Philips 49PUH6600, 55PUH6600 Schematic

Page 1
Colour Television Chassis
TPS15.3A
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 (49" 6600 series) 9 Cable dressing (55" 6600 series) 10
5. Service Modes and Fault Finding 13
6. Alignments 16
7. Circuit Descriptions 17
8. IC Data Sheets 23
9. Block Diagrams Block diagram 6600 series 27
10. Circuit Diagrams and PWB Layouts Drawing PWB A 715G6973 PSU B 715G6546 SSB 34 46-47 J 715G7691 IR/LED Panel 48 49 J 715G7074 IR/LED Panel 50 51 E 715G6316 Keyboard control panel 52 53 E 715G7088 Keyboard control panel 54 55 TU 715G6344 TunerBox Board 56 57
11. Styling Sheets 6600 series 49" 58 6600 series 55" 59
28 32-33
Published by XMM/SC 1543 Quality Printed in the Netherlands Subject to modification EN 3122 785 19980
2015-Oct-23
2015 ©
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 TPS15.3A 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

24 910 11
Mechanics
CTN
49PUH6600/96 2-1 4-1 4-3 4-4 9.1 10.1 10.2 10.3 10.5 10.7 11.1 55PUH6600/96 2-1 4-2 4-3 4-4 9.1 10.1 10.2 10.4 10.6 10.7 11.2
Connection Overview
Wire Dressing
Rear Cover Removal
Block Diagrams Schematics
SSB Removal
Block Diagram
Power Supply
SSB
J (IR/LED)
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
E (Keyboard/Leading Edge)
TunerBox Board
Styling
2015-Oct-23
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Page 3

2.3 Connections

Audio outAudio out
1
2
NETNETWORKORK
PC / DVI PC / DVI
MICMIC
19900_001.eps
1 2
3
4
10
5 6
7
8
9
1112
1314
1 2 3 4
10000_022_090121.eps
090121
1 2 3 4
10000_022_090121.eps
090121
10000_017_090121.eps
090428
19
1
18 2
Technical Specs, Diversity, and Connections
EN 3TPS15.3A LA 2.

2.3.1 Side Connections

Figure 2-1 Connection overview

Note: The following connector colour abbreviations are used
(acc. to DIN/IEC 757): Bk= Black, Bu= Blue, Gn= Green, Gy= Grey, Rd= Red, Wh= White, Ye= Yellow.
1 - Cinch: SPDIF - Out
Ye -Coaxial 0.4 - 0.6V
2 - Audio out
Connect to loudspeaker box or equivalent to output audio.
3 - Mic - in
Bk -Microphone 80 - 600 / 10 mW ot
4 - USB1 2.0
1-+5V k 2 -Data (-) jk 3 -Data (+) jk 4 -Ground Gnd H
Figure 2-2 USB (type A)
/ 75 kq
PP
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5 - USB2 2.0
Figure 2-3 USB (type A)
1-+5V k 2 -Data (-) jk 3 -Data (+) jk 4 -Ground Gnd H
6 - TV ANTENNA - In
Signal input from an antenna, cable or satellite.
7 - TV ANTENNA - In
Signal input from an antenna, cable or satellite.
8 - HDMI 2: Digital Video - In, Digital Audio - In/Out
Figure 2-4 HDMI (type A) connector
1 -D2+ Data channel j
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EN 4 TPS15.3A LA2.
10000_017_090121.eps
090428
19
1
18 2
1
6
10
11
5
15
10000_002_090121.eps
090127
10000_017_090121.eps
090428
19
1
18 2
10000_025_090121.eps
120320
Technical Specs, Diversity, and Connections
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 16 - DDC_SDA DDC data jk 17 - Ground Gnd H 18 - +5V j 19 - HPD Hot Plug Detect j 20 - Ground Gnd H
9 - HDMI 3: Digital Video - In, Digital Audio with MHL ­In/Out
Figure 2-5 HDMI (type A) connector
1 -D2+ Data channel j 2-Shield Gnd H 3 -D2- Data channel j 4 -D1+ Data channel j 5-Shield Gnd H 6 -D1- Data channel j 7 -D0+ Data channel j 8-Shield Gnd H 9 -D0- Data channel j 10 - CLK+ Data channel j 11 - Shield Gnd H 12 - CLK- Data channel j 13 - Easylink/CEC Control channel jk 14 - ARC Audio Return Channel k 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-n.c. 5 -Ground Gnd H 6 -Ground Red Gnd H 7 -Ground Green Gnd H 8 -Ground Blue Gnd H 9-+5V 10 - Ground Sync Gnd H
+5 V j
DC
11 - Ground Red Gnd H 12 - DDC_SDA DDC data j 13 - H-sync 0 - 5 V j 14 - V-sync 0 - 5 V j 15 - DDC_SCL DDC clock j
13 - HDMI 1: Digital Video - In, Digital Audio with MHL ­In/Out
Figure 2-7 HDMI (type A) connector
1 -D2+ Data channel j 2 -Shield Gnd H 3 -D2- Data channel j 4 -D1+ Data channel j 5 -Shield Gnd H 6 -D1- Data channel j 7 -D0+ Data channel j 8 -Shield Gnd H 9 -D0- Data channel j 10 - CLK+ Data channel j 11 - Shield Gnd H 12 - CLK- Data channel j 13 - Easylink/CEC Control channel jk 14 - ARC Audio Return Channel k 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
14 - RJ45: Ethernet

2.3.2 Rear Connections

10 - Cinch: Video YPbPr - In, Audio - In
Gn - Video - Y 1 V Bu -Video - Pb 0.7 V Rd -Video - Pr 0.7 V Wh -Audio - L 0.5 V Rd -Audio - R 0.5 V
11 - Audio In: PC/DVI - Left / Right,
Gn - Audio L/R in 0.5 V
12 - PC IN:VGA
1 -Video Red 0.7 V 2 -Video Green 0.7 V 3 -Video Blue 0.7 V
2015-Oct-23
/ 75 W jq
PP
/ 75 W jq
PP
/ 75 W jq
PP
/ 10 kW jq
RMS
/ 10 kW jq
RMS
/ 10 k jq
RMS
Figure 2-6 VGA connector
/ 75 W j
PP
/ 75 W j
PP
/ 75 W j
PP
1 -TD+ Transmit signal k 2 -TD- Transmit signal k 3 -RD+ Receive signal j 4 -CT Centre Tap: DC level fixation 5 -CT Centre Tap: DC level fixation 6 -RD- Receive signal j 7 -GND Gnd H 8 -GND Gnd H

2.4 Chassis Overview

Refer to 9. Block Diagrams for PWB/CBA locations.
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Figure 2-8 Ethernet connector
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 5TPS15.3A LA 3.
-6
),
-12
).
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EN 6 TPS15.3A 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 7TPS15.3A 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 TPS15.3A 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
2
C bus
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

19980_100.eps
CN701
CN8101
CN9101
CN403
MAIN POWER SUPPLY
(1054)
A
SSB
(1053)
B
ECN401A
ECN601
ECN403
ECN601
LOUDSPEAKER
(1184)
LOUDSPEAKER
(1184)
IR/LED BOARD
(1056)
J
ECN403
ECN701
E
CN01
KEYBOARD CONTROL
(1057)
CN103
CN601
ECN401A
ECN401A
ECN701
ECN601
CN401
WIFI MODULE
W
WiFi01
ECN103
ECN103
Tuner Board
(1067)
TU01
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 9TPS15.3A LA 4.

Figure 4-1 Cable dressing (49" 6600 series)

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EN 10 TPS15.3A LA4.
19980_101.eps
CN701
CN8101
CN9101
CN403
MAIN POWER SUPPLY
(1054)
A
SSB
(1053)
B
ECN401A
ECN601
ECN403
ECN601
LOUDSPEAKER
(1184)
LOUDSPEAKER
(1184)
IR/LED BOARD
(1056)
J
ECN403
ECN701
E
CN01
KEYBOARD CONTROL
(1057)
CN103
CN601
ECN401A
ECN401A
ECN701
ECN601
CN401
WIFI MODULE
W
WiFi01
ECN103
ECN103
Tuner Board
(1067)
TU01
Mechanical Instructions

Figure 4-2 Cable dressing (55" 6600 series)

4.2 Se rvice 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 49PUH6600/96, but will be similar for 55" model.

4.3.1 Rear Cover

Refer to Figure 4-3 Warning: Disconnect the mains power cord before removing the rear cover.
1. Remove the fixation screws [1] that secure the base assy, pull out the base assy from the set. Then remove the fixation screws [2],[3] that secure the rear cover. Refer to
Figure 4-3
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.
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Page 11
Mechanical Instructions
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1
1
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11
2
2
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22
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EN 11TPS15.3A LA 4.

4.3.2 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.

4.3.3 Small Signal Board (SSB) & Wifi module

Refer to Figure 4-4 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! Unplug the cable/flat foils connector.
2. Unplug all other connectors [2].
3. Remove all the fixation screws [3] from the SSB.
4. Take out the SSB with I/O bracket.
5. The SSB can now be shifted away from side connector cover, then lifted and taken out of the I/O bracket. Refer to
Figure 4-4
6. Unplug the connector [4] from the wifi module, then remove the fixation screw [5].
7. The wifi module now can be taken out from the panel. Refer to Figure 4-4
for details.
for details.
for details.
Figure 4-3 Rear cover removal
Figure 4-4 SSB & Wifi module removal

4.3.4 TunerBox Board

1. Gently Unplug Pin connectors from the SSB.
2. Take the TunerBox Board out.
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EN 12 TPS15.3A LA4.

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. 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.

4.3.6 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.

4.3.7 IR/LED board

1. Unplug the connector from the IR/LED board.
2. Gently release the clip that holds the board and take it out from the DECO_BEZEL.
When defective, replace the whole unit.

4.3.8 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 as described earlier.
5. Remove the IR/LED as described earlier.
6. Remove the WIFI module as described earlier.
7. Remove the fixations screws that fix the metal clamps to the front bezel. Take out those clamps.
8. Remove all other metal parts not belonging to the panel.
9. Lift the LCD Panel from the bezel.
When defective, replace the whole unit.
Mechanical Instructions

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 4-2
• Pay special attention not to damage the EMC foams on the SSB shields. Ensure that EMC foams are mounted correctly.
.
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Service Modes and Fault Finding

5. Service Modes and Fault Finding

Index of this chapter:

5.1 Test Points

5.2 Service Modes

5.3 Stepwise Start-up
5.4 Software Upgrading
5.5 Fault Finding and Repair Tips
EN 13TPS15.3A LA 5.
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).

5.2.1 Contents of the Factory mode:

5.1 Test Points
As most signals are digital, it will be difficult to measure waveforms with a standard oscilloscope.
Perform measurements under the following conditions:
• Service Default Mode.
• Video: Colour bar signal.
• Audio: 3 kHz left, 1 kHz right.
5.2 Service Modes
The Service Mode feature is split into one part:
• Factory Mode.
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 (Factory Mode).
Table 5-1 Factory mode overview
Default value
Item Item value
0 Brand Philips-TWN Philips-TWN Brand name 1 Model 49PUH6600 55PUH6600 Model name 2 HW Ver 715G6546M1A001004K 715G6546M1A001004K Hardware version 3 SW Ver eg: 1.03_20150823_1203_49 eg: 2.02_20150918_0026_55 Software version 4 Date Sun Aug 23 Fri Sep 18 Software release date 5 Scaler MSD8590QV MSD8590QV Scaler name 6 Tuner TDSH-T070F TDSH-T070F Tuner name 7 Panel LVG490EQYM1AD82X0X LVA550QVN03AC52P0X Panel type 8 ADC Adjust Press OK to adjust Press OK to adjust ADC Adjust 9 W/B Adjust Press OK to adjust Press OK to adjust W/B Adjust 10 SSC Adjust Press OK to adjust Press OK to adjust SSC Adjust 11 EQ Adjust Press OK to adjust Press OK to adjust EQ Adjust 12 Burn In Off Off Burn In 13 Reset Press OK Press OK System Reset 14 Exit Press OK Press OK Exit factory mode
Purpose
• To perform extended alignments.
Specifications
• Displaying and or changing Panel ID information.
• 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” press “1999”, directly followed by the “Back” 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, the Default value just for reference.
Description49PUH6600/96 55PUH6600/96
How to Exit the Factory mode
Use one of the following methods:
• Select EXIT 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.
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EN 14 TPS15.3A LA5.
19080_206_110323.eps
120224
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)

5.3 Stepwise Start-up

Service Modes and Fault Finding

5.4 Software Upgrading

5.4.1 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.

5.4.2 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.
2015-Oct-23

Figure 5-1 Stepwise Start-up

5.4.3 Check the current TV software version

5.4.4 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 “Menu” + “1999” + “Back” button on the remote control to enter the Factory mode.
2. Use the up/down cursor keys to select “SW Ver”.
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
.
Page 15
Service Modes and Fault Finding
19452_200_130902.eps
130902
Confirm
No
19452_201_130902.eps
130902
Confirm
No
EN 15TPS15.3A LA 5.

5.4.5 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. And no change the software name.
4. Select [Confirm] and press OK to start software updates. See Figure 5-2
.
5. Upgrading will now begins and the status of the updating progress will be displayed. See Figure 5-3
6. When the TV software is updated. Remove your USB flash drive, and the TV will turn on automatically.
• FUS_clustername_version.zip: Contains the “autorun.bin” which is needed to upgrade the TV main software and the software download application.
• NVM_clustername_version.zip: Default NVM content. Must be programmed via ComPair.

5.4.7 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.

5.5 Fault Finding and Repair Tips

Note:
• 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.

5.5.1 TV Will Not Start-up from Stand-by

Possible Stand-by Controller failure. Re-flash the software.
Figure 5-2 Update the TV software [1/2]
Figure 5-3 Update the TV software [2/2]
Note:
• Do not remove the USB flash drive during the software update.
• Do not turn off the power 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.

5.5.2 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.

5.5.3 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!

5.4.6 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. See ComPair for further instructions.
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Page 16
EN 16 TPS15.3A LA6.

6. Alignments

Index of this chapter:

6.1 General Alignment Conditions

6.2 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
• Use an isolated trimmer/screwdriver to perform alignments.
> 10 M, Ci < 20 pF.
i
6.2 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.
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.
, 50/ 60 3 Hz.
AC
Alignments

6.2.1 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 board.
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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 ATV reception and DVB-T reception
7.5 HDMI
7.6 Video and Audio Processing - MSD8590QV
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 TPS15.3A LA is a new chassis launched in AP in 2015. The whole range is covered by MSD8590QV. The major deltas versus its predecessor support PAL/NTSC/SECAM, with multi-media, Video out function.
The TPS15.3A LA chassis comes with the following stylings:
• series xxPUH6600xx

7.1.1 Implementation

Key components of this chassis are:
• SCALER MSD8590QV-XZ HSBGA-707
• TUNER - TDSH-T070F
• DRAM K4B4G1646D-BCMA 4Gb FBGA-96
• TEST ONLY AUDIO YSS952 QFN-32
• AUDIO WM8782SEDS/RV SSOP-20
• AUDIO AD82588B-LG48NAY 2x15W stereo E-LQ
• AUDIO WM8524CGEDT/R / TSSOP-16

7.1.2 TPS15.3A LA Architecture Overview

EN 17TPS15.3A LA 7.
For details about the chassis block diagrams refer to chapter
9. Block Diagrams
.
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EN 18 TPS15.3A LA7.
19980_200.eps
Tuner
DC/DC
USB
ANALOG I/O
PC Audio
HDMI
HDMI
SPDIF
Audio out
Headphone
MSD8590QV-XZ
ANALOG INPUT
USB
HDMI
NETWORK
DC/DC
DDR
DDR

7.1.3 SSB Cell Layout

Circuit Descriptions
Figure 7-1 SSB layout cells (top view) (6600 series)
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Page 19

7.2 Power Supply

Platform
MSD8590QV
AUDIO
AMP
LVDS
24V 12V
CN701
AC IN
DIM
BL-ON/OFF
12V
AC input +
Main filter
Display Power
Platfor m p ow er
PFC
Lower Stby Power
CN8101
1 power-PCB
PS_ON
19980_201.eps
Refer to figures Figure 7-2 for the power architecture of this platform.
Circuit Descriptions
EN 19TPS15.3A 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 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 TPS15.3A 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
• Lamp “on/off”
• DIM (PWM) (not for PSDL)
In this manual, no detailed information is available because of design protection issues.
The output voltages to the chassis are:
• +3.65V output (standby mode)
• +12V output (on-mode)
• +3.65V output (on-mode)
• +12V_audio (audio AMP power)
• Output to the display; in case of
- IPB: High voltage to the LCD panel
- 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:

Figure 7-2 Power Architecture (6600 series)

• CCFL/EEFL backlight: power board is conventional IPB
• LED backlight:
- side-view LED without scanning: PSL power board
- side-view LED with scanning: PSLS power board
- direct-view LED without 2D-dimming: PSL power board
- direct-view LED with 2D-dimming: PSDL power board.
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
no. CN8101 CN9101 Descr. to panel to SSB Pin 12 16
1 +VLED DIM 2 n.c. BL_ON/OFF 3 -VLED 1 PS_ON 4-VLED 1 3D_ON 5-VLED 1 GND 6n.c. GND 7n.c. GND 8-VLED 2 GND 9 -VLED 2 +12V_A 10 -VLED 2 +12V_A 11 n.c. +12V 12 +VLED +12V 13 - +12V 14 - +12V 15 - +3.5V 16 - +3.5V
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Connector 49" & 55"
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EN 20 TPS15.3A LA7.
12V
12V
GND
16
15
14
U702 AZ1117D
VCC_1V2_CPU
Max. 6A
Max. 6A
VCC_1V2
U704 G5196R41D
DDR_1V5
U707 AT1528P11U
Max. 2A
U705 G5196R41D
4
24V
Power Board Input : +5VSB, P12V, P24V
10
3
POWER
BOARD
5
GND
Q705 AO4449-7A
12V
VCC_5V
Function
GND
7
5.2V
24V
5.2V
PWR_ON
12V
12
6
2D_3D * DIM
11
1 2
13
Pin
8
+5VSB
GND
9
BL_ON_OFF
U701 AP1117E33L-13-77
Max. 1A
3V3_STB
VCC_1V8
U706 AP1117E18G-13
Max. 0.6A
TU_3V3
VCC_3V3
Max. 1A
USB_5V
P24V
Q403 AO4449-7A
U703 G5312QN1UP12V
PANEL LVDS Power
Audio Amplifier
Max. 6A
U708 AZ1117D
Max. 1A
U709 AP1117E33L-13-77
Max. 1A
19980_202.eps
Circuit Descriptions

7.3 DC/DC Converters

The on-board DC/DC converters deliver the following voltages (depending on set execution):
• +5VSB, permanent voltage for the Stand-by controller
• 3V3_STB, power supply for LED/IR receiver and Keyboard
• +12V, input from the power supply for the panel common (active mode)
• P24V, input from the power supply for the amplifier
• DDR_1V5, supply voltage for DDR
• 5V_USB input supply voltage for WIFI
• +TU_3V3, supply voltage for tuner
• USB_5V, input intermediate supply voltage for USB Power
• 3V3_STB from the power supply for the scaler IC MSD8590QV
Figures gives a graphical representation of the DC/DC converters with its current consumptions:

Figure 7-3 DC/DC converters [1] (6600 series)

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Circuit Descriptions
U403 H5 TQ4G63AFR- RDC For DDR I II
U709 AP1117E33L-13-77
T_I2C
U706 AP1117E18G-13
U603 YSS952 Fo r Karaoke DSP
For MSD8590QV
VCC_1V8
U401 MSD8590QV
For USB Por t
USB_5V
U601 AD83586
PANEL LED Driver
+5VSB
PANEL VB1 Pow er
P24V
Q403 AO4449-7A
AMP_24V
P12V
Main Board Power System
For Audio Amplifier
Panel
For Audio Amplifier
U601 AD83586
For Res et IC
U701 AP1117E33L-13-77
U406 G690H293T73
3V3_STB
VCC_1V2_CPU
U705 G5196R41D For MSD8590QV CPUU401 MSD8590QV
For MSD8590QVU401 MSD8590QV
For Audio ADCU602 WM8782SEDS/RV
TU101 TDSH-T070F
TU_3V3
For TUNER 3.3V
U708 AZ1117D
VCC_3V3
U702 AZ1117D
For NAND FlashU407 THGBMBG6D1KBAIL
U703 G5312QN1U
+5VSB
For SPI Flash
U405 MX25L1606EM2I-12G
Q705 AO4449-7A
VCC_5V
U401 MSD8590QV
VCC_1V2
For MSD8590QV CoreU704 G5196R41D
U504 STMPS2171STR
For MHL Pow er
Kala OK DSP YSS952
Audio Amp AD83586
M_I2C
Tuner TDSH-T070F
LED Control IC PCA9634PW
MSD8590QV
U401 MSD8590QV
For MSD8590QV
U601 AD83586
For Audio Amplifier
U603 YSS952 Fo r Karaoke DSP
U604 WM8524CGEDT/R For Audio DAC
U402 H5TQ4G63AFR-RDC
DDR_1V 5
For DDR III
U707 AT1528P11U U401 MSD8590QV For MSD8590QV
19980_203.eps
MSD8590QV
I2C
I2C
IF_AGC
IF
IF_AGC
TDSH-T070F
SAWless with ATV mode
19980_204.eps
MSD8590QV
I2C
I2C
IF_AGC
IF
IF_AGC
TDSH-T070F
SAWless with DTV mode
19980_205.eps
EN 21TPS15.3A LA 7.

