Service Manual. CPD-110GS Datasheet

CPD-110GS Manual. Datasheet pdf. Equivalent


Sony CPD-110GS
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SPECIFICATIONS
CRT
Viewable image size
Resolution
Standard image area
Deflection frequency*
AC input voltage/current
Power consumption
Dimensions
Mass
Plug and Play
Supplied accessories
0.25 mm aperture grille pitch
15 inches measured diagonally
90-degree deflection
Approx. 285 × 214 mm (w/h)
(11 1/4 × 8 1/2 inches)
14.0" viewing image
Horizontal: Max. 1280 dots
Vertical: Max. 1024 lines
Approx. 270 × 202 mm (w/h)
(10 3/4 × 8 inches)
Horizontal: 30 to 70 kHz
Vertical: 48 to 120 Hz
100 to 240 V, 50 – 60 Hz, 1.6 – 0.8 A
Max. 105 W
Approx. 368 × 393 × 389 mm (w/h/d)
(14 1/2 × 15 1/2 × 15 3/8 inches)
Approx. 14 kg (30 lb 14 oz)
DDC1/DDC2B
See page 6
* Recommended horizontal and vertical timing condition
• Horizontal sync width should be more than 1.0 µsec.
• Horizontal blanking width should be more than 3.6 µsec.
• Vertical blanking width should be more than 500 µsec.
Design and specifications are subject to change without notice.
®


CPD-110GS Datasheet
Recommendation CPD-110GS Datasheet
Part CPD-110GS
Description (CPD-110EST/GS) Service Manual
Feature CPD-110GS; w eMANUAL SERVICE e h S REVISED a t a D . w w U 4 t . m o c CPD-110GS/110EST CPD-110GS US Mode.
Manufacture Sony
Datasheet
Download CPD-110GS Datasheet




Sony CPD-110GS
CPD-110GS/110EST
DIAGNOSIS
Failure
HV or H STOP or +B Failure
V Stop Failure
Aging/Self-Test
Out of Range
No Input Signal
Power LED
Blink Amber (On 0.5 sec, Off 0.5 sec)
Blink Amber (On 1.5 sec, Off 0.5 sec)
Blink Amber (On 0.5 sec, Off 0.5 sec) .... Blink Green (On 0.5 sec, Off 0.5 sec)
On Green (OSD Indication)
On Green (OSD Indication)
TIMING SPECIFICATION
PRIMARY MODE
MODE AT PRODUCTION
RESOLUTION
CLOCK
— HORIZONTAL —
H-FREQ
H. TOTAL
H. BLK
H. FP
H. SYNC
H. BP
H. ACTIV
— VERTICAL —
V. FREQ(HZ)
V. TOTAL
V. BLK
V. FP
V. SYNC
V. BP
V. ACTIV
— SYNC —
INT(G)
EXT(H/V)/POLARITY
EXT(CS)/POLARITY
INT/NON INT
MODE 1
640 X 480
25.175 MHZ
31.469 kHz
usec
31.778
6.356
0.636
3.813
1.907
25.422
59.940 Hz
lines
525
45
10
2
33
480
NO
YES -/-
NO
NON INT
MODE 2
640 X 480
36.000 MHZ
43.269 kHz
usec
23.111
5.333
1.556
1.556
2.222
17.778
85.008 Hz
lines
509
29
1
3
25
480
NO
YES -/-
NO
NON INT
MODE 3
720 X 400
28.322 MHZ
31.469 kHz
usec
31.777
6.355
0.636
3.813
1.907
25.422
70.087 Hz
lines
449
49
12
2
35
400
NO
YES -/+
NO
NON INT
MODE 4
800 X 600
49.500 MHZ
46.875 kHz
usec
21.333
5.172
0.323
1.616
3.232
16.162
75.000 Hz
lines
625
25
1
3
21
600
NO
YES +/+
NO
NON INT
MODE 5
800 X 600
56.250 MHZ
53.674 kHz
usec
18.631
4.409
0.569
1.138
2.702
14.222
85.061 Hz
lines
631
31
1
3
27
600
NO
YES +/+
NO
NON INT
MODE 6
832 X 624
57.283 MHZ
49.725 kHz
usec
20.111
5.586
0.559
1.117
3.910
14.524
74.550 Hz
lines
667
43
1
3
39
624
NO
YES -/-
NO
NON INT
PRIMARY
MODE 7
1024 X 768
78.750 MHZ
60.024 kHz
usec
16.660
3.657
0.203
1.219
2.235
13.003
75.030 Hz
lines
800
32
1
3
28
768
NO
YES +/+
NO
NON INT
MODE 8
1024 X 768
94.500 MHZ
MODE 9
1280 X 1024
108.000 MHZ
68.677 kHz
usec
14.561
3.725
0.508
1.016
2.201
10.836
63.981 kHz
usec
15.630
3.778
0.444
1.037
2.296
11.852
84.997 Hz
lines
808
40
1
3
36
768
60.020 Hz
lines
1066
42
1
3
38
1024
NO
YES +/+
NO
NON INT
NO
YES +/+
NO
NON INT
98.12.10 VER.
Power saving function
This monitor meets the power-saving guidelines set by VESA,
ENERGY STAR, and NUTEK. If the monitor is connected to a
computer or video graphics board that is DPMS (Display Power
Management Signaling) compliant, the monitor will
automatically reduce power consumption in three stages as shown
below.
* When your computer enters the “active off” mode, the input signal is
cut and NO INPUT SIGNAL appears on the screen. After 20 seconds,
the monitor enters the power saving mode.
Power mode Power
consumption
normal
operation
110 W
(CPD-210GS)
105 W
(CPD-110GS)
1 standby
15 W
2 suspend
15 W
3 active off*
power off
5W
0W
1 (power) indicator
green
green and orange
alternate
green and orange
alternate
orange
off
–2–



