MDl .2E

Transcription

MDl .2E
Chassis
Colourtelevision
MDl.2E
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Contents
t . Technical speciÍications
2. Connectionfacilitiesand Chassis overview
3 . SaÍety instructionsfor repairs,
4.
5.
6.
7.
Maintenanceinstructions,
Wamingsand Notes
Mechanicalinstructions
Block diagram
Testooint overview
Wiringdiagram
Service Modes, DST, Error messages,
Protections,Faultfindingand Repair tips
Electrical diagrams and PWB-layouts
Supply voltage diagram
(SchémaA1)
Powersupply21"
"
(SchémaA1)
Powersupply> 21
(SchémaA2)
Horizontaloutput
(SchémaA3)
Vertical output
(SchémaAa)
Audio ampliÍier
(Schéma81)
Tuner + lF
(Schéma 82)
Video processing
Page
Contents
l"g"
2
2
Electrical diagrams and PWB-layouts
(Schéma BB)
Synchronisation
(Schéma84)
lF sound
(Schéma85)
EuroconnectoÍ1
(Schéma 86)
Euroconneetor2
(Schéma87)
Controls
Connectionsaudio
(Schema BB)
module
(Schéma 89)
Teletext
(SchemaC)
CRT panel
(Schéma01)
Audio module
(Schéma D2)
Nicam L module
CTI/BlackStretch panel (SchémÊD
(SchemaG)
N/S oanel
Mains/RCS/LEDPanel (Schémal)
Control and Inpuvoutput (SchémaJ)
8. Electricalalignments
10. DirectionsÍor use
11. List oÍ abbreviations
12. Spare parts lists
Diagram
21
21
22
22
23
PWB
18
18
18
18
18
24
24
25
26
27
28
29
30
31
32
34
37
39
18
18
25
27
27
29
29
30
31
3
4
6
7
8
8
Diagram PWB
12
14
13
14
15
14
16
14
17
14
17
18
19
18
20
Copyright 1996 Philips Consumer ElectÍonicsB.V. Eindhoven,The
Neitíerl-ands.All rights reserved. No part of this Publicationmay be
reoroduced,storedjn a retrievalsysteni or transmitted,in any form or by
ariv means, electronic,mechanicá|,photocopying,or otherwisewithout
thé prior permissionof Philips.
reserved Subiectto modification
publishedby SM9671TV ServiceDepartmentPrintedin TheNetherlandsoCopyright
PCS 82 264 GB
#p
@ 4822727 20979
PHILIP
1. TechnicalspeciÍications
Mainsvoltage
Powerconsumption
nominaloutputpower(Vvatt)
peakoutputpowerWatt)
standbyWatt)
Mainsfrequency
Pull-inrangecoloursynchronisation
Pull-inrangehorizontal
synchronisation
| 22O-24OV
AC (!1O"A)
:
:
:
:
:
100 (21'90");130 (110" SF 4:3);150 (110" SF 16:9)
160 (21"90");180 (110' SF 4:3);220(110' $F 16:9)
3 (t10%)
50 Hz (t10%)
> + 300H2
: > + 600H2
2. Connectionfacilitiesand Chassisoverview
m-"-.
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Rearconnectlons
MENU
tÍ
\:.2-
Front+ Top control + Side l/O
o
OqEo
(DGREEN
lo+g-".*rH*
Front + Side control + Side l/O
Specificationof the terminalsockets
REAR
EXTI - CVBS(in/cut)+
RGB(in)tuner at output
1
2
3
4
5
6
7
8
-
9 1 0 11 121 3 1 4 1 5 1 6 17 18 192021 -
Audio O R (O.SVnrvrs<
lko)
10ko)
Audio € R (0.2-2Vnus>
1kO)
Audio G L (0.SVnrr,rs<
Audio I
Blue I
loka)
Audio € L(0.2-2Vnurs>
Blue o (0,n/pp/75o)
INT;4,5-7Vl
CVBSstatus(o-2V:
-4l3)
EXT1-16/9;9.5-12V:EXT1
Green I
Green O (o,7vpp/75o)
Red I
RGBstatusI
Red o (0,7vpp/75o)
RGBstatus(0-0,4V:INT;1-3V:
EXT1/75o)
CVBS I
CVBS JCVBSo(1Vpp/75O)
cvBS€(1vpp/75o)
Earth screen
PCS 82 265 GB
EXT2 - CVBS(in/out)+
SVHS(in)
- Input: EXTzthen output
= tuneri input: other
then outPut= inPut
1
2
3
4
5
6
7
8
-
Audio OR(o.SVnrus<lk())
Audio O R(0.2-2Vnr'irs>10ko)
AudioGL(o.SVnus<1ko)
Audio I
Audio €
L(0.2-2Vnr'rs>10ko)
CVBSstatus€ (G2V:INT;4,s7V:
EXï2-16/9;9.5-12Y:F-Kï2=a|3\
9 ' 1 011121 3 - C I
1 4 -
151 6 17 18 1920 21 -
c
o(300mvppl75à')
CVBS I
CVBS I
CVBS0(1vpp/75o)
cvBslío (1vppi75o)
Earthscreen
Cinch- audioout
O ctucx AudioL (red)I
(0.5Vnr',ls
< 1kA)
O ctNcH AudioR (whire)
O
(0.5Vnus
< 1kA)
FRONT
Audiofuideoin
O crncn cvBSO (1vpp/75o)
O ctrucn AudioL (red)O
(2Vnr',rs
> 10kO)
O ctttcH AudioR (white)
O
(2Vaus> 1OkO)
Headphone
I qn
8-600ei
SVHS
@
1 - r
2 - I
Yo (1vppnso)
3
4 - co(o,3vpp/75o)
EE-i]
Topcontml
Panetd#
EE3il
SideControldild/oÍ InpuUOutput
CRT Panel
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P28| cTu8reksrÍerch
Panel
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N i € mL P a n e t
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E-p.ro l
Tuner / lF
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Synórcnislion
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Vids PÍocessing
lF Sound
Euro ConnecloÍ 1
EuÍo Connsdoí 2
E-p.tl
EEzg] ContÍols
E p.zcl ConnectionsAudio Module
E-t 4l Teleteí
PoweÍsupply
Eilp.13Jd
HoÍizonlatoutputE
P.16-l
VerlicalOutput E
AudioAmpliÍier E
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66532068_001.41
, Side ConlÍol or Top ContÍol presenl
3. SafetyinstructionsÍor repairs,Maintenanceinstructions,
Warningsand Notes
SaÍetyinstructions Íor repairs
1.
Safetyregulations
requiÍethatduringa repair:
- the setshouldbe connected
to the mainsvia an isolating
transformer:
- saÍetycomponents,
indicatedby the symbol a
identicalto the
shouldbe replacedby components
originalones;
- whenreplacing
the CRT,safetygogglesmustbe worn.
2.
requirethataftera Íepairthe set must
Safetyregulations
'rts
be Íeturnedin originalcondition.In particular
attention
shouldbe paidto theÍollowingpoints:
- As a strictprecaution,
we adviseyouto resolderthe
solderjointsthroughwhichthe horizontal
deÍlection
currentis flowing,in particulaÍ:
o all pinsoÍ the lineoutputtransformer
(LOT);
o fly-backcapacitor(s);
. S-@rrectioncapacitor(s);
o lineoutputtransistor;
. pinsof the connectorwithwiresto the deÍlection
coil;
o othercomponents
throughwhichthe deÍlection
currentÍlows.
Note:
This resolderingis advised to prevent bad connectionsdue to
metal Íatigue in solder joints and is thereÍore only necessary
Íor television sets older than 2 years.
- The wire trees and EHT cable should be routed correctly
and Íixed with the mounted cable clamps.
- The insulationoÍ the mains lead should be checkedlor
external damage.
- The mains lead strain relieÍ should be checked for its
tunction in order to avoid touching the GRT, hot
componentsor heat sinks.
- The electricalDC resistancebetween the mains plug and
the secondary side should be checked (only for sets
which have a mains isolated power supply).
This check can be done as Íollows:
o unplug the mains cord and connect a wire between
the two pins oÍ the mains plug;
e set the mains switch to the on position (keep the
mainscord unplugged!);
. measuÍe the resistancevalue between the pins oÍ the
mains plug and the metal shieldingoÍ the tuner oÍ the
aerial connectionon the set. The reading should be
between4.5 MO and 12 MO;
o switch off the TV and remove the wire between the
two pinsoÍ the mains plug.
- The cabinet should be checked Íor defects to avoid
touching oÍ any inner paÍts by the customer.
Maintenanceinstructions
It is recommendedto have a maintenanceinspection
carriedout by a qualiÍiedseÍviceemployee.The interval
dependson the usage conditions:
r when the set is used undernormalcircumstances,
Íor examplein a livingroom,the recommended
interval is 3 to 5 years;
r when the set is used in circurnstances
with higher
dust,grease or moisturelevels,for exanrplein a
kitchen,the recommendedinterval is 1 year.
The maintenanceinspectioncontainsthe Íollowing actions:
. executethe abovementioned"generalrepair
instruction";
. cleanthe power supplyand deflectioncircuitryon
the chassis;
. cleanthe picturetube paneland the neck oÍ the
pictuÍetube.
Notes
1.
The diÍect voltages and oscillogramsshould be measured
with regardto the tuner earth (J), or hot earth (I{) as tnis
is called.
2.
The direct voltages and oscillogramsshown in the
diagramsshould be measured in the Service DeÍault
Mode (see chapter 8) with a colour bar signal and stereo
sound (L:3 kHz, R:1 kHz unless stated otherwise)and
picture carrier at 475.25 MHz.
3.
WheÍe necessary,the oscillogramsand direct voltages are
measuredwith (''ll-)and without aerial signal ([).
Voltages in the power supply section are measuredboth Íor
normal operation (@) and in standby (O). These values are
indicatedby means of the appropriatesymbols.
4.
The picturetube PWB has printed spark gaps. Each spark
gap is connected between an electrodeoÍ the picturetube
and the Aquadag coating.
5.
The semiconductorsindicatedin the circuitdiagram and in
the parts lists are completely interchangeableper
positionwith the semiconductorsin the unit, inespectiveoÍ
the type indicationon these semiconductors.
Warnings
1.
2.
In order to preventdamageto lcs and transistors,all
high-voltageflashovers must be ave,ided.In order 1o
prevent damage to the picturetube, the method shon'n in
Fig. 3.1 shouldbe used to dischargethe picturetube.
Use a high-voltageprobeand a multimeter(positionDC-V)
Dischargeuntil the meteÍ readingis 0V (afier approx. 30s).
l
ESD IÈs.
All lCs and nrarryother semiconductorsare sensitiveto
electrostaticdischarges(ESD).Carelesshandlingduring
repair can drasticallyshortenthe liÍe. Make sure that during
repair you are connected by a pulse band with resistanceto
the same potential as the earth ot the unit.
Keep componentsand toolsalso at this same potential
3.
4.
5.
6.
Together with the deÍlectionunit ancjany multipoieunil,
the flat square picture tubes used forrn an integratedunit.
The deÍlectionand the multipoleunitsaíe set opiimallyai
the Íactory. Adiustmeni of this unit during repair is thereÍore
not recommended.
Be carefulwhen taking measurementsin the high-voltage
sectionand on the picturetube.
Never replacemocjulesor otheÍ componentswhilethe unit
is switched on.
When making settings, use plastic ratheÍ than metal tools.
This will prevent any short circuiis and tire ciangeioÍ a
circuitbecomingunstable.
Figure3.1
6.
sunnounol
DCtpoLBY
P R O o L O G I C
ManuÍacturedunder license from Dolbv Laboratories
l-icensingCorporation.
DOLB'/,the double-DsymbolD! and PRO LOGICare
trademarksoÍ Dolby LaboratoriesLicensingCorporation.
PCS 82 266 GB
4. Mechanicalinstructions
The MD1.2Echassishastwo differentmechanical
executions.
4.1
Servicepositions
Small Signal Panel (SSP) component side (Figure4.1)
1. Push down the clicks oÍ the SSP bracket (1) and shift
the SSP to the lefi.
2. Pull up the SSP and tilt the SSP counter clockwiseto a
horizontalposition(180'with LargeSignalPanel
Stylingwith top controland side inpuVoutput
(alsoapplicableÍor MD1.1EWidescreen)
Removing the Íear cover
1. First all screws on the rear cover have to be removed.
. 4 Screws are located at each corner of the cabinet.
. 2 Screws are located at the left and right bottom
corners oÍ the rear cover.
. 4 Screws are Íixed at the 4 corners oÍ the l/O panel
with the Euroconnectorsand aerial input.
2. The rear cover is now held in position by 6 clicks
between the cabinet and the rear cover. There are
2 clicks at the left, 2 at the right and 2 at the top. After
looseningall clicks (by releasingthem with a screwdriver),the rear cover can be removed.
3. The cover plate on the l/O panel with the EuroconnectoÍs and aerial input can be removed in the
following way: remove the screw in the middle, release
the click connectionat the bottom and lift the cover
plate.
(LsP)).
3. Put the SSP in the clicks (2) marked "Sewice" on the
bottom plate.
When all cables on the SSP are disconnected,the SSP can
also be removed from its bracket (Figure 4.2), providing
better access to component and copper side.
Processposition
The process position provides easier access to the entire
chassis.
1. Releasethe mains cord Írom its Íixation brackets.
2. Push back the clicks between bottom plate and rear
cover and pull the cabinet at the same time backwards.
bracket
For some service positions cables may have to be removed
from their cable clamps and channets.
AÍterwards, put the cables back in their original position.
Click
(1)
_014.41
071096
Figure 4.1
PCS 82 267 GB
LSP component side (Figure 4.3)
1. Put the SSP in the horizontalservice position as
described above.
2. Remove screw (3) from the LOT bracket.
3. Remove the bracket by releasingclick (4) and pulling the
bracket upwards.
