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Service Manual
Colour LCD Television
TX-32LE7F
TX-32LE7L
TX-32LE7L
TX-32LE7P
TX-26LE7F
TX-26LE7L
TX-26LE7L
TX-26LE7P
Specifications
(Information in brackets [ ] refers to model 26´´)
Power Source:
220-240V AC, 50Hz
Power Consumption:
144 [93W]
Stand-by Power
Consumption:
Consumption:
1W
Aerial Impedance:
75
Ω unbalanced, Coaxial Type
Receiving System:
PAL-B/G/I, D/K,
SECAM B/G, D/K, L/L’
PAL-525/60 (AV only)
M.NTSC (AV only)
NTSC (AV only)
SECAM B/G, D/K, L/L’
PAL-525/60 (AV only)
M.NTSC (AV only)
NTSC (AV only)
Receiving Channels:
VHF E2-E12
VHF E2-E12
VHF H1-H2 (ITALY)
VHF A-H (ITALY)
VHF R1-R2
VHF R3-R5
VHF R6-R12
UHF E21-E69
CATV (S01-S05)
CATV S1-S10 (M1-M10)
CATV S11-S20 (U1-U10)
CATV S21-S41 (Hyperband)
Operating Conditions:
Temperature:
Temperature:
5°C
÷ 35°C
Humidity:
5%
÷ 90% RH (non-condensing)
Intermediate Frequency:
Video/Audio
Video
Video/Audio
Video
38,9MHz, 33,9MHz
Audio
33,4MHz (B/G), 33,16MHz (A2)
33,05MHz (NICAM B/G, D/K, L)
32,4MHz (D/K), 32,66MHz (CZ STEREO)
40,4MHz (L’), 39,75Mhz (L’NICAM),
32,35MHz (NICAM)
33,05MHz (NICAM B/G, D/K, L)
32,4MHz (D/K), 32,66MHz (CZ STEREO)
40,4MHz (L’), 39,75Mhz (L’NICAM),
32,35MHz (NICAM)
Colour
34,47MHz (PAL)
34,5MHz, 34,65MHz (SECAM)
38,3MHz, 38,15MHz (SECAM L’)
34,5MHz, 34,65MHz (SECAM)
38,3MHz, 38,15MHz (SECAM L’)
Terminals:
AV1 IN
AV1 IN
Video (21 pin)
1V p-p 75
Ω
Audio (21 pin)
500mV rms 10k
Ω
RGB (21 pin)
0,7V p-p 75
Ω
AV1 OUT
Video (21 pin)
1V p-p 75
Ω
Audio (21 pin)
500mV rms 1k
Ω
AV2 IN
Video (21 pin)
1V p-p 75
Ω
Audio (21 pin)
500mV rms 10k
Ω
RGB (21 pin)
0,7V p-p 75
Ω
S-video IN
Y: 1V p-p 75
Ω
(21-pin)
C:0,3V p-p 75
Ω
AV2 OUT
Video (21 pin)
1V p-p 75
Ω
Audio (21 pin)
500mV rms 1k
Ω
AV3 IN
S-Video IN
Y: 1V p-p 75
Ω
(4-pin)
C:0,286V p-p 75
Ω
Audio (RCAx2)
500mV rms 10k
Ω
Video (RCAx1)
1V p-p 75
Ω
HDMI1
Type A Connector
COMPONENT YUV
Video (RCAx3)
Y:1V p-p 75
Ω
Pr:
±
0,35V[ p-p] 75
Ω
Pb:
±
0,35V[ p-p] 75
Ω
AUDIO IN
Audio (RCAx2)
500mV rms 10k
Ω
(for YUV, HDMI1)
AUDIO OUT
Audio (RCAx2)
500mV rms 1k
Ω
LCD screen:
L5EDD8Q00028
[L5EDD6Q00022]
1366 x 768
XGA,
16:9
Visible Diagonal 800mm [660mm]
Audio Output:
2x10W RMS
8
8
Ω impedance
Headphones:
3,5mm, 8
Ω Impedance
Accessories
supplied :
supplied :
Remote Control
2 x R6 (UM3) Batteries
2 x R6 (UM3) Batteries
Dimensions:
Height:
Width:
Depth:
615mm
791mm
239mm
[525mm]
[657mm]
[239mm]
TV set only
563mm
791mm
107mm
[473mm]
[657mm]
[107mm]
Net weight:
16kg
[12,5kg]
Specifications are subject to change without notice.
Weights and dimensions shown are approximate.
Weights and dimensions shown are approximate.
