Philips _chassis_l12m3.1l_la_sm Datasheet

Page 1
Color Television Chassis
L12M3.1L
LA

Contents Page

1. Revision List 2
2. Technical Specifications and Connections 2
3. Precautions, Notes, and Abbreviation List 6
4. Mechanical Instructions 10
5. Service Modes, Error Codes, and Fault Finding 21
6. Alignments 29
7. Circuit Descriptions 32
8. IC Data Sheets 34
9. Block Diagrams Wiring Diagram 39" (4500 series) 42 Wiring Diagram 42" (3500 series) 43 Wiring Diagram 42"/46" (5000/5500 series) 45 Wiring Diagram 46" (4500 series) 46 Wiring Diagram 47" (7000 series) 47 Wiring Diagram 47" (8000 series) 48 Wiring Diagram 55" (7000 series) 49 Wiring Diagram 55" (8000 series) 50 Block Diagram 3139 123 65451 51 Block Diagram 3139 123 65441 52
10. Circuit Diagrams and PWB Layouts A 715G5778 PSU 53 55-56 A 715G5792 PSU 57 62-67 A 715G5793 PSU 64 66-67 ALC 715G6001 68 69-69 313912365441 SSB 70 83-84 313912365451 SSB 85 98-99 272217190763, 272217190764, 272217190766 Keyboard Control Module 100 100-100 E 715G5771 101 102-102 J 715G5783 103 104-104 J 715G5820 105 106-106 272217190759, 272217190761 Sensor Module 107 107-107 310431366033 AmbiLight 108 108-109 310431366053 AmbiLight 110 110-111 310431366063 AmbiLight 112 112-113 310431366292 AmbiLight 114 114-115
310431366302 AmbiLight 116 116-117
11. Styling Sheets 4500 series 39" 121 3500 series 42" 122 4500 series 42" 123 5000/5500 series 42"/46" 124 4500 series 46" 125 7000 series 47"/55" 126 8000 series 47" 127 8000 series 55" 128
Published by ER/JY 1366 Quality Printed in the Netherlands Subject to modification EN 3122 785 19511
2013-Jun-21
2013 ©
TP Vision Netherlands B.V.
All rights reserved. Specifications are su bject to change without notice. Trademarks ar e the property of Koninklijke Philips Electroni cs N.V. or their respective owners. TP Vision Netherlands B.V. reserves the right to change pr oducts at any time without being obliged to adjust earlier supplies accordingly. PHILIPS and the PHILIPS’ Shield Emblem are used under license from Koninklijke Philips Electronics N.V.
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EN 2 L12M3.1L LA1.
Revision List

1. Revision List

Manual xxxx xxx xxxx.0
• First release.
Manual xxxx xxx xxxx.1
• Chapter 2: Table 2-1
updated (added CTNs).
• Chapter 5: added Ambilight parameters setting instructions; see section 5.7
.
• Chapter 5: Remote Control Unit (un-)pairing instructions; see section 5.8
• Chapter 6: added white tone values; see section 6.3.2
.
.
• Chapter 6: added display code overview; see section
6.4.3
.

2. Technical Specifications and Connections

Index of this chapter:
2.1
Technical Specifications

2.2 Directions for Use

2.3 Connections
Notes:
• Figures can deviate due to the different set executions.
• Specifications are indicative (subject to change).

2.1 Technical Specifications

For on-line product support please use the links in Table 2-1. Here is product information available, as well as getting started, user manuals, frequently asked questions and software & drivers.

Table 2-1 Described Model Numbers and Diversity

24 79 10 11
CTN
32PFL3508G/78 2.3 4-1 4.3 7.1 9-1 9-13 10.3 10.6 - 10.10 10.8 - 11.1
32PFL3518G/77 2.3 4-1 4.3 7.1 9-1 9-13 10.3 10.6 - 10.10 10.8 - 11.1
32PFL3518G/78 2.3 4-1 4.3 7.1 9-1 9-13 10.3 10.6 - 10.10 10.8 - 11.1
32PFL4508G/77 2.3 4-2 4.3 7.1 9-2 9-13 10.3 10.6 - 10.9 10.8 - 11.2
39PFL3508G/78 2.3 4-3 4.3 7.1 9-3 9-13 10.2 10.6 10.4 10.10 10.8 - 11.3
39PFL4508G/78 2.3 4-4 4.3 7.1 9-4 9-13 10.2 10.6 10.4 10.9 10.8 - 11.4
42PFL3508G/77 2.3 4-5 4.3 7.1 9-5 9-13 10.1 10.6 - 10.10 10.8 - 11.5
42PFL3508G/78 2.3 4-5 4.3 7.1 9-5 9-13 10.1 10.6 - 10.10 10.8 - 11.5
42PFL4508G/77 2.3 4-6 4.3 7.1 9-6 9-13 10.1 10.6 - 10.9 10.8 - 11.6
42PFL4508G/78 2.3 4-6 4.3 7.1 9-6 9-13 10.1 10.6 - 10.9 10.8 - 11.6
42PFL5008G/78 2.3 4-7 4.3 7.1 9-7 9-13 10.1 10.6 - 10.9 10.8 10.12 11.7
42PFL5508G/78 2.3 4-7 4.3 7.1 9-7 9-13 10.1 10.6 - 10.9 10.8 10.12 11.7
46PFL4508G/77 2.3 4-8 4.3 7.1 9-8 9-13 10.1 10.6 - 10.9 10.8 - 11.8
46PFL4508G/78 2.3 4-8 4.3 7.1 9-8 9-13 10.1 10.6 - 10.9 10.8 - 11.8
46PFL5508G/78 2.3 4-9 4.3 7.1 9-7 9-13 10.1 10.6 - 10.9 10.7 - 11.7
47PFL7008G/77 2.3 4-10 4.3 7.1 9-9 9-14 - 10.5 - - 10.7 10.15 11.9
47PFL7008G/78 2.3 4-10 4.3 7.1 9-9 9-14 - 10.5 - - 10.7 10.15 11.9
47PFL8008G/78 2.3 4-11 4.3 7.1 9-10 9-14 - 10.5 - - 10.7 10.13
55PFL7008G/78 2.3 4-12 4.3 7.1 9-11 9-14 - 10.5 - - 10.7 10.16 11.9
55PFL8008G/77 2.3 4-13 4.3 7.1 9-12 9-14 - 10.5 - - 10.7 10.14
55PFL8008G/78 2.3 4-13 4.3 7.1 9-12 9-14 - 10.5 - - 10.7 10.14
Mechanics Descr. Block Diagrams Schematics Styling
Connection Overview
Wire Dressing
Dressing
Assembly Removal
Introduction
Wiring Diagram
Block Diagram
Power Supply
SSB
ALC (Option Board)
J (Sensor Board)
E (Keyboard/Leading Edge)
10.14
10.12
10.12
AL (AmbiLight)
11.10
11.11
11.11
Sheet
2.2 Directions for Use
You can download this information from the following websites:
http://www.philips.com/support http://www.p4c.philips.com
2013-Jun-21
Page 3

2.3 Connections

Rear
HDMI 1
HDMI 2ARC
ANTENNA
AUDIO IN
DVI/VGA
SPDIF
OUT
CVBS/Y Pb Pr - L R
SERV.U
VGA
Side
HDMI
USB 1 USB 2
NETWORK
19510_001_130424.eps
130424
3 3 9 11 1210
1 2 4 5 7 86
Rear
HDMI 1 HDMI 2 HDMI 3
AUDIO IN
DVI/VGA
CVI
AUDIO
CVI
VIDEO
SERV.U
ANTENNA
Side
HDMI SIDE
USB 2 USB 3
USB 1
NETWORK
Rear
VGA AV IN
DIGITAL
AUDIO OUT
OPTICAL
19511_006_130617.eps
130617
3 3 11 9 8 3 6 1210
2 7 7 10 5 5 5
10000_017_090121.eps
090428
19
1
18 2
Technical Specifications and Connections
EN 3L12M3.1L LA 2.

Figure 2-1 Connection overview 3xxx, 4xxx, 5xxx series

Note: The following connector color abbrevisation are used
(according to DIN/IEC 757): Bk= Black, Bu= Blue, Gn= Green, Gy= Grey, Rd= Red, Wh= White, Ye= Yellow.

Figure 2-2 Connection overview 7xxx, 8xxx series

2 - HDMI: Digital Video, Digital Audio - In

2.3.1 Side Connections

1 - Head phone (Output)
Bk - Head phone 32 - 600 ohm / 10 mW ot
Figure 2-3 HDMI (type A) connector
1 -D2+ Data channel j 2 -Shield Gnd H 3 -D2- Data channel j 4 -D1+ Data channel j 5 -Shield Gnd H 6 -D1- Data channel j 7 -D0+ Data channel j
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EN 4 L12M3.1L LA2.
1 2 3 4
10000_022_090121.eps
090121
10000_017_090121.eps
090428
19
1
18 2
10000_017_090121.eps
090428
19
1
18 2
1
6
10
11
5
15
10000_002_090121.eps
090127
Technical Specifications and Connections
8-Shield Gnd H 9 - D0- Data channel j 10 - CLK+ Data channel j 11 - Shield Gnd H 12 - CLK- Data channel j 13 - Easylink Control channel/CEC jk 14 - n.c. 15 - DDC_SCL DDC clock j 16 - DDC_SDA DDC data jk 17 - Ground Gnd H 18 - +5V j 19 - HPD Hot Plug Detect j 20 - Ground Gnd H
3 - USB1, -2
1-+5V k 2 - Data (-) jk 3 - Data (+) jk 4 - Ground Gnd H

2.3.2 Rear Connections

4 - HDMI1: Digital Video, Digital Audio - In - Audio Return Channel
Figure 2-5 HDMI (type A) connector
1 - D2+ Data channel j 2-Shield Gnd H 3 - D2- Data channel j 4 - D1+ Data channel j 5-Shield Gnd H 6 - D1- Data channel j 7 - D0+ Data channel j 8-Shield Gnd H 9 - D0- Data channel j 10 - CLK+ Data channel j 11 - Shield Gnd H 12 - CLK- Data channel j 13 - Easylink Control channel/CEC jk 14 - ARC Audio Return Channel j 15 - DDC_SCL DDC clock j 16 - DDC_SDA DDC data jk 17 - Ground Gnd H 18 - +5V j 19 - HPD Hot Plug Detect j 20 - Ground Gnd H
5 - HDMI2: Digital Video, Digital Audio - In (optional)
Figure 2-6 HDMI (type A) connector
1 - D2+ Data channel j 2-Shield Gnd H 3 - D2- Data channel j 4 - D1+ Data channel j 5-Shield Gnd H 6 - D1- Data channel j 7 - D0+ Data channel j
2013-Jun-21
Figure 2-4 USB (type A)
8 - Shield Gnd H 9 - D0- Data channel j 10 - CLK+ Data channel j 11 - Shield Gnd H 12 - CLK- Data channel j 13 - Easylink Control channel/CEC jk 14 - n.c. 15 - DDC_SCL DDC clock j 16 - DDC_SDA DDC data jk 17 - Ground Gnd H 18 - +5V j 19 - HPD Hot Plug Detect j 20 - Ground Gnd H
6 - VGA: Video RGB - In
Figure 2-7 VGA Connector
1 - Video Red 0.7 V 2 - Video Green 0.7 V 3 - Video Blue 0.7 V
/ 75 j
PP
/ 75 j
PP
/ 75 j
PP
4-n.c. 5 - Ground Gnd H 6 - Ground Red Gnd H 7 - Ground Green Gnd H 8 - Ground Blue Gnd H 9-+5V
+5 V j
DC
10 - Ground Sync Gnd H 11 - n.c. 12 - DDC_SDA DDC data j 13 - H-sync 0 - 5 V j 14 - V-sync 0 - 5 V j 15 - DDC_SCL DDC clock j
7 - Mini Jack: Audio - In DVI/VGA/CVI
Bk - Audio 0.5 V
/ 10 k jo
RMS
8 - RJ45: Ethernet
10000_025_090121.eps
120320
Figure 2-8 Ethernet connector
1 - TD+ Transmit signal k 2 - TD- Transmit signal k 3 - RD+ Receive signal j 4 - CT Centre Tap: DC level fixation 5 - CT Centre Tap: DC level fixation 6 - RD- Receive signal j 7 - GND Gnd H 8 - GND Gnd H
9 - Service Connector (UART)
1 - Ground Gnd H 2 - UART_TX Transmit k 3 - UART_RX Receive j
10 - AV IN: Cinch/Break-out cable: Video CVBS/YPbPr - In, Audio - In
Wh - Audio - L 0.5 V Rd - Audio - R 0.5 V Rd - Video Pr 0.7 V Bu - Video Pb 0.7 V Gn - Video Y/CVBS 1 V
/ 10 k jq
RMS
/ 10 k jq
RMS
/ 75 jq
PP
/ 75 jq
PP
/ 75 jq
PP
Page 5
Technical Specifications and Connections
11 - Cinch: S/PDIF - Out
Bk - Coaxial 0.4 - 0.6V
12 - Aerial - In
- - F-type Coax, 75 D
/ 75 ohm kq
PP
EN 5L12M3.1L LA 2.
2013-Jun-21
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EN 6 L12M3.1L LA3.
Precautions, Notes, and Abbreviation List

3. Precautions, Notes, and Abbreviation List

Index of this chapter:
3.1
Safety Instructions

3.2 Warnings

3.3 Notes

3.4 Abbreviation List

3.1 Safety Instructions

Safety regulations require the following during a repair:
• Connect the set to the Mains/AC Power 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.
Safety regulations require that after a repair, the set must be returned in its original condition. Pay in particular attention to the following points:
• Route the wire trees correctly and fix them with the mounted cable clamps.
• Check the insulation of the Mains/AC Power lead for external damage.
• Check the strain relief of the Mains/AC Power cord for proper function.
• Check the electrical DC resistance between the Mains/AC Power plug and the secondary side (only for sets that have a Mains/AC Power isolated power supply):
1. Unplug the Mains/AC Power cord and connect a wire
between the two pins of the Mains/AC Power plug.
2. Set the Mains/AC Power switch to the “on” position
(keep the Mains/AC Power cord unplugged!).
3. Measure the resistance value between the pins of the
Mains/AC Power plug and the metal shielding of the tuner or the aerial connection on the set. The reading should be between 4.5 M and 12 M.
4. Switch “off” the set, and remove the wire between the
two pins of the Mains/AC Power plug.
• Check the cabinet for defects, to prevent touching of any inner parts by the customer.
3.2 Warnings
• 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 same potential.
• Be careful during measurements in the high voltage section.
• Never replace modules or other components while the unit is switched “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.
3.3 Notes

3.3.1 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 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 stand-by (F). These values are indicated by means of the appropriate symbols.

3.3.2 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 k).
• Resistor values with no multiplier may be indicated with either an “E” or an “R” (e.g. 220E or 220R indicates 220 ).
• All capacitor values are given in micro-farads (10 nano-farads (n 10
• 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 on the Philips Spare Parts Web Portal.

3.3.3 Spare Parts

For the latest spare part overview, consult your Philips Spare Part web portal.

3.3.4 BGA (Ball Grid Array) ICs

Introduction
For more information on how to handle BGA devices, visit this URL: http://www.atyourservice-magazine.com “Magazine”, then go to “Repair downloads”. Here you will find Information on how to deal with BGA-ICs.
BGA Temperature Profiles
For BGA-ICs, you must use the correct temperature-profile. Where applicable and available, this profile is added to the IC Data Sheet information section in this manual.

3.3.5 Lead-free Soldering

Due to lead-free technology some rules have to be respected by the workshop during a repair:
• Use only lead-free soldering tin. 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 a solder-tip temperature of at least 400°C. – To stabilize the adjusted temperature at the solder-tip. – To exchange solder-tips for different applications.
• Adjust your solder tool so that a temperature of around 360°C - 380°C is reached and stabilized 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 increase 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 this cannot be avoided, carefully clear the solder-joint from old tin and re-solder with new tin.

3.3.6 Alternative BOM identification

It should be noted that on the European Service website, “Alternative BOM” is referred to as “Design variant”.
The third digit in the serial number (example: AG2B0335000001) indicates the number of the alternative B.O.M. (Bill Of Materials) that has been used for producing the specific TV set. In general, it is possible that the same TV model on the market is produced with e.g. two different types of displays, coming from two different suppliers. This will then
-9
), or pico-farads (p 10
. Select
-12
-6
),
).
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Precautions, Notes, and Abbreviation List
10000_053_110228.eps
110228
EN 7L12M3.1L LA 3.
result in sets which have the same CTN (Commercial Type Number; e.g. 28PW9515/12) but which have a different B.O.M. number. By looking at the third digit of the serial number, one can identify which B.O.M. is used for the TV set he is working with. If the third digit of the serial number contains the number “1” (example: AG1B033500001), then the TV set has been manufactured according to B.O.M. number 1. If the third digit is a “2” (example: AG2B0335000001), then the set has been produced according to B.O.M. no. 2. This is important for ordering the correct spare parts! For the third digit, the numbers 1...9 and the characters A...Z can be used, so in total: 9 plus 26= 35 different B.O.M.s can be indicated by the third digit of the serial number.
Identification: The bottom line of a type plate gives a 14-digit serial number. Digits 1 and 2 refer to the production centre (e.g. SN is Lysomice, RJ is Kobierzyce), digit 3 refers to the B.O.M. code, digit 4 refers to the Service version change code, digits 5 and 6 refer to the production year, and digits 7 and 8 refer to production week (in example below it is 2010 week 10 / 2010 week 17). The 6 last digits contain the serial number.
Figure 3-1 Serial number (example)

3.3.7 Board Level Repair (BLR) or Component Level Repair (CLR)

If a board is defective, consult your repair procedure to decide if the board has to be exchanged or if it should be repaired on component level. If your repair procedure says the board should be exchanged completely, do not solder on the defective board. Otherwise, it cannot be returned to the O.E.M. supplier for back charging!

3.3.8 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.

3.4 Abbreviation List

0/6/12 SCART switch control signal on A/V
board. 0 = loop through (AUX to TV),
6 = play 16 : 9 format, 12 = play 4 : 3 format
AARA Automatic Aspect Ratio Adaptation:
algorithm that adapts aspect ratio to remove horizontal black bars; keeps the original aspect ratio
ACI Automatic Channel Installation:
algorithm that installs TV channels directly from a cable network by
means of a predefined TXT page ADC Analogue to Digital Converter AFC Automatic Frequency Control: control
signal used to tune to the correct
frequency AGC Automatic Gain Control: algorithm that
controls the video input of the feature
box AM Amplitude Modulation AP Asia Pacific AR Aspect Ratio: 4 by 3 or 16 by 9 ASF Auto Screen Fit: algorithm that adapts
aspect ratio to remove horizontal black
bars without discarding video
information ATSC Advanced Television Systems
Committee, the digital TV standard in
the USA ATV See Auto TV Auto TV A hardware and software control
system that measures picture content,
and adapts image parameters in a
dynamic way AV External Audio Video AVC Audio Video Controller AVIP Audio Video Input Processor B/G Monochrome TV system. Sound
carrier distance is 5.5 MHz BDS Business Display Solutions (iTV) BLR Board-Level Repair BTSC Broadcast Television Standard
Committee. Multiplex FM stereo sound
system, originating from the USA and
used e.g. in LATAM and AP-NTSC
countries B-TXT Blue TeleteXT C Centre channel (audio) CEC Consumer Electronics Control bus:
remote control bus on HDMI
connections CL Constant Level: audio output to
connect with an external amplifier CLR Component Level Repair ComPair Computer aided rePair CP Connected Planet / Copy Protection CSM Customer Service Mode CTI Color Transient Improvement:
manipulates steepness of chroma
transients CVBS Composite Video Blanking and
Synchronization DAC Digital to Analogue Converter DBE Dynamic Bass Enhancement: extra
low frequency amplification DCM Data Communication Module. Also
referred to as System Card or
Smartcard (for iTV). DDC See “E-DDC” D/K Monochrome TV system. Sound
carrier distance is 6.5 MHz DFI Dynamic Frame Insertion DFU Directions For Use: owner's manual DMR Digital Media Reader: card reader DMSD Digital Multi Standard Decoding DNM Digital Natural Motion
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EN 8 L12M3.1L LA3.
Precautions, Notes, and Abbreviation List
DNR Digital Noise Reduction: noise
reduction feature of the set DRAM Dynamic RAM DRM Digital Rights Management DSP Digital Signal Processing DST Dealer Service Tool: special remote
control designed for service
technicians DTCP Digital Transmission Content
Protection; A protocol for protecting
digital audio/video content that is
traversing a high speed serial bus,
such as IEEE-1394 DVB-C Digital Video Broadcast - Cable DVB-T Digital Video Broadcast - Terrestrial DVD Digital Versatile Disc DVI(-d) Digital Visual Interface (d= digital only) E-DDC Enhanced Display Data Channel
(VESA standard for communication
channel and display). Using E-DDC,
the video source can read the EDID
information form the display. EDID Extended Display Identification Data
(VESA standard) EEPROM Electrically Erasable and
Programmable Read Only Memory EMI Electro Magnetic Interference EPG Electronic Program Guide EPLD Erasable Programmable Logic Device EU Europe EXT EXTernal (source), entering the set by
SCART or by cinches (jacks) FDS Full Dual Screen (same as FDW) FDW Full Dual Window (same as FDS) FLASH FLASH memory FM Field Memory or Frequency
Modulation FPGA Field-Programmable Gate Array FTV Flat TeleVision Gb/s Giga bits per second G-TXT Green TeleteXT H H_sync to the module HD High Definition HDD Hard Disk Drive HDCP High-bandwidth Digital Content
Protection: A “key” encoded into the
HDMI/DVI signal that prevents video
data piracy. If a source is HDCP coded
and connected via HDMI/DVI without
the proper HDCP decoding, the
picture is put into a “snow vision” mode
or changed to a low resolution. For
normal content distribution the source
and the display device must be
enabled for HDCP “software key”
decoding. HDMI High Definition Multimedia Interface HP HeadPhone I Monochrome TV system. Sound
2
I
C Inter IC bus
2
I
D Inter IC Data bus
2
I
S Inter IC Sound bus
carrier distance is 6.0 MHz
IF Intermediate Frequency IR Infra Red IRQ Interrupt Request ITU-656 The ITU Radio communication Sector
(ITU-R) is a standards body
subcommittee of the International
Telecommunication Union relating to
radio communication. ITU-656 (a.k.a.
SDI), is a digitized video format used
for broadcast grade video.
Uncompressed digital component or
digital composite signals can be used.
The SDI signal is self-synchronizing, uses 8 bit or 10 bit data words, and has a maximum data rate of 270 Mbit/s, with a minimum bandwidth of 135 MHz.
iTV Institutional TeleVision; TV sets for
hotels, hospitals etc.
LS Last Status; The settings last chosen
by the customer and read and stored in RAM or in the NVM. They are called at start-up of the set to configure it according to the customer's
preferences LATAM Latin America LCD Liquid Crystal Display LED Light Emitting Diode L/L' Monochrome TV system. Sound
carrier distance is 6.5 MHz. L' is Band
I, L is all bands except for Band I LPL LG.Philips LCD (supplier) LS Loudspeaker LVDS Low Voltage Differential Signalling Mbps Mega bits per second M/N Monochrome TV system. Sound
carrier distance is 4.5 MHz MHEG Part of a set of international standards
related to the presentation of
multimedia information, standardised
by the Multimedia and Hypermedia
Experts Group. It is commonly used as
a language to describe interactive
television services MIPS Microprocessor without Interlocked
Pipeline-Stages; A RISC-based
microprocessor MOP Matrix Output Processor MOSFET Metal Oxide Silicon Field Effect
Transistor, switching device MPEG Motion Pictures Experts Group MPIF Multi Platform InterFace MUTE MUTE Line MTV Mainstream TV: TV-mode with
Consumer TV features enabled (iTV) NC Not Connected NICAM Near Instantaneous Compounded
Audio Multiplexing. This is a digital
sound system, mainly used in Europe. NTC Negative Temperature Coefficient,
non-linear resistor NTSC National Television Standard
Committee. Color system mainly used
in North America and Japan. Color
carrier NTSC M/N= 3.579545 MHz,
NTSC 4.43= 4.433619 MHz (this is a
VCR norm, it is not transmitted off-air) NVM Non-Volatile Memory: IC containing
TV related data such as alignments O/C Open Circuit OSD On Screen Display OAD Over the Air Download. Method of
software upgrade via RF transmission.
Upgrade software is broadcasted in
TS with TV channels. OTC On screen display Teletext and
Control; also called Artistic (SAA5800) P50 Project 50: communication protocol
between TV and peripherals PAL Phase Alternating Line. Color system
mainly used in West Europe (colour
carrier = 4.433619 MHz) and South
America (colour carrier
PAL M = 3.575612 MHz and
PAL N = 3.582056 MHz) PCB Printed Circuit Board (same as “PWB”) PCM Pulse Code Modulation
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Precautions, Notes, and Abbreviation List
EN 9L12M3.1L LA 3.
PDP Plasma Display Panel PFC Power Factor Corrector (or Pre-
conditioner) PIP Picture In Picture PLL Phase Locked Loop. Used for e.g.
FST tuning systems. The customer
can give directly the desired frequency POD Point Of Deployment: a removable
CAM module, implementing the CA
system for a host (e.g. a TV-set) POR Power On Reset, signal to reset the uP PSDL Power Supply for Direct view LED
backlight with 2D-dimming PSL Power Supply with integrated LED
drivers PSLS Power Supply with integrated LED
drivers with added Scanning
functionality PTC Positive Temperature Coefficient,
non-linear resistor PWB Printed Wiring Board (same as “PCB”) PWM Pulse Width Modulation QRC Quasi Resonant Converter QTNR Quality Temporal Noise Reduction QVCP Quality Video Composition Processor RAM Random Access Memory RGB Red, Green, and Blue. The primary
color signals for TV. By mixing levels
of R, G, and B, all colors (Y/C) are
reproduced. RC Remote Control RC5 / RC6 Signal protocol from the remote
control receiver RESET RESET signal ROM Read Only Memory RSDS Reduced Swing Differential Signalling
data interface R-TXT Red TeleteXT SAM Service Alignment Mode S/C Short Circuit SCART Syndicat des Constructeurs
d'Appareils Radiorécepteurs et
SCL Serial Clock I
Téléviseurs
SCL-F CLock Signal on Fast I SD Standard Definition SDA Serial Data I SDA-F DAta Signal on Fast I
2
C
2
C bus
2
C
2
C bus SDI Serial Digital Interface, see “ITU-656” SDRAM Synchronous DRAM SECAM SEequence Couleur Avec Mémoire.
Colour system mainly used in France and East Europe. Colour carriers = 4.406250 MHz and
4.250000 MHz SIF Sound Intermediate Frequency SMPS Switched Mode Power Supply SoC System on Chip SOG Sync On Green SOPS Self Oscillating Power Supply SPI Serial Peripheral Interface bus; a 4-
wire synchronous serial data link
standard S/PDIF Sony Philips Digital InterFace SRAM Static RAM SRP Service Reference Protocol SSB Small Signal Board SSC Spread Spectrum Clocking, used to
reduce the effects of EMI STB Set Top Box STBY STand-BY SVGA 800 × 600 (4:3) SVHS Super Video Home System SW Software
SWAN Spatial temporal Weighted Averaging
Noise reduction SXGA 1280 × 1024 TFT Thin Film Transistor THD Total Harmonic Distortion TMDS Transmission Minimized Differential
Signalling TS Transport Stream TXT TeleteXT TXT-DW Dual Window with TeleteXT UI User Interface uP Microprocessor UXGA 1600 × 1 200 (4:3) V V-sync to the module VESA Video Electronics Standards
Association VGA 640 × 480 (4:3) VL Variable Level out: processed audio
output toward external amplifier VSB Vestigial Side Band; modulation
method WYSIWYR What You See Is What You Record:
record selection that follows main
picture and sound WXGA 1280 × 768 (15:9) XTAL Quartz crystal XGA 1 024 × 768 (4:3) Y Luminance signal Y/C Luminance (Y) and Chrominance (C)
signal YPbPr Component video. Luminance and
scaled color difference signals (B-Y
and R-Y) YUV Component video
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4. Mechanical Instructions

Index of this chapter:
4.1
Cable Dressing
4.2 Service Positions
4.3 Assy/Panel Removal
4.4 Set Re-assembly

4.1 Cable Dressing

Notes:
• Figures below can deviate slightly from the actual situation, due to the different set executions.

Figure 4-1 Cable dressing 32" 35xx series

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Figure 4-2 Cable dressing 32" 45xx series

Figure 4-3 Cable dressing 39" 35xx series

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Figure 4-4 Cable dressing 39" 45xx series

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Figure 4-5 Cable dressing 42" 35xx series

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Figure 4-6 Cable dressing 42" 45xx series

Figure 4-7 Cable dressing 42" 5xxx series

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Mechanical Instructions

Figure 4-8 Cable dressing 46" 45xx series

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Figure 4-9 Cable dressing 46" 55xx series

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100 m.m. (11 ×) 150 m.m. (1 ×)
Note: keep out area, ensure no cable dressings are allowed within the red marked area.
EN 15L12M3.1L LA 4.

Figure 4-10 Cable dressing 47" 70xx series

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100 m.m. (11 ×) 150 m.m. (1 ×)
Note: keep out area, ensure no cable dressings are allowed within the red marked area.
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100 m.m. (13 ×) 150 m.m. (1 ×)
Note: keep out area, ensure no cable dressings are allowed within the red marked area.
Mechanical Instructions

Figure 4-11 Cable dressing 47" 80xx series

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Figure 4-12 Cable dressing 55" 70xx series

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100 m.m. (13 ×) 150 m.m. (1 ×)
Note: keep out area, ensure no cable dressings are allowed within the red marked area.
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Figure 4-13 Cable dressing 55" 80xx series

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4.2 Service Positions

For easy servicing of a TV set, the set should be put face down on a soft flat surface, foam buffers or other specific workshop tools. Ensure that a stable situation is created to perform measurements and alignments. When using foam bars take care that these always support the cabinet and never only the display. Caution: Failure to follow these guidelines can seriously damage the display! Ensure that ESD safe measures are taken.

4.3 Assy/Panel Removal

4.3.1 Rear Cover

Warning: Disconnect the mains power cord before removing
the rear cover.
Attention: Sets in the 7000 & 8000 range are equipped with a hatch to disconnect the keyboard control panel and/or Ambilight units. Ambilight sets in the 5x00 range are equipped with a hatch to disconnect the Ambilight units.
These hatches are indicated on the rear cover with
SERVICE h. It is mandatory to open the hatches and disconnect the cables prior to removal of the rear cover!
1. For sets in the 5x000 range equipped with Ambilight: open the hatch that covers the Ambilight connector and unplug the connector; see Figure 4-14 the connector [2] and slide the cable upwards [3].
2. For sets in the 7000 & 8000 range: open the hatch that covers the leading edge and unplug the connectors; see
Figure 4-15
3. Lift the rear cover from the TV. Make sure that wires and flat foils are not damaged while lifting the rear cover from the set.
.
. Remove the screw [1], lift
Mechanical Instructions
Figure 4-14 Rear cover removal - back cover hatch
Figure 4-15 Rear cover removal - leading edge hatch
Refer to Figure 4-16
for screw positions.
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M4 × 10
M3 × 8
1
1
1
1
2
2
2
2
2
2
2
22
2
M3 × 5
3
3
Q3 × 10
4
4
4
4
4
44
4
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1
3
3
3
3
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Figure 4-16 Back cover screw positions

4.3.2 Small Signal Board

Refer to Figure 4-14
1. Unplug the LVDS connector [1].
2. Unplug the remaining connectors [2].
3. Remove the screws [3].
for details.

4.3.3 Ambilight units in Rear Cover

The Ambilight units are affixed in the rear cover and will self­destruct upon removal.
Attention: it is of the utmost importance to remove all remains of any adhesive that might be left on the inside of the rear cover, prior to affixing the new Ambilight units.
The new units come with double-sided adhesive tape. Ensure a correct mounting to avoid uneven light emission of the units. Refer to Figure 4-18
for the wiring position.
Figure 4-17 SSB
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4.4 Set Re-assembly

To re-assemble the whole set, execute all processes in reverse order.
h For sets in the 7000- and 8000 range, it is of the utmost importance to keep cables out of the swivel range when re­assembling the set, to avoid future cable cut.
Refer to Figure 4-10
Notes:
• While re-assembling, make sure that all cables are placed and connected in their original position.
• Pay special attention not to damage the EMC foams in the set. Ensure that EMC foams are mounted correctly.
to Figure 4-13.
Figure 4-18 Back cover Ambilight wiring
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MODEL:
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PROD.SERIAL NO:
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39mm
27mm
(CTN Sticker)
Display Option
Code

5. Service Modes, Error Codes, and Fault Finding

Index of this chapter:
5.1
Test Points

5.2 Service Modes

5.3 Service Tools
5.4 Error Codes
5.5 The Blinking LED Procedure
5.6 Fault Finding and Repair Tips
5.7 Ambilight Parameters in NVM
5.8 Pairing/Unpairing the Remote Control unit
5.9 Software Upgrading

5.2.1 General

Next items are applicable to all Service Modes or are general.
Life Timer
During the life time cycle of the TV set, a timer is kept (called “Op. Hour”). It counts the normal operation hours (not the Stand-by hours). The actual value of the timer is displayed in SDM and SAM in a decimal value. Every two soft-resets increase the hour by +1. Stand-by hours are not counted.
EN 21L12M3.1L LA 5.

5.1 Test Points

In the chassis schematics and layout overviews, the test points are mentioned. In the schematics and layouts, test points are indicated with “Fxxx” or “Ixxx”. As most signals are digital, it will be difficult to measure waveforms with a standard oscilloscope. Several key ICs are capable of generating test patterns, which can be controlled via ComPair. In this way it is possible to determine which part is defective.
Perform measurements under the following conditions:
• Service Default Mode.
• Video: Color bar signal.
• Audio: 3 kHz left, 1 kHz right.
5.2 Service Modes
The Service Mode feature is split into four parts:
• Service Default Mode (SDM).
• Service Alignment Mode (SAM).
• Customer Service Mode (CSM).
• Computer Aided Repair Mode (ComPair).
SDM and SAM offer features, which can be used by the Service engineer to repair/align a TV set. Some features are:
• A pre-defined situation to ensure measurements can be made under uniform conditions (SDM).
• Activates the blinking LED procedure for error identification when no picture is available (SDM).
• The possibility to overrule software protections when SDM is entered via the Service pins.
• Make alignments (e.g. White Tone), (de)select options, enter options codes, reset the error buffer (SAM).
• Display information (“SDM” or “SAM” indication in upper right corner of screen, error buffer, software version, operating hours, options and option codes, sub menus).
The CSM is a Service Mode that can be enabled by the consumer. The CSM displays diagnosis information, which the customer can forward to the dealer or call centre. In CSM mode, “CSM”, is displayed in the top right corner of the screen. The information provided in CSM and the purpose of CSM is to:
• Increase the home repair hit rate.
• Decrease the number of nuisance calls.
• Solved customers' problem without home visit.
ComPair Mode is used for communication between a computer and a TV on I2C /UART level and can be used by a Service engineer to quickly diagnose the TV set by reading out error codes, read and write in NVMs, communicate with ICs and the uP (PWM, registers, etc.), and by making use of a fault finding database. It will also be possible to up and download the software of the TV set via I2C with help of ComPair. To do this, ComPair has to be connected to the TV set via the ComPair connector, which will be accessible through the rear of the set (without removing the rear cover).
In this chassis, the set has to be put in Service Mode (SDM, SDA) before you can use ComPair.
In case a call centre or consumer reads “See Type Plate” in CSM mode, he needs to look to the side/bottom sticker to
Software Identification, Version, and Cluster
The software ID, version, and cluster will be shown in the main menu display of SDM, SAM, and CSM. The screen will show: “AAAAAAB-XXX.YYY.MMM.TTT”, where:
• AAAAAA is the chassis name: L12M31L.
• B is the region indication: E= Europe, A= AP/China, U= NAFTA, L= LATAM.
• XXX is the main version number: this is updated with a major change of specification (incompatible with the previous software version). Numbering will go from 0 - 255. YYY is the sub version number: this is updated with a minor change of specification (incompatible with the previous software version). Numbering will go from 0 - 255. MMM is the number of the mandatory (upgrade) release in association with the area of the mandatory (upgrade) release. Numbering will go from 0 - 255. TTT bit 7 to 1 is the area of the mandatory (upgrade) release where 0 - none, 1 - Netflix, rest reserved. TTT bit 0 : 0 = development release, 1 = production release. – If any version number changes, the new version
number is written in the NVM.
– If any version number changes, the default settings are
loaded.
Display Option Code Selection
When after an SSB or display exchange, the display option code is not set properly, it will result in a TV with “no display”. Therefore, it is required to set this display option code after such a repair. To do so, press the following key sequence on a standard RC transmitter: “062598” directly followed by MENU/HOME and “xxx”, where “xxx” is a 3 digit decimal value of the panel type, see sticker on the side/bottom of the cabinet. When the value is accepted and stored in NVM, the set will switch to Stand-by, to indicate that the process has been completed.
Figure 5-1 Location of Display Option Code sticker
During this algorithm, the NVM-content must be filtered, because several items in the NVM are TV-related and not SSB­related (e.g. Model and Prod. S/N). Therefore, “Model” and “Prod. S/N” data is changed into “See Type Plate”. identify the set, for further actions.
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5.2.2 Service Default Mode (SDM)

Purpose
Set the TV in SDM mode in order to be able to create a pre­defined setting for measurements to be made. In this platform, a simplified SDM is introduced (without protection override and without tuning to a predefined frequency).
Specifications
• Set linear video and audio settings to 50%, but volume to 25%. Stored user settings are not affected.
• Set Smart Picture to “Game”.
• Set Smart Sound to “Standard”.
• Tune channel to:
- for analogue SDM: channel 3 (61.25 MHz)
- for digital SDM: channel 26 (545.143 MHz).
• For digital SDM: set PID default from the stream.
• All service-unfriendly modes (if present) are disabled, since they interfere with diagnosing/repairing a set. These service unfriendly modes are: – (Sleep) timer. – Blue mute/Wall paper. – Auto switch “off” (when there is no “ident” signal). – Hotel or hospital mode. – Child lock or parental lock (manual or via V-chip). – Skipping, blanking of “Not favorite”, “Skipped” or
“Locked” presets/channels.
– Automatic storing of Personal Preset or Last Status
settings.
– Automatic user menu time-out (menu switches back/
OFF automatically.
– Auto Volume levelling (AVL).
How to Activate
To activate analogue SDM, use one of the following methods:
• Press the following key sequence on the RC transmitter: “062596” directly followed by the MENU button.
• Short one of the “Service” pads on the TV board during cold start (see Figure 5-2 (remove the short after start-up). Caution: When doing this, the service-technician must know exactly what he is doing, as it could damage the television set.
To activate digital SDM:
• Press the following sequence on the RC transmitter: “062593” directly followed by the MENU button.
). Then press the mains button
• AAAAAAB-XXX.YYY.MMM.TTT: See paragraph
Software Identification, Version, and Cluster for the SW
name definition.
• ERR: Shows all errors detected since the last time the buffer was erased in format <xxx> <xxx> <xxx> <xxx> <xxx> (five errors possible).
• OP: Used to read-out the option bytes. Ten codes (in two rows) are possible.
How to Navigate
As this mode is read only, there is not much to navigate. To switch to other modes, use one of the following methods:
• Command MENU from the user remote will enter the normal user menu (brightness, contrast, color, etc...) with “SDM” OSD remaining, and pressing MENU key again will return to the last status of SDM again.
• To prevent the OSD from interfering with measurements in SDM, command “OSD” or “i+” (“STATUS” or “INFO” for NAFTA and LATAM) from the user remote will toggle the OSD “on/off” with “SDM” OSD remaining always “on”.
• Press the following key sequence on the remote control transmitter: “062596” directly followed by the INFO[i+]/OK button to switch to SAM (do not allow the display to time out between entries while keying the sequence).
How to Exit
Switch the set to Stand-by.
• pressing the standby button on the remote control transmitter or on the television set, or
• via a standard RC-transmitter by keying the “00” sequence.
If you switch the television set “off” by removing the mains (i.e., unplugging the television), the television set will remain in SDM when mains is re-applied, and the error buffer is not cleared. The error buffer will only be cleared when the “clear” command is used in the SAM menu.
Note:
• If the TV is switched “off” by a power interrupt while in SDM, the TV will show up in the last status of SDM menu as soon as the power is supplied again. The error buffer will not be cleared.
• In case the set is accidentally in Factory mode (with an “F” displayed on the screen), pressing and holding “VOL-“ button for 5 seconds and then followed by pressing and holding the “CH-” button for another 5 seconds should exit the Factory mode.
SDM
19300_068_120419.eps
Figure 5-2 Service pad
On Screen Menu
After activating SDM, the following items are displayed, with “SDM” in the upper right corner of the screen to indicate that the television is in Service Default Mode. Menu items and explanation:
• xxxxx: Operating hours (in decimal).
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5.2.3 Service Alignment Mode (SAM)

Purpose
• To change option settings.
• To display / clear the error code buffer.
• To perform alignments.
Specifications
• Operation hours counter (maximum five digits displayed).
• Software version, error codes, and option settings display.
• Error buffer clearing.
• Option settings.
• Software alignments (White Tone).
• NVM Editor.
• Set screen mode to full screen (all content is visible).
• Set Smart Picture to “Game”.
How to Activate
To activate SAM, use one of the following methods:
• Press the following key sequence on the remote control transmitter: “062596” directly followed by the INFO[i+] /OK button. Do not allow the display to time out between entries while keying the sequence.
• Or via ComPair.
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After entering SAM, the following items are displayed, with “SAM” in the upper right corner of the screen to indicate that the television is in Service Alignment Mode.
Menu items and explanation:
1. System Information.
• Op Hour: This represents the life timer. The timer counts normal operation hours, but does not count Stand-by hours.
• MAIN SW ID: See paragraph
Version, and Cluster for the SW name definition.
• ERR: Shows all errors detected since the last time the buffer was erased. Five errors possible.
• OP1/OP2: Used to read-out the option bytes. See paragraph 6.4 section for a detailed description. Ten codes are possible.
2. Clear. Erases the contents of the error buffer. Select this menu item and press the MENU RIGHT key on the remote control. The content of the error buffer is cleared.
3. Options. To set the option bits. See paragraph 6.4
Settings in the “Alignments” chapter for a detailed
description.
4. Alignments.
• RGB Align. To align the White Tone. See
Alignment: for a detailed description.
• Ambilight. To align the Ambilight Units.
5. NVM editor.
• NVM Editor. To change the NVM data in the television
set. See also paragraph 5.6
Tips.
• Service Data. 12 nc data.
6. Upload to USB.
7. Download from USB.
8. Initialise NVM. To initialize a (corrupted) NVM. Be careful, this will erase all settings!
9. Dealer Options.
10. Event Count.
• Hardware Events. To Display and Clear the hardware
events.
• Software Events. To Display and Clear the software
events.
11. RF4CE Pairing Tables. To Clear the paired remote immediately.
How to Navigate
• In the SAM menu, select menu items with the UP/DOWN keys on the remote control transmitter. The selected item will be indicated. When not all menu items fit on the screen, use the UP/DOWN keys to display the next / previous menu items.
• With the LEFT/RIGHT keys, it is possible to: – Activate the selected menu item. – Change the value of the selected menu item. – Activate the selected sub menu.
• When you press the MENU button twice while in top level SAM, the set will switch to the normal user menu (with the SAM mode still active in the background). To return to the SAM menu press the MENU button.
• The “INFO[i+]/OK” key from the user remote will toggle the OSD “on/off” with “SAM” OSD remaining always “on”.
• Press the following key sequence on the remote control transmitter: “062596” directly followed by the MENU button to switch to SDM (do not allow the display to time out between entries while keying the sequence).
Option Settings in the Alignments
Software Identification,
Option
White Tone
Fault Finding and Repair
How to Exit
Switch the set to STANDBY by pressing the mains button on the remote control transmitter or the television set, or by keying-in the “00” sequence on a standard RC-transmitter.
Note:
• When the TV is switched “off” by a power interrupt while in SAM, the TV will show up in “normal operation mode” as soon as the power is supplied again. The error buffer will not be cleared.
• In case the set is in Factory mode by accident (with “F” displayed on screen), pressing and holding “VOL-“ button for 5 seconds and then followed by pressing and holding the “CH-” button for another 5 seconds should exit the Factory mode.

