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 manufacturers specified replacement
parts to prevent X-ray radiation, shock, fire or other hazards. Do not modify the original design without manufacturers permission.
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 manufacturers 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 highvoltage 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.
PARTS LISTS:
REPLACEMENT MECHANICAL P ARTS LIST ........................................ 26
REPLACEMENT ELECTRICAL PA RTS LIST .......................................... 27
- 2 -
Warning !
It is essential that these critical parts are replaced
with the manufacturers specified replacement parts
to prevent X-ray radiation, shock, fire or other hazards.
Page 3
ABOUT LEAD FREE SOLDER (PbF)
This model uses lead free solder (PbF).
CAUTION:
TC-14A04A / TC-20A04A
• Pb free solder has a higher melting point than standard solder; typically the melting point is
50 - 70°F (300 - 400°C) higher. Please use a high temperature soldering iron. In case of the
soldering iron with temperature control,please set it to 700 ± 20°F (370 ± 10°C).
• Pb free solder will tend to splash when heated too high (about 1 100°F/ 600°C).
When soldering or unsoldering, please completely remove all of the solder on the pins or
solder area, and be sure to heat the soldering points with the Pb free solder until it melts
enough.
- 3 -
Page 4
TC-14A04A / TC-20A04A
OPERATING INSTRUCTIONS
Terminal de
audio / video
de alimentación
Salida del cable
CANAL
VOL.
canales
selección
Botones de
secuencial de
() ()$4
Vista posterior de la televisión
PRE. TV/AV
u
Panasonic
Terminal de
la antena
Vista frontal de la televisión
Ubicación de los Controles (TC-14A04A / TC-20A04A)
Botón
TV/AV
Botón de
PRE AJUSTE
Sensor de
control remoto
Botón de
APAGADO
ENCENDIDO /
Luz indicadora
ACCESO DIRECTO
A LOS CANALES
WAKE-UP
(DESPERTADOR)
R-TUNE
CLOSED CAPTION
CC
R-TUNEWAKE-UPTV/AV
0
123
456
789
u
ENCIENDE/APAGA
TIMER
SILENCIO
e
TV/AV
Ubicación de los Controles
LLAMADA
- 4 -
BOTONES DE
N
NORMALIZACIÓN
DIRECCIÕN DEL
MENU
MENÚ PRINCIPAL
+
MAIN MENU
PIC MENU
MENÚ DE
IMAGEM
SELECCIÓN
SECUENCIAL DE
CANALES
VOLUMEN
Panasonic
Complete Operating Instructions
Page 5
TC-14A04A / TC-20A04A
IC601 - PINOUT
SymbolPinDescription
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
1V (peak-to-peak) input is required
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
EWD15East-West drive output
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
SIFIN123SIF input 1
SIFIN224SIF input 2
GND225ground 2 for TV processor
SNDPLL26narrow band PLL filter
AVL/REF0/SNDIF (1) 27Automatic Volume Levelling / subcarrier reference output / sound IF input
AUDIO228audio 2 input
AUDIO329audio 3 input
HOUT30horizontal output
FBISO31flyback input/sandcastle output
DECSDEM32decoupling sound demodulator
QSSO/AMOUT/33QSS intercarrier output / AM output in stereo applications or deemphasis
AUDEEM (1)(front-end audio out) / AM output in mono applications
EHTO34EHT/overvoltage protection input
PLLIF35IF-PLL loop filter
SIFAGC36AGC sound IF
INTCO37intercarrier output (from QSS or vision IF amplifier)
IFVO/SVO (1)38IF 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
AUDOUT /AMOUT48audio output /AM audio output (volume controlled)
SVM49scan velocity modulation output
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
BLKIN55black current input / V-guard input
RO56Red output
GO57Green output
- 5 -
Page 6
TC-14A04A / TC-20A04A
IC601 - PINOUT
SymbolPinDescription
BO58Blue output
VDDA59analog supply of Teletext decoder and digital supply of TV-processor (3.3 V)
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
SYNC_FILTER79CVBS (i.e. P0.6/CVBS) Sync filter input: This pin should be connected to VSSA via a 100 nF capacitor.
P3.0/ADC080port 3.0 or ADC0 input
THE DAC CONTROL FOR GP3 CHASSIS FUNCTIONS AND ADJUSTMENTS
HOW TO ENTER IN THE SERVICE MODE:
1- Set the “OFF TIMER” to 30 minutes.
2- Press simultaneously RECALL key on the remote control and VOL(-) button on the unit.
After a couple of seconds, the expression “CHK” should appear on the right superior side of the screen. (T o change
the memory data, press MUTE and VOLUME(_) simultaneously while the OSD is still on CHK1 mode. Key “4” moves
forward in the memory , and key “3” moves back in the memory
Note: T o alter from CHK1 mode to CHK2, CHK3 or CHK4 modes, press key “2” to move forward and the key “1” to
move back, as illustrated below.
