanic separation, the Line Drive is driven via transformer 5410 and the Frame Drive via transformer 5621.The horizontal output stage generates some supply voltages and the EHT-, focus- and Vg2-voltages.
The RGB amplifiers on the CRT-panel are supplied with 200 V from the LOT. The Scavem circuit modulates transitions of the Luminance (Y) signal on the horizontal deflection current, giving a sharper picture.
The sound part is built around the MSP34xx (Multi-channel Sound Processor) for IF sound detection, sound control and source selection. Dolby decoding is also done by the MSP. Amplification is done via a “class D” integrated power amplifier IC, the TDA7490.
The microprocessor, called OTC (OSD, Teletext and Control) takes care of the analogue TXT input- and output processing. The OTC, ROM, and RAM are supplied with 3.3 V, which is derived from the +5V2. The NVM (Non Volatile Memory) is used to store the settings, one Flash-RAM contains the set software, the other Flash­RAM (7012) is for EPG, and the DRAM is used for storing the Teletext pages.
There is a separate Standby Supply, in order to reduce the Standby power consumption. During Standby, the Main Supply is switched “off” (via TS7529). A relay (1550) is used to switch the degaussing circuit. It is switched “on” after set start-up and switched “off” by the uP after 12 s. The Main Supply, an SMPS based on the “down-converter” principle, generates the 141 V (V_BAT) and the +/- 16 V for the audio part. Note: Voltage V_BAT is not mains isolated (“hot”), but is alignment free.

9.3 Feature Box

The key components of the FBX are the following ICs:

9.4 PICNIC

9.5 Columbus
9.6 FEM (Falconic Embedded Memory)
9.7 Eagle
9.4 PICNIC
All FBX versions have the PICNIC as basic IC. All functions located in the PICNIC are therefore basic functions, and will be described briefly. These functions are completely controlled by the built-in microprocessor.
Clamp. In the PICNIC, three analogue clamp circuits are integrated that assure a well defined DC level for the luminance (Y) and colour-difference (U, V) input signals.
AGC. The AGC in the PICNIC consists of a digital controlled analogue variable gain amplifier with a gain range of 9.3 dB, and an algorithm that uses input derived from histogram data and the overflow detection. It is designed to assure an optimal ADC input range, for all input signals, and so having minimal quantisation noise.
Analogue pre and post filters. The pre filters of the Feature Box are always the integrated filters of the PICNIC. The internal post filters of the PICNIC are never used.
ADC/DAC. Analogue to Digital conversion is done with three identical 9-bit ADCs, and the Digital to Analogue conversion uses three identical 10-bit DACs. The Y signal is mapped on 9 bits for black-to-white range and has room for over- and undershoots by means of the 10th bit at the output DACs. The U and V channels are processed in 9-bit accuracy up to the CTI circuit that has a gain of 2, resulting in a 10-bit output that suits the 10 bit DACs.
Time Base Correction. The Time Base Correction circuit simulates a fast acquisition line locked clock, while the actual system clock is locked to the input line frequency with a very large time constant. In this way the typical VCR problems linked to a one clock Feature Box can be solved, particularly the deflection circuit (in case of CRT) driven by the Feature Box can profit from this feature.
VCR detection. The VCR detection of the PICNIC is an algorithm that detects the phase jumps (which occurs for instance with VCRs) to be able to correct the picture deviations. This detection is done by monitoring the PLL circuit in the PICNIC by the on-board microprocessor on several parameters.
Peaking. The two dimensional peaking can boost or attenuate higher frequencies in both vertical and horizontal direction. The lowest setting is a 2D low pass. The higher settings make sharpening, but the resulting overshoots can clip relatively fast compared to the dynamic peaking, because there is no room for overshoot above white and under black. This peaking is done on field base.
Digital Noise Reduction (DNR). The PICNIC accommodates three noise reduction circuits: – Clinic. This "clamp noise reduction" circuit consists of
an adaptive temporal field recursive filter. It corrects the DC level of each line, when it is varying from field to field in the line segments with likely the least movement. It can be used to correct clamp errors that cannot be restored by conventional clamp circuits. The filter is completely autonomous for the user, who can only switch it “on” or “off”.
Limeric (this part is not used in case of Columbus).
This spatial noise reduction circuit is targeted for reduction of the mid frequency noise spectrum, where adaptive filtering combines pixels around the centre pixel and pixels from the lines above in a recursive way. The quantity of noise reduction is user defined.
2D Coring. This circuit attacks spatial noise in a very
drastic way without distinguishing noise from wanted resolution. It shaves away small details of any kind, depending on the amplitude of the detail and the user setting. So, it is advised to use this feature only at the lowest settings.
Histogram Modification. Using histogram modification techniques in PICNIC, the contrast of the overall picture may be improved. From a TV scene, the distribution of all luminance values is taken (histogram). This histogram is used to calculate an optimal transfer curve for the particular scene, which is used to process the video digitally resulting in a picture with improved contrast (called “Dynamic Contrast”).
Auto Picture Control. The PICNIC is prepared to make several APC functions in co-operation with the main software. This is made by giving relevant video quality data to main, and by giving several control ‘handles’ to main microprocessor. In this way, automatic picture quality settings depending on customer settings and video data can be made. The following items are prepared in the AutoTV: – Automatic Picture Control. This feature controls the
settings for DNR, Limeric, coring, sharpness and histogram modification as a function of the noise figure and signal steepness information extracted from the PICNIC and from external information such as ambient light.
Automatic Aspect Ratio Adaptation. This AARA
feature uses data from the black bar detection circuit to adapt vertical and horizontal amplitude to an aspect
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Circuit Descriptions, Abbreviation List, and IC Data Sheets
ratio belonging to the display and does not show black bars. This is done by the control software. Auto Format is controlled via main software by reading out the black bar information from the FBX.
Field Rate Upconversion. In order to remove large area flicker from the TV screen, the field-rate of the video is doubled by the Feature Box. A 50/60 Hz video input is converted to 100/120 Hz. The line frequency (16 kHz) is also doubled (32 kHz). When the video input contains fields A, B etc..., the conversion provides an AABB sequence scanning on the display. The actual up-conversion is done in the first Field Memory (FM1) by reading it twice at double speed, while writing once.
Input Phase. The horizontal phase of the input video acquisition can be shifted to allow compensation for processing delay of other components in front of the Feature Box.
Miscellaneous Features. To be sure that On Screen Display (OSD) is always readable, even when no video signal is received, the feature box can be switched to stable OSD mode. Free running but stable horizontal and vertical deflection drive signals will be generated, so that OSD information and PIP can be displayed jitter free, and thus clearly readable on the screen. Specially for tuning purposes and smooth channel switching a stable OSD mode is implemented that uses the horizontal time base correction combined with a slow PLL, and a small vertical catch window. This mode enables undisturbed reading of OSD while the set is tuning.

