Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Approved By
Reviewed By
Prepared By
TVHD
CC Chung
QA Dept. Product Development Div.
Hsin-nan Chen WT Lin
LCD TV Marketing and Product Management Div.
Josh Chi Karen Liao
1
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
- CONTENTS -
REVISION HISTORY ------------------------------------------------------- 3
1. GENERAL DESCRIPTION ------------------------------------------------------- 4
1.1 OVERVIEW
1.2 FEATURES
1.3 APPLICATION
1.4 GENERAL SPECIFICATIONS
1.5 MECHANICAL SPECIFICATIONS
2. ABSOLUTE MAXIMUM RATINGS ------------------------------------------------------- 5
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
REVISION HISTORY
VersionDate
Ver 1.0Jan. 15,’09All All Evaluation Specification was first issued.
Page
(New)
SectionDescription
3
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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1. GENERAL DESCRIPTION
1.1 OVERVIEW
V400H1- L10 is a 40” TFT Liquid Crystal Display module with 12-CCFL Backlight unit and 2ch-LVDS
interface. This module supports 1920 x 1080 FHD format and can display true 16.7M colors (8-bit colors).
The Inverter module for backlight is built-in.
1.2 FEATURES
- High brightness (450 nits)
- Ultra-high contrast ratio (6000:1)
- Faster response time (Gray to gray average 6.5ms)
- High color saturation NTSC 72%
- Ultra wide viewing angle: 176(H)/176(V) (CR>20) with Super MVA technology
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Model No.: V400H1 - L10
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- DE (Data Enable) only mode
- LVDS (Low Voltage Differential Signaling) interface
- Color reproduction (nature color)
- Optimized response time for both 50/60Hz Frame rate
- Low color shift function
- RoHS compliance
1.3 APPLICATION
- TFT LCD TVs
- Multi-Media Display
1.4 GENERAL SPECIFICATIONS
Item Specification Unit Note
Active Area 885.6(H) x 498.15 (V) (40” diagonal) mm
Bezel Opening Area 891.7 (H) x 504.8 (V) mm
Driver Element a-si TFT active matrix -
Pixel Number 1920 x R.G.B. x 1080 pixel
Pixel Pitch (Sub Pixel) 0.15375 (H) x 0.46125 (V) mm
Pixel Arrangement RGB vertical stripe -
Display Colors 16.7M color
Display Operation Mode Transmissive mode / Normally black -
Surface Treatment Anti-Glare coating (Haze 11%), Hard coating (3H)-
(1)
1.5 MECHANICAL SPECIFICATIONS
Item Min. Typ. Max. Unit Note
Horizontal(H) 951 952 953 mm (1)
Module Size
Note (1) Please refer to the attached drawings for more information of front and back outline dimensions.
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Vertical(V) 550 551 552 mm (1)
Depth(D) 34 35 36 mm To Rear
Depth(D) 52.8 53.8 54.8 mm To Inv Cover
Weight - 9310 - g
4
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2. ABSOLUTE MAXIMUM RATINGS
2.1 ABSOLUTE RATINGS OF ENVIRONMENT
Item Symbol
Storage Temperature TST -20 +60 ºC (1)
Operating Ambient Temperature T
Shock (Non-Operating) S
Vibration (Non-Operating) V
Note (1) Temperature and relative humidity range is shown in the figure below.
(a) 90 %RH Max. (Ta Љ 40 ºC).
(b) Wet-bulb temperature should be 39 ºC Max. (Ta > 40 ºC).
(c) No condensation.
Note (2) The maximum operating temperature is based on the test condition that the surface temperature of
display area is less than or equal to 65 ºC with LCD module alone in a temperature controlled chamber.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Value
Min. Max.
OP
- 50 G (3), (5)
NOP
- 1.0 G (4), (5)
NOP
0 +50 ºC (1), (2)
Unit Note
Thermal management should be considered in final product design to prevent the surface temperature of
display area from being over 65 ºC. The range of operating temperature may degrade in case of improper
thermal management in final product design.
Note (3) 11 ms, half sine wave, 1 time for ± X, ± Y, ± Z.
Note (4) 10 ~ 200 Hz, 10 min, 1 time each X, Y, Z.
Note (5) At testing Vibration and Shock, the fixture in holding the module has to be hard and rigid enough
so that the module would not be twisted or bent by the fixture.
Relative Humidity (%RH)
100
90
80
60
Operating Range
40
20
10
Storage Range
Temperature (ºC)
5
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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8060-20 400 20-40
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2.2 PACKAGE STORAGE
When storing modules as spares for a long time, the following precaution is necessary.
(a) Do not leave the module in high temperature, and high humidity for a long time. It is highly recommended to
store the module with temperature from 0 to 35 ºC at normal humidity without condensation.