5.2.4 Customer Service Mode (CSM)

Purpose
The Customer Service Mode shows error codes and information on the TV’s operation settings. A call centre can instruct the customer (by telephone) to enter CSM in order to identify the status of the set. This helps them to diagnose problems and failures in the TV before making a service call. The CSM is a read-only mode; therefore, modifications are not possible in this mode.
Specifications
• Ignore “Service unfriendly modes”.
• Set volume to 25%.
• Set Smart Picture to “Game”.
• Set Smart Sound to “Standard”.
• Line number for every line (to make CSM language independent).
• Set the screen mode to full screen (all contents on screen is visible).
• After leaving the Customer Service Mode, the original settings are restored.
• Possibility to use “CH+” or “CH-” for channel surfing, or enter the specific channel number on the RC.
How to Activate
To activate CSM, press the following key sequence on a standard remote control transmitter: “123654” (do not allow the display to time out between entries while keying the sequence).
After entering the Customer Service Mode, the following items are displayed:
Menu Explanation CSM1
1. Set Type. Type number, e.g. 39PFL4508G/78. (*)
2. Production code. Product serial no., e.g. BZ1A1008123456 (*). BZ= Production centre, 1= BOM code, A= Service version change code, 10= Production year, 08= Production week, 123456= Serial number.
3. Installation date. Indicates the date of the first initialization of the TV. This date is acquired via time extraction.
4. a - Option Code 1. Option code information (group 1). b - Option Code 2. Option code information (group 2).
5. SSB. Indication of the SSB factory ID (= 12nc). (*)
6. Display. Indication of the display ID (=12 nc). (*)
7. PSU. Indication of the PSU factory ID (= 12nc).
8. RF4CE. Indication of the RF4CE software version (= 12nc).
How to Store SAM Settings
To store the settings changed in SAM mode (except the OPTIONS and RGB ALIGN settings), leave the top level SAM menu by using the POWER button on the remote control transmitter or the television set. The mentioned exceptions must be stored separately via the STORE button.
(*) If an NVM IC is replaced or initialized, these items must be re-written to it. ComPair will foresee in a possibility to do this. Also the NVM editor in the SAM menu can be used.
Menu Explanation CSM2
1. Current Main SW. Shows the main software version.
2. Standby SW. Shows the Stand-by software version.
3. Panel Code. Shows the current display code.
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PC
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2
C only
Optional power
5V DC
ComPair II Developed by Philips Brugge
RC out
RC in
Optional
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Power ModeLink/
Activity
I
2
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RS232 /UART
Service Modes, Error Codes, and Fault Finding
4. Bootloader ID. Shows the Bootloader software ID.
5. NVM Version. The NVM software version no.
6. Flash ID. Shows the flash ID.
7. e_UM version. To display eUM version.
8. Channel_table_struct_version. Channel structure version.
9. RF4CE software. Shows the RF4CE software version.
Menu Explanation CSM3
1. Signal Quality. Shows the signal quality for RF signals and other sources (No Tuned/Poor/Average/Good).
2. Child lock. This is a combined item for locks. If any lock (Preset lock, child lock, lock after, or Parental lock) is active, this item indicates “active”.
3. HDCP Keys. not used (HDCP key is embedded in the SiL9187 mux IC).
4. To display ethernet MAC address.
5. To display wireless MAC address.
6. not used.
7. not used.
8. not used.
9. not used.
10. Event Counter. Display event and Clear event.
Create a CSM dump on an USB stick
There will be CSM dump to a plugged in USB-stick upon entering CSM-mode. An extended CSM dump will be created when the “OK” button on RC is pressed in CSM while a USB stick is plugged in. A direct CSM flash dump will be created when the buttons “red + 2679” on the remote control are pressed in CSM while a USB stick is plugged in.
Figure 5-3 ComPair II interface connection
Caution: It is compulsory to connect the TV to the PC as
shown in the picture above (with the ComPair interface in between), as the ComPair interface acts as a level shifter. If one connects the TV directly to the PC (via UART), ICs will be blown!
How to Exit
To exit CSM, use one of the following methods:
• Press the MENU/HOME button on the remote control transmitter.
• Press the POWER button on the remote control transmitter.
• Press the POWER button on the television set.

5.3 Service Tools

5.3.1 ComPair

Prerequisite
In this chassis, ComPair can only be used in one of the Service Modes (SAM, SDM).
Introduction
ComPair (Computer Aided Repair) is a Service tool for Philips Consumer Electronics products. and offers the following:
1. ComPair helps you to quickly get an understanding on how to repair the chassis in a short and effective way.
2. ComPair allows very detailed diagnostics and is therefore capable of accurately indicating problem areas. You do not have to know anything about I2C or UART commands yourself, because ComPair takes care of this.
3. ComPair speeds up the repair time since it can automatically communicate with the chassis (when the uP is working) and all repair information is directly available.
4. ComPair features TV software up possibilities.
Specifications
ComPair consists of a Windows based fault finding program and an interface box between PC and the (defective) product. The (new) ComPair II interface box is connected to the PC via an USB cable. For the TV chassis, the ComPair interface box and the TV communicate via a bi-directional cable via the service connector(s).
How to Connect
This is described in the ComPair chassis fault finding database.
2013-Jun-21
How to Order
ComPair II order codes:
• ComPair II interface: 3122 785 91020.
• ComPair UART interface cable: 3138 188 75051.
• Program software can be downloaded from the Philips Service web portal.
Note: For this chassis, no new database is made as ComPair will be phased out. In addition, you can use the ComPair box as level shifter for UART logging.
Additional cables for VCOM Alignment
•ComPair/I
2
C interface cable: 3122 785 90004.
• ComPair/VGA adapter cable: 9965 100 09269.

5.4 Error Codes

5.4.1 Introduction

Error codes are required to indicate failures in the TV set. In principle a unique error code is available for every:
• Activated (SW) protection.
•Failing I
• General I
The last five errors, stored in the NVM, are shown in the Service menu’s. This is called the error buffer. The error code buffer contains all errors detected since the last time the buffer was erased. The buffer is written from left to right. When an error occurs that is not yet in the error code buffer, it is displayed at the left side and all other errors shift one position to the right. An error will be added to the buffer if this error differs from any error in the buffer. The last found error is displayed on the left. An error with a designated error code never leads to a deadlock situation. It must always be diagnosable (e.g. error buffer via OSD or blinking LED or via ComPair). In case a failure identified by an error code automatically results in other error codes (cause and effect), only the error code of the MAIN failure is displayed.
2
C device.
2
C error.
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5.4.2 How to Read the Error Buffer

You can read the error buffer in three ways:
• On screen via the SAM/SDM/CSM (if you have a picture). Example: – ERROR: 0 0 0 0 0 : No errors detected – ERROR: 6 0 0 0 0 : Error code 6 is the last and only
detected error
– ERROR: 9 6 0 0 0 : Error code 6 was detected first and
error code 9 is the last detected (newest) error
• Via the blinking LED procedure (when you have no picture). See paragraph 5.5
The Blinking LED Procedure.
•Via ComPair.

5.4.3 Error codes

The “layer 1” error codes are pointing to the defective board. They are triggered by LED blinking when CSM is activated. In the LC10 platform, only two boards are present: the SSB and the PSU/IPB, meaning only the following layer 1 errors are defined:
•2: SSB
• 3: IPB/PSU
•4: Display
Table 5-1 Error code table
Layer-1 error code
3 IPB/PSU 16 +12 V missing/low, PSU defective
3 IPB/PSU 17 POK line defective (only 7000/8000 range)
2 SSB 13 general I2C bus error on SSB
2 SSB 35 EEPROM I2C error on SSB, 24MC64-W
2 SSB 34 tuner I2C error on SSB
2 SSB 27 channel decoder on SSB
6Light
6 RF4CE 46 RF4CE board error/defective
Defective board
sensor
Layer-2 error code Defective device
43 light sensor board error/defective
Example (2): the content of the error buffer is “12 9 6 0 0” After entering SDM, the following occurs:
• 1 long blink of 5 seconds to start the sequence,
• 12 short blinks followed by a pause of 1.5 seconds,
• 9 short blinks followed by a pause of 1.5 seconds,
• 6 short blinks followed by a pause of 1.5 seconds,
• 1 long blink of 1.5 seconds to finish the sequence,
• The sequence starts again with 12 short blinks.

5.5.2 Displaying the Entire Error Buffer

Additionally, the entire error buffer is displayed when Service Mode “SDM” is entered.

5.6 Fault Finding and Repair Tips

Notes:
• It is assumed that the components are mounted correctly with correct values and no bad solder joints.
• Before any fault finding actions, check if the correct options are set.

5.6.1 NVM Editor

In some cases, it can be convenient if one directly can change the NVM contents. This can be done with the “NVM Editor” in SAM mode. With this option, single bytes can be changed.
Caution:
• Do not change these, without understanding the function of each setting, because incorrect NVM settings may seriously hamper the correct functioning of the TV set!
• Always write down the existing NVM settings, before changing the settings. This will enable you to return to the original settings, if the new settings turn out to be incorrect.

5.6.2 Load Default NVM Values

5.4.4 How to Clear the Error Buffer

The error code buffer is cleared in the following cases:
• By using the CLEAR command in the SAM menu:
• By using the following key sequence on the remote control transmitter: “062599” directly followed by the OK button.
• If the contents of the error buffer have not changed for 50 hours, the error buffer resets automatically.
Note: If you exit SAM by disconnecting the mains from the television set, the error buffer is not reset.

5.5 The Blinking LED Procedure

5.5.1 Introduction

The software is capable of identifying different kinds of errors. Because it is possible that more than one error can occur over time, an error buffer is available, which is capable of storing the last five errors that occurred. This is useful if the OSD is not working properly.
Errors can also be displayed by the blinking LED procedure. The method is to repeatedly let the front LED pulse with as many pulses as the error code number, followed by a period of
1.5 seconds in which the LED is “off”. Then this sequence is
repeated.
Example (1): error code 4 will result in four times the sequence LED “on” for 0.25 seconds / LED “off” for 0.25 seconds. After this sequence, the LED will be “off” for 1.5 seconds. Any RC command terminates the sequence. Error code LED blinking is in red color.
It is possible to download default values automatically into the NVM in case a blank NVM is placed or when the NVM first 20 address contents are “FF”. After the default values are downloaded, it is possible to start-up and to start aligning the TV set. To initiate a forced default download the following action has to be performed:
1. Switch “off” the TV set with the mains cord disconnected from the wall outlet (it does not matter if this is from “Stand­by” or “Off” situation).
2. Short-circuit the SDM pads on the SSB (keep short circuited, see Figure 5-2
).
3. Press “P+” or “CH+” on the local keyboard (and keep it pressed).
4. Reconnect the mains supply to the wall outlet.
5. Release the “P+” or “CH+” when the set is started up and has entered SDM.
When the downloading has completed successfully, the set will perform a restart. After this, put the set to Stand-by and remove the short-circuit on the SDM pads.
Alternative method:
It is also possible to upload the default values to the NVM with ComPair in case the SW is changed, the NVM is replaced with a new (empty) one, or when the NVM content is corrupted. After replacing an EEPROM (or with a defective/no EEPROM), default settings should be used to enable the set to start-up and allow the Service Default Mode and Service Alignment Mode to be accessed. Refer also to section 5.7
Ambilight Parameters in NVM for checking/setting the correct parameters for the
Ambilight units.
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5.6.3 No Picture

When you have no picture, first make sure you have entered the correct display code. See
Display Option Code Selection for the instructions.

5.6.4 Unstable Picture via HDMI input

Check (via ComPair) if HDMI EDID data is properly programmed.

5.6.5 No Picture via HDMI input

Check if HDCP key is valid. This can be done in CSM.

5.6.6 HDMI CEC Not Functioning

Go to Home/Menu ->Setup -> Installation -> Preference and set the Easylink option to “on”. Also check if the connected device is CEC enabled.

5.6.7 TV Will Not Start-up from Stand-by.

Possible Stand-by Controller failure. Reflash the SW.

5.6.8 Cannot measure 1 kHz signal at tweeter 1D01 connector

This is normal behavior. Sound system is active 2.1 system with separate tweeter and subwoofer paths. Use 8 kHz test signal for tweeter measurement.

5.6.9 Low output measured at tweeter 1D01 connector

This is normal behavior. Tweeter only covers higher frequency for rated power (4 W each), whereas the subwoofer output (1D02 connector) is full range coverage for output power of 12 W.
• Manually store a known channel and check if there is IF output at tuner pins 2& 3; if not, tuner may be faulty
• Supply voltage (1V2, 2V5, 3V3) presence available to digital demodulator 7210
• Correct functioning of crystal 1205 (41 MHz)
• Pin DEMOD_RST is HIGH in normal operation
• Transport stream output from 7210 is available; if yes, check Video section.

5.6.13 USB troubleshooting

• USB hub does not work when it is plugged in to USB2 and
-3.
-> Connect USB hub to USB1 (only this port supports hub)
• TV cannot detect the presence of USB devices.
-> USB device maybe faulty, replace with another USB device.
• TV cannot detect the presence of USB devices.
-> Ensure USB device connected to the TV USB input ports comply with USB standard (USB certified).
• TV sometimes can/cannot detect USB devices.
-> If connected to a passive USB hub, remove the passive USB hub.
-> Devices connected to a passive USB hub may have drawn current exceeding 500 mA (= limit from TV USB port).

5.6.14 Ethernet troubleshooting

• Ethernet cannot establish link.
-> Check the ethernet magnetic that it is stuffed with the correct orientation.
• When connected to computer, the speed indicated on the computer screen is 10 Mbps instead of 100 Mbps.
-> Check the computer network properties setting and ensure that it is set to “Auto”.
• Unable to login to NetTV website.
-> Make sure all of the keys are loaded in e.g. MAC address, ECD key, etc.

5.6.10 No sound output at class D amplifier

Check following points:
• Presence of both supply +V
2
•I
S input signal: pins 15, 20, 21, 22
(12 V) & 3V3D (3.3 V)
SND
- pin 15: MCLK = 12.288 MHz
- pin 20: LRCLK = 48 kHz
- pin 21: SCLK = 3.072 MHz
- pin 22: SDIN = audio data.
• Check I
2
C communication: pins 23 and 24
• Check startup GPIO: pins 19 and 25; for normal operation, both should be HIGH
• Check outputs: pins 1, 36, 39 and 46; all should have a 12 V PWM signal with a switching frequency of 384 kHz.

5.6.11 Front-end: no picture in analog RF mode

Check following points:
• Tuner supply voltage (3V3) presence available at pin 2/4 7216 and F203
2
•I
C lines are working correctly (3V3)
• Manually store a known channel and check if there is IF output at tuner pins 7 & 8; if not, tuner may be faulty
• Check whether picture is present in CVBS; in not, check Video section.

5.6.12 Front-end: no picture in digital RF mode

Check following points:
• Tuner supply voltage (3V3) presence available at pin 2/4 7216 and F203
2
•I
C lines are working correctly (3V3)

5.6.15 HDMI troubleshooting

• TV cannot detect the presence of HDMI source.
-> Check if there is +5 V at pin 18 of HDMI connector.
• No picture on TV screen.
-> Make sure HDCP is valid.
• In PC mode, TV is unable to display picture for certain output resolutions.
-> Check TV specification if the TV can support the selected resolution.
• CEC not functioning.
-> Turn on “Easyliok” feature from the TV menu.
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5.7 Ambilight Parameters in NVM

In following events, the Ambilight parameters should be checked and adapted (if needed) via SAM using the NVM editor:
• NVM upgrade
• SSB exchange.
The information only applies to sets equipped with Ambilight (5000/5500/7000- and 8000 series). Refer also to section 5.2.3
Service Alignment Mode (SAM).

Table 5-2 Ambilight configuration settings

NVM address Value (in dec)
Hex Dec 5000/5500/7000 series 8000 series
D2E 3374 196 64
D3F 3391 196 64
D50 3408 196 64
D61 3425 196 64
D72 3442 196 64
Refer to Table 5-2
Ambilight configuration settings.
1. go via SAM to the NVM editor
2. in the NVM editor, go to all decimal addresses as specified for the applicable set type
3. check the decimal values and edit if needed.

5.8 Pairing/Unpairing the Remote Control unit

Upon changing the remote control unit, one should (re-)pair the unit by following the following instructions.

5.8.1 Pairing procedure

1. Check if unit is already paired by pressing the <Home> button. a. if TV responds by showing the HOME menu, unit is already paired. Press again the <Home> button to leave the HOME menu and do not execute the pairing action. b. if TV does not respond, goto step 2.
2. Press the <red> and <blue> button simultaneously for more than 2 seconds while pointing the remote control unit to the TV.
3. An OSD message should appear indicating the correct pairing of the unit.
4. Press <Home> on the remote control unit to check if the unit is paired correctly to the TV.
stand alone set. A description on how to upgrade the main software can be found in the DFU or on the Philips website.

5.9.2 Main Software Upgrade

Automatic Software Upgrade
In “normal” conditions, so when there is no major problem with the TV, the main software and the default software upgrade application can be upgraded with the “autorun.upg” (FUS part in the one-zip file). This can also be done by the consumers themselves, but they will have to get their software from the commercial Philips website or via the Software Update Assistant in the user menu (see DFU). The “Autorun.upg” file must be placed in the root of your USB stick.
How to upgrade:
1. Copy the “autorun.upg” file to the root of an USB stick.
2. Insert the USB stick in the side I/O while the set is “on”. The TV will prompt an upgrade message. Press “Update” to continue, after which the upgrading process will start. As soon as the programming is finished, the set must be restarted.
In the “Setup” menu you can check if the latest software is running.

5.9.3 How to Copy NVM Data to/from USB

Write NVM Data to USB
1. Insert the USB stick into the USB slot while in SAM mode.
2. Execute the command "NVM Copy" > "NVM Copy to USB", to copy the NVM data to the USB stick. The NVM filename on the USB stick will be named "L12M31L_NVM_T2U.BIN" (this takes a couple of seconds).
Write NVM Data to TV
1. First, ensure (via a PC) that the filename on the USB stick has the correct format: "L12M31L_NVM_U2T.BIN".
2. Insert the USB stick into the USB slot while in SAM mode.
3. Execute the command "NVM Copy" > "NVM Copy from USB" to copy the USB data to NVM (this takes about a minute to complete).
To write an NVM mask to the TV, ensure that the mask has the correct format: "L12M31L_NVM_U2T.MAK" (0x00 to write protect, 0xFF to overwrite). Important: The file must be located in the "/Repair" directory of the USB stick.

5.8.2 Unpairing procedure

1. Check if unit is already paired to any TV by pressing the <Home> button. a. if no TV responds, the unit is already unpaired. You may pair it now to any TV by following the steps mentioned in section 5.8.1
Pairing procedure.
b. if any TV responds, goto step 2.
2. Press the <TV> and <Mute> and <0> button simultaneously for more than 2 seconds while pointing the remote control unit to the TV.
3. Press the <Home> button to check if the TV is unpaired correctly. The TV should not respond.
- Don’t press the OK button as in some conditions the unit might re-pair with the TV.
- Don’t press the <red> and <blue> button as the unit will re-pair with the TV.
4. Remove the batteries from the unit.

5.9 Software Upgrading

5.9.1 Introduction

It is possible for the user to upgrade the main software via the USB port. This allows replacement of a software image in a

5.9.4 How to Copy EDID Data to/from USB

Write EDID Data to USB
1. Insert the USB stick into the USB slot while in SAM mode.
2. Execute the command "NVM Copy" > "EDID Copy to USB", to copy the EDID data to the USB stick. The filename on the USB stick will be named "L12M31L_EDID_T2U.BIN" (this takes a couple of seconds).
Write EDID Data to TV
1. First, ensure (via a PC) that the filename on the USB stick has the correct format: "L12M31L_EDID_U2T.BIN".
2. Insert the USB stick into the USB slot while in SAM mode.
3. Execute the command "NVM Copy" > "EDID Copy from USB" to copy the USB data to EDID (this takes about a minute to complete).
Important: The file must be located in the "/Repair" directory of the USB stick.

5.9.5 How to Copy the Channel List to/from USB

Write Channel List Data to USB
1. Insert the USB stick into the USB slot while in SAM mode.
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2. Execute the command "Channel list Copy to USB", to copy the channel list data to the USB stick. The filename on the USB stick will be named "L12M31L_CHTB_T2U.BIN" (this takes a couple of seconds).
Write Channel List Data to TV
1. First, ensure (via a PC) that the filename on the USB stick has the correct format: "L12M31L_CHTB_U2T.BIN".
2. Insert the USB stick into the USB slot while in SAM mode.
3. Execute the command "Channel list Copy from USB" to copy the USB data to the TV (this takes about a minute to complete).
Important: The file must be located in the "/Repair" directory of the USB stick.
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6. Alignments

Index of this chapter:
6.1
General Alignment Conditions

6.2 Hardware Alignments

6.3 Software Alignments

6.4 Option Settings
6.5 Cable Position Numbers
Note: Figures below can deviate slightly from the actual situation, due to the different set executions.
General: The Service Default Mode (SDM) and Service Alignment Mode (SAM) are described in chapter 5. Menu navigation is done with the CURSOR UP, DOWN, LEFT or RIGHT keys of the remote control transmitter.

6.1 General Alignment Conditions

Perform all electrical adjustments under the following conditions:
• Power supply voltage (depends on region): – AP-NTSC: 120 V – AP-PAL-multi: 120 - 230 V – EU: 230 V
AC
– LATAM-NTSC: 120 - 230 V – US: 120 V
AC
• Connect the set to the mains via an isolation transformer with low internal resistance.
• Allow the set to warm up for approximately 15 minutes.
• Measure voltages and waveforms in relation to correct ground (e.g. measure audio signals in relation to AUDIO_GND). Caution: It is not allowed to use heatsinks as ground.
• Test probe: Ri > 10 Mohm, Ci < 20 pF.
• Use an isolated trimmer/screwdriver to perform alignments.
or 230 VAC / 50 Hz ( 10%).
AC
/ 50 Hz ( 10%).
AC
/ 50 Hz ( 10%).
/ 50 Hz ( 10%).
AC
/ 60 Hz ( 10%).
Alignments
– All “White point” values initial to “127”.
In case you have a color analyzer:
• Measure with a calibrated (phosphor- independent) color analyzer (e.g. Minolta CA-210) in the centre of the screen. Consequently, the measurement needs to be done in a dark environment.
• Adjust the correct x,y coordinates (while holding one of the White point registers R, G or B on max. value) by means of decreasing the value of one or two other white points to the correct x,y coordinates (see Table 6-1
values LC320EUE-SEM1 (panel ID 402) to 6-7 White D alignment values LC420EUE-SEF2 (panel ID 411)).
Tolerance: dx: 0.002, dy: 0.002.
• Repeat this step for the other color Temperatures that need to be aligned.
• When finished return to the SAM root menu and press STANDBY on the RC to store the aligned values to the NVM.
Table 6-1 White D alignment values LC320EUE-SEM1
(panel ID 402)
Value Cool (9480 K) Normal (8050 K) Warm (6100 K)
x 0.280 0.292 0.319
y 0.299 0.314 0.347
Table 6-2 White D alignment values LC420EUE-SEM2
(panel ID 403)
Value Cool (9710 K) Normal (8170 K) Warm (6150 K)
x 0.280 0.291 0.318
y 0.296 0.311 0.345
White D alignment
EN 29L12M3.1L LA 6.
6.2 Hardware Alignments
There are no hardware alignments foreseen for this chassis.
6.3 Software Alignments
With the software alignments of the Service Alignment Mode (SAM) the RGB settings can be aligned.

6.3.1 Tuner Adjustment (RF AGC Take Over Point)

Purpose: To keep the tuner output signal constant as the input
signal amplitude varies.
No alignment is necessary, as the AGC alignment is done automatically.

6.3.2 RGB Alignment

Before alignment, set the picture as follows:
Picture Setting
Dynamic backlight Off
Dynamic Contrast Off
Colour Enhancement Off
Picture Format Unscaled
Light Sensor Off
Brightness 50
Colour 0
Contrast 100
White Tone Alignment:
• Activate SAM.
• Select “RGB Align.“ and choose a color temperature.
• Use a 100% white screen as input signal and set the following values: – “Red BL Offset” and “Green BL Offset” to “7” (if
present).
Table 6-3 White D alignment values LC470EUE-SEM2
(panel ID 404)
Value Cool (9490 K) Normal (8060 K) Warm (6080 K)
x 0.281 0.292 0.319
y 0.297 0.311 0.345
Table 6-4 White D alignment values LC420EUE-FEP1
(panel ID 406)
Value Cool (9540 K) Normal (8060 K) Warm (6130 K)
x 0.280 0.291 0.318
y 0.300 0.314 0.347
Table 6-5 White D alignment values LC470EUF-FEP1
(panel ID 407)
Value Cool (10100 K) Normal (8450 K) Warm (6310 K)
x 0.277 0.288 0.315
y 0.295 0.310 0.343
Table 6-6 White D alignment values LC550EUF-FEP1
(panel ID 410)
Value Cool (t.b.d. K) Normal (t.b.d. K) Warm (t.b.d. K)
x t.b.d. t.b.d. t.b.d.
y t.b.d. t.b.d. t.b.d.
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Alignments
Table 6-7 White D alignment values LC420EUE-SEF2
(panel ID 411)
Value Cool (t.b.d. K) Normal (t.b.d . K) Warm (t.b.d. K)
x t.b.d. t.b.d. t.b.d.
y t.b.d. t.b.d. t.b.d.
If you do not have a color analyzer, you can use the default values. This is the next best solution. The default values are average values coming from production (statistics).
• Set the RED, GREEN and BLUE default values per temperature according to the values in the “Tint settings” table.
• When finished return to the SAM root menu and press STANDBY on the RC to store the aligned values to the NVM.
Table 6-8 Tint settings 32" 3508 series
Colour Temp. R G B
Cool 219 238 255
Normal 253 253 247
Warm 255 226 171
Table 6-9 Tint settings 32" 3518 series
Colour Temp. R G B
Cool 249 228 250
Normal 255 224 220
Warm 255 188 135
Table 6-15 Tint settings 42" 5008 series
Colour Temp. R G B
Cool 215 223 255
Normal 250 244 251
Warm 255 219 176
Table 6-16 Tint settings 42" 5508 series
Colour Temp. R G B
Cool 219 226 255
Normal 252 246 250
Warm 255 218 172
Table 6-17 Tint settings 46" 4508 series
Colour Temp. R G B
Cool 233 222 253
Normal 255 233 237
Warm 255 202 163
Table 6-18 Tint settings 46" 5508 series
Colour Temp. R G B
Cool 255 210 222
Normal 255 198 187
Warm 255 170 114
Table 6-19 Tint settings 47" 7008 series
Table 6-10 Tint settings 32" 4508 series
Colour Temp. R G B
Cool t.b.d. t.b.d. t.b.d.
Normal t.b.d. t.b.d. t.b.d.
Warm t.b.d. t.b.d. t.b.d.
Table 6-11 Tint settings 39" 3508 series
Colour Temp. R G B
Cool t.b.d. t.b.d. t.b.d.
Normal t.b.d. t.b.d. t.b.d.
Warm t.b.d. t.b.d. t.b.d.
Table 6-12 Tint settings 39" 4508 series
Colour Temp. R G B
Cool t.b.d. t.b.d. t.b.d.
Normal t.b.d. t.b.d. t.b.d.
Warm t.b.d. t.b.d. t.b.d.
Table 6-13 Tint settings 42" 3508 series
Colour Temp. R G B
Cool 238 237 253
Normal 255 232 232
Warm 255 206 145
Colour Temp. R G B
Cool 219 227 255
Normal 250 242 241
Warm 255 215 151
Table 6-20 Tint settings 47" 8008 series
Colour Temp. R G B
Cool 193 216 255
Normal 241 246 254
Warm 255 228 165
Table 6-21 Tint settings 55" 7008 series
Colour Temp. R G B
Cool 233 218 255
Normal 255 235 236
Warm 255 205 144
Table 6-22 Tint settings 55" 8008 series
Colour Temp. R G B
Cool 240 217 255
Normal 255 227 230
Warm 255 195 137

6.4 Option Settings

Table 6-14 Tint settings 42" 4508 series
Colour Temp. R G B
Cool t.b.d. t.b.d. t.b.d.
Normal t.b.d. t.b.d. t.b.d.
Warm t.b.d. t.b.d. t.b.d.
2013-Jun-21

6.4.1 Introduction

The microprocessor communicates with a large number of I 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.
Notes:
• After changing the option(s), save them with the STORE command.
2
C
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• The new option setting becomes active after the TV is switched “off” and “on” again with the mains switch (the EAROM is then read again).

6.4.2 How To Set Option Codes

When the NVM is replaced, all options will require resetting. To be certain that the factory settings are reproduced exactly, you must set all option numbers. You can find the correct option numbers see sticker on the inside the cabinet.
How to Change Options Codes
An option code (or “option byte”) represents eight different options (bits). All options are controlled via ten option bytes (OP#1... OP#10). Activate SAM and select “Options”. Now you can select the option byte (OP#1... OP#10) with the CURSOR UP/ DOWN keys, and enter the new 3 digit (decimal) value. For the correct factory default settings, see the sticker inside the set.

6.4.3 Display Code Overview

Table 6-23 Display code overview
Alignments
EN 31L12M3.1L LA 6.
CTN Panel Type Disp.
32PFL3508G/xx LCO3151A051AD5010X 440
32PFL3518G/xx LCA315HVN01ADA010X 441
32PFL4508G/xx LCA315HVN01A12010X 444
39PFL3508G/xx LCA390HVN01AD6080T 453
39PFL4508G/xx LCA390HVN01A03010X 445
42PFL3508G/xx LCA420HVN04AD8030X 442
42PFL4508G/xx LCA420HVN04A11010X 454
42PFL5x08G/xx LCA420HVD02A22030X 447
46PFL4508G/xx LCA460HVD02A12010X 446
46PFL5508G/xx LCA460HVD02A12010X 448
47PFL7008G/xx LC470EUF-PFF1 430
47PFL8008G/xx LC470EUF-PFF1 430
55PFL7008G/xx LC550EUF-PFF1 431
55PFL8008G/xx LC550EUF-PFF1 431

6.5 Cable Position Numbers

In this chassis, the cable position numbers can be defined via the rule that the number is always starting with an “E” followed by the connector number of the current sourcing board. The order is always seen from where the power initiates from. So from PSU to SSB, from SSB to IR/LED panel, from IR/LED panel to keyboard control panel. For example, a cable from the PSU connector CN902 to the SSB connector CN701, will have the position number ECN902.
code
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19510_200_130424.eps
130424

7. Circuit Descriptions

Index of this chapter:
7.1
Introduction
Notes:
•Only new circuits (circuits that are not published recently) are described.
• Figures can deviate slightly from the actual situation, due to different set executions.
• For a good understanding of the following circuit descriptions, please use chapter 9.
10.
Circuit Diagrams and PWB Layouts. Where necessary,
you will find a separate drawing for clarification.
Block Diagrams and
Circuit Descriptions

7.1 Introduction

The L12M3.1L LA chassis is a digital chassis using a Mediatek chipset. It covers screen sizes of 32" to 55".
Main key components are the Mediatek MT5396 integrated “System On Chip” (SoC) that supports multimedia video/audio input.
System SoC is based on MT5396:
• NAND Flash – 512 Mbyte, Hynix.
• DDR 1.33 GHz– 512 + 256 Mbyte, Hynix.
Tuner/Frontend configuration:
• Sony Silicon In Can Tuner (SUT-RA214Z).
• Sony Digital Demodulator (CXD2828).
• Analog demodulator embedded in MT5396.
Audio configuration:
• Texas Instruments Audio Class-D Amplifier (TAS5731PHP).
• Texas Instruments Headphone Amplifier (TPA6111A2DGN).
2013-Jun-21

Figure 7-1 SSB key component overview 3500-, 4500-, 5000, 5500 series

Page 33
Circuit Descriptions
19510_201_130424.eps
130424
EN 33L12M3.1L LA 7.

Figure 7-2 SSB key component overview 7000-, 8000 series

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EN 34 L12M3.1L LA8.
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Block diagram
IQ Gen.
Image
Rejection
PLL
AGC
Terr.
In
Balun
FIL
1KΩ
100Ω
1KΩ
10
11
7
8
9
2
3
100Ω
4
1
100Ω
I2C
100Ω
IQ Gen.
Image
Rejection
PLL
3.3 V
AGC
Terr.
In
Balun
FIL
1KΩ
100Ω
1KΩ
10
Tuner I2C (SDA, SCL)
IFOUT2
IFOUT1
AGC2
AGC1
11
7
8
9
2
3
100Ω
4
1
100Ω
I2C
100Ω
IC Data Sheets

8. IC Data Sheets

This section shows the internal block diagrams and pin layouts of ICs that are drawn as "black boxes" in the electrical diagrams (with the exception of "memory" and "logic" ICs).

8.1 Diagram 10-6-2 B02A, Tuner & demodulator, Type SUT-RA214 (IC1201)

Figure 8-1 Internal block diagram and pin configuration

2013-Jun-21
Page 35

8.2 Diagram 10-6-2 B02A, Tuner & demodulator, Type CXD2828 (IC7210)

19260_300_120320.eps
120323
Block diagram
Pinning information
3 4 5 6 7 8 9 11 12
XTALSEL
37
TTUSDA
38
TTUSCL
39
SLVADR1
40
CVDD
41
42
GPIO1
43
TIFAGC
44
45
46
47
2829
TSDATA4
TSDATA5
CXD2828ER-T4
OSCEN_X
RST_X
10
TSDATA3
3032333435
XTALI
31
XTALO
48
49
OSCMODE
25262736
XVSS
13
14
15
16
17
18
19
20
21
22
23
24
VSS
TSDATA7
DVDD
SCL
SDA
CVDD
TSDATA6
VSS
TESTMODE
SLVADR0
XVDD
PVDD
CVDD
VSS
PVSS
VSS
TAINM
TAINP
TAVDD
21
GPIO0
GPIO2
TSSYNC
TSVALID
TSCLK
VSS
VSS
DVDD
TSDATA0
TSDATA1
CVDD
TSDATA2
TAVSS
Oscillator
Host I2C
GPIO
TTUSDA
TTUSCL
Terrestrial
Tuner
TIFAGC
TAINP
TAINM
TSCLK TSSYNC TSVALID TSDATA[7:0]
ADC
OFDM
Demodulator
AGC
TMCC
Status
Monitor
ISDB-T
Viterbi
decoder
RS
decoder
TSIF
Tuner I2C
SDA SCL
41/20.5MHz
XTALI
XTALO
GPIO0 (EWS) GPIO1 (PWM) GPIO2 (TSERR)
OSCEN_X XTALSEL
PLL Logic
CXD2828ER
IC Data Sheets
EN 35L12M3.1L LA 8.

