1. When conducting repairs and servicing, do not attempt to modify the equipment, its parts or its materials.
2. When wiring units (with cables, flexible cables or lead wires) are supplied as repair parts and only one wire or some of the
wires have been broken or disconnected, do not attempt to repair or re-wire the units. Replace the entire wiring unit instead.
3. When conducting repairs and servicing, do not twist the Fasten connectors but plug them straight in or unplug them straight
out.
4. When servicing, observe the original lead dress. If a short circuit is found, replace all parts which have been overheated or
damaged by the short circuit.
5. After servicing, see to it that all the protective devices such as insulation barriers, insulation papers shields are properly
installed.
6. After servicing, make the following leakage current checks to prevent the customer from being exposed to shock hazards.
1.2.Touch-Current Check
1. Plug the AC cord directly into the AC outlet. Do not use an isolation transformer for this check.
2. Connect a measuring network for touch currents between each exposed metallic part on the set and a good earth ground
such as a water pipe, as shown in Figure 1.
3. Use Leakage Current Tester (Simpson 228 or equivalent) to measure the potential across the measuring network.
4. Check each exposed metallic part, and measure the voltage at each point.
5. Reserve the AC plug in the AC outlet and repeat each of the above measure.
6. The potential at any point (TOUCH CURRENT) expressed as voltage U
For a. c.: U1 = 35 V (peak) and U2 = 0.35 V (peak);
For d. c.: U
Note:
The limit value of U
mA d. c.
The limit value U
7. In case a measurement is out of the limits specified, there is a possibility of a shock hazard, and the equipment should be
repaired and rechecked before it is returned to the customer.
= 1.0 V,
1
= 0.35 V (peak) for a. c. and U1 = 1.0 V for d. c. correspond to the values 0.7 mA (peak) a. c. and 2.0
2
= 35 V (peak) for a. c. correspond to the value 70 mA (peak) a. c. for frequencies greater than 100 kHz.
1
and U2, does not exceed the following values:
1
Figure 1
3
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2Warning
2.1.Prevention of Electrostatic Discharge (ESD) to Electrostatically
Sensitive (ES) Devices
Some semiconductor (solid state) devices can be damaged easily by static electricity. Such components commonly are called
Electrostatically Sensitive (ES) Devices. Examples of typical ES devices are integrated circuits and some field-effect transistors and
semiconductor [chip] components. The following techniques should be used to help reduce the incidence of component damage
caused by electrostatic discharge (ESD).
1. Immediately before handling any semiconductor component or semiconductor-equipped assembly, drain off any ESD on your
body by touching a known earth ground. Alternatively, obtain and wear a commercially available discharging ESD wrist strap,
which should be removed for potential shock reasons prior to applying power to the unit under test.
2. After removing an electrical assembly equipped with ES devices, place the assembly on a conductive surface such as
aluminum foil, to prevent electrostatic charge buildup or exposure of the assembly.
3. Use only a grounded-tip soldering iron to solder or unsolder ES devices.
4. Use only an anti-static solder removal device. Some solder removal devices not classified as [anti-static (ESD protected)] can
generate electrical charge sufficient to damage ES devices.
5. Do not use freon-propelled chemicals. These can generate electrical charges sufficient to damage ES devices.
6. Do not remove a replacement ES device from its protective package until immediately before you are ready to install it. (Most
replacement ES devices are packaged with leads electrically shorted together by conductive foam, aluminum foil or
comparable conductive material).
7. Immediately before removing the protective material from the leads of a replacement ES device, touch the protective material
to the chassis or circuit assembly into which the device will be installed.
Caution
Be sure no power is applied to the chassis or circuit, and observe all other safety precautions.
8. Minimize bodily motions when handling unpackaged replacement ES devices. (Otherwise ham less motion such as the
brushing together of your clothes fabric or the lifting of your foot from a carpeted floor can generate static electricity (ESD)
sufficient to damage an ES device).
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2.2.About lead free solder (PbF)
Note: Lead is listed as (Pb) in the periodic table of elements.
In the information below, Pb will refer to Lead solder, and PbF will refer to Lead Free Solder.
The Lead Free Solder used in our manufacturing process and discussed below is (Sn+Ag+Cu).
That is Tin (Sn), Silver (Ag) and Copper (Cu) although other types are available.
This model uses Pb Free solder in it's manufacture due to environmental conservation issues. For service and repair work, we'd
suggest the use of Pb free solder as well, although Pb solder may be used.
PCBs manufactured using lead free solder will have the PbF within a leaf Symbol PbF stamped on the back of PCB.
Caution
• Pb free solder has a higher melting point than standard solder. Typically the melting point is 50 ~ 70 °F (30~40 °C) higher. Please
use a high temperature soldering iron and set it to 700 ± 20 °F (370 ± 10 °C).
• Pb free solder will tend to splash when heated too high (about 1100 °F or 600 °C).
If you must use Pb solder, please completely remove all of the Pb free solder on the pins or solder area before applying Pb
solder. If this is not practical, be sure to heat the Pb free solder until it melts, before applying Pb solder.
• After applying PbF solder to double layered boards, please check the component side for excess solder which may flow onto the
opposite side. (see figure below)
Suggested Pb free solder
There are several kinds of Pb free solder available for purchase. This product uses Sn+Ag+Cu (tin, silver, copper) solder.
However, Sn+Cu (tin, copper), Sn+Zn+Bi (tin, zinc, bismuth) solder can also be used.
