CHIMEI INNOLUX V320BK1-LS5 Specification

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MODEL NO.: V320BK1
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PRODUCT SPECIFICATION
Tentative Specification Preliminary Specification
Approval Specification
SUFFIX: LS5
Customer:
APPROVED BY SIGNATURE
Name / Title
Note
Please return 1 copy for your confirmation with your signature and comments.
Approved By Checked By Prepared By
Chao-Chun Chung Vincent Chou Archer Chang
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CONTENTS
1. GENERAL DESCRIPTION......................................................................................................................................5
1.1 OVERVIEW ....................................................................................................................................................5
1.2 FEATURES ....................................................................................................................................................5
1.3 APPLICATION................................................................................................................................................5
1.4 GENERAL SPECIFICATIONS ........................................................................................................................5
1.5 MECHANICAL SPECIFICATIONS ..................................................................................................................6
2. ABSOLUTE MAXIMUM RATINGS ...........................................................................................................................7
2.1 ABSOLUTE RATINGS OF ENVIRONMENT....................................................................................................7
2.2 PACKAGE STORAGE ....................................................................................................................................8
2.3 ELECTRICAL ABSOLUTE RATINGS ............................................................................................................8
3. ELECTRICAL CHARACTERISTICS ........................................................................................................................9
3.1 TFT LCD MODULE (Ta = 25 ± 2 ºC) ..........................................................................................................9
3.2 BACKLIGHT CONVERTER UNIT.................................................................................................................12
3.2.1 LED LIGHT BAR CHARACTERISTICS (Ta = 25 ± 2 ºC)...................................................................... 12
Note (6) Below diagram is only for power supply design reference. ..............................................................13
4. BLOCK DIAGRAM OF INTERFACE......................................................................................................................17
4.1 TFT LCD MODULE.......................................................................................................................................17
5. INTERFACE PIN CONNECTION...........................................................................................................................18
5.1 TFT LCD MODULE.......................................................................................................................................18
5.3 BLOCK DIAGRAM OF INTERFACE ............................................................................................................22
5.4 LVDS INTERFACE....................................................................................................................................... 24
5.5 COLOR DATA INPUT ASSIGNMENT...........................................................................................................25
6. INTERFACE TIMING.............................................................................................................................................26
6. INTERFACE TIMING.............................................................................................................................................26
6.1 INPUT SIGNAL TIMING SPECIFICATIONS .................................................................................................26
6.2 POWER ON/OFF SEQUENCE ..................................................................................................................... 30
7. OPTICAL CHARACTERISTICS............................................................................................................................. 32
7.1 TEST CONDITIONS .....................................................................................................................................32
7.2 OPTICAL SPECIFICATIONS ........................................................................................................................ 33
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8. PRECAUTIONS .................................................................................................................................................... 38
8.1 ASSEMBLY AND HANDLING PRECAUTIONS .............................................................................................38
8.2 SAFETY PRECAUTIONS............................................................................................................................. 38
9. DEFINITION OF LABELS......................................................................................................................................39
9.1 CMI MODULE LABEL...................................................................................................................................39
10. PACKAGING .......................................................................................................................................................40
10.1 PACKAGING SPECIFICATIONS.................................................................................................................40
10.2 PACKAGING METHOD .............................................................................................................................. 40
11. MECHANICAL CHARACTERISTIC......................................................................................................................42
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Version Date Page(New) Section Description Ver. 2.0 Mar. 08, 2012 All
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PRODUCT SPECIFICATION
REVISION HISTORY
All
Approval specification was first issued.
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1. GENERAL DESCRIPTION
1.1 OVERVIEW
V320BK1-LS5 is a 32” TFT Liquid Crystal Display module with LED Backlight unit and 2ch-LVDS interface. This
module supports 1366 x 768 HDTV format and can display 16.7M colors (8-bit).
1.2 FEATURES
Ё High brightness (350 nits)
Ё High contrast ratio (3000:1)
Ё Fast response time (Gray to gray average 8.5 ms)
Ё High color saturation (NTSC 72%)
Ё HDTV (1366 x 768 pixels) resolution, true HDTV format
Ё LVDS (Low Voltage Differential Signaling) interface
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Ё Optimized response time for 120 Hz frame rate
Ё Ultra wide viewing angle : Super MVA technology
Ё Viewing Angle : 178(H)/178(V) (CR 20) VA Technology
Ё RoHs compliance
1.3 APPLICATION
Ё Standard Living Room TVs
Ё Public Display Application
Ё Home Theater Application
Ё MFM Application
1.4 GENERAL SPECIFICATIONS
Item Specification Unit Note
Active Area 697.6845 (H) x 392.256 (V) mm
Bezel Opening Area 703.8 (H) x 398.4 (V) mm
Driver Element a-si TFT active matrix - -
Pixel Number 1366 x R.G.B. x 768 pixel -
Pixel Pitch(Sub Pixel) 0.17025(H) x 0.51075 (V) mm -
(1)
Pixel Arrangement RGB vertical stripe - -
Power consumption (LVDS input Power 10W + LED Backlight Power 30.63W) Watt (2)
Display Colors 16.7M color -
Display Operation Mode Transmissive mode / Normally Black - -
Surface Treatment
Note (1) Please refer to the attached drawings in chapter 9 for more information about the front and back outlines.
