Sampo PME-42S6S User manual

42“ PDP
SERVICE MANUAL
MODEL:PME-42S6(S)
REV:1.0
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If having any changes, do not do advanced advice.
CONTENTS
1. IMPORTANT SAFETY PRECAUTIONS ……….1
2. BLOCK DIAGRAM .......................................…3
3. FACTORY & ELECTRONIC ADJUSTMENT …..9
4. TROUBLE SHOOTING GUIDES...............……..11
5. SPECIFICATION ………………………………17
6. EXPLODED VIEW …………………………….26
7. P.C. BOARD TOP VIEW ……………………….27
8. SCHEMATIC DIAGRAM ……………………….42
9. ELECTRONIC MODULES LIST ………………63
10.PACKING OF THE LIST ………………………64
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SAFETY PRECAUTIONS
- 1 -
1. Before returning an instrument to the customer, always make a safety check of the entire instrument,
including, but not limited to, the following items.
a. Be sure that no built-in protective devices are defective and/or have been defeated during servicing. (1)
Protective shields are provided on this chassis to protect both the technician and the customer. Correctly replace
all missing protective shields, including any removed for servicing convenience. (2) When reinstalling the chassis
and/or other assembly in the cabinet, be sure to put back in place all protective devices, including, but not limited
to, nonmetallic control knobs, insulating fishpapers, adjustment and compartment covers/shields, and isolation
resistor/capacitor networks. Do not operate this instrument or permit it to be operated without all protective
devices correctly installed and functioning.
b. Be sure that there are no cabinet openings through which an adult or child might be able to insert their fingers
and contact a hazardous voltage, Such opening include, but are not limited to, (1) spacing between the picture
tube and the cabinet mask, (2) excessively wide cabinet ventilation slots, and (3) an improperly fitted and/or
incorrectly secured cabinet back cover.
c. Leakage Current Hot Check—With the instrument completely reassembled, plug the AC line cord directly into a
120V AC outlet. (Do not use an isolation transformer during this test.) Use a leakage current tester or a metering
system that complies with American National Standards Institutes (ANSI) C101.1 Leakage Current for
Appliances and Underwriters Laboratories (UL) 478. With the instrument AC switch first in the ON position and
then in the OFF position, measure from a known earth ground (metal waterpipe, conduit, etc.) to all exposed
metal parts of the instrument (antennas, handle bracket, metal cabinet, screwheads, metallic overlays, control
shafts, etc.), especially any exposed metal parts that offer an electrical return path to the chassis. Any current
measured must not exceed 3.5 milliamp. Reverse the instrument power cord plug in the outlet and repeat test.
ANY MEASUREMENTS NOT WITHIN THE LIMITS SPECIFIED HEREIN INDICATE A POTENTIAL SHOCK
HAZARD THAT MUST BE ELIMINATED BEFORE RETURNING THE INSTRUMENT TO THE CUSTOMER.
2. Read and comply with all caution and safety-related notes on or inside the Monitor cabinet, on the Projection
Monitor chassis, or on the picture tube.
3. Design Alteration Warning—Do not alter or add to the mechanical or electrical design of this unit. Design
alterations and additions, including, but not limited to, circuit modifications and the addition of the items such as
auxiliary audio and/or video output connections might alter the safety characteristics of this Projection Monitor
and create a hazard to the user. Any design alterations or additions will void the manufacturer’s warranty and will
make you, the service, responsible for personal injury or property damage resulting therefrom.