(b) The module shall be stored in dark place. Do not store the TFT-LCD module in direct sunlight or fluorescent
light.
2.3 ELECTRICAL ABSOLUTE RATINGS
2.3.1 TFT LCD MODULE
Item Symbol
Power Supply Voltage Vcc -0.3 13.5 V
Input Signal Voltage VIN -0.3 3.6 V
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Value
Min. Max.
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Unit Note
(1)
2.3.2 BACKLIGHT UNIT
Item Symbol
Lamp Vol tageV
Note (1) No moisture condensation or freezing.
Min.Max.
Ё
Value
Unit Note
3000V
6
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3. ELECTRICAL CHARACTERISTICS
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
3.1 TFT LCD MODULE
Ta = 25 ± 2 ºC
Value
Parameter Symbol
Min. Typ. Max.
Power Supply Voltage VCC 10.8 12 13.2
Rush Current I
- - 2.4 A (2)
RUSH
White Pattern - 0.8 - A
Power Supply Current
Differential Input High
Threshold Voltage
LVDS
Interface
Differential Input Low
Threshold Voltage
Common Input Voltage V
Differential input voltage |VID| 200
Terminating Resistor R
CMOS
interface
Input High Threshold Voltage VIH 2.7 - 3.3 V
Input Low Threshold Voltage V
Black Pattern - 0.4 - A
Horizontal
Stripe
I
CC
- 1.0 1.3 A
V
+100 - - mV
LVTH
V
- - -100 mV
LVTL
1.0 1.2 1.4 V
CM
Ё
- 100 -
T
0 - 0.7 V
IL
600 ohm
Unit Note
Vrms
(1)
(3)
(4)
Note (1) The module should be always operated within above ranges.
Note (2) Measurement Conditions:
+12v
7
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Vcc rising time is 470us
0.1Vcc
GND
Note (3) The specified power supply current is under the conditions at Vcc = 12 V, Ta = 25 ± 2 ºC, fv = 60
Hz, whereas a power dissipation check pattern below is displayed.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
+12V
0.9Vcc
470us
a. White Pattern
Active Area
c. Horizontal Pattern
b. Black Pattern
Active Area
8
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Note (4) The LVDS input characteristics are as follows:
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Model No.: V400H1 - L10
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9
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3.2 BACKLIGHT UNIT
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Min. Typ. Max.
Lamp Input Voltage VL - TBD - V
Lamp Current IL TBD 8.5 TBD mA
Lamp Turn On VoltageV
S
- -
- -
Value
TBD
TBD
Ta = 25 ± 2 ºC)
Unit Note
RMS
RMS
V
Ta = 0 ºC (2)
RMS
V
Ta = 25 ºC (2)
RMS
(1)
Operating Frequency FL 40 - 70 KHz (3)
Lamp Life Time LBL 50,000 - - Hrs (4)
3.2.2 INVERTER CHARACTERISTICS (
Parameter Symbol
Total Power Consumption P
Power Supply Voltage VBL 22.8 24 25.2 V
255
Ta = 25 ± 2 ºC)
Value
Min. Typ. Max.
Unit Note
- 140 TBD W (5), (6), IL =TBDmA
DC
Power Supply Current IBL - 5.83 TBD A Non Dimming
Input Ripple Noise - - - 912 mV
P-P
VBL=22.8V
Oscillating Frequency FW TBD TBD TBD kHz (3)
Dimming frequency FB 150 160 170 Hz
Minimum Duty Ratio D
- 20 - %
MIN
Note (1) Lamp current is measured by utilizing AC current probe and its value is average by measuring
master and slave board.
Note (2) The lamp starting voltage V
should be applied to the lamp for more than 1 second after startup.
S
Otherwise the lamp may not be turned on.
Note (3) The lamp frequency may produce interference with horizontal synchronous frequency of the
display input signals, and it may result in line flow on the display. In order to avoid interference, the
lamp frequency should be detached from the horizontal synchronous frequency and its harmonics
as far as possible.
Note (4) The life time of a lamp is defined as when the brightness is larger than 50% of its original value
and the effective discharge length is longer than 80% of its original length (Effective discharge
length is defined as an area that has equal to or more than 70% brightness compared to the
brightness at the center point of lamp.) as the time in which it continues to operate under the
condition at Ta = 25 2к and I
Note (5) The power supply capacity should be higher than the total inverter power consumption P
= TBD~ TBDmArms.
L
. Since
BL
the pulse width modulation (PWM) mode was applied for backlight dimming, the driving current
changed as PWM duty on and off. The transient response of power supply should be considered
for the changing loading when inverter dimming.
Note (6) The measurement condition of Max. value is based on 40" backlight unit under input voltage 24V,
average lamp current TBD mA and lighting 30 minutes later.
