All rights reserved. No part of this manual may be reproduced, copied, transmitted, disseminated, transcribed,
downloaded or stored in any storage medium, in any form or for any purpose without the express prior written
consent of Funai. Furthermore, any unauthorized commercial distribution of this manual or any revision hereto
is strictly prohibited.
Information in this document is subject to change without notice. Funai reserves the right to change the content
herein without the obligation to notify any person or organization of such changes.
with the design is a registered trademark of Funai Electric Co., Ltd and may not be used in any way
without the express written consent of Funai. All other trademarks used herein remain the exclusive property of
their respective owners. Nothing contained in this manual should be construed as granting, by implication or
otherwise, any license or right to use any of the trademarks displayed herein. Misuse of any trademarks or any
other content in this manual is strictly prohibited. Funai shall aggressively enforce its intellectual property rights
to the fullest extent of the law.
120608
Page 2
IMPORTANT SAFETY NOTICE
Proper service and repair is important to the safe, reliable operation of all
P&F Equipment. The service procedures recommended by P&F and
described in this service manual are effective methods of performing
service operations. Some of these service special tools should be used
when and as recommended.
It is important to note that this service manual contains various CAUTIONS
and NOTICES which should be carefully read in order to minimize the risk
of personal injury to service personnel. The possibility exists that improper
service methods may damage the equipment. It also is important to
understand that these CAUTIONS and NOTICES ARE NOT EXHAUSTIVE.
P&F could not possibly know, evaluate and advice the service trade of all
conceivable ways in which service might be done or of the possible
hazardous consequences of each way. Consequently, P&F has not
undertaken any such broad evaluation. Accordingly, a servicer who uses a
service procedure or tool which is not recommended by P&F must first use
all precautions thoroughly so that neither his safety nor the safe operation
of the equipment will be jeopardized by the service method selected.
The LCD panel is manufactured to provide many years of useful life.
Occasionally a few non active pixels may appear as a tiny spec of color.
This is not to be considered a defect in the LCD screen.
Prior to shipment from the factory, our products are strictly inspected for recognized product safety and electrical
codes of the countries in which they are to be sold. However, in order to maintain such compliance, it is equally
important to implement the following precautions when a set is being serviced.
Safety Precautions for LCD TV
Circuit
1. Before returning an instrument to the
customer, always make a safety check of the
entire instrument, including, but not limited to, the
following items:
a. Be sure that no built-in protective devices are
defective and have been defeated during
servicing. (1) Protective shields are provided
on this chassis to protect both the technician
and the customer. Correctly replace all missing
protective shields, including any removed for
servicing convenience. (2) When reinstalling
the chassis and/or other assembly in the
cabinet, be sure to put back in place all
protective devices, including but not limited to,
nonmetallic control knobs, insulating
fishpapers, adjustment and compartment
covers/shields, and isolation resistor/capacitor
networks. Do not operate this instrument or
permit it to be operated without all
protective devices correctly installed and
functioning. Servicers who defeat safety
features or fail to perform safety checks
may be liable for any resulting damage.
b. Be sure that there are no cabinet openings
through which an adult or child might be able to
insert their fingers and contact a hazardous
voltage. Such openings include, but are not
limited to, (1) spacing between the Liquid
Crystal Panel and the cabinet mask, (2)
excessively wide cabinet ventilation slots, and
(3) an improperly fitted and/or incorrectly
secured cabinet back cover.
c. Antenna Cold Check - With the instrument AC
plug removed from any AC source, connect an
electrical jumper across the two AC plug
prongs. Place the instrument AC switch in the
on position. Connect one lead of an ohmmeter
to the AC plug prongs tied together and touch
the other ohmmeter lead in turn to each tuner
antenna input exposed terminal screw and, if
applicable, to the coaxial connector. If the
measured resistance is less than 1.0 megohm
or greater than 5.2 megohm, an abnormality
exists that must be corrected before the
instrument is returned to the customer. Repeat
this test with the instrument AC switch in the off
position.
d. Leakage Current Hot Check - With the
instrument completely reassembled, plug the
AC line cord directly into a 120 V AC outlet. (Do
not use an isolation transformer during this
test.) Use a leakage current tester or a
metering system that complies with American
National Standards Institute (ANSI) C101.1
Leakage Current for Appliances and
Underwriters Laboratories (UL) 1410, (50.7).
With the instrument AC switch first in the on
position and then in the off position, measure
from a known earth ground (metal water pipe,
conduit, etc.) to all exposed metal parts of the
instrument (antennas, handle brackets, metal
cabinet, screw heads, metallic overlays, control
shafts, etc.), especially any exposed metal
parts that offer an electrical return path to the
chassis. Any current measured must not
exceed 0.5 milli-ampere. Reverse the
instrument power cord plug in the outlet and
repeat the test.
READING SHOULD
NOT BE ABOVE 0.5 mA
LEAKAGE
DEVICE
BEING
TESTED
TEST ALL EXPOSED
METAL SURFACES
ALSO TEST WITH
PLUG REVERSED
USING AC
ADAPTER PLUG
AS REQUIRED
ANY MEASUREMENTS NOT WITHIN THE
LIMITS SPECIFIED HEREIN INDICATE A
POTENTIAL SHOCK HAZARD THAT MUST
BE ELIMINATED BEFORE RETURNING THE
INSTRUMENT TO THE CUSTOMER OR
BEFORE CONNECTING THE ANTENNA OR
ACCESSORIES.
2. Read and comply with all caution and safety-
related notes on or inside the receiver cabinet, on
the receiver chassis, or on the Liquid Crystal
Panel.
CURRENT
TESTER
+
EARTH
GROUND
_
2-1LTVN_ISP
Page 6
3. Design Alteration Warning - Do not alter or add
to the mechanical or electrical design of this TV
receiver. Design alterations and additions,
including, but not limited to circuit modifications
and the addition of items such as auxiliary audio
and/or video output connections, might alter the
safety characteristics of this receiver and create a
hazard to the user. Any design alterations or
additions will void the manufacturer's warranty and
may make you, the servicer, responsible for
personal injury or property damage resulting
therefrom.
4. Hot Chassis Warning a. Some TV receiver chassis are electrically
connected directly to one conductor of the AC
power cord and maybe safety-serviced without
an isolation transformer only if the AC power
plug is inserted so that the chassis is
connected to the ground side of the AC power
source. To confirm that the AC power plug is
inserted correctly, with an AC voltmeter,
measure between the chassis and a known
earth ground. If a voltage reading in excess of
1.0 V is obtained, remove and reinsert the AC
power plug in the opposite polarity and again
measure the voltage potential between the
chassis and a known earth ground.
b. Some TV receiver chassis normally have 85V
AC(RMS) between chassis and earth ground
regardless of the AC plug polarity. This chassis
can be safety-serviced only with an isolation
transformer inserted in the power line between
the receiver and the AC power source, for both
personnel and test equipment protection.
c. Some TV receiver chassis have a secondary
ground system in addition to the main chassis
ground. This secondary ground system is not
isolated from the AC power line. The two
ground systems are electrically separated by
insulation material that must not be defeated or
altered.
5. Observe original lead dress. Take extra care to
assure correct lead dress in the following areas: a.
near sharp edges, b. near thermally hot parts-be
sure that leads and components do not touch
thermally hot parts, c. the AC supply, d. high
voltage, and, e. antenna wiring. Always inspect in
all areas for pinched, out of place, or frayed wiring.
Check AC power cord for damage.
6. Components, parts, and/or wiring that appear to
have overheated or are otherwise damaged
should be replaced with components, parts, or
wiring that meet original specifications.
Additionally, determine the cause of overheating
and/or damage and, if necessary, take corrective
action to remove any potential safety hazard.
7. Product Safety Notice - Some electrical and
mechanical parts have special safety-related
characteristics which are often not evident from
visual inspection, nor can the protection they give
necessarily be obtained by replacing them with
components rated for higher voltage, wattage, etc.
Parts that have special safety characteristics are
identified by a # on schematics and in parts lists.
Use of a substitute replacement that does not
have the same safety characteristics as the
recommended replacement part might create
shock, fire, and/or other hazards. The product's
safety is under review continuously and new
instructions are issued whenever appropriate.
Prior to shipment from the factory, our products
are strictly inspected to confirm they comply with
the recognized product safety and electrical codes
of the countries in which they are to be sold.
However, in order to maintain such compliance, it
is equally important to implement the following
precautions when a set is being serviced.
2-2LTVN_ISP
Page 7
Precautions during Servicing
A. Parts identified by the # symbol are critical for
safety.
Replace only with part number specified.
B. In addition to safety, other parts and assemblies
are specified for conformance with regulations
applying to spurious radiation. These must also be
replaced only with specified replacements.
Examples: RF converters, RF cables, noise
blocking capacitors, and noise blocking filters, etc.
C. Use specified internal wiring. Note especially:
1) Wires covered with PVC tubing
2) Double insulated wires
3) High voltage leads
D. Use specified insulating materials for hazardous
live parts. Note especially:
1) Insulation Tape
2) PVC tubing
3) Spacers
4) Insulators for transistors.
E. When replacing AC primary side components
(transformers, power cord, etc.), wrap ends of
wires securely about the terminals before
soldering.
F.Observe that the wires do not contact heat
producing parts (heat sinks, oxide metal film
resistors, fusible resistors, etc.)
G. Check that replaced wires do not contact sharp
edged or pointed parts.
H. When a power cord has been replaced, check that
11~13 lb (5~6 kg) of force in any direction will not
loosen it.
I.Also check areas surrounding repaired locations.
J. Use care that foreign objects (screws, solder
droplets, etc.) do not remain inside the set.
K. When connecting or disconnecting the internal
connectors, first, disconnect the AC plug from the
AC supply outlet.
L. When installing parts or assembling the cabinet
parts, be sure to use the proper screws and
tighten certainly.
2-3LTVN_ISP
Page 8
Safety Check after Servicing
Examine the area surrounding the repaired location for damage or deterioration. Observe that screws, parts and
wires have been returned to original positions. Afterwards, perform the following tests and confirm the specified
values in order to verify compliance with safety standards.
1. Clearance Distance
When replacing primary circuit components, confirm
specified clearance distance (d) and (d') between
soldered terminals, and between terminals and
surrounding metallic parts. (See Fig. 1)
Table 1: Ratings for selected area
Chassis or Secondary Conductor
Primary Circuit
AC Line VoltageRegion
110 to 130 V
Note: This table is unofficial and for reference only. Be
sure to confirm the precise values.
U.S.A. or
Canada
Clearance
Distance (d), (d’)
≥ 3.2 mm
(0.126 inches)
2. Leakage Current Test
Confirm the specified (or lower) leakage current
between B (earth ground, power cord plug prongs) and
externally exposed accessible parts (RF terminals,
antenna terminals, video and audio input and output
terminals, microphone jacks, earphone jacks, etc.) is
lower than or equal to the specified value in the table
below.
Measuring Method: (Power ON)
Insert load Z between B (earth ground, power cord plug
prongs) and exposed accessible parts. Use an AC
voltmeter to measure across both terminals of load Z.
See Fig. 2 and following table.
d'd
Fig. 1
Exposed Accessible Part
Z
AC Voltmeter
(High Impedance)
Earth Ground
B
Power Cord Plug Prongs
Fig. 2
Table 2: Leakage current ratings for selected areas
AC Line VoltageRegionLoad ZLeakage Current (i)Earth Ground (B) to:
110 to 130 V
Note: This table is unofficial and for reference only. Be sure to confirm the precise values.
U.S.A. or
Canada
0.15 µF CAP. & 1.5 kΩ
RES. Connected in parallel
2-4LTVN_ISP
i ≤ 0.5 mA rms
Exposed accessible
parts
Page 9
STANDARD NOTES FOR SERVICING
Circuit Board Indications
1. The output pin of the 3 pin Regulator ICs is
indicated as shown.
Top View
Out
2. For other ICs, pin 1 and every fifth pin are
indicated as shown.
Pin 1
3. The 1st pin of every male connector is indicated as
shown.
Pin 1
Input
In
Bottom View
5
10
Pb (Lead) Free Solder
Pb free mark will be found on PCBs which use Pb
free solder. (Refer to figure.) For PCBs with Pb free
mark, be sure to use Pb free solder. For PCBs
without Pb free mark, use standard solder.
Pb free mark
How to Remove / Install Flat Pack-IC
1. Removal
With Hot-Air Flat Pack-IC Desoldering Machine:
1. Prepare the hot-air flat pack-IC desoldering
machine, then apply hot air to the Flat Pack-IC
(about 5 to 6 seconds). (Fig. S-1-1)
Fig. S-1-1
2. Remove the flat pack-IC with tweezers while
applying the hot air.