PAL B / GReception of Off air broadcasts
Digital TV8 MHz UHF (New Zealand) free-to-air TV broadcast reception
PAL 60 HzPlayback of NTSC tape from some PAL Video recorders (VCR)
M.NTSCPlayback from M.NTSC Video recorders (VCR)
NTSCPlayback from NTSC Video recorders (VCR)
Receiving systems / Band name (Except Z)
21.0 kg Net (TV only)
Receiving Channels (Except Z)
VHF BAND
2-12 (PAL/SECAM B, K1)0-12 (PAL B AUST.)
1-9 (PAL B N.Z.)1-12 (PAL/SECAM D)
1-12 (NTSC M Japan)2-13 (NTSC M USA)
UHF BAND
21-69 (PAL G, H, I/SECAM G, K, K1)
28-69 (PAL B AUST.)13-57 (PAL D, K)
13-62 (NTSC M Japan)14-69 (NTSC M USA)
Horizontal scanning frequency 31 - 69 kHz
Vertical scanning frequency 59 - 86 Hz
Card slot SD Card slot × 1
ETHERNET10BASE-T / 100BASE-TX
USBUSB 2.0 DC 5 V, Max. 500 mA
DIGITAL AUDIO OUT (G/S/V/Z)PCM / Dolby Digital / DTS, Fiber optic
Note
• Design and Specifications are subject to change without notice. Mass and Dimensions shown are approximate.
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5Technical Descriptions
5.1.Panel-Type setting
Panel-Type setting is required after exchange the A-board.
A-board for spare parts is common use for different inch size in same series.
Go into Service Mode and confirm/select Panel-Type in OPTION to correct inch size.
6Service Mode
6.1.How to enter into Service Mode
6.1.1.Purpose
After exchange parts, check and adjust the contents of adjustment mode.
While pressing [VOLUME ( - )] button of the main unit, press [i] button of the remote control three times within 2 seconds.
6.1.2.Key command
[1] button...Main items Selection in forward direction
[2] button...Main items Selection in reverse direction
[3] button...Sub items Selection in forward direction
[4] button...Sub items Selection in reverse direction
[RED] button...All Sub items Selection in reverse direction
[GREEN] button...All Sub items Selection in forward direction
[VOL] button...Value of sub items change in forward direction ( + ), in reverse direction ( - )
6.1.3.How to exit
Switch off the power with the [POWER] button on the main unit or the [POWER] button on the remote control.
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6.1.4.Contents of adjustment mode
• Value is shown as a hexadecimal number.
• Preset value differs depending on models.
• After entering the adjustment mode, take note of the value in each item before starting adjustment.
AMR-SELECTOFF
VSUSLOWSee Vsus selection
AGINGALL WHITEBuilt-in test patterns can be
MIDDLE BLUE WITH MAGENTA OUTSIDE FRAME
MIDDLE STEP GREEN
MIDDLE STEP RED
LOW STEP WHITE
ALL BLUE
ALL GREEN
ALL RED
WHITE DIAGONAL STRIPE
RED DIAGONAL STRIPE
GREEN DIAGONAL STRIPE
BLUE DIAGONAL STRIPE
A-ZONE & B-ZONE
1% WINDOW
COLOR BAR
9 POINTS BRIGHT MEASURE
2 DOT OUTSIDE FRAME
DOUBLE FIXED 1% WINDOW
VERTICAL LINE SCROLL
ON/OFF
R/G/B/W ROTATION WITH COUNT DISPLAY
HALF FIXED ALL WHITE
ALL WHITE WITH COUNT DISPLAY
SRV-TOOL00See Service tool mode
DRV CHECK USBHDD CHECK00See DRV Check-USBHDD Check
displayed.
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6.2.Option - Mirror
Picture can be reversed left and right or up and down.
00 : Default (Normal picture is displayed)
01 : Picture is reversed left and right.
02 : Picture is reversed up and down.
Hint : If the defective symptom (e.g. Vertical bar or Horizontal bar) is moved by selection of this mirror, the possible cause is in
A-board.
6.3.Service tool mode
6.3.1.How to access
1. Select [SRV-TOOL] in Service Mode.
2. Press [OK] button on the remote control.
6.3.2.Display of SOS History
SOS History (Number of LED blinking) indication.
From left side; Last SOS, before Last, three occurrence before, 2nd occurrence after shipment, 1st occurrence after shipment.
This indication except 2nd and 1st occurrence after shipment will be cleared by [Self-check indication and forced to factory
shipment setting].
6.3.3.POWER ON TIME/COUNT
Note : To display TIME/COUNT menu, highlight position, then press MUTE for 3 sec.
Time : Cumulative power on time, indicated hour : minute by decimal
Count : Number of ON times by decimal
Note : This indication will not be cleared by either of the self-checks or any other command.
6.3.4.Exit
1. Disconnect the AC cord from wall outlet.
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6.4.DRV Check - USB HDD Check
1. Select [DRV Check - USBHDD Check] in Service Mode.
2. Press [OK] button on the remote control for more than 3 seconds.
6.5.Hotel mode
1. Purpose
Restrict a function for hotels.
2. Access command to the Hotel mode setup menu
In order to display the Hotel mode setup menu:
While pressing [VOLUME (-)] button of the main unit,
press [AV] button of the remote control three times within
2 seconds.
Then, the Hotel mode setup menu is displayed.
3. To exit the Hotel mode setup menu
Disconnect AC power cord from wall outlet.
4. Explain the Hotel mode setup menu
ItemFunction
Hotel ModeSelect hotel mode On/Off
Initial INPUTSelect input signal modes.
Set the input, when each time power is switched
on.