7.4 Front- End Analogue ATV reception and DVB-T reception

7.4.1 Front-End Analogue Part

The Front-End for the analogue tuner consist of the following key components:
• SCALER MSD8590QV-XZ HSBGA-707
• TUNER - TDSH-T070F
Below find a block diagram of the front-end application for analogue part.
Figure 7-5 Front-End analogue block diagram

Figure 7-4 DC/DC converters [2] (6600 series)

7.4.2 Front-End DVB-T reception DTV Part

The Front-End for DVB-T DTV part consist of the following key components:
• SCALER MSD8590QV-XZ HSBGA-707
• TUNER - TDSH-T070F
Below find a block diagram of the front-end application for DTV part.
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Figure 7-6 Front-End DVB-T DTV block diagram
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EN 22 TPS15.3A LA7.
Circuit Descriptions

7.5 HDMI

Refer to figures 7-7 HDMI input configuration for the application.
MSD8590QV
RX
I2C
RX
CN501 HDMI1

Figure 7-7 HDMI input configuration

The HDMI connector has the following specifications:
• +5V detection mechanism
• Stable clock detection mechanism
• Integrated EDID
• HPD control
• Sync detection
• TMDS output control
CN507
HDMI SIDE
RX
I2C
HDMI SIDE
I2C
CN506
19980_206.eps

7.6 Video and Audio Processing - MSD8590QV

The MSD8590QV is the main audio and video processor (or System-on-Chip) for this platform. It has the following features:
• High performance Multi-core CPU and GPU
• DVB-T/ DVB-C Front-End Demodulator
• Built-in Frame Rate Converter
• 3D Formatter Engine
• A Multi-Standard A/V Format Decoder
• The MACE-PROUC Video Processor
• Home Theater Sound Processor
• Internet and Variety of Connectivity Support
• Peripheral and Power Management
The MSD8590QV combines front-end video processing functions, such as NTSC/PAL/SECAM Video Decoder. MSD8590QV is a Powerful ARM-based Smart TV solution that supports dual 8/10bit LVDS output, channel decoding, MPEG decoding, 3D formatter, and media-center functionality enabled by a high performance AV CODEC and CPU. The MSD8590QV hosts the most advanced picture processing engine, MStarACE-PROUC, for all the Experts in various TV video quality tuning fields to develop the state-of-the-art TV and DTV system. By the use of AV decoder capable of decoding a plethora of high definition content with Ethernet, USB 2.0 connectivity and a powerful CPU, an MSD8590QV based system can provide a high quality media-center experience.
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8. IC Data Sheets

19980_300.eps
Block diagram
Pinning information
1
MCLK
2
3
VREFGND
4 5
VREFP
6 7
AVDD
8
AINR
9
AGND
10
AINOPR
AINOPL COM
AINL
M/S
BCLK
FSAMPEN
IWL
LRCLK
DGND
DOUT
DVDD
VMID
FORMAT
11
12
13
14
15
16
17
20 19 18
WM8782
WM8782
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 10-2-9 Karaoke/MIC In/Audio Output B09, WM8782SEDS/RV (IC U602)

IC Data Sheets
EN 23TPS15.3A LA 8.

Figure 8-1 Internal block diagram and pin configuration

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div.table
2015-Oct-23
Page 24
EN 24 TPS15.3A LA8.
19980_301.eps
Block diagram
Pinning information
32
31
30
29
28
27
26
9
10
11
12
13
14
15
16
18
19
20
21
22
23
24
8
7
6
5
4
3
2
1
YSS952
(QFN32)
(Top View)
25
17 OPEN
DVSS
GPIO11
GPIO10
GPIO9 GPIO8
OPEN
GPIO0
GPIO1
GPIO7
GPIO6
GPIO5
GPIO4
GPIO3
GPIO2
IOVDD
XOUT XIN
PLLVDD
IC_N
SDA SCL
IOVDD
DVDD18
DVDD18
DVSS
PLLVSS
IRQ_N
TESTb
PLLVSS
DVSS
DVSS
YSS952
IC Data Sheets

8.2 Diagram 10-2-9 Karaoke/MIC In/Audio Output B09, YSS952 (IC U603)

2015-Oct-23
back to

Figure 8-2 Internal block diagram and pin configuration

div.table
Page 25

8.3 Diagram 10-2-9 Karaoke/MIC In/Audio Output B09, WM8524CGEDT/R (IC U604)

19980_302.eps
Block diagram
Pinning information
WM8524
WM8524
IC Data Sheets
EN 25TPS15.3A LA 8.

Figure 8-3 Internal block diagram and pin configuration

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2015-Oct-23
Page 26
EN 26 TPS15.3A LA8.
19980_303.eps
Block diagram
Pinning information
1
AGND
LX
V+
2
3
4
5 6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
ILIM
AGND
V5V
PGND
LX LX LX LX
PGND
PGND
LX
LX
PGND
PGND
PGND
PGND
V+ V+ V+ V+
OUT
TON
FB
VCC
EN
BST
PGOOD
NC
1
AGND
LX
V+
2
3
4
5 6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
ILIM
AGND
V5V
PGND
LX LX LX LX
PGND
PGND
LX
LX
PGND
PGND
PGND
PGND
V+ V+ V+ V+
OUT
TON
FB
VCC
EN
BST
PGOOD
NC
G5312QN1U
G5312QN1U
PWM
controller
0.75V
Reference
PGOOD
BST
LX
PGND
TON OUT
FB
EN
ILIM
AGND
OCP
POR
On-Time
Off-Time
DISCHG
VCC
OT
OVP
UVP
KV+
5V
LDO
V5V
V+
V5V
V+
DH
DL
Q1
Q2
PWM
controller
0.75V
Reference
PGOOD
BST
LX
PGND
TON OUT
FB
EN
ILIM
AGND
OCP
POR
On-Time
Off-Time
DISCHG
VCC
OT
OVP
UVP
KV+
5V
LDO
V5V
V+
V5V
V+
DH
DL
Q1
Q2
IC Data Sheets

8.4 Diagram 10-2-12 Power B12, G5312QN1U (IC U703)

2015-Oct-23

Figure 8-4 Internal block diagram and pin configuration

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Page 27

9. Block Diagrams

19980_400.eps
RJ-45
VB1
USB 2.0 Port3
LCD PANEL
R/L
USB 2.0
RF Module
USB 2.0
USB 2.0 Port2
USB 2.0 Port1
R/L
WiFi Module
VIDEO & YPbPr AUDIO IN
USB 2.0 Port0
VGA AUDIO IN
DDR III x 2 (4G 1866MHz) H5TQ4G63AFR-RDC
RESET IC G690H293T73
YPbPr
Hsync, Vsync
VIDEO
CVBS (Share with YPbPr Y)
VGA
RGB
YPbPr
HDMI 1 / DVI
HDMI 2 / MHL
TMDS
TMDS
TMDS
HDMI 3 (ARC)
R/L
Audio Amplifier AD83586
SPEAKER OUTPUT
I2S
NOR FLASH ROM MX25L1606EM2I-12G
NAND FLASH ROM THGBMBG6D1KBAIL
MIC
IEC958
SPDIF Output
I2S
Karaoke DSP YSS952
R/L
Audio DAC WM8524CGEDT/R
Audio Lineout
Audio ADC WM8782SEDS/RV
I2SR/L
Tuner TDSH-T070F
MSD8590QV
VIF

9.1 Block diagram 6600 series

Block Diagrams
EN 27TPS15.3A LA 9.
2015-Oct-23
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div.table
Page 28
Circuit Diagrams and PWB Layouts
19980_500.eps
AC Input
A01 A01
2015-08-04
715G6973
AC Input
CN9901 NC/CONN
1 2
CN9902 AC SOKET
12
F9901
1 2 3 4
RV9901 680V
FB9902 BEAD
12
FB9901 BEAD
12
C9901
470NF 275V
C9902
470NF 275V
L9901 12mH
1
2
4
3
R-
-
+
BD9901 GBJ1008-FUC
2
1
3
4
BO
C9911 47pF 250V
N
Vsin
C9916
1NF 250V
U9901
NC/CAP004DG-TL
NC
1
D12D1
3
NC
4
NC5D26D27NC
8
C9907 NC/47PF
R9901 NC/ 510k 1/ 2W
R9902 NC/ 510k 1/ 2W
GND4 NC/GND
1
CN9903 NC / CONN
L1N
2
GND2 NC/GND
1
GND1 GND
1
T5AH/250V
NC
NC
C9913
220PF 250V
FB9903 BEAD
1 2
C9912 47pF 250V
t
NR9903 1R
12
C9914
220PF 250V
t
NR9902 1R
1 2
L9902 12mH
1
2
4
3
SG9901 NC/DSPL-501N-A21F
SG9902
NC/DSPL-501N-A21F
F9902
R9903 680K OHM +-1% 1/4W
R9904 680K OHM +-1% 1/4W
R9905 680K OHM +-1% 1/4W
F9903
R9906 680K OHM +-1% 1/4W
R9907 680K OHM +-1% 1/4W
R9908 680K OHM +-1% 1/4W
t
NR9901 1R
12
HS9901 HEAT SINK
1 2
3
4

10. Circuit Diagrams and PWB Layouts

10.1 A 715G6973 PSU

10-1-1 AC Input

EN 28TPS15.3A LA 10.
2015-Oct-23
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div.table
Page 29

10-1-2 PFC

19980_501.eps
PFC
A02 A02
2015-08-04
715G6973
PFC
-
+
BD9801 KBP208G-C
2
1
3
4
Q9801
TK18A60V
R9816 10K 1/8W 1%
C9815
NC/47PF
D9802 SS1060
12
R9815 75 OHM 1/8W
C9813
3.3nF 50V
R9813
NC / 24K 1/ 8W 1%
ZD9801
BZT52-B3V6
12
R9817 10K 1/8W 1%
R9812 47R 1%
C9812 47PF 50V
HS9801 HEAT SINK
1 2
3
4
R-
+VCC2
+
C9810 10UF 50V
C9811 100N 50V
C9805
1NF 50V
R9808
16K +-1% 1/8W
R9807 470K 1%
C9807
0.47uF 50V
R9809 27K 1/8W 1%
C9806
1uF
R9810
22K 1/8W 1%
C9808
10N 50V
C9819 470PF
R9811
33K 1/8W 1%
C9809
10N 50V
R9818
100K 1/8W 1%
FB9801
BEAD
12
C9818 NC/47PF
C9817
100N 50V
FB9904 NC/BEAD
12
C9820 1NF
L9801 220uH
6
4
C9816 1NF
C9814 47PF
For Power Saving
D9801 FMNS-1106S
+
C9801
68uF 450V
+
C9802
68uF 450V
Vbus
R9803 1MOHM +-1% 1/4W
R9805 680K OHM +-1% 1/4W
R9806 100K 1%
R9804 680K OHM +-1% 1/4W
FB_PFC
FB_PFC
+VCC2
U9801 SSC-2005S
FB
1
COMP
2
RT
3
RDLY4CS
5
GND
6
OUT
7
VCC
8
R9819
NC/0R05
Q9802
AO3160
R9814
10R 1/ 8W 5%
Vsin
C9803 1uF 450V
C9804 1uF 450V
R-
R9801
0.1R 3W
R9802
0.1R 3W
Circuit Diagrams and PWB Layouts
EN 29TPS15.3A LA 10.
2015-Oct-23
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Page 30

10-1-3 Main power

19930_502.eps
Main power
A03 A03
2015-05-12
715G6973
Main power
C9303
NC/0.1uF 50V
NC
R9122
1K5 +-1% 1/8W
R9109
10K 1/8W 1%
R9146 0R05
12VS
R9123
4.7K 1/8W
C9118
1uF
U9103 AS431AN-E1
+VCC1
R9131
3K
D9108 1N4148
Q9106 BTC4672M3
C9304
NC/ 1nF 50V
+
C9121 10UF 50V
R9301
NC/3K 1/8W +/-1%
R9124 1K 1/8W 1%
+
C9132
10UF 50V
+3.5V
C9119 220N 50V
C9106
2.2NF
L9301 NC/47uH
+VCC2
+12V
R9126
2K2 1/8W 1%
R9127
160R 1%
Q9109
NC/MMBT3906
12VS
R9132
100KOHM +-1% 1/4W
+12V_A
R9125
9K1 1/8W 1%
R9150 22R 5%
DV5
D9107
NC/1N4148W
12VS
R9128
NC/6.2K 1%
Q9105 NC/2N7002K
Q9102 AOTF298L
ZD9105 BZT52-B15
1 2
Vbus
C9120
NC/0.1uF 50V
U9105
SP6018ES8RGB
Timing
1
Pred
2
VR
3
Adj
4
GND
5
MOSG-C
6
Vdd
7
SYNC
8
R9129 NC/ 10K OH M +-5% 1/8W
R9130
NC/330K 1/8W 5%
C9130
NC/4.7NF 50V
U9106 NC/AS78L12RTR-G1
IN
3
OUT
1
GND
2
D9104 SK510C
12
DV5
C9133 10N 50V
+
C9109
1500UF 35V
+
C9110
1500UF 35V
+
C9105
100UF 50V
R9111 82K 2W
R9302
NC/ 20K 1/ 8W 1%
C9305
NC/ 2. 2nF 50V
FB_SB
C9306 NC/ 2. 2nF 50V
D9106
1N4148W
R9133 2K 1/8W 1%
R9303
NC/30 OHM 1/ 4W
R9304
NC/30 OHM 1/ 4W
R9134
10K 1/8W 1%
D9103 SARS01-V1
BO BO
Q9107 MMBT3906
R9135 10K 1/8W 1%
R9136 10K 1/8W 1%
R9118
NC/100K 1/ 8W 1%
D9101 1N4148W
R9142
10ohm +/-1% 1/8W
Q9103 NC/AOD4185
Q9108 2N7002K
R9106 82 OHM
T9101 POWER X'FMR
1
2
4
5
6
7
8
10
11
C9307
NC/1uF
C9308
NC/1uF
+
C9309
NC/ 470U F 25V
C9122
0.1uF 50V
R9105
10ohm +/-1% 1/8W
C9112 NC/1uF
C9111 NC/1uF
R9137 100 OHM 1/4W
R9138
510K 1% 1/8W
PS_ON
R9101
0R22
12VS
R9305 NC/ 11K 1/ 8W 1%
DV5LED_OVP
R9306 NC/0R051/8W
Q9104 NC/2N7002K
R9107 1Kohm +-1% 1/4W
R9307 NC/3K 1/8W +/-1%
R9119 NC/ 100K 1/ 8W 1%
R9112
27 OHM
R9113
27 OHM
R9114
27 OHM
R9115
27 OHM
C9103 330P 50V
R9116
27 OHM
R9117
27 OHM
C9117
NC/0.1uF 50V
C9104
0.1uF 50V
R9121
NC/ 510K 1% 1/ 8W
U9301
NC/AOZ3015AI
PGND
1
VIN
2
AGND
3
VCC4FB
5
COMP
6
LX
7
EN
8
R9120
NC/ 100 OH M 1%
ZD9103 NC/SS1060
1 2
+3.5V
C9107
2N2 50V
R9110
2R2 +-5% 1/4W
R9139
8.2K 1/4W
R9140
5K1 1/8W 1%
U9101 LD5532
BNO
1
COMP
2
CS
3
GND4OUT
5
VCC
6
NC
7
NC
8
+12V
HS9101 HEAT SINK
1 2
3
4
D9102
FR107G-A0
+12V_A
PS_ON
HS9102 HEAT SINK
1 2
3
4
+3.5V
C9114
1uF
C9116
1uF
Q9101 TK11A65D
FB_SB
DIMBL_ON/OFF
3D_ON
R9141
5K1 1/8W 1%
R9145 0R05 1/4W
CN9101 CONN
2 4 6
8
10 12 14 16
1
3
5 7 9 11 13 15
R9143
4R7 1/4W 5%
C9108
2N2 50V
L9101 3UH
L9102 3UH
C9124
1uF
C9123
1uF
+
C9113
470UF 25V
+
C9115
470UF 25V
U9102 EL817M(X)
1
23
4
C9102
1000pF 50V
D9105
SS1060
1 2
C9101
4N7 50V
C9125
NC/ 47P 50V
12VS
FB_12V
FB_12V
C9126
0.1uF 50V
+
C9301
NC/470uF 25V
C9127
100PF 50V
12VS
C9128
0.1uF 50V
R9144 47K +-1% 1/4W
+12V
+12V_A
R9104
100K 1/8W 1%
ZD9301 NC/BZT52-B4V7
12
+VCC1
C9131 NC/ 100N 50V
U9104 EL817M(X)
1
23
4
C9302
NC/1uF
C9129 1NF 500V
R9147 330K +-1% 1/4W
R9149
330K +-1% 1/4W
ZD9104
BZT52-B15
1 2
R9148
330K +-1% 1/4W
R9103
3.3M 1/ 4W
R9102
3.3M 1/ 4W
R9108
3.3M 1/ 4W
Circuit Diagrams and PWB Layouts
EN 30TPS15.3A LA 10.
2015-Oct-23
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div.table
Page 31

10-1-4 LED Driver

19980_503.eps
LED Driver
A04 A04
2015-08-04
715G6973
LED Driver
+VLED
U8105 TPV101D
DIM
1
EN
2
VCC
3
LED
4
GND
5
ISET
6
GM
7
COMP
8
LED_OVP +12VDV5
U8106 TPV101D
DIM
1
EN
2
VCC
3
LED
4
GND
5
ISET
6
GM
7
COMP
8
D8108
SS1060FL
+VCC2
Q8103 MMBT3904
R8141
1.5R R8142
1.5R
R8126 0 OHM +-5% 1/8W
R8124 100KOHM +-1% 1/4W
R8129
NC / 0 OH M +-5% 1/ 8W
HS8101 HEAT SINK
1 2
3
4
R8127 2K 1/8W 1%
R8130
1K 1/8W 1%
R8146
1.5R
R8128
1K 1/8W 1%
R8145
1.5R
-VLED1
C8105
0.47UF 50V
Q8104
MMBT3906
R8106
NC
R8151 0 OHM +-5% 1/8W
C8136
1uF
+VCC2
R8107
470R 1/8W 1%
C8106 560PF 50V
R8108 240R 1%
-VLED1
-VLED2
-VLED1
-VLED2
C8107 1nF 50V
C8110
1uF
C8125
0.1uF 50V
C8111
47P 50V
+12V
R8159
5K1 1/8W 1%
Q8105 MMBT3906
R8152 0 OHM +-5% 1/8W
R8147
NC/1R1 1%
C8137
1uF
R8148
NC/1R 1%
R8131
1K 1/8W 1%
+12V
R8132 5K1 1/8W 1%
U8104 AS431AN-E1
TPV101_VCC
3D_ON
R8160
62K 1/8W 1%
R8133
30K 1/8W 1%
DIM
R8134
4.3K OHM 1%
C8126
0.1uF 50V
BL_ON/OFF
C8133
1uF
C8112
5PF
VLED1
C8109 27NF
VLED1
HS8102 HEAT SINK
1 2
HS8103 HEAT SINK
1 2
ZD8101
BZT52-B15
1 2
D8106
SS1060FL
+12V
VS
D8107
SS1060FL
R8119
1K5 +-1% 1/8W
ZD8103
BZT52-B13
1 2
VLED1
R8149
NC/1.5R
R8150
NC/1.5R
R8153 0 OHM +-5% 1/8W
U8107 TPV101D
DIM
1
EN
2
VCC
3
LED
4
GND
5
ISET
6
GM
7
COMP
8
C8132
1uF
C8131
0.1uF 50V
C8138
1uF
R8154 NC/0 OHM +-5% 1/8W
U8108 NC/TPV101D
DIM
1
EN
2
VCC
3
LED
4
GND
5
ISET
6
GM
7
COMP
8
R8163
100K 1/8W 1%
C8135
NC/1uF
C8113
100PF1KV
C8134
NC/0.1uF 50V
D8101 UF4007
R8164
1K 1/8W 1%
R8109 10ohm +/-1% 1/8W
C8139
NC/1uF
FB_LED
C8141
100PF 50V
D8102 SS1060FL
D8103
SS1060FL
R8110 10ohm +/-1% 1/8W
R8113 10ohm +/-1% 1/8W
ZD8104
BZT52-B30
1 2
R8111 47R 1%
R8114 47R 1%
R8112
10K 1/8W 1%
R8115
10K 1/8W 1%
U8103 AS431AN-E1
C8124
NC/0. 47U F 50V
FB_LED
FB_LLC
FB_LLC
R8120
NC/3K 1/8W 5%
VS
R8166
3K3 1/8W 1%
Q8107
LMBT3906LT1G
1
2 3
+12V
TPV101_VCC
R8165
510 OHM +-1% 1/8W
D8110
1N4148W
TPV101_VCC
U8109 AS431AN-E1
R8172 510K 1% 1/8W
Q8108
2N7002K
C8143
0.47UF 50V
R8171 1 MOHM +-1% 1/8W
C8108 100PF1KV
BL_ON/OFF
DIM
R8167
47K 1/8W 1%
R8155 10K 1/4W
R8168 47K 1/8W 1%
R8169 9K1 1/8W 1%
R8157 NC/10K 1/4W
T8101
POWER X'F MR
1
10
12
4
8
5
3D_ON
C8122 NC
C8145 1uF
R8170
39K 1/8W 1%
C8123
0.1uF 50V
C8127
0.1uF 50V
HS8105 NC/HEAT SINK
1 2
HS8104 HEAT SINK
1 2
C8128
1uF
R8125 470K +-5% 1/8W
CN9102 NC/CONN
2 4 6
8
10 12 14
1
3
5 7 9 11 13
C8101 1NF
Vbus
R8101
0.1R
C8144
2.2UF 25V
D8104 SFF1005G
1
2
3
D8105 SFF1005G
1
2
3
U8101 SSC9522S
Vsen
1
Vcc
2
FB
3
GND
4
Css
5
OC
6
RC
7
Reg
8
RV9COM
10
VGL
11
NC
12
NC
13
VB
14
VS
15
VGH
16
NC
17
NC
18
+VLED
C8129
0.1uF 50V
C8130
1uF
+VLED
Q8101
TK10A50D
+VLED
+VLED
Q8102
TK10A50D
+
C8116
220UF 100V
+
C8117
220UF 100V
R8103
1M5 1/4W 1%
R8104
1M5 1/4W 1%
R8102
1M5 1/4W 1%
R8135
1R1 1%
R8136
1.5R
R8139
1R1 1%
R8140
1.5R
R8118 75K
R8143
1R1 1%
R8144
1.5R
C8140
1NF 500V
D8109
NC/FMX-23S
1
2
3
R8161
NC/0R05
C8142
100N 50V
For Power Saving
Q8106
AO3160
R8162
10K 1/8W 1%
CN8101 CONN
1 2
3
4 5 6 7
8
9 10 11 12
L8101 3UH
R8105
18K 1/8W 1%
+
C8118
47UF 100V
C8102
0.1uF 50V
R8123 68K 1/8W 1%
ZD8102
BZT52-B13
1 2
NC
-VLED2
C8104
0.1uF 50V
R8158
0R05 1/4W
+
C8103
22UF 50V
C8119
1NF 500V
R8156
0 OHM +-5% 1/8W
C8120
0.1uF 50V
C8121
0.1uF 50V
VLED1
R8137
1.5R R8138
1.5R
U8102 EL817M(X)
1
23
4
R8117
470R 1%
C8115
10N 50V
R8116
2K43 1/8W 1%
R8121
510K 1% 1/8W
R8122
300K 1/8W
VLED1
C8114
4.7uF 10V
Circuit Diagrams and PWB Layouts
EN 31TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 32

