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 Philips Electronics N.V.
5102 series 32"………………………………………………………………………………………………….475102 series 43"………………………………………………………………………………………………….48 5102 series 49"………………………………………………………………………………………………….49
Published by Amy.ma 1752 Quality Subject to modification 3122 785 20560
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 Philips Electronics N.V.
2017-Dec-29
Page 3
1. Product information
Product information is subject to change without notice.
For detailed product information,please visit
www.philips.com/support
Display
Type
Diagonal screen size
•32PHT5102: 80 cm / 32 inch
Display resolution
1366 x 768p
Diagonal screen size
•43PFT5102: 108 cm / 43 inch
Display resolution
1920 x 1080p
Diagonal screen size
•49PFT5102: 123 cm / 49 inch
Display resolution
1920 x 1080p
Input resolution
Video formats
Resolution — Refresh rate
• 480i - 60 Hz
• 480p - 60 Hz
• 576i - 50 Hz
• 576p - 50 Hz
• 720p - 50 Hz, 60 Hz
• 1080i - 50 Hz, 60 Hz
• 1080p - 24 Hz, 25 Hz, 30 Hz
Computer formats
Resolutions (amongst others)
• 640 x 480p - 60 Hz
• 800 x 600p - 60 Hz
• 1024 x 768p - 60 Hz
• 1280 x 768p - 60 Hz
• 1360 x 765p - 60 Hz
• 1360 x 768p - 60 Hz
• 1280 x 1024p - 60 Hz
• 1920 x 1080p - 60 Hz23.5
Dimensions and Weights
32PHT5102
• without TV stand:
Width 732.5 mm - Height 429.6 mm - Depth 63.6 mm
- Weight ± 4.92 kg
• with TV stand:
Width 732.5 mm - Height 492 mm - Depth 179.2 mm
- Weight ± 5.05 kg
43PFT5102
• without TV stand:
Width 968.2 mm - Height 562.4 mm - Depth 63.6mm Weight ± 8.45 kg
• with TV stand:
Width 968.2 mm - Height 624.8 mm - Depth 193.9
mm - Weight ± 8.58 kg
49PFT5102
• without TV stand:
Width 968.2 mm - Height 562.4 mm - Depth 63.6mm Weight ± 8.45 kg
• with TV stand:
Width 968.2 mm - Height 624.8 mm - Depth 193.9
mm - Weight ± 8.58 kg
Connectivity
TV Side
• HDMI 1 in - MHL
• USB 1
• USB 2
• Headphones - Stereo mini-jack 3.5mm
TV Rear
• CVBS/Y Pb Pr : CVBS/Y Pb Pr, Audio L/R
• HDMI 2 in - ARC
• Digital Audio out-Optical
• Network LAN - RJ45
• Antenna (75 ohm)
• Serv.U
Sound
• HD Stereo
• Output power (RMS) : 20W
• Dolby® Digital Plus
• DTS 2.0+ Digital out ™
Multimedia
Connections
• USB 2.0
Page 4
• Ethernet LAN RJ-45
• Wi-Fi 802.11a/b/g/n (built-in)
Supported USB file systems
• FAT 16, FAT 32, NTFS
Playback formats
• Containers : 3GP, AVCHD, AVI, MPEG-PS, MPEG-TS,
MPEG-4, Matroska (MKV), Quicktime (MOV, M4V,
M4A), Windows Media (ASF/WMV/WMA)
• Video Codecs : MPEG-1, MPEG-2, MPEG-4 Part 2,
MPEG-4 Part 10 AVC (H.264), VC-1, WMV9, HEVC,
VP9
• Audio Codecs : AAC, HE-AAC (v1/v2), AMR-NB,
Dolby Digital, Dolby Digital Plus, DTS 2.0 + Digital
Out™, MPEG-1/2/2.5 Layer I/II/III (includes MP3),
MicroDVD (TXT), mplayer2 (TXT), TMPlayer (TXT)
– Character encodings : UTF-8, Central Europe and,
Eastern Europe (Windows-1250), Cyrillic
(Windows-1251), Greek (Windows-1253), Turkish
(Windows-1254), Western Europe (Windows-1252)
• Image Codecs : JPEG
• Limitations :
Reception
• Aerial input : 75 ohm coaxial (IEC75)
• Tuner bands : Hyperband, S-Channel, UHF, VHF
• DVB : DVB-T2, DVB-C (cable) QAM
• Analogue video playback : SECAM, PAL
• Digital video playback : MPEG2 SD/HD
(ISO/IEC13818-2), MPEG4 SD/HD (ISO/IEC 14496-10)
• Digital audio playback (ISO/IEC 13818-3).
Power
• Mains power : AC 110-240V +/-10%
• Ambient temperature : 5°C to 35°C
• Power saving features : Eco mode, Picture mute (for
radio), Auto switch-off timer, Eco settings menu.
The power rating stated on the product typeplate is
the power consumption for this product during
normal household use (IEC 62087 Ed.2). The
maximum power rating, stated between brackets, is used
for electrical safety (IEC 60065 Ed. 8.0).
Page 5
2. Connections Overview
( 715G8251M )
Page 6
3. Mechanical Instructions
3.1 Cable Dressing
Cable dressing (32" 5102 series)
Cable dressing (43” 5102 series)
Page 7
3.2 Assembly/Panel Removal
3.2.1 Stand removal
1. Remove the fixation screws [1] that secure the stand.
2. Take the stand bracket out from the set.
2
Cable dressing (49" 5102 series)
1
1
1
1
1
3.2.2 IR board Control Unit
1. Unplug the connector from the SSB.
Caution: be careful, as these are very fragile connectors!
2. Remove all the fixation screws [1],and connector [2] from the IR board control unit.
When defective, replace the whole unit.
Page 8
2
3.2.3 Rear Cover
Warning: Disconnect the mains internal cable(MB to IR board) before removing the rear cover.
1. Remove fixation screws [2] and [3] that secure the back cover..
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.
3.2.4 Keyboard Control Unit
1. Release the connector [1] from the SSB Board.
Caution: be careful, the Keyboard is catch on the Back cover, please be careful to avoid damage the fragile connectors!
2. Remove all the fixation screws from the keyboard control panel [2] and take it out from the Back cover
When defective, replace the whole unit.
Page 9
1
3.2.5 Small Signal Board (SSB)
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 that connect with the SSB[1].
Caution: be careful, as these are very fragile connectors!
2. Unplug all other connectors [2] .
3. Remove all the fixation screws from the SSB [3].
4. The SSB can now be shifted from side connector cover, then lifted and taken out of the I/O bracket.
2
2
Page 10
1
3.2.6 Power Supply Unit (PSU)
Caution: it is mandatory to remount all different screws at their original position during re-assembly. Failure to do so may result in damaging the
PSU.
