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SPEC NO.: A070-84-TT- 12    Date : 2009/02/23             

Page : 23/27 

The copyright belongs to InnoLux. Any unauthorized use is prohibited.

 

5. Reliability Test Items 

(Note3)

 

Item 

Test Conditions 

Remark 

High Temperature Storage 

Ta = 85

                                240 hrs 

Note 1,Note 4 

Low Temperature Storage 

Ta = -30

                              240hrs 

Note 1,Note 4 

High Temperature Operation 

Ts = 85

                                240hrs 

Note 2,Note 4   

Low Temperature Operation 

Ta =-30

                                240hrs 

Note 1,Note 4 

Operate at High Temperature 
and Humidity 

+60

, 90%RH max.            240 hrs 

Note 4 

Thermal Shock 

-30

/30 min ~ +85

/30 min for a total 100 

cycles, Start with cold temperature and end 
with high temperature 

Note 4 

Vibration Test   

Frequency range:10~55Hz 
Stroke:1.5mm 
Sweep:10Hz~55Hz~10Hz 
2 hours for each direction of X. Y. Z. 
(6 hours for total) 

 

Mechanical Shock 

100G 6ms,±X, ±Y, ±Z 3 times for each 
direction 

 

Package Vibration Test 

Random Vibration : 
0.015G*G/Hz from 5-200HZ, -6dB/Octave 
from 200-500HZ 
2 hours for each direction of X. Y. Z. 
(6 hours for total) 

 

Package Drop Test 

Height:60 cm 
1 corner, 3 edges, 6 surfaces 

 

Electro Static Discharge 

± 2KV,    Human Body Mode, 100pF/1500Ω 

 

   

Note 1: Ta is the ambient temperature of samples. 
Note 2: Ts is the temperature of panel’s surface. 

            Note 3: In the standard condition, there shall be no practical problem that may affect the 

display function. After the reliability test, the product only guarantees operation, 
but doesn’t guarantee all the cosmetic specification. 

Note 4: Before cosmetic and function test, the product must have enough recovery time, 

                          at least 2 hours at room temperature. 
 

Summary of Contents for 668GL-70NP/H/Y

Page 1: ...D MODULE SPECIFICATION Customer Model Name AT070TN84 V 1 SPEC NO A070 84 TT 12 Date 2009 02 23 Version 02 Preliminary Specification Final Specification For Customer s Acceptance Approved by Comment Approved by Reviewed by Prepared by Jack Huang 2009 02 26 Charlie Chou 2009 02 24 David Lee 2009 02 24 ...

Page 2: ...t 2004 All rights reserved Copying forbidden Record of Revision Version Revise Date Page Content Pre spec 01 2008 07 21 Initial release Final spec 01 2009 01 06 The first version final specification 1 Add module weight 25 Update mechanical drawing 02 2009 02 23 7 Add the Min Max value of VCOM ...

Page 3: ...n Conditions 7 3 2 1 Current Consumption 8 3 2 2 Backlight Driving Conditions 8 3 3 Power Sequence 9 3 4 Timing Characteristics 10 3 4 1 Timing Conditions 10 3 4 2 Timing Diagram 12 4 Optical Specifications 19 5 Reliability Test Items 23 6 General Precautions 24 6 1 Safety 24 6 2 Handling 24 6 3 Static Electricity 24 6 4 Storage 24 6 5 Cleaning 24 7 Mechanical Drawing 25 8 Package Drawing 26 8 1 P...

Page 4: ...ment a Si TFT active matrix 3 Resolution 800 3 RGB 480 4 Display mode Normally white Transmissive 5 Dot pitch 0 0635 W 0 1905 H mm 6 Active area 152 4 W 91 44 H mm 7 Module size 165 W 104 H 5 5 D mm Note1 8 Surface treatment Anti Glare 9 Color arrangement RGB stripe 10 Interface Digital 11 Backlight power consumption 1 782W Typ 12 Panel power consumption 0 437W Typ 13 Weight 170g Typ Note1 Refer t...

Page 5: ...cal start pulse input when U D H Note 1 3 OEV I Output enable 4 CKV I Vertical clock 5 STVU I O Vertical start pulse input when U D L Note 1 6 GND P Power Ground 7 EDGSL I Select rising edge or falling edge 8 DVDD P Power Voltage for Digital Circuit 9 V9 I Gamma voltage level 9 10 VGL P Gate OFF voltage 11 V2 I Gamma voltage level 2 12 VGH P Gate ON voltage 13 V6 I Gamma voltage level 6 14 U D I U...

Page 6: ...ta 29 R0 I Red data LSB 30 GND P Power Ground 31 GND P Power Ground 32 G5 I Green data MSB 33 G4 I Green data 34 G3 I Green data 35 G2 I Green data 36 G1 I Green data 37 G0 I Green data LSB 38 STHL I O Horizontal start pulse input when R L L Note 1 39 REV I Control signal are inverted or not Note3 40 GND I Power Ground 41 DCLK I Sample clock 42 DVDD P Power Voltage for Digital Circuit 43 STHR I O ...