ORDER No. PCZ0704038CE
GLP21M Chassis
Contents
SAFETY PRECAUTIONS ........................................... 3
GENERAL GUIDE LINES...................................... 3
TOUCH – CURRENT CHECK............................... 3
PREVENTION OF ELECTROSTATIC DISCHARGE
(ESD) TO ELECTROSTATICALLY SENSITIVE (ES)
DEVICES .................................................................... 4
ABOUT LEAD FREE SOLDER (PBF)......................... 5
SUGGESTED PB FREE SOLDER........................ 5
SERVICE HINTS ........................................................ 6
CHASSIS BOARD LAYOUT ....................................... 7
SETTING INSPECTION.............................................. 7
SELF-CHECK ............................................................. 8
ADJUSTMENT METHOD ........................................... 9
WIRING DIAGRAM……………………………………..10
BLOCK DIAGRAMS.................................................. 11
PARTS LOCATION................................................... 14
REPLACEMENT PARTS LIST.................................. 16
SCHEMATIC DIAGRAMS ......................................... 27
A-BOARD (1 OF 5) SCHEMATIC DIAGRAM ...... 28
A-BOARD (2 OF 5) SCHEMATIC DIAGRAM ...... 29
A-BOARD (3 OF 5) SCHEMATIC DIAGRAM ...... 30
A-BOARD (4 OF 5) SCHEMATIC DIAGRAM ...... 31
A-BOARD (5 OF 5) SCHEMATIC DIAGRAM ...... 32
B-BOARD SCHEMATIC DIAGRAM .................... 33
H-BOARD SCHEMATIC DIAGRAM .................... 34
K-BOARD SCHEMATIC DIAGRAM .................... 35
P-BOARD SCHEMATIC DIAGRAM .................... 36
V-BOARD SCHEMATIC DIAGRAM .................... 37
CONDUCTOR VIEWS .............................................. 38
2
Safety Precautions
General Guide Lines
1. 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.
2. After servicing, see to it that all the protective devices such as insulation barriers, insulation papers shields are properly
installed.
3. After servicing, make the following touch current checks to prevent the customer from being exposed to shock hazards.
4. Always ensure panel TKP0E16001rectly replaced before returning to customer (see Fig.1).
4. Always ensure panel TKP0E16001rectly replaced before returning to customer (see Fig.1).
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
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 Fig. 2.
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 U1 and U2, does not exceed the following values:
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 U1 and U2, does not exceed the following values:
For a. c.: U1 = 35 V (peak) and U2 = 0.35 V (peak);
For d. c.: U1 = 1.0 V,
For d. c.: U1 = 1.0 V,
Note:
The limit value of U2 = 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 mA d. c.
The limit value U1 = 35 V (peak) for a. c. correspond to the value 70 mA (peak) a. c. for frequencies greater than 100
kHz.
2.0 mA d. c.
The limit value U1 = 35 V (peak) for a. c. correspond to the value 70 mA (peak) a. c. for frequencies greater than 100
kHz.
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.
Fig. 2
Fig. 1
3
TO
APPLIANCES
EXPOSED
METAL PARTS
APPLIANCES
EXPOSED
METAL PARTS
Resistance values in ohms (
Ω)
V
R
0
=500
Ω
R
S
=1500
Ω
C
S
=0.22
µF
10k
Ω
0.022
µF
U
1
COLD
WATER PIPE
(EARTH GROUND)
WATER PIPE
(EARTH GROUND)
V:
Voltmetr or oscilloscope
(r.m.s. or peak reading)
(r.m.s. or peak reading)
Measuring network for TOUCH CURRENTS
Input resistance:
≥ 1MΩ
Input capacitance:
≤ 200pF
Frequency range: 15Hz to 1MHz and d.c.respectively
NOTE – Appropriate measures should be taken to obtain the correct value in case of non-sinusoidal waveforms
U
2
(V)
Prevention of Electrostatic Discharge (ESD) to Electrostatically
Sensitive (ES) Devices
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).
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.
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 build up 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
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.
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).
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 harmless 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).
(ESD) sufficient to damage an ES device).
There are special components used in this equipment which are important for safety.
These parts are marked by in schematic diagrams, exploded views and replacement parts list. It is essential that
these critical parts should be replaced with manufacturer’s specified parts to prevent shock, fire, or other hazards. Do
not modify the original design without permission of manufacturer.
These parts are marked by in schematic diagrams, exploded views and replacement parts list. It is essential that
these critical parts should be replaced with manufacturer’s specified parts to prevent shock, fire, or other hazards. Do
not modify the original design without permission of manufacturer.
IMPORTANT SAFETY NOTICE
4