Special components are used in this television set which are important for safety. These parts are identified on the schematic
diagram by the symbol . It is essential that these critical parts are replaced with the manufacturer’s specified replacement
parts to prevent X-ray radiation, shock, fire or other hazards. Do not modify the original design without manufacturer’s permission.
!
Contents
ABOUT LEAD FREE SOLDER (PBF) ...................................................... 3
REPLACEMENT MECHANICAL PARTS LIST ........................................ 26
REPLACEMENT ELECTRICAL P ARTS LIST .......................................... 27
General Guidelines
An Isolation Transformer should always be used during the servicing
of a receiver whose chassis is not isolated from the AC power line.
Use a transformer of adequate power rating as this protects the
technician from accidents resulting in personal injury from electrical
shocks. It will also protect the Receiver from being damaged by
accidental shorting that may occur during servicing.
When servicing, observe the original lead dress, especially in the high
voltage circuit. Replace all damaged parts (also parts that show signs
of overheating.)
Always Replace Protective Devices, such as fishpaper, isolation
resistors and capacitors, and shields after servicing the Receiver.
Use only manufacturer’s recommended rating for fuses, circuit
breakers, etc.
High potentials are present when this Receiver is operating. Operation
of the Receiver without the rear cover introduces danger from electrical
shock. Servicing should not be performed by anyone who is not
thoroughly familiar with the necessary precautions when servicing
high-voltage equipment.
Extreme care should be practiced when Handling the Picture Tube.
Rough handling may cause it to implode due to atmospheric pressure
(14.7 lbs per sq. in). Do not sick or scratch the glass or subject it to
any undue pressure. When handling, use safety goggles and heavy
gloves for protection. Discharge the picture tube by shorting the anode
to chassis ground (not to the cabinet or to other mounting hardware).
When discharging, connect cold ground (i.e. dag ground lead) to the
anode with a well insulated wire or use a grounding probe.
Avoid prolonged exposure at close range to unshielded areas of the
picture tube to prevent exposure to X-ray radiation.
The Test Picture Tube used for servicing the chassis at the bench
should incorporate safety glass and magnetic shielding. The safety
glass provides shielding for the tube viewing area against X-ray radiation
as well as implosion. The magnetic shield limits X-ray radiation around
the bell of the picture tube in addition to restricting magnetic effects.
When using a picture tube test jig for service, ensure that the jig is
capable of handling 31kV without causing X-ray radiation.
Before returning a serviced receiver to the owner, the service
technician must thoroughly test the unit to ensure that is completely
safe to operate. Do not use a line isolation transformer when testing.
- 2 -
!
Warning !
It is essential that these critical parts are replaced
with the manufacturer’s specified replacement parts
to prevent X-ray radiation, shock, fire or other hazards.
Page 3
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
ABOUT LEAD FREE SOLDER (PbF)
Note:
In the information below, Pb, the symbol for lead in the periodic table of elements, will refer to standard solder or solder that
contains lead.
We will use PbF solder when discussing the lead free solder used in our manufacturing process which is made from Tin (Sn),
Silver, (Ag), and Copper, (Cu).
This model, and others like it, manufactured using lead free solder will have PbF stamped on the PCB. For service and repair
work we suggest using the same type of solder although, with some precautions, standard Pb solder can also be used.
Caution
• PbF solder has a melting point that is 50° ~ 70° F, (30° ~ 40°C) higher than Pb solder. Please use a soldering iron with
temperature control and adjust it to 700° ± 20° F, (370° ± 10°C).In case of using high temperature soldering iron, please be
careful not to heat too long.
• PbF solder will tend to splash if it is heated much higher than its melting point, approximately 1100°F, (600°C).
• If you must use Pb solder on a PCB manufactured using PbF solder, remove as much of the original PbF solder as possible
and be sure that any remaining is melted prior to applying the Pb solder.
• When applying PbF solder to double layered boards, please check the component side for excess which may flow onto the
opposite side (See figure, below).
SUGGESTED PbF SOLDER
There are several types of PbF solder available commercially. While this product is manufactured using Tin, Silver, and Copper,
(Sn+Ag+Cu), you can also use Tin and Copper, (Sn+Cu), or Tin, Zinc, and Bismuth, (Sn+Zn+Bi). Please check the manufac
turer’s specific instructions for the melting points of their products and any precautions for using their product with other
materials.
The following lead free (PbF) solder wire sizes are recommended for service of this product: 0.3mm, 0.6mm and 1.0mm.
HOW TO RECOGNIZE THAT PB FREE SOLDER IS USED
P.C.Boards marked as “PbF” use Pb Free solder. (See the figure below.) Pb Free is not used the Power Supply Board of this
unit.