4. Release clicks (5) and (6).
5. Lift the LSP PWB out of its bracket (indicatedby the
arrow) and pull it a little back.
Warning!
The heat sinks arc not connected to ground.
LSP copper side x/ith table/workbencá (Figure 4.4)
1. Disconnectthe cable to the degaussingcoil (yellow
connector L02 on LSP).
2. lÍ necessary, disconnectthe cable on the left loudspeaker.
3. Lift the LSP Írom its bracket as described above (LSp
component side).
4. Turn the LSP undemeath the CRT panel (keep cable
515/L15 UNDER the audio module)as indicatedby the
arrow (7).
The LSP now rests on the bottom plate, held in place by the
cable clamp on the heat sink and the LOT bracket.
Warning!
Clip(6)
Click (4)
c166532052_01 5.Al
110996
Figure4.3
Be careful not to damage the CRT-panel or
picture tube neck.
The heat sinks are not connected to ground.
SSP and LSP copper si]de without tabte/workbench
(Figure 4.5)
For this seruice position MDl cable extension kit
(service code number 4822 320 11695) is required.
1. Break the service pin (markedM't - see Figure 4.3) from
its position at the right hand side oÍ the bottom ptate.
2. Disconneqtthe cable to the degaussingcoil (yellow
connector L02 on LSP) and the cable on the left
loudspeaker.
3. Removecables510/L10,51 1/L11 and 515/L15 Írom
LSP to SSP and cable l28lL28 Írom Audio module to LSp.
4. Lift the LSP lrom its bracket as described earlier (LSP
component side).
5. Put the LSP to the vertical position (Figure 4.5), copper
side at the right hand, LOT above (8). For this position,
special grooves are made in the bottom plate of the
cabinet.
6. Fix the position oÍ the LSP by putting the service pin
between LSP (heat sink) and bottom ptate (9). There are
special holes in the heat sink and the bottom plate to put
the service pin in.
7. Reconnectcable128/128.
8. Use the cables Írom the MD1 cable extension kit to
reconnect connectors S10/L10, S11/L1 1 and 51 S/Li S.
Warning!
Figure4.4
All cables should be reconnected correctly.
After use the service pin can be placed in the spare hole at
the right hand side in the bottom plate.
665320s2017.41
Figure 4.5
Mechanicalinstructions
Accessingthe modulewith mainsswitch, LEDand RC5
receiver(Fig.4.6)
coilat the lefthand
1. Cutthe tie rapof the degaussing
coilin the left
bottomside (10).Removethe degaussing
bottomcornerÍromitsÍixationbracket(11)to get more
spaceto handlethe mainsmodule.
2. Removethe redmainspànelbracketby liftingthe end
(12).
andpullingit backwards
space,the lefttop of the cabinet
3. To get moremovement
can be pushedor pulledupwards(13).
4. The mainspanelcannowbe removed.
the degaussing
Afterwards
coilshouldbe retiedat position
(10).
4.2
( 10)
( 11 )
(12)
Styling with side control and side inpuVoutput (no top
control)
66532052_01 8.Al
071096
Removingttre rear cover
1. Firstall screwson the rearcoverhaveto be removed.
. 6 Screwsare locatedat thecomersoÍ the cabinet.
. 2 ScrewsaÍe locatedat the leftand rightbottomoÍ
the rearcover.
. 3 Screwsare locatedjustabove,underandleftoÍ the
coverplateof the UOconnections.
Figure4.6
Fot someservicepositionscablesmayhaveto be removed
íromtheircableclampsand channels.Aftenttards,put the
cablesbackin theiroriginalposition.
Process position
The processpositionprovideseasieraccessto the entire
chassisduringthe serviceposltions.
1. Thechassiscanbe lifted,pulledÍorward(t Scm)and
fixedin the bottomplate.
2. Whenthe clicksbetweenbottomplaterearcoverare
pushedback,the chassisandthe bottomplatecanbe
pulledbackwards.
Servicepositions
(14)
66532052_019.Al
250996
Figure4.7
SSPcopperand componentside, moduleservicing
(Figure4.7)
'1. Releasethe clickconstruction
(14)betweenthe SSPand
LSP.
2. Liftthe SSPa littleandturn it to an angleoÍ 135' (15)or
180"(16)ÍromtheLSP.
Thisprovidesbetteraccessto the clmponentsideoÍ the
SSPandalsoallowsfor the removaloÍ modules.
Serviceposition with table/workbench(Fig.4.8)
1. Disconnect
coil(yellow
the cableto the degaussing
connectorL02on the LSP).
2. Lifithe chassisfromthe bottomplateandpullit
backwards(17).
3. Turnthe entirechassisaroundthe CRTpanel(18).
Thechassisrestson the SSPwiththe coppersideof the
LSPbackwards.
Warnlng!
Be carefulnot to damagethe CRT-panelor
picturetubeneck.
Theheat sinksare not connectedto ground.
FiguÍe4.8
Service position (LSP copper side) without table/
workbench (Fig.4.9)
1. Disconnectthe cableto the degaussingcoil (yellow
connector L02 on the LSP).
2. Lift the chassisÍrom the bottom plate and turn it
counter clockwise (19).
3. The SSP can be Íixed with a screwdriverto the bottom
plate (20). The copper side ofthe LSP can now be
accessed.
Waming!
Be careful notto damage the CRT-panel or
picture tube neck.
The heat sinks are not cannected to ground.
Small Signal Panel (Fig.4.2)
First, remove all cables connectedto the Small Signal
Panel.The SSP can be removed by sliding it out of the
SSP bracket (in the directionof the arrow).
Large Signal Panel (Fig.4.10)
After removingthe screw (21), and pushing back the clips
(22), the LSP can be lifted out the bracket as indicatedby
the arrow.
Figure4.9
Accessing the panel with mains switch, LED and RCS
ÍeceiveÍ
The mains module is located in the middle oÍ the set. below
the picturetube.
1. Push the clicks between bottom plate and rear cover
back and pull the chassis back as Íar as possible.
2. Releasethe clickconstÍuction(14 - Fig.4.7) between
the SSP and LSP, lift the SSP a little and turn it to an
angle oÍ 180' (16 - see Fig. 4.7)lrom the LSP.
The mains panel can now be accessed when reaching
over the SSP/LSP.
3. Removethe 2 screws left and right on the mains panel
bracket.
The complete mains panel can now be removed by
pullingit backwards.
cffi262
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6. ServiceModes,DST,Errormessages,Protections,
Faultfindingand Repairtips
In this chapter the following paragraphs are included:
Test points
6.1
Service Modes and Dealer Service Tool (DST)
6.2
"blinking
Errorcodes and
LED" procedure
6.3
6.4
Protections
Faultfindingand repairtips
6.5
6.1
Note:
Test points
The MD1 chassis is equipped with test points in the service
printing.These test points are reÍerringto the functional
blocks:
Test points for the audio processing
* A1-42-43, etc.:
circuitry
Test pointsfor the controlcircuitry
* C1-C2-C3,etc.:
Test pointsfor the frame driveand
* F1-F2-F3,etc.:
frame output circuitry
Test ooints Íor the line drive and line
* L1-L2-L3,etc.:
output circuitry
*
*
*
6.2
Exitingthe SDM:
- Switch the set to stand-by (the error buffer is also
cleared).
P1-P2-P3,
etc.:
T1-T2-T3,etc.:
V'l-V2-V3,etc.:
Testpointsfor the powersupply
Testpointfor the teletelccircuitry
TestpointsÍor the videoprocessing
circuitry
Servicemodesand DealerServiceTool (DST)
For easy installationand diagnosis the dealer remote control
RC7150is introduced.The RC7150can be usedfor all new
TV sets, includingall set of the MD1 chassis.The RC7150is
also called Dealer Service Tool or DST. The ordering
number of the DST (RC7150) is 4€,22218 21232.
6.2.1 Installation Íeatures Íor the dealer
theTv-set
Thedealercanusethe RC7150for programming
withpresets,Tv-settings,Dishsettings.
10 Differenlprogramtablescan be programmed
intothe DST
fromtheGFLor MD2
viaa GFLor MD2TV-set(downloading
to the DST;seeGFLor MD2servicemanuals)
or by the
DST-I(DST/PCinterface;ordering code4822218 2127n.
Íeaturesof the DST,the
Forexplanation
of the installation
(Forthe MD1
for useof the DSTare recommended
directions
chassis,downloadcode4 shouldbe used).
6.2.2 Diagnose features for the servicer
The MD'|.2 setscan be put in the two servicemodesviathe
ThesearetheServiceAlignment
Mode(SAM)
DSTRC7150.
andthe ServiceDefaultMode(SDM).SDMcanalsobe
the"seÍvice".pins
on the SSP.
enteredby shortcircuiting
6.2.2.1 ServiceDefauftMode (SDM)
Enteringthe SDM:
- By transmittingthe "DEFAULT' command with the
RC7150DealerServiceTool.
- By temporarilyshortingpins S42 and S43 on the Small
SignalPanel.
When the mains power is switched off while
the set is in SDM, the set will enter to SDM
immediately when the mains is switched on
again'
The SDM has the Íollowing pre-deÍinedconditionsÍor all
microprocessorcontrolledtuning and linear functions:
- For recognitionof the SDM "SER" is displayedat the top
oÍ the screen.
- Tuning at 475.25 MHz (Secam on Multi-Francesets (with
Nicam L), PAL on other sets).
- Volume level is set to 25olo(oÍ the maximum volume
level). Other picture and sound settings are set to 5096.
- Auto switch off disabled (normallythe set is automatically
switchedoff when no video signal (IDENT)was received
for 15 minutes).
- Sleeptimer is disabled.
- All other controls operate normally.
- When the microprocessor supports the "blinking LED"
procedure (See 6.3) and an error code is present in the
error buífer, the LED will blink the number of times, equai
to the value of the last error code.
This function will also work when there is no soud
or plcture.
6.2.2.2 Seruice Alignment Mode (SAM)
EnteringSAM:
- By transmittingthe "ALIGN'commandwith the RC7150
Dealer Service Tool (this works both while the set is in
normaloperationmode or in the SDM).
- By pressingthe "MENU"and':" key on the local
when the set is in SDM.
keyboardsimultaneously
ÊxitingSAM:
- Switch the set to stand-bv.
Note:
When the mains power is switched off while
Íhe sef is in SAM, the set will entet SDM
immediately when the mains is switched on
again.
ln the SAM the following informationis displayed on the
screen:
- Softwareversion (the software version oÍ the
microprocessorin the set is displayed.This software
version identiÍicationcorrespondswith the software
versions in the Software Survey as publishedin the
Product Survey.
- Error code buffer (see paragraph 6.3).
- Options (see paragÍaph 8.4).
- Alignment and geometry information (see paragraph
8.2.1,8.3.1and 8.3.2).
ServiceModes,DST,Errormessages,
(1) SoÍtwareversion
(21 Errorbuffer
(3) Options
(4) Alignmentsandgeometry
Example:
Errorcodeposition
Errorbuffer
1 2 3 4 5 6 7
2 4 1 0 0 0 0
c afterenteing SDM
blink (2x) - pause - blink (2x)
. after transmlfÍ,íng"DIAGNOSE2 OK with the DST
blink (4x) - pause - blink (4x)
o after transmrftlng"DIAGNOSE3 OK' with the DST
blink-pause-blink
"DIAGNOSE
. after transmltÍrÍng
4 OK' with the DST
nothinghappens
Figure6.1
6.3
Note!
Note that it may take up to 7 seconds before
the set respons to a DIAGNOSE contmand.
lnterruption of the blinking sequence may
lead to incorrect results.
lmportant!
Not all software versionsof the MDl.2E
chassis support the blínking LED procedure
and the DIAGNOSE 99 command. Software
versions NOT supporting the blinking LED
procedure are MlZBAx-x.x and Ml2COx-3.x.
ScreenoÍ the ServiceAlignment
Mode(SAM)
Errorcodes and "blinking LED" procedure
Ïhe errorcodebuÍÍercontainsall errorsdetectedsincethe
lasttimethe bufferwaserased.The bufferis writtenÍromleft
to right.
- The lasterrordetected(actual)is the errorat the leftside
- The errorbufferwillbe resetin theÍollowingcases:
1. exitingthe SAMwiththe "standby"
commandon the
remotecontrol
"DIAGNOSE
2. transmitting
the commands
9 9 OK with
the DST
- By leavingthe SAMwiththe mainsswitch,the error
bufferis not reset.
Examples:
ERROR:
ERROR:
000000:
3 0 0 0 0 0:
ERROR:
530000:
Enor
code
0
Thecontentsof the erÍorbufiercanalsobe madevisible
throughthe "blinkingLED:procedure.
Thisis especially
usefulwhenthereis no picture.Therearetwo methods:
1. Whenthe SDMis entered,
the LEDwillblinkthenumber
oÍ times,equalto thevalueoÍ the/asÍerrorcode.
The LEDwill stayoff brieflyandblinkagainthe numberoÍ
times,equalto the valueto the /asterrorcode
2. Withthe DSTa//errorcodesin the errorbuffercanbe
madevisible.Whilein SDM.transmit
thecommand:
"DIAGNOSEx
Ol(
wherexis the position
in the
errorbufferto be madevisible
x rangesÍrom 1, (thelast
(actual)error)to 7 (theÍirst
error)
The LED will operate in the same way as in point 1, but
now Íor the error code on positionx.
