CPT  CHUNGHWA PICTURES TUBES, LTD.
,
 
CPT Confidential  0/20  CLAA170EA07-Yih Hsing-Ver1-2004/08/23 
 
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To    :  YIH HSING ENTERPRISE CO.,LTD. 
Date :  2004.08.23 
 
 
 
ACCEPTED BYG 
      
  
 
 
 
 
 
APPROVED BY  CHECKED BY  PREPARED BY 
 
 
  
 
 
 
 
 
TFT-LCD Product 
Planning Management
General Division 
 
 
Prepared by : TFT-LCD Product Planning Management General Division 
CHUNGHWA PICTUER TUBES, LTD. 
1127 Hopin Rd., Padeh, Taoyuan, Taiwan 334, R.O.C. 
TEL: +886-3-3675151  FAX: +886-3-377-3001 
 
Doc.No:  CLAA170EA07-Yih Hsing-Ver1-2004/08/23 Issue Date:  2004/08/23 
 
 
CLAA170EA    07 
 
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CPT Confidential  1/20  CLAA170EA07-Yih Hsing-Ver1-2004/08/23 
 
1.OVERVIEW 
CLAA170EA07  is  17.0  color  TFT-LCD  (Thin  Film  Transistor  Liquid  Crystal  Display) 
module  composed  of  LCD  panel,  driver  ICs,  control  circuit  and  backlight.  General 
specification are summarized in the following table: 
ITEM  SPECIFICATION 
Display Area(mm)  337.920(H)x270.336(V)    (17.0-inch diagonal) 
Number of Pixels  1280(H)x1024(V) 
Pixel Pitch(mm)  0.264(H)x0.264(V) 
Color Pixel Arrangement  RGB vertical stripe 
Display Mode  normally white, TN 
Number of Colors  16.2M(6 Bit+FRC) 
Brightness(cd/m^2)  300 cd/m
2
(Typ.)(Center point, Lamp current=7.0 mA) 
Viewing Angle  140/130(Typ.) 
Surface Treatment  Anti-glare 
Electrical Interface  LVDS , 2Ch 
Total Module Power(W)  20.0 (Typ.) 
Optimum Viewing Angle  6 oclock 
Module Size(mm)  358.5(W)x296.5(H)x17.5(D) 
Module Weight(g)  2000(typ) 
Backlight Unit  CCFL, 4 tables, edge-light(top*2/bottom*2) 
The  LCD  Products  listed  on  this  document  are  not  suitable  for  use  of  aerospace 
equipment, submarine cables, nuclear reactor control system and life support systems. If 
customers  intend  to  use  these  LCD  products  for  above  application  or  not  listed  in 
Standard as follows, please contact our sales people in advance. 
Standard:  Computer,  Office  equipment,  Communication  equipment,  Test  and 
Measurement  equipment,  Machine  tool,  Industrial  robot,  Audio  and  Visual 
equipment, Other consumer products. 
  2. ABSOLUTE MAXIMUM RATINGS 
ITEM  SYMBOL  MIN.  MAX.  UNIT 
Power Supply Voltage for LCD  VCC  0  6.5  V 
Operation Temperature *1)  Top  0  50  J  
Storage Temperature *1)  Tstg  -20  60  J  
Note: 
*1)Humidity 85%RH without condensation 
  Relative Humidity  90% (Ta  40J ) 
  Wet Bulb Temperature  39J (Ta 40J ) 
0  20 40  60
-20 
20 
40 
60 
80 
5 
90 
50
Operating Range 
Storage Range 
 
Temperature(C) 
(50,50.4) 
(60,27.7) 
(40,90) 
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3. ELECTRICAL CHARACTERISTICS 
(a)TFT-LCD                                                                                                                                    Ta=25J  
ITEM  SYMBOL MIN  TYP  MAX UNIT  Remark 
Power Supply Voltage for LCD  Vin  4.5  5.0  5.5  V  Note1 
Power Supply Current for LCD  Iin  -  700   950  mA  Note2 
Permissive Input Ripple Voltage  VRP  -  -  100  mVp-p  Vcc=5.0V
Differential impedance  Zm  90  100  110     
Common Mode Voltag  VCM  1.125  1.25  1.375 V   
Differential Input 
Voltage 
|VID|  250  350  450  mV 
 
Threshold 
Voltage(High) 
VTH  -  -  100  mV 
Logic input 
Voltage 
LVDS:IN+
A IN- 
Threshold 
Voltage(Low) 
VTL  -100  -  -  mV 
Note3 
 I rush Current  Irush      3  A  Note 4 
 
[Note 1]   VCC-turn-on conditions: 
        t1 10ms        1 sec t5 
          0 t2 20ms     200ms t6 
          0 t3 50ms     200ms t7 
          0 t4 10ms                          
data
t1 t2 t3
4.5V
4.5V
0.5V
Vin=5.0V
0.5V 0.5V
t4
t5
LCD Power Supply
Logic Signal
t6 t7
Backlight Power Supply
VL
Data: RGB DATA, DCLK, DENA
 
 
VCC-dip conditions 
1) When 3.6V Vin(min)<4.5V:           td 10 ms 
2) When Vin <3.6 V 
              VCC-dip conditions should also follow the VCC-turn-on conditions. 
 