3. Bottom of the flat pack-IC is fixed with glue to the
CBA; when removing entire flat pack-IC, first apply
soldering iron to center of the flat pack-IC and heat
up. Then remove (glue will be melted). (Fig. S-1-6)
4. Release the flat pack-IC from the CBA using
tweezers. (Fig. S-1-6)
CAUTION:
1. The Flat Pack-IC shape may differ by models. Use
an appropriate hot-air flat pack-IC desoldering
machine, whose shape matches that of the Flat
Pack-IC.
2. Do not supply hot air to the chip parts around the
flat pack-IC for over 6 seconds because damage
to the chip parts may occur. Put masking tape
around the flat pack-IC to protect other parts from
damage. (Fig. S-1-2)
3-1TVN_SN
Page 10
3. The flat pack-IC on the CBA is affixed with glue, so
be careful not to break or damage the foil of each
pin or the solder lands under the IC when
removing it.
With Soldering Iron:
1. Using desoldering braid, remove the solder from
all pins of the flat pack-IC. When you use solder
flux which is applied to all pins of the flat pack-IC,
you can remove it easily. (Fig. S-1-3)
CBA
Masking
Tape
Tweezers
Hot-air
Flat Pack-IC
Desoldering
Machine
Flat Pack-IC
Fig. S-1-2
Flat Pack-IC
Desoldering Braid
Soldering Iron
Fig. S-1-3
2. Lift each lead of the flat pack-IC upward one by
one, using a sharp pin or wire to which solder will
not adhere (iron wire). When heating the pins, use
a fine tip soldering iron or a hot air desoldering
machine. (Fig. S-1-4)
Sharp
Pin
Fine Tip
Soldering Iron
3. Bottom of the flat pack-IC is fixed with glue to the
CBA; when removing entire flat pack-IC, first apply
soldering iron to center of the flat pack-IC and heat
up. Then remove (glue will be melted). (Fig. S-1-6)
4. Release the flat pack-IC from the CBA using
tweezers. (Fig. S-1-6)
Fig. S-1-4
3-2TVN_SN
Page 11
With Iron Wire:
1. Using desoldering braid, remove the solder from
all pins of the flat pack-IC. When you use solder
flux which is applied to all pins of the flat pack-IC,
you can remove it easily. (Fig. S-1-3)
2. Affix the wire to a workbench or solid mounting
point, as shown in Fig. S-1-5.
3. While heating the pins using a fine tip soldering
iron or hot air blower, pull up the wire as the solder
melts so as to lift the IC leads from the CBA
contact pads as shown in Fig. S-1-5.
4. Bottom of the flat pack-IC is fixed with glue to the
CBA; when removing entire flat pack-IC, first apply
soldering iron to center of the flat pack-IC and heat
up. Then remove (glue will be melted). (Fig. S-1-6)
5. Release the flat pack-IC from the CBA using
tweezers. (Fig. S-1-6)
Note: When using a soldering iron, care must be
taken to ensure that the flat pack-IC is not
being held by glue. When the flat pack-IC is
removed from the CBA, handle it gently
because it may be damaged if force is applied.
Hot Air Blower
2. Installation
1. Using desoldering braid, remove the solder from
the foil of each pin of the flat pack-IC on the CBA
so you can install a replacement flat pack-IC more
easily.
2. The “ I ” mark on the flat pack-IC indicates pin 1.
(See Fig. S-1-7.) Be sure this mark matches the
pin 1 on the PCB when positioning for installation.
Then presolder the four corners of the flat pack-IC.
(See Fig. S-1-8.)
3. Solder all pins of the flat pack-IC. Be sure that
none of the pins have solder bridges.
Example :
Pin 1 of the Flat Pack-IC
is indicated by a " " mark.
Fig. S-1-7
To Solid
Mounting Point
CBA
Tweezers
Iron Wire
Soldering Iron
Fig. S-1-5
Fine Tip
Soldering Iron
Flat Pack-IC
or
Presolder
Flat Pack-IC
CBA
Fig. S-1-8
Fig. S-1-6
3-3TVN_SN
Page 12
Instructions for Handling Semiconductors
Electrostatic breakdown of the semi-conductors may
occur due to a potential difference caused by
electrostatic charge during unpacking or repair work.
1. Ground for Human Body
Be sure to wear a grounding band (1 MΩ) that is
properly grounded to remove any static electricity that
may be charged on the body.
2. Ground for Workbench
Be sure to place a conductive sheet or copper plate
with proper grounding (1 MΩ) on the workbench or
other surface, where the semi-conductors are to be
placed. Because the static electricity charge on
clothing will not escape through the body grounding
band, be careful to avoid contacting semi-conductors
with your clothing.
<Incorrect>
<Correct>
1MΩ
CBA
Grounding Band
1MΩ
CBA
Conductive Sheet or
Copper Plate
3-4TVN_SN
Page 13
CABINET DISASSEMBLY INSTRUCTIONS
1. Disassembly Flowchart
This flowchart indicates the disassembly steps for the
cabinet parts and the CBA in order to gain access to
items to be serviced. When reassembling, follow the
steps in reverse order. Bend, route and dress the
cables as they were.
[8] Speaker
[4] Digital Main
CBA Unit
[10] Digital PCB
Holder
[1] Stand Hinge
Assembly
[3] Rear Cabinet
[5] Power Supply
CBA
[6] AC Inlet
Holder
[7] Stand Bracket
[13] LCD Module
Assembly
[14] Front
Cabinet
[2] Stand Base
Assembly
[12] Wall Mount
Bracket Top
[11] Power
PCB Holder
[9] Function CBA
2. Disassembly Method
Step/
Loc.
No.
Stand
[1]
Hinge
Assembly
Stand Base
[2]
Assembly
Rear
[3]
Cabinet
Digital Main
[4]
CBA UnitD2D5
Part
Fig.
No.
RemovalNote
D1 4(S-1)---
D1 4(S-2)---
17(S-3), 4(S-4),
D1
(S-5), (S-6)
4(S-7), CN3101,
CN3013, CN3701,
CN3801, Jack Holder
---
---
Step/
Loc.
No.
[9]
[10]
[11]
[12]
Part
Function
CBA
Digital PCB
Holder
Power PCB
Holder
Wall Mount
Bracket Top
Fig.
No.
D3
D5
RemovalNote
2(S-13),
Sensor Holder,
Sensor Plate
D4 5(S-14)
D4 4(S-15)---
D4 4(S-16)---
---
LCD
[13]
Module
D4 ------------------
Assembly
Front
[14]
↓
(1)
Cabinet
↓
(2)
D4 ------------------
↓
(3)
↓
(4)
↓
(5)
Note:
(1) Order of steps in procedure. When reassembling,
follow the steps in reverse order. These numbers
are also used as the Identification (location) No. of
parts in figures.
(2) Parts to be removed or installed.
(3) Fig. No. showing procedure of part location
(4) Identification of parts to be removed, unhooked,
unlocked, released, unplugged, unclamped, or
desoldered.
P = Spring, L = Locking Tab, S = Screw,
H = Hex Screw, CN = Connector
e.g. 2(S-2) = two Screws of (S-2),
2(L-2) = two Locking Tabs of (L-2)
(5) Refer to the following "Reference Notes in the
Ta bl e ."
[5]
Power
Supply
D2D56(S-8), CN601,
CBA
AC Inlet
[6]
[7]
Holder
Stand
Bracket
D3 2(S-9), CL601---
D3 6(S-10), 2(S-11)
[8]SpeakerD3
CN1001
4(S-12),
Speaker Holder
---
4-1A21UZ_DC
Page 14
[3] Rear Cabinet
(S-3)
(S-3)
(S-4)
(S-6)
(S-5)
(S-3)
(S-4)
(S-3)
(S-4)
[1] Stand Hinge Assembly
[2] Stand Base Assembly
(S-3)
(S-4)
(S-3)
(S-3)
(S-1)
(S-2)
Fig. D1
4-2A21UZ_DC
Page 15
(S-8)
Jack Holder
(S-8)
(S-7)
[5] Power Supply CBA
(S-8)
[4] Digital Main CBA Unit
(S-12)
[8] Speaker
Speaker Holder
Fig. D2
(S-12)
Sensor Plate
[9] Function CBA
[8] Speaker
Speaker Holder
4-3A21UZ_DC
Sensor Holder
(S-13)
(S-11)
[7] Stand Bracket
(S-10)
(S-10)
(S-9)
CL601
[6] AC Inlet Holder
(S-11)
Fig. D3
Page 16
[14] Front Cabinet
[13] LCD Module Assembly
[12] Wall Mount Bracket Top
(S-16)
(S-16)
(S-14)
[10] Digital PCB Holder
(S-15)
[11] Power PCB Holder
Fig. D4
4-4A21UZ_DC
Page 17
TV Cable Wiring Diagram
To LCD Module
Assembly
CN1001
Power Supply CBA
To LCD Module
Assembly
Digital Main
CBA Unit
CN3013
CN601
To AC Cord
Function CBA
CN701
CN4001
CN3701
CN3101
To Speaker
CN3801
Fig. D5
4-5A21UZ_DC
Page 18
ELECTRICAL ADJUSTMENT INSTRUCTIONS
General Note: “CBA” is abbreviation for
“Circuit Board Assembly.”
Note: Electrical adjustments are required after
replacing circuit components and certain
mechanical parts. It is important to perform
these adjustments only after all repairs and
replacements have been completed.
Also, do not attempt these adjustments unless
the proper equipment is available.
Test Equipment Required
1. Remote control unit
2. Color Analyzer,
CA-310 (KONICA MINOLTA Luminance meter) or
measuring instrument as good as CA-310.
How to set up the service mode:
Service mode:
1. Turn the power on.
2. Press [3], [1], [9], [7], [5], [3] and [MUTE] bottons
on the remote control unit in this order.
3. Select “Consumer TV set up”.
4. Select “Software Upgrade”.
5. Select “Current Software Info”.
6. Press [0], [6], [2], [5], [9], [6] and [INFO] buttons on
the remote control unit in this order. The following
screen appears.
This mode cycles through full-screen displays of red,
green, blue, and white to check for non-active pixels.
1. Enter the service mode.
2. Each time the [7] button on the remote control unit
is pressed, the display changes as follows.
Purity Check Mode
White mode
[7] button
[7] button
Black mode
[7] button
White 50% mode
[7] button
Red, Green, Blue mode
[7] button
V-ramp mode
Press "POWER" key to exit.
Tuner:
Safety:
HDMI EDID/UART:
Touch Sensor Ver:
*********
Safety_Non
OK / OFF
None
Total Watch Time:
Lightsensor:
*****
**
[7] button
White 20% mode
Note:
When entering this mode, the default setting is White mode.
3. To cancel or to exit from the Purity Check Mode,
press [CH RETURN] or [PREV CH] button.
5-1A21UZ_EA
Page 19
The White Balance Adjustment should be
performed when replacing the LCD Panel
or Digital Main CBA.
2. White Balance Adjustment
Purpose: To mix red and blue beams correctly for
pure white.
Symptom of Misadjustment: White becomes bluish
or reddish.
6. Press [MENU] button. The internal Raster signal
appears in the screen. (“Internal (Single)” appears
in the upper right of the screen as shown below.)
Internal (Single)
ITEM
Color temperature
Input Signal
SPECIFICATION
x= 0.272 ± 0.002
y= 0.278 ± 0.002
Internal pattern
(40/80% raster)
Measurement point Screen center
CA-310 (KONICA MINOLTA
M. EQ.
Luminance meter) or
measuring instrument as
good as CA-310.
60min.
Aging time
(Retail MODE/100IRE Raster
HDMI 1080i@60)
MODE setting of TV
Ambient
temperature
Shipment setting/
Retail MODE
25°C ± 5°C
1. Operate the unit for more than 60 minutes.
2. Enter the service mode.
3. Press [VOLUME DOWN] button three times on the
remote control unit to select “Drive setting” mode.
“Drive” appears in the screen.
4. Set the color analyzer at the CHROMA mode and
zero point calibration. Bring the optical receptor
pointing at the center of the LCD-Panel.
To avoid interference from ambient
light, this adjustment should be
performed in a dark room.
Perpendicularity
Color Analyzer
Note: The optical receptor must be set
perpendicularly to the LCD Panel surface.
5. Press [3] button to select the “HDB” for High Drive
Blue adjustment. (“HDB” appears in the screen.)
HDB 0
7. Press [CHANNEL UP/DOWN] buttons to adjust
the color temperature becomes 12000°K
(x
=
0.272 / y= 0.278 ± 0.002).
8. Press [1] button to select the “HDR” for High Drive
Red adjustment (“HDR” appears in the screen.)
and press [CHANNEL UP/DOWN] buttons to
adjust the color temperature.