Selection :
Off,Analogue TV,Digital TV,AV1,AV2,PC,HDMI1,
HDMI2
• Off: give priority to a last memory.
Initial POSSelect programme number.
Initial VOL LevelAdjust the volume when each time power is
Maximum VOL
Level
Button LockSelect local key conditions.
Remote LockSelect remote control key conditions.
Selection :
Off/0 to 99
• Off: give priority to a last memory
switched on.
Selection/Range :
Off/0 to 100
• Off: give priority to a last memory
Adjust maximum volume.
Range :
0 to 100
Selection :
Off/SETUP/MENU/ALL
• Off: altogether valid
• SETUP: only F-key is invalid
(Tuning guide (menu) can not be selected.)
• MENU: only F-key is invalid
(only Volume/Mute can be selected.)
• ALL: altogether invalid.
Selection :
Off/SETUP/MENU
• Off: altogether valid
• SETUP: only Setup menu is invalid
• MENU: Picture/Sound/Setup menu are invalid
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6.6.Data Copy by SD Card
6.6.1.Purpose
(a) Board replacement (Copy the data when exchanging A-board):
When exchanging A-board, the data in original A-board can be copied to SD card and then copy to new A-board.
(b) Hotel (Copy the data when installing a number of units in hotel or any facility):
When installing a number of units in hotel or any facility, the data in master TV can be copied to SD card and then copy to other
TVs.
6.6.2.Preparation
Make pwd file as startup file for (a) or (b) in a empty SD card.
1. Insert a empty SD card to your PC.
2. Right-click a blank area in a SD card window, point to New, and then click text document. A new file is created by default
(New Text Document.txt).
3. Right-click the new text document that you just created and select rename, and then change the name and extension of the
file to the following file name for (a) or (b) and press ENTER.
File name:
(a) For Board replacement : boardreplace.pwd
(b) For Hotel : hotel.pwd
Note:
Please make only one file to prevent the operation error.
No any other file should not be in SD card.
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6.6.3.Data copy from TV set to SD Card
1. Turn on the TV set.
2. Insert SD card with a startup file (pwd file) to SD slot.
On-screen Display will be appeared according to the startup file automatically.
3. Input a following password for (a) or (b) by using remote control.
(a) For Board replacement : 2770
(b) For Hotel : 4850
Data will be copied from TV set to SD card.
It takes around 2 to 6 minutes maximum for copying.
4. After the completion of copying to SD card, remove SD card from TV set.
5. Turn off the TV set.
Note:
Following new folder will be created in SD card for data from TV set.
(a) For Board replacement : user_setup
(b) For Hotel : hotel
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6.6.4.Data copy from SD Card to TV set
1. Turn on the TV set.
2. Insert SD card with Data to SD slot.
On-screen Display will be appeared according to the Data folder automatically.
3. Input a following password for (a) or (b) by using remote control.
(a) For Board replacement : 2771
(b) For Hotel : 4851
Data will be copied from SD card to TV set.
4. After the completion of copying to SD card, remove SD card from TV set.
(a) For Board replacement : Data will be deleted after copying (Limited one copy).
(b) For Hotel : Data will not be deleted and can be used for other TVs.
5. Turn off the TV set.
Note:
1. Depending on the failure of boards, function of Data copy for board replacement does not work.
2. This function can be effective among the same model numbers.
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7Troubleshooting Guide
Use the self-check function to test the unit.
1. Checking the IIC bus lines
2. Power LED Blinking timing
7.1.Check of the IIC bus lines
7.1.1.How to access
7.1.1.1.Self-check indication only:
Produce TV reception screen, and while pressing [VOLUME ( - )] button on the main unit, press [OK] button on the remote control
for more than 3 seconds.
7.1.1.2.Self-check indication and forced to factory shipment setting:
Produce TV reception screen, and while pressing [VOLUME ( - )] button on the main unit, press [MENU] button on the remote
control for more than 3 seconds.
Disconnect the AC cord from wall outlet or switch off the power with [ Power ] button on the main unit.
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7.2.Power LED Blinking timing chart
1. Subject
Information of LED Flashing timing chart.
2. Contents
When an abnormality has occurred the unit, the protection circuit operates and reset to the stand by mode. At this time, the
defective block can be identified by the number of blinks of the Power LED on the front panel of the unit.
First check point
There are following 3 states of No Power indication by power LED.
1. No lit
2. Green is lit then turns red blinking a few seconds later. (See Power LED Blinking timing chart)
3. Only red is lit.
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7.4.No Picture
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7.5.Local screen failure
Plasma display may have local area failure on the screen. Fig-1 is the possible defect P.C.B. for each local area.
Fig-1
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8Disassembly and Assembly Instructions
8.1.Disassembly Flow Chart for the Unit
This is a disassembly chart.
When assembling, perform this chart conversely.
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8.2.Disassembly Procedure for the Unit
8.2.1.Remove the Pedestal stand
1. Remove the Plasma panel section from the servicing
stand and lay on a flat surface such as a table (covered
by a soft cloth) with the Plasma panel surface facing
downward.
2. Remove the screws (×4 ).
3. Slide the Pedestal stand to the downside and remove the
Pedestal stand.
8.2.2.Remove the AC cord clamper B
1. Remove the screws (×2 ) and remove the AC cord
clamper B.
8.2.4.Remove the Key button
1. Remove the screws (×2 ).
2. Remove the Key button.
8.2.5.Remove the PSS-Board
Caution:
To remove P.C.B. wait 1 minute after power was off for
discharge from electrolysis capacitors.
