Philips 32PHG5101 Schematic

Page 1
Colour Television Chassis
TPM16.4L
LA

Contents Page Contents Page

1. Revision List 2
2. Technical Specs, Diversity, and Connections 2
3. Precautions, Notes, and Abbreviation List 5
4. Mechanical Instructions 9 Cable dressing (32" 5101 series) 9 Cable dressing (43" 5101 series) 10 Cable dressing (49" 5101 series) 10
5. Service Modes, Error Codes, and Fault Finding 14
6. Alignments 21
7. Circuit Descriptions 23
8. IC Data Sheets 30
9. Block Diagrams Block diagram 5101 series 37
10. Circuit Diagrams and PWB Layouts Drawing PWB A 715G7734 PSU A 715G6934 PSU 42 44-45 A 715G7734 PSU 46 47-48 B 715G7805 SSB 49 65-66 J 715G8009 IR/LED Panel 67 68 J 715G8010 IR/LED Panel 69 70 E 715G7088 Keyboard control panel 71 72
11. Styling Sheets 5101 series 32" 73 5101 series 43" 74 5101 series 49" 75
38 40-41
Published by XMM&CQZ/SC 1613 Quality Printed in the Netherlands Subject to modification EN 3122 785 20071
2016-Apr-1
2016 ©
TP Vision Netherlands B.V.
All rights reserved. Specifications are subject to change without notice. Trademarks are the property of Koninklijke Philips Electronics N.V. or their respective owners. TP Vision Netherlands B.V. reserves the right to change products at any time without being obliged to adjust earlier supplies accordingly. PHILIPS and the PHILIPS’ Shield Emblem are used under license from Koninklijke Phili ps Electronics N.V.
Page 2
EN 2 TPM16.4L LA1.
Revision List

1. Revision List

Manual xxxx xxx xxxx.0
First release.

2. Technical Specs, Diversity, and Connections

Index of this chapter:
• Specifications are indicative (subject to change).

2.1 Technical Specifications

2.2 Directions for Use

2.3 Connections
2.4 Chassis Overview
2.1 Technical Specifications
For on-line product support please use the links in back to
div.table 2-1. Here is product information available, as well as
getting started, user manuals, frequently asked questions and
Notes:
software & drivers.
• Figures can deviate due to the different set executions.

Table 2-1 Described Model Numbers and Diversity

24 9 10 11
CTN
32PHG5101/77 2-1 4-1 4-4 4-5 4-6 9.1 10.1 10.4 10.5 10.7 11.1 32PHD5101/55 2-1 4-1 4-4 4-5 4-6 9.1 10.1 10.4 10.5 10.7 11.1 43PFD5101/55 2-1 4-2 4-4 4-5 4-6 9.1 10.2 10.4 10.5 10.7 11.2 49PFD5101/55 2-1 4-3 4-4 4-5 4-6 9.1 10.3 10.4 10.6 10.7 11.3
Mechanics
Connection Overview
Wire Dressing
Stand Removal
Rear Cover Removal
Schematics
SSB Removal
Block Diagram
Power Supply
SSB
2.2 Directions for Use
Directions for use can be downloaded from the following websites:
http://www.philips.com/support http://www.p4c.philips.com
J (IR/LED)
E (Key board/Leading Edge)
Styling
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Page 3

2.3 Connections

USB
TV ANTENNA
SERV.U
HDMI
1
SPDIF
OUT
L
CVBS
R
HDMI 2
ARC
20010_001.eps
1
2
3
7
8
Side ConnectorsRear Connectors
5
6
4
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
Technical Specs, Diversity, and Connections
EN 3TPM16.4L LA 2.

Figure 2-1 Connection overview

Note: The following connector colour abbreviations are used
(acc. to DIN/IEC 757): Bk= Black, Bu= Blue, Gn= Green,
5 - HDMI 2 ARC: Digital Video - In, Digital Audio with ARC ­In/Out
Gy= Grey, Rd= Red, Wh= White, Ye= Yellow.

2.3.1 Side Connections

1 - USB 2.0
Figure 2-3 HDMI (type A) connector
1 -D2+ Data channel j 2 -Shield Gnd H 3 -D2- Data channel j
Figure 2-2 USB (type A)
1-+5V k 2 -Data (-) jk 3 -Data (+) jk 4 -Ground Gnd H
2 - Head phone (Output)
Bk -Head phone 80 - 600 / 10 mW ot
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/CEC Control channel jk 14 - ARC Audio Return Channel k
3 - EXT: Video CVBS - In, Audio - In
Ye -Video - CBVS 1 V Wh -Audio - L 0.5 V Rd -Audio - R 0.5 V

2.3.2 Rear Connections

/ 75 W jq
PP
/ 10 kW jq
RMS
/ 10 kW jq
RMS
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
4 - Service / UART
1 -Ground Gnd H 2 -UART_TX Transmit k 3 -UART_RX Receive j
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6- HDMI 1: Digital Video - In, Digital Audio - In/Out
Figure 2-4 HDMI (type A) connector
2016-Apr-1
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EN 4 TPM16.4L LA2.
Technical Specs, Diversity, and Connections
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/CEC Control channel jk 14 - ARC Audio Return Channel k 15 - DDC_SCL DDC clock j

2.4 Chassis Overview

Refer to 9. Block Diagrams for PWB/CBA locations.
16 - DDC_SDA DDC data jk 17 - Ground Gnd H 18 - +5V j 19 - HPD Hot Plug Detect j 20 - Ground Gnd H
7 - Cinch: Digital Audio - Out
BK - Coaxial 0.4 - 0.6V
/ 75 W kq
PP
8- TV ANTENNA - In
Signal input from an antenna, cable or satellite.
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Page 5
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
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-9
), or pico-farads (p 10
. Select
EN 5TPM16.4L LA 3.
-6
),
-12
).
2016-Apr-1
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EN 6 TPM16.4L LA3.
10000_053_110228.eps
110228
Precautions, Notes, and Abbreviation List
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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Precautions, Notes, and Abbreviation List
EN 7TPM16.4L LA 3.
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
C Inter IC bus
I
2
I
D Inter IC Data bus
2
S Inter IC Sound bus
I
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.
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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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EN 8 TPM16.4L LA3.
Precautions, Notes, and Abbreviation List
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 × 1200 (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 1024 × 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

20010_100.eps
CN401
CN9101
CN701
MAIN POWER SUPPLY
(1054)
A
IR/LED BOARD
(1056)
J
SSB
(1053)
B
ECN601
ECN601
ECN701
LOUDSPEAKER
(1184)
LOUDSPEAKER
(1184)
CN201
CN8602
CN408
CN601
ECN601
ECN401
ECN701
ECN408
KEYBOARD CONTROL
(1057)
E
CN01
ECN408
ECN401
ECN401
Index of this chapter:

4.1 Cable Dressing

4.2 Service Positions
4.3 Assembly/Panel Removal
4.4 Set Re-assembly
4.1 Cable Dressing
Mechanical Instructions
Notes:
• Figures below can deviate slightly from the actual situation, due to the different set executions.
EN 9TPM16.4L LA 4.

Figure 4-1 Cable dressing (32" 5101 series)

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EN 10 TPM16.4L LA4.
20070_100.eps
CN401
CN9101
CN701
MAIN POWER SUPPLY
(1054)
A
IR/LED BOARD
(1056)
J
SSB
(1053)
B
ECN601
ECN601
ECN701
LOUDSPEAKER
(1184)
LOUDSPEAKER
(1184)
CN201
CN8601
CN408
CN601
ECN701
ECN408
KEYBOARD CONTROL
(1057)
E
CN01
ECN408
ECN401
ECN401
20070_101.eps
CN401
CN701
MAIN POWER SUPPLY
(1054)
A
IR/LED BOARD
(1056)
J
SSB
(1053)
B
ECN601
ECN601
ECN701
LOUDSPEAKER
(1184)
LOUDSPEAKER
(1184)
CN201
CN8603 CN9101
CN408
CN601
ECN408
KEYBOARD CONTROL
(1057)
E
CN01
ECN408
ECN401
ECN401
Mechanical Instructions
2016-Apr-1

Figure 4-2 Cable dressing (43" 5101 series)

Figure 4-3 Cable dressing (49" 5101 series)

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Mechanical Instructions
20010_101.eps
1
M4 × 14
1
1
1
1
EN 11TPM16.4L LA 4.

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 Assembly/Panel Removal

Instructions below apply to the 32PHG5101/77, but will be similar for other 32"/43"/49"Pxx5101 models.

4.3.1 Stand

Refer to Figure 4-4 Warning: Disconnect the mains power cord before removing the rear cover.
1. Remove fixation screws [1] that secure the Stand assy_L & Stand assy_R, pull out them from the set. Refer to
Figure 4-4
for details.
for details.

4.3.2 Rear Cover

Refer to Figure 4-5 Warning: Disconnect the mains power cord before removing the rear cover.
1. remove the fixation screws [1],[2] that secure the rear cover. Refer to Figure 4-5
2. Gently lift the rear cover from the TV. Make sure that wires and cables are not damaged while lifting the rear cover from the set.
for details.
for details.
Figure 4-4 Stand removal
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EN 12 TPM16.4L LA4.
20010_102.eps
1
M3 × 8
1
1
2
2
1
M3 × 6
1
1
1
1
1
1
1
1
1
20010_103.eps
2
1
3
3
3
3
3
Mechanical Instructions

4.3.3 Keyboard Control unit

1. Gently release the tapes that secure the keyboard cable.
2. Remove the fixation screws that secure the keyboard control panel.
3. Gently take the keyboard out.
When defective, replace the whole unit.

4.3.4 Small Signal Board (SSB)

Refer to Figure 4-6 Caution: it is mandatory to remount all different screws at their original position during re-assembly. Failure to do so may result in damaging the SSB.
1. Release the clips from the LVDS connector [1] that connect with the SSB. Caution: be careful, as these are very fragile connectors!
2. Unplug all other connectors [2].
3. Remove all the fixation screws [3] from the SSB.
4. The SSB can now be shifted from side connector cover, then lifted and taken out of the I/O bracket. Refer to
Figure 4-6
for details.
for details.
2016-Apr-1
Figure 4-5 Rear cover removal

4.3.5 Power Supply Unit (PSU)

Caution: it is mandatory to remount all different screws at their
original position during re-assembly. Failure to do so may result in damaging the PSU.
1. Gently unplug all connectors from the PSU.
2. Remove all fixation screws from the PSU.
3. The PSU can be taken out of the set now.
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Figure 4-6 SSB removal
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Mechanical Instructions
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4.3.6 IR board Control Unit

Refer to Figure 4-7
1. Unplug the connector from the SSB. Caution: be careful, as these are very fragile connectors!
2. The indicated areas [1] are secured by clips. Gently and be very careful with releasing the IR board control unit.
3. Unplug the connector [2] from IR board control unit. Refer to Figure 4-7
4. Take the IR board contorl unit with hands, gently use thumbs to press backward the indicated areas [3], the IR board [4] and the IR lens [5] can be detached from the IR board control unit. Refer to Figure 4-8
When defective, replace the whole unit.
, Figure 4-8 for details.
for details.
for details.

4.3.8 Speakers

1. Gently release the tapes that secure the speaker cables.
2. Unplug the speaker connector from the SSB.
3. Take the speakers out. When defective, replace the both units.

4.3.9 LCD Panel

1. Remove the SSB as described earlier.
2. Remove the PSU as described earlier.
3. Remove the keyboard control panel as described earlier.
4. Remove the stand bracket as described earlier.
5. Remove the IR/LED as described earlier.
6. Remove the fixations screws that fix the metal clamps to the front bezel. Take out those clamps.
7. Remove all other metal parts not belonging to the panel.
8. Lift the LCD Panel from the bezel.
When defective, replace the whole unit.

4.4 Set Re-assembly

To re-assemble the whole set, execute all processes in reverse order.
Notes:
• While re-assembling, make sure that all cables are placed and connected in their original position. See Figure 4-1
Figure 4-3
• Pay special attention not to damage the EMC foams on the SSB shields. Ensure that EMC foams are mounted correctly.
.
to
Figure 4-7 IR board Control Unit removal 1
Figure 4-8 IR board Control Unit removal 2

4.3.7 Stand bracket

1. Remove all fixation screws of the bracket.
2. Lift the bracket from the set.
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Service Modes, Error Codes, and Fault Finding

5. Service Modes, Error Codes, and Fault Finding

Index of this chapter:

5.1 Service Modes

5.2 Stepwise Start-up
5.3 Software Upgrading
5.4 Error Codes
5.5 The Blinking LED Procedure
5.6 Fault Finding and Repair Tips
5.1 Service Modes
The Service Mode feature is split into following parts:
• Service Alignment Mode (SAM).
• Factory Mode.
• Customer Service Mode (CSM). SAM and the Factory mode offer features, which can be used by the Service engineer to repair/align a TV set. Some features are:
• Make alignments (e.g. White Tone), reset the error buffer (SAM and Factory Mode).
• Display information (“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 vi it.
Note: For the new model range, a new remote control (RC) is used with some renamed buttons. This has an impact on the activation of the Service modes. For instance the old “MENU” button is now called “HOME” (or is indicated by a “house” icon).

5.1.1 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 SAM in a decimal value. Every two soft-resets increase the hour by + 1. Stand-by hours are not counted.
Software Identification, Version, and Cluster
The software ID, version, and cluster will be shown in the main menu display of SAM and CSM. The screen will show: “AAAAAAB-XXX.YYY.MMM.TTT”, where:
• AAAAAA is the chassis name: TPM164L.
• 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 versions). 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.
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 and “xxx”, where “xxx” is a 3 digit decimal value of the panel type: see column “Display Code” in back to div.table 6-3 is accepted and stored in NVM, the set will switch to Stand-by, to indicate that the process has been completed. During this algorithm, the NVM-content must be filtered, because several items in the NVM are TV-related and not SSB related (e.g. Model and Prod. S/N). Therefore, “Model” and “Prod. S/N” data is changed into “See Type Plate”. In case a call centre or consumer reads “See Type Plate” in CSM mode.

5.1.2 Service Alignment Mode (SAM)

Purpose
• To modify the NVM.
• 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).
How to Activate SAM
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/OK” button. Do not allow the display to time out between entries while keying the sequence.
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.
. When the value
Table 5-1 SAM mode overview
Main Menu Sub-menu 1 Sub-menu 2 Description
System Information Op Hour e.g. 00057 This represents the life timer. The timer counts normal operation hours, but does
Clear Codes Press [OK] to clean the Error Codes
2016-Apr-1
not count Stand-by hours.
Main SW ID e.g. “TPM144L_002.004.000.00 1” See paragraph Software Identificati on, Version, and Cl uster for the software name
ERR e.g. “000 000 000 000 000” Shows all errors detected since the last time the buffer was erased. Five errors
OP1 e.g. “001 224 032 000 038 137 220
OP2 e.g. “159 255 127 045 011 017 000
immediately
015”
000”
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definition.
possible. Used to read-out the option bytes. See paragraph 6.4 Option Settings in the
Alignments section for a detailed description. Ten codes are possible.
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.
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Service Modes, Error Codes, and Fault Finding
Main Menu Sub-menu 1 Sub-menu 2 Description
Options OP#1-OP#8 e.g. “032” Option code Alignments Warm R Gain To align the White Tone. See
G Gain
Normal R Gain
Cool R Gain
Store Store the RGB value
NVM editor NVM editor NVM-editor will function as in the past: Address and Value
Service Date Edit and display the applicable service data by using the displayed key pad
Upload to USB Channel List To upload several settings from the TV to an USB stick
Download from USB Channel List To download several settings from the USB stick to the TV
Initialised NVM Press [OK] to initialise NVM
NVM Copy Readable info EDID Copy
NVM Copy EDID Copy
immediately
B Gain
G Gain B Gain
G Gain B Gain
paragraph 6.3 Software Alignments in the Alignments section for a detailed description
field is a decimal value via digit entry
Initialised NVM
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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: – (De) activate the selected menu item. – (De) activate the selected sub menu. – Change the value of the selected menu item.
• When you press the MENU button once while in top level SAM, the set will switch to the normal user menu (with the SAM mode still active in the background).
How to Store SAM Settings
To store the settings changed in SAM mode (except the 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.
How to Exit SAM
Use one of the following methods:
• Switch the set to STANDBY by pressing the mains button on the remote control transmitter or the television set.
• Via a standard RC-transmitter, key in “00” sequence.
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.

5.1.3 Contents of the Factory mode:

Purpose
• To perform extended alignments.
Specifications
• Displaying and or changing Panel ID information.
• Displaying and or changing Tuner ID information.
• Error buffer clearing.
• Various software alignment settings.
• Testpattern displaying.
• Public Broadcasting Service password Reset.
•etc.
How to Activate the Factory mode
To activate the Factory mode, use the following method:
• Press the following key sequence on the remote control transmitter: from the “menu/home” press “1999”, directly followed by the “Back/Return” button. Do not allow the display to time out between entries while keying the sequence.
After entering the Factory mode, the following items are displayed,
Table 5-2 Factory mode overview
Default value
Item Item value
0 F/W VERSION Press OK Displays the software versions of the supplier, Flash PQ, Smart Picture, BL Dimming,
1 PANEL_ID see back to div.table 6-3 Displays and changes the Panel ID with the left and right cursor; be careful changing this , it can
2 ERR Code: xxx xxx xxx xxx xxx 000 000 000 000 000 Values showing the last 5 errors during the last 50 hours of operation, according to table 5-4
3 CLEAR ERROR BUFFER Press OK Selecting this clear all current error codes. 4 NVM ADDRESS 0 NVM address 0 to 8191, Use Item 6 to change a nd 7 to store the data to the co rrect NVM address 5 NVM VALUE 0 Displays the value at the NVM address of item 5 6 NVM STORE Press OK Use this option to save the data of item 6 to NVM address of item 5
Description32" 43" 49"
Source Meter, the Picture Quality checksum, the Dimming library, the Source meter library, the Flash AQ, the MTK, MCU and OAD software versions.
result in not correct displaying the screen!
Error code table
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EN 16 TPM16.4L LA5.
Default value
Item Item value
7 NVM COPY TV to USB Press OK Use this to store the NVM data to the REPAIR folder of a FAT formatted USB memory stick. The
8 NVM READ USB to TV Press OK Use this to store th e NVM dat a fr om the USB memory stick to the TV. The TV will save the two
9 CLR_TEMP_R 117 126 255 Red colour temperature setting 10 CLR_TEMP_G 110 117 161 Green colour temperature setting 11 CLR_TEMP_B 128 128 167 Blue colour temperature setting 12 AUTO_COLOR Press OK PC: any pattern that has black and white, YPbPr: SMPTE bar (colour bar), any timing. 13 ADC_GAIN_R 0 Red ADC gain 14 ADC_GAIN_G 128 Green ADC gain 15 ADC_GAIN_B 128 Blue ADC gain 16 ADC_OFFSET_R 255 Red ADC offset 17 ADC_OFFSET_G 255 Green ADC offset 18 ADC_OFFSET_B 255 Blue ADC offset 19 VIRGING_MODE off Use this to return the set to virgin mode. Depends whether the set has been used already. 20 E_Fuse on E-fuse mode 21 ORT_MODE off ORT mode 22 AGEING MODE off Use this for aging a new LCD pan el 23 RESET_PBS_PWD Press OK Use this to reset the Child Lock 24 VIDEO_PWM_MEDIUM 0 video_pwm_medium 25 VIDEO_PWM_MINIMUM 0 video_pwm_minimum 26 VIDEO_PWM_MAXIMUM 0 video_pwm_maximum 27 PWM_RATIO_BEST_PICTURE 0 pwm_ratio_best_picture 28 PWM_RATIO_STD_TOP 0 pwm_ratio_std_top 29 PWM_RATIO_STD_BOTTOM 0 pwm_ratio_std_bottom 30 PWM_RATIO_BEST_POWER 0 pwm_ratio_best_power 31 VIDEO_STD_TH_HIGH 0 video_std_th_high 32 VIDEO_STD_TH_LOW 0 video_std_th_low 33 YPBPR_PHASE InValid Not available for this chassis 34 AUD_GAIN_LINEIN 1 0 1 Line-in audio gain 35 AUD_GAIN_HDMI 0 0 0 HDMI audio gain 36 AUD_GAIN_ATV 0 -3 0 Analogue TV audio gain 37 AUD_GAIN_DTV 0 0 0 Digital TV audio gain 38 AUD_GAI N _USB 0 0 0 USB audio gain 39 ESTICKER NVM 1 0 esticker nvm 1 40 ESTICKER NVM 2 0 esticker nvm 2 41 ESTICKER NVM 3 0 esticker nvm 3 42 ESTICKER NVM 4 0 esticker nvm 4 43 ESTICKER NVM 5 0 esticker nvm 5 44 ESTICKER NVM 6 0 esticker nvm 6 45 ESTICKER NVM 7 0 esticker nvm 7 46 ESTICKER NVM 8 0 esticker nvm 8 47 ESTICKER NVM 9 0 esticker nvm 9 48 ESTICKER NVM 10 0 esticker nvm 10 49 ESTICKER NVM 11 0 esticker nvm 11 50 ESTICKER NVM 12 0 esticker nvm 12 51 ESTICKER NVM 13 0 esticker nvm 13 52 ESTICKER NVM 14 0 esticker nvm 14 53 ESTICKER NVM 15 0 esticker nvm 15 54 ESTICKER NVM 16 0 esticker nvm 16 55 ESTICKER NVM 17 0 esticker nvm 17 56 ESTICKER NVM 18 0 esticker nvm 18 57 ESTICKER NVM 19 0 esticker nvm 19 58 ESTICKER NVM 20 0 esticker nvm 20 59 ESTICKER RESET Press OK reset esticker 60 DIM_LIB RESET Press OK Reset the Dimming 61 SRC_METER-RESET Press OK Reset the Source meter 62 AMBLIGHT RESET Press OK Amblight reset 63 ACFG RESET Press OK Reset ACFG 64 AQ_INDEX 5 5 6 Audio Qu ality index 65 AUDIO TEST MODE off Used for audio testing during production 66 AUDIO CHANNEL TYPE 2.0 Defines the installed speaker system 67 TEST PATTERN Press OK With the “left” and “right” keys of the remote control various test patterns can be chosen 68 EDID UPDATE Press OK Used to enter a new EDID codes into the NVM 69 TCON_GAMMA_UPDATE InValid Tcon_gamma_update 70 DUMP PQ FROM TV Press OK Saves the picture quality data to a f ile “pq .bi n ” to the root of a FAT formatted USB mem ory sti ck 71 LOAD PQ to TV Press OK Loads the picture quality data from a file “pq.bin” in to the TV
Service Modes, Error Codes, and Fault Finding
Description32" 43" 49"
TV will write two files in the REPAIR folder of the memory stick. It will create this folder if it does not exist. The items are “Channel list”, “Personal settings”, “Option codes”, “Display-related alignments” and “History list”. In case the download to the USB stick was not successful “Failure” will appear. In this case, check if the USB stick is connected properly. Now the settings are stored onto the USB stick and can be used to download onto another TV or other S SB. Upl oading is o f course only possible if the software is ru nning and if a pictur e is available. This me thod is created to be able to save the customer’s TV settings and to store them into another SSB.
files which were created in item 8 to the NVM of the set. Use these options when replacing a SSB. When “USB to TV Success” is displayed remove the power and restart the TV
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Service Modes, Error Codes, and Fault Finding
Default value
Item Item value
72 DUMP AQ FROM TV Press OK Saves the audio quality data to a file “AQ.bin” to the root of a FAT formatted USB memor y stick 73 LOAD AQ to TV Press OK Loads the audio quality data from a file “AQ.bin” in to the TV 74 PANEL FLIP on off off Flip panel 75 CVI_SOURCE off off off Enable/Disable CVI source 76 VGA_SOURCE off off off Enable/Disable VGA source 77 HDMI2 off off off Enable/Disable HDMI2 source 78 HDMI SIDE on on on Enable/Disable HDMI SIDE source 79 RESET_OPTION_CODE Press OK Reset option code 80 EXIT_FACTORY Press OK Exits the factory mode
Description32" 43" 49"
EN 17TPM16.4L LA 5.
How to Exit the Factory mode
Use one of the following methods:
• Select EXIT_FACTORY from the menu and press the “OK” button.
Note: When the TV is switched “off” by a power interrupt, or normal switch to “stand-by” while in the factory mode, the TV will show up in “normal operation mode” as soon as the power is supplied again. The error buffer will not be cleared.

