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13VT-L200
INSTALLATION AND SERVICE INSTRUCTIONS
Note: (1) When performing any adjustments to resistor controls and transformers use non-metallic
screwdriver or TV alignment tools.
(2) Before performing adjustment, TV set must be on at least 15 minutes.
HIGH VOLTAGE CHECK
High voltage is not adjustable but must be checked
to verify that the receiver is operating within safe
and efficient design limitations as specified checks
should be as follows:
1. Connect an accurate high voltage meter between
ground and anode of Picture tube.
2. Operate receiver for at least 15 minutes at 120V AC
line voltage, with strong air signal or properly tuned
in test signal.
3. Set to Service mode on, "Mute" and bus data 1(Y-
mute on).
4. The voltage should be approximately 25.4kV (at zero
beam). If a correct reading cannot be obtained,
check circuitry for malfunctioning components.
After the voltage test, "Mute" and bus data "0" (Y-
mute off).
CIRCUIT PROTECTION
The receiver is protected by a 4.0A fuse (F701), mounted
on PWB-A, wired into one side of the AC line input.
X-RADIATION PROTECTOR CIRCUIT
TEST
After service has been performed on the horizontal
deflection system, high voltage system, or B+ system,
test the X-Radiation protector circuit to ascertain proper
operation as follows:
1. Apply 120V AC using a variac transformer for
accurate input voltage.
2. Allow for warm up and using the remote controller,
set the brightness level and contrast level to
maximum.
3. Check the voltage of test point TP653. (It’s voltage
should be about 10.1V DC.)
4. Apply external 13.1V DC at TP653 by using an
external DC supply. The increased voltage will cause
the horizontal oscillator to stop and the TV to shut
off.
5. To re-start the oscillator, remove the external DC
power supply and short together TP651 and TP652.
Once the TV set operates normally again, remove
the short between TP651 and TP652.
Summary of Contents for 13VT-CL10
Page 7: ...7 13VT L200 Description Of Controls FRONT LOCATION OF USER S CONTROL REAR ...
Page 56: ...56 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H CHASSIS LAYOUT PWB B PWB D PWB C ...
Page 57: ...57 13VT L200 17 16 19 18 15 14 13 12 11 10 PWB A ...
Page 58: ...58 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H BLOCK DIAGRAM OF TV SECTION ...
Page 59: ...59 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 61: ...61 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 63: ...63 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 67: ...67 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 69: ...69 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 70: ...70 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H OVERALL SCHEMATIC DIAGRAM ...
Page 71: ...71 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 74: ...74 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H SCHEMATIC DIAGRAM MAIN 1 Unit TV Section ...
Page 75: ...75 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 76: ...76 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H SCHEMATIC DIAGRAM MAIN 2 Unit TV Section ...
Page 77: ...77 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 78: ...78 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H SCHEMATIC DIAGRAM POWER Unit TV Section ...
Page 79: ...79 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 80: ...80 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H SCHEMATIC DIAGRAM MAIN Unit VCR 1 Section ...
Page 81: ...81 13VT L200 17 16 19 18 15 14 13 12 11 10 ...
Page 82: ...82 13VT L200 8 7 10 9 6 5 4 3 2 1 A B C D E F G H SCHEMATIC DIAGRAM MAIN Unit VCR 2 Section ...