1. Disconnect the connectors (P2 and P35).
2. Disconnect the bridge connector (A6-P6).
3. Disconnect the flexible cables (SS52 and SS55).
4. Remove the screws (×5 , ×1 , ×1 ) and remove
the PSS-Board.
8.2.3.Remove the Rear cover
1. Remove the screws (×24 , ×6 , ×2 ).
2. Remove the M8 caps (×4 ).
3. Remove the Rear cover.
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8.2.6.Remove the A-Board
1. Unlock the cable clampers and the tapes to free the
cables.
2. Disconnect the connectors (A1 and A12).
3. Disconnect the bridge connector (A6-P6).
4. Disconnect the flexible cables (A20 and A30).
5. Remove the screws (×4 ) and remove the Side shield
metal.
6. Remove the A-Board.
8.2.8.Remove the SN-Board
1. Remove the flexible cables (SN21, SN22, SN23, SN24,
SN25, AN26, SN27 and SN28) connected to the SNÂBoard.
2. Disconnect the connector (SN2).
3. Disconnect the flexible cable (SN20).
4. Remove the screws (×5 ) and remove the SN-Board.
8.2.7.Remove the Speakers
1. Unlock the cable clampers and the tapes to free the
cables.
2. Disconnect the Speaker terminal.
3. Remove the screws (×2 each) and remove the
Speakers (L, R).
8.2.9.Remove the Stand bracket
1. Remove the Hanger metals (L, R) fastening screws (×5
, ×1 ) and remove the Stand bracket plate.
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8.2.10.Remove the M8 nut metals
1. Remove the screw (×1 each) and remove the M8 nut
metals.
8.2.11.Remove the K-Board
1. Remove the screw (×1 ).
2. Disconnect the connector (K1) and remove the K-Board
from the LED panel.
3. Remove the Cabinet assy from the Plasma panel section.
8.2.13.Remove the Contact metal bottom
1. Remove the screws (×8 ) and remove the Contact
metal bottom.
8.2.14.Remove the C1-Board
1. Disconnect the flexible cables (CB1, CB2, CB3 and CB4).
2. Disconnect the flexible cable (C10).
3. Remove the screws (×4 ) and remove the C1-Board.
8.2.12.Remove the Cabinet assy from the
Plasma panel section.
1. Place the Cabinet assy on a flat surface of a table
(covered by a soft cloth) and a cushion.
2. Remove the screws (×2 ).
8.2.15.Remove the C2-Board
1. Disconnect the flexible cables (CB5, CB6, CB7 and CB8).
2. Disconnect the flexible cables (C20 and C21).
3. Disconnect the connector (C25).
4. Remove the screws (×4 ) and remove the C2-Board.
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8.2.16.Replace the Plasma panel
Caution:
Place the Plasma panel on a flat surface of a table
(covered by a soft cloth) and a cushion.
A new Plasma panel itself without Contact metals is fragile.
To avoid the damage to new Plasma panel, carry a new
Plasma panel taking hold of the Contact metal bottom.
1. Place a carton box packed a new Plasma panel on the
flat surface of the work bench.
2. Open a box and without taking a new Plasma panel.
3. Attach the Cabinet assy and each P.C.Board and so on,
to the new Plasma panel.
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9Measurements and Adjustments
9.1.Adjustment
9.1.1.Vsus selection
Caution:
When Plasma panel or A-board is replaced, Vsus should be set to LOW or HIGH.
Procedure
1. Go into main item [VSUS] in Service Mode. LOW or HIGH will be displayed.
2. Press [OK] button to go to TEST stage.
White pattern without On-Screen Display will be displayed during TEST and CONF stage. Press [5] button to display the
On-Screen Display.
3. Press [VOL (-)] button to set to LOW.
4. In LOW setting
a. If no several dead pixel is visible remarkably in white pattern, press [3] button to go to CONF stage.
b. If the several dead pixels are visible remarkably in white pattern, Set to HIGH by press [VOL (+)] button. Press [3] button
to go to CONF stage if the symptom is improved.
5. Press [OK] button in CONF stage to store LOW or HIGH.
6. Exit Service Mode by pressing [Power] button.
Notes:
Do not overwrite because data is written in Peaks-EEPROM after executing adjustment of V-SUS Voltage.
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9.1.2.White balance adjustment
Name of measuring instrumentRemarks
Color analyzer
(Minolta CS-2000 or equivalent)
ProcedureRemarks
1. Enter the Service mode.
2. Receive the Analog-RF (except for no signal) or set CVBS/YUV/HDMI (no signal is
available).
3. Select [WB-ADJ] by using [1] and [2] key in the remote controller.
4. Check that the colour balance and the viewing mode is the values written in table1 and 2.
5. [INNER PATTERN] is displayed by using [5] key by using [5] key in the remote controller.
6. Select [G-CUTOFF] by using the [3] and [4] key in the remote controller, and set the value
to [80] by using the volume [+] and [-] key.
Also, [B-CUTOFF] and [R-CUTOFF] set to [80]
7. Set [G-DRIVE] value to the initial data (ex. D0).
8. Set the color analyzer and adjust color point to the values written in table1 by using [BÂDRIVE] and [R-DRIVE]
9. Increase RGB-DRIVE value so that the maximum drive value of one of R-DRIVE or GÂDRIVE or B-DRIVE should become [FF]
([ALL-DRIVE] set to [FF].)