5.1.4 Customer Service Mode (CSM)

Purpose
The Customer Service Mode shows error codes and information on the TVs operation settings.The call centre can instruct the customer (by telephone) to enter CSM in order to identify the status of the set.This helps the call centre to diagnose problems and failures in the TV set 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”.
• 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 CSM
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.
Note: Activation of the CSM is only possible if there is no (user) menu on the screen!
Contents of CSM
• 1.1 Set Type This information is very helpful for a helpdesk/workshop as reference for further diagnosis. In this way, it is not necessary for the customer to look at the rear of the TV-set. Note that if an NVM is replaced or is initialized after corruption, this set type has to be re-written to NVM.
• 1.2 Production code Displays the production code (the serial number) of the TV. Note that if an NVM is replaced or is initialized after corruption, this production code has to be re-written to NVM.
• 1.3 Installation date Indicates the date of the first installation of the TV. This date is acquired via time extraction.
• 1.4a Option Code 1 Gives the option codes of option group 1 as set in SAM.
• 1.4b Option Code 2 Gives the option codes of option group 2 as set in SAM.
• 1.5 SSB Gives an identification of the SSB as stored in NVM. Note that if an NVM is replaced or is initialized after corruption, this identification number has to be re-written to NVM. This identification number is the 12NC number of the SSB.
• 1.6 Display 12NC NVM read/write.
• 1.7 PSU 12NC NVM read/write.
• 2.1 Current Main SW Displays the built-in main software version. In case of field problems related to software, software can be upgraded. As this software is consumer upgradeable, it will also be published on the internet.
• 2.2 Standby SW Displays the built-in stand-by processor software version. Upgrading this software will be possible via USB.
• 2.3 Panel Code Displays the Display Code number.
•
2.4 Bootloader ID ID of Boot
loader.
• 2.5 NVM version Detects and displays NVM version.
• 2.6 Flash ID ID of flash model.
• 2.7 e-UM version eDFU (help) version.
• 2.8 Channel Table Structure Version version of channel table structure.
• 2.9 Error Codes Detects and displays errors.
• 3.1 Signal Quality Analog/digital signal strength.
• 3.2 Child lock Not active / active. This is a combined item for locks. If any lock (channel lock, parental lock) is active,it is indicated as “active”.
• 3.3 HDCP keys Indicates the validity of the HDMI keys (or HDCP keys). In case these keys are not valid and the customer wants to make use of the HDMI functionality, the SSB has to be replaced.
How to Navigate
By means of the “CURSOR-DOWN/UP” knob (or the scroll wheel) on the RC-transmitter, can be navigated through the menus.
How to Exit CSM
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.
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Power Off
Standby Soft Mode
Power On
Semi- Standby
Standby
Switch
Off(Mains Power Plug)
Standby Soft Mode Command Received, previously in Standby
Soft Mode (Power tact switch)
TV Wakeup commands Received (TV Wakeup keys)
Digital background tasks started
Digital background tasks completed
Swith On, previously in
Standby/Semi- Standby (Mains Power Plug)
Standby Soft Mode
Command Received (Power tact
switch)
Switch Off (Mains Power Plug)
Switch Off
(Mains Power Plug)
Swith On, previously in Standby Soft Mode (Mains Power Plug)
Standby commands
Received (RC
Standby key)
Standby Soft Mode
Command Received, previously in Standby Soft Mode (Power tact switch)
TV Wakeup commands Received (TV Wakeup keys)
Switch On, previously in Power On Mode (Power tact switch)
Standby Soft Mode Command Received, (Power tact switch)
Switch Off (Mains Power Plug)
Switch On,previously in TV Operation Mode (Mains Power Plug)

5.2 Stepwise Start-up

Service Modes, Error Codes, and Fault Finding

5.3 Software Upgrading

5.3.1 Description

It is possible for the user to upgrade the main software via the USB port. This allows replacement of a software image in a stand alone set. A description on how to upgrade the main software can be found in the DFU or on the Philips website.

5.3.2 Introduction

Philips continuously tries to improve its products, and it’s recommend that the TV software is updated when updates are available. Software update files can be obtained from the dealer or can be downloaded from the following websites:
http://www.philips.com/support
Preparing a portable memory for software upgrade
The following requirements have to be met:
1. A personal computer connected to the internet.
2. An archive utility that supports the ZIP-format (e.g. WinZip for Windows or Stufflt for Mac OS).
3. A FAT formatted USB memory stick (preferably empty).
Note:
1. Only FAT/DOS-formatted memory sticks are supported.
2016-Apr-1

Figure 5-1 Stepwise Start-up

5.3.3 Check the current TV software version

5.3.4 Download the latest software

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2. Only use software update files that can be found on the
http://www.philips.com/support
Before starting the software upgrade procedure, it is advised to check that what the current TV software:
1. Press the “1 2 3 6 5 4” button on the remote control to enter the CSM mode.
2. Use the up/down cursor keys to select “Current Main Software”.
If the current software version of the TV is the same as the latest update file found on http://www.philips.com/support not necessary to update the TV software.
1. Open the internet page http://www.philips.com/support
2. Find information and software related to the TV.
3. Select the latest software update file and download it to the PC.
4. Insert the USB memory stick into one of the USB ports of the PC.
5. Decompress the downloaded ZIP file and copy it to the root directory of the USB flash drive.
web site.
, it is
.
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5.3.5 Update the TV software

1. Turn the TV on and wait for it to boot completely.
2. Insert the USB memory stick that contains the software update files in one of the TV’s USB ports.
3. The TV will detect the USB memory stick automatically. Then a window jumps out as Figure 5-2
. Note: If the USB flash drive is not detected after power up, disconnect it and re-insert it.
4. Select [Update] and press OK. See Figure 5-2
5. To proceed, In next menu select [Start] and press OK to start software updates. See Figure 5-3
.
6. Upgrading will now begins and the status of the updating progress will be displayed.
7. When the TV software is updated. Remove your USB flash drive, then select [Restart] and press OK to restart the TV.See Figure 5-4
.
Figure 5-2 Update the TV software [1/3]
• Do not remove the USB flash drive during the software update.
• If a power failure occurs during the update, do not remove the USB flash drive from the TV. The TV will continue the software update as soon as the power comes up again.
• If an error occurs during the update retry the procedure or contact the dealer.
• We do not recommend downgrading to an older version.
• Once the upgrade is finished, use the PC to remove the TV
.
software from the USB portable memory.

5.3.6 Content and Usage of the One-Zip Software File

Below you find a content explanation of the One-Zip file, and instructions on how and when to use it. Only files that are relevant for Service are mentioned here.
• EDID_clustername.zip: Contains the EDID content of the different EDID NVMs.
• FUS_clustername_version.zip: Contains the file downloaded which is needed to upgrade the TV main software and the software download application.
• NVM_clustername_version.zip: Default NVM content.

5.3.7 How to Copy NVM Data to/from USB

When copying data to and from a USB memory stick, the folder “repair” is used. When inserting an empty USB memory stick, and downloading data to the stick, the TV will create this folder. When sending data from a USB memory stick to a TV, the intended data must be available in the “repair” folder. Note that when copying EDID data to the TV, all necessary EDID files must be in this folder. Service mode overview for your reference.
Table 5-3 Service mode overview
Figure 5-3 Update the TV software [2/3]
Figure 5-4 Update the TV software [3/3]
Note:
Service Modes Description
SAM Service alignment mode Factory Mode Used for extended alignments CSM 3-page compact CSM pages. There will be C SM dump to
USB SW upgradeable SW-upgrading of flash memories MT5561 can be done
NVM-Editor in SAM NVM-editor will function as in the past: Address and Value
Service Data New Service data in SAM for CTN, Prod. no., 12NC
USB copy/paste in SAM
UART logging There will be printout available in UART. No specifications
Blind SAM RC sequence “062598” + “Menu” +
Clear Buffer RC sequence “062599” + “OK” or via SAM
USB-stick upon entering CSM-mode
via USB. The main SW can be upgraded via the ZIP file downloaded.
field is a decimal value via digit entry
programming with virtual keyboard Channel list, NVM data, Readable info, EDID
of the printout, per MTK provision/definition.
“Panel code”

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.
2
C device.
2
C error.
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EN 20 TPM16.4L LA5.
Service Modes, Error Codes, and Fault Finding
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). 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.

5.4.2 How to Read the Error Buffer

You can read the error buffer in three ways:
• On screen via the SAM/CSM (if you have a picture). Example: – ERROR: 000 000 000 000 000: No errors detected – ERROR: 013 000 000 000 000: Error code 13 is the
last and only detected error
– ERROR: 034 013 000 000 000: Error code 13 was
detected first and error code 34 is the last detected (newest) error
• Via the blinking LED procedure (when you have no picture). See paragraph 5.5 The Blinking LED Procedure

5.4.3 Error codes

In this chassis only “layer 2” error codes are available and point to problems on the SSB. They are triggered by LED blinking when CSM is activated. Only the following layer 2 errors are defined:
Table 5-4 Error code table
Layer-2 error code Defective device
13 General I2C bus error on the SSB 16 +12 V missi ng or low, PSU defective 27 Channel decoder error on the SSB 34 Tuner I2C bus error on the SSB 35 EEPROM I
2
C error on SSB, M24C64

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 CLEAR command in the Factory mode:
• 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 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 No Picture

When you have no picture, first make sure you have entered the correct display code. See paragraph 6.4 Option Settings the instructions. See also back to div.table 6-3
.
for

5.6.3 Unstable Picture via HDMI input

Check if HDMI EDID data is properly programmed.

5.6.4 No Picture via HDMI input

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

5.6.5 TV Will Not Start-up from Stand-by

Possible Stand-by Controller failure. Re-flash the software.

5.6.6 Audio Amplifier

The Class D-IC U601 has a powerpad for cooling. When the IC is replaced it must be ensured that the powerpad is very well pushed to the PWB while the solder is still liquid. This is needed to insure that the cooling is guaranteed, otherwise the Class D-IC could break down in short time.

5.6.7 CSM

When CSM is activated and there is a USB memory stick connected to the TV, the software will dump the complete CSM content to the USB memory stick. The file (Csm.txt) will be saved in the root of the USB memory stick.

5.6.8 Loudspeakers

Make sure that the volume is set to minimum during disconnecting the speakers in the ON-state of the TV. The audio amplifier can be damaged by disconnecting the speakers during ON-state of the set!

5.6.9 Display option code

Attention: In case the SSB is replaced, always check the Panel Code in CSM, even when picture is available. Performance with the incorrect display option code can lead to unwanted side-effects for certain conditions.

5.6 Fault Finding and Repair Tips

Note:
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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 Reset of Repaired SSB
6.1 General Alignment Conditions
Perform all electrical adjustments under the following conditions:
• Power supply voltage: 90 - 264 V
• 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 heat sinks as ground.
• Test probe: R
> 10 MW, Ci < 20 pF.
i
• Use an isolated trimmer/screwdriver to perform alignments.
, 50/ 60 ± 3 Hz.
AC
Alignments
In case you have a colour analyser:
• Measure with a calibrated (phosphor- independent) color analyser (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 White D alignment
values). Tolerance: dx: ± 0.003, dy: ± 0.003.
• Repeat this step for the other colour 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
Value Cool (11000 K) Normal (9000 K) Warm (6500 K)
x 0.276 0.287 0.313 y 0.282 0.296 0.329
EN 21TPM16.4L LA 6.
6.2 Hardware Alignments
Not applicable.
6.3 Software Alignments
Put the set in SAM mode (see Chapter 5. Service Modes, Error
Codes, and Fault Finding). The SAM menu will now appear on
the screen. Select RGB Align and go to one of the sub menus. The alignments are explained below. The following items can be aligned:
• White point.
To store the data:
• Press OK on the RC before the cursor is moved to the left.
• Select “Store” and press OK on the RC.
• Switch the set to stand-by mode.
For the next alignments, supply the following test signals via a video generator to the RF input:
• EU/AP-PAL models: a PAL B/G TV-signal with a signal strength of at least 1 mV and a frequency of 475.25 MHz
• US/AP-NTSC models: an NTSC M/N TV-signal with a signal strength of at least 1 mV and a frequency of
61.25 MHz (channel 3).
• LATAM models: an NTSC M TV-signal with a signal strength of at least 1 mV and a frequency of
61.25 MHz (channel 3).

6.3.1 RGB Alignment

Before alignment, set the picture as follows:
Picture Setting
Dynamic backlight Off Dynamic Contrast Off Color Enhancement Off Picture Format Unscaled Light Sensor Off Brightness 50 Color 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).
– All “White point” values initial to “128”.
If you do not have a colour analyser, you can use the default values. This is the next best solution. The default values are average values coming from production (statistics).

6.3.2 Display Adjustment

You can use the default values. The default values are average values coming from production.
• Enter SAM mode.
• Select a colour temperature (e.g. COOL, NORMAL, or WARM).
• Set the RED, GREEN and BLUE default values according to the values in back to div.table 6-2
.
• When finished press OK on the RC, then press STORE to store the aligned values to the NVM.
• Restore the initial picture settings after the alignments.
Table 6-2 White tone default settings
Picture mode Screen size
Warm (6500K) 32PHG5101/77 128 104 80
32PHD5101/55 127 105 81 43PFD5101/55 128 92 69 49PFD5101/55 255 153 128
Normal (9000K) 32PHG5101/77 128 117 121
32PHD5101/55 126 116 120 43PFD5101/55 126 117 128 49PFD5101/55 255 161 167
Cool (11000K) 32PHG5101/77 117 110 128
32PHD5101/55 116 111 127 43PFD5101/55 118 111 127 49PFD5101/55 195 174 252
Colour temperature
Red Green Blue
This group setting of colour temperature will be applied automatically to the TV / HDMI / AV sources.
6.4 Option Settings

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 MT5561 ICs is made known by the option codes.
Notes:
2
C
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EN 22 TPM16.4L LA6.
Alignments
• After changing the option(s), save them by pressing the OK button on the RC before the cursor is moved to the left, select STORE and press OK on the RC.
• The new option setting is only active after the TV is switched “off” / “stand-by” and “on” again with the mains switch (the NVM is then read again).

6.4.2 Option Code Overview

Enter SAM mode to check the option codes. they could be edited in the NVM.

6.4.3 Display Code Overview

Press the following key sequence on a standard RC transmitter: “062598” directly followed by MENU and “xxx”, where “xxx” is a 3 digit decimal value of the panel type: see column “Display Code” in back to div.table 6-3 the Display Code, restart the set immediately.
Table 6-3 Display code overview
CTN_ALT BOM# Panel Type Display Code
32PHG5101/77 TPT315B5-WX226.K S4944G 197 32PHD5101/55 TPT315B5-WX226.K S4944G 197 43PFD5101/55 TPT430H3-DUYSHA.G S1U 198 49PFD5101/55 TPT490F2-FHBN0.K S8940C 199

6.5.2 SSB Identification

SSB’s of this chassis are identified by a “715” code on the SSB. 715Axxxx-Nnn-MMM-OOOO
• 715 main category, Printed Wiring Board
• Axxxx sub category, sequential coding number
• Nnn Version code
• N Development number
• nn Production number
• MMM Mounting variation code
• OOOO Optional variation code Make sure when replacing an SSB the SSB identification codes match the replacement panel.
. After resetting

6.5 Reset of Repaired SSB

A very important issue towards a repaired SSB from a Service repair shop (SSB repair on component level) implies the reset of the NVM on the SSB. A repaired SSB in Service should get the service Set type “00PF0000000000” and Production code “00000000000000”. Also the virgin bit is to be set. To set all this, you can use the tool or use the “NVM editor” and “Dealer options” items in SAM (do not forget to “store”).
After a repaired SSB has been mounted in the set (set repair on board level), the type number (CTN) and production code of the TV has to be set according to the type plate of the set. For this, you can use the NVM editor in SAM.
In case of a display replacement, reset the “Operation hours display” to “0”, or to the operation hours of the replacement display. Remark:
- After the NVM has been replaced, go to SAM and scroll to the
<Reload MAC address> (see figure 1*).
- Select the item and press <OK> on the RC.

6.5.1 Reset of Repaired SSB

Instruction
After NVM replacement, reload MAC address via SAM menu.This ensures the correct MAC address to be available in CSM for future repair actions.
Way of working:
• After the NVM has been replaced, go to SAM and scroll to the <Reload MAC address> .
• Select the item and press <OK> on the RC.
Notes:
• Only applicable to all related models that are “Smart TV level 0”enabled (only YouTube access). For models
without internet connection feature, no action is needed.
• HDCP keys are located in the NVM. If you are loading NVM with the tool, there is warning message displayed.
New NVM EEPROMs are shipped with pre-loaded HDCP keys.
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7. Circuit Descriptions

Index of this chapter:

7.1 Introduction

7.2 Power Supply
7.3 DC/DC Converters
7.4 Front-End Analogue and DVB-T, DVB-C; ISDB-T reception
7.5 HDMI
7.6 Video and Audio Processing - MT5561LVNT
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 the wiring, block (see chapter
9. Block Diagrams
10. Circuit Diagrams and PWB Layouts
you will find a separate drawing for clarification.
) and circuit diagrams (see chapter
).Where necessary,
Circuit Descriptions
7.1 Introduction
The TPM16.4L LA is a new chassis launched in Argentina in
2016. The whole range is covered by MT5561LVN T . The major deltas versus its predecessor support NTSC; PAL-M; PAL-N AND ISDB-T with also multi-media, CEC, ARC, SPDIF functionality.
The TPM16.4L LA chassis comes with the following stylings:
• series xxPHG5101xx

7.1.1 Implementation

Key components of this chassis are:
• SCALER MT5561LVNT/B PBGA-329
• NAND FLASH W29N01GVSIAA 1Gb TSOP-48
• Silicon Tuner MxL661-AG-R
• DEMODULATOR TC90537FG LQFP-48
• AUDIO TAS5729MDDCAR 10W TSSOP-48 for Audio Amplifier

7.1.2 TPM16.4L LA Architecture Overview

EN 23TPM16.4L LA 7.
For details about the chassis block diagrams refer to
9. Block Diagrams
.
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EN 24 TPM16.4L LA7.
20010_200.eps
TUNER
DC/DC
DDR
Headphone
SERVICE
CONNECTOR
SPDIF OUT
ANALOG I/O
MT5561
USB
HDMI
DDR
DC/DC
DC/DC
DC/DC
HDMI
DC/DC

7.1.3 SSB Cell Layout

Circuit Descriptions
Figure 7-1 SSB layout cells (top view)
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7.2 Power Supply

20010_201.eps
Platform
MT5561LVNT
AUDIO
AMP
LVDS
12V 12V
CN701
AC IN
DIM
ON/OFF
12V
AC input +
Main filter
Display Power
Platfor m p ow er
CN8602 (for 32'')
PFC
(NC)
Lower Stby Power
1 power-PCB
CN8601 (for 43'') CN8603 (for 49'')
Refer to figure Figure 7-2 for the power architecture of this platform.
Circuit Descriptions
EN 25TPM16.4L LA 7.

7.2.1 Power Supply Unit

All power supplies are a black box for Service. When defective, a new board must be ordered and the defective one must be returned, unless the main fuse of the board is broken. Always replace a defective fuse with one with the correct specifications! This part is available in the regular market. Consult the Philips Service web portal for the order codes of the boards.
Important delta’s with the TPM16.4L LA classis platform are:
• New power architecture for LED backlight
• “Boost”-signal is now a PWM-signal + continuous variable.
The control signals are:
• Stand-by (PS_ON)
•Lamp (ON/OFF)
• Backlight adjust (DIM) (not for PSDL)
In this manual, no detailed information is available because of design protection issues.
The output voltages to the chassis are:
• 12V output (standby and on-mode)
• +12V_A (audio AMP power)
• Output to the display; in case of
- IPB: High voltage to the LCD panel
Number Description to SSB to Panel to SSB to Panel to SSB to Panel Pin 16 6 16 12 16 12
1 DIM VLED+ DIM VLED+ DIM VLED+ 2 ON/OFF VLED+ ON/OFF n.c. BL_ON/OFF n.c. 3 PS_ON n.c. PS_ON VLED- PS_ON/OFF VLED­4 n.c. n.c. n.c. VLED- A3D VLED­5 GND LED- GND n.c. GND VLED-

Figure 7-2 Power Architecture

- PSL and PSLS (LED-driver outputs)
- PSDL (high frequent) AC-current.

7.2.2 Diversity

The diversity in power supply units is mainly determined by the diversity in displays.
The following displays can be distinguished:
• CCFL/EEFL backlight: power panel is conventional IPB
• LED backlight:
- side-view LED without scanning: PSL power panel
- side-view LED with scanning: PSLS power panel
- direct-view LED without 2D-dimming: PSL power panel
- direct-view LED with 2D-dimming: PSDL power panel.
PSL stands for Power Supply with integrated LED-drivers. PSLS stands for a Power Supply with integrated LED-drivers with added Scanning functionality (added microcontroller). PSDL stands for a Power Supply for Direct-view LED backlight
with 2D-dimming.

7.2.3 Connector overview

Table 7-1 Connector overview
Connector 32" 43" 49" CN9101 CN8602 CN9101 CN8601 CN9101 CN8603
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EN 26 TPM16.4L LA7.
+12V_AMP
FB403
FB414
5V_Normal
FB702
AVDD_AU
Q701
DVDD3V3
U601 TAS5729MD
AVDD_DMPLL
U702 G903T63UF
+12V
PVDD
U706 SY8104ADC
VCCK (1.2V)
FB602
FB703
VCC3.3VA_A1
+12VSB_PRE
+5V_SB
+3.3V_SB
AO3401A
U703 M5723B-33F61U
U705 G5695T11U
FB413
R719
AVDD1V2 (1.2V)
20010_202.eps
Circuit Descriptions
Connector
Number Description to SSB to Panel to SSB to Panel to SSB to Panel Pin 16 6 16 12 16 12
6 GND LED- GND n.c. GND n.c. 7 GND - GND n.c. GND n.c. 8 GND - GND n.c. GND VLED­9 +12V_A - +12V VLED- +12V_A VLED­10 +12V_A - +12V VLED- +12V_A VLED­11 +12V - +12V n.c. +12V n.c. 12 +12V - +12V VLED+ +12V VLED+ 13 +12V - +12V - +12V 14 +12V - +12V - +12V 15 +5.2V - +5V - +5.2V 16 +5.2V - +5V - FLAG
32" 43" 49" CN9101 CN8602 CN9101 CN8601 CN9101 CN8603

7.3 DC/DC Converters

The on-board DC/DC converters deliver the following voltages (depending on set execution):
• PVDD from the power 12V_AMP for the AUDIO AMP.
• 3V3SB, permanent voltage for the Stand-by controller, LED/IR, keyborad receiver and controls.
• +12V, input from the power supply for the panel common(active mode)
• +12V, input from the power supply for the AMP
• DDRV supply voltage for DDR
• TUNER3.3V, supply voltage for tuner
• +5V_SW, input intermediate supply voltage for the USB Power
• 3V3SB, from the power supply for the scaler IC MT5561
• DVDD3V3, +1V2,clean voltage for Demodulator IC channel decoder
Figures gives a graphical representation of the DC/DC converters with its current consumptions :
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Figure 7-3 DC/DC converters

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7.3.1 Power layout SSB

20010_200.eps
C409, Panel_VCC(12V)
U113, TUNER3.3V
C702, Vcck(1.2V)
L703, +5VSB
L401, DDRV(1.5V)
C609, PVDD(12V)
C719, DVDD3V3
U103, PIN5 1V2
Circuit Descriptions
EN 27TPM16.4L LA 7.
Figure 7-4 Power SSB Top View
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EN 28 TPM16.4L LA7.
20010_200.eps
IF
IF_AGC
RF_AGC
MT5561
IF_AGC
MxL661-AG-R
I2C
I
2
C
20010_203.eps
Circuit Descriptions
Figure 7-5 Power SSB Bottom View

7.4 Front-End Analogue and DVB-T, DVB-C; ISDB-T reception

7.4.1 Front-End Analogue part

The Front-End for analogue tuner consist of the following key components:
• Silicon Tuner MxL661-AG-R
• SCALER MT5561LVNT/B PBGA-329
Below find a block diagram of the front-end application for analogue part.
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Figure 7-6 Front-End Analogue block diagram
Page 29
Circuit Descriptions
IF
TS DATA
RF_AGC
MT5561
TC90537FG
LQFP-48
IF_AGC
MxL661-AG-R
I2C
I
2
C
I2C
Demod
20010_204.eps
20010_205.eps
MT5561
HDMI1
CN501
RX
I2C
HDMI2
CN502
RX
I2C
EN 29TPM16.4L LA 7.