10-1-5 Power layout top

19820_548.eps
2014-12-02
715G6973
LAYOUT TOP
C9121
C8103
C9810
C9814
C9815
C9907
D9102
U8102
U9104
R9111
T8101
J9901
J9902
J9801
J9103
J9105
J9111
J9101
J8105
J8104
J9108
J9802
J8120
J9104
J9116
J9803
J9804
J8101
J9117
J9118
J8107
J9903
J8111
J9114
J9106
J9109
J9115
J9301
F9902
F9903
J9113
C9132
J9107
D9108
R9150
J8114
J8116
J8119
J8122
J8124
J8113
J9112
J9904
J9102
J8123
J8103
J8102
J8117
J8115
J8112
J8108
J8106
J8121
J9805
J9905
C9105
SU2
SU3
SU4
SU9
SU1
SU8
SU7
SU6
SU5
C9818
C9819
C9820
J8109
J9119
C9106
C9109
C9110
C9309
D9103
F9901
R9901
R9902
U9102
C9301
R9101
T9101
DR1
DR2
DE4
DR7
DR6DR5
DR8
DR3
C8112
C8108
C8118
C9113
C9115
C8101
C9802
C9801
C9816
C9803
C9804
C9901
C9902
C9913
CN8101
CN9901
CN9903
D9801
FB9901
FB9902
HS8102
HS8103
U8105
U8106
L8101
L9101
L9102
L9301
R9801
R9802
RV9901
SG9901
SG9902
D8105
D8104
HS8101
HS9901
BD9901
D8101
CN9102
GND1
GND2
GND4
C8116
C8117
MH7
MH2
MH4
MH3
MH1
MH6
MH5
CN9101
C9914
HS9801
HS9101
HS9102
HS8104
HS8105
U8107 U8108
C9916
D8109
NR9901
NR9902
NR9903
L9801
C8109
R8101
CN9902
FB9904
FB9903
BD9801
FB9801
C9911
C9912
C8113
L9901
L9902
Q8102 Q8101
Q9101
Q9102
Q9801
Circuit Diagrams and PWB Layouts
EN 32TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 33
Circuit Diagrams and PWB Layouts
19820_549.eps
2014-12-02
715G6973
LAYOUT BOTTOM
C8102
C8110
C8133
C8104
C8105
C8106
C8107
C8115
C8122
C8114
C8123
C8136
C8127 C8128
C8124
C8141
C8137
C8129 C8130
C8120
C8121
C8140
C8119
C8111
C8125
C8126
C9103
C9101
C9118
C9112
C9111
C9119
C9117
C9124
C9308
C9307
C9305
C9302
C9303
C9304
C9128
C9127
C9126
C9125
C9123
C9306
C9107
C9108
C9104
C9120
C9114
C9116
C9122
C9102
C9809
C9808
C9811
C9813
C9812
C9807
C9806
C9805
U9901
R8103 R8104
R8110
R8102
R8112
R8118
R8105
R8113
R8115
R8107
R8106
R8108
R8117
R8116
R8151
R8125
R8138
R8137
R8135
R8136
R8152
R8139
R8140
R8141
R8142
R8155
R8157
R8156
R8129
R8127
R8130
R8131
R8134
R9146
R9109
R9113
R9114
R9112
R9110
R9126
R9127
R9123
R9122
R9125
R9124
R9139
R9144
R9143
R9130
R9115
R9117
R9116
R9302
R9306
R9301
R9307
R9305
R9118
R9119
R9121
R9303
R9304
R9131
R9136
R9138
R9103R9102
R9108
R9815
R9803
R9814
R9816
R9804
R9808
R9805
R9812
R9813
R9810
R9809
R9811
R9806
R9807
R9908
R9905
R9904
R9907
R9903
R9906
SM9
R9132
R8114
SM12
SM13
U9105
U9801
U9301
R9104
R8111
R9106
JR9101
R8109
R8147
R8148
R8149
R8150
C8139
R8154
R8146
R8145
R8143
R8144
C8138
R8153
C8132C8131C8135C8134
R9140
R9142R9141
R8159
R8133
R8160
R9135
R9133
R9134
R9129
R9145
R8128
JR8101
R9137
JR9102
R8123
R8119
R8120
R8121
R8122
R8158
C8142
C9817
R8162
R8163
R9817
R9818
R8161
R9819
U9101
C9130
R8164
R9147 R9148
R9149
R9107
R9105
C9131
C9129
U8103
U8104
U9103
Q8106
Q9104
Q9105
Q9108
Q9802
R8165
R8166
R8168
R8169
R8172
C8143
C8144
C8145
Q8108
U8109
R8132
R8171
R8167
R8126
R8170
JR9103
JR9104
R9120
R9128
JR9105
R8124
JR8102
JR9106
C9133
SM2
U8101
Q9103
Q9106
Q8103
Q8104
Q8105
Q9107
Q9109
U9106
Q8107
D8102
D8103
D8106
D8107
D8108
D8110
D9101
D9105
D9106
D9107
D9802
ZD8101
ZD8102
ZD8103
ZD8104
ZD9103
ZD9104
ZD9105
ZD9301
ZD9801
D9104
EN 33TPS15.3A LA 10.

10-1-6 Power layout bottom

2015-Oct-23
back to
div.table
Page 34

10.2 B 715G6546 SSB

19980_504.eps
Tuner/VGA/Ethernet Inputs
B01 B01
2015-01-20
715G6546
Tuner/VGA/Ethernet Inputs
VGA_R 6 VGA_G 6
D101
BAT54CH
3
1
2
HS2
BKT_HOLDER
1
2
R117 10K
R138
470OHM1/16W
TU_3V3
R116 10K
VGA_B 6
LAN_LED1
LAN_LED0
C111 100N16V
+5VSB
R123 75R 1/16W 1%
T_RESET
R106 1K R107 100OHM
TU_SEL TU_RST
TU_SEL 7 TU_RST7
R137100OHM R139100OHM
T_SDA
VGA_HSYNC6 VGA_VSYNC6
FB101
60R 0.6A
1 2
C106
10PF 50V
R140 0R05
N_GND
C107
22PF 50V
CN102
CONN
1 2
3
VGA_SCL
R110 100OHM
VGA_SDA
R108390R
For Hotel Mode
ZD106
NC/MLVG0402
12
ZD105
NC/MLVG0402
12
R133 12K 1/16W
ZD107
NC/MLVG0402
12
VGA_RX
R134 12K 1/16W
VGA_TX
VGA_RX
D_IFP 6
VGA_TX
D_IFM 6
ZD108
NC/MLVG0402
12
C115 100N16V
ZD104
NC/MLVG0402
12
ZD103
NC/MLVG0402
12
ZD102
NC/MLVG0402
12
R101 10K
R102 47K
VCC_3V3
RF Switch Control
Cable
space/trace/space/trace/space(mil) 12 / 8 / 5 / 8 / 12
LOW
2
Run As Differential Pairs
space/trace/space/trace/space(mil) 12 / 12 / 6 / 12 / 12
CN101
CONN
1 7 2
8 3
9 4 10 5
11 12 13 14 15
1716
6
LG Silicon Tuner TDSH-T070F
VGA_G
DDCA_CK7
CABLE
VGA / DVI Audio Input (Back)
Power Consumption MAX : 330mA
Male Type
3
HIGH
R122
75R 1/16W 1%
L101
NC/0.1UH
Ethernet Input (Back)
R115
100OHM
1
5 6
088G353GFF1AXH or 088G353GFF1ACL
I2C Address : 0xC0 Tuner IC : TDA18273
9
C110 NC/ 120pF 50V
Tuner Reset : Active LOW
MDI
LAN_LED0 7
Differential 100 +- 10 ohms Common Mode 50 +- 5 ohms MDI-T and MDI-R separate > 30mil
LAN_LED1 7
088G342GFB1AGN
R112 0R05 OHM
AIR
11
N_GND
7
1206
10
8
4
VGA Input (Back)
3D Glasses Launch
Place close to U401
Air
X15T897320100000BL
DDCA_DA7
R121
75R 1/16W 1%
C114 330PF 50V
RF Input (Side)
IF Trace
C113
330PF 50V
311GB254C20CBX
088G302G3G2ACL
R111 100OHM
C105 100N16V
R103
4.7K1/16W
D_IFP
D_IFM
R125
2.2K1/16W
R124 100OHM
C101 100N16V
R119 100OHM R120 100OHM
R126
2.2K1/16W
R118 100OHM
VGA_VSYNC
DDCA_DA VGA_HSYNC
DDCA_CK
R104
2.2K1/16W
VCC_3V3
TU_SCL TU_SDA
R160 470K
MDI _TP 6
VGA_R
IFAGC D_IF1
T_SCL
CN161
CONN
1
3
5 7 9 11 13 15 17 19
2 4 6
8
10 12 14 16 18 20
D_IF2
C103 100N16V
TU_SDA 6
PC_Audio_R 6
IF_AGC 6
UART_RX 7 UART_TX 7
PC_Audio_L 6
TU_SCL 6
C112 100N16V
R132100OHM
R131100OHM
R127 10K
R13010K
3D_L_R_O 12
MDI _TN 6
3D_L_R_O
C102 100N16V
R129 10K
C104 100N16V
R128 10K
+5VSB
PC_Audio_R
MDI _TP MDI _TN MDI _R P MDI _R N
CN163
NC/CONN
1 2
3
4 5
67
MDI _R N 6
MDI _R P 6
C117 10N 50V
R161 NC/47K
M_3V3
C109 22N 25V
C116
NC/100N16V
VCC_3V3
R113
100OHM
R114 0R05 OHM
HS1
BKT_HOLDER
1
2
R109
0R05 OHM
IF_AGC
VGA_B
R135 NC/1K
Q101 NC /MMBT3904
C108
100N16V
3D_SYNC_S
ZD109
NC/MLVG0402
12
ZD110
NC/MLVG0402
12
C132 1UF 10V
RF_CTRL
3D_SYNC_S 7
R136 470OHM1/16W
CN162
RJ45 CONN+LED R/A 15P
TCT P 1
1
TD+ P 2
2
TD- P 3
3
RD+ P4
4
RD- P5
5
RCT P6
6
NC P7
7
NC P8
8
NC P9
9
NC P10
10
NC P11
11
Y- P12
12
G- P14
14
Y+ P13
13
G+ P15
15
TH1
16
TH2
17
PC_Audio_L UART_RX
UART_TX
VCC_3V3
R105 10K

10-2-1 Tuner/VGA/Ethernet Inputs

Circuit Diagrams and PWB Layouts
EN 34TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 35

10-2-2 AV/YPbPr/USB Inputs

19950_505.eps
AV/YPbPr/USB Inputs
B02 B02
2015-08-14
715G6546
AV/YPbPr/USB Inputs
CN104
NC/CONN
1 2
3
4
56
R152 NC/0R05 OHM
C125 NC/10uF 10V
R153 NC/0R05 OHM
USB1_D+ 6
USB1_D- 6
t
TH103
PTCR
1 2
VCC_5V
USB 2.0 Port (Side)
CN103
CONN
1 2
3
4
56
KMC3S075RY002
0805
088G352F6B3ACL
0603
YPbPr_Pr
Y
YPbPr_L
Pr
PB_DET
AV_CVBS
YPbPr_Y
YPbPr_Audio_R
Pb
YPbPr_R
YPbPr_Pb
USB0_DM USB0_D-
USB0_D+USB0_DP
USB3_DM
USB3_D+
USB3_D-
USB2_DM USB2_D-
USB2_D+
YPbPr_Audio_L
USB2_DP
R147 75R 1/16W 1%
USB3_DP
ZD113
NC/MLVG0402
12
C126 10uF 10V
ZD121
NC/MLVG0402
12
ZD114
NC/MLVG0402
12
C127 1UF16V
R154 5R6 1/16W 5%
R143 5R6 1/16W 5%
R142 100OHM
R158 5R6 1/16W 5% R159 5R6 1/16W 5%
R144 5R6 1/16W 5%
ZD117
NC/MLVG0402
12
C119 1UF16V
ZD111
NC/MLVG0402
12
R149 10K
R145
75R 1/16W 1%
E
A
B
C
D
CN111
RCA JACK
1 2
3
4 6 7
8
9 10
11
12
13
5
1234
CN106
USB CONN
1 2
3
4
6 5
ZD122
NC/MLVG0402
12
C122
NC/10PF 50V
R148 10K
R146
75R 1/16W 1%
C118 10uF 10V
ZD116
NC/MLVG0402
12
C123 330PF 50V
AV Input (Share with Y) (Back)
t
TH105
PTCR
1 2
C121
NC/10PF 50V
R141
4.7K1/16W
ZD118
NC/MLVG0402
12
ZD112
NC/MLVG0402
12
R150 12K 1/16W
t
TH101
PTCR
1 2
KMC3S075RY002
USB trace run 90 Ohm differential pairs
0805
C131 1UF16V
1234
CN107
USB CONN
1 2
3
4
6 5
ZD115
NC/MLVG0402
12
R155 5R6 1/16W 5%
C120
NC/10PF 50V
KMC3S075RY002
R151 12K 1/16W
C124 330PF 50V
C130 10uF 10V
VCC_3V3
5V_USB0 VCC_5V
5V_USB3 USB_5V
5V_USB2 USB_5V
PB_DET 7
AV_CVBS 6
YPbPr_Pb 6
YPbPr_Audio_R 6
YPbPr_Audio_L 6
YPbPr_Y 6
088G 78G155ACL
USB0_D- 6YPbPr_Pr 6 USB0_D+ 6
USB3_D- 6 USB3_D+ 6
USB2_D+ 6
USB2_D- 6
4P S/T 1.25mm 033G8032 4F S HR
USB 2.0 Port For RF Module (Internal)
KMC3S075RY002
0805
5P S/T 1.25mm 033G8032 4F S HR
space/trace/space/trace/space(mil) 12 / 10 / 5 / 10 / 12
088G352F6B3ACL
YPbPr Input (Back)
0805 0603
PB_DET : Active HIGH
USB 2.0 Port For WiFi Module (Internal)
0603
USB1_D­USB1_D+
t
TH102
NC/PTCR
1 2
Circuit Diagrams and PWB Layouts
EN 35TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 36

10-2-3 HDMI/MHL Inputs

19980_506.eps
HDMI/MHL Inputs
B03 B03
2015-08-14
715G6546
HDMI/MHL Inputs
R516 NC/1K
CN507 HDMI
SHLD0
20
SHLD1
21
TMDSD2+
1
DSHLD0
2
TMDSD2-
3
TMDSD1+
4
DSHLD1
5
TMDSD1-
6
TMDSD0+
7
DSHLD2
8
TMDSD0-
9
TMDSC+
10
CSHLD0
11
TMDSC-
12
CEC
13
NC
14
SCL
15
SDA
16
DDC_GND
17
VCC5
18
HPD
19
SHLD2
22
SHLD3
23
HDMI3_D1N HDMI3_D1P
HDMI3_D2N HDMI3_D2P
ZD508
NC/MLVG0402
12
+5VSB
R513
47K
R521
33 OHM 1/16W
HDMI3_HPDIN 6
R522 33 OHM 1/16 W
HDMI3_DET 7
HDMI3_D2P
HDMI3_SCL
HDMI3_SDA 6
HDMI3_SCL 6
HDMI3_D0P
ZD505
NC/MLVG0402
12
HDMI3_CEC
R517 10K
Q503 MMBT3904
HDMI1_HPDIN 6
R542
4.7K1/16W
HDMI1_5V
HDMI3_DET
HDMI3_5V
ZD506
NC/MLVG0402
12
R541 10K
HDMI1_HPDIN
CN506 HDMI
SHLD0
20
SHLD1
21
TMDSD2+
1
DSHLD0
2
TMDSD2-
3
TMDSD1+
4
DSHLD1
5
TMDSD1-
6
TMDSD0+
7
DSHLD2
8
TMDSD0-
9
TMDSC+
10
CSHLD0
11
TMDSC-
12
CEC
13
NC
14
SCL
15
SDA
16
DDC_GND
17
VCC5
18
HPD
19
SHLD2
22
SHLD3
23
R527 NC/10K
Q502 NC/MMBT3904
R518 10K
HDMI3SDA
+5VSB
HDMI3_CLKP
HDMI3_D1N
HDMI3_D0N
R515
100K1/16W
HDMI3SCL
ZD507
NC/MLVG0402
12
HDMI3_CLKN
HDMI3_D1P
HDMI3_SDA
R528
NC/4.7K1/16W
R530
100K1/16W
HDMI1_DET 7
HDMI3_D2N
R529
47K
HDMI3_HPDIN
HDMI1_DET
U506 AZ1045-04F.R7G
IN1
1
IN2
2
GND
3
IN3
4
IN4
5
NC
6
NC
7
GND
8
NC
9
NC
10
R537 33 OHM 1/16W
5VBUS
HDMI1_SCL
HD MITX_CEC 6 HDMI1_SCL 6
HDMI1_SDA 6
HD MITX_CEC
R536
33 OHM 1/16W
HDMI1_SDA
R534 200OHM1/16W
ARC_OUT 6
U507 AZ1045-04F.R7G
IN1
1
IN2
2
GND
3
IN3
4
IN4
5
NC
6
NC
7
GND
8
NC
9
NC
10
AVDD5V_MHL
R512 10 OHM
ZD501
NC/MLVG0402
12
HDMI_ARC
HDMI3_CLKN HDMI3_CLKP
HDMI3_D0N HDMI3_D0P
U508 AZ1045-04F.R7G
IN1
1
IN2
2
GND
3
IN3
4
IN4
5
NC
6
NC
7
GND
8
NC
9
NC
10
ZD509
NC/MLVG0402
12
ZD510
NC/MLVG0402
12
ZD511
NC/MLVG0402
12
C506 1UF16V
5VBUS
ARC_OUT
5VBUS
5VBUS
HD MITX_CEC
U502 AZ1045-04F.R7G
IN1
1
IN2
2
GND
3
IN3
4
IN4
5
NC
6
NC
7
GND
8
NC
9
NC
10
U503 AZ1045-04F.R7G
IN1
1
IN2
2
GND
3
IN3
4
IN4
5
NC
6
NC
7
GND
8
NC
9
NC
10
HDMI1_D0P
HDMI1_CLKP
HDMI1_CLKN
HDMI1_D0N
C504 100N16V
HDMI1_D1P HDMI1_D2N
HDMI1_D2P
HDMI1_D1N
R52333 OHM 1/1 6W
R511
NC/100OHM
U504
NC/STMPS2171STR
OUT
1
GND
2
FAULT
3
EN
4
IN
5
HDMI3_HPD
R520 NC/10K
+5VSB
C503
NC/1UF16V
HDMI1SDA HDMI1_5V
HDMI1_CLKP
HDMI1_D2P
HDMI1_D0P
HDMI1_5V
HDMI1_D0N
HDMI1SCL
HDMI1_D2N
HDMI1_CLKN
R525
NC/100K 1/8W
C505
NC/10uF 10V
HDMI1_D1N
HDMI1_CEC
HDMI1_D1P
D2N
3102.81
HDMI3 (ARC) (Side)
3285.91
3246.83
R519 200OHM1/16W
D2P
HD MITX_CEC
3257.04
D0P
CLKP
4775.12
Wake Pulse Sequence
3043.44
C502 47NF 16V
D0P
D2P
MHL CBUS Wake Pulse Sequence
D0N
3159.26
3141.48
HDMI 1 Trace (mil)
D2N
3116.3
U505 AZ1045-04F.R7G
IN1
1
IN2
2
GND
3
IN3
4
IN4
5
NC
6
NC
7
GND
8
NC
9
NC
10
space/trace/space/gnd/space/trace/space(mil) 4 / 12 / 4 / 5 / 4 / 12 / 4
3184.35
3224.15
T1 = 18~22 ms (typ. 20) T2 = 54~66 ms (typ. 60) T3 = 100~1000 ms T4 = 80~120 us (typ. 100)
space/trace/space/trace/space(mil) 12 / 8 / 5 / 8 / 12
HDMI2_D0N
HDMI2_D2P
HDMI2_D0P
HDMI2_D1P
HDMI2_D1N
D1N
HDMI2_CLKP
HDMI2_D2N
HDMI 2 Trace (mil)
HDMI2_CLKN
088G 34019K AV
088G 34019K AV
D1P
T2
CLKP
3261.78
D1P
T3
CLKP
HDMI2 / MHL (Side)
T4
4629.68
D2N
D0P
088G340FJ04AAT
MHL Voltage Charge
D1N
Differential 100 +- 10 ohms Common Mode 30 +- 5 ohms
0603
T1
HDMI ARC DC voltage level = 4V Signal voltage p-p = 500 mV +-100mV (Test need add 55 ohm terminal resistor to GND) Tr,Tf <= 60 ns
3055.9
4957.18
D0N
3201.15
T4
HDMI2_D0+/-
CN501 use 088G340FJ04AAT or 088G340FJ04ATE CN506, CN507 use 088G 34019K AV
4909.72
5022.07
HDMI1 / DVI (Back)
4728.82
3121.91
HDMI 3 Trace (mil)
Run As 100 Ohm Differential Pairs
D0N
4613.56
HDMI ARC Function
CD_SENSE
3235.85
D1P
D2P
CLKN
CLKN
Discovery Pulse
CLKN
4854.22
C501 NC/4P7 50V
3076.03
T1
D1N
CD_SENSE
R539 39K 1/16W 5%
HDMI1_5V
R538 0R05 OHM
R540 NC
R501
47K
R524 NC/1K
R507
33 OHM 1/16W
HDMI2_HPDIN 6
R50833 OHM 1/16W
HDMI2_DET 7
HDMI2_HPD
HDMI2_D2P
R506 200OHM1/16W
HDMI2_SCL
HDMI2_SDA 6
HDMI2_SCL 6
HDMI2_D0P
ZD502
NC/MLVG0402
12
R504 10K
HDMI2_DET
ZD503
NC/MLVG0402
12
HDMI2_5V
CN501 HDMI
SHLD0
20
SHLD1
21
TMDSD2+
1
DSHLD0
2
TMDSD2-
3
TMDSD1+
4
DSHLD1
5
TMDSD1-
6
TMDSD0+
7
DSHLD2
8
TMDSD0-
9
TMDSC+
10
CSHLD0
11
TMDSC-
12
CEC
13
NC
14
SCL
15
SDA
16
DDC_GND
17
VCC5
18
HPD
19
SHLD2
22
SHLD3
23
R509 10K
R505 10K
Q501 MMBT3904
HDMI2SDA
HDMI2_D0N
HDMI2_5V
HDMI2_D1N
HDMI2_CLKP
R502
100K1/16W
HDMI2SCL
R526 NC/100OHM
ZD504
NC/MLVG0402
12
HDMI2_CLKN
HDMI2_D1P
HDMI2_5V
R503 1K
HDMI2_SDA
MHL_VBUS_EN
R510
4.7K1/16W
HDMI2_D2N
HDMI2_HPDIN
HDMI_ARC
R514 300K
R535 10K
HDMI3_CLKN 6 HDMI3_CLKP 6
HDMI3_D0N 6 HDMI3_D0P 6
HDMI3_D1P 6
HDMI3_D1N 6
HDMI3_D2P 6
HDMI3_D2N 6
MHL_VBUS_EN7
R533 10K
HDMI2_CEC
R532 10K
R531 1K
HDMI1_HPD
HDMI2_D1P 6
HDMI2_D0P 6
HDMI2_D0N 6
HDMI2_D2P 6
HDMI2_D1N 6
HDMI2_D2N 6
HDMI2_CLKP 6
HDMI2_CLKN 6
HDMI1_CLKN 6
HDMI1_D0N 6
HDMI1_D2N 6 HDMI1_D2P 6
HDMI1_CLKP 6
HDMI1_D0P 6
HDMI1_D1P 6
HDMI1_D1N 6
MHL_CABLE_DET 7
MHL_CABLE_DET
D501
BAT54CH
3
1
2
Circuit Diagrams and PWB Layouts
EN 36TPS15.3A LA 10.
2015-Oct-23
div.table
back to
Page 37