1. Gently unplug all connectors from the PSU.
2. Remove all fixation screws from the PSU.
3. The PSU can be taken out of the set now.
3.2.7 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.
3.2.8 WIFI module
1. Unplug the connector [1] from the SSB..
2. Remove fixation screw [2] that secure the WIFI module.
3. Pull down [3] and take WIFI module out of FRAME COVER PCB
When defective, replace the whole unit.
2
3
3.2.9 LCD Panel
1. Remove the SSB as described earlier.
2. Remove the PSU as described earlier.
3. Remove the keyboard control panel as described earlier.
4. Remove the stand bracket as described earlier.
5. Remove the IR/LED as described earlier.
6. Remove the fixations screws that fix the metal clamps to the front bezel. Take out those clamps.
7. Remove all other metal parts not belonging to the panel.
8. Lift the LCD Panel from the bezel.
When defective, replace the whole unit.
2
3
Page 11
4. Service Modes
4.1 Service Modes
The Service Mode feature is split into following parts:
Service Alignment Mode (SAM).
Factory Mode.
Customer Service Mode (CSM).SAM and the Factory mode offer features, which can be used by the Service engineer to repair/align a TV set.
SAM and the Factory mode offer features, which can be used by the Service engineer to repair/align a TV set. Some features are:
Make alignments (e.g. White Tone), reset the error buffer (SAM and Factory Mode).
Display information (“SAM” indication in upper right corner of screen, error buffer, software version, operating hours,options and option codes,
sub menus).
The CSM is a Service Mode that can be enabled by the consumer. The CSM displays diagnosis information, which the customer can forward to the
dealer or call centre. In CSM mode, “CSM”, is displayed in the top right corner of the screen. The information provided in CSM and the purpose of
CSM is to:
Increase the home repair hit rate.
Decrease the number of nuisance calls.
Solved customers’ problem without home visit.
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).
4.2 Service Alignment Mode (SAM)
Purpose
To modify the NVM.
To display/clear the error code buffer.
To perform alignments.
Specifications
Operation hours counter (maximum five digits displayed).
Software version, error codes, and option settings display.
Error buffer clearing.
Option settings.
Software alignments (White Tone).
NVM Editor.
Set screen mode to full screen (all content is visible).
How to Activate SAM
To activate SAM, use one of the following methods:
Press the following key sequence on the remote control transmitter: “062596”, directly followed by the “INFO/OK” button. Do not allow the
display to time out between entries while keying the sequence.
Or via ComPair.
After entering SAM, the following items are displayed,
with “SAM” in the upper right corner of the screen to indicate that the television is in Service Alignment Mode.
How to Navigate
In the SAM menu, select menu items with the UP/DOWN keys on the remote control transmitter. The selected item will be indicated. When not
all menu items fit on the screen, use the UP/DOWN keys to display the next/previous menu items.
Page 12
With the “LEFT/RIGHT” keys, it is possible to:
– (De) activate the selected menu item.
– (De) activate the selected sub menu.
– Change the value of the selected menu item.
When you press the MENU button once while in top level SAM, the set will switch to the normal user menu (with the SAM mode still active in the
background).
How to Store SAM Settings
To store the settings changed in SAM mode (except the RGB Align settings), leave the top level SAM menu by using the POWER button on the
remote control transmitter or the television set. The mentioned exceptions must be stored separately via the STORE button.
How to Exit SAM
Use one of the following methods:
Switch the set to STANDBY by pressing the mains button on the remote control transmitter or the television set.
Via a standard RC-transmitter, key in “00” sequence.
Note: When the TV is switched “off” by a power interrupt while in SAM, the TV will show up in “normal operation mode” as soon as the power is
supplied again. The error buffer will not be cleared.
SAM mode overview
4.3 Factory mode:
Purpose
To perform extended alignments.
Specifications
Displaying and or changing Panel ID information.
Displaying and or changing Tuner ID information.
Error buffer clearing.
Various software alignment settings.
Testpattern displaying.
Public Broadcasting Service password Reset.
etc.
How to Activate the Factory mode
To activate the Factory mode, use the following method:
Page 13
Press the following key sequence on the remote control transmitter: from the “menu/home” press “1999”, directly followed by the
“Back/Return” button. Do not allow the display to time out between entries while keying the sequence.
After entering the Factory mode, we can see many items displayed,use the UP/DOWN keys to display the next/previous menu items
Factory mode overview
How to Exit the Factory mode
Use one of the following methods:
Select EXIT_FACTORY from the menu and press the “OK” button.
Note: When the TV is switched “off” by a power interrupt, or normal switch to “stand-by” while in the factory mode, the TV will show up in “normal
operation mode” as soon as the power is supplied again. The error buffer will not be cleared.
4.4 Customer Service Mode (CSM)
Purpose
The Customer Service Mode shows error codes and information on the TVs operation settings.The call centre can instruct the customer (by
telephone) to enter CSM in order to identify the status of the set.This helps the call centre to diagnose problems and failures in the TV set before
making a service call.
The CSM is a read-only mode; therefore, modifications are not possible in this mode.
Specifications
Ignore “Service unfriendly modes”.
Line number for every
line (to make CSM language independent).
Set the screen mode to full
screen (all contents on screen is visible).
After leaving the Customer Service Mode, the original settings are restored.
Possibility to use “CH+” or “CH-” for channel surfing, or enter the specific channel number on the RC.
How to Activate CSM
To activate CSM, press the following key sequence on a standard remote control transmitter: “123654” (do not allow the display to time out
between entries while keying the sequence). After entering the Customer Service Mode, the following items are displayed. use the Right/Left keys
to display the next/previous menu items
Note: Activation of the CSM is only possible if there is no (user) menu on the screen!
Page 14
CSM Overview
71
How to Navigate
By means of the “CURSOR-DOWN/UP” knob (or the scroll wheel) on the RC-transmitter, can be navigated through the menus.
How to Exit CSM
To exit CSM, use one of the following methods.
Press the MENU/HOME button on the remote control transmitter.
Press the POWER button on the remote control transmitter.
Press the POWER button on the television set.
Page 15
5. Software Upgrading, Error code and Panel Code
5.1 Software Upgrading
5.1.1. The following update is for .pkg file.
1. Rename the file to “upgrade_loader.pkg”
2.Prepare a USB memory.
3. Copy the software to USB flash disk(root directory).
4. Switch off the TV and Insert the USB memory stick that contains the software update files in one of the TV’s USB 2.0 ports.
Note: It contains USB3.0 port, if connect on it, the software may can’t be detected.