Bfinking Pgssble , .
l€D,
deÍectvecoÍnpgnents:
Noerrordetected
BIMOS
(ID48366) error
1x
1c7119
(SSP)
MSP3400/3410
erÍor
2x
1c7353
3
lzc buserror
3x
All lzC-related
components
4
WrongEEPROM 4x
rc7685(SSP)
5
EEPROM
defective
5x
1c7685
(SSP)
b
Tunererrol
6x
u1000(ssP)
7
TXTerror
7x
rc7702(ssP)
8
HistogramProc.
eÍror
8x
1c7210
(Íeserved)
9
16:9processor
error
9x
1c7440
(16x9module)
10
WSSB module
error
10x
tc7540
(WSSBmodule)
11
Dolbyprocessor
erÍor
11x
rc7600
2
Noerrorcodedetected
Errorcode3 is the lastand
onlydetectederror
ErrorcodeSfirstanderror
code5 lastdetected
EÍor desoiption
(ssP)
(Audio module)
Table6.1 Error code list
Protections,FaultÍindingand Repairtips
6.4
Protections
The EasVWest
protectiondetectswhenthe currentthrough
the EasvwestpoweroutputstagewithTS7480is too high.
6.4.1 In the MD 1.2Ethe Íollowingprotectionsare
possible:
generated
Protections
bythepowersupply:
o
o
o
.
Overload protection
Undedoad
Over voltage
Under voltage
DeÍlection:
o Horizontal Protection
o EW-Protection
r Vertical Protection
--+ Hick up mode
+ Hick up mode
+ Hick up mode
-+ Hick up mode
-+ Supply to standby
-+ Supply to standby
-+ BIMOSstandbymode
Soítware protection
-+ (ErroÍcode 1)
o BIMOS lC7119 deÍective
Set can be switched between standby and ON, but
there is no picture,no OSD,sound is only noise.
-+ (Error code 3)
. SDA or SCL shorted
Set is switchedto standbyvia standbyline,settriesto
restart.
-+ Set is switchedto
o No +SDbor +8ScatgC
standbyvia standbyline,settriesto restart.
6.4.2 Power supply protections
Thepowersupplywillgo to a verygoodaudiblehick-up
modein the followingsituations:
r Overloadprotection
r Underload
o Overvoltage
o Undervoltage
ln hick-upmode
Pin1 of 1C7520startsup fromthe startcircuitÍor
approximately
2 seconds,immediately
afterthatthe
protectionis astivated.Thiscycleis constantly
repeatedin
hick-upmode.Whenthe set is in hick-upmodea short
squeakis audibleevery2 seconds.
6.4.3 Horizontahprotection
Whenthe beamcurrentbecomestoo highÍor a longperiod
thevoltageacrossC2450willdrop.D&50 willstaÍt
conductingand as soonas thevoltagedropacrossR34S6
is 0V7,TS7450willconduct,makingPROThigh.
Viathe hold-circuitry
of the powersupply,the,setwillstayin
the protectionmode(standby)andcanonlybe resetby
switchingthe set off and on viathe mainsswitch.lÍ the Íault
is stillpresent,the set willswitchto standby(protection
mode)again.
Note:
A cunent throughthe Easwest stage that
is too high can be causedby a defective
part in the line-deflectíoncircuitrv!
The currentthroughthe EastArVest
stageis measuredon
the LSPvia2 precisionresistors(R3483and R3484).
In caseoÍ a lineproblem,the easvwesÈcurrent
becomes
too highandthe voltageacrossresistorsR3483andR3484
rises.Whenthe voltagelevelexceeds0.6V,D6480stans
to conductand STANDBY-SUPPLY
PROTECTION
becomesHIGH.Whenthe voltageacrossC2480is very
high
(e.9.whena lineproblemís alreadypresentwhenthe set is
switchedon withthe mainsswitch),D6zl81and D6,f82
conductand EW-PROTECTION
is activatedveryÍast.
protectionbecomesactivein theÍollowing
The East/West
cases:
1. BadcontactsoÍ horizontaldeÍlectioncircuit:
. badcontactsof horizontaldeflectioncoil
r badcontactsoÍ linearitycorrectorcoilL542i
. bad contactsoÍ S-correctioncapacitoÍC2427
2. BadcontactsoÍflyback capacrtorC2425.
3. ShortedflybackdiodeD6421or D6423.
4. ShortedS-correction
capacttoíC2427.
5. Badsoldercontactsin the lineoutputstage.
WhenEW-protection
hasbeenactive,the lineoutput
transistor7420mayalsobe defective.
6.4.5 Vertical-protection
Theverticaloutputstagecreates
VERTICAL-PROTECïON
pulsesat everyflybackpulse
whenit is functioning
correctly.Thesepulsesaresensedby
the BIMOSlC7119-4Don pin37.Whenthepulsetrainis
interrupted,
the BIMOSwillswitchto BIMOSSTANDBY
mode.Inthe BIMOSSTANDBY
mode,theBTMOS
switches
oÍf the VDRIVE+andVDRIVE-whilethe RGBoutputsare
blanked.
Circuitbreaker'l463maybe open.Probably,
the
lineoutputstagewill notworkandthe powersupplywill
switchto hick-upmode(undervoltageprotection).
6.4.6 Software protection
The softwareprotectionis managedby the microprocessor.
It continuously
verifiesthe presenceof the +5 and +8
supplyvoltageson pin34 andthe activityoÍ the l2Cbus.
Whenthe pÍotectionbecomesactive,the soÍtwarewill
switchthe powersupplyon andoff continuously
viathe
STANDBYline.In this situationthe powersupplyproduces
a squeaking
sound.
6.4.4 Ew-protectaon (not Íor 21" sets)
The EasVWest
protectionswitchesthe powersupplyto
standbyvia the signallineSTANDBY-SUPPLY
PROTECTION.
Viathe hold-circuitry
of the powersuppty,
the setwill stay in the protectionmode(standby)andcan
onlybe resetby switchingthe setoÍf andon viathe mains
switch.lf the Íaultis stillpresent,the setwillswitchto
standby(protection
mode)again.
PCS 82 272GB
ServiceModes,DST,Errormessages,
-
-
6.5
l'C protection
The l2C bus is controlledat each l2O-command.
ThereÍoreevery l2Ccommand has a defined starístop
condition.When the defined start/stopcondítionis
repeatedlyincorrect,error 3 is placed in the enor buffer
and the set switchesto software protection.
l2C-protectionis generated in the Íollowingsituations:
. SDA shortedto earth
. SCL shoÍted to earth
. SDA and SCL shorted
When SCL or SDA is shorted,the set tries to restart
and the LED lights in a clearly recognisablepattern.
. SDÁ/SCLshorted when the set is switchedON with
the mains switch:
LED is 8 secondsRED, 8 secondsGREEN,flashes
RED,8 secondsGREEN,flashesRED, 8 seconds
GREEN,flashes RED, etcetera.
. SDIy'SCLshorted during operation
LED is I secondsGREEN,flashesRED, g seconds
GREEN,Ílashes RED, ercetera,
6.5.2 Fault Íinding in the power supply
In caseof a powersupplyproblem,the powersupplycan
be simpliÍied
to a standalonepowersupplyat lowvoltages
(lowrisk)as Íollows:
Controlpart oÍ the powersupply
1. Disconnect
the SSP(asa resultthelinewillnot
functionanymoreandthereforewill no longerbe a
loadoÍ the powersupply)or disconnect
the lineby
removingjumper9400and R3400(if present)on the
LSP.
2. Connectan externalDC powersupplybetweensupply
- withcathode
pin 1 1C7520
(viaa diode- e.g.BYDSÉID
to supplypin 1 1C7520)
and hotearth(e.9.earthoÍ the
bigsmoothingcapacitorC2505).
3. Connecta oscilloscope
to testpointP4 at pin g ICZSZO.
4. Turnup the exteÍnalDCsupplyvoltageslowlyto 17V
DC.
Remark:
+SDb and +8Sc protectionof the microprocessor
+SDb and +8Sc are the main supply voltagesof the
entire small signal procêssingoÍ the set. At pin 34 the
microprocêssorsenses whetherthe supply voltages
+SSDbor +8SccomingfÍom the powersupplyare
present.When one or both the supply voltages are
míssing,the set switches to soítware protection.
Faultfindingand repairtips
Note that Íor 21' sets, voltages and wave forms may differ.
ThelC stattsat a supplyvoltageof 14VDC,
after that the supplyvoftagecan drop to
approx.9V DC.At approximately18VDC,
over voftageprotectionbecomesadive,
resultingin a supplyvoftagedropbelow 7V
DC beforea new staft-upis performedby
turningup the supplyvoftageabove 14V
DC.
5. Thecorrect(measured)
situationis displayedin . Other
resultsindicatea deÍectin the powersupplycontrol
part(1C7520
or peripheral
components
at pins10or
11 ) .
6.5.1 General
LEDandication
afterstart-upprocedure
is completed
-
-
-
No LED
Set is switchedOFF, supply problemor microprocessor
problem.
LED continuously
Set is in standby,control part deÍective,standby mode
defective.
LED blinking
Set in SDM, transmittingerror bufÍer.
Audible checks
- Demagnetisationaudible: mains voltage is present at
LSP.
- EHT audible:supply is operational(line output stage
only works in case VOS (+140Vfor 25 & 29'; +95V
lor 21") is present.
- Hick-up sound power supply audible:power supply is
shorted. Check the LOT (item 5430) and the line output
transistorTS7420.
PCS 82 273 GB
Figure6.2:
SV/div;
+
SuS/div
zlOKHz
pulse
EnergytÍansÍer oÍ the powersupply (only iÍ control
part is OK)
6. Applyaction1, 2 and4 as describedearlier.
7. Connecta lampof 230V/100W
acrossthe VOSoutput
capacitorC2569.
8. Connect a 1kQ resistorbetweenthe +SSTANDBY
(connector7L10) and the STANDBY line (connector
8L10) to switch the power supply to normal operation.
9. Connectthe mains connectorto a VARIAC but leave it
at 0.
10. Connect a voltmeter across C2569 and an oscilloscope
between the drain of TS7541 (25 & 29) or TS7540
(21")and hot earth.
11. Slowlyincreasethe mains inputvoltageby the VARIAC
(in this way further damage to the power supply can be
avoided).
---------------l
Protections,FaultÍindingand Repairtips
The wave forms Íor the Íollowing mains voltage aÍe given:
Mains in voltage
lOVAC:
20kHz and VOS 7V5
2OV AC:
40kHz and VOS 30V
ztOkHzand VOS 80V
4OV AC:
zlOkHzand VOS 1,10V
65V AC:
> 65VAC:
Stablesituation,so 40kHzand140V
In caseof a feedbackproblem,the situationwillnotstabilise
or the voltagewillexceed140V(95Vwith 21')
1. Figure6.3:
Mainsin 10V AC
10v/div; 1Ous/div
ffiffi
l+-t-t-L.trl-t-1-l-lJ
H*#fll-HrflH
rfiiïftj-tH
n--|-rï-rrn-t
fffiffiHtÏf\ffi
2. Figure6.4:
Mains in 20V AC
20vldiv;
SuS/div
+
zlokHzpulse
+
VOS3OV
ffiffi
Ht+++-llt+i-t_1
3. Figure6.5:
Mains in 40V AC
S0V/div; SuS/div
ulokHzpulse
+
VOS8OV
ffiffiF
4. Figure6.6:
Mains in 65V AC
S0V/div; SuS/div
+
40kHz pulse
+
VOS 14OV
ffiffi
Íïï]ïflï-ïïÏ]
F+#+fl-I-rt-fi
frrï--rm-n
ffiffiffi
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ffi
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6.5.3 Fault finding oÍ the horizontalcircuitry
When the horizontalcircuitry itselÍ is defective,h can be
simplifiedto a stand alone'switched mode supply"at low
voltages (low risk) as Íollows:
1. Disconnectthe set Írom mains.
2. Discoínect the SSP by removingall cables to the SSp.
3. Conneotan eldemal 50V DC (or 40V DC) supply with
current measurementpossibilityacross C2400.
4. Replacethe HDRIVE by an eliternal LF generator[fTL
level (between0 and 5V); duty cycle 50olo)with a t6 kHz
pulse at the base oÍ TS7410 (near LOT at the side of the
PCB).
5. Connecta oscilloscope
to testpointL1 (collectoroÍ line
outputtransistor 742Q\.
Possibilities:
1. Figure
6.7:
L3;testpointat collectorlineoutput
transistor(7420)
S0V/div; lOps/div
CurrerttÍromexternalDCsupply
approx.100m4
Obseruation:
normal l6kHz pulses and 100mA suppty current
CorrecthóÍizontalcircuitry
Notethatihè amplitudeoÍ the signalstronglydependson the
Írequencyof the generator.
2. Figure6.8:
L3;test pointat collectorlineoutput
(7420)
transiBtor
S0V/div; lossidiv
Line deflection open'.
Current from e)dernalDC supply is
appÍoximately100m4.
Obseruatlon:
Causes:
small pulse followed by wide pulse and 100mA
supply current
horizontal deflection coil open
linearity coil L5421 open
S-conection C2427 open
3. Figure6.9:
L3;test pointat collectorlineoutput
transistor(7420)
SoV/diq 1ops/div
CurrentfromexternalDGsupply
approx500m4!!
Obseruatlon:
Cause:
fast oscillations and 500mA suppty cunent
horizontal deflection shorted (e.9. line
deflection coil shofted)
When the line deflection is not completelyshorted but
only a number of windings are shorted,the wave Íorm
does not show the oscillationand the curront of the
e)Íernal DC supply is approximately200fnA.
4. Figure
6.10:
L3;test pointat collectorlineoutpui
transietor(7420)
1O0V/div; 1OpS/div
Currentftome)dernalDCsupplyis
approximately
150mA
Obseruatlon: flybacktimeis shofter,one exta pulsein
between,150mAsupplycunent
Cause:
flybackcapacitorC2425open
5. Figure
6.11:
L3;test pointat clllectorlineoutput
(7420)
transiÉtor
1OOV/div;1OrrS/div
CurretltfromexternalDCsupply> 1A
Obseruatlón: 2 pulsesper cycleextraand supptycurrent
frommorethan1A
Cause:
short-circuitin picturetube
(e.9.EHTto Aquadag)
ServiceModes,DST,Errormessages,
6.5.4 Faultfinding "no picture,no protection"(problemin
Thestartup phaseoÍ the setcan be identiÍied:
the video controller lC part TDA8366-4C)
When there is no pictureand no protection,it is most likely
that there is a problem with the BC_INFO caused by the
ïDA8366, the RGB ampliÍiersor the picturetube.