Figure 8-2 Internal block diagram and pin configuration

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Block diagram
MT5396JDNJ
IC Data Sheets

8.3 Diagram 10-6-4 B04A, MTK5396 power, Type MT5396 (IC7300)

Figure 8-3 Internal block diagram

2013-Jun-21
Page 37
IC Data Sheets
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Pinning information 1, MT5396JDNJ
825 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19
A
BRDQ0 BRDQ6 DDRV DDRV ARDQ21
ARDQM2
ARDQS2 #
ARDQ22 ARBA0 ARA2 ARA13
ARDQ8 DVSS
B
BRDQ9 BRDQ2 DDRV DDRV ARDQ23
ARDQ30
ARDQS2 ARDQ31
ARDQ18 ARA3
ARRESE T
ARA7
ARDQ1 DVSS
C
BRDQ13 BRDQ4 DDRV DDRV ARDQ19 ARDQ24 ARDQ28 ARDQS3
ARCLK1 #
ARDQ29 ARDQ27 ARDQ16 ARDQ20 ARA11 ARA14 ARDQ5 ARDQ3 DVSS ARDQM0
D
BRDQM1 BRDQ15 BRDQ11 DDRV DDRV ARDQ17 ARDQ26
ARDQS3 #
ARCLK1 ARDQ25 DVSS DVSS ARA8 ARWE# ARDQ7 ARBA2 ARDQ10 DVSS ARDQ14
E
BRDQS0 #
BRDQS0 DDRV DDRV DVSS DVSS DVSS ARDQM3 DVSS DVSS ARA4 ARA6 ARA9 ARCS# ARCAS# ARODT DVSS
F
BRDQS1
BRDQS1# BRCLK0
#
BRCLK0 DVSS DDRV DDRV DVSS DVSS ARCKE ARA10 DVSS ARA12 ARA1 ARA0 ARA5 ARRAS# ARCSX# DVSS
G
BRDQM0 BRDQ12 BRDQ14 BRCSX# DDRV DDRV
MEMTN MEMTP ARBA1
RVREF_ B
DVSS DDRV DVSS DVSS DDRV DVSS
H
BRDQ10 BRRAS# BRCAS# BRODT DDRV DDRV
DDRV DVSS
DDRV
DVSS
J
BRDQ1 BRDQ3 BRDQ8 DVSS DVSS DVSS
DDRV
DDRV DVSS DVSS
K
BRDQ5 BRDQ7 BRCS# BRBA2 BRA5 BRA0 DVSS
L
BRA7 BRWE# BRA14 BRA8 DVSS DVSS
M
BRA2
BRRESE T
BRA9 BRA13 BRA11
DVSS
N
BRBA0 BRA3 BRA1 BRA6 BRA12 BRA4 DDRV
AVD D33 _ MEMPLL
AVSS33_ MEMPLL
P
BRDQ22 BRDQ18 BRDQ20 BRA10 BRBA1 BRCKE DDRV
RVREF_ C
VCCK VCCK VCCK VCCK VCCK VCCK
R
DVSS DVSS DVSS DVSS DVSS DVSS DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
T
BRDQ27 BRDQ16 DDRV DDRV DVSS DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
U
BRDQM3 BRDQ31 BRDQ29 BRDQ25 DDRV DDRV DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
V
BRDQS2 #
BRDQS2
BRCLK1 #
BRCLK1 DDRV DDRV
RVREF_ D
VCCK DVSS DVSS DVSS DVSS DVSS
W
BRDQS3
BRDQS3 #
DVSS DVSS DVSS DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
Y
BRDQM2 BRDQ30 BRDQ28 DVSS DVSS DVSS DVSS DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
AA
BRDQ24 BRDQ26 DVSS
DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
AB
BRDQ21 BRDQ23 BRDQ19 BRDQ17 DVSS DVSS
VCCK DVSS DVSS DVSS DVSS DVSS
AC
DDRV DDRV DDRV DDRV DDRV DDRV
VCCK VCCK VCCK VCCK VCCK VCCK
AD
BE4P BE4N
AVD D12 _ REC
REXT
AVDD33_ COM
AVD D33 _ LD
VCCK
AVD D12 _ RGB
AE
BE3P BE3N BECKP BECKN
AVSS33_ LVD SB
AVDD33_ LVDSB
AF
BE2P BE2N
AVSS12_ VPLL
AVDD12_ VPLL
AG
BE1P BE1N BE0P BE0N
AVSS12_ LVD S_1
AVDD12_ LVDS_1
REXT_V PLL
AH
BO4P BO4N
AVSS33_ LVDSA
AVDD33_ LVDSA
AJ
BO3P BO3N BOCKP BOCKN
AVSS12_ LVD S_2
AVDD12_ LVDS_2
AK
BO2P BO2N
VCC3IO_B VCC3IO_B VCC3IO_
B
AVSS33_ VGA_ST B
AVD D33 _ VGA_ST B
AL
BO1P BO1N BO0P BO0N
VCC3IO_ B
AVSS12_ REC
AVSS33_ COM
AVSS33_ LD
AM
AE4P AE4N
VCCK VCCK LDM_DO
AOSDAT A4
AOSDAT A3
AOMCLK
JTDI
PHYLED 0
OPCTRL7 OPCTRL
2
AN
AE3P AE3N
VCCK VCCK
AOSDAT A0
AOSDAT A1
AOSDAT A2
OSCL0
JTRST# OSCL1
PHYLED 1
OPCTRL9 OPCTRL
6
AP
AECKP AECKN AO4P AO3P AO2P AO1P VCCK VCCK GPIO52 LDM_DI AOLRCK OSDA0
AVDD33_ USB_P2 P3
JTCK OSDA1
U0RX
OPCTRL 5
AR
AE2P AE2N AO4N AO3N AO2N AO1N VCCK VCCK GPIO54
LDM_VS YNC
AOBCK OPWM0
AVSS33_ USB_P2
JTDO JTMS ASPDIF0 U0TX
OPCTRL 4
AT
AE1P AE0P
AOCKP
AO0P VCCK VCCK GPIO53
LDM_CS OPWM1
USB_DP _P2
USB_DP _P3
U1TX RXVP_1 TXVP_0
AU
AE1N AE0N
AOCKN
AO0N VCCK VCCK GPIO55
LDM_CL K
OPWM2
USB_DM _P2
USB_DM _P3
U1RX RXVN_1 TXVN_0
LB 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19
20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 RT

Figure 8-4 Pin configuration -1-

EN 37L12M3.1L LA 8.
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Pinning information 2, MT5396JDNJ
ARCLK0
ARCLK0 #
ARDQ9
DDRV DVSS TCON5 TCON7 GPIO45
PDD3 PDD1
PACLE POWE# SD_D2 SD_D0
A
ARDQS1
ARDQS0 #
ARDQ11
DDRV DVSS TCON4 TCON6 TCON12
PDD4 PDD2
POCE1# SD_D3 SD_CMD SD_CLK
B
ARDQS1 #
ARDQS0 ARDQ15 ARDQ0 ARDQ6 DDRV DVSS
TCON8
EMMC_C LK
PDD6 GPIO47 PDD0 POOE# PAALE SD_D1
USB_DP _P0
USB_DM _P0
C
ARDQ12 ARDQM1 ARDQ13 ARDQ2 ARDQ4 DDRV DVSS
FSRC_W R
TCON9 PDD7 PDD5 GPIO46 PARB# POCE0#
AVSS33_ USB_P1
AVD D33 _ USB_P0 P1
USB_DP _P1
USB_DM _P1
D
DDRV DVSS DVSS DDRV DDRV DVSS
TCON1 TCON10 GPIO51 GPIO48 GPIO49 GPIO43 GPIO42
VCC3IO_ A
GPIO35 GPIO28 GPIO36
E
DDRV DVSS DVSS DDRV DDRV DVSS
TCON0 TCON11 TCON3 TCON2 GPIO50 GPIO44
VCC3IO_ A
GPIO27 GPIO34 GPIO2 GPIO1
F
DDRV
RVREF_ A
DVSS DDRV DDRV DVSS
VCC3IO_A VCC3IO_
A
GPIO24 GPIO6 GPIO5 GPIO4 GPIO3
G
DVSS
VCC3IO_A VCC3IO_
A
GPIO26 GPIO0 GPIO12 GPIO7 GPIO25
H
DVSS
VCC3IO_A VCC3IO_
A
GPIO15 GPIO23 GPIO16 GPIO22 GPIO20 GPIO21
J
GPIO11 GPIO10 GPIO17 GPIO18 GPIO14 GPIO19
K
GPIO9 GPIO41 GPIO8 GPIO13
L
GPIO40 GPIO33 GPIO38 GPIO31 GPIO39 GPIO32
M
DVSS
GPIO37 GPIO29
SPI_DAT A
SPI_CLE CI_INT
SPI_CLK 1
N
VCCK DVSS DVSS VCCK
GPIO30
PVR_TS DATA0
PVR_TS DATA1
SPI_CLK
P
DVSS DVSS DVSS DVSS VCCK
PVR_TS VAL
PVR_TS SYNC
PVR_TS CLK
CI_TSDA TA0
CI_TSVAL CI_TSSY
NC
R
DVSS DVSS DVSS DVSS VCCK
DEMOD_ TSDATA3
DEMOD_ TSVAL
DEMOD_ TSCLK
DEMOD_ TSDATA2
DEMOD_ RST
DEMOD_ TSSYNC
DEMOD_ TSDATA0
CI_TSCL K
T
DVSS DVSS DVSS DVSS
AVD D12 _ PCIE11
RF_AGC IF_AGC
DEMOD_ TSDATA1
U
DVSS DVSS DVSS VCCK
AVD D33 _ PCIE11
DEMOD_ TSDATA7
DEMOD_ TSDATA6
DEMOD_ TSDATA5
DEMOD_ TSDATA4
OSDA2 OSCL2
V
DVSS DVSS DVSS VCCK
AVD D12 _ HDMI_2_ RX
AVS S12 _ PCIE11
PCIE11_ TXN
PCIE11_ TXP
PCIE11_ REFCKN
PCIE11_ REFCKP
W
DVSS DVSS DVSS VCCK
AVD D12 _ HDMI_1_ RX
AVDD33_ HDMI_2_ RX
ASPDIF1 ALIN
PCIE11_ RXN
PCIE11_ RXP
Y
DVSS DVSS DVSS VCCK
AVD D12 _ HDMI_0_ RX
AVDD33_ HDMI_1_ RX
HDMI_C EC
HDMI_2_ RX_1B
HDMI_2_ RX_1
HDMI_2_ RX_2B
HDMI_2_ RX_2
AA
DVSS DVSS DVSS DVSS
AVD D12 _ HDMI_3_ RX
AVDD33_ HDMI_0_ RX
AVS S33 _ HDMI_R X
HDMI_2_ SDA
HDMI_2_ RX_0B
HDMI_2_ RX_0
AB
VCCK VCCK VCCK VCCK VCCK
AVDD33_ HDMI_3_ RX
HDMI_2_ PWR5V
HDMI_2_ HPD
HDMI_2_ SCL
HDMI_1_ RX_2B
HDMI_1_ RX_2
HDMI_2_ RX_CB
HDMI_2_ RX_C
AC
AVDD33_ VDAC_B G
AVDD33_ VDAC
AVDD33_ DEMOD
VCCK VCCK
AVS S33 _ HDMI_R X
HDMI_1_ SDA
HDMI_1_ RX_1B
HDMI_1_ RX_1
AD
AVS S33 _ DAC1
HDMI_1_ PWR5V
HDMI_1_ HPD
HDMI_1_ SCL
HDMI_1_ RX_CB
HDMI_1_ RX_C
HDMI_1_ RX_0B
HDMI_1_ RX_0
AE
AVDD33_ DAC1
AVS S33 _ HDMI_R X
AVS S33 _ HDMI_R X
HDMI_0_ SDA
HDMI_0_ RX_2B
HDMI_0_ RX_2
AF
AVDD33_ DAC
HDMI_0_ PWR5V
HDMI_0_ HPD
HDMI_0_ SCL
HDMI_0_ RX_0B
HDMI_0_ RX_0
HDMI_0_ RX_1B
HDMI_0_ RX_1
AG
AVSS33_ XTAL_ST B
HDMI_3_ PWR5V
HDMI_3_ SCL
HDMI_3_ SDA
HDMI_0_ RX_CB
HDMI_0_ RX_C
AH
AVDD10_ LDO
AVSS12_ RGB
AVSS33_ VDAC_B G
AVSS12_ DEMOD
VMID_AA DC
AVSS33_ AADC
HDMI_3_ HPD
HDMI_3_ RX_C
HDMI_3_ RX_1B
HDMI_3_ RX_1
HDMI_3_ RX_2B
HDMI_3_ RX_2
AJ
AVDD33_ PLLGP
AVD D33 _ CVBS_1
AVD D33 _ CVBS_2
AVDD33_ XTAL_ST B
AVSS33_ DAC
HDMI_3_ RX_CB
HDMI_3_ RX_0B
HDMI_3_ RX_0
AK
AVSS33_ VDAC
AVSS33_ CVBS_1
AVDD12_ DEMOD
AVDD33_ AADC
AL
OPWRS B
ORESET# ADIN7_S
RV
ADIN6_S RV
VSYNC
AVSS33_ CVBS_2
AVSS33_ PLLGP
AVSS33_ DEMOD
AR1_AD AC
AL2_ADAC AL1_ADAC AL3_ADAC AR3_AD
AC
AR2_AD AC
AM
OPCTRL1 OPCTRL3 LED_PW
M1
ADIN0_S RV
ADIN1_S RV
HSYNC
MPXP CVBS0P LOUTP
AL0_ADAC AR0_AD
AC
AN
OPCTRL8 LED_PW
M0
VGA_SCL ADIN2_S
RV
COM SOY1 PR1P Y0P SC0
VDACY_ OUT
CVBS_C OM
LOUTN
AIN4_L_ AADC
AIN2_L_ AADC
AIN6_L_ AADC
AIN5_L_ AADC
AP
OPCTRL0 STB_SDA VGA_SDA ADIN3_S
RV
GP RP PB1P SOY0 PR0P SY0 CVBS2P CVBS1P
AIN4_R_ AADC
AIN6_R_ AADC
AIN5_R_ AADC
AIN3_L_ AADC
AR
OPCTRL 10
STB_SC L
ADIN5_S RV
SOG
COM1
PB0P
CVBS3P
ADCINN_ DEMOD
XTALI
AIN1_R_ AADC
AIN3_R_ AADC
AIN1_L_ AADC
AT
OPCTRL 11
OIRI
ADIN4_S RV
BP
Y1P
COM0
VDACX_ OUT
ADCINP_ DEMOD
XTALO
AIN0_L_ AADC
AIN2_R_ AADC
AIN0_R_ AADC
AU
20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 RB
IC Data Sheets
2013-Jun-21

Figure 8-5 Pin configuration -2-

Page 39

9. Block Diagrams

19511_017_130619.eps
130619
WIRING DIAGRAM 32"
(3500 series)
Board Level Repair
Component Level Repair Only for authorized workshops
See note in Chapter 6 about cable position numbers
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
SSB
(1053)
LN
CN9901
MAIN POWER SUPPLY
(1054)
A
USB 2
USB
1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
1
ARC
VGA
SERV.U
OPTION BOARD (1058)
O
TO PANEL
CN401
13P
38P
CN408
38P
CN408
12P
5P
J
IR/LED BOARD (1056)
CN2
3P
CN016
5P
38P
CN408
13P
CN9101
4P
CN8102
CN8103
TO PANEL
CN8501
11P
CN1
B

9-1 Wiring Diagram 32" (3500 series)

Block Diagrams
EN 39L12M3.1L LA 9.
2013-Jun-21
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Page 40

9-2 Wiring Diagram 32" (4500 series)

19511_018_130619.eps
130619
WIRING DIAGRAM 32" (4500 series)
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
IR/LED BOARD (1056)
J
LOUDSPEAKER
(1185)
LOUDSPEAKER
LOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
SSB
(1053)
LN
CN9901
MAIN POWER SUPPLY
(1054)
A
B
USB 2
USB 1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
HDM
1
ARC
VGA
SERV.U
WIFI MODULE (WiFi01)
OPTION BOARD (1058)
O
TO PANEL
CN401
13P
38P
CN408
CN016
5P
CN1
11P
CN2
3P
38P
6P
12P
5P
13P
4P
WiFi
Antenna
CN8101
TO PANEL
CN9101
CN8102
CN8103
CN408
38P
CN408
38P
CN408
J3
Board Level Repair
Component Level Repair Only for authorized workshops
See note in Chapter 6 about cable position numbers
W
Block Diagrams
EN 40L12M3.1L LA 9.
2013-Jun-21
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Page 41

9-3 Wiring Diagram 39" (3500 series)

19511_019_130619.eps
130619
WIRING DIAGRAM 39" (3500 series)
Board Level Repair
Component Level Repair Only for authorized workshops
See note in Chapter 6 about cable position numbers
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
J
LOUDSPEAKER
(1185)
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
CN016
5P
IR/LED BOARD (1056)
11P
CN2
3P
CN1
SSB
(1053)
LN
CN9901
MAIN POWER SUPPLY
(1054)
A
USB 2
USB 1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI 1
ARC
VGA
SERV.U
OPTION BOARD (1058)
O
TO PANEL
CN401
13P
38P
CN408
38P
5P
13P
TO PANEL
12P
CN8501
4P
CN8102
CN8103
38P
CN9101
CN408
CN408
HDMI
B
Block Diagrams
EN 41L12M3.1L LA 9.
2013-Jun-21
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div. table
Page 42

9-4 Wiring Diagram 39" (4500 series)

19510_402_130422.eps
130422
WIRING DIAGRAM 39"
(4500 series)
Board Level Repair
Component Level Repair Only for authorized workshops
KEYBOARD CONTROL
(1057)
E
IR/LED BOARD (1056)
SSB
(1053)
See note in Chapter 7 about cable position numbers
LN
CN9901
MAIN POWER SUPPLY
(1054)
A
B
USB 2
USB
1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
1
ARC
VGA
SERV.U
WIFI MODULE
OPTION BOARD (1058)
ALC
TO PANEL
WiFi
Antenna
1G51
51P
11P
1C20
CN016
5P
CN201
6P
4P
1D01
17P
1M89
5P
WIFI01
6P
1C31
TO PANEL
12P
CN8501
5P
CN8103
13P
CN9101
4P
CN8102
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
J
W
Block Diagrams
EN 42L12M3.1L LA 9.
2013-Jun-21
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Page 43

9-5 Wiring Diagram 42" (3500 series)

19510_403_130422.eps
130422
WIRING DIAGRAM 42" (3500 series)
Board Level Repair
Component Level Repair Only for authorized workshops
See note in Chapter 6 about cable position numbers
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
J
LOUDSPEAKER
(1185)
LOUDSPEAKER
LOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
SSB
(1053)
B
LN
CN901
MAIN POWER SUPPLY
(1054)
A
12P
CN016
5P
IR/LED BOARD (1056)
11P
CN2
3P
CN1
TO PANEL
CN8506
13P
CN902
TO PANEL
1M891G51
1D01
1C20
USB 2
USB 1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
1
ARC
VGA
SERV.U
51P
11P
4P
17P
Block Diagrams
EN 43L12M3.1L LA 9.
2013-Jun-21
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Page 44

9-6 Wiring Diagram 42" (4500 series)

19511_020_130619.eps
130619
WIRING DIAGRAM 42" (4500 series)
See note in Chapter 6 about cable position numbers
Board Level Repair
Component Level Repair Only for authorized workshops
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
LOUDSPEAKER
LOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
LN
CN901
MAIN POWER SUPPLY
(1054)
A
12P
13P
SSB
(1053)
B
USB 2
USB 1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
HDM3
1
ARC
VGA
SERV.U
J
IR/LED BOARD (1056)
CN2
3P
11P
CN1
1C20
11P
WiFi
Antenna
WIFI MODULE (WiFi01)
6P
W
17P
TO PANEL
CN8506
TO PANEL
1M89
51P
CN902
1M89
1C31
6P
J3
1D01
4P
5P
CN016
Block Diagrams
EN 44L12M3.1L LA 9.
2013-Jun-21
back to
div. table
Page 45

9-7 Wiring Diagram 42"/46" (5000/5500 series)

19510_404_130422.eps
130422
WIRING DIAGRAM 42"/46" (5000/5500 series)
Board Level Repair
Component Level Repair Only for authorized workshops
See note in Chapter 7 about cable position numbers
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
J
LOUDSPEAKER
(1185)
LOUDSPEAKER
LOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
SSB
(1053)
B
LN
CN901
MAIN POWER SUPPLY
(1054)
A
12P
CN016
5P
AmbiLight
(1162)
AL
26p
1A02
AmbiLight
(1161)
AL
1A02
26p
IR/LED BOARD (1056)
11P
CN2
3P
CN1
13P
TO PANEL
CN8506
CN902
WiFi
Antenna
TO PANEL
1M89
1M89
1C311D011C20
USB 2
USB
1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
1
ARC
VGA
SERV.U
WIFI MODULE
5P
WIFI01
W
51P
11P
4P
17P
1A04
26P
6P
1A04
26p
26p
1A04
Block Diagrams
EN 45L12M3.1L LA 9.
2013-Jun-21
back to
div. table
Page 46

9-8 Wiring Diagram 46" (4500 series)

19510_405_130422.eps
130422
WIRING DIAGRAM 46" (4500 series)
Board Level Repair
Component Level Repair Only for authorized workshops
See note in Chapter 7 about cable position numbers
KEYBOARD CONTROL
(1057)
E
LOUDSPEAKERLOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
LOUDSPEAKER
LOUDSPEAKER
(1185)(1185)
LOUDSPEAKER
(1185)
LN
CN901
MAIN POWER SUPPLY
(1054)
A
12P
13P
SSB
(1053)
B
USB 2
USB 1
NETWORK
TV ANTENNA
DIGITAL
AUDIO OUT
LR
CVBS/Y Pb
Pr
AUDIO IN
DVI
HDMI
HDM2
1
ARC
VGA
SERV.U
1A04
26P
J
IR/LED BOARD (1056)
3P
11P
CN1
1C20
11P
WiFi
Antenna
WIFI MODULE
5P
WIFI01
W
1M89
17P
CN8506
CN902
TO PANEL
1C311D01
4P 6P
1M89
51P
CN016
5P
CN2
TO PANEL
Block Diagrams
EN 46L12M3.1L LA 9.
2013-Jun-21
back to
div. table
Page 47

9-9 Wiring Diagram 47" (7000 series)

19511_013_130618.eps
130618
Note: Modules and cables shown in brown colour are mounted in the rear cover.
Wiring diagram 47"
(7000 series)
MAIN POWER SUPPLY
(1005)
A
SSB
(1150)
B
KEYBOARD CONTROL
(1117)
E
AL
RF4CE (1123)
J
SENSOR BOARD (1122)
J
AmbiLight
(1162)
AL
AmbiLight
(1161)
WIFI (1125)
W
Block Diagrams
EN 47L12M3.1L LA 9.
LED Power
8B20
8C27
8M89
8C31
8G50
8G51
8D01
41P
8B10
8C01
CN2 CN1
1A03
J2
1C26
51P
8C26
White wires
8A02
2013-Jun-21
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div. table
Page 48

9-10 Wiring Diagram 47" (8000 series)

19511_014_130619.eps
130619
Note: Modules and cables shown in brown colour are mounted in the rear cover.
Wiring diagram 47"
(8000 series)
MAIN POWER SUPPLY
(1005)
A
SSB
(1150)
B
KEYBOARD CONTROL
(1117)
E
AL
RF4CE (1123)
J
AmbiLight
(1162)
AL
AmbiLight
(1164)
AL
AmbiLight
(1163)
AL
AmbiLight
(1161)
SENSOR BOARD (1122)
J
WIFI (1125)
W
Block Diagrams
EN 48L12M3.1L LA 9.
8B22
LED Power
8B21
8M89
8C31
8C27
8B20
8C30
8D01
8G50
RED Wires
8B10
41P
51P
8C01
CN2 CN1
1A03
1C31
J2
1C26
8G51
8C26
White wires
8A02
2013-Jun-21
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div. table
Page 49

9-11 Wiring Diagram 55" (7000 series)

19511_015_130619.eps
130619
1C26J2
CN2 CN1
51p
41p
Red wires
8B10
8C26
8D01
8C31
8M89
8C27
8B20
LED power
8A02
8C01
8G50
8G51
1A03
Note: Modules and cables shown in brown colour are mounted in the rear cover.
Wiring diagram 55"
(7000 series)
MAIN POWER SUPPLY
(1005)
A
SSB
(1150)
B
KEYBOARD CONTROL
(1117)
E
AL
RF4CE (1123)
J
AmbiLight
(1162)
AL
AmbiLight
(1161)
SENSOR BOARD (1122)
J
WIFI (1125)
W
Block Diagrams
EN 49L12M3.1L LA 9.
2013-Jun-21
back to
div. table
Page 50

9-12 Wiring Diagram 55" (8000 series)

19511_016_130619.eps
130619
Note: Modules and cables shown in brown colour are mounted in the rear cover.
Wiring diagram 55"
(8000 series)
MAIN POWER SUPPLY
(1005)
A
SSB
(1150)
B
KEYBOARD CONTROL
(1117)
E
AL
RF4CE (1123)
J
AmbiLight
(1162)
AL
AmbiLight
(1165)
AL
AmbiLight
(1164)
AL
AmbiLight
(1163)
AL
AmbiLight
(1161)
SENSOR BOARD (1122)
J
WIFI (1125)
W
Block Diagrams
EN 50L12M3.1L LA 9.
8B23
8B22
LED Power
8M89
8C31
8B21
8B20
8C27
8C30
8D01
8G50
RED Wires
8B10
41P
51P
8C01
CN2 CN1
1A03
1C31
J2
1C26
8G51
8C26
White wires
8A02
2013-Jun-21
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div. table
Page 51

9-13 Block Diagram 3139 123 65451

19510_400_130417.eps
130417
MT5396 Block Diagram (3139 123 65451)
BLU
W-SL
Display FHD@60Hz FHD@50Hz
Hybrid
Tuner
ISDB-T
Low or Direct IF
FLASH
512MB
Dual LVDS
Headphone
MediaTek
MT5396
SOC
3D MJC Engine
2D/3D Conv
DVB-T/C
ATSC
Analogue
32+32
DDR3 1.33GHz
512MB+256MB
1 × YPbPr
1 × CVBS
1 × VGA
1 × VGA/DVI Audio-in
AVIO
NVM
64Kb
Audio
DAC
Serial TS
Service
UART
USB 4:1 HDMI 4:1
RJ45
Ethernet
LDM
Ambilight
PWM
Backlight Control
Sony
CXD2828ER
Sony
RA214TN
I2S
BTL
BTL
Class-D
2 × Hynix H5TQ2G63DFR
-H9C
2 × Hynix H5TQ1G63DFR-H9C
Hynix
H27U4G8F2DTR-BC
ST M24C64-WDW6P
TI TPA6111A2DGN
TI TAS5731PHP
1 × Side Facing
2 × Back Facing
Loudspeaker
Subwoofer
I
2
C, ADC, PWM
Light Sensor
Keyboard
LED/IR
2 × User
USB
Integrated
Wi-Fi
xx
I2S
Block Diagrams
EN 51L12M3.1L LA 9.
2013-Jun-21
back to
div. table
Page 52

9-14 Block Diagram 3139 123 65441

19510_401_130417.eps
130417
BLU
W-SL
Display FHD@100Hz FHD@120Hz
Hybrid
Tuner
ISDB-T
Low or Direct IF
FLASH
512MB
Quad LVDS
Headphone
MediaTek
MT5396
SOC
3D MJC Engine
2D/3D Conv
DVB-T/C
ATSC
Analogue
32+32
DDR3 1.33GHz
512MB+256MB
AVIO
NVM
64Kb
Audio
DAC
Serial TS
Service
UART
USB 4:1 HDMI 4:1
RJ45
Ethernet
LDM
Ambilight
PWM
Backlight Control
Sony
CXD2828ER
Sony
RA214ZN
I2S
BTL
BTL
Class-D
2 × Hynix H5TQ2G63DFR-H9C 2 × Hynix H5TQ1G63DFR-H9C
Hynix
H27U4G8F2DTR-BC
ST M24C64-WDW6P
TI TPA6111A2DGN
TI TAS5731PHP
Loudspeaker
Subwoofer
I
2
C, ADC, PWM
Light Sensor
Keyboard
LED/IR
USB Hub
3 × User
USB
Integrated
Wi-Fi
x x
I
2
S
SMSC USX2064-AEZG
Integrated
Skype
MT5396 Block Diagram (3139 123 65441)
1 × YPbPr
1 × CVBS
1 × VGA
1 × VGA/DVI Audio-in
1 × Side Facing
3 × Back Facing
Block Diagrams
EN 52L12M3.1L LA 9.
2013-Jun-21
back to
div. table
Page 53
Circuit Diagrams and PWB Layouts
19430_500_130114.eps
130114
Power Circuit
A01 A01
2012-12-28
E
715G5778
Power Circuit
C9832 100N 50V
D9801
FMNS-1106S 093G 52905
P_Scan
HS9901 HEAT SINK
1
2
3
4
FB9302
BEAD
1 2
VCC1
D9305
FR107
093G 6026T52T
HS9101 HEAT SINK
1 2
3
4
C9911 470NF 275V
063G107M47410M
C9910 470NF 275V
R9311
0 OHM +-5% 1/8W
L9801 240UH
073G 174275 CP
6
1
ZD9106
BZT52-B3V6
12
IC9801
R2A20133ESP 356G0379008222
FB
1
COMP
2
RT
3
NC4CS
5
GND
6
OUT
7
VCC
8
ZD9107
BZT52-B22
1 2
C9955
220PF 250V
R9346
220 OHM 1/4W
12V
C9980
470PF 250V
+
C9147
22UF 50V
For Q9101,Q9102 NC
DIM
24VA
5.2V
C9826
3.3nF 50V
On/Off
PS-On
Q9301
2N7002K 057G 763 62
CN902
CONN
1
2
3
4
5
6
7
8
9
10
11
12
13
12V
For BD9901 NC
Q9304
2N7002
057G 763904
R9161 24K 1/8W 1%
R9163 2K 1/8W 1%
C9877
47pF 1KV
D9302
SS1060FL
12
C9912 470PF 250V
R9301
1.0R 1W
+
C9344 470UF 25V
R9180 27K 1/8W 1%
+
C9340 470UF 25V
+
C9341
470UF 25V
067G 5154714HT
B1+
R9171
5.1K 1/4W
C9906
150PF 250V
IC9101
SSC9522S
056G 379211
Vsen
1
Vcc
2
FB
3
GND
4
Css
5
OC
6
RC
7
Reg
8
RV9COM
10
VGL
11
NC
12
NC
13
VB
14
VS
15
VGH
16
NC
17
NC
18
D9116
MBRF1560CT 093G 60931
1
2
3
C9831
NC
PS-On
R9175
1.5K 1/4W
C9170 100N 50V
R9320
560K 1/8W 1%
P_Scan
R9340
10K 1/8W 1%
R9337
8K2 1/8W 1%
HS9301 HEAT SINK
1
2
3
4
C9395
3.3NF 50V
C9335
100N 50V
RV9907
680V
361G0046681KZW
R9901
1MOHM +-5% 1/2W
R9339
43.2KOHM +-1% 1/4W
D9307
FR107
R9804
NC
R9331
47 OHM 1/4W
12V
IC9303 EL817M(X)
056G 139 9
12
43
R9317
1.5M 1% 1/4W
24VA
C9151 1UF
C9153
1UF
D9113
SS1060FL
12
5.2V
ZD9105
GDZJ30B
1 2
C9333
0.47UF 50V
R9810
16K +-1% 1/8W
C9338
3.3NF 50V
+
C9802
47UF 450V
12V
R9806
56K 1/8W
Q9302 RK7002BM
057G 763532
R9801
0.07R 3W
C9824 22N 50V
C9144 100N 50V
R9151
10 OHM
R9141
0.1R
R9329
0.1R 1W
C9825 220N 50V
R9390
0R05
R9318
1.5M 1% 1/4W
RV9902
680V
361G0046681KZW
FB9804 BEAD
1 2
C9342 100N 50V
+
C9164 NC
C9829 100N 50V
C9159
330NF 50V
C9833
47pF
R9101
180R 1%
Q9103 PMBS3904
057G 417 4
L9906
3UH
C9171
1.5NF
R9140
1K 1/8W 1%
R9149
470 OHM 1/8W
L9903
12mH
073G 174270 X1
124
3
+
C9168 470UF 25V
+
C9163
NC
+
C9169 470UF 25V
D9306
1N4148
+
C9830 10UF 50V
R9172
5.1K 1/4W
R9153
10K 1/8W 1%
R9173
5.1K 1/4W
D9109 1N4148
R9174
5.1K 1/4W
R9303 20K OHM
R9156
10K 1/8W 1%
IC9301 A6069H
056G 379121
S/OCP
1
BR
2
GND
3
FB/OLP4VCC
5
D/ST
7
D/ST
8
R9158
5.6K
R9332 2R2 +-5% 1/4W
R9808
10R 1/8W 5%
C9828 100N 50V
R9176
1.5K 1/4W
ZD9104
GDZJ15B
1 2
+
C9804
47UF 450V
367G215X470PKZ001S
R9809
200 OHM 1/4W
R9177
1.5K 1/4W
Q9305 MMBT3906 PNP
057G 417907 T
R9335 3K3 1/8W 5%
R9160
10K 1/8W 1%
VCC1
R9399
47 OHM 1/4W
VCC
R9308 10K 1/8W 1%
R9816
680K OHM +-1% 1/4W
R9815
680K OHM +-1% 1/4W
C9345 100N 50V
R9302
100K 1/6W
ZD9101
GDZJ30B
1 2
DV5
C9331
1NF
R9310
100K 1/8W 1%
SB+
F9901
FUSE 5A
084G 41 7
R9813
10K 1/4W
T9301
POWER X'FMR
080GL52P 54 CP
1
2
3
4
5
7
9
24V
R9324
1K 1/8W 1%
R9304
100K 1/8W 1%
R9309
100K 1/8W 1%
R9330
47 OHM 1/4W
R9148 NC
ZD9102
GDZJ15B
1 2
24V
R9144
1M5 1/4W 1%
L9304
NC
CN905
CONN
1
2
C9343
220N 50V
R9146 2K43 1/8W 1%
C9150
0.47UF 50V
IC9106 EL817M(X)
056G 139 9
12
43
D9308 FMW-2156
093G1506 2
1
2
3
ZD9303 GDZJ15B
1 2
BOX
Q9801
STF24NM60N 057G 667A04
FB9801 BEAD
1 2
ZD9304
NC
1 2
FB9802
BEAD
1 2
R9333
2K 1/8W 1%
FB9810 BEAD
1 2
VBoot
IC9999
NC
NC
1
D1
2
D1
3
NC4NC
5
D2
6
D2
7
NC
8
ZD9301
GDZJ18B
1 2
B1+
R9995 NC
R9996 NC
Q9106
MMBT3906 PNP
057G 417907 T
R9992
NC
R9993
NC
R9994
NC
B1+
R9991
NC
C9999 NC
R9888
0 OHM +-5% 1/8W
C9156
100PF1KV
R9336
1Kohm +-1% 1/4W
R9338
9K1 1/8W 1%
BOX
R9139 100R 1%
C9149
100N 50V
5.2V
C9155
1N 50V
12V
C9334 1N 50V
T9101 POWER X'FMR
380GL32P111YS0
7
6
1 2
11
10
15 14
8
9
13 12
Q9101
STF8NM50N 357G0667A06
D9804
IN5408G-04
093G 52918
R9334 220 OHM 1/4W
VBoot
t
NR9901
2.5R
361G0058259MYW006A
12
R9143
NC
SG9905
NC
SG9904
NC
D9803
SS1060FL
12
C9803 470PF1KV
R9178 5K1 1/8W
D9115 FMEN-2308
093G 60987
1
2
3
D9301
SS1060FL
393G060S50000T00HF
1 2
For Q9801,D9801
C9165 100N 50V
VCC1
C9820
105 450V
-
+
BD9901
TS10K80-02
393G0050460A06
2
1
3
4
VCCVCC1
5.2V
R9811
100 OHM 1/4W
R9307 10K 1% 1/8W
C9154 560P 50V
FB9996
NC
1 2
For D9308
C9301 100N 50V
R9152
47OHM +-5% 1/8W
D9110 1N4148
R-
CN904 CONN-NC
L
1
N
2
IC9107 AS431AZTR-E1
R9154
47OHM +-5% 1/8W
R9111
0 OHM +-5% 1/8W
C9907
150PF 250V
C9146
100N 50V
IC9302 EL817M(X)
056G 139 9
12
43
Q9802 NTD4906NT4G
057G 600954
CN901
SOCKET
087G 50147D DL
1 2
D9114 UF4007
093G 52908
R-
C9827
1NF 50V
C9158 NC
D9304
FR107
C9145
100N 50V
R-
R8550
10K 1% 1/4W
C9166 NC
R9306
2K 1/8W 1%
DV5
Main_ov
R9159
20K 1/4W
R9805 200K1/8w
Main_ov
C9981
470PF 250V
IC9304 AS431AZTR-E1
056G 158 10 T
D9112
SS1060FL
12
R-
C9148
4.7UF 10V
C9152
5PF 1KV
R9147
470 OHM
R9817
100K 1%
For D9115,D9116
R9818
1K 1/8W
C9875 NC
FB9999
BEAD
12
+
C9161 330UF 35V
+
C9174 330UF 35V
NC
C8550
1N 50V
R9138
1Kohm +-1% 1/4W
NC
R9325
100K
R9326 100K
R9341
100K 1/8W 1%
R9327
100K
R9328 100K
R9145
18K 1/8W 1%
C9908
150PF 250V
+
C9172 NC
HEAT SINK
HS9103
1 2
3
4
Q9102
STF8NM50N 357G0667A06
R9319
1.5M 1% 1/4W
+
C9801
47UF 450V
C9347
1UF
L9901
12mH 073G 174270 X1
124
3
+
C9160 330UF 35V
067G 5153316KT
L9905
3UH
373G0253247X00
t
NR9902
2.5R
361G0058259MYW006A
12
+
C9302 22UF 50V
R9142
1.5M 1% 1/4W
R9150
1.5M 1% 1/4W
Q9303
BTC4672M3
357G0761A0100T
24VA
HS9102 HEAT SINK
341
2
For D8120,Q8101
CN903
CONN
1
2
3
4
5
6
7
8
9
10
11
12
R9323
4.7M OHM +-5% 1/4W
C9909
150PF 250V
C9157
22nF 1KV
24V
NC
R9807
200 OHM 1/4W
R9814
1MOHM +-1% 1/4W
NC
R-
DV5
DIM
On/Off
HS9801 HEAT SINK
1 2
3
4
+
C9336
10UF 50V
24V
RJ901
4R7 1/4W 5%
R9819
10K 1/8W
R9102 10 OHM
R9103
10 OHM
+
C9337 47UF 50V

10. Circuit Diagrams and PWB Layouts

10.1 A 715G5778 PSU

10-1-1 A01, Power Circuit

EN 53L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 54

10-1-2 A02, Converter

19430_501_130114.eps
130114
Converter
A02 A02
2012-12-28
E
715G5778
Converter
IC8103 PF7900S
056G 700 23
FB1GM2RT3CS
4
DIM
5
GND
6
OUT7VCC
8
+
C8118
120UF 100V
+
C8109
120UF 100V
VLED
DIM
R8510
9.31K +-1% 1/8W
R8549
0R05 1/4W
R8548
0R05 1/4W
R8521 0R05
R8546 0R05
R8555 0R05
R8543 NC
R8542 NC
IC8503
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8547 0R05
R8523 0R05
R8544 0R05
R8541 0R05
R8524 0R05
R8540 0R05
R8520 0R05
R8545 0R05
LED-COMP
R8522 0R05
D8555
1N4148W
D8557
1N4148W
D8556
1N4148W
R8515
0 OHM +-5% 1/8W
LED-12
LED-10LED-9
R8513
0 OHM +-5% 1/8W
R8514
0 OHM +-5% 1/8W
R8519 0R05
VLED
LED-12
CN8504 CONN
1
2
3
4
5
6
7
8
910
LED-10
VLED
LED-11
LED-12
12V
C8501
100N 50V
12V
12V
12V
12V
12V
C8502
100N 50V
12V12V
12V
LED-11
12V
C8503
100N 50V
12V
12V
C8505
100N 50V
C8504
100N 50V
LED-2
LED-1
LED-7
LED-4
LED-8
LED-5
R8511
9.31K +-1% 1/8W
LED-3
LED-6
C8506
100N 50V
C8507
100N 50V
C8508
100N 50V
LED-8
LED-9
LED-7
LED-10
C8509
100N 50V
LED-9
C8510
100N 50V
C8511
100N 50V
C8512
100N 50V
DIM
DIM
LED-COMP
DIM
DIM
LED-COMP
EN
LED-COMP
DIM
EN
LED-COMP
EN
EN
DIMLED-COMP
EN
EN
LED-7
LED-COMP
CN8506 CONN
1
2
3
4
5
6
7
8
9
10
11
12
LED-8
PWM_C
EN
LED-1
LED-11
VLED
24V
LED-3
LED-COMP PWM_C
EN
LED-2
LED-5
LED-COMP
LED-4
LED-6
CN8501 NC
1
2
3
4
5
6
7
8
9
10
11
12
VLED
VLED
PWM_B
EN
LED-COMP
+
C8158
NC
R8512
9.31K +-1% 1/8W
EN
PWM_B
CN8503 CONN
1 2
3
4
LED-COMP
IC8504
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
EN
PWM_A
DIM
C8523 100N 50V
C8157 100N 50V
C8529 100N 50V
C8530 100N 50V
C8518 100N 50V
C8524 100N 50V
C8525 100N 50V
C8519 100N 50V
C8532 100N 50V
C8531 100N 50V
C8520 100N 50V
C8526 100N 50V
LED-COMP
R9322
3.0KOHM +-1% 1/4W
PWM_A
EN
LED-11
LED-12
R8501
9.31K +-1% 1/8W
IC8505
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8506
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
Q8101
AOTF4126
357G0600A01
R8177
NC
EN
R8153
0 OHM 1/8W
R8147
360K +-1% 1/8W
C8188
NC
R8188 NC
IC8507
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8145
330K +-1% 1/4W
IC8508
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8157
10K 1/8W 1%
EN
On/Off
IC8509
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8510
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8141
82K +-1% 1/8W
C8177
NC
IC8511
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8512
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
L8101
33uH 373G0253257CP0
3
1
C8119
1N 50V
R8502
9.31K +-1% 1/8W
NC
R9997
0.03R 3W
NC
IC8501
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8503
9.31K +-1% 1/8W
R8144
75K 1%
R8504
9.31K +-1% 1/8W
ZD8103
NC
1 2
R8148
100K 1/8W 1%
R8505
9.31K +-1% 1/8W
R8162 1Kohm +-1% 1/4W
C9346
100N 50V
R8506
9.31K +-1% 1/8W
R8176
0 OHM 1/8W
R8163 200K 1%
R8507
9.31K +-1% 1/8W
C8113 1N 50V
D8118
NC
12
R8158
10R 1/8W 5%
R8161
NC
R8154 100K
R8155 100K
R8156 100K
NC
R8508
9.31K +-1% 1/8W
LED-COMP
NC
+
C8170
330UF 35V
+
C8121 22UF 50V
12V
NC
R8509
9.31K +-1% 1/8W
IC8502
PF7700A
356G0700008052
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
C8106
NC
C8111 100N 50V
D8120
MBRF10150CT
093G 60903
1
2
3
C8105 1N 50V
NC
Circuit Diagrams and PWB Layouts
EN 54L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 55

10-1-3 Power layout top

19430_502_130115.eps
130115
2012-12-28
E
715G5778
Power layout top
C8121
C8158
C9830
C9156
C9302
C9336
C9803
C9147
D9305
D9306
D9307
D9802
IC9106
IC9107
IC9302
IC9303
IC9304
R9301
H2
H1
D9109
D9110
J901
J909
J907
J906
J902
J903
J913
J952 J950
J916
J970 J968J966
J954 J955 J956 J957 J958
J972 J973 J974 J975 J976 J977
J937
J938
J940
J941
J910
J911
J914
J912
J915
J960
J961
J939
J959
J978
J926
J924
J921
J928
J929
J930
J927
J925
J923
J919
J917
J918
J922
J920
J931
J932
J933
J934
J981
J982
J953
J946 J944J986
J985
J987
J935
J942
J948
J988 J989 J990
J964
J965
J962
J963
J951 J949 J947 J945 J943
J971 J969 J967
H3
J991
J992
J983
J984
H4
H5
H6
J993
J905
J979
J936
J904
J908
J994
J996
J995
T9101A
T9301
T9101
J980
J1
J5
J6
J4
J2
J3
TEST3
TEST2
C9152
C9160 C9161
C9163
C9164
C9168
C9169
C9171
C9172
C8170
C9174
C9331
C9337
C9340
C9341
C9344
C9833
C9906C9907 C9908 C9909
C9912
C9955
C9980
C9981
CN8501
CN8504
CN8506
CN901
CN902
CN903
CN904
CN905
D8120
D9114
D9115
D9116
D9304
D9308
D9801
F9901
FB9302
FB9804
FB9810
HS9102
HS9301
HS9801
IC9301
L9105
L9106
L9304
Q8101
Q9101
Q9102
Q9801
R8175
R9329
R9801
SG9904
SG9905
ZD9104
MH13
MH15
MH14
MH2MH3 MH4 MH6 MH7 MH8
MH9
MH10MH11MH12
MH17
MH5
MH1
ZD9101
ZD9301
ZD9303
ZD9304
HS9101
HS9901
R9141
R9302
FB9801
FB9802
C9157
C9820
C9999
FB9999
ZD9102
ZD9105
C9875
CN8503
C8109C8118
C9877
FB9996
HS9103
BD9901
L9801
C9801 C9804 C9802
RV9902
MH16
L8101
RV9907
C9911
C9910
R9901
L9903 L9901
C9157A
NR9901
NR9902
Circuit Diagrams and PWB Layouts
EN 55L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 56