7.4.2 Front-End ISDB Reception DTV part

The Front-End for DVT part consist of the following key components:
• Silicon Tuner MxL661-AG-R
• SCALER MT5561LVNT/B PBGA-329
• DEMODULATOR TC90537FG LQFP-48
Below find a block diagram of the front-end application for DTV part.
Figure 7-7 Front-End ISDB DTV block diagram
• Panel overdrive control
• Two-link LVDS The MT5561LVNT combines front-end video processing functions, support NTSC/PA L/SECA M TV de c o der wi t h a 3D comb filter (NTSC/PAL). The MT5561LVNT 2Gb enables consumer electronics manufacturers to build high quality, low cost and f eat ure -ri ch DT V. The MT5561LVNT 2Gb supports Full-HD MPEG1/2/4/h.264/DiviX/VC1/RM/AVS/VP8 (option) video decoder standards, and JPEG. The MT5561LVNT 2Gb also supports MediaTek MDDi
TM
de-interlace solution which can reach very smooth picture quality for motions. A 3D comb filter added to the TV decoder recovers great details for still pictures. The special color processing technology provides a natural, deep colors and true studio quality video. Moreover, the MT5561LVNT 2Gb family has built-in high resolution and high-quality audio codec.
For a functional diagram of the MT5561LVNT, refer to
Figure 8-2
.

7.5 HDMI

Refer to figure 7-8 HDMI input configuration for the application.

Figure 7-8 HDMI input configuration

The following HDMI connector can be used:
• HDMI 1: HDMI input ( TV digital interface support HDCP) with digital audio/PC DVI input
• HDMI 2: HDMI input ( TV digital interface support HDCP) with digital audio/PC DVI input/ARC
• +5V detection mechanism
• Stable clock detection mechanism
• Integrated EDID
•HPD control
•CEC control
7.6 Video and Audio Processing -
The MT5561LVNT is the main audio and video processor (or System-on-Chip) for this platform. It has the following features:
• Powerful CPU core
• A transport de-multiplexer
• A muti-standard video decoder
• Rich format audio codec
• HDMI 1.4a receiver with 3D support
• 2D/3D converter
• Local dimming (LED backlight) (option)
MT5561LVNT
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EN 30 TPM16.4L LA8.
20010_300.eps
Block diagram
Pinning information
M5723B
IN1
+
CONTROL
HDRV
A1
+
100mΩ
80mΩ
LDRV
R
S
Q
Thermal
Shutdown
UVLO
OSC
Compensation
+
EA
VREF
LX
Zero Current Detect
Current Sense
OC
0.6V
FB1
IN2
OUT2
SHUTDOWN
LOGIC
1.25V Vref
炼
ERROR
AMP
為
OVER CURRENT
PROTECT & DYNAMIC
FEEDBACK
AGND
R1
R2
OVER TEMP.
PROTECT
EN1
PGND
EN2
IN1
+
CONTROL
HDRV
A1
+
100mΩ
80mΩ
LDRV
R
S
Q
Thermal
Shutdown
UVLO
OSC
Compensation
+
EA
VREF
LX
Zero Current Detect
Current Sense
OC
0.6V
FB1
IN2
OUT2
SHUTDOWN
LOGIC
1.25V Vref
炼
ERROR
AMP
為
OVER CURRENT
PROTECT & DYNAMIC
FEEDBACK
AGND
R1
R2
OVER TEMP.
PROTECT
EN1
PGND
EN2
FB1
10
8
7
1
2
3
4
EN1
AGND
AGND
LX PGND IN1
OUT2
M5723B
9
6
5
EN2
IN2
Thermal
Pad
FB1
10
8
7
1
2
3
4
EN1
AGND
AGND
LX PGND IN1
OUT2
M5723B
9
6
5
EN2
IN2
Thermal
Pad
FB1
10
8
7
1
2
3
4
EN1
AGND
AGND
LX PGND IN1
OUT2
M5723B
9
6
5
EN2
IN2
Thermal
Pad
IC Data Sheets

8. IC Data Sheets

This chapter shows the internal block diagrams and pin configurations of ICs that are drawn as “black boxes” in the electrical diagrams (with the exception of “memory” and “logic” ICs).

8.1 Diagram 10-4-1 System Power B01, M5723B (IC U703)

2016-Apr-1

Figure 8-1 Internal block diagram and pin configuration

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Page 31
IC Data Sheets
20010_301.eps
Block diagram
MT5561LVNT
NTSC/
PAL/
SECAM
ATD
TV
Decoder
TS
Demux
Video
ADC
Video Input
De-
interlace
HDMI Rx
Audio
Input
Audio
Demod
Audio
ADC
SPDIF
In
Grapihc
DDR3
Controller
OSD
scaler
Audio DSP
Audio
I/F
Audio DAC
JTAG IrDA
PCR
I2C
RTC UART SDIO
USB2.0 PWM
Ethernet
Watchdog SerialFlash
NAND Flash
Servo ADC
SPDI F Out,I2S
ADAC L /R x2
TS
Input
Tuner
Input
CVBS /YC
Input
Component
Analog I nput
SIF
Audio
Input
Panel
16-bit
Embedded
DDR3
T8032
Smart
Card
MHL Rx
JPEG/MP2/MP4/
DivX/H.264/VC-1/
RM/AVS/VP8
Decoders (option)
LVDS/min-LVS/
EPI
OD, TCON
(option)
2D/3D Converter
PostProcessing
(option)
HDMI Input/
MHL
Demod
ARM
Vplane
scaler

8.2 Diagram 10-4-2 Peripheral, B02, MT5561LVNT/B (IC U401)

EN 31TPM16.4L LA 8.

Figure 8-2 Internal block diagram

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div.table
2016-Apr-1
Page 32
EN 32 TPM16.4L LA8.
20010_302.eps
Pinning Information
MT5561LVNT
3229
1
2
3
4
5
6
7
8
9
10
A
DVSS
AO0P AOCKP
AE1P DVSS CI_A3
B
GPIO0
AO0N AOCKN
AE1N CI_D0 CI_REG#
C
TCON4
TCON2
AO1P
AO2P
AO3P
AE0P
AE2P
AE3P
CI_A1
CI_MOVAL
D
TCON5
TCON7
AO1N
AO2N
AO3N
AE0N
AE2N
AE3N
CI_A0
CI_A4
E
TCON3
TCON0
GPIO1
OPWM0
CI_MDO1
CI_MDO2
CI_A12
CI_A5
F
TCON8
TCON1
TCON6
OSCL1
OSDA1
DVSS
CI_CD2#
CI_D2
CI_A2
G
PDD6
PDD0
PDD3
PDD1
OPWM1
OPWM2
DVSS
DVSS
H
PDD4
GPIO4
GPIO3
DVSS
DVSS
J
POOE #
POCE1#
PDD7
POCE0#
POWE#
PDD5
DVSS VCCK
DVSS
K
PACLE
PAALE
PDD2
PARB#
VCCK
VCCK
VCCK
VCCK
DVSS
DVSS
L
VCCK
VCCK
VCCK
VCCK
VCCK
VCCK
VCCK
VCCK
DVSS
DVSS
M
DVSS
DVSS
DVSS
DVSS
DVSS
DVSS
VCCK
VCCK
DVSS
DVSS
N
DDRV
DDRV
DDRV
DDRV
DDRV
DDRV
DVSS
DVSS
DVSS
VCC3IO
P
DDRV REF
ZQ
AOLRC K
OSDA0
DVSS
ADIN1
VCC3IO
VCC3IO
R
AOBC K
AOMCLK
AOSDAT A0
ASPDIF O
OSCL0
DVSS ADIN7
AVDD33_E TH
AVDD33_HD MI
T
OPWRSB
OIRI
AOSDAT A1
DVSS
ADIN6
ADIN0
ADIN4
U
U0TX
U0RX
OPCTRL 0
OPCTRL 4
ADIN5
ADIN3
HDMI_0_SCL
ADIN2
HDMI_0_R X_1B
HSYNC
V
OPCT RL3
OPCTRL1
OPCTRL 2
VGA_SD A
VGA_SCL
HDMI_0_S DA
HDMI_0_RX_ 0B
HDMI_0_RX_0
HDMI_0_R X_1
VSYNC
W
RXVN
RXVP
REXT_E TH
HDMI_0_HPD
HDMI_0_RX_ CB
HDMI_0_R X_2B
ORESETB
Y
TXVN
TXVP
DVSS
AVDD12 _ETH
AVDD12_HDM I_0
HDMI_0_RX_ C
HDMI_0_R X_2
AVDD10_LD O
1
2
3
4
5
6
7
8
9
10
IC Data Sheets
2016-Apr-1

Figure 8-3 Internal pin configuration [1/2]

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div.table
Page 33
Pinning Information
11
12
13
14
15
16
17
18
19
20
A
CI_MCLKO
CI_MDI4
CI_A14
CI_MDI0
CI_IORD#
CI_A10
FSRC_WR
B
CI_A6
CI_MIVAL
CI_WE#
CI_A13 CI_A11
CI_CE1#
CI_D7
C
CI_WAIT#
CI_RESET
CI_MDI3
CI_MDI2
CI_MDI1
CI_A8
CI_A9
CI_OE#
CI_MDO7
CI_MDO6
D
CI_MOSTRT
CI_A7
CI_D1
CI_MCLKI
CI_MISTRT
CI_IOWR#
CI_D6
CI_MDO5
CI_D5
E
CI_MDO0
CI_MDI5
CI_MDI7
CI_MDO3
CI_D3
CI_CD1#
CI_D4
CI_MDO4
F
CI_IREQ#
CI_MDI6
ASPDIFI
GPIO5
CI_PWR_EN
USB_DP1
DVSS
G
GPIO2
DVSS
USB_DM1
H
DVSS
DVSS
DVSS
DVSS DVSS USB_DP0
USB_DM0
AVDD12_HDMI_1
J
DVSS
DVSS
DVSS
HDMI_2_SDA
IF_AGC
HDMI_2_HPD_CBUS
HDMI_2_SCL
HDMI_1_SCL
HDMI_2_RX_2
HDMI_2_RX_2B
K
DVSS
DVSS HDMI_1_SDA
MHL_SENCE
HDMI_CEC
HDMI_2_RX_0
HDMI_2_RX_1
HDMI_2_RX_1B
L
DVSS
DVSS
DVSS AVDD33_CAP
RF_AGC
HDMI_1_HPD
HDMI_2_RX_0B
M
DVSS
DVSS
DVSS
AVDD33_AADC
AVDD33_ADAC
HDMI_2_RX_C
HDMI_2_RX_CB
HDMI_1_RX_2
HDMI_1_RX_2B
N
DVSS
DVSS
DVSS
AVSS33_CLN
DVSS
DVSS
HDMI_1_RX_1
HDMI_1_RX_1B
P
DVSS
DVSS DVSS AR0_ADAC
HDMI_1_RX_0
HDMI_1_RX_0B
HDMI_1_RX_C
HDMI_1_RX_CB
R
DVSS
DVSS
DVSS
DVSS AL0_ADAC
AIN_R1
AIN_R3
AIN_R2
AIN_R0
T
AVSS33_RGB
DVSS
AVSS33_VIDEO
DVSS
VMID_AADC
AVDD33_REG_STB
AL1_ADAC
AIN_L3
AIN_L2
U
SOG
SOY1
COM1
Y0
PB0
DVSS
AVDD33_VIDEO_STB
AR1_ADAC
AIN_L0
V
BP
RP
Y1
SOY0
COM0
DVSS
AVDD33_RGB_STB
CVBS0
XTALI
AIN_L1
W
GP PB1 PR0
VDAC_OUT
ADCINP_DEMOD
DVSS
XTALO
Y
COM PR1 CVBS_COM
CVBS1 ADCINN_DEMOD
AVDD12_DEMOD
11
12
13
14
15
16
17
18
19
20
MT5561LVNT
IC Data Sheets
EN 33TPM16.4L LA 8.

Figure 8-4 Internal pin configuration [2/2]

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20010_303.eps
2016-Apr-1
Page 34
EN 34 TPM16.4L LA8.
19900_301.eps
Block diagram
Pinning information
TAS5729MDD
TAS5729MDD
C
D
D
IC Data Sheets

8.3 Diagram 10-4-4 Speaker Amp B04, TAS5729MDDCAR (IC U601)

DVDD DRVDD GVDD_REGPVDD
AVDD
Digital Supply Regulator
MCLK
SCLK
LRCLK
SDIN
Serial
Audio
Port
R_INA R_INB
DR_INx
ADR / SPK_FAULT
ANA_REG1 ANA_REG2 DIG_REG
Analog Supply
Regulators
Digital Audio Processor
Digital Equalizer, Two-Band
AGL, Coarse/Fine Volume
Control, THD Manager, PWM
Level Meter
Stereo HP / Line Driver
DRVDD
­+
DRVSS
DR_OUTx
PGND
SPK_OUTA
BSTRPA
PVDD TEST1 TEST2
DR_INA DR_OUTA DR_OUTB
DR_INB
DRVSS DR_CN DR_CP
DRVDD
PLL_GND
PLL_FLTM
PLL_FLTP
ANA_REG1
AVDD
MCLK
OSC_RES
OSC_GND
DIG_REG
1 2
3
4 5 6 7
8
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24
DRVSSDR_CPDR_CN
Gate Drive
Charge Pump
PWM Power Stage
Open Loop
Digital PWM
Modulator
Clock
Monitoring
Internal Control Registers and State Machines
Gate
Drives
Gate
Drives
Die Temp. Monitor
DR_SDI
48 47 46 45 44 43 42 41 40
39 38 37 36 35 34 33 32
Thermal Pad
31 30
29 28 27 26 25
Regulator
Full Bridge
Power
Stage A
Full Bridge
Power
Stage B
PDNADR / SPK_FAULT
SPK_OUTB BSTRPB BSTRPC SPK_OUTC PGND SPK_OUTD BSTRPD PVDD GVDD_REG DR_SDI SSTIMER ANA_REG2 AGND DGND DVDD TEST3 RST NC
SCL SDA SDIN SCLK
LRCLK PDN
RST
Over-
Current
Protection
SCL
SDA
SPK_OUTA SPK_OUTB SPK_OUT SPK_OUTD
DR_OUTA DR_OUTB
2016-Apr-1

Figure 8-5 Internal block diagram and pin configuration

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Page 35

8.4 Diagram 10-4-9 TUNER B09, MxL661 (IC U104)

19900_300.eps
Block diagram
Pinning information
24
23
22
21
20
19
18 17
16 15 14 13
7
8
9
10
11
12
1 2
3
4 5
6
LNA_INP
LNA_INN
AS
GND_XTAL
CLK_OUT
XTAL_P
XTAL_N
VDD_1p8
VDD_IO
AGC_1
AGC_2/GPO_3
MxL661
VDD_3p3
RESET_N
VDD_1p8
VDD_1p8
GND_DIG VDD_1p2
IF_OUTN_1
IF_OUTP_1
IF_OUTP_2/GPO_1
IF_OUTN_2/GPO_2
SDA SCL
VDD_3p3
Crystal
Reference
I2C
Voltage
Regulator
AGC1
RF
Synth
Gain
Control
IF
Synth
Synth
Calibration
LNA
AGC2
Channel Filtering
CLK_OUT
IF1 Out
IF2 Out
RF Input
Balun
MxL661
IC Data Sheets
EN 35TPM16.4L LA 8.
back to
div.table

Figure 8-6 Internal block diagram and pin configuration

2016-Apr-1
Page 36
EN 36 TPM16.4L LA8.
19950_300.eps
Block diagram
Pinning information
TC90537FG
TC90537FG
SRCK
PBVAL
SRDT
SLOCK
RLOCK
RERR
SLPEN
GPIO2
GPIO1
GPIO0
VSS
VDDC
12 11 10 9 8 7 6 5 4 3 2 1 VSS 13 48 VDDS VDDS 14 47 VSS RSEORF 15 46 SDA
SBYTE 16 45 SCL SLADRS0 17 44 STSFLG0
AGCCNTI 18 43 STSFLG1 AGCCNTR 19 42 SYRSTN TNSCL 20 41 VPGM TNSDA 21 40 AINN Q XCKO 22 39 AINP Q XO 23 38 AINN I XI 24 37 AINP I 25 26 27 28 29 30 31 32 33 34 35 36
PLLVDD
PLLVSS
VDDC
CKI
SLADRS1
TSMD
VSS
VDDC
ADCVDD
ADCVSS
VREFL
VREFH
Synchroni-za
tion flag
TS output
Crystal
(reference clock)
Tuner
AGC
control
IIC
control
Filter AGC
ISIC (unguarded
pre/post echo
suppression)
FFT
Control
Adaptive
interpolation
filter
Equalization
CSI
(Reliability
detection)
CVI
(CW interference
detection)
AGC control output
Tuner IIC
Clock PLL
Viterbi
decoding
Memory
Frequency
deinterleaving
RS
decoding
Error
detection
Output control
Layer
isolation
TMCC
demodulation
Interpolation
phase
Correction
Synchroni
zation
Demapping
CSI
processing
Bit deinterleaving
Byte deinterleaving
TS multiplex
FFT window
control
ADC ADC
IF input or IQ input
SW
External AGC input
Host IIC
Energy
despreading
Energy
despreading
Energy
despreading
Demapping
CSI
processing
Demapping
CSI
processing
Modulation division
Quadrature
detection
AFC
Frequency
CPE
Pilot
extraction
Time
deinterleaving
(With Doppler
Compensation
)
IC Data Sheets

8.5 Diagram 10-4-16 DEMOD_Toshiba TC90537 B16, TC90537FG (IC U101)

2016-Apr-1

Figure 8-7 Internal block diagram and pin configuration

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Page 37

9. Block Diagrams

20010_400.eps
5W SPK
L
CVBS / L / R
AUDIO AM P
KeyPad
Silicon Tuner MxL661-AG-R
HDMI1
Headphone AMP
L/R
MT5561
ATV LVDS
UART
CN103 (Side)
IF+/-
HDMI2 w/ARC
USB2
CN501 (Side)
TI 31100
R
PC Audio in
Headphone
APA2176A
CN502 Rear
USB1 (Share to Wi-Fi modul)
Remote Control
5W SPK
L/R
VGA
SPIDF Out
CN104 (Rear)
DTV DEMOD
TC90537
TSB Demod
Joystick

9.1 Block diagram 5101 series

Block Diagrams
EN 37TPM16.4L LA 9.
2016-Apr-1
back to
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Page 38
Circuit Diagrams and PWB Layouts
20010_500.eps
Power
A01 A01
2015-08-21
715G7734
Power
Full range: BD9901/093G 50460938 Low and High V: BD9902/393G0050460A03
C9801 Full range: 367G215X121PKY or 367G215X101PKY Low side: 367G215X331MKY High V: 367G215S820PKY
Q9101 Full range: 357G0667650004/TK8A65D or 357G0667650006/TK11A65D Low and High V: 357G06119080HF/TK6A65D
NC
JUMPER
NCNC
NC
HOT COLD
T4AH/250V
JUMPER
+12V
+18V
!
!
!
!
!
!
!
!
!
!
!
!
!
+12V_A
+18V
!
+5.2V
!
+12VS
+12VS
!
!
A
A
!
!
!
+12V
+12V_A
+12V
+12VS
+12V_A
NC
+5.2V
CN9101 CONN
2 4 6
8
10 12 14 16
1
3
5 7
9 11 13 15
D9104
IN4148W
R9119
NC
R9144
NC/8.2K 1/8W
R9107
82K OHM 1%
+
C9116
330UF 35V
R9903
620K +-1% 1/4W
C9103
2.2NF
R9149
22 OHM 1/4W
D9108 SR515
R9109 10R 1/8W 5%
R9150
NC
SG9902
Q9305 NC/2N7002K
U9103 TL431G-AE2-R
R9348
NC/10.5K
R9115
22 OHM 1/4W
C9306
NC/100N 50V
C9113
2.2NF
R9102
510K 1/4W
R9148
22 OHM 1/4W
R9131
1K 1/8W
HS9101 HEAT SINK
1 2
3
4
Q9306 NC/P1604ED
+
C9122
330UF 35V
R9146
0 OHM +-5% 1/8W
R9304
NC/100K 1/8W
C9907 100PF 250V
R9121 2K4 1/8W 5%
R9302
NC/100K 1/8W
C9119
0.1uF 50V
CN9901 AC 2P
12
C9129
NC
L9301
D9110 SR510-22
1
2
+
C9101
NC/470uF 25V
R9141
680R 1/8W 1%
C9128 1nF 50V
R9908
R9108 4R7 1/4W 5%
R9129
470OHM +-5% 1/8W
R9128
3.3M 1/4W
-
+
BD9902 GBL408-C
2
1
3
4
C9124 1NF
C9323
NC/220N 50V
R9140
22 OHM 1/4W
R9342
NC/200R
Q9101 TK8A65D
R9130 1K OHM
U9301 NC/AOZ3015AI
1 2
3
4
5
6
7
8
PGND VIN AGND VCC FB
COMP
LX
EN
C9140
NC/1N 50V
FB9301
NC/BEAD
1 2
FB9902 127R
12
D9105 PR1007G
T9101 POWER X'FMR
1
2
3
5
6 7
8
9
10
4
FB9906 NC
1 2
R9125
620K 1/8W 1%
C9106 330PF 50V
FB9908 BEAD
1
2
F9901
NC/T4AL 250V
ZD9104
BZT52-B16G
1 2
C9908 NC
ZD9301
NC/BZT52-B5V1
12
R9112
510K 1/4W
R9118
NC
R9358
NC/30R 1/4W
C9117 220nF50V
R9114 110K
+
C9332
NC470UF 25V
R9145 NC/100K 1/8W 1%
R9344
NC/3K OHM 1%
R9906
620K +-1% 1/4W
F9902
1 2
3 4
t
NR9901
2.5R
12
C9336
NC/220N 50V
R9902
620K +-1% 1/4W
R9103
510K 1/4W
R9909
R9361 NC/30R
C9903 470PF 250V
R9138
22 OHM 1/4W
R9345 NC/20K 1%
D9109 SR34H
1 2
+
C9109
470uF 25V
Q9102 2N3904
C9902 470PF 250V
R9105 82K OHM 1%
C9127
1nF 50V
R9307 NC/270K +-1% 1/8W
+
C9111
470UF 25V
R9904
620K +-1% 1/4W
R9127
3.3M 1/4W
R9104 82K OHM 1%
C9125 1NF
U9101
PF6005AS
1 2
3
4 5
6
7
8
BNO FB CS GND OUT
VCC
NC
VCC
+
C9102
2.2UF 50V
C9330
NC/1N 50V
L9901 18MH
1
2
4
3
R9143 NC/100K 1/8W 1%
C9910 100PF 250V
D9111 SR510-22
1
2
C9104
0.1uF 50V
+
C9801
120uF 450V
R9117
NC
U9102
EL817M(X)
1
23
4
R9347
NC/2K
R9901
620K +-1% 1/4W
D9102 SR515
R9122
9.1K OHM
-
+
BD9901 NC/KBJ608G-FUC
2
1
3
4
FB9901 127R
12
C9126 100PF
D9106
IN4148W
R9116
22 OHM 1/4W
+
C9105
10UF50V
U9901
NC/CAP004DG-TL
1 2
3
4 5
6
7
8
NC D1 D1 NC NC
D2
D2
NC
C9110
0.1uF 50V
C9107
3.3NF 500V
C9904 1NF 250V
RV9901 680V
C9906 NC/47pF
C9333
NC/2N2 50V
Q9106 NC/2N7002K
R9907
R9111
10K OHM +-5% 1/8W
D9112 SR510-22
1 2
R9123
43K 1/8W 1%
C9307
NC/1uF
R9101
0.27R 2W
R9110 47R 1%
R9106
82K OHM 1%
L9903 4mH
1
2
4
3
C9335 NC/2N2 50V
R9905
620K +-1% 1/4W
ZD9101 BZT52-B22
1 2
+
C9331
NC/470UF 25V
R9139
NC
FB9302 BEAD
1
2
D9101 SR510-22
1
2
C9901 470nF 275V
R9126
9.31K +-1% 1/8W
C9308 NC/1uF
D9103 FR107G-A0
C9334 NC/100N 50V
CN9902 NC/CONN
1
2
L
N
C9112
0.1uF 50V
R9120
22 OHM 1/4W
+
C9121
470uF 25V
R9113
1K 1/4W
L9101
3UH
C9108 470pF 1KV
R9124
10K OHM +-5% 1/8W
R9142
3.3M 1/4W
D9107
SR515
SG9901
ON/OFFDIM
PS_ON
PS_ON
PS_ON