NORMAL MOD E
Turn off
CHK1
OPTION CODE
SETTING
“2”
“
1
”
SERVICE MODE
“2”“
CHK2CHK 3CHK4
VCJ
ADJUSTMENT
PINCUSHION
ADJUSTMENT
1
”“
“
TO EXIT SERVICE MODE AND RETURN TO NORMAL MODE:
Press the “NORMAL” key on the remote control unit or turn off the TV.
CHK1 - OPTIONS
On CHK1 mode, it is possible to adjust the options below:
“4”
OPTION1OPTION1OPTION2OPTION2
DIGITO MSBDIGITO LSBDIGITO M SBDIGI TO LSB
OPTION3
DIGITO MSB
OPTION5
DIGITO MSB
OPTION7
DIGITO MSB
ááá
“3”
“4”
á
OPTION3
á
DIGITO LSB
“3”
“4”
á
OPTION5
á
DIGITO LSB
“3”
“4”
á
OPTION8
á
DIGITO LSB
“3”
“4”
“3”
“4”
á
OPTION4
á
DIGITO MSB
“3”
“4”
á
OPTION6
á
DIGITO MSB
“3”
“4”
á
OPTION1
á
DIGITO MSB
“3”
“4”
“3”
“4”
á
OPTION4
á
DIGITO LSB
“3”
“4”
á
OPTION6
á
DIGITO LSB
“3”
“4”
å
“3”
“3”
“3”
“4”
“4”
“4”
“3”
åááá
å
å
Note:
To 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.
2
”
WHITE BALANCE
ADJUSTMENT
1
”
CHK1 mode adjustments
On CHK1 mode it is possible to adjust the items of the table shown here.
Note:
T o 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.
Press “0” T o memorize the adjustment.
On CHK2 mode it is possible to adjust the items of the table shown here.
Note:
T o 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.
Press “0” T o memorize the adjustment.
CHK3 mode adjustments
On CHK3 mode it is possible to adjust the items of the table shown here.
Note:
T o 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.
Press “0” T o memorize the adjustment.
CHK4 mode adjustments
On CHK4 mode it is possible to adjust the items of the table shown here.
Note:
T o 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.
Press “0” T o memorize the adjustment.
3. Connect the high voltage meter in the CRT anode pin,
and confirm that the high voltage is within [A] range.
CRT[A]
14”25,2 ~ 23,0
20”27,2 ~ 25,0
- 11 -
Page 12
TC-14A04A / TC-20A04A
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, SCONT or S-TINT).
6. Adjust [A] for 2.3 ± 0.2V through the BRIGHT control variation
in the test point TPL2.
7. Confirm:
CRT14 inch 20 inch
RGB Contrast2 DAC7 DAC
{352}1217
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
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±0.1V with 14 CRT and 2.6±0.1V with 20 CRT.
2. Adjust SUB-COLOR to obtain 2,45±0.1V 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±0.1V
according to fig. 2.
4. Press the key 5 (AKB ON) and confirm that OSD
becomes white.
Fig. 1
A = 2.3 ±0.1Vo-p
B = 2.4±0.1V
D = 2.45±0.1V
Fig. 2
A = 2.3 ±0.2Vo-p
C = 2.45±0.1V
CALIBRATION:
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).
7- PROTECTION CIRCUIT (SHUTDOWN)
CONFIRMA TION OF OPERATION
1. Supply a crosshatch pattern signal and adjust the
CONTRAST and BRIGHT DAC controls to minimum.
(Ibeam=0 µA)
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).
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].
Condition1420
A21,6V22,4V
B23,4V23,4V
C26,1V26,1V
- 12 -
Page 13
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
TC-14A04A / TC-20A04A
8- SUB-BRIGHT AND SUB-CONTRAST
CALIBRA TION
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 CALIBRA TION
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 for
14" or 20" CRT.
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=380±20 to 14 and Y=230±20 to 20 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
(HORIZONT AL: 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 920mA±10% in the 14" CRT
and 1200mA±10% in the 20", varying the S-BRT 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 ~ 4.
6. Press the belt of deflection yoke.
7. Adjust “beam landing” using a microscope. (for model
change or instrument check only)
- 13 -
Page 14
TC-14A04A / TC-20A04A
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
11- WHITE QUALITY CALIBRA TION
PREP ARA TION:
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 CALIBRA TION
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
CALIBRA TION:
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. Receive a white purity pattern, adjust the COLOR control
to minimum and confirm the purity adjustment.
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.
CALIBRA TION:
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.
Y = 1.0 +1.0 -0.5
4. Press “5” (AKB ON) and confirm that OSD becomes
white.