DEVICE
UNDER
TEST
ALSO TEST WITH
PLUG REVERSED
(USING AC ADAPTER
PLUG AS REQUIRED)
TEST ALL
EXPOSED METAL
SURFACES
LEAKAGE
CURRENT
TESTER
+ -
EARTH
GROUND
3. WIRE CORD
AC Leaka
g
e Test (READING
SHOULD NOR
BE ABOVE
3.5mA)
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SAFETY PRECAUTIONS
- 2 -
4. Hot Chassis Warning—a. Some Monitor chassis are electrically connected directly to one conductor of the AC
power cord and may be safely serviced without an isolation transformer only if the AC power plug is inserted so
that the chassis is connected to the ground side of the AC power source. To confirm that the AC power plug is
inserted correctly, with an AC voltmeter measure between the chassis and a known earth ground. If a voltage
reading in excess of 1.0V is obtained, remove and reinsert the AC power plug in opposite polarity and again
measure the voltage potential between the chassis and a known earth ground. b. Some Monitor chassis
normally have 85V AC (RMS.), between chassis and earth ground regardless of the AC plug polarity. These
chassis can be safely serviced only with an isolation transformer inserted in the power line between the receiver
and the AC power source, for both personnel and test equipment protection. c. Some Projection Monitor chassis
have a secondary ground systems in addition to the main chassis ground. This secondary ground system is not
isolated from the AC power line. The two ground system are electrically separated by insulating material that
must not be defeated or altered.
5. Observe original lead dress. Take extra care to assure correct lead dress in the following areas: a. near sharp
edges, b. near thermally hot parts—be sure that leads and components do not touch thermally hot parts, c. the
AC supply, d. high voltage, e. antenna wiring. Always inspect in all areas for pinched, out-of-place, or frayed
wiring. Do not change spacing between components, and between components and the printed-circuit board.
Check AC power cord for damage.
6. Components, parts, and/or wiring that appear to have overheated or are otherwise damaged should be
replaced with components, parts, or wireing that meet original specifications. Additionally, determine the cause
of overheating and/or damage and, if necessary, take corrective action to remove any potential safety hazard.
7. PRODUCT SAFETY NOTICE—Many Monitor electrical and mechanical parts have special safety-related
characteristics some of which are often not evident from visual inspection, nor can the protection they give