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10 Block Diagram
10.1.Main Block Diagram
MAIN AV INPUT,PROCESSING
A
IFD_OUT
TUNER
AV1
AUDIO OUT
AV2 VIDEO/
COMPONENT
HEADPHONES
DIGITAL
AUDIO OUT
SPEAKER(L)
SPEAKER(R)
SIF_OUT
V
V
L/R
L/R OUT
V/Y/PB/PR
L/R
R/G/B/H/V
PC
HP L/R
DIGITAL AUDIO OUT
A12
AV SW
L
R
AUDIO
AMP
ARC
(HDMI2)
V/YPbPr/RGB/YC
L/R
PC_H/V
DVB_CVBS
LO1/2_L/R
HDMI1-2
TMDS DATA
NAND
FLASH
PEAKS
EEPROM
DDR3
HDMI I/F
TUNER I/F
SIF I/F
YPbPr/RGB/YC
L/R
PC_H/V
VDAC
LO1/2_L/R
HP_L/R
IEC_OUT
ASDOUT0
CPU BUS
NAND FLASH I/F
IIC1
DDR3 I/F
AV IN
VIDEO OUT
AUDIO
OUT
PEAKS-sLD2
LVDS I/F
STM
(LED:12TIMES)
SOUND_SOS
PANEL_SOS
(LED:10TIMES)
(LED:3TIMES)
(LED:5TIMES)
(LED:4TIMES)
PANEL_MAIN_ON
P+3.3V_DET
P+5V_DET
SOS4_PS
P+5V
P+3.3V
LAN CON I/F
SD CARD I/F
SUB+5V_SENSE
SUB+3.3V_SENSE
TUNER_POWER_SOS
REMOTE_IN
C.A.T.S_SENSOR
DMD IIC1
KEY3
KEY1
USB I/F
LED_R/G
STM IIC
STB5V
DCDC
STB5V
SUB5V
SUB3.3V
STM
EEPROM
TEMP
SENSOR
F15V
EV5V
TUNER_POWER_SOS
(LED:10TIMES)
DCDC
SUB1.5V
DCDC
SUB1.2V
DCDC15V
SUB1.5V
SUB1.2V
ETHERPHY
DCDC
SUB5V
DCDC
SUB3.3V
DCDC
P+1.2V
SUB5V
SUB3.3V
P+1.2V
ETHERNET DATA
SD CARD DATA
SUB5V
P+5V
SUB3.3V
P+3.3V
P
USB
DCDC
SUB1.8V
SUB3.3V
STB3.3V
ETHERNET
USB
SD CARD
SUB1.8V
SUB3.3V
STB3.3V
A1
K1
POWER LED
K
REMOTE RECEIVER
C.A.T.S. SENSOR
LED_R/G
REMOTE_RECEIVER
C.A.T.S_SENSOR
SCAN
DRIVER
SCAN
DRIVER
SN
SCAN DRIVE
BUFFER
SN-BOARD
ENERGY RECOVERY
SOS DETECT
(LED:6TIMES)
SN-BOARD
FLOATING PART
SOS DETECT
(LED:7TIMES)
CONTROL
PULSE
VSCAN GEN.
VAD GEN.
SOS6_SC1
SOS7_SC2
P+5V
P+15V
SCAN CONTROL
MID
VSUS
SN20
SN2
ASIC_
SD3.3V
STB5V
STB1.2V
STB3.3V
SUB5V
SUB9V
P+3.3V
SOS6_SC1
SOS7_SC2
A20
MID
VSUS
DATA DRIVER (RIGHT)
C1
F15V
P+5V
P+15V
SCAN CONTROL
SOS6_SC1
SOS7_SC2
ANALOG-ASIC
(LED:9TIMES)
(LED:6TIMES)
(LED:7TIMES)
SOS8_SS
(LED:8TIMES)
PANEL_SOS
SOS_DCC
LVDS DATA
PD5L
P+3.3V
A30
P+3.3V
C21
SPI
FLASH
VIDEO DATA
VIDEO DATA
PANEL_MAIN_ON
SUSTAIN CONTROL
DATA DRIVER (LEFT)
C2
SOS4_PS
SOS8_SS
SOUND15V
P+15V
EV5V
F15V
P+5V
KEY3
KEY1
POWER SUPPLY, SUSTAIN DRIVE
PSS
KEY1
KEY3
SOS4_PS
PANEL_
MAIN_ON
SUSTAIN CONTROL
(LED:8TIMES)
A6
SOS8_SS
P6
SOUND15V
EV5V
P+15V
F15V
P+5V
SOUND15V
MID
P2
VSUS
P+15V
VDA
P35
EV5V
F15V
P-BOARD
SOS DETECT
(LED:4TIMES)
COLD
HOT
STANDBY
VOLTAGE
CONVERTER
RECTIFIER
KEY BUTTON
SS-BLOCK
VSUS
VDA
MAIN
CONVERTER
POWER
FACTOR
CONTROL
RECTIFIER
RELAY
P9
AC CORD
OPERATION
KEYS
POWER SW
DATA
DRIVER
DATA
DRIVER
VDA
VIDEO DATA
DATA
DRIVER
DATA
DRIVER
P+3.3V
P+3.3V
P+3.3V
C20
C10
DATA
DRIVER
DATA
DRIVER
VDA
VIDEO DATA
DATA
DRIVER
DATA
DRIVER
VDA
VDA
C25
29
Page 30
10.2.Block (1/4) Diagram
JK3100B
AUDIO OUT
AV2 VIDEO/
COMPONENT
JK3001
JK3202
HEADPHONES
SOUND15V
SOS8_SS
SUSTAIN CONTROL
PANEL_MAIN_ON
KEYSCAN
KEY_POWER
STB5V_SW_ON
SOS4_PS
TUNER_SUB_ON
PC
P+15V
P+5V
EV5V
P_S1
P_S0
F15V
F15V
JK8600
JK8601
USB I/F
NAND FLASH I/F
CPU BUS
USB
IC8603
USB0VBUS
IC8000