10. Circuit Diagrams and PWB Layouts

10.1 A 715G7734 PSU

10-1-1 Power

EN 38TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 39

10-1-2 LED Driver

20010_501.eps
LED Driver
A02 A02
2015-08-21
715G7734
LED Driver
Q8601: 357G0763100601 or 357G0763100605
+18V
VLED+
VLED+
LED-
LED-
+12V
R8612 100K
R8608
4.7KOHM +-1% 1/8W
C8603
47nF 50V
C8606
1NF
C8610
22pF 50V
R8653
1.5R 1%
CN8601 NC/CONN
1 2
3
45
R8611 NC
R8604
33R 1/8W 5%
R8603
33K 1/8W 5%
C8607
220pF 50V
R8652
1.2R 1%
R8656
1.2R 1%
R8647
10K OHM +-5% 1/8W
Q8602 2N7002K
D8602 1N4148
R8605 1K 1/8W
C8617
100PF 500V
D8604 IN4148W RHG
CN8602 CONN
1 2
3
4 5 6
78
R8602 NC
R8616
0 OHM +-5% 1/8W
Q8603 DTA144WN3/S
R8617
62K 1/8W 1%
D8601 SR506
1
2
R8606 330K 1/8W 5%
R8601
0R05
C8609
0.1uF 50V
C8602 220nF50V
R8615
22K 1/4W
C8621
0.1uF 50V
U8601 PF7708BS
1 2
3
4
5
6
7
8
LED VCC CS/OVP OUT GND
DIM
GM
FB
ZD8602 BZT52-B18
1 2
+
C8601
330UF 35V
R8654
1.2R 1%
ZD8601 BZT52-B18
1 2
FB8605 BEAD
1 2
C8611
0.47UF 50V
D8603
IN4148W RHG
R8609
10R 1/8W 5%
R8655
1.2R 1%
C8623
NC
C8605
0.1uF 50V
L8602 47uH
+
C8616
NC/220uF 50V
C8604
0.47UF 50V
+
C8612
220uF 50V
Q8601 AOD2922
DIM
OUT
OUT
Vcc2
Vcc2
ON/OFF
Circuit Diagrams and PWB Layouts
EN 39TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 40

10-1-3 Power layout top

20010_502.eps
2015-08-01
715G7734
LAYOUT TOP
U9102
R9101
R8601
SU1
J9112
SU4
D9102
D9107
D9108
L9903
D9110
D9112
J9102
D9111
D9103
SU2
C9102
D9101
J9118
J9110
J9109
J9111
J9116
J9119
J9117
J9101
J9113
SU3
F9901
J9115
D8601
J9107
J9108
J9104
J9120
J9106
J9103
T9101
BD9901
BD9902
DR8
DR10
DR1
MH28
DR3
DR2
DR4
DR7
DR5
DR11
DR6
MH7
C8601
C9109
C9111
C9116
C9121
C9122
C9126
CN8602
CN9902
FB9906
HS9101
L8602
L9101
MH1
MH3
D9105
L9901
NR9901
FB8605
SG9901
SG9902
C9105
C8612
C8616
C9908
R9130
C9331
C9332
L9301
R9907
FB9908
C9101
FB9301
CN9101
C9801
FB9302
Q9101
C9906
FB9901
FB9902
R9908
C9907
C9910
C9902
C9903
RV9901
MH5
F9902
R9909
D8602
CN8601
CN9901
C9904
C9113
MH6
C9901
C9103
MH2
Q9102
Circuit Diagrams and PWB Layouts
EN 40TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 41

10-1-4 Power layout bottom

20010_503.eps
2015-08-01
715G7734
LAYOUT BOTTOM
MH11
MH14
MH19
R9145
R8647
R9342
R9348
R9347
R9109
R9110
R9111
R9114
R9121
R9122
R9123
R9124
R9126
R9131
R9141
R9125
C9336
C8605
C8610
C9106
C9110
C9112
C9117
C9119
C9124
C9127 C9128
R8652
R8653
R8654
R8655
R9112
R9102
R9103
R9104
R9105
R9106 R9107
R9108
R9113
R9115
R9116
R9117
R9118 R9119 R9120
R9138
R9139
R8612
JR9104
JR9101
C9129
C8621
C8602
C8607
C9125
R8611
C8606
C8623
C9140
C9330
C9333C9334
C9335
R8616
R9344
R8615
R9127
R9128
R9142
R9358
R9361
C9108
C9107
C8617
R9903
R9904
C9306
C9307
C9308
R9302
R9304
R9307
Q9306
C9323
JR9105
R9345
JR9107
JR9102
JR9108
R8602
JR9103
R9146
C9104
R9148
R9149
R9150
R9140
R9129
R8604
R8608
R9143
R9144
JR9109
R8603
C8603
U9901
R8656
C8604
C8609
C8611
R8605
R8606
Q8603
R8617
R8609
U8601
U9101
U9301
R9901
R9902
R9905
R9906
MH4
ZD9301
Q8602
Q9305
Q9106
U9103
SG1
SG2
Q8601
D9109
D8604
D8603
D9104
ZD9104
D9106
ZD8601
ZD8602
ZD9101
Circuit Diagrams and PWB Layouts
EN 41TPM16.4L LA 10.
2016-Apr-1
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Page 42

10.2 A 715G6934 PSU

19910_500.eps
Power
A01 A01
2014-06-05
715G6934
Power
C9172 220N 50V
R9107
10K 1/4W
HS9152
NC/HEAT SINK
341
2
F9902
5A 250V
1 2
3 4
Q9181
NC/AOD4185
R9125 1K OHM
+
C9802
NC/68UF 450V
DIM
12V Switch (option)
ON/OFF
FB_1
D9152 SR34
1 2
PS_ON
CN9901 SOCKET
12
R9184
6.8KOHM +-1%
R9108
10 OHM 1/ 4W
!
C9104
2.2NF
R9176 10K 1%
C9158 1uF
+12V'
!
+12V'
R9174 3K9 1/8W 1%
C9159
NC/100N 50V
C9902
470nF 275V
R9164 33ohm 1/4W +/-5%
R9187
NC/ 10K OH M +-5%
HS9101 HEAT SINK
123
4
+22V
R9129 330K 1%
+12V1
!
!
!
R9906 510K 1/4W
D9104
SS1060FL
!
+12V_AUDIO
!
C9920
470PF 250V
Q9183 2N7002K
R9126
1K OHM
PS_ON
R9128
1K 1/8W
D9105
NC/1N4148W
C9106
NC/ 4N 7 50V
U9103 AS431AN-E1
R9186
100KOHM +-5% 1/8W
R9101
0.22OHM +-5%
R9185
10K OHM +-5% 1/8W
+
C9154
470UF 25V
FB9901 BEAD
1 2
ZD9101
NC/BZT52-B30
1 2
CN9101 CONN
2 4 6
8
10 12 14 16
1
3
5 7 9 11 13 15
!
!
!
C9103
NC
3.5Vout R9305=620R R9306=3.3K
+5V
+5V
U9101 PF6003AHS
BNO
1
FB
2
CS
3
GND4OUT
5
VCC
6
NC
7
VCC
8
!
FB9903 BEAD
12
R9907
NC/390K
-
+
BD9901
KBJ608G-FUC
2
1
3
4
FB9905 BEAD
1 2
C9907
NC/47pF
HS9151 HEAT SINK
1 2
3
4
U9901
NC/CAP004DG-TL
NC
1
D1
2
D1
3
NC4NC
5
D2
6
D2
7
NC
8
T9101
POWER X'FMR
1
2
4
5
6
7
8
10
11
L9901 18MH
1
2
4
3
SG9901
NC/DSPL-501N-A21F
C9155 220N 50V
R9104 22OHM 1/8W
L9902 18MH
1
2
4
3
+12V
C9171
22NF 50V
HS9901
NC/HEAT SINK
1
2
C9157
100N 50V
ZD9301
NC/BZT52-B5V1
12
AC-1
!
SG9902
NC/DSPL-501N-A21F
AC-1
!
t
NR9901
2.5R
12
t
NR9902
2.5R
12
C9110 1NF 50V
R9124
150 OHM 1/4W
R9183
NC/100KOHM
C9105
2.2NF
+
C9151 470UF 25V
R9106 47OHM 1/8W
U9102 EL817M(X)
1
23
4
C9111 100N 50V
R9112
3.3M 1/4W
R9111 2M2 5% 1/2W
R9103
10 OHM 1/ 4W
R9113
3.3M 1/4W
R9173
680R 1/8W 1%
R9114
3.3M 1/ 4W
HOT COLD
D9102 SS1060FL
R9102
47K 1/4W
3.5V/5V output (option)
R9163 33ohm 1/4W +/-5%
R9162 33ohm 1/4W +/-5%
R9161
33ohm 1/4W +/-5%
!
+
C9801 82UF 450V
R9105 75K
FB_1
!
R9171
2K OHM
+12V1
+
C9152 470UF 25V
L9101
3UH
!
R9121 150 OHM 1/4W
R9122 150 OHM 1/4W
R9123 150 OHM 1/4W
+12V1
GND1 GND
1
C9912
100PF 250V
D9103 FR107G-A0
C9911
100PF 250V
C9921 470PF 250V
+
C9153 470UF 25V
!
HS-GND
FB9904 BEAD
1 2
!
RV9901 680V
R9127
470 OHM 1/ 4W
!
C9125
100N 50V
+
C9107 22UF 50V
Q9121 BTN5551A3
R9305
NC/ 220R 1%
R9306
NC/2K 1/8W 1%
C9308
NC/ 2N 2 50V
R9302
NC/30 OHM 1/ 4W
C9304
NC/100N 50V
+
C9306
NC/470UF 25V
+
C9302
NC/ 470U F 25V
U9301
NC/AOZ3015AI
PGND
1
VIN
2
AGND
3
VCC4FB
5
COMP
6
LX
7
EN
8
R9303
NC/30 OHM 1/4W
C9182
NC/100N 50V
R9304
NC/10.5K OHM 1%
C9309
NC/ 2N 2 50V
R9301
NC/ 20K 1/ 4W
C9307
NC/220N 50V
L9301
NC/47uH
C9303
NC/220N 50V
FB9301
NC/BEAD
1 2
C9914 220PF 250V
C9913 220PF 250V
C9162
1N5 50V
+
C9112
4.7UF 50V
C9161
1N5 50V
D9121 FMXA-2202S
1
2
3
+
C9121 220uF 50V
+
C9122 220uF 50V
!
+22V
CN9902
NC
L
1
N
2
Q9102
NC/LMBT3906LT1G
C9901
470nF 275V
R9181
NC/100KOHM
D9151 FMEN-220A
1
2
3
+
C9160
NC/4.7UF 50V
C9156 100N 50V
ZD9171
BZT52-B15
1 2
HS9121
NC/HEAT SINK
1 2
3
4
R9182
NC/100KOHM
C9301
NC/ 220N 50V
D9101 FR107G-A0
ZD9121 BZT52-B27
1 2
HS-GND
!
Q9101
TK8A65D
Q9182
NC/2N7002K
HS9122 HEAT SINK
1 2
3
4
FB9902
127R
1 2
F9901
NC/5A 250V
R9109 470 OHM 1/4W
!
!
!
+12V
PS_ON
C9109
2N2 50V
R9175
0 OHM +-5% 1/8W
GND3 GND
1
GND2 GND
1
!
GND5
NC
1
R9905 510K 1/4W
GND4
NC
1
R9904 510K 1/4W
R9172
1K5 +-1% 1/8W
R9903 510K 1/4W
C9108 220P 50V
R9902 510K 1/4W
R9901 510K 1/4W
R9110
100K 1/8W 1%
R9908
NC/390K
C9305
NC/100N 50V
C9123
1NF 500V
C9124
1NF 500V

10-2-1 Power

Circuit Diagrams and PWB Layouts
EN 42TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 43

10-2-2 PFC with TI

19890_503.eps
LED DRIVER
A02 A02
2014-06-05
715G6934
LED DRIVER
R8601
0.05R
+
C8603
220uF 50V
R8623
300K 1/8W 5%
R8605
10ohm +/ -1% 1/ 8W
L8602
NC
R8615
1R2 1%
R8612
33K 1/8W 1%
C8605
100N 50V
R8613
1R2 1%
C8612
47N 50V
L8601
33uH
8
1
4
6
R8606
33K 1/8W 1%
R8617
1R2 1%
C8611
22pF 50V
R8603
100K
C8610
1NF 50V
+
C8604
220uF 50V
D8603 SS1060FL
C8609
220P 50V
R8619
10 OHM
C8607 1uF
C8608 220N 50V
R8604
NC
R8616
1R2 1%
R8608
10K 1/8W
R8607
5.1R 1/ 8W
+
C8601 220uF 50V
FB8601 BEAD
1 2
R8614
1R2 1%
C8606 1uF
R8609
10R 1/ 8W 5%
+22V
ON/OFF
OUT
DIM
OUT
VLED+
VLED-
R8618
1R2 1%
ZD8602
NC/BZT52-B22
1 2
FB8602
NC/BEAD
1 2
R8622
10K 1/8W 1%
C8615
100N 50V
Q8602 LMBT3906LT1G
R8620
2K2 1/8W
C8617
100N 50V
+
C8614
NC/22UF 50V
D8605
NC/1N4148
R8621
1K 1/8W 1%
+12V
R8602
NC / 0R 05 1/ 4W
CN8601 CONN
1
2
3
4
5
6
7
8
9
10
11
12
ON/OFF
VCC
C8613 100pF 50V
VCC
C8616
2.2U F 25V
Q8603 LMBT3904LT1G
VLED+
VLED-
VLED+
VLED­VLED-
VLED-
D8604
SS1060FL
D8602
NC/SR506
D8601
SR506
R8610
4K3 1/8W 1%
R8611
33K 1/8W 1%
Q8601
CYS9240
U8601
PF7708AS
LED
1
VCC
2
CS/OVP
3
OUT4GND
5
DIM
6
GM
7
FB
8
ZD8601
NC/BZT52-B22
1 2
Circuit Diagrams and PWB Layouts
EN 43TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 44
19820_538.eps
2014-06-06
715G6934
LAYOUT TOP
C9107
C9103
D9101
D9103
F9901
U9102
J905
J901
J922
J918
J917
J909
J911
J923
J906
H1
H2
J904
C8614
J916
J915
J902
J914
J908
J921
J924
J910
J912
J913
J903
J919
J920
R8601
R9105
R9101
R9125
R9126
J925
T9101
D8601
D8602
D8605
J926
H3
H4
H5
H6
TP2TP3TP4
TP5
TP6
TP7
TP9
TP8
DR1
MH2
MH1
MH7
MH8
MH6
MH5
MH4
MH3
C8603
C8604
C9907
C9104
C9105
C9112
C9151
C9152
C9153
C9154
C9160
C9121
C9122
C8601
C9302
C9306
C9912
C9911
C9913
C9914
C9921
C9920
CN9902
D9151
D9121
FB9301
FB8601
GND1
GND2
GND3
HS9101
HS9151
HS9121
L8601
L8602
L9101
L9301
L9901
L9902
Q9121
R9907
SG9901
SG9902
HS9901
FB9904
FB9902
HS9122
GND4
GND5
R9111
HS9152
RV9901
R9908
CN8601
C9801
C9802
FB8602
CN9101
NR9902
NR9901
FB9903
FB9905
Q9101
BD9901
FB9901
CN9901
F9902
C9901
C9902

10-2-3 Power layout top

Circuit Diagrams and PWB Layouts
EN 44TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 45

10-2-4 Power layout bottom

19820_539.eps
2014-06-06
715G6934
LAYOUT BOTTOM
SG3
C8611
C8610
C8612
C8608
C8607
C8606
C9106
C9108
C9109
C9110
C9111
C9155
C9161
C9162
C9172
C9171
C9182
C9123C9124
C9125
C9303
C9304
C9305
C9308
C9309
C8609
C9307
R8609
R8605
R8607
R8603 R8604
R8613
R8612
R8606
R8610 R8608
R8614
R8615
R8616
R8617
R9102
R9104
R9106
R9107
R9109
R9103
R9110
R9172
R9174
R9161
R9162
R9163
R9164
R9173
R9171
R9175
R9176
R9181
R9182
R9183
R9184
R9186
R9127
R9128
R9129
R9301
R9302
R9303
R9304
R9305
R9306
R9901
R9902
R9903
R9904
R9905
R9906
U9101
U8601
U9301
R9185
U9901
JR901
JR902
SM2
SM3
SM4
R8611
SM5
C9301
C8613
R8602
R8618
R8619
JR903
R9108
JR904
C9156
C9157
C8615
C8616
C8617
R8620
R8621
R8622
R8623
C8605
C9158
C9159
R9187
R9121 R9122
R9123
R9124
R9112
R9114
R9113
Q9182
Q9183
U9103
SG4
D8603
D9102
D9105
D9152
Q8601
Q9181
ZD9171
D9104
ZD9301
ZD9101
D8604
ZD9121
ZD8601ZD8602
Q9102
Q8602
Q8603
Circuit Diagrams and PWB Layouts
EN 45TPM16.4L LA 10.
2016-Apr-1
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Page 46