(Example : Digital Board)
L624
L625
L626
L660
L661
L658
L659
100
C694
L653
L655
L657
L654
L656
1
L642
R768
L605
H
RA602
PFUP1330YAPbF
R767
R769
L606
L604
Q609
75
76
IC605
2625
C666
L643
BAT600
R70
C738
51
50
C667
RA609
D602
C668
RA610
C672
C731
L620
L619
L618
+3.3V/BAT
J600
C717
L621
R723
L630
1
R708
8
C728
IC610
+24V
CN612
16
9
Q613
E
R736
F605
25
18
R613R610
R611
R737
E
Q620
D608
C726
D607
Marked
DIGITAL BOARD COMPONENT VIEW
- 3 -
Page 4
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
OPERATING INSTRUCTIONS
CHANNELS
KEYBOARD FOR
DIRECT SELECTION
123
456
u
WAKE UP
789
R-TUNEWAKE UPTV/AV
0
R-TUNE
CLOSED CAPTION
CC
CH
e
CHANNELS
SELECTION AND
MENU NAVIGATION
MAIN MENU
N
CH
VOL?VOL+
PIC MENU
MAIN MENU
Panasonic
Remote Control
LOCATION OF CONTROLS
Rear View
POWER
TIMER
MUTE
TV/AV
RECALL
NORMALIZATION
VOLUME
AND MENU
NAVIGATION
input jack
AUDIO
VIDEO
AV IN
Audio/Video
Antenna
input jack
(only for
TC-20RA10LP)
AUDIO
VIDEO
PIC MENU
–+
MENU TV/AV
( ) ( )
Channel buttons
(–) (+)
Volume buttons
TV/AV button
MENU button
sensor
Remote control
Indication light
(ON/STAND BY)
Power
switch
TC-14RM10LP / TC-20RM10LP / TC-20RA10LPREMOTE CONTROL
Front V ie w
- 4 -
Page 5
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
IC601 - PINOUT
SymbolPin
P3.1/ADC11port 3.1 or ADC1 input
P3.2/ADC22port 3.2 or ADC2 input
P3.3/ADC33port 3.3 or ADC3 input
VSSC/P4digital ground for m-Controller core and periphery
P0.55port 0.5 (8 mA current sinking capability for direct drive of LEDs)
P0.6/CVBSTD6port 0.6 (8 mA current sinking capability for direct drive of LEDs) or Composite video input. A positive-going
VSSA7digital ground of TV-processor
SECPLL8SECAM PLL decoupling
VP292nd supply voltage TV-processor (+8V)
DECDIG10supply voltage decoupling of digital circuit of TV-processor
PH2LF11phase-2 filter
PH1LF12phase-1 filter
GND313ground 3 for TV-processor
DECBG14bandgap decoupling
AVL15Automatic volume levelling
VDRB16vertical drive B output
VDRA17vertical drive A output
IFI N118IF input 1
IFI N219IF input 2
IREF20reference current input
VSC21vertical sawtooth capacitor
AGCOUT22tuner AGC output
NC23Not connected
NC24Not connected
GND225ground 2 for TV processor
SNDPLL26narrow band PLL filter
IC27Inter nally connected
AUDIO228audio 2 input
AUDIO329audio 3 input
HOUT30horizontal output
FBISO31flyback input/sandcastle output
DECSDEM32decoupling sound demodulator
AUDEEM33Deemphasis (front-end audio out)
EHTO34EHT/overvoltage protection input
PLLIF35IF-PLL loop filter
IC SIF AGC36AGC Sound
IC37Internally connected
IFVO/SVO38IF video output / selected CVBS output
VP139main supply voltage TV processor
CVBS140internal CVBS input
GND41ground for TV processor
CVBS242external CVBS2 input
GND43ground for TV-processor
CVBS3/Y44CVBS3/Y input
C45chroma input
WHSTR46white stretch capacitor
CVBSO47CVBS output
AUDOUT48Audio output
NC49Not connected
INSSW2502nd RGB / YUV insertion input
R2/VIN512nd R input / V (R-Y) input / PR input
G2/YIN522nd G input / Y input
B2/UIN532nd B input / U (B-Y) input / PB input
BCLIN54beam current limiter input
BLKIN5 5black current input / V-guard input
RO56Red output
GO57Green output
BO58Blue output
VDDA59analog supply of Teletext decoder and digital supply of TV-processor (3.3 V)
Description
- 5 -
Page 6
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
IC601 - PINOUT
SymbolPin
VP E60OTP Programming Voltage
VDDC61digital supply to core (3.3 V)
OSCGND62oscillator ground supply
XTALIN63crystal oscillator input
XTALOUT64crystal oscillator output
RESET65reset
VDDP66digital supply to periphery (+3.3 V)
P1.0/INT167port 1.0 or external interrupt 1 input
P1.1/T068port 1.1 or Counter/Timer 0 input
P1.2/INT069port 1.2 or external interrupt 0 input
P1.3/T170port 1.3 or Counter/Timer 1 input
P1.6/SCL71port 1.6 or I2C-bus clock line
P1.7/SDA72port 1.7 or I2C-bus data line
P2.0/TPWM73port 2.0 or Tuning PWM output
P2.1/PWM074port 2.1
P2.2/PWM175port 2.2
P2.3/PWM276port 2.3
P2.4/PWM377port 2.4
P2.5/PWM478port 2.5
SYN C FI L TER79Sync Filter
P3.0/ADC080port 3.0 or ADC0 input
DAC CONTROL FOR GP31 CHASSIS FUNCTIONS AND ADJUSTMENTS
HOW TO RESET THE UNIT (SELF CHECK)
To reset the unit, press simultaneously “VOLUME (–)” on the front panel and “TIMER” on the remote control.
HOW TO ENTER IN THE SERVICE MODE:
1. Adjust “OFF TIMER” to 30 minutes.Press simultaneously “VOLUME (–)” on the front panel and “RECALL” on the remote control to enter “SERVICE
MODE”.After a couple of seconds, the expression “CHK1” should appear on the right superior side of the TV screen.
2. To change to memory data, press ”MUTE” and ”VOLUME(_)” simultaneously while the OSD is still on CHK1 mode.
3. Press key “2” to move forward and “8” to move backward each page (8h positions) in the memory .
Exemple: Memory position is
will go to position 108 .
4. Press “4” and “6” to move to right or left.
5. Press “CH(+)” e “CH(–)” to move for blocks.
Example: Initial memory position is 000. By pressing “CH(+)” cursor will go to position 100, pressing it once again the
cursor will go to position 200. The key “CH(–)” does the inverse move.
6. To change values in the memory , press “VOLUME(+)” to increase and ”VOLUME(_)” to decrease.
100. A fter pressing “2” the cursor will go to position 0F8 and after pressing “8” the cursor
7. After data adjustment, OSD will change to RED color . Press “0” to memorize the adjustment and the OSD will change to
GREEN color.
NOTE:
To alter from CHK1 mode to CHK2, CHK3 or CHK4 mode, press key “2” to move forward and key “1” to move back, as
ilustrad below.
NORMAL MODESERVICE MODE
“2”
Turn Off
OPTION CODE
CHK1
SETTING
ADJUSTMENT
1
”
“
VCJ
CHK1 MODE - OPTIONS
On CHK1 mode it is possible to adjust the items of the table shown here.
Note:
T o select an option, type “4” to move forward and “3” to move back.
