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AJO 


Product Specification 

AU OPTRONICS CORPORATION 


A150XN01 VO 


( V ) Preliminary Specification 
( ) Final Specification 


Module 

15” XGATFT-LCD Semi-Module 

Model Name 

A150XN01 VO 


Customer 


Date 


Approved by 


Note: This Specification is subject to change without 
notice. 


document version 0.3 


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Checked & 
Approved by 

Date 

<^an 

03/18/2008 

Prepared by 

Date 

Joyce Kjio 

03/18/2008 

Audio-Video Display Business Unit/ 
AU Optronics corporation 

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AJO 


Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


Contents 


Handling Precautions 4 

2. General Description 5 

2. 1 Display Characteristics 5 

3. Functional Block Diagram 8 

4. Absolute Maximum Ratings 9 

4. 1 Absolute Ratings of TFT LCD Module 9 

4.2 Absolute Ratings of Backlight Unit 9 

4.3 Absolute Ratings of Environment 10 

5. Electrical characteristics 11 

5.1 TFT LCD Module 11 

6. Signal Characteristic 13 

6. 1 Pixel Format Image 13 

6.2 The Input Data Format 14 

6.4 Interface Timing 16 

6. 5 Color Input Data Reference 18 

6.6 Power ON/OFF Sequence 19 

7. Connector & Pin Assignment 20 

7.1 TFT LCD Module 20 

8. Reliability Test 21 

9. Outline Drawing 22 

10. Packing Form 23 


document version 0.3 


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AJO 


Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


Record of Revision 


Version and Date 

Page 

Old description 

New Description 

0.1 2007/04/19 

All 

First Draft 

All 

0.2 2007/04/25 

9 

18 

4.1 Absolute Ratings of TFT LCD module: 
Logic LCD drive voltage VDD 0.3(min), 
3.6(Max) 

4.1 Absolute Ratings of TFT LCD module: Logic 
LCD drive voltage VDD -0.3(min), 4.0(Max) 

Add 6.5 Color Input Data Reference 

0.3 2007/09/27 

5 

6 
10 

11 

12 

22 

23 

2.1 Cell transmittance, Power consumption. 
Weight : TBD 

2.2 Cell transmittance: TBD 

4.3 Absolute Ratings of Environment TOP, TST 
TBD 

5.1.1 IDD, Irush, PDD TBD 

5.1.2 VID.VICM spec 

9. Outline Drawing 

10. Packing Form 

2.1 Cell transmittance: (8.8), Power consumption: 
2.5, Weight: 315 

2.2 Cell transmittance: (8.8) 

4.3 Absolute Ratings of Environment TOP 65C, 
TST 80C 

5.1.1 IDD: 750, lrush:930, PDD: 2.5 

5.1.2 VID: 250(min), 350(typ), 450(Max). VICM: 
I.O(min), 1.25(typ), 2(Max) 

9. Update Outline Drawing 

10. Update Packing Form 

0.4 2008/02/27 

22 

9. outline drawing 

9. update outline drawing 

0.5 2008/03/18 

11 

12,13 

VDD current =750mA 

Updated VDD current =600mA 
Add LVDS Setup/Flold time 
Add Cycle Jitter 

Add Clock Cycle Rate of Change 

0.6 2008/ 

6 

Transmittance min.: NA 

Transmittance min.: 7.8% 














































document version 0.3 


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Product Specification 


A150XN01 VO 


AU OPTRONICS CORPORATION 


Handling Precautions 

1) Since front polarizer is easily damaged, pay attention not to scratch it. 

2) Be sure to turn off power supply when inserting or disconnecting from input connector. 

3) Wipe off water drop immediately. Long contact with water may cause discoloration or spots. 

4) When the panel surface is soiled, wipe it with absorbent cotton or other soft cloth. 

5) Since the panel is made of glass, it may break or crack if dropped or bumped on hard surface. 

6) Since CMOS LSI is used in this module, take care of static electricity and insure human earth when 
handling. 

7) Do not open or modify the Module Assembly. 

8) At the insertion or removal of the Signal Interface Connector, be sure not to rotate nor tilt the Interface 
Connector of the TFT Module. 

9) After installation of the TFT Module into an enclosure, do not twist nor bend the TFT Module even 
momentary. At designing the enclosure, it should be taken into consideration that no bending/twisting 
forces are applied to the TFT Module from outside. Otherwise the TFT Module may be damaged. 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


This specification applies to the 15 inch Color TFT-LCD Semi-Module A150XN01 VO 

The display supports the XGA (1024(H) x 768(V)) screen format and 16.2M colors. All input signals are 1 Channel LVDS 
interface compatible. 