10.3 A 715G7574 PSU

20050_500.eps
AC input
A01 A01
2015-11-26
715G7574
AC input
HS9901
HEAT SINK
1 2
C9157 1uF
C9151 1uF
!
C9903
47PF
FB9908
127R
1 2
+
C9102
1UF 50V
LED_OVP
LED_OVP
C9914
220PF 250V
R8611
100KOHM +-5% 1/8W-NC
C9913
220PF 250V
C9305
1N 50V
R9302
3K 1/8W +/-1%
FB9301
127R
1 2
R9304
20R 1%
C9303
100N 50V
L9301
4.7uH
R9305
10K 1/8W 1%
C9154 1uF-NC
R9306
1.96KOHM +-1% 1/8W
+
C9310 22UF 50V
C9306 2N2 50V
C9301
4.7UF 25V
+5.2V
R9303
20R 1%
HV
DIM
PS_ON/OFF
BL_ON/OFF
+12V
VREF
VREF
R8629
10K 1/8W 1%-NC
PS_ON/OFF
CN9101 CONN
2 4 6
8
10 12 14 16
1
3
5 7 9 11 13 15
R9138 100R 1/8W 5%
+
C9125
47UF 50V
R8632
100KOHM +-5% 1/8W-NC
F9901
FUSE
1 2
3 4
!
GND1 GND-NC
1
C8613
3.3NF 500V-N C
C8604
100N 50V
R8613
100R 1/8W 5%
R8614 0 OHM +-5% 1/8W
C9120 1N 50V
C9922 1NF 250V
R9910
4.7M 5% 1/8W
C9811 100N 50V
R8625 30K 1/8W 1%
LA5200 43"
R8604=1. 3R R8605=1. 3R R8606=1. 3R
D9102
SCS160P
12
!
!
+
C9101
22uF50V
!
FB9803 JUMPER
1 2
!
D9804
SCS160P
12
!
!
+
C9121 330uF 35V
R9119
2.2M 1/4W
L9902
12mH
124
3
FB9907
127R-NC
12
C9923 100PF 250V
L9901
8mH
124
3
T9102
POWER X'FMR
1
2
3
4
5
7
8
9
6
11
12
U9105
TL431G-AE2-R
!
L8604
33uH-NC
C9103
10N 50V
R9109 130K 1%
C9130
3.3NF 50V
DIMOUT
HV
VCC_ON
EU5500 43"&40"
R9116=2M2 R R9117=2M2 R R9119=2M2 R C9102=1UF/ 50V R9109=130K R
FB9102 BEAD
1 2
R8603
1.2R 1%
D9104
1N4148W
R9169
2Kohm 1/4W +/-5%
R8630 100R 1/8W 5%
R8631
100KOHM +-5% 1/8W-NC
C9304 100N 50V
U8601
PF7909S
DIMOUT
1
VCC
2
CS
3
OUT
4
GND
5
OVP
6
RT
7
DIM
8
EN
9
FLAG
10
VREF
11
ADIM
12
GM
13
FB
14
U9103 EL817M(X)
12
43
DIMOUT
R9904
330K 1/4W-NC
R9903
330K 1/4W-NC
R9902
750K +-5% 1/4W
R9901
750K +-5% 1/4W
R9906
750K +-5% 1/4W
R9905
750K +-5% 1/4W
L8602 3UH
GND3 GND-NC
1
C8614
3.3NF 500V-N C
EU5500 43" & LA5101 49"
R8604=1. 0R R8605=1. 0R R8606=1. 2R
DV12
R8604
1oHM 1% 1/4W
FLAG
R8612
1K OHM +-5% 1/8W-NC
LED_FB
R8609 0 OHM +-5% 1/8W
C9308
100P 50V
C9921 1NF 250V-NC
LED_FB
+
C9801
47UF 450V
ZD9102 BZT52-B5V1_R1_00001
12
A3D
R9127
10K 1/8W 1%
HOT
COLD
L9100 3UH
R9117
2.2M 1/4W
+12V_A
C8606
470P 50V
+12V_A
R9909
0R05 1/4W
+
C9802
47UF 450V
R8605
1oHM 1% 1/4W
R8610
0 OHM +-5% 1/8W
C9313
4N7 50V/NC
R8628 10K OHM +-5% 1/8W
!
C9126 1uF
C9804 47P 50V
R9814
5K1 1/8W 1%
C9124
100N 50V
R9806
10K OHM +-5% 1/8W
R8606
1.2R 1%
C9806
100N 50V
D9801 MUR460-28
CN9903
CONN-NC
1
2
R9818
18.7K 1/8W 1%
U9802
LD8105GL/NC
ISEN
1
GND
2
VSEN3IREF
4
OUT
5
VCC
6
C9808 100P 50V
U9801 LD7591T
INV1COMP2RAMP3CS
4
ZCD
5
GND
6
OUT7VCC
8
VCC
C9807
220P 50V
R9815 130K 1%
Q9801
TK12A60W
VCC_ON
C9901
470nF 275V
12V
R9802
10R 1/8W 5%
R9803
33R 1/8W 5%
R9813
10K OHM +-5% 1/8W
R9810
470OHM +-5% 1/8W
R9805
47K +-1% 1/4W
R9812 30K 1/8W 1%
C9810
0.47UF 50V
HS8601
HEAT SINK
1 2
3
4
SG9901
DSPL-501N-A21F
C8607 47PF-NC
C9809 47N 50V
Q8601 AOTF4126
!
R8608
10K OHM +-5% 1/8W
A3D
C8605
10N 50V-NC
R9807
1MOHM +-1% 1/4W
R9809 750K 1%
R9804
1MOHM +-1% 1/4W
R8601
0R05
+
C8609
220uF 50V
R8620
1K OHM +-5% 1/8W
R8623
10K OHM +-5% 1/8W
R9811
10K OHM +-5% 1/8W
+
C8608
220uF 50V
R8617
0 OHM +-5% 1/8W
R8607
1.2R 1%
PS_ON/OFF
+12V
!
+24VS
C9128
100N 50V
+
C8610
220uF 50V
C9141
2N2 50V
+VLED
-VLED
+VLED
-VLED
CN8603
CONN
1
2
3
4
5
6
7
8
9
10
11
12
C9135
100N 50V-NC
!
C9139 330P 50V
!
R9155
47 OHM 1/4W
R9134
6.2K OHM +-1% 1/8W
EU5500 40"
R8604=1. 0R R8605=1. 0R R8606=1. 0R
FB9906
127R-NC
1 2
R9153 10K OHM +-5% 1/8W
Q9103 2N7002K
+
C9112 470uF 25V-NC
!
R9149 100K 1/8W 1%
R9105 10R 1/8W 5%
DIM
R9106
33R 1/8W 5%
t
NR9900
1.5R
12
C8612
1NF 50V
L9903
0.25mH
124
3
12V
R9148
10K OHM +-5% 1/8W
R9816
100KOHM +-5% 1/8W
C8611
100N 50V-NC
D8601 TSF20U100C
1
2
3
C9902
220NF 305V
L9801
300uH
1
3
5
4
C9152 1uF-NC
C9133
100N 50V
ZD9106
BZT52-B13G
1 2
Q9109 2N7002K
R9154 10K OHM +-5% 1/8W
Q9107 MMBT3906
FLAG
R9152 1K5 +-1% 1/8W
!
!
VCC
+
C9113
470uF 25V
!
R9103
470 OHM 1/4W
+
C9123 330uF 35V-NC
R9102
470 OHM 1/4W
R9157
47 OHM 1/4W
R9163
47 OHM 1/4W
C9104
2.2NF
D9103
PG1010R
!
R9160
1K 2W
R9159
9K1 1/8W 1%
R9144
470 OHM 1/4W
R9162
100K 1/8W 1%
R9104 82K 2W
R9164
1K 2W
R9129
4.3K OHM 1%
D9101
SARS01-V1
R9124
2K 1/8W 1%
R9146
100 OHM 1/4W
R9808
0R05 1/4W-NC
U9104
EL817M(X)
12
43
D9111
TSF20U100C
1
2
3
R9165
2K 1/8W 5%
R9113
470 OHM 1/4W
D9121
FMXA-2202S
1
2
3
R9114
470 OHM 1/4W
C9131
470pF 1KV
C9153 1uF-NC
R9118
47 OHM 1/4W
R8621
47K 1/4W / NC
-
+
BD9901
TS10K80-01
2
1
3
4
R8622
47K 1/4W / NC
ZD9107
BZT52-B39
1 2
C9119
100PF-NC
+
C9111
470uF 25V
R9145
100 OHM 1/4W
R9135
1R 1/8W 5%
R9130
91KOHM +- 1% 1/8W-NC
C 91 1 8
0. 47UF 50V
R91 66
20K +-5% 1/8W
R9112
3R9 1%
C91 4 3
2N2 50V
R91 07
10K OHM +-5% 1/8W
R9125
2K 1/8W 5%
+
C9122 330uF 35V
R9126 1K 1/8W 1%
C9134
470pF 1KV
R9150
2Kohm 1/4W +/-5%
R9147
220R 1/8W 5%
R9101
0.2R 2W
Q9104
BTB1424AM3
R9167
470 OHM 1/4W
+
C9137
10UF 50V
R9170
20K +-5% 1/8W
R8624
150K 1/8W +/-1%
C9146
2N2 50V
+24VS
12V
+24VS
12V
VCC_ON
OVP
VCC
BL_ON/OFF
D9803
QG806C
R9801
0.15R
L8603
33uH
8
1
4 6
R9151
10K OHM +-5% 1/8W
Q9106
BTC4672M3
C9307
10uF 16V
ZD9101
BZT52-B16G
1 2
C9312
100N 50V
C9311
1UF 16V-NC
C9302
10uF 16V
Q9101
AOTF12N65
C9150
1N 50V
R8633
1K OHM +-5% 1/8W-NC
+5.2V
R9168
330K 1/8W 5%
C9924
470PF 250V
+
C8601
10UF 50V
+
C9115 470UF 25V
R9136 100KOHM +-5% 1/8W
+12V_A
D9107
SR34H-NC
1 2
Q9105
2N7002K
C9117
1UF
C9116
4.7UF 25V-NC
Q9108
AOD4185
R9142
100KOHM +-5% 1/8W
HS9801
HEAT SINK
1 2
3
4
C9144
100N 50V
+
C9114
470UF 25V
R9133 1K OHM +-5% 1/8W
+12V
R9143 330K 1/8W 5%
C9821 1UF 450V
12V
Q9802 BSS127
3
1
2
C9309 10uF 16V
U9901
CAP004DG-TL
NC
1
D1
2
D1
3
NC4NC
5
D2
6
D2
7
NC
8
Q8604
2N7002K-NC
HS9111
HEAT SINK
1 2
3
4
R9173
0 OHM +-5% 1/8W
R9116
2.2M 1/4W
C8603
1UF 16V
D9802
QG806C
D8603
SCS160P-NC
12
C9912
47pF 250V
!
PFC_OVP
R9111
100 OHM 1/4W
C8602
1N 50V-NC
Q8605
2N7002K-NC
GND2 GND-NC
1
SG9902
DSPL-501N-A21F
R8616
33R 1/8W 5%
CN9902 CONN-N C
1
2
U9101
SSC3S121A
FB/OLP
1
BR
2
ST4DRV
5
OCP
6
VCC
7
GND
8
R8627 10K 1/8W 1%
C9148 1uF
!
R9128
100 OHM 1/4W
ZD9103
BZT52-B18
1 2
R8626
150K 1/8W +/-1%
CN9901
AC 2P
1 2
A3D
C9132 1NF
C9911
47pF 250V
R9132
470 OHM 1/4W
C9155 1uF
R9131
470 OHM 1/4W
C9156 1uF
Q8603
AO4482L
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
C9149 1uF
!
U9102
TL431G-AE2-R
!
t
NR9901
1.5R
1 2
U9301
SY8113BADC
BS
1
GND
2
FB3EN
4
IN
5
LX
6
F9902 NC
C9145
100N 50V
RV9901
680V
C9819
470PF-NC
R8615 10K OHM +-5% 1/8W
R8602
1.2R 1%
R8618
270K 1%
R8619 270K 1%
R9821 2Mohm 1/4W +/-1%/NC
R9824 15K 1/8W 1%/NC
R9823 2Mohm 1/4W +/-1%/NC
C9812 470PF 50V/NC
ZD9108
BZT52-B39
1 2
R9822 2Mohm 1/4W +/-1%/NC
C9813 100N 50V/NC
R9825
510OHM +-5% 1/4W/NC
D9810
1N4148W/NC
PFC_OVP
L8601
33uH
2
1

10-3-1 AC input

Circuit Diagrams and PWB Layouts
EN 46TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 47

10-3-2 Power layout top

20030_501.eps
2015-11-12
715G7574
LAYOUT TOP
C8607
U9104
U9103
R8601
R9104
R9101
C9137
C9119
C9123
R9160
R9164
J919
F9902
J926
J901
J928
SU2
SU3
SU4
C8601
C9903
J932
J913
J907
J912
J904
J903
J906
J909
D9801
J908
J910
J914
J921
J915
J905
J916
J911
J918
J902
R9801
D9103
J920
J923
J917
C9115
C9122
C9801
C9802
J930
J929
J933
J931
C9819
C9132
SU1
J925
C9310
T9102
J927
J922
J924
MH27
MH3
MH22
MH23
MH20
MH17 MH18
MH5MH6MH7MH8
MH19
MH9
MH16
MH21
MH1
MH30
MH31
MH32
MH24
C8608
C9113
C9125
C9112
CN9902
CN9903
L9100
C9821
C9111
D9121
MH28
MH29
MH26
RV9901
L9902
D9111
C8609
HS9801
FB9907
CN8603
C8610
CN9101
FB9803
L9801
GND2
FB9301
D8601
C9901
MH25
L9903
Q9101
Q9801
GND1
F9901
GND3
C9913
C9914
C9104
L9901
HS9901
BD9901
C9924
C9922
C9923
FB9908
NR9901
NR9900
HS9111
C9902
FB9906
C9921
HS8601
L8601
FB9102
SG9901
SG9902
L8602
CN9901
Q8601
C9101C9102
C9114
C9121
L9301
L8603
L8604
C9911
C9912
D9101
Circuit Diagrams and PWB Layouts
EN 47TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 48

10-3-3 Power layout bottom

20050_502.eps
2015-11-12
715G7574
LAYOUT BOTTOM
C8612
C8603
C9103
C9118
C9303
C9305
C9306
C9139
C9806
C9809
C9810
C9808
R8617
R8616
R9169
R9170
R8618
R9112
R9107
R9142
R9125
R9168
R9302
R9306
R9305
R9303
R9304
R9802
R9803
R9804
R9806
R9807R9809
R9812
R9813
R9814
R9815
R9818
R9144
R9145
R9103
R9149
R9146
R9136
C9117
R9124
R9903
R9906
C9128
C9141
R9130
SEN1
SEN3
R9113
R9114
R9157
R9163
U9801
C9804
R8604
R8605
R8621
R8622
R9162 R9165
C9304
Q8603
C9134
U9901
C8605
C8606
C9130
C9143
C9146
C9150
C9133
C9807
C9116
C9131
R8619
R8620
R8612
R8623
R9109
R9126
R9129
R9133
R9143
R9159
R9152
R9134
R9148
R8606
R9111
R9102
R9118
R9155
R9167
R9150
R9135
R9166
R9151
R9810
R9805
R9105
R9106
R9147
RJ903
RJ902
RJ901
RJ904
R8607
R8602
R9173
R9138
R8615
R8603
R9132 R9131
C8604
R8609
C9811
R8608
R8610
R8611
R8613
R8614
R8624
R8625
R8626
R8627
R8628
R8629
R9811
R9816
R9808
R8630
C9311
R9116
R9904
D9802
R9153
C8611
RJ907
RJ909
RJ911
R8631
R8632
R8633
U9102
U9105
Q8604
Q8605
Q9103
Q9105
Q9109
Q9802
C9144
C9145
R9154
C8602
R9128
R9910
RJ906
R9127
C9148
C9149
C9151
C9152
C9153
C9154
C8613
C8614
C9155
C9156
C9157
C9308
C9309
C9302
C9307
U9101
R9117R9119
SEN4SEN5
RJ913
C9126
C9312
C9120
C9301
C9124
C9812
C9813
R9824
R9821
R9822
R9823
R9825
R9901
R9902
R9905
D9803
RJ905
RJ908
RJ910
RJ912
R9909
C9135
C9313
MH11MH10
MH12MH13
MH15MH14
Q9106
Q9108
D9107
Q9104
U8601
Q9107
U9301
D8603
D9102
D9804
ZD9101
ZD9102
ZD9106
ZD9107
ZD9108
D9104
D9810
U9802
ZD9103
Circuit Diagrams and PWB Layouts
EN 48TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 49

10.4 B 715G7805 SSB

20010_504.eps
System Power
B01 B01
2015-09-21
715G7805
System Power
R1
R2
R778
4.7K 1/16W
R787
4.7K 1/16W
3V3SB
INVERTER ON/OFF H: ON L: OFF
INVERTER ON/OFF
90mil
+5V Switch
Low active
CO-LAY
+5V_SWQ701
AO3401A
CN701
CONN
2 4 6
8
10 12
1
3
5 7 9 11
+5VSB
12V_AMP6
12V_AMP
BL_ON/OFF
ZD703
NC/ BZ T52-B3V6
1 2
AC_DET#
R2
R1
CORE POWER 1.2V
AC_Of f10
AC_Of f
FB703 120R
1 2
+12V
R719
0R051/8W
AVDD1V2
FB702
120R
1 2
3V3SB
FB706
120R 3A
1 2
AC_DET
R788
4.7K 1/16W
Q705
MMBT3904
AC_DETAC_DET#
R714
10K +-1% 1/16W
C714
NC/ 100N 16V
+
C748
100UF 16V
R717
10K +-1% 1/16W
PS_ON
L702
2.2uH
C712
2.2UF
BL_DIMMING
C710
4.7UF 10% 10V
VCCK17
C730
10UF 6. 3V 20%
+5VSB
L701
2.2UH
6/17
R723
NC 100R 1/ 16W 5%
GND4,5,6,7,8,9,10,11,12,13,14,15,16,17,18
OPWRSB
VCCK
DVDD3V34,5,6,8,9,10,11,13,15,16,17,18
+5V_SW
DVDD3V3
R725
NC 10K +-1% 1/ 16W
+12V
BL_ON/OFF
BL_ON/OFF14
+5VSB
BL_DIMMING
R722
NC 0R05 1/16W
3V3SB
BL_DIMMING
R710
51K 1/16W 5%
+5V_SW9,10,11,12,15
AVDD1V2
DVDD3V3
R709
22K 1%
+12V10
+5V_SW
R779 1K 1/16W 5%
+5VSB
R713
2.2K 1%
+5VSB7,9,16
VCCK
+12V
R724 NC 10K +-1% 1/16W
R786
1K 1/16W 5%
3V3SB4,8,10,13,14,15
DVDD3V3
Q703
LMBT3904LT1G
AVDD1V28,13,15
+5VSB
Q702
NC SM4310PSKC
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
OPWRSB4
INVERTER_ON_OFF
BL_ON/OFF
Q707
MMBT3904
BL_DIMMING14
3V3SB
ZD702
BZT52-B3V6
1 2
5/28
BL_DIMMING
BRIGHT ADJUST
Max:3.3V Min: 0V
Low active
U703 M5723B-33F61U
EN1
1
IN1
8
AGND
2
LX
10
AGND
4
EN2
5
FB1
3
OUT2
7
IN2
6
PGND9tGND
11
R780
4.7K 1/16W
C706
1UF 10V
C708
NC/ 4. 7U F 10% 10V
R706
100K 1%
R749
36K 1%
C745
1UF 10% 16V
C747
22UF 10V
+
C707
100UF 16V
L703
4.7uH
ZD701
NC/ LUDZS5.1BT1G
1 2
C731
100NF 16V
AC_Off
R746 0R 05 1/ 16W
U705
G5695T11U
VIN
1
GND
2
EN3VFB
4
LX
5
R751
40.2K 1/16W 1%
VCCK
R747 100K 1%
R748
13K 1/10W
R752 0R051/8W
C746 22UF 10V
R750
12K 1% 1/16W
C721
2.2UF
C742
100pF 50V
U706
SY8104ADC
LX
5
FB
1
EN
2
GND3IN
4
BS
6
C722
10UF 6. 3V 20%
C743
0.1uF 50V
C74410N 50V
R729
82K 1%
BRIGHT_ADJ
Pre_12V
R730
18Kohm 1/16W +/ -1%
Pre-12V_AMP
R1
12V TO 5VSB
AC _ D E T
R728
0R05 1/16W
L = > AC_OFF_DET
H = > AC_ON
AC Detect
C723
NC 10U F 6. 3V 20%
3.3A
R718 10K +-1% 1/16W
R2
DVDD3V3
+5V_SW
Pre_12V Pre-12V_AMP
Control Interface
LO = > POWER_ON
Main power On/Off control
HI = > POWER_OFF
L = > DC_OFF
+
C719
100UF 16V
H = > POWER_ON
BRIGHT_ADJ
PS_ON /STAND BY
INVERTER_ON_OFF
R704 100R 1/16W 5%
C726 NC/22uF 10V
C725
NC/ 10U F 10V
C705
100NF 16V
AC_DET10
R785
100R 1/10W 5%
12V_AMP
OPWRSB
PS_ON
R739
4.7K 1/16W
3V3SB
R705
1K 1/16W 1%
Q708
BC847C
R738
4.7K 1/16W
FB701 120R
1 2
STANDBY
INVERTER_ON_OFF BRIGHT_ADJ
C713
1UF 10% 16V

10-4-1 System Power

Circuit Diagrams and PWB Layouts
EN 49TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 50

10-4-2 Peripheral

20010_505.eps
Peripheral
B02 B02
2015-09-21
715G7805
Peripheral
1Gb for BZ
C462 NC/ 100NF 16V
ORESET#
3V3SB
R477 16K 1%
Flash_WP#
R479
22K 1%
PACLE
OPCTRL0
OPWRSB
U0TX U0RX
U405 W29N01GVSIAA
NC
1
NC
2
NC
3
NC
4
NC
5
NC
6
RB
7
R
8
E
9
NC
10
NC
11
VDD
12
VSS
13
NC
14
NC
15
CL
16
AL
17
W
18
WP
19
DNU
20
NC
21
NC
22
NC
23
NC24VSS
25
NC
26
NC
27
NC
28
I/O0
29
I/O1
30
I/O2
31
I/O3
32
NC
33
VCC
34
NC
35
VSS
36
VDD
37
DNU
38
VCC
39
NC
40
I/O4
41
I/O5
42
I/O6
43
I/O7
44
NC
45
NC
46
NC
47
VSS
48
FB409 120R
1 2
OSDA1 11,18
OSCL1 11,18
OSCL1 OSDA1
OSCL1 OSDA1
X401
24MHz
1
24
3
24MHz CRYSTAL
TXC
3V3SB
UART Port 0
XTALO
HS401
HEAT SINK
1
2
OPCTRL1
OPCTRL0
LED_PWR_Blue
LED_POWER_RED
R473
0R05 1/16W
R474
0R05 1/16W
PARB#
R170
100R 1/ 16W 5%
POOE#
R171
100R 1/ 16W 5%
OPCTRL1
POCE1#
ZD109
AZ5123-01H
12
ZD110
AZ5123-01H
12
OSDA0
OSCL0
POWE#
10mil
NAND Flash
ICE mode + 24M + serial boot
BGA Strapping
OPCTRL0OPWRSBPACLEOPCTRL1
ICE mode + 27M + serial boot
ICE moce + 24M + ROM to Nand boot
X
X
X
X
ICE moce + 27M + ROM to Nand boot
1
0
1
00
0
0
01
1
0
0
AVDD10_LDO
PACLE
U401B
MT5561LVNT
PDD0
G2
PDD1
G4
PDD2
K3
PDD3
G3
PDD4
H3
PDD5
J6
PDD6
G1
PDD7
J3
PARB#
K4
POOE#
J1
POCE1#
J2
POCE0#
J4
PACLE
K1
PAALE
K2
POWE#
J5
OSDA1
F5
OSCL1
F4
OSCL0
R5
OSDA0
P5
ORESETB
W10
OPWRSB
T2
OIRI
T3
U0RX
U2
U0TX
U1
XTALO
W20
XTALI
V19
AVDD10_LDO
Y10
AVDD33_REG_STB
T17
FSRC_WR
A20
TP409
I2C & UART Interface
HI = >WP
LO = >WRITE
SYSTEM EEPROM
I2C ADDRESS "A0"
PDD1
PDD2 PDD0
PDD3
PDD4
PDD6 PDD5
PDD7
AVDD33_REG_STB
PAALE
U406
M24128-BRMN6TP
E0
1
E1
2
E2
3
VSS
4
SDA
5
SCL
6
WC
7
VCC
8
20mil
TP401
FSRC_WR
STRAPPING
C490 68PF 50V
C491 68PF 50V
2015/08/04 : U406_эΘ356G113317400T_SO-8 for G7805M0B-B00
OSCL0 OSDA0
U0RX
U0TX
SYS_EEPROM_WP
GPIO Interface
5/28
XTALI
R423
1Kohm 1/16W +/-1%
R418
10K +-1% 1/16W
R173 100R 1/ 16W 5%
R419 NC / 10K 1/ 16W 5%
R172 100R 1/16W 5%
R414
10K +-1% 1/16W
C402
4.7U F 10% 10V
C405
100NF 16V
R425
0R05 1/16W
R411
4.7K 1/16W
R415 10K +-1% 1/16W
R407
4.7K 1/16W
C404
100NF 16V
R412
4.7K 1/16W
R421
4.7K 1/16W
R420
10K +-1% 1/16W
R417 NC / 10K 1/ 16W 5%
R422
1Kohm 1/16W +/-1%
Heat Sink
R416
NC / 10K 1/ 16W 5%
CN402
CONN
1 2
3
3V3SB
DVDD3V3
DVDD3V3
LED_POWER_RED 10,14 LED_PWR_Blue 10,14
DVDD3V3
3V3SB
LED_POWER_RED LED_PWR_Blue
OPWRSB 3
SYS_EEPROM_WP 14
3V3SB
GND3,5,6,7,8,9,10,11,12,13,14,15,16,17,18
3V3SB3,8,10,13,14,15
OSCL0 6
OSDA0 6
DVDD3V33,5,6,8,9,10,11,13,15,16,17,18
OIRI 10
U0TX 15,16 U0RX 15,16
C406 15PF 50V
XTALO
C403
100NF 16V
033G3802 3 : high 6.0mm 311GW200G03BAL : high 11mm
R403
4.7K 1/16W
C401
100NF 16V
R404
4.7K 1/16W
R402
4.7K 1/16W
R405
4.7K 1/16W
C407
15PF 50V
R401
4.7K 1/16W
DVDD3V3
DVDD3V3
DVDD3V3
U0TX
U0RX
ORESET#
XTALI
POCE1#
POOE#
PAALE
PACLE
PDD2
PDD0
PARB#
POWE#
OPWRSB
PDD6
PDD3 PDD5 PDD7
PDD4
PDD1
OIRI
SYS_EEPROM_WP
OPWRSB
RESET Circuit
AVDD33_REG_STB
POCE0#
OIRI
OSDA0
OSCL0
Circuit Diagrams and PWB Layouts
EN 50TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 51