5. Switch on the TV. The TV will detect the USB memory s tick automatically. Then a window jumps out as below
6. When the TV software is updated, the TV will turn on again automatically. Remove your USB flash drive.
7. We can enter in CSM or Factory mode to check the current software version.
5.1.2. The following update is for .upg file.
Step 1: Ready for F/W Upgrade
1. Rename the file to “autorun.upg”
2.Prepare a USB memory.
3. Copy the software to USB flash disk(root directory).
4. Switch on the TV and Insert the USB memory stick that contains the software update files in one of the TV’s USB 2.0 ports
Note the version of this F/W before you change the software file name.
Page 16
Step 2: F/W Upgrade
1. Press [Quick settings], then Choose [Update Software] in the Settings menu
2.Choose [Local Updates], then press OK.
3. Select the file that you downloaded and press OK
4. Choose [Update], then choose [Start] on following step
Page 17
5. Upgrade in progress
Step 3: Check the SW version
1. After burning software, TV will restart
2.Press “123654”, enter Customer Service Mode to check if the software version is correct
Caution: Please make sure that software upgrade is finished before unplug the USB and AC power!
5.2 Error Code
5.2.1 Introduction
Error codes are required to indicate failures in the TV set. In principle a unique error code is available for every:
• Activated (SW) protection.
• Failing I2C device.
• General I2C error.
The last five errors, stored in the NVM, are shown in the Service menu’s. This is called the error buffer.
The error code buffer contains all errors detected since the last time the buffer was erased. The buffer is written from left to right. When an error occurs that
is not yet in the error code buffer, it is displayed at the left side and all other errors shift one position to the right.
An error will be added to the buffer if this error differs from any error in the buffer. The last found error is displayed on the left.
An error with a designated error code never leads to a deadlock situation. It must always be diagnosable (e.g. error buffer via OSD or blinking LED).
In case a failure identified by an error code automatically results in other error codes (cause and effect), only the error code of the MAIN failure is displayed.
Page 18
5.2.2 How to Read the Error Buffer
You can read the error buffer in below ways:
• On screen via the SAM/CSM (if you have a picture).
Example:
– ERROR: 000 000 000 000 000: No errors detected
– ERROR: 013 000 000 000 000: Error code 13 is the last and only detected error
– ERROR: 034 013 000 000 000: Error code 13 was detected first and error code 34 is the last detected (newest) error
• Via the blinking LED procedure (when you have no picture).
5.2.3 Error codes overview
In this chassis only “layer 2” error codes are available and point to problems on the SSB. They are triggered by LED blinking
when CSM is activated. Only the following layer 2 errors are defined:
5.2.4 How to Clear the Error Buffer
The error code buffer is cleared in the following cases:
• By using the CLEAR command in the SAM menu
Page 19
• By using the CLEAR command in the Factory mode:
• By using the following key sequence on the remote control transmitter: “062599” directly followed by the OK button.
• If the contents of the error buffer have not changed for 50 hours, the error buffer resets automatically.
Note: If you exit SAM by disconnecting the mains from the television set, the error buffer is not reset.
5.3 Panel Code
Press the following key sequence on a standard RC transmitter: “062596” directly followed by MENU and “xxx”, where “xxx” is a 3 digit decimal value
of the panel type: see column “Display Code” in below tab. After resetting the Display Code, restart the set immediately.
CTN_ALT BOM# Panel Type Display Code
32PHT5102/71
43PFT5102/71
49PFT5102/71
TPT315B5-1A058.L S24C XM 214
TPT430H3-HVN01.U S272S 217
TPT490F2-FHBN0.K S8940R XM 216
Page 20
6. Circuit Descriptions
6.1 Introduction
The TPM17.7A LA is a new chassis launched in AP in 2017. The whole range is covered by MT5800LUEJ platform. The major deltas versus its
predecessor support NTSC; PAL-M; PAL-N AND ISDB-T with also multi-media, CEC, ARC, MHL, SPDIF functionality.
The TPM17.7A LA chassis comes with the following stylings:
series xxPHT5102/xx
series xxPFT5102/xx
6.1.1 Implementation
Key components of this chassis are:
SCALER MT5800LUEJ HSFBGA-597
DEMODULATOR SI2180-B60-GMR QFN-48
EEPROM M24128-BRMN6TP 128k SOP-8
EMMC THGBMDG5D1LBAIT 4GB FBGA153
AUDIO AD87588-LG48NAY 20W E-LQFP-48
DRAM NT5CC256M16EP-EK 4Gb VFBGA-96
TUNER LATAM ST53WS-13-E
6.1.2 Block diagram
EMMC
Flash
Serial
Flash
DRAM
IR
JTAG
UART
EMMC INTERFACE
SPI
LVDS
GPIOLVDS Port
Main Chip
UM1
HDMI1
USB0/1
USB2/3
USB1/2
USB HUB
HDMI3
HDMI2
RGB
Embedded
Eth PHY
SPDIF OUT
SPEAKER AMP
HPOUT
LINE IN
Tuner AIF+/AIF-
ISTB-TB TS
CVBS
YPbPr1
DTV DEMOD
RJ45
SPDIF OUT
SPEAKER OUT
Headphone Out
LINE IN
TUNER
Wifi Wafer x1
USBx2
HDMIx3
VGA
YPbPr1
Page 21
6.2 Power Supply
Power architecture of this platform.
6.2.1 Power Supply Unit
All power supplies are a black box for Service. When defective, a new board must be ordered and the defective one must be returned, unless the main fuse
of the board is broken. Always replace a defective fuse with one with the correct specifications! This part is available in the regular market.
Consult the Philips Service web portal for the order codes of the boards.
Important delta’s with the platform are:
• New power architecture for LED backlight
• “Boost”-signal is now a PWM-signal + continuous variable
The control signals are:
• PS-ON
• Lamp “on/off”
• DIM (PWM) (not for PSDL)
In this manual, no detailed information is available because of design protection issues.
• +12 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.
6.2.2 Diversity
The diversity in power supply units is mainly determined by the diversity in displays.
The following displays can be distinguished:
• CCFL/EEFL backlight: power panel is conventional IPB
• LED backlight:
- side-view LED without scanning: PSL power panel
- side-view LED with scanning: PSLS power panel
- direct-view LED without 2D-dimming: PSL power panel
- direct-view LED with 2D-dimming: PSDL power panel.
PSL stands for Power Supply with integrated LED-drivers.
Page 22
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.