10
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Inverter
A
A
A
A
A
A
HV (Blue +(-))
1
HV (White +(-))
2
HV (Blue +(-))
1
HV (White +(-))
2
HV (Blue +(-))
1
HV (White +(-))
2
LCD Module
A
A
A
A
A
A
HV (Blue +(-))
1
HV (White +(-))
2
HV (Blue +(-))
1
HV (White +(-))
2
HV (Blue +(-))
1
HV (White +(-))
2
11
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3.2.3 INVERTER INTERFACE CHARACTERISTICS
Parameter Symbol
On/Off Control Voltage
Internal PWM Control
Voltage
External PWM Control
Voltage
Status Signal
VBL Rising Time Tr1
VBL Falling Time Tf1
Control Signal Rising Time Tr
Control Signal Falling Time Tf
PWM Signal Rising Time T
PWM Signal Falling Time T
Input impedance R
PWM Delay Time T
BLON Delay Time
BLON Off Time T
ON
OFF
MAX2.853.0 3.15V Maximum duty ratio
MIN
HI 2.0
LO
HI 3.0 3.3 3.6 V Normal
LO
V
BLON
V
IPWM
V
EPWM
Status
PWMR
PWMF
IN
PWM
T
on
T
on1
off
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Tes t
Condition
Min.Typ.Max.
Ё
Ё
Ё
Ё
Ё
Ё
30
Ё
30
ЁЁЁ
ЁЁЁ
ЁЁЁ
ЁЁЁ
Ё
Ё
100 Ё ms
Ё
300
ЁЁЁЁ
Ё
300
300
Value
2.0
0
Ё
0
0
1
Ё
Ё
0
Ё
Ё
Ё
ЁЁ
ЁЁ
5.0 V
0.8 V
Ё
5.0 V
0.8 V Duty off
0.8 V Abnormal
ms
ms
100 ms
100 ms
50 us
50 us
ЁЁ
ЁЁ
ЁЁЁЁЁ
ЁЁ
ms
ms
ms
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
UnitNote
V Minimum duty ratio
Duty on
10%-90%V
M˖
BL
Note (1) The Dimming signal should be valid before backlight turns on by BLON signal. It is inhibited to
change the internal/external PWM signal during backlight turn on period.
Note (2) The power sequence and control signal timing are shown in the following figure. For a certain
reason, the inverter has a possibility to be damaged with wrong power sequence and control
signal timing.
Note (3) While system is turned ON or OFF, the power sequences must follow as below descriptions:
Turn ON sequence: VBL
Turn OFF sequence: BLOFF
Ш
PWM signal Ш BLON
Ш
PWM signal Ш VBL
12
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
V
V
V
BL
V
BLON
EPWM
IPWM
9
Toff
%/
Tf1
9
%/
Tr1
9
%/
9
%/
2.0V
0.8V
Ton
Ton1
0
0
Backlight on duration
Tr
Tf
Ext. Dimming Function
T
PWMR
2.0V
0
0.8V
T
PWM
T
PWMF
Floating
3.0V
0
Floating
Int. Dimming Function
V
W
External
PWM
Period
External
PWM Duty
100%
Minimun
Duty
13
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4. BLOCK DIAGRAM
4.1 TFT LCD MODULE
ERX0(+/-)
ERX1(+/-)
ERX2(+/-)
ERX3(+/-)
ECLK(+/-)
JAE (FI-RE51S-HF )
INPUT CONNECTOR
ORX0(+/-)
ORX1(+/-)
ORX2(+/-)
ORX3(+/-)
OCLK(+/-)
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TIMING
CONTROLLER
DC/DC CONVERTER
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
SCAN DRIVER
TFT LCD PANEL
(1920x3x1080)
DATA DRIVER
SELLVDS
ODSEL
Vcc
GND
VBL
GND
Status
E_PWM
I_PWM
BLON
INVERTER
CONNECTOR
CN1:
Cvilux
CI0114M1EHR0-LA!
or equivalent
CN2-CN7: CP042EP1MFB-LF (Cvilux)