10-4-3 Audio A-in/I2S/HP

20010_506.eps
Audio A-in/I2S/HP
B03 B03
2015-09-21
715G7805
Audio A-in/I2S/HP
C602NC 22N F 25V
FB611 NC 30R
12
C601NC 22N F 25V
OUTR
OUTL
OUTL 6
OUTR 6
+
C650
NC 100U F 16V
+
C651
NC 100U F 16V
OUTL
C608
1UF 25V
R627
NC 22K 1/16W
R628
NC 22K 1/16W
OUTR
OUTL
I2C & UART Interface
U0TX
AL0O
U0RX
OSCL0
OSDA0
CN602
PHONE JACK
1
2
3
4
5
6 7
ARC_SPDIF
ARC_SPDIF 16
Audio Input Interface
I2S Interface
FB610 120R
1 2
C663 10N 50V
R637
4.7K 1/16W
FB608 120R
1 2
FB609 120R
1 2
C662
10N 50V
HP_DET#
C664 NC/ 100N 16V
DVDD3V3
C687
22PF 50V
R603
22R 1/16W 5%
R604
22R 1/16W 5%
C605
NC/33P 50V
R602
22R 1/16W 5%
C606
NC/33P 50V
C603
NC/33P 50V
C604
NC/33P 50V
R601
22R 1/16W 5%
CVBS_L_IN
CVBS_R_IN
YPBPR_L_IN 8
YPBPR_R_IN 8
AOLRCK 6 AOSDATA0 6
AOMCLK 6 AOBCK 6
U0TX 4,15,16
OSDA0 4,6
OSCL0 4,6
U0RX 4,15,16
GND3,4,6,7,8,9,10,11,12,13,14,15,16,17,18
PreAmp output for Headphone
H = > H P Detect
EMI Solution
10.5 mm
HP Detect
HPOUT_LT
HPOUT_RT
L = > Normal
Grounding Grounding
MCLK
8.5mm
Audio Line Out
C660
6.8NF 50V
C661
6.8NF 50V
SPDIF_OUT
SPDIF_OUT 9
R625
10 OHM 1/10W
CVBS_L_IN 8
CVBS_R_IN 8
CVBS_R_IN CVBS_L_IN
R626
10 OHM 1/10W
AL0O
AR0O
HPR_IN
HPL_IN
HPR_IN 6
HPL_IN 6
A
B
CN605
NC CONN
2 1 4
3
AR0O
U401C
MT5561LVNT
AIN_L0
U20
AIN_L1
V20
AIN_L2
T20
AIN_L3
T19
AIN_R0
R20
AIN_R1
R17
AIN_R2
R19
AIN_R3
R18
AL0_ADAC
R16
AR0_ADAC
P16
AL1_ADAC
T18
AR1_ADAC
U19
ASPDIFI
F16
ASPDIFO
R4
AOMCLK
R2
AOBCK
R1
AOLRCK
P3
AOSDATA0
R3
AOSDATA1
T4
VMID_AADC
T16
AVDD33_ADAC
M16
AVDD33_AADC
M14
AVDD33_CAP
L15
All Path Grounding(20mil)
15mil
HP_DET# 10
HP_DET#
FB405 120R
1 2
SPDIF_OUT
TP408 TP
DVDD3V3
DVDD3V33,4,6,8,9,10,11,13,15,16,17,18
FB406 120R
1 2
R678
0R05 1/16W
DVDD3V3
TP404
TP
ARC_SPDIF
VGA_IN_R VGA_IN_L
VGA_IN_L
VGA_IN_R 7 VGA_IN_L 7
VGA_IN_R
AVDD33_AADC
HPOUT_RT
HPOUT_LT
YPBPR_L_IN
YPBPR_R_IN
AOLRCK
AOMCLK AOBCK
AOSDATA0
C684 22uF 6.3V
C688
22uF 6.3V
AVDD33_ADAC
AOBCK
AOMCLK
AOSDATA0
AOLRCK
BCK LRCK
SDATA0
AVDD33_CAP
C607
100NF 16V
YPBPR_R_IN
OUTR
YPBPR_L_IN
VMID_AADC
FB612 NC 30R
12
C645
330pF 50V
C646 47pF 50V
R615 27K 1/16W 5%
R622
10K +-1% 1/16W
C643 47pF 50V
AR0O
AL0O
OUTL
OUTR
Grounding
R623
10K +-1% 1/16W
R620 27K 1/16W 5%
HPR_IN
C647
2.2UF
Grounding
R617
10K +-1% 1/16W
PreAmp output for Line out
C648
330pF 50V
R618 10K +-1% 1/16W
C644
2.2UF
Gain= -R2/R1=
-10/10=-1
HPL_IN
Circuit Diagrams and PWB Layouts
EN 51TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 52

10-4-4 Speaker Amp

20010_507.eps
Speaker Amp
B04 B04
2015-09-21
715G7805
Speaker Amp
FB605
120R
1 2
R607
18R 1/10W 5%
C626
470NF 16V
FB604
120R
1 2
R608
18R 1/10W 5%
C627
330pF 50V
FB606
120R
1 2
C629
1UF 16V
C619
470NF 16V
L602 10uH
R631
33R 1/16W 5%
R632
33R 1/16W 5%
C632
330pF 50V
AOBCK
C631
470NF 16V
OUTB
AOSDATA0
OSDA0
L603 10uH
HPL_IN
C618
330pF 50V
FB607
120R
1 2
L+
C622
330pF 50V
L601 10uH
R605
18R 1/10W 5%
R606
18R 1/10W 5%
CN601
CONN
1
2
3
4
5 6
C621
470NF 16V
L604 10uH
OSCL0
AMP_RESETN
OUTC
HPR_IN
TP063
TP065
AOMCLK
ADR
AOLRCK
OUTA
HP_AC_MUTE
OUTA
OUTD
AMP_PDN
OUTC
5/28
4Pin 2.0mm
311GW200A04ABL 311GW200A04AAL(Vertical) 311GW200A04AAX(Vertical)
HS601
NC HEAT SINK
1
2
+
C609
100uF 25V
C614
10UF 6. 3V 20%
C630 1UF 25V
C616
100nF 50V
R609 10K +-1% 1/16W
C638
4.7nF 50V
C62333nF50V
C636
1UF 25V
R614
18.2K OH M +-1% 1/16W
R610
470R 1/ 16W 5%
C624 33nF50V
U601
TAS5729MD
GND
1
OUTA
2
BSTA
3
PVDD
4
PWM1
5
PWM2
6
HPIL
7
HPOL
8
HPOR
9
HPIR
10
HPVSS
11
CN
12
AVDD_REG2
37
SSTIMER
38
HP_SD
39
GVDD_REG
40
PVDD
41
BSTD
42
OUTD
43
GND
44
OUTC
45
BSTC
46
BSTB
47
OUTB
48
GND
36
GND
35
TEST
33
DVDD
34
RESET
32
NC
31
SCL
30
SDA
29
SDIN1
28
SCLK
27
LRCLK
26
PDN
25
CP
13
HPVDD
14
GND
15
FLTM
16
FTLP
17
AVDD_REG1
18
AVDD
19
ADR
20
MCLK
21
ROSC
22
GND
23
DVDD_REG
24
E-Pad
49
C637 47nF 16V
C615
10UF 6. 3V 20%
C610
10UF 6.3V 20%
FB603 120R
1 2
C633
2.2nF 50V
R613
10K +-1% 1/16W
C62833nF50V
R611
1K 1/16W 1%
C642
4.7UF 10% 10V
C612
100NF 16V
C613
100NF 16V
C625 33nF50V
OUTL OUTR
C639
4.7nF 50V
C617
100nF 50V
C634 1UF 25V
50mil
R612
470R 1/ 16W 5%
C611
100NF 16V
R616 10K +-1% 1/16W
C635100NF 16V
C641
47nF 16V
DVDD3V3
AMP3V3PVDD
12V_AMP
DVDD3V3
AMP3V3
AMP3V3
AMP3V3
AMP3V3
PVDD
R-
AMP3V3
AMP3V3
PVDD
OSCL0 4
OSDA0 4
12V_AMP
GND3,4,5,7,8,9,10,11,12,13,14,15,16,17,18
HP_AC_MUTE 9
DVDD3V33,4,5,8,9,10,11,13,15,16,17,18
12V_AMP3
AOLRCK 5
AOBCK 5
AOMCLK 5
AOSDATA0 5
HPL_IN 5 HPR_IN 5
SPK_MUTE(OPWM4-->GPIO5) H: AMP worlable L: AMP Power dow n
AMP Mute
L+
GPIO & I2C Control
L
R+
AOBCK
AOMCLK
AMP_MUTE
AOSDATA0
AMP_MUTE 14
AOLRCK
R-
L-
L­R+
Heat Sink
I2S Interface
10mil
10mil
R
+
C690
100uF 25V
HPL_IN HPR_IN
FB602
120R
1 2
Q602
NC MMBT3904
C691 100NF 16V
R633
NC 10K 1/ 16W 5%
PVDD
AMP_PDNAMP_MUTE
R635
NC 22R 1/16W 5%
C640
2.2UF
R634 NC 10K 1/ 16W 5%
DVDD3V3
AMP_MUTE
AMP_PDN
OSDA0 OSCL0
HP_AC_MUTE
OUTR
OUTL
OUTR 5 OUTL 5
OUTB
OUTD
C620
1UF 16V
Circuit Diagrams and PWB Layouts
EN 52TPM16.4L LA 10.
2016-Apr-1
back to
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Page 53

10-4-5 VGA

20010_508.eps
VGA
B05 B05
2015-09-21
715G7805
VGA
R1208
NC/ 0R 05 1/ 16W
R1209
NC/ 0R 05 1/ 16W
C1203
NC/ 10N 50V
R1211
NC/ 0R 05 1/ 16W
TP1101 TP1102 TP1103
VGA_RIN
TP1104
C1206
NC/ 1.5nF 50V
TP1105
C1204
NC/ 10N 50V
TP1106
C1210
NC/ 10N 50V
TP1107
TP1108
VGACOM
C1207
NC/ 10PF 50V
C1208
NC/ 10PF 50V
C1209
NC/ 10PF 50V
TP1109
VGA_R
CN606
NC/PHONE JACK
1
2
3
4
VGA_G
TP1111
TP1110
VGA_SOG
R1210
NC/ 0R05 1/16W
VGA_SDA
VGA_HSYNC
VGA_SCL
ZD1101
NC/AZ5123-01H
12
R1207
NC/ 0R 05 1/ 16W
ZD1102
NC/AZ5123-01H
12
ZD1103
NC/AZ5123-01H
12
ZD1104
NC/AZ5123-01H
12
R1220
NC/4.7K 1/16W
R1219
NC/4.7K 1/16W
+5VSB
088G353GFF1ACL
R1201
NC/ 75R 1/ 16W 1%
Use CN101 #7(GND) close this trace
R1212 NC / 100R 1/ 16W 1%
VGA IN (V/T)
ZD1123
NC/AZ5123-01H
12
R1202
NC/ 75R 1/ 16W 1%
ZD116
NC BZ T52-B5V6S
1 2
ZD1105
NC/AZ5123-01H
12
C1205
NC/ 10N 50V
VGA_TX
ZD115
NC BZ T52-B5V6S
1 2
VGA_RX
ZD1106
NC/AZ5123-01H
12
R1205
NC/ 100R 1/16W 1%
R1203
NC/ 75R 1/ 16W 1%
R1217
NC/100R 1/16W 5%
GND3,4,5,6,8,9,10,11,12,13,14,15,16,17,18
+5V_SW3,9,10,11,12,15
AVDD1V23,8,13,15
AVDD1V2
+5VSB3,9,16 3V3SB3,4,8,10,13,14,15
12V_AMP
VCCK
R1227 NC/30K OHM
12V_AMP3,6
+5V_SW
R1228 NC/30K OHM
C1201
NC/2.2uF 10V
3V3SB
+5VSB
+12V
ZD1107
NC/AZ5123-01H
12
C1202
NC/2.2uF 10V
BLUE 8.5mm
DVDD3V33,4,5,6,8,9,10,11,13,15,16,17,18
+12V3,10
VCCK3,17
DVDD3V3
TP1116
VGA_IN_L
NC/470pF 50V
C1212
NC/470pF 50V
C1211
ZD1111
NC VPOR T 0603100KV05
1 2
ZD1108
NC/AZ5123-01H
12
ZD1110
NC VPOR T 0603100KV05
1 2
TP1117
R1218
NC/100R 1/16W 5%
R1206
NC/ 100R 1/16W 1%
R1204
NC/ 100R 1/16W 1%
VGA_IN_R
VGA_IN_L 5
VGA_IN_R 5
R2001
NC 4.7K 1/16W
+5VSB
R2002 NC 4.7K 1/16W
VGA_VSYNC
VGA_IN_R VGA_IN_L
R2006 NC 4.7K 1/16W
R2005
NC 4.7K 1/16W
VGA_VS
VGA_SDA
VGACOM
SOG0
VGA_SCL
VGA_BIN
VGA_HS
VGA_RIN
VGA_GIN
VGA_SCL8 VGA_SDA8 VGA_VS8 VGA_HS8 VGA_BIN8 SOG08 VGA_GIN8 VGACOM8 VGA_RIN8
VGA_VSYNC
VGA_HSVGA_HSYNC
VGA_VS
CN101
NC/D-SUB 15P
1
6
2
7
3
8
4
9
5
11 12 13 14 15
10
1716
18 19
VGA_BIN
SOG0
VGA_GIN
Circuit Diagrams and PWB Layouts
EN 53TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 54

10-4-6 Video YPbPr/CVBS

20010_509.eps
Video YPbPr/CVBS
B06 B06
2015-09-21
715G7805
Video YPbPr/CVBS
AV_AudioRIN
PR1_DET
AVDD33_RGB_STB
SOY1 Y1P
PR1P
PB1P
COM1
AVDD33_VIDEO_STB
R1001
0R05 1/10W
R1002
100R 1/16W 5%
C1003 2.2UF
SOY1
YPbPr Audio Input
YPBPR_R_IN YPBPR_L_IN
C1004 2.2UF
ZD105
NC/ AZ 5125-01H . R 7G
12
ADCINP_DEMOD
IF Interface
ADCINN_DEMOD
R1003
75R 1/16W 1%
ADCINP_DEMOD
C1001 47pF 50V
DVDD3V3
DVDD3V33,4,5,6,9,10,11,13,15,16,17,18
Analog 1.2V Pow er
AV_CVBS_IN
FB102120R
1 2
ZD107
AZ5125-01H.R7G
12
ZD108
AZ5125-01H.R7G
12
ZD106
AZ5125-01H.R7G
12
AV_AudioLIN
C118NC 1N 50V
AV_R_In
CVBS0P
CVBS_R_IN CVBS_L_IN
CVBS_R_IN
CVBS_L_IN
C117NC 1N 50V
R107
NC 75R 1/16W 1%
AV_L_In
CVBS_L_IN 5
CVBS_R_IN 5
R113
NC 75R 1/16W 1%
TP407TP
VGA_RIN
ADCINN_DEMOD
VGA_GIN
SOG0
PR_DET
C1214 330PF 50V
VGA_BIN
C1215 330PF 50V
DVDD3V3
CVBS0P
C105 1UF 10V
VGA_HS
VGA_VS
VGA_SDA
VGA_SCL
C103 1UF 10V
C101
NC/100N 16V
C102
100NF 16V
R1005
NC/ 0R 05 1/ 16W
C104
100NF 16V
R1302
33R 1/16W 5%
R114
NC 75R 1/16W 1%
CVBS Audio Input
AVDD1V2
3V3SB 3V3SB
Control Interface
AVDD1V2
3V3SB
PR1_DET10
GND3,4,5,6,7,9,10,11,12,13,14,15,16,17,18
3V3SB3,4,10,13,14,15 AVDD1V23,13,15
YPBPR_L_IN 5
YPBPR_R_IN 5
ADCINN_DEMOD 11 ADCINP_DEMOD 11
IFAGC_Scaler 11
R1301
33R 1/16W 5%
VGACOM
CVBS_COM
ZD101
NC/ AZ 5125-01H . R 7G
12
A
B
C
CN102
RCA JACK 7P
2 1 4
3
6 5
7
ZD102
NC/ AZ 5125-01H . R 7G
12
ZD104
NC/ AZ 5125-01H . R 7G
12
ZD103
NC/ AZ 5125-01H . R 7G
12
8.5 mm
YPbPr Video/Audio Input
U401D
MT5561LVNT
VGA_SCL
V5
VGA_SDA
V4
VSYNC
V10
HSYNC
U10
BP
V11
SOG
U11
GP
W12
COM
Y12
RP
V12
SOY1
U12
Y1
V13
COM1
U13
PB1
W14
PR1
Y14
SOY0
V14
Y0
U14
COM0
V15
PB0
U15
PR0
W16
VDAC_OUT
W17
CVBS1
Y17
CVBS0
V18
ADCINP_DEMOD
W18
ADCINN_DEMOD
Y19
AVDD33_RGB_STB
V17
AVDD33_VIDEO_STB
U17
AVDD12_DEMOD
Y20
AVSS33_CLN
N14
CVBS_COM
Y16
AVSS33_RGB
T12
AVSS33_VIDEO
T14
IF_AGC
J15
RF_AGC
L16
20mil 20mil
AVDD12_DEMOD
20mil
E
A
B
C
D
CN116
NC/RCA JACK
1
2
3
4
5
6
7
8
9
10
11
12
13
10.5 mm
Side CVBS Video/Audio input
VGA_RIN
SOG0
VGA_SCL
VGA_BIN VGA_GIN
VGA_VS
VGA_SDA
R122
NC 100R 1/ 16W 5%
VGA_HS
VGACOM
IFAGC_Scaler
Control Interface
R102
NC 10R 1/16W 1%
YPBPR_R_IN
R106
NC 0R05 1/10W
R117
NC 100R 1/ 16W 5%
PR_DET
PB1P
VGA_SCL 7 VGA_SDA 7 VGA_VS 7
R109
NC 100R 1/ 16W 5%
VGA_HS 7 VGA_BIN 7
C113
NC 10PF 50V
PR1P
SOG0 7
R110
NC 0R05 1/10W
Y1P
VGA_GIN 7
C106 NC 1. 5nF 50V
VGACOM 7 VGA_RIN 7
R118
NC 30K OHM
R108
NC 0R05 1/10W
COM1
R112
NC 100R 1/ 16W 5%
C114 NC 10N 50V
PB_IN_1
Y_IN_1
C109
NC 10PF 50V
R105
NC 100R 1/ 16W 5%
C108 NC 10N 50V
PR_IN_1
R115 NC 0R05 1/10W
C115 NC 2.2uF
YPbPr1R_IN
YPbPr1L_IN
R119
NC 30K OHM
C110 NC 10N 50V
YPBPR_L_IN
C116 NC 2.2uF
C112
NC 10PF 50V
C111 NC 10N 50V
TP405 TP
AVDD33_VIDEO_STB AVDD33_RGB_STB
H = > Pr Plug-in (YPbPr)
For Component/Composite Detect
L = > Pr Plug-out (AV)
AVDD12_DEMOD
IFAGC_Scaler
AVSS33_CLN AVSS33_RGB
AVSS33_VIDEO
PR1_DET
R120
NC/0R05 1/16W
10mil
C1002
47nF 16V
Mer ged Analog 3.3V Power
R121 NC 47K 1/16W 5%
R1004
30K OHM
R1006
30K OHM
Circuit Diagrams and PWB Layouts
EN 54TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 55

10-4-7 SPDIF/ Mute contorl

20010_510.eps
SPDIF/ Mute contorl
B07 B07
2015-09-21
715G7805
SPDIF/ Mute contorl
R679
5.1K 1%
R657
10K +-1% 1/16W
R658
4.7K 1/ 16W
R659
2.2K 1%
R668
470R 1/ 16W 5%
C678 10UF 6. 3V 20%
Q603 LMBT3904LT1G
R660
4.7K 1/16W
HP_AC_MUTE
R664
1K 1/16W 1%
C680
100NF 16V
C679
NC/10UF 6.3V 20%
Q601
LMBT3904LT1G
R669 10K +-1% 1/16W
DVDD3V3
DVDD3V3
+5V_SW
DVDD3V33,4,5,6,8,10,11,13,15,16,17,18
+5VSB
DVDD3V3
+5V_SW3,10,11,12,15
HP_AC_MUTE6
HP_MUTE10
+5VSB3,7,16
GND3,4,5,6,7,8,10,11,12,13,14,15,16,17,18
+5VSB
+5V_SW
C677
NC 100N 16V
R656
NC 33R 1/ 16W 5%
CN603
NC CONNNECTOR
GND
1
VCC
2
VIN
3
+5V_SW
SPDIF_OUT5
15mil
OPTICAL
SPDIF_OUT
R624
100R 1/16W 5%
CO-LAY
C685
100NF 16V
R654
180R 1/ 16W 5%
CN604 RCA 2P
1
2
C686
33P 50V
COAXIAL
ZD602 AZ5125-01H.R7G
12
HP_MUTE
A_MUTE
HP_MUTE
AC OFF
DC OFF
Audio Mute for SCART
HP_MUTE H: MUTE L: UN-MUTE
10mil
10mil
SPDIF OUT
SPDIF_OUT
Mute Control
GPIO Control Mute
A_MUTE
D601
BAV70
3
1
2
D602
BAS316WS
+
C681 22uF 16V
HP_AC_MUTE
Circuit Diagrams and PWB Layouts
EN 55TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 56

10-4-8 LVDS_Keypad_IR

20010_511.eps
LVDS_Keypad_IR
B08 B08
2015-09-21
715G7805
LVDS_Keypad_IR
TX_AOCKP
TX_AO1N
TX_AO0N
TX_AO3N
TX_AOCKP
TX_AO2N
TX_AE2N
TX_AE0N
TX_AE3N
TX_AE1N
+
C409
100UF 35V
KEY_On_board
KEY_On_board 14
HP_DET#
KEY_MENU_L_R_SOURCE
LVDS_PWR_EN
panel_power
+
C480 NC 100U F 25V
AC_DET
IR_PWR
TX_AO2P
TX_AO0P
TX_AOCKN
TX_AOCKN
TX_AE1P
TX_AO3P
TX_AO1P
TX_AE3P
TX_AE0P TX_AE2P
PR1_DET
DEMOD_RST
ARC_on/off
HP_MUTE
R409
4.7K 1/8W
Panel_Select
IR
R434 100R 1/ 16W 5% R435 100R 1/ 16W 5%
FB403 30R
12
C414 100NF 16V
3V3SB
LED_PWR_Blue
R430
6.8K 1/16W
R4050
NC 1. 2K 1/ 16W
C418 100NF 16V
16V - > 12V for PANEL
C415 NC 100N 16V
Joy _Key
R4054
NC/10K
R438 100R 1/ 16W 1%
KEY_MENU_L_R_SOURCE
3.3A
C417 NC / 100N 16V
C416 NC 100N 16V
C419 100NF 16V
KEY_UP_DN_DCSW
OIRI
R433 100R 1/ 16W 5%
LED_POWER_RED
3V3SB
R437 100R 1/ 16W 1%
CN401 CONN
2 4 6
8
10
1
3
5 7 9
Q421
NC BC847C
LED_POWER_RED
DVDD3V3
DVDD3V33,4,5,6,8,9,11,13,15,16,17,18
GPIO Interface
PR1_DET
DEMOD_RST HP_MUTE
3V3SB
C477
10UF 16V
KEY_UP_DN_DCSW
R490
NC 100R 1/ 16W 1%
FB408 NC/220R
1 2
R491
NC 100R 1/ 16W 5%
16Vto12V
KEY_On_board
R492 NC 4.7K 1/16W
3V3SB
U401G
MT5561LVNT
AE3P
C8
AE3N
D8
AE2P
C7
AE2N
D7
AE1P
A6
AE1N
B6
AE0P
C6
AE0N
D6
AO3P
C5
AO3N
D5
AOCKP
A4
AOCKN
B4
AO2P
C4
AO2N
D4
AO1P
C3
AO1N
D3
AO0P
A2
AO0N
B2
TCON0
E4
TCON1
F2
TCON2
C2
TCON3
E3
TCON4
C1
TCON5
D1
TCON6
F3
TCON7
D2
TCON8
F1
C476
NC/ 10N 50V
U403
NC/SY8104ADC
LX
5
FB
1
EN
2
GND3IN
4
BS
6
C479
NC/22UF 10V
R488 0R051/8W
R484
NC/ 10K 1/ 10W 1%
C478
NC/22UF 10V
AC_Off
3V3SB
Q422
NC/BC847C
LED_PWR_Blue
R4052
NC 1. 2K 1/ 16W
L402
NC/4.7uH
R485
NC/36K 1%
LED-B
R486
NC/ 20K OH M 1/ 16W 1%
R487
NC/ 40. 2K 1/ 16W 1%
LED-R
R483
NC/ 191K OH M 1% 1/16W
Q409
NC AO3401
R4055 NC/10K
R482 N C / 0R 05 1/ 16W
C474
NC/ 100pF 50V
C475
NC/0.1uF 50V
Q405
NC AO3401A
CN408
CONN
2
4
6
8
10
12
14
16
18
20
22
24
26
28
30
32
1
3
5
7
9
11
13
15
17
19
21
23
25
27
29
31
HP_DET#
HP_DET# 5
C411
470NF 16V
LED-B
KEY_UP_DN_DCSW
OIRI
LED_PWR_Blue
LED_POWER_RED
SW401
NC SW
1 2
3 4
311GW200C32ABX (R/A)
R431
6.8K 1/16W
Q403
NC/2N7002K
R440
NC/470R 1/10W 1%
C410
100NF 16V
C412
100NF 16V
R436
47K 1/16W 5%
R441
4.7K 1/16W
Q401
SM4310PSKC
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
R444
NC/ 1K 1/ 16W 1%
R427 NC/ 1K 1/ 16W
R432
47K 1/16W 5%
C413
NC/ 100N 16V
FB404 220R
1 2
FB402 NC/220R
1 2
R439
2.2K 1%
Q402
LMBT3904LT1G
R428 NC 0R05 1/16W
Panel_VCC
+12V
LVDSVDD
FB401
120R
1 2
+5V_SW
DVDD3V3
Panel_VCC
LVDSVDD
+5V_SW
3V3SB
+12V
GND3,4,5,6,7,8,9,11,12,13,14,15,16,17,18
+5V_SW3,9,11,12,15
LVDS_PWR_EN 14
+12V3
3V3SB3,4,8,13,14,15
OIRI 4 KEY_UP_DN_DCSW14 KEY_MENU_L_R_SOURCE 14
LED_PWR_Blue4,14
LED_POWER_RED 4,14
DEMOD_RST18 PR1_DET 8
HP_Mute 9
AC_DET
AC_DET 3
ARC_on/off
ARC_on/off 16
TX_AOCKP TX_AOCKN
LED-R
LVDS POWER Control
H = > LVDS POWER ON
TX_AO2N
TX_AO1P TX_AO2P
LVDS_PWR_EN
L = > LVDS POWER OFF
TX_AO3P
TX_AO0P
TX_AO3N
TX_AO0N TX_AO1N
TX_AE1N
TX_AE0P TX_AE1P
TX_AE3N
TX_AE3P
TX_AE2P TX_AE2N
TX_AE0N
+12V
5/31
16Vto12V
Q408
NC AO3401
LED-R
LED-B
L = > Standby
H = > Standby
LED_POWER_RED LED_PWR_GREEN
L = > Power ON
H = > Power ON
CN406
NC/ CONN
1
2
3
4
5
6
7
8 9
IR_PWR
Joy _Key
IR
IR/KEY BOARD
EMI & ESD solution
AC_Of f
AC_Of f 3
Circuit Diagrams and PWB Layouts
EN 56TPM16.4L LA 10.
2016-Apr-1
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Page 57