3.6 4.5V
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[Note 2] Typical current situation :  
64 gray scale level,1280 line mode, VCC=5.0V, Fh=64Khz,Fv=60Hz, Fclk=54 MHz . 
 
[Note 3] LVDS Signal definition : 
 
               VID = VIN
+
 V  VIN- ,   
            VCM =U VCM
+
V VCM-U , 
            VID =U VID
+
V VID-U , 
            VID+ =U VIH
+
V VIH-U , 
            VID- =U VIL
+
V VIL-U , 
            VCM  =(VIN
+ 
+VIN-)/2, 
            VCM+ =(VIH
+ 
+VIH-)/2, 
            VCM- =(VIL
+ 
+VIL-)/2, 
 
[Note4 ] Irush Measurement Condition 
 
 
VIN
+ 
= Positive differential DATA & CLK Input 
 
VIN- = Negative differential DATA & CLK Input 
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(b)Backlight 
1.Electrical specification                                                                                                                  Ta=25J  
ITEM  SYMBOL  MIN  TYP  MAX  UNIT  REMARK 
Lamp Voltage  VL  540  600  660  Vrms  IL=7.0mA 
Lamp Current  IL  3  7  7.5  mArms  Note1,2 
Interter Frequency  FL  45  50  65  kHz  Note3,4 
1710  --  --  Vrms  Tb=0J  
Starting Lamp 
Voltage 
VS 
1320  --  --  Vrms  Ta=25J  
     
[Note 1]  Test Inverter  Multipal (M063-4) 
Lamp Current measurement method ( The current meter is inserted in cold line) 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
          [Note 2]    Lamp current must be balance as below requirment 
 
The degrees of unbalanceG  10% 
The ratio of wave heightG 2 10% 
 
 
 
 
 
 
 
 
 
 
Ip 
I-p
Ip Ghigh side peak 
I-p Glow side peak 
   GThe degrees of  unbalance = WIp   I-p W/ Irms 100 (% ) 
   GThe ratio of wave hei ght = Ip (or I-p) / Irms 
 
 
 
 
 
 
 
LCD 
Module
 
 
 
 
 
 
INVERTER
Power-
Supply 
A 
CTL 
CTH 
A 
CTL 
CTH 
A 
CTL 
CTH 
A 
CTL 
CTH 
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[Note  3]  Lamp  frequency  of  inverter  may  produce  interference  with  horizontal 
synchronous  frequency,and  this  may  cause  horizontal  beat(Waving)  on  the 
display.Therefore,please  adjust      lamp  frequency,and  keep  inverter  as  far 
from  module  as  possible  or  use  electronic    shielding  between  inverter  and 
module to avoid the interference 
[Note 4]  FL: 50~60KHz for best optical and electrical performance 
                      FL: 40~80KHz for life and reliability assurance 
 
2.  Life time 
  IL at 4.0 mA  IL at 7.0 mA IL at 7.5 mA UNIT  REMARK 
Lamp life Time  Min. 50,000  Min. 40,000 Min. 30,000 hr 
Continuous Operation, 
 Note 1 
Rated time 
(turn on/off) 
--  Min.100,000 --  time  Note 2 
 
[Note 1] The lifetime of lamp is defined as the time  when the brightness becomes 
equal or less then 50% of the initial value  under the condiftion T=25+/- 2 
0
C 
and IL=4~7.5 mA 
 
[Note 2]  Turn On 10sec/ turn off 10sec under the condiftion T= 25+/- 2 
0
C , IL=7mA 
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4. INTERFACE PIN CONNECTION 
(a) CN1(Data Signal and Power Supply) 
  Used connector: FI-XB30SSL-HF15(JAE) or equivalent 
    
Pin No.   symbol  Function 
1  RXO0-  minus signal of odd channel 0(LVDS) 
2  RXO0+  plus signal of odd channel 0(LVDS) 
3  RXO1-  minus signal of odd channel 1(LVDS) 
4  RXO1+  plus signal of odd channel 1(LVDS) 
5  RXO2-  minus signal of odd channel 2(LVDS) 
6  RXO2+  plus signal of odd channel 2(LVDS) 
7  GND  ground 
8  RXOC-  minus signal of odd clock channel (LVDS) 
9  RXOC+  plus signal of odd clock channel (LVDS) 
10  RXO3-  minus signal of odd channel 3(LVDS) 
11  RXO3+  plus signal of odd channel 3(LVDS) 
12  RXE0-  minus signal of even channel 0(LVDS) 
13  RXE0+  plus signal of  even channel 0(LVDS) 
14  GND  ground 
15  RXE1-  minus signal of even channel 1(LVDS) 
16  RXE1+  plus signal of even channel 1(LVDS) 
17  GND  ground 
18  RXE2-  minus signal of even channel 2(LVDS) 
19  RXE2+  plus signal of even channel 2(LVDS) 
20  RXEC-  minus signal of even clock channel (LVDS) 
21  RXEC+  plus signal of even clock channel (LVDS) 
22  RXE3-  minus signal of even channel 3(LVDS) 
23  RXE3+  plus signal of even channel 3(LVDS) 
24  GND  ground 
25  NC  NC or ground 
26  NC  Test pin 
27  NC  NC or ground 
28  VCC  Power supply input voltage(5.0 V) 
29  VCC  Power supply input voltage(5.0 V) 
30  VCC  Power supply input voltage(5.0 V) 
 