Note (2) Please refer sec 3.1 and 3.2 for more information of Power consumption
Note (3) The spec. of the surface treatment is temporarily for this phase. CMI reserves the rights to change this feature.
Anti-Glare coating (Haze 3.5%) Hardness 3H
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1.5 MECHANICAL SPECIFICATIONS
Item Min. Typ. Max. Unit Note
Horizontal (H) 724.2 725.2 726.2 mm (1)
Vertical (V) 420.9 421.9 422.9 mm (1)
Module Size
Depth (D) mm (2)
Depth (D) 24.6 25.6 26.6 mm (3)
Weight 4480 -
Note (1) Please refer to the attached drawings for more information of front and back outline dimensions.
Note (2) Module Depth is between bezel to T-CON cover.
Note (3) Module Depth is between bezel to Converter cover.
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2. ABSOLUTE MAXIMUM RATINGS
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PRODUCT SPECIFICATION
2.1 ABSOLUTE RATINGS OF ENVIRONMENT
Item Symbol
Storage Temperature TST -20 +60 ºC (1) Operating Ambient Temperature TOP 0 +50 ºC (1), (2) 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
(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.
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
Љ 40 ºC).
Value
Min. Max.
- 50 G (3), (5)
NOP
- 1.0 G (4), (5)
NOP
Unit Note
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)
80 60 -20 40 0 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
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PRODUCT SPECIFICATION
store the module with temperature from 0 to 35
(b) The module shall be stored in dark place. Do not store the TFT-LCD module in direct sunlight or fluorescent
light.
к at normal humidity without condensation.
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
Min. Max.
Value
Unit Note
(1)
2.3.2 BACKLIGHT UNIT
Item Symbol
Light Bar Voltage VW Ta = 25 к - - 60 V
Converter Input Voltage VBL - 0 - 30 V
Control Signal Level - - -0.3 - 7 V
Note (1) Permanent damage to the device may occur if maximum values are exceeded. Functional operation
should be restricted to the conditions described under normal operating conditions.
Te st
Condition
Min. Type Max. Unit Note
RMS
3D Mode
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3. ELECTRICAL CHARACTERISTICS
3.1 TFT LCD MODULE (Ta = 25 ± 2 ºC)
Parameter Symbol
Power Supply Voltage VCC 10.8 12 13.2 V (1)
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PRODUCT SPECIFICATION
Value
Unit Note
Min. Typ. Max.
Rush Current I
White Pattern
Power Consumption
Horizontal Stripe
Black Pattern
White Pattern
Power Supply Current
Horizontal Stripe
Black Pattern
Differential Input High Threshold Voltage
Differential Input Low
Threshold Voltage LVDS interface
Common Input Voltage VCM 1.0 1.2 1.4 V
Differential input voltage
(single-end)
Terminating Resistor R
CMIS interface
Input High Threshold Voltage VIH 2.7
Input Low Threshold Voltage V
Ё Ё
RUSH
Ё
Ё Ё
Ё Ё
Ё Ё
Ё Ё
Ё Ё
V
LVT H
V
LVTL
| 200
|V
ID
T
0
IL
+100
Ё
Ё Ё
Ё
3.87 A (2)
3.48 4.2 W
5.52 6.72 W
3.12 3.72 W (3)
0.29 0.35 A
0.46 0.56 A
0.26 0.31 A
Ё Ё
mV
-100 mV
(4)
Ё
100
Ё
Ё
600 mV
Ё
ohm
3.3 V
0.7 V
Note (1) The module should be always operated within above ranges.
Note (2) Measurement Conditions:
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PRODUCT SPECIFICATION
GND
Vcc rising time is 470us
0.9Vcc
0.1Vcc
470us
Vcc
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Note (3) The specified power consumption and power supply current is under the conditions at Vcc = 12 V, Ta =
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PRODUCT SPECIFICATION
25 ± 2 ºC, f
a. White Pattern
c. Horizontal Stripe Pattern
= 120 Hz, whereas a power dissipation check pattern below is displayed.
v
b. Black Pattern
Active Area
Active Area
Note (4) The LVDS input characteristics are as follows:
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3.2 BACKLIGHT CONVERTER UNIT
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PRODUCT SPECIFICATION
3.2.1 LED LIGHT BAR CHARACTERISTICS (Ta = 25 ± 2 ºC)
The backlight unit contains 1pcs light bar.
Parameter Symbol
Min. Typ. Max.
Total Current (6 String) If
I
L(2D)
- 780 826.8
- 130 137.8
One String Current
I
L(3D)
LED Forward Voltage Vf
One String Voltage VW
One String Voltage Variation
ϦV
Life time -
W
- 450 477
5.64 6.17 6.51
33.84 - 39.2
- - 2
30,000 - -
3.2.2 CONVERTER CHARACTERISTICS (Ta = 25 ± 2 ºC)
Parameter Symbol
Min. Typ. Max.