6.3 DC/DC Converters
The on-board DC/DC converters deliver the following voltages(depending on set execution):
• +5V_STB_PWR, permanent voltage for the Stand-by Power system
• +3V3SB,voltage for IR/Key board/WIFI
• +12V_PANEL_VCC, input from the power supply for the panel common(active mode)
• +12V, input from the power supply for LNB supply
• DVDD3V3, +1.8V, voltage for EMMC when TV on
• +1.5V_DDRV, A_VREFCA_1, A_VREFCA_2, voltage for DDR
• +3V3_TUNER, supply voltage for tuner
• + 5V_USB, input intermediate supply voltage for USB Power
• +12V_AUDIO ,for the AUDIO AMP
• CI_DVDD3V3,CI_VCC(5V), voltage for Demodulator IC channel decoder
• +3.3V Wi-Fi_VCC, voltage for WIFI
6.3.1 Power tree
Q401
+12V
MOS- AON4421
8A
PANELPANEL_VCC
U705
RT6206
5A
U703
RT6206
5A
VCCK
AVDD1V2
5VSB
Q401
MOS- AON4421
8A
+5V_SW
3255mA
1000mA
230mA
1A
U701
AP1117
1A
U706
G5695T
1A
U707
AZ1117
1A
U702
AZ1084
5A
3V3SB
DDRV
TUNER _3V3
AVDD3V3
DVDD3V3
290mA
30mA
153mA
2T2R
1T1R
50mA
U704
AZ1117
1A
U708
G912T63U
1A
U105
SW- AP3511
130mA
IR
RF4CE
DDR*2
TUNER
USB*2
+1.8V
+1.2V_
DEMOD
SOC
MT5582
EMMC
Demod IC
WIFI MODULE
12V_Amp
Amp IC - AD87588
AVDD3V3
DVDD3V3
Page 23
6.3.2 Power layout SSB (For 715G8251)
6.4 Front-End Analogue and DVB-C,DVB-T2; reception
6.4.1 DVB-C part
The Front-End for analogue tuner consist of the following key components:
• TUNER LATAM ST53WS-13-E
• SCALER MT5800LUEJ HSFBGA-597 Processor
Below find a block diagram of the front-end application for DVB-C part.
MT5800
Page 24
6.4.2 DTB-T2 part
RX
I2C RX
I2C
I2C
RX
The Front-End for DVT part consist of the following key components:
• TUNER LATAM ST53WS-13-E
• SCALER MT5800LUEJ HSFBGA-597 Processor
• DEMODULATOR SI2180-B60-GMR QFN-48
Below find a block diagram of the front-end application for DTV part.
Si2180
MT5800
6.5 HDMI
Refer to belowfor the application.
MT5800LUEJ
CN102
HDMI1
The following HDMI connector can be used:
• HDMI 1: HDMI input ( TV digital interface support HDMI1.4/HDCP1.3) with digital audio/PC DVI input/MHL
• HDMI 2: HDMI input ( TV digital interface support HDCP) with digital audio/PC DVI input.
• HDMI 3: HDMI input ( TV digital interface support HDCP) with digital audio/PC DVI input.
• +5V detection mechanism
• Stable clock detection mechanism
• MHL 2.0 function only for HDMI1
• Audio return channel(ARC) for HDMI2
• TMDS output control
• HPD control
• CEC control
CN103
HDMI2
CN104
HDMI3
Page 25
6.6 Video and Audio Processing - MT5800LUEJ
The MT5800LUEJ is the main audio and video processor (or System-on-Chip) for this platform. It has the following features:
1. Worldwide multi-standard analog TV demodulator
2. demodulators
3. Powerful quad core CPU
4. 3D graphic support OpenGL ES 2.0
5. A transport de-multiplexer
6. A muti-standard video decoder
7. Rich format audio codec
8. H.264 encoder
9. HDMI 1.4a receiver with 3D support
10. MHL 2.0 & Standby Charging
11. 2D/3D converter
12. Ethernet MAC+PHY
13. Two-link LVDS, V-by-one
OVERVIEW:
The MediaTek MT5800LUEJ family consists of a DTV front-end demodulator, a backend decoder and a TV controller and offers high integration for
advanced applications. It integrates a transport de-multiplexer, a high definition video decoder, an audio decoder, a two-link LVDS transmitter, a V-by-One
transmitter, and an NTSC/PAL/SECAM TV decoder with a 3D comb filter (NTSC/PAL). The MT5800LUEJ enables consumer electronics manufacturers to
build high quality, low cost and feature-rich DTV.
World-Leading Audio/Video Technology: The MT5800LUEJ supports Full-HD MPEG1/2/4/H.264/HEVC(H.265)/MVC/VC1/VP8/VP9 video decoder
standards, and JPEG. The MT5800LUEJ also supports MediaTek MDDiTM de-interlace solution which can reach very smooth picture quality for motions. A
3D comb filter added to the TV decoder recovers great details for still pictures. The special color processing technology provides a natural, deep colors and
true studio quality video. Moreover, the MT5800LUEJ family has built-in high resolution and high-quality audio codec.
Rich Features for High Value Products: The MT5800LUEJ family enables true single-chip experience. It integrates high-quality HDMI1.4a, high speed
VGA ADC, two-link LVDS, V-by-One, USB2.0 receiver, Ethernet MAC+PHY, quad core CPU and 512K bytes L2 cache, OpenGL ES 1.1/2.0, OpenVG 1.1
compliant 3D graphic engine, and demodulators.
WW Common Platform Capability: The MT5800LUEJ supports demodulation functions. It reserves transport stream inputs for external demodulators for
other countries or areas. TV maker can easily port the same UI to worldwide TV models. First-class adjacent and co-channel rejection capability grant
excellent reception. Professional error-concealment provides stable, smooth and mosaic-free video quality.
Page 26
7. IC Data Sheets
7.1 MT5800LUEJ (IC U401)
Page 27
7.2 M24128-BRMN6TP (IC U402)
Page 28
7.3 AD87588 (IC U601)
Page 29
7.4 SI2180-B60-GMR (IC U101--DEMODULATOR)
7.5 LATAM ST53WS-13-E (TU101--TUNER)
Page 30
8.Circuit Diagrams
1
2
8.1 A 715G7734 PSU (For 32” 5102 Series)
8-1-1 Main Power
A
BD9901
NC/KBJ 608G-FUC
12
4
NR9901
2.5R
t
!
3
L9903
4mH
!!
C9903
470PF 250V
!
NC/30m H
124
3
!
SG9902SG9901
NCNC
!
R9903
620K +-1% 1/4W
R9905
620K +-1% 1/4W
R9904
620K +-1% 1/4W
R9906
620K +-1% 1/4W
!!!
C9901
470nF 275V
R9909
CN9902
2
NC/C ONN
N
1
JUMPER
L
U9901
1
NC
2
D1
3
D1
NC4NC
NC/C AP004DG-TL
!