10-1-4 Power layout bottom

19430_503_130115.eps
130115
2012-12-28
E
715G5778
Power layout bottom
C8105
C8106
C8111
C8113 C8119
C8157
C8501
C8502
C8503
C8504
C8505C8506
C8507
C8508
C8509
C8510
C8511
C8512
C8518
C8519
C8520
C8523
C8524
C8525
C8526
C8529
C8530
C8531
C8532
C9144
C9145
C9146
C9148
C9149
C9150
C9151
C9153
C9154
C9155
C9158
C9159
C9165
C9166
C9170
C8550
C9301
C9333
C9334
C9335
C9342
C9343
C9346
C9824
C9825
C9826
C9827
C9828
C9829
C9831
C9832
Q9103
Q9106
Q9301
Q9302
Q9305
R8141
R8145
R8148
R8153
R8154
R8155
R8156
R8157
R8158
R8161
R8163
R8501
R8502
R8503
R8504
R8505R8506
R8507
R8508
R8509
R8510
R8511
R8512
R8519R8520R8521
R8522R8523
R8524
R9101
R9102
R9103
R9111
R9140
R9142
R9143
R9144
R9145
R9146
R9148
R9149
R9150
R9151
R9152
R9153
R9154
R9156
R9158
R9159
R9160
R9161
R9163
R9171
R9172
R9173
R9174
R9175
R9176
R9177
R9180
R9303
R9304
R9306
R9308
R9317 R9318 R9319
R9320
R9323
R9324
R9325
R9326R9327
R9328
R9330
R9331
R9332
R9333
R9335
R9337
R9338
R9340
R9341
R9346
R9390
R9804
R9805
R9806
R9807
R9808
R9809
R9810
R9811
R9813
R9814
R9815
R9816
R9817
R9818
R9819
RJ902
RJ901
RJ904
C9345
R9309
R9310
R9311
Q9304
RJ906
IC8103
IC9801
RJ909RJ908RJ907
RJ915RJ916RJ917
R9307
R9339
R8550
R8162
R8144
RJ905
R9322
R9138
R9178
R8147
R9147
R9991
R9992
IC9999
R9334
R9139
C9338
C9395
RJ903
R8176
R8177
R8514
R9336
RJ910
C8188
R8540 R8541
R8542
R8543
R8544 R8545
R8546
R8547
R8555
R9888
R8548
R8549
R9993
R9994
R9995
R9996
RJ921
R8515
RJ914
RJ913
RJ912
RJ911
R8513
RJ919
RJ920
SM5
SM6
SM7
R8190
R9399
Q8105
C8189
IC8507
IC8508IC8510
IC8509IC8511
IC8512IC8502
IC8501IC8503
IC8504IC8506
IC8505
R8188
C9347
C9348
C9349
PIN1
PIN2
PIN3
D8118
D9112
D9113
D9301
D9302
D9803
IC9101
Q9303
Q9802
ZD8103
ZD9106
ZD9107
D8557
D8556
D8555
ZD8109
Circuit Diagrams and PWB Layouts
EN 56L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 57

10.2 A 715G5792 PSU

19430_504_130114.eps
130114
AC input
A01 A01
2013-01-02
A
715G5792
AC input
!
!
!
!
!
!
F9901
FUSE
R9901
NC
IC9901
CAP004DG-TL
NC
1
D12D1
3
NC
4
NC
5D26D27NC8
R9904
NC
R9905
NC
!
­+
BD9901
TS6B06G-05-X0
2
1
3
4
SG9901
DSPL-501N-A21F-NC
C9906
470NF 275V
L9901 12mH
1
2
4
3
SG9902
DSPL-501N-A21F-NC
!
L9902 12mH
1
2
4
3
VXA
R9908 510K
VXB
VXB VXA
!
!
CN9901
NC
1 2
!
C9910
470PF 250V
Vsin
t
NR9901
2.5R
1 2
!
!
C9905
470NF 275V
R9906
NC
CN9903 CONN-NC
1
2
C9901
47PF
FB9901BEAD
1 2
CN9902 SOCKET
12
C9903
100PF 250V
C9904
100PF 250V
FB9902 BEAD
12
!
R9907
510K
RV9901
TVR14561KFAOZF
R9902
NC
R9903 NC

10-2-1 A01, AC input

Circuit Diagrams and PWB Layouts
EN 57L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 58

10-2-2 A02, PFC

19430_505_130114.eps
130114
PFC
A02 A02
2013-01-02
A
715G5792
PFC
C9804 47P 50V
R9814 2K 1/8W 5%
C9817
47PF
Vsin
R9806
10K OHM +-5% 1/8W
Q9803
NC
HV
R9811
0R05 1/4W
Q9802 NC
C9806
100N 50V
D9801 IN5408G-04
R9823
390K 1/8W 1%
C9812 NC
D9802 MUR460-28
R9819 NC
R9818
20K 1/8W 1%
C9811 680P 50V
IC9801
LD7591T
INV1COMP2RAMP3CS
4
ZCD
5
GND
6
OUT
7
VCC
8
+
C9814
47uF 450V
C9807
220P 50V
FB9802
BEAD
1 2
Q9801
TK15A60U
R9815
200K 1/8W 1%
VCC_ON
+
C9815 47uF 450V
FB9803
BEAD
1 2
!
C9818
47PF
L9801 300uH
5
43
1
R9817
NC
C9803 NC
VCC_ON
R9816
NC
R9802
10R 1/8W 5%
R9803
33R 1/8W 5%
R9813 10K OHM +-5% 1/8W
R9810
470 OHM 1/4W
R9805
20K 1/4W
R9812 24K 1/8W 1%
C9810
0.47UF 50V
C9808
NC
C9809 47N 50V
R9808
0.15R
R9820 NC
R9821 NC
R9822 NC
C9801 1UF 450V
D9803 RB160M
12
R9807
1MOHM +-1% 1/4W
R9809
750K 1%
R9804
1MOHM +-1% 1/4W
Circuit Diagrams and PWB Layouts
EN 58L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 59

10-2-3 A03, Main Power

19430_506_130114.eps
130114
Main Power
A03 A03
2013-01-02
A
715G5792
Main Power
C9141
2N2 50V
R9153 270K
C9146
1uF
C9124 100N 50V
C9147
1uF
+
C9109
330UF 35V
+
C9110
330UF 35V
PS_ON
HS9103
HEAT SINK
1 2
3
4
R9122 150K 1/8W +/-1%
R9137 NC/620K
IC9104
NR111D
BS
1
VIN
2
SW
3
GND4FB
5
ISET
6
EN
7
SS
8
C9133
1uF 50V
+
C9122
330UF 35V
C9139 330P 50V-NC
R9149
100 OHM 1/4W
R9339
5.23K 1% 1/8W
!
R9105 10 OHM
D9104
SK84C
1 2
ZD9105
BZT52-B39
12
ZD9101
BZT52-B30
1 2
Q9402
NC/2N7002K
ZD9104
BZT52-B30
1 2
R9307 10K OHM
Q9301 2N7002K
DV5
IC9101SSC1S311
FB/OLP
1
BD
2
NC
3
ST4DRV
5
OCP
6
VCC
7
GND
8
+5.2V
+
C9136 470UF 25V
R9141
100K
R9341 100K 1/8W 1%
+
C9137 470UF 25V
12V
R9340
10K OHM +-5% 1/8W
IC9151
PF8200S
GND
1
GND
2
SS
3
FLAG4EN
5
ADJ
6
GATE
7
VCC
8
HOT COLD
R9109
1K
FB9102
BEAD
1 2
C9106
100N 50V
+
C9108
330UF 35V
C9103
330P 50V
ZD9102
BZT52-B39
12
C9403
100N 50V
R9408 330K 1% 1/8W
Q9403 2N7002K
ZD9106
BZT52-B16
1 2
PS_ON
R9407 10K OHM
R9406
0 OHM +-5% 1/8W
R9158
20R 1%
R9161
20R 1%
C9144 NC/1NF
R9119
NC/20K 1% 1/8W
C9125 1uF
R9120
NC/200KOHM 1/8W +/-5%
FB9101
127R
1 2
Q9305
MMBT3906 PNP
R9308 10K 1/8W 1%
DV5
!
R9108 47K
R9136 NC
L9104 3UH
12V
VCC
!
C9115
100N 50V
C9130 NC
ZD9107
BZT52-B16
12
R9154
NC
+
C9120
470UF 25V
R9134
10R 1/8W 5%
+5.2V
R9405
100K 1/8W 1%
!
R9138
11K 1/8W 1%
R9101
NC/100 OHM 1/4W
R9103
100 OHM 1/4W
+
C9140
470UF 25V
+
C9102
330UF 35V
R9102
100 OHM 1/4W
R9163
NC
R9148 100 OHM 1/4W
C9117 100N 50V
C9104
2.2NF
D9103 PR1007
T9101 POWER X'FMR
7
10
12
5
4
3
2
1
9
6
11
8
R9151
2K43 1/8W 1%
R9157
1K OHM
R9140
100 OHM 1/4W
D9102 RB160M
12
R9401
2Kohm 1/4W +/-5%
C9114 1NF
C9138
100N 50V
R9104 82KOHM +-5% 2WS
+
C9116
220UF 35V
R9150
27K 1/8W 1%
R9129 3K65 +-1% 1/8W
R9156
1K OHM
R9124
470R 1/8W 1%
D9101
SARS01-V1
HS9102
HEAT SINK
1 2
3
4
CN9102 CONN-NC
1
2
3
4
5
6
7
8
9
10
11
12
R9146
100 OHM 1/4W
C9112
100N 50V
IC9401
PS2561DL1-1
12
43
D9106 FME-220B
1
2
3
R9162
2K 1/8W 5%
R9117
10K OHM
R9113
100 OHM 1/4W
D9105 FMXA-2202S
1
2
3
R9114
100 OHM 1/4W
C9127
1NF 500V
L9102 3UH
C9123
100N 50V
R9403 NC
R9118
100 OHM 1/4W
IC9103 AS431AZTR-E1
CN9101 CONN
1
2
3
4
5
6
7
8
9
10
11
12
13
R9106
22 OHM 1/4W
C9119 100PF
R9404 NC
R9145
100 OHM 1/4W
+
C9135 470UF 25V
R9135 5.1 OHM 1/4W
R9128
200K 1/8W 1%
R9152
20K 1/4W
C9118 220N 50V
+
C9107 47UF 50V
R9112
10 OHM 1/4W
L9101 15uH
C9142
2N2 50V
R9130
100 OHM 1/4W
+
C9111
330UF 35V
L9103 3UH
IC9106
AS431AN-E1
HS9101
HEAT SINK
1 2
3
4
Q9107
P1604ETF
R9107 10KOHM
IC9102
PS2561DL1-1
12
43
C9911 1NF 250V
R9125
1.5KOHM +-1% 1/8W
R9126 1K 1/8W 1%
C9401
NC
C9126
1NF 500V
R9402 2Kohm 1/4W +/-5%
R9116
10K OHM
R9110
13K 1/8W 1%
C9131 1uF
R9111
0.15R
R9142
0 OHM +-5% 1/8W
C9113
10N 50V
R9127
9.1K 1%
Q9104 2SA1797
C9105
100N 50V
R9139
100 OHM 1/4W
R9115
10K OHM
+
C9402
10UF 50V
C9143
2N2 50V
HV
+5.2V
PS_ON
+12V
+12V
ON/OFF DIM
12V
24VA
DIM
+12V
+24LED
ON/OFF
12V +24VS
+24VS
+24LED
24VA
+12V
OVP
+24VS
VCC_ON
VCC
R9147
100 OHM 1/4W
R9123
2K 1/8W 1%
R9131
200KOHM 1/8W +/-5%
D9113
RB160M
1 2
HV
ZD9103 NC
1 2
R9159NCR9160
NC
R9132
100K
C9121
0.1uF 50V
C9128 47N 50V
R9133
NC/3K OHM 1%
C9129 1N 50V
R9143
91KOHM +-1% 1/8W
R9144
4K7 1/8W 1%
5.2V_On
R9178 10K 1/4W
5.2V_On
D9107 RB160M
1 2
Q9401
BTC4672M3
C9145
1uF
ZD9401
BZT52-B16
1 2
R9121 150OHM +-5% 1/8W
DV5
C9132 2N2 50V
HS9104
HEAT SINK-NC
1 2
3
4
Q9101
TK11A65D
C9134 1N 50V
Circuit Diagrams and PWB Layouts
EN 59L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 60

10-2-4 A04, LED Driver D2D

19430_507_130114.eps
130114
LED Driver D2D
A04 A04
2013-01-02
A
715G5792
LED Driver D2D
IC8103 PF7900S
FB1GM2RT3CS
4
DIM
5
GND
6
OUT
7
VCC
8
D8118
RB160M
12
VLED+24VS
C8112 NC
+
C8101
330UF 35V
L8102 3UH
+
C8118
47UF 100V
C8114
NC/1000pF 630V
FB8101
127R
1 2
C8115
NC/1000pF 630V
Q8101
AOTF4126
R8148
100K 1/8W 1%
R8162
1K 1/8W 1%
R8157
10K 1/8W 1%
C8102
100N 50V
R8145 820K 1%
L8101
33uH
8
1
DIM_IN
C8111
100N 50V
+
C8117
220UF 100V
HS8101
HEAT SINK
1 2
3
4
R8147 750K 1%
R8176
0R05 1/4W
ZD8103
NC/BZT52-B13
1 2
R8141 120KOHM +-1% 1/8W
R8144
100K 1/8W 1%
R8163
200K 1/8W 1%
R8158
22OHM +-5% 1/8W
C8113 1N 50V
R8154 100K
R8155 100K
R8156 100K
D8121 SR510-22-NC
1 2
LED-COMP
+
C8121
22UF 50V
+12V
C8119
100N 50V
C8106
NC
R8161
10 OHM
D8120 SR510-22
1 2
C8105 1N 50V
R8175
0.03R
Circuit Diagrams and PWB Layouts
EN 60L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 61

10-2-5 A05, LED Current Balance

19430_508_130114.eps
130114
LED Current Balance
A05 A05
2013-01-02
A
715G5792
LED Current Balance
C8504
0.47UF 50V C8505
0.47UF 50V
IC8502
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8503
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8504
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8505
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
IC8506
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8523 NC
R8522 NC
R8521 NC
R8525
NC
R8524 NC
+12V
+12V
+12V
C8517
1N 50V
R8511
10K 1/8W 1%
R8512
NC
On/Off
CN8501
CONN
1 2
3
4 5 6 7
8
9 10 11 12
C8518
1N 50V
DIM_IN
DIM
EN
R8513
10K 1/8W 1%
DIM_IN
LED-COMP
DIM_IN LED-COMP
LED-COMP
DIM_IN
EN
EN
EN
LED-COMP
LED-1
LED-2
LED-1
IC8501
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
LED-5
LED-2
LED-6
LED-3
LED-4
LED-5
+12V
LED-COMP
EN
C8516 100N 50V
C8503
0.47UF 50V
R8506 10K 1/8W 1%
EN
C8506
0.47UF 50V
LED-6
C8513 100N 50V
LED-3
LED-COMP
DIM_IN
R8501 10K 1/8W 1%
R8503 10K 1/8W 1%
DIM_IN
+12V
R8502 10K 1/8W 1%
VLED
R8504 10K 1/8W 1%
R8505 10K 1/8W 1%
+
C8510
22UF 50V
C8501
0.47UF 50V
DIM_IN
EN
LED-4
+12V
C8502
0.47UF 50V
VLED
C8514 100N 50V
C8515 100N 50V
C8512 100N 50V
C8511 100N 50V
Circuit Diagrams and PWB Layouts
EN 61L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 62

10-2-6 Power layout top

19430_509_130115.eps
130115
2013-01-02
A
715G5792
Power layout top
C8121
C8510
C9402
D9103
IC9102
IC9103
IC9401
J934
J929
J945
J920
J907
J914
J916
J918
J909
J939
J930
J944
J942
J943
J936
J935
MH13
MH21
J919
J917
J915
R9156R9157
J904
J933
J932
J911
J924
J921
J913
J926
J908
J923
MH34
MH35
J938
J937
T9101
D9801
J928
J925
J903
J910
J906
J905
C9901
D8120D8121
J927
J902
J901
J940
C9817
C9818
D9802
R9808
R9111
R9104
MH26
J931
MH45
MH43
MH44
ZD4
ZD3
ZD1
ZD2
ZD5
ZD6
C8101
C9104
C9107
C9108
C9109
C9110
C9111
C9114
C9116
C9120
C9122
C9135
C9136
C9137
C9140
C9801
CN9102
CN9901
CN9902
CN9903
D9105
D9106
F9901
FB9902
IC9104
Q8101
Q9101
Q9107
Q9801
R8175
MH1
MH2
MH3
MH4 MH5 MH6
MH7
MH8
MH9
MH10
MH11
MH12MH14
MH15
MH16
MH17
MH18
MH19
MH20
MH22
SG9901
SG9902
HS8101
C9102
HS9101
HS9103
HS9102
FB9901
CN8501
FB9802
C8112
HS9104
C9144
C9119
BD9901
C9814C9815
RV9901
L9902
L9901
L9801
C8118
L8102
C9903
C9904
C9911
NR9901
D9101
FB9101
C8117
L9102
L9103
L9104
L9101
FB9803
R9907
R9908
C9910
L8101
FB8101
FB9102
CN9101
C9905
C9906
Circuit Diagrams and PWB Layouts
EN 62L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 63

10-2-7 Power layout bottom

19430_510_130115.eps
130115
2013-01-02
A
715G5792
Power layout bottom
C8102
C8105
C8106
C8111
C8113
C8119
C8501
C8502
C8503
C8504
C8505
C8506
C8511
C8512C8513
C8514
C8515
C8516
C9103
C9105
C9106
C9112
C9113
C9115
C9117
C9118
C9121
C9123
C9124
C9125
C9126C9127
C9128
C9130
C9403
C9138
C9142 C9143
C8517
C9401
C9804
C9806
C9807
C9808
C9809
C9810
Q9402
R8141
R8144
R8148
R8154
R8155
R8156
R8157
R8158
R8162
R8163
R8176
R8501
R8502
R8503
R8504
R8505
R8506
R8523
R8522 R8521
R9107
R9108
R9109
R9110
R9112
R9113
R9114
R9115
R9116
R9117
R9118
R9119
R9120
R9121
R9122
R9123
R9124
R9125
R9126
R9128
R9129
R9130
R9131
R9134
R9135
R9136
R9138
R9139
R9140
R9143
R9144
R9145
R9146
R9408
R9158
R9161
R8511
R8512
R9401
R9403
R9404
R9802
R9803
R9804
R9805
R9806
R9807
R9809
R9810
R9812
R9813
R9814
R9901
R9902
R9903
R9405
RJ907
C8518
R8513
RJ904
RJ902
RJ906
RJ901
C9132
R9178
R9340R9341
Q9403
C9141
R9308
R9339
R9406
R9307
Q9305
Q9301
C9803
R9816
R9817
RJ905
RJ911
R8161
RJ903
C9131
RJ912
R9105
R9106
RJ913
RJ914
RJ909
RJ910
RJ908
R9402
C9129
R9133
R9150
R9151
R9162
R9152
IC9106
R9127
R9407
R9132
MH29
MH30
MH31
C9811
R9818
C9133
R9137
R9141
R9904
R9905
R9815
R9819
R9820
R9821
R9822
R9906
Q9802
Q9803
C9134
C9139
R9142
R9147
R9148
C9145
C9146
C9147
C9812
C8114
C8115
R8524R8525
R9823
R9149
R9811
IC8103
IC8501
IC8502IC8503IC8504
IC8505
IC8506
IC9101
IC9151
IC9801
IC9901
R9154
RJ915
R9153
R8147R8145
R9159
R9160
R9101
R9102
R9103
R9163
MH40
MH39
MH41
MH42
D8118
D9102
D9113
D9803
ZD8103
ZD9401
ZD9101
ZD9102
ZD9106
ZD9104
ZD9105
ZD9103
D9104
ZD9107
Q9104
Q9401
D9107
Circuit Diagrams and PWB Layouts
EN 63L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 64

10.3 A 715G5793 PSU

19430_511_130114.eps
130114
Power
A01 A01
2012-12-07
C
715G5793
Power
+24V
C9161 220NF 50V
FB9901
127R
1 2
R9107 10K 1/4W
Q9107 AOD409
C9355
0.1uF 50V
+12V1
FB_1
R9165
82KOHM +-5% 2WS
!
R9164
82KOHM +-5% 2WS
-
+
BD901
TS6B06G-05-X0
2
1
3
4
R9356
33K OHM
!
C9104
2.2NF
R9115
56R
R9163
20K 1/8W 1%
R9118
56R
Q9372 2N7002K
R9375 NC
C9132 1uF 50V
C9352 1UF
C9158 100N 50V
HS9251 HEAT SINK
1 2
3
4
R9122
120 OHM
R9120
120 OHM
C9155 100N 50V
R9121
120 OHM
HS9101 HEAT SINK
1 2
3
4
P_Scan
+12V1
P_Scan
C9902 220NF 305V
R9339
6.8KOHM +-1% 1/8W
PS_ON
!
C9910
220PF 250V
C9110 NC
R9377 10K OHM +-5% 1/8W
Q9301 2N7002K
DV5
DV5
C9901 220NF 305V
C9159 1NF 500V
C9160 1NF 500V
IC9151 AS431AN-E1
RV9901
TVR14561KFAOZF
HOT COLD
R9901 390K
R9341 100KOHM +-5% 1/8W
R9111
0.24 oHM 2W
R9172 100R 1/8W 5%
R9340
0R05 1/4W
D9251 FME-210B
1
2
3
C9119 47PF
C9908
1NF 250V
!
T9101 400uH
1
2
3
4
5
8
9
10 11 12
7
IC9101 PF6200
PT
1
FB
2
CS
3
GND4OUT
5
VCC
6
HV
8
C9164 1NF 50V
IC9152
PF8200S
GND
1
GND
2
SS
3
FLAG4EN
5
ADJ
6
GATE
7
VCC
8
FB9906
BEAD
1 2
!
R9903390K
C9907
47pF
HS9151 HEAT SINK
1 2
3
4
IC9901
CAP004DG-TL
NC
1
D1
2
D1
3
NC4NC
5
D2
6
D2
7
NC
8
R9371 20K OHM
C9257 1NF 50V
EN
SG901 DSPL-501N-A21F
R9104 10 OHM
!
L9902 30MH
124
3
D9351 SK84C
1 2
IC9351 NR111D
BS
1
VIN
2
SW
3
GND4FB
5
ISET
6
EN
7
SS
8
C9256 1NF 50V
R9376 10K OHM +-5% 1/8W
C9372
22N 50V
C9359
0.1uF 50V
+
C9103
47UF 450V
R9113
5.1R 1/8W 5%
Q9371 2N7002K
R9374
100K 1/8W 1%
!
L9901 30MH
124
3
Q9104 2SA1797
R9373 100K 1/8W 1%
R9372
100K 1/8W 1%
!
SG902
DSPL-501N-A21F
IC9106
AS431AN-E1
R9251
10K 1/8W 1%
ZD9101 BZT52-B36
1 2
C9357 1UF
D9107
FMX-12SL
1
2
3
R9322 100KOHM +-5% 1/8W
R9258 220 OHM 1/4W
C9255 1uF
R9105 82KOHM +-5% 2WS
R9150
3K9 1/8W 1%
R9257 220 OHM 1/4W
R9168 270K +-1% 1/8W
C9105
2.2NF
+
C9251
470UF 25V
R9102 47K +-1% 1/4W
R9106 47OHM +-5% 1/8W
D9101 SARS01-V1
C9111
100N 50V
IC9102 EL817M(X)
1
23
4
R9101 47K +-1% 1/4W
R9112
0R05
R9145 470R 1/8W 1%
+
C9356
100UF 50V
D9102 SS0520_R1
12
R9169 360K +-1% 1/8W
R9103 47K +-1% 1/4W
t
NR9901
NTCR
1 2
C9131 47N 50V
R9167
0 OHM +-5% 1/8W
R9161
2.43K OHM 1%
R9160
30K 1/8W 1%
R9162
2K 1/8W 1%
+5.2V
C9354
2.2NF 630V
!
+12V1
D9352 NC
1 2
5V_EN
R9354 10R
R9358 11K 1/8W 1%
R9321 100 OHM 1/4W
CN9902 NC/CONN
1
2
FB_1
C9346
10N 50V
!
R9142
1K OHM 1%
R9147 2Kohm 1/4W +/-5%
C9162
100N 50V
+
C9252
470UF 25V
C9353 100N 50V
+
C9254
470UF 25V
L9201 3UH
R9357 100KOHM +-5% 1/8W
!
ON/OFF
D9112 RB160M
1 2
+12V1
PS_ON
R9151
200K 1/8W 1%
D9103 1N4007
CN9102 CONN
1
2
3
4
5
6
7
8
9
10
11
12
+24V1
C9371
100N 50V
+
C9157 330UF 35V
+
C9253
470UF 25V
FB9904
BEAD
1 2
F9901 FUSE
FB9905 BEAD
1 2
!
CN9101 CONN
1
2
3
4
5
6
7
8
9
10
11
12
13
FB9903
127R
1 2
FB9908
BEAD
12
L9301
15uH
!
5V_EN
D9503 1N4148W
FB9907
BEAD
1 2
R9127
56R
R9126
56R
C9358 1UF
+
C9107 22UF 50V
ZD9102 BZT52-B36
1 2
ZD9103 BZT52-B27
1 2
C9906
220PF 250V
C9905
220PF 250V
+5.2V
+12V
DIM
ON/OFF
+24V
DIM
+12V
ON/OFF
R9359 2K 1/8W 1%
!
R9141
100 OHM 1%
+24V1
+12V1
Q9108
PMBS3906
Q9101 STF10N65K3
R9123
120 OHM
R9125
120 OHM
R9124
120 OHM
R9166 100KOHM +-5% 1/8W
C9106 1uF 50V
ZD9152 BZT52-B15
1 2
CN9903 NC
1 2
+12V1
R9173 100KOHM +-5% 1/8W
C9909
220PF 250V
C9351
2.2UF 50V
+
C9350
330UF 25V
+24V2
+24V2
!
!
CN9901 SOCKET
12
R9116
56R
R9117
56R
R9171
91KOHM +-1% 1/8W
R9170
4K7 1/8W 1%
+
C9151 330UF 35V
+
C9153 330UF 35V
+
C9152 330UF 35V
R9110
56R
+
C9154 330UF 35V
+
C9156 330UF 35V
D9502 1N4148W
R9108
56R
FB9902
BEAD
1 2
C9163 100N 50V
R9353 22R 1/6W 5%
R9109 220R 1/8W 5%
L9101 3UH
+12V
DV5
!
C9109 22N 50V
R9252
510 OHM +-1% 1/8W
+
C9101
47UF 450V
+
C9102
47UF 450V
!
R9146 1K5 +-1% 1/8W
C9108 220P 50V
R9114
100K 1/8W 1%
R9256 220 OHM 1/4W

10-3-1 A01, Power

Circuit Diagrams and PWB Layouts
EN 64L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 65

10-3-2 A02, LED Driver

19430_512_130114.eps
130114
LED Driver
A02 A02
2012-12-07
C
715G5793
LED Driver
R8123 10K OHM +-5% 1/8W
R8107 820K 1%
IC8103
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
+24V1
+
C8129
47UF25V
IC8106
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
D8102 SR510-22
1 2
L8101
33uH
8
1
R8117
0.05R
IC8104
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
VLED
R8118
100KOHM +-5% 1/8W
R8127
180K +-1% 1/8W
R8126 1K 1/8W 1%
C8120 1N 50V
IC8105
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8134
0 OHM +-5% 1/8W
+12V
COMP
R8119 10K 1/4W
IC8102
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
R8111
NC
C8117 NC
C8118 NC
R8102
12.7 KOHM +-1% 1/8W
R8106
12.7 KOHM +-1% 1/8W
R8101
12.7 KOHM +-1% 1/8W
R8105
12.7 KOHM +-1% 1/8W
FB_2
R8104
12.7 KOHM +-1% 1/8W
R8103
12.7 KOHM +-1% 1/8W
FB_2
C8124
100N 50V
R8120
NC
Q8102 NC
ZD8102 NC
1 2
R8108
750K 1%
IC8107 PF7900S
FB
1
GM
2
RT
3
CS4DIM
5
GND
6
OUT
7
VCC
8
DIM3
DIM2
DIM1
+
C8127
10UF 50V
R8122 100K
R8121 100K
C8122 NC
C8111 470NF 50V
L8102
3UH
+12V
CN8103
CONN
1
2
3
4
R8182 0 OHM +-5% 1/8W
R8184 0 OHM +-5% 1/8W
R8181 0 OHM +-5% 1/8W
LED5
LED3
LED1
LED2
LED4
R8183 0 OHM +-5% 1/8W
R8185 0 OHM +-5% 1/8W
ZD8101 NC
1 2
DIM1
C8126 1N 50V
DIM2
DIM3
DIM
R8110
120KOHM +-1% 1/8W
CN8101
CONN
1
2
3
4
5
6
7
8
9
10
11
12
+
C8132 220UF 100V
+
C8108 150UF 35V
+12V
+12V+12V
+12V
+12V
R8125
2R2 +-5% 1/8W
D8101
SS0520_R1
12
R8124 22 OHM 1/8W
C8123
100N 50V
VLED
CN8102 NC
1
2
3
4
5
6
7
8
910
C8128
2.2NF 630V
EN
VLED
C8101 470NF 50V
LED6
COMP
C8105 470NF 50V
COMP
C8115 470NF 50V
LED2
LED3
LED6
R8109
120KOHM +-1% 1/8W
LED5
LED3
C8112 470NF 50V
LED1
C8114 470NF 50V
EN
C8102 470NF 50V
LED4
COMP
COMP
+12V
LED1
LED4
C8104 470NF 50V
LED2
COMP
Q8101
AOD4126
EN
VLED
EN
C8103 470NF 50V
IC8101
PF7700A
DIM
1
EN
2
VCC
3
LED4GND
5
ISET
6
GM
7
COMP
8
COMP
EN
C8113 470NF 50V
LED5
EN
C8116 470NF 50V
C8106 470NF 50V
+
C8125 47UF 100V
D8111 1N4148
D8112
1N4148
D8113
1N4148
DIM3
DIM2
DIM1
Circuit Diagrams and PWB Layouts
EN 65L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 66

10-3-3 Power layout top

19430_513_130115.eps
130115
2012-12-07
C
715G5793
Power layout top
D8102
D9103
IC9102
R9105
R9164
R9165
J9165
C9101 C9102 C9103
J8147
J9162
J9151
J9164
J9160
J9161
J8135
J9117
J9104
J8140
J8142
J8143
J8121
J8118
J8126
J8127
J8119
J8123
J8136
J8137
J9135
J9148
J8113
J8138
J9149
J8133
J8129
J8125
J9130
J8110
J9116
J9120
J9145
J9144
J9158
J8131
J8132
J8155
J9157
FB4
J9154
J9163
J8156
J9134
J8101
D8112
D8111
D8113
J8114
J9159
J8102
J9153
C9119
C9107
J8122
J8141
J9106
J8134
J8130
J8109
J8152
R9354
J9146
J9124
J9103
J9139
J9150
J8106
J8139
J8104
J8105
J9112
J8111
J8115
J8128
J9102
T9101
M10
M11
M12
FB6
FB7
FB8
R1
R2
R3
FB9
M13
FB1
M14
M19
C8108
C8125
C8127
C8129
C9104
C9105
C9252
C9356
C9253
C9254
C9907
C9908
C9910
CN8101
CN8102
CN9102
CN9101
CN9902
FB9904
FB9905
IC9351
L8102
L9301
Q9101
R8117
R9111
SG901
SG902
R9901
R9903
C9157
C9251
C9151
C9152
C9153
C9154
C9156
D9251
C9350
FB9906
FB9902
M4
M1
M2 M3
M5
M6
M7
M8
M9
FB9901
CN9903
CN9901
C8132
FB9908
FB9907
C9905
C9906
C9909
L9101
L9201
FB9903
R9353
D9107
M17
FB2
FB3
M18
M15 M16
D9101
L8101
F9901
CN8103
BD901
L9902
L9901
RV9901
NR9901
HS9151
HS9101
HS9251
C9901
C9902
Circuit Diagrams and PWB Layouts
EN 66L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 67

10-3-4 Power layout bottom

19430_514_130115.eps
130115
2012-12-07
C
715G5793
Power layout bottom
C8101
C8102
C8103
C8104
C8105
C8106
C8111
C8112
C8113
C8114
C8115
C8116
C8120
C8122
C8123
C8124
C8126
C9106
C9108
C9109
C9110
C9111
C9131
C9155
C9353
C9354
C9255
C9357
C9346
C9158
C9355
C9256
C9257
C9161
C9162
IC8107
IC9106
IC9151Q9108
R8101
R8102
R8103
R8104
R8105
R8106
R8107
R8108
R8109
R8110
R8118
R8121
R8122
R8123
R8124
R8125
R8127
R8134
R8181
R8182
R8183
R8184
R8185
R9101
R9102
R9103
R9104
R9106
R9109
R9112
R9120
R9121
R9122
R9141
R9142
R9145 R9146
R9147
R9160
R9161
R9162
R9163
R9167
R9168
R9169
R9170
R9171
R9356
R9358
R9359
R9322
R9150
R9251
R9256
R9257
R9258
JR9101
R9107
C9371
C9372
R9339
R9341
R9372
R9373
R9374
R9375
R9376
R9371
Q9301
Q9371Q9372
C9351
C9163
R9108
R9110
R9151
R9377
R9321
R8126
R9113
R8119
R9166
IC8106
IC8104
IC8101
IC8102 IC8103
IC8105
IC9901
IC9152
R9340
C9159
C9160
C9164
R9114
R9173
R9116
R9117
JR8102
C8128
JR8103
C9358
R9252
R9357
C9132
C8117C8118
C9352
R8111
R9172
R9115 R9118
Q8102
JR8104
R9125
R9124
R9123
JR9102
JR9103
JR9104
R9126R9127
R8120
D8101
D9102
D9112
D9502
IC9101
Q8101
Q9107
ZD8101
ZD9152
S5
S6
D9352
D9351
ZD9102
ZD9101
ZD8102
ZD9103
S7
Q9104
D9503
Circuit Diagrams and PWB Layouts
EN 67L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 68

10.4 ALC 715G6001

19510_534_130424.eps
130424
Option Board
ALC ALC
2012-07-23
C
715G6001
Option Board
12V
12VO
PS-On
12V
PS-On
12VO
12V
RST Chips 0805
SMT R/A CONN
SMT R/A CONN
R8104 150K 1/8W +/-1%
R8104 150K 1/8W +/-1%
R8102 10K 1/8W 1%
R8102 10K 1/8W 1%
Q8102
2N7002K
Q8102
2N7002K
C8102 100N 50V
C8102 100N 50V
C8103 100N 50V
C8103 100N 50V
CN8103
CONN
CN8103
CONN
1
2
3
4
5
6 7
R8101
22K 1/8W 1%
R8101
22K 1/8W 1%
C8101 100N 50V
C8101 100N 50V
Q8103
2N7002K
Q8103
2N7002K
Q8101
AO4449 -7A/-30V
Q8101
AO4449 -7A/-30V
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
CN8102
CONN
CN8102
CONN
1
2
3
4
5 6
R8105
100K 1/8W 1%
R8105
100K 1/8W 1%
R8103
100K 1/8W 1%
R8103
100K 1/8W 1%
R8106 20K 1/8W 5%R8106 20K 1/8W 5%

10-4-1 Option Board

Circuit Diagrams and PWB Layouts
EN 68L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 69

10-4-2 Option board layout

19510_535_130424.eps
130424
2012-07-23
C
715G6001
Option board
layout top/bottom
C8101
C8102
C8103
R8101
R8102 R8103
R8104
R8105
R8106
MH1
H1
Q8101
Q8102
Q8103
CN8102
CN8103
FD2
FD1
Layout Option Board (top side)
Layout Option Board (bottom side)
Circuit Diagrams and PWB Layouts
EN 69L12M3.1L LA 10.
2013-Jun-21
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Page 70

10.5 313912365441 SSB

19510_500_130411.eps
130411
DC-DC
B01A B01A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
FB
SS
EN
BOOT
VIA
VIN
SW
COMP
GNDGND_HS
SW
BOOT
EN
VIN
GND
GND HS
VCC
FB
FB
SS
EN
BOOT
VIA
VIN
SW
COMP
GNDGND_HS
FB
SS
EN
BOOT
VIA
VIN
SW
COMP
GNDGND_HS
VIA
VIA
VIA
VIA
COM
OUTIN
12V/5V CONVERSION
*
0R
ROUND 4.02mm SCREW HOLE
No
SLOT SCREW HOLE 4.02X5.0
3V3/1V2 CONVERSION
*
12V/1V5 CONVERSION
*
Yes
0R
No
Yes
*
12V/3V3 CONVERSION
Non TM100 Panel TM100 Panel
12V/1V1 CONVERSION
3127
0R
2133
F113
I155
3104
100K
10u
2192
F131
+VSND
SS4_GND
SENSE_1V5_DDR
10R
3118
RES
1R0
3109
5
4
9
83
10
11
2
RT7297AHZSP
Φ
STEP DOWN
1
6
7
SS4_GND
7116
RES
2115
22u
22u
2126
RES 2165
10n
5
6
8
9
2
3
7
1
7110-1
RT8288AZSP
4
RES 2188
100n
F133
22u
2105
1%
F127
3111
15K
1R0
3115
2
3
4 5 6 7
8
9
1516
1
10 11 12 13 14
1M88
SMAW200-H14SF
2166
100n
2112
10u 16V
F114
SS2_GND
2157
10n
100n
2122
2182
22u
SS2_GND
33K
3130
REF EMC HOLE
1X01
10u
2191
2183
22u
I138
100n
RES
2172
2175
SS1_GND
470p
SS2_GND
RES
2119
470p
22u
2114
SS3_GND
10u
REF EMC HOLE
1X05
2123
2u0
5107
I134
3119
10K
RES
2116
22u
1%
SS3_GND
10K
3112
RES 2121
10n
RES 2108
10n
100p
2127RES
RES
11
2
22u
2148
STEP DOWN
1
6
75
4
9
83
10
RT7297AHZSP
7118
Φ
2111
10u
RES
F106
100n
2143
8
9
1920
I152
16 17 18
2
3
4 5
6 7
1M89
1
10 11
12 13 14 15
10u
SMAW200-H18S2
2131
F132
I149
10u
2110
F102
330K
3121
1n0
2137
RES
+1V1_SW
I106
I150
+3V3STBY
+12VS
+3V3_SW
I157
SS2_GND
SS1_GND
I135
RES
2124
10u
12K
3107
F115
RES
I154
22u
2147
33R
5106
SS1_GND
10u
5100
1X04
REF EMC HOLE
I144
F121
I158
100n
GND_AMBI
2100
5105
33R
1%
4K7
3105
5104
3u6
+5V_SW
3n3
2120
2179
100n
2101
10u
2118
22u
RES
3116
100K
I132
5102
10u
GND
SS2_GND
SS1_GND
RES
1M0
3169
2174
100n
RES
2167
220n
2
2104
22u
6
75
4
9
83
10
11
RT7297AHZSP
7117
Φ
STEP DOWN
1
100n
I143
2113
I159
RES
10u
2196
RES
2146
10n
5103
33R
2155
22u
RES
3123
SS2_GND
10u
2177
68R
3129
2145
10R
3110
RES
1n0
I139
I140
I127
SS2_GND
100p
2134
SS3_GND
16V
10u
2102
3122
18K
1%
SS1_GND
F103
F126
I153
1%
1K5
3106
RES
100n
2187
1%
3114
2K2
F107
68R
F120
3126
100n
2154
+1V2_SW
2107
3n3
F128
I145
100n
2109
F123
RES
2170
22u
RES
2133
100p
2184
1n0
SS3_GND
22u
2171
RES
470p
RES
2106
2189
100u 16V
100K
3108
RES
RES
15K
3120
10R
3137
REF EMC HOLE
1X02
SS3_GND
GND_AMBI
39K
3168
33R
5101
+12V_AMBI
F108
I151
2156
2176
10u
6.3V22u
RES
RES
3167
22R
I156
22u
2168
100p
2132
I118
I119
2117
100K
3100
+1V5_SW
22u
F134
220n
2194
RES
1
3 2
3117
LD1117DT12
7113
8K2
F119
3113
12K
100K
3170
68R3127
3163
F130
18
2193
220n
23
242526
11 12 13
141516
17
7110-2
RT8288AZSP
10 19 20 21
22
SS1_GND
68R3128
RES
RES
22R
3133
3103
3146
RES
10R
2197
220u 6.3V
RES
I147
3n3
2164
SENSE_1V1_MT5396
I146
100p
F122
RES 2128
SS3_GND
2K2
3131
1%
SS3_GND
F101
100n
2103
I122
1K0
3162
+3V3_SW
1%
F129
I120
2178
10u
2169
22u
1R0
3102
2180
1n0
RES
100n
2198
RES
2125
10u 16V
1n0
2136
F118
10n
2185
SS1_GND
+12VS
I136
POWER_OK
PWM-DIMMING
BL_ON_OFF
BACKLIGHT-BOOST-A
STANDBY