Power Consumption
P
P
BL(2D)
BL(3D)
-
-
Value
Value
32.1 40
27.3 31.9
Unit Note
mA
mA
mApeak 3D ENA=ON
VDC IL =130mA
VDC IL =130mA
V
Hrs (1)
Unit Note
(1), (2)
W
IL = 130 mA
(1), (2)
W
IL= 450mA
Converter Input Voltage VBL 22.8 24.0 25.2 VDC
I
- 1.34 1.67 A Non Dimming
BL(2D)
Converter Input Current
- 1.14 1.33 A
I
BL(3D)
VBL=22.8V,(IL=typ.)
I
-
R(2D)
- 2.1
Apeak
(3), (6)
Input Inrush Current
I
- - 3.63 Apeak
R(3D)
V
=22.8V,(IL=450m
BL
A)
(3), (6)
Dimming Frequency
Minimum Duty Ratio
FB 170 180 190 Hz
DMIN 5 10 - %
(5)
(4), (5)
Note (1) The power supply capacity should be higher than the total converter power consumption P
. 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 converter dimming.
Note (2) The measurement condition of Max. value is based on 32" backlight unit under input voltage 24V,
average LED current 137.8 mA at 2D Mode (LED current 477 mA
at 3D Mode) and lighting 1 hour
peak
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later.
Note (3) For input inrush current measure, the VBL rising time from 10% to 90% is about 30ms.
Note (4) 5% minimum duty ratio is only valid for electrical operation.
Note (5) FB and DMIN are available only at 2D Mode.
Note (6) Below diagram is only for power supply design reference.
Test Condition: VBL=22.8V, IL=130mA at 2D Mode/ IL=(450)mApeak at 3D Mode
Iin(A)
3.63
Κ
.
Κ
.2.1A
Κ
1.3A
A
2D Mode
3D Mode
Current
Current
CurrentΚ1. 34A
Current
T1 T2 Time (m)
200 ms
Mode Change
2D ->
3D
T2
Duty 20%
Dimming Freq.
200 ms
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3.2.3 CONVERTER INTERFACE CHARACTERISTICS
PRODUCT SPECIFICATION
Parameter Symbol
ON
On/Off Control Voltage
OFF
External PWM Control Voltage
External PWM Frequency
Error Signal ERR
VBL Rising Time Tr1
Control Signal Rising Time Tr
Control Signal Falling Time Tf
HI
LO
VBLON
VEPWM
F
EPWM
Condition
0
0
30
Value
Ё
Ё
Ё
Ё
Ё Ё
Unit Note
5.0 V
0.8 V
5.25 V Duty on
0.8 V Duty off
Abnormal: Open
collector
Normal: GND
ms 10%-90%V
100 ms
100 ms
(4)
(5), (6)
BL
Te st
Min. Typ. Max.
Ё
Ё
Ё
Ё
Ё 150 160 170 Hz Normal mode
Ё Ё Ё Ё Ё
Ё
Ё Ё Ё
Ё Ё Ё
2.0
2.0
PWM Signal Rising Time TPWMR
PWM Signal Falling Time TPWMF
Input Impedance Rin
PWM Delay Time TPWM
Ton
BLON Delay Time
T
on1
BLON Off Time Toff
Note (1) The Dimming signal should be valid before backlight turns on by BLON signal. It is inhibited to
change the external PWM signal during backlight turn on period.
Note (2) The power sequence and control signal timing are shown in the Fig.1. For a certain reason, the
converter 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 → PWM signal → BLON
Turn OFF sequence: BLOFF → PWM signal → VBL
Note (4) When converter protective function is triggered, ERR will output open collector status.
Ё Ё Ё
Ё Ё Ё
Ё
Ё
Ё
Ё
Ё
1
100
300
300
300
Ё Ё
Ё Ё
Ё Ё
Ё Ё
Ё Ё
50 us
50 us
M
ms (6)
ms
ms
ms
EPWM, BLON
(6)
Note (5) The EPWM interface that inserts a pull up resistor to 5V in Max Duty (100%), please refers to Fig.2.
Note (6) EPWM is available only at 2D Mode.
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Note(7): [Recommend] EPWM duty ratio is set at 100%(Max. Brightness) in 3D Mode.
!!!!