PEAKS-sLD2
AVDD3.3V
HDMI3.3V
VCC
SUB3.3V
SUB1.8V
SUB1.5V
SUB1.2V
STB_OFF
STB_OFF
KEY_POWER
KEY3
STB_OFF
SUB3.3V
X8300
24.576MHz
AXO
TUNER_SUB_ON
PANEL_MAIN_ON
PANEL_MAIN_ON
TUNER_SUB_ON
AXI
SOS4_PS
(LED:4TIMES)
SOS4_PS
SD DATA:4bit
KEY1
KEY1
KEY3
SD3.3V
SD CARD I/F
VDDSD1.8V3.3V
STM
XRSTSTM
KEY3
PDP_DRVRST
XRSTSTM
EV5V
DRVRSTRFXRST
XRST
REMOTE_IN
C.A.T.S_SENSOR
PD5L_XRST_SYS
PD5L_XRST_SYS
C.A.T.S
REMOTE_IN
VDD
KEY_POWER
KEY3
STB_ON_
ENB
RST_ENB
STB_OFF
JK4700
HDMI1
DDC_IIC0
TMDS DATA
CLOCK
RX0
R_LED_ON
G_LED_ON
G_LED_ON
R_LED_ON
IC2002
PEKO SW
+5V
HDMI_CEC
DDC_IIC0
HDMI_5V_DET0
HDMI I/F
POWER_DET
PANEL_SOS
PANEL_SOS
POWER_DET
STB_ON
JK4701
HDMI2
DDC_IIC1
TMDS DATA
CLOCK
RX1
DDC_IIC1
SW_OFF_DET
SW_OFF_DET
Q2001
+5V
ARC
HDMI_CEC
PULL_ON
HDMI_CEC
HDMI_CEC_
HDMI_5V_DET1
DISPEN
DISPEN
STB5V
Q2002
STB5V_SW_ON_A
DDR3
IC8902
IC8900
NAND
FLASH
JK8602
ETHERNET
AVDD3.3V
+3.3V
ETHERPHY
LAN CON I/F
IIC1
IC8601
X8600
25MHz
SUB5V
DDR3 I/F
AVDD3.3V
TU4801
TUNER
DMD_
IIC0
VIDEO
FE_RST
IFD_OUT2
IFD_OUT1
IF_AGC
1.8V
3.3V
SUB1.5V
+1.5V
SUB1.2V
+1.1V
5V
IF2_P/N
IF1_P/N
FE_RST
IFAGC1
SIF I/F
YPbPr/RGB/YC
L/R
AV IN
HDMI3.3V
SUB1.8V
PC_H/V
VDAC
LO1_L/R
LO2_L/RLO2_L/R
HP_L/R
VIDEO OUT
SUB1.5V
SUB3.3V
AUDIO
OUT
IC8200,01
PEAKS
EEPROM
IC8713
DVB_CVBS
IC8706
3.3V
IC8714
+1.8V
SUB1.5V
SUB1.2V
SIF_OUT
IIC3
SUB5V
SUB3.3V
IC8101
IC8100
L/R
CVBS
3.3V
5V
9V
IC8704
IC8705
PA2000
ANT IN
SUB5V
+5V
SUB3.3V
+3.3V
DCDC15V
MAIN AV INPUT,PROCESSING
A
IC3001
AV SW
SOS8_SS
KEY1
P_S1
KEY_POWER
P_S0
SOS4_PS
AUDIO OUT
L/R_OUT
AV1
CVBS
L/R
AV2
V/YPbPr/RGB/YC
L/R
PC
R/G/B/H/V
DCDCEN2
DCDCEN
R_OUT
L_OUT
V
23
22
21
14
13
12
11
10
1
9
8
6
4
3
2
R
L
D1_PR
D1_PB
D1_Y/V
D1_R
D1_L
PC_R
PC_G
PC_B
PC_H
PC_V
HP_R
HP_L
SUSTAIN CONTROL
PANEL_MAIN_ON
TUNER_SUB_ON
STB5V_SW_ON
AV1
P6
A6
V/YPbPr/RGB/YC
SOUND15V
F15V
PA8704
P+5V
EV5V
TUNER
RF_CVBS
MAIN
PC_H/V
LO1_L/R
SD CARD
Q4514
HDMI_ARC
STB5V_SW_ON
Q2004
D3201
DIGITAL
AUDIO
OUT
(LED:10TIMES)
STB3.3V
STB1.2V
IC4900
AUDIO AMP
SOUND15V
IEC_OUT
SUB5V_SENSE
TUNER_POWER_SOS
D5170
D5171
D5172
A12
SUB3.3V_SENSE
SPEAKER_L
1
L(-)
15V
P+5V_DET
P
R9804
SPEAKER_R
2
L(+)
L_OUT
SPEAKER
SOS
SOUND_SOS
(LED:12TIMES)
LVDS I/F
P+3.3V_DET
(LED:3TIMES)
(LED:5TIMES)
SUB3.3V
4
3
R(-)
R(+)
R_OUT
SPEAKER
AUDIO PWM
IIC0
IIC1
IIC3
DMD_
IIC0
SBI0
SBO0
STM
IIC
IIC0
IIC1
IIC3
DMD_
IIC0
SBI0
SBO0
STM
IIC
IC2001
TEMP SENSOR
ASIC_SD3.3V
IC8901
STM
EEPROM
P+3.3V
P+5V
STB3.3V
STB1.2V
STB5V
SUB9V
SUB5V
SUB3.3V
LVDS DATA
IIC3
1
2
STB3.3V
3
4
5
6
7
8
9
10
10
11
DCDC15V
F15V
P+15V
30
DCDC15V
F15V
P+15V
12
13
14
Page 31
10.3.Block (2/4) Diagram
MAIN AV INPUT,PROCESSING
A
ASIC_SD3.3V
1
LVDS DATA
2
3
P+3.3V
4
P+5V
5
ASIC_SD3.3V
SOS6_SC1
SOS7_SC2
SOS8_SS
SOS_DCC
PANEL_SOS
STB5V_SW_ON_A
POWER_DET
SW_OFF_DET
SUB9V
SUB5V
P+3.3V
VJ5000
F15V
STB5V
IC9300
PD5L
VIDEO DATA
VIDEO DATA
IIC0
UHZ
IC9402
SUSTAIN DATA
BUFFER
D_UHZ
SOS_DCC