10-5-1 B01A, DC-DC

Circuit Diagrams and PWB Layouts
EN 70L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 71

10-5-2 B02A, Tuner & demodulator

19510_501_130411.eps
130411
Tuner and demodulator
B02A B02A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
XTALSEL
XVSS
TAVSS
GND_HS
XVDD
TAVDD
PVDD
OSCMODE
4
3
XTALI
DVDDCVDD
VSS
5
TSDATA
SDA
VIA
TSCLK
TSVALID
TSSYNC
0 1 2
RST_X
OSCEN_X
SLVADR0
TESTMODE
TTUSDA
TTUSCL
TIFAGC
GPIO2
6 7
SCL
XTALO
TAINP TAINM
SLVADR1
GPIO0 GPIO1
COM
OUTIN
ADCINP_DEMOD
RF_AGC
DEMOD_RST DEMOD_TSCLK DEMOD_TSVAL DEMOD_TSSYNC DEMOD_TSDATA0 DEMOD_TSDATA1 DEMOD_TSDATA2 DEMOD_TSDATA3 DEMOD_TSDATA4 DEMOD_TSDATA5 DEMOD_TSDATA6 DEMOD_TSDATA7
CI_TSCLK CI_TSVAL CI_TSSYNC CI_TSDATA0
IF_AGC
PVR_TSCLK PVR_TSVAL
PVR_TSSYNC PVR_TSDATA0 PVR_TSDATA1
SPI_CLK
SPI_CLK1
SPI_CLE
SPI_DATA
CI_INT
ADCINN_DEMOD
COM
OUTIN
MT5396
0R
+3V3_TUN
47n
2246
47p
2245
+3V3_TUN
F207
2216 100n
1%
2K2
3213
4202RES
3214
F208
4K7
RES
223547p
A210
100n2210
82p
2205
3222
150R
35
34
42
33
36
55 56 57 58
6
11
182327
31
43
68
51
69 70 71 72 73 74
52 53 54
50
59 60 61 62 63 64 65 66 67
9 12 13 14 15 16 17
3
4
46 45
41
37
38
40
39
24
48
5
8
1 47 2
26
30
32
29
20 21
25
7210
10
22
28447
19
49
CXD2828ER
22u
2229
RES
RES4201
47R
3227
4u7
5200
+3V3_SW
LD1117S25
7220
1
3
2 4
F211
33R3210
10K
3223
100R3225
F202
2215
100n
1K03203RES
3224 100R
RES 2226
10u
5201 1K0
3204
3K3
100n2211
2204
82p
47p
2236
3212
RES
3228
2K2
1%
22K
22R3 6
3
2 4
3211-3
LD1117S33
7216
1
I206
47R
3201
100n
+5V_SW
2207
3229 4K7
+2V5_SW
1K05202
2221 22p
U35
R34
P33 P34
R33
R32
U34
N35
P35 N37
N34
T36 U36 T33 T30 V33 V32 V31 V30
T35
T31
AT32
AU32
N36
T37
R35
R37
R36
T34 T32
+3V3_SW
7300-7
DEMOD_IF
100n2206
F200
A209
47R3232
47u
2217
+5V_SW
+3V3_SW
3208
1u02239
2208 100n
3207 1K0RES
3
2218
100n
41M
1205
2
4
1
3217 15R
323147R
+3V3_SW
2233 10n
3226 47R
+2V5_SW
100n2209
47R
2248 100n
3202
2200
RES
8p0
6.3V22u
2230
F206
16
3205
3K3
11
3
IF1_N
2
IF1_P
IF2_N
8
7
IF2_P
12
13
14
15
1
A3.3V
4
AGC1
9
AGC2
I2C_SCL
10
I2C_SDA
TUNER
SUT-RA214ZN
1201
100n
2227
RES
15R3218
2240 1u0
1u02220
+3V3_SW
2224
RES
6.3V
330u
2249
1 8
100n
22R3211-1
2231
100n
RES
2228
100n
RES
1K0
3200
4203
2219 1u0
3211-2 2 7 22R
8p0
2201
+1V2_SW
3230
22K
10K
3206
A204
100n
2214
5203 1K0
2225
10u 16V
2213 100n
1K05204
2244
47p
F212
I208
F213
A205
RES 2247
10p
223410n
I207
2223
22u
RES
F203
22p2222
10u
2232
RES
+3V3_SW
3209
4K7
DEMOD_SDA
IF_AGC1
IF1_P
IF1_N
IF2_P
IF2_N
DEMOD_SCL
IF_AGC2
TUNER_SCL
TUNER_SDA
IF_AGC2
IF_AGC1
DEMOD_TSCLK
IF1_P
IF2_P
IF1_N
IF2_N
DEMOD_RST
DEMOD_RST
TUNER_SDA
TUNER_SCL
DEMOD_TSDATA7
DEMOD_TSDATA7
DEMOD_TSSYNC
DEMOD_TSVAL
DEMOD_TSCLK
DEMOD_TSSYNC
DEMOD_TSVAL
Circuit Diagrams and PWB Layouts
EN 71L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 72

10-5-3 B03A, Class-D & muting

19510_502_130411.eps
130411
Class-D & muting
B03A B03A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
SCL
PLL_FLT
VIA
PVDD_AB
PVDD_CD
PGND_AB
PGND_CD
NC
VIA
DVDD
AVDD
OUT_A
BST_A BST_B
OUT_B
OUT_C
BST_C BST_D
OUT_D
OSC_RES
GVDD_OUT
AGND
AVSS
DVSS
DVSSO
GND
GND_HS
A_SEL
RESET
PDN
P M
PBTL
SSTIMER
STEST
VR_ANA
VR_DIG
VREG
LRCLK
SCLK
MCLK
SDIN
SDA
MT
Left+
*
*
Left-
**
Right-
Right+
*
**
*
*
*
SPDIF
10u
2435
220n
2436
RES
470R
3406
100n
2427
+3V3D
220n
2413
3409
18R
I425
F414
F418
2
6
1
1403
PUMH2
7401-1
2465 RES
10u
2462 33n
F404
3400
47K
F409
+3V3_SW
RES2434
10u
312
7402 SI2304
+3V3STBY
I424
3404
15K
100n
2460
30R
5404
18R
3410
GND_PLL
10u
2438
+3V3D
RES
2464 1u0RES
10u
5403
10u
5401
I409
30R
5414
2401
47n
30R
10u
2433
5408
RES
100n
2424
I420
F408
10u
2405
12
18
5406
30R
51
69
52 53 54 55 56 57 58
31
50
59
60 61 62 63 64 65 66 67 68
2
3
34
35
25
24
21
23
22
6
26
36
8
19
47
48
37
38
10
11
5
7 40 41 44 45
16
1
46
39
43
42
33
27
281729
49
32
20
15
30
13
9
14
4
+3V3D
7400
TAS5731PHP
2437
220n
100n
2417
3405
470R
RES
10u
2432
330p
2419
I421
I413
F417
I411
3401
10K
RES2466
10u
I404
+12VS
2418
100n
+VSND
I408
2416
10n
100n
2406
2463 10u
100n2428
5400
F405
10u
5402
10u
18R
3418
1K0
3426
2443
220n
4401
RES 5417
30R
2421
330p
F402
47R3403
I423
+3V3D
1402
I406
RES
I407
3420 22K
10K
3427
2439
10u
RES
I405
+3V3_AUDIO
F403
F407
220n
2442
330p
2420
3419 15KRES
RES
10u
2440
330p
I414
+3V3_AUDIO
2412
2411 1u0
10u
I410
RES2441
3402 47R
+3V3D
1404
2475
2474
100u 25V
25V100u
1R0
3412
25V
100u
2477
2476
100u 25V
I412
F410
F406
I415
F401
2407
100n
33n2410
18K23407
30R
5405
3
GND
45
VCC
2
VIN
1
3417
1R0
1D03
1D01
2041145-4
1 2
3
4
GND_PLL
2n22404
2429 100n
+3V3D
+3V3_SW
220n
2422
3411
1R0
3421
33R
1405
I422
33p
2461
33n2408
5
3
4
PDZ2.7B(COL)
6400
PUMH2
7401-2
3408
18R
2471
1n0
F413
30R
5415
30R
5416
2400 4n7
10n
2425
F419
47n
2402
F416
4n7
2403
2409 33n
SPEAKER_R-
SPEAKER_L-
AOLRCK
AOBCK
AOMCLK
AOSDATA0
D_RESET
MUTE
SPEAKER_R+
SPEAKER_L-
SPEAKER_L+
D_RESET
A_STBY
SPEAKER_L+
SPEAKER_R+
SPDIF_OUT
SPEAKER_R-
SDA SCL
POWER_DOWN
Circuit Diagrams and PWB Layouts
EN 72L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 73

10-5-4 B04A, MTK5396 power

19510_503_130411.eps
130411
MTK5396 power
B04A B04A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
VCCK_24 VCCK_48
VCCK_40 VCCK_41
VCCK_42 VCCK_19 VCCK_20 VCCK_21 VCCK_22 VCCK_23
VCCK_1 VCCK_2 VCCK_3 VCCK_4
VCCK_43
VCCK_6 VCCK_7 VCCK_8 VCCK_9 VCCK_10 VCCK_11 VCCK_12 VCCK_13 VCCK_14 VCCK_15 VCCK_16 VCCK_17 VCCK_18
VCCK_44
VCCK_45
VCCK_46
VCCK_47
VCCK_25
VCCK_39
VCCK_26
VCCK_27
VCCK_28
VCCK_29
VCCK_30
VCCK_31
VCCK_32
VCCK_33
VCCK_34
VCCK_35
VCCK_36
VCCK_37
VCCK_38
VCCK_5
DDRV_42 DDRV_43 DDRV_44 DDRV_45 DDRV_46 DDRV_47 DDRV_48 DDRV_49
DDRV_26 DDRV_27 DDRV_28 DDRV_29 DDRV_30 DDRV_31 DDRV_32 DDRV_33 DDRV_34 DDRV_35 DDRV_36
DDRV_13 DDRV_14 DDRV_15 DDRV_16 DDRV_17 DDRV_18 DDRV_19 DDRV_20 DDRV_21 DDRV_22 DDRV_23 DDRV_24 DDRV_25
DDRV_1 DDRV_2 DDRV_3 DDRV_4 DDRV_5 DDRV_6 DDRV_7 DDRV_8 DDRV_9 DDRV_10 DDRV_11 DDRV_12 DDRV_37
DDRV_38 DDRV_39 DDRV_40 DDRV_41
TCON12
OPCTRL6 OPCTRL7 OPCTRL8 OPCTRL9 OPCTRL10
OPTCTRL_TCON
TCON3 TCON4 TCON5 TCON6 TCON7 TCON8
TCON9 TCON10 TCON11
TCON0
TCON1
TCON2
OPCTRL11
OPWRSB
HDMI_CEC HDMI_0_SDA HDMI_0_SCL HDMI_0_HPD
HDMI_0_PWR5V
HDMI_1_SDA HDMI_1_SCL HDMI_1_HPD
HDMI_1_PWR5V
HDMI_2_SDA HDMI_2_SCL HDMI_2_HPD
HDMI_2_PWR5V
HDMI_3_SDA HDMI_3_SCL HDMI_3_HPD
HDMI_3_PWR5V
VGA_SDA VGA_SCL
STB_SDA STB_SCL
LED_PWM0 LED_PWM1
OPCTRL0 OPCTRL1 OPCTRL2 OPCTRL3 OPCTRL4 OPCTRL5
DVSS_140
DVSS_4 DVSS_5
DVSS_45 DVSS_46 DVSS_47 DVSS_48 DVSS_49 DVSS_50 DVSS_51 DVSS_52 DVSS_53 DVSS_54 DVSS_55 DVSS_56 DVSS_57 DVSS_58 DVSS_59
DVSS_13 DVSS_14 DVSS_15 DVSS_16 DVSS_17 DVSS_18 DVSS_19 DVSS_20 DVSS_21 DVSS_22 DVSS_23 DVSS_24 DVSS_25
DVSS
_11
DVSS_12
DVSS_111 DVSS_112 DVSS_113 DVSS_114 DVSS_115 DVSS_116 DVSS_117 DVSS_118
DVSS_71 DVSS_72 DVSS_73 DVSS_74 DVSS_75 DVSS_76 DVSS_77
DVSS_26 DVSS_27 DVSS_28 DVSS_29 DVSS_30 DVSS_31 DVSS_32 DVSS_33 DVSS_34 DVSS_35 DVSS_36 DVSS
_37
DVSS_1 DVSS_2 DVSS_3
DVSS_43 DVSS_44
DVSS_132 DVSS_133 DVSS_134 DVSS_135 DVSS_136 DVSS_137 DVSS_138 DVSS_139
DVSS_87 DVSS_88 DVSS_89 DVSS_90 DVSS_91 DVSS_92 DVSS_93
DVSS_60 DVSS_61 DVSS_62 DVSS_63 DVSS_64 DVSS_65 DVSS_66 DVSS_67 DVSS_68 DVSS_69
DVSS_6 DVSS_7 DVSS_8 DVSS_9 DVSS_10
DVSS_107 DVSS_108 DVSS_109 DVSS_110
DVSS_119 DVSS_120 DVSS_121 DVSS_122 DVSS_123 DVSS_124 DVSS_125 DVSS_126 DVSS_127 DVSS_128 DVSS_129 DVSS_130 DVSS_131
DVSS_78 DVSS_79 DVSS_8
0 DVSS_81 DVSS_82 DVSS_83 DVSS_84 DVSS_85 DVSS_86
DVSS_70
DVSS_38 DVSS_39 DVSS_40 DVSS_41 DVSS_42
DVSS_94 DVSS_95 DVSS_96 DVSS_97 DVSS_98 DVSS_99
DVSS_100 DVSS_101 DVSS_102 DVSS_103 DVSS_104 DVSS_105 DVSS_106
AVDD33_CVBS_1 AVDD33_CVBS_2
AVDD33_LVDSB
VCC3IO_A_1 VCC3IO_A_2 VCC3IO_A_3 VCC3IO_A_4 VCC3IO_A_5 VCC3IO_A_6 VCC3IO_A_7
AVDD10_LDO
AVDD12_PCIE11 AVDD12_HDMI_0_RX AVDD12_HDMI_1_RX AVDD12_HDMI_2_RX AVDD12_HDMI_3_RX AVDD12_RGB AVDD12_DEMOD
AVSS33_VGA_STB
AVSS33_VDAC_BG
AVSS33_VDAC
AVSS33_PLLGP AVSS33_CVBS_1 AVSS33_CVBS_2
AVSS33_DEMOD
AVSS33_XTAL_STB
AVDD12_REC AVDD12_LVDS_1
AVDD33_HDMI_2_RX AVDD33_HDMI_3_RX AVDD33_VGA_STB AVDD33_VDAC_BG AVDD33
_VDAC
AVDD33_PLLGP
AVSS12_RGB
AVSS12_DEMOD
AVSS12_REC
VCC3IO_A_8 VCC3IO_B_1 VCC3IO_B_2 VCC3IO_B_3 VCC3IO_B_4
AVDD12_LVDS_2 AVDD12_VPLL
AVDD33_MEMPLL AVDD33_PCIE11 AVDD33_USB_P0P1 AVDD33_USB_P2P3 AVDD33_HDMI_0_RX AVDD33_HDMI_1_RX
AVSS12_LVDS_1 AVSS12_LVDS_2
AVSS12_VPLL
AVSS33_MEMPLL
AVSS33_USB_P1 AVSS33_USB_P2
AVSS33_HDMI_RX_1 AVSS33_HDMI_RX_2
AVDD33_DEMOD AVDD33_XTAL_STB AVDD33_AADC AVDD
33_DAC AVDD33_DAC1 AVDD33_LD AVDD33_COM AVDD33_LVDSA
AVSS33_HDMI_RX_3 AVSS33_HDMI_RX_4
AVSS33_AADC
AVSS33_DAC
AVSS33_DAC1
AVSS33_LD
AVSS33_COM AVSS33_LVDSA AVSS33_LVDSB
AVSS12_PCIE11
1
OPCTRL5(0)
0
MT5396
0 0
0
STRAPPING
MT5396
0
0
ROM Boot+27M
ASPIF(0)
1
MT5396
MT5396
OPCTRL4(0)
ROM Boot+54M
0
ICE MODE+54M+Serial Boot
0tooB laireS+M72+EDOM ECI
AD23 AD24
P18 P19 R14 T14 U14
MT5396
1
1
T24 V23
W23
P17
Y23 AA23 AC20 AC21 AC22 AC23 AC24
AP8 AR7 AR8
P16
AT7
AT8
AU7 AU8
P20
P23
R24
AC17 AC18
P15
AC19 AD18 AM7 AM8 AN7
AN8 AP7
7300-3
P14
V14 W14 Y14 AA14 AB14 AC14 AC15 AC16
CORE_VCC
F509
2501 22u
2563
47u 6.3V
3524 100R
RES3543 100R
8
I502
1K0
3530-1
1
47R
3500
3534
10K
+3V3STBY
2u2
+3V3STBY
2504
+3V3STBY
100n2537
RES 100R3544
100n
2552
5505
30R
3513
1K0
5500
30R
10K3508
2502
2557 100n
1
3
2
2u2
27
7503
BC847BW
1K0
3530-2
3 6
1K0
3530-3
1K0
3511
2562 100n
10K3546
+3V3_SW
F507
RES
25AG 2u2
2u225AF
3507
10K
25AB
22u
3523 100R
G24
C3 C4 D4 D5 E5
B4
D25 E20 E23 E24 F20 F23 F24 G20 G23
B3
V6 AC1 AC2 AC3 AC4 AC5 AC6 A25 B25 C25
A4
H13 J8 J10 N7 P7 T5
T6
U5
U6
V5
E6 F6 F7 G6 G7 G15 G18 H7 H8 H10
DDR_POWER
7300-6
A3
I504
+3V3_SW
+12VS
10u
25A9
4K7
4K7
3506
3512
3509
4K7
3521 100R
2551 100n
2561
10u
+3V3STBY
AB19
A26 B26 C26 D26
10u
2571
AA16 AA17 AA18 AA19
AB5
E9
AB6 AB15 AB16 AB17 AB18
Y7
Y8 Y15 Y16 Y17
E8
Y18 Y19
AA5 AA7
AA15
W8 W15 W16 W17
E7
W18
W19
Y4
Y5
Y6
U18 U19 V15 V16
D18
V17 V18 V19 W5 W6 W7
T8 T15 T16 T17
D12
T18 T19 U7 U15 U16 U17
R5 R6 R7
D11
R15 R16 R17 R18 R19 T7
J11 J12 K7
C18
L7 L8 M7 R1 R2 R3 R4
F19 G14 G16
B18
G17 G19 H11 H19 J4 J5 J6
AA20 AA21 AA22 AB20 AB21 AB22
F8
AB23
F9 F12
U23 V20 V21 V22
W20 W21
F5
W22
Y20 Y21 Y22
R21 R22 R23 T20 T21 T22
E19
T23 U20 U21 U22
F25
G22 G25
H22
J22
E12
N22 P21 P22 R20
7300-4
CORE_VSS
A18
E11
E21 E22 E25 F21 F22
+3V3STBY
RES
3542
10K
353610K
B27 A27 B28 A28 C28 D28
AP22
AR22
AM20
AT21
AR21
F27 E27
E28 F28 B29
F30 F29
AN20
AT20 AU20
AM19 AN21 AR19 AP19 AN19 AM18 AP20 AN18
AC31
AC33
AB33
AJ32
AH31
AH32
AH33
AA32
AP21 AN22
AR20
7300-12
AG32
AG31
AG33
AF33
AE32
AE31
AE33
AD33
AC32
3547 100R
2568
10u
100n2559
7504
1
3
2
10u
2543
BC847BW
+3V3_SW
2570 100n
2538 100n
2558 1u0
I501
25AE 2u2
2u225AD
100n2569
3503
15K
+1V2_SW
I509
+1V5_SW
100n
2505
100R3520
1K0
3504
2566 100n
10n
2565
4K7
3514
OPWR0_5V
OPWR2_5V
I510
4K7
3510
3519 100R
BZX384-C3V3
6500
OPWR3_5V
RES
RES
22u
25AA
5
3
4
7501-2
BC847BS(COL)
2536100n
F506
I518
I508
RES
+1V1_SW
BC847BW
1
3
2
3541 100R
OPWR1_5V
7500
2
6
1
BC847BS(COL)
7501-1
2564 100n
5
10K
3526
1K0
3530-4
4
550330R
25AC
330u 6.3V
3505
1K0
2503 2u2
+3V3_SW
2544
4u7
220n
25A8
1u0
2542
30R
5506
2u225AK
25AJ 2u2
2u2
25AH
3502
3K3
AK9 AK10 AK11 AL9
RES
10K
3535
AK17
AH26
E34 F33 G31 G32 H29 H30 J29 J30
AF31 AF32
AL16
AH5
AE5
N15
AM27
D34
AR13
AL24
AJ22
AJ21
AF5
AJ28
AL15
AL25
AM26
AK30 AE30
AM28
AB30 AD30
AP13
AD21
AD20
AK18
AK27
AJ26
AG5
AJ5
W30
AL14
AB29 AA29 Y29 AC29
AD17
AH7 AE6
N14 V24
AK23
D35
U24
AD14
AD19
AF6
AL31
AD16
AK24 AK25
AG30 AF30
AD22
7300-1
AJ20
AL27
AA24 Y24 W24 AB24
AG6 AJ6
AC_POWER
BZX384-C8V2
6501
SENSE_1V1_MT5396
F510
ENABLE_WOWLAN
RESET_RF4CE
IRQ_WOWLANn
STANDBY
MUTE
RESET_AUDIO
POWER_OK
LED2
IRQ_CRP
HDMI_CEC
VGA_SCL
VGA_SDA
POWER_DOWN
HDMI_1_SCL
HDMI_1_SDA
HDMI_2_HPD
HDMI_2_SCL
HDMI_2_SDA
HDMI_3_HPD
HDMI_3_SCL
HDMI_3_SDA
HDMI_0_HPD
HDMI_0_SCL
HDMI_0_SDA
HDMI_1_HPD
POWER_DOWN
Circuit Diagrams and PWB Layouts
EN 73L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 74

10-5-5 B04B, DDR3

19510_504_130411.eps
130411
DDR3
B04B B04B
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
8
9 10 11 12
ODT
RAS
VREFDQ VREFCA
ZQ
BA0 BA1 BA2
DQU
0 1 2
3
4 5 6 7
DQL
A
CAS
DQSU
DQSL DQSL
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4 5 6 7
DQSU
8
9 10 11 12
ODT
RAS
VREFDQ VREFCA
ZQ
BA0 BA1 BA2
DQU
0 1 2
3
4 5 6 7
DQL
A
CAS
DQSU
DQSL DQSL
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4 5 6 7
DQSU
CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4
CAS
A
6
DQSU
DQU
0 1 2
3
4 5 6 7
DQL
DQSL
RAS
DQSL
ODT
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK
5
7
BA1
8
9 10 11 12 13
BA2
VREFDQ VREFCA
ZQ
BA0
DQSU
CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4
CAS
A
6
DQSU
DQU
0 1 2
3
4 5 6 7
DQL
DQSL
RAS
DQSL
ODT
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK
5
7
BA1
8
9 10 11 12 13
BA2
VREFDQ VREFCA
ZQ
BA0
DQSU
RVREF_D
BRA8
BRA9 BRA10 BRA11
BRODT
BRRESET
RVREF_A RVREF_B
BRDQS3
ARA1 ARA2 ARA3 ARA4 ARA5
ARA11 ARA12 ARA13 ARA14
ARBA0 ARBA1 ARBA2
ARCAS ARRAS
ARCLK1 ARCLK1
ARDQ0 ARDQ1 ARDQ2
ARCKE ARWE ARCS ARCSX
ARCLK0
ARDQ8 ARDQ9 ARDQ10 ARDQ11 ARDQ12 ARDQ13 ARDQ14 ARDQ15 ARDQ16 ARDQ17 ARDQ18 ARDQ19 ARDQ20 ARDQ21 ARDQ22 ARDQ23 ARDQ24 ARDQ25 ARDQ26 ARDQ27 ARDQ28
ARA0
BRDQ6 BRDQ7 BRDQ8 BRDQ9
BRDQ10
ARA6 ARA7 ARA8 ARA9 ARA10
BRA4
BRA5
BRA6
BRA7
ARDQ29 ARDQ30 ARDQ31
ARDQM0 ARDQM1 ARDQM2 ARDQM3
ARDQ
S0
ARDQS0
ARDQS1 ARDQS1
ARDQS2 ARDQS2
ARDQS3 ARDQS3
ARODT ARRESET
ARCLK0
BRDQS1 BRDQS1
BRDQS2 BRDQS2
BRDQS3
ARDQ3 ARDQ4 ARDQ5 ARDQ6 ARDQ7
BRA12 BRA13 BRA14
BRBA0 BRBA1 BRBA2
BRCAS BRRAS BRCKE
BRWE
BRCS
BRCSX
BRCLK0 BRCLK0 BRCLK1 BRCLK1
BRDQ0 BRDQ1 BRDQ2 BRDQ3 BRDQ4 BRDQ5
RVREF_C
BRDQ12 BRDQ13 BRDQ14 BRDQ15
BRDQ11
BRA0
BRA1
BRA2
BRA3
BRDQ16 BRDQ17 BRDQ18 BRDQ19 BRDQ20 BRDQ21 BRDQ22 BRDQ23 BRDQ24 BRDQ25 BRDQ26 BRDQ27 BRDQ2
8
BRDQ29 BRDQ30 BRDQ31
BRDQM0 BRDQM1 BRDQM2 BRDQM3
BRDQS0 BRDQS0
EMC
EMC
EMC
Near DRAM
MT5396 DE-CAP
DDR#1 Bypass Cap
NEAR MT5396
DDR3#2DDR3#1
Near DRAM
EMC
EMC
EMC
EMC
DDR3#4
DDR#4 Bypass Cap
Near DRAM
EMC
EMC
EMC
Main Chip Bottom Side
DDR3#3
Near DRAM
DDR#2 Bypass CapDDR#3 Bypass Cap
+1V5_SW
100n
2673
2672
100n
RES
100n
2656
2655
100n
RES
2652
100n
2651
100n
240R
3696
1K0
1%
3614
L3
L8
2614
100n
P1
B1
B9
D1
D8
E2
E8
F9
G1
G9
P9
T1
T9
B3
E1
G8
J2
J8
M1
M9
A8C1C9D2E9F1H2
H9
M8
H1
A9
B2D9G7
K2
K8
N1
N9
R1R9A1
A3
J1
J9 L1 L9 T7 M7 T3
K1
J3
T2
G3
C7 B7
D7 C3 C8 C2 A7 A2 B8
E7 D3
E3 F7 F2 F8 H3 H8 G2 H7
F3
R2 T8 R3
M2 N8 M3
K3 J7
K9
K7
L2
N3 P7
L7 R7 N7
P3 N2 P8 P2 R8
H5TQ1G63DFR-H9C
7603
2640
100n
100n
2639
HOOK1
1601
2677
100n
3688
240R
1609
HOOK1
1605
HOOK1
HOOK1
1606
HOOK1
1604
100n
2676
2681
100n
2660
100n
RES
100n
2659
RES
100n
2658
2657
100n
1%
3613
1K0
2675
100n
3623
1%
1K0
3624
1%
1K0
2611
100n
2682
10u
100R
3650
10u
2646
+1V5_SW
+1V5_SW
2638
100n
+1V5_SW
HOOK1
1608
2635
47u 6.3V
RES
1u0
2684
4u7
2683
2678
100n
2642
100n
2641
100n
2644
100n
100n
2643
3667
+1V5_SW
240R
100n
2674
+1V5_SW
2615
100n
2612
100n
100R
3666
2613
100n
2645
100n
D8
E2
E8
F9
G1
G9
L3
L8
B3
E1
G8
J2
J8
M1
M9
P1
B1
B9
D1
F1
H2
H9
M8
H1
A9
P9
T1
T9
K8
N1N9R1R9A1A8C1
C9
D2
E9
T7
M7
T3
K1
J3
T2
B2
D9
G7
K2
C3 C8 C2 A7 A2 B8 A3
J1 J9 L1 L9
F2
F8 H3 H8 G2 H7
F3 G3
C7 B7
D7
M3
K3 J7
K9
K7
L2
E7 D3
E3
F7
N7
P3 N2 P8 P2 R8 R2 T8 R3
M2 N8
7604
H5TQ1G63DFR-H9C
N3 P7
L7 R7
100n
2680
100n
2666
+1V5_SW
SENSE_1V5_DDR
F9
G1
G9
L3
L8
J8
M1
M9
P1
B1
B9
D1
D8
E2
E8
M8
H1
A9
P9
T1
T9
B3
E1
G8
J2
R1
R9
A1
A8
C1
C9D2E9F1H2
H9
K1
J3
T2
B2
D9G7K2
K8
N1
N9
C2 A7 A2 B8 A3
J1
J9 L1 L9 T7
M7
H3 H8
G2
H7
F3
G3
C7 B7
D7 C3 C8
J7
K9
K7
L2
E7 D3
E3 F7 F2 F8
N2 P8 P2 R8 R2 T8 R3
M2 N8 M3
K3
N3 P7
L7 R7 N7 T3
P3
H5TQ2G63DFR-H9CR
7601
1%
1K0
3635
1K0
3634
1%
3608
+1V5_SW
240R
1%
3627
1K0
2650
100n
100n
2653
100n
L3
L8
2654
M9
P1
B1
B9
D1
D8
E2
E8
F9
G1
G9
A9
P9
T1
T9
B3
E1
G8
J2
J8
M1
A8C1C9D2E9
F1
H2
H9
M8
H1
B2D9G7K2K8
N1
N9
R1
R9
A1
B8 A3
J1 J9 L1 L9
T7
M7
K1
J3
T2
H7
F3 G3
C7 B7
D7 C3 C8 C2 A7 A2
L2
E7 D3
E3 F7 F2 F8 H3 H8 G2
R8 R2 T8 R3
M2 N8 M3
K3 J7
K9
K7
N3 P7
L7 R7 N7 T3
P3 N2 P8 P2
7602
H5TQ2G63DFR-H9CR
RES
2671
100u 6.3V
2669
100n
100R
3656
+1V5_SW
4u7
2661
+1V5_SW
1u02662
100n
2667
2686
100n
2679
100n
2668
100n
1%
3628
1K0
+1V5_SW
2617
100n
+1V5_SW
2693
10u
HOOK1
1603
HOOK1
1602
100n
2687
2602
100n
10u
2616
2601
100n
2618
100n
+1V5_SW
G13 P13
V7
2649
100n
F2
V2 V1
W3 W4
H6
H4
M2
L4
G21
A2 K2
J3
B1
G2 D1 Y1 U1
E4 E3
F1
U4
AA4
T3 Y3 U3
J2
Y2 U2
C2 K1
D2 T4
AB4
P2
AB3
B2
P3
AB1
P1 AB2 AA3
V3
G5
K3
A1
J1
H3
D3
G3
C1
G4
L3
L6
M3
N1
P5
K4
H5
P6
F4
F3
V4
N3
P4
M5
N5
M4
L5
M1
N2
N6
K5
N4
C20
B9 A9
C8 D8
E18
F17
B14
D14
K6
C24 D15 A17 A23
C19 D21 A7 E10
C21 B21
B20
C6 D10 D7 C11 C7 C10
C17
B7 B10
D24 C16
C22 C12 D6 B12 C5
D23
C13 A5 A12 B5
D9 C9
F18
E16
C23 B17
D17 B23 D20 D22 D19
E14 B15 D13 E15
A13 G11 D16
E17
F10
A20 A21
F14
F11 C14 F13 A15 C15
A14 B13 E13 F16
7300-5
MT5396JDNJ
DDR3
F15
100n
2696
100n
2690
4u7
2694
1u0
2695
2647
330u 6.3V
2697
100n
100n
2691
100n
2664
2663
100n
100n
2685
2689
100n
100n
2665
2608
100n
3695
100R
100n
2692
2688
100n
100n
2698
100n
2699
BRA(13)
BRDQ(28)
BRDQ(29)
BRDQ(30)
BRDQ(31)
BRDQ(4)
BRDQ(6)
BRDQ(9)
BRA(13)
BRDQ(3)
BRDQ(5)
BRDQ(7) BRDQ(8)
BRDQ(0)
BRDQ(13)
BRDQ(15)
BRDQ(2)
BRDQ(24) BRDQ(25)
BRDQ(26)
BRDQ(14)
BRDQ(16) BRDQ(17) BRDQ(18) BRDQ(19) BRDQ(20) BRDQ(21) BRDQ(22) BRDQ(23)
BRDQ(27)
BRDQ(1)
BRDQ(10) BRDQ(11) BRDQ(12)
B_RVREF8
BRA(14)
BRA(14)
BRDQS3n
BRDQS3BRDQS1n
BRDQS1
BRDQ(22) BRDQ(23)
BRDQ(24) BRDQ(25) BRDQ(26) BRDQ(27) BRDQ(28) BRDQ(29) BRDQ(30) BRDQ(31)
BRDQS2
BRDQS2n
BRDQM2 BRDQM3
BRCLK1
BRCLK1n
BRCKE BRCSn
BRA(11)
BRBA(0) BRBA(1) BRBA(2)
BRRASn BRODT BRCASn
BRWEn BRRESET
BRDQ(16) BRDQ(17) BRDQ(18) BRDQ(19) BRDQ(20) BRDQ(21)
BRA(2) BRA(3)
BRA(10)
BRA(12)
BRA(4)
BRA(7)
BRA(9)
BRA(5) BRA(6)
BRA(8)
BRDQ(3) BRDQ(4) BRDQ(5) BRDQ(6) BRDQ(7)
BRDQ(8)
BRDQ(9) BRDQ(10) BRDQ(11) BRDQ(12) BRDQ(13) BRDQ(14) BRDQ(15)
BRDQS
0
BRDQS0n
BRDQM0 BRDQM1
BRCLK0
BRCLK0n
BRCKE BRCSn
BRA(0) BRA(1)
BRA(7)
BRA(9)
BRA(5) BRA(6)
BRA(8)
BRA(11)
BRBA(0) BRBA(1) BRBA(2)
BRRASn BRODT BRCASn
BRWEn BRRESET
BRDQ(0)
BRDQ(1)
BRDQ(2)
B_RVREF8
ARDQS1n
ARDQS1
ARDQS3n
ARDQS3
BRA(0) BRA(1) BRA(2) BRA(3)
BRA(10)
BRA(12)
BRA(4)
BRDQS1
BRDQS1n
BRDQS2
BRDQS2n
BRDQS3
BRDQS3n
BRODT
BRRASn
BRRESET
BRWEn
A_RVREF1
BRCLK0
BRCLK0n
BRCLK1
BRCLK1n
BRCSn
BRDQM0 BRDQM1 BRDQM2 BRDQM3
BRDQS0
BRDQS0n
BRA(5) BRA(6) BRA(7) BRA(8) BRA(9)
BRBA(0) BRBA(1) BRBA(2)
BRCASn
BRCKE
ARWEn
BRA(0) BRA(1)
BRA(10) BRA(11) BRA(12) BRA(13) BRA(14)
BRA(2) BRA(3) BRA(4)
ARDQS0 ARDQS0n
ARDQS1 ARDQS1n
ARDQS2 ARDQS2n
ARDQS3 ARDQS3n
ARODT
ARRASn
ARRESET
ARDQ(4) ARDQ(5) ARDQ(2) ARDQ(7) ARDQ(8) ARDQ(13)
ARDQM0 ARDQM1 ARDQM2 ARDQM3
ARDQ(22) ARDQ(21) ARDQ(26) ARDQ(25) ARDQ(24) ARDQ(27) ARDQ(28) ARDQ(29)
ARDQ(3)
ARDQ(30) ARDQ(31)
ARDQ(12) ARDQ(11) ARDQ(14) ARDQ(9) ARDQ(16) ARDQ(17) ARDQ(18) ARDQ(19)
ARDQ(6)
ARDQ(20) ARDQ(23)
ARCKE
ARCLK0 ARCLK0n ARCLK1 ARCLK1n
ARCSn
ARDQ(0) ARDQ(1)
ARDQ(10) ARDQ(15)
ARA(3) ARA(4) ARA(5) ARA(6) ARA(7) ARA(8) ARA(9)
ARBA(0) ARBA(1) ARBA(2)
ARCASn
ARA(0) ARA(1)
ARA(10) ARA(11) ARA(12) ARA(13) ARA(14)
ARA(2)
ARDQ(28) ARDQ(29) ARDQ(30) ARDQ(31)
ARDQS2
ARDQS2n
ARDQM2 ARDQM3
ARCLK1
ARCLK1n
ARCKE ARCSn
ARA(14)
ARBA(2)
ARRASn ARODT ARCASn
ARWEn ARRESET
ARDQ(16) ARDQ(17) ARDQ(18) ARDQ(19) ARDQ(20) ARDQ(21) ARDQ(22) ARDQ(23)
ARDQ(24) ARDQ(25) ARDQ(26) ARDQ(27)
ARA(12)
ARA(4)
ARA(7)
ARA(13)
ARA(9)
ARA(5) ARA(6)
ARA(8)
ARA(11)
ARBA(0) ARBA(1)
ARDQ(9) ARDQ(10) ARDQ(11) ARDQ(12) ARDQ(13) ARDQ(14) ARDQ(15)
ARDQM0 ARDQM1
ARA(0) ARA(1) ARA(2) ARA(3)
ARA(10)
ARDQ(0)
ARDQ(1)
ARDQ(2)
ARDQ(3)
ARDQ(4)
ARDQ(5)
ARDQ(6)
ARDQ(7)
ARDQS0 ARDQS0n
ARODT
ARRASn
ARRESET
A_RVREF1
ARWEn
ARDQ(8)
ARA(5) ARA(6) ARA(7) ARA(8) ARA(9)
ARBA(0) ARBA(1) ARBA(2)
ARCASn
ARCLK0
ARCKE
ARCLK0n
ARCSn
ARA(0) ARA(1)
ARA(10) ARA(11) ARA(12) ARA(13)
ARA(14)
ARA(2) ARA(3) ARA(4)
Circuit Diagrams and PWB Layouts
EN 74L12M3.1L LA 10.
2013-Jun-21
div. table
back to
Page 75
Circuit Diagrams and PWB Layouts
19510_505_130411.eps
130411
Flash, control, EJTAG & AmbiLight
B04C B04C
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
SUBERGND
VOUT
VDD
SCL
ADR
0 1 2SDA
WC
ADIN7_SRV
GPIO12 GPIO13 GPIO14
GPIO16 GPIO17 GPIO18 GPIO19 GPIO20 GPIO21 GPIO22 GPIO23 GPIO24 GPIO25 GPIO26
GPIO38 GPIO39 GPIO40 GPIO41 GPIO42 GPIO43 GPIO44 GPIO45 GPIO46
GPIO0
ADIN2_SRV ADIN3_SRV ADIN4_SRV ADIN5_SRV ADIN6_SRV
USB_DP_P0 USB_DM_P0 USB_DP_P1 USB_DM_P1 USB_DP_P2 USB_DM_P2
GPIO1 GPIO2 GPIO3 GPIO4 GPIO5 GPIO6 GPIO7 GPIO8 GPIO9 GPIO10 GPIO11
USB_DP_P3 USB_DM_P3
ADIN0_SRV ADIN1_SRV
GPIO47 GPIO48 GPIO49 GPIO50 GPIO51 GPIO52 GPIO53 GPIO54 GPIO55
GPIO15
GPIO27 GPIO28 GPIO29 GPIO30 GPIO31 GPIO32 GPIO33 GPIO34 GPIO35 GPIO36 GPIO37
CLE
7
6
5
4
3
2
1
0
VCC
R
SE
WP
WE
RE
CE_
ALE
NC
IO
B
VSS
+T
LDM_VSYNC
SD_CMD SD_CLK SD_D0 SD_D1 SD_D2 SD_D3
LDM_CS LDM_DO LDM_DI LDM_CLK
PDD7 POCE0 POCE1
PARB
PAALE
PACLE
POWE
POOE
EMMC_CLK
PDD0
PDD1
PDD2
PDD3
PDD4
PDD5
PDD6
PCIE11_RXN
LOUTP LOUTN
PCIE11_REFCKP PCIE11_REFCKN
PCIE11_TXP PCIE11_TXN PCIE11_RXP
OSCL0
U0RX U0TX U1RX U1TX
XTALI
XTALO
OSDA0 OSCL1 OSDA1 OSCL2 OSDA2
OPWM0 OPWM1 OPWM2
OIRI
ORESET FSRC_WR MEMTN MEMTP
JTCK JTDO JTRST JTDI JTMS
NC
10K
SDM
NEAR TO MTK IC
---
3DDR
ONLY
37AB
---
FOR DEBUGGING
PANEL
4DDR
37AC
*
PWM DIMMING
MT5396
10K
Near To IC
MT5396
MT5396
2720
27p
8
100R37AJ
37AQ-1 100R1
F755
3788
F754
45
4K7
3756-4 4K7
1u0
2719
RES
45
37AA
4K7
10K3772-4
1 2
3
6
5
84
7
M24C64-RDW
7705
EEPROM
Φ
(8K × 8)
3775 4K7
RES
3789
4K7
1
3
2
5
4
7701
RES
Φ
BD45292G
1K0
3794
+3V3_AMBI
F704
37354K7
3708
100R
3714
4K7
10p
2704
37AC
10K
3712
100R
3782
10K
L34 L32
C37
D37
AU13
AU14
C36
D36
AT13
AT14
E30 E31
G35
F31 E29 AP9 AT9 AR9 AU9
G34 H34
M36
G36
M32 L33 E33 E32 F32 A29 D31 C31
N33
G37
P32 M35 M37 M33 F35 E35 E37 N32 M34
K37
F36
J36 J37 J35 J33 G33 H35 H31 F34 E36
F37
K33 K32 H33 L35 K36 J32 J34 K34 K35
AN23 AN24 AP23 AR23 AU23 AT23 AM24 AM23
H32
+3V3_AMBI
GPIO_USB
7300-8
1K0
3753
RES
27p
2721
3795 820K
3706
100R
2708
RES
100n
3730 100R
F753
F752
+3V3_SW
100p
2730
10K
3781
3756-2
27
4701
+3V3_SW
4K7
3740 22R
8
9
26
27
21
22
23
24
25
3
4
5
6
7
11
12
13
14
15
16
17
18
19
2
20
1C25
FH52-25S-0.5SH
1
10
F723
2703 100n
2
7704 BC847BW
1
3
10K3732
3741 22R
+3V3STBY
3724
RES
F740
4K7
100p
2725
3787
4K7
100R37AH
4K737AV
MSJ-035-69A-B-RF-PBT-BRF
2
1
3
1701
RES
3792
1R0
10
1 2
3
4 5 6 7
8
9
FH52-8S-0.5SH
1C27
3726
F751
10K
5700
F750
30R
BAS316
6704
RES
+3V3_SW
3704 100R
3739
+3V3_SW
33R
F736
I726
37A9 47R
10u
+3V3_SW
2726
1751
2.0A 63VT
3752
680R
37AM 47R
40
5
6
7
8
9
41 42
31
32
33
34
35
36
37
38
39
4
21
22
23
24
25
26
27
28
29
3
30
11
12
13
14
15
16
17
18
19
2
20
FH52-40S-0.5SH
1C26
RES
1
10
37AB
10K
GND_AMBI
RES
37AQ-2
100R
27
10K
3738
100n
2718
4K7
RES
I741
3761
6702
BAS316
RES
I725
+3V3STBY
100R3733
3709
100R
4K73719
3778 100R
3751
100R
F705
2701 10u
RES
+3V3_SW
100R37AG
37AY 1K0
3758 10K
47R3759
F719
3 6
4K73756-3
37A3
18K
RES
37AU
10K
F716
F726
+3V3_SW
4K7
4K7
37AX
37AW
6701
BZX384-C6V8
F712
RES
2732 100n
2731 100p
+3V3_SW
4K7
37AE
F749
F713
37AQ-4 100R45
F725
100R3 6
37AF 4K7
37AQ-3
100n
2733
14 15
8
7
6
12
37
13
36
18 19
40 45 46 47 48
3
4
5 10 11
25 26 27 28
33
2
34 35 38 39
41 42 43 44
1
20 21 22 23 24
7700
H27U4G8F2D
17 9
16
29
30 31 32
60R
5701
F700
F737
4K737A6
RES
F706
3729 10K
4K7
3755
+3V3STBY
I744
373710K
RES
3723 4K7
373110K
37AK 100R
47R37AN
100R
3701
37AD
4K7
+3V3_SW
RES
F748
4K7 3790
RES
+3V3_SW
10p
2705
2
3
4
5
6
7
8
9
12
13
FH52-11S-0.5SH
1
10
11
RES
1C20
GND_AMBI
F747
1R0
3754
27
10K
3772-2
37AT 100R
37AS
A37 C35 A36 B35
100R
B31 D30 C30 D29 D33 B34
C33
A35
B37
B36
AT11
AP10
AM9
AR10
C34 A34
D32
C32 A32 B32 A31
7300-13
C29
AU11
SDIO_SPI
SERIAL_NAND
+3V3STBY
2735
100p
3785 1R0
BC847BW
7702
10K
3736
0R337A1
F724
100R
3710
3 6
F727
45
4703-3
4703-4
10K3727
100p2728
7703
3765
BC847BW
+3V3_SW
100R
3770
10K
3748
+3V3STBY
4K7
2707
3764
100R
100n
3728 10K
W34
W35
AP18 AR18 AU16 AT16
AT34
AU34
AN12
AN15
V35
AP12
AP15
V34
W36
W37
Y34
Y35
AR15
AN14
AP31
AN30
G9 G10
AU21
AR12
AT12
AU12
AM22 D27
AP14
AM14
AR14
RES
MISC
7300-11
2u2
2706
37AR 100R
4u7
2717
+3V3_SW
RES
RES
4u7
2716
1R03786
2711
1703
3225
27M
24
1
3
1n0
F720
3713
100R
RES
27341u0
F721
F730
F728
BZX384-C6V8
6700
RES
37A7 100K
3772-3
10K
3 6
+3V3_SW
F735
F711
100R3779
3742
4K7
+5V_SW
63VT
RES
100K
3769
1750
1.0A
F722
1K0
3793
6703
BAS316
+3V3_SW
RES
100p
2714
1K0
3771
3791
10K
3772-1
10K
1 8
37AP 10K
3750 33R
F729
2710 1n0
F731
F732
F745
100R
3711
100n
2715
10K
3773
1711
4K73720
+12V_AMBI
4K7
3715
F702
F717
4K737A5
RES
100R
3705
1710
+3V3_SW
F739
2729 100p
+3V3STBY
10R37AL
F734
F746
4K7
3747
I732
10u2700
RES
33R
3774
3702
3780
10K
100R
1 8
+3V3_SW
+3V3_SW
3756-1
4K7
13
2727
100n
11
2
3
4 5 6 7
8
9
12
BM11B-SRSS-TBT
RES
1702
1
10
F701
3749 33R
4K73734
3767
6K8
5702
30R
F741
3D_LED
RC_IRQ_RF4CEn
RF4CE_RX RF4CE_TX
RC_IRQ_RF4CEn
RF4CE_TX
RF4CE_RX
RESET_RF4CE
AMBI_TEMP
KEYBOARD
NAND_POWE
NAND_PALE
NAND_PCLE
IRQ_CRP
KEYBOARD
AMBI_OUT_SPI_SCKO
AMBI_OUT_SPI_SDO
NAND_PDD(6)
NAND_PDD(5)
NAND_PDD(4)
NAND_PDD(3)
NAND_PDD(2)
NAND_PDD(1)
NAND_PDD(0)
NAND_POOE
NAND_PDD(7)
NAND_PDD(6)
NAND_PDD(5)
NAND_PDD(4)
NAND_PDD(3)
NAND_PDD(2)
NAND_PDD(1)
NAND_PDD(0)
NAND_PARB
NAND_POCE
LED2
JTCK
JTMS
JTDI
JTDO
NAND_POOE
NAND_PARB
NAND_POCE
NAND_POWE
NAND_PALE
NAND_PCLE
NAND_PDD(7)
JTDO
JTCK
JTRST
BACKLIGHT-BOOST-A
RC_IRQ_RF4CEn
UART_RX
UART_TX
SDA
SCL
SYS_EEPROM_WE
AMBI_TEMP
USB_DM
USB_DP
JTRST
SDA
SCL
UART_TX
UART_RX
JTMS
JTDI
AMBI_SPI_SCKO
PWM-DIMMING
3D_LED
RESET_USBn
CVBS_DETECT
SYS_EEPROM_WE
LCD_PWR_ON
YPBPR_DETECT
3D_2D_SELECT
SDA
SCL
AMBI_SPI_SDO
BL_ON_OFF
IR
DEMOD_SDA
DEMOD_SCL
AMBI_OUT_SPI_SCKO
AMBI_OUT_SPI_SDO
AMBI_SPI_SCKO
AMBI_SPI_SDO
VGA_DETECT
ARC_SEL1
ARC_SEL0
ORESET
BACKLIGHT_CONTROL
BOOST_CONTROL
USB_DP_WIFI USB_DM_WIFI