10-2-4 MSD8590QV Inputs

19980_507.eps
MSD8590QV Inputs
B04 B04
2015-08-12
715G6546
MSD8590QV Inputs
YPbPr_Audio_L PC_Audio_L
YPbPr_Audio_R PC_Audio_R
D_IFM
YPbPr_Audio_R 4
IF_AGC
YPbPr_Audio_L 4
PC_Audio_R 3
PC_Audio_L 3
D_IFP
3D_FLAG
D_IFM 3 D_IFP 3 IF_AGC 3
TU_SCL 3 TU_SDA 3
C409
NC/2.2U10V
C410
NC/2.2U10V
I2S_SD
HDMITX_CEC
VGA_VSYNC
ARC_OUT
MIC_IN_R
MIC_IN_LVGA_HSYNC
TU_SCL
AMBI_ON_OFF
TU_SDA
R411 33 OHM 1/16W
C416
22PF 50V
R41333 OHM 1/16W
AVDD5V_MHL
C417 47N F 16V
C406 2.2U10V
C401 47N F 16V
3D_FLAG 12
TP1
1
C402 2.2U10V
C408 2.2U10V
I2S_MCLK
R401 33 OHM 1 /16 W
C415
22PF 50V
C419 10PF 50V
R409 33 OHM 1/16W
C404 2.2U10V
R410 33 OHM 1/16W
HDMI1_D2N5
VGA_VSYNC3
HDMI1_CLKP
HDMI1_D1P HDMI1_D2N HDMI1_D2P
HDMI1_SCL
HDMI1_D0N
HDMI1_CLKN
HDMI1_D0P
HDMI1_HPDIN
HDMI1_SDA
HDMI1_D1N
HDMI1_D1P5
VGA_HSYNC3
HDMI1_SCL5 HDMI1_SDA5
I2S_WS 11
YPbPr_Y4
VGA_R3
HDMI1_D1N5
VGA_G3
HDMITX_CEC5
HDMI1_HPDIN5
HDMI1_CLKN5
HDMI1_D2P5
YPbPr_Pr4
I2S_BCLK 11
VGA_B3
HDMI1_CLKP5
I2S_MCLK 11
I2S_SD11
HDMI1_D0N5
YPbPr_Pb4
HDMI1_D0P5
ARC_OUT5
USB 2.0 Input
MIC_IN_L 11
AUVRM
SPDIF_OUT 10
SPDIF_OUT
C4D9
22PF 50V
I2S_WS
I2S_BCLK
SPI_WP 7
R403 68OHM 1/16W
C405 47N F 16V
C403 47NF 16V
R402 33 OHM 1 /16 W
C407 47N F 16V
R404 33 OHM 1 /16 W
MDI_TP 3
MDI_TN 3
VGA_R VGA_G
MDI_RN 3
VGA_B
MDI_RP 3
YPbPr_Pr
C414 47N F 16V
AV Input
YPbPr_Y YPbPr_Pb
C413 47NF 16V
C412 47N F 16V
C411 47N F 16V
R40833 OHM 1 /16 W
R405 33 OHM 1 /16 W R406 33 OHM 1 /16 W R407 68OHM 1/16W
FB401
60R
1 2
0603
C421 10UF 6. 3V
C420 100N16V
AUVAG
0603
IF Interface
0603
0603
AMBI_ON_OFF 13
0603 0603
VGA Input
YPbPr Input
HDMI Input
AV_CVBS4
MSD8590QV-XZ
U401D
RX0N
R3
RX0P
R2
RX1N
R1
RX1P
T3
RX2N
T1
RX2P
T2
RXCN
P3
RXCP
P2
DDCDA_CK
U5
DDCDA_DA
V5
HOTPLUGA
U6
ARC0
M4
D_RX0N
M3
D_RX0P
M2
D_RX1N
M1
D_RX1P
N3
D_RX2N
N1
D_RX2P
N2
D_RXCN
L3
D_RXCP
L2
DDCDD_CK
N5
DDCDD_DA
M5
HOTPLUGD
L5
C_RX0N
AH7
C_RX0P
AF8
C_RX1N
AH8
C_RX1P
AG8
C_RX2N
AF9
C_RX2P
AG9
C_RXCN
AF7
C_RXCP
AG7
DDCDC_CK
AD6
DDCDC_DA
AC6
HOTPLUGC
AD7
AVDD5V_HDMI_C
AE5
CEC
U4
DM_P0
D1
DP_P0
E2
DM_P1
C1
DP_P1
D2
DM_P2
C2
DP_P2
B1
SSRXN
AG5
SSRXP
AH5
DM
AH4
DP
AF5
SSTXN
AG4
SSTXP
AF4
RN
H2
RP
J3
TN
J2
TP
J1
VIFM
AE2
VIFP
AE1
IFAGC
AF2
TGPIO0
AG6
TGPIO1
AG2
TGPIO2 / (SCKM1)
AE3
TGPIO3 / (SDAM1)
AF3
R412 33 OHM 1 /16 W
C418 47NF 16V
R414 68OHM 1/16W
SPI_WP
AV_CVBS
MSD8590QV-XZ
U401B
RIN0P
V1
GIN0P
V3
GIN0M
V2
BIN0P
U2
HSY NC0
U3
VSYNC0
W4
RIN1P
Y3
GIN1P
W3
GIN1M
W1
BIN1P
W2
RIN2P
AA1
GIN2P
AA3
GIN2M
AA2
BIN2P
Y2
VSYNC2
Y4
CVBS0
AA5
CVBS2
AA6
CVBS3
Y5
VCOM
Y6
CVBS_OUT1
V6
LINEIN_L0
AB1
LINEIN_R0
AB3
LINEIN_L1
AB2
LINEIN_R1
AC3
LINEIN_L2
AB4
LINEIN_R2
AC4
LINEIN_L3
AC2
LINEIN_R3
AD3
LINEOUT_L0
AD2
LINEOUT_R0
AD1
EARPHONE_OUTL
AE4
EARPHONE_OUTR
AD4
AU_VAG
AB6
AU_AVSS_VRM
AB5
I2S_OUT_BCK
L24
I2S_OUT_MCK
K24
I2S_OUT_SD
K25
I2S_OUT_WS
K23
SPDIF_IN
K26
SPDIF_OUT
L23
NC / I2S_IN_BCK
L11
NC / I2S_IN_SD
J10
NC / I2S_IN_WS
K11
MDI_RN MDI_RP MDI_TN MDI_TP
USB0_D+ USB1_D+
USB0_D-
USB2_D+
USB2_D-
USB1_D-
USB3_D­USB3_D+
USB0_D- 4 USB0_D+ 4 USB1_D- 4 USB1_D+ 4 USB2_D- 4 USB2_D+ 4
USB3_D- 4 USB3_D+ 4
HDMI2_D0N5
HDMI2_SCL5 HDMI2_HPDIN5
HDMI2_D2P
HDMI2_D2N5
HDMI2_CLKP5
HDMI2_D1P
HDMI2_CLKN
HDMI2_D0P5
HDMI2_D2N
HDMI2_SDA
HDMI2_CLKP
HDMI2_D1P5
HDMI2_D1N5
HDMI2_CLKN5
HDMI2_D1N
HDMI2_D2P5
HDMI2_SCL
HDMI2_D0N HDMI2_D0P
HDMI2_SDA5
HDMI2_HPDIN
HDMI3_SCL5
HDMI3_D0N5
HDMI3_HPDIN5
HDMI3_D2P
HDMI3_CLKP5
HDMI3_D2N5
HDMI3_D1P
HDMI3_D0P5
HDMI3_SDA
HDMI3_D2N HDMI3_CLKN
HDMI3_CLKP
HDMI3_D1P5
HDMI3_CLKN5
HDMI3_D1N5
HDMI3_D2P5
HDMI3_D0N HDMI3_D1N
HDMI3_D0P
HDMI3_SCL
HDMI3_SDA5
HDMI3_HPDIN
MIC_IN_R 11
Circuit Diagrams and PWB Layouts
EN 37TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 38

10-2-5 MSD8590QV KEY/IR/GPIO/Flash

19980_508.eps
MSD8590QV KEY/IR/GPIO/Flash
B05 B05
2015-03-24
715G6546
MSD8590QV KEY/IR/GPIO/Flash
R434
4.7K1/16W
R435
4.7K1/16W
3V3_STB
0603
VID1
VID0
9P R/A 2.0mm 033G3802 9B YH L
NAND Flash
R4C8 NC/100OHM
LED_BLUE
R4G9 0R05 OHM
R4H1 0R05 OHM
3D_EN12
3D_EN
SPI_CSN
LVDS_ON_OFF
DDCA_CK
MSCL
HDMI2_DET
DDR_PSW
DDCA_DA
MHL_CABLE_DET
LR_SYNC12
SPI_WP
HDMI3_DET
SPI_SCK
SPI_CSN
SPI_SCK
LR_SYNC
SPI_SDO
PWR_ON
BL_ON_OFF
C424
2.2U10V
C423 100N16V
AUD_RSTN
MSDA
HDMI1_DET
PB_DET
MSDA
C425 2.2U10V
AUD_MUTE LED_R
SPI_SDI
SPI_SDO
MSCL
SPI_SDI
TP2
1
C422 100N16V
VCC_3V3
R446 33 OHM 1/16W
R447 10K
R454 NC R455 4.7K1/16W
R457 NC R459 4.7K1/16W
R461 NC
R460 4.7K1/16W
C432 100N16V
Q401 MMBT3904
R443
3.3K 1/16W
DSP_IRQ11
U405
MX25L1606EM2I-12G
CS#
1
SO/SIO1
2
WP#
3
GND
4
SI/SIO0
5
SCLK
6
HOLD#
7
VCC
8
MHL_VBUS_EN5
MHL_VBUS_EN
R444
3.3K 1/16W
XTALI
R449 NC/1K
IR_IN
RST_P
XTALO
C433 100N16V
SPI_SDI
LED_R
R445 33 OHM 1/16W
PWM_PM
TU_SEL
VID0
VCC_3V3
EMMC_PWR_DET
3V3_STB
3V3_STB
TU_RST
C427 100N16V
VID1
TU_SEL3
PWR_ON14
M_SDA10,11,12,13
TU_RST3
R439 100K1/16W
R442 1M 1/16W
BL_ON_OFF14
AUD_RSTN10,11
C428 10N 50V
TP3
1
R440 100OHM
U406
G690H293T73
GND
1
RESET
2
Vcc
3
AUD_MUTE10
MHL_CABLE_DET5
R466 NC
LVDS_ON_OFF
DDCA_CK3
M_SCL10,11,12,13
DDCA_DA3
PB_DET4
LVDS_ON_OFF12
C429 12PF 50V
R428 10K
R441 0R05 OH M
R43010K R43110K R43210K
C430 15PF 50V
X401 24.0MHz
1 2
3V3_STB
3V3_STB
VID114
VID014
EMMC_RSTZ
EMMC_CMD
DSP_IRQ
EMMC_CLK
EMMC_D3 EMMC_D2
EMMC_D4
EMMC_D0
EMMC_D5
EMMC_D1 EMMC_D6 EMMC_D7
BL_BR_CTRL
BL_BR_CTRL14
I2CS_SCL
I2CS_SDA
LED_B
R417 10K
R418 10K
I2CS_SDA I2CS_SCL
R421 10K
VCC_3V3
LED_R
R452 4.7K1/16W
R464 100K1/16W
LED_RED LED_R
R433 10K R43710K
R43610K
3V3_STB
NF_D6
NF_D3
NF_D7
NF_D2
NF_D1
NF_D0
NF_D5
NF_D4
R438 10K
VCC_3V3
VCC_3V3
UART_RX3
UART_TX
U407
THGBMBG6D1KBAIL
DAT0
A3
DAT1
A4
DAT2
A5
VSS
A6
NC
A7
DAT3
B2
DAT4
B3
DAT5
B4
DAT6
B5
DAT7
B6
VDDI
C2
Vssq
C4
Vccq
C6
NC
C5
Vcc
E6
Vss
E7
NC
E8
NC
E9
Vcc
F5
NC
F10
Vss
G5
NC
G10
NC
G3
DS
H5
Vss
H10
VSS
J5
Vcc
J10
RSTN
K5
NC
K6
NC
K7
Vss
K8
Vcc
K9
NC
K10
Vccq
M4
CMD
M5
CLK
M6
Vssq
N2
Vccq
N4
Vssq
N5
Vccq
P3
Vssq
P4
Vccq
P5
Vssq
P6
NC
P7
NC
P10
A1 index
D4
NC
E5
NC
E10
NCB1NCC1NC
N1
UART_RX
UART_TX3
LED_RED
ZD401
NC/MLVG0402
12
3V3_STB
LED_RED
L: 0~0.79V H: 0.79~2.75V
VCC_3V3
R465 NC
3D_SYNC_S
3D_SYNC_S3
VCC_5V
Q402 MMBT3904
Only Philips project used.
LED_BLUE
R467 4.7K1/16W
LED_B
VCC_3V3
VCC_3V3
SYS_RST
R415 0R05 OH M
NF_D0EMMC_D0 NF_D1
R416 0R05 OH M
EMMC_D1
LED_B
C426 NC/33PF 50V
NF_CLK
EMMC_D2 NF_D2
R419 0R05 OH M
R420 0R05 OH M
NF_D3EMMC_D3 NF_D4EMMC_D4
R422 0R05 OH M
NF_CMD
R423 0R05 OHM
EMMC_D5 NF_D5 EMMC_D6 NF_D6
R424 0R05 OH M
EMMC_D7 NF_D7
R425 0R05 OH M
PWM_PM
KEY_PWR
LED_BLUE
MSD8590QV-XZ
U401C
TS0_D[0]
AH11
TS0_D[1]
AH10
TS0_D[2]
AF12
TS0_D[3]
AG11
TS0_D[4]
AF13
TS0_D[5]
AG12
TS0_D[6]
AH13
TS0_D[7]
AG13
TS0_CLK
AF11
TS0_SYNC
AG10
TS0_VLD
AF10
TS1_D[0]
AC20
TS1_D[1]
AD20
TS1_D[2]
AE20
TS1_D[3]
AC21
TS1_D[4]
AE21
TS1_D[5]
AD21
TS1_D[6]
AC22
TS1_D[7]
AC23
TS1_CLK
AD22
TS1_SYNC
AD23
TS1_VLD
AE23
EMMC_CLK / (NAN D _D QS)
AG17
EMMC_CMD
AH17
EMMC_RSTN
AF17
NAND_ALE
AG15
NAND_CEZ
AG16
NAND_CEZ1
AF16
NAND_CLE
AH14
NAND_RBZ
AF15
NAND_REZ
AG14
NAND_WEZ
AF14
NAND_WPZ
AH16
PCM_A[0]
AG20
PCM_A[1]
AH20
PCM_A[2]
AF20
PCM_A[3]
AH19
PCM_A[4]
AG19
PCM_A[5]
AF19
PCM_A[6]
AG18
PCM_A[7]
AF18
PCM_A[8]
AE10
PCM_A[9]
AC11
PCM_A[10]
AD11
PCM_A[11]
AE11
PCM_A[12]
AC12
PCM_A[13]
AD12
PCM_A[14]
AE13
PCM_D[0]
AE7
PCM_D[1]
AD9
PCM_D[2]
AC8
PCM_D[3]
AE8
PCM_D[4]
AD8
PCM_D[5]
AC10
PCM_D[6]
AC9
PCM_D[7]
AD10
PCM_CD_N
AD15
PCM_CE_N
AC14
PCM_IORD_N
AC13
PCM_IOWR_N
AD14
PCM_IRQA_N
AE14
PCM_OE_N
AD13
PCM_REG_N
AE16
PCM_RESET
AC16
PCM_WAIT_N
AD16
PCM_WE_N
AC15
PCM2_CE_N
AE18
PCM2_IRQA_N
AD18
PCM2_RESET
AC19
PCM2_WAIT_N
AD19
EMMC_CLK
R448 NC/100OHM
3D_SYNC
R426 22 OHM 1/16W
EMMC_CMD
HDMI3_DET5
R427 0R05 OH M
HDMI2_DET5
EMMC_RSTZ
B0P 12
HDMI1_DET5
B1P 12
B1P
C0M
B2M 12
C2P 12
B3M
NF_RSTZ
KEY1
R429 0R05 OH M
C0P 12
B3M12
B2P 12
B0M 12
C0P
B0M
B4P 12
B1M
B4P
BCKP 12
B2M
R458
100OHM
B0P
B1M 12
B2P
BCKM
KEY0
C436 NC/ 10N 50V
IR_IN
BCKP
R451 10K
B4M 12
B4M
KEY1
C2P
B3P12
C1M 12
C1P C1M
C1P 12
CN401
CONN
1 2
3
4 5 6 7
8
9
BCKM 12
C0M 12
B3P
MSD8590QV-XZ
U401A
GPIO_PM[0] / (PAN EL_ON / OF F )
N6
GPIO_PM[1] / (PM_UART_TX)
F3
GPIO_PM[10] / (AMP_MUTE)
L6
GPIO_PM[11] / (SDIO_CDZ)
W6
GPIO_PM[2] / (MHL_C D S)
AC7
GPIO_PM[3] / (MHL_VBUS_EN)
AD5
GPIO_PM[4] / (PW R _ON / OF F )
H5
GPIO_PM[5] / (PM_UART_RX)
F2
GPIO_PM[6] / (SPI_CS)
K1
GPIO_PM[7] / (SD_CDZ)
W5
GPIO_PM[8] / (VBL_C TRL)
M6
PM_LED
J5
GPIO19 / (LAN_LED[0] /TX1/ FAST_UR_CTS)
K2
GPIO20 / (LAN_LED[1] /RX1 FAST_UR_RTS)
K3
GPIO3 / (EJTAG / TX1)
AC24
GPIO4 / (RX1)
AD24
VID0
G5
VID1
G4
SAR0 / (KEY 0)
G6
SAR1
H6
SAR2
J6
SAR3
K6
SAR5 / (Power Detect)
AC5
PWM_PM / (HW STRAPPING)
J4
PWM0 / (SD3)
AC18
PWM1 / (BRI_ADJ)
AE24
PWM2
AF21
PWM3
AG21
PM_SPI_CK
H3
PM_SPI_CZ / (TEST PO I N T)
K10
PM_SPI_DI
G3
PM_SPI_DO
G2
DDCA_CK
K4
DDCA_DA
K5
DDCR_CK
AF22
DDCR_DA
AG22
RESET
G1
IRIN
F1
XTAL_IN
AH2
XTAL_OUT
AG1
U_A0M
L27
U_A0P
L28
U_A1M
M27
U_A1P
L26
U_A2M
N27
U_A2P
M26
U_A3M
P27
U_A3P
P28
U_A4M
R27
U_A4P
P26
U_ACKM
N26
U_ACKP
N28
U_B0M
T27
U_B0P
R26
U_B1M
T26
U_B1P
T28
U_B2M
U26
U_B2P
U27
U_B3M
Y28
U_B3P
W26
U_B4M
AA27
U_B4P
Y26
U_BCKM
W27
U_BCKP
V26
U_C0M
AB28
U_C0P
AB27
U_C1M
AC27
U_C1P
AC28
U_C2M
AD26
U_C2P
AD27
U_C3M
AG28
U_C3P
AF27
U_C4M
AH27
U_C4P
AG27
U_CCKM
AE26
U_CCKP
AE28
U_D0M
AH26
U_D0P
AG26
U_D1M
AH25
U_D1P
AF26
U_D2M
AF25
U_D2P
AG25
U_D3M
AH23
U_D3P
AG23
U_D4M
AH22
U_D4P
AF23
U_DCKM
AF24
U_DCKP
AG24
U_GPIO0 / (UART_TXD) / (HW STRAPPING)
N25
U_GPIO1 / (UART_RXD) / (HW STRAPPING)
N23
U_GPIO2 / (H W STRAPPING)
N24
U_GPIO3 / (PWM5)
M24
U_GPIO4 / (PW M4)
M25
U_GPIO6
M23
U_I2CS_SCL
AD25
U_I2CS_SDA
AE25
U_IRE
AC25
U_SPI1_CK
P24
U_SPI1_DI
P23
U_SPI2_CK / (SPI1_CZ)
R23
U_SPI2_DI / (SPI1_DO)
R24
U_VSYNC_LIKE
R25
U_PAD_RESET
AB14
C431 100N16V
C434
NC/10N 50V
C435
NC/10N 50V
C4P 12
KEY0
C4M 12
C2M CCKM
C4P
C3P
CCKP 12
KEY_IN
C3M
CCKM 12
C2M 12
C4M
R463 1K
ZD402
NC/MLVG0402
12
C3P12 C3M12
CCKP
R450 10K
3V3_STB
ZD403
NC/MLVG0402
12
R453
3.9K1/16W
R462
1K
SPI_WP 6
LAN_LED03 LAN_LED13
R456 20K 1/16W
LAN_LED0 LAN_LED1
Mode Select
SPI Flash
CHIP_CONFIG[2:0] {PAD_PM_SPI_DI, PAD_PM_LED, PAD_PWM_PM} Value Mode Description
3'b000 SB51_ExtSPI 51 boot from SPI 3'b001 HEMCU_ExtSPI ARM boot from SPI 3'b010 HEMCU_ROM_EMMC ARM boot from ROM;outer storage is eMMC 3'b011 HEMCU_ROM_NAND ARM boot from ROM;outer storage is NAND 3'b100 DBUS For test only
EMMC_PW R_DET
U405 should be programmed before soldering on PCB
R4C6
10K
3D_SYNC12
R4C7 10K
DDR_PSW14
System MCU RESET
Keypad_IR_LED Input
8GB e-MMC
Circuit Diagrams and PWB Layouts
EN 38TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 39