RV9901 680V
!
C9907
100PF 250V
12
FB9909
BEAD
!
CN9901
FB9901
AC 2P
127R
4
L9902
L9901
18mH
R9907
NC
D2
D2
C9906
NC/47pF
3
-
-
2
124
C9902
470PF 250V
3
124
620K +-1% 1/4W
620K +-1% 1/4W
!
8
7
6
5
!
C9910
100PF 250V
NC/T4AL 250V
!!
!
12
R9901
R9902
F9901
BD9902
3
GBL408-C
1
1
+
+
2
FB9908
BEAD
12
A
R9127
3.3M 1/4W
R9128
3.3M 1/4W
R9114
110K
82uF 450V
R9112
510K 1/4W
R9142
3.3M 1/4W
C9801
C9125
1NF
+
510K 1/4W
R9102
1
2
PF6005AG
510K 1/4W
U9101
GND
FB
BNO3CS
OUT
VCC
R9103
6
5
4
NC
C9124
1NF
R9908
12
FB9902
127R
F9902
T4AH/250V
12
34
C9113
2.2NF
C9102
2.2UF 50V
C9106
330PF 50V
R9146
0 OHM +-5% 1/8W
C9103
2.2NF
R9109
D9104
10R 1/8W 5%
IN4148W
R9110
47R 1%
D9106
IN4148W
+
C9104
0.1uF 50V
R91131K 1/4 W
R9104
82K OHM 1%
R9105
82K OHM 1%
D9103
FR107G-A0
Q9101
TK6A65D
R9111
10K OHM +-5% 1/8W
+
C9105
10UF50V
R9101
0.27R 2W
R9106
82K OHM 1%
R9107
82K OHM 1%
C9126
100PF
For Q9101
HS9101
HEAT SINK
1
2
3
4
EL817M(X)
R9108
4R7 1/4W 5%
D9105
PR1007G
!
U9102
5
3
4
2
1
4
COLDHOT
!
T9101
POWER X'FMR
!
C9904
1NF 250V
12
FB9906
NC
1
23
For D9116/D9102
HS9102
HEAT SINK
1
2
NC/470uF 25V
C9109
470uF 25V
+
12
3
4
C9101
C9110
0.1uF 50V
+
R9121
2K4 1/8W 5%
R9122
9.1K OHM
C9117
220nF50V
U9103
TL431G-AE2-R
L9101
3UH
R9123
43K 1/8W 1%
10K OHM +-5% 1/8W
R9124
9.31K +-1% 1/8W
680R 1/8W 1%
+12VS
R9126
R9141
2
C9107
3.3NF 500V
D9102
3
FME-220B
1
FB9302
BEAD
+12VS
C9121
470uF 25V
+
2
C9108
470pF 1KV
ZD9104
BZT52-B16G
D9116
3
FMEN-220A
1
R9115
22 OHM 1/4W
R9116
22 OHM 1/4W
R9148
22 OHM 1/4W
R9149
22 OHM 1/4W
R9117
8
NC
9
R9150
6
NC
7
10
R9120
22 OHM 1/4W
R9140
22 OHM 1/4W
R9138
22 OHM 1/4W
!
R9118
NC
C9908
NC
R9119
NC
R9139
NC
12
330UF 35V
C9122
+
R9125
620K 1/8W 1%
D9109
SR34H
12
+
C9111
470UF 25V
330UF 35V
C9116
+
R9144
NC/8.2 K 1/8W
+12V_A
+12V
R9130
1K OHM
C9112
0.1uF 50V
Q9102
2N3904
C9119
0.1uF 50V
For 2K17 Αconnector
1
3
+12V
5
Q9106
NC/2N7002K
NC/1N 50V
C9140
7
9
11
13
15
C9128
1NF 50V
PS_ON
R9143
NC/100K 1/ 8W 1%
R9145
NC/100K 1/ 8W 1%
+12V_A+12V_A
ON/OFF
C9129
NC
CN9101
CONN
12
ZD9101
BZT52-B22
470OHM +-5% 1/8W
R9131
1K 1/8W
+18V
2
4
6
8
10
12
14
16
+18V
R9129
+12V
PS_ON
DIM
C9127
1NF 50V
Page 31
8-1-2 LED Driver
Vcc2
C8602
220nF50V
OUT
+18V
330UF 35V
R8602
NC
LED-
C8601
U8601
PF7708BS
1
LED
2
VCC
3
CS/OVP
OUT4GND
R8615
22K 1/4W
L8602
+
C8605
0.1uF 50V
FB
GM
DIM
C8606
1NF
47uH
OUT
Q8601: 357G0763100601 or
R8616
0 OHM +-5% 1/ 8W
R8617
62K 1/8W 1%
8
7
6
5
C8607
220pF 50V
DIM
R8603
33K 1/8W 5%
C8603
47nF 50V
357G0763100605
33R 1/ 8W 5%
D8603
IN4148W RHG
4K7 1/8W 1%
C8610
22pF 50V
R8604
R8608
R8609
10R 1/ 8W 5%
Q8601
AOD2922
R8647
10K OHM +-5% 1/ 8W
R8601
0R05
C8617
100PF 500V
12
D8601
SR510-22
Add ON/OFF Function
FB8605
BEAD
12
220uF 50V
NC/ 100UF 63V
C8612
+
C8616
+
Add OVP Function
+12V
23
C8604
0.47UF 50V
C8621
NC/ 0.1uF 50V
D8604
IN4148W RHG
Q8603
DTA144WN3/ S
1
R8612
100K
C8611
0.47UF 50V
R8611
NC
C8623
NC
Vcc2
VLED+
78
45
CN8602
CONN
1
2
3
4
5
6
CN8601
NC/ CONN
1
2
3
VLED+
LED-
Q8602
R8652
1.2R 1%
R8653
1.2R 1%
R8654
1.2R 1%
R8655
1.2R 1%
R8656
1.5R 1%
ON/OF F
R8605
1K 1/8W
R8606
330K 1/8W 5%
C8609
0.1uF 50V
2N7002K
Page 32
8.2 A 715G7574 PSU (For 43”/49” 5102 Series)
8-2-1 AC Input
HS9901
HEAT SINK
NR9901
1.5R
CONN-NC
CN9903
NR9900
1
2
1.5R
DSPL-501N-A21F
SG9901
t
12
2
1
!
12
t
F9902
NC
T5.0AL/250V
!
!
!
2
124
L9903
0.25mH
!
3
220NF 305V
C9913
220PF 250V
!
8mH
L9901
124
C9911
47pF 250V
8
7
6
5
R9901
CAP004DG-TL
750K +-5% 1/4W
750K +-5% 1/4W
RV9901
680V
F9901
FUSE
12
34
12
1
+
-
4
3
12mH
124
L9902
C9902
!