Page 7: ...7 I Gamma voltage level 7 55 V10 I Gamma voltage level 10 56 V12 I Gamma voltage level 12 57 V13 I Gamma voltage level 13 58 AVDD P Power Voltage for Analog Circuit 59 GND P Power Ground 60 VCOM I Common voltage I input O output P Power Note 1 Selection of scanning mode Setting of scan control input IN OUT state for start pulse U D R L STVD STVU STHR STHL Scanning direction GND DVDD O I I O Up to ...

Page 8: ...Note 3 When REV L it s under normal operation When REV H these data will be inverted 2 2 Backlight Unit Section LED Light Bar Connector is used for the integral backlight system The recommended model is BHSR 02VS 1 manufactured by JST Pin No Symbol I O Function Remark 1 VLED P Power for LED backlight anode Pink 2 VLED P Power for LED backlight cathode White LCM Active area Left Right Up Down ...

Page 9: ... V14 0 3 0 6AVDD V Operation Temperature TOP 30 85 Storage Temperature TST 30 85 LED Reverse Voltage Vr 1 2 V Each LED Note 3 LED Forward Current IF 25 mA Each LED Note 1 AVDD 0 1 V1 V2 V3 V4 V5 V6 V7 V8 V9 V10 V11 V12 V13 V14 AVSS 0 1 Note 2 The absolute maximum rating values of this product are not allowed to be exceeded at any times A module should be used with any of the absolute maximum ratin...

Page 10: ...r voltage VGL 7 7 7 0 6 3 V VCOM 3 9 4 1 4 3 V V1 V14 2 5 2V V1 V7 0 4 AVDD AVDD 0 1 V Input signal voltage V8 V14 0 1 0 6 AVDD V Input logic high voltage VIH 0 7 DVDD DVDD V Input logic low voltage VIL 0 0 3 DVDD V Note 3 Note 1 Be sure to apply DVDD and VGL to the LCD first and then apply VGH Note 2 DVDD setting should match the signals output voltage refer to Note 3 of customer s system board N...

Page 11: ...VDD 40 0 50 0 mA AVDD 10 4V 3 2 2 Backlight Driving Conditions Values Item Symbol Min Typ Max Unit Remark Voltage for LED Backlight VL 9 3 9 9 10 5 V Note1 Current for LED Backlight IL 170 180 200 mA LED life time 20 000 Hr Note 2 Note 1 The Voltage for LED Backlight is defined at Ta 25 and IL 180mA Note 2 The LED life time is defined as the module brightness decrease to 50 original brightness at ...

Page 12: ... 23 Page 9 27 The copyright belongs to InnoLux Any unauthorized use is prohibited 3 3 Power Sequence 1 Power on 2 Power off Note Data include DCLK POL OEV CKV STVU STVD STHL STHR LD R0 R5 G0 G5 B0 B5 DVDD VGL VGH Data B L B L Data VGH VGL DVDD ...

Page 13: ...p time Tsu 4 ns Data hold time Thd 2 ns Time that the last data to LD Tld 1 Tcph Pulse width of LD Twld 2 Tcph Time that LD to STHL R Tlds 5 Tcph POL set up time Tpsu 6 ns POL hold time Tphd 6 ns CKV frequency Fvclk 200 KHz CKV rise time Trck 100 ns CKV falling time Tfck 100 ns CKV pulse width PWCLK 500 ns Horizontal display timing range Tdh 800 Tcph Horizontal timing range Th 1056 Tcph STVU D set...

Page 14: ...ngs to InnoLux Any unauthorized use is prohibited Output rise time Ttlh 500 1000 ns Output falling time Tthl 400 800 ns OEV pulse width Twcl 1 us OEV to Driver output delay time Toe 900 ns Horizontal lines per field Tv 512 525 610 Tdh Vertical display timing range Tvd 480 Tdh ...

Page 15: ... Any unauthorized use is prohibited 3 4 2 Timing Diagram Tsu Thd Tcw Tcw Tsu Thd First data Second data Last data Tphl Tphl 70 30 70 70 30 30 70 70 70 70 70 800 799 2 1 DCLK STHL R input STHR L output Timing Diagram1 CHNSL 1 Default EDGSL 0 Default Tcph 70 Date RGB Fig 3 1 operation model 1 ...

Page 16: ...ight belongs to InnoLux Any unauthorized use is prohibited Tsu Thd Tcw Tcw Tsu Thd First data Second data Last data Tsu Thd Tphl Tphl 70 30 70 30 30 70 30 70 30 30 70 70 70 70 70 70 400 399 2 1 DCLK STHL R input Data RGB STHR L output EDGSL 1 Fig 3 2 operation model 2 ...

Page 17: ...oLux Any unauthorized use is prohibited DCLK LD STHL R input LD POL Odd outputs Even outputs 70 Last Tld 70 Twld 70 Tlds 70 70 70 70 30 70 30 Tpsu Tphd TpsuTphd High Z Tst 10 90 High Z Tst 90 10 70 Tpsu Tphd High Z Tst Positive 70 30 Negative Timing Diagram 2 Fig 3 3 Horizontal timing 1 ...