10-2-6 MSD8560QV DDR III

19980_509.eps
MSD8590QV DDR III
B06 B06
2015-08-14
715G6546
MSD8590QV DDR III
C438 100N16V
A-DDR3-DQU0
A_DDR3_DQL1
DDR_1V5
C461
100N16V
R492
1Kohm 1/16W +/-1%
C462 1nF 50V
R494
1Kohm 1/16W +/ -1%
A-MVREFDQ
C466 1nF 50V
A-DDR3-DQL1
A-DDR3-DQU6
A_DDR3_DMU A-DDR3-DMU
A_DDR3_DQU6
A-DDR3-A10 A-DDR3-A11
A-DDR3-A1
A-DDR3-A9
A-DDR3-A3 A-DDR3-A5
A-DDR3-A8
A-DDR3-A12
A-DDR3-A6
A-DDR3-A0
A-DDR3-A4
A-DDR3-A7
A-DDR3-A2
A-DDR3-RESET
RP411 22R
1 2
3
4
8
7 6 5
A-DDR3-A13
RP413 22R
1 2
3
4
8
7 6 5
RP417 22R
1 2
3
4
8
7 6 5
RP401 22R
1 2
3
4
8
7 6 5
RP405 22R
1 2
3
4
8
7 6 5
RP409 22R
1 2
3
4
8
7 6 5
RP403 22R
1 2
3
4
8
7 6 5
RP407 22R
1 2
3
4
8
7 6 5
RP421 22R
1 2
3
4
8
7 6 5
RP419 22R
1 2
3
4
8
7 6 5
RP415 22R
1 2
3
4
8
7 6 5
A_DDR3_DQU0
DDR_1V5
A_DDR3_A2
A_DDR3_A1
A_DDR3_A4
A_DDR3_A0
A_DDR3_A3
A_DDR3_A7
A_DDR3_A5
A_DDR3_A12
A_DDR3_A10
A_DDR3_A6
A_DDR3_A11
A_DDR3_A9
A_DDR3_A8
A_DDR3_CASZ
A_DDR3_A14
A_DDR3_BA1
A_DDR3_RASZ
A_DDR3_ODT
A_DDR3_A13
A_DDR3_BA0
A_DDR3_WEZ
A_DDR3_DQL1
A_DDR3_RESET
A_DDR3_DQL4
A_DDR3_CKE
A_DDR3_DQL0 A_DDR3_DQL2
A_DDR3_BA2
A_DDR3_DQL3
A_DDR3_DQL7
A_DDR3_DQU4
A_DDR3_DQU2
A_DDR3_DQU0 A_DDR3_DQU1
A_DDR3_DQL5
A_DDR3_DQU3
A_DDR3_DQL6
A_DDR3_MCLK
A_DDR3_DMU
A_DDR3_DQSL
A_DDR3_DML
A_DDR3_DQU6 A_DDR3_DQU7
A_DDR3_MCLKZ
A_DDR3_DQU5
A_DDR3_DQSUB
A_DDR3_DQSLB A_DDR3_DQSU
U402
H5TQ4G63AFR-RDC
NC_A15
M7
VSSA9VSSB3VSSE1VSSG8VSSJ2VSSJ8VSSM1VSSM9VSSP1VSSP9VSST1VSST9VSSQB1VSSQB9VSSQD1VSSQD8VSSQE2VSSQE8VSSQF9VSSQG1VSSQ
G9
A13
T3
A12/BC
N7
A11
R7
A10/AP
L7
A9
R3
A8
T8
A7
R2
A6
R8
A5
P2
A4
P8
A3
N2
A2
P3
A1
P7
A0
N3
BA0
M2
BA1
N8
BA2
M3
CK
J7
CK
K7
CKE
K9
CS
L2
RAS
J3
CAS
K3
WE
L3
ODT
K1
RST
T2
ZQ
L8
LDM
E7
UDM
D3
A14
T7
VDDB2VDDD9VDDG7VDDK2VDDK8VDDN1VDDN9VDDR1VDD
R9
VDDQA1VDDQA8VDDQC1VDDQC9VDDQD2VDDQE9VDDQF1VDDQH2VDDQ
H9
DQU7
A3
DQU6
B8
DQU5
A2
DQU4
A7
DQU3
C2
DQU2
C8
DQU1
C3
DQU0
D7
DQL7
H7
DQL6
G2
DQL5
H8
DQL4
H3
DQL3
F8
DQL2
F2
DQL1
F7
DQL0
E3
LDQS
F3
LDQS
G3
UDQS
C7
UDQS
B7
VREF_DQ
H1
VREF_CA
M8
A-CSZ
A-DDR3-MCLKA_DDR3_MCLK
R471 22 OHM 1/16W R473 22 OHM 1/16W
A-DDR3-MCLKZA_DDR3_MCLKZ A-DDR3-DQSLA_DDR3_DQSL
R496 1Kohm 1/16W +/-1%
R475 22 OHM 1/16W
A_DDR3_DQSLB A-DDR3-DQSLB
R477 22 OHM 1/16W
DDR_1V5
R481 22 OHM 1/16W
A-DDR3-DQSUB
B_DDR3_A0
R479 22 OHM 1/16W
B_DDR3_A1
B_DDR3_A4
A_DDR3_DQSUB
B_DDR3_A3
B_DDR3_A7
B_DDR3_A6
A_DDR3_DQSU
B_DDR3_A8
A-DDR3-DQSU
B_DDR3_A2
B_DDR3_A5
B_DDR3_A13 B_DDR3_A14
B_DDR3_A9
B_DDR3_CASZ
B_DDR3_RASZ
B_DDR3_A11 B_DDR3_A12
B_DDR3_A10
B_DDR3_BA1 B_DDR3_BA2
B_DDR3_ODT
B_DDR3_BA0
B_DDR3_DQL0
B_DDR3_WEZ B_DDR3_CKE
B_DDR3_RESET
B_DDR3_DQL1
B_DDR3_DQL5
B_DDR3_DQL2
B_DDR3_DQL7
B_CSZ
B_DDR3_DQU0
B_DDR3_DQL3 B_DDR3_DQL4
B_DDR3_DQL6
B_DDR3_DQU1 B_DDR3_DQU3
B_DDR3_DQU6
B_DDR3_DQU5
B_DDR3_DQU4
B_DDR3_DQU2
B_DDR3_DQU7
B_DDR3_DML
B_DDR3_DQSUB
B_DDR3_DMU
B_DDR3_DQSLB
B_DDR3_MCLK
B_DDR3_DQSU
B_DDR3_DQSL
B_DDR3_MCLKZ
A_CSZ
STR
C458
2.2U10V
C459 10uF
MSD8590QV-XZ
U401E
A_DDR3_A[0]
D4
A_DDR3_A[1]
D5
A_DDR3_A[2]
E3
A_DDR3_A[3]
B5
A_DDR3_A[4]
D8
A_DDR3_A[5]
A5
A_DDR3_A[6]
D7
A_DDR3_A[7]
B6
A_DDR3_A[8]
E8
A_DDR3_A[9]
D3
A_DDR3_A[10]
D9
A_DDR3_A[11]
E7
A_DDR3_A[12]
E9
A_DDR3_A[13]
E4
A_DDR3_A[14]
D6
A_DDR3_A[15]
B9
A_DDR3_BA[0]
B4
A_DDR3_BA[1]
E10
A_DDR3_BA[2]
E5
A_DDR3_MCLK
A8
A_DDR3_MCLKZ
B8
A_DDR3_ODT
A3
A_DDR3_RASZ
C3
A_DDR3_RESETZ
B7
A_DDR3_WEZ
E6
A_DDR3_CASZ
C4
A_DDR3_CKE
D10
A_DDR3_CS[0]
A6
A_DDR3_CS[1]
B10
A_DDR3_DQ[0]
E13
A_DDR3_DQ[1]
D12
A_DDR3_DQ[2]
E14
A_DDR3_DQ[3]
D11
A_DDR3_DQ[4]
D13
A_DDR3_DQ[5]
E11
A_DDR3_DQ[6]
D14
A_DDR3_DQ[7]
E12
A_DDR3_DQ[8]
A9
A_DDR3_DQ[9]
C15
A_DDR3_DQ[10]
B11
A_DDR3_DQ[11]
A17
A_DDR3_DQ[12]
B12
A_DDR3_DQ[13]
B17
A_DDR3_DQ[14]
A11
A_DDR3_DQ[15]
B16
A_DDR3_DQM[0]
A12
A_DDR3_DQS[0]
A15
A_DDR3_DQSB[0]
A14
A_DDR3_DQM[1]
A18
A_DDR3_DQS[1]
C14
A_DDR3_DQSB[1]
B13
B_DDR3_A[0]
E19
B_DDR3_A[1]
D20
B_DDR3_A[2]
D18
B_DDR3_A[3]
B22
B_DDR3_A[4]
E22
B_DDR3_A[5]
B23
B_DDR3_A[6]
D22
B_DDR3_A[7]
A24
B_DDR3_A[8]
E21
B_DDR3_A[9]
E18
B_DDR3_A[10]
D25
B_DDR3_A[11]
E20
B_DDR3_A[12]
D24
B_DDR3_A[13]
D19
B_DDR3_A[14]
D21
B_DDR3_A[15]
A27
B_DDR3_BA[0]
B21
B_DDR3_BA[1]
E24
B_DDR3_BA[2]
C18
B_DDR3_MCLK
C25
B_DDR3_MCLKZ
B25
B_DDR3_ODT
A20
B_DDR3_RASZ
B20
B_DDR3_RESETZ
B24
B_DDR3_WEZ
B19
B_DDR3_CASZ
A21
B_DDR3_CKE
E25
B_DDR3_CS[0]
A23
B_DDR3_CS[1]
B27
B_DDR3_DQ[0]
H24
B_DDR3_DQ[1]
G25
B_DDR3_DQ[2]
J24
B_DDR3_DQ[3]
F25
B_DDR3_DQ[4]
H25
B_DDR3_DQ[5]
F24
B_DDR3_DQ[6]
J25
B_DDR3_DQ[7]
G24
B_DDR3_DQ[8]
A26
B_DDR3_DQ[9]
G27
B_DDR3_DQ[10]
C27
B_DDR3_DQ[11]
J27
B_DDR3_DQ[12]
D27
B_DDR3_DQ[13]
J26
B_DDR3_DQ[14]
C28
B_DDR3_DQ[15]
H26
B_DDR3_DQM[0]
D28
B_DDR3_DQS[0]
G26
B_DDR3_DQSB[0]
F28
B_DDR3_DQM[1]
K27
B_DDR3_DQS[1]
F26
B_DDR3_DQSB[1]
E27
A_DDR3_CKE A_DDR3_A10
A_DDR3_DML A_DDR3_DQU4
A_DDR3_DQU5 A_DDR3_DQU3
A_DDR3_DQU1
A_DDR3_DQL6 A_DDR3_DQL4
B-DDR3-CKEA-DDR3-CKE
DDR_1V5
2nd DDR3 4G bit 1866MHz
A-MVREFCA
R499
1Kohm 1/16W +/-1%
B-MVREFCA
R4A4
1Kohm 1/16W +/-1%
R493
1Kohm 1/16W +/-1%
C463 100N16V
DDR_1V5
C464 1nF 50V
C467
100N16V
C468 1nF 50V
R495
1Kohm 1/16W +/-1%
DDR_1V5
B-MVREFDQ
DDR_1V5
R485 22 OHM 1/16W R487 22 OHM 1/16W
C437 10N 50V
RP427 22R
1 2
3
4
8
7 6 5
RP435 22R
1 2
3
4
8
7 6 5
RP439 22R
1 2
3
4
8
7 6 5
RP433 22R
1 2
3
4
8
7 6 5
RP429 22R
1 2
3
4
8
7 6 5
RP423 22R
1 2
3
4
8
7 6 5
RP431 22R
1 2
3
4
8
7 6 5
RP425 22R
1 2
3
4
8
7 6 5
RP437 22R
1 2
3
4
8
7 6 5
Shield by GND alone
C465 100N16V
B-DDR3-DQL1
B-DDR3-ODT
B-DDR3-DQU4
B-DDR3-DQU0 B-DDR3-DQU2
B-DDR3-DQU5
B-DDR3-DQL4
R490 56R 1/16W 1%
B-DDR3-A4
B-DDR3-DQL7
B-DDR3-DQL2
B-DDR3-CASZ
B-DDR3-MCLKZ
B-DDR3-DQU3
B-DDR3-DQL3
B-DDR3-BA0
R4A1 1Kohm 1/16W +/-1%
Shield by GND alone
B-DDR3-A14
B-DDR3-BA1
B-DDR3-DQL0
B-DDR3-DQL6
B-DDR3-DQL5
B-DDR3-MCLK
B-DDR3-DQSUB
B-DDR3-A10 B-DDR3-A11
A-DDR3-DQSU
B-DDR3-A12
A-DDR3-DQL5
A-DDR3-DMU
A-DDR3-DQSUB A-DDR3-DML
B-DDR3-DQU6
A-DDR3-DQL6
B-MVREFDQ
A-DDR3-DQL7
A-DDR3-DQL0 A-DDR3-DQL1
B-DDR3-DQSU
R489
56R 1/16W 1%
C460 10N 50V
A-DDR3-DQL3
A-DDR3-DQL2
B-DDR3-A9
DDR_1V5
B-DDR3-A1
A-DDR3-DQL4
A-DDR3-DQSLB
A-DDR3-DQSL
A-DDR3-DQU5
B-DDR3-A2
B-DDR3-DQSL
A-DDR3-DQU6
B-DDR3-A5
B-DDR3-RESET
A-DDR3-DQU7
A-DDR3-DQU4
B-DDR3-A0
A-DDR3-DQU3
A-DDR3-DQU0 A-DDR3-DQU1 A-DDR3-DQU2
B-DDR3-DQU1
B-DDR3-A6
B-DDR3-DML B-DDR3-DMU
B-DDR3-BA2
R491 240 OHM +-1% 1/16W
B-DDR3-A13
B-MVREFCA
B-DDR3-WEZ
C457 100N16V
C456 100N16V
U403
H5TQ4G63AFR-RDC
NC_A15
M7
VSSA9VSSB3VSSE1VSSG8VSSJ2VSSJ8VSSM1VSSM9VSSP1VSSP9VSST1VSST9VSSQB1VSSQB9VSSQD1VSSQD8VSSQE2VSSQE8VSSQF9VSSQG1VSSQ
G9
A13
T3
A12/BC
N7
A11
R7
A10/AP
L7
A9
R3
A8
T8
A7
R2
A6
R8
A5
P2
A4
P8
A3
N2
A2
P3
A1
P7
A0
N3
BA0
M2
BA1
N8
BA2
M3
CK
J7
CK
K7
CKE
K9
CS
L2
RAS
J3
CAS
K3
WE
L3
ODT
K1
RST
T2
ZQ
L8
LDM
E7
UDM
D3
A14
T7
VDDB2VDDD9VDDG7VDDK2VDDK8VDDN1VDDN9VDDR1VDD
R9
VDDQA1VDDQA8VDDQC1VDDQC9VDDQD2VDDQE9VDDQF1VDDQH2VDDQ
H9
DQU7
A3
DQU6
B8
DQU5
A2
DQU4
A7
DQU3
C2
DQU2
C8
DQU1
C3
DQU0
D7
DQL7
H7
DQL6
G2
DQL5
H8
DQL4
H3
DQL3
F8
DQL2
F2
DQL1
F7
DQL0
E3
LDQS
F3
LDQS
G3
UDQS
C7
UDQS
B7
VREF_DQ
H1
VREF_CA
M8
B-DDR3-A7
B-DDR3-A3
B-DDR3-DQU7
B-DDR3-A8
B-DDR3-CKE B-CSZ
B-DDR3-DQSLB
B-DDR3-RASZ
R468
56R 1/16W 1%
2nd DDR3 4G bit 1866MHz
R4A3
1Kohm 1/16W +/-1%
RP420 22R
1 2
3
4
8
7 6 5
B-DDR3-BA1
C455 100N16V
C454 100N16V
RP412 22R
1 2
3
4
8
7 6 5
B_DDR3_WEZ
B-DDR3-ODT
B-DDR3-A12
B_DDR3_CASZ
B_DDR3_A11
B_DDR3_A0
B-DDR3-BA0
RP408 22R
1 2
3
4
8
7 6 5
B_DDR3_BA1
B_DDR3_BA2
B-DDR3-A0
B-DDR3-RESET
B-DDR3-CKE
RP416 22R
1 2
3
4
8
7 6 5
B_DDR3_A14
B-DDR3-A8
B_DDR3_A13
B-DDR3-A7
RP402 22R
1 2
3
4
8
7 6 5
B_DDR3_RASZ
RP404 22R
1 2
3
4
8
7 6 5
B_DDR3_A6
RP424 22R
1 2
3
4
8
7 6 5
B-DDR3-A9
B_DDR3_A8
B-DDR3-BA2 B-DDR3-WEZ
B_DDR3_A3
B-DDR3-A14
B_DDR3_CKE
B-DDR3-CASZ
B-DDR3-A2
B-DDR3-A6
B-DDR3-A11
B_DDR3_A9
B-DDR3-A3
B-DDR3-A4
B_DDR3_A5
B_DDR3_A12
RP414 22R
1 2
3
4
8
7 6 5
B_DDR3_A7
B-DDR3-A5
RP410 22R
1 2
3
4
8
7 6 5
B_DDR3_A2
B-DDR3-A10
RP418 22R
1 2
3
4
8
7 6 5
B-DDR3-A1
B_DDR3_A4
C453 100N16V
B_DDR3_A1
C452 100N16V
RP406 22R
1 2
3
4
8
7 6 5
B_DDR3_A10
B-DDR3-A13
B_DDR3_ODT
A_DDR3_DQL2
B_DDR3_RESET
RP422 22R
1 2
3
4
8
7 6 5
B-DDR3-RASZ
B_DDR3_BA0
R470 240 OHM +-1% 1/16W
R498
1Kohm 1/16W +/-1%
A_DDR3_DQU2
A-DDR3-DQL5
A-DDR3-DQL7
A-DDR3-DQL3
A_DDR3_DQL7 A_DDR3_DQL5
A_DDR3_DQL3
A_DDR3_DQL0
A-CSZA_CSZ
R483 22 OHM 1/16W
A_DDR3_RASZ A_DDR3_ODT
A-DDR3-A14
A_DDR3_CASZ A_DDR3_BA0
A_DDR3_A3 A_DDR3_A5
A_DDR3_A7 A_DDR3_RESET
A_DDR3_A13 A_DDR3_A2
A-DDR3-BA1 A-DDR3-BA2
A-DDR3-BA0
A_DDR3_A0
DDR_1V5
A_DDR3_A9
A_DDR3_BA2 A_DDR3_WEZ
A_DDR3_A14 A_DDR3_A1
A_DDR3_A8 A_DDR3_A11
A_DDR3_A4 A_DDR3_A6
A_DDR3_BA1 A_DDR3_A12
A-MVREFDQ
A-DDR3-RASZ A-DDR3-ODT
A-DDR3-CASZ A-DDR3-BA0
A-DDR3-A3 A-DDR3-A5
A-DDR3-A7
A_DDR3_DQU7
A-DDR3-RESET
A-DDR3-RESET
A-DDR3-A13 A-DDR3-A2
A-DDR3-A0 A-DDR3-A9
A-DDR3-BA2 A-DDR3-WEZ
A-DDR3-A14 A-DDR3-A1
A-DDR3-A8 A-DDR3-A11
A-DDR3-A4
R4A2
1Kohm 1/16W +/-1%
A-DDR3-A6
A-DDR3-BA1 A-DDR3-A12
R497
1Kohm 1/16W +/-1%
DDR_1V5
B-DDR3-RESET
A-DDR3-CASZ
A-DDR3-RASZ
A-DDR3-ODT
A-DDR3-WEZ
A-DDR3-CKE
B-DDR3-DQU6
B-CSZ
R484 22 OHM 1/16W
A-DDR3-CKE
B_DDR3_DQU7
B-DDR3-DQSU
B_DDR3_MCLK
B-DDR3-DQL6
A-DDR3-A10
R469 56R 1/16W 1%
RP426 22R
1 2
3
4
8
7 6 5
B-DDR3-DQU7
B_DDR3_DQSU
B-DDR3-DQL2
B-DDR3-MCLK
RP43222R
1 2
3
4
8
7 6 5
B_DDR3_DQL3
B_DDR3_DQU1
B_DDR3_DQL0
B-DDR3-DQL1
RP440 22R
1 2
3
4
8
7 6 5
B_DDR3_DQSL
B_DDR3_DQU4
A-DDR3-DML
B_DDR3_DQU2
B-DDR3-DQL5
B-DDR3-DQSL
B_DDR3_DQL1
A-DDR3-DQU4
B_DDR3_DQL7
R482 22 OHM 1/16W
A-DDR3-DQU5
R472 22 OHM 1/16W
A-DDR3-DQU3
R476 22 OHM 1/16W
A-DDR3-DQU1
RP43422R
1 2
3
4
8
7 6 5
A-DDR3-DQU7
R486
22 OHM 1/16W
A-DDR3-DQL2
B-DDR3-DQU2
A-DDR3-DQL0
RP438 22R
1 2
3
4
8
7 6 5
B-DDR3-DQL7
A-DDR3-DQL6
B-DDR3-DQSUB
A-DDR3-DQL4
B-DDR3-DQSLB
B-DDR3-DQU4
B_DDR3_DQU0
B-DDR3-DQU3
B_DDR3_DMU
RP428 22R
1 2
3
4
8
7 6 5
A-DDR3-DQU2
B-DDR3-DQL0
B_DDR3_DQL5
B_DDR3_DQL4
R478 22 OHM 1/16W
B_DDR3_DQSLB
B-DDR3-DMU
R474 22 OHM 1/16W
B_DDR3_MCLKZ
RP43022R
1 2
3
4
8
7 6 5
B-DDR3-DMLB_DDR3_DML
B_DDR3_DQL2
R488
22 OHM 1/16W
B-DDR3-DQU1
B_DDR3_DQU6
B_CSZ
B-DDR3-DQL4
RP43622R
1 2
3
4
8
7 6 5
B-DDR3-DQU5
R480 22 OHM 1/16W
B-DDR3-DQL3
B_DDR3_DQSUB
B-DDR3-MCLKZ
B_DDR3_DQL6
B_DDR3_DQU5 B_DDR3_DQU3
B-DDR3-DQU0
C451 100N16V
C450 100N16V
C444 100N16V
A-DDR3-MCLKZ
C442 100N16V
DDR_1V5
C443 100N16V
C449 100N16V
C447 100N16V
C445 100N16V
C448 100N16V
A-DDR3-MCLK
C446
2.2UF 6. 3V
C439 100N16V
C441 100N16V
C440 100N16V
A-MVREFCA
Circuit Diagrams and PWB Layouts
EN 39TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 40

