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FOR MESSRS : DATE : May 1st ,2012


CUSTOMER'S ACCEPTANCE SPECIFICATIONS

TX31D37VM0CAA

Contents
No. ITEM SHEET No. PAGE
1 COVER 7B64PS 2701-TX31D37VM0CAA-2 1-1/1
2 RECORD OF REVISION 7B64PS 2702-TX31D37VM0CAA-2 2-1/1
3 GENERAL DATA 7B64PS 2703-TX31D37VM0CAA-2 3-1/1
4 ABSOLUTE MAXIMUM RATINGS 7B64PS 2704-TX31D37VM0CAA-2 4-1/1
5 ELECTRICAL CHARACTERISTICS 7B64PS 2705-TX31D37VM0CAA-2 5-1/1
6 OPTICAL CHARACTERISTICS 7B64PS 2706-TX31D37VM0CAA-2 6-1/2~2/2
7 BLOCK DIAGRAME 7B64PS 2707-TX31D37VM0CAA-2 7-1/1
8 RELIABILITY TESTS 7B64PS 2708-TX31D37VM0CAA-2 8-1/1
9 LCD INTERFACE 7B64PS 2709-TX31D37VM0CAA-2 9-1/10~10/10
10 OUTLINE DIMENSIONS 7B64PS 2710-TX31D37VM0CAA-2 10-1/2~2/2
11 APPEARANCE STANDARD 7B64PS 2711-TX31D37VM0CAA-2 11-1/3~3/3
12 PRECAUTIONS 7B64PS 2712-TX31D37VM0CAA-2 12-1/2~2/2
13 DESIGNATION OF LOT MARK 7B64PS 2713-TX31D37VM0CAA-2 13-1/1




ACCEPTED BY: PROPOSED BY:




SHEET
KAOHSIUNG OPTO-ELECTRONICS INC. NO. 7B64PS 2701-TX31D37VM0CAA-2 PAGE 1-1/1

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2. RECORD OF REVISION
DATE SHEET No. SUMMARY
May 01,'12 All pages Company name changed:
KAOHSIUNG HITACHI ELECTRONICS CO.,LTD.
p
KAOHSIUNG OPTO-ELECTRONICS INC.
7B64PS-2704- 4. ABSOLUTE MAXIMUM RATINGS
TX31D37VM2CAA-2 Revised : Note2.
Page 4-1/1




SHEET
KAOHSIUNG OPTO-ELECTRONICS INC. NO. 7B64PS 2702-TX31D37VM0CAA-2 PAGE 2-1/1

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3. GENERAL DATA
3.1 DISPLAY FEATURES
This module is a 12.1" SVGA of 4:3 format amorphous silicon TFT. The pixel format is vertical stripe
and sub pixels are arranged as R (red), G (green), B (blue) sequentially. This display is RoHS
compliant, COG (chip on glass) technology and LED backlight are applied on this display.

Part Name TX31D37VM0CAA

Module Dimensions 280.0(W) mm x 210.0(H) mm x 12.58 (D) mm typ.

LCD Active Area 246.0(W) mm x 184.5(H) mm

Pixel Pitch 0.3075(W) mm x 0.3075 (H) mm

Resolution 800 x 3(RGB)(W) x 600(H) dots

Color Pixel Arrangement R, G, B Vertical stripe

LCD Type Transmissive Color TFT; Normally Black

Display Type Active Matrix

Number of Colors 16.7M Colors

Backlight 24 LEDs (3 series x 8)

Weight 710 typ. (g)

Interface LVDS; 20 pins

Power Supply Voltage 3.3V for LCD; 12V for Backlight

Power Consumption 1.815W for LCD; 9.6W for Backlight

Viewing Direction Super Wide Version (In-Plane Switching)




SHEET
KAOHSIUNG OPTO-ELECTRONICS INC. NO. 7B64PS 2703-TX31D37VM0CAA-2 PAGE 3-1/1

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4. ABSOLUTE MAXIMUM RATINGS
Item Symbol Min. Max. Unit Remarks
Supply Voltage VDD 0 4.0 V -
Input Voltage of Logic VI -0.3 VDD+0.3 V Note 1
$
Operating Temperature Top -20 70 C Note 2
$
Storage Temperature Tst -30 80 C Note 2
Backlight Input Voltage VLED - 15 V -


Note 1: The rating is defined for the signal voltages of the interface such as CLK and pixel data pairs.
Note 2: The maximum rating is defined as above based on the chamber temperature, which might be
different from ambient temperature after assembling the panel into the application. Moreover,
some temperature-related phenomenon as below needed to be noticed:
- Background color, contrast and response time would be different in temperatures other than
25 $ C .
- Operating under high temperature will shorten LED lifetime.