BACKLIGHT
UNIT
14
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5. INTERFACE PIN CONNECTION
5.1 TFT LCD MODULE
CNF1 Connector Pin Assignment
Pin Name Description Note
1 VCC +12V power supply
2 VCC +12V power supply
3 VCC +12V power supply
4 VCC +12V power supply
5 VCC +12V power supply
6 GND Ground
7 GND Ground
8 GND Ground
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Model No.: V400H1 - L10
25 ERX0- Even pixel Negative LVDS differential data input. Channel 0
26 ERX0+ Even pixel Positive LVDS differential data input. Channel 0
27 ERX1- Even pixel Negative LVDS differential data input. Channel 1
28 ERX1+ Even pixel Positive LVDS differential data input. Channel 1
29 ERX2- Even pixel Negative LVDS differential data input. Channel 2
30 ERX2+ Even pixel Positive LVDS differential data input. Channel 2
31 GND Ground
32 ECLK- Even pixel Negative LVDS differential clock input.
33 ECLK+ Even pixel Positive LVDS differential clock input.
15
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(1)
(1)
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34 GND Ground
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Model No.: V400H1 - L10
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35 ERX3- Even pixel Negative LVDS differential data input. Channel 3
36 ERX3+ Even pixel Positive LVDS differential data input. Channel 3
37 N.C. No Connection
38 N.C. No Connection
39 GND Ground
40 N.C. No Connection
41 N.C. No Connection
42 N.C. No Connection
43 N.C. No Connection
44 N.C. No Connection
45 LVDS_SEL High(3.3V) or open for VESA, Low (GND) for JEIDA (4)
46 N.C. No Connection
47 N.C. No Connection
48 N.C. No Connection
49 N.C. No Connection
50 N.C. No Connection
(1)
(3)
(3)
(3)
51 N.C. No Connection
Note (1) Two pixel data send into the module for every clock cycle. The first pixel of the frame is odd pixel and
the second pixel is even pixel
Note (2) LVDS connector pin order defined as follows
Note (3) Reserved for internal use. Please leave it open.
Note (4) Low: JEIDA LVDS Format (Connect to GND), High or open: VESA Format. (Connect to +3.3V)
Note (5) LVDS signal pin connected to the LCM side has the following diagram.
R1 in the system side should be less than 1K Ohm. (R1 < 1K Ohm)
16
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g
y
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Vcc
Selector (pin45
stem side
System side
R1 < 1K
R1
)
R2
Settin
R3
TCON
LCM sideS
17
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)
)
)
)
)
)
5.2 BACKLIGHT UNIT
The pin configuration for the housing and the leader wire is shown in the table below.
CN2-CN7: CP042EP1MFB-LF (Cvilux)
Pin Name Description Wire Color
1 HV High Voltage Blue
2 HV High Voltage White
Note (1) The backlight interface housing for high voltage side is a model CP042EP1MFB-LF,
manufactured by Cvilux. The mating header on inverter part number is
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Model No.: V400H1 - L10
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CP042EP1MFB-LF
(Cvilux)
1.HV (Blue
2.HV(White
1.HV (Blue
2.HV(White
1.HV (Blue
2.HV(White
18
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5.3 INVERTER UNIT
CN1: CI0114M1ER0-LA (Cvilux) or equivalent
Pin
№
1
2
Symbol Feature
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Model No.: V400H1 - L10
Under Evaluation
3
4
5
6
7
8
9
10
11 STAT U S
12 E_PWM External PWM Control Signal
13 I_PWM Internal PWM Control Signal
14 BLON BL ON/OFF
Note (1) Pin 12: External PWM control (use pin 12): Pin 13 must open.
Note (2) Pin 13: Internal PWM control (use pin 13): Pin 12 must open.
Note (3) Pin 12 and Pin 13 can’t open in the same period.
VBL +24V
GND GND
Normal (3.3V)
Abnormal(GND)
CN2~CN7: CP042EP1MFB-LF (Cvilux)
Pin
№
1 CCFL HOT CCFL high voltage
2 CCFL HOT CCFL high voltage
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Symbol Description
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G0-EG
G0-EG
0
r
0
p
ORx0
O
CLK
OB0
K
5.4 BLOCK DIAGRAM OF INTERFACE
CNF1
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Model No.: V400H1 - L10
Under Evaluation
ER0-ER7
E
EB0-EB7
DE
OR0-OR7
OG0-OG7
OB0-OB7
D
Host
Graphics
Controller
ERx0+
TxIN
ERx
ERx1+
7
ERx1-
ERx2+
ERx2-
ERx3+
ERx3-
51
Ө
51
51Ө
51
51
51
51
51
100pF
Ө
100
Ө
Ө
100pF
Ө
Ө
100pF
Ө
F
-
RxOUT
ER0-ER7
E
-EB7
EB
DE
OR0-OR7
OG0-OG7
7
-OB7
ECLK+
PLL
51
Ө
51
100pF
Ө
-
PLL
DCL
Timing
ORx0+
ORx1+
ORx1-
51
Ө
51
51Ө
100pF
Ө
100pF
-
Controlle
ORx2+
ORx3+
ORx3-
OCLK+
PLL
LVDS Transmitter
Rx2-
51
Ө
51
51
51
51
51
100pF
Ө
Ө
100pF
Ө
Ө
100pF
Ө
-
LVDS Receiver
PLL
THC63LVDM83A
(LVDF83A)
20
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ER0~ER7 : Even pixel R data
EG0~EG7 : Even pixel G data
EB0~EB7 : Even pixel B data
OR0~OR7 : Odd pixel R data
OG0~OG7: Odd pixel G data
OB0~OB7 : Odd pixel B data
DE : Data enable signal
DCLK : Data clock signal
Note (1) The system must have the transmitter to drive the module.