9. If necessary, adjust the “HDB” or “HDR” again.
10. Press [6] button to select the “LDB” for Low Drive
Blue adjustment (“LDB” appears in the screen.)
and press [CHANNEL UP/DOWN] buttons to
adjust the color temperature.
Internal (Single)
LDB 0
11. Press [4] button to select the “LDR” for Low Drive
Red adjustment (“LDR” appears in the screen.) and
press [CHANNEL UP/DOWN] buttons to adjust the
color temperature.
12. If necessary, adjust the “LDB” or “LDR” again.
13. Press [VOLUME DOWN] button to shift to the
“Debugging Message” mode.
If there is no message under “[WB]” section, this
adjustment completes.
If “Drive settings are NG. Retry.” is displayed,
repeat above steps from 5. to 12. Then check
“Debugging Message” again. If “Drive settings are
NG. Retry.” is displayed, replace the LCD Panel or
Digital Main CBA.
14. To cancel or to exit from the White Balance
Adjustment, press [CH RETURN] or [PREV CH]
button.
5-2A21UZ_EA
Page 20
HOW TO INITIALIZE THE LCD TV
The purpose of initialization is to place the set in a new out of box condition. The customer will be prompted to
select a language and program channels after the set has been initialized.
To put the program back at the factory-default, initialize the LCD TV using the following procedure.
1. Turn the power on.
2. Enter the service mode.
3. Press [FREEZE] button on the remote control unit
to initialize the LCD television.
4. "INITIALIZED" will appear in the upper right of the
screen. "INITIALIZED" color will change to green
from red when initialization is completed.
Note: To cancel the service mode, press [ ] button
on the remote control unit.
6-1A21UZ_INT
Page 21
FIRMWARE RENEWAL MODE
Equipment Required
a. USB storage device
b. Remote Control Unit
Firmware Update Procedure
Note: There are two states (the User Upgrade and
the Factory Upgrade) in firmware update.
User UpgradeUpgrade the firmware only.
The setting values are not
initialized.
Factory upgradeUpgrade the firmware and
initialize the setting values.
Factory Upgrade
(Flash upgrade)
The identification of User Upgrade and Factory
Upgrade are done by the filename.
1. Turn the power off and unplug the AC Cord.
2. Insert the USB storage device to the USB port as
shown below.
Rear Cabinet
Upgrade the firmware and
initialize the setting values
along with the setting data
adjusted at the factory such as
White Balance, etc.
4. The update will start and the following will appear
in the screen.
"*" differs depending on the models.
Software Upgrade
Software upgrade in progress. Please wait.
Do not remove the USB storage device or
turn the TV off while upgrade is in progress.
*1
Current Version:
New Version:
Downloading...
0%
*******-***-*-***-****
*******-***-*-***-****
Note: If the above screen isn’t displayed, repeat from
step 1.
The appearance shown in *1 is described as follows.
AppearanceState
Downloading...
Writing...
Downloading the firmware from
the USB storage device.
Writing the downloaded firmware
in flash memory.
Checking...Checking the new firmware.
5. When the firmware update is completed, the
following will appear in the screen.
Software Upgrade
USB port
USB storage
device
3. Plug the AC cord in the wall outlet and turn the
power on.
The software upgrade is completed.
Remove USB storage device, turn TV off then on again.
Remove the USB storage device from the USB
port.
Turn the power off and turn the power on again.
Note:
When the Factory Upgrade is used, after
restarting TV, shift to initial screen menu in service
mode. "INITIALIZED" will appear in the upper right
of the screen. "INITIALIZED" color will change to
green from red when initializing is completed.
7-1A21UZ_FW
Page 22
HOTEL TV MODE
TV to USB settings
• The channel map and all other settings except for
the factory setting will be copied from TV to USB
storage device.
• The set value will be preserved in the root directory
of the USB storage device.
• The channel map will be preserved in two files (one
for analog and one for digital) and all other settings
will be preserved in the third file.
• When a same file name exists in the USB storage
device, the new file will overwrite the previous file.
• All the key input and the shutdown timers will be
invalid during the copying process.
• Audio and Video will be muted during the copying
process.
How to copy the TV settings to USB
storage device
1. Turn the power on.
2. Insert an empty USB storage device to the USB
port.
3. Press the [HOME/MENU] button on the setup
remote control to display the menu.
4. Select “TV to USB”, “Start now” and press the
[OK] button.
5. After the successful completion, “Setting copied to
USB” message appears on the screen.
USB to TV settings
• The channel map and all other settings except for
the factory setting will be copied from USB storage
device to TV.
• All the key input and the shutdown timers will be
invalid during the copying process.
• Audio and Video will be muted during the copying
process.
• When illegal data exist in the file, the copying
process will be aborted.
• After the successful completion of the copying
process, the new set of values will be adopted by
the TV.
How to read the setting values from the
USB storage device
1. Turn the power on.
2. Insert an USB storage device to the USB port.
3. Press the [HOME/MENU] button on the setup
remote control to display the menu screen.
4. Select “USB to TV”, “Start now” and press [OK]
button.
5. After the successful completion, the TV will restart
and initialize with the new values. TV shifts to
Standby (Green) and TV shifts to Live mode
automatically.
NOTE:
In case of any error during the copying process, the
copying process will be stopped with the warning
message “Failed. Please retry” on the screen.
NOTE:
In case of any error during the copying process, the
copying process will be stopped with the warning
message “Failed. Please retry” on the screen.
8-1A21UZ_ES
Page 23
Status menu screen (optional)
1. Turn the power on.
2. Press the [RECALL/INFO] button on the setup
remote control to display the status menu as
shown below.
"*" differs depending on the models.
Model number
SW version
SPI Port
TV**.*
*************
*******-**-**-****-**
***
******
3. Press the [RECALL/INFO] button again to cancel
the status menu.
8-2A21UZ_ES
Page 24
[Power Supply Section]
FLOW CHART NO.1
The power cannot be turned on.
TROUBLESHOOTING
Is the fuse (F601) normal?
Ye s
Is normal state restored when once unplugged
power cord is plugged again after several seconds?
Ye s
Is the P-ON+12V line voltage normal?
Ye s
Check each rectifying circuit of the secondary
circuit and repair it if defective.
FLOW CHART NO.2
The fuse blows out.
Check if there is any leak or short-circuit on the
primary circuit component and repair it if defective.
Make sure to repair the primary circuit component before replacing the fuse.
No
No
No
See FLOW CHART No.2 <The fuse blows out.>
Check if there is any leak or short-circuit on the
primary circuit component and repair it if defective.
(D601, D602, D603, D604, D612, IC602, Q601,
Q602, T601, R613)
Check if there is any leak or short-circuit on the
each rectifying circuit component of secondary side
and repair it if defective.
FLOW CHART NO.3
When the output voltage fluctuates.
Does the photocoupler circuit on the
secondary side operate normally?
Ye s
Check D607, D608, D609, D610, D611, Q601, Q602,
IC602 and their periphery circuit. Repair it if
FLOW CHART NO.4
When buzz sound can be heard in the periphery of power circuit.
Check if there is any short-circuit on the rectifying diode and the circuit in each rectifying ci
Repair it if defective. (D701, D703, Q701, Q702)
defective.
No
Check IC602, IC701 and their periphery circuit.
Repair it if defective.
rcuit of the secondary side.
9-1A21UZ_TR
Page 25
FLOW CHART NO.5
AMP+24V is not output.
Is approximately +24V voltage supplied to the
cathode of D701?
Ye s
Check if there is any leak or short-circuit on the load
circuit. Repair it if defective.
FLOW CHART NO.6
P-ON+12V is not output.
Is approximately +12V voltage supplied to the cathode
of D703?
Ye s
Check if there is any leak or short-circuit on the load
circuit. Repair it if defective.
FLOW CHART NO.7
P-ON+5V is not output.
Is approximately +12V voltage supplied to the collector
of Q702?
Ye s
No
No
No
Check C707, C708, D701, D702 and their periphery
circuit. Repair it if defective.
Check C710, C711, D703 and their periphery circuit.
Repair it if defective.
See FLOW CHART NO.6 <P-ON+12V is not output.>
Is approximately +5V voltage supplied to the base of
Q702?
Ye s
Replace Q702.
FLOW CHART NO.8
AL+3.3V is not output.
Is approximately +12V voltage supplied to the collector
of Q701?
Ye s
Is approximately +6V voltage supplied to the base of
Q701?
Ye s
Replace Q701.
No
No
No
Check D706, Q703, Q706, P-ON-H1 line and their
periphery circuit. Repair it if defective.
See FLOW CHART NO.6 <P-ON+12V is not output.>
Check IC702 and their periphery circuit. Repair it if
defective.
9-2A21UZ_TR
Page 26
[Video Signal Section]
FLOW CHART NO.1
The key operation is not functioning.
When touching each buttons, does the Pin(6) voltage
of CN4001 decrease?
Ye sYe s
Replace Digital Main CBA Unit.Replace IC4001
FLOW CHART NO.2
No operation is possible from the remote control unit. (Operation is possible from the unit.)
Is approximately +3.3V voltage supplied to Pin(3)
terminal of the remote control receiver (RS4051)?
Ye s
Is the "L" pulse supplied to Pin(1) terminal of remote
control receiver (RS4051) when the infrared remote
control is activated?
Ye s
Is the "L" pulse supplied to Pin(5) of CN4001?
Ye s
Replace Digital Main CBA Unit.
No
No
No
No
Is approximately +3.3V voltage supplied to Pin(1)
of CN4001?
or Function CBA.
Check AL+3.3V line and repair it if defective.
Replace the remote control receiver (RS4051)
or the remote control unit.
Check the line between Pin(1) of remote control
receiver (RS4051) and Pin(5) of CN4001.
Repair it if defective.
No
Check AL+3.3V line and
repair it if defective.
FLOW CHART NO.3
Picture does not appear normally.
Is approximately +12V voltage supplied to
Pin(16, 17, 22, 23) of CN701?
Ye s
Is
approximately +
CN701?
Digital Main CBA Unit or LCD Module Assembly may
be defective.
Check and replace these parts.
3.3V voltage supplied to Pin(11) of
Ye s
No
No
See FLOW CHART NO.6 <P-ON+12V is not output.
[Power Supply Section]>
See FLOW CHART NO.8 <AL+3.3V is not output.
[Power Supply Section]>
9-3A21UZ_TR
Page 27
[Audio Signal Section]
FLOW CHART NO.1
Audio is not output normally.
Is approximately +24V voltage supplied to Pin(13, 14)
of CN701?
Ye s
approximately +
Is
CN701?
Are the audio signals output to Pin(1, 4) of CN3801?
SP3801, SP3802 or CL3801 may be defective.
Check and replace these parts.
3.3V voltage supplied to Pin(11) of
Ye s
Ye s
No
No
No
See FLOW CHART NO.5 <AMP+24V is not output.
[Power Supply Section]>
See FLOW CHART NO.8 <AL+3.3V is not output.
[Power Supply Section]>
Replace Digital Main CBA Unit.