This module does not contain the backlight. 


AUO 

2. General Description 


2.1 Display Characteristics 

The following items are characteristics summary on the table under 25 °C condition: 


Items 

Unit 

Specifications 

Active Area 

[mm] 

304.128 (H)x 228.096 

Pixels H X V 


1024(x3)x768 

Pixel Pitch 

[mm] 

0.297 (per one triad) x 0.297 

Pixel Arrangement 


R.G.B. Vertical Stripe 

Display Mode 


TN mode, Normally White 

Cell Transmittance 

[%] 

(8.8) 

Contrast Ratio 


500:1 

Optical ResponseTime 

[msec] 

12 (Typ, on/off) 

Nominal Input Voltage VDD 

[Volt] 

+3.3 (Typ) 

Power Consumption(Black Pattern) 

[Watt] 

2.5 (Typ) 

Weight 

[Grams] 

315 (Typ) 

Physical Size (H x V x D) 

[mm] 

316.23(W) X 242.55(H) X 1.9(D) (Typ) 

Electrical Interface 


one Channel LVDS 

Surface Treatment 


Glare type. Hardness 3H 

Support Colors 


16.2M colors (RGB 6-bits+FRC) 

RoHS Compliance 


RoHS Compliance 


document version 0.3 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

2.2 Optical Characteristics 

The optical characteristics are measured under stable conditions at 25°C (Room Temperature): 



Item 

Unit 

Conditions 

Min. 

Typ. 

Max. 

Note 

Viewing Angle 

[degree] 

Horizontal (Right) 

CR>10 (Left) 


80 

80 

- 

1 

Vertical (Up) 

CR > 10 (Down) 


80 

80 

- 

Optical Response Time 

[msec] 

Rising + Falling 


12 


3 

Color / Chromaticity 
Coordinates 
(CIE 1931) 


White X 
White y 


0.310 

0.330 


2 

Cell Transmittance 
(At CCFL= mA) 

[%] 


(7.8) 

(8.8) 

- 

2 

Contrast Ratio 




500:1 

- 

4 


Optical Equipment: BM-5A, BM-7, PR880, or equivalent 


Note 1: Definition of viewing angle 

Viewing angle is the measurement of contrast ratio 1 0, at the screen center, over a 1 80° horizontal and 1 80° 
vertical range (off-normal viewing angles). The 180° viewing angle range is broken down as follows; 90° ( 0 ) 
horizontal left and right and 90° (O) vertical, high (up) and low (down). The measurement direction is typically 
perpendicular to the display surface with the screen rotated about its center to develop the desired measurement 
viewing angle. 

Normal Line 


<|) = 0°, 0=0° 



Note 2: Measurement method 

The LCD module should be stabilized at given temperature for 30 minutes to avoid abrupt temperature change 


document version 0.3 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

during measuring. In order to stabilize the luminance, the measurement should be executed after lighting Backlight 
for 30 minutes in a stable, windless and dark room. Based on backlight chromaticity (Wx:0.30, Wy:0.31), backlight 
luminance 3600nit. 




Note 3: Definition of response time: 

The output signals of photo detector are measured when the input signals are changed from “Full Black” to “Full 
White” (rising time), and from “Full White” to “Full Black” (falling time), respectively. The response time is interval 
between the 10% and 90% of amplitudes. Please refer to the figure as below. 


Optical 

response 



document version 0.3 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

3. Functional Block Diagram 

The following diagram shows the functional block of the 15.0 inches wide Color TFT-LCD Module: 




l/F + X-PCB 


document version 0.3 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


4. Absolute Maximum Ratings 

Absolute maximum ratings of the module is as following: 

4.1 Absolute Ratings of TFT LCD Module 


Item 

Symbol 

Min. 

Max. 

Unit 

Conditions 

Logic/LCD Drive Voltage 

VDD 

-0.3 

+4.0 

[Volt] 

Note 1,2 


4.2 Absolute Ratings of Backlight Unit 


Item 

Symbol 

Min. 

Max. 

Unit 

Conditions 

CCFL Current 

ICFL 

- 

8.5 

[mA] rms 

Note 1,2 



document version 0.3 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

4.3 Absolute Ratings of Environment 



Item 

Symbol 

Min. 

Max. 

Unit 

Conditions 

Operating Temperature 

TOP 

0 

65 

rc] 

Note 3 

Operating Humidity 

HOP 

8 

90 

[%RH] 

Storage Temperature 

TST 

-20 

80 

rc] 

Storage Humidity 

HST 

8 

90 

[%RH] 


Note 1 : With in Ta= 25°C 

Note 2: Permanent damage to the device may occur if exceed maximum values 

Note 3: For quality performance, please refer to AUO IIS (Incoming Inspection Standard). 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

5. Electrical characteristics 

5.1 TFT LCD Module 

5.1.1 Power Specification 

Input power specifications are as follows: 



Symbie 

Parameter 

Min. 

