Text preview for : p41-48R.pdf part of Philips p41-48R Philips Monitor Monitor CD 2001[1].part02 Monitor CD 2001 E-MANUALS Philips crt 105s2 pdf p41-48R.pdf
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Repair flow chart 105S2 CM23 GSIII 41
9 Go to cover page
A. Power Supply Failure
Sympton: check 7103
check 2105 check 7103
no startup sound Y Y pin 4 osc.
100V< C2105<380V pin8 = 5V
LED light off freq=40Khz
N N N Y
check check
check
1101/1102/ 2110/2111/
3135/6106/7103
6101/7102 3108/3131
check OVP check
check 7112 check 7103 check 7103
Y 7106 / 7107 Y 7103 /7104 Y N
pin 1,2,4,5 pin1 = 0V pin6 output ?
latch? short
Y
check
6115/3113/
3125/7102
Sympton: check check
startup failure 6172/6157/6158/ +180,80,5,12, check 7103
N N
LED blinking 6160/6161/6112 -12, 8, 6 pin 3 > 1V
Burst sound short short
Y N
OPP possibly active
replace 5110 check 3116 /3117 /
3118 / 3122
check
check 7501 check 7801
H-deflection
Hunlock pin17 Stby pin14
during startup
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42 105S2 CM23 GSIII Repair Flow Chart
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check R,G, B input / output
B.Video 1. video input= 0.7V
Repair Flow 2. 7301video output =2.5V
3. 7701 video output= 35V swing
1.Sympton :
( input a white pattern signal ) check check check
Ok
no picture heater = 6V EHT=25KV VG1< -100V
green LED on
N Y
check Xay-prot. check N
7501 pin2 7501 pin17
check R,G,B output
check 30<2725<80
check CRT Ok Y
VG2 > 400V 30<2733<80
30<2753<80
N
check DC restoration
check blanking
7722,7732,7752
7501 pin16
7721,7731,7751
Ok
2.Sympton :
check VG1 turn high check +80V
no video ( or dim ) N
VG1 <-100V VG2 supply
only raster with green LED
N
check 7301 check 7301 check 7701 check 7701
pin24 Ok pin 6,8,10 pin 8,9,11 pin 1,3,5
2V< ABL < 5V input swing input swing output swing
No Ok
check 7301 check
pin11 HFLB replace 7701
IF cable
check 7301
Ok replace 7301
pin5 CLBL
No
check 7501
pin16
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Repair flow chart 105S2 CM23 GSIII 43
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C. Horizontal deflection
output repair flow :
1. Sympton :
check Hsync check Hsync check Hsync
without
7606 base 7605 gate 7501 pin8
H-deflection.
check check Hsync
replace 5611 check Hsync
Ok 7623 drain Ok 7621/ 7622 Ok
7501 pin6
180V emitter/collector
N N N
check short circuit check refer 7501
5611 pin4 6631,7621,7622 check list
2. Sympton : check check 7503
check 2629 refer 7503
East /West N 7610/7611/7612 N pin11 N
parabola exist check list
corr. fail parabola exist parabola exist
3. Sympton : Enter factory mode
check check
H-linearity check linearity data
5608 / 7614 7617/7619
(full freq.range) in the eeprom
check
refer 7801check list
1602
4. Sympton : check check refer 7801check list
H_dc shift 1602 / 3644 6634 / 6635 Q2 / Q3
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44 105S2 CM23 GSIII Repair Flow Chart
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basic check
D. Vertical Deflection Failure +12 /-12V /
+60V ( C2516 )
Sympton : check replace
one horizontal line 3410,3403 N 3410,3403,3407,
V_size is too large / too small 3407,3405 3405,7401
check
6403
check 7401 check
Ok
pin2,pin3 ramp 3411,3412
No
check
7501
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Repair flow chart 105S2 CM23 GSIII 45
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check cpu
E. CPU
Basic Check B+ pin6=5V
check list
OSC.=12MHz
check pin 3
1. Abl-con
pwm from 0V to 5V
check pin5 check
5. Reset
from low to hi 3816 / 2820
check pin13
check
13. H-unlock normal : low
3850 / 7809
H-unlock : hi
19 , 20 check
S-cap switch Q2,Q3
pin21(stby) pin28 (off)
check
21 , 28 normal hi hi
pin 21 / 28
stby , off standby low hi
7804 / 7805
off low low
check pin22
22. Key
check up , down , left , right, enter
check pin24
1.no H/V sync & IF cable pin5 floating - free run mode
24. Selftest
2.H/V sync exist & IF cable pin5 to ground - normal
3.H/V sync non-exist & IF cable pin5 to gnd - power saving
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46 105S2 CM23 GSIII Repair Flow Chart
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idle status
25,26. DDC check
sda= pin25 = hi
sda,scl 7801
sc l= pin26 = hi
check
idle status 7806 24C08
30,31 IIC
sda=pin30 = hi 7501 TDA4857
sda, scl
scl =pin31 = hi 7301 TDA4886
7304 MTV018N
1 . Normal
Fhout=Fhin
check sync. Fvout=Fvin
Hs_in=pin 40 2. Self test
40,41,34,33
Vs_in=pin 41 Fhout=46.875Khz
Hs_in,Vs_in,Hs_out,Vs_out
Hs_out=pin 34 Fvout=75Hz
Vs_out=pin 33 3. sync out of rang
Fhin> 70KHz
Fvin>168Hz
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Repair flow chart 105S2 CM23 GSIII 47
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Basic check
F. TDA4857 Vcc =pin9=pin10=12V
Vcc > 9V
Check List gnd =pin7=pin25=0V
during startup
pin16 / 17
1. HFLB
if no exist CLBL=hi
( from H.defl )
HUNLOCK = hi
pin17 = Hunlock = floating
pin30 = Hpll2 = 0V
pin6 = HDRV = floating
2. Xray
if active pin8 = BDRV = flaoating
( from LOT )
pin12 = Vout1 = floating
pin13 = Vout2 = floating
pin16 = CLBL= Hi
a pin3 compare the level with pin 4
b. pin4 generate the saw_tooth wave inhibit pin6 output
3.4.5.6 B+ control
c. pin5 controlled output duty if pin3 is low
d. pin6 pwm output to control B+
to H_deflection.
8. HDRV
7605 base
to H-deflection east/west control
11.EWDRV
7612 base
differential input
12,13 Vout1/Vout2
to 7401 pin 2, 3
V & H sync input from
14,15 Vsync,Hsync
7801 pin 33 , 34
pin16 is pulled up to high level at conditions
1.pin30 = softstart pll2 = 0V
2.pin26 = pll1 is unlock in searching mode
16. CLBL
3.pin1 = HFLB no exist
4.pin2 = Xray once actived
5.pin10 = Vcc < 9V
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48 105S2 CM23 GSIII Repair Flow Chart
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pin 17 is pulled to high while PLL1(pin26)
17. Hunlock
is not locked in searching mode
18. IIC sda = hi initial failure could be the following ICs
19 IIC scl = hi 7301,7304,7801,7501
to 7501 pin30
20 asymmetry EW output
using for soft-start
compensate V_size
21 EHT_compen.
because of load variation
pin22 determin the AGC
22,23,24
50Hz< freq. <160Hz
VAGC,VREF,VCAP
pin23 & 24 determin the frequency
pin26 determin the pll1 loop filter
26,27,28,29
30K Hpll1,Hbuf,Href, Hcap
pin 27,28,29 H-freq working range
1.compare the HFLB and control the phase of HDRV
30. PLL2
2.softstart
compensate H_size
31 EHT_compen.
because of load variation
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