Note (2) LVDS cable impedance shall be 50 ohms per signal line or about 100 ohms per twist-pair line when it is
used differentially.
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Model No.: V400H1 - L10
Under Evaluation
Note (3) Two pixel data send into the module for every clock cycle. The first pixel of the frame is odd pixel and the
second pixel is even pixel.
21
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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5.5 LVDS INTERFACE
JEDIA FormatΚSELLVDS=L
RXCLK
RXCLK
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
ORX0
ORX0
ORX1
ORX1
ORX2
ORX2
ORX3
ORX3
ERX0
ERX0
ERX1
ERX1
ERX2
ERX2
ERX3
ERX3
VESA FormatΚSELLVDS=H or Open
R7G2R6R5R4R3
R7G2R6R5R4R3
B2G7B3
B2G7B3
R7G2R6R5R4R3
R7G2R6R5R4R3
B2G7B3
B2G7B3
Current F\FOH
Current F\FOH
G5G4G6
G5G4G6
G5G4G6
G5G4G6
R2
R2
G3
G3
B4B6B5B7VSHSDE
B4B6B5B7VSHSDE
R0G0R1G1B1B0RSVD
R0G0R1G1B1B0RSVD
R2
R2
G3
G3
B4B6B5B7VSHSDE
B4B6B5B7VSHSDE
R0G0R1G1B1B0RSVD
R0G0R1G1B1B0RSVD
RXCLK
RXCLK
R5G0R4R3R2R1
ORX0
ORX0
ORX1
ORX1
ORX2
ORX2
ORX3
ORX3
ERX0
ERX0
ERX1
ERX1
ERX2
ERX2
ERX3
ERX3
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
R5G0R4R3R2R1
B0G5B1
B0G5B1
R5G0R4R3R2R1
R5G0R4R3R2R1
B0G5B1
B0G5B1
22
G3G2G4
G3G2G4
G3G2G4
G3G2G4
R0
R0
G1
G1
B2B4B3B5VSHSDE
B2B4B3B5VSHSDE
R6G6R7G7B7B6RSVD
R6G6R7G7B7B6RSVD
R0
R0
G1
G1
B2B4B3B5VSHSDE
B2B4B3B5VSHSDE
R6G6R7G7B7B6RSVD
R6G6R7G7B7B6RSVD
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R0~R7: Pixel R Data (7; MSB, 0; LSB)
G0~G7: Pixel G Data (7; MSB, 0; LSB)
B0~B7: Pixel B Data (7; MSB, 0; LSB)
DE: Data enable signal
DCLK: Data clock signal
Notes (1) RSVD (reserved) pins on the transmitter shall be “H” or “L”.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
23
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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5.6 COLOR DATA INPUT ASSIGNMENT
The brightness of each primary color (red, green and blue) is based on the 8-bit gray scale data input for
the color. The higher the binary input, the brighter the color. The table below provides the assignment of
color versus data input.
Color
R7 R6 R5 R4 R3 R2 R1 R0
Black
Red
Green
Basic
Colors
Gray
Scale
Of
Red
Gray
Scale
Of
Green
Gray
Scale
Of
Blue
Note (1) 0: Low Level Voltage, 1: High Level Voltage
Blue
Cyan
Magenta
Yel lo w
White
Red(0) / Dark
Red(1)
Red(2)
:
:
Red(253)
Red(254)
Red(255)
Green(0) / Dark
Green(1)
Green(2)
:
:
Green(253)
Green(254)
Green(255)
Blue(0) / Dark
Blue(1)
Blue(2)
:
:
Blue(253)
Blue(254)
Blue(255)
0
0
1
1
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
:
:
:
:
1
1
1
1
1
1
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Data Signal
Red Green Blue
G7G6G5G
0
0
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
1
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
1
1
1
1
0
1
0
0
1
1
1
1
1
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
1
1
0
0
0
0
0
0
1
1
0
0
0
0
0
0
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
G3 G2 G1 G0
4
0
0
0
0
1
1
0
0
1
1
0
0
1
1
1
1
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
1
1
1
1
1
1
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
0
0
0
1
1
1
0
0
0
1
1
1
1
1
1
0
0
0
:
:
0
0
0
0
0
0
:
:
1
1
1
0
0
0
:
:
0
0
0
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
1
:
:
:
:
1
0
1
1
1
1
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
B
B6 B5 B4 B3 B2
7
0
0
0
1
0
1
0
1
1
0
0
0
0
0
0
0
1
0
1
0
1
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
0
0
1
1
0
0
0
0
0
0
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
1
1
1
1
1
1
B1B
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
1
0
:
:
:
:
:
:
:
:
:
:
:
:
1
1
1
1
0
1
1
1
1
1
1
0
1
1
1
1
1
1
24
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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6. INTERFACE TIMING
6.1 INPUT SIGNAL TIMING SPECIFICATIONS
The input signal timing specifications are shown as the following table and timing diagram.