Typ. 

Max. 

Unit 

Condition 

VDD 

Logic/LCD Drive 
Voltage 

3.0 

3.3 

3.6 

[Volt] 

+ 10% 

IDD 

VDD current 

- 

600 

- 

[mA] 

Vin=3.3V , Black Pattern, 
at 60Hz 

Irush 

LCD Inrush Current 

- 

930 

- 

[mA] 

Vin rising time = 470us 

PDD 

VDD Power 


2.5 

- 

[Watt] 

Vin=3.3V , Black Pattern, 
at 60Hz 


Note: Measurement conditions: 


+3.3V 


(High to Low) 
Control Signal 

sw 


12.0V 

Q 


R1 

47K 


R2 


C2 

1UF/25V 


Q3 

AO6402 




Q3 

AO6402 


VR1 0.01UF/25V 

47K 


FI 


»vcc 

(LCD Module Input) 

C1 

luF/iev 


3.3V 


OV 


470 us 


document version 0.3 


Vin rising time 

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Product Specification 

AU OPTRONICS CORPORATION 


A150XN01 VO 


5.1.2 Signal Electrical Characteristics 

Input signals shall be low or Hi-Z state when Vin is off 

It is recommended to refer the specifications of SN75LVDS82DGG (Texas Instruments) in detail. 


Each signal characteristics are as follows; 


Symbol 

Parameter 

Min 

Typ 

Max 

Units 

Condition 

VTH 

Differential Input High 
Threshold 

- 

- 

100 

[mV] 

VICM = 1 .2V 
Hotel 

VTL 

Differential Input 
Low Threshold 

-too 

- 

- 

[mV] 

VICM = 1 .2V 
Hotel 

I VID| 

Input Differential 
Voltage 

250 

350 

450 

[mV] 

Hotel 

VICM 

Differential Input 
Common Mode 
Voltage 

1.0 

1.25 

2 

[V] 

VTHA/TL = ± lOOmV 

Hotel 

tsu 

Data setup time 

400 

- 

- 

ps 

VDD=3.3±0.3V , TOP=-10~85 oC 
Tclk=15ns , Vcm=1.25V 
Hotel 

thd 

Data hold time 

400 

- 

- 

ps 

VDD=3.3±0.3V , TOP=-10~85 oC 
Tclk=15ns , Vcm=1.25V 

Hotel 

Tcj1 

Cycle Jitter 

__ 

__ 

250 

ps 


Tcj2 

Clock Cycle Rate of 
Change 

- 

- 

20 

ps/cycle 



Hotel: LVDS Signal Waveform 


VTH 

VTL 



|VID I 


document version 0.3 


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Product Specification 

AU OPTRONICS CORPORATION 


Note2: LVDS Input Signal For Timing Specification 


T (cycle) 


IRCLK 


i 


IRXn 


tsu ^ (-|- 
thd — ) |(— 


A150XN01 VO 


r 


I — I — I — I 


IT 3T 5T 7T 9T 11T JI3T 

14 14 14 14 14 14 14 

ideal storobe point ( (2N+1)/14*T . N=0,1,2...6) 


6. Signal Characteristic 
6.1 Pixel Format Image 

Following figure shows the relationship of the input signals and LCD pixel format. 


1 st Line 


768th Line 


12 1023 1024 


R 

G 

B 

B. 

G 

B 


R 

G 

B 

R 

G 

B 





























R 

G 

B 

R 

G 

B 


R 

G 

B 

R 

G 

B 


document version 0.3 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


6.2 The Input Data Format 


CLKIN-H 

\ / 

/ \ 





RING +/- ^ ^ 

( OGOX ORSX OR4X OR3X OR^X °'«>) 

( > 




RINl +/- ^ ^ 

( OBlX OBOX OGbX OG4X OGsX OG^X °«0 

< > 




RIN2 +/- ^ ^ 

( DE X VS X X °==X °=-X "“^-X 

( > 




RIN3 +/- ^ ^ 

(R4.dX OB^X OBbX OG^X °SbX °''^X °“) 

( > 




Current Cycle 


Note1: Please follow PSWG. 