10-2-7 MSD8590QV Power/GND

19980_510.eps
MSD8590QV Power/GND
B07 B07
2015-01-20
715G6546
MSD8590QV Power/GND
VCC_1V2_CPU
VCC_1V2
C474 10uF
C486 100N16V
C490
2.2U10V
C487 100N16V
C489 100N16V
C488 100N16V
C473
2.2U10V
FB405 300R
1 2
FB404 300R
1 2
VCC_3V3
C4A4 100N16V
FB406 300R
1 2
DDR_1V5
VCC_3V3
R4A5
39K
C4A9 1UF 6. 3V
C469 100N16V
C4B3
100N16V
C4B4 100N16V
C478
1UF 6. 3V
C4B1 NC/100N16V
C480 22UF
C477
22uF 6.3V
VCC_1V2_CPU
C476
2.2UF 6. 3V
C493 100N16V
C494
2.2U10V
C492 100N16V
C4B2 NC/100N16V
C491 100N16V
C479 100N16V
C4A8 100N16V
VCC_1V2
VCC_1V2
C4A7 100N16V
C4B5 100N16V
FB409
300R
1 2
VCC_1V2
FB410
300R
1 2
C4A1 100N16V C4A5 100N16V C4A6 100N16V
VCC_1V8
C498 100N16V
C484
2.2U10V
C4A3
100N16V
FB408300R
1 2
C485
2.2U10V
3V3_STB
C4A2 100N16V
DDR_1V5
HS401
NC/HEAT SINK
1 2
C472
100N16V
MSD8590QV-XZ
U401F
AVDDL_MOD
P15
AVDDL_PREDRV
P16
AVDDLV_USB
R18
AVDDLV_USB
T18
DVDD_DDR
T16
DVDD_RX_1
R16
DVDD_RX_2
R15
VDDC
R19
VDDC
R20
VDDC
T19
VDDC
T20
VDDC
T21
VDDC
T22
VDDC
T23
VDDC
T24
VDDC_CPU
W20
VDDC_CPU
W21
VDDC_CPU
W22
VDDC_CPU
V19
VDDC_CPU
V20
VDDC_CPU
V21
VDDC_CPU
V22
VDDC_CPU
V23
VDDC_CPU
V24
VDDC_CPU
W23
VDDC_CPU
W24
VSENSE_MIPS
W19
VSENSE_VSS / (TEST POIN T)
L10
DVDD_NODIE
H7
TESTPIN / (TEST POIN T)
K9
GND_EFUSE
J7
AVDD_DDR0_C
J14
AVDD_DDR0_CK
H14
AVDD_DDR0_D
H15
AVDD_DDR0_D
J15
AVDD_DDR1_C
H16
AVDD_DDR1_CK
K17
AVDD_DDR1_D
K16
AVDD_DDR1_D
J16
AVDD_MOD (3.3V)
T5
VDDP_3318 (3.3V/1.8V)
U7
AVDD_PLL
T7
AVDD_MOD (3.3V)
T6
VDDP
T8
AVDD_AU33
N7
AVDD_EAR33
P6
AVDD_NODIE
P4
AVDD3P3_DMPLL
N8
AVDD3P3_DVI
P5
AVDD3P3_MPLL
P11
AVDD3P3_USB
P7
U_VDD
U24
U_VDD
U23
U_VDD
U21
U_VDD
U22
U_AVDDL_MOD
V15
U_AVDDL_PREDRV
V16
U_AVDD12_LVDSRX
U16
U_DVDD_DDR
U20
U_AVDDIO_CMD
L19
U_AVDDIO_DATA
M19
U_AVDD_LVDSRX
W9
U_AVDD_MOD
U9
U_AVDD_MOD
V9
U_AVDD_MPLL
V8
U_VDDP3
U8
U_PAD_TESTPIN / (TEST PO I N T)
M10
NC / E_VDDL_PDRV_N_DATA_A / DVDD_RX1
G12
NC / E_VDDL_PDRV_N_DATA_B
H20
NC / E_VD D L_PD R V_P_C MD
J19
NC / E_VDDL_PDRV_N_CMD / DVDD_RX1
G11
NC / E_VDDL_PDRV_P_DATA_A / DVDD_RX1
G13
NC / E_VD D L_PD R V_P_D ATA_B
J20
AVDDL_DVI_PC
N15
AVDD3P3_DADC
P8
DVDD_DDR_DECAP
K14
U_PADA_REXT
AB13
VDDC_DECAP
U10
VDDC_DECAP
H12
VDDC_CPU_DECAP
N14
VDDC_DECAP
L9
DVDD_RX2_DECAP
K13
AVDD33_LAN
P9
U_AVDDL_MOD
T25
U_AVDDL_PREDEV
U25
C471
100N16V
VCC_1V2
VCC_1V2
C470
1UF 6.3V
FB407 300R
1 2
VCC_3V3
C499 100N16V
C497 100N16V
TP4
1
C481 100N16V
DDR_1V5
C482 1UF 6. 3V
3V3_STB
C483 100N16V
MSD8590QV-XZ
U401G
GND
J21
GND
J22
GND
J23
GND
J28
GND
K7
GND
K8
GND
K12
GND
H19
GND
K21
GND
K28
GND
L7
GND
L8
GND
L12
GND
L13
GND
L14
GND
L15
GND
L16
GND
L17
GND
L21
GND
M7
GND
M8
GND
M9
GND
M11
GND
M12
GND
M13
GND
M14
GND
M15
GND
M16
GND
M17
GND
M18
GND
M20
GND
M21
GND
N9
GND
N10
GND
W17
GND
N12
GND
N13
GND
N16
GND
N17
GND
N18
GND
N19
GND
N20
GND
N21
GND
N22
GND
P10
GND
P12
GND
P13
GND
P14
GND
P21
GND
P22
GND
R17
GND
A2
GND
B3
GND
B14
GND
B15
GND
B18
GND
C6
GND
C8
GND
C9
GND
C11
GND
C12
GND
C16
GND
C17
GND
C20
GND
C21
GND
C23
GND
C24
GND
B26
GND
D15
GND
D16
GND
D26
GND
E15
GND
E23
GND
F4
GND
F6
GND
F8
GND
F10
GND
F12
GND
F14
GND
F15
GND
F18
GND
F20
GND
F22
GND
F27
GND
G7
GND
G8
GND
G9
GND
G10
GND
J9
GND
N11
GND
J11
GND
G15
GND
G19
GND
G20
GND
G21
GND
G22
GND
G23
GND
H8
GND
H9
GND
H10
GND
H11
GND
H13
GND
H21
GND
H22
GND
J8
GND
J12
GND
J13
GND
K15
GND
R4
GNDR5GNDR6GNDR7GNDR8GNDR9GND
R10
GND
R11
GND
R12
GND
R13
GND
H17
GND
R21
GND
R22
GNDT9GND
T10
GND
T11
GND
T12
GND
T13
GND
T14
GND
T15
GND
T17
GNDT4GND
U11
GND
U12
GND
U13
GND
U14
GND
U28
GNDV7GND
V11
GND
V12
GND
V13
GND
V14
GND
U15
GND
V25
GND
V27
GNDW7GNDW8GND
V10
GND
W10
GND
W11
GND
W12
GND
W13
GND
W14
GND
W15
GND
W16
GND
W18
GND
W25
GND
W28
GNDY7GNDY8GNDY9GND
Y10
GND
Y11
GND
Y12
GND
Y13
GND
Y14
GND
Y15
GND
Y16
GND
Y17
GND
Y18
GND
Y19
GND
Y20
GND
Y21
GND
Y22
GND
Y23
GND
Y24
GND
Y25
GND
Y27
GND
AA7
GND
AA8
GND
AA9
GND
AA10
GND
AA11
GND
AA12
GND
AA13
GND
AA14
GND
AA15
GND
AA16
GND
AA17
GND
AA18
GND
AA19
GND
AA20
GND
AA21
GND
AA22
GND
AA23
GND
AA24
GND
AA25
GND
AA26
GND
AB7
GND
AB8
GND
AB9
GND
AB10
GND
AB11
GND
AB12
GND
AB16
GND
AB17
GND
AB18
GND
AB19
GND
AB20
GND
AB21
GND
AB22
GND
AB23
GND
AB24
GND
AB25
GND
AB26
GND
AC17
GND
AC26
GND
AD17
GND
AE17
GND
AE27
GND
AF6
GND
AF28
GND
AG3
GND
U18
GND
U19
GND
P17
GND
P18
GND
U17
GND
V17
GND
V18
GNDB2GND
G14
GND
G28
GND
H27
GND
AB15
GND
C5
GND
C10
GND
E16
GND
D17
GND
E17
GND
F21
GND
E26
GND
F17
GND
M22
GND
L22
GND
K22
GND
J17
C496
2.2UF 6. 3V
FB403
300R
1 2
VCC_3V3
3V3_STB
C4D7
2.2UF 6. 3V
C4D8 1UF 6. 3V
TP5
1
C495 100N16V
FB402
300R
1 2
VCC_1V2
HS402
HEAT SINK
1 2
P90T005920300000SY
For MSD8590QVFor MSD8560QV
C4E1 22UF
P90T005920400000SY
Heat Sink
3V3_STB
Circuit Diagrams and PWB Layouts
EN 40TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 41

10-2-8 Audio Amp/SPK/SPDIF Outputs

19740_507.eps
Audio Amp/SPK/SPDIF Outputs
B08 B08
2014-04-24
715G6546
Audio Amp/SPK/SPDIF Outputs
L601 47uH
FB605 NC/120R 3A
1 2
PD_MUTE
FB606 NC/120R 3A
1 2
PD_MUTE 11
FB607 NC/120R 3A
1 2
C615 100N16V
A_SCL A_SDA
R605 33 OHM 1/16W R606 33 OHM 1/16W
M_SDA
M_SCL
CN601
CONN
1
2
3
4
5 6
R624 NC
R623 100OHM
AMP_PDN
AMP_24V
C606
470P 50V
R602
10 OHM 1/4W
C612
470P 50V
R603
10 OHM 1/4W
C618
470P 50V
R604
10 OHM 1/4W
R625 10K 1/10W
AUD_RSTN7,11
AMP_SA1
C661 330PF 50V
R613 NC/10K
R630 NC/100K1/16W
R619 10K
R626 10K
Q603 NC /MMBT3904
R629 NC/10K
L602 47uH
L603 47uH
Q601 MMBT3906
L604 47uH
AMP_RSTN
M_SDA7,11,12,13
M_SDA
M_SCL7,11,12,13
M_SCL
AUD_MUTE
R622 NC/33 OHM 1/16W
CFG0 CFG1
R620 10K
AMP_SA0
R614 NC/10K
CN612
NC/CONN
1 2 3 4 5 6
Y_SDA Y_SCL
AMP_3V3
C611
0.1uF 50V
AMP_3V3
AMP_3V3
C613
0.1uF 50V
C619
0.1uF 50V
R+
C608
0.1uF 50V
A_SCL
A_SDA
DSP_MCLK
DSP_BCLK
DSP_WS
DSP_SDO0
CN611
NC/CONN
1 2 3 4 5 6
HS601
HEAT SINK
1 2
R601
10 OHM 1/4W
C609
0.1uF 50V
C603
470P 50V
C623
0.1uF 50V
DSP_BCLK
C624
0.1uF 50V
Active LOW
C625
0.1uF 50V
0
C626
0.1uF 50V
0603
I2C Address
SA1
SA2
Heat Sink
SB1
DSP_MCLK
SB2
C607
0.1uF 50V
DSP_WS
AMP_PDN
X
For Debug
0805
L+
8 ohm
1206
DSP_SDO0
0805
0x62
1
SMT
Lo
1
+
C602
100UF 35V
SA0
Speaker
Stereo
ZD601
NC/MLVG0402
12
0x68
Hi
0 Mono
Hi
330nF/50V
24V
Lo
0
CFG1
R+
0x60
AMP VCC
2.1 Channel
C605 NC/0.1uF 50V
Mode
For POP Noise
22uH
Speaker Output
388G078G111ACL
Lo
10uH -> 073G253S 81 Y 22uH -> 373G253S193D00 47uH -> 373G253S173Y00
47uH
0805
C604/C607/C613/C619/C622/C629
AMP_24V
Hi
AMP_24V
0x6A
SubWoofer Output
CFG0 24V
R
R-
Hi
L601/L602/L603/L604/L605/L606
L-
0603
Coaxial
16 ohm
680nF/50V
Lo
SA1
0603
0603
L
FB603
NC/600 OHM
1 2
1206
P90T0066101
+5VSB
R627
10K
+
C633 100UF 16V
R628 100K1/16W
D601
LL4148
FB602
600 OHM
1 2
DSP_MCLK11
VCC_3V3
AMP_3V3
SA1
L606 NC/22uH
R608
NC/10 OHM 1/4W
Y_SDA11
C622 NC/ 680N F 50V
Y_SCL11
R607
NC/10 OHM 1/4W
AMP_3V3
C627 NC/0.47UF 50V
C629 NC/ 680N F 50V
C621
NC/ 470P 50V
AMP_RSTN
C620
NC/ 470P 50V
SA2
L605 NC/22uH
U601
AD82588B-LG48NAY
SDATA1
1
MS
2
PLL
3
CFG0
4
CFG1
5
CLK_OUT
6
DGND
7
DVDD
8
SDATA0
9
LRCIN
10
BCLK
11
MCLK
12
NC13NC14NC15NC16NC17NC18NC19NC20NC21NC22NC23NC
24
SDA
25
SCL
26
SA0
27
SA1
28
DEF
29
DGND
30
DVDD
31
PD#
32
ERROR#
33
RESET#
34
LREX
35
LINEIN
36
NC
37
VDDRA
38
RA
39
GNDR
40
RB
41
VDDRB
42
VDDLB
43
LB
44
GNDL
45
LA
46
VDDLA
47
NC
48
THERMALPAD
49
SPDIF_OUT6
C616 10uF 10V
A
CN603
RCA JACK
2 1
3
AMP_SA1 AMP_SA0
3V3_STB
AMP_DEF
CN602
NC/CONN
1
2
3
4 5
AUD_MUTE7
DSP_SDO011 DSP_BCLK11
DSP_WS11
FB601
1 2
P24V
RA
RB
LA
LB
C631 100N 50V
C610
0.1uF 50V
AMP_24V AMP_24V
SW+ SW-
C614 NC/0.1uF 50V
R612 NC/10K
AMP_DEF
R616 10K
R610 1K
CFG1
CFG0
+
C601
100UF 35V
R621 1M 1/16W
Q605 2N7002K
SPDIF_OUT
R611 NC/1K
R617 NC/1K
R618 1K
C630
NC/ 470P 50V
C617 100N16V
C628
NC/ 470P 50V
SB1
R609
NC/10 OHM 1/4W
SB2
R615
NC/10 OHM 1/4W
L-
RB
LA
L+
FB604 NC/120R 3A
1 2
LB
C604
0.1uF 50V
R-
AUD_RSTN
R688 100OHM
VCC_3V3
VCC_3V3
Q602
MMBT3906
1
AD82588
0
Mode
VCC_3V3
Mono
0
AD83586
0
CFG1
CFG0
RA
2.1 ChannelX 1
Stereo
C632 1UF16V
Circuit Diagrams and PWB Layouts
EN 41TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 42