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V
V
BL
V
BLON
EPWM
Tr1
%/
9
9
%/
2.0V
0.8V
2.0V
0.8V
Ton
PWM
T
Backlight on duration
Tr
Ext. Dimming Function
PWMR
T
T
Ton1
Tf
PWMF
Floating
0
0
0
Toff
V
W
External
PWM
Period
External
PWM Duty
100%
Fig. 1
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EPWM
5V +/- 5%
Converter Side
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PRODUCT SPECIFICATION
ӨӨӨӨ
100k
100k
>1M
ӨӨӨӨ
ӨӨӨӨ
Dimming
Circuit
Fig. 2
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q
4. BLOCK DIAGRAM OF INTERFACE
4.1 TFT LCD MODULE
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ERX0(+/-) ERX1(+/-) ERX2(+/-) ERX3(+/-) ECLK(+/-)
ORX0(+/-) ORX1(+/-) ORX2(+/-) ORX3(+/-) OCLK(+/-)
SELLVDS
2D/3D L/R_O
L/R
SCL SDA
VCC GND
SCAN DRIVER
TIMING
TFT LCD PANEL
(1366x3x768)
CONTROLLER
INPUT CONNECTOR
CNF1:
DATA DRIVER
or e
WF23-400-513C FCN
uivalent
DC/DC CONVERTER
& REFERENCE
VOLTAGE
L/R_O
VBL
GND
ERR
E_PWM
BLON
OUTPUT CONNECTOR
CN6:LM123S-010-H-TF1-3
or equivalent
CONVERTER
CONNECTOR
CN1:
CI0114M1HR0-LA
(CvilLux)
CN2: 196388-12041-3 P-TWO
BACKLIGHT UNIT
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5. INTERFACE PIN CONNECTION
5.1 TFT LCD MODULE
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CNF1 Connector Pin Assignment: (
Pin Name Description Note
1 N.C. No Connection
2 N.C. No Connection
3 N.C. No Connection
4 N.C. No Connection
5 L/R_O Output signal for Left Right Glasses control (8)
6 N.C. No Connection (1)
7 SELLVDS Input signal for LVDS Data Format Selection (2)(5)
8 N.C. No Connection
9 N.C. No Connection
10 N.C. No Connection
11 GND Ground
12 ORX0- Odd pixel Negative LVDS differential data input. Channel 0
WF23-400-513C (FCN)
or equivalent)
(1)
(1)
13 ORX0+ Odd pixel Positive LVDS differential data input. Channel 0
14 ORX1- Odd pixel Negative LVDS differential data input. Channel 1
(7)
15 ORX1+ Odd pixel Positive LVDS differential data input. Channel 1
16 ORX2- Odd pixel Negative LVDS differential data input. Channel 2
17 ORX2+ Odd pixel Positive LVDS differential data input. Channel 2
18 GND Ground
19 OCLK- Odd pixel Negative LVDS differential clock input
(7)
20 OCLK+ Odd pixel Positive LVDS differential clock input
21 GND Ground
22 ORX3- Odd pixel Negative LVDS differential data input. Channel 3
(7)
23 ORX3+ Odd pixel Positive LVDS differential data input. Channel 3
24 N.C. No Connection
(1)
25 N.C. No Connection
26 2D/3D Input signal for 2D/3D Mode Selection (3)(6)
27 L/R Input signal for Left Right eye frame synchronous (4)(6)
28 ERX0- Even pixel Negative LVDS differential data input. Channel 0
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29 ERX0+ Even pixel Positive LVDS differential data input. Channel 0
30 ERX1- Even pixel Negative LVDS differential data input. Channel 1
31 ERX1+ Even pixel Positive LVDS differential data input. Channel 1
32 ERX2- Even pixel Negative LVDS differential data input. Channel 2
33 ERX2+ Even pixel Positive LVDS differential data input. Channel 2
34 GND Ground
35 ECLK- Even pixel Negative LVDS differential clock input.
36 ECLK+ Even pixel Positive LVDS differential clock input.
37 GND Ground
38 ERX3- Even pixel Negative LVDS differential data input. Channel 3
39 ERX3+ Even pixel Positive LVDS differential data input. Channel 3
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(7)
(7)
40 N.C. No Connection
41 N.C. No Connection
(1)
42 N.C. No Connection
43 N.C. No Connection
44 GND Ground
45 GND Ground
46 GND Ground
47 N.C. No Connection (1)
48 VCC +12V power supply
49 VCC +12V power supply
50 VCC +12V power supply
51 VCC +12V power supply
CN6 Connector Pin Assignment (LM123S-010-H-TF1-3 (UNE) or equivalent)
1 N.C. No Connection
2 N.C. No Connection
3 N.C. No Connection
4 GND Ground
5 N.C. No Connection
6 L/R_O Output signal for Left Right Glasses control
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7 N.C. No Connection
8 N.C. No Connection
9 N.C. No Connection
10 N.C. No Connection
Note (1) Reserved for internal use. Please leave it open.
Note (2) LVDS format selection.
L= Connect to GND, H=Connect to +3.3V or Open
SELLVDS Note
L JEIDA Format
H or Open VESA Format
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PRODUCT SPECIFICATION
(1)
Note (3) 2D/3D mode selection.
L= Connect to GND or Open, H=Connect to +3.3V
2D/3D Note
L or Open 2D Mode
H 3D Mode
Note (4) Input signal for Left Right eye frame synchronous
V
Note (5) SELLVDS signal pin connected to the LCM side has the following diagram.
=0~0.7V, VIH=2.7~3.3V
IL
L/R Note
L Right synchronous signal
H Left synchronous signal
R1 in the system side should be less than 1K Ohm. (R1 < 1K Ohm)
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Note (6) 2D/3D, L/R 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)
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PRODUCT SPECIFICATION
Note (7) 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 (8) The definition of L/R_O signal as follows
L= 0V , H= +3.3V
L/R_O Note
L Right glass turn on
H Left glass turn on
5.2 BACKLIGHT UNIT
CN 2:
196388-12041-3 (P-TWO)
Pin Symbol Feature
1 N1
2 N2
3 N3
4 N4
5 N5
6 N6
7 NC
8 NC
9 NC
10 VLED+
11 VLED+
12 VLED+
Negative of Light Bar
No Connection
Positive of Light Bar
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p
p
OR0
5.3 BLOCK DIAGRAM OF INTERFACE
ER0-ER7
-
-
OR0-OR7
-
-
Host
Graphics
Controller
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PRODUCT SPECIFICATION
ERx0+
ERx1+
ERx1-
ERx2+
ERx3+
ERx3-
ECLK+
ORx0+
ORx1+
ORx1-
51
Ө
51
Ө
51Ө
Ө
51
51
Ө
100pF
51
Ө
51
Ө
100pF
51
Ө
100pF
100
F
-
-
RxOUT
ER0-ER7
-
-
-OR7
-
-
51
Ө
51
100pF
Ө
-
Timing
51
Ө
-
100pF
51
Ө
51Ө
100
F
Controller
!