Sony CPD-110GS
SAFETY CHECK-OUT
CPD-110GS/110EST
After correcting the original service problem, perform the fol-
lowing safety checks before releasing the set to the customer:
1. Check the area of your repair for unsoldered or poorly-sol-
dered connections. Check the entire board surface for solder
splashes and bridges.
2. Check the interboard wiring to ensure that no wires are
“pinched” or contact high-wattage resistors.
3. Check that all control knobs, shields, covers, ground straps,
and mounting hardware have been replaced. Be absolutely
certain that you have replaced all the insulators.
4. Look for unauthorized replacement parts, particularly tran-
sistors, that were installed during a previous repair. Point
them out to the customer and recommend their replacement.
5. Look for parts which, though functioning, show obvious
signs of deterioration. Point them out to the customer and
recommend their replacement.
6. Check the line cords for cracks and abrasion. Recommend
the replacement of any such line cord to the customer.
7. Check the B+ and HV to see if they are specified values.
Make sure your instruments are accurate; be suspicious of
your HV meter if sets always have low HV.
8. Check the antenna terminals, metal trim, “metallized”
knobs, screws, and all other exposed metal parts for AC
Leakage. Check leakage as described below.
To Exposed Metal
Parts on Set
0.15 µF
1.5 k
AC
Voltmeter
(0.75 V)
Earth Ground
Fig. A. Using an AC voltmeter to check AC leakage.
LEAKAGE TEST
The AC leakage from any exposed metal part to earth ground
and from all exposed metal parts to any exposed metal part hav-
ing a return to chassis, must not exceed 0.5 mA (500
microampers).
Leakage current can be measured by any one of three methods.
1. A commercial leakage tester, such as the Simpson 229 or
RCA WT-540A. Follow the manufacturers’ instructions to
use these instruments.
2. A battery-operated AC milliammeter. The Data Precision
245 digital multimeter is suitable for this job.
3. Measuring the voltage drop across a resistor by means of a
VOM or battery-operated AC voltmeter. The “limit” indica-
tion is 0.75 V, so analog meters must have an accurate low-
voltage scale. The Simpson 250 and Sanwa SH-63Trd are
examples of a passive VOMs that are suitable. Nearly all
battery operated digital multimeters that have a 2 V AC
range are suitable. (See Fig. A)
WARNING!!
NEVER TURN ON THE POWER IN A CONDITION IN
WHICH THE DEGAUSS COIL HAS BEEN REMOVED.
SAFETY-RELATED COMPONENT WARNING!!
COMPONENTS IDENTIFIED BY SHADING AND MARK
¡ ON THE SCHEMATIC DIAGRAMS, EXPLODED
VIEWS AND IN THE PARTS LIST ARE CRITICAL FOR
SAFE OPERATION. REPLACE THESE COMPONENTS
WITH SONY PARTS WHOSE PART NUMBERS AP-
PEAR AS SHOWN IN THIS MANUAL OR IN SUPPLE-
MENTS PUBLISHED BY SONY. CIRCUIT ADJUST-
MENTS THAT ARE CRITICAL FOR SAFE OPERATION
ARE IDENTIFIED IN THIS MANUAL. FOLLOW THESE
PROCEDURES WHENEVER CRITICAL COMPONENTS
ARE REPLACED OR IMPROPER OPERATION IS SUS-
PECTED.
AVERTISSEMENT!!
NE JAMAIS METTRE SOUS TENSION QUAND LA
BOBINE DE DEMAGNETISATION EST ENLEVÉE.
ATTENTION AUX COMPOSANTS RELATIFS À LA
SÉCURITÉ!!
LES COMPOSANTS IDENTIFIÉS PAR UNE TRAME ET
UNE MARQUE ¡ SONT CRITIQUES POUR LA SÉCURITÉ.
NE LES REMPLACER QUE PAR UNE PIÈCE PORTANT LE
NUMÉRO SPECIFIÉ. LES RÉGLAGES DE CIRCUIT DONT
L’IMPORTANCE EST CRITIQUE POUR LA SÉCURITÉ DU
FONCTIONNEMENT SONT IDENTIFIÉS DANS LE
PRÉSENT MANUEL. SUIVRE CES PROCÉDURES LORS
DE CHAQUE REMPLACEMENT DE COMPOSANTS CRI-
TIQUES, OU LORSQU’UN MAUVAIS FONCTIONNE-MENT
EST SUSPECTÉ.
–3–







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