9-4A21UZ_TR
Page 28
BLOCK DIAGRAMS
1. System Control Block Diagram
POWER
SOURCE
MENU
CH UP
CH DOWN
VOL UP
VOL DOWN
161718
19
212223
MENU
CH UP
CH DOWN
MENU
SOURCE
3
2
LIGHT
IC4051
VOL UP
VOL DOWN
CH UP
6
SENSOR
CH DOWN
11
VOL DOWN
VOL UP
13
12
P-ON+5V
REMOTE
RS4051
D4051
POWER
SENSOR
POWER
SCL
IC4001
(TOUCH SENSOR)
4
SOURCE
SDA
5
1 POWER
TO
POWER SUPPLY
BLOCK DIAGRAM
RESET
P-ON-H2
P-ON-H1
FUNCTION CBA
PROTECT3
BACKLIGHT-SW
BACKLIGHT-ADJ
POWER SUPPLY CBA
CN701
IC3005
(MAIN MICRO CONTROLLER)
KEY-IN146
SDA19
SCL28
REMOTE55
LED164
CN3101CN4001
LED DRIVE
Q3501, Q3502
Q3010
A15
C14
D14
LED1
KEY-IN1
REMOTE
LIGHT73
SCL
SDA
TU3901 (TUNER UNIT)
4
3
BUFFER
A13
LIGHT-SENS
R12
SCL
T12
SDA
AUDIO-MUTE
C1
AL+3.3V
P-ON-H277
P-ON-H166
RESET88
PROTECT344
BACKLIGHT-SW
22
CN3701
Q3006
RESET
Q3005
IC3009
E2
G13
P-ON-H1
J15
B13
RESET
PROTECT3
BACKLIGHT-SW
SCK
T11
F13
P-ON-H2
(SMART PORT)
24
J16
SM-MISO
SM-CLK1
CN5101
LEVEL CONVERTER
Q5102
K16
SM-CLK
XIN25
H15
BACKLIGHT-ADJ
33
TO
VIDEO/AUDIO
BLOCK DIAGRAM
BACKLIGHT-SW
(BUFFER)
IC5101
F3
BACKLIGHT-ADJ
SIN
SOUT
CS
P11
P12
R11
SM-MISO2
SM-MOSI4
LEVEL CONVERTER
Q5101
K14
SM-MOSI
XOUT25
H16
REMOTE6 REMOTE6
BUFFER
Q5106, Q5107
DIGITAL MAIN CBA UNIT
AUDIO-MUTE
TO
VIDEO/AUDIO
BLOCK DIAGRAM
10-1
25MHz
OSC
652
1
SI
CS
SO
SCK
IC3006 (MEMORY)
X3001
A21UZBLS
Page 29
2. Video/Audio Block Diagram
AUDIO SIGNAL
TO DIGITAL
SIGNAL PROCESS
BLOCK DIAGRAM
TO SYSTEM CONTROL
BLOCK DIAGRAM
VIDEO SIGNAL
VGA-R-IN
VGA-G-IN
VGA-B-IN
VGA-HSYNC
VGA-SCL
VGA-SDA
VGA-VSYNC
IF-AGC
DIF-OUT1
DIF-OUT2
6
7
DIF-OUT2
DIF-OUT1
(TUNER UNIT)
TU3901
COM-VIDEO-Y/VIDEO-IN
5
IF-AGC
COMP-DET
COM-VIDEO-Pr-IN
COM-VIDEO-Pb-IN
AUDIO(L)-IN
AUDIO(R)-IN
SPDIF
AMP(R)-OUT
32
DRIVEPWM
IC3801 (AUDIO AMP)
39,40
AMP(L)-OUT
AUDIO-MUTE
Q3801
34
19DRIVEPWM
11,12
BACKLIGHT-SW
Q3802
P-ON+5V
Q3803
DIGITAL MAIN CBA UNIT
17
CONTROL LOGIC
123
BUFFER GATE
IC3013
131415
JK3001
PC-RGB
IN
BUFFER GATE
IC3014
BUFFER
Q3301
BUFFER
Q3302
12
JK3702
COMPONENT
-Y/VIDEO-IN
COMPONENT
-Pb-IN
COMPONENT
-Pr-IN
JK3701
10-2
AUDIO(L)-IN
BUFFER
Q3701
DIGITAL
AUDIO(R)-IN
AUDIO-OUT
(COAXIAL)
JK3703
HEADPHONE
JACK
1SP(L)
CN3801
SP3801
4SP(R)
2GND
SPEAKER
L-CH
3GND
SP3802
SPEAKER
R-CH
A21UZBLVA
Page 30
3. Digital Signal Process Block Diagram
LCD MODULE
ASSEMBLY
LLV1(+)24
LLV1(-)23
LLV2(+)22
LLV2(-)21
LLV3(+)17
LLV3(-)16
LLV4(+)14
LLV4(-)13
TP37
POL35
CPV40
OE39
STV33
M15
POL
L16
CPV
L15
OE
M14
STV
OE238
L14
OE2
AUDIO SIGNAL
VIDEO SIGNAL
CN3013
N16
N15
P16
P15
T16
T15
R14
T14
LLVCLK(+)20
R16
LLVCLK(-)19
R15
L13
TP
IC3002
(DDR2 SDRAM)
B1,B9,C2,C8,
N4,N7,N8,P3,P4,
DATA(0-15)
ADDRESS(0-12)
H1,H3,H7,H9
F1,F9,G2,G8,
M2,M3,M7,M8,
N2,N3,N7,N8,
P2,P3,P7,P8,R2
D1,D3,D7,D9,
P6-P8,R3,R4,R6,
R8,T2-T5
H1,H2,J1,J2,J4,K1,
K3,L1,L2,M1-M3,N1
IC3005 (DIGITAL SIGNAL PROCESS)
VGA-HSYNC
HSYNC
VSYNC
B14
A14
VGA-VSYNC
A/D
CONVERTER
SW
A9
C7
C9
C11
COM-VIDEO-Y/VIDEO-IN
VGA-R-IN
VGA-G-IN
VGA-B-IN
LVD S T X
D8
B11
A12
C10
COM-VIDEO-Pr-IN
COM-VIDEO-Pb-IN
DIF-OUT1
DEMODULATOR
/MPEG DECODER
IF-AGC
COMP-DET
A16
B12
N12
DIF-OUT2
IF-AGC
COMP-DETB8AUDIO(R)-IN
AUDIO I/F
A8
N10
SPDIF
AUDIO(L)-IN
B7
AMP(R)-OUT
AMP(L)-OUT
DIGITAL
SIGNAL
PROCESS
DIGITAL MAIN CBA UNIT
HDMI
AUDI O
DECODER
A7
IC3018 (HDMI SW)
414544484739383637
I/F
B4A4B3A3B2A2B1
26272324202117
A1
18
VIDEO
DECODER
79461
HDMI-IN3
JK3003
TMDS-D0(-)
TMDS-D0(+)
TMDS-D1(+)
575660596362545351
HDMI
SW
8
7
111014
3
TMDS-D1(-)
TMDS-D2(-)
TMDS-D2(+)
13
101216
15
HDMI-DATA
HDMI-CLOCK
TMDS-CLOCK(-)
TMDS-CLOCK(+)
52
541
2
IC3011
(HDMI SERIAL EEPROM)
15
SCL2
SCL1
2
HDMI-SCL
G14
7
14
SCL0
SDA2
SDA1
SCL3
3
10
HDMI-SDA
F14
6
SDA0
SDA3
11
VGA-S DA
VGA-S CL
TO
VIDEO/AUDIO
TO
VIDEO/AUDIO
BLOCK DIAGRAM
HDMI-IN1
JK3004
TMDS-D0(+)
TMDS-D0(-)
TMDS-D1(+)
742
94613
TMDS-D1(-)
TMDS-D2(+)
TMDS-D2(-)
TMDS-CLOCK(+)
TMDS-CLOCK(-)
HDMI-DATA
HDMI-CLOCK
101216
TMDS-D0(+)
TMDS-D0(-)
TMDS-D1(+)
TMDS-D1(-)
TMDS-D2(+)
TMDS-D2(-)
TMDS-CLOCK(+)
TMDS-CLOCK(-)
HDMI-DATA
JK3002
HDMI-IN2
79461
15
3
101216
HDMI-CLOCK
15
10-3
BLOCK DIAGRAM
A21UZBLD
Page 31
4. Power Supply Block Diagram
AL+5V
AMP+24V
P-ON+12V
DIGITAL MAIN CBA UNIT
CN3701
16,17
22,23
13,14
AMP+24V
AL+3.3V1111
P-ON+12V
P-ON+12V
13,14
16,17
22,23
CN701
NOTE:
The voltage for parts in hot circuit is measured using
hot GND as a common terminal.
T601
Q707
RESET
1
SW+3.3V
IC702, Q701
141513
2
3
12
5
6
SW+5V
Q702, Q703,
Q706
11
10
7
8
IC602
14
32
(FEED BACK)
Q704
SHUNT
IC701
REG.
RL601
Q705
LCD MODULE ASSEMBLY
VBL+55V1,2
VBL-55V
VCC+5V10CNT+5V11PT+2V
FB113FB2
4,5
CN1001
Q1003
12
ANALOG
DINMING
DRIVE1
IC1001
(INVERTER CONTROLLER)
1
12
14
Q1001
9
8137
SENS
SENS
VOLTAGE
CURRENT
DRIVE2
16
PWM
ENABLE
ZERO
CURRENT
SENS
3
DIMMING
TO SYSTEM CONTROL
BLOCK DIAGRAM
RESET
P-ON-H1
P-ON-H2
PROTECT3
BACKLIGHT-SW
BACKLIGHT-ADJ
Q1002
L1002
14
L1001
14
POWER SUPPLY CBA
Q708
For continued protection against risk of fire,
replace only with same type 4A, 125V fuse.
CAUTION ! :
ATTENTION : Utiliser un fusible de rechange de même type de 4A, 125V.
4A 125V
BRIDGE
RECTIFIER
D616
LINE
FILTER
L602
LINE
FILTER
L601
F601
4A/125V
2
1
CN601
HOT CIRCUIT. BE CAREFUL.
AC
INLET
SWITCHING
Q601
4A 125V
CONTROL
Q602
SWITCHING
8
11
T1602
2
5
SWITCHING
Q1602
14
IC1601
(SWITCHING CONTROL)
7
11
T1601
2
SWITCHING
CONTROL
8
5
SWITCHING
Q1601
11
8
VCC
3
T1604
4
5
2
1
151314
6
9
T1606
2
10
121011
4
5
7
14
IC601
(ISOLATOR)
32
HOTCOLD
Q606
SWITCHING
SWITCHING
Q1603
Q1604
Q603
Q604
Q605
11612
CAUTION !
Fixed voltage (or Auto voltage selectable) power supply circuit is used in this unit.
If Main Fuse (F601) is blown , check to see that all components in the power supply
circuit are not defective before you connect the AC plug to the AC power supply.
Otherwise it may cause some components in the power supply circuit to fail.
AC601
AC CORD
10-4
A21UZBLP
Page 32
SCHEMATIC DIAGRAMS / CBA AND TEST POINTS
Standard Notes
WARNING
Many electrical and mechanical parts in this chassis
have special characteristics. These characteristics
often pass unnoticed and the protection afforded by
them cannot necessarily be obtained by using
replacement components rated for higher voltage,
wattage, etc. Replacement parts that have these
special safety characteristics are identified in this
manual and its supplements; electrical components
having such features are identified by the mark “#” in
the schematic diagram and the parts list. Before
replacing any of these components, read the parts list
in this manual carefully. The use of substitute
replacement parts that do not have the same safety
characteristics as specified in the parts list may create
shock, fire, or other hazards.
Notes:
1. Do not use the part number shown on these
drawings for ordering. The correct part number is
shown in the parts list, and may be slightly
different or amended since these drawings were
prepared.
2. All resistance values are indicated in ohms
(K = 10
3. Resistor wattages are 1/4W or 1/6W unless
otherwise specified.
4. All capacitance values are indicated in µF
(P = 10
5. All voltages are DC voltages unless otherwise
specified.
3
, M = 106).
-6
µF).
11-1LCDN_SC
Page 33
LIST OF CAUTION, NOTES, AND SYMBOLS USED IN THE SCHEMATIC DIAGRAMS ON
r
THE FOLLOWING PAGES:
1. CAUTION:
CAUTION: FOR CONTINUED PROTECTION AGAINST RISK OF FIRE, REPLACE ONLY WITH SAME
TYPE_A,_V FUSE.
ATTENTION: UTILISER UN FUSIBLE DE RECHANGE DE MÊME TYPE DE_A,_V.
2. CAUTION:
Fixed Voltage (or Auto voltage selectable) power supply circuit is used in this unit.
If Main Fuse (F601) is blown, first check to see that all components in the power supply circuit are not
defective before you connect the AC plug to the AC power supply. Otherwise it may cause some components
in the power supply circuit to fail.
3. Note:
1. Do not use the part number shown on the drawings for ordering. The correct part number is shown in the
parts list, and may be slightly different or amended since the drawings were prepared.
2. To maintain original function and reliability of repaired units, use only original replacement parts which are
listed with their part numbers in the parts list section of the service manual.
4. Voltage indications on the schematics are as shown below:
Plug the TV power cord into a standard AC outlet.:
2
(Unit: Volt)
1
5.05.0
3
Power on mode
5. How to read converged lines
1-D3
Distinction Area
Line Number
(1 to 3 digits)
Examples:
1. "1-D3" means that line number "1" goes to the line numbe
"1" of the area "D3".
2. "1-B1" means that line number "1" goes to the line number
"1" of the area "B1".
6. Test Point Information
: Indicates a test point with a jumper wire across a hole in the PCB.
: Used to indicate a test point with a component lead on foil side.
: Used to indicate a test point with no test pin.
: Used to indicate a test point with a test pin.
Voltage
Indicates that the voltage
is not consistent here.
3
2
1
AREA D3
1-B1
AREA B1
1-D3
ABCD
The reference number of parts on Schematic Diagrams/CBA can be retrieved by
application search function.