3
!
C9901
470nF 275V
C9903
47PF
U9901
NC
NC
D1
D2
D1
D2
NC4NC
R9903
330K 1/4W-NCR9902
R9904
330K 1/4W-NC
!
!
T5.0AH/250V
CN9901
AC 2P
!
BD9901
TS10K80-01
3
!
!
C9914
220PF 250V
!
C9912
47pF 250V
1
2
3
!
1
CN9902
CONN-NC
C9821
1UF 450V
DSPL-501N-A21F
SG9902
!
R9905
750K +-5% 1/4W
R9906
750K +-5% 1/4W
2
VCC_ON
!
12
VCC
FB9803
JUMPER
BTC4672M3
C9137
10UF 50V
Q9106
L9801
5
1
300uH
R9805
47K +-1% 1/4W
VCC_ON
100N 50V
C9808
100P 50V
2Kohm 1/4W +/ -5%
PFC_OVP
+
R9170
20K +-5% 1/8W
D9803
D9802
QG806C
QG806C
4
3
C9806
R9169
12
12
R9802
10R 1/8W 5%
5
6
8
ZCD
OUT7VCC
GND
U9801
LD7591T
INV1COMP2RAMP3CS
4
R9813
10K OHM +-5% 1/8W
R9818
18.7K 1/ 8W 1%
C9809
47N 50V
2.2M 1/4W
R9116
12V+24VS 12V
2K 1/8W 1%
R9124
12
43
U9103
!
EL817M(X)
ZD9106
BZT52-B13G
12
R9150
2Kohm 1/4W +/ -5%
12
43
U9104
!
EL817M(X)
ZD9101
12
BZT52 -B16G
FB9906
C9924
470PF 250V
FB9908
127R
C9921
1NF 250V-NC
C9922
127R-NC
1NF 250V
FB9907
12
C9923
100PF 250V
127R-NC
33R 1/8W 5%
R9814
5K1 1/8W 1%
C9810
U9102
TL431G-AE2-R
0.47UF 50V
!
!
!
D9804
SCS160P
R9803
C9804
47P 50V
2.2M 1/4W
R9117
R9125
2K 1/8W 5%
12
R9806
R9810
470OHM +-5% 1/8W
C9807
220P 50V
R9812
30K 1/8W 1%
2.2M 1/4W
R9119
OVP
R9126
1K 1/8W 1%
Q9107
MMBT3906
R9151
10K OHM +-5% 1/8W
R9153
10K OHM +-5% 1/8W
Q9801
TK12A60W
10K OHM +-5% 1 /8W
R9130
91KOHM +-1% 1 /8W-N C
C9118
0.47UF 50V
Q9109
2N7002K
D9801
MUR460-28
R9801
0.15R
0R05 1/4W-NC
R9127
10K 1/8W 1%
R9134
6.2K OHM +-1% 1/8W
R9129
4.3K OHM 1%
R9152
1K5 +-1% 1/8W
R9154
10K OHM +-5% 1/8W
R9168
C9133
330K 1/8W 5%
100N 50V
1K OHM +-5% 1/8W-NC
A3D
100KOHM +-5% 1/8W-NC
C9819
470PF-NC
R9808
R9173
0 OHM +-5% 1 /8W
PS_ON/OFF
R9804
1MOHM +-1% 1/4W
R9807
1MOHM +-1% 1/4W
R9809
750K 1%
R9815
130K 1%
Q9802
3
BSS127
2
C9102
+
1UF 50V
R9138
100R 1/8W 5%
12V
C9135
100N 50 V-NC
A3D
1K OHM +-5% 1/8W-NC
R8612
R8611
HS9801
HEAT SINK
1
C9811 100N 50V
Q9103
2N7002K
1
2
3
4
C9132
1NF
+
C9801
47UF 450V
VCC_ON
R9811
10K OH M +-5% 1/8W
R9816
12
100KOHM +-5% 1/8W
R9148
10K OHM +-5% 1/8W
R9149
100K 1/8W 1%
R8631
100KOHM +-5% 1/ 8W-NC
R8633
Q8605
2N7002K-NC
HV
+
47UF 450V
R9909
0R05 1/4W
ZD910 3 BZT52-B 18
C9130
3.3NF 50V
DV12
BL_ON/OFF
C8611
100N 50V-NC
R8629
10K 1/8W 1%-NC
Q8604
2N7002K-NC
R8632
100KOHM +-5% 1/8W-NC
C9802
10N 50V
C9103
C8604
100N 50V
DIM
R8627
10K 1/8W 1%
ZD9107
BZT52-B39
12
ZD9108
BZT52-B39
12
R9910
4.7M 5% 1/8W
U9101
1
FB/OLP
2
BR
ST4DRV
SSC3S121A
R9109
130K 1%
R8615
10K OHM +-5% 1/8W
10N 50V-NC
C8605
R8609
0 OHM +-5% 1/8W
0 OHM +-5% 1/8W
R8610
R8626
150K 1/8W +/-1%
HOT
R91 04
C9104
82K 2W
2.2NF
POWER X'FMR
T9102
C9119
100PF-NC
L8604
33uH-NC
L8601
33uH
1
8
L8603
33uH
VCC
+
D9103
PG1010R
C9125
47UF 50V
2
1
4
6
R8616
33R 1/8W 5%
C8606
470P 50V
R8630
100R 1/8W 5 %
R91 12
3R9 1%
-VLED
1
2
3
4
5
!