SUSTAIN
CONTROL
IC9400,01
SCAN DATA
BUFFER
X0
X9300
20MHz
X1
P+3.3V
SC_UHZ
SOS6_SC1
SOS7_SC2
1.2V
3.3V
FLASH I/F
P_S0
P_S1
DRVRST
OFF_FLAG
XRST_SYS
DISPEN
P+3V DET
PLASMA AI
CPG
H/V Sync Control
Sub Filed Processor
DISCHARGE CONTROL
DATA DRIVER CONTROL
P+15V
SOS_DCC
SUSTAIN CONTROL
SCAN CONTROL
LVDS DATA
IC9803
DCDC15V
DCDCEN
SUB3.3V
IC5000
ANALOG-ASIC
SD_VCC
SUB9V
SUB5V
BUFF_EN
DTV_15V
SOS6_SC1
(LED:6TIMES)
SOS7_SC2
(LED:7TIMES)
SOS8_SS
(LED:8TIMES)
SOS_DCC
(LED:9TIMES)
PANEL_SOS
S
POWER_DET
DCDC_CTL
DTV_RST
DRVRST_
IN
DRVRST_
OUT
UHZ
STB+1.2V
STB+3.3V
STBRST
STB1.2V
STB3.3V
DCDCEN
DCDCEN2
PDP_DRVRST
DRVRST
SC_UHZ
D_UHZ
XRSTSTM
XRST
P_S0
P_S1
DRVRST
PD5L_XRST_SYS
DISPEN
+1.2V
P+1.2V
R9809
P+1.2V
IC9304
SPI
FLASH
P+3.3V
SI/SO
D9806
P+3.3V
P
P+5V
C21
A30
8
VIDEO DATA
26
28
VIDEO DATA
46
DATA DRIVER CONTROL
54
P+3.3V
55
P+3.3V
SN20
A20
SCAN CONTROL
9
UHZ
3
SOS6_SC1
6
SOS7_SC2
1
P+5V
29
P+15V
30
P+15V
CN0100
IIC0
D2820
IIC1
STM_IIC
SBO0/SBI0
G
R
6
STB3.3V
7
STB1.2V
8
STB5V
9
10
10
11
12
13
14
SUB9V
SUB5V
SUB3.3V
DCDC15V
F15V
P+15V
STB3.3V
SUB_AI3.3V
G_LED_ON
R_LED_ON
C.A.T.S
REMOTE_IN
A1
2
3
6
1
4
7
G_LED_ON
R_LED_ON
C.A.T.S
REMOTE_IN
STB3.3V
SUB_AI3.3V
K1
POWER LED
2
3
6
1
4
7
FOR
FACTORY
USE
POWER LED
K
REMOTE RECEIVER
C.A.T.S. SENSOR
SN2810
C.A.T.S SENSOR
RM2810
REMOTE
RECEIVER
31
Page 32
10.4.Block (3/4) Diagram
AC CORD
POWER SUPPLY,SUSTAIN DRIVE
PSS
P9
F201
L
N
FREQUENCY RANGE
(120Khz)
EMI FILTERPFC
B+(390V)
FREQUENCY RANGE
(110Khz)
DC/DC
HB LLC
SN2
Vsus
MID
COLDHOT
Vda
OPP
UVP/OVPOCP/OVP
Ve
Vsus
Vda
SS-BLOCK
SUSOUT
SUSTAIN CONTROL
P+5V
15Vc
STB5V
FPC PROTECTOR
P2
6
Vsus
3
MID
4
MID
C25
P35
1
Vda
2
Vda
SS
52
2
13
PLASMA
1
PANEL
PANEL
SS
SUSTAIN
55
ELECTRODE
2
13
1
PFC
ON/OFF
LLC
ON/OFF
VCC
F202
FREQUENCY RANGE
(95Khz)
PHOTO
COUPLER
PHOTO
COUPLER
PHOTO
COUPLER
FLYBACK
VOLTAGE
SWITCHING
MCU
PANEL_MAIN_ON
STB5V_SW_ON
TUNER_SUB_ON
STB5V
SOS4_PS
Vsus_Vda_ON
F15V_ON
15Vs_ON
STBY5V_ON
AC_DET
SCP/OVP
OPP
COLDHOT
5V
REGULATOR
FET
SWITCH
FET
SWITCH
F15V
15Vc
OCP
SWITCHING
REGULATOR
15Vc
15Vs
(LED:8TIMES)
(LED:4TIMES)
P6 A6
21
SOS8_SS
SUSTAIN CONTROL
23
P+5V
10
P_S0
12
P_S1
14
PANEL_MAIN_ON
9
STB5V_SW_ON
8
SOS4_PS
6
TUNER_SUB_ON
22
STB5V
4
F15V
3
F15V
2
P+15V
1
SOUND15V
11
KEY3
13
KEY1
KEY BOTTON
OPERATION
KEYS
POWER SW
32
Page 33
10.5.Block (4/4) Diagram
SCAN CONTROL
P2
Vsus
A20
P+15V
P+15V
P+5V
SOS6
SOS7
SN
SCAN DRIVE
Reference Voltage
SN2
6
3
MID
4
MID
Vsus Lo : 189V
Vsus Hi : 194V
IC16603
AND
IC16501
CMH
BUFFER
SUSTAIN H
IC16502
CSH
BUFFER
RECOVERY H
IC16522
CSL
BUFFER
RECOVERY L
IC16561
SN
20
2
1
30
22
UHZ
28
25
SCAN
CONTROL
BUFFER
(LED:6TIMES)
TPSOS6
CMH
TPVSUS
CMH
CML
CSH
CSL
CPH
CPH
CERS
CMH
NCPH
Q16401
Q16402
CML
Q16441
Q16451
CERS
NCRC1
NCRC2
NCEL
IC16563
INVERTER
IC16600
SUSTAIN L
CIS
SIUCEL
OC1
OC2
CLK
BUFFER
IC16521
BUFFER
D16618
IC16784,85
PC16897
IPD CIRCUIT
VAD GEN.