10-5-6 B04C, Flash, control, EJTAG & AmbiLight

EN 75L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 76

10-5-7 B04D, LVDS display

19510_506_130411.eps
130411
LVD S display
B04D B04D
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
REXT_VPLL
AE4P
BE1N BE2P BE2N BE3P BE3N BE4P BE4N BECKP BECKN
BO0P BO0N BO1P
AO1N AO2P AO2N AO3P AO3N AO4P
AO4N AOCKP AOCKN
AE0P
AE0N
AE1P
AE1N
AE2P
AE2N
AE3P
AE3N
AE4N AECKP AECKN
AO0P
AO0N
AO1P
BO1N BO2P BO2N BO3P BO3N BO4P BO4N BOCKP BOCKN
BE0P BE0N BE1P
TO DISPLAY
3D23
0R
Yes0RYes
No
0R
*
FOR DEVELOPMENT USE
No
Yes
0R
2D20 Non TM100 Panel TM100 Panel
*
*
No
0R
(TOP side)
0R
2D21
0R
MT5396
0R
*
LVDS#2
LVDS#1
RES 4D27
FD53
FD14
FD66
FD72
FD71
FD68
FD67
220n
2D12
5D01
33R
3D15
4D06
FD24
3D13
FD70
FD69
FD73
6D00
BZX384-C6V8
FD12
33R
5D00
3D22
4K7
RES
FD01
4K7RES
2D21
100p
3D20
RES
3D18
+VDISP
F829
ID05
AJ2
AJ1
AH4
AH3
AJ4
AJ3
AG7
AD2
AD1
AE4
AE3
AL4
AL3
AL2
AL1
AK4
AK3
AP3
AU4
AT4
AG4
AG3
AG2
AG1
AF4
AF3
AE2
AE1
AP1
AU6
AT6
AR6
AP6
AR5
AP5
AR4
AP4
AR3
AT2
AU1
AT1
AR2
AR1
AN2
AN1
AM4
AM3
AP2
LVDS_EPI
7300-10
AU2
FD43
3D09
1K0
4D04
4D05
FD56
FD20
4D26RES
FD04
ID17
4D25
FD48
10K
3D05
FD51
68R
3D23
RES
100p
2D20
RES
3D12
2D14 10n
FD08
RES
FD07
RES
6D01
SML-310
4D29
RES
RES
FD45
4D28
ID07
ID03
FD59
FD58
3D11
FD27
24K
3D00
+12VS
16V100u
2D16
10n2D17
+3V3_SW
FD74
FD17
1K0
3D10
3D07
15K
RES
49
50
FD49
8
9
425143
44 45
46 47
48
35
36
37
38
39
4
40
41
5
6
7
26
27
28
29
3
30
31
32
33
34
16
17
18
19
2
20
21
22
23
24
25
1
10
11
12
13
14
15
3D02
1G50
20519-041E
47R
FD52
FD36
3D17
FD55
FD05
1K0
3D08
FD13
5
6
7
8
4
1
2
3
SI4835DDY-GE3
7D00
1D11
3.0A 32VT
FD02
3
4
FD03
7D03-2
BC847BS(COL)
5
FD39
FD44
FD57
FD37
1u0
2D11
FD46
+3V3_SW
FD06
RES
FD16
4D30
FD09
BC857BW
7D02
FD15
FD50
3D14
FD25
33R
5D02
FD10
47K
3D01
FD62
3D16
FD61
FD21
FD40
47K
3D03
FD54
FD38
2D15
100n
FD19
FD23
RES
4K7
3D19
+VDISP
FD22
FD47
FD11
4K7
3D21RES
53
54 55
56 57
58 59
60
49
5
50
51
6
7
8
9
52
61
39
4
40
41
42
43
44
45
46
47
48
29
3
30
31
32
33
34
35
36
37
38
2
20
21
22
23
24
25
26
27
28
1
10
11
12
13
14
15
16
17
18
19
1G51
20519-051E
FD42
2
6
1
7D03-1
BC847BS(COL)
FD41
ID02
3D06
10K
+3V3STBY
FD18
3D_2D_SELECT
OPC_ENABLE
PWM-DIMMING
PX1CLK-
PX1A+
PX1A-
PX1B+
PX1B-
PX1C+
PX1C-
PX1D+
PX1D-
PX1E+
PX1E-
PX1CLK+
PX4A­PX4B+ PX4B­PX4C+ PX4C­PX4D+ PX4D­PX4E+ PX4E­PX4CLK+ PX4CLK-
PX2A-
PX2A+
PX2CLK+
PX2CLK-
PX3A+ PX3A­PX3B+ PX3B­PX3C+ PX3C­PX3D+ PX3D­PX3E+ PX3E­PX3CLK+ PX3CLK-
PX4A+
PX1A+
PX1A-
PX2E-
PX2E+
PX2D-
PX2D+
PX2C-
PX2C+
PX2B-
PX2B+
PX1CLK-
PX1C+
PX1C-
PX1B+
PX1B-
PX1E+
PX1E-
PX1D+
PX1D-
PX1CLK+
PX2D+
PX2E­PX2E+
PX2C+
PX2CLK­PX2CLK+
PX2D-
PX2A+
PX2B­PX2B+
PX2C-
LCD_PWR_ON
3D_2D_SELECT
PX2A- PX4B+
PX3B+
PX3CLK+
PX4E-
PX4D+
PX4D-
PX4CLK+
PX4CLK-
PX3C-
PX4E+
PX3B-
PX3A+
PX3A-
PX3E-
PX3D+
PX3D-
PX3CLK-
PX3C+
PX4C-
PX4B-
PX4A+
PX4A-
PX3E+
PX4C+
Circuit Diagrams and PWB Layouts
EN 76L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 77

10-5-8 B05A, Digital I/O - HDMI

19510_507_130411.eps
130411
Digital I/O - HDMI
B05A B05A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
PHYLED1
HDMI_3_RX_C HDMI_3_RX_CB
TXVP_0 TXVN_0 RXVP_1 RXVN_1
REXT
HDMI_0_RX_0 HDMI_0_RX_0B HDMI_0_RX_1 HDMI_0_RX_1B HDMI_0_RX_2 HDMI_0_RX_2B HDMI_0_RX_C HDMI_0_RX_CB
HDMI_1_RX_0 HDMI_1_RX_0B HDMI_1_RX_1 HDMI_1_RX_1B HDMI_1_RX_2 HDMI_1_RX_2B HDMI_1_RX_C HDMI_1_RX_CB
HDMI_2_RX_0 HDMI_2_RX_0B HDMI_2_RX_1 HDMI_2_RX_1B HDMI_2_RX_2 HDMI_2_RX_2B HDMI_2_RX_C
PHYLED0
HDMI_2_RX_CB
HDMI_3_RX_0 HDMI_3_RX_0B HDMI_3_RX_1 HDMI_3_RX_1B HDMI_3_RX_2 HDMI_3_RX_2B
G8
7
8X
0
2
0
VCC
2
3
0
1
5
4
7
6
GNDVEE
MT5396
HDMI PORT 4 (SIDE)
HDMI PORT 3
HDMI PORT 1 HDMI PORT 2
FB25
3B23
1K0
FB09
FB04
47K
3B01
OPWR0_5V
6B01
V 6
.5SE
R
FB07
CDS2C05HDMI2
+3V3STBY
30R5B02
6B02 CDS2C05HDMI2 5.6VRES
FB17
1 8
180R
3B56-1
FB24
FB16
4K73B53
1%
24K
3B50
5 6 7
8
9
2021 2223
13 14 15 16 17 18 19
2
3
4
1B03
47266-9102
1
10 11 12
RES 4B01
7
8
9
2021 2223
16 17 18 19
2
3
4 5 6
1
10 11 12 13 14 15
105156-1108
1B04
FB19
6B13 CDS2C05HDMI2 5.6V
RES
BC847BW
7B11
FB08
3B56-4
180R
45
3B00
1K0
CDS2C05HDMI26B33 V6.5SER
5.6V
FB02
CDS2C05HDMI26B22RES
IB01
FB20
3B30
1K0
3B56-2
180R
27
180R
3B56-33 6
AK33
AM16 AN16
AD15
AU17
AT17
AU18
AT18
4B32
AA36 AC37 AC36
AK35 AK34 AJ35 AJ34 AJ37 AJ36 AJ33
AD35 AD34 AC35 AC34 AE35 AE34
AB35 AB34 AA35 AA34 AA37
AG35 AG34 AG37 AG36 AF35 AF34 AH35 AH34
AE
37
AE36
7300-9
HDMI_ETHERNET
10p
2B04
3B52 4K7
6B11 CDS2C05HDMI2 6B31V6.5SER5.6VRES CDS2C05HDMI2
3B04
100K
CDS2C05HDMI2
6B12
V6. 5
SE R
5B04
30R
+3V3_SW
FB01
RES 4B11
4B00
1K0
3B10
7B31
BC847BW
3B22
FB23
47K
OPWR0_5V
OPWR2_5V
30R5B03
FB18
3B21 47K
16
7
13
14
15
12
1
5
2
4
3
MDX
7B32
74HC4051PW
6
8
11
10
9
OPWR1_5V
10p
2B02
1K0
3B13
7B00
RES
BSH111
FB22
FB21
47K3B31
2B03
10p
2021 2223
17 18 19
2
3
4 5 6 7
8
9
1
10 11 12 13 14 15 16
47266-9102
1B02
BC847BW
7B21
21
2223
18 19
2
3
4 5 6 7
8
9
20
1
10 11 12 13 14 15 16 17
OPWR2_5V
1B01
47266-9102
FB05
CDS2C05HDMI26B03 V6.5SER
47K
4B21RES
3B11
5B05 30R
4B33 RES
100K
3B34
100K
3B14
30R5B01
OPWR3_5V
7B01
BC847BW
1K0
3B33
OPWR3_5V
2B05
1u0
FB15
3B32 47K
2B06
100n
2B07
10p
RES 6B32CDS2C05HDMI2 5.6V
4B31
120R3B57-1 1 8
RES
FB11
4K73B54
120R
3B57-3
3 6
OPWR1_5V
3B03
1K0
FB12
1K0
3B20
3B55 4K7
FB13
5.6VRES 6B21 CDS2C05HDMI2
FB28
5.6VRES 6B23 CDS2C05HDMI2
FB26
FB03
3B24
100K
47K3B02
47K
FB29
3B12
120R3B57-4 4 5
FB27
1CRA72
ARC2
ARC3
120R3B57-2
ARC2
HARC2
ARC3
HARC3
ARC
ARC0
ARC0ARC_SEL0
ARC_SEL1
HARC0
ARC1
HARC1
HDMI_0_SCL
HDMI_2_HPD
HDMI_0_HPDHDMI_3_HPD
RX_1_CB
HDMI_CEC_A
HDMI_1_SCL HDMI_1_SDA
RX_1_2B
RX_1_1
RX_1_1B
RX_1_0
RX_1_0B
RX_0_CB
HDMI_CEC_A
HDMI_0_SDA
RX_0_2B
RX_0_1
RX_0_1B
RX_0_0
RX_0_0B
RX_1_2
RX_1_C
HDMI_2_SDA
RX_2_2B
RX_2_1
RX_2_1B
RX_2_0
RX_2_0B
RX_0_2
RX_0_C
RX_3_2B
RX_3_1
RX_3_1B
RX_3_0
RX_3_0B
RX_2_2
RX_2_C
RX_2_CB
HDMI_CEC_A
HDMI_2_SCL
RXVP_1
TXVN_0
TXVP_0
RX_3_2
RX_3_C
RX_3_CB
HDMI_CEC_A
HDMI_3_SCL HDMI_3_SDA
HDMI_1_HPD
PHYLED0 PHYLED1
RXVN_1
RX_0_1B RX_0_2 RX_0_2B RX_0_C RX_0_CB
RX_1_0 RX_1_0B RX_1_1 RX_1_1B RX_1_2 RX_1_2B RX_1_C RX_1_CB
RX_2_0 RX_2_0B RX_2_1 RX_2_1B RX_2_2 RX_2_2B RX_2_C RX_2_CB
RX_3_0 RX_3_0B RX_3_1 RX_3_1B RX_3_2 RX_3_2B RX_3_C RX_3_CB
ARC0
HDMI_CEC
HDMI_CEC_A
RX_0_0 RX_0_0B RX_0_1
Circuit Diagrams and PWB Layouts
EN 77L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 78

10-5-9 B05B, Digital I/O - USB

19510_508_130411.eps
130411
Digital I/O - USB
B05B B05B
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
GND_HS
USBUP
OSC2
VIA
OSC1
VBUS_DET
RESET
DM
XTALOUT
DP
RBIAS
TEST
VDD_3V3
CR PLL
FILT
+T
+T
+T
+T
VIN
VOUT
GND
EN
FLG
EN
+T +T
For internal Skype only
0R
3C42 10k
10k
USB PORT 2
(WIFI)
45R3
skype
USB PORT 3
0R
RES
SQ Test Only
45R3
0R
3C41
INTERNAL USB
USB PORT 1
0R
RES
non skype
FC59
FC60
3C22-3
10K
3 6
45
+5V_USB1
10K
3C12-4
100n
2C17
+3V3_SW
+5V_USB2
FC38
3
+5V_SW
2C13
10p
24M
1C45
2
4
1
8
1%
RES3C33
3C37-1
100K
1
3C36
1%12K
+5V_SW
2C12
100n
100K
3C39
3C01
1 8
0R3
32
10K
3C12-1
10
29
152336
38
39
40
41
33
XTALIN|CLKIN
30
2
USBDP_DN1|PRT_DIS_P1
4
USBDP_DN2|PRT_DIS_P2
7
USBDP_DN3|PRT_DIS_P3|NC5
USBDP_DN4|PRT_DIS_P4|NC1
9
31
27
5
SCL|SMBCLK|CFG_SEL0
22
SDA|SMBDATA|NON_REM1
28
SUSP_IND|LOCAL_PWR|NON_REM0
11
1
USBDM_DN1|PRT_DIS_M1
3
USBDM_DN2|PRT_DIS_M2
6
USBDM_DN3|PRT_DIS_M3|NC2
USBDM_DN4|PRT_DIS_M4|NC3
8
37
25
HS_IND|CFG_SEL1
21
OCS4_|NC4
13
17
OSC3_|NC7
19
34
35
26
24
12
BC_EN1|PRTPWR1
16
BC_EN2|PRTPWR2
18
BC_EN3|PRTPWR3|NC6
BC_EN4|PRTPWR4|NC8
20
14
RES
45
Φ
USB HUB
USX2064-AEZG
7C02
3C04-4
+3V3_SW
1M0
3C35
FC50
27
FC48
3C02-2
10K
FC45
RES3C04-2
27
1 8
2C07
1u0
+5V_SW
3C02-1
10K
14
23
+5V_SW
1C32
ACM2012
FC01
FC53
FC42
FC39
FC33
3C02-4
10K
45
FC32
1 8
3C22-1
10K
1 2
3
4 5
67
56
S1315
1C30
USB-01-PBT-B-30-CU2-BRF
1 2
3
4
+3V3_SW
1C01
2C01
100n
USB_PWR_P0
RES
2C02
10u
FC44
1%
RES3C32
0R3
3C40
100n
2C23
54
100K
3C37-4
+5V_USB3
23
RES
1u0
2C03
1C46
ACM2012
14
FC21
6.3V100u
2C20
10p
2C14
FC11
3C04-1
1 8
FC43
RES
FC36
RES
0R3
3C31
100K3C38
100n
2C09
+3V3_WOLAN
+3V3_SW
+3V3_WOLAN
1 2
3
4 5 6
7
8
1C31
S1315
100n
2C21
FC46
0R3
+5V_USB2
+5V_USB1
3
2
5
1
3C21
RT9715GGB
7C01
4
+5V_SW
+3V3_SW
RES
3C22-2
10K
27
3 6
FC52
10K
3C12-3
2C18
100u 6.3V
FC37
27
100K
3C37-2
+3V3STBY
3C06
0R3
3C05
100K
100n
2C05
RES
2C19
100n
3
4 56
USB-16-PBT-B-30-CU1-BRF
1 2
+5V_USB3
1C03
1u0
2C06
27
10K
3C12-2
6.3V100u
2C16
FC49
3C02-3
3 6
10K
0R3
3C11
5
2C08
100n
3C22-4
10K
4
1 2
3
4 56
1C02
USB-16-PBT-B-30-CU1-BRF
2C15
100n
FC62
FC61
FC57
FC54
RES3C04-3
3 6
2C04
100n
10K
3C42 RES
RES3C41
10K
FC51
FC58
3 6
3C37-3
100K
100n
2C11
100n
2C10
USB_P3_OC
USB_DM_CAM
USB_DP_CAM
USB_DM_WIFI
USB_DP_WIFI
USB_DP_CAM
USB_DM_CAM
USB_DP_P1
USB_DM_P1
USB_DP_P3
USB_DM_P3
ENABLE_WOWLAN
USB_P1_OC
USB_P2_OC
USB_DM_P1
USB_DM_P2
USB_DP_P1
USB_DP_P2
IRQ_WOWLANn
USB_DM
USB_DP
RESET_USBn
USB_P3_OC
USB_P1_OC
USB_DM_P2
USB_DP_P3
USB_DM_P3
USB_P2_OC
USB_DP_P2
Circuit Diagrams and PWB Layouts
EN 78L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 79

10-5-10 B06A, Analogue I/O - Headphone

19510_509_130411.eps
130411
Analogue I/O - Headphone
B06A B06A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
GND
2
1
SHUTDOWN
BYPASS
2
IN-
VDD
1
VO
RIGHT
HEADPHONE
LEFT
F811
F807 3811
10K
1u0
2808
1
7
3
4
2
6
5
8
7800
TS489IST
AMPLIFIER
Φ
3805
F804
22K
6
1
2813
1n0
PUMD12
7801-1
2
47p
2804
I808
3 6
RES
PESD5V0S1BA
6801
3807-3
33R
2803
47p
1
3
2801
1n0
1401
MSJ-035-12D-B-AG-PBT-BRF
2
I812
I809
7801-2 PUMD12
5
3
4
3807-2
33R
27
2807
100u
4V
33R
1 8
100u
2806
3807-1
4V
F810
+3V3_SW
3812
10K
6800
PESD5V0S1BA
RES
I811
+3V3STBY
I810
F809
2805
1u0
2802
1n0
2810
1u0
3806
22K
F808
33R
45
1n0
2812
3807-4
2809
1u0
3813
10K
3814
HP_LOUT
HP_ROUT
22K
RESET_AUDIO
A_STBY
A_PLOP
HPOUT_L
HPOUT_R
HP_LOUT
HP_ROUTA_PLOP
Circuit Diagrams and PWB Layouts
EN 79L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 80
Circuit Diagrams and PWB Layouts
19510_510_130411.eps
130411
Analogue I/O - Component & Composite
B06B B06B
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
MPXP
AOBCK AOLRCK AOMCLK AOSDATA0 AOSDATA1 AOSDATA2
AL0_ADAC AL1_ADAC AL2_ADAC
AL3_ADAC AR0_ADAC AR1_ADAC AR2_ADAC
AOSDATA3 AOSDATA4 ASPDIF0 ASPDIF1 ALIN
AIN0_L_AADC AIN0_R_AADC AIN1_L_AADC AIN1_R_AADC AIN2_L_AADC AIN2_R_AADC AIN3_L_AADC AIN3_R_AADC AIN4_L_AADC AIN4_R_AADC AIN5_L_AADC
AR3_ADAC
AIN5_R_AADC AIN6_L_AADC AIN6_R_AADC VMID_AADC
VDACY_OUT
VDACX_OUT
PR1P Y0P Y1P COM0 COM1
HSYNC VSYNC BP SOG GP RP COM PB0P PB1P PR0P
SOY0 SOY1
SY0
SC0
CVBS_COM
CVBS0P CVBS1P CVBS2P CVBS3P
YPbPr AUDIO
YPbPr
PC_AUDIO
DEB
RES
CVBS SIDE
MT5396
MT5396
CVBS
56R
3906
10R3961-33 6
5
15p
2925
RES
10R3961-44
3965
20K
5900
1915
60R
RES
2986
1n0
2983
100p
2906
10p
RES
F902
RES
2904
1n0
1927
RES
1n0
2902
2949
1n0
2988
10n
RES
3940 100R
1928
1n0
RES
2989
1R0
3923
3903
56R
F905
6900
PESD5V0S1BA
RES
I910
I952
1925
3951 100R
RES
RES
PESD5V0S1BA
6913
2901
1n0
100p
2982
I950
RES
3922
1R0
18R
3904
F903
I904
2924
47p
1916
4
5
RES
PESD5V0S1BA
6920
MSJ-035-75C-G-RF-PBT-BRF
1VA2
1
2
3
2951 10n
10n2958
10n2954
AM10
AN35 AM32 AM37 AM36
AR16 Y32
AN28
AJ27
AM33 AM35
Y33
AR11 AP11 AM12 AN9 AN10 AN11 AM11
AU36 AR37 AT36 AP32 AR33 AP37 AR36 AP36 AR35
AN34 AM34
AU35 AU37 AT37 AT35 AP34
AUDIO_DAC_ADC
7300-2
1n52945
1905
F931
AP29
AM25
AP27 AU26
AR26 AR28 AP26
82PA52RA
AT24
AR27 AP25 AR29
AU30
AP24
AU28 AT26
AN29 AR31 AR30
AT30
AP30
AR24
AN25
AT28
7300-14
VIDEO_IO
AU24
3925
18R
20K
3966
1921
1R0
3907
1R0
I948
3971
PESD5V0S1BA
1R0
6902
3901
100R3950
30K
3953
F901
PESD5V0S1BA
RES
6914
F930
F927
1n0
2927
RES
100p
2966RES
F921
RES
6919
PESD5V0S1BA
3941
6904
PESD5V0S1BA
100R
100R3944
2907
10p
3973
10u
1R0
2929
2955 10n
56R
3902
2948 10n
3900
1R0
I903
1%
3921
PESD5V0S1BA
6901
75R
RES
5901
60R
RES 2963
100p
1922
2926
10u
I911
RES
2961
1n0
I949
F929
10p
2908
2987
10u
I953
F919
3958
30K
RES
3960
75R
PESD5V0S1BA
6903
100R
3949
30K
3959
I902
10u
2903
RES
PESD5V0S1BA
6915
39361R0
1R03937
1929
30K
3970
3961-2 10R27
RES 2965
100p
3924
1920
1R0
F925
2985
1n0
F924
RES
47n2957
100p
2964
I951
RES
I912
F904
8
1914
MSJ-035-96C-Y-RF-PBT-BRF
1VA4
2
3
4
5
6
7
2946
1u02978
10n
60R
I945
5902
F900
10n2977
3905
18R
RES
10K
3974
I946
2900
10u
3952
30K
100R3939
RES
1n0
2905
1923
MSJ-035-75C-B-RF-PBT-BRF
1
2
3
4
5
2930
1VA3
4n7
100R
3938 100R
3946
810R3961-11
6921
PESD5V0S1BA
RES
3972
30K
F928
1u0
2962
1
2
3
4
5
MSJ-035-75C-BL-RF-PBT-BRF
1A02
2944 1n5
RES
6917
PESD5V0S1BA
10u
2984
4n7
2928
10n2947
CVBS_DETECT
HSYNC
CVBS_GND_1
RP
GP
SY0N
SY0P
SPR0P
SPB0P
VSYNC
AIN0_R
CVBS_GND
CVBS_AV3
SOY0
BP SOG
GN
AOMCLK
PB0P
SOY0
SY0P
SY0N
Y0P
AIN2_L AIN2_R
PR0P
YPBPR_DETECT
HPOUT_L
HPOUT_R
AIN2_L
AIN2_R
AIN0_L AIN0_R AIN1_L AIN1_R
SPDIF_OUT ARC
AOBCK AOLRCK
AOSDATA0
CVBS_AV3
CVBS_GND
SPR0P
SPB0P
AIN0_L
AIN1_L
AIN1_R

10-5-11 B06B, Analogue I/O - Component & Composite

EN 80L12M3.1L LA 10.
2013-Jun-21
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Page 81

10-5-12 B06C, Analogue I/O - VGA

19510_511_130411.eps
130411
Analogue I/O - VGA
B06C B06C
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
H_SYNC
Y_SYNC
2A07
10p
FA14
3A17
RES
PESD5V0S1BA
6A01
RES
2K2
5A06
60R
5p6
2A12
3A10
1R0
5A02
60R
4 5 6 7
8
9
16
17
1
10 11 12 13 14 15
2
3
1A01
MDS-15P-V-11-B-8.2-U4-ZN-PBT-BRF
IA09
IA01
6A07
BAS316
3A16
75R
1A10
1A00
30R
5A05
PESD5V0S1BA
6A02
IA08
RES
FA04
10K
3A21
1A08
FA06
0001
3A23
BAS316
6A08
10K
FA02
FA07
1A09
CDS2C05HDMI2
6A09
RES
3A14
75R
2K2
RES
RES
3A18
RES
2A17
100p
100p
2A16
5A00
60R
3A26
100R
1A07
2A13
6A03
5p6
IA07
RES
PESD5V0S1BA
FA08
100R
3A25
3A24
100R
IA02
IA03
RES
6A10
CDS2C05HDMI2
75R
3A15
10p
2A08
FA03
BAS316
6A06
RES
PESD5V0S1BA
6A00
10K
3A22
7A01
BC847BW
1
3
2
6A04
RES
PESD5V0S1BA
FA13
2A14
2u2
1n0
2A09
10p
2A15
FA05
1A03
6A05
PESD5V0S1BA
RES
30R
5A04
0001
1A20
5A01
60R
3A19
120R
3A27
100R
FA01
IA05
10K
IA04
3A20
VGA_SDA
VGA_SCL
+5V_DC
+5V_DC +5V_DC
+5V_SW
VGA_DETECT
GP
SOG
HSYNC
BP
RP
GN
VSYNC
Circuit Diagrams and PWB Layouts
EN 81L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 82

10-5-13 B07A, Ethernet

19510_512_130411.eps
130411
Ethernet
B07A B07A
2013-01-11
1
3139 123 6544
PCB SB SSB
MT5396 R2 LATAM 2K13
Reserved for debug only
FF09
FF08
6F02
SML-310
RES
5 6 7 8
5450-327-194-H3
1 2
3
4
FF06
1F01
22n
2F24
14
23
1F04
ACM2012
RES
FF11
3F08
330R
14
23
1F03
ACM2012
FF07
RES
330R
3F07
FF12
RES
FF10
SML-310
6F01
PHYLED1
PHYLED0
RXVP_1
RXVN_1
TXVN_0
TXVP_0
Circuit Diagrams and PWB Layouts
EN 82L12M3.1L LA 10.
2013-Jun-21
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Page 83
19510_513_130411.eps
130411
2013-01-11
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SSB Layout top
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7704
7705
7800
7801
7A01
7B00
7B01
7B11
7B21
7B31
7B32
7C01
7C02
7D00
7D02
7D03

10-5-14 Layout top

Circuit Diagrams and PWB Layouts
EN 83L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 84

10-5-15 Layout bottom

19510_514_130411.eps
130411
2013-01-11
1
3139 123 6544
SSB Layout bottom
A204
A205
A209 A210
F101
F102
F103
F106
F107
F108
F113
F114
F115
F118
F119
F120
F121
F122
F123
F126
F127
F128
F129
F130
F131
F132
F133F134
F200
F202
F203
F206
F207
F208
F211
F212
F213
F401
F402
F403
F404
F405
F406
F407
F408
F409
F410
F413
F414
F416
F417
F418
F419
F506
F507
F509
F510
F700
F701
F702
F704
F705
F706
F711
F712
F713
F716
F717
F719
F720
F721
F722
F723
F724
F725
F726
F727
F728
F729
F730
F731
F732
F734
F735
F736
F737
F739
F740
F741
F745
F746
F747
F748
F749 F750 F751
F752
F753
F754
F755
F804
F807
F808
F809
F810 F811
F829
F900
F901
F902
F903
F904
F905
F919
F921
F924
F925
F927
F928
F929
F930
F931
FA01
FA02
FA03
FA04
FA05
FA06
FA07
FA08
FA13FA14
FB01
FB02
FB03 FB04
FB05
FB07
FB08
FB09
FB11 FB12
FB13
FB15
FB16
FB17
FB18
FB19
FB20
FB21
FB22
FB23
FB24
FB25
FB26
FB27FB28
FB29
FC01
FC11
FC21
FC32
FC33
FC36
FC37
FC38
FC39
FC42
FC43
FC44
FC45
FC46
FC48
FC49
FC50
FC51
FC52
FC53
FC54
FC57
FC58FC59
FC60
FC61
FC62
FD01
FD02
FD03
FD04
FD05
FD06
FD07
FD08
FD09
FD10
FD11
FD12
FD13
FD14
FD15
FD16 FD17
FD18
FD19
FD20
FD21
FD22
FD23
FD24
FD25
FD27
FD36FD37
FD38
FD39
FD40
FD41
FD42
FD43
FD44
FD45
FD46
FD47
FD48
FD49
FD50
FD51
FD52
FD53
FD54FD55
FD56
FD57
FD58
FD59
FD61
FD62
FD66
FD67
FD68
FD69
FD70
FD71
FD72
FD73
FD74
FF06FF07FF08
FF09
FF10FF11FF12
I106
I118
I119
I120
I122
I127
I132
I134
I135
I136
I138
I139
I140
I143
I144
I145
I146
I147
I149
I150
I151
I152
I153
I154
I155
I156
I157
I158
I159
I206
I207 I208
I404
I405
I406
I407
I408
I409
I410
I411I412
I413
I414
I415
I420
I421
I422
I423
I424
I425
I501
I502I504
I508
I509
I510
I518
I725
I726
I732
I741
I744
I808
I809
I810
I811
I812
I902
I903
I904
I910
I911
I912
I945
I946
I948
I949
I950
I951
I952
I953
IA01
IA02
IA03
IA04
IA05
IA07
IA08
IA09
IB01
ID02
ID03
ID05
ID07
ID17
Circuit Diagrams and PWB Layouts
EN 84L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 85

10.6 313912365451 SSB

19510_515_130412.eps
130412
DC-DC
B01A B01A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
FB
SS
EN
BOOT
VIA
VIN
SW
COMP
GNDGND_HS
FB
SS
EN
BOOT
VIA
VIN
SW
COMP
GND
GND_HS
COM
OUTIN
SW
BOOT
EN
VIN
GND
GND HS
VCC
FB
FB
SS
EN
BOOT
VIA
VIN
SW
COMP
GNDGND_HS
VIA
VIA
VIA
VIA
31272133
0R
3V3/1V2 CONVERSION
12V/1V1 CONVERSION
0R
SLOT SCREW HOLE 4.02X5.0
No
∗
12V/5V CONVERSION
∗
No
ROUND 4.02mm SCREW HOLE
Yes
Non TM100 Panel
0R
∗
∗
12V/1V5 CONVERSION
Yes
TM100 Panel
12V/3V3 CONVERSION
1X10
REF EMC HOLE
1X09
REF EMC HOLE
I140
100p
2134
16V10u
2102
REF EMC HOLE
5105
33R
1X07
7
8
9
15
16
1%
4K7
3105
11 12 13 14
2
3
4 5 6
SMAW200-H14SF
1M88
RES
1
10
3170
RES
100K
F118
2180
1n0
I132
+3V3_SW
SS2_GND
SS1_GND
3113
12K
F120
F119
RES
2170
22u
+3V3STBY
3114
2K2
F107
1%
+12VS
I136
68R
3127
F127
F108
1R0
3115
RES
1M0
3169
SS3_GND
2133
100p
10u
5100
1X04
REF EMC HOLE
10u
2192
SENSE_1V1_MT5396
3n3
2164
+1V5_SW
SS2_GND
I127
I106
I154
22u
9
83
10
11
2
2104
RT7297AHZSP
7117
Φ
STEP DOWN
1
6
75
4
2117
22u
RES 2128
100p
I138
2183
22u
1%
SS3_GND
2K2
3131
22u
2105
2193
220n
SS3_GND
REF EMC HOLE
1X01
RES 2176
10u
I135
REF EMC HOLE
1X05
3167
22R
RES
3162
RES
1%1K0
100p
2127
3117
I155
8K2
3104
100K
3126
68R
SS3_GND
SS1_GND
RES
2111
10u
3111
15K 1%
6.3V22u
2156
I147
SS1_GND
SS3_GND
SENSE_1V5_DDR
100n
2103
I122
F121
I149
10
11
2
1R0
3109
Φ
STEP DOWN
1
6
7
5
4
9
8
3
SS4_GND
7116 RT7297AHZSP
2169
22u
22u
1R0
3102
33K
3130
2115
I146
15K
3120
10R
3137
RES
2194
RES
3 2
220n
LD1117DT12
7113
1
+12VS
+3V3_SW
RES
2119
470p
22u
2114
SS2_GND
100n
2122
2145
SS2_GND
I150
1n0
RES
2124
10u
2123
10u
RES 2108
10n
F113
RES
SS2_GND
22u
2126
RES 2165
10n
10K
3112
1%
RES 2121
10n
100u 16V
RES 2189
2182
22u
SS2_GND
2
3
7
1
I159
RT8288AZSP
4
5
6
8
9
7110-1
10R
3118
RES
F132
I145
2118
22u
RES
10u
2110
F114
2178
10u
2157
10n
SS3_GND
2116
22u
100p
2132
I120
2113
100n
10u
2191
1%
1K5
3106
100n
2187
+VSND
RES
F133
RES 2188
100n
+5V_SW
3n3
2120
2179
100n
2101
10u
F128
100n
2109
F123
1n0
2136
100K
3116
2166
100n
2112
10u 16V
330K
3121
F102
1n0
2137
RES
2174
100n
+1V1_SW
RES
2167
220n
6.3V
RES
100K
3108
2197
220u
2184
1n0
RES
RES
68R
3128
REF EMC HOLE
1X02
2175
100n
470p
RES
2172
SS1_GND
5103
33R
2155
22u
RES
3123
10u
2177
SS2_GND
33R
5101
3163
I139
2u0
5107
F115
I134
RES
GND_AMBI
22u
2147
3122
18K
1%
22u
2168
F126
F129
100K
3100
I158
I144
RES
F130
2146
10n
5104
3u6
+1V2_SW
100n
2154
2107
3n3
100n
2198
RES
2125
10u 16V
I156
5102
10u
GND
GND_AMBI
F131
I151
2171
RES
22u
31032106
470p
RES
SS4_GND
RES
10R
100n
2143
I152
I143
10u
8
9
1920
2131
15 16 17 18
2
3
4 5
6 7
SMAW200-H18S2
1
10 11
12 13 14
I157
1M89
F101
22R
3133RES
+12V_AMBI
SS1_GND
3146
12K
3107
10n
2185
10u
2196
RES
33R
5106
SS3_GND
39K
3168
F134
F122
F106
SS1_GND
68R
3129
10R
3110
RES
3119
10K
RES
18
232425
26
11 12 13
141516
17
7110-2
RT8288AZSP
10 19 20 21
22
SS1_GND
F103
I118
I153
I119
RES
8
3
10
11
2
22u
2148
7118
Φ
STEP DOWN
1
6
75
4
9
RT7297AHZSP
2100
100n
POWER_OK
PWM-DIMMING
BL_ON_OFF
BACKLIGHT-BOOST-A
STANDBY