SHEET
KAOHSIUNG OPTO-ELECTRONICS INC. NO. 7B64PS 2704-TX31D37VM0CAA-2 PAGE 4-1/1

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5. ELECTRICAL CHARACTERISTICS
5.1 LCD CHARACTERISTICS Ta 25 $ C , VSS 0V
Item Symbol Condition Min. Typ. Max. Unit Remarks
Power Supply Voltage VDD - 3.0 3.3 3.6 V -
Differential Input "H" level - - +100
Voltage for LVDS VI mV Note 1
Receiver Threshold "L" level -100 - -
Voltage Input for "H" level 0.7VDD - VDD COMS
VF V
AMode "L" level 0 - 0.3VDD Level
Power Supply Current IDD IVDD=3.3V - 550 600 mA Note 2
Vsync Frequency fv - - 60 75 Hz -
Hsync Frequency fH - - 37.7 50.6 KHz
Note 3
CLK Frequency f CLK - 37 40 43 MHz

Note 1: VCM=+1.2V
IN+
VCM is common mode voltage of LVDS transmitter/receiver. LVDS
100
IN- Receiver
The input terminal of LVDS transmitter is terminated with 100.
Note 2: An all white check pattern is used when measuring IDD. f v is set to 60 Hz.
Note 3: For LVDS transmitter input.
Note 4: 1.0A fuse is applied in the module for IDD. For display activation and protection purpose, power
supply is recommended larger than 2.5A to start the display and break fuse once any short
circuit occurred.


5.2 BACKLIGHT CHARACTERISTICS Ta 25 $ C
Item Symbol Condition Min. Typ. Max. Unit Remarks
LED Input Voltage VLED - 11.7 12 12.3 V Note1
LED Forward Current 0V; 0% duty - 800 -
ILED mA Note 2
(Dim Control) 3.3VDC; 100% duty - 60 72
LED lifetime - 800 mA - 70K - hrs Note 3
Note 1: As Fig. 5.1 shown, LED current is constant, 800 mA, controlled by the LED driver when
applying 12V VLED.
Note 2: Dimming function can be obtained by applying DC voltage or PWM signal from the display
interface CN1. The recommended PWM signal is 1K ~ 10K Hz with 3.3V amplitude.
Note 3: The estimated lifetime is specified as the time to reduce 50% brightness by applying 800 mA at
25 $ C .




Fig 5.1

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6. OPTICAL CHARACTERISTICS
The optical characteristics are measured based on the conditions as below:
- Supplying the signals and voltages defined in the section of electrical characteristics.
- The backlight unit needs to be turned on for 30 minutes.
- The ambient temperature is 25 $ C .
- In the dark room around 500~1000 lx, the equipment has been set for the measurements as shown in
Fig 6.1.
Ta 25 $C , f v 60 Hz, VDD 3.3V
Item Symbol Condition Min. Typ. Max. Unit Remarks
$ $ 2
Brightness of White - I 0 ,T 0 , 480 600 - cd/m Note 1
Brightness Uniformity - ILED= 90 70 - - % Note 2
Contrast Ratio CR mA/series 500 1000 - - Note 3
Response Time
(Rising + Falling) Tr Tf I 0$ ,T 0$ - 30 65 ms Note 4

Tx I 0$ , CR t 10 75 85 -
$
T xc I 180 , CR t 10 75 85 -
Viewing Angle Degree Note 5
Ty I 90 $ , CR t 10 75 85 -
T yc I 270 $ , CR t 10 75 85 -
X 0.58 0.63 0.68
Red
Y 0.30 0.35 0.40
X 0.28 0.33 0.38
Green
Color Y 0.57 0.62 0.67
I 0$ ,T 0$ - Note 6
Chromaticity X 0.10 0.15 0.20
Blue
Y 0.07 0.12 0.17
X 0.28 0.33 0.38
White
Y 0.33 0.38 0.43


Note 1: The brightness is measured from the panel center point, P5 in Fig. 6.2, for the typical value.
Note 2: The brightness uniformity is calculated by the equation as below:

Min. Brightness
Brightness uniformity u 100%
Max. Brightness

, which is based on the brightness values of the 9 points measured by BM-5 as shown in Fig. 6.2.

1 2 3
50%
Photo Detector: BM-5 15%
85% 4 5 6
$
Field: 1
7 8 9
Distance: 500 mm
15%
50%
85%
LCD panel
measuring points

Fig. 6.1 Fig. 6.2


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Note 3: The Contrast Ratio is measured from the center point of the panel, P5, and defined as the
following equation:

Brightness of White
CR
Brightness of Black

Note 4: The definition of response time is shown in Fig. 6.3. The rising time is the period from 10%
brightness to 90% brightness when the data is from black to white. Oppositely, Falling time is
the period from 90% brightness falling to 10% brightness.




Note 5: The definition of viewing angle is shown in Fig. 6.4. Angle I is used to represent viewing
directions, for instance, I 270$ means 6 o'clock, and I 0 $ means 3 o'clock. Moreover,
angle T is used to represent viewing angles from axis Z toward plane XY.
The display is super wide viewing angle version, so that the best optical performance can be
obtained from every viewing direction.


T Viewing angle
I 90$
12 o'clock
I (x, y ,0)
$
x' x I 0
I 180$ 3 o'clock
9 o'clock


I 270$
6 o'clock


Fig 6.4
Note 6: The color chromaticity is measured from the center point of the panel, P5, as shown in Fig. 6.2.




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7. BLOCK DIAGRAM




Note1: Signals are CLK and pixel data pairs.




SHEET
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8. RELIABILITY TESTS
Test Item Condition
1) Operating
High Temperature 240 hrs
2) 70 $ C
1) Operating
Low Temperature 240 hrs
2) -20 $ C
1) Storage
High Temperature 240 hrs
2) 80 $ C
1) Storage
Low Temperature 240 hrs
2) -30 $ C
1) Operating
Heat Cycle 2)