- 14 -
Fig. 1
Page 15
ADJUSTMENTS
ITEM / PREPARATIONPROCEDURE
TC-14A04A / TC-20A04A
14- VERTICAL DEFLECTION CALIBRA TION AND
CONFIRMA TION
1. Adjust IMAGE to DYNAMIC NORMAL
Fig. 1
S-CORR CONFIRMA TION AND CALIBRA TION
1) Confirmation in 50Hz
1. Supply a PHILIPS PAL-N signal.
2. Confirm that S-CORR 50Hz is in [18] DAC.
2) Confirmation in 60Hz
1. Supply a MONOSCOPE signal.
2. Confirm that S-CORR 60Hz is in [18] DAC.
3) V-SLOPE calibration
1. Supply a MONOSCOPE signal.
2. Adjust V_SLOPE (CHK3) so that the beginning of the
black part of the image is aligned with the center of the
CRT as Fig. 1.
4) VERTICAL CENTRALIZATION 50 HZ CALIBRA TION
1. Supply a PAL-N Philips signal.
2. Adjust V-SHIFT 50Hz (CHK3) so that the Philips
pattern’s center it is in the center of the CRT.
5) VERTICAL CENTRALIZATION 60 HZ CALIBRA TION
1. Supply a MONOSCOPE signal.
2. Adjust V-SHIFT 60Hz (CHK3) so that the monoscope
pattern´s center it is in the center of the CRT.
6) VERTICAL HEIGHT (V-AMP 50HZ) CALIBRATION
1. Supply a PHILIPS PAL-N signal.
2. Adjust V-AMP-50Hz (CHK3) so that the Philips pattern’s
circle height be the same dimension of the width.
7) VERTICAL HEIGHT (V-AMP 60HZ) CALIBRATION
1. Supply a MONOSCOPE signal.
2. Adjust V-AMP-60Hz (CHK3) according to box.
CRT->
C,D
A,B
Fig. 2
3. MEMORIZE in EEPROM.
16- 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].
- 15 -
14
1.9 ~ 2.2
1.5 ~ 2.3
20
1.5 ~ 2.0
1.5 ~ 1.6
Page 16
TC-14A04A / TC-20A04A
EEPROM MEMORY MAPS
Observation:
*/XX: Data subjects to alterations in the calibration process (values no fixed).
@: Data of channels
[A-M]: Corresponds to the specification of specific production of each model.
: Fixed data (it doesn't alter in the calibration process)
14 & 20 INCHES DIFFERENCES TABLE
ITEMADDR14 Inches20 InchesFUNCTION
*339200FAColor offset
*53521217RGB Contrast
*6254202DSharpness Picture user data
*7284202DSharpness Picture normalize
*83BB0503H.Shift Offset - NTSC
*93BEFC00Sharpness Offset (AV)
D002B0BA01700031B0BA01700031ZENER DIODE 17V 0,5 W 5mA RZ = 20Ω
D003B0BA01500036B0BA01500036ZENER DIODE 15V 0,5 W 5mA RZ = 40Ω
D011MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D354MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D355MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D356MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D360B0HAGP000003B0HAGP000003AXIAL RECTIFIER DIODE 400V 0,5 A
D361B0HAGP000003B0HAGP000003AXIAL RECTIFIER DIODE 400V 0,5 A
D362B0HAGP000003B0HAGP000003AXIAL RECTIFIER DIODE 400V 0,5 A
D363MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D365B0BA9R900005B0BA9R900005ZENER DIODE 9,9 V 0,5 W 5mA
D375MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D402B0HAHM000008B0HAHM000008AXIAL RECTIFIER DIODE 200V 0,6 A
D511MAZ4108J0FMAZ4108J0FAXIAL ZENER DIODE 10,8 V 0,37 W 250mA
D512MA2B17100EMA2B17100EAXIAL DIODE 200mA VRM=80V; VFM=1,0
D513B0HAJP000015B0HAJP000015AXIAL RECTIFIER DIODE 400V 0,7 A
D515B0HAJP000015B0HAJP000015AXIAL RECTIFIER DIODE 400V 0,7 A
D520MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D551MAZ30470HLMAZ30470HLSMD ZENER DIODE 4,9 V 0,2 W 5mA VZ= 4,74 ~ 4,99 V @ IZ=5MA
D552B0HAJP000015B0HAJP000015AXIAL RECTIFIER DIODE 400V 0,7 A
D555MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D556B0EAKV000008B0EAKV000008AXIAL RECTIFIER DIODE 1.000V 1,0 A VFM=1,2V