10-2-9 Karaoke/MIC In/Audio Output

19980_512.eps
Karaoke/MIC In/Audio Output
B09 B09
2015-01-20
715G6546
Karaoke/MIC In/Audio Output
R647 10K
R648 10K
C656
2.2U10V
R632 NC/1M
R633 NC/1M
R679 33 OHM 1/16W
C639 1nF 50V
C640 1nF 50V
R635 NC/1K
R636 NC/1K
R653 1K
R652 NC/1K
R654 NC/1K
PD_MUTE10
R68247K
ZD604
NC/MLVG0402
12
ZD605
NC/MLVG0402
12
R685 560R
R686 560R
CN605
PHONE JA CK
1
2
3
LINE_OUT_R
LINE_OUT_L
C660
2.7NF 50V
Y_SCL10 Y_SDA10
Y_SCL
FORMAT
R655 10K
VCC_3V3
Y_SDA
ADC_MS IWL FSAMPEN
C663
100PF 50V
U603
YSS952
DVSS
25
DVSS
18
PLLVSS
10
DVSS
23
DVDD18
31
GPIO11
21
GPIO10
26
GPIO9
27
GPIO8
28
GPIO7
30
GPIO6
32
GPIO5
1
GPIO4
2
GPIO3
3
DVDD18
20
GPIO2
5
GPIO1
6
GPIO0
7
IC_N
9
PLLVDD
8
PLLVSS
11
TESTb
22
IRQ_N
19
Xout
13
Xin
12
IOVDD
14
SDA
16
SCL
15
OPEN
24
DVSS
4
IOVDD
29
OPEN
17
E-Pad
33
C659
2.7NF 50V
R664 1M 1/16W
C658 1UF16V
C657 1UF16V
R656 NC/ 0R 05 OH M R657 NC/ 0R 05 OH M R658 NC/ 0R 05 OH M R659 NC/ 0R 05 OH M
FB610 300R
I2S_BCLK6
I2S_SD
I2S_BCLK
I2S_MCLK
I2S_MCLK6 I2S_WS6
I2S_SD6
I2S_WS
C662 100PF 50V
R670
1.5K 1/16W
X60 1
24.576MHZ
12
DSP_SDO1
DSP_BCLK
DSP_WS DSP_MCLK
R683 4.7K1/16W
FB611 300R
LINE_OUT_R
C655 10uF 10V
LINE_OUT_L
C647 33PF 50V
VCC_3V3
R684 1M 1/16W
LINE_OUT_L
LINE_OUT_R
FB609
300R
1 2
Q604 MMBT3904
MIC _I N_L
MIC _I N_R
M_SDA7,10,12,13
M_SCL7,10,12,13
MIC_IN_R 6
PD_MUTE
M_SDA
DSP_IRQ7
M_SCL
R675 33 OHM 1/16W R676 33 OHM 1/16W
R677 33 OHM 1/16W
AUD_RSTN
DSP_MCLK 10
DSP_MCLK
DSP_SDO0
DSP_BCLK
DSP_WS
DSP_WS 10
C651
100N16V
DSP_BCLK 10
C652 100N16V
DSP_SDO0 10
C650 100N16V
C648
100N16V
C649 100N16V
VMID
C638 10uF 10V
R642 2K OHM
R646
3.3K 1/16W
R649 2K OHM
C641 10uF 10V
R644
82K 1%
C653 100N16V
R674 0R05 OHM
C654 100N16V
VCC_3V3
R678 10K
DSP_IRQ
U602
WM8782SEDS/RV
MCLK
1
DOUT
2
LRCLK
3
DGND
4
DVDD
5
BCLK
6
IWL
7
FSAMPEN
8
FORMAT
9
VMID
10
VREFGND
11
VREFP
12
AVDD
13
AGND
14
AINOPR
15
AINR
16
COM
17
AINOPL
18
AINL
19
M/S
20
Audio Interface Mode 0 = 24-bit LJ 1 = 24-bit I2S z = 24-bit RJ
Description
FORMAT
088G302C3B1ACL
088G302C5B1ACL
Mute Control 0 = Mute 1 = Normal
C646 39PF 50V
Description
Karaoke DSP
MUTE
M/S
R650 82K 1%
Audio Mode Select 0 = RJ 1 = LJ z = I2S
IWL
Audio Output (Side)
+5VSB
FSAMPEN
Fast sampling rate enable 0 = 48ken (128x OSR) 1 = 96ken (64x OSR) z = 192ken (32x OSR)
MIC Input (Side)
AIFMODE
VCC_1V8
Pin
Address : 0x6C
FB608
60R
1 2
C643 10uF 10V
C642 100N16V
VCC_3V3
0 = Slave mode (128fs, 192fs, 256fs, 384fs, 512fs, 768fs) 1 = Master Mode (256fs, 128fs when FSAMPEN = z)
Pin
When Karaoke Function Disable
Word Length 0 = 16 bit 1 = 20 bit Z = 24 bit
R660 51R R661 51R R662 51R R663 51R
MIC_IN_L 6
R680NC/33 OHM 1/16W
ADC_MS
VCC_3V3
FORMAT
FSAMPEN
R681NC/33 OHM 1/16W
IWL
I2S_WS I2S_BCLK I2S_SD DSP_SDI1
U604
WM8524CGEDT/R
LINEVOUTL
1
CPVOUTN
2
CPCB
3
LINEGND
4
CPCA
5
LINEVDD
6
DACDAT
7
LRCLK
8
BCLK
9
MCLK
10
MUTE#
11
AIFMODE
12
AGND
13
VMID
14
AVDD
15
LINEOUTR
16
R687 10K
VCC_3V3
R640 0R05 OHM R643 0R05 OHM R645 0R05 OHM
R651 0R05 OHM
DSP_MCLK DSP_SDI1
DSP_BCLK
DSP_WS
C644 100N16V
C645 10uF 10V
AUD_RSTN7,10
R634 NC/1K
MIC _R IN MIC_LIN
ZD602
NC/MLVG0402
12
ZD603
NC/MLVG0402
12
R665 0R05 OHM R666 0R05 OHM R667 0R05 OHM
R671 51R
R668 51R
R672 51R
VMID
R669 51R
R673 51R
CN604
PHONE JACK 5P
1
2
3
5
4
C634 100N16V
R637 NC/10K
C635 10uF 10V
DSP_MCLK DSP_SDO1 DSP_SDO0
C636 100N16V
DSP_BCLK
DSP_WS
C637 10uF 10V
VCC_3V3
VCC_5V
R6390R05 OHM R641 0R05 OHM
Circuit Diagrams and PWB Layouts
EN 42TPS15.3A LA 10.
2015-Oct-23
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div.table
Page 43

10-2-10 LVDS/VB1 Output

19980_513.eps
LVDS/VB1 Output
B10 B10
2015-08-20
715G6546
LVDS/VB1 Output
C3M
C4P C4M
C3P
R4A7
NC/4.7K1/16W
R4A8 NC/4.7K1/16W
RXE1P
RXE2N
R4B1
NC/0R05 OHM
RXECKN
RXE2P
RXE1N
RXO2N RXOCKP
RXO4N
RXO4P
RXECKP
RXOCKN
RXE0P RXE0N
RXO3P RXO3N
RXO2P
R4F4 10K
BITSEL
R4F5 10K
R4F6
NC/4.7K1/16W
R4F7 NC/4.7K1/16W
VCC_3V3
RP442 NC/ 0OH M 1/16W
1 2
3
4
8
7 6 5
R4B2 NC/4.7K1/16W
RP443 NC / 0OH M 1/16W
1 2
3
4
8
7 6 5
RP444 NC/ 0OH M 1/16W
1 2
3
4
8
7 6 5
20PX2 S/T 2.0mm 311GW200C40AAL
R4G3 0R05 OHM
VBY0P
SDA
VBY5P
VBY1N
VBY4N
R4G4 0R05 OHM
LVDS_SEL
VBY3N
3D_LR_O
51P R/A 0.5mm 311GF050P51ADP
VBY1P
VBY6N
VBY3P
BITSEL
VBY5N
VBY6P
VBY0N
VBY2P
VBY7P
ROTATE
SCL
VBY4P
R4A9 NC/1K
CN403
CONN
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
U408 NC/AZ809ANSTR-E1
GND
1
RESET
2
Vcc
3
VBY7N
VBY2N
R4G7 NC/820R 1/10W 1%
P12V
R4B3 0R05 OHM
LVDS 60Hz
3D_FLAG_P
C3P
C3M
P12V Drop Detect
LVDS_SEL
Active Voltage is 7.4V
V by One
PANEL_POWER
E
High: Panel Power On Low : Panel Power Off
3D_EN7
3D_EN
C
space/trace/space/trace/space(mil) 12 / 6 / 4.5 / 6 / 12
B
RXO2P
RXE1P
RXOCKN RXO4N
RXE1N RXE2N
RXE0P RXE2P RXECKP
RXE0N
RXO3P RXO4P
RXO2N
RXECKN
RXO3N
RXOCKP
R801
NC/0R05 OHM
R4G6 NC/100K1/16W
R802
NC/0R05 OHM
LD_EN
R4C9
NC/33 OHM 1/16W
BITSEL
C0P 7
B3M
BCKP 7
C0M 7
B1M
C2P 7
B4P 7
B3P
BCKM 7
B1P 7
CCKM
C0P
C1P 7
B3P7
CCKP 7
C1P
B4M
B3M7
B2M 7
C3M
B2M
B0M
B0P
B0M 7 B1M 7
BCKP
C2M 7
C3M7 C4M 7
C1M 7
B4P
B0P 7
C4P 7
3D_LR_O
CCKP
C0M
B4M 7
C4P
R4G8 NC/33 OHM 1/16W
C2P C2M
3D_L_R_O
B2P 7
B2P
B1P
CCKM 7
C4M
C3P
C1M
C3P7
BCKM
LR_SYNC7
LR_SYNC LVDS_SEL
R4D1
NC/33 OHM 1/16W
HTPDN LOCKN
C4E2
NC/0.1uF 50V
M_SDA7,10,11,13
R4D2
NC/33 OHM 1/16W
M_SCL
M_SCL7,10,11,13
SCL
R4D3
NC/33 OHM 1/16W
3D_L_R_O3
RP441 NC/ 0OH M 1/16W
1 2
3
4
8
7 6 5
PANEL_POWER
R4C5 10K
R4C3 150K
B3P
Q404 MMBT3904
C2P
C1M
CCKP
B2P
R4C2
0R05 OHM
B4M
B3M
BCKP BCKM
C1P
LVDS_ON_OFF
B2M
C0P
C2M
CCKM
B4P
C0M
Q403
AO4449 -7A/-30V
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
R4C1 47K
R4C4
4.7K1/16W
LVDS_ON_OFF7
C4D6
220NF 25V
P12V
Q407 NC/2N7002K
Q406 NC/2N7002K
3D_FLAG
3D_FLAG_P
R4G1
NC/3.3K 1/16W
M_SDA
SDA
VCC_3V3
LOCKN
R4F9
NC/100OHM
HTPDN
C4E3 100N16V
VBY3P
3D_LR_O
VBY7N
VBY5P
3D_SYNC
VBY0N
VBY4P
VBY1P
VBY3N
VBY7P
BITSEL
VBY4N
VBY0P
3D_FLAG_P
VBY6P
VBY2P
VBY1N
VBY2N
VBY5N
VBY6N
CN402
NC/CONN
2 4 6
8
10 12 14 16 18 20 22 24 26 28
30 32 34 36 38
40
1
3
5 7 9 11 13 15 17 19 21 23 25 27 29
31 33 35 37 39
+
C4B7
220UF 16V
C4B6
47nF 50V
R4B7 NC/0R05 OHM
B0MB0P B1MB1P
R4G5
NC/1.2KOHM 1%
R4B6
NC/0R05 OHM
C4E4 100N16V
R4A6
NC/1K 1/4W C4E5 100N16V C4E6 100N16V
R4B5 NC/4.7K1/16W
R4B8
NC/33 OHM 1/ 16W
If output is V by One signal, C4E3 ~ C4F9 change to 100nF If output is LVDS signal, C4E3 ~ C4F9 change to 0R, and RP441~RP444 change to 0R
R4B4
4.7K1/16W
R4B9
NC/33 OHM 1/16W
C4E7 100N16V C4E8 100N16V
C4F1 100N16V
C4E9 100N16V
VCC_3V3
PANEL_POWER VCC_3V3
C4F2 100N16V C4F3 100N16V
C4F5 100N16V
C4F4 100N16V
R4F3 NC/0R05 OHM
3D_SYNC7
3D_FLAG6
C4F6 100N16V C4F7 100N16V
ROTATE
C4F9 100N16V
C4F8 100N16V
LVDS_SEL
ROTATE
3D_FLAG_P3D_LR_O
2D_3D L_R
D401
NC/RB551V-30_R1_00001
12
VCC_3V3
VBY5P
VBY0P VBY1N
VBY5N
VBY6P
VBY1P
VBY4N VBY4P
VBY7P
VBY6N
PANEL_POWER
VBY2N VBY2P
VBY0N
VBY3P
VBY3N
VBY7N
R4G2 NC/2.2K1/16W
Circuit Diagrams and PWB Layouts
EN 43TPS15.3A LA 10.
2015-Oct-23
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div.table
Page 44

10-2-11 AmbiLight

19980_514.eps
AmbiLight
B11 B11
2015-01-20
715G6546
AmbiLight
R254 NC/10K
AMBI_ON_OFF
I2C Address: 0xC2
R235 NC/100OHM
M_SCLLED_B2
VCC_3V3
R244 NC/100OHM
LED_B6 LED_B5
LED_R_B
R236 NC/100OHM
C212
NC/1nF 50V
LED_B3
LED_L_B
C215
NC/1nF 50V
LED_R_R
C214 NC / 1nF 50V
LED_B4
LED_L_G
R233 NC/100OHM
LED_R_G
LED_B0
U211
NC/PCA9634PW
A0
1
A1
2
A2
3
A3
4
A4
5
LED0
6
LED1
7
LED2
8
LED3
9
Vss10LED4
11
LED5
12
LED6
13
LED7
14
OE
15
A5
16
A6
17
SCL
18
SDA
19
VDD
20
C217 NC / 1nF 50V
LED_L_R
R234 NC/100OHM
C211 NC/100N16V
LED_B1
R246 NC/100OHM
R224 NC/33 OHM 1 /16 W
M_SDA
C213
NC/1nF 50V
C216
NC/ 1nF 50V
R245 NC/100OHM
R232 NC/33 OHM 1/16WR227
NC
LED_B6
R243 NC
R226
NC/4.7K1/16W
R225
NC/4.7K1/16W
LED_B0 LED_B1
R239
NC/4.7K1/16W
R237 NC
R242
NC/4.7K1/16W
R229 NC
LED_B3 LED_B4
R231 NC/4.7K1/16W
VCC_3V3
R240
NC/4.7K1/16W
R228 NC
R241
NC/4.7K1/16W
R238 NC
R230 NC
LED_B5
LED_B2
LED_R_G LED_R_R LED_R_B
LED_VCC
LED_VCC
LED_L_R LED_L_B
LED_L_G
Right Side
High: Power On Low : Power Off
AmbiLight
Left Side
Only for Philips Project
Q201
NC/AO3407A
CN203
NC/CONN
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19 20
AMBI_ON_OFF6
Q202 NC/MMBT3904
R251
NC/4.7K1/16W
P12V
R249 NC/47K
R250
NC/150K
C219
NC/220NF 25V
LED_VCC
C210
NC/0.1uF 50V
C218
NC/0.1uF 50V
M_SDA7,10,11,12
M_SCL7,10,11,12
CN204
NC/CONN
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19 20
R248 NC/0R051/8W
R247 NC
P24V
Circuit Diagrams and PWB Layouts
EN 44TPS15.3A LA 10.
2015-Oct-23
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div.table
Page 45

10-2-12 Power

19740_511.eps
Power
B12 B12
2014-04-24
715G6546
Power
P24V
VCC_1V8
VCC_5V
C721 1nF 50V
C727
100N16V
P12V12,13
U701 AP1117E33L-13-77
ADJ(GND )
1
VOUT
2
VIN
3
4
4
3V3_STB7,9,10 VCC_3V33,4,7,9,10,11,12, 13
C724
NC/10N 50V
B
C735 10N 50V
VCC_1V89,11 VCC_1V29
E
BL_ON_OFF
PANEL_POWER
R704
4.7K
P12V
L702 1uH
R765 4.7K1/16W
R760 150K
VCC_5V
PS_ON
+5VSB
R752 47K
0603
Q705
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
Q710 MMBT3904
C741 220NF 25V
R755 0R05 OHM
R732 1K
C703 10uF 25V
PS_ON
R739
2.2K1/16W
3V3_STB
R712 NC/0R05
U703 G5312QN1U
TON
24
V5V
3
PGND
4
VCC
26
VN
20
VN
19
VN
18
VN
17
AGND
2
BST
22
LX
5
LX
6
LX
7
LX
8
LX
9
LX
10
PGND
11
PGND
12
PGND
13
PGND
14
PGND
15
PGND
16
OUT
25
FB
27
PGOOD
28
ILIM
1
EN
23
AGND
29
+5VSB
R737 100K1/16W
R769 12K +-1% 1/16W
U706 G9141T11U
IN
1
GND
2
SHDN3SET
4
OUT
5
R771 0R05 OHM
P24V10,13
R766 10K
C
Standby Power
BL_ON
R772 15K 1%
C743 100N16V
0603
C750 100N16V
C749 1UF16V
For Tuner
C755 22UF
L704
2.2uH
R773 100 OHM 1% 1/10W
R770 13K 1/10W
R774
15K 1/10W 1%
R768 10OHM1/10WC746
10uF 10V
C747 1UF16V
C756 100N16V
C757 10N 50V
PS_ON
+
C751 220UF 16V
+
C732 220UF 16V
U707 AT1528P11U
VCC
1
REF
2
GND
3
FB4EN
5
PGND
6
LX
7
VIN
8
C745 NC
L703 1uH
PS_ON
R759
200KOHM 1/10W
R764 4.7K1/16W
R744 6K8 1/10W 1%
VCC_3V3
0805
U705
G5196R41D
VINA
1
VIN
2
GND
3
GND
4
AGND5FB6COMP7RT
8
SS
9
LX
10
LX
11
LX
12
BS
13
PG14EN
15
VIN
16
E-Pad
17
VCC_1V2_CPU
C740
470PF 50V
Q709 MMBT3904
R754
15K 1/10W 1%
R749 180K
BL_BR_CTRL 7
Q708 NC /MMBT3904
PS_ON
R751 20K 1/16W
R734 1K
R747 0R05 OHM
C734 22UF
TU_3 V3
R745
7.15K 1%
R735 10K
VID07
TU_3 V33
C728
100N16V
R738 100K1/16W
VID17
C731 10uF 10V
C736 10N 50V
C754 10uF 10V
R763 NC/4.7K1/16W
R758
NC/6K8
C729 10uF 10V
VCC_5V
R746 499 +-1% 1/10W
VCC_5V3,4,7,11,13
3V3_STB
R748 180K
C759 1UF16V
R722 20K 1/16W
VCC_1V2_CPU9
3V3_STB
+5VSB3,5,10,11
C739
470PF 50V
R725 10K
R750 20K 1/16W C744 NC
R775 NC/47K
0603
0603
C
Q711
NC/AO4449 -7A/ -30V
S
1
S
2
S
3
G
4
D
8
D
7
D
6
D
5
B
R777 NC/150K
PS_ON
0603
R778 NC/4.7K1/16W
0603
Q712 NC/MMBT3904
C758 NC/220N F 25V
R776 NC/0R05 OHM
E
R708 0R051/8W
DIM
P24V
PWR_ON7
VCC_3V3
R724 100K1/16W
PWR_ON
R715 10 OHM
R753
15K 1/10W 1%
R736
3.3K 1/16W
R713 NC/1K
L701
P12V
C714 10uF 25V
R720 20K 1/16W
C723
0.1uF 50V
USB_5V
C716 10uF 10V
+
C718 220UF 16V
CN701
CONN
2 4 6
8 10 12 14 16
1 3 5 7 9 11 13 15
+5VSB
R723 56K +-1% 1/10W
R711 NC/2K OHM
C726 NC
R728 10K1/10W
R727 2K 1/10W
R743 4.7K1/16W
C717 10uF 10V
C733 22UF
AMP_24V
Q701 MMBT390 4
R709 4.7K1/16W
C725 10uF 10V
Q704 MMBT390 4
R705
2.2K1/16W
C705 10uF 10V
R703 NC/4.7K
R779
3.3K
BL_BR_CTRL
C708 10uF 10V
U702 AP1117E33L-13-77
ADJ(GND )
1
VOUT
2
VIN
3
4
4
C707 1UF16V
R706 100 OHM
R714 1K
+
C730
220UF 16V
C713 10uF 25V
C701 NC/0. 1uF 50V
P24V
DDR_1V58,9
USB_5V4
R767 1K
R701 330 OHM
3V3_STB
BL_ON_OFF 7
R726 4.7K1/16W
VCC_5V
+ C742
100UF 16V
VCC_5V VCC_5V
R717 1K 1/10W
C706 NC/10uF 10V
R718 560K
+
C720 100UF 16V
Q702 MMBT3904
R716 1.5R
C719 100N16V
P12V
+5VSB
R721
4.7K1/16W
R707 0R05
P12V
P5V
PW_ON
C748 10uF 10V
R702 NC/0R051/8 W
USB_5VVCC_5V
PS_ON
R740 4.7K1/16W
R731 1K 1/10W
Q703 MMBT3904
+5VSB
VCC_5V
C752 1UF16V
U708 AZ1117D
VI3VO
2
GND
1
C753 10uF 10V
C702 NC/0. 1uF 50V
C760 NC/10uF 10V
C704 1UF16V
U704
G5196R4 1 D
VINA
1
VIN
2
GND
3
GND
4
AGND5FB6COMP7RT
8
SS
9
LX
10
LX
11
LX
12
BS
13
PG14EN
15
VIN
16
E-Pad
17
R733 10K
C709 10uF 10V
VCC_1V2
PS_ON
3V3_STB
+5VSB
R719 10K 1%
C722 1UF16V
DDR_1V5
Circuit Diagrams and PWB Layouts
EN 45TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 46