11-2LCDN_SC
Page 34
Power Supply 1 Schematic Diagram
4
3
2
1
AC601
AC CORD
AC
INLET
CONTINUE
POWER SUPPLY 2
HOT+17V
HOT+15V
R1606
120K
+345V
C1607
1200P
C1604
2.2
R1609
5.6K
R1607
1.6K
R1608
36K
CAUTION !
Fixed voltage (or Auto voltage selectable) power supply circuit is used in this unit.
If Main Fuse (F601) is blown , check to see that all components in the power supply
circuit are not defective before you connect the AC plug to the AC power supply.
Otherwise it may cause some components in the power supply circuit to fail.
HOT CIRCUIT. BE CAREFUL.
F601
CN601
1
2
R1605
51K
R1610
2.2K
R1636
OPEN
C1606
1000P
C1605
1200P
4A/125V
R1601
750K
R1602
750K
R1603
750K
R1604
750K
4A 125V
C603
OPEN
R1617
750K
R1618
750K
R1619
750K
R1620
750K
R1616
47K
R1621
1.8K
C1610
22P
L601
LINE FILTER
R601
SA601
1.2M
SURGE
/1/2W
ABSORBER
C620
470P/250V
R1612
750K
R1613
750K
R1614
750K
R1615
750K
IC1601
UCC28060DR
(SWITCHING CONTROL)
0.9
1
ZCDB
6.0
2
VSENSE
4.4
3
TSET
6.0
4
PHB
1.1
5
COMP
0
6
GND
1.8
7
VINAC
4.3
89
HVSEN
C1608
0.1
ZCDA
VREF
GDA
GND
VCC
GDB
CS
PWMCNTL
C602
0.1
/310V
0.9
16
6.0
15
8.9
14
0
13
15.4
12
8.9
11
0
10
0
C1603
0.22
R1622
18K
D1602A
TFZGTR27B
C601
1/310V
C1624
OPEN
R1622A
OPEN
C1601
3300P
R1625A
OPEN
L602
LINE FILTER
C1613
330P/2KV
Q1602
TK10A50D
(SWITCHING)
D1604A
TFZGTR27B
R1626
R1626A
4.7
OPEN
C1602
4.7/50V
C1614
330P/2KV
R1625
4.7
D1602
OPEN
C605
0.22
/310V
R1611A
OPEN
R1611
100
G
4.0
D1604
OPEN
C1609
22P
C1611
0.1
105.2
G
4.0
D
S
C1618
100
/400V
D
S
D603
OPEN
D604
OPEN
C1615
1500P
/2KV
107.4
0
D1603
30PFB60
D1605
30PFB60
C1625
OPEN
Q1601
TK10A50D
(SWITCHING)
0
D616
D10XB60-7000
R1624
0.022
/5W
T1602
TE2415A3001
6
7
5
8
4
9
3
10
2
11
1
12
R1623
22K
C1622
150P/2KV
C1623
150P/2KV
T1601
TE2415A3001
6
7
5
8
4
9
3
10
2
11
1
12
R1627
22K
C1612
1/630V
4A 125V
D601
OPEN
D602
OPEN
CAUTION ! :
For continued protection against risk of fire,
replace only with same type 4A, 125V fuse.
ATTENTION : Utiliser un fusible de rechange de même type de 4A, 125V.
D612
1N5406BH
D613
1N5406BH
C611
100/400V
C622
220P
/2KV
D609A
OPEN
R613
1.2/3W
167.8
C610
220P
/2KV
D609
1ZB36BB
D
G
4.0
S
0
4.0
D610A
HSC119TRF-E
D610
OPEN
R604
0.56/2W
Q601
TK3A65D
(SWITCHING)
C609
1200P
0.5
0
Q602
2SC2120-Y
SWITCHING
CONTROL
D606
D606A
OPEN
OPEN
R605A
OPEN
D607A
OPEN
C606
470/35V
R605
2.2K
R607
330K
R608
330K
R609
330K
R610
330K
C607
0.039
D607
1ZB27BB
R602
1.5K
R602A
OPEN
C621
0.056
BC602
BEAD
R612A
R611A
OPEN
OPEN
R611
R612
270
270
D608
MM5Z4V3B
D608A
OPEN
D611A
HSC119TRF-E
R606A
OPEN
BC601
BEAD
D605
FR103-B/P
D611
OPEN
R606
220
14.9
0.5
C608
1000P
HOTCOLD
T601
POWER TRANS
1
2
3
5
6
7
8
IC602
TLP781F(D4-FNUBLLF)
ERROR
VOLTAGE DET
4
32
C619
1000P/250V
C618
OPEN
C612
OPEN
RL601
SDT-SS-105DM
1
15
14
13
12
11
10
12.0
10.7
D710
OPEN
10.7
0
NOTE:
The voltage for parts in hot circuit is measured using
hot GND as a common terminal.
POWER SUPPLY CBA
C718
1500P/2KV
D701
SB3200BR
D703
SB3A0BH
R701
150
R701A
OPEN
R713A
OPEN
R713
OPEN
C713
0.047
2.5
IC701
SL431A-AT
SHUNT
REGULATOR
D710A
HSC119TRF-E
D702
1ZB36BB
D704
OPEN
C714
OPEN
R703
R7128.2K
0
R719
180
R704
2.2K
R741A
OPEN
R741
2.2
C706
OPEN
D702AC707
OPEN
D704A
OPEN
R742
OPEN
R743
OPEN
Q704
KTC3875S
-Y-RTK/P
(SWITCHING)
Q705
KTC3875S
-Y-RTK/P
(SWITCHING)
470/35V
C710
470/16V
D705
OPEN
C708
R745
470/35V OPEN
C711
470/16V
D705A
PZU5.6B2.115
6.3
R720
10K
0
R724
0
3.3K
JS713
D713
OPEN
WIRE
R723
0
10K
0.6
R722
0
22K
R745A
OPEN
R721
18K
CONTINUE
POWER SUPPLY 2
RESET
AMP+24V
P-ON+12V
P-ON+5V
P-ON-H2
ABCDEF
11-3
A21UZSCP1
Page 35
Power Supply 2 Schematic Diagram
4
3
2
1
CONTINUE
POWER SUPPLY 1
+345V
HOT+17V
HOT+15V
HOT CIRCUIT. BE CAREFUL.
C1626
OPEN
C1627
OPEN
Q603
2SC2120-Y
(+15V REG.)
18.515.4
16.0
R628
R628A
2.7K
OPEN
R614
R614A
47
OPEN
D614A
D614
TFZGTR16B
OPEN
R615
R615A
680
OPEN
Q604
2SA1576UBTLQ
SWITCHING
P-ON-ON
18.518.5
17.8
R617
18K
Q605
KTC3875S
-Y-RTK/P
SWITCHING
P-ON-ON
0
0.6
0
345.0
C1621
820P
/2KV
171.0
171.0
C1620
820P
/2KV
C613
47/25V
R616
10K
C614
0.1
Q606
KTC3875S
-Y-RTK/P
SWITCHING
P-ON-ON
0
R618
4.7K
D
S
D
S
Q1603
TK8A50D
(SWITCHING)
G
171.0
Q1604
TK8A50D
(SWITCHING)
G
5.8
R619
39K
0.6
0
C615
0
0.022
R1628A
OPEN
R1628
100
D1606
OPEN
D1606A
HSC119TRF-E
R1629A
OPEN
R1629
100
D1607
OPEN
D1607A
HSC119TRF-E
R620
100K
R621
100K
R622
100K
R625
100K
D615A
TFZGTR24B
D615
OPEN
R626
220K
C1616
120/400V
C1617
120/400V
HOT
R1630
680
R1631
680
C617
0.01
R1630A
OPEN
R1631A
OPEN
7.60
R623
24K
R624
2.7K
T1604
POWER TRANS
5
6
9
10
T1606
POWER TRANS
2
4
5
7
IC601
TLP781F(D4-FUNBLLF)
(ISOLATOR)
4
32
15
14
13
12
11
10
4
3
2
1
1
1.418.5
R714
680
R714A
OPEN
C1019
1
Q708
KTC3875S
-Y-RTK/P
SWITCHING
P-ON-ON
D1008
SK16-T/R
D1007
SK16-T/R
R1028
R1027
68K
300K
R1033
0
R1029
C1013
75K
330P
R1038
R1040
0.33/2W
0.33/2W
R1039
R1041
0.33/2W
0.33/2W
L1002
TE2520A1201
14
14
L1001
TE2520A1201
Q706
2SA1576UBTLQ
(SWITCHING)
5.65.6
R718
4.9
4.7K
JS700
WIRE
R717
4.7K
R717A
OPEN
C717
0.01
0
0.6
C716
0
0.01
R1032
0
1000PC1015
1000PC1014
R1045
0
D1005
OPEN
R1047
1.1K
C1017
0.047/630V
Q703
KTC3875S
-Y-RTK/P
(SWITCHING)
R732
220
R730
6.8K
R731
47K
R1042
100
R1026
150K
47KR1031
OPEND1009
OPEND1009A
D1005A
HSC119TRF-E
R1046
33K
R1046A
OPEN
0
0.6
0
D711
WIRE
JS711
OPEN
R1030
1K
IC1001
OZ9976GN-C-0-TR
INVERTER
CONTROLLER
3.3
1
DRIVE1
0
2
GND
ZERO
0
3
CURRENT
SENS
4.8
RT
4
0.8
1.0
2.7
1.0
0.022C1016
ANALOG
CT
5
DIMMING
LCT
6
PWM
7
DIMMING
VOLTAGE
CURRENT
89
SENS
SENS
3.3
0
R711
5.6
R705A
OPEN
R7051KR706
1K
R725
22/1W
R715
6.8K
R716
47K
COLD
16
DRIVE2
15
V-IN
14
VREF
13
ENABLE
12
TIMER
11
SSTCMP
10
Q707
KTC3875S
-Y-RTK/P
(RESET)
-4.1
12.03.3/5.3
R706A
OPEN
C704
OPEN
R744
22/1W
8.1
Q702
2SC2120-Y
(SW+5V)
C701
OPEN
D712
OPEN
JS712
WIRE
3.3
11.7
4.9
3.3
4.9
0
2.1
1.1
2200PC1001
0.047C1011
2.2C1012
1000PC1023
0.01C1010
D715
OPEN
D714
D714A
OPEN
HSC119TRF-E
Q701
2SC2120-Y
(SW+3.3V/+5.3V)
4.0/6.0
R710
C712
0
0.1
4.0/6.0
2.5
0
IC702
SL431A-AT
SHUNT
REGULATOR
5.0
C705
OPEN
5.6
R726
0
D706
D706A
OPEN
PZU5.6B2.115
Q1001
KTC3875S
-Y-RTK/P
SWITCHING
P-ON-ON
R1051
12
D1011
OPEN
8.3
Q1004
11.7
2SA1576UBTLQ
(SWITCHING)
0
C1009
C1021
0.1
OPEN
R1043
620K
R1044
2.2K
OPENR1022
1.2KR1004
D715A
TFZGTR4.3B
R708
3.3K
R707
100
R709
10K
C702
0.1
2.7
0
POWER SUPPLY CBA
D1011A
TFZGTR5.6B
Q1005
KTC3875S
3.3
-Y-RTK/P
(SWITCHING)
R1052
1K
D1010
OPEN
R1024
680K
C1018
2.2
D1002
OPEN
D1002A
HSC119TRF-E
D1003
OPEN
D1003A
HSC119TRF-E
0
D1010A
OPEN
R1049
47K
R728
30K
R1006
33K
C1022
47/25V
R1053
47K
R1048
120K
0.6
R1050
100K
D708
MM5Z5V6B
D709
OPEN
C703
OPEN
R1003
390
R1002
390
R1005
15K
0
0
Q1002
KTC3875S
-Y-RTK/P
(SWITCHING)
0
C1024
47/50V
Q1003
0
KTC3875S
-Y-RTK/P
(SWITCHING)
JS701
WIRE
D707
RS1BJTB
C715
1/50V
R1007
OPEN
R1008
OPEN
D1001
OPEN
D1001A
HSC119TRF-E
D1012A
HSC119TRF-E
D1012
OPEN
C1025
1
-2.7
0
0
R727
1
R729
22K
R1009
OPEN
D716
OPEN
D716A
HSC119TRF-E
R1011
OPEN
R1010
OPEN
R1012
OPEN
R1054
6.8K
TO DIGITAL MAIN
CN701
CBA UNIT CN3701
0
1KR733
1 VCOM-PWM(NU)
3.3
2 BACKLIGHT-SW
2.7
3 BACKLIGHT-ADJ
2.7
4 PROTECT3
12.0
5 P-ON+12V
3.3
6 P-ON-H1
3.3
7 P-ON-H2
3.3
8 RESET
0
9 OE2(NU)
0
10 GND
3.3
11 AL+3.3V/AL+5.3V
0
12 GND
25.5
13 AMP+24V
25.5
14 AMP+24V
0
15 GND
12.0
16 P-ON+12V
12.0
17 P-ON+12V
0
18 GND
0
19 GND
0
20 GND
0
21 GND
12.0
22 P-ON+12V
12.0
23 P-ON+12V
CONTINUE
POWER SUPPLY 1
RESET
AMP+24V
P-ON+12V
P-ON+5V
P-ON-H2
C709
OPEN
TO LCD MODULE
CN1001
ASSEMBLY
0.2
14 FB2
-0.2
13 FB1
1.4
12 PT+2V
4.9
11 CNT+5V
4.9
10 VCC+5V
0
9 GND
8NU
7NU
C1002
OPEN
6NU
0
5 VBL-55V
0
4 VBL-55V
3NU
0
2 VBL+55V
0
1 VBL+55V
GHIJKL
11-4
A21UZSCP2
Page 36
Function Schematic Diagram
3
2
1
R4051
56
C4051
10
MM5Z5V6B
C4001
1
RS4051
GP1USC32XP
(REMOTE SENSOR)
D4053
OPEN
C4003D4001
OPEN
VOUT
GND
VCC
231
C4056
10
POWER
SOURCE
MENU
CH UP
CH DOWN
VOL UP
VOL DOWN
R4052
6.8K
R4054
1K
C4052
1000P
C4055
OPEN
TP4001
TP4003
TP4005
TP4007
TP4006
TP4004
TP4002
R4063
OPEN
D4051
SML813WBC8W1
POWER
R4053
1K
C4053
0.1
R4001
560
R4003
560
R4005
560
R4007
560
R4006
560
R4004
560
R4002
560
0
19
3.3
20
0
21
0
22
0
23
1.0
24
C4002
2200P
IC4001
CY8C20336A
-24LQXIT
(TOUCH SENSOR)
R4062
0
C4058
OPEN
000003.3
MENU
SOURCE
CH UP
VDD
CH DOWN
VOL UP
VOL DOWN
NU
POWER
SOURCE
123456
3.3 3.3 3.3 3.3 3.3 3.3
R4057
560K
D4052
0
GND
POWER
VOL DOWN
MENU
SCL
GND
VOL UP
CH DOWN
SDA
131415161817
C4057
0.1
NU
GND
GND
NU
CH UP
IC4051
PH5502B2NA1-E4
(LIGHT SENSOR)
5.0
1
OUT
0
2
GND
5.0
34
VCCNU
3.3
12
3.3
11
0
10
0
9
0
8
0
7
NU
NU
R4008
18K
R4009
8.2K
R4010
4.7K
R4011
2.7K
R4012
2.2K
R4014
2.2K
0
6
0
5
0
C4054
0.1
R4055
OPEN
R4058
10K
R4017
OPEN
R4015
OPEN
R4013
100
R4021
10
R4022
10
R4059
OPEN
R4056
10K
R4018
OPEN
R4016
OPEN
R4061
OPEN
CN4001
3.3
1 AL+3.3V
5.0
2 P-ON+5V
5.0
3 LIGHT
3.5
4 LED1
3.3
5 REMOTE
3.3
6 KEY-IN1
0
7 GND
3.3
8 SCL
3.3
9 SDA
(NO CONNECTION)
CN4003
1 AL+3.3V
2 ISSP-SDATA
3 ISSP-SCLK
4 GND
TO DIGITAL MAIN
CBA UNIT CN3101
FUNCTION CBA
C4007
OPEN
MM5Z5V6B
11-5
C4008D4003
OPEN
D4004
MM5Z5V6B
OPEN
C4006D4002
OPEN
CBDA
A21UZSCF
Page 37
Digital Main 1 Schematic Diagram
1 NOTE:
The order of pins shown in this diagram is different from that of actual IC3005.