After having selected the desired option, adjust it by pressing the “VOL(_)” or “VOL(+)”
keys.
Press “0” to memorize the adjustment.
Observation:
V alues of CHK1 table in should be programed, exactly as described in the t able
shown here.
On CHK2 mode it is possible to adjust the items of the table shown here.
Note:
To select an item, type “4” to move forward and “3” to move back.
After having selected the desired option, adjust it by pressing the “VOL(_)” or
“VOL(+)” keys. The OSD color will change for red.
CHK3 MODE - PINCUSHION ADJUSTMENTS
On CHK3 mode it is possible to adjust the items of the table shown here.
Note:
To select an item, type “4” to move forward and “3” to move back.
After having selected the desired option, adjust it by pressing the “VOL(_)” or
“VOL(+)” keys. The OSD color will change for red.
CHK4 MODE - WHITE BALANCE ADJUSTMENTS
On CHK4 mode it is possible to adjust the items of the table shown here.
Note:
To select an item, type “4” to move forward and “3” to move back.
After having selected the desired option, adjust it by pressing the “VOL(_)” or
“VOL(+)” keys. The OSD color will change for red.
CHK2 MODE T ABLE
Standard values
RF AGC
CONTRAST
COLOUR
SUB COLOUR
TINT
SUB NTSC-TINT
BRIGHT
3. Connect the high voltage meter in the CRT anode pin,
and confirm that the high voltage is be among 25,2~23KV
for 14” CRT and 27,2~25KV for 20" CRT .
- 13 -
Page 14
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
5- PAL COLOR OUTPUT SIGNAL ADJUSTMENT
1. Supply a color bar signal and adjust the local frequency.
2. Adjust “IMAGE” to DYNAMIC NORMAL, “CONTRAST” to
63 and “SUB-CONTRAST” to 21.
3. Adjust the “CHANNEL COLOR” level to NORMAL.
4. Set to CHK2 service mode option, press “5” on the remote
control unit and confirm that OSD becomes blue (AKB
turned off).
5. Set ABL to OFF (in CHK2 mode, to access BRT, CONT,
S-CONT or S-TINT).
6. Adjust [A] for 2.3 ± 0.2V through the BRIGHT control
variation in the test point TPL2.
7. Confirm that the RGB Contrast is 11DAC and {352} = 1B
8. Fix G-DRIVE GAIN, R-DRIVE GAIN and B-DRIVE GAIN
data in 1FH or 31 DAC.
R-DRIVE GAIN: [SLV(8A), SUB (16)]
G-DRIVE GAIN: [SLV(8A), SUB (17)]
B-DRIVE GAIN: [SLV(8A), SUB (18)]
6- NTSC SUB-TINT CALIBRA TION
1. Connect the oscilloscope in TPL1 (R-OUT) with a 10KΩ
resistor.
2. Supply a Rainbow signal (NTSC 3.58 MHz) through
VIDEO IN.
3. Select “IMAGE” to DYNAMIC NORMAL.
4. Select “COLOR FOR CHANNEL” to NORMAL.
5. On CHK2 service mode, press “5” (AKB OFF) and confirm
that OSD becomes blue (AKB turned off).
6. Set ABL to OFF (on CHK2 mode, to access BRT, CONT,
S-CONT or S-TINT).
CALIBRATION:
1. Connect the oscilloscope in TPL2 (G-OUT) with a 10KΩ
resistor and adjust “CONTRAST”, so that the [B] waveform
it is 2.3±0.5V with 14” CRT and 2.6±0.1V with 20” CRT.
2. Adjust “SUB-COLOR” to obtain 2,45±0.5V in [D]
according to fig. 1.
3. Connect the oscilloscope in TPL1 (R-OUT) with a 10KΩ
resistor and confirm that the [C] waveform it is 2.45±0.5V
according to fig. 2.
4. Press the key “5” (AKB ON) and confirm that OSD
becomes white.
Fig. 1
A = 2.0 ±0.2Vo-p
B = 2.3±0.5V
D = 2.15±0.5V
Fig. 2
A = 2.0 ±0.2Vo-p
C = 2.5±0.5V
CALIBRATION:
1. Adjust [C] for 5.0±0.2V through the BRIGHT control
variation (CHK2) according to fig. 1.
2. Adjust SUB TINT-NTSC so that the levels of positions 2, 3
and 4 of Fig. 1 in accordance with the Fig. 2.
3. Set ABL to ON.
4. Press “5” and confirm that OSD becomes white (AKB
turned on).
7- PROTECTION CIRCUIT (SHUTDOWN)
CONFIRMATION OF OPERA TION
1. Supply a crosshatch pattern signal and adjust the
CONTRAST and BRIGHT DAC controls to minimum.
(Ibeam=0 µA)
Fig. 1Fig. 2
CONFIRMATION:
1. Connect the voltmeter in TPA22 and confirm that the
voltage is smaller than [A].
2. Connect a DC source in TPA22 and confirm that the
protection circuit doesn't act when the voltage is [B].
3. Confirm that the protection circuit acts with smaller voltage
than [C].
Condition/Model
A
B
C
14” Philips
22,8
23,9
26,7
20” Philips
23,3
24,5
27,4
4. Use D512 catode or C511 (+) terminal, if TP22 access it
is difficult.
- 14 -
Page 15
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
8- SUB-BRIGHT AND SUB-CONTRAST
CALIBRATION
1. Supply a WINDOW pattern signal.
2. Adjust IMAGE MENU to DYNAMIC NORMAL
9- FOCUS CALIBRATION
• Assure that the SUB-BRIGHTNESS adjustment has been
done.
1. Supply a Philips or monoscope pattern signal.
2. Adjust IMAGE MENU to DYNAMIC NORMAL.
SUB-BRIGHT CALIBRATION
1. Position the color analyzer in the LOW LIGHT image
area.
2. Ajust S-BRT <CHK 4> control, so that it is Y=0,7±0,2.
SUB-CONTRAST CALIBRA TION
1. Position the color analyzer in the HIGH LIGHT image
area.