R8617
0 OHM +-5% 1/8W
D8603
SCS160P-NC
R8623
10K OHM +-5% 1/8W
R8620
1K OHM +-5% 1/8W
0.3125V
R8607
R8602
1.2R 1 %
1.2R 1 %
R9155
R9157
R9163
R9118
47 OHM 1/4W
47 OHM 1/4W
47 OHM 1/4W
47 OHM 1/4W
D9101
SARS01-V1
D9102
SCS160P
R9106
33R 1/8W 5%
R9105
10R 1/8W 5%
8
GND
7
VCC
6
OCP
5
C9139
330P 50V
+12V
C8601
10UF 50V
LED_FB
14
FB
13
GM
12
ADIM
11
VREF
VREF
10
FLAG
9
EN
8
C8602
1N 50V- NC
R8628
10K OHM +-5% 1/8W
VREF
C8603
1UF 16V
12
R9147
220R 1/8W 5 %
C9128
100N 50V
R8614
0 OHM +-5% 1/8W
+
U8601
PF7909S
DIMOUT
VCC
CS
OUT
GND
OVP
RT7DIM
FLAG
Q9101
AOTF12N65
R9107
10K OHM +-5% 1/8W
R9101
0.2R 2W
R9135 1R 1/8W 5%
C9101
+24VS
C8612
1NF 50V
DIMOUT
1
2
3
4
5
6
R8624
150K 1/ 8W +/ -1%
22uF50V
D9104
1N4148W
+
LED_OVP
LED_FB
COLD
12
7
9
8
11
6
HS9111
HEAT SINK
HS8601
HEAT SINK
12
5
D
6
D
7
D
8
D
AO4482L
R8603
1
2
3
4
1
2
3
4
Q8603
1.2R 1 %
3
D9111
TSF20U100C
1
R9132
470 OHM 1/4W
R9102
470 OHM 1/4W
R9167
470 OHM 1/4W
R9144
470 OHM 1/4W
3
1
100K 1/8W 1%
4
G
3
S
2
S
1
S
R8606
1.2R 1 %
R9128
100 OHM 1/4W
R9111
100 OHM 1/4W
R9145
100 OHM 1/4W
R9146
100 OHM 1/4W
2
D9121
FMXA-2202S
2
+
C9121
330uF 35V
R91 62
C9150
1N 50V
Q8601
AOTF4126
0.3V
R8601
0R05
R8604
1oHM 1% 1/4W
R9131
470 OHM 1/4W
R9103
470 OHM 1/4W
R9113
470 OHM 1/4W
R9114
470 OHM 1/4W
C9122
330uF 35V
D8601
TSF20U100C
C8607
47PF-NC
R8605
1oHM 1% 1/4W
C9141
2N2 50V
C9143
2N2 50V
C9146
2N2 50V
+
R9165
2K 1/8W 5%
R9166
20K +-5% 1/8W
R91 59
9K1 1/8W 1%
3
2
1
C8614
3.3NF 500V-N C
R8613
100R 1/8W 5%
R8608
10K OHM +-5% 1/8W
+
C9111
470uF 25V
C9134
470pF 1KV
C9131
470pF 1KV
C9123
330uF 35V-NC
U9105
TL431G-AE2-R
C8613
R9164
3.3NF 500V-N C
+
1K 2W
DIMOUT
Q9104
BTB1424AM3
220uF 50V
LED_OVP
+
C9112
470uF 25V-NC
C9155
1uF
R9160
1K 2W
C8608
R8618
270K 1%
R8619
270K 1%
C9156
1uF
12V
+
+
C9113
470uF 25V
C9157
1uF
C8609
+
220uF 50V
2.5V
R8625
30K 1/8W 1%
L9100
3UH
12
FB9102
BEAD
FB9301
12
127R
L8602
3UH
GND1
GND-NC
GND2
GND-NC
GND3
GND-NC
+12V
C9114
12
D9107
SR34H-NC
C9144
C9145
100N 50V
L9301
4.7uH
R93 05
10K 1/8W 1%
0.6V
R9306
20R 1%
1.96KO HM + -1% 1/8W
+VLED
PFC_OV P
D9810
1N4148W/NC
+
470UF 25V
C9115
+
470UF 25VR9136
2
4
6
8
10
12
14
16
FLAG
C9308
100P 50V
C9313
4N7 50V /NC
C9124ㄏノ367G515X221HKT
+12V_A
DIM
CN9101
CONN
C9302 10uF 1 6V
-VLED
C9120
1N 50V
1
3
PS_ON/OFF
5
7
9
+12V_A
11
13
15
+5.2V
+5.2V
+
C9310 22 UF 50V
C9307 10uF 1 6V
C9312 100N 50V
C9311 1UF 1 6V-NC
C9309 10uF 1 6V
ripple noise
CN8603
12
11
10
9
8
7
6
5
4
3
2
1
CONN
R91 42
C9116
4.7UF 25V-NC
1UF
C9124
100N 50V
C9151
C9152
1uF
1uF-NC
ZD9102
BZT52-B5V1_R1_00001
12
C9304
100N 50V
U9301
1
BS
2
GND
FB3EN
SY8113BADC
C9303
+VLED
+
C8610
220uF 5 0V
HV
R9821
2Mohm 1/4W +/-1%/ NC
R9822
2Mohm 1/4W +/-1%/ NC
R9823
2Mohm 1/4W +/-1%/ NC
R9824
15K 1/8W 1%/ NC
Q9108
AOD4185
100KOHM +-5% 1/8W
Q9105
2N7002K
+24VS
C9154
C9153
1uF-NC
1uF-NC
6
LX
5
IN
4
R9302
3K 1/8W +/-1%
U9802
1
ISEN
2
GND
VSEN3IREF
LD8105GL/NC
R9133
1K OHM +-5% 1/8W
C9305
VCC
OUT
C9306
2N2 50V
1N 50V
6
5
4
+12V
R9143
330K 1/8W 5%
+12V_A
R9303
C9813
100N 50V/NC
PS_ON/OFF
BL_ON/OFF
A3D
100N 50V
R9304
20R 1%
VCC
R9825
510OHM +-5% 1/4W/NC
100KOHM +-5% 1/8W
C9117
12V
C9126
C9148
C9149
1uF
1uF
1uF
C9301
100N 50V
4.7UF 25V
R8621
R8622
47K 1/4W / NC
47K 1/4W / NC
1
1
C9812
470PF 50V/NC
1
Page 33
8.3 B 715G8251SSB
8-3-1 POWER SYSTEM
CN701
12V_Amp
C747
100NF 16V
BL_ON/OFF_PR E
Add by 0321
For EMI
BRIGHT ADJUST
BL_ DIMMING
Max:+3V3
Min: 0V
STB_PWR
12V_AL
+12V
BL_ADJ_PRE
2
4
6
8
10
12
14
16
CONN
C707
NC 10UF 16V
R720
0R05 1/16W
1
3
5
7
9
11
13
15
STB_PWR
R714
4.7K1/16W
12V_AL
PS_ON_PRE
BL_ADJ_PRE
BL_ADJ
+12V
12V_Amp
D703 F OR AP REGI ON USED
3V3SBSTB_PWR
D703
12
NC FB340M
C755
10UF 6.3V 20%
BL_ON/OFF