necessarily be obtained by replacing them with components rated for higher voltage, wattage, etc. Parts that
have special safety characteristics are identified in this service data by shading with a mark on schematics
and by shading or a *mark in the parts list. Use of a substitute replacement part that does not have the same
safety characteristics as the recommended replacement part in this service data parts list might create shock,
fire, and/or other hazards.
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BLOCK DIAGRAM
- 3 -
J25_1
Pin[1:3]
PANEL Power
Supply Ass'y
AC IN_1
7
AV Module
Board(with
Tuner)
Assy
9
J12_1
Pin[1:10]
1
SA_1
CON8011
Pin[1:6]
Pin[7:13]
LA03_1
Pin[1:31]
5
3
JA3_1
Pin[1:6]
12
2
JA1_1
Pin[1:12]
Logic F-Buffer
AC OUT_1
13
J1_1
Pin[1:31]
Logic Board Ass'y
(5 V, SB D ET )
(Audio DC,Supply)
AUDIO_1
CON8009
Pin[1:2]
Pin[1:7]
(LV DS )
JA2_1
Pin[1:10]
JP2_1
Pin[1:32]
J11_1
Pin[1:12]
JP5_1
Pin[1:48]
Y Amp Board-Upper
Audio Amplifier
Board Ass'y
(9V )
J14_1
Pin[1:6]
(24 V ,9V )
(5V )
10
Image Board
Ass'y
Interface Board- Z Ass'y
J15_1
Pin[1:4]
11Logic E-Buffer
J5_1
Pin[1:6]
PDP Socket Diagram
Front
Button
Control
Board
Assy
Y Amp Board-Lower
AC Master power swith Board
SAMPO Board Assembly
(Audio Signal)
SW_1
14
Power
SW
Interface Board- Y Ass'y
JP4_1
PinA[1:48]
4
6
Panel's Board Assem bly
AC
PLUG
JP1_1
Pin[1:32]
Power Input
Module
Assy
8
J21_1
Pin[1:7]
(Ke y)
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BLOCK DIAGRAM
- 4 -
A9
GND
A8
NC
Pin 1
A5
A14
B3
A16
GND
A3
A10
A6
RD-
YUV2_R
Pin 8
P5V
C2
DVI_L
B12
PWR_CTL
SDA2
R_IN
15Kn_SP
VGNDNC
C10
Pin 1
NC
Pin 6Pin 7
AGND
Pin 40
C13
GND
B12
Pin 1
AFT_TUN
B4
C12
B5
A10
B14
C6
Pin 35
DGND
Pin 1
GND
DGND
DGND
B13
SURR1
NC
Pin 3 J5 (6 Pin)
RST _DPT V
A2
C11
SV2_SW
GND
AO_SEL
B4
C4
Pin 5
YUV1_R
Pin 21
AGND
Pin 15
B1
Pin 6
C1
RGB_R
+5VSB
B16
B2
C9
Pin 16
Y1
Pin 4
GND
Pin 1
TCK
AGND
GND
GND
A13
C12
A6
A10
B2
Pin 2
SB
D_CT L
PR2_CR2
Pin 4
NC
GND
Pin 9
S2_Y
B8
Image Board
←→
Panel
AGND
C14
B11
R_OUT
C13
NC
Pin 11
RA-
J11 (12 Pin)
C6
A5
5V1
C5
RB+
NC
A6
B1
C9
A16
J14 (6 Pin)
C5
AGND
DGND
SDA2
C16
GND
Pin 19
DGND
NC
C1
A9
Image Board
S2_L
A3
Pin 9
Pin 12
A9
B11
A11
DGNDPin 12
B15
B7
C11
J15 (4 Pin)
GND
RC-
B16
A15
Image Board
←→
Audio Am plifier Board
B1
L_IN
A10
JP5 (48 Pin)
YUVn_RGB
B16
C8
AGND
Pin 39
Pin 5
Audio Amplifier Board
RC+
PCSI
AV Module Board
SCL_SP
A1
Pin 8
DGND
C1
A2
SPK_CTL
C9
SDA2
A15
B15
TDI
A7
Pin 7
Pin 38
GND
VGND
B9
GND
Image Board Ass'y
NC
TUN_DETn
AS_MP
VGND
B3