Signal Item Symbol Min. Typ. Max. Unit Note
Frequency 1/Tc (60) 74.25 (80) MHZ -
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
LVDS Receiver Clock
LVDS Receiver Data
Vertical Active Display Term
Input cycle to
cycle jitter
Spread
spectrum
modulation
range
Spread
spectrum
modulation
frequency
Setup Time Tlvsu 600 - - ps
Hold Time Tlvhd 600 - - ps
Frame Rate
Total Tv 1115 1125 1135 Th Tv=Tvd+Tvb
Display Tvd 1080 1080 1080 Th -
Trcl - - 200 ps (3)
F
clkin_mod
F
F
200 KHz
SSM
Fr6 57 60 63 Hz
Fr5 47 50 53
clkin
-2%
Ё
F
+2%MHz
clkin
(4)
-
(5)
(6)
Blank Tvb 35 45 55 Th -
Total Th 1050 1100 1150 Tc Th=Thd+Thb
Horizontal Active Display Term
Note (1) Please make sure the range of pixel clock has follow the below equationΚ
Fclkin(max)
Fr5
Ѽ
Tv Ѽ Th Њ Fclkin(min)
Note (2) This module is operated in DE only mode and please follow the input signal timing diagram below
Display Thd 960 960 960 Tc -
Blank Thb 90 140 190 Tc -
Њ
Fr6 Ѽ Tv Ѽ Th
Κ
25
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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DE
T
h
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INPUT SIGNAL TIMING DIAGRAM
T
v
T
vd
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
T
vb
DCLK
T
hd
DE
DAT
Note (3) The input clock cycle-to-cycle jitter is defined as below figures. Trcl = I T1 – TI
Valid display data (960 clocks)
Note (4) The SSCG (Spread spectrum clock generator) is defined as below figures.
26
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Note (5) The LVDS timing diagram and setup/hold time is defined and showing as the following figures.
LVDS RECEIVER INTERFACE TIMING DIAGRAM
Tc
RXCLK+/-
RXn+/-
Tlvsu
Tlvhd
1T
3T
5T
7T
9T
11T
13T
14
Note (6) (ODSEL) = H/L or open for 50/60Hz frame rate. Please refer to 5.1 for detail information
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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14
14
27
14
14
14
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r
6.2 POWER ON/OFF SEQUENCE
To prevent a latch-up or DC operation of LCD module, the power on/off sequence should be as the diagram
below.
0V
0.5ЉЉЉЉT1ЉЉЉЉ10ms
0ЉЉЉЉT
0ЉЉЉЉT
500ms ЉЉЉЉT
LVDS Signals
2
ЉЉЉЉ50ms
3
ЉЉЉЉ50ms
4
0V
0.1V
CC
Power On
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T
1
T
2
VALID
T
3
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
0.1V
cc
T
4
Power Off
Note
0ЉЉЉЉT7ЉЉЉЉT2
0ЉЉЉЉT
8
ЉЉЉЉT3
T
T
7
8
Signal selecto
(SELLVDS…)
Backlight
50%
50%
(Recommended)
500msЉЉЉЉT
5
T
5
T
6
Power ON/OFF Sequence
Κ
(1) The supply voltage of the external system for the module input should follow the definition of Vcc.
(2) Apply the lamp voltage within the LCD operation range. When the backlight turns on before the LCD
operation or the LCD turns off before the backlight turns off, the display may momentarily become
abnormal screen.
(3) In case of Vcc is in off level, please keep the level of input signals on the low or high impedance.
(4) T4 should be measured after the module has been fully discharged between power off and on period.
(5) Interface signal shall not be kept at high impedance when the power is on.
28
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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y
(2)
/
(4)
(7)
(5)
y
y
y
y
7. OPTICAL CHARACTERISTICS
7.1 TEST CONDITIONS
Item Symbol Value Unit
Ambient Temperature Ta
Ambient Humidity Ha
Supply Voltage V
Input Signal According to typical value in "3. ELECTRICAL CHARACTERISTICS"
Lamp Current(HV) I
Oscillating Frequency
(Inverter)
Frame rate 60 Hz
7.2 OPTICAL SPECIFICATIONS
The relative measurement methods of optical characteristics are shown in 7.2. The following items should
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CC
L
F
W
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
o
±
2
25
±
10
50
12 V
TBD mA
TBD KHz
C
%RH
be measured under the test conditions described in 7.1 and stable environment shown in Note (6).