!
!
!
!
!
ORx2+
ORx3+
ORx3-
OCLK+
LVDS Transmitter
Ө
51
51 51
51
51
51
100pF
Ө Ө
100pF
Ө
Ө
100pF
Ө
-
-
LVDS Re ceiver
THC63LVDM83A
(LVDF83A)
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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
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PRODUCT SPECIFICATION
when it is used differentially.
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.
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5.4 LVDS INTERFACE
JEIDA Format : SELLVDS = L
VESA Format : SELLVDS = H or Open
VESA LVDS format
RXCLK
RXCLK
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PRODUCT SPECIFICATION
Current F\FOH
Current F\FOH
ORX0
ORX0
ORX1
ORX1
ORX2
ORX2
ORX3
ORX3
ERX0
ERX0
ERX1
ERX1
ERX2
ERX2
ERX3
ERX3
JEDIA LVDS format
R5G0 R4 R3 R2 R1
R5G0 R4 R3 R2 R1
B0 G5B1
B0 G5B1
R5G0 R4 R3 R2 R1
R5G0 R4 R3 R2 R1
B0 G5B1
B0 G5B1
Current F\FOH
Current F\FOH
G3 G2G4
G3 G2G4
G3 G2G4
G3 G2G4
R0
R0
G1
G1
B2B4 B3B5VS HSDE
B2B4 B3B5VS HSDE
R6G6 R7G7B7 B6RSVD
R6G6 R7G7B7 B6RSVD
R0
R0
G1
G1
B2B4 B3B5VS HSDE
B2B4 B3B5VS HSDE
R6G6 R7G7B7 B6RSVD
R6G6 R7G7B7 B6RSVD
RXCLK
RXCLK
ORX0
ORX0
ORX1
ORX1
ORX2
ORX2
ORX3
ORX3
ERX0
ERX0
ERX1
ERX1
ERX2
ERX2
ERX3
ERX3
R7G2 R6 R5 R4 R3
R7G2 R6 R5 R4 R3
B2 G7B3
B2 G7B3
R7G2 R6 R5 R4 R3
R7G2 R6 R5 R4 R3
B2 G7B3
B2 G7B3
G5 G4G6
G5 G4G6
G5 G4G6
G5 G4G6
R2
R2
G3
G3
B4B6 B5B7VS HSDE
B4B6 B5B7VS HSDE
R0G0 R1G1B1 B0RSVD
R0G0 R1G1B1 B0RSVD
R2
R2
G3
G3
B4B6 B5B7VS HSDE
B4B6 B5B7VS HSDE
R0G0 R1G1B1 B0RSVD
R0G0 R1G1B1 B0RSVD
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PRODUCT SPECIFICATION
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”.
5.5 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 the color versus
data input.
Color
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
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
Yellow
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
Red Green Blue
0
0
0
0
0
1
1
1
1
1
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
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
:
:
:
:
:
:
:
:
:
:
1
1
1
1
0
1
1
1
1
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
Data Signal
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
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
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
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
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
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
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
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
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
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
0
0
0
0
0
0
1
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
1
0
1
1
1
1
1
1
0
0
0
1
1
1
1
1
1
1
0
0
1
1
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
1
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
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
:
:
:
:
:
:
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
:
:
:
:
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
1
0
1
0
:
:
:
:
:
:
1
0
1 0
1
1
1
1
1
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6. INTERFACE TIMING
6. INTERFACE TIMING
6.1 INPUT SIGNAL TIMING SPECIFICATIONS
(Ta = 25 ± 2 ºC)
The input signal timing specifications are shown as the following table and timing diagram.