Page 18: ...INNOLUX SPEC NO A070 84 TT 12 Date 2009 02 23 Page 15 27 The copyright belongs to InnoLux Any unauthorized use is prohibited Hs DCLK RGB 1 2 3 800 799 798 DE Tdh Th Fig 3 4 Horizontal timing 2 ...

Page 19: ...INNOLUX SPEC NO A070 84 TT 12 Date 2009 02 23 Page 16 27 The copyright belongs to InnoLux Any unauthorized use is prohibited Fig 3 5 Vertical shift clock timing ...

Page 20: ...INNOLUX SPEC NO A070 84 TT 12 Date 2009 02 23 Page 17 27 The copyright belongs to InnoLux Any unauthorized use is prohibited Fig 3 6 Vertical timing from up to down ...

Page 21: ...INNOLUX SPEC NO A070 84 TT 12 Date 2009 02 23 Page 18 27 The copyright belongs to InnoLux Any unauthorized use is prohibited RGB 1 2 3 480 479 478 DE Vs Tvd Tv Fig 3 7 Vertical timing ...

Page 22: ...T Φ 90 12 o clock 40 50 Viewing angle CR 10 θB Φ 270 6 o clock 60 70 degree Note 1 TON 10 20 msec Note 3 Response time TOFF 15 30 msec Note 3 Contrast ratio CR 400 500 Note 4 WX 0 26 0 31 0 36 Color chromaticity WY 0 28 0 33 0 38 Note 2 Note 5 Note 6 Luminance L 360 450 cd m2 Note 6 Luminance uniformity YU Normal θ Φ 0 70 75 Note 7 Test Conditions 1 DVDD 3 3V IL 180mA Backlight current the ambient...

Page 23: ...sured in dark room After 30 minutes operation the optical properties are measured at the center point of the LCD screen Response time is measured by Photo detector TOPCON BM 7 other items are measured by BM 5A Field of view 1 Height 500mm Fig 4 2 Optical measurement system setup Normal line θ Φ 0 Φ 90 12 o clock direction Φ 270 6 o clock direction Φ 0 Φ 180 Active Area θL θT θB θR Normal line θ Φ ...

Page 24: ... time between photo detector output intensity changed from 10 to 90 Fig 4 3 Definition of response time Note 4 Definition of contrast ratio state Black the on LCD when measured Luminance state White the on LCD when measured Luminance CR ratio Contrast Note 5 Definition of color chromaticity CIE1931 Color coordinates measured at center point of LCD Note 6 All input terminals LCD panel must be groun...

Page 25: ...vided into 9 measuring areas Refer to Fig 4 4 Every measuring point is placed at the center of each measuring area max min B B Yu Uniformity Luminance L Active area length W Active area width W W 3 W 3 W 6 L 3 L 3 L 6 L Fig 4 4 Definition of measuring points Bmax The measured maximum luminance of all measurement position Bmin The measured minimum luminance of all measurement position ...

Page 26: ...m Sweep 10Hz 55Hz 10Hz 2 hours for each direction of X Y Z 6 hours for total Mechanical Shock 100G 6ms X Y Z 3 times for each direction Package Vibration Test Random Vibration 0 015G G Hz from 5 200HZ 6dB Octave from 200 500HZ 2 hours for each direction of X Y Z 6 hours for total Package Drop Test Height 60 cm 1 corner 3 edges 6 surfaces Electro Static Discharge 2KV Human Body Mode 100pF 1500Ω Not...

Page 27: ...omponents 5 Put cover board such as acrylic board on the surface of LCD panel to protect panel from damages 6 Transparent electrodes may be disconnected if you use the LCD panel under environmental conditions where the condensation of dew occurs 7 Do not leave module in direct sunlight to avoid malfunction of the ICs 6 3 Static Electricity 1 Be sure to ground module before turning on power or oper...

Page 28: ...INNOLUX SPEC NO A070 84 TT 12 Date 2009 02 23 Page 25 27 The copyright belongs to InnoLux Any unauthorized use is prohibited 7 Mechanical Drawing ...

Page 29: ...N84 V 1 165 104 5 5 0 170 50 pcs 2 Partition BC Corrugated Paper 512 349 226 1 466 1 set 3 Corrugated Bar BC Corrugated Paper 512 162 0 046 4 set 4 Corrugated Board BC Corrugated Paper 510 343 0 130 1 pcs 5 Dust Proof Bag PE 700 530 0 048 1 pcs 6 A S Bag PE 180 160 0 05 0 002 50 pcs 7 Carton Corrugated paper 530 355 255 1 100 1 pcs 8 Total weight 11 528 Kg 5 8 2 Packaging Quantity Total LCM quanti...

Page 30: ...INNOLUX SPEC NO A070 84 TT 12 Date 2009 02 23 Page 27 27 The copyright belongs to InnoLux Any unauthorized use is prohibited 8 3 Packaging Drawing ...

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