IC3005 is divided into six and shown as IC3005 (1/6) ~ IC3005 (6/6) in this Digital Main Schematic Diagram Section.
The order of pins shown in this diagram is different from that of actual IC3005.
IC3005 is divided into six and shown as IC3005 (1/6) ~ IC3005 (6/6) in this Digital Main Schematic Diagram Section.
4
3
2
1
TU3901 TUNER UNIT
+3.3V2GND3SDA4SCL5IF-AGC6DIF-OUT17DIF-OUT2
1
C3901 D3901
OPEN
MM5Z5V6B
C3904
C3906
C3905
10
*1
IC3005(2/6)
R8A05011BG-U0
DIGITAL SIGNAL PROCESS
/MAIN MICRO CONTROLLER
OPEN
OPEN
TO DIGITAL
MAIN 5
IC3005(5/6)
DIGITAL
SIGNAL
PROCESS
TO DIGITAL
MAIN 6
IC3005(6/6)
A/D
CONVERTER
TO DIGITAL
MAIN 1
IC3005(1/6)
L3913
2.2uH
C3910
10P
DEMODULATOR
/MPEG
DECODER
SW
TO DIGITAL
MAIN 3
IC3005(3/6)
TO DIGITAL
MAIN 3
IC3005(3/6)
C3934
OPEN
SCL R12
SDA T12
MM5Z5V6B
C3907
OPEN
B12
A12
A16IF-AGC
A14HSYNC
B14VSYNC
A9
C7
C11
C10
C9
D8
B11
A10NU
C8NU
D9NU
B9NU
B10NU
A11NU
D10NU
C3909
OPEN
D3902
MM5Z5V6B
R3903 D3904
OPEN
MM5Z5V6B
47R3206
47R3207
R3202
2.7K
R3205
18K
0.1C3194
0.1C3195
0.1C3196
0.01C3198
0.1C3199
0.1C3200
0.1C3201
C3197
C3335
OPEN
C3175
33P
C3178
0.1
C3176
33P
C3908
OPEN
R3194
1K
C3177
1000P
C3291
33P
C3289
33P
0.1C32852.2
0.1C3286
1C3336
R3204
2.7K
R3203D3903
2.7K
C3292
33P
C3288
33P
0.1C3903
0.1C3902
C3173
33P
C3172
33P
C3293
33P
C3287
33P
R3251
10
R3250
10
R3285
R3286
R3284
DIGITAL MAIN CBA UNIT
IC3013
74LVC1G126GW
(BUFFER GATE)
1
VCC
5
2
34
GND
IC3014
74LVC1G126GW
(BUFFER GATE)
1
VCC
5
2
34
GND
R3298
10
47
47
47
R3364
R3377
R3356
75
10R3327
10R3328
10R3329
75
75
R3711
7.5K
C3707
1
C3716
OPEN
C3717
OPEN
R3710
100
R3712
10K
C3214
0.1
R3296
10
C3714
OPEN
Q3701
2SC4081UBTLQ
(BUFFER)
C3708
0.1
R3343
10
R3339
10
R3709
220
R3326
4.7K
D3041
OPEN
R3358
10K
R3347
10K
R3301
OPEN
R3302
OPEN
R3303
OPEN
R3708
110
C3715
OPEN
R3321
4.7K
D3054
OPEN
D3050
OPEN
D3045
OPEN
D3049
OPEN
D3053
OPEN
D3055
OPEN
C3706
1
Q3301
2SK3018
(BUFFER)
R3701
C3701
75
OPEN
R3702
C3702
75
OPEN
R3703
C3703
75
OPEN
C3709
100P
R3704
100K
R3705
100K
Q3302
2SK3018
JK3001
PC-RGB-IN
11156
12
13
14
JK3702
JK3701
DIGITAL
AUDIO-OUT
(COAXIAL)
1
2
7
3
8
4
9
5
10
COMPONENT
-Y/VIDEO-IN
COMPONENT
-Pb-IN
COMPONENT
-Pr-IN
AUDIO(L)-IN
AUDIO(R)-IN
CONTINUE
DIGITAL 6(BUFFER)
VGA-SDA
VGA-SCL
CONTINUE
DIGITAL 4
P-ON+3.3V
P-ON+5V
CONTINUE
DIGITAL 3
COMP-DET
CONTINUE
DIGITAL 5
SCL
SDA
AUDIO(L)-IN
AUDIO(R)-IN
CONTINUE
DIGITAL 5
SPDIF
GHK
JI
L
11-7
A21UZSCD2
Page 39
Digital Main 3 Schematic Diagram
1 NOTE:
The order of pins shown in this diagram is different from that of actual IC3005.
IC3005 is divided into six and shown as IC3005 (1/6) ~ IC3005 (6/6) in this Digital Main Schematic Diagram Section.
The order of pins shown in this diagram is different from that of actual IC3005.
IC3005 is divided into six and shown as IC3005 (1/6) ~ IC3005 (6/6) in this Digital Main Schematic Diagram Section.
The order of pins shown in this diagram is different from that of actual IC3005.
IC3005 is divided into six and shown as IC3005 (1/6) ~ IC3005 (6/6) in this Digital Main Schematic Diagram Section.
The order of pins shown in this diagram is different from that of actual IC3005.
IC3005 is divided into six and shown as IC3005 (1/6) ~ IC3005 (6/6) in this Digital Main Schematic Diagram Section.
4
3
2
1
CONTINUE
DIGITAL 4
P-ON+3.3V
AL+3.3V
P-ON+3.3V(1)
P-ON+5V
CONTINUE
DIGITAL 3
P-ON-H2
HPD-SINK
CONTINUE
DIGITAL 5
HPD-SINK
PWR
CONTINUE
DIGITAL 2
VGA-SDA
VGA-SCL
*1
IC3005(6/6)
R8A05011BG-U0
DIGITAL SIGNAL PROCESS
/MAIN MICRO CONTROLLER
Fixed voltage (or Auto voltage selectable) power supply circuit is used in this unit.
If Main Fuse (F601) is blown , check to see that all components in the power supply
circuit are not defective before you connect the AC plug to the AC power supply.
Otherwise it may cause some components in the power supply circuit to fail.
4A 125V
CAUTION ! :
For continued protection against risk of fire,
replace only with same type 4A, 125V fuse.
ATTENTION : Utiliser un fusible de rechange de même type de 4A, 125V.
Because a hot chassis ground is present in the power supply
circuit, an isolation transformer must be used when repairing.
Also, in order to have the ability to increase the input slowly,
when troubleshooting this type of power supply circuit,
a variable isolation transformer is required.
Protect3
J786
J782
BL-ADJ
COLD
T1604
C1024
C1022
VREF
A-GND
DRV2
GND
J806
OUTER-GND
J790
J788
BL-SW
VIN
J778
ISEN
D1010
JS700
D1011
C1021
J776
J771
ZCS
D1005
R1046
J779
J780
VSEN
R1038
R1040
R1041
R1039
J791
D1009
ISEN
J777
T1606
COLD
TOP
J810
OUTER-GND
BCDE
L1002
L1001
HOT
C613
J728
J727
GDB
PFC-GND
R628
J729
J737
J796
R614
PWMCNTL
ZCDB
COLD
PFC-GND
D1607
R1630
D1606
R1628
Q1603-Source
J814
D614
Q603
C1602
R1622
CS
VCC
J730
J731
J732
R1636
C1614
HOT
Q1603-Source
J738
Q1603-Gate
J739
R1611
J733
VREF
HVSEN
C1625
PFC-GND
J724
PFC-GND
Q1604
R615
C1627
C1620
J725
Q1601
C1626
PFC-GND
J735
T1601
D615
C1623
Q1603
D1605
C1616
D1602
R1631
R1629
C1615
C1621
R1625
PFC+345V
J722
C1622
D712
C1617
J723
PFC+345V
J718
PFC-GND
PFC-GND
J720
J721
PFC-GND
P-ON-H1
JS712
PFC-GND
J719
P-ON+12V
J757
R714
J755
COLD
D711
IC601
HOT
GDA
J716
J717
D1603
PFC-VIN
T1602
IC702
D713
C1613
Q702
R717
ALL+3.3V
J753
PFC-GND
C1624
D706
R741
Q701
R706
ALL+3.3V
J726
J759
J758
J756
J754
Q1602
P-ON+5V
P-ON+5V
SEC-GND
RELAY+5V
D714
J751
SEC-GND
R705
D705
OUTER-GND
J805
C708
C707
D715
SEC-GND
PFC-GND
J748
OUTER-GND
D716
C705
C715
J750
IC701
C1618
R1624
R1626
D1604
PFC-VIN
J714
R744
R745
D709
J752
SEC-GND
HOT
J787
J813
J715
PFC-GND
J745
J744
JS701
RESET
R725
FB-from+24V
J763
PFC-VIN
C718
T601-30V
R1624B
J749
C1612
D703
D701
R713
IC602
SEC-GND
SEC-GND
D702
CN701
J747
J746
P-ON+12V
J804
J803
T601
D710
R701
J734
ZCDA
J703
R1624A
P-ON+12V
SEC-GND
J700
PFC-GND
J701
SEC-GND
PRI-GND
J702
PRI-GND
PRI-GND
J704
C612
VIN
HOT+17V
J705
VIN
J706
PFC-VIN
J707
C711
C710
D611
R606
RL601
PFC-VIN
J708
D603
J740
D704
J713
PRI-GND
SEC-GND
SEC-GND
C619
J712
T601-Drive
C601
J741
R602
PRI-GND
J760
R612
PRI-GNDJ709
L602
D608A
BC601
BC602
J801
PRI-GND
Q601-Source
D610
J794
J711
COLD
HOT
PRI-GND
C622
Q601
D609
Q602
R605
Q601-Gate
J710
D616
D604
C610
J762
PRI-GND
C611
R611
D613
D605
D601
C605
C606
R613
D602
R604
D606
D607
J800
PFC-GND
J799
D612
HOT+17V
HOT
NOTE:
The voltage for parts in hot circuit is measured using
hot GND as a common terminal.