2. Ajust S-CONT <CHK 4> DAC control, so that it is
Y=230±10 for 20” CRT and Y=380±20 for 14” CRT.
3. If impossible to obtain that adjustment, adjust SUBCONT <CHK 4> again.
4. Check the SUB-BRIGHT adjust.
CALIBRATION:
1. Adjust the FOCUS variable resistor for the point of better
adjustment.
• with PHILIPS signal .... take as reference for adjustment
the third vertical line (fig. 1).
• with MONOSCOPE signal in the number 4 (fig.2).
4
1 2 3
Fig. 1
3 2 1
10- PURITY CALIBRA TION
1. Adjust the HELMHOLTZ device for the local magnetic field
(HORIZONTAL: 0 ± 0.03 X 10-4T)
2. Let the set warm up (aging time) for a minimum of 60
minutes.
3. Supply a purity pattern (white pattern).
4. Adjust CONTRAST and BRIGHT to MAXIMUM.
5. The static convergence adjustment must have been
made preliminarily.
6. Connect a DC ampere meter between FBT pin11 (-) and
FBT pin3 (+), and adjust to 920µA±10%, varying the SBRT DAC control.
Fig. 2
CALIBRA TION:
1. Position the “ears” of the purity magnets both upward.
2. Adjust the purity until the markers in the purity jig
monitorscope becomes symmetrical in the horizontal
direction.
3. The vertical centralization correction is made through
the purity magnets for stripe CRT type only.
4. Slide the yoke forward by 10 mm±5 in the monitor. Then,
tighten the deflection yoke.
5. Repeat the procedures 2 ~ 3 ~ 4.
6. Press the belt of deflection yoke.
7. Adjust “beam landing” using a microscope. (for model
change or instrument check only)
- 15 -
Page 16
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
11- WHITE QUALITY CALIBRATION
PREPARATION:
1. Adjust the HELMHOLTZ device to local magnetic field. Horizontal: 0 ± 0.003 x 10
-4
T
2. Receive a white purity pattern.
3. Adjust CONTRAST and BRIGHT controls to maximum.
4. Previously adjust the CONVERGENCE.
5. Fully degauss the CRT by using an external degaussing
coil.
12- CONVERGENCE CALIBRATION
1. Adjust the HELMHOLTZ device to local magnetic field.
2. Receive a crosshatch pattern.
3. Adjust IMAGE menu to DINÂMIC NORMAL and the DAC
BRIGHT control for the crosshatch pattern to be gray.
4. Remove the DY wedges and slightly tilt the deflection
yoke to the vertically and horizontally to obtain the good
overall convergence.
5. If purity error is found, repeat “Color Purity” adjustment
CALIBRATION:
1. Adjust the magnetic field in 0.4x10-4T (400 mG), and
check the white quality with the CRT turned to EAST and
to WEST .
2. Receive a red pattern, adjust the COLOR control to
maximum and confirm the purity adjustment.
3. If purity error is found at the CRT corners, apply magnetic
tapes to correct it, fully degauss the CRT again and repeat
the steps 1 and 2. Don't use this magnetic tapes on the
internal side of the yoke.
4. When magnetic tapes be used, fully degauss the face of
CRT (in a horizontal magnetic field = 0 ± 0.03x10-4T),
and repeat the items 1 and 2.
5. Adjust the control of COLOR to MINIMUM, and repeating
the item 1.
CALIBRA TION
Static convergence calibration
l) Assure that the magnets are positioned according to
illustration 1.
ll) Adjust the 4 poles magnets to align the R and B
CENTRAL DOTS and adjust the 6 poles magnets to
align both DOTS with G.
lll) After adjustment above, assure that the magnets are
The electron beams are moved rotationally when the
static convergence magnets are rotated.
The reduction of rotational beams differ depending of
the two magnets angle. Therefore, it is necessary to
repeat the magnets calibrations sometimes, until
obtaining a good alignment.
CALIBRATION:
1. Press “5” (AKB OFF) and confirm that OSD becomes
blue.
2. Connect the oscilloscope in TPL5 and adjust BRT to
obtain 130V as in the Fig. 1 below.
3. Adjust the SCREEN to obtain a horizontal fine line in the
screen center.
4. Press “5” (AKB ON) and confirm that OSD becomes
white.
- 16 -
Fig. 1
Page 17
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
14- VERTICAL DEFLECTION CALIBRA TION AND
CONFIRMATION
1. Adjust IMAGE to DYNAMIC NORMAL
Fig. 1
1) V-SLOPE CALIBRA TION
1.
Supply a PHILIPS P AL-M signal.
2. Adjust V_SLOPE <CHK3> so that the begin of the black
image part is aligned with the dividing line of Philips
pattern. The dividing line of the Philips pattern circle
should be visible partially.
2) V-SHIFT 50Hz CALIBRA TION
1.
Supply a PHILIPS P AL-N signal.
2. Adjust the vertical centralization (V-SHIFT 50Hz) <CHK3>
so that PHILIPS pattern center be in the center of CRT.
3) V-SHIFT 60Hz CALIBRA TION
1.
Supply a MONOSCOPE signal.
2. Adjust the vertical centralization (V-SHIFT 60Hz) <CHK3>
so that MONOSCOPE pattern center be in the center of
CRT.
4) V-AMP 50Hz CALIBRA TION
1.
Supply a PHILIPS P AL-N signal.
2. Adjust the vertical height (V-AMP-50Hz) <CHK3> so that
the pattern PHILIPS circle height has the same dimension
of his width.
5) V-AMP 60Hz CALIBRA TION
1.
Supply a MONOSCOPE signal.
2. Adjust the vertical height (V-AMP-60Hz) <CHK3> so that
"C" and "D" values in illustration 2 it is 1.9 ~ 2.2 (tipic 2.0)
for 14" and 1.5 ~ 2.0 for 20" and "A" and "B" values in
illustration 2 it is 1.5 ~ 2.3 (tipic 2.0) for 14" and 1.5 ~ 1.6
for 20".