PCn_MPU
Pin 23
Pin 10
L_OUT
Pin 3
Pin 24
A7 PB1_CB1
B10
Pin 10
V2B_DETn
A16
A8
+5VA
A11
Pin 4
A14
C2
A5
Image Board
DGND
B3
Pin 10
Pin 36
Pin 7
GND
JA1 (12 Pin)
JP2 (48 Pin)
A8
GND
C11
Audio Amplifier Board
+9VT
C12
C16
B1
NC
AV1_R
B5
Pin 2
Pin 2
Pin 11
A3
C2
+24V
SURR2
C3
AGND
C7
RGB_L
PB2_CB2
JP2 (48 Pin)
B14
B8 B9
Pin 8
Pin 28
Pin 2
Pin 1
GND
C7
C14
DGND
RCLK-
TMS
NC
Pin 9
AGND
A7
A14
SCL2
NC
Pin 5
SSO
R_OUT
C11
Pin 6
C3
B6
AGND
Pin 25
Pin 7
NC
B11
GND
TV
JA3 (6 Pin)
B13
A9
C5
B4
Pin 17
Pin 9 PWR_CTL
C6
A6
AS_SP
A13
Pin 31
Content
A14
B9
A11
B13
B9
DGND
SB5V
C2
B7
NC
J12 (10 Pin)
NC
A1
A_MUTEn
A16 VGND
Pin 13
C4
B10
A7
S2_C
Pin 6
A4
C1
A12
B15
RC_OUT
Pin 10
Pin 3
B12
A4
B5
+9V
Pin 33
AGND
NC
Content
A13
C15
DGND
A4
RESETQ
NC
A12
J1 (40 Pin)
B13
Pin 30
Pin 6
RCLK+
SB5V
Content
DGND
Pin 5
Pin 12
Pin 4
24V
B2
+9VT
C15
RA+
JP5 (48 Pin)
B14
C8
SCL2 Pin 5
B10
A11
C8
B11
Image Board Socket Data
COMPOSIT E
Pin 37
Content
B15
A4
B14
C15
DGND
Pin 32
C14
C13
DGND
AGND
Pin 29
Pin 4
Image Board
←→
Audio Amplifier Board
PR1_CR1
Pin 1
Pin 3
Pin 3
B7
B8
C5
Image Board
←→
AV Mo du l e Bo a rd
RD+
TV_R
A2
C10
VGND
C7
C10
C8
C9
SDA2_33
Pin 5
A5
B4
C10
DGND
B6
TV_L
B5
Pin 27
J21 (7 Pin)
NC
Pin 22
Pin 2
Image Board
←→
Front Button Control Board
GND
SW_OUT
AVB_DETn
Pin 5
PCSCS
Pin 3
SUB_WFR
C4
Content
C16
AGND
VGND
AV1_L
DGND
C15
SD
B6
Pin 8
PCSCLK
Pin 4
VGND
A1
C3
AGND
AGND
A2
Pin 26
B12
C7
Pin 7
Image Board
Pin 14
Image Board
Image Board
Pin 18
SCL2_33
C3
SCL2
Pin 8
+24V
J25 (3 Pin)
L_OUT
B6
SUB_WFR
Pin 34
DGND
AGND
C6
VGND
DVI_R
NC
S2_R
Pin 2
Pin 10
YUV1_L
A15
C12
TDO
Image Board
←→
AV Mo du l e Bo a rd
SB_LED
24V
A3
C13
Pin 9
DGND
Pin 3
Pin 6
A12
Pin 20
B2
NC
C14
Y2
JA2 (10 Pin)
15Kn_MP
B10
B8
Pin 2
DGND
VGND
RB-
A15
A1
A12
NC
SDA_SP
Front Button Control
Board
Pin 6
YUV2_L
A13
B7
B3
AV Module Board
C16
ON_LED
Pin 11
A8
B16
C4
Pin 4
DGND
SB5V
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BLOCK DIAGRAM
- 5 -
P
A
N
E
L
C711/C713
Clock
Generator
CPU
(PAGE10)
(PAGE12)
(PAGE7)
(PAGE4)
C
(PAGE8)
SDRAM
(PAGE2)
(PAGE9)
6630/6730
MAIN Video
Processor
Y1/CB/CR
LVDS
TRANSMITTER
U45
6630/6730
SUB Video
Porcessor
SDRAM
U4
IC2
C
SDRAM
(PAGE3)
IC7
YUV
(PAGE6)
U46
MULTIPLEX
SWITCH
RGB IN
Y
VIDEO
Y
YCBCR/YPBPR
VIDEO
SIL161 DVI
MULTIPLEX
SWITCH
U34
(PAGE1)
R,G,B
YCBCR/YPBPR
Y1/PB/PR
AD
Converter
IC1
(PAGE11)
IC3
TA1276
Color Space
Conveter
MULTIPLEX
SWITCH
U32
MULTIPLEX
SWITCH
RGB OUT
RS232
SCALE IC
(PAGE5)
U43
S-VIDEO
U29
(PAGE14)
(PAGE13)
Y2/PB/PR
Image Board Signal Block Diagram
TV
AV
TA8551CH