10-4-9 TUNER

20010_512.eps
TUNER
B09 B09
2015-09-21
715G7805
TUNER
R162 100R 1/ 16W 5%
R165
100R 1/16W 5%
R159
2.2K 1%
IFAGC
R160
2.2K 1%
L108
3.3nH
Optional components of wifi filter Part Value L16 13nH C101 2.7pF
Optional components of wifi filter Part Value L16 13nH C101 2.7pF
Optional components required for ESD protection. It is highly recommended that some form of external ESD protection is implemented.
D103
BAP1321-02
C127
100NF 16V
R124
1K 1/16W 1%
LNA_INN
C126
47pF 50V
C129 4.7NF 50V
C122
2.2nF 50V
+1V8TUNER
OSCL1
T_SCL
C167
100NF 16V
OSDA1
C166 10N 50V
IFOUT1P
RESET
XTALP
C164
15PF 50V
+1V8TUNER
XTALN
C124 47pF 50V
C165
15PF 50V
XTALN
XTALP
C128
1UF 10V
T_SDA
C131 1UF 10V
C135
100NF 16V
U104
MxL661-AG-R
VDD_3p3
1
LNA_INP
2
LNA_INN
3
VDD_1p8
4
AGC_2/GPO_3
5
AGC_1
6
IF_OUTP_2/GPO_17IF_OUTN_2/GPO_28IF_OUTP_19IF_OUTN_110VDD_3p311VDD_1p8
12
VDD_1p2
13
GND_DIG
14
VDD_IO
15
SCL
16
SDA
17
CLK_OUT
18
XTAL_N
19
XTAL_P
20
GND_XTAL
21
VDD_1p8
22
RESET_N
23
AS
24
E-PAD
25
R123
510K 1%
C125
100NF 16V
+1V8TUNER
C130 4.7NF 50V
TUN ER 3.3V
C123
100NF 16V
TUN ER 3.3V
X10 2
16MHZ
1
24
3
TUN ER 3.3V
LNA_INP
IFOUT1N
FB103 1KOHM
1 2
TUN ER 3.3V
R133
1K 1/16W 1%
OSDA1
OSCL1
L107 27nH
LNA_INN
C120 1nF 50V
L101
NC 2. 2nH
L103 27nH
LNA_INP
C132 1nF 50V
C121 1nF 50V
C160
33pF 50V
MxL661
TXC
C159
100NF 16V
C169
5.6pF 50V
TUNER3.3V
U113
AZ1117CH-3.3TRG1
ADJ(GND)
1
VOUT
2
VIN
3
4
4
+5V_SW
C14110UF 6. 3V 20%
Notch_On1
C134 1nF 50V
C190
1UF 10% 16V
FCN101
RF 5P
5
5
4
4
3
3
2
2
ANT
1
6
6
Control Interface
IF Interface
R156
330R 1/16W 1%
FB108 1000R
1 2
C133
10UF 6. 3V 20%
TUN ER _SCL TUN ER _SDA IFAGC_Toshiba_demo
R149
1K 1/16W 1%
C143
10N 50V
IFAGC_Toshiba_demo
T_SCL T_SDA TUN ER _SDA
TUN ER _SCL
R116
0R05 1/10W
ADCINP_DEMOD 8
ADCINN_DEMOD 8
FAT_IN­FAT_IN+
R127
1.5K 1/16W
D102
BAP1321-02
D_IFP 18 D_IFN 18
D_IFP D_IFN
C139
NC 10N 50V
C140
NC 10N 50V
R449 0R05 1/16W
L106
8.2NH
R450 0R05 1/16W
C192
1pF 50V
DVDD3V3
DVDD3V33,4,5,6,8,9,10,13,15,16,17,18
D_IFN
+5V_SW
DIF
OSCL1 4,18
GND3,4,5,6,7,8,9,10,12,13,14,15,16,17,18
IFAGC_Scaler 8
OSDA1 4,18
+5V_SW3,9,10,12,15
TUNER_SCL18 IFAGC_Toshiba_demo18
D_IFP
TUNER_SDA18
AIF
C136
1nF 50V
C197
100NF 16V
IFAGC_Scaler
R1029
51R 1/16W 5%
L102 82nH
R1030
51R 1/16W 5%
C137 33PF 50V
IFAGC IFAGC_Scaler
D101 BAV99
3
1
2
L104
82nH
C148
1UF 10% 16V
R153
10K +-1% 1/16W
R101
0R05 1/16W
C162 NC/ 47pF 50V
R104
0R05 1/16W
C152 1UF 10% 16V
R164 NC 150R 1/ 16W 1%
R151
10K +-1% 1/16W
Tuner on board for SA/AP
R150
0R05 1/16W
C153 NC/22pF 50V
Notch_On1
C142
100NF 16V
R157
100R 1/16W 5%
FB104
220R
1 2
C154
NC/ 47PF 50V
R167
0R05 1/16W
R152
0R05 1/16W
R128
1K 1/16W 1%
C145
22N 25V
R155
100R 1/16W 5%
R1089 NC/0R05 1/16W
R129
1K 1/16W 1%
+1V8TUNER
C155 NC/ 47PF 50V
C144
47nF 16V
R161
0R05 1/16W
C151 NC/ 47pF 50V
R1090 NC/0R05 1/16W
C157 NC/22pF 50V
C161
NC/ 47pF 50V
C156
1UF 10% 16V
C149
1UF 10% 16V
C150
NC/ 47pF 50V
C191 22PF 50V
C163
22PF 50V
DVDD3V3
TUNER3.3V
IFOUT1P
IFOUT1N FAT_IN-
FAT_IN+
R1112
0R05 1/16W
R1111
0R05 1/16W
Circuit Diagrams and PWB Layouts
EN 57TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 58

10-4-10 DDR3

20010_513.eps
DDR3
B10 B10
2015-09-21
715G7805
DDR3
R480
0R05 1/ 16W
C435
1UF 10V
C426 22UF 6.3V
R456
33K 1/16W 1%
U411
G5695T11U
VIN
1
GND
2
EN3VFB
4
LX
5
R460
22K 1%
DRAM# Bypass Cap
C441
1UF 10V
C427
100NF 16V
C428
2.2UF
DDRV
C430
10UF 6. 3V 20%
L401
2.2UH
C196
NC/4.7UF 10% 10V
RVREF
Main Chip Ref Voltage.
C436
100NF 16V
U401A
MT5561LVNT
DDRV
N1
DDRV
N2
DDRV
N3
DDRV
N4
DDRV
N5
DDRV
N6
DDRVREF
P1
ZQ
P2
TN_MEMPLL
H8
TP_MEMPLL
J8
RVREF
R410 100K 1%
ZQ
R2
DRAM POWER DDRV
R1
+5V_SW
R461
1K 1/16W 1%
C433
100NF 16V
C429
NC / 100N 16V
C438
100NF 16V
C440
4.7U F 10% 10V
R455
1K 1/16W 1%
R457
240R 1%
C434
100NF 16V
C432
100NF 16V
C425
NC / 100N 16V
C437
100NF 16V
C439
NC/10UF 6.3V 20%
DDRV
DDRV
DDRV
+5V_SW3,9,10,11,15
GND3,4,5,6,7,8,9,10,11,13,14,15,16,17,18
+5V_SW
Circuit Diagrams and PWB Layouts
EN 58TPM16.4L LA 10.
2016-Apr-1
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Page 59

10-4-11 HDMI/MHL

20010_514.eps
HDMI/MHL
B11 B11
2015-09-21
715G7805
HDMI/MHL
RX_0_C
HPWR0
RX_0_0
C505 NC/ 100N 16V
R510
10K +-1% 1/16W
RX_0_1B
RX_0_C
CEC_A0
RX_0_0B
RX_0_1
Q506 BC847C
HDMI_SCL2_IN
RX_2_1
RX_2_C
R508
47K 1/16W 5%
R513 100K1/16W
RX_2_CB
C511
100N 16V
HPWR2
R504
10K 1/16W 5%
RX_2_0
Q504
BC847C
R507 22R 1/ 16W 5%
RX_2_1B
R509 910R 1/16W
3V3SB
RX_0_2B
R506 22R 1/ 16W 5%
RX_2_0B
HD MI_2M_HPD
C510 N C / 100N 16V
OPWR2_5V
OPWR2_5V
R512
75 OHM 1/16W
C509 N C / 100N 16V
R505
10K 1/16W 5%
RX_2_2
HDMI_SCL2/RX
CEC_A2
HDMI_SDA2_IN HDMI_SDA2/TX
RX_2_2B
R501
100R 1/16W 5%
FB501
120R
1 2
I2C & UART Interface
Control Interface
DVDD3V33,4,5,6,8,9,10,11,15,16,17,18
DVDD3V3
FB503
120R
1 2
CEC_A0
HDMI_SCL0
HDMI_SDA0
HDMI_0M_HPD
R503
0R05 1/10W
C503
100NF 16V
C501
100NF 16V
REAR HDMI 1
C502
100NF 16V
100 o hm di ffer ential impedance for TMDS traces.
AVDD1V2AVDD1V2DVDD3V3
R519 100R 1/ 16W 5%
+5V_SW +5VSB
R520 100R 1/ 16W 5%
3V3SB
GND3,4,5,6,7,8,9,10,11,12,14,15,16,17,18
+5VSB3,7,9,16
+5V_SW3,9,10,11,12,15
UART_SEL 16
3V3SB3,4,8,10,14,15
ESD protcetion
R525
10K +-1% 1/16W
R514
10K 1/16W 5%
R561
75 OHM 1/16W
REAR HDMI 2 (with ARC)
100ohm differential impedance for TMDS traces.
RX_0_1B
RX_0_2
RX_0_1RX_0_1
RX_0_2B
RX_0_1B
RX_0_2
U502
NC/ AOZ8804DI
CH1
1
CH2
2
VN
3
CH3
4
CH45NC
6
NC
7
VN
8
NC
9
NC
10
RX_0_2B
CN502
HDMI CONN
SHELL1
20
SHELL2
21
D2+
1
D2 Shield
2
D2-
3
D1+
4
D1 Shield
5
D1-
6
D0+
7
D0 Shield
8
D0-
9
CK+
10
CK Shield
11
CK-
12
CE Remote
13
NC
14
DDC CLK
15
DDC DATA
16
GND
17
+5V
18
HP DET
19
SHELL4
23
SHELL3
22
SHELL5
24
ZD514
NC/ AZ5125-01H.R7G
12
ZD516
NC/ AZ5125-01H.R7G
12
ZD515
NC/ AZ5125-01H.R7G
12
ZD517
NC/ AZ5125-01H.R7G
12
U401E
MT5561LVNT
HDMI_0_RX_CB
W7
HDMI_0_RX_C
Y7
HDMI_0_RX_0B
V7
HDMI_0_RX_0
V8
HDMI_0_RX_1B
U9
HDMI_0_RX_1
V9
HDMI_0_RX_2B
W9
HDMI_0_RX_2
Y9
HDMI_0_SCL
U7
HDMI_0_SDA
V6
HDMI_0_HPD
W5
AVDD33_HDMI
R10
AVDD12_HDMI_0
Y5
HDMI_1_RX_CB
P20
HDMI_1_RX_C
P19
HDMI_1_RX_0B
P18
HDMI_1_RX_0
P17
HDMI_1_RX_1B
N18
HDMI_1_RX_1
N17
HDMI_1_RX_2B
M20
HDMI_1_RX_2
M19
HDMI_2_RX_CB
M18
HDMI_2_RX_C
M17
HDMI_2_RX_0B
L18
HDMI_2_RX_0
K18
HDMI_2_RX_1B
K20
HDMI_2_RX_1
K19
HDMI_2_RX_2B
J20
HDMI_2_RX_2
J19
HDMI_CEC
K16
HDMI_2_SCL
J17
HDMI_2_SDA
J14
MHL_SENCE
K15
HDMI_2_HPD_CBUS
J16
HDMI_1_SCL
J18
HDMI_1_SDA
K14
HDMI_1_HPD
L17
AVDD12_HDMI_1
H20
HDMI_0M_HPD
AVDD1V23,8,15
AVDD1V2
RX_0_C RX_0_0B
RX_0_1B
RX_0_CB
RX_0_0
RX_0_2
ZD506
NC/ AZ5125-01H.R7G
12
ZD507
NC/ AZ5125-01H.R7G
12
ZD505
NC/ AZ5125-01H.R7G
12
ZD504
NC/ AZ5125-01H.R7G
12
Analog Power Merged Analog Power
UART_SEL
HDMI_2M_HPD
AVDD12_HDMI_0
AVDD33_HDMI
AVDD12_HDMI_1
HDMI_SCL2 16
HDMI_SCL2/RX 16
HDMI_SDA2 16
HDMI_SDA2/TX
HDMI_SDA2/TX 16
UART_SEL
HDMI_SCL2/RX
HDMI_SCL2
HDMI_SDA2
HDMI_SCL2 HDMI_SDA2
RX_2_1
RX_2_1B
RX_2_CB
RX_2_2
RX_2_0B
RX_2_2B
RX_2_C RX_2_0
AVDD33_HDMI AVDD12_HDMI_1AVDD12_HDMI_0
ZD501
AZ5125-01H.R7G
1 2
ZD518
AZ5125-01H.R7G
1 2
CN501
HDMI
SHELL1
20
SHELL2
21
D2+
1
D2 Shield
2
D2-
3
D1+
4
D1 Shield
5
D1-
6
D0+
7
D0 Shield
8
D0-
9
CK+
10
CK Shield
11
CK-
12
CE Remote
13
NC
14
DDC CLK
15
DDC DATA
16
GND
17
+5V
18
HP DET
19
SHELL4
23
SHELL3
22
SHELL5
24
SHELL6
25
SHELL7
26
HDMI_CEC
CEC
CEC
ESD protcetion
HDMI CEC
Grounding
CEC_A2
RX_2_0
RX_2_2BRX_2_0B RX_2_2B
RX_2_CB
RX_2_C
RX_2_0
U506
NC/ AOZ8804DI
CH1
1
CH2
2
VN
3
CH3
4
CH45NC
6
NC
7
VN
8
NC
9
NC
10
U507
NC/ AOZ8804DI
CH1
1
CH2
2
VN
3
CH3
4
CH45NC
6
NC
7
VN
8
NC
9
NC
10
RX_2_CB
RX_2_C RX_2_0B
RX_2_1B RX_2_1
RX_2_2RX_2_2
RX_2_1B RX_2_1
R502 100K 1%
RX_0_2B
C504
100NF 16V
RX_0_1
U501
NC/ AOZ8804DI
CH1
1
CH2
2
VN
3
CH3
4
CH45NC
6
NC
7
VN
8
NC
9
NC
10
RX_0_0B RX_0_0
OPWR0_5V
C506 N C / 100N 16V
HDMI_SCL0 HDMI_SDA0HDMI_SDA0_IN
OPWR0_5V
RX_0_CB
R560
47K 1/16W 5%
RX_0_C
RX_0_0B
Q503 BC847C
RX_0_CB
HDMI_SCL0_IN
R511
10K +-1% 1/16W
RX_0_2
RX_0_CB
R524 910R 1/16W
RX_0_0
Q502
BC847C
3V3SB
Circuit Diagrams and PWB Layouts
EN 59TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 60

10-4-12 GPIO

20010_515.eps
GPIO
B12 B12
2015-09-21
715G7805
GPIO
USB_PWR_OCP0
KEY_On_board
KEY_On_board 10
LED_POWER_RED
BL_ON/OFF
LVDS_PWR_EN
LED_PWR_Blue
LED_POWER_RED
R499
10K +-1% 1/16W
USB_OC 15
USB_OC
3V3SB3,4,8,10,13,15
3V3SB
USB_OC
3V3SB
R448
NC 10K +-1% 1/16W
U401I
MT5561LVNT
GPIO0
B1
GPIO1
E5
OPWM0
E6
OPWM1
G5
OPWM2
G6
OPCTRL1
V2
OPCTRL2
V3
OPCTRL3
V1
OPCTRL4
U4
ADIN7
R8
ADIN6
T6
ADIN5
U5
ADIN4
T8
ADIN3
U6
ADIN2
U8
ADIN1
P8
ADIN0
T7
GPIO2
G17
GPIO3
H5
GPIO4
H4
GPIO5
F17
OPCTRL0
U3
USB_PWR_EN0
LED_PWR_Blue LVDS_PWR_EN
BL_ON/OFF
BL_DIMMING
USB_PWR_EN0 SYS_EEPROM_WP
KEY_UP_DN_DCSW KEY_MENU_L_R_SOURCE
USB_PWR_OCP0
GND3,4,5,6,7,8,9,10,11,12,13,15,16,17,18
AMP_MUTE
AMP_MUTE 6
AMP_MUTE
BL_DIMMING
KEY_MENU_L_R_SOURCE
KEY_UP_DN_DCSW
R481
10K +-1% 1/16W
HTV_OPCTRL2
HTV_OPCTRL2 15
HTV_OPCTRL2
SYS_EEPROM_WP
KEY_On_board
LVDS_PWR_EN 10
USB_PWR_EN0 15
SYS_EEPROM_WP 4
BL_ON/OFF 3
LED_PWR_Blue4,10
BL_DIMMING 3
LED_POWER_RED 4,10
USB_PWR_OCP0 15
KEY_UP_DN_DCSW10 KEY_MENU_L_R_SOURCE 10
Circuit Diagrams and PWB Layouts
EN 60TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 61

10-4-13 USB/ HTV

20010_516.eps
USB/ HTV
B13 B13
2015-09-21
715G7805
USB/ HTV
< 2.0 = >OC
2.5 = > NORMAL
USB
HI = > POWER ON LO = > POWER OFF
USB_DP_P0
USB_DM_P0
HI = > NORMAL LO => OC
8.5 mm
USB_OC 14
USB_OC
DEMOD_TSSYNC
DEMOD_TSVAL DEMOD_TSDATA0
DEMOD_TSCLK
3V3SB
DEMOD_TSCLK18
DEMOD_TSDATA018
DEMOD_TSSYNC18
DEMOD_TSVAL18
DEMOD_TSSYNC
DEMOD_TSCLK DEMOD_TSVAL
DEMOD_TSDATA0
AVDD12_ETH
U0RX
U0TX
R451
NC/ 100R 1/16W 5%
R452
NC/ 100R 1/16W 5%
USB_OC
C171
NC / 100N 16V
C172
NC/100N 16V
REXT
AVDD33_ETH
DVDD3V3AVDD1V2
R1116 NC/ 0R05 1/10W
R1115
NC / 0R 05 1/ 10W
Grounding
R1117
NC / 100R 1/ 16W 5%
HTV_OPCTRL2
U401H
MT5561LVNT
CI_CD1#
E18
CI_D3
E17
CI_MDO3
E16
CI_MDO4
E20
CI_D4
E19
CI_D5
D20
CI_MDO5
D19
CI_A1
C9
CI_MDO6
C20
CI_D6
D18
CI_D7
B20
CI_MDO7
C19
CI_CE1#
B19
CI_A10
A19
CI_IORD#
A18
CI_OE#
C18
CI_A11
B18
CI_IOWR#
D17
CI_MISTR T
D16
CI_A9
C17
CI_A8
C16
CI_MDI0
A16
CI_MDI1
C15
CI_A13
B16
CI_A14
A15
CI_MDI2
C14
CI_MDI3
C13
CI_WE#
B15
CI_IREQ#
F11
CI_MDI4
A13
CI_MDI5
E12
CI_MIVAL
B13
CI_MCLKI
D14
CI_MDI6
F12
CI_MDI7
E13
CI_A12
E9
CI_A7
D12
CI_MCLKO
A12
CI_RESET
C12
CI_A6
B12
CI_A5
E10
CI_WAIT#
C11
CI_A4
D10
CI_A3
A10
CI_REG#
B10
CI_MOVAL
C10
CI_A2
F10
CI_MOSTRT
D11
CI_MDO0
E11
CI_A0
D9
CI_MDO1
E7
CI_MDO2
E8
CI_PWR_EN
F18
CI_D0
B8
CI_D1
D13
CI_D2
F9
CI_CD2#
F7
U401F
MT5561LVNT
USB_DM0
H19
USB_DP0
H18
USB_DM1
G19
USB_DP1
F19
RXVN
W2
RXVP
W3
TXVN
Y1
TXVP
Y2
AVDD33_ETH
R9
AVDD12_ETH
Y4
REXT_ETH
W4
3V3SB3,4,8,10,13,14
3V3SB
AVDD1V23,8,13
AVDD1V2
TP410 TP411 TP412 TP413
R1114
10K +-1% 1/16W
USB_PWR_OCP0
U0TX 4,16 U0RX 4,16
U0RX
C170 1UF 10% 16V
U0TX
USB_DP_P0
USB_PWR_EN0 USB_PWR_OCP0
USB_DM_P0 USB_PR
DVDD3V3
For HTV
R1027 24K 1%
+5V_SW DVDD3V3
USB_PWR_OCP0 14
+5V_SW3,9,10,11,12
GND3,4,5,6,7,8,9,10,11,12,13,14,16,17,18
DVDD3V33,4,5,6,8,9,10,11,13,16,17,18
USB_PWR_EN0 14
Control Interface
HTV_OPCTRL2 14
HTV_OPCTRL2
AVDD33_ETH
AVDD12_ETH USB_PWR_EN0
1234
CN103 USB C ON N
1
2
3
4
65
R1025
NC 0R05 1/16W
R1026
NC 4.7K 1/16W
C173 10UF 10V
C175 NC / 10P 50V
t
TH101
PTCR
1 2
R1024
NC 10K 1/16W 5%
U404
NC/G5250M1T1U
OUT
1
GND
2
OC
3
EN
4
IN
5
R1032
10K +-1% 1/16W
C176
NC/ 10P 50V
C174 100NF 16V
+5V_SW
DVDD3V3
ZD119
AZ5123-01H
12
ZD118
AZ5123-01H
12
CN403
NC/ CONN
1
2
3
4
5
6 7
Circuit Diagrams and PWB Layouts
EN 61TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 62