COLD
UNDER
C618
OUTER-GND
J768
G
A
BA21T0F0102 2
C7A3A3
J767
OUTER-GND
J766
OUTER-GND
D1002
D1003
J761
Vcc+5V
Protect3
INV-GND
123456
J765
J764
R1012
R1009
R1011
R1010
D1012
D1001
C1017
COLD
CN1001
HOT
TOOL NO.
C620
L601
CAUTION -
RISK OF FIRE -
HOT
87
4321
10
65
9
COLD
C603
C602
REPLACE FUSE AS MARKED
R601
FH602
SA601
F601
4A/125V
11-12
FH601
CN601
BA21T0F01022
Page 44
Power Supply CBA Bottom View
CAUTION !
Fixed voltage (or Auto voltage selectable) power supply circuit is used in this unit.
If Main Fuse (F601) is blown , check to see that all components in the power supply
circuit are not defective before you connect the AC plug to the AC power supply.
Otherwise it may cause some components in the power supply circuit to fail.
4A 125V
CAUTION ! :
For continued protection against risk of fire,
replace only with same type 4A, 125V fuse.
ATTENTION : Utiliser un fusible de rechange de même type de 4A, 125V.
Because a hot chassis ground is present in the power supply
circuit, an isolation transformer must be used when repairing.
Also, in order to have the ability to increase the input slowly,
when troubleshooting this type of power supply circuit,
a variable isolation transformer is required.
COLD
HOT
UNDER
C618
D612
HOT+17V
J799
D606
D606A
R604
D607
J800
PFC-GND
D602
C609
D607A
R61
3
D605
C606
D601
COLD
J762
PRI-GND
C611
D
613
C605
HOT
C610
Q601
Q601-Gate
Q602
J710
R611
C607
C607A
D604
C622
D616
R604A
D609A
R604C
PRI-GND
D609
R605
R611A
J794
BC601
BC602
R604B
R604D
PRI-GND
Q601-Source
J711
D610A
D610
J801
D608
L602
R609
R610
D608A
R612A
R607R608
R612
PRI-GND
PRI-GND
J709
J760
C621A
R602
C621
J741
C601
SEC-GND
PRI-GND
J712
R602A
SEC-GND
C619
J713
R605A
C608
J740
C711
C710
D603
D704
C608A
R606
D611
R606A
RL601
PFC-VIN
J708
D704A
D611A
PFC-VIN
J706VIN
J707
SEC-GND
J705VIN
P-ON+12V
SEC-GND
C714
C612
HOT+17V
J704
PRI-GND
PRI-GND
J702
PRI-GND
R1624A
J747
P-ON+12V
J804
J700
J701
CN701
J746
J803
C706
R701
PFC-GND
J703
ZCDA
D702
T601
T601-30V
D710
J734
D701
J749
R701A
D703
C718
D710A
R713
IC602
R1624B
J745
J744
JS701
RESET
R725
R727
R713A
R743
C713A
HOT
PFC-VIN
C1612
J763
R712
D707
J787
R744
R745A
R1623
D709
R719
C713
J813
R733
R745
D702A
R703
R704
OUTER-GND
J748
C702
C709
R742
Q707
D708
J752
J750
D1604A
R1624
PFC-VIN
PFC-GND
J715
D716
C705
C708
C707
R728
Q704
IC701
D705A
C1618
D1604
OUTER-GND
J805
P-ON+5V
R741A
J756
R729
D715
C715
D714
J751
R711
R1626
PFC-GND
J714
D715A
R721
R724
D705
C717A
R1626A
J726
J759
P-ON+5V
J758
C703
R705
R720
C717
Q1602
D706
J754
D714A
D706A
Q701
R706
Q705
R732
C1624
C701
R741
R708
R710
C712
R723
R718
R707
R705A
Q702
Q703
R726
R717
R714A
R706A
R731
C716
Q708
J753
C1613
PFC-VIN
R730
R722
T1602
P-ON+12V
J757
R716
R717A
Q706
R714
J755
R709
COLD
IC702
C704
D713
D711
C716A
IC601
C614A
HOT
PFC-GND
J716
GDA
J717
D1603
R715
R619
P-ON-H1
JS712
C614
R618
PFC-GND
J720
PFC-GND
J719
Q606
PFC-GND
J721
PFC-GND
C615
J718
C615A
C1622
C1617
R626
PFC+345V
J723
D712
R624
C617A
PFC+345V
J722
R1617
R1625
C1621
R1601
R1629
R623
C1615
R1618
D1602
R1631
C1616
R1602
R1629A
R620
C617
D615
R1625A
T1601
Q1603
R621
R622
R625
D615A
R1603
R1619
D1605
R1631A
C1627
C1620
C1626
Q605
PFC-GND
J735
C1623
D1602A
J725
HOT
Q1604
R615A
R615
Q604
R616
R617
R1611A
C1609
C1609A
R1610
R1605
C1607A
R1604
C1610
R1620
C1610A
Q1601
PFC-GND
PFC-GND
COLD
D1607A
D1607
Q1603-Source
Q1603-Source
Q1603-Gate
J738
J814
J739
R614A
C1611
C1602
R1637
VCC
R1611
J732
J733
VREF
C1607
IC1601
R1609
R1606
C1603
R1636
C1625
J724
C1614
D1606A
D1606
Q603
D1608A
C1604
D614
R614
R1622
C1611A
CS
J731
C1605A
C1606A
C1606
R1612R1613
PFC-GND
R1630
R1628
J730
J737
D614A
PWMCNTL
C1601
J729
C1608
R1614
J796
R1622A
R628
R1621
R1616
PFC-GND
R1630A
R1628A
C1601A
J728
R1615
C1605
R1607
J727
GDB
R1627
HOT
C613
R628A
R1608
COLD
BL-ADJ
T1604
C1019
COLD
J782
C1024
Protect3
Q1002
C1015
R1030
J786
D1009A
R1027
C1016
T1606
L1002
L1001
Q1003
D1009
R1038
R1040
R1041
R1039
A-GND
J777ISEN
R1048
C1011
VSEN
J791
R1042
C1022
VREF
R1031
IC1001
J780
J779
C1023
R1046A
R1050
R1028
R1045
C1012
D1005
R1046
R1049
R1043
R1032
ZCS
R1024
C1001
R1047
C1018
J771
D1005A
DRV2
Q1004
R1004
R1044
D1007
R1022
C1009
NOTE:
The voltage for parts in hot circuit is measured using
hot GND as a common terminal.
C1014
R1026
C1013
R1029
R1033
D1008
JS700
GND
C1010
R1053
Q1005
J776
J788
BL-SW
R1052
D1011A
D1011
J790
VIN
D716A
R1051
D1010A
D1010
C1021
J778
ISEN
J806
OUTER-GND
TOP
J810
OUTER-GND
BCDE
BA21T0F0102 2
C620
CN601
FH601
4A/125V
FH602
F601
R601
SA601
C602
L601
HOT
C603
COLD
11-13
HOT
CN1001
C1017
COLD
D1001A
C1002
D1012A
D1001
Q1001
C1025
D1012
R1005
R1054
Protect3
R1011
R1002
R1007R1006
J765
Vcc+5V
J764
R1010
R1012
R1009
INV-GND
D1003A
OUTER-GND
J767
OUTER-GND
J766
OUTER-GND
R1008
D1003
R1003
J761
J768
D1002
A
D1002A
123456
BA21T0F01022
Page 45
Function CBA Top View
R4012
R4010
P
b
R4011
IC4001
R4009
R4008
R4002
R4014
R4006
C4001
R4007
R4005
R4003
R4001
C4006
R4004
R4013
C4002
NO.12
R4053
D4051
R4063
R4062
C4053
TP4062
A30C5C7A3A3
TP4061
TP4060
R4061
C4054
TP4058
TP4055
D4052
C4058
TP4059
TP4057
C4057
R4057
R4056
TP4056
C4055
R4054
R4052
D4053
R4051
C4051
C4056
C4052
TP4054
R4055
R4059
CN4001
R4058
VOL -VOL +MENUSOURCECH -CH +POWER
Function CBA Bottom View
RS4051
IC4051
BA21F5G0203 2
D4002
R4022
C4003
R4021
D4001
D4003
R4017
D4004
P
b
11-14BA21F5G02032
Page 46
WIRING DIAGRM
AC
INLET
AC CORD
9
CN4001
1
CN3101
FUNCTION CBA
CL3101
CN601
12
CL601
CL1001
CN1001
114
LCD MODULE ASSEMBLY
1
9
1
CN701
1
CN3701
CL3701
23
CL3013
1
23
CN3013
51
SP3802
SPEAKER
SP3801
SPEAKER
R-CH
L-CH
CL3801
CN3801
14
COMPONENT
-Y/VIDEO-IN
COMPONENT
-Pb-IN
COMPONENT
-Pr-IN
AUDIO(L)-IN
TUNER UNIT
AUDIO(R)-IN
DIGITAL
AUDIO-OUT
(COAXIAL)
DIGITAL MAIN CBA UNITPOWER SUPPLY CBA
HDMI-
CONNECTOR-1
SMART PORT
HDMI-
CONNECTOR-2
HDMI-
CONNECTOR-3
PC-RGB-IN
USB JACK
HEADPHONE
JACK
REAR
12-1
SIDE
A21UZWI
Page 47
EXPLODED VIEWS
A23
A4
A1
Function CBA
L46
SP3801
B13
A20
B11
B12
L58
B13
SP3802
L46
CL1001
LCD1
B17-1
L31
B17-1
L31
CL3013
B24
B14-2
B14-1
L31
L58
Power Supply CBA
L13
B3
B27
Digital Main CBA Unit
L31
CL3701
L31
CL3101
B15
CL601
L58
L13
B3
B3
CL3801
L58
B17-2
L13
L13
L59
B17-2
L32
L59
A14
A3
L59
L32
L4
L14
L59
L32
See Electrical Parts List
for parts with this mark.
L59
SSK1
L59
A18
S7
L32
L59
A10
A11
SSK1
13-1A21UZ_CEX
Page 48
Packing
X19X6
X20X21
A11
A10
S3
S9
S1
X3
X4
X12
AC601
SSK1
L48
Tape
X1
S4
S6
Packing Tape
PP Band
S7
FRONT
S2
Some Ref. Numbers are
not in sequence.
13-2A21UZ_PEX
Page 49
PARTS LIST
Mechanical Parts
PRODUCT SAFETY NOTE: Products marked with a
# have special characteristics important to safety.
Before replacing any of these components, read
carefully the product safety notice in this service
manual. Don't degrade the safety of the product
through improper servicing.
NOTE: Parts that are not assigned part numbers
(---------) are not available.
# have special characteristics important to safety.
Before replacing any of these components, read
carefully the product safety notice in this service
manual. Don't degrade the safety of the product
through improper servicing.
NOTES:
1. Parts that are not assigned part numbers (---------)
are not available.
2. Tolerance of Capacitors and Resistors are noted
with the following symbols.
C.....±0.25%D.....±0.5%F.....±1%
G.....±2%J......±5%K.....±10%
M.....±20%N.....±30%Z.....+80/-20%
DIGITAL MAIN CBA UNIT
Ref. No.DescriptionPart No.
DIGITAL MAIN CBA UNITA21UZMMA-001
POWER SUPPLY CBA
Ref. No.DescriptionPart No.