SHUNT REG
Reference Voltage
Vad = 205
T16471
TPVAD
5V
Q16601
Q16421
Q16422
CIS
Q16621
Q16622
SEPA
VFG
IC16921
IGBT CONTROL
VAD
CEL
NCRC1
NCRC2
IC16786,87
PC16723
IPD CIRCUIT
VSCN GEN.
SHUNT REG
VFG
T16472
NCEL
Reference Voltage
Vscn = 147
D16713
D16714
D16728
IC16795
F15V
TPVFG
TPSN1
3V
Q16820
VSCN-F
Q16661
IC14901,02
PDP SCAN
DRIVER
PDP SCAN
DRIVER
IC14903,04
SN21
SN22
SN23
SN24
PLASMA
PANEL
PANEL
SCAN
ELECTRODE
IC14951,52
Vfo
PDP SCAN
DRIVER
PDP SCAN
DRIVER
SN25
SN26
SN27
SN28
VOL
D16583
LED(G)
IC14953,54
UHZ
(LED:7TIMES)
TPSOS7
MAIN_STOP0
IC16725
F5V
SCN_PRO
F5V
SIU
OC1
OC2
CLK
LOGIC IC
IC14961,62
DATA DRIVER (RIGHT)
C1
CB2
DATA DRIVER
CB3
CB4
C10
CONTROL DATA
VIDEO DATA
13
VIDEO DATA
31
1
5
9
10
PLASMA PANEL
P+3.3V
P+3.3V
A30
C21
VIDEO DATA
CONTROL DATA
48
30
28
10
CONTROL DATA
2
P+3.3V
1
P+3.3V
DATA DRIVER (LEFT)
C2
VIDEO DATA
C20
28
10
VDA
40
VDA
36
32
31
CB5CB1
CB6
CB7
CB8
C25
P35
1
VDA
2
VDA
DATA DRIVER
33
Page 34
34
Page 35
11 Wiring Connection Diagram
11.1.Caution statement.
Caution:
Please confirm that all flexible cables are assembled correctly.
Also make sure that they are locked in the connectors.
Verify by giving the flexible cables a very slight pull.
11.2.Wiring (1)
35
Page 36
11.3.Wiring (2)
11.4.Wiring (3)
36
Page 37
Model No. : TH-P50X50D/G/K/M/P/S/V/ZSchematic Diagram Note
S-1
Page 38
Model No. : TH-P50X50D/G/K/M/P/S/V/ZReplacement Parts List Note
S-2
Page 39
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (1/16)
S-3
Page 40
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (2/16)
S-4
Page 41
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (3/16)
S-5
Page 42
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (4/16)
S-6
Page 43
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (5/16)
S-7
Page 44
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (6/16)
S-8
Page 45
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (7/16)
S-9
Page 46
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (8/16) and K-Board
S-10
Page 47
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (9/16)
S-11
Page 48
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (10/16)
S-12
Page 49
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (11/16)
S-13
Page 50
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (12/16)
S-14
Page 51
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (13/16)
S-15
Page 52
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (14/16)
S-16
Page 53
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (15/16)
S-17
Page 54
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (16/16)
S-18
Page 55
Model No. : TH-P50X50D/G/K/M/P/S/V/ZC1-Board
S-19
Page 56
Model No. : TH-P50X50D/G/K/M/P/S/V/ZC2-Board
S-20
Page 57
Model No. : TH-P50X50D/G/K/M/P/S/V/ZSN-Board (1/4)
S-21
Page 58
Model No. : TH-P50X50D/G/K/M/P/S/V/ZSN-Board (2/4)
S-22
Page 59
Model No. : TH-P50X50D/G/K/M/P/S/V/ZSN-Board (3/4)
S-23
Page 60
Model No. : TH-P50X50D/G/K/M/P/S/V/ZSN-Board (4/4)
S-24
Page 61
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (Foil Side)
S-25
Page 62
Model No. : TH-P50X50D/G/K/M/P/S/V/ZA-Board (Component Side)