10-2-13 SSB layout top

19980_516.eps
715G6546
SSB layout top
TP19
C706
C708
C709
C755
C127
C761
C131
C219
C402
C404
C406
C408
C707
C503
C603
C605
C608
C609C610
C611
C614
C620
C621
C625 C626
C628
C630
C632
C749
C752
C656
C702
C723
C741
C4D6
C747
C505
C627
C638
C641
C645
C701
C729
C734
C753
C714
C633
C742
C751
L702
FB101
FB608
FB610
FB611
R249
R250
R639
R641
R717
R701
R706
R723
R731
R727 R728
R752
R768
R755
R760
R770
R758
R773
R774
R754
R4C1
R4C2 R4C3
FB601
FB604 FB605
FB606 FB607
R247
R248
R525
R140
R4A6
R601
R607
R608 R609
R615
R707
TH105
C762
C126
C130
C622
C629
C720
C713
C754
L701
R704
TH103
C458
C4B6
C733
C4B7
C703
C705
C732
C748
C704
C730
C718
C746
C731
R753
L703
R744
R745
R746
R747
R759
C210C218
C759
C760
R779
C604
C607
C613
C619
CN403
R780
C4E2
R4G5
R4G7
D401
R787
R785
R786
H15
H9
H16
H17
H18
H12
H7
HS401 HS402
TP6
TP7
TP8
TP9
TP10
TP11
TP12
TP13
TP14
TP15
TP16
TP17
TP18
TP20
TP21
SEN1
SEN8
SEN9
SCREW1
SCREW2
SCREW6
C101
C111
C105
C106
C107
C108
C109
C113
C114
C211
C115
C457
C438
C216
C431
C436
C418
C430
C405
R4B7
R4B8
R4B9
R412
R409
R413
R4B1
R4B2
R4B3
R4B4
R4A7
R4A8
R4A9
R4C5
R4B5
R407
R4B6
R147
R416
R419
R420
R422
R424
RP413
RP402
RP401
RP404
RP406
RP403
RP408
RP405
RP407
RP414
RP429
RP430
RP433
SEN17
H2
H5
SCREW3
SEN4
CN203
CN603
CN102
CN605
CN604
CN107
CN101
C102
C103
C104
C112
C116
C117
C120
C121
C122
C123
C124
C214
C407
C463
C403
C416
C401
C464
C461
C412
C415
C428
C413
C414
C433
C429
C434
C435
C411
C501
C502
C504
C639
C640
C644
C659
C647
C654
C660
C661
C724
C4D9
C217
C719
C726
C727
C743
C757
ZD102 ZD103 ZD104
ZD105
ZD106
ZD107
ZD108
ZD109
ZD110
ZD111
ZD114
ZD115
ZD116
ZD112
ZD113
ZD117ZD118
ZD121ZD122
ZD401
ZD402
ZD403
ZD501
ZD502
ZD503
ZD504
ZD505
ZD506
ZD507
ZD508
ZD509
ZD510
ZD511
ZD601
ZD602
ZD603
ZD604
ZD605
U407
L101
CN103
U704
U603
R101
R102
R106
R105
R107
R108
R110
R109
R111
R112
R113
R114
R115
R118
R119
R122
R121
R124
R123
R126
R127
R128
R129
R130
R131
R132
R133
R134
R135
R136
R138
R141R142
R143 R144
R145
R146
R148
R149
R150
R151
R154
R155
R158
R159
R4D3
R4D2
R244
R246
R226
R238
R251
R443
R444
R450
R451
R453
R458
R462
R463
R401
R402
R441
R442
R493
R417
R418
R408
R403
R405
R406
R404
R423
R457
R415
R425
R410
R411
R446
R445
R503
R504 R505
R506
R507
R508
R512
R514
R516
R517
R518 R519 R521 R522
R523 R527
R528
R529 R530
R531
R532
R533
R534
R536 R537
R610
R611 R617
R618
R623
R624
R637
R632
R633
R634
R635
R636
R640
R642
R643
R644
R645
R649
R650
R651
R647
R648
R652
R653
R654
R655
R656
R657
R658
R659
R660 R661 R662 R663
R680
R665
R666
R667
R668
R669
R670
R671
R672
R673
R675
R676
R677
R678
R682
R683
R684
R685
R686
R687
R721
R726
R725
R711
R713
R719
R740
R4F4
R732
R733
R765
R4C4
U502 U503
U505 U506
Q705
Q403
U707
U405
U701
U504
Q101
Q202
Q501
Q502
Q604
Q702 Q703
Q404
Q201
U602
U708
U604
X401
X601
R714
SEN6
R103R104
R152
R153
CN162
C721
L704
L605
L606
R722
CN204
CN106
U703
R245
R235 R234
R434
R435
R718
R720
R705
R709
Q701
SEN21
SEN22
HS601
HS1
HS2
C646
U402
U403
C110
C462
C417
C648
C650
C728
RP432
RP434
RP439
RP440
RP431
U401
U705
R492
R475
R485
R487
R483
R494
R495
R484
R474
R476
R480
R478
R482
R472
R488
R486
R471 R473
R477 R479 R481
R120
R125
R137
R139
R414
R440
R459
R460 R461
R664
R681
R4F5
R734
R735
C212 C213
C215
R224
R225
R227 R228 R229 R230 R231
R232
R233
R236
R237
R239 R240 R241 R242 R243
R4C6R4C7
R4C9 R4D1
U211
CN602
CN601
CN701
CN161
CN401
L601
L602
L603
L604
TP3
CN402
CN611
CN612
R160
R4F3
R4F6
R4F7
R4F9
U706
Q406
R254
R4G1
Q407
C132
R4G2
U507
U508
C662
C663
R4G3
R4G4
U601
C4E3
C4E4
C4E5
C4E6
C4E7
C4E8
C4E9
C4F1
C4F2
C4F3
C4F4
C4F5
C4F6
C4F7
C4F8
C4F9
RP441
RP442
RP443
RP444
R4G6
U408
CN501
CN506
CN507
CN111
R161 R4G8
R4G9
R4H1
R781
R782
D602
ZD701
U709
U702
CN163
CN104
C601
C602
R689
ZD702
Circuit Diagrams and PWB Layouts
EN 46TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 47

10-2-14 SSB layout bottom

19980_517.eps
715G6546
SSB layout bottom
C424
C637
C119
C425
C506
C606
C612
C618
C623
C624
C631
C657
C658
C125
C717
C616
C725
C635
C643
C655
FB401
FB602
FB609
R625
R716
R702
R602
R603 R604
TH101
C118
C490
R708
C722
R703
TH102
R712
C459
C473
C474
C480
C484
C485
C494
C409
C410
C758 R775
R776
R777
C716
C4E1
R783 R784
C477
SEN12
SEN13
C422
C423
C469
C470
C471
C472
C476 C478
C479
C486
C487
C4A7
C481
C452
C453
C454
C455
C419
C456
C482
C483
C495
C439
C440
C442
C491
C492
C493
C636
C447
C426
C450
C451
C432
C756
R4A5
R749
R426
R428
R431
RP411
RP437
RP425
RP427
RP410
RP412
RP416
RP409
RP418
RP415
RP417
RP424
RP436
RP419
RP438
RP421
RP435
SEN3
Q401
D601
C441
C444
C445
C420
C446
C465
C449
C466
C467
C468
C448
C427
C460
C497
C499
C4A1
C4A2
C4A3
C4A4
C4A5
C4A8
C4A9
C443
C4B3
C4B4
C4B5
C488
C496
C634
C642
C653
C739
C744
R116
R117
R430
R429
R433
R436
R437
R438
R447
R449
R448
R452
R456
R464
R467
R491
R439
R470
R421
R427
R432
R501
R502
R509R510
R511
R513 R515
R520
R524 R526
R535
R538
R539
R540
R541
R542
R605
R606
R612 R613 R614
R616 R619 R620
R621
R622
R626
R627
R628
R629 R630
R646
R674
R679
R736
R739
R743
R737
R767
R748
R750
D501
U406
Q402
Q503
Q601
Q602
Q603
Q704
Q710
SEN10
C489
R715
FB404
R724
R766
C498
C735
C736
C750
C437
C421
C4A6
C4B1
C4B2
C615
C617
C649
C651
C652
C740
C745
RP420
RP422
RP426
RP428
RP423
FB402
FB403
FB405
FB406
FB407
FB408
FB409
FB410
R499
R469
R468
R498
R4A4
R4A1
R496
R489
R490
R4A2
R497
R4A3
R454 R455
R465R466
R738
R751
R763R764
R4C8
C4D7
C4D8
R778
Q711
Q712
TP1
D101
Q708Q709
D603
TP2
TP5
TP4
Circuit Diagrams and PWB Layouts
EN 47TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 48

10.3 J 715G7691 IR/LED Panel

19980_518.eps
IR
J J
2015-05-26
715G7691
IR
C210
10uF 10V
3V3SB
SSB to IR
LED_R
RC6
LIGHT_SENSOR
+5V_SW
CN201
CONN
1 2
3
4 5 6 7
8
9
10 11
R236 4K3 1/16W 5%
R221
18R 1/16W 5%
LED_B
R250
0R05 1/16W
R228
4K3 1/16W 5%
Q201
BC847C
R225
2.2K 1/ 16W
3V3SB
LED_R
R220 1K
ZD202
MLVG0402
1 2
BLUE
LED208
NC/LED
12
+5V_SW
R249
NC / 0R 05 1/ 16W
LED light
RED
ZD203 MLVG0402
1 2
Q202
BC847C
LED210
LED
2 1
LED209
GPTS06033RC3-PB
12
R235 49.9 OH M 1% 1/16W
ZD204
MLVG0402
12
C208
1uF 10V
RC6
R223
100OHM
C207
NC / 100P 50V
R222
2K7 1/16W 5%
3V3SB
IR
U202
TSOP75436WTT
GND
1
Vs
2
OUT
3
GND
4
ZD204 close to U202
R244 0R 05 1/ 16W
U203
ALS-PDIC17-55C-TR8
OUT
1
VCC2GND
3
GND
4
R238
NC / 2M OHM 1/16W 5%
C209
1uF 10V
R227
22K1/16W
R229
100K1/16W
C214
100P 50V
U205
LM358APWR
1OUT
1
1IN-
2
1IN+
3
GND42IN+
5
2IN-
6
2OUT
7
VCC
8
C212
100P 50V
Light_sensor
ZD201
UDZSNP3.3B
1 2
R234 100OHM
R230 470OHM1/16W
Light Sensor
R240
NC / 0R 05 1/ 16W
R239
0R05 1/ 16W
R233
39K 1/16W 5%
R231
15K 1/16W
C211
4.7U F 10V
R224
15K 1/16W 5%
C213
100P 50V
R232
18K
+5V_SW
R251
NC / 0R 05 1/ 16W
R252
0R05 1/ 16W
LED_B

10-3-1 IR

Circuit Diagrams and PWB Layouts
EN 48TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 49

10-3-2 IR/LED board layout

19980_519.eps
715G7691
IR/LED panel
layout top/bottom
2015-06-02
R250
C211
R249
C210
C207
C208
LED208
LED209
LED210
Q201
Q202
R220
R221
R222
R223
R224
R238
U202
U203
ZD202
ZD203
ZD204
ZD2
ZD3
ZD201
C209
C212
C213
C214
R225
R227
R228
R229
R230
R231
R232
R233
R234
R235
R236
R239
R240
R244
U205
ZD1
ZD4
CN201
R252
R251
Layout IR/LED panel (top side)
Layout IR/LED panel (bottom side)
Circuit Diagrams and PWB Layouts
EN 49TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 50

10.4 J 715G7074 IR/LED Panel

19850_526.eps
IR & 3D & Light sensor & LOGO
J J
2014-09-30
C
715G7074
IR &3D&Light sensor&LOGO
R229 0R05 1/16W
R210 10K 1/16W 5%
R211
10K 1/16W 5%
R212 10K 1/16W 5%
C203 1uF 10V
+5V_SW
R219
4.7 OHM +-1% 1/ 10W
R218
10ohm +/-1% 1/ 10W
R217
10ohm +/-1% 1/ 10W
R220
NC/4.7 OHM +-1% 1/10W
C204
1uF 10V
+5V_SW
Standby
LED203
IR LED GPTS12048IRC3-R
12
3
LED204
IR LED GPTS12048IRC3-R
12
3
IR Receiver
3V3SB
R202
100R 1/16W 5%
R201
NC/ 2K7 1/ 16W 5%
3V3SB
RC6
U202
455C
VDD
1
GP5/OSC1/CLKIN
2
GP4/OSC2
3
GP3/MCLR/VPP4GP2/AN2/T0CKI/C1OUT
5
GP1/AN1/C1IN-/ICSPCLK
6
GP0/AN0/C1IN+/ICSPDAT
7
VSS
8
RC6
3D_L/R
3V3SB
LS_SDA
LS_SCL
DVD3V3
Gaming
LED201
GPSS008RC4
12
Red
R204
NC 100R 1/ 16W 5%
R216
10ohm +/-1% 1/ 10W
Active 3D
LOGO
VPP
+5V_SW
3D_L/R
DVD3V3
Wireless_L/R
R207
47K 1/16W 5%
ICSPCLK
ICSDAT Gaming
3D_L/R
Wireless_L/R
Q202 AO3414
Lighting LOGO
R230
1K 1/16W 5%
R232
2R2 1/16W 5%
DVD3V3
3V3SB
LED205
CHIP LED WHITE 99-113UNC/2223010/TR8
2 1
LED206
CHIP LED WHITE 99-113UNC/2223010/TR8
2 1
R231
2R2 1/16W 5%
3V3SB
LOGO
R205
NC 0R 05 1/ 16W
U203 NC JSA-1130
ADDR
1
VDD
2
GND3SCL
4
SDA
5
INT
6
R213
NC 0R 05 1/ 16W
Light Sensor
R209
NC 10K 1/ 16W 5%
Digital Light Sensor
C202 NC 1uF 10V
R208
NC 10K 1/ 16W 5%
LS_SCL
LS_SDA
R214
NC/ 0R 05 1/ 16W
JSA-1130
R42R41
JSA-1130
NC
NC 0R
0R
I2C addr
R206 N C 0R 05 1/ 16W
0x45
0x44
C201 NC 100N 16V
LS_SDA
LS_SCL
DVD3V3
C205
1uF 10V
Q207 BC847BW
MTK 5593 Panel 100/120Hz] NC
A3D Control
R203 U202R204
Yes
Yes YesNC
5500 6200 6500
LOGO Function
NC Yes Yes
Q204 NC/BC847BW
NC
R233
1K 1/16W 5%
LED_R
Q201 BC847BW
R215 NC/ 47K 1/ 16W 5%
LED_R
R234 2K2 1/16W 5%
ZD201
MLVG0402
12
5500 6200 6500
Light sensor Function
NC
Yes
NC
5500 6200 6500
A3D function
Yes
NC NC
U201
TSOP75436TR
GND
1
VCC
2
Vout
3
GND
4
LED202
IR LED GPTS12048IRC3-R
12
3
PIC12F510-I/SN [Panel 50/60Hz]
R203
100R 1/16W 5%
CN201
1 2
3
4 5 6 7
8
9 10 11 12 13
1415
3V3SB
R221
NC/ 10K 1/ 16W 5%

10-4-1 IR & 3D & Light sensor & LOGO

Circuit Diagrams and PWB Layouts
EN 50TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 51

10-4-2 IR/LED board layout

19850_527.eps
715G7074
IR/LED panel
layout top/bottom
LED206
LED201
LED205
U203
LED202
LED203
LED204
R217
R216
R218
R219
R229
Q202
R231
R206
R205
R203
R204
R233
R202
C205
C204
R215
Q207
Q201
R234
R211
R212
U202
C203
R210
R209
R208
CN201
R232
C202 C201
R201
R213 R214
U201
ZD201
R230
R207
Layout IR/LED panel (top side)
Layout IR/LED panel (bottom side)
Circuit Diagrams and PWB Layouts
EN 51TPS15.3A LA 10.
2015-Oct-23
back to
div.table
Page 52
Circuit Diagrams and PWB Layouts
19610_545.eps
Key
E E
2013-09-17
1
715G6316
Keyboard control panel
R03
6K8 1/10W 1%
3 4
2
1 6
5
7
8
F5
F3
F1
F4
F2
SW01
SW 6P
KEY1
Menu Right Left Down Up
R04
2K2 1/10W 1%
R01
1K2 1/10W 1%
6-5 short
2-5 short
F1
3-5 short
1-5 short 4-5 short
F2
F3
F4
F5
Direction switch
----><----|
C06
100N 50V
Joystick circuit diagram
pin1
0V
0.5V
0.81V
1.65V
2.27V
pin2
No function
pin3
3.3V
C04
NC/100N 50V
pin4
C05
NC/100N 50V
pin5 pin6
----><----|
C01
NC/100N 50V
C02
NC/100N 50V
C03
NC/100N 50V
----><----|
----><----|
----><----|
pUretneCDown
----><----|
R02
0R05 1/ 10W
0R
2K2
ResistanceKey function
Center
CH-
CH+ 1K2
VOL+
VOL-
Left
6K8 15K
Right
1 2
34
CN01
CONN
Voltage
R05
15K 1/10W 1%

10.5 E 715G6316 Keyboard control panel

10-5-1 Key

EN 52TPS15.3A LA 10.
2015-Oct-23
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Page 53
Circuit Diagrams and PWB Layouts
19610_546.eps
2013-09-17
1
715G6316
Keyboard control panel
layout top/bottom
SW2
SW3
SW4
SW5
SW6
SW7
CN01
C01
C02 C03
C04
C05
C06
R01
R02
R03
R04
R05
R1
R2
SW01
Layout Keyboard control panel (top side)
Layout Keyboard control panel (bottom side)

10-5-2 Key board layout

EN 53TPS15.3A LA 10.
2015-Oct-23
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Page 54
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

10.6 E 715G7088 Keyboard control panel

10-6-1 Key

EN 54TPS15.3A LA 10.
2015-Oct-23
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Page 55
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)

10-6-2 Key board layout

EN 55TPS15.3A LA 10.
2015-Oct-23
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Page 56
Circuit Diagrams and PWB Layouts
19740_514.eps
Tuner
TU01 TU01
715G6344
Tuner
CN1001
2 1
311GB254C20DBX
CABLE
3
Power Consumption
6
11
HIGH
AIR
LOW
1
4
RF Switch Control
8
10
5
Tuner Reset : Active LOW
2
7
9
Cable
I2C Address : 0xC0 Tuner IC : TDA18273
Air
TU101
TDSH-T070F
RF S/ W C TL
1
Reset
2
+B1
5
NC
8
TH1
12
TH2
13
TH3
14
TH4
15
SCL
3
SDA
4
NC
6
NC
7
IF_AGC
9
DIF1(P)
10
DIF2(N)
11
3V3T
RF_CTRL TU_RESET TU_SCL TU_SDA
IF_AGC DIF1 DIF2
CN1001
CONN
1 3 5 7
9 11 13 15 17 19
2 4 6 8 10 12 14 16 18 20

10.7 TU 715G6344 TunerBox Board

10-7-1 Tuner

EN 56TPS15.3A LA 10.
2015-Oct-23
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Page 57

10-7-2 TunerBox Board layout

19740_515.eps
715G6344
TunerBox Board
layout top/bottom
TU101
TU13
TU14
CN1001
TU2
TU12
TU1
TU11
Layout
TunerBox Board
(top side)
Layout
TunerBox Board
(bottom side)
Circuit Diagrams and PWB Layouts
EN 57TPS15.3A LA 10.
2015-Oct-23
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Page 58

11. Styling Sheets

19980_800.eps
6600 series 49"
FOR ELECTRICAL PARTS/ASSEMBLIES SEE WIRING DIAGRAM CHAPTER 9
Pos No. Description Remarks
0030 Bezel 0040 Rear cover 0050 Stand Assy
0095 V0 Sheet
1050 Display panel 1053 Panel SSB 1054 Power Supply Unit
1056 IR/LED panel 1057 Keyboard control panel 1067 Tuner board
1176 Remote control Not displayed 1184 Speakers
WiFi01 WiFi_USB
0050
0095
0040
1054
1057
1050
1056
1184
1184
1053
0030
1067
WiFi01

11.1 6600 series 49"

Styling Sheets
EN 58TPS15.3A LA 11.
2015-Oct-23
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Page 59

11.2 6600 series 55"

19980_801.eps
6600 series 55"
FOR ELECTRICAL PARTS/ASSEMBLIES SEE WIRING DIAGRAM CHAPTER 9
Pos No. Description Remarks
0030 Bezel 0040 Rear cover 0050 Stand Assy
0095 V0 Sheet
1050 Display panel 1053 Panel SSB 1054 Power Supply Unit
1056 IR/LED panel 1057 Keyboard control panel 1067 Tuner board
1176 Remote control Not displayed 1184 Speakers
WiFi01 WiFi_USB
0050
0095
0040
1054
1057
1050
1056
1184
1184
1053
0030
1067
WiFi01
Styling Sheets
EN 59TPS15.3A LA 11.
2015-Oct-23
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