D557RU2AMV1RU2AMV1AXIAL RECTIFIER DIODE 600V 1,1 A
D558MA2C18500EMA2C18500EAXIAL DIODE 200V 200mA
D580B0BA03100002B0BA03100002ZENER DIODE 31V 0,5 W 5mA RZ = 40Ω
D581MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D582MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D583MA3X152E0LMA3X152E0LSMD SWITCHING DIODE 80V 100mA
D584MAZ30560HLMAZ30560HLSMD ZENER DIODE 5,8 V 0,2 W 5mA VZ=5,66 ~ 5,95 V @ IZ=5MA
D585B0BA3R900006B0BA3R900006ZENER DIODE 3,9 V 0,5 W 20mA
D586B0ACCK000005B0ACCK000005SMD SWITCHING DIODE 90V 100mA
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Page 30
TC-14A04A / TC-20A04A
Ref. No.TC-14A04A Part No.TC-20A04A Part No.Part Name & Description
D630MAZ30560HLMAZ30560HLZENER DIODE SMD 5,8 V 0,2 W 5mA VZ=5,66 ~ 5,95 V @ IZ=5MA
D801ERZV10V621CSERZV10V621CSVARISTOR
D803B0EBNT000002B0EBNT000002AXIAL RECTIFIER DIODE 800V 4,0 A
D804TAP4GA0005TAP4GA0005POSISTOR 7Ω 3 PINS
D810B0EAKT000019B0EAKT000019AXIAL RECTIFIER DIODE 800V 1,0 A TAPING : 52MM
D817B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D820MAZ20820A0LSMAZ20820A0LSZENER DIODE 8V 1/2 W RZ < 10Ω
D821MAZ20750A0LSMAZ20750A0LSZENER DIODE 7,2 V 1/2 W RZ < 10Ω
D823B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D824B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D825B0BA6R100003B0BA6R100003ZENER DIODE 6,1 V 0,5 W 5mA
D830B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D831B0BA02400029B0BA02400029ZENER DIODE 24V 0,5 W 5mA RZ = 20Ω
D853B0HAMM000101B0HAMM000101DIODO RETIFICADOR 200V 1,5 A
D854B0HAPV000009B0HAPV000009AXIAL RECTIFIER DIODE 1.000V 3,0 A
D855B0HFRJ000012B0HFRJ000012RECTIFIER DIODE 80V 5,0 A
D856B0BA7R500006B0BA7R500006ZENER DIODE 7,5 V 1/2 W 5mA ENFITADO / RZ = 10Ω
D860B3PAA0000135B3PAA0000135PHOTO COUPLER DIODE
D862B0BA2R100003B0BA2R100003ZENER DIODE 2,1 V 0,5 W 5mA RZ = 20Ω
D863B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D865B0BA3R500006B0BA3R500006ZENER DIODE 3,5 V 0,5 W 5mA
D870B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D871B0HAJL000001B0HAJL000001AXIAL RECTIFIER DIODE 100V 0,7 A
D1 1 05B0BA7R500006B0BA7R500006ZENER DIODE 7,5 V 1/2 W 5mA ENFITADO / RZ = 10Ω
D1120MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D1130B0BA5R700008B0BA5R700008ZENER DIODE 5,7 V 0,5 W 5mA VZ=5.61~5.91V / RZ = 40Ω
D1131B0BA5R700008B0BA5R700008ZENER DIODE 5,7 V 0,5 W 5mA VZ=5.61~5.91V / RZ = 40Ω
D1 1 3 2B0BA5R400008B0BA5R400008ZENER DIODE 5,4 V 1/2 W 5mA RZ = 40Ω
D1 1 4 0B0BA5R600016B0BA5R600016ZENER DIODE 5,6 V 0,5 W 5mA RZ = 100Ω
D1 151EL3331D/S928EL3331D/S928LED ( RED / GREEN) 40mA 5mm
D2380MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D2381MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
D2382MA3X152K0LMA3X152K0LSMD SWITCHING DIODE 80V 100mA
INTEGRATED CIRCUITS
IC3 51TDA6107JF/N3TDA6107JF/N3RGB OUT IC
IC451AN5522AN5522BIPOLAR PTH IC
IC601TDA9590H/N2TDA9590H/N2UOC PHILIPS
IC801C5HABZZ00116C5HABZZ00116MOSFET PTH 22KHz IC
IC802C0EAS0000026C0EAS000002610V VOLT AGE DETECTOR IC
IC851C0DAAHF00005C0DAAHF00005VOLTAGE REGULA TOR IC - VOUT 5 V IOUT 0,75A
IC880AN78L05-TAAN78L05-TAREGULA TOR IC
IC1103C3EBFC000021C3EBFC000021SMD EEPROM MEMORY
IC1104B3RAD0000012B3RAD0000012REMOCON RECEPTOR IC
IC1201C0CBABC00037C0CBABC00037SMD VOLTAGE REGULA TOR VOUT 3V, VIN 4~15V
IC2301AN7523NAN7523NPTH AMP IC