AV
SWITCH
9161A(PLL)
DVI IN
Y2/CB/CR
U23
YCBCR
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BLOCK DIAGRAM
- 6 -
U59
(5V_ O S D)
V33P
VCCPLL
U62
P5V_COLOR
J25
1
2
3
V25_SP
CON8009
1
2
3
4
5
6
7
8
9
(VCC3_M _S)
VADC3
P9V
J25
1
2
3
VADC3_S
(VDD33)
U52
USB3V
(VDRAM )
L17
P24V
SB5V_V
5VDDD
(VCC3 _M )
U58
5VDDM1
REG_5V
+5VA
U28
U61
+9V
SB5V
V33ADC
V33TMP
J14
1
2
3
4
5
6
L13
U57
V33
VDDM
U31
+9VT
A5V
U60
D3
+5VA
(USB5V, SB5V_M, SB5V_IO, SB5V_CPU)
+5VSB
VCCBF
U13
J21
1
2
3
4
5
6
7
V33SB
SB5V_VO
U53
Image board Power Block Diagram
D2
VCC3
U63
U56
J15
1
2
3
4
(+9 V )
VCC3_S
P5V
REG_5V_S
V33PLL
U55
V25_MP
IC9
DVI_5V
+24V
CON8011
1
2
3
4
5
6
7
8
9
10
11
12
13
A5V
VIP711
5VDDA
R376
VCCA3
L15
U54
D43
+5V1
VCCA3_S
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BLOCK DIAGRAM
- 7 -
FROM AV
SELECTOR
IC2
ICR1
MAIN POWER
AMPLIFIER
U1
BUFFER
AMPLIFIER
SUB_WOOFER
OUTPUT
INSIDE
SPEAKER
MUTE
ICA3
FIXED/VARIBLE
OUTPUT
SELECTOR
Q8/Q9/Q11
ICS2
AV_ OUTPUT
MUTE
PDP Sound Block Diagram
Q1/Q2
DPWB11372-1G-S-
INPUT BUFFER
LPF
PAGE2
MUTE
ICS1
IC1
ICA1/ICA2
BBE & SOUND
PROCESSOR
PAGE1
SRS SURROUND
PROCESSOR
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BLOCK DIAGRAM
- 8 -
TU201 RF MODULE
SCL2
Q241
2SC2482
IC202
7805
IC241
DPWB11372-1G-T-
9V
POWER BLOCK
AUDIO OUT
NE555
IC203
9V_T
JP2
31V
UPC 1854ACT
IC201
VIDEO OUT
MTS
TV_R OUT
7809
TV_L OUT
Tuner Signal Block Diagram
SDA2
5V
TU201 PIF MODULE
FROM IMAGE BOARD CPU
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FACTORY ADJUSTED METHOD
- 9 -
DIGITAL BOARD
CN01
EXT INT
CN05
EXT INT
CN01 SELECT "INT"
CN05
SELECT
"EXT"
1. PANEAL voltage adjuetment
The power volage should be adjueted and clecked when changing the panel or power
board.
POWER VOLTAGE ADJUST FOR SAMSUNG TTL PANEL
GND
1. DIGITAL BOARD CON01 SELECT TO "INT".
2. DIGITAL BOARD CON05 SELECT TO "EXT".
3. MAKE A SW CONEECT TO POWER BOARD CON80011 PIN 1 & PIN5 FOR POWER
SWITCH.
4. FOLLOW THE PANEL LABEL VOLTAGE ADJUST VR.
5. VOLTAGE CHECK FROM "CHECK POINT" WITH GRAND.
6. ADJUST SEQUENCE
1th →2th →3th →4
th →5
th
VA VSC VS VR VSET
VR8005 VR8006 VR8003 VR8001 VR8007
VA VSC VS VR VSET
PIN 1 & 5 CONNECT A POWER SWITCH
VOLTAGE CHECK POINT
POWER BOARD
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FACTORY ADJUSTED METHOD
- 10 -
2. Color temperature adjuetment
Push the factory service key to into the adjuetment mode. The picture will appear as follow
DVI 5400ºk
X=335 Y=343
GAIN Bias
RGB RGB
XXX XXX
Use the AV key to select the color to adjust andorkey to adjust the leuel.