9.5 Columbus

9.5.1 Introduction

The Columbus is a combination of:
•A 2D/3D Comb filter for both PAL and NTSC, and
•A spatial/temporal noise reduction system for both colour and luminance signals.
The Columbus 3D Comb filter uses digitalized CVBS, U, and V (or C) signals and can be used with or without an external 16 Mbit SDRAM. Without external 16Mbit SDRAM, 3D comb filtering and temporal noise reduction are not possible.
The noise reduction part of the Columbus is controlled by the FBX software using the SNERT interface (the “Limeric” noise reduction in the PICNIC is “off” in case of a Columbus application). The 2D/3D Comb filter part is controlled by the Main software using the I2C bus.

9.5.2 2D/3D Comb Filter

Introduction
The “3D Comb filter Columbus” is a combined 2D/3D Comb filter function that is part of the Columbus chip (item 7752). It is a comb filter for both PAL and NTSC.
The 3D Comb filter is used to separate chroma and luminance components out of a CVBS signal. It is of no use when the CVBS signal is a SECAM signal (SECAM signals cannot be combed) The Columbus chip can be used with or without 16 Mbit external SDRAM (item 7753). When an external SDRAM is connected to the IC, the Comb filter function can work in combined 2D/3D processing (depending on the detected pixel based motion). When no external SDRAM is connected, only 2D Comb filtering is possible.
The Columbus can comb the following standard signals:
PAL B, PAL G, PAL H, PAL I, PAL D, PAL K: Colour standard PAL, Colour carrier at 4.43 MHz, field frequency: 50 Hz
PAL M: Colour standard PAL, Colour carrier at 3.58 MHz, field frequency: 60 Hz
PAL N: Colour standard PAL, Colour carrier at 3.58 MHz, field frequency: 50 Hz
NTSC M: Colour standard NTSC, Colour carrier at 3.58 MHz, field frequency: 60 Hz
For NTSC signals, the PAL delay line must always be bypassed.
The following signals CANNOT be combed:
Double Window signals or Multi PIP. For these signals, only one part or even no part of the signal is in relation with the burst. The part that is not in relation with the burst can become very blurred when combed by the Columbus Comb filter. Such a signal must be bypassed. Notch mode is not even an option since e.g. in double window, one part can be a PAL signal while the other part is NTSC or SECAM.
In cases where a SECAM signal is presented to the Columbus Comb filter; both the luminance and UV path must be bypassed. The PAL delay line inside the Columbus cannot be used for SECAM signals so it must also be bypassed. The luminance path must have luminance at its input instead of CVBS. A chroma delay line outside Columbus must be used for SECAM signals. Reason for this: the Columbus PAL delay line halves the output of the chroma signals in case of SECAM.
Y/C, YPbPr, and RGB signals do not have to be combed. So both the luminance and UV path must be bypassed. The PAL delay line will also be bypassed.
In cases where the Columbus Comb filter does not receive a CVBS signal with burst at the right place according to the standard (this includes black and white signals without burst), phase correction results become unpredictable and the Comb filter must be set in bypass (= luminance path bypassed, UV path bypassed, PAL delay line bypassed)
VCR signals cannot be combed and must be processed in notch mode, or bypassed.
Columbus Modes
The several modes of the Columbus 3D Comb filter are:
Bypass mode.
Band-Pass-Notch mode.
2D Comb filter modes. – Simple median. – Median.
Field Comb filter mode.
Frame Comb filter mode.
Bypass Mode
The 3D Comb filter can be set in bypass mode. In this mode, the CVBS, U and V signals are just bypassed to the output.
Band-Pass-Notch Mode
This is a mode where no Comb filtering is applied. A “Band Pass Filter” is used to filter the chroma information out of the CVBS signal. A “Notch Filter” is used to subtract the sub carrier out of the CVBS in order to make a luminance signal without chroma sub carrier. In terms of cross colour and cross luminance, this mode has the worst performance of all. It is only used on these signals where no comb filtering can be applied (non-standard signals and most VCR signals for example).
2D Comb filter modes
A Comb filter does an action on a current pixel and a delayed pixel. When the delayed pixel is a line-delayed pixel, we talk about a “Spatial or 2D Comb Filter” (for NTSC the delay must be 1 line, for PAL it must be 2 lines). Spatial or 2D Comb filters show problems on vertical colour transients and on single coloured lines. For these situations, extra hardware is added in the Columbus chip to avoid these kinds of problems. However even with these extra measures, there are still situations where the 2D Comb filter does not perform optimally (diagonal resolution and single lines with equal luminance content). In order to restrict the working area
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