For measuring, connect a video generator (e.9. PM5518) at
the aeriAl input with a white pattern to the tuner. Trigger the
oscilloscope field ftequent. A stable picture is obtained if
triggeredwith VDRIVE+at pin 4 511.
1. A bright white hórizontalline at the top; the rest oÍ
the picture is darlt
(sethangsin firstphaseoÍ startup procedure)
pictureoÍ the voltageoverthe gunslooks
Oscilloscope
likefigure6.12.
TDA8366(1C7119),picturetubeand RGBamplifrersare
OK
Thereshouldbe 4.5Vat pin16TDA8366.
Normal start up procedure
1. FirstphaseoÍ start up; 4 white measuringlines (lines15,
16, | 7, 18) and the main picture is muted (wave forms
are better visible ff the picture tube is cold);
2. Smallhorizontalrcd, greenand blue lines at the top;
the rest oÍ the pictuÍe is dark
(sethangsin secondphaseof startup procedure)
Figure6.12:
Red (pin 8 oÍ connector R43 on the
CRT panel)and green gun (pin 6)
1O0V/divDC:
100us/div
TDA8366is OK
The total beam current is measured and fed back to pin
16 TDA83660C7119)
The TDA8366 checks the voltage at pin 16 of the
TDA8366 during these lines
< 4.5V :
set remains in this phase
> 4.5V :
set continueswith start up phase 2
2. Secónd phase of start up; each beam is separately
measuredand the main picture is still muted. Line 15 is
Red, line 16 is Greenand line 17 is Blue.BC_INFOis
measured.
- differencesbetween the lines (guns) are
compensated
- when the diffeÍencesare minimal the set continues
with phase 3, otheruise it remains in phase 2
Figure6.13:
Possibleproblem:iÍ thereis no 4.5Vpresentat pin 16 oÍ
TD48366,thereis a defect(inoneor moreoÍ the
Inthe BC_INFOÍeedbackloop.
components)
[HfIFIl
Red(lower
line)(pin8 ofconnector' f+JJq+t+{4q4
R43ontheCRrpanel)
andsreen l-TT-TH-tTf
(upper
line)sun(pin6)
.FlTTfmmm
SOV/divAC;
H-i-lt_t-t-l
100!s/div
3. AfterstaÍtup the pictureis presentanddifferences
in
cut-offpointsof the R,the G andthe B gunare
compensated
continuously.
RepaiÍproceduÍe
Typicalsituation:no pictureand no eÍÍoÍ codes
- Switchthe seton.
- In a 4:3 set,press"pictuÍesize' to switchthe setto "16:9
compressed"
mode.
- In a 16:9set,shiftdownthepicturewiththecursorkeys.
Possibleproblem:oneor moreof the gunsoÍ the
picturetubeare bad
Measureat pin '16TDA8366whichfeedbackline(s)(the
R or G or B liÍle)is/aresmaller;the corresponding
ampliÍier(s)
or gun(s)is/areÍaulty.
3. No lines visible (pictuÍedark)
Measurepin 16TDA8366;possiblemeasuremênts:
- 0V:
CheckTDA8366(sandcastle
andthe
supplyvoltage)
- 5V:
CheckRGBamplifiers
shortpin16TDA8366
to ground,
nowtherewillbe measuringlines(at
continuously
5V, phase1 and 2 is
bypassed)
- Pulses:
thereis a measuring
line,so the
TDA8366is OK
Measureon cathodeon the CRT
paneliÍ the measuringlinesare
present:
Yes + BC_INFO circuit is open
No
or no HEATER voltage
RGB ampliÍier problem
Protections,Faultfindingand Repairtips
PCS 82 274 GB
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8. Electricalalignments
General:
the Service Default Mode (SDM) end
ServiceAtignmentMode (SAM) are
described in chapter 6.
Alignment @nditions:
All electricaladiustmentsshould be peíormed under the
following conditions:
. Power supply voltage: Z4OV! 1O%,50H2r 5%.
. Warm-uptime:-'10 minutês
. The voltagesand,oscillogramsare measured in relation
to the tuner earth.
. Test probe:Ri > 10Me; Ci < 2,S pF.
8.1
Adiustmentson the largesignal panel
8.2
8.2.1 40.4MHzlF Íilter (only Íor sets with SECAMLL'
reception)
Using a signal generator (e.9. PM5326)and a capacitoroÍ
5,6 pF supplya 4O,4MHz signalto pin 17 of the tuner.
Connect an oscilloscopeto pin 1 of fitter 1016. Switch on
the set and select in the installationmenu MANUAL;
SYSTEMEUR.W.Aligncoil L5117 Íor maximumDC output
voltage.
8.2.2 AFC
Switchthe setto servicedeÍaultmode(seechapter8).
Usinga patterngenerator
(e.9.PM5518)
supplya signalon
a frequencyot 475,25MH2
Aligncoil L5114for optimalpicturequality.
8.1.1 95V/140V
supptyvottage
For21'7v-seÍs
Connecta voltmeterto the cathodeoÍ D6567.
Withthe aidoÍ R3532adjustthe powersupptyvoltageto
95V t 0.5V.
8.2.3 Picture demodulator (only Íor sets with sEcAM LL,
reception)
For sets21.
Connecta voltmeterto the cathodeof D6567.
Withthe aidoÍ R35S9adlustthe powersupptyvoltageto
140Vt 1V.
(e.9.PM5326)
Usinga signalgenerator
supptya 32.9SMHZ
signalvia a 5,6 pF capacitorto pin 17 of the tuneÍ.
Alignthe signalleveloÍ the generatorso thatthe Dc-voltage
on pin 5 of thetuneris 5V.
Switchon the set andselectin the installation
menu
MANUAL;SYSTEMFRANCE.
AligncapacirorC2106Íor
minimalvoltageon pin5 oÍ thetuner.
8.1.2 VG2 adiustment
Connecta pattemgeneratordisplayinga full blackpicture.
Switchthe Tv-setto the servicedefaultmode
(seeohapter6). Connectan oscilloscope
to the picturetube
cathodesÍor
red,greenandblue(pins6,9 en 11 ófthe
picturètubesocket).Setthe oscilloscope
to DC,SOv/div
and2 ms/div.Measurethe DClevelof the mèasuring
pulsesat theendof theÍrameblanking
(seeÍig.8.1).
Usingthe Vg2 potentiometer
(bottom
on the linetransÍormér
potentiometer)
the measuringpulse
withthe highestlevel
mustbe setto +160VI 2V.
8.2.4 RF-AGC
lf the signalof a stronglocaltransmitter
is distorted,align
thevaluefor AX (AGCcrossover)
in the seÍvicemenu
(seechapter8) untilthe pictureis no longerdistorted.
8.2.5 Audio demodulator (Not Íor sets with LL' and
NICAM reception possibility)
(e.9.PM5326)
Usinga signalgeneratoÍ
supplya 38.9MHz
signalvia a 5,6 pF capacitorto pin 17oÍ thetuner.
Connectan oscilloscope
(2ms/div)
to pin '12of lo70g3
(IDA3845).AligncoilL5030Íor minimalamplitude.
MEASURING
PULS
i
;I
8.3
Picturetube alignments
8.3.1 Whitebalance
Figure8.1
8.1.3 Focusing
lsaligned
usingtheÍocuspotentiomèter
onthe
linetransformer
(toppotentiometer).
PCS 82 295 GB
Alignments on the small signal panel
Connecta patterngeneratorandselecta whitepicture.
(63)for 21'or to 40 Íor 21'
Setcontrast
to maximum
tv-sets.Usethe t / I keysto selectan alignmentandthe
* / - keysto changethe value.SetGDto 50, RDto 57
and BDto 45.
lf necessarychangethe settingsÍor RDand BDÍor a
coÍrectwhitebalance.
8.3.2 Geometryadjustments(Íor soÍtwareversions
Ml 2COx-3.xand Ml 2BA<-x.x)
Connect
generator
a pattern
andselecta geometry
pattern
(signalat 475.25MHz)
. Switchto the ServiceDeÍaultMode,thento the Service
Alignment
Mode.
. Selectthe desiredalignmentwiththe / keys.
I I
. Changethe selectedalignmentwiththe - / - keys.
. A valuebetween0 and 63 canbe selected.
. Changedvaluesare storedimmediately.
Vertical
VP : VeÍticalShift
SetthisÍor the corÍectverticalposition.
VA:
Pictureheight
SetthisÍor the correctpictureheight.
VL:
Vefticallinearity
Setthisso thatthe verticalcentÍeoÍ the pictureis at
the centreoÍ the tube.
VS : VerticalS-correction
Setthisso thatthe heightof the squaresin the top oÍ
the pictureequalthe heightin the bottomoÍ the
pacture.
Horizontal
HD : Horizontal
shift.
Setthisso thatthe horizontal
centreoÍ the pictureis
on the centreof the tube.
Forsetswitha screensizelargerthan21.,thefollowing
alignmentscanbe doneas well.For21"setsthese
alignmentshaveno function.
HW : East-westwidth
Alignthe picturewidthwiththis.
HP : East-westparabolaconection
Setthisso thatthe veÍticallinesat thesidesof the
screenare straight.
HC : East-westcomeÍ-correction.
Setthisso thatthe verticallinesarestraightin the
coÍners.
HT: Trapeziumcorrection
Setthis so thatthe verticallinesareas verticalas
possible.
Adiustments
for 16:9sets (reserved)
16 = N 4:3tube(options
SS,D1, D2,D3andD4not
available(blue))
16 = Y 16:9tube(options
SS,D1, D2,DgandD4available)
8.4
Options
E2:
UO:
LL :
Nl :
TT :
ET :
14 i
Hl :
M2:
Numberof Euro/Scart
(optionsN or y)
connectors
N
1 Euro/Scaft
connêctorpresent
Y
2 Euro/Scartconnectorspresent
Tunertype
N
UHF /HFtuner(itemi000 is UV916S)
Y
UHFtuner(item1000is UV944S).
Usedin the UnitedKingdom(05 sets)
NicamL (optionsN or Y)
N
NicamL notpresent
Y
NicamL present(NicamL panelrequired
and.item
7353is MSP3410)
Nicam(stereo)sound(optionsN or y)
N
Only2CSstereo,no Nicam(itemZ3S3is
MSP3400)
Y
2CSandNicamsterêo(item7353is MSp341O)
Telete)d(optionsN or Y)
N
No Teletextpresent
Y
Teletextpresent
(EasternEurope)teletexttype(optionsN or y)
N
No EasternEuropeteletext
Y
EasternEuropeteletelt (/Sgsets)
14:9PictureÍormatsupported
by 4:3tube
(optionsN or Y)
N
Notsupported
Y
Supported
Histogram(notwithsoftwareversionM12BAx-x.x)
N
present(optionsVG,VA and
No Histogram
NL notavailable(blue))
Y
present(optionsVG,VA and NL
Histogram
available)
MD1.1Eor MD1.2Echassis
(onlywithsoÍtwareversionM12BAx-x.x)
N
MDl.1Echassis
Y
MD1.2Echassis
Largesignal panel/ GroB-SignalPlatine/ PlatineÍorts signaux
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small signal panel I Ktein-signal Platine / Platine petits signau(
7600
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31
28
Q7
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cs 82 297GB
11. List oÍ abbreviations
AC
AF-AMP
AGC
AM
ATS
AQUADAG
AUD-TERR_AM
AUD1-TERR-AM
AUDIOL
AUDIOR
AUDIO_L
AUDIO-R
Alternating
Current
Audiofrequencyamplifier
AutomaticgaincontÍol
Amplitudemodulation
Automatic
TuningSystem
EarthÍromthe CRT
Audio(AM)fromthe antenna
Audio(AM)Íromthe antenna
Audioleft
Audioright
Leftto DBEmodule
Rightto DBEmodule
B
B-IN
BC_INFO
B-SC-INPUT
B-TXT
(B-Y)rN
(B-Y)OUT
BC-INFO
BG DK STEREO
BGLINICAM
BGLI STEREO
BG-ST/NIC
BK
BLANK
BLK
BLKSTR
BLS
BLKSCREEN
BM
B_OSD
Bluesignalto CRTpanel
Bluesignalinput
BeamcurÍentinÍormation
BlueinputÍromEuroconnector
BlueTeletextsignal
B-Yinputsignal
GolourdifÍerencesignalout
BlackcurrentinÍoÍromCRTpanel
SystemPALBG DK;stereosound
SystemPALBGI;NICAMsound
ThestereosignalÍromPALBGIor SECAML
SystemBGstereowithNICAMsound
Burstkeypulse
Blanking
signal
Blackstretch
Blackstretch
BlacklineS
Blankscreen,signalfromthe microcomputer
Blackmatrix
Blueon screendisplaysignal
C-AFU
C_FILTER
C-FRONT
C-INPUT
CRT
CRT..
cTl
CURR.SENZE
CUT-OFF
CVBS
CVBSff-FRONT
NPUT
CVBSIí_SC2/FRONT-I
CVBS-COMB/TXT
CVBS-SC1-INPUT
CVBS-SC2
CVBS-SC2-OUT
CVBS-SECAM
CVBS-TERR
CVBS-TERR/SAT
CVBS_ÏXT
CVBS_SAT
Centresignalto module
filter
Chrominance
signalÍromseparatecontrolspanel
Ghrominance
ÍromEuroconnector2
Ghrominance
CathodeÍaytube
lndicatorÍor difÍerentCRTtypes
ColourtÍansientimprovement
Currentsenseto detectcurrent
Signalto alignthe blackleveloÍ the RGBsignals
VideoBlankingSynchronisation
Composite
fromseparatecontrols
CVBSor luminance
input
signalfromEuroconnector/front
CVBS/luminance
CVBSsignalto teletext
CVBSsignalÍromEuroconnector1
CVBSsignalÍromEuroconnector2
CVBSoutgoingsignalfromEuroconnector2
CVBSsignalto SECAMlC
CVBSfromthe antenna
CVBSSignalfromantennaor Íromsatellite
CVBSto Teletext
CVBSsignalfromsatellitetuner
D/A
DACA-L
Digitalto analogueconverter
LeftoutputsignalfÍom DFPto headphone
(independent
volumecontrolled)
RightoutputsignalfromDFPto headphone
(independent
volumecontrolled)
LeÍtoutputsignalÍromDFPto loudspeaker
RightoutputsignalÍromDFPto loudspeaker
DirectCurrent
Degaussing
delay
Luminance
Detector
DigitalSoundProcessor
Demodulator
DACA_R
DACAM-L
DACAM-R
DC
DEGAUSS
DEI.AY
DET
DFP
DEMOD
rE
EAR1
EARTH
EASTEU
EHT
EHTINFO
EHTINFO1
EW
EW_COMP
EWD
Earth1 (ground)
Earth(ground)
EastEuroPe
ElÍra hightension
Voltagerelatedto beamcurrent
Voltagerelatedto beamcurrentto CRTpanel
East-west
East-westcomPensation
Easfwestdrive
FBL-IN
FBL-OFF
FBL-PRESENT
Fast blankingin
Fast blankingoff
From Euro connector,detects if theÍe is a full page RGB at the
Euro connectoror OSD or a MENU Írom an e)dernalsource
Filamentfor the CRT
Frequencymodulation
Foldback
Frame deflectionright signal
Signal to detect iÍ on separate controls panel video signals are present
Input ÍÍom separate controls panel at Íront side oÍ the TV set
FILA_CRT
FM
FOLDB
FRAMEDEFL_R
FRONT-DETECT
FRONT-INPUT
G-IN
G_OSD
G_SC-INPUT
G-TXT
G.Y
G-Y MATRIX
GND..