ItemS
Contrast RatioCR40006000
Response Time
Center Luminance of WhiteL
White Variation
Cross TalkCT--4.0%
Red
Green
Color
Chromaticity
Blue
White
Color GamutCG
Viewing
Angle
Horizontal
Ver t ical
mbolConditionMin.Typ.Max.UnitNote
-
Gray to gray
average
δ
W
θ
=0°,
θ
=0
Rx0.630R
Gx0.290G
x
Viewing angle at
Normal direction
°
Y
Bx 0.148B
- 6.5 12 ms(3)
350450
-
--1.3-
0.323-
Typ. –
0.03
0.597-
Typ. +
0.03
0.049-
-
cd
Wx0.280W
0.290
-
-72 -%NTSC
θ
+
θ
-
θ
+
θ
-
CR
≥
20
8088808880888088-
Deg
.
(6)
(1)
29
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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T
Note (1) Definition of Viewing Angle (θx, θy):
Viewing angles are measured by Autronic Conoscope Cono-80
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Normal
θ
x = θy = 0º
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
θ
X-
= 90º
6 o’clock
θ
y-
= 90º
x-
y-
Note (2) Definition of Contrast Ratio (CR):
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) = L255 / L0
L255: Luminance of gray level 255
L 0: Luminance of gray level 0
CR = CR (5), where CR (X) is corresponding to the Contrast Ratio of the point X at the figure in
θy- θ
θx−
y
+
θx+
12 o’clock direction
y+
θ
y+
= 90º
x+
θ
X+
= 90º
Note (7).
Note (3) Definition of Gray to Gray Switching Time :
100%
90%
Optical
Response
10%
0%
Gray to gray
switching time
Gray to gray
switching time
ime
30
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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A
A
(
)
A
A
(
)
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The driving signal means the signal of gray level 0, 63, 127, 191, 255.
Gray to gray average time means the average switching time of gray level 0, 63, 127, 191, 255 to each
other .
Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
Note (4) Definition of Luminance of White (L
Measure the luminance of gray level 255 at center point and 5 points
L
= L (5)
C
L
= [L (1)+ L (2)+ L (3)+ L (4)+ L (5)] / 5
AVE
where L (x) is corresponding to the luminance of the point X at the figure in Note (7).
Note (5) Definition of Cross Talk (CT):
CT = | Y
– YA | / Y
B
×
100 (%)
A
Where:
(a)
Y
= Luminance of measured location without gray level 255 pattern (cd/m2)
A
Y
= Luminance of measured location with gray level 255 pattern (cd/m2)
B
ctive Area
Gray 51
Y
A, U
Y
A, R
(D,W)
Y
(D/8,W/2)
A, L
Y
(D/2,7W/8)
A, D
(0, 0)
, L
):
C
AVE
(D/2,W/8)
(7D/8,W/2)
(D/4,W/4)
Y
(D/8,W/2)
B, L
Y
(D/2,7W/8)
B, D
(0, 0)
ctive Area
Gray 0
Gray 255
Gray 51
Y
(D/2,W/8)
B, U
Y
(7D/8,W/2)
B, R
(3D/4,3W/4)
D,W
(b)
Y
= Luminance of measured location without gray level 255 pattern (cd/m2)
A
Y
= Luminance of measured location with gray level 255 pattern (cd/m2)
B
Y
(D/8,W/2)
A, L
Y
(D/2,7W/8)
A, D
(0, 0)
ctive Area
Gray 0
Y
A, U
Y
A, R
(D,W)
(D/2,W/8)
(7D/8,W/2)
(D/4,W/4)
Y
(D/8,W/2)
B, L
Y
(D/2,7W/8)
B, D
(0, 0)
ctive Area
Gray 0
Gray 255
Gray 0
Y
(D/2,W/8)
B, U
Y
(7D/8,W/2)
B, R
(3D/4,3W/4)
D,W
31
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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Note (6) Measurement Setup:
The LCD module should be stabilized at given temperature for 1 hour to avoid abrupt temperature
change during measuring. In order to stabilize the luminance, the measurement should be
executed after lighting Backlight for 1 hour in a windless room.