Signal Item Symbol Min. Typ. Max. Unit Note
LVDS
Receiver
Clock
2D mode Frequency
3D mode Frequency
Input cycle to cycle jitter Spread spectrum modulation range
Spread spectrum modulation frequency
(=1/TC)
(=1/TC)
clkin_mod
F
PRODUCT SPECIFICATION
F
clkin
F
clkin
T
- - 200 ps (3)
rcl
F
- - 200 KHz
SSM
30 38 40 MHz
60 76 80 MHz
F
-2% - F
clkin
+2% MHz
clkin
(4)
LVDS
Receiver
Receiver Skew Margin T
-400 - 400 ps (5)
RSKM
Data
6.1.1 Timing spec for Frame Rate = 50Hz@2D mode, 100Hz@3D mode
Signal Item Symbol Min. Typ. Max. Unit Note
2D mode Fr5 47 50 53 Hz
Frame rate
3D mode F
100 100 100 Hz (7)
r5
Total Tv 776 806 1018 Th Tv=Tvd+Tvb
Display Tvd 768 768 768 Th
Vertical
Active
Display
Ter m
3D Mdoe
Blank Tvb 8 38 250 Th
Total Tv 968 Th
Display Tvd 768 Th
Blank Tvb 200 Th
Ё
2D Mode
Ё
(6), (8)
Total Th 721 780 1003 Tc Th=Thd+Thb
Display Thd 683 683 683 Tc
Horizontal
Active
Display
Ter m
3D Mdoe
Blank Thb 38 97 320 Tc
Total Th 721 780 1003 Tc Th=Thd+Thb
Display Thd 683 683 683 Tc
Blank Thb 38 97 320 Tc
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Ё
2D Mode
Ё
Ё
Ё
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PRODUCT SPECIFICATION
6.1.2 Timing spec for Frame Rate = 60Hz@2D mode, 120Hz@3D mode
Signal Item Symbol Min. Typ. Max. Unit Note
2D mode Fr6 57 60 63 Hz
Frame rate
3D mode F
Total Tv 776 806 1018 Th
120 120 120 Hz (7)
r6
Tv=Tvd+Tv
b
2D Mode
Vertical
Active
Display
Ter m
3D Mdoe
2D Mode
Horizontal
Active
Display
Ter m
3D Mdoe
Note (1) Since the module is operated in DE only mode, Hsync and Vsync input signals should be set to low
logic level. Otherwise, this module would operate abnormally.
Display Tvd 768 768 768 Th
Blank Tvb 8 38 250 Th
Total Tv 806 Th
Display Tvd 768 Th
Blank Tvb 38 Th
Total Th 721 780 1003 Tc
Display Thd 683 683 683 Tc
Blank Thb 38 97 320 Tc
Total Th 721 780 1003 Tc
Display Thd 683 683 683 Tc
Blank Thb 38 97 320 Tc
Ё
Ё
(6), (8)
Th=Thd+T
hb
Ё
Ё
Th=Thd+T
hb
Ё
Ё
Note (2) Please make sure the range of pixel clock has follow the below equation:
clkin(max)
F
F
r
5
Tv Th F
F
Њ
r
6
Tv Th
ѼѼ
ѼѼЊ
clkin(min)
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PRODUCT SPECIFICATION
INPUT SIGNAL TIMING DIAGRAM
DE
Th
DCLK
DE
DATA
Tvd
Tv
Tvb
Thd
Valid display data ( 683 clocks)
Note (3) The input clock cycle-to-cycle jitter is defined as below figures. Trcl = I T
– TI
1
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PRODUCT SPECIFICATION
Note (4) The SSCG (Spread spectrum clock generator) is defined as below figures.
Note (5) The LVDS timing diagram and setup/hold time is defined and showing as the following figures.
LVDS RECEIVER INTERFACE TIMING DIAGRAM
RXCLK+/-
RXn+/-
T
RSKM
Note (6) Please fix the Vertical timing (Vertical Total =968 / Display =768 / Blank = 200) in 100Hz 3D mode
and Vertical timing (Vertical Total =806 / Display =768 / Blank = 38) in 120Hz 3D mode
Note (7) In 3D mode, the set up Fr5 and Fr6 in Typ. ±3 HZ .In order to ensure that the electric function performance
to avoid no display symptom.(Except picture quality symptom.)
Tc
Note (8) In 3D mode, the set up Tv and Tvb in Typ. ±30.In order to ensure that the electric function performance to
avoid no display symptom.(Except picture quality symptom.)
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6.2 POWER ON/OFF SEQUENCE
(Ta = 25 ± 2 ºC)
6.2.1 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.
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PRODUCT SPECIFICATION
10ms
50ms
ЉЉЉЉ
T4
0V
0.5
ЉЉЉЉ
T
1
ЉЉЉЉ
ЉЉЉЉ
T
2
0
ЉЉЉЉ
ЉЉЉЉ
T
3
ЉЉЉЉ
0
500ms
50ms
0.1V
CC
3
T1
T
T
2
0.1V
T4
cc
VALI D
LVDS Signals
0V
Power On
Power Off
0
ЉЉЉЉ
T
7
ЉЉЉЉ
ЉЉЉЉ
T2
T
8
ЉЉЉЉ
T3
T7
8
T
0
Option Signals
(SELLVDS,2D/3D,L/R )
Backlight (Recommended)
ЉЉЉЉ
ЉЉЉЉ
T5
T
6
500ms
100ms
50%
5
T
50%
T
6
Power ON/OFF Sequence
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PRODUCT SPECIFICATION
6.2.2 2D/3D MODE CHANGE SIGNAL SEQUENCE WITHOUT VCC TURN OFF AND TURN ON
CC
VCC
0V
0.9V
0.1VCC
1
T
0.5
ЉЉЉЉ
T
1
ЉЉЉЉ
10ms
ЉЉЉЉ
T
2
0
ЉЉЉЉ
LVDS Signals
50ms
0V
Power On
T2
Scalar send Black Pattern
0
ЉЉЉЉ
T
ЉЉЉЉ
T2
0
ЉЉЉЉ
7
T
ЉЉЉЉ
10ms
10
T7
T10
2D/3D
10
0
ЉЉЉЉ
T
ЉЉЉЉ
10ms
9
ЉЉЉЉ
T
ЉЉЉЉ
20ms
12
9
T
T12
Scalar Black Pattern Insertion
Backlight ON/OFF
ЉЉЉЉ
T
ЉЉЉЉ
5
T
500ms
500ms
T
5
T11
Note (1) The supply voltage of the external system for the module input should follow the definition of Vcc.