GND-AUDIO
GND_KEYBOARD
GND-LIGHTNING
GND-LINE-SS
GND-VO
GNDB
GNDD
G^/
Green signalin
Green (on screen display) signal
Green input from Euro connector
Green Teletextsignal
Colour difÍerencesignal
RGB luminancematíix
Ground..
Ground
Ground oÍ keyboard
Groundon mainsmodule
Ground Írom SS-panelÍor line drive
Groundto the audioamplifier
Ground to the deflection
GroundB
GroundD
Green signal to CRT panel
H
HDRIVE
HEATER
HFBL
HPULSE
HIST
Horizontalpulse
Horizontaldrivesignal
Output voltageto the tube heater
FeedbackÍrom line deÍlection
From deflectionmodule, horizontalpulse Íor OSD synchronisation
Histogram
IiBG
IDENT
INICAM
IF
INT/EXT
IRQ
ITT
lac
uo
To Sound module, selectsthe audio system
ldentiÍication
System NICAM/PALI
lnteÍmêdiate-ÍÍequency
Internalor externalswitching
From the Satelliteor Teletext module, interruptsignal Írom these modules
Type indicationSound module
lnteÍ lC bus
lnpuVOutput
LED
LF
UL
LINEDEFL_CS
LINEDEFL_LIN
LOT
Light emittingdiode
Low Írequency
To BIMOSmoduleand Soundmodule,switchesbetweenthe L and L'system
Connectionfor geometry coÍrectionpanels
ConnectionÍor geometry correctionpanels
Line output transformer
NC
NICAM
NICAML
NO NORDIC
NTSCMiBG
Not connected
Near InstantaneousCompendingAudio Multiplex (digitalsound system)
System L-NICAM
Not usêd in set for NoÍdic countries
Switchingsignal
OK
Correct
Oscillator
GND SOUND SUPPLY
osc
PCS 82 297 GB
\--
List of abbreviations
PAL
P-GND
PHASECOMP
PLL
POR
PROT
Phase AlternatingLine (colouÍ system)
Audio power ground
Phase compensation
Phase lock loop
Power-on reset
Protection
R
RC5
R.IN
(R-Y)rN
R-OSD
R-SC-INPUT
R_TXT
R-Y OUT
RGB
Red signal to CRT panel
Remote Control signal
Red inputsignal
Colour difÍerence (R-Y) input signal
Red (on screen display) signal
Red input Írom Euro connector
Red Teletext
Colour difÍerencesignal out
Red Green Blue
SAND
SANDl
SBUS
SCART_L
SCART-R
SAT
SCL
SCLI
SDA
SDAa
SDAI
SECAM
SECAM L
SELECT
SEP CTRL
SF
SIF
SIF-SAT
SNDL
SNDL_CL-OUTPUT
SNDL-FRONT
SND_HEADP-OUTPUT
SNDL-SC1-INPUT
SNDL-SC1-OUTPUT
sNDL_SC2JFRONT_tNPUT
SNDL_SC2-OUTPUT
SNDL_SPEAKER
SNDR
SNDR-CWL_OUTPUT
SNDR-CL-OUTPUT
SNDR-FRONT
SNDR-HEADP-OUTPUT
SNDR-SC1-INPUT
SNDR-SC1-OUTPUT
SNDR-SC2-OUTPUT
SNDR+-SPEAKER
SNDR-SUBW
SOUND-ENABLE
SOUND-SUP
STANDBY
STATUSl
STATU52
STD..
SVHS
SYNC
SYNC_TXT
SYS
SYS..
1SC
2SC
Sand castle
Sand castle signal to Scan module
Sound bus
SoundsignalL Írom EuroconnectoÍ
Sound signal R from Euro connector
Satelllte
l2CClock signal
Serial clock pulse
l2Cdala
To every other module, serial data
Serial data pulse
SEquentielColeur A MemoiÍe (coloursystem)
System L-SECAM
SelectionsignalÍor Euroconnectorsor separate controls
Separate controls
Super flat
Sound lF
Sound lF Írom satellitetuner
Sound left,
Left sound to CL output Írom sound module
Left sound signal Írom separate controls panel
Output sound lefi to the headphoneconnector
Left sound output signal from the audio module
Output signal, sound left to Euro connector 1
lnput signal sound L Írom EuÍo connector2 or Íront input
Output signal sound L to Euro connector2
Sound L signal to loudspeaker
Soundright
RightCWL audiosignalÍrom Dolby
Sound right, constant level output to rear cinches
Sound right from separatecontrols panel
Output sound right to the headphoneconnector
Inputsignal,sound Íightto Euroconnector1
Output signal sound R to Euro connector1
Right sound to Euro connector2 output from sound module
Sound R signal to loudspeaker
Sound R signal to subwooÍer
To the Audio Amplifiermodule, switcheson and ofÍ the amplifier
Supply voltage of amplifier
To supply module, switchesthe set in and out oÍ standby
Status signal Írom Euro connector input to control module
Status signal from Euro connector2 input to control module
Indicatorlor differentstandards
SuperVHS
Synchronisationsignal
Synchronisationsignal lrom Teletext
System switchingsignal
IndicatorÍor difÍeÍent systems
One carrier sound
Two carrier sound
TCLK
TDATA
TUNING
TUN
Teletextclocksignal
Teletextdatasignal
Tuningvoltage
Indicatorfor diÍÍerenttuners
VDRIVE
VDRIVE+I/D
VOS
VFRAME(+ or -)
VG1_CRT
VG2
VIF
VDD
VoD
V0D1
VoLOT
VoCONN
VP
VPROT
VPULSE
VSS
VSCAVEM
VT
Verticaldrive
Veíticaldrivepositiveside
140Volt(95VoltÍor 21')
Positiveor negativesupplyvoltageÍor frameamplifier
VG'l inputtothepicturetube
G2 inputto the picturetube
Videointermediate
Írequency
Supplyvoltage
Voltageusedin horizontaloutputstage
Voltageusedin horizontal
outputstage
Vohageto lin€outputtransformer
Voltageto Scanmodule
Videoprocessor
PÍotection
voltage
Fromdeflection
module,verticalpulsefor OSDsynchronisation
Ground
SupplyvoltageÍor SCAVEM
Tuningvoltage
Y_COMB
Y_FRONT
Y_OUT
YUV_ON/OFF
Y (orCVBS)signalto TDA8366
Luminance
signalÍromseparatecontrolspanel
Luminance
signalout
To Histogram/black
stretchmodule,switchon & ofÍ
UPR
IndicatorÍor diffeÍentcontrolsystems
WEST-EU
WestEurope
21"EUR
+
21"Europe
Present,in diversitytables
Not presentin diversitytables
12.Spareparts|ist/Stiik|iste/Listedespièces@EE
LARGE SIGNAL PANEL
tAI
Various
4422265 41461 10P conn.
L10,1'l,15
4822265 40421 6P conn- L19
4822 265 10742 7P conn.124
4422264 40207 3P conn. L25
4422 265 31247 3P conn. 128
48222653'1245 4P conn. L38
4822 265 30389 2P conn. L01,L02
4422 256 92053 Fuse holder
4422 49262076 Spring tÍansistor
482249270871 Spting
44224O4314a4
4822 40431488
4822 4O431483
4422 252 11194
4822 070 33152
4422 252 51't75
4422 071 52502
4822 252 51 1A6
LOT bracket (21')
LOT brackêt
Hêat sink bracket
19398Ê1 (0,8004)
2183.15(3.15A)
19398E1(2,500)
19372(2.54)
19398E1(2,0A)
2400
2401
2409
2410
2411
2412
2423
2424
2425^
2425^
4422124A1257
4822121 42004
4822'121 43A75
4822121 41a57
4822121 43A75
442212231175
4422 121 10507
4422 124 81315
4822121 70434
5322121 44345
47U'F1O"h 200V
'10%400V
1onF
47nF 5"h 250V
10nF5% 25OV
47nF 5"/" 25OV
1nF 10'l.500V
47OnF5"k 25OV
1pF 20% 16OV
1l n F 5 % 1 . 6 K V
15nF5% 1.6KV
2426^
2427
2427
2427^
2433^
2442
2450
2450^
2451
2460
4822121 4293/. 27nF 10oh 40ov
4822121 10506 560nF 5"/. 250V
4422 121 10507 470nF 5'l. 250V
4822 121 1.0563 0.82pF5% 250V
482212612274 1500pF 10o/o2KV
4822 124 81141 4.7$F zjók 16OV
4822 121 Í0619 22OnF'lyh 25OV
4822 121 40518 100nF 10"/"250V
4822 121 51252 47OnF5ol"63V
4422 126 11157 470pF 10"/. 500V
2461
2462
2463
2464
2465
2466
2470
2471
24A0
2441
482212480791
482212480791
4822 126 11157
5322 124 4146A
4422 126 1'1157
44221244't334
4422 126 12638
4422 126 13614
482212440769
4822 126 11'157
2487^
2500^
2501
2504
2505^
2505^
2506^
2507
2508
2511^
482212440433 47ttF 20"h 25V
4822121 70285 47OnF1O"/.25OV
4822 121 70141 33nF s% 400V
4822 12231175 1 n F 1 0 o / . 5 0 0 V
4822'124 11772 150pF 20% 385V
4822 124 23492 220pF 50% 385V
4822121 404A7 100nF10% 40oV
4a?2124a1029 100[F 20% 25V
4a22'121 42007 100nF'10o/ó
l00V
4822'12611141 2.2nF 10Y.1KV
2512^
2520
2521
2522
2524
2525
25?6
2530
2531
2533
4822 126 11141 2.2nF 1O"/"lKV
4a22124A1029 1OO1LF
2O'h 25V
4822 126 1349A 82pF 5% 50V
4a2212231175 'lnF 10% 500V
532212't 42386 100nF 5olo63V
4A2212422263 22Op,F2Oo/ó25V
4822 126 11157 470pF 10o/o500V
4422 124 40769 4.7tLF2OoÁ1OOV
4a22 121 43066 1 n F 1 % 4 0 0 V
4422 124 41596 24tF 2O"/" sOV
2534
2535
2538
2540^
2542
2543^
2544^
2550^
2514
2557
4a2212233302
4422126 12451
4A22 122 33531
4822 126 12426
4822'12613595
4822 126 13451
4822 126 13451
4822 126 10727
5322121 42346
5322121 42489
2559^
2561
2563
2565
2568^
2569
2570
4822 124 40433 47pF 2oo/o25V
4a22124 4145A 4700pF 20olo16V
4822 124 a1139 22OOqF2O"h 16v
4822 124 81029 10OpF20% 25V
4822 126'12426 330pF 10% 1KV
4A22 124 A1257 47pF l9ok ?OOV
4a22 121 51379 82nF 5'l. 63V
1463^
't501^
1566^
1572L
1580^
{F
47O!LF2O"/" 16V
47OttF2O"/"16V
470pF 10ol.500V
1000pF 20% 40V
470pF 10o/o500V
47OpF2O"/.35V
6.8nF5% 50V
4.7nF 10% 50V
4.7ytF20/" 1OOV
470pF 10o/.500V
1nF 5% 50V
820pF 10ol.50V
2.2nF 10Y" sOV
330pF 10o/"1KV
220pF look 1KV
2.2nF 1Oó/o2KV
2.2nF 1O"/"zKV
3.3nF 20'lo 400V
100nF5% 63V
33nF 5% 2s0V
2572
2573
2575
482212231175 lnF 10% 500V
482212441663 220Ot!F20"A35V
442212613646 120P 5% 50V
2580
2581
2542
2592
2593
2602
2603
2604
2605
2606
4822 124 40723
4822 12231175
4822124A1029
4422121 43526
5322 121 423A6
4a22 126 10334
4A22 126 13499
482212233302
4A2212233302
482212233302
2200pF 20"/. 16V
1nF10'l.500V
1O0t F 2O"/" 25V
47nF 5o/o25OV
100nF 5"/" 63V
470pF 10olo50V
22OpF 5"k sOV
1nF 5% 50V
1nF 5% 50V
1nF 5% 50V
2607
2608
2605^
2750
2751
2751^
2752
2752^
2755
27s6
482212233302
4822'12233302
4822 124 40433
482212422263
4822 124 40756
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482212440769
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482212422263
1nF 5% 50V
1nF 5'l. 50V
47ttF 2O"/" 25V
22OttF 2O"/"25V
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.loFF
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Z2OOytF2O"h 35Y
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2760
2763^
2764
2765
2766
2776
2778
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2787
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4822 124 41579 10FF 20"/. 50V
442212441596 24rF 2O"/"5OV
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4822 12440215 1000pF 20'l.35V
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3402^
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3414
3415
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3420
3421
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3431
3432
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3435
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3450
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4822 11652243 1k55%0.5W
4422 1'1652243 1k55%0.5W
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4822 116 52297 68k5"/. 0.5W
4822 11643482 39k5%0.5W
4822 116 52297 68k 5% 0.5W
4822 116 83882 39k 5% 0.5W
4822 052 10688 6c)8 5% 0.33W
482211652304 82ks"/.0.5W
3450
3451
3452
3454
3455
3456
3/57
3/61^
3r';6't^
3462^
4822 116 83882
4822 116 83882
4822'116 43882
4822 116 83864
4822 116 52272
4822 116 83961
4822 116 52244
4822 052 10224
4822 052 11158
4822052 10224
3r''64^
3465
3466
3466
3467
3467
3470
3472^
3480
3480
4822 052 11568 5c)6 5./" 0.5W
4822 116 41682 2M2 s"/"OsW
4822 116 5229A 680k 5% 0.5W
4822 116 8'1783 lM 5 5% 0.5W
482211652235 1M 5./.0.5W
44221'1652294 680k5%0.5W
4822 116 52274 390k 5./" 0.5W
4822 0521022A 202 5% 0.33W
4A22 1'165223r' 100k5%0.5W
4422 116 52304 82k 5% 0.5W
3481
3442
3482
3483^
3484^
3487
3500.