3. T o MEMORIZE in EEPROM.
C,D
A,B
Fig. 2
15- WHITE BALANCE CALIBRA TION
1. Adjust the HELMHOLTZ device to local magnetic field.
2. Let the set warm up for a minimum of 30 minutes.
3. Receive a white balance. (This sign should contain
burst sign).
4. Adjust the IMAGE menu to DINÂMIC NORMAL.
5. Fully degauss the CRT by using an external degaussing
coil.
6. Position the color analyzer in contact with the CRT face.
Assure that not entering light for the meter borders and that the CUT OFF voltage calibration has been done. If the value in the
color analyzer is below 150, adjust CONTRAST to 50 and press “8” in CHK2 mode.
CALIBRATION:
[1] LOW LIGHT CALIBRATION
1. Adjust S-BRT, so that Y = 7
2. Adjust R-CUT OFF, so that x = 0.273 ±0.01
3. Adjust G-CUT OFF, so that y = 0,283 ±0.01
[2] HIGH LIGHT CALIBRATION
(Confirm that G-DRIVE is 31 DAC)
1. Adjust S-BRT, so that Y = 150
2. Adjust R-DRIVE, so that x = 0,275 ±0.01
3. Adjust B-DRIVE, so that y = 0,284 ±0.01
[3] Repeat the procedures [1] and [2].
- 17 -
1.5 ~ 2.0
1.5 ~ 1.6
Page 18
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
SCHEMATICS DIAGRAMS
CRT P.C.B.
- 18 -
Page 19
MAIN P.C.B. SCHEMATIC DIAGRAM - TC-14RM10LP / TC-20RM10LP / TC-20RA10LP
TC-14RM10LP / TC-20RM10LP / TC-20RA10LP
- 19 -
Page 20
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
MAIN P.C.B. CIRCUIT LAYOUT
Component View
F
L
L11
3
TPL5
R365
PbF
TNP4G348
R363
R364
21
D362
L5
6
D360
R374
1
3
TPA41
313S
3
J
31
L33
R3141
C3 3
14
JK3102
JK3102
A
R
R
A
JS 140
3
R3 45
1
JS 43
31
C
1443
R3142
JS 41
31
4
V
L
R3143
A
V
JS 0
111
11
10
L
SW1001
þ
5678
R1021
CHL
R
428
05
R1 8
ý
CHL
R1016
SW1002
R
0571
SW1003SW1004
C1105
L
VO +
R1017
C0311
C0411
R1018
VOL-
TV/AV
SW1005
R1019
PRESET
R111
R
SW1006
R1020
R
1
059
Q1053
RM1104
D1151
SEE REVERSE FOR ORDER NO.
IC351
L350
JS 37
L3137
JS3136
D840
1
061
C844
NC
CB
SC351
H+
CB
R
E
G
H-
N
H-
A
CR
.D
.V
G1
H
C350
CG
G2
CG
CG
CR
L10
D361
C359
8
9
L351
C373
L
31
32
S
2
313
J
JS2304
L2304
TPA43
JS3138
C3 6
13
R3 3
C3 7
13
88
JS 4
JS3135
4L88
R
1443
JS 42
31
C
508
31
TPA11
6
3L31
JS100
C864
L0
10
8
C55
23
JS 05
L2305
L846
JS846
418
R
8
Q
40
Q0512
L1101
D0511
C842
R358
H+
L352
G1
C377
C371
C370
TPL7
R359
Q369
C368
TPL4
D355
2
R352
R353
D356
R351
1
JS 30
31
A22
1
4
JS3139
L2303
JS2303
13
R3 2
13
1C3 38
C3139
DIP
JS2142
D728
TPA9
C876
C882
2
R855
D850
8
55
D
JS844
R8
4
4
L8
45
JS
8
L8 54
JS816
A6
2
1
C814
8
JS 17
JS815
81
L7
2
1
1
JS841
JS840
RL801
C841
0
2
3
1
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JS810
JS809
JS808
LF801
0C81
O
BR WN
1
C846
A4
C845
C845
BL
W
S80
2
T4AL
2
JS802
JS801
E
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F801
JS806
4
3
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JS
8
1
1
S
804
J
803S
J
EDCBA
L8
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R357
6
1
C971
TPL1
D363
D375
R369
D365
D354
L2107
L871
TPA8
1
IC851
C875
63
L816
2
CF804
JS807
D801
R2 3
30
JS 02
23
12
TPL2
R
2
C2 10
1
Q111
2
Q2110
C
R2 07
1
R2 6
10
40
IC2101
1152
C
1
C2 13
C
1212
C 1202
L872
8JS60
3
41
C
1142
2
C
142
C
2
C
141
C2 5
10
C2 06
JA11
D873
C881
7
80C8
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R8
6
8
73
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C8 3
8
C877
Q870
C879
R
758
L893
JS 93
8
L862
85
4
L
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R840
09C8
C807
C802
D803
4
C821
C816
JS811
D811
D820
C825
C830
R824
R830
D823
1
1
IC2301
9
113
1112
2
103
1
123
C880
72
C862
854S
S5 S6
8
C06
2
R818
R
R
22
JS 29
31
C2307
3
R
149
D2382
R
3832
2
C 302
R2380
C2 1
30
38Q2 0
D
3802
Q2381
C2 3
30
R
3822
R2381
2
R
302
D2 1
JS 10
23
L11
23
JS231
1
30
C2 5
C2 51
3C204
2
151
Q
C 3062
R2 55
1
J
214S1
R
1522
R2151
11R2 2
L2104
J
210S8
0
8
L21
C2109
24
25
R2 09
1
C2101
C2 04
1
64
65
C2127
C
301
L2
JS2132
C2 5
12
C 1242
214S
0
J
D856
R850
1372
C
1362
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C2128
R2130
2
R
131
L3221
B
1
6R8
62D8
E
R8
C
D863
Q850
B
JS870
R852
D
8
71
D870
R8 1
7
C853
D853
JS852
C854
L852
R851
1
0T8
8
11
C
R811
+
C808
-
L85
S2
S1
R810
D810
178
C
C810
C818
Q3031
C2380
38
1
64
JS004
L158
8A
J
B
C2381
10
R6
2
R
384
R2153
C
2
152
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15
C1172
L2105
L2133
10
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R
2
101
10
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1
C2140
80
C
1392
30
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668
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65
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R870
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D857
D854
3
JS 3
85
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V1P2PTP1
V2
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821
J
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27
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L821
HOT
LIVE CIRCUIT
3
01R8
1
2
0
L8
R821
6
IC801
R832
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4
1
5
7
D318
3
D830
R831
D824
C822
D821
R820
C826
D817
D825
R817
R258
12
81
3
120
C
C3157
1
IC3151
C3153
1503
Q
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1
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1735
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23
R619
21