10-4-14 FACTORY DEBUG PORT

20010_517.eps
FACTORY DEBUG PORT
B14 B14
2015-09-21
715G7805
FACTORY DEBUG PORT
U414
NC 74H C 4052PW
1Y0
12
2Y0
1
1Y1
14
2Y1
5
1Y2
15
2Y2
2
1Y3
11
2Y3
4
S0
10
S1
9
VEE
7
GND
8
/E
6
1Z
13
2Z
3
VCC
16
S1
C408
NC 100NF 16V
U0TX
+5VSB
U0RX
+5VSB
D401
NC BAS316
ARC_on/off
HDMI_SCL2/RXUART_SEL
to HDMI Pin-14 for ARC
R406
NC 10K +-1% 1/16W
10mil
UART_SEL
ARC_on/of f
S0
L :ON-state
HDMI function
H
Factory UART & I2C Switch IC
S1
NC/ARC
H
H
CHANNEL
L
S0
to HDMI Pin-14 for ARC
Grounding
ARC on/off enable control
H :OFF-state
Debug mode
Grounding
HDMI pin14
+12V
ARC_SPDIF
R467
NC 40.2K 1/16W 1%
U0TX U0RX
R466
NC 60.4K 1%
R464 NC 10K +-1% 1/16W
+5VSB
HDMI_SCL2
HDMI_SDA2
Q404
NC LMBT3904LT1G
ARC_SPDIF
UART_SEL
HDMI_SDA2/TX
HDMI_SCL2/RX
HDMI_SDA2HDMI_SDA2/TX
HDMI_SCL2/RX HDMI_SCL2
R493
0R05 1/16W
R494
0R05 1/16W
For Philips: R493 and R494 use 0ohm
5/31
U410
74CBTLV1G125GW
OE
1
A
2
GND3B
4
Vcc
5
R468 10K +-1% 1/16W
R470
180R 1/ 10W 1%
C444
1UF 25V
R471 82R 1/ 10W 1%
C443 100NF 16V
DVDD3V3
DVDD3V3
+5VSB DVDD3V3
+5V_SW
UART_SEL 13
HDMI_SDA2 13
HDMI_SDA2/TX 13
+5VSB3,7,9
HDMI_SCL2 13
GND3,4,5,6,7,8,9,10,11,12,13,14,15,17,18
U0RX 4,15
U0TX 4,15
+5V_SW3,9,10,11,12,15
DVDD3V33,4,5,6,8,9,10,11,13,15,17,18
ARC_on/off 10
ARC_SPDIF 5
HDMI_SCL2/RX 13
HDMI_SDA2
HDMI_SCL2
HDMI_SDA2/TX
Circuit Diagrams and PWB Layouts
EN 62TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 63

10-4-15 VCCK & DVSS

20010_518.eps
VCCK & DVSS
B15 B15
2015-09-21
715G7805
VCCK & DVSS
C456
10UF 6. 3V 20%
C451
10UF 6. 3V 20%
C447
10N 50V
C459 100NF 16V
C448
10N 50V
C458 100NF 16V
C460 100NF 16V
C450
10UF 6.3V 20%
C454
4.7U F 10% 10V
C457 100NF 16V
VCCK
VCCK
VCC3IO
VCCK
DVDD3V3
VCC3IO
DVDD3V3
VCCK
GND3,4,5,6,7,8,9,10,11,12,13,14,15,16,18
DVDD3V33,4,5,6,8,9,10,11,13,15,16,18
VCCK3
+
C449
100UF 16V
Core Power
3.3V IO Power
C446
1UF 10V
C452
1UF 10V
C453
1UF 10V
U401J
MT5561LVNT
VCCK
K6
VCCK
K5
VCCK
J9
VCCK
L1
VCCK
L2
VCCK
L3
VCCK
L4
VCCK
L5
VCCK
L6
DVSS
H9
DVSS
H10
DVSS
H12
DVSS
A1
DVSS
J10
DVSS
J11
DVSS
J12
DVSS
K9
DVSS
K10
DVSS
K11
VCC3IO
P9
VCC3IO
N10
VCC3IO
P10
DVSS
R13
DVSS
M9
DVSS
L12
DVSS
M11
DVSS
M13
DVSS
M12
VCCK
K7
VCCK
K8
VCCK
L7
VCCK
L8
VCCK
M7
VCCK
M8
DVSS
K12
DVSS
A8
DVSS
F6
DVSS
F20
DVSS
G7
DVSS
G18
DVSS
H13
DVSS
H11
DVSS
J13
DVSS
L9
DVSS
L11
DVSS
L13
DVSS
M1
DVSS
M2
DVSS
L10
DVSS
M3
DVSS
R6
DVSS
M4
DVSS
M5
DVSS
M6
DVSS
N8
DVSS
N13
DVSS
N11
DVSS
N12
DVSS
N15
DVSS
T13
DVSS
N16
DVSS
P7
DVSS
P11
DVSS
P12
DVSS
P14
DVSS
R11
DVSS
R12
DVSS
R14
DVSS
T5
DVSS
W19
DVSS
Y3
DVSS
G8
DVSS
H16
DVSS
J7
DVSS
M10
DVSS
N7
DVSS
N9
DVSS
T15
DVSS
U16
DVSS
V16
DVSS
H14
C461
10UF 6.3V 20%
C463
10UF 6. 3V 20%
Circuit Diagrams and PWB Layouts
EN 63TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 64

10-4-16 DEMOD_Toshiba TC90537

20010_519.eps
DEMOD_Toshiba TC90537
B16 B16
2015-09-21
715G7805
DEMOD_Toshiba TC90537
X101
16MHZ
1
24
3
R135
10K 1/10W
SBYTE_ORR
R142 NC 10K 1/ 16W 5%
OSDA1
OSCL1
R175 0R05 OH M
XT_I
XT_O
XT_O XT_I
D_IFP D_IFN
TP101
R141 10K +-1% 1/16W
DEMOD_RST
TP110 TP109
OSDA1
IFAGC_Toshiba_demo
OSCL1
R148
10K +-1% 1/16W
R154
2.2K 1%
TP108
U103
G9141T11U
IN
1
GND
2
SHDN3SET
4
OUT
5
TP107
TP105 TP106
TP104
C195 10UF 6. 3V 20%
TP103
C194
1UF 10V
TP102
DVDD3V3
+1V2
SLADRS1
PBVAL_ORR SRDT_ORR
TUNER_SCL TUNER_SDA
IFAGC_Toshiba_demo
SLADRS0
AGCCNTI
SLADRS1
R146
4.7K 1/ 16W
DVDD3V3
R147
4.7K 1/ 16W
DEMOD_RST10
TUNER_SDA11
DEMOD_TSCLK15
DEMOD_TSDATA015
DVDD3V33,4,5,6,8,9,10,11,13,15,16,17
DEMOD_TSVAL15
IFAGC_Toshiba_demo11
DEMOD_TSSYNC15
D_IFP11
GND3,4,5,6,7,8,9,10,11,12,13,14,15,16,17
OSDA1 4,11
TUNER_SCL11
D_IFN11
OSCL1 4,11
DEMOD_TSCLK
TUNER_SDA
DEMOD_TSDATA0
DEMOD_TSVAL DEMOD_TSSYNC
C185
10UF 6. 3V 20%
C188
100NF 16V
C186
100NF 16V
C183
100NF 16V
C193
10N 50V
C187
100NF 16V
C177
100NF 16V
C199
100NF 16V
C189
100NF 16V
RP101
33 OHM +-5% 1/16W
1
2
3
4
8
7
6
5
R137
1.2K OH M 1/16W 1%
C180 100NF 16V
C184
100NF 16V
R143
100R 1/16W 5%
FB106 120R
12
FB1009 120R
12
C178 27PF
R136
1M 1/10W 5%
C119
100NF 16V
R125 10K +-1% 1/16W
R145 100R 1/16W 5%
R140
0R05 OH M
FB105 120R
12
C182
100NF 16V
R126
NC/ 10K+-5%1/16W
R134
10K +-1% 1/16W
R138
20K OHM 1/16W 1%
R144
100R 1/16W 5%
C181
10UF 6. 3V 20%
R111 NC / 10K+-5%1/16W
C138
100NF 16V
FB107 120R
12
C179 27PF
FB1008 120R
12
R139
NC 0R 05 OH M
DVDD3V3
+1V2
+1V2
DVDD3V3
DVDD3V3
FB407 10R
1 2
DVDD3V3
DVDD3V3
SRCK_ORR
DVDD3V3
DEMOD_TSSYNC 15 DEMOD_TSVAL 15
DEMOD_TSCLK 15 DEMOD_TSDATA0 15
FB1010 120R
12
SLADRS0
U101
TC90537FG
VSS
47
VDDS
14
GPIO1
4
GPIO2
5
SBYTE
16
AGCCNT1
18
XO
23
SLADRS1
29
PLLVSS
26
SYRSTN
42
VPGM
41
VDDC
32
ADCVSS
34
VREFH
36
STSFLG1
43
SCL
45
VSS
31
ADCVDD
33
TNSCL
20
TNSDA
21
AIN N Q
40
AIN N I38AIN P I
37
STSFLG0
44
SDA
46
RSEORF
15
XI
24
VREFL
35
AIN P Q
39
SLADRS0
17
CKI
28
VDDC
1
VSS
13
SRCK
12
PBVAL
11
SRDT
10
SLOCK
9
RLOCK
8
RERR
7
SLPEN
6
VDDS
48
VSS
2
GPIO0
3
AGCCNTR
19
XCKO
22
PLLVDD
25
VDDC
27
TSMD
30
DEMOD_RST
GPIO Interface
C198
NC/33P 50V
C1074 NC 10PF 50V
Crystal is 16MHZ
R176 NC/0R051/8W
R138 close with TC90537 to avoid spurious.
Serial TS output
D_IFN
D_IFP
R174 NC/0R051/8W
R2
R1
TUNER_SCL
Circuit Diagrams and PWB Layouts
EN 64TPM16.4L LA 10.
2016-Apr-1
back to
div.table
Page 65

10-4-17 SSB layout top

20010_520.eps
715G7805
LAYOUT TOP
X401
D602
D401
C141
C148
C149
C152
C156
C190
C196
C439
C402
C411
C428
C430
C440
C444
C450
C451
C454
C456
C461
C463
C610
C614
C615
C616
C617
C619
C621
C623
C624
C625
C626
C628
C630
C631
C634 C636
C638 C639
C640
C642
C644
C647
C678
C679
C684
C195
C708
C710
C712
C713
C721
C722
C730
C173
C620
C629
C725
C726
FB611
FB403
FB405
FB501
FB503
FB603
FB604
FB605
FB606
FB607
FB608
FB609
FB610
FB706
FB104
FB401
FB402
FB404 FB408
FB602
FB701
FB702
FB703
R116
R440
R466
R470
R471
R605
R606
R607
R608
R625
R626
R719
C426
C1201
C170
C608
C115C116
R106
R108
R110R115
R1001
R140
C1003
C1004
FB612
C133
FB103
X102
R135
C181C185
FB1008
FB1009
FB105
FB106 FB107
R136
FB1010
C475
C743
C478
C479
C746 C747
C449
C409
C707
C1202
C477
C745
R484
R748
R488
R752
ZD701
C748
C480
R409
X101
ZD115
ZD116
C719
R785
R503
C650
C651
C723
R174
R176
R175
TH101
C160
C169
D102
D103
CN602
CN606
FCN101
C688
R1115R1116
R1
R2
SCREW1
SCREW2
HS401
ICT1
U401
U705
U410
U501 U502
U506 U507
U404
U113
U103
L601
L602
L603
L604
U405
L703
L702
C101
C102
C104
C105
C106
C108
C109
C110
C111
C112
C113
C114
C117
C118
C1002
C186
C179
C1001
C103
C677
C142
C143
C144
C145
C150C151
C153
C154C155
C157
C161
C162
C163
C601
C193
C171
C174
C175 C176
C172
C119
C188
C189
C191
C194
C401
C403
C404
C405
C406C407
C408
C410
C412
C413
C414
C415
C416
C417
C418
C419
C425
C427
C429
C432
C433
C434
C435
C436
C437
C438
C441
C443
C446
C447
C448
C452
C453
C457
C458
C459
C460
C462
C501
C502 C503
C504
C505
C506
C177
C685C686
C604
C605
C606
C607
C611
C612
C613
C618
C622
C627
C632
C633
C635
C637C641
C643
C645
C646
C648
C660C661
C662
C663
C664
C680
C603
C687
C706
C714
C731
C184
C602
FB102
FB409
U411
C1074
C705
C138
C120
C121
C122
C159
C124
C125
C126
C127
C128
C129 C130
C131
C132
C134
C135
C136
C139
C164
C165C166
C167
C192
C197
L101
L102
L103
L104
L106
L107
D101
U101
C178
C180
C182C183
C187
C199
RP101
C1207
C1210
C1211
C1212
L402
U706
C1203
C1204
C1205
C1206
C1208
C1209
C474
C476
C742
C744
ZD1110
ZD1111
U403
R1002
R101
R102
R104
R105
R107
R109
R121
R112
R113
R114
R122
R117
R118
R119
R1003
R1114
R481
R149
R150
R151
R152
R153
R155
R156
R157
R159
R160
R161
R162
R164
R165
R167
R141
R401
R402
R403
R404
R405
R406
R407
R480
R411 R412
R414
R415
R416
R417
R418
R419
R420
R421
R422
R423
R425
R427
R428
R430
R431
R432
R433
R434
R435
R436
R437
R438
R439
R441
R508
R444
R448
R449R450
R452
R455
R457
R460
R461
R464
R467
R468
R1202
R473
R474
R1227
R477
R479
R485
R501
R502
R506
R507
R510
R511
R514
R504
R505
R519
R520
R524
R525
R4054
R513
R4050
R4055
R4052
R634 R635
R512
R560
R561
R601
R602 R603 R604
R609
R610
R611
R612
R613 R614
R615
R616
R617
R618
R620
R622
R623
R624
R637
R654
R656
R657
R658
R659
R660
R664
R668
R669
R679
R678
R704
R148
R154
R705
R706
R738
R709
R710
R739
R713
R714
R717
R718
R722
R723
R724
R725
R728
R729
R730
R1201
R138
R1024
R1025
R1026
R1027
R1029
R1030
R1032
R145 R144
R1089
R1090
R1111
R1112
R456
R483
R1004
R1005
R1006
R120
R147
R126
R123
R124
R127
R133
R125
R146
R111
R134
R139
R142R143
R137
R1219
R1203
R1207
R1208
R1209
R1210
R1211
R2002
R1217
R1218
R1220
R1228
R1301
R1302
R410
R482
R487
R499
R746
R747
R749
R750
R751
R486
C609
R1204
R1205
R1206
R1212
C690
FB108
R170 R171
R490
R491
R492
C1214
C1215
R631
R632
R778
R779
R780
R786
R787R788
Q405
Q701
Q421
D601
Q402
Q404
Q422
Q601
Q603
Q703
Q503
Q502
Q708
Q705
Q707
Q403
ZD101
ZD102
ZD103ZD104
ZD105
ZD106
ZD107 ZD108
ZD109 ZD110
ZD118 ZD119
ZD1101
ZD1102
ZD1103
ZD1104
ZD1105
ZD1106
ZD1107
ZD1108
ZD1123
ZD501
ZD504
ZD505
ZD506
ZD507
ZD518
ZD602
C691
ZD514
ZD515
ZD516
ZD517
C509
C510
C511
R509
R633
Q504
Q506
Q602
Q408
Q409
R172
R173
CN406
R493
R494
FB406
FB407
R627
R628
R4
C681
C198
U104
C490
C491
R2001
R2005
R2006
U601
C123
C140
L108
R128
R129
C137
Q401
Q702
U703
U414
SEN1
SEN2
SEN3
SEN4
SEN5
CN402
SW401
CN605
CN604
CN116
CN502
CN103
CN603
HS601
CN601
CN401
CN701
CN101
CN102
ME1 ME2
ME3
ME4
L701
L401
U406
CN403
R1117
R451
CN408
CN501
ZD702
ZD703
Circuit Diagrams and PWB Layouts
EN 65TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 66

10-4-18 SSB layout bottom

20010_521.eps
715G7805
LAYOUT BOTTOM
TP101
TP102
TP103
TP104
TP105
TP106
TP107
TP108
TP109
TP110
TP401
TP404
TP405
TP407
TP1101
TP1102
TP1103
TP1104
TP1105
TP1106
TP1107
TP1108
TP1109
TP1110
TP1111
TP1116
TP1117
TP408
TP409
TP410
TP411
TP412
TP413
TP063
TP065
SEN10
SEN11
SEN12
SEN15
Circuit Diagrams and PWB Layouts
EN 66TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 67

10.5 J 715G8009 IR/LED Panel

20010_522.eps
IR & LED & Light Sensor
J J
2015-09-01
715G8009
IR & LED & Light Sensor
C201
1uF 10V
St andby LED
3V3SB
R204
100R 1/ 16W 5%
R203
NC/ 2K7 1/16W 5%
RC-IR
RC-IR
3V3SB
LS_SDA
LS_SCL
DVD3V3
LED201
GPSS008RC4
12
Red
DVD3V3
U221 NC/ JSA-1130
ADDR
1
VDD
2
GND3SCL
4
SDA
5
INT
6
R224
NC / 0R 05 1/ 16W
Light Sensor
R222
NC / 10K 1/ 16W 5%
Digital Light Sensor
C222 NC/ 1uF 10V
R221
NC / 10K 1/ 16W 5%
LS_SCL
LS_SDA
R223
NC / 0R 05 1/ 16W
JSA-1130
R223R224
JSA-1130NCNC 0R
0R
I2C addr
0x45
0x44
C221 NC/ 100N 16V
LS_SDA LS_SCL
DVD3V3
C202
1uF 10V
IR Receiver
3V3SB
R202
1K 1/16W 5%
LED_R
Q201 BC847BW
LED_R
R201 100R 1/ 16W 5%
ZD201
MLVG0402
12
U201
TSOP75436TR
GND
1
VCC
2
Vout
3
GND
4
CN201
1 2
3
4 5 6 7
8
9 10 11 12 13
1415
3V3SB

10-5-1 IR & LED & Light Sensor

Circuit Diagrams and PWB Layouts
EN 67TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 68

10-5-2 IR/LED board layout

20010_523.eps
715G8009
IR/LED panel
layout top/bottom
2015-08-27
U201
CN201
R204
R202
R203
Q201
Q1
Q3
C201
C202
ZD201
U221
LED201
C221
C222
R201
R221
R222
R223
R224
Q2
Q4
Layout IR/LED panel (top side)
Layout IR/LED panel (bottom side)
Circuit Diagrams and PWB Layouts
EN 68TPM16.4L LA 10.
2016-Apr-1
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Page 69

10.6 J 715G8010 IR/LED Panel

20030_547.eps
IR & LED & Light Sensor
J J
2015-08-26
715G8010
IR & LED & Light Sensor
C201
1uF 10V
St andby LED
3V3SB
R204
100R 1/16W 5%
R203
NC/ 2K7 1/16W 5%
RC-IR
RC-IR
3V3SB
LS_SDA
LS_SCL
DVD3V3
LED201
GPSS008RC4
12
Red
DVD3V3
U221 NC/ JSA-1130
ADDR
1
VDD
2
GND3SCL
4
SDA
5
INT
6
R224
NC/ 0R 05 1/ 16W
Light Sensor
R222
NC/ 10K 1/ 16W 5%
C222 N C / 1uF 10V
R221
NC/ 10K 1/ 16W 5%
LS_SCL
LS_SDA
R223
NC/ 0R 05 1/ 16W
JSA-1130
R224 R223
JSA-1130NCNC 0R
0R
I2C addr
0x45
0x44
C221 N C / 100N 16V
LS_SDA LS_SCL
DVD3V3
C202
1uF 10V
IR Receiver
3V3SB
R202
1K 1/16W 5%
LED_R
Q201 BC847BW
LED_R
CN201
CONN
1 2
3
4 5 6 7
8
9 10 11 12 13
1415
R201 100R 1/16W 5%
ZD201
MLVG0402
12
U201
TSOP75436TR
GND
1
VCC
2
Vout
3
GND
4
3V3SB

10-6-1 IR & LED & Light Sensor

Circuit Diagrams and PWB Layouts
EN 69TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 70

10-6-2 IR/LED board layout

20030_548.eps
2015-08-27
715G8010
IR/LED panel
layout top/bottom
R204
R202
CN201
R203
Q201
H7
H9
U201
C201 C202
ZD201
R221
R222
C221
C222
U221
R224 R223
R201
LED201
H8
H10
Layout IR/LED panel (top side)
Layout IR/LED panel (bottom side)
Circuit Diagrams and PWB Layouts
EN 70TPM16.4L LA 10.
2016-Apr-1
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Page 71
Circuit Diagrams and PWB Layouts
19850_524.eps
Key
E E
2014-05-28
715G7088
Key
KEY1
Menu Right Left Down Up
6-5 short
R04
2K2 1/10W 1%
2-5 short
F1
3-5 short
R01
1K2 1/10W 1%
1-5 short 4-5 short
F2 F3
F5
F3
F1
F4
F2
SW01
TACT SW 6P
3 4
2
1 6
5
7
8
F4 F5
R05
15K 1/10W 1%
Direction
R03
6K8 1/10W 1%
switch
----><----|
Joystick circuit diagram
C06
0.1uF 50V
pin1
0V
0.5V
0.81V
1.65V
2.27V
pin2
No function
pin3
3.3V
C04
NC / 100N 50V
pin4 pin5
C05
NC / 100N 50V
pin6
----><----|
C01
NC / 100N 50V
C02
NC / 100N 50V
C03
NC / 100N 50V
----><----|
----><----|
----><----|
Down
Up
Center
CN01
CONN
1 2
34
R02
0R05 1/ 10W
0R
2K2
Key functionResistance
Center
CH+
CH-
1K2
VOL-
VOL+
Left
15K
6K8
Right
Voltage
JOYSTICK

10.7 E 715G7088 Keyboard control panel

10-7-1 Key

EN 71TPM16.4L LA 10.
2016-Apr-1
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Page 72
Circuit Diagrams and PWB Layouts
19850_525.eps
2014-06-06
715G7088
Keyboard control panel
layout top/bottom
C01
C02
C03
C04
C05
C06
R01
R02
R03
R04
R05
H1
H2
H3
H4
H5
H6
CN01
SW01
SW1
SW2
SW3
SW4
Layout Keyboard control panel (top side)
Layout Keyboard control panel (bottom side)

10-7-2 Key board layout

EN 72TPM16.4L LA 10.
2016-Apr-1
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div.table
Page 73

11. Styling Sheets

20010_800.eps
5101 series 32"
Pos No. Description
Remarks
0030 Bezel 0040 Rear cover 0050L Stand Assy_L 0050R Stand Assy_R 0095 V0 SHEET 1050 Display panel 1053 Panel SSB 1054 Power Supply Unit 1056 IR/LED panel 1057 Keyboard control panel 1176 Remote control Not displayed 1184 Speakers
FOR ELECTRICAL PARTS/ASSEMBLIES SEE WIRING DIAGRAM CHAPTER 9
1056
1054
1184
0040
1050
1184
1053
0095
1057
0030
0050R
0050L

11.1 5101 series 32"

Styling Sheets
EN 73TPM16.4L LA 11.
2016-Apr-1
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div.table
Page 74

11.2 5101 series 43"

20070_800.eps
5101 series 43"
FOR ELECTRICAL PARTS/ASSEMBLIES SEE WIRING DIAGRAM CHAPTER 9
Pos No. Description
Remarks
0030 Bezel 0040 Rear cover 0050L Stand Assy_L 0050R Stand Assy_R 1050 Display panel 1053 Panel SSB 1054 Power Supply Unit 1056 IR/LED panel 1057 Keyboard control panel 1176 Remote control Not displayed 1184 Speakers
1054
1184
0040
1050
1184
1053
1056
1057
0030
0050R
0050L
Styling Sheets
EN 74TPM16.4L LA 11.
2016-Apr-1
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div.table
Page 75

11.3 5101 series 49"

20070_801.eps
5101 series 49"
Pos No. Description
Remarks
0030 Bezel 0040 Rear cover 0050L Stand Assy_L 0050R Stand Assy_R 1050 Display panel 1053 Panel SSB 1054 Power Supply Unit 1056 IR/LED panel 1057 Keyboard control panel 1176 Remote control Not displayed 1184 Speakers
FOR ELECTRICAL PARTS/ASSEMBLIES SEE WIRING DIAGRAM CHAPTER 9
1054
1184
1056
0040
1050
1184
1053
1057
0030
0050R
0050L
Styling Sheets
EN 75TPM16.4L LA 11.
2016-Apr-1
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