3502^
3503
3505
4822050 11002 1k 10l.0.4W
4822 11652234 l00k 5"/"0.5W
48221'1652304 82k s% 0,5W
4822 05024708 4f,,7 1%0.6W
4822 050 24708 4c)7 1% 0.6W
442211652219 330cr5%0.5W
4822 1'1621224 1MA/387VVDFI
'10338
4822 052
3c,3 5% 0.33W
4422 11'l 20403 470r)100/.
4422 117 12074 7W 1í)5 10%
3506^
3509
3510
3511
3512
3518
4822 117 '12027 180-3kO 25% PTC
4822 116 52'186 22() 5% 0.5W
4422 116 52243 4k7 5% 0.5W
4822050 11002 1k 1"/. O.4W
4822 116 52243 1k5 50/o0.5W
4822 116 s2195 47O 5% 0.5W
22r) 5"/" O.sW
22c) 5"/" 0.5W
4k7 50lo0.5W
10Q 5./" 0.5W
5k65%5W
2k2sè/ó5W
47c,5%0.5W
680k 5% 0.5W
4k7 50h0.5W
10k 5"/" O.5W
39k 5% o.sw
39k 5"/.0.5W
39k 5% 0.5W
tok 5% 0.5W
330k 5% 0.5W
6k8 50/"
15k 50/o0.5W
202 5% 0.33W
1c,5 5% 0.5W
2c)2 5%0.33W
3519
3520
3521
3522
4422'116 52256 2k2 5"/" O.sW
4822053 12.183 18k 5./. 3W
4422 116 52304 82k 5% 0.5W
4A22 116 52219 330c! 5./" 0.5W
3523
3524^
3525
3526
3527
3528
3529
3530
3s31
3532
4822 116 52244 15k 5% 0.5W
4822052'10109 1ocl 5"/.0.33W
4822 116 52252 180k 5% 0.5W
4822 116 52175 100í) 5% 0.5w
4822 1'16 52144 27A 5"/" osw
4822 116 83464 10k 5./. 0.5w
4422'116 52207 1k2 5% 0.5W
482205022403 24k 1"/" O.6W
4422 116 52303 8k2 5% 0.5W
4 8 2 2 1 0 1 1 1 1 9 1 't0k 30% 0.1w Pot.
3s33
3534
3535
3536
3537
3538
3539
3540^
3540
354't^
4822 116 52234
4A22 116 52297
4822 116 83864
4422 116 52257
4822 116 83864
4822 050 11002
4822 116 83864
482211643027
4A22 117 11716
4822052 10102
12k 5% 0.5W
68k 5% 0.5W
10k 5% 0.5w
22k5ê/"O.sW
'lok
5./" 0.5w
1k'l% 0.4w
10k 5./.0.5w
oa22 5"k 3W
oo27 5"/.3W
1k 5./" 0.33W
4822 117 12621 330c) 5% 5W
3542
3543
4422 117 12621 3300 5% 5W
3544
48221't712076 5W 22k5"h
3545^ 4822 052 10159 15c,5% 0.33W
3553 4822 050 11002 1 k 1 % 0 . 4 W
4822 116 52175 100cr 5"/" 0.5w
3554
'160k1% 0.6w
3555
4822 050 21604
3556
4822 116 52175 100c!5% 0_5w
4A22 116 52234 100k 5% 0.5w
3557
4422 116 52263 2k7 5"/" O.sW
3558
3762
3763
3764
3765
3766
3767
4422 116 52243
4422 116 52257
4822 116 52303
4422 116 522A3
4422'116 52239
4822 116 52256
4k7 5% 0.5W
22k 5./. 0.5W
8k2 5./.0.5W
4k7 5"/" 0.5W
120k 50loO.sW
2k2 s7" O.sW
5400
5401
5410^
5421^
5421^
5424^
5430^
5430^
s463
5463
4822 1s7 71401
4A22 157 71403
482214240351
4822 157 63079
4822 157 10992
4822 157 53069
4822 140 10595
4822 140 10584
4822 1562091s
4422 157 52392
27VH
1spH
Line drive transÍ.
LC coil (21')
LC coil (otheo
Balance coil
LOT ELDOR(21")
LOT CML16P
3q1H
27StH
5480^
5503^
5525
5542
5544
5545
5550^
5550^
5567
4822 158 10728
4822 '14240315
4a22 157 70826
48?2157 70926
4A22157 70A26
4422 157 70426
4822 146 10366
4822 146 31469
4422 157 70426
Bridgecoil. 11[H
Mainsfilter
2.4ttB
2.4yt{
2.4pH
2.4tÈ
Transf. CE425V
transf.10290250
2.4pP.
5572
5572
5750
5751
4422'157 10452
4A22 157 71466
4422 157 10452
4822 157 104s2
10[H 10%
2.21tH20h
1 o p H1 0 %
1opH 10%
-)l-
4 8 2 2 1 0 1 l ' 1 1 8 6 470cl 30./.0.1w
Pot
4822't16 52256 2k2 5"/. O.sW
3560
4822 116 83864 10k 5% 0.5W
3561
3568
4A22 116 52234 100k 5% 0.5W
4A22 1't6 s2297 68k 5% 0.5W
3568
3570
4822 1't6 52213 1800 5'l" 0.5W
3573 482205312108 1í)5%3W
3 5 7 9 4 A 2 2 1 1 6 8 0 1 7 61 c l 5 % 0 . 5 W
3588^ 4822 052 11338 3c,3 5% 0.5W
3589 4a22 116 5223s lM 5% 0.5W
6423^
6424^
642s
6426
6441
6450
6457^
6460
6462
6463
4822 13041275
482? 13041602
4822 130 42488
4a22 130 42488
4822 130 42488
4A22 130 34281
4822 13030621
4822 130 42488
4822 130 70055
4A22't30 70055
BY22A/20
BYW95C/20
BYD33D
BYO33D
BYD330
BZX79-C15
1N4148
BYD33D
BYV27-400
BYV27-400
3590
3591
3592
3593
3594
3595
3596
3s97
3598
3601
4822 1't652284 47k5"/"O.sW
4A2211683872 220c)5%0.5W
48221168386410k5%0.5W
482205011002 1k1%0.4W
4822 1 16 83864 10k 5'l. 0.5W
4822 116 52303 8k2 5% 0.5W
'lk
10lo0.4W
4A22050 11002
4A22't16 83864 10k 5% 0.5W
4822't'1652234 100ks%0.5W
4822't16810391cr85%0.5W
6480^
6481^
64A2
6501
6503
6507
6508
6509
6510^
6511^
4822 13030621
4822 13030621
4A22 130 34258
442213034241
482213034281
4822 130 42488
4822 130 42606
4822 130 80655
4822 13031933
4822 13031933
1N4148
1N4148
BZX79-C56
BZX79-C15
BZX79-C15
BYD33D
BYD33J
BZX79-F2V4
'1N5061
360'1
3601
3602
3602
3602
3603
3603
3603
3604
3605
4822 116 8'1154 202 5% 0.5W
4 a 2 2 1 1 6 8 1 1 5 53 c r 9 5 % 0 . 5 W
4A22't1681039 lO85%0.5W
4822 116 A1154 2{r2 5"/" O.sW
5 3 2 2 ' 1 1 6 5 3 5 6 43 c r 3 5 % 0 . 5 W
4 8 2 2 1 1 6 8 1 1 5 42 c l 2 5 % 0 . 5 W
4 8 2 2 1 1 6 8 1 1 5 53 c ! 9 5 % 0 . 5 W
5322 1't6 53564 3c,3 5% O.5W
4A22 1't6 80'176 1c! 5"/. 0.5W
4822 116 52186 220 50/o0.5W
6512^
6513^
6524^
6525
6530.
6542
6545
6560
6561
6s62
4822 13031933
4822 13031933
4822 13031631
4822 130 42488
4822 130 30621
4822'130 42606
4822 130 41487
4A2213034174
4822 130 42488
4822 130 42488
1N5061
1N5061
BYV10-20
BYD33D
1N4148
BYD33J
BYVgsC
BZX79-C4V7
BYD33D
BYD33D
3606
3607
3608
3609
3610
3611
3612
3613
3614
361s
4822050 11002
4822 116 52226
4a22050 11002
4822 1'16A16a2
4A22 1't6 52249
4822 116 52249
4822't16 52283
4822 116 83864
4a22 116 52243
4a22 116 52276
6567
6567
6571^
6572
6580
6590
659't.
6592
6600^
6601^
4822 130 70055 BYV27-400
4822 13081123 BY229F-800
4822 13031982 BYV27-100
4A22 130 80791 BYV28-200/20
4a22 130 42498 BYD33D
4822 130 42606 aYD33J
4822 13030621 1N4148
4A22130a3704 BZX79-F13
4822 130 30621 1N4148
482213030621 1N4148
3616
3617
36'18
3619
3620
3621
3623
3624
3752^
3753^
4822 116 522A4 47k 50/oOsW
4a22 116 83474 220k 5"/" O.sW
4a22 11683872 220í25"/"0.5W
482211683872 22005'/"0.5W
4a2211652175' 100c25%0.5W
4822 116 80176 1c) 5'l.0.5W
4822 116 52234 100k 50lo0.5W
4A22 116 52256 2k25"/"O.sW
4822052 10828 8cr2 5"/.0.33W
4A22052 10428 8O2 5%0.33W
3754
37s6
3757
3758
3759
3760
3760
3761
3761
3762
4822 116 52256 2k25"/.O.sW
482211652269 3k35%0.5W
4A22 11652279 4k35700.5W
4A22 116 52257 22k5"/"O.5W
4A22 116 52291 56k 5% 0.5W
4 A 2 2 0 5 0 1 1 0 0 21 k 1 % 0 . 4 W
4a2211652249 1k850/"0.5W
4422 116 52256 2vC.5"/"O.sW
4422'11652269 3k35%0.5W
482211652206 120c)5%0.5W
3559
1k1'/.0.4W
560r) 5% 0.5W
1k 1"/.0.4W
2M25"/" O.sW
1k8 5'l" 0.5W
1k8 5% 0.5W
4k75%0.5W
l0k 5% 0.5W
1k5 5% 0.5W
3k9 5% 0.5W
1N5061
6763^ 4a22 13030621 1N4148
6764
4A22 130 34281 BZX79-C15
@f,;
4A22 130 42155
7410
7420^ 4822 130 63271
7421^ 4822 130 10779
7450^ 4822 130 44197
74aO 4A2213063726
7507
4A2213020296
7520^ 4822 209 90025
7540 4A2213063747
7541 4822 130 63698
7s55
4a2220941397
BF819
BU25O8AF
BU15O6DX
BC558B
MTP3O55EFI
8T137-600D
MC44603P
STP4NA60FI
STHSNA6OFI
TL431CLP
7556^
7560
7561^
7569
CNX82A
MCTSLOsACP
BC558B
L78MXX
4822 130 10025
4A2220972042
482213044197
4A22 209 90241
T
7580^
7590
7591^
7592
7s93
7600
4822 20980817
4822 130 20293
4822 13044197
4822 130 40937
4822 130 40937
4a22 130 42446
MC7800
P0102BA
BC558B
BC548B
BC548B
8D536
7601
7602^
7603
7604
7605^
7606
7760
7761
7763
482213060775
4822 13041344
'130
44s68
4822
4822 130 44568
13044197
4822
4822 130 44568
4822 130 40937
4822209 32641
4822 130 40937
2SD1266P
8C337-40
BC557B
BC557B
BC558B
BC557B
BC548B
TDA2616QiN1
BC548B
SMALL SIGNAL PANEL
tBI
1031
1032
4822 126 10002
4822 12233177
482212233177
532212234123
4A22126 13161
2142
2143
2144^
2145^
2154
2156
2157
2158^
2160
2161
4822126 13161 100nF10o/o
25V
4822 126 13161 100nF10olo
25V
5322 12234123 1nF10%50V
5322'122 34123 lnF 10ólo50V
4822 124 41246 47rF 2Oo/"16V
4822 126 13161 100nF10o/o
2sV
482212613161 100nF10%25V
4822124 40433 47VF 20% 25V
4A22126 13689 18pF 1olo63V
'10%
4822 126 13'161 100nF
25V
(PAL)
2161
2167
2169^
2170^
2'171^
2172
2173
2175^
4822126 13482 47OnF2oo/o
16V
íPlSec.)