Note (2) Apply the LED 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.
Note (3) In case of Vcc is in off level, please keep the level of input signals on the low or high impedance. If
T2<0,that maybe cause electrical overstress failure.
Note (4) T4 should be measured after the module has been fully discharged between power off and on period.
Note (5) Interface signal shall not be kept at high impedance when the power is on.
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7. OPTICAL CHARACTERISTICS
7.1 TEST CONDITIONS
Item Symbol Value Unit
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PRODUCT SPECIFICATION
Ambient Temperature Ta
Ambient Humidity Ha
Supply Voltage VCC 12 V
Input Signal According to typical value in "3. ELECTRICAL CHARACTERISTICS"
LED Current IL
Vertical Frame Rate Fr 120 Hz
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.
25
50
170
±
±
10
±
2
9
oC
%RH
mA
LCD Module
LCD
CA210
Panel
CS-2000
Center of the Screen
500mm
Light Shield Room
(Ambient Luminance < 2 Lux)
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7.2 OPTICAL SPECIFICATIONS
The relative measurement methods of optical characteristics are shown in 7.2. The following items should be
measured under the test conditions described in 7.1 and stable environment shown in 7.1.
Item Symbol Condition Min. Typ. Max. Unit Note
Contrast Ratio CR 2100 3000 - (2)
Response Time (VA) Gray to gray 8.5 17 ms (3)
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PRODUCT SPECIFICATION
Center Luminance of
White
White Variation
Red
Green
Color
Chromaticity
Blue
White
2D 280 350 cd/m
L
C
3D 60 cd/m
δ
W
2D 4 % (5)
3D-W - 4 - % (8) Cross Talk CT
3D-D - 11 - % (8)
Rx 0.639 -
Ry 0.337 -
Gx 0.301 -
Gy 0.618 -
Bx 0.146 -
By 0.062 -
Wx 0.280 -
Wy
θ
x=0°, θy =0°
Viewing angle
at normal direction
1.3 - (6)
Typ.
-0.03
0.290
Typ.
+0.03
2
(4)
2
(8)
-
-
Correlated color temperature - 10500 - K -
Color
Gamut
Horizontal
Viewing
Angle
Vertical
Transmission direction of
the up polarizer
C.G.
θ
x+
θ
x-
20
CR
θ
y+
θ
y-
Φ
- - 90 - Deg. (7)
up
- 72 - % NTSC
80 88 -
80 88 -
80 88 -
80 88 -
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Deg. (1)
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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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PRODUCT SPECIFICATION
Normal
θ
x =θy = 0º
Note (2) Definition of Contrast Ratio (CR) :
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) =
L255: Luminance of gray level 255
L 0: Luminance of gray level 0
θ
x- = 90º
6 o’clock
θ
y- = 90º
y-
x-
θy-
θx−
θ
y
θx+
+
L255 of Luminance Surface
L0 of Luminance Surface
12 o’clock direction
θ
y + = 90º
x
+
θ
x+ = 90º
CR = CR (5), where CR (X) is corresponding to the Contrast Ratio of the point X at the figure in Note
(6).
Note (3) Definition of Gray-to-Gray Switching Time:
cal
100%
90%
10%
0%
Gray to gray
switching time
Gray to
ime
Opt
The driving signal means the signal of gray level gray level (0,1,15, 63, 191, 223, 255)..Gray to gray
average.
Gray to gray average time means the average switching time of gray level (0,1,15, 63, 191, 223,
255)..Gray to gray average
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(
)
Note (4) Definition of Luminance of White (LC):
Measure the luminance of gray level 255 at center point and 5 points
= L (5), where L (X) is corresponding to the luminance of the point X at the figure in Note (6).
L
C
Note (5) Definition of Cross Talk (CT):
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PRODUCT SPECIFICATION
CT = | Y
– YA | / YA × 100 (%)
B
Y
= Luminance of measured location without gray level 255 pattern (cd/m2)
A
= Luminance of measured location with gray level 255 pattern (cd/m2)
Y
B
(0, 0)
Active Area
Y
A,U
(D/8,W/2)
Y
A,L
Gray 128
Y
A, D
Note (6) Definition of White Variation (
Measure the luminance of gray level 255 at 5 points
(D/2,W/8)
Y
(7D/8,W/2)
A, R
(D/2,7W/8)
δ
W):
(D, W)
0, 0
(D/4,W/4)
Y
(D/8,W/2)
B, L
Active Area
Y
(D/2,W/8)
B, U
Gray 255
Y
(D/2,7W/8)
B, D
Y
(7D/8,W/2)
B, R
(3D/4,3W/4)
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
Vertical Line
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Note (7) This is a reference for designing the shutter glasses of 3D application. (VA)
Definition of the transmission direction of the up polarizer:
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PRODUCT SPECIFICATION
The transmission axis of the front polarizer of the shutter glasses should be parallel to this panel transmission
direction to get a maximum 3D mode luminance.