The sequired equipments are CA-100,Vp300.
a. Adjust Bise first to let the Y be 0.4 on CA-100. Adjust R or B to let the value of
X,Y on CA-100 be the same as the value showing screen, The value of Y should
be Maintained 0.4 during the adjusting.
b. Move the cursor to adjust Gain. The value of Y should be adjusted to 25. Then
adjust R or B to let the value of X,Y on CA-100 be the same as the value showing
on screen. The value of Y should be maintain 25 during the adjstiy.
c. Repeat to check the Bias and Gain. The value of Y,X and Y should be the same
as the previous adjusted value. Then the DVI 5400ºk mode is adjusted complelely.
d. Push the factory service key again to next picture. Then repeat the steps a. b. c.
to adjust.
e. If the adjvstment is completed, sepeat d. a. b. and c steps to adjust again.
f. When the last mode AV 13000ºk is adjusted completely, push the factory service
key again to leave the adjustment mode,
Note: 1. There are 12 adjusted modes(DVIx4.RGBx4 AVx4)
2. The adjusted sequence is DVI´RGB´AV.
3.DVI/RGB:BiasY=0.4
GainY=25
AV:BiasY=1
GainY=25
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TROUBLE SHOOTING GUIDES
- 11 -
NO POWER
SET POWER ON
Power Input Module
LJ92-00579A
Replace Power
Input Module
LJ92-00579A
OK
Panel Power Supply
LJ44-00025A
Replace Panel
Power Supply
LJ44-00025A
OK
AC Master Power
Switch Board
DPWB11398-1G---
N
Y
N
Y
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TROUBLE SHOOTING GUIDES
- 12 -
No picture
No picture
AV Module Board
(with Tuner)
DPWB11372-1G-T-
Y
Replace
AV Module Board
(with Tuner)
DPWB11372-1G-T-
N
OK
Image Board
DPWB11393-1G--S
Y
N
Replace
Image Board
DPWB11393-1G--S
OK
PDP Panel Module
VVEPP42SD001F-- N
Replace
PDP Panel Module
VVEPP42SD001F--
OK
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TROUBLE SHOOTING GUIDES
- 13 -
Vertical Line fail
Vertical Line
Interface Board-Z
LJ92-00568B
Y
Replace
Interface Board-Z
LJ92-00568B
N
OK
PDP Panel Module
Aeesmbly
VVEPP42SD001F--
N
Replace
PDP Panel Module
Aeesmbly
VVEPP42SD001F--
OK
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TROUBLE SHOOTING GUIDES
- 14 -
Horizontal Line fail
Horizontal Line
Interface Board-Y
LJ92-00569B
Y
Y
PDP Panel Module
Assembly
VVEPP42SD001F--
N
Replace
PDP Panel Assembly
VVEPP42SD001F--
OK
Y Amp Board-Upper
LJ92-00570A
Y Amp Board-Lower
LJ92-00571A
Replace
Y Amp Board- Upper
LJ92-00570A
Y Amp Board- Lower
LJ92-00571A
OK
Replace Interface
Board-Y
LJ92-00569B
OK
N
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TROUBLE SHOOTING GUIDES
- 15 -
NO Remote Control
SET POWER ON
Remote Control
Replace
Battery
OK
Front Button
Control Board
DPWB11372-1G-K-
Replace Front
Button Control
Board
DPWB11372-1G-K-
OK
Image Board
DPWB11393-1G--S
Replace Image
Board
DPWB11393-1G--S
O K
N
Y
Y
N
N
Replace
BRC-2
OK
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TROUBLE SHOOTING GUIDES
- 16-
Front Button Fail
SET POWER ON
Front Button
Control Board
DPWB11372-1G-K-
Replace Front Button
Control Board
DPWB11372-1G-K-
OK
Image Board
DPWB11393-1G--S
Replace
Image Board
DPWB11393-1G--S
OK
N
Y
N
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SPECIFICATION
- 17 -
1. SCOPE:
These specifications describe all the characteristics of the 42 inch color monitor.