5322 126 10223 4.7nF 10% 63V
(P/Sec.)
5322 126 10465 3.9nF 10% 63V
íPAL)
4a22 124 81029 100[F 20% 25V
4822 122 33'177 lonF 20% 50V
5322 126 10223 4.7nF 10o/ó63V
4822 122 33177 10nF 20% 50V
532212232531 100pF5% 50V
4A22 124 40756 lrrF 20'l. 100V
5322 12234123 1nF 10'l" 50V
2176^
2177
2178
2179^
2180
21a1
21a2
2196
2600^
2601
532212234123 1nF 10o/.50V
4A22 121 70661 100N 50/o63V
4A22126'13161 100nF10% 25V
4822 124 40433 47ttF 2O"/"25V
4A22126 13/.82 47OrF 2O/" 16V
4A22 126 13482 47onF 2o7" 16V
'100nF10'l.25V
4A22 126 13161
5322 122 32444 10pF 5'l" 50V
4822 124 41579 10[F 20"/"50V
4822 126 13161 100nF10% 25V
2606^
2607^
2650
2651
2652
2653
2655^
2659
2665L
2685^
4822 12233177
4822 12233177
5322 122 31946
5322 122 31946
5322 122 32448
5322 122 32448
5322 12234123
4a22 12440756
4822 126 10002
4822 12233177
27OO^
2702
2703^
2704
2705
2707
2708^
2709^
2710
2711^
4822 12233177 10nF20'l.50V
5322 126 10794 22OpF5"/" 63V
532212232654 22nF 10%63V
5322 122 32481 15pF 5'l.50V
4 A 2 2 1 2 2 3 2 1 3 9 ' t 2 p F2 " / "6 3 V
5322 12610794 22OpF5"k 63V
4822 126 10002 100nF20% 25V
4822 12233177 10nF 20% 50V
5322 12232452 47PF 5o/o63V
4822 126 10002 100nF20% 25V
2712^
2715^
2716L
2800
2801
2805
2812
2813
2817
2830^
5322 122 32654 22nF 1O"/"63V
4822 124 41579 10pF 20'l.50V
4822 124 41579 1opF 20% 50V
4A22122 31 175 1nF 10'l.500V
4A22 122 31175 1nF 10% 500V
4A22 124 4'1596 22pF 2O"/" sov
4822 126 13597 330pF 10'/.500V
4A22 126 13597 330pF 10'/" 500V
4822 126 13597 330pF 10% 500V
4822 124 41579 10pF 20% 50V
2835
2836
2837^
2840
2841
2847
2855
2856
2857
2858
4822 12231175 1nF 10'l.500V
4 A 2 2 1 2 2 3 1 1 7 51 n F 1 0 % 5 0 0 V
482? 126 10002 100nF20% 25v
4822 122 31175 1nF 10'/.500V
4822 122 31175 lnF 10% 500V
4A22 124 41596 22tF 20/" sOV
4a22 12613597 330pF 10'l" 500V
4822 124 41s96 22lrF 2O/" sOV
4822 126 13597 330pF 10'l" 500V
4822 124 41s96 22pF 20'l. 50V
2860
2a75
2a7a
2a79
4822 126 13161
5322 121 423A6
4a22 126 13473
4a22 126 13473
2162^
2162
Various
1000
1000
2137^
2138^
2139^
2140^
214't
4822 265 41461 10Pconn
s10,s1'1,s15
4822265 41451 9P conn. S33,S44
442226531246 6P conn. S41
4822267 31987 Pr.conn. 5100
4822 4O4314a7 Eracket SSP
4422 4O4 31527 Bracket Nicam L
4a2221O 10691 Tuner UV916S
482221O10731 TunerU944S
(UHF only)
4422.24242062 0FWL9454
38.9MHz(BGLI)
482224240303 0FWG9251M
38.9MHz
(BGDt(BG)
1032
4422242415'19 0FWK9260M
38.9MHz(l)
1032 482224281854 0FWG9353M
38.9MHz(BGLI)
110O^ 4822071 51001 Fuse
19372(í00m4)
1116 4822242aO295 0FWG3962M
38.9MHz(BG)
1116 4a22242A1436 0FWK3953M
38.gMHz(othe4
1117 4a22242'tO692 Xtal 4,433619
NIHz
1122 4a22 15330025 Filt. TPS 6MHz
(BGr)
11.22 482224272211 Filt. TPS 5.5MHz
(othe0
1651 4A22242A1946 Xtal SMHZ
'1700
4822242a1962 Xtal 13.875MH2
-{t2OO4 4822 12233797 47nF 2O"/. SOV
2OO8^ 4822 124 40196 220tLF 2Oo/"16V
(BGLr)
2008
4822 124 81029 100pF 20% 25V
(other)
2OO9^ 4822 124 4'1579 10frF 20% 5oV
2032
4A22'124 40756 1pF20o/o100V
2033^ 5322 126'10223 4.7nF'looh 63V
2034^ 5322 126 10223 4.7nF 1jo/o 63V
2036^ 5322 126 10223 4.7nF 10% 63V
2037^ 4822 12441579 10pF20%50V
2037
4822 124 80791 47Op,F2O/" 16V
2101^
2102
2103
2104^
2105^
2106
2108^
2109
2111
2112
532212610223 4.7nF 10o/o63V
s322 126 12415 18oF 5"/" sov
4822 126 13161 100nF 10% 25V
5322 126 10223 4.7nF 10o/o63V
s322 126 10223 4.7nF looa 63V
4a22 125 50062 1.4-100F250V
532212610223 4.7nF 10%63V
4822 124 40756 1pF 20% loov
4822 126 13159 180pF 5% 50V
4822 126 13162 56pF 5% 50V
2't't3
2115
2116
2117
2119
2122
2124
2125^
2126
2127^
5322 12233537
4822 126 13473
4a22 126 13473
4822'126 13473
4A22'126 13473
4822 126 13869
4822 124a1O29
4822 122 33177
4822't24 40756
4822 124 41579
212A
2129
2132
2133
2136^
4A22 126 13161 100nF 10o/o25V
4822 126' t3161 100nF10% 25V
4a22 126 13161 100nF 10% 25v
4822 126 1316'1100nF l0ól"25V
5322 122 34123 lnF 10% 50v
1.2pF 5ol.63V
22OnF2o"ksOV
22OnF2OoÁsOV
22OnF2Oo/ósOV
22OnF20óÁsOV
470nF 2Oo/"16V
IOOIF 20Á25V
10nF 20% 50V
1pF 20olo1o0V
10pF 20% 50V
100nF 2oolo25V
10nF 20% 50V
10nF 20% 50V
1nF 10o/o
50V
100nF'10o/o
25V
10nF 20'l" 50V
10nF 20% 50V
27oF 5Y. 63V
27pF 5'l. 63V
'l0pF
5'lo 50V
10pF 5'l" 50V
1nF 10'l. 50V
lpF20% 100V
100nF 20% 25V
10nF 20ólo50V
100nF10% 25V
100nF s'l" 63V
22OnF 2O"/" sov
22OnF 2O"/" sOV
3034
4822051 20223 22k50/oO.1W
3035
3036
3037
3038
3039
3040^
3100
3103
3104
3105
4822 117 11449 2k2't./"O.1W
4822 051 20223 22k 5"/" O.1\N
4822051 20223 22k5"hO.1W
4a22051 20223 22ks"kO.lW
4422051 20223 22k5"/"O.1W
482205210479 4705"hO.33W
4422051 20682 6k8 5"/.0.1W
4822 1'1652226 5600 5"/. 0.5W
4822 117 10A33 10k 1% 0.lW
482211652245 150k 5% 0.5W
3106
3107
3110
3111
4822051 20223 22ks"/"O.lW
4822 116 52224 470c,5%0.5W
4822 051 20391 390cr5./. O.lW
442211652206'12005%0.5W
(P/Sec.)
4822 116 83868 150cl 5% 0.5W
(PAL)
4822 051 20331 330cr5% 0.1W
4822116s2235 1M 5% 0.5W
4822 117 10353 150c)10lo0.1W
442211652175100c}5%0.5W
4422 117 10833 10k 1% O.1W
31 11
3112
3113
3't17
3119
3121
3122
3124
3 12 5
3 12 6 ^
3127
3128
3130
3 13 1
3134
4 8 2 21 1 7 1 0 8 3 3 1 0 k1 % 0 . 1 W
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4A22 Ê293216 270pF5% SOV
4822 121 41545 0.033pF t0% 250V
4822 12233216 270pF S% sOV
4A22 12233575 22OpF5%SOV
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4422 265 31245 4P conn. t44
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4422265'10421 19p conn. t47
4822242 10434 18.432Mh2
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2340 4422126 19473 22OnF 2,o/o sOV
2341 4822 126 13473 22OnF 20o/oSOV
23/.2 4822 126 13473 22O^F 20o/osOV
2343 4822 126 13473 22OnF 2O./" sOV
2952^ 4822 124 41579 |qrF 2oolo50V
2353^ 4422124 41579 10pF 20ol.50V
2354^ 4422 124 41579 10lrF 20"/. 50V
2355^ 4A22 124 41579 10pF 20% 50V
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2357^ 4422 124 41579 10pF 2ooló50V
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2359^ 4822 124 41579 lOpF 20ol.50V
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2 3 6 1 . 4422 124 4'1579 10rF 20% 50V
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2363^ 4822 124 4'1579 |0rF 20% 50V
2364 4822 124 40769 4.7ttF 2O'/è 100V
2365^ 4822124 41579 10FF 20% 50V
4822 124 40255 loopF 20"/" 63V
2367^ 4422 124 41579 10rF 20olo50V
2368^ 4822 124 41579 lolrF 20% 50V
2369 4422 121 51252 470nF 5olo63V
2370 4822 121 51252 470nF 5% 63V
2372 4822 126'13805 68nF l0 16V
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2374 5322 126 10794 22opF s% 63V
2375 5322 122 34099 470pF í0olo 63V
2376 5322 122 32531 loopF 5ólo50V
2377 4822 126 13805 68nF 10 16V
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2379 5322 126 10794 22OpF 5./" 63V
2380 5322 122 3/,099 4700F 100/o63V
2381 5322 122 32531 100pF 5olo50V
2382^ 5322 122 3/.123 1nF 100/"50V
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2344 4422 121 51252 470nF 5./o 63V
2385 4822 121 51252 470nF 5% 63V
2386^ 5322 1223/.123 1nF l0%50V
2387^ 532212234123 1nF 10% 50V
2388^ 532212234123 1nF 10"/"5OV
2389^ 5322 122 34123 1nF 10olo50V
2390^ 532212234123 lnF 10% 50V
2392 5522 122 32286 3.3pF s"/. sov
2393 5322 122 32286 3.3pF 5% 50V
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2396^ 4822 12233172 390DF5./. 50V
2397^ 4822 122 33172 390pF 5ol. 50V
2398^ 4822 126 1@O2 loonF 20"/. 25V
2400 5322 122 32452 47oF 5/" 63V
2401^ 4422 126 1Om,2 10OnF20% 25V
2402 5322 12232268 470pF 10% 50V
2403 532212232268 470oF l0ólosov
2404 4822 121 51252 470nF 5% 63V
2405 5322 122 32658 22oF 5"/" sOV
2408^ 4422 126 10n}02 10OnF20olo25V
2413 4822 124 41596 22rLF2O"/"sOV
2415 4822 124 4156€6 22lrF 2O"A50V
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2425 4822 124 415StG 22rF 2Oo/.sOV
2427 4422 124 415% 22sF 2O"/"SOY
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243Á' 5322 126 10511 lnF 5% 50V
2437 5322 126 10511 1nF 5% 50V
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2454^
2455^
5322 126 10StÍ lnF 5% SOV
5322 126 1o5rÍ rnF 5% 50V
5322 126 105í1 1nF 5% sov
53?212251946 2ZoF S"/"69V
5322 126 10223 4.7nF 10"/" 63V
5322 126 1O22A 4.7nF.too/. 6gV
53e.126 10223 4.7nF 10"/.63V
5922 126 10223 4.TnF 1O"/"6gV
{=
3356 ,í822 051 20331 33oe 5oloo.1w
aeÀ7
4822 05't ?0122 ilA 57" O.1W
3358 4422 051 20r'.71 470í) 50/oO.1W
3Ít59 4822 051 20rt73 {7k 5% O.lW
3360 4822 116 5228!. 47R 57r O.sW
3361 4422 116 522A3 4k7 5/" O.sW
3362 4422.051 20473 47k 5% O.1W
3363 48?2.117 11449 Ae. f/o o.1W
3364^ 4822051 20472 4k7 50loO.1W
3365 4822 051 2O/t73 47k S/" O.1W
3366 4822 051 203rix' 3Í!k 5% o.1w
3367 4E2. O5120473 47k 50/oo.rw
3368 ,1822051 20331 3300 5% O.lW
3369 4822051 20122 1k2 5./oO.tW
3370 4422 051 20471 170rJ 5./c O.1W
3371 4822.O5120473 47k 5"/" 0.1W