TPA33
TPA30
A8
6
3
1
TPA32
JA
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4
JS 82
8
00JS5
D005
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2
120
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JS 82
1
L218
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12
15C3 1
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1
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18JS 3
8
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5
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17
R3151
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R6 2
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3
152
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R6
71
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C628
R686
R620
R685
R633
6
C
86
C680
C685
C689
6
C
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88
C1120
R6 7
8
R6 8
0
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JA4
R6 7
0
R604
J
3A
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06
20R11
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23
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2
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R521
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L863
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C857
C857
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3
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67
1
3
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PC860
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2
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5JS 26
1C5 9
R868
2
L513
JS513
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R869
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688
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JS867
COLD
L501
R554
D5
51
5
R
53
R508
5
C
70
D558
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075
C561
C568
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1
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C562
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6
T553
4
5
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E
B
C
C
1
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C502
C
51Q5
51Q5
R504
E
0
C5 3
JS184
4
L18
1
80
X
1
R
85
18
JS 1
L181
X183
C180
8
5
L1
Q103
L1 38
R
1
86
R1
82
0JS6 4
C6 1
3
JS6 4
1
R187
Q601
R615
JS186
R614
R173
C172
R6 0
4
C
J13
S1
40C6
93C1
1
R
90
C
1
91
C636
40
87
41
671S
J
6
JS 70
R6
72
6
70
C
L620
C6
D
R5
86
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R857
JA10
C856
5
R8 4
Q854
4
03
C
JS520
R413
JS413
5
25
R
L512
JS512
JS523
C044
C563
3
JS501
60
R5
1
1DY
C655
C655
1
1
2
2
3
R1 9
C1 6
3
R137
X184
3
R1 8
1
31
R
R145
32
C1
C
1
33
C618
R132
061
R
R130
R109
R111
A
0
R1 8
1
R1 2
011
C131
1
JS 03
08
D1
0
Q1 7
25
2
C6 3
01
X6
64
C
6
20
21
11
06
R
2
R11 4
2
R11 2
JS873
L873
R1140
D1140
D852
C1140
4
8
C5 0
6
C1 1
I
20
JA1
2
0
R4 9
4
Q
00
R4
10
1
R4 5
R411
4
R12
1R46
7
1R4
R407
L560
JS561
5
D5 6
2
C559
1
1
4
4
3
3
1
3
L550
L550
JS550
JS550
2
B
030
D003
L001
C615
C006
D002
C008
R006
C005
24
R1
JS110
C
1
21
Q180
1
20
R
TU2
JS002
11
R
6
C
351
1
C1
R136
Q104
111
JS
1
XF102
5
24
C622
C
C3 1
C4111
3
1
D4 4
R4 2
0
0
D4 3
C402
7
IF1
BTL
JS1
17
R
IFOUT
33
R1
R
341
R
1
35
R122
R121
J
02
S1
XF101
C61
C614
2903
29
0
L120
1
5
D201
C116
Q101
R118
R126
C612
R6 3
0
R119
C6 3
1
R1 1
5
6
C
10
R150
1
6
C
09
C6 3
0
R6
01
C
066
C602
1
C1 421
80
C
65
IC601
1R116
C1110
2
C6 5
6
C
33
C1111
1R112
Q1110
2
R3 72
27
Q3 0
R3 8
27
27
R3 6
7
JA
3
FL 290
R3292R3293
R
2943
3
293
C
28
R3 8
FL3291
2
R3 64
2
R3 62
2
C3 69
2613
Q
2
R3 66
3260
Q
R
26
R3 8
2613
Q 2623
2653
R
26
R3 7
R3 86
2
R3282
R3 95
2
C3037
12
R2 0
R3 12
0
L3037
J
303S
7
4
R
14
L3016
3
048
R
C406
L400
JS400
4
07
C
2
IC451
7
6
02
D4
0R4 1
L511
JS511
C560
2
D557
3
C165
15
C5
JS557
1
C567
R515
C566
T501
01Q0
C
030
11R0
SDA
L2
00
R
070
ADD
SCL
MB
SDA
R3011
231
VSUPPLY
3R11 1
5
2JS1 2
D1 301
C
221
8
D1131
1
Q02
C3111
11
01
C
S1
J12
C1
23
C1
20
R
3211
JS1 30
1
JS120
R3411
R117
D1132
L125
C605
C109
Q105
C608
C607
C
0C6 1
4
R11 2
C1125
R1125
R3311
R1511
1
R110
C619
R1141
14R11
JA
5
R1113
JS 0393
0
R3 39
JS 0383
R3 75
2
R3 38
0
L3042
JS3042
3
277
R
JS 61
32
27
Q3 1
R3014
L3041
JS3041
C3 63
2
R
3
287
R3285
C 0213
0
R3
13
S
7
329
J
C3 3
28
R
3
034
0
Q3 30
Q 2813
2803
Q
R3035
JS3035
C
0283
R3 36
0
R
3
018
D630
JS3001
3
032
R
R3 15
0
3
JS 036
R3 0
01
JS 016
3
S3 5
J01
C054
6
0R4
1
R404
C409
C408
11C5
11D5
12
R5
R
R
615
D512
TPA22
C514
5R5 9
D515
JS503
5
Q52
R5
R513
R5
63
3
1D5
C
5
13
14R5
0
JS
50
TPA25
TPA24
5
JS 60
D5
55
6
5
7
JS415
8
9
JS416
11A
4
3
TPA15
R0
08
C
020
21
R0
C001
D011
R012
R022
TU
AS
C1130
AGC
C004
1
C1 32
4
Q1130
1
IC1103
R1135
R1136
R1105
JA1
R1104
12
TPA3
TU001
A
TP 2
TPA1
11
R
08
11
R
09
4
1
2
A
6
04
T4PA
1
R
0311
JS1103
C3 39
0
C3038
C3038
R
R
2793
2793
2
2
R389
R389
2JS3 96
C3 73
2
JS3 22
0
02
R3 2
R3033
C3036
C36
03
02
C3 0
3
R3259
JK3003
4
JK3002
C401
C
03R4
R405
JS8 3
R580
Q580
R581
Q581
5
11
R588
R592
R593
R594
R
5
96
D583
62
R
R
R
5
83
R5 5
9
5
C
90
R557
JS521
58
C5
5
58
R
R564
5678
L3000
JS3000
8
JS510
L510
D584
D584
C5 1
8
91
R5
5
87
R
5
5
84
84
6
JS522
A5
1
TPA21
TPA23
A
3
11
21
PbF
10
10
TNP4G347
SEE REVERSE FOR ORDER NO.