2. ELECTRICAL REQUIREMENTS:
2.1. Display panel: Specification
a. Screen size Diagonal 42 inch
b. Aspect ratio 16:9 wide
c. Number of pixels 852(Horizontal, RGB Trio ) X 480(Vertical)pixels
d. Pixel Pitch 1.08mm X 1.08mm
e. Luminance 570cd/m2,at APL13%
f. Chromatically x=0.270±0.03, y=0.300±0.03(color temperature mode 1 : )
at center block white pattern 100% (mosaic).
2.2. Power Source:
a. Input voltage 100 ~ 240 Vac , 50 / 60 Hz
b. Input current 3.3A
c. Inrush current 60 A p-p/20ms Max.
d. Power consumption 380±10% Watts ( at 110Vac/color bar pattern)
e. Stand-by & DPMS 5 Watts Max. (at 110Vac)
2.3. Input Signal:
2.3.1 Connector Type:
RCA Jack for audio, video Y/CB/CRand Y/PB/PR
6 pin Din S-terminal
9 pin D-SUB
15 pin D-SUB
24 pin DVI
2.3.2 Video/S-Video Signal:
a. Type Analog
b. Polarity Positive
c. Amplitude
d. Frequency
Video 1Vp-p , (priority S-Video) Y=1Vp-p C=0.286Vp-p
H: 15.734KHz V: 60Hz(NTSC)
H: 15.625KHz V: 50Hz(PAL)
e. Input impedance 75 ohms
2.3.3 Y/CB/CR or Y/PB/PR Signal:
a. Type Analog
b. Polarity Positive
c. Amplitude AV: 1Vp-p (with sync)
S-Video: Y: 1Vp-p ,C: 0.286Vp-p
d. Frequency
Y/CB/CR
Y/PB/PR: HDTV
H: 15.734KHz ,V: 60Hz (NTSC)
H: 15.625KHz ,V: 50Hz (PAL)
1. 31KHz/60Hz (480P)
2. 45KHz/60Hz (720P)
3. 33KHz/60Hz(1080I)
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SPECIFICATION
- 18 -
2.3.4 RGB Signal:
a. Type TTL
b. Polarity Positive or Negative
c. Amplitude RGB: 0.7Vp-p
d. Frequency
H: support to 31K~91KHz
V: support to 50~85Hz
2.3.5 DVI Signal:
a. Type
b. Polarity
c. Frequency
Digital
Positive or Negative
H: support to 31K~63KHz
V: support to 50~85Hz
2.3.6 Audio Signal: Analog 500mV rms /more than 22Kohm
2.3.7 Pin Assignments For D-SUB Connector (In / Loop Out):
Pin Signal Assignment Pin Signal Assignment Pin Signal Assignment
1 RED 6 RED GND 11 GND
2 GREEN 7 GREEN GND 12 SDA
3 BLUE 8 BLUE GND 13 H-SYNC
4 GND 9 NC 14 V-SYNC
5 GND 10 GND 15 SCL
2.3.8 Pin Assignments For 24 Pin DVI Connector(Digital Only):
Pin Signal Assignment Pin Signal Assignment Pin Signal Assignment
1 TMDS Data 2- 9 TMDS Data 1- 17 TMDS Data 0-
2 TMDS Data 2+ 10 TMDS Data 1+ 18 TMDS Data 0+
3 TMDS Data 2/4
Shield
11 TMDS Data 1/3 Shield 19 TMDS Data 0/5 Shield
4 TMDS Data 4- 12 TMDS Data 3- 20 TMDS Data 5-
5 TMDS Data 4+ 13 TMDS Data 3+ 21 TMDS Data 5+
6 DDC Clock 14 +5V Power 22 TMDS Clock Shield
7 DDC Data 15 Ground (For +5V) 23 TMDS Clock +
8 No Connect 16 Hot Plug Detect 24 TMDS Clock -
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