10-6-1 B01A, DC-DC

Circuit Diagrams and PWB Layouts
EN 85L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 86

10-6-2 B02A, Tuner & demodulator

19510_516_130412.eps
130412
Tuner & demodulator
B02A B02A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
COM
OUTIN
COM
OUTIN
XTALSEL
XVSS
TAVSS
GND_HS
XVDD
TAVDD
PVDD
OSCMODE
4
3
XTALI
DVDD
CVDD
VSS
5
TSDATA
SDA
VIA
TSCLK TSVALID TSSYNC
0 1 2
RST_X
OSCEN_X
SLVADR0
TESTMODE
TTUSDA
TTUSCL
TIFAGC
GPIO2
6 7
SCL
XTALO
TAINP TAINM
SLVADR1
GPIO0 GPIO1
ADCINP_DEMOD
RF_AGC
DEMOD_RST DEMOD_TSCLK DEMOD_TSVAL DEMOD_TSSYNC DEMOD_TSDATA0 DEMOD_TSDATA1 DEMOD_TSDATA2 DEMOD_TSDATA3 DEMOD_TSDATA4 DEMOD_TSDATA5 DEMOD_TSDATA6 DEMOD_TSDATA7
CI_TSCLK CI_TSVAL CI_TSSYNC CI_TSDATA0
IF_AGC
PVR_TSCLK
PVR_TSVAL
PVR_TSSYNC PVR_TSDATA0 PVR_TSDATA1
SPI_CLK
SPI_CLK1
SPI_CLE
SPI_DATA
CI_INT
ADCINN_DEMOD
0R
MT5396
RES 1K0
RES
3207
10u
2226
F207
100n
2218
A205
6.3V
F206
2230
22u
3201
47R
3K3
3205
47R
3226
2209 100n
RES
5204 1K0
2227
100n
1u0
2240
A204
5202 1K0
1K05201
3200
1K0
RES
4203
22u
2223RES
2214 100n
F208
10n2233
47R
3202
3208
1
3
2 4
7220
LD1117S25
F202
1K0
100n
2215
RES3203
F203
100R
3224
1K05203
2220 1u0
100n2248
RES
F211
100n2213
3211-2 22R
27
F213
+2V5_SW
+5V_SW
47p
2244
F212
1u0
2219
P33 P34
R33
R32
U34
N35
P35
N37
N34
T33 T30 V33 V32 V31 V30
T35
T31
U35
R34
AT32
AU32
N36
T37
R35
R37
R36
T34 T32
T36 U36
DEMOD_IF
7300-7
16V10u
2225
I206
8p0
+1V2_SW
2200
I207
31
43
35
34
42
33
36
53 54 55 56 57 58
6
111823
27
66 67 68
51
69 70 71 72 73 74
5246
45
50
59 60 61 62 63 64 65
8
9 12 13 14 15 16 17
3
4
25 41
37
38
40
39
24
48
5
19
49
1 47 2
26
30
32
29
20 21
7210
CXD2828ER
102228447
LD1117S33
1
3
2 4
7216
3210 33R
3223
10K
4201 RES
2217
47u
2211 100n
+3V3_SW
47R
3231
1u0
100n2208
2239
3232 47R
2246
47n
+3V3_TUN
22R
3211-33 6
15R3217
A210
2207 100n
47p2235
RES
RES
2236 47p
3218 15R
22K
3230
100n
2231
100n
2228
RES
2247RES
10n2234
10p
3206
10K
3212
1%
2K2
3228
22K
I208
3204
3K3
2249
330u 6.3V
RES
+3V3_SW
2232
10u
RES
100n2210
+5V_SW
+3V3_SW
3227
47R
+2V5_SW
22p2221
3214 4K7
RES 4202
2201
8p0
+3V3_TUN
A209
2245
47p
4K7
3209
+3V3_SW
3213
100n2216
2K2
1%
4K73229
8
IF2_N
IF2_P
7
12
13 14
15
16
SUT-RA214TN
1
A3.3V
AGC1
4
AGC2
9
10
I2C_SCL
11
I2C_SDA
IF1_N
3
IF1_P
2
TUNER
1201
2205
82p
2222 22p
1 3
1205
41M
2
4
100n
F200
2206
8
2224
100n
22R
1
3211-1
+3V3_SW
82p
2204
5200
4u7
+3V3_SW
RES 2229
22u
3225 100R
150R
3222
IF2_N IF2_P
TUNER_SDA
TUNER_SCL
IF_AGC2
IF1_P
IF1_N
DEMOD_SCL
DEMOD_SDA
IF_AGC2
IF_AGC1
IF1_P
IF2_P
IF1_N
IF2_N
DEMOD_RST
DEMOD_RST
TUNER_SDA
TUNER_SCL
DEMOD_TSDATA7
DEMOD_TSDATA7
IF_AGC1
DEMOD_TSCLK
DEMOD_TSSYNC
DEMOD_TSVAL
DEMOD_TSCLK
DEMOD_TSSYNC
DEMOD_TSVAL
Circuit Diagrams and PWB Layouts
EN 86L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 87

10-6-3 B03A, Class-D & muting

19510_517_130412.eps
130412
Class-D & muting
B03A B03A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
SCL
PLL_FLT
VIA
PVDD_AB
PVDD_CD
PGND_AB
PGND_CD
NC
VIA
DVDD
AVDD
OUT_A
BST_A BST_B
OUT_B
OUT_C
BST_C BST_D
OUT_D
OSC_RES
GVDD_OUT
AGND
AVSS
DVSS
DVSSO
GND
GND_HS
A_SEL
RESET
PDN
P M
PBTL
SSTIMER
STEST
VR_ANA
VR_DIG
VREG
LRCLK
SCLK
MCLK
SDIN
SDA
*
*
Right+
Left+
*
*
*
*
*
*
Left-
*
*
Right-
33n
2408
100n
2427
5
3
4
PUMH2
7401-2
3400
47K
18R
3418
1K0
3426
1
2
3
4
F410
2041145-4
1D01
220n
2413
2462 33n
10u
2433
F404
RES
RES2434
10u
100n
2424
3419 15K
RES
10u
5400
10u
I412
5402
2463 10u
RES
10u
2465
F409
+3V3D
I420
330p
I421
2412
2401
47n
F403
5404
100n
2417
30R
RES2439
10u
F408
3405
470R
10u
2432
10u
2405
RES
100n2428
3404
15K
2n2
2404
33n
2409
F419
I411
2422
3411
1R0
220n
1R0
3412
+3V3D
2407
100n
2437
220n
2466
10u
2442
RES
220n
330p
2420
RES
10u
2438
I414
1403
47n
2402
PDZ2.7B(COL)
6400
I424
I406
2471
1n0
30R
5415
GND_PLL
+3V3D
10K
3427
3402 47R
F402
3401
10K
47R3403
30R
3407
5408
18K2
I407
30R
5405
+12VS
2443
220n
100n
2406
2416
10n
220n
2436
10u
2435
470R
3406
RES
3410
I409
18R
GND_PLL
330p
2419
+3V3_AUDIO
30R
5416
2411 1u0
3408
18R
25V100u
2475
2474
100u 25V
+3V3STBY
I413
10n
+3V3_SW
2425
1405
I422
2441
10u
I404
4401
RES
F417
RES
10u
2440
F416
1402
+3V3D
F401
5403
I415
2410
10u
33n
F407
4n7
2403
F418
1404
2
6
1
+3V3D
PUMH2
7401-1
5406
30R
I408
+VSND
30R
5414
I410
2477
100u 25V
2476
25V100u
2400 4n7
3
1
2
F405
7402 SI2304
10u
5401
I405
I423
+3V3_AUDIO
2429 100n
3409
18R
3420 22KRES
52 53 54 55 56 57 58
31
12
18
60 61 62 63 64 65 66 67 68
51
69
34
35
25
24
21
23
22
6
26
50
59
19
474837
38
10
11
2
3
7 40 41 44 45
16
1
46
39
36
8
33
27
281729
49
32
20
15
5
30
13
9
14
4 43
42
7400
TAS5731PHP
2418
100n
RES
+3V3D
5417
30R
RES
2421
330p
2464 1u0
SPEAKER_R-
SPEAKER_L-
SPEAKER_R-
AOLRCK
AOBCK
AOMCLK
AOSDATA0
D_RESET
MUTE
SPEAKER_R+
SPEAKER_L-
SPEAKER_L+
D_RESET
A_STBY
SPEAKER_L+
SPEAKER_R+
SDA SCL
POWER_DOWN
Circuit Diagrams and PWB Layouts
EN 87L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 88

10-6-4 B04A, MTK5396 power

19510_518_130412.eps
130412
MTK5396 power
B04A B04A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
DDRV_42 DDRV_43 DDRV_44 DDRV_45 DDRV_46 DDRV_47 DDRV_48 DDRV_49
DDRV_26 DDRV_27 DDRV_28 DDRV_29 DDRV_30 DDRV_31 DDRV_32 DDRV_33 DDRV_34 DDRV_35 DDRV_36
DDRV_13 DDRV_14 DDRV_15 DDRV_16 DDRV_17 DDRV_18 DDRV_19 DDRV_20 DDRV_21 DDRV_22 DDRV_23 DDRV_24 DDRV_25
DDRV_1 DDRV_2 DDRV_3 DDRV_4 DDRV_5 DDRV_6 DDRV_7 DDRV_8 DDRV_9 DDRV_10 DDRV_11 DDRV_12 DDRV_37
DDRV_38 DDRV_39 DDRV_40 DDRV_41
TCON12
OPCTRL6 OPCTRL7 OPCTRL8 OPCTRL9 OPCTRL10
OPTCTRL_TCON
TCON3 TCON4 TCON5 TCON6 TCON7 TCON8
TCON9 TCON10 TCON11
TCON0
TCON1
TCON2
OPCTRL11
OPWRSB
HDMI_CEC HDMI_0_SDA HDMI_0_SCL HDMI_0_HPD
HDMI_0_PWR5V
HDMI_1_SDA HDMI_1_SCL HDMI_1_HPD
HDMI_1_PWR5V
HDMI_2_SDA HDMI_2_SCL HDMI_2_HPD
HDMI_2_PWR5V
HDMI_3_SDA HDMI_3_SCL HDMI_3_HPD
HDMI_3_PWR5V
VGA_SDA VGA_SCL
STB_SDA STB_SCL
LED_PWM0 LED_PWM1
OPCTRL0 OPCTRL1 OPCTRL2 OPCTRL3 OPCTRL4 OPCTRL5
AVDD33_CVBS_1 AVDD33_CVBS_2
AVDD33_LVDSB
VCC3IO_A_1 VCC3IO_A_2 VCC3IO_A_3 VCC3IO_A_4 VCC3IO_A_5 VCC3IO_A_6 VCC3IO_A_7
AVDD10_LDO
AVDD12_PCIE11 AVDD12_HDMI_0_RX AVDD12_HDMI_1_RX AVDD12_HDMI_2_RX AVDD12_HDMI_3_RX AVDD12_RGB AVDD12_DEMOD
AVSS33_VGA_STB AVSS33_VDAC_BG
AVSS33_VDAC
AVSS33_PLLGP AVSS33_CVBS_1 AVSS33_CVBS_2
AVSS33_DEMOD
AVSS33_XTAL_STB
AVDD12_REC AVDD12_LVDS_1
AVDD33_HDMI_2_RX AVDD33_HDMI_3_RX AVDD33_VGA_STB AVDD33_VDAC_BG AVDD33
_VDAC
AVDD33_PLLGP
AVSS12_RGB
AVSS12_DEMOD
AVSS12_REC
VCC3IO_A_8 VCC3IO_B_1 VCC3IO_B_2 VCC3IO_B_3 VCC3IO_B_4
AVDD12_LVDS_2 AVDD12_VPLL
AVDD33_MEMPLL AVDD33_PCIE11 AVDD33_USB_P0P1 AVDD33_USB_P2P3 AVDD33_HDMI_0_RX AVDD33_HDMI_1_RX
AVSS12_LVDS_1 AVSS12_LVDS_2
AVSS12_VPLL
AVSS33_MEMPLL
AVSS33_USB_P1 AVSS33_USB_P2
AVSS33_HDMI_RX_1 AVSS33_HDMI_RX_2
AVDD33_DEMOD AVDD33_XTAL_STB AVDD33_AADC AVDD
33_DAC AVDD33_DAC1 AVDD33_LD AVDD33_COM AVDD33_LVDSA
AVSS33_HDMI_RX_3 AVSS33_HDMI_RX_4
AVSS33_AADC
AVSS33_DAC
AVSS33_DAC1
AVSS33_LD
AVSS33_COM
AVSS33_LVDSA
AVSS33_LVDSB
AVSS12_PCIE11
DVSS_140
DVSS_4 DVSS_5
DVSS_45 DVSS_46 DVSS_47 DVSS_48 DVSS_49 DVSS_50 DVSS_51 DVSS_52 DVSS_53 DVSS_54 DVSS_55 DVSS_56 DVSS_57 DVSS_58 DVSS_59
DVSS_13 DVSS_14 DVSS_15 DVSS_16 DVSS_17 DVSS_18 DVSS_19 DVSS_20 DVSS_21 DVSS_22 DVSS_23 DVSS_24 DVSS_25
DVSS
_11
DVSS_12
DVSS_111 DVSS_112 DVSS_113 DVSS_114 DVSS_115 DVSS_116 DVSS_117 DVSS_118
DVSS_71 DVSS_72 DVSS_73 DVSS_74 DVSS_75 DVSS_76 DVSS_77
DVSS_26 DVSS_27 DVSS_28 DVSS_29 DVSS_30 DVSS_31 DVSS_32 DVSS_33 DVSS_34 DVSS_35 DVSS_36 DVSS
_37
DVSS_1 DVSS_2 DVSS_3
DVSS_43 DVSS_44
DVSS_132 DVSS_133 DVSS_134 DVSS_135 DVSS_136 DVSS_137 DVSS_138 DVSS_139
DVSS_87 DVSS_88 DVSS_89 DVSS_90 DVSS_91 DVSS_92 DVSS_93
DVSS_60 DVSS_61 DVSS_62 DVSS_63 DVSS_64 DVSS_65 DVSS_66 DVSS_67 DVSS_68 DVSS_69
DVSS_6 DVSS_7 DVSS_8 DVSS_9 DVSS_10
DVSS_107 DVSS_108 DVSS_109 DVSS_110
DVSS_119 DVSS_120 DVSS_121 DVSS_122 DVSS_123 DVSS_124 DVSS_125 DVSS_126 DVSS_127 DVSS_128 DVSS_129 DVSS_130 DVSS_131
DVSS_78 DVSS_79 DVSS_8
0 DVSS_81 DVSS_82 DVSS_83 DVSS_84 DVSS_85 DVSS_86
DVSS_70
DVSS_38 DVSS_39 DVSS_40 DVSS_41 DVSS_42
DVSS_94 DVSS_95 DVSS_96 DVSS_97 DVSS_98 DVSS_99
DVSS_100 DVSS_101 DVSS_102 DVSS_103 DVSS_104 DVSS_105 DVSS_106
VCCK_24 VCCK_48
VCCK_40 VCCK_41
VCCK_42 VCCK_19 VCCK_20 VCCK_21 VCCK_22 VCCK_23
VCCK_1 VCCK_2 VCCK_3 VCCK_4
VCCK_43
VCCK_6 VCCK_7 VCCK_8 VCCK_9 VCCK_10 VCCK_11 VCCK_12 VCCK_13 VCCK_14 VCCK_15 VCCK_16 VCCK_17 VCCK_18
VCCK_44
VCCK_45
VCCK_46
VCCK_47
VCCK_25
VCCK_39
VCCK_26
VCCK_27
VCCK_28
VCCK_29
VCCK_30
VCCK_31
VCCK_32
VCCK_33
VCCK_34
VCCK_35
VCCK_36
VCCK_37
VCCK_38
VCCK_5
0
ICE MODE+54M+Serial Boot
ASPIF(0)
MT5396
1
1
0
OPCTRL5(0)
0
01ROM Boot+54M
0
tooB laireS
+M7
2+EDOM ECI0
0
MT5396
MT5396
ROM Boot+27M
1
MT5396
MT5396
OPCTRL4(0)
0
STRAPPING
10K
RES
3542
25A8
220n
+1V5_SW
550330R
10K
3535
2
6
1
RES
BC847BS(COL)
7501-1
25AG 2u2
100R3520
1K0
3504
F24 G20 G23 G24
C3 C4 D4 D5 E5
A25 B25 C25
B4
D25 E20 E23 E24
F20
F23
U5 U6 V5
B3
V6 AC1 AC2 AC3 AC4 AC5 AC6
H7 H8 H10
A4
H13 J8 J10 N7 P7 T5
T6
A3
E6 F6 F7 G6 G7 G15 G18
DDR_POWER
7300-6
2504 2u2
F507
+3V3_SW
+3V3STBY
2u225AD
25AE 2u2
+1V1_SW
3541 100R
BC847BW
1
3
2
RES
3507
10K
7500
25AB
22u
6501
SENSE_1V1_MT5396
BZX384-C8V2
2u225AF
25AC
330u 6.3V
3505
1K0
F506
I508
45
I518
1K0
3530-4
+3V3STBY
2537
2538 100n
100n
1u0
2558
B27 A27 B28 A28 C28 D28
AP22
AR22
AM20
AT21
AR21
F27 E27
E28 F28 B29
F30 F29
AN20
AT20 AU20
AM19 AN21 AR19 AP19 AN19 AM18 AP20 AN18
AC31
AC33
AB33
AJ32
AH31
AH32
AH33
AA32
AP21 AN22
AR20
7300-12
AG32
AG31
AG33
AF33
AE32
AE31
AE33
AD33
AC32
+3V3_SW
100n2557
3 6
1 8
1K0
3530-3
1K0
3530-1
RES 10K
100R
3544 3546
AK10 AK11 AL9
RES
AK17
AH26
E34 F33 G31 G32 H29 H30 J29 J30 AK9
AF31 AF32
AL16
AH5 AE5
N15
AM27
D34
AR13
AL24
AJ22
AF5
AJ28
AL15
AL25
AM26
AK30 AE30
AM28
AB30
AD30
AP13
AD21
AD20
AK18
AK27
AJ26
AG5 AJ5
W30
AL14
AJ21
AB29 AA29 Y29 AC29
AD17
AH7 AE6
N14 V24
AK23
D35
AD14
AD19
AF6
AL31
AD16
AK24 AK25
AG30 AF30
AD22
7300-1
AJ20
AL27
AA24 Y24 W24 AB24
AG6 AJ6
U24
AC_POWER
5500
30R
10K3508
F510
2503 2u2
2544
4u7
100n2566
10n
2565
4K7
3510
OPWR0_5V
4K7
3514
2564 100n
10K
3526
10u
2543
+3V3_SW
2570 100n
100n2569
I502
10u
25A9
4K7
3506
3512 4K7
3509
4K7
+12VS
+3V3STBY
2536 100n
+3V3_SW
30R
100n2552
5505
3513
1K0
BZX384-C3V3
6500
+3V3STBY
RES
2u22502
7503
BC847BW
1
3
2
1K0
3530-2
27
100n2559
7504
1
3
2
I501
BC847BW
3543 100RRES
3523 100R
1K0
3511
2562 100n
I504
3534
10K
2542
30R
5506
1u0
I510
100n2505
353610K
3519 100R
AB18 AB19
A26 B26 C26 D26
10u2571
AA16 AA17 AA18 AA19
AB5
E9
AB6 AB15 AB16 AB17
Y7
Y8 Y15 Y16 Y17
E8
Y18 Y19 AA5 AA7
AA15
W7 W8 W15 W16 W17
E7
W18
W19
Y4
Y5
Y6
U18 U19 V15 V16
D18
V17 V18 V19 W5 W6
T8 T15 T16 T17
D12
T18 T19 U7 U15 U16 U17
R4 R5 R6 R7
D11
R15 R16 R17 R18 R19 T7
J11 J12 K7
C18
L7 L8 M7 R1 R2 R3
F19 G14 G16
B18
G17 G19 H11 H19 J4 J5 J6
Y22
AA20 AA21 AA22 AB20 AB21 AB22
F8
AB23
F9 F12
U23 V20 V21 V22
W20 W21
F5
W22
Y20 Y21
R21 R22 R23 T20 T21 T22
E19
T23 U20 U21 U22
F22 F25 G22 G25 H22 J22
E12
N22 P21 P22 R20
7300-4
CORE_VSS
A18
E11
E21 E22 E25 F21
7501-2
BC847BS(COL)
5
3
4
3503
15K
I509
AD24
P18 P19 R14 T14 U14
+1V2_SW
W23
P17
Y23
AA23 AC20 AC21 AC22 AC23 AC24 AD23
AR8
P16
AT7 AT8 AU7 AU8 P20 P23 R24
T24
V23
P15
AC19 AD18 AM7 AM8 AN7
AN8 AP7 AP8 AR7
P14
V14 W14 Y14 AA14 AB14 AC14 AC15 AC16 AC17 AC18
CORE_VCC
7300-3
22u
25AA
OPWR3_5V
RES
F509
2501 22u
2563
47u 6.3V
3524 100R
2551 100n
+3V3STBY
2561
10u
OPWR2_5V
3521 100R
2568
10u
47R
3500
25AJ 2u2
2u225AH
3502
3K3
2u225AK
ENABLE_WOWLAN
IRQ_WOWLANn
RESET_AUDIO
POWER_OK
IRQ_CRP
STANDBY
MUTE
VGA_SDA
POWER_DOWN
LED2
HDMI_2_SCL
HDMI_2_SDA
HDMI_3_HPD
HDMI_3_SCL
HDMI_3_SDA
HDMI_CEC
VGA_SCL
HDMI_0_HPD
HDMI_0_SCL
HDMI_0_SDA
HDMI_2_HPD
POWER_DOWN
Circuit Diagrams and PWB Layouts
EN 88L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 89

10-6-5 B04B, DDR3

19510_519_130412.eps
130412
DDR3
B04B B04B
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
8
9 10 11 12
ODT
RAS
VREFDQ VREFCA
ZQ
BA0 BA1 BA2
DQU
0 1 2
3
4 5 6 7
DQL
A
CAS
DQSU
DQSL DQSL
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4 5 6 7
DQSU
8
9 10 11 12
ODT
RAS
VREFDQ VREFCA
ZQ
BA0 BA1 BA2
DQU
0 1 2
3
4 5 6 7
DQL
A
CAS
DQSU
DQSL DQSL
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4 5 6 7
DQSU
CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4
CAS
A
6
DQSU
DQU
0 1 2
3
4 5 6 7
DQL
DQSL
RAS
DQSL
ODT
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK
5
7
BA1
8
9 10 11 12 13
BA2
VREFDQ VREFCA
ZQ
BA0
DQSU
CK CKE
7
BC AP
VSS
VSSQ
VDD VDDQ
0 1 2
3
4
CAS
A
6
DQSU
DQU
0 1 2
3
4 5 6 7
DQL
DQSL
RAS
DQSL
ODT
2
1
0
DMU
DML
RESET
WE
CS
6
5
NC
4
3
CK
5
7
BA1
8
9 10 11 12 13
BA2
VREFDQ VREFCA
ZQ
BA0
DQSU
RVREF_D
BRA8
BRA9 BRA10 BRA11
BRODT
BRRESET
RVREF_A RVREF_B
BRDQS3
ARA1 ARA2 ARA3 ARA4 ARA5
ARA11 ARA12 ARA13 ARA14
ARBA0 ARBA1 ARBA2
ARCAS ARRAS
ARCLK1 ARCLK1
ARDQ0 ARDQ1 ARDQ2
ARCKE ARWE ARCS ARCSX
ARCLK0
ARDQ8 ARDQ9 ARDQ10 ARDQ11 ARDQ12 ARDQ13 ARDQ14 ARDQ15 ARDQ16 ARDQ17 ARDQ18 ARDQ19 ARDQ20 ARDQ21 ARDQ22 ARDQ23 ARDQ24 ARDQ25 ARDQ26 ARDQ27 ARDQ28
ARA0
BRDQ6 BRDQ7 BRDQ8 BRDQ9
BRDQ10
ARA6 ARA7 ARA8 ARA9 ARA10
BRA4
BRA5
BRA6
BRA7
ARDQ29 ARDQ30 ARDQ31
ARDQM0 ARDQM1 ARDQM2 ARDQM3
ARDQS0 ARDQS0
ARDQS1 ARDQS1
ARDQS2 ARDQS2
ARDQS3 ARDQS3
ARODT ARRESET
ARCLK0
BRDQS1 BRDQS1
BRDQS2 BRDQS2
BRDQS3
ARDQ3 ARDQ4 ARDQ5 ARDQ6 ARDQ7
BRA12 BRA13 BRA14
BRBA0 BRBA1 BRBA2
BRCAS BRRAS BRCKE
BRWE
BRCS
BRCSX
BRCLK0 BRCLK0 BRCLK1 BRCLK1
BRDQ0 BRDQ1 BRDQ2 BRDQ3 BRDQ4 BRDQ5
RVREF_C
BRDQ12 BRDQ13 BRDQ14 BRDQ15
BRDQ11
BRA0
BRA1
BRA2
BRA3
BRDQ16 BRDQ17 BRDQ18 BRDQ19 BRDQ20 BRDQ21 BRDQ22 BRDQ23 BRDQ24 BRDQ25 BRDQ26 BRDQ27 BRDQ28 BRDQ29 BRDQ
30
BRDQ31
BRDQM0 BRDQM1 BRDQM2 BRDQM3
BRDQS0 BRDQS0
Near DRAM
DDR3#1
Near DRAM
Near DRAM
DDR#1 Bypass Cap
DDR3#2
MT5396 DE-CAP
DDR#2 Bypass Cap
DDR#3 Bypass Cap
Near DRAM
EMC
EMC
EMC
EMC
EMC
Main Chip Bottom Side
DDR3#3
EMC
EMC
EMC
EMC
EMC
DDR#4 Bypass Cap
DDR3#4
2652
100n
100n
2651
3696
240R
3688
240R
100n
2675
1609
HOOK1
1605
HOOK1
100n
2656
2655
100n
RES
+1V5_SW
2677
100n
1%
3614
1K0
2640
100n
100n
2639
100n
2673
RES
2672
100n
HOOK1
1601
L3
L8
2614
100n
M9
P1
B1
B9
D1
D8
E2
E8
F9
G1
G9
P9
T1
T9
B3
E1
G8
J2
J8
M1
A8C1C9D2E9F1H2
H9
M8
H1
A9
B2D9G7K2K8N1N9R1R9
A1
A3
J1 J9 L1 L9 T7
M7
T3
K1
J3
T2
F3
G3
C7 B7
D7 C3 C8 C2 A7 A2 B8
E7 D3
E3
F7 F2
F8 H3 H8 G2 H7
R2 T8 R3
M2 N8 M3
K3 J7
K9
K7
L2
N3 P7
L7 R7 N7
P3 N2 P8 P2 R8
H5TQ1G63DFR-H9C
7603
100n
2676
100n
2681
100n
2638
HOOK1
1606
HOOK1
1604
RES
2660
100n
RES
100n
2659
100n
2658
2657
100n
1%
3613
1K0
2642
100n
100n
2641
1K0
3623
1%
1K0
3624
1%
100n
2611
2682
10u
100R
3650
10u
2646
+1V5_SW
+1V5_SW
2615
1608
100n
+1V5_SW
HOOK1
2635
47u 6.3V
RES
1u02684
4u7
2683
2678
100n
2645
100n
2644
100n
100n
2643
240R
3667
+1V5_SW
100n
2674
+1V5_SW
2612
100n
3666
100R
2613
100n
G9
L3
L8
M9
P1
B1
B9
D1
D8
E2
E8
F9
G1
A9
P9
T1
T9
B3
E1
G8
J2
J8
M1
A8C1C9D2E9F1H2
H9
M8
H1
T2
B2D9G7K2K8N1N9R1R9
A1
B8 A3
J1
J9 L1 L9 T7
M7
T3
K1
J3
F3 G3
C7 B7
D7 C3 C8 C2 A7 A2
L2
E7 D3
E3 F7 F2 F8 H3 H8 G2 H7
R8 R2 T8 R3
M2 N8 M3
K3 J7
K9
K7
N3 P7
L7 R7 N7
P3 N2 P8 P2
7604
H5TQ1G63DFR-H9C
100n
2680
2666
100n
+1V5_SW
SENSE_1V5_DDR
G9
L3
L8
M1
M9
P1
B1
B9
D1
D8
E2
E8
F9
G1
A9
P9
T1
T9
B3
E1
G8
J2
J8
A1A8C1C9D2E9F1H2H9
M8
H1
T2
B2D9G7K2K8N1N9R1R9
A2 B8 A3
J1 J9 L1 L9 T7
M7
K1
J3
G2 H7
F3
G3
C7 B7
D7 C3 C8 C2 A7
K9
K7
L2
E7 D3
E3
F7 F2
F8 H3 H8
P2 R8 R2 T8 R3
M2 N8 M3
K3 J7
N3 P7
L7 R7 N7 T3
P3 N2 P8
H5TQ2G63DFR-H9CR
7601
1K0
3635
1K0
3634
1%
1%
100n
F9
G1
G9
L3
L8
2654
J2
J8
M1
M9
P1
B1
B9
D1
D8
E2
E8
M8
H1
A9
P9
T1
T9
B3
E1
G8
R1R9A1A8C1C9D2E9F1H2H9
M7
K1
J3
T2
B2D9G7K2K8N1N9
C2 A7 A2 B8 A3
J1 J9 L1 L9 T7
H3 H8
G2
H7
F3
G3
C7 B7
D7 C3 C8
J7
K9
K7
L2
E7 D3
E3 F7 F2 F8
N2 P8 P2 R8 R2 T8 R3
M2 N8 M3
K3
N3 P7
L7 R7 N7 T3
P3
7602
H5TQ2G63DFR-H9CR
+1V5_SW
240R
3608
100n
1%
3627
1K0
2650
2653
100n
4u7
2661
+1V5_SW
1u02662
6.3V
RES
2671
100u
2669
100n
100R
3656
+1V5_SW
100n
2667
100n
2686
10u
2616
2679
100n
2668
100n
1%
3628
1K0
+1V5_SW
100n
2690
2617
100n
+1V5_SW
2693
10u
1602
HOOK1
1603
HOOK1
100n
2687
100n
2602
2685
100n
2689
100n
2601
100n
2618
100n
100n
+1V5_SW
M2
L4
G21 G13 P13
V7
2649
U1
E4 E3
F1 F2
V2 V1
W3 W4
H6
H4
U2
C2
K1 A2 K2 J3 B1
G2 D1
Y1
AB1
P1 AB2 AA3
U4
AA4
T3
Y3
U3
J2
Y2
G3 C1 G4 D2
T4 AB4
P2 AB3
B2
P3
P6
F4
F3
V4
V3
G5
K3
A1
J1
H3 D3
N6
K5
N4
L3
L6
M3
N1
P5
K4
H5
B14
D14
K6
N3
P4
M5 N5 M4
L5
M1 N2
E10
C21 B21
B20 C20
B9 A9
C8 D8
E18
F17
B10
D24 C16 C24 D15 A17 A23
C19 D21 A7
A5 A12 B5 C6 D10 D7 C11 C7 C10
C17
B7
B23 D20 D22 D19 C22 C12 D6 B12 C5
D23
C13
F10
A20 A21 D9 C9
F18
E16
C23 B17
D17
B13 E13 F16 E14 B15 D13 E15
A13 G11 D16
E17
F15 F14
F11 C14 F13 A15 C15
A14
7300-5
MT5396JDNJ
DDR3
2696
100n
4u7
2694
1u02695
2647
330u 6.3V
2697
100n
100n
2691
100n
2664
2663
100n
100n
2698
100n
2699
100n
2665
2608
100n
3695
100R
100n
2692
2688
BRA(13)
100n
BRDQ(28)
BRDQ(29)
BRDQ(30)
BRDQ(31)
BRDQ(4)
BRDQ(6)
BRDQ(9)
BRDQ(3)
BRDQ(5)
BRDQ(7) BRDQ(8)
BRDQ(0)
BRDQ(13)
BRDQ(15)
BRDQ(2)
BRDQ(24) BRDQ(25)
BRDQ(26)
BRDQ(12)
BRDQ(14)
BRDQ(16) BRDQ(17) BRDQ(18) BRDQ(19) BRDQ(20) BRDQ(21) BRDQ(22) BRDQ(23)
BRDQ(27)
BRDQ(1)
BRDQ(10) BRDQ(11)
B_RVREF8
BRA(14)
BRA(14)
BRDQS3n
BRDQS3
BRDQS1n
BRDQS1
BRDQ(21) BRDQ(22) BRDQ(23)
BRDQ(24) BRDQ(25) BRDQ(26) BRDQ(27) BRDQ(28) BRDQ(29) BRDQ(30) BRDQ(31)
BRDQS2
BRDQS2n
BRDQM2 BRDQM3
BRCLK1
BRCLK1n
BRCKE BRCSn
BRA(11)
BRBA(0) BRBA(1) BRBA(2)
BRRASn BRODT BRCASn
BRWEn BRRESET
BRDQ(16) BRDQ(17) BRDQ(18) BRDQ(19) BRDQ(20)
BRA(2) BRA(3)
BRA(10)
BRA(12)
BRA(4)
BRA(7)
BRA(9)
BRA(5) BRA(6)
BRA(8)
BRDQ(0) BRDQ(1) BRDQ(2) BRDQ(3) BRDQ(4) BRDQ(5) BRDQ(6) BRDQ(7)
BRDQ(8)
BRDQ(9) BRDQ(10) BRDQ(11) BRDQ(12) BRDQ(13) BRDQ(14) BRDQ(15)
BRDQ
S0
BRDQS0n
BRDQM0 BRDQM1
BRCLK0
BRCLK0n
BRCKE BRCSn
BRA(0) BRA(1)
BRA(7)
BRA(13)
BRA(9)
BRA(5) BRA(6)
BRA(8)
BRA(11)
BRBA(0) BRBA(1) BRBA(2)
BRRASn BRODT BRCASn
BRWEn BRRESET
B_RVREF8
ARDQS1n
ARDQS1
ARDQS3n
ARDQS3
BRA(0) BRA(1) BRA(2) BRA(3)
BRA(10)
BRA(12)
BRA(4)
BRDQS1
BRDQS1n
BRDQS2
BRDQS2n
BRDQS3
BRDQS3n
BRODT
BRRASn
BRRESET
BRWEn
A_RVREF1
BRCLK0
BRCLK0n
BRCLK1
BRCLK1n
BRCSn
BRDQM0 BRDQM1 BRDQM2 BRDQM3
BRDQS0
BRDQS0n
BRA(5) BRA(6) BRA(7) BRA(8) BRA(9)
BRBA(0) BRBA(1) BRBA(2)
BRCASn
BRCKE
ARWEn
BRA(0) BRA(1)
BRA(10) BRA(11) BRA(12) BRA(13) BRA(14)
BRA(2) BRA(3) BRA(4)
ARDQS0 ARDQS0n
ARDQS1 ARDQS1n
ARDQS2 ARDQS2n
ARDQS3 ARDQS3n
ARODT
ARRASn
ARRESET
ARDQ(4) ARDQ(5) ARDQ(2) ARDQ(7) ARDQ(8) ARDQ(13)
ARDQM0 ARDQM1 ARDQM2 ARDQM3
ARDQ(22) ARDQ(21) ARDQ(26) ARDQ(25) ARDQ(24) ARDQ(27) ARDQ(28) ARDQ(29)
ARDQ(3)
ARDQ(30) ARDQ(31)
ARDQ(12) ARDQ(11) ARDQ(14) ARDQ(9) ARDQ(16) ARDQ(17) ARDQ(18) ARDQ(19)
ARDQ(6)
ARDQ(20) ARDQ(23)
ARCKE
ARCLK0 ARCLK0n ARCLK1 ARCLK1n
ARCSn
ARDQ(0) ARDQ(1)
ARDQ(10) ARDQ(15)
ARA(3) ARA(4) ARA(5) ARA(6) ARA(7) ARA(8) ARA(9)
ARBA(0) ARBA(1) ARBA(2)
ARCASn
ARA(0) ARA(1)
ARA(10) ARA(11) ARA(12) ARA(13) ARA(14)
ARA(2)
ARDQ(28) ARDQ(29) ARDQ(30) ARDQ(31)
ARDQS2
ARDQS2n
ARDQM2 ARDQM3
ARCLK1
ARCLK1n
ARCKE ARCSn
ARA(14)
ARBA(2)
ARRASn ARODT ARCASn
ARWEn ARRESET
ARDQ(16) ARDQ(17) ARDQ(18) ARDQ(19) ARDQ(20) ARDQ(21) ARDQ(22) ARDQ(23)
ARDQ(24) ARDQ(25) ARDQ(26) ARDQ(27)
ARA(12)
ARA(4)
ARA(7)
ARA(13)
ARA(9)
ARA(5) ARA(6)
ARA(8)
ARA(11)
ARBA(0) ARBA(1)
ARDQ(9) ARDQ(10) ARDQ(11) ARDQ(12) ARDQ(13) ARDQ(14) ARDQ(15)
ARDQM0 ARDQM1
ARA(0) ARA(1) ARA(2) ARA(3)
ARA(10)
ARDQ(0)
ARDQ(1)
ARDQ(2)
ARDQ(3)
ARDQ(4)
ARDQ(5)
ARDQ(6)
ARDQ(7)
ARDQS0 ARDQS0n
ARODT
ARRASn
ARRESET
A_RVREF1
ARWEn
ARDQ(8)
ARA(5) ARA(6) ARA(7) ARA(8) ARA(9)
ARBA(0) ARBA(1) ARBA(2)
ARCASn
ARCLK0
ARCKE
ARCLK0n
ARCSn
ARA(0) ARA(1)
ARA(10) ARA(11) ARA(12) ARA(13)
ARA(14)
ARA(2) ARA(3) ARA(4)
Circuit Diagrams and PWB Layouts
EN 89L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 90
Circuit Diagrams and PWB Layouts
19510_520_130412.eps
130412
Flash, control, EJTAG & AmbiLight
B04C B04C
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
PCIE11_RXN
LOUTP
LOUTN
PCIE11_REFCKP PCIE11_REFCKN
PCIE11_TXP PCIE11_TXN PCIE11_RXP
OSCL0
U0RX U0TX U1RX U1TX
XTALI
XTALO
OSDA0
OSCL1
OSDA1
OSCL2
OSDA2
OPWM0 OPWM1 OPWM2
OIRI
ORESET FSRC_WR MEMTN MEMTP
JTCK JTDO JTRST JTDI JTMS
NC
ADIN7_SRV
GPIO12 GPIO13 GPIO14
GPIO16 GPIO17 GPIO18 GPIO19 GPIO20 GPIO21 GPIO22 GPIO23 GPIO24 GPIO25 GPIO26
GPIO38 GPIO39 GPIO40 GPIO41 GPIO42 GPIO43 GPIO44 GPIO45 GPIO46
GPIO0
ADIN2_SRV ADIN3_SRV ADIN4_SRV ADIN5_SRV ADIN6_SRV
USB_DP_P0 USB_DM_P0 USB_DP_P1 USB_DM_P1 USB_DP_P2 USB_DM_P2
GPIO1 GPIO2 GPIO3 GPIO4 GPIO5 GPIO6 GPIO7 GPIO8 GPIO9 GPIO10 GPIO11
USB_DP_P3 USB_DM_P3
ADIN0_SRV ADIN1_SRV
GPIO47 GPIO48 GPIO49 GPIO50 GPIO51 GPIO52 GPIO53 GPIO54 GPIO55
GPIO15
GPIO27 GPIO28 GPIO29 GPIO30 GPIO31 GPIO32 GPIO33 GPIO34 GPIO35 GPIO36 GPIO37
CLE
7
6
5
4
3
2
1
0
VCC
R
SE
WP
WE
RE
CE_
ALE
NC
IO
B
VSS
SUB
ER
GND
VOUT
VDD
SCL
ADR
0 1 2
SDA
WC
+T
LDM_VSYNC
SD_CMD SD_CLK SD_D0 SD_D1 SD_D2 SD_D3
LDM_CS LDM_DO LDM_DI LDM_CLK
PDD7 POCE0 POCE1
PARB PAALE PACLE
POWE POOE
EMMC_CLK
PDD0
PDD1
PDD2
PDD3
PDD4
PDD5
PDD6
NEAR TO MTK IC
4DDR
37AB
MT5396
Ambilight
4710
Non HTVHTV
SDM
*
*
YES
No
---10K
3DDR
Near To IC
---
PANEL
ONLY
*
10K
PWM DIMMING
37AC
MT5396
FOR DEBUGGING
MT5396
4K7
1 8
3756-1
RES
+3V3_SW
RES
37B1 10K
10K
37AZ
3720 10K
3719 10K
2
1
3
1701
MSJ-035-69A-B-RF-PBT-BRF
4704
10p
2704
F748
5
33R
3739
3772-4
4
2720
27p
10K
37AU
10K
RES
3780
10K
+3V3_SW
100R37AJ
F747
F706
F705
F719
2726
10u
2.0A 63V
T
1751
47R
37AN
37AM 47R
F720
2731 100p
2730 100p
+3V3_AMBI
2732100n
3
+3V3STBY
1703
3225
27M
24
1
7702
3736
BC847BW
RES
10K
2701 10u
RES
4708
4707
AT34
AU34
I726
V34
W36
W37
Y34
Y35
W34
W35
AP18 AR18 AU16 AT16
AU21
AR12
AT12
AU12
21NA22MA
AN15
V35
AP12
AP15
D27
AP14
AM14
AR14
AR15
AN14
AP31
AN30
G9 G10
MISC
7300-11
4706
4709
GND_AMBI
RES
3770
10K
4K7
3748
37344K7
F726
37AA
4K7
F739
D37
AU13
AU14
C36
D36
AT13
AT14
+3V3_AMBI
E29 AP9 AT9 AR9 AU9
G34 H34 L34 L32
C37
L33 E33 E32 F32 A29 D31 C31 E30 E31
G35
F31
M35 M37 M33 F35 E35 E37 N32 M34 M36
G36
M32
J35 J33 G33 H35 H31 F34 E36 N33
G37
P32
H33 L35 K36 J32 J34 K34 K35 K37
F36
J36 J37
AN24
AP23 AR23 AU23
AT23 AM24 AM23
H32 F37
K33 K32
7300-8
AN23
+3V3_SW
GPIO_USB
3749 33R
3738
10K
RES
37AB
10K
I725
3723 4K7
RES
F704
+3V3_SW
3709
100R
F711
27
4701
6
10K
3772-2
3772-3
10K
3
I744
37AT 100R
3740 22R
37AF 4K7
F702
4K7
3788
3756-4 4K7
45
27 28
RES 4705
24 25 26
3
4 5 6 7
8
9
14 15 16 17 18 19
2
20 21 22 23
FH34SRJ-26S-0.5SH(50)
1
10 11 12 13
1A04
F752
F750
F751
F749
GND_AMBI
10K37AP
3712
100R
F737
F713
5700
37AK 100R
30R
RES
4u7
2717
4u7
2716
RES
100K
3769
RES
3702
100R
4K7
3715
RES
1K0
3793
10K3758
2714
100p
F730
F728
6700
RES
BZX384-C6V8
7704 BC847BW
1
3
2
RES
22R
10K
3732
3741
3729 10K
4K73756-3
3 6
37A3
18K
2708
RES
100n
37354K7
GND_AMBI
+12V_AMBI
4K7
37AE
100n
2727
10R37AL
100p
100p2728
2729
F741
+3V3_SW
+3V3_SW
BAS316
3753
RES
1K0
RES
6703
10K
3773
4K7
3747
3782
10K
10K3731
1R0
3754
2703 100n
BC847BW
7703
6
12
37
13
36
18 19
47 48
3
4
5 10 11 14 15
8
7
28
33
2
34 35 38 39
40 45 46
1
20 21 22 23 24 25 26 27
17 9
16
29
30 31 32
41 42 43 44
7700
H27U4G8F2D
27341u0
100n
2733
4
5
6
7
8
9
12
13
1
10
11
2
3
1C20
FH52-11S-0.5SH
100n
2707
3767
6K8
F724
3778 100R
2725
100p
4K737A6
RES
6704
RES
1710
BAS316
3708
100R
RES
6701
BZX384-C6V8
F701
+3V3STBY
4
7
1 2
3
6
5
8
4K7
M24C64-RDW
7705
EEPROM
Φ
(8K × 8)
3789
4K7
3775
4
RES
Φ
BD45292G
1
3
2
5
7701
RES
+5V_SW
+3V3STBY
3765 100R
100n
2715
F734
F746
F722
4710
0R337A1
10K
3786
3791
RES
1R0 1R0
3785
10K
3781
1n0
+3V3_SW
2711
2710 1n0
F732
1711
F700
100R3733
47R3759
37A9 47R
27p
2721
100R
3710
F727
3728 10K
3730 100R
4K7
3755
3764
100R
F725
680R
+3V3_SW
3752
3792
1R0
BAS316
RES
6 7
8
9
12
13
6702
1702
1
10 11
2
3
4 5
BM11B-SRSS-TBT
RES
3750 33R
F745
F721
10K3726
100R
3751
1K0
3771
1K0
3794
3742
4K7
+3V3_SW
F729
37AD
4K7
F731
RES
100n
2718
F735
100R3779
2719
1u0
F723
+3V3STBY
F717
1 8
100R
3705
3772-1
10K
2u2
2706
RES
5702
30R
I732
10u2700
RES
33R
3774
A37 C35 A36 B35
4K7 3790
RES
B31 D30 C30 D29 D33 B34
C33
A35
B37
B36
AT11
AP10
AM9
AR10
C34 A34
D32
C32 A32 B32 A31
7300-13
C29
AU11
SDIO_SPI
SERIAL_NAND
3714
4K7
+3V3_SW
+3V3_SW
+3V3_SW
1K037AY
F716
37AC
10K
37A7
+3V3_SW
100K
10K3727
60R
5701
3756-2
27
+3V3_SW
4K7
+3V3_SW
3787
4K7
RES
3761
4K7
10p
2705
10K
F712
3737
I741
RES
3713
100R
100R
3701
RES
4K737A5
3795 820K
1750
1.0A63VT
F740
+3V3STBY
45
4703-3
3 6
AMBI_OUT_SPI_SDO
AMBI_TEMP
4703-4
AMBI_OUT_SPI_SCKO
SCL
3D_LED
RC_IRQ_RF4CEn
KEYBOARD
LED2
IRQ_CRP
SDA
IR_SW
CVBS_DETECT
YPBPR_DETECT
KEYBOARD
IR_SW
USB_DP_WIFI
USB_DM_WIFI
RC_IRQ_RF4CEn
NAND_PDD(5)
NAND_PDD(4)
NAND_PDD(3)
NAND_PDD(2)
NAND_PDD(1)
NAND_PDD(0)
NAND_PARB
NAND_POCE
NAND_POWE
NAND_PALE
NAND_PCLE
NAND_POCE
NAND_POWE
NAND_PALE NAND_PCLE
NAND_PDD(7)
NAND_PDD(6)
NAND_PDD(5)
NAND_PDD(4)
NAND_PDD(3)
NAND_PDD(2)
NAND_PDD(1)
NAND_PDD(0)
NAND_POOE
NAND_PDD(7)
NAND_PDD(6)
UART_RX
UART_TX
SDA
SCL
SYS_EEPROM_WE
JTCK
JTMS
JTDI
JTDO
NAND_POOE
NAND_PARB
JTRST
SDA
SCL
UART_TX
UART_RX
JTMS
JTDI
JTDO
JTCK
JTRST
BACKLIGHT-BOOST-A
PWM-DIMMING
3D_LED
SYS_EEPROM_WE
LCD_PWR_ON
AMBI_TEMP
USB_DM1
USB_DP1
3D_2D_SELECT
AMBI_SPI_SDO
BL_ON_OFF
IR
DEMOD_SDA
DEMOD_SCL
AMBI_SPI_SCKO
AMBI_OUT_SPI_SCKO
AMBI_OUT_SPI_SDO
AMBI_SPI_SCKO
AMBI_SPI_SDO
VGA_DETECT
ORESET
USB_DP2
USB_DM2
BACKLIGHT_CONTROL
BOOST_CONTROL