6 o’clock
x-
ӥ
y-
12 o’clock direction
y+
up
ӥ
=0o, x+
Bottom
Bottom
Bottom
o
o
o
0
0
0
POL
POL
POL
Cell
Cell
Cell
LCD module
LCD module
LCD module
3 T
o
o
o
90
90
90
Up
Up
Up POL
POL
POL
o
o
o
90
90
14
90
Front
Front
Front
POL
POL
POL
Cell
Cell
Cell
back
back
back POL
POL
POL
o
o
o
90
90
90
Shutter glasses
Shutter glasses
Front
Front
Front POL
POL
POL
Cell
Cell
Cell
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back
back
back POL
POL
POL
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Note (8) Definition of the 3D mode performance (measured under 3D mode, use CMI’s shutter glass):
a. Test pattern
Left eye image and right eye image are displayed alternated
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PRODUCT SPECIFICATION
W WW
Left eye image: W255; Right eye image: W0
Left eye image: W0; Right eye image: W255
Left eye image: W0; Right eye image: W0
b. Measurement setup
Left eye image: W255; Right eye image: W255
WB
BW
BB
Right eye
shutter glass
Shutter glasses are well controlled under suitable timing, and measure the luminance of the center point of the
panel through the right eye glass. The transmittance of the glass should be larger than 40.0% under 3D mode
operation.
The luminance of the test pattern “WW”, denoted L(WW); the luminance of the test pattern ”WB”, denoted L(WB);
the luminance of the test pattern “BW”, denoted L(BW); the luminance of the test pattern “BB”, denoted “L(BB)
c. Definition of the Center Luminance of White, Lc (3D) : L(WW)
BBLWBL
d. Definition of the 3D mode white crosstalk, CT (3D-W) :
WDCT
)3(
e. Definition of the 3D mode dark crosstalk, CT (3D-D) :
DDCT
)3(
)()(
)()(
BBLWWL
BWLWWL
)()(
)()(
BBLWWL
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PRODUCT SPECIFICATION
8. PRECAUTIONS
8.1 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 CMIS LSI chips.
[ 5 ] Bezel of Set can not press or touch the panel surface. It will make light leakage or scrape.
[ 6 ] Do not plug in or pull out the I/F connector while the module is in operation.
[ 7 ] Do not disassemble the module.
[ 8 ] Use a soft dry cloth without chemicals for cleaning, because the surface of polarizer is very soft and easily
scratched.
[ 9 ] Moisture can easily penetrate into LCD module and may cause the damage during operation.
[ 10 ] When storing modules as spares for a long time, the following precaution is necessary.
[ 10.1 ] Do not leave the module in high temperature, and high humidity for a long time. It is highly
к
recommended to store the module with temperature from 0 to 35
condensation.
[ 10.2 ] The module shall be stored in dark place. Do not store the TFT-LCD module in direct sunlight or
fluorescent light.
[ 11 ] 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.
at normal humidity without
8.2 SAFETY PRECAUTIONS
[ 1 ] The startup voltage of a Backlight is approximately 1000 Volts. It may cause an electrical shock while
assembling with the converter. 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.
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9. DEFINITION OF LABELS
9.1 CMI MODULE LABEL
The barcode nameplate is pasted on each module as illustration, and its definitions are as following explanation.
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PRODUCT SPECIFICATION
V320BK1-LS5 Rev. XX
X X X X X X X Y M D L N N N N
(a) Model Name: V320BK1-LS5
(b) Revision: Rev. XX, for example: A0, A1… B1, B2… or C1, C2…etc.
(c) Serial ID: X X
X X X X X Y M D L N N N N
V320BK1-LS5 Rev. XX
X X X X X X X Y M D L N N N N
Serial No.
Product Line
E207943
MADE IN TAIWAN
GEMN
E207943
MADE IN TAIWAN
MADE IN CHINA
LEOO(or CAPG or CANO)
RoHS
Serial ID includes the information as below:
(a) Manufactured Date: Year: 0~9, for 2010~2019
Month: 1~9, A~C, for Jan. ~ Dec.
Day: 1~9, A~Y, for 1
(b) Revision Code: Cover all the change
(c) Serial No.: Manufacturing sequence of product
(d) Product Line: 1 -> Line1, 2 -> Line 2, …etc.
st
to 31st, exclude I ,O, and U.
Year, Month, Date
CMI Internal Use
CMI Internal Use
Revision
CMI Internal Use
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10. PACKAGING
10.1 PACKAGING SPECIFICATIONS
(1) 6 LCD TV modules / 1 Box
(2) Box dimensions : 826(L)x376(W)x540(H)mm
(3) Weight : approximately 32Kg (6 modules per box)
10.2 PACKAGING METHOD
Figures 10-1 and 10-2 are the packing method
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PRODUCT SPECIFICATION
Figure 10-1 packing method
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PRODUCT SPECIFICATION
Figure 10-2 packing method
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11. MECHANICAL CHARACTERISTIC
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PRODUCT SPECIFICATION
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PRODUCT SPECIFICATION
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