LCD Module
LCD Panel
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
CS-2000
Field of View = 1º
500 mm
Note (7) Definition of White Variation (
Measure the luminance of gray level 255 at 5 points
δ
W = Maximum [L (1), L (2), L (3), L (4), L (5)] / Minimum [L (1), L (2), L (3), L (4), L (5)]
W/4
Light Shield Room
(Ambient Luminance < 2lux)
δ
W):
Horizontal Line
D
D/4D/23D/4
12
X
W
W/2
5
: Test Point
X=1 to 5
Vertical Line
3W/4
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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Active Area
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8. DEFINITION OF LABELS
8.1 CMO MODULE LABEL
The barcode nameplate is pasted on each module as illustration, and its definitions are as following explanation.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
V400H1 -L10 Rev. XX
CHI MEI
OPTOELECTRONICS
(a) Model Name: V400H1-L10
(b) Revision: Rev. XX, for example: A0, A1… B1, B2… or C1, C2…etc.
(c) Production Locations / Factory ID: IN TAIWAN (GEMN) or IN CHINA (LEOO or CAPG or CANO)
(d) CMO barcode definition:
Serial ID: XX-XX-X-XX-YMD-L-NNNN
Code Meaning Description
XX CMO internal use XX Revision Cover all the change
X-XX CMO internal use -
Year, month, day
YMD
L Product line # Line 1=1, Line 2=2, Line 3=3, …
NNNN Serial number Manufacturing sequence of product
X X X X X X X Y M D L N N N N
Year: 2001=1, 2002=2, 2003=3, 2004=4…
Month: Jan. ~ Dec.=1, 2, 3, ~, 9, A, B, C
st
Day: 1
to 31st =1, 2, 3, ~, 9, A, B, C, ~, W, X, Y, exclude I, O, and U
MADE IN TAIWAN
RoHS GEMN
33
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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9. PACKAGING
9.1 PACKING SPECIFICATIONS
(1) 5 LCD TV modules / 1 Box
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
(2) Box dimensions
(3) Weight
Κ
Approx. 51.88Kg(5 modules per carton)
Κ
1060(L)x378(W)x650(H)mm
9.2 PACKING METHOD
Figures 9-1 and 9-2 are the packing method
LCD TV Module
Anti-Static Bag
Module*5pcs
Cushion(Top)
Cushion(Bottom)
Carton
Carton Label
Figure.9-1 packing method
34
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
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Sea / Land Transportation
(40ft Container)
Air Transportation
Figure. 9-2 Packing method
35
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
10. PRECAUTIONS
10.1 ASSEMBLY AND HANDLING PRECAUTIONS
(1) Do not apply rough force such as bending or twisting to the module during assembly.
(2) It is recommended to assemble or to install a module into the user’s system in clean working areas.
The dust and oil may cause electrical short or worsen the polarizer.
(3) Do not apply pressure or impulse to the module to prevent the damage of LCD panel and backlight.
(4) Always follow the correct power-on sequence when the LCD module is turned on. This can prevent the
damage and latch-up of the CMOS LSI chips.
(5) Do not plug in or pull out the I/F connector while the module is in operation.
(6) Do not disassemble the module.
(7) Use a soft dry cloth without chemicals for cleaning, because the surface of polarizer is very soft and
easily scratched.
(8) Moisture can easily penetrate into LCD module and may cause the damage during operation.
(9) High temperature or humidity may deteriorate the performance of LCD module. Please store LCD
modules in the specified storage conditions.
(10) When ambient temperature is lower than 10ºC, the display quality might be reduced. For example, the
response time will become slow, and the starting voltage of CCFL will be higher than that of room
temperature.
10.2 SAFETY PRECAUTIONS
(1) The startup voltage of a backlight is over 1000 Volts. It may cause an electrical shock while assembling
with the inverter. Do not disassemble the module or insert anything into the backlight unit.
(2) If the liquid crystal material leaks from the panel, it should be kept away from the eyes or mouth. In
case of contact with hands, skin or clothes, it has to be washed away thoroughly with soap.
(3) After the module’s end of life, it is not harmful in case of normal operation and storage.
10.3 SAFETY STANDARDS
The LCD module should be certified with safety regulations as follows:
Regulatory Item Standard
UL UL 60950-1: 2007
Information Technology equipment
Audio/Video Apparatus
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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cULCAN/CSA C22.2 No.60950-1-03: 2007
IEC 60950 -1: 2005
CB
EN60950-1: 2009
ULUL 60065: 2007
cULCAN/CSA C22.2 No.60065-03: 2006
IEC 60065: 2005
CB
EN 60065: 2008
36
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11. MECHANICAL CHARACTERISTICS
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The information described in this technical specification is tentative and it is possible to be changed without prior notice.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
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The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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Issued Date: Jan. 15, 2010
Model No.: V400H1 - L10
Under Evaluation
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CHI MEI
39
The information described in this technical specification is tentative and it is possible to be changed without prior notice.
Please contact CMO ’s representative while your product design is based on this specification.
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