Note2: 8-bit in 

Notes: R/G/B data 7:MSB, R/G/B data 0:LSB 



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Product Specification 


A150XN01 VO 


AU OPTRONICS CORPORATION 


6.3 Signal Description 

The module using a pair of LVDS receiver SN75LVDS82(Texas Instruments) or compatible. LVDS is a differential signal 
technology for LCD interface and high speed data transfer device. Transmitter shall be SN75LVDS83(negative edge sampling) 
or compatible. The first LVDS port(RxOxxx) transmits odd pixels while the second LVDS port(RxExxx) transmits even pixels. 


DF14A-20P-1 .25H (HIROSE) 

Pin No. 

Symbol 

Description 

1 

VDD 

Power Supply, 3.3V (typical) 

2 

VDD 

Power Supply, 3.3V (typical) 

3 

VSS 

Ground 

4 

VSS 

Ground 

5 

RinO- 

- LVDS differential data input (R0-R5, GO) 

6 

Rin0+ 

+ LVDS differential data input (R0-R5, GO) 

7 

VSS 

Ground 

8 

Rini- 

- LVDS differential data input (G1-G5, B0-B1) 

9 

Rin1 + 

+ LVDS differential data input (G1-G5, B0-B1) 

10 

VSS 

Ground 

11 

Rin2- 

- LVDS differential data input (B2-B5, HS, VS, DE) 

12 

Rin2+ 

+ LVDS differential data input (B2-B5, HS, VS, DE) 

13 

VSS 

Ground 

14 

ClkIN- 

- LVDS differential clock input 

15 

ClklN+ 

+ LVDS differential clock input 

16 

VSS 

Ground 

17 

Rin3- 

- LVDS differential data input (R6-R7, G6-G7,B6-B7) 

18 

Rin3+ 

- LVDS differential data input (R6-R7, G6-G7,B6-B7) 

19 

VSS 

Ground 

20 

VSS 

Ground 


document version 0.3 


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Product Specification 

AU OPTRONICS CORPORATION 

6.4 Interface Timing 

6.4.1 Timing Characteristics 



A150XN01 VO 


Signal 

Item 

Symbol 

Min 

Typ 

Max 

Unit 

Clock Timing 

Clock frequency 

Tclk 

50 

65 

81 

MHz 

Hsync Timing 

Horizontal active 

Tdisp(h) 

1024 

1024 

1024 

Tclk 

Horizontal blanking 

Tblk(h) 

30 

320 

1024 

Tclk 

Horizontal period 

Th 

1054 

1344 

2048 

Tck 

Vsync Timing 

Vertical active 

Tdisp(v) 

768 

768 

768 

Th 

Vertical blanking 

Tblk(v) 

8 

38 

256 

Th 

Vertical period 

Tv 

776 

806 

1024 

Th 


Note: DE mode only 

Note: Typical value refer to VESA STANDARD 


document version 0.3 


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AJO 


Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


6.4.2 Timing Digram 



O 

m 



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Product Specification 

AU OPTRONICS CORPORATION 


6.5 Color Input Data Reference 


A150XN01 VO 


Color Data Reference 


Coloz 

lapmt Coloi Data 

RED 

GREEN 

BLUE 

R7 

R6 

R5 

R4 

B3 

R2 

Rl 

RO 

Ml) 

R7 

R6 

RS 

R4 

R7 

R2 

Rl 

RO 

Ml) 

R7 

R6 

R5 

R4 

R7 

R2 

Rl 

RO 

Ui) 

Basic 

Colod 

Black 

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 

(255) 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

Gieem 

(255) 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

Blme 

(255) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 

Cjam 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

Ma^eata 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 

Tellov 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

Wkite 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

1 

RED 

RED 

(000) 

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 

(001) 

0 

0 

0 

0 

0 

0 

0 

1 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

— 

























RED 

(254) 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

RED 

(255) 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

GREEN 

GREEN 

(000) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

GREEN 

(001) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

0 

0 

0 

0 

0 

0 

0 

0 

— 

























GREEN 

(254) 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

0 

GREEN 

(255) 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

BLUE 

BLUE 

(000) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

BLUE 

(001) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

— 

























BLUE 

(254) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

0 

BLUE 

(255) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 


document version 0.3 


: : I III III! Ill III I III II II III III I III iiliiil II III I 
III III nil III nil III II 1 1 III III I III iiiiiiiii 1 1 II 
' 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 
:: II II nil III nil III 111 I III nil III nniii II II : : 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 


6.6 Power ON/OFF Sequence 

Vin power and lamp on/off sequence is as follows. Interface signals are also shown in the chart. Signals from any system 
shall be Hi-Z state or low level when Vin is off. 



Power Supply VDD 


LVDS Signal 


Backlight On 


T1 



Power Sequence Timing 


Parameter 

Value 

Unit 

Min. 

Typ. 

Max. 