H.V.DANGER
D525
C555
55R5
C552
ADEFBC
- 20 -
Page 21
SIGNAL WAVEFORM
• All waveforms were obtained using 127V 60Hz power source and Color Bars Pattern.
IC451
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
IC601
Pin 1
Pin 5
Pin 3
Pin 7
Pin 16Pin 17
- 21 -
Page 22
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
IC601
Pin 18Pin 19
Pin 38
Pin 42Pin 55
Pin 40
- 22 -
Page 23
IC601
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
Pin 56Pin 57
Pin 58Pin 63
Pin 64
- 23 -
Page 24
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
IC801
Q501
Pin 1
Q551
Colector
Q601
Base
Emissor
Colector
Q602
Colector
- 24 -
Page 25
EXPLODED VIEW
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
- 25 -
Page 26
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
REPLACEMENT MECHANICAL PARTS LIST
Ref No. TC-14RM10LP part No. TC-20RM10LP part No.TC-20RA10LP part No.Part Name & Description
R416ERDS1TJ1R8TERDS1TJ1R2TERDS1TJ1R2TRES. 1,8 Ω 1/2 W / 1,2 Ω 1/2 W
R417ERDS1TJ1R5TERDS1TJ1R2TERDS1TJ1R2TRES. 1,5 Ω 1/2 W / 1,2 Ω 1/2 W
R508ERG3FJ222HERG3FJ152HERG3FJ152HRES. 2,2 Ω 3 W / 1,5 Ω 3 W
R509ERG3FJ222HERG3FJ182HERG3FJ182HRES. 2,2 Ω 3 W / 1,8 Ω 3 W
R511ERJ6ENF1072VERJ6ENF1002VERJ6ENF1002VRES. 10,7 Ω 1/10 W / 10Ω 1/10 W
R512ERJ6ENF1202VERJ6ENF1 182VERJ6ENF1182VRES. 12Ω 1/10 W / 11,80 Ω 1/10 W
R520ERQ12AJ6R8EERQ12AJ2R7EERQ12AJ2R7EFUS. 2,7 Ω 1/2 W
R521ERQ12AJ6R8EERQ12AJ2R7EERQ12AJ2R7EFUS. 2,7 Ω 1/2 W
R522D0GD273JA017D0GD123JA017D0GD123JA017RES. 27Ω 1/8 W / 12Ω 1/8 W
R557ERO50PKF1743ERO50PKF1473ERO50PKF1473RES. 174Ω 1/2 W / 147 Ω 1/2 W
R559ERQ1CJP3R9SERQ1CJP4R7SERQ1CJP4R7SFUSISTOR 3,9Ω 1 W / 4,70 Ω 1 W
R623--------------0---------------------------0-------------D0GD331JA017RESISTOR 330Ω 1/8 W 5%
R685--------------0---------------------------0-------------D0GD331JA017RESISTOR 330Ω 1/8 W 5%
R818ERG2FJ683HERG2FJ473HERG2FJ473HRESISTOR 68Ω 2 W / 47Ω 2 W
R820ERX12SJR39EERX12SJR33EERX12SJR33ERESISTOR 0,39Ω 1/2 W / 0,33 Ω 1/2 W
R821ERX12SJR47EERX12SJR27EERX12SJR27ERESISTOR 0,47Ω 1/2 W / 0,27 Ω 1/2 W
R824ERDS2TJ561TD0AE152JA046D0AE152JA046RESISTOR 560Ω 1/4 W / 1,50 Ω 1/4 W
R831ERDS2TJ272TEROS2THF1102EROS2THF1102RESISTOR 2,70Ω 1/4 W / 1 1Ω 1/2 W
R867ERDS2TJ222TD0AE272JA046D0AE272JA046RESISTOR 2,20Ω 1/4 W / 2,70 Ω 0,25 W
R3018--------------0---------------------------0-------------D0GD331JA017RESISTOR 330Ω 1/8 W
R3048--------------0---------------------------0-------------D0GD101JA017RESISTOR 100Ω 1/8 W
R3132--------------0---------------------------0-------------D0GD331JA017RESISTOR 330Ω 1/8 W
R3133--------------0---------------------------0-------------D0GD331JA017RESISTOR 330Ω 1/8 W
R3142--------------0---------------------------0-------------D0GD101JA017RESISTOR 100Ω 1/8 W
R3145--------------0---------------------------0-------------D0GD101JA017RESISTOR 100Ω 1/8 W
TRANSFORMER
T501ZTFP12506AZTFP12504AZTFP12504AFLYBACK 15.750 Hz 0,040kVA
T801ETS29AV156ACETS29AV136ADETS29AV136ADCHOPPER 0,093 kVA (93VA) / 0,095 kVA (95VA)
- 27 -
Page 28
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
REPLACEMENT ELECTRICAL PARTS LIST
COMPONENTS WITH THE SAME CODE FOR ALL MODELS (TC-14RM10LP / TC-20RM10LP / TC-20RA10LP)
D002 B0BA01700031ZENER DIODE 17V 0,5 W 5,0 mA
D003 B0BA01500036ZENER DIODE 15V 0,5 W 5,0 mA
D011B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D354 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D355 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
- 28 -
Page 29
TC-14RM10LP/ TC-20RM10LP/ TC-20RA10LP
Ref. No.Part No.Part Name & Description Ref. No.Part No.Part Name & Description