POWER SUPPLY CBA
Consists of the following
CAPACITORS
C601#CAP METALIZED FILM 1.0µF/310V /K/LE-MXCTA1050DC001
C602#CAP METALIZED FILM 0.1µF/310V /K/LE-MXCTA1040DC001
C605#CAP METALIZED FILM 0.22µF/310V /K/LE-MX CTA2240DC001
C606CAP ELE 470µF/35V/M/85CEE4710V8006
C607CHIP CERAMIC CAP. B K 0.039µF/50VCHD1JK30B393
C608CHIP CERAMIC CAP.(1608) B K 1000pF/50VCHD1JK30B102
C609CHIP CERAMIC CAP. B K 1200pF/50VCHD1JK30B122
C610CERAMIC CAP. RB 220pF/2KVCA3D221TE006
C611CAP ELECTROLYTIC 100µF/400V/M/22/25CA2H101DYG17
C613ELECTROLYTIC CAP. 47µF/25V MCE1EMASDL470
C614CHIP CERAMIC CAP.(1608) B K 0.1µF/50VCHD1JK30B104
C615CHIP CERAMIC CAP.(1608) B K 0.022µF/50VCHD1JK30B223
C617CHIP CERAMIC CAP.(1608) B K 0.01µF/50VCHD1JK30B103
C619#SAFTY CAP. 1000pF/250V KXCA2E102MR101
C620#CAP CERAMIC 470pF/250V KXCA2E471MR100
C621CHIP CERAMIC CAP. B K 0.056µF/50VCHD1JK30B563
C622CERAMIC CAP. RB 220pF/2KVCA3D221TE006
C702CHIP CERAMIC CAP.(1608) B K 0.1µF/50VCHD1JK30B104
C707CAP ELE 470µF/35V/M/85CEE4710V8006
C708CAP ELE 470µF/35V/M/85CEE4710V8006
C710ELECTROLYTIC CAP. 470µF/16V MCE1CMASDL471
C711ELECTROLYTIC CAP. 470µF/16V MCE1CMASDL471
C712CHIP CERAMIC CAP.(1608) B K 0.1µF/50VCHD1JK30B104
C713CHIP CERAMIC CAP.(1608) B K 0.047µF/50VCHD1JK30B473
C715ELECTROLYTIC CAP. 1µF/50V MCE1JMASDL1R0
C716CHIP CERAMIC CAP.(1608) B K 0.01µF/50VCHD1JK30B103
C717CHIP CERAMIC CAP.(1608) B K 0.01µF/50VCHD1JK30B103
C718CERAMIC CAP RB 1500pF/2KVCA3D152TE006
C1001CHIP CERAMIC CAP. B K 2200pF/50VCHD1JK30B222
C1009CHIP CERAMIC CAP.(1608) B K 0.1µF/50VCHD1JK30B104
C1010CHIP CERAMIC CAP.(1608) B K 0.01µF/50VCHD1JK30B103
C1011CHIP CERAMIC CAP.(1608) B K 0.047µF/50VCHD1JK30B473
A21UZMPW-002
Ref. No.DescriptionPart No.
C1012CHIP CERAMIC CAP.(1608) B K 2.2µF/10VCHD1AK30B225
C1013CHIP CERAMIC CAP. CH J 330pF/50VCHD1JJ3CH331
C1014CHIP CERAMIC CAP.(1608) B K 1000pF/50VCHD1JK30B102
C1015CHIP CERAMIC CAP.(1608) B K 1000pF/50VCHD1JK30B102
C1016CHIP CERAMIC CAP.(1608) B K 0.022µF/50VCHD1JK30B223
C1017CAP METALIZED FILM 0.047µF/630V/JCTA473PKR004
C1018CHIP CERAMIC CAP.(1608) B K 2.2µF/10VCHD1AK30B225
C1019CHIP CERAMIC CAP. B K 1µF/10VCHE1AK30B105
C1022ELECTROLYTIC CAP. 47µF/25V MCE1EMASDL470
C1023CHIP CERAMIC CAP.(1608) B K 1000pF/50VCHD1JK30B102
C1024ELECTROLYTIC CAP. 47µF/50V MCE1JMASDL470
C1025CHIP CERAMIC CAP.(1608) B K 1µF/25VCHD1EK30B105
C1601CHIP CERAMIC CAP.(1608) B K 3300pF/50VCHD1JK30B332
C1602ELECTROLYTIC CAP. 4.7µF/50V MCE1JMASDL4R7
C1603CHIP CERAMIC CAP.(1608) B K 0.22µF/25VCHD1EK30B224
C1604CHIP CERAMIC CAP.(1608) B K 2.2µF/10VCHD1AK30B225
C1605CHIP CERAMIC CAP. B K 1200pF/50VCHD1JK30B122
C1606CHIP CERAMIC CAP.(1608) B K 1000pF/50VCHD1JK30B102
C1607CHIP CERAMIC CAP. B K 1200pF/50VCHD1JK30B122
C1608CHIP CERAMIC CAP.(1608) B K 0.1µF/50VCHD1JK30B104
C1609CHIP CERAMIC CAP.(1608) CH J 22pF/50VCHD1JJ3CH220
C1610CHIP CERAMIC CAP.(1608) CH J 22pF/50VCHD1JJ3CH220
C1611CHIP CERAMIC CAP.(1608) B K 0.1µF/50VCHD1JK30B104
C1612CAP METALIZED FILM 1.0µF/630V/JCTA105PKR004
C1613CERAMIC CAP. RB 330pF/2KVCA3D331TE006
C1614CERAMIC CAP. RB 330pF/2KVCA3D331TE006
C1615CERAMIC CAP RB 1500pF/2KVCA3D152TE006
C1616CAP ELECTROLYTIC 120µF/400V/M/25/25CA2H121DYG18
C1617CAP ELECTROLYTIC 120µF/400V/M/25/25CA2H121DYG18
C1618CAP ELECTROLYTIC 100µF/400V/M/22/25CA2H101DYG17
C1620CERAMIC CAP RB 820pF/2KVCA3D821TE006
C1621CERAMIC CAP RB 820pF/2KVCA3D821TE006
C1622CERAMIC CAP. RB 150pF/2KVCA3D151TE006
C1623CERAMIC CAP. RB 150pF/2KVCA3D151TE006
CONNECTORS
CN601# CONNECTOR B2P3-VH(LF)(SN)J3VH020JG001
CN701FFC CONNECTOR IMSA-9615S-23A-PP-AJC96J23ER007
CN1001CONNECTOR PRINT OSU B14B-PH-K-
R1030RES CHIP 1608 1/10W J 1.0k ΩRRXA102HH013
R1031RES CHIP 1608 1/10W F 47.0k ΩRTW4702HH008
R1032RES CHIP 1608 1/10W 0 ΩRRXA000HH014
R1033RES CHIP 1608 1/10W 0 ΩRRXA000HH014
R1038METAL OXIDE FILM RES. 2W J 0.33 ΩRN02R33ZU001
R1039METAL OXIDE FILM RES. 2W J 0.33 ΩRN02R33ZU001
R1040METAL OXIDE FILM RES. 2W J 0.33 ΩRN02R33ZU001
R1041METAL OXIDE FILM RES. 2W J 0.33 ΩRN02R33ZU001
R1042RES CHIP 1608 1/10W J 100 ΩRRXA101HH013
R1043RES CHIP 1608 1/10W J 620k ΩRRXA624HH013
R1044RES CHIP 1608 1/10W F 2.20k ΩRTW2201HH008
R1045RES CHIP 1608 1/10W 0 ΩRRXA000HH014
R1046RES CARBON FILM T 1/4W J 33k ΩRCX4333T1001
R1047RES CHIP 1608 1/10W F 1.10k ΩRTW1101HH008
R1048RES CHIP 1608 1/10W J 120k ΩRRXA124HH013
R1049RES CHIP 1608 1/10W J 47k ΩRRXA473HH013
R1050RES CHIP 1608 1/10W J 100k ΩRRXA104HH013
R1051RES CHIP 1608 1/10W J 12 ΩRRXA120HH013
R1052RES CHIP 1608 1/10W J 1.0k ΩRRXA102HH013
R1053RES CHIP 1608 1/10W J 47k ΩRRXA473HH013
R1054RES CHIP 1608 1/10W J 6.8k ΩRRXA682HH013
R1601RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1602RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1603RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1604RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1605RES CHIP 1608 1/10W F 51.0k ΩRTW5102HH008
R1606RES CHIP 1608 1/10W J 120k ΩRRXA124HH013
R1607RES CHIP 1608 1/10W F 1.60k ΩRTW1601HH008
R1608RES CHIP 1608 1/10W F 36.0k ΩRTW3602HH008
R1609RES CHIP 1608 1/10W J 5.6k ΩRRXA562HH013
R1610RES CHIP 1608 1/10W F 2.20k ΩRTW2201HH008
R1611RES CARBON FILM T 1/4W J 100 ΩRCX4101T1001
R1612RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1613RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1614RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1615RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1616RES CHIP 1608 1/10W F 47.0k ΩRTW4702HH008
R1617RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1618RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1619RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1620RES CHIP 3216 1/4W F 750k ΩRTC7503YF004
R1621RES CHIP 1608 1/10W F 1.80k ΩRTW1801HH008
R1622RES CARBON FILM T 1/4W J 18k ΩRCX4183T1001
R1623RES CHIP 1608 1/10W J 22k ΩRRXA223HH013
R1624RES CEMENT 5W J 0.022 ΩRWJL22PAK002
R1625RES CARBON FILM T 1/4W J 4.7 ΩRCX44R7T1001
R1626RES CARBON FILM T 1/4W J 4.7 ΩRCX44R7T1001
R1627RES CHIP 1608 1/10W J 22k ΩRRXA223HH013
R1628RES CARBON FILM T 1/4W J 100 ΩRCX4101T1001
R1629RES CARBON FILM T 1/4W J 100 ΩRCX4101T1001
R1630RES CARBON FILM T 1/4W J 680 ΩRCX4681T1001
R1631RES CARBON FILM T 1/4W J 680 ΩRCX4681T1001
MISCELLANEOUS
B3POW HEAT SINK A7120UH1EM423993
B27HEAT SINK EAQ ASSEMBLY A17P5UH1EM434720
BC601BEADS INDUCTOR FBR07HA121SB-00LLBF00STU030
BC602BEADS INDUCTOR FBR07HA121SB-00LLBF00STU030
F601#FUSE STC4A125V U/CTPAGE20CW3402
FH601FUSE HOLDER MSF-015-RS-SN (B110)XH001Z0LY001
FH602FUSE HOLDER MSF-015-RS-SN (B110)XH001Z0LY001
JS700WIRE CP STP-S-0.50XZ40F0REN001
JS701WIRE CP STP-S-0.50XZ40F0REN001
Ref. No.DescriptionPart No.
JS712WIRE CP STP-S-0.50XZ40F0REN001
L23SCREW B-TIGHT D3X8 BIND HEAD+GBJB3080
RL601# RELAY SDT-SS-105DMMRLEC05QN001
SA601# SURGE ABSORBER 470V+-10PERNVQZ10D471KB
T601#TRANS POWER BCK-28EMLTT2PCMEK043
T1601# COIL EF TE2415A3001LLEE0ZMEK002
T1602# COIL EF TE2415A3001LLEE0ZMEK002
T1604# TRANS POWER BCK-1666LTT1PCMEK003
T1606# TRANS POWER BCK-35CGLTT3PCMEK021
FUNCTION CBA
Ref. No.DescriptionPart No.
FUNCTION CBA
Consists of the following
CAPACITORS
C4001CHIP CERAMIC CAP.(1005) B K 1µF/6.3VCHB0KK30B105
C4002CHIP CERAMIC CAP.(1005) B K 2200pF/50VCHB1JK30B222
C4051CHIP CERAMIC CAP.(2125) B K 10µF/6.3VCHE0KK30B106
C4052CHIP CERAMIC CAP.(1005) B K 1000pF/50VCHB1JK30B102
C4053CHIP CERAMIC CAP.(1005) F Z 0.1µF/16VCHB1CZ30F104
C4054CHIP CERAMIC CAP.(1005) F Z 0.1µF/16VCHB1CZ30F104
C4056CHIP CERAMIC CAP.(2125) B K 10µF/6.3VCHE0KK30B106
C4057CHIP CERAMIC CAP.(1005) F Z 0.1µF/16VCHB1CZ30F104
CONNECTOR
CN4001FFC CONNECTOR 9P 9611S-09Y916JC96D09ER014
DIODES
D4001ZENER DIODE MM5Z5V6BND1BMM5Z5V6B
D4003ZENER DIODE MM5Z5V6BND1BMM5Z5V6B
D4004ZENER DIODE MM5Z5V6BND1BMM5Z5V6B
D4051LED WHITE SMD SML813WBC8W1QP1Z13WBC8W1
D4052RES CHIP 1608 1/10W 0 ΩRRXA000HH014