10-6-6 B04C, Flash, control, EJTAG & AmbiLight

EN 90L12M3.1L LA 10.
2013-Jun-21
div. table
back to
Page 91

10-6-7 B04D, LVDS display

19510_521_130412.eps
130412
LVD S display
B04D B04D
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
REXT_VPLL
AE4P
BE1N BE2P BE2N BE3P BE3N BE4P BE4N BECKP BECKN
BO0P BO0N BO1P
AO1N
AO2P
AO2N
AO3P
AO3N
AO4P
AO4N
AOCKP
AOCKN
AE0P AE0N AE1P AE1N AE2P AE2N AE3P AE3N
AE4N
AECKP AECKN
AO0P
AO0N
AO1P
BO1N BO2P BO2N BO3P BO3N BO4P BO4N BOCKP BOCKN
BE0P BE0N BE1P
Yes
Non TM100 Panel TM100 Panel
∗
∗
∗
TO DISPLAY
Yes
0R
MT5396
2D20
∗
No
(TOP side)
0R
0R
0R
3D23
No
FOR DEVELOPMENT USE
Yes
2D21
LVDS#1
No
6D01
SML-310
RES
FD56
220n
2D12
3D07
15K
FD49
ID17
FD51
FD53
FD66
FD55
FD52
ID03
5D01
33R
AL2
AL1
AK4
AK3
AJ2
AJ1
AH4
AH3
AJ4
AJ3
AG7
AF4
AF3
AE2
AE1
AD2
AD1
AE4
AE3
AL4
AL3
AP5
AR4
AP4
AR3
AP3
AU4
AT4
AG4
AG3
AG2
AG1
AN2
AN1
AM4
AM3
AP2
AP1
AU6
AT6
AR6
AP6
AR5
AU2
AT2
AU1
AT1
AR2
AR1
FD59
LVDS_EPI
7300-10
3D09
1K0
FD58
4D29
3D02
RES
47R
4D04
3D13
RES
+12VS
4D25
FD39
7D03-2
BC847BS(COL)
5
3
4
24K
3D00
1u0
2D11
68R
3D23
RES
FD13
53
54 55
56 57
58 59
60
48
49
5
50
51
6
7
8
9
52
61
39
4
40
41
42
43
44
45
46
47
29
3
30
31
32
33
34
35
36
37
38
2
20
21
22
23
24
25
26
27
28
1
10
11
12
13
14
15
16
17
18
19
1G51
20519-051E
3D01
FD42
47K
FD44
FD37
5D02
FD47
33R
4K7
3D19
FD43
RES
RES
2D21
100p
4D06
ID05
+VDISP
F829
1
4D05
7D03-1
BC847BS(COL)
2
6
FD41
3D06
10K
+3V3STBY
RES
1K0
3D10
FD48
3D05
10K
FD57
4D28RES
100p
2D20
RES
3D12
+3V3_SW
4K7
1K0
3D08
FD50
3D21
RES
1
2
3
FD36
7D00
5
6
7
8
4
3.0A 32VT
SI4835DDY-GE3
1D11
ID02
FD62
3D11
RES
2D14 10n
FD46
10n
2D17
F738
3D14
+VDISP
6D00
BZX384-C6V8
FD45
BC857BW
7D02
RES
FD40
4D26
FD61
FD54
+3V3_SW
ID07
3D03
47K
33R
5D00
3D22
4K7
RES
FD38
2D15
100n
2D16
16V100u
3D20 4K7RES
4D27RES
FD71
FD72
FD70
FD69
FD67
FD68
3D_2D_SELECT
OPC_ENABLE
PWM-DIMMING
PX4A+ PX4A­PX4B+ PX4B­PX4C+ PX4C­PX4D+ PX4D­PX4E+ PX4E­PX4CLK+ PX4CLK-
PX3A+ PX3A­PX3B+ PX3B­PX3C+ PX3C- PX3D+ PX3D- PX3E+ PX3E­PX3CLK+ PX3CLK-
PX3A+
PX3A-
PX3CLK+
PX3CLK-
PX3C+
PX3C-
PX3B+
PX3B-
PX3E+
PX3E-
PX3D+
PX3
D-
PX4D­PX4D+
PX4E­PX4E+
PX4C­PX4C+
PX4CLK­PX4CLK+
PX4A­PX4A+
PX4B­PX4B+
LCD_PWR_ON
Circuit Diagrams and PWB Layouts
EN 91L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 92

10-6-8 B05A, Digital I/O - HDMI

19510_522_130412.eps
130412
Digital I/O - HDMI
B05A B05A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
PHYLED1
HDMI_3_RX_C HDMI_3_RX_CB
TXVP_0 TXVN_0 RXVP_1 RXVN_1
REXT
HDMI_0_RX_0 HDMI_0_RX_0B HDMI_0_RX_1 HDMI_0_RX_1B HDMI_0_RX_2 HDMI_0_RX_2B HDMI_0_RX_C HDMI_0_RX_CB
HDMI_1_RX_0 HDMI_1_RX_0B HDMI_1_RX_1 HDMI_1_RX_1B HDMI_1_RX_2 HDMI_1_RX_2B HDMI_1_RX_C HDMI_1_RX_CB
HDMI_2_RX_0 HDMI_2_RX_0B HDMI_2_RX_1 HDMI_2_RX_1B HDMI_2_RX_2 HDMI_2_RX_2B HDMI_2_RX_C
PHYLED0
HDMI_2_RX_CB
HDMI_3_RX_0 HDMI_3_RX_0B HDMI_3_RX_1 HDMI_3_RX_1B HDMI_3_RX_2 HDMI_3_RX_2B
HDMI PORT 2
HDMI PORT 1
HDMI PORT 4 (SIDE)
MT5396
3B24
100K
47K3B02
1%
24K
3B50
RES 4B21
3B21 47K
7B01
BC847BW
1K0
3B333B03
1K0
2B07
10p
5.6VRES 6B32CDS2C05HDMI2
OPWR2_5V
BC847BW
7B21
5.6V
FB05
CDS2C05HDMI26B03RES
3B00
1K0
CDS2C05HDMI26B33 V6.5SER
FB11
FB17
4K73B54
3B01 47K
CDS2C05HDMI26B01 V6.5SER
FB16
+3V3STBY
FB24
OPWR3_5V
47K
RES 4B31
OPWR0_5V
3B31
47K3B22
FB02
OPWR0_5V
5.6VRES 6B02 CDS2C05HDMI2
3B32 47K
FB19
OPWR3_5V
82R
3B08
5 6 7
8
9
20
21
22
23
12 13 14 15 16 17 18 19
2
3
4
1B04
1
10 11
FB12
105156-1108
FB18
RES 4B01
5.6VRES 6B23 CDS2C05HDMI2
3B55 4K7
3B23
1K0
FB04
FB13
100K
3B34
BSH111
7B00
RES
CDS2C05HDMI26B31V6.5SER
V6.5SER
30R5B01
CDS2C05HDMI26B22
3B04
100K
+3V3_SW
100K
3B07
1K2
3B05
RES
5.6VRES 6B21 CDS2C05HDMI2
FB03
3B09
180R
IB01
4B00
24
25 26
FB15
4 5 6 7
8
9
20
21
2223
11 12 13 14 15 16 17 18 19
2
3
1B01
DC1R019WBER220
1
10
OPWR2_5V
FB22
FB01
4K7
FB23
3B52
3B30
1K0
22
23
2425
26
2
3
4 5 6 7
8
9
2021
1
10 11 12 13 14 15 16 17 18 19
DC1R019WBER220
1B02
AJ37 AJ36 AJ33 AK33
AM16
AN16
AD15
AU17
AT17
AU18
AT1
8
AA35 AA34 AA37 AA36 AC37 AC36
AK35 AK34 AJ35 AJ34
AH34
AE37 AE36 AD35 AD34 AC35 AC34 AE35 AE34
AB35 AB34
7300-9
HDMI_ETHERNET
AG35 AG34 AG37 AG36 AF35 AF34 AH35
1u0
2B01
7B31
BC847BW
FB21
1K0
3B20
HARC0
HDMI_0_SCL
HDMI_ARC ARC
RX_0_0B
HDMI_2_HPD
HDMI_0_HPD
HDMI_3_HPD
RX_2_0
RX_2_0B
RX_0_2
RX_0_C
RX_0_CB
HDMI_CEC_A
HDMI_0_SDA
RX_0_2B
RX_0_1
RX_0_1B
RX_0_0
RX_2_C
RX_2_CB
HDMI_CEC_A
HDMI_2_SCL
HDMI_2_SDA
RX_2_2B
RX_2_1
RX_2_1B
RX_3_CB
HDMI_CEC_A
HDMI_3_SCL
HDMI_3_SDA
RX_3_2B
RX_3_1
RX_3_1B
RX_3_0
RX_3_0B
RX_2_2
PHYLED0 PHYLED1
RXVN_1
RXVP_1
TXVN_0
TXVP_0
RX_3_2
RX_3_C
RX_0_C RX_0_CB
RX_2_0 RX_2_0B RX_2_1 RX_2_1B RX_2_2 RX_2_2B RX_2_C RX_2_CB
RX_3_0 RX_3_0B RX_3_1 RX_3
_1B RX_3_2 RX_3_2B RX_3_C RX_3_CB
HDMI_ARC
HDMI_CEC
HDMI_CEC_A
RX_0_0 RX_0_0B RX_0_1 RX_0_1B RX_0_2 RX_0_2B
Circuit Diagrams and PWB Layouts
EN 92L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 93

10-6-9 B05B, Digital I/O - USB

19510_523_130412.eps
130412
Digital I/O - USB
B05B B05B
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
+T
VIN
VOUT
GND
EN
FLG
EN
+T
+T
+T
USB PORT 1
For integrated WiFi
SQ Test Only
0R
0R
(WiFi)
45R3
INTERNAL USB
0R
45R3
USB PORT 2
+5V_USB2
0R
FC62
FC37
FC61
1
FC11
4
3
2
5
FC42
RES
RT9715GGB
7C01
FC21
+3V3_SW
FC39
3C06
0R3
100K
+3V3STBY
5
RES
3C05
3C04-4RES
4
3C04-1
1 8
RES
FC36
FC43
4 56
2C19
100n
USB-16-PBT-B-30-CU1-BRF
1 2
3
FC38
1C03
3C21
0R3
3C04-2
27
RES
0R3
3C31
2C01
100n
RES
FC32
+5V_SW
RES3C04-3
3 6
RES
2C02
10u
FC46
FC51
1 2
3
4 5
6
+5V_USB2
+5V_USB3
1C02
USB-16-PBT-B-30-CU1-BRF
RES
1%
3C33
1u0
2C03
0R3
3C11
RES
3
100n
2C17
1C32
ACM2012
14
2
+5V_SW
FC45
FC44
USB_PWR_P0
2C18
100u 6.3V
3
4 5 6
7 8
+3V3_WOLAN
1C31
S1315
1 2
+5V_SW
+5V_USB3
3C32RES
+3V3_WOLAN
1%
USB_DP_WIFI
6.3V100u
2C20
IRQ_WOWLANn
USB_DM_WIFI
ENABLE_WOWLAN
USB_DP2
USB_DM2
USB_DP1
USB_DM1
Circuit Diagrams and PWB Layouts
EN 93L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 94

10-6-10 B06A, Analogue I/O - Headphone

19510_524_130412.eps
130412
Analogue I/O - Headphone
B06A B06A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
GND
2
1
SHUTDOWN
BYPASS
2
IN-
VDD
1
VO
RIGHT
HEADPHONE
LEFT
1u0
2810
2
6
1
+3V3_SW
7801-1 PUMD12
F807
10K
3811
2808
1u0
6
5
8
1
7
Φ
AMPLIFIER
TS489IST
7800
3
4
2
F804
33R
3807-2
3807-1
12
33R
2806
100u 4V
1n0
2813
3813
10K
3814
22K
F810
10K
3812
2803
47p
PESD5V0S1BA
6800
RES
I811
+3V3STBY
I810
F809
1u0
2805
1n0
2802
22K
3806
I808
2812
1n0
1u0
2809
6801
PESD5V0S1BA
RES
33R
3807-3
4V
100u
2807
1n0
2801
MSJ-035-12D-B-AG-PBT-BRF
1401
I812
I809
3805
22K
F811
2804
47p
33R
3807-4
F808
PUMD12
7801-2
5
3
4
HPOUT_R
HP_LOUT
HP_ROUT
RESET_AUDIO
A_STBY
A_PLOP
HPOUT_L
HP_LOUT
HP_ROUTA_PLOP
Circuit Diagrams and PWB Layouts
EN 94L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 95
Circuit Diagrams and PWB Layouts
19510_525_130412.eps
130412
Analogue I/O - Component & Composite
B06B B06B
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
S
Z
Y0
Y1
VCC
GND
GND
VCC
GND_HS
G3
1
2
3EN2 3EN1
MPXP
AOBCK AOLRCK AOMCLK AOSDATA0 AOSDATA1 AOSDATA2
AL0_ADAC AL1_ADAC AL2_ADAC
AL3_ADAC AR0_ADAC AR1_ADAC AR2_ADAC
AOSDATA3 AOSDATA4 ASPDIF0 ASPDIF1 ALIN
AIN0_L_AADC AIN0_R_AADC AIN1_L_AADC AIN1_R_AADC AIN2_L_AADC AIN2_R_AADC AIN3_L_AADC AIN3_R_AADC AIN4_L_AADC AIN4_R_AADC AIN5_L_AADC
AR3_ADAC
AIN5_R_AADC AIN6_L_AADC AIN6_R_AADC VMID_AADC
VDACY_OUT
VDACX_OUT
PR1P Y0P Y1P COM0 COM1
HSYNC VSYNC BP SOG GP RP COM PB0P PB1P PR0P
SOY0 SOY1
SY0 SC0
CVBS_COM
CVBS0P CVBS1P CVBS2P CVBS3P
Near To SOC
DEB
MT5396
YPbPr
RES
MT5396
YPbPr AUDIO
PC_AUDIO
For HTV
Near To ConnectorNear To SOC
Near To Connector
For HTV
4G01
YES
No
Non HTVHTV
1R0
3G00
RES
I902
10u
2903
2900
10u
30K
3970
RES
10K
3974
30K
3953
3940 100R
PESD5V0S1BA
1R0
6902
RES
1 8
3901
10K3G04-1
3952
30K
6
5
3
1
4
10p
2908
NX3L1G3157GM
7G02
RES
2
100R
3941
I904
100R
3939
I903
RES
1n0
2905
I949
3946 100R
+3V3STBY
56R
3906
PESD5V0S1BA
6901
2963
100p
RES
1922
RES
1G01
15 14 13 12 11
1
10
21
19
20
3
4 5 6 7
8
9
18 17 16
74LVC245ABQ
7G01
RES
2
10K3G04-2
RES
27
2987
10u
3903
56R
2901
1n0
RES
1929
1920
F901
2955 10n
3950 100R
10n2947
3951
3925
18R
100R
1921
I948
4
F931
1VA2-2
BLUE
MSP-8033SH-02-NI-FE-RF-PBT-BRF
3
3961-4
45
1923
10R
100R3944
10n
2954
AN11 AM11 AM10
AN35 AM32 AM37 AM36
AR16 Y32
AN28
AJ27
AN34 AM34 AM33 AM35
Y33
AR11 AP11 AM12 AN9 AN10
AT35 AP34 AU36 AR37 AT36 AP32 AR33 AP37 AR36 AP36 AR35
AU35 AU37 AT37
AUDIO_DAC_ADC
7300-2
5901
60R
1R0
3907
5
MSJ-035-75C-BL-RF-PBT-BRF
1A02
1
2
3
4
3971
1R0
PESD5V0S1BA
6922RES
1930
MSP-8033SH-07-NI-FE-RF-PBT-BRF
1VA3-1 WHITE
1
2
1VA3-2
RED
MSP-8033SH-07-NI-FE-RF-PBT-BRF
3
4
BLACK
5
6
RED
MSP-8033SH-02-NI-FE-RF-PBT-BRF
1
2
MSP-8033SH-07-NI-FE-RF-PBT-BRF
1VA3-3
1VA2-1
3938 100R
I953
10u
2984
1u02978
F932
I952
F905
1n0
F906
RES
2989
3973
1R0
3936
1R0
RES
2904
1n0
5900
60R
1905
1n5
2945
100p
2982RES
3961-3
3 6
10n
2958
10R
6904
PESD5V0S1BA
3972
30K
F900
10n2977
20K
3966
7
I951
3961-2 10R
2
+3V3_SW
3977
4K7
2990 100n
3976
100R
RES
1n0
2902
10n2949
1n0
2988
2951 10n
RES
3975
240R
F904
2946 10n
RES
3960
75R
PESD5V0S1BA
6903
RES
2986
1n0
RES 2983
100p
60R
5902
RES
2985
1n0
RES
100p
2964
3965
20K
2907
10p
F930
1R0
3937
56R
3902
2906
10p
F902
3905
18R
33p
2991
1928
10R
3961-1
1 8
3900
1R0
GREEN
5
6
MSP-8033SH-02-NI-FE-RF-PBT-BRF
1VA2-3
AT24
AR27 AP25 AR29
AU30 AP29
AM25
AP27 AU26
AT30
AP30
AR24
AN25
AT28 AR26 AR28 AP26
82PA5
2R
A
VIDEO_IO
AU24
AP24
AU28 AT26
AN29 AR31 AR30
7300-14
RES
PESD5V0S1BA
6920
F903
F929
10K
3G05
RES
+3V3STBY
2944
1n5
10K3G04-4
RES
45
10K
3G04-3
RES
3 6
6G01
PESD5V0S1BA
RES
1n0
2G02
RES
18R
3904
2948 10n
3G02
1R0
RES
1R0
3G01
RES
1u0
2962
I950
+3V3STBY
6921
PESD5V0S1BA
RES
2G01
RES
+3V3STBY
100n
PESD5V0S1BA
RES 6900
100R
3949
47n
2957
3G03-4
RES 45
RES36
33R
RES 27
33R3G03-3
8
33R
3G03-2
33R
3G03-1
RES 1
RC_IRQ_RF4CEn
RC_FROM_HTV
DET_IR_CON
IR_SW
CVBS_GND
CVBS_GND
CVBS
DET_IR_CON
RC_TO_SWITCH
RC_IRQ_RF4CEn
RC_SWITCH
RC_TO_SWITCH
RC_TO_HTV
RC_SWITCH
CVBS
CVBS_GND_1
SOY0
PB0P
SPDIF_OUT
RC_TO_HTV
RC_FROM_HTV
SY0N
SY0P
SPR0P
SPB0P
VSYNC
HSYNC
AIN0_R
SOY0
BP SOG
GN
RP
GP
PR0P
AOMCLK
SY0P
SY0N
Y0P
AIN2_L
AIN2_R
AIN2_L AIN2_R
ARC
AOBCK AOLRCK
AOSDATA0
HPOUT_L
HPOUT_R
SPR0P
SPB0P
AIN0_L
AIN0_L AIN0_R
SPDIF_OUT

10-6-11 B06B, Analogue I/O - Component & Composite

EN 95L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 96

10-6-12 B06C, Analogue I/O - VGA

19510_526_130412.eps
130412
Analogue I/O - VGA
B06C B06C
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
H_SYNC
Y_SYNC
RES
CDS2C05HDMI2
6A10
PESD5V0S1BA
6A05
RES
75R
3A14
1A03
IA05
IA04
10K
3A20
6A08
BAS316
3A23
10K
1A10
3A18
RES
2K2
FA03
60R
5A00
60R
5A01
3A19
120R
RES
100R
3A27
6A04
PESD5V0S1BA
2A13
5p6
6A03
PESD5V0S1BA
RES
8
9
16
17
13
14
15
2
3
4
5
6
7
MDS-15P-H-06-B
1A01
1
10
11
12
IA09
1A07
60R
5A06
2A12
5p6
1R0
3A10
RES
100p
2A17
RES
2A16
100p
6A02
PESD5V0S1BA
RES
30R
5A04
RES
1A20
0001
6A00
PESD5V0S1BA
3A22
10K
1
3
2
FA04
BC847BW
7A01
3A21
10K
1A08
0001
2A08
10p
3A15
75R
IA03
IA02
6A06
BAS316
75R
3A16
1n0
2A15
FA05
10p
2A09
FA06
60R
5A02
FA02
3A26
100R
10p
2A07
FA14
1A00
30R
FA13
5A05
2u2
2A14
FA07
1A09
RES
6A09
CDS2C05HDMI2
IA08
6A01
PESD5V0S1BA
RES
3A17
2K2
RES
FA01
IA07
FA08
3A25
100R
100R
3A24
IA01
BAS316
6A07
VGA_SDA
VGA_SCL
+5V_DC
+5V_DC +5V_DC
+5V_SW
VGA_DETECT
GP
SOG
HSYNC
BP
RP
GN
VSYNC
Circuit Diagrams and PWB Layouts
EN 96L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 97

10-6-13 B07A, Ethernet

19510_527_130412.eps
130412
Ethernet
B07A B07A
2013-01-11
1
3139 123 6545
PCB SB SSB
MT5396 R3 LATAM 2K13
Reserved
Tekcon with int. mag.
for debug only
RES
3F07
330R
FF12
6F01
SML-310
FF10
FF08
RES
FF09
4 5 6 7 8
RES
SML-310
6F02
5450-327-194-H3
1F01 1 2
3
FF06
2F24
22n
14
23
14
23
ACM2012
1F04
ACM2012
1F03
FF11
RES
330R
3F08
FF07
RXVN_1
TXVP_0
TXVN_0
PHYLED1
PHYLED0
RXVP_1
Circuit Diagrams and PWB Layouts
EN 97L12M3.1L LA 10.
2013-Jun-21
back to
div. table
Page 98

10-6-14 Layout top

19510_528_130412.eps
130412
2013-01-11
1
3139 123 6545
SSB Layout top
1201
1205
1401
1402
1403
1404
1405
1601 1602
1603 1604
1605
1606
1608
1609
1701
1702
1703
1710
1711
1750
1751
1905
1920
1921
1922
1923
1928
1929
1930
1A00
1A01
1A02
1A03
1A04
1A07
1A08
1A09
1A10
1A20
1B01
1B02
1B04
1C021C03
1C20
1C31
1C32
1D01
1D11
1F01
1F03
1F04
1G01
1G51
1M88
1M89
1VA2
1VA3
2100
2101
2102
2103
2104
2105
2106
2107
2108
2109
2110
2111
2112
2113
2114
2115
2116
2117
2118
2119
2120
2121
2122
2123
2124
2125
2126
2127
2128
2131
21322133
2134
2136
2137
2143
2145
2146
2147
2148
2154
2155
2156
2157
2164 2165
2166
2167
2168
2169
2170
2171
2172
2174
2175
2176
2177
2178
2179
2180
2182
2183
2184
2185
2187
2188
2189
2191 2192
2193
2194
2196
2197
2198
2200
2201
2204
2205
2206
2207
2208
2209
2210
2211
2213
2214
2215
2216
2217
2218
2219
2220
2221
2222
2223
2224
2225
2226
2227
2228
2229
2230
2231
2232
2233
2234
2235
2236
2239
2240
2244
2245
2246
2247
2248
2249
2400
2401
2402
2403
2404
2405
2406
2407
2408
2409
2410
2411
2412
2413
2416
2417
2418
2419
2420
2421
2422
2424
2425
2427
2428
2429
2432
2433
2434
2435
2436
2437
2438
2439
2440
2441
2442
2443
2462
2463
2464
2465
2466
2471
2474
2475
2476
2477
2501
2502
2503
2504
2505
2536
2537
2538
2542
2543
2544
2551
2552
2557
2558
2559
2561
2562
2563
2564
2565
2566
2568
2569
2570
2571
25A8
25A9
25AA
25AB
25AC
25AD
25AE
25AF
25AG
25AH
25AJ
25AK
2601
2602
2608
2611
2612
2613
2614
2615
2616
2617
2618
2635
2638
2639
2640
2641
2642
2643
2644
2645
2646
2647
2649
2650
2651
2652
2653
2654
2655
2656 2657
2658
2659
2660
2661
2662
2663
2664
2665
2666
2667
2668
2669
2671
2672
2673
2674
2675
2676
2677
2678
2679
2680
2681
2682
2683
2684
2685
2686
2687
2688
2689
2690
2691
2692
2693
2694
2695
2696
2697
2698
2699
2700
2701
2703
2704
2705
2706
2707
2708
2710
2711
2714
2715
2716 2717
2718
2719
2720
2721
2725
2726
2727
2728
2729
2730
2731
2732
2733
2734
28012802
2803
2804
2805
2806
2807
2808
2809
2810 2812
2813
2900
2901
2902
2903
2904
2905
2906
2907
2908
2944
2945
2946
2947
2948
2949
2951
2954
2955
2957
2958
2962
2963
2964
2977 2978
2982
2983
2984
2985
2986
2987
2988
2989
2990
2991
2A07
2A08
2A09
2A12
2A13
2A14
2A15
2A16
2A17
2B012B07
2C01
2C02
2C03
2C17
2C18
2C19
2C20
2D11
2D12
2D14
2D15
2D16
2D17
2D20
2D21
2F24
2G01
2G02
3100
3102
3103
3104
3105
3106
3107
3108
3109
3110
3111
3112
3113
3114
3115
3116
3117
3118
3119
3120
3121
3122
3123
3126
3127
3128
3129
3130
3131
3133
3137
3146
3162
3163
3167
3168
3169
3170
3200
3201
3202
3203
3204
3205
3206
3207
3208
3209
3210
3211
3212
3213
3214
3217
3218
3222
3223
3224
3225
3226
3227
3228
3229
3230
3231
3232
3400
3401
3402
3403
3404
3405
3406
3407
3408
3409
3410
3411
3412
3418
3419
3420
3426
3427
3500
3502
3503
3504
3505
3506
3507
3508
3509
3510
3511
3512
3513
3514
3519
3520
3521
3523
3524
3526
3530
3534
3535
3536
3541
3542
3543
3544
3546
3608
3613
3614
3623
3624
3627
3628
3634
3635
3650 3656
3666
3667
3688
3695
3696
3701
3702
3705
3708
3709
3710
3712
3713
3714
3715
3719
3720
3723
37263727
3728
3729
3730
3731
3732
3733
3734
3735
3736
3737
3738 3739
3740
3741
3742
37473748
3749
3750
3751
3752
3753
3754
3755
3756
3758
3759
3761
3764
3765
3767
3769
3770
3771
3772
3773
3774
3775
3778
3779
3780
3781
3782
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
37A1
37A3
37A5
37A6
37A7
37A9
37AA
37AB
37AC
37AD
37AE
37AF
37AJ
37AK
37AL
37AM
37AN
37AP
37AT
37AU
37AY
37AZ
37B1
3805
3806
3807
3811
3812
3813
3814
3900
3901
3902
3903
3904
3905
3906
3907
3925
3936
3937
3938
3939
3940
3941
3944
3946
3949
3950
3951
3952
3953
3960
3961
3965
3966
3970
3971
3972
3973
3974
3975
3976
3977
3A10
3A14
3A15
3A16
3A17
3A18
3A19
3A20
3A21
3A22
3A23
3A243A25
3A26
3A27
3B00
3B01
3B02
3B03
3B04
3B05
3B07
3B08
3B09
3B20
3B21
3B22
3B23
3B24
3B30
3B31
3B32
3B33
3B34
3B50
3B52
3B54
3B55
3C04
3C05
3C06
3C11
3C21
3C31
3C32
3C33
3D00
3D01
3D02
3D03
3D05
3D06
3D07
3D08
3D09
3D10
3D11
3D12
3D13
3D14
3D19
3D20
3D21
3D22
3D23
3F07
3F08
3G00
3G01
3G02
3G03
3G04
3G05
4201
4202
4203
4401
4701
4703
4704
4705
4706 4707 4708 4709
4710
4B00
4B01
4B21
4B31
4D04
4D05
4D06
4D25
4D26
4D27
4D28
4D29
5100
5101
5102
5103
5104
5105
5106
5107
5200
5201
5202
5203
5204
5400
5401
5402
5403
5404
5405
5406
5408
5414
5415
5416
5417
5500
5503
5505
5506
5700
5701
5702
5900
5901
5902
5A005A015A02
5A045A05
5A06
5B01
5D00
5D01
5D02
6400
6500
6501
6700
6701
6702
6703
6704
6800
6801
6900
6901
6902
69036904
6920 6921
6922
6A006A016A02
6A03
6A04
6A05
6A06
6A07
6A08
6A09
6A10
6B01
6B02
6B03
6B21
6B22
6B23
6B31
6B32
6B33
6D00
6D01
6F01
6F02
6G01
7110
7113
7116
7117
7118
7210
7216
7220
7300
7400
7401
7402
7500
7501
7503
7504
7601
7602
7603
7604
7700
7701
7702
7703
7704
7705
7800
7801
7A01
7B00
7B01
7B21
7B31
7C01
7D00
7D02
7D03
7G01
7G02
Circuit Diagrams and PWB Layouts
EN 98L12M3.1L LA 10.
2013-Jun-21
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div. table
Page 99

10-6-15 Layout bottom

19510_529_130412.eps
130412
2013-01-11
1
3139 123 6545
SSB Layout bottom
A204
A205
A209
A210
F101
F102
F103
F106
F107
F108
F113
F114
F115
F118
F119
F120
F121
F122
F123
F126
F127
F128
F129
F130
F131
F132
F133
F134
F200
F202
F203
F206
F207
F208
F211
F212
F213
F401
F402
F403
F404
F405
F407
F408
F409
F410
F416
F417
F418
F419
F506
F507
F509
F510
F700
F701
F702
F704
F705
F706
F711
F712
F713
F716
F717
F719
F720
F721
F722
F723
F724
F725
F726
F727
F728
F729
F730
F731
F732
F734
F735
F737
F738
F739
F740
F741
F745
F746
F747
F748
F749
F750
F751
F752
F804
F807
F808
F809
F810
F811
F829
F900
F901
F902
F903
F904
F905
F906
F929
F930
F931
F932
FA01 FA02 FA03 FA04
FA05 FA06FA07
FA08
FA13 FA14
FB01
FB02
FB03
FB04
FB05
FB11 FB12
FB13
FB15
FB16
FB17
FB18
FB19
FB21
FB22
FB23
FB24
FC11
FC21
FC32
FC36
FC37
FC38
FC39
FC42
FC43
FC44
FC45
FC46
FC51
FC61
FC62
FD13
FD36
FD37
FD38
FD39
FD40
FD41
FD42
FD43
FD44
FD45
FD46
FD47
FD48
FD49
FD50
FD51
FD52
FD53
FD54
FD55
FD56
FD57
FD58
FD59
FD61
FD62
FD66
FD67
FD68
FD69
FD70
FD71
FD72
FF06 FF07FF08
FF09
FF10FF11 FF12
I106
I118
I119
I120 I122
I127
I132
I134
I135
I136
I138
I139
I140
I143
I144
I145
I146
I147
I149I150
I151
I152
I153
I154
I155
I156
I157
I158
I159
I206
I207 I208
I404
I405
I406
I407
I408
I409
I410
I411I412
I413
I414
I415
I420
I421
I422I423
I424
I501
I502
I504
I508
I509
I510
I518
I725
I726
I732
I741
I744
I808
I809
I810
I811
I812
I902
I903
I904
I948
I949
I950
I951
I952
I953
IA01
IA02
IA03
IA04
IA05
IA07
IA08
IA09
IB01
ID02
ID03
ID05
ID07
ID17
Circuit Diagrams and PWB Layouts
EN 99L12M3.1L LA 10.
2013-Jun-21
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Circuit Diagrams and PWB Layouts
19370_044_130131.eps
130417
Keyboard Control Module
E E
2012-09-27
0.5
2722 171 90763 2722 171 90764 2722 171 90766
Keyboard Control Module
R3
680 Ω (5.6 kΩ)
V
SS
V
SS
V
SS
V
SS
V
SS
V
SS
V
SS
V
SS
C1
0.01 μF
R5
3.9 kΩ
(18 kΩ)
R2
330 Ω (3.9 kΩ)
R1
150 Ω
(
1.5 kΩ)
R4
1.5 kΩ
(8.2 kΩ)
CH+
ZD1
5.6 V
CH- SOURCE VOL- VOL+ POWER
R6
6.8 kΩ (1 kΩ)
J2
CON8
6
7
8
4
5
3
1
2

10.7 272217190763, 272217190764, 272217190766 Keyboard Control Module

10-7-1 E, Keyboard Control Module

EN 100L12M3.1L LA 10.
2013-Jun-21
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div. table
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