T1 

0.5 

- 

10 

[ms] 

T2 

30 

40 

50 

[ms] 

T3 

200 

- 

- 

[ms] 

T4 

100 

- 

- 

[ms] 

T5 

0 

16 

50 

[ms] 

T6 

- 

- 

10 

[ms] 

T7 

1000 

- 

- 

[ms] 


document version 0.3 


’ I II 1 nil III III I III II II III III I III Ilf 1111 II I r 
1 1 i II nil III nil III II 1 1 III III I III II I Mill 1 1 

1 M II nil III nil III II II III nnni II II in III : 

1 1 1 1 III I III nil III 111 I III III I III iiiiiii II I : ' 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

7. Connector & Pin Assignment 

Physical interface is described as for the connector on module.These connectors are capable of accommodating 
the following signals and will be following components. 


7.1 TFT LCD Module 

7.1.1 Connector 


Connector Name / Designation 

Interface Connector / Interface card 

Manufacturer 

HIROSE 

Type Part Number 

HRS DF14A-20P-1.25H(56) 


7.1.2 Pin Assignment 


Pin# 

Signal Name 

Pin# 

Signal Name 

1 

VDD 

2 

VDD 

3 

VSS 

4 

VSS 

5 

RinO- 

6 

Rin0+ 

7 

VSS 

8 

Rini- 

9 

Rin1 + 

10 

VSS 

11 

Rin2- 

12 

Rin2+ 

13 

VSS 

14 

ClkIN- 

15 

ClklN+ 

16 

VSS 

17 

Rin3- 

18 

Rin3+ 

19 

VSS 

20 

VSS 



document version 0.3 


' I III III! Ill III I III II II III III I III lllllll II I I ' 

( III nil III nil III II 1 1 III III I III II iiiiiii I : 

iiiiniiiiiniiiiiniiiiiniiiiiniiiiiniMii 

-iinnnnniniiniiiinnnnninniniii. 


20/23 


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AJO 


Product Specification 

AU OPTRONICS CORPORATION 


8. Reliability Test 

Environment test conditions are listed as following table. 


A150XN01 VO 


Items 

Required Condition 

Note 

Temperature Humidity Bias (THB) 

Ta= 50°C, 80%RH, 240hours 


High Temperature Operation (HTO) 

Ta= 65°C, 240hours 


Low Temperature Operation (LTO) 

Ta= 0°C, 240hours 


High Temperature Storage (HTS) 

Ta= 80°C, 240hours 


Low Temperature Storage (LTS) 

Ta= -10°C, 240hours 


Drop Test 

Height: 60 cm, package test 


Thermal Shock Test (TST) 

-10°C/30min, 80°C/30min, 100 cycles 

1 

ESD (Electro Static Discharge) 

Contact Discharge: ± 8KV, 150pF(3300 ) Isec, 
8 points, 25 times/ point. 

2 

Air Discharge: ± 15KV, 150pF(3300 ) Isec 
8 points, 25 times/ point. 


Note 1 : The TFT-LCD module will not sustain damage after being subjected to 100 cycles of rapid temperature 

change. A cycle of rapid temperature change consists of varying the temperature from -10°C to 80°C, and 
back again. Power is not applied during the test. After temperature cycling, the unit is placed in normal 
room ambient for at least 4 hours before power on. 

Note 2: According to EN61 000-4-2 , ESD class B: Some performance degradation allowed. No data lost. 

Self-recoverable. No hardware failures. 


document version 0.3 


‘ I II 1 nil III III I III II II III III I III Ilf 1111 II I r 
I lillllllllllllllllllllllllllllllllllllllllC 

i 1 1 II nil III nil III nil III iiiiiii II II Mill I 
: 1 1 1 1 nil III nil III 111 I III III I III iiinii II I . . 


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AJO 


Product Specification 

AU OPTRONICS CORPORATION 


A150XN01 VO 


9. Outline Drawing 



document version 0.3 


IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII! 

: : ! Ill Mil III III! Ill II 1 1 III III I III II iiiiiii I : ' ' 
lllillllllllllllllllllllllllllllllltllllllMll 
:: 1 1 II nil III nil III 111 I III III I III IIIIIII II 1 1 . . 


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Product Specification msoxnoi vo 

AU OPTRONICS CORPORATION 

10. Packing Form 




IPCS CARTON 
PUTS 30PCS SKD 




document version 0.3 


' I III III! Ill III I III II II III III I III lllllll II I I ' 

1 II nil III nil III II 1 1 III III I III II iiiiiii I : 

iiiiniiiiiniiiiiniiiiiniiiiiniiiiiniMii 

-iinnnnnniinniiinniininiininiii. 


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