D356 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D360 B0HAMP000067RECTIFIER DIODE 400V 1,0 A
D361 B0HAMP000067RECTIFIER DIODE 400V 1,0 A
D362 B0HAMP000067RECTIFIER DIODE 400V 1,0 A
D363 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D365 B0BA9R900005ZENER DIODE 9,9 V 0,5 W 5,0 mA
D375 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D402 B0HAHM000008RECTIFIER DIODE 200V 0,6 A
D403 B0ACMJ000001SWITCHING DIODE 80V 1,0 A
D404 B0ACMJ000001SWITCHING DIODE 80V 1,0 A
D511MAZ4108J0FZENER DIODE 10,8 V 0,37 W 250,0 mA
D512 MA2B17100ED. 200,0 mA VRM=80V; VFM=1,0
D513 B0HAJP000015RECTIFIER DIODE 400V 0,7 A
D515 B0HAJP000015RECTIFIER DIODE 400V 0,7 A
D520 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D551 MAZ30470HLZENER DIODE 4,9 V 0,2 W 5,0 mA
D552 B0HAJP000015RECTIFIER DIODE 400V 0,7 A
D555 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D556 B0EAKV000008RECTIFIER DIODE 1.000 V 1,0 A VFM=1,2V
D557 B0HAMR000073RECTIFIER DIODE 600V 1,0 A
D558 B0AADM000003SWITCHING DIODE 200V 0,2 A
D583 B0ACQJ000002SWITCHING DIODE 80V 0,25 200,0 mA
D584 B0BA5R600016ZENER DIODE 5,6 V 0,5 W 5 mA
D801 ERZV10V621CSVARISTOR
D803 B0EBNT000007RECTIFIER DIODE 800V 4,0 A
D810 B0EAKT000018RECTIFIER DIODE 800V 1,0 A
D817 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D821 MAZ20750A0LSZENER DIODE 7,2 V 1/2 W
D823 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D824 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D825 B0BA6R100043ZENER DIODE 6,1 V 0,5 W 5,0 mA
D830 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D831 B0BA02400029ZENER DIODE 24V 0,5 W 5 mA
D850 B0ACMJ000001SWITCHING DIODE 80V 1,0 A
D852 B0ACMJ000001SWITCHING DIODE 80V 1,0 A
D853 B0HAMM000108RECTIFIER DIODE 200V 1,5 A
D854 B0HAPV000009RECTIFIER DIODE 1.000V 3,0 A
D855 B0HFRJ000012RECTIFIER DIODE 80V 5,0 A
D856 B0BA7R400019ZENER DIODE 7,4 V 0,5 W 5,0 mA
D862B0BA2R100016ZENER DIODE 2,1 V 0,5 W 5 mA
D863 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D865 B0BA3R500006ZENER DIODE 3,5 V 0,5 W 5,0 mA
D870 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D871 B0HAJL000001RECTIFIER DIODE 100V 0,7 A
D873B0BA8R200005ZENER DIODE 8,2 V 0,5 W 5,0 mA
D11 0 5 B0BA7R500006ZENER DIODE 7,5 V 1/2 W 5,0 mA
D1120 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D11 3 0 B0BA5R700008ZENER DIODE 5,7 V 0,5 W 5,0 mA
D11 3 1 B0BA5R700008ZENER DIODE 5,7 V 0,5 W 5,0 mA
D11 3 2 B0BA5R400008ZENER DIODE 5,4 V 1/2 W 5,0 mA
D11 4 0 B0BA5R600016ZENER DIODE 5,6 V 0,5 W 5,0 mA
D1151 EL333ID/S928D. LED 5V 1/10 W 30,0 mA
D2380 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D2381 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
D2382 B0ACQJ000001SWITCHING DIODE 80V 250,0 mA
PC860 B3P AA0000261DIODO FOTO ACOPLADOR
INTEGRATED CIRCUITS
IC351 TDA6107JF/N3RGB IC
IC451 AN15525AVERTICAL CONTROL IC
IC601 TDA9540N48CHUOC IC
IC801 C5HABZZ00116IC MOSFET PTH OSCILADOR
IC802 C0EAS0000026VOLTAGE DETECTOR IC
IC851 C0DAAHF00005VOLTAGE REGULA TOR IC
IC880 AN77L05-TAVOLTAGE REGULA T OR IC
IC1103 C3EBFC000042EEPROM MEMORY IC
IC1201 C0CBABC00160VOLTAGE REGULA TOR IC
IC2301 AN7523NAUDIO PROCESSOR IC
RM1104 B3RAC0000014REMOTE CONTROL RECPTOR IC
CONECTORES
A12K1KA04AA0190BASE DE PINS 4P
A22B02B-XASS-1-TBASE DE PINS 2P
D556-L TEL376PIN GT OCO ESTANHADO
D556-R TEL376PIN GT OCO ESTANHADO
F801-L K3GE1ZA00010GARRA PARA FUSÍVEL - METAL
F801-R K3GE1ZA00010GARRA PARA FUSÍVEL - METAL
L5 ~ A 5 TXAJTA5CB14A12CONECTOR 6 PIN ( USO: 3 VIAS )
L8 ~A8 TXAJTA8CB20A12CONECTOR 6 PINOS (USO: 6 VIAS)
L8 ~A8 TXAJTA8CB29KCONECTOR 6 PINOS (USO: 6 VIAS)
JK3002 K4BC03B00021TERMINAL AV - TRASEIRO ( MONO )