BL_ON/OFF_PREBL_ON/OFF
C756
R722
0R05 1/16W
10UF 6.3V 20%
BL_O N/OFF:
Inverter on : High
Inverter of f: Low
R718
4K7 1/16W 5%
R705
100R 1/16W 5%
3V3SB
R703
4K7 1/16W 5%
R708
NC 22K 1/16W 5%
OPWRSB
BL_ADJ
BL_ON/OFF
FB_PWR_EN
7
VCCK
AVDD1V2
+5V_SW
3V3SB
AVDD3V3
DVDD3V3
+1.8V
DDRV
Wi-Fi_PWR_EN
Wi-Fi_VCC
12V-DETECT
OPWRSB5
BL_ADJ7,8
BL_ON/OFF 7
OPCTRL12 7
12V-DETECT
VCCK5
AVDD1V2 5
+5V_SW 5
3V3SB5
AVDD3V3 5
DVDD3V3 5
+1.8V5
DDRV5
Wi-Fi_PWR_EN 5
Wi-Fi_VCC 5
Q702
D
D
D
G4S
AON4421
D
D
D
8
7
6
5
100nF 50V
+
C702
12
120R 3A
C705
10uF 16V
+5V_SW
FB701
C701
220UF 16V
R709
100K 1/10W
5VSB
3V3SB
100nF 50V
C703
R713
0R05 1/10W
C704
1uF 10V
5VSB
R704
10K 1/10W
R707
47K 1/10W 5%
Q703
BC847N3
U701
3
AP1117E33L-13-77
1
2
3
VOUT2VIN
C706
100NF 16V
ADJ(GND)
4
1
4
OPWRSB:
Normal: High
Stand_by :
Low
OPWRSBPS_ON_PRE
(+5V_SW ON/OFF):
Norm al: H igh
Stand _By: Low
VCCK
5VSB
R711
1K 1/10W
+12V to 5VSB
FB705
+12V
Add by 0321
For EMI
+12V
12
C748
100NF 16V
R730 1 00K 1/16W 5%
NC 22K 1/1 6W 5%
120R 6A
12V to Cor e Power
PS_ON_PRE
R701
0R05 1/16W
C733
C735
1UF 10% 16V
1UF 10% 16V
Vout=0.7 65x (1+6.8K/12 K) =1.203V
C719
10UF 16V
R732
1
2
3
U705
EN
FB
VREG5
SS4GND
RT6206BHGSP
C736
8.2NF 50V
STB_PWR
Wi-Fi_PWR_EN
C720
100NF 16V
C727
1UF 16V
9
GND
8
C731
VIN
7
100N 16V
BOOT
6
SW
5
5VSB
R1068
0R05 OHMR1072
10K 1/10W 5%
R745
10K 1/16W 5%
10K 1/10W 5%
1
2
3
C721
8.2NF 50V
C722
1UF 16V
C728
100N 16V
R1070
NC 0R05 O HM
R744
R746
U703
GND
EN
VIN
FB
BOOT
VREG5
SS4GND
RT6206BHGSP
C729
10uF 16V
L702
3.3uH 30mOHM 6A
(650KHz)
R737
6K8 1%
R738
0R05 1/16W
R742
12K 1%
SW
C750
10UF 10V
L701
C713
100NF 16V
3.3UH
124K 1%
22K 1%
R724
R727
9
8
7
6
5
Vout=0.76 5x (1+124K/2 2K) = 5.07V
GND
GND
ADJ
100N 16V
C737
R748
13K 1%
10UF 10V
C738
5
6
7
8
9
+12V
VCCK
10UF 10V
10UF 10V
C739
C740
C752
22UF 10V
R749
120K 1%
Vout=0.5x (1+R1/R2)
C730
10uF 16V
R747
330R 1%
3
2
1
C741
22P 50V
NC4NC
VIN
EN
NC
U710
FB708
12
120R 3A
NC 0R05
RT9048GSP
VOUT
C718
22PF 50V
120R 3A
R1071
0R05 OHM
C753
10UF 10V
C714
100NF 16V
FB709
12
C715
10UF 10V
Wi-Fi_VCC
AVDD1V2
C754
100NF 16V
C716
10UF 10V
C717
10UF 10V
FB704
12
120R 6A
FB702
120R 3A
12
+5V_SW
R723
5VSB
0R05 1/10W
C710
100NF 16V
U702
AZ1084CS2-3.3TRG1
C711
10uF 16V
VIN3VOUT
1
GND
100UF 16V
2
C712
ZD701
C709
+
100NF 16V
12
BZT52-B3V6
+5V to 1.8V FOR EMMC
DVDD3V3
10UF 6.3V
C723
DRAM Powe r
U704
AZ1117CD-1.8TRG1
3
OUT2IN
GND
1
C724
STB_PWR
12
D704
NC FB340M
3V3SB
R734
4.7K1/16W
FB_PWR_EN
H:ENAB LE FB
L:DISA BLE FB
10UF 6.3V
10UF 6.3V
C725
5VSB +5V_SW
12
D701
FB340M
C742
100NF 16V
+1.8V
C726
100NF 16V
LT: D7 04 NC
AP: D7 01, D702 NC
12
D702
FB340M
C743
10uF 16V
Add b y 0321
1
VIN
2
GND
EN3VFB
C749
NC 10UF 10V
U706
G5695T11U
5
LX
2.2uH
4
FB703
120R 3A
12
R725
L703
R741
10K 0.5% 1/16W
22K 1%
R728
15K 1%
R736
15K 1%
R739
0R05 1/16W
AVDD3V3
DVDD3V3
12V drop detect (3/18)
+12V12V_Amp
R726
Low drop detect
NC/22K 1%
3V3SB
Q706
BTA1576S3
R731
C732
10UF 6.3V 20 %
DDRV
C734
NC/100N 1 6V
22K 1%
R733
100K 1/16W 5%
R729
12V-DETECT
0R05 1/16W
H:NORM AL
L:12V DROP
Vout = 0.6x(1+R1/R2)1.5V
Vout = 0.6*(1+15/10)=1.5V
Page 34
8-3-2 PERIPHERAL
U401-6
AE26
OSDA0
AH26
OSCL0
B28
XTALI
B27
XTALO
J22
AVDD33_REG_STB
J1
VCC3IO_EMMC
H24
AVDD33_RGB_STB
K21
AVSS33_RGB
J23
AVDD33_PLL_STB
U25
AVDD10_LDOEMMC_CLK
AVDD10_ELDO
C4004
4.7UF 10% 10V
Y26
AVDD10_LDO
AVDD10_ELDO
C4002
1UF 16V
OSDA0
OSCL0
XTALI
XTALO
AVDD33_REG_STB
VCC3IO_EMMC+1.8V
AVDD33_RGB_STB
AVSS33_RGB
AVDD33_PLL_STB
C4003
4.7UF 1 0% 10V
close to main chip
MT5800WUEJ
STRAPPING
STRAPPING
ICE mode + 24M + serial boot
ICE moce + 24M + ROM to 60bit ECC Nand boot
ICE moce + 24M + ROM to eMMC boot from
eMMC pins(share pins w/s NAND)