3372 4422 116 522Í,/. 47k 50l. 0.5W
3373 4822 116 52283 4k7 50/o0.5W
3374 4822 051 2c473 47k 5"/" O.1W
3375 4422 117 11449 Ae. f/. O.1W
3376^ $22 051 20172 4k7 5ó/oOjW
3377 4822 051 20473 47k 50lo0.1W
3378 4822 05't 20333 33k 5% O.lW
3379 4422 051 20475 47k 50/oo.tw
3380 4422 116 52175 100c) 5% 0.5W
3381 4822 116 52175 100c) 5% 0.5W
3382^ 4822 051 20332 3k3 50/oo.tw
3383^ 4822 051 205.32 3k3 5% 0.1W
3384 4822.O51 20173 47k 50/o0.1W
3385 4822051 ?0,33É330k 50l.0.1w
3386 4822 051 20334 330k 50lo0.1W
3387^ 48,220s1 20332 3k3 5% 0.1W
3388 4422 051 20334 330k 5% O.tW
3389^ 4822 051 20332 3k3 5"/o0.1W
3390 4822 116 52272 330k 5% 0.5W
3391 4822 051 20563 56k 5"/.0.1W
3391 4822051 20822 8k2 50/o0.tW
3395^ 4822 051 20008 0O 0umpeÍ)
34t3
3414
3415
3416
3420
3421
3422
3425
3/.26
3427
3428
3430
3431
3432
3433
48?2 117 10A33 10k 10lo0.1W
4422 051 20822 8k2 5% 0.1W
4422 051 20473 47k 5% 0.1W
4422 051 10102 1R 20/. O.25W
4822 0s1 20s63 56k s% 0.1W
€22 051 20683 68k 50/o0.1W
4822 116 52199 68c) 5% 0.5W
4822 1í7 10833 10k l% o.1W
4822 051 20822 8k2 5% 0.1W
4422051 20473 47k 5./.0.1W
4422 051 10102 1k 2"/" o.25W
€22 05t 20563 56k 5"/. 0.1w
4822 0s1 20683 68k s% 0.1W
4822 116 52199 68í) 5% 0.5W
4822 051 20331 3300 5% 0.1W
5350
5351^
5352
5353
4822157 53139 4.7tH
4822 157 5'l/162 tOuH
4822 157 53139 4.7[H
4822 157 53139 4.7pH
+t63€4^ 4822 13030621 1N4148
6385 4822 130 34488 BZX79-F12
&tr3
7350^ 4822 20983í63
7351^ 4822 20983163
7352 5322 209 10576
7353 4422 N9 14894
7353
4822 209 90562
73€,2^
73A3^
73{J7^
7389^
7415^
7420^
7421
7427^
7430^
7431
7432^
5322 13041982
5922 13041982
5322 13041982
5322 13041982
5322 13041982
5372 13O41982
5322 130 41983
5322 13041982
5322 13041982
5322 130 41983
5922 13041982
LM&33N
LME33N
HEF4o53BP
MSP3410B-F7
(Nicam)
MSP340G-TCI5
(non-Nicam)
BC84aB
BC848B
BC848B
BC848B
BC848B
BCAZISB
BC858B
BC848B
BC848B
8C8588
BC848B
NrcAML MODULE[D2]
NS PANEL[cl
Vrrioug
Vrrlous
1822 212 10919 Nkxm L Modulê
182221261196 oFwK3953M
1000
2E00
4a22 124 41596 22t!F 20oh sOV
2801
4622 121 11596 22]UFzook sOV
280/1 4822 122 3380s 330pF 10olo63V
182212233805 3:|OpF 10% 63V
2805
2410^ 182212233312 ghF í0% 63v
2411
1822 121 11643 1oOpF20./o16V
28't3
4822 121 41576 2.2t!F 2V/.sOV
2432^ 4E?212233177 1onF 20olo50V
'lonF
2431^ 1822122531n
20olo50V
1422212109.58 NSpanel
38.9MHz
{F
{F
2000^
2001
2002
2003
2006
2008
2009
5322 126 10?23
4822 16 13161
4822126 1U7e
1An.16 í3161
4822121 40763
4822124 40763
4€,22124 40763
1.7^F 1070 63V
100nF 10./o25V
22OnF 2e/" SOV
100nF100/o
25V
2.2pF 10OV
2.2rF too V
2.2uF l0O V
G
3000
3002
3003
5001
4422 051 2056,2 5k6 5./. 0.1W
4422 051 20471 4700 5% 0.1w
18220,51 20223 22k 5./o0.1W
4822 157 11014 Adj. coil
4422 12'l 41A57 10nF 5olo2S0V
182212't10618 62nF 27"63V
4422 121 41857 10nF 5% 250V
2012
2013
2018
G
/€22 116 E0176 1rr 5./o0.5W482211680176 .tO5%0.5W
48?2 f6 52175 100í1 50l"o.sw
4A2211652289 5k65%0.5W
4822íÍ680176 lct5%0.5W
16?2'11652175 100cr5%0.5w
3010
301t
3012
3013
3019
3998
5010 4822 157 11017 33OrH 10%
4A22 157 71033 NS con. coil
5011
5013^ 4822142 40944 Oíver translormèr
5014
4822157 62552 2.21tH
-)t-
7001 4822209 13003 TOA98|1^/3
7002^ 5322 130419E2 BC848B
6011^ 4822 130 3163.t BYVl0-20
€t=
cTuBs PANEL[Fl
70'lo
7011
4822 130 63441 FET J108
4822 130 63441 FET J108
4422 212 10921 CTUBISIÍ.Module
4822 265 1(X19 12P F-pin conn.
4422124 40433 471tF 20h 25Y
482212253575 22OpF 5"h fiV
482212233575 220pF 5olo50V
4822124 4205a 33pF 20% sOV
4822124AO79147OpF 2e/6 16V
5322.12232531 10OpF5% 50V
5322'1223265422nF 1Oê/.63V
4€.?2.'121
51319 1pF 10"/o63V
532212232531 10OpF5ol"50V
532212231863330pF 5ol. 50V
5322121 426f1 330nF 5% 63V
{F
3276
3277
3278^
2601 4822 121 11485 10OBF2oolot6V
2604 4422 124 11486 z?OtF 20./. t6V
4822051 20272 2k7 5"/" ojw
4822051 20471 470fi 5% 0.1W
4422 051 20332 3k3 5% 0.1W
4422 1't7 11449 zlala/oo.'tw
3280
4422051 2!8,22 8k2 5êlo0.1W
3281 4 8 2 2 1 1 7 1 1 3 8 3 't2k 10lo0.1w
3242
4422051 2033/ 330k 5% 0.1w
3283 4622 051 20183 Í 8 k 5 % 0 . 1 W
3284
1422 051 20271 2700 50/o0.1w
3285 4422 051 10102 1k2./o O.25W
3288^ 4822 0s2 10399 39ír 50/. o.33w
3289 4822051 20271 270c)5% 0.1w
3290
4422051 20122 1 k 25 % o . t w
3291 4822 051 20271 270f) 5ól"0.1w
3292^ 4822 05? 10689 68r) 50lo0.3(tW
3293 4822 051 20391 390í1 5"/. 0.1w
3294
4822051 20471 4700 5% 0.1W
3295
1422 117 1't'139 1 k 5 1 0 l . 0 . 1 W
3296 4822 051 10102 1k 2"/,0.2sw
,la22 117 11383 1 2 k 1 " / . 0 . 1 W
3297
3298 4822 051 20333 33k 50lo0. lw
+t-
,& E=
BC848B
TDA4566Ar'2
BC858B
CX20125
BC84EB
BC858B
4422 212 10976 Top cmtrot panêl
/€22 276 13396 Push button
4822265 10449 3P cmn. H45
+
3630
3631
3632
3633
3634
3520^ 4822053 21rt75 4M7 5% O.sW
9521^ 4822053 21475 4M7 5% O.5W
3600 4822 116 52175 100f,)5% o.sw
3601
4A22 11652175 100ít 50loo.sw
3602 4822 116 52213 18oO 5% O.sW
36el
4a22'11652175 1oOO5%0.5W
3@5
4a22 116 52Í75 1000 5% o.sw
12k 50/.0.5W
5k6 5% 0.5W
470fl 50/o0.5w
4k7 1% 0.6W
1000 5% 0.5w
MA|NSPANEL[U
V.riour
10o0
-ft6600
6601
4422 116 52238
4822 1 t6 52289
4822 116 52224
4822 050 21702
4422'l'16 52175
Side Control & tO
G
442213oU171 BZX79-C4V7
4822 2Og 72895 TLUV5320 Bi.col
LED
1600
Side l/O [J]
6270 4422 1& 34197 BZX79-C12
6279 4822 130 80655 BZX79-F2V4
TOP CONTROL[Jl
VrÍlou!
44?2 212 10975 MainVRCSAED
panel
oo22^ 4422 276 13592 Mains switch
4822 265 303{t9 2P conn. vert.Kl2
4622 267 51348 2P cmn. K09
4822 265 31246 6P conn, K41A
442226510,4.23 3P connetor K45
4422 212 30a42 lR Rec. TFMS5360
Variour
4822 459 04021 Sóe tO panel
4422267 g10j4 O.smm headphme
1422 2* C21O1 lO connections
4822265 11451 9P conn. H33
482226531245 ,tp conn. H,í4
4422 212 10929 MainYRC5AEO
panel
4422276 136,03 Mains switch
482? 265 31246 6P conn. K41
4422 265 3124A 3P cmn. K42
4822 265 30389 2P conn. veÍt. Kl01
4E22267 513ÁiA 2P conn. K104
4822 256 91766 LED holder
4822 130 83E2t GPIU720Q lR rs.
{F
2601 48221214158{. 10ol1F2ool. 10V
.lJ
3520^
3521 ^
3600
3601
3602
3604
-ff6600
6601
4422 130 91174 BZX79-C4V7
$22 209 72695 TLUV5320
VrÍiout
'f055
1822212 10931 Sida Controt+to
oancl
4822267 31014 3.5mm headDhone
4E2227630422 Push buttons (3x)
1822 256 92101 tO cmnections
462226'5 41151 9P cmn. H33
482226551218 3P conn. H42
142226531245 4P conn. H44
IF
2800
2801
2804
2805
2E10
2811
2813
2832
2A34
2A4O
4822 124 415gO
,1822 124 41596
4A2212613597
4a22 P6 13597
5322 121 424A9
4822 12481029
4a22 p4 40763
4822 12'l 41677
4822 121 41677
4822 126 13599
nlf
ZOo/oSOV
22ttF ZOo/oSOV
33OoF10% sOOV
33OoF tO% sOOV
33nF 5ol" 25OV
100|rF20%25V
2.2lIF 100V
lOnF tO% 4OOV
10nF tO% 4OOV
3.3nF 1ooloSOOV
3000
3608
3609
3610
3611
3612
3801
3802
3803
3804
4822 116 52257
4822 116 52238
4822 116 52289
4a22 11652224
482205024702
48?2 116 5217s
4822 116 52202
4A22 116 52201
4822 116 522A9
4a22 11652289
22k se/oosw
't2k
50/o0.5w
5k6 s% o.sw
4700 5% 0.5W
4k7 1% 0.6W
100í) 50/"0.5w
82r} s% 0.5w
75r) 5% 0.5W
5k6 50lo0.5W
5k6 50/.0.5W
3805
3806
3807
3809
3810
3811
3812
3813
3830
3840
4a22 116a3€74 220k5%0.5W
4822 11683A74 220k5%O.sW
4822 11652'175 1oOO5%O.sW
4a22 11652219 330f)5%0.5W
4822 116 52305 82ok 5"/oO.sW
/ t 8 2 2 1 1 6 8 3 8 8 23 9 k s % O . s W
4822 116 E3864 tok 50/.o.5w
4A22116522A3 4k75%0.5W
4822 116 83864 1ok 50/"O.sW
4822 11652257 22k57.0.5W
3842
4822 1'16838&1 1ok 50/.o.sw
c}
€r=
Various
+
5322 130 41982
4822 209 14895
5322 13o.t1983
442220930711
5322 130,rí982
5322 130 41983
482213o82346LV-C27
442213oa23,/,6LV-C27
442213o82346 t1-?.-C27
492213o82346LL:.C27
Top Control & Side tO
MAINSPANEL[U
{F
7276^
7277
7280
729'l
7282^
7283
4A22 116 52202 82()50/. 0.5w
1422't16 52201 75r) 5% 0.5W
/t822 116 8017s 4k7 5% o.sw
4822 Í16 60175 !rk7 5ol"0.5W
4822 116 83821 220k 5./.0.5w
/í822 116 83874 22Ok5"/" 0.5W
1822 11652175 100050/.0.5w
4622 051 20101 100Í150l.0.1w
4622 116 52219 3300 5% 0.5w
1822051 20821 820ks%o.tw
4E22 051 m393 39k 50/"o.lw
/íE22 051 20008 ofl 0umpcí)
1822 051 ?0172 4k7 5% 0.íW
1622 116 ',rJ173 10k 5% 0.5W
4822 11652257 22k5/"O.5W
4822 116 80t73 10k 50lo0.5W
4822 11652219 33005%0.5W
4E22 117 10353 150í11% 0.1W
7811 5322 t30 41983 BC8sEB
7412 5322 13O/íÍ983 8C85gB
7840^ 5922 13041982 AC84aB
Various
2279^
2280
228'l
2282
22a3
2244
2285^
2286
22AA
2289
2291
3801
3802
3803
3804
3805
3806
3807
3808
3809
3810
38il
3413^
83611^
3830
9840
3842
3998
3999
6803
6E04
6805
6806
/18221Í6 52175 l00O 5% O.gW
Side Control + lO Fl
+
-.x-
g Ë1
3605
it822 053 21475 4M7 S% o.SW
4622 059 21175 4M7 50/cO.sW
442211652175 100f)5% 0.5w
1422 050 110n'2 lk 1./" 0.4W
4822 116 52213 180050/. 0.5w
4822 1't6 52175 1@O sclo0.5W
€E:
7811^ 4822.!30 44197 BC558B
7812^ 4A22 130,t4197 BCS58B
7840 4822 130 40937 SC548B

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