(b) CN2,3(BACKLIGHT) 
  Backlight-side connector: BHR-02VS-1(JST) 
  Inverter-side connector: SM02(4.0)B-BHS-1-TB(JST) 
 
Pin No.  Symbol  Function 
1 
CTH  Power for CCFL 
2 
CTL  Power return for CCFL 
 
[Note] 
VBLH-VBLL = VL 
 
 
 
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  5. INTERFACE TIMING 
(a) Timing Specifications 
 
ITEM  SYMBOL MIN  TYP  MAX  UNIT 
Frequency  f
CLK
  50  54  70  MHz 
DCLK 
 
Period  t
CLK
  114.3 18.5  22.2  ns 
Horizontal Active 
Time 
tHA  640  640  640  tCLK 
Horizontal Blank 
Time 
tHB  70  204  -  tCLK 
Horizontal Total Time tH   710  844  -  tCLK 
Vertical Active Time tVA  1024  1024  1024  tH 
Vertical Blank Time  tVB  22  42  -  tH 
Vertical Total Time  tV  1046  1066  -  tH 
LCD 
Timing 
 
DATA Enable 
DENA 
 
Vertical Frame Rate Fr  50  60  75  Hz 
[Note] 
1) DENA should always be positive polarity as shown in the timing specification. 
2) CLK INshould appear during all blanking period,  
3) Using LVDS IC 
Receiver  Transmitter 
DS90C384MTD(NS)  DS90C383MTD(NS) 
SN75LVDS82(TI)  SN75LVDS83(TI) 
5 ) Required signal assignment for flat link transmitter 
Pin  Pin  Require  Signal Pin  Pin Name Require  Signal
1  VCC  Power Supply for TTL Input 29 GND Ground pin for TTL
2  D5  TTL Input (R7) 30 D26 TTL Input(DE)
3  D6  TTL Input (R5) 31 TxCLKIN TTL Level clock Input
4  D7  TTL Input (G0) 32 PWR DWN Power Down Input
5  GND  Ground pin for TTL 33 PLL GND Ground pin for PLL
6  D8  TTL Input (G1) 34 PLL VCC Power Supply for PLL
7  D9  TTL Input (G2) 35 PLL GND Ground pin for PLL
8  D10  TTL Input (G6) 36 LVDS GND Ground pin for LVDS
9  VCC  Power Supply for TTL Input 37 TxOUT3+ Positive LVDS differential data 
10  D11  TTL Input (G7) 38 TxOUT3- Negative LVDS differential data 
11  D12  TTL Input (G3) 39 TxCLKOUT+ Positive LVDS differential clock 
12  D13  TTL Input (G4) 40 TxCLKOUT- Negative LVDS differential clock 
13  GND  Ground pin for TTL 41 TxOUT2+ Positive LDVS differential data 
14  D14  TTL Input (G5) 42 TxOUT2- Negative LVDS differential data 
15  D15  TTL Input (B0) 43 LVDS GND Ground pin for LVDS
16  D16  TTL Input (B6) 44 LVDS VCC Power Supply for LVDS
17  VCC  Power Supply for TTL Input 45 TxOUT1+ Positive LVDS differential data 
18  D17  TTL Input (B7) 46 TxOUT1- Negative LVDS differential data 
19  D18  TTL Input (B1) 47 TxOUT0+ Positive LVDS differential data 
20  D19  TTL Input (B2) 48 TxOUT0- Negative LVDS differential data 
21  GND  Ground pin for TTL 49 LVDS GND Ground pin for TTL
22  D20  TTL Input (B3) 50 D27 TTL Input (R6)
23  D21  TTL Input (B4) 51 D0 TTL Input (R0)
24  D22  TTL Input (B5) 52 D1 TTL Input (R1)
25  D23  TTL Input (LVDS) 53 GND Ground pin for TTL
26  VCC  Power Supply for TTL Input 54 D2 TTL Input (R2)
27  D24  TTL Input (HSYNC) 55 D3 TTL Input (R3)
28  D25  TTL Input (VSYNC) 56 D4 TTL Input (R4)
 
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  (b) Timing Chart 
                    
     
     
EVENDATA 
( R,G,B) 
 
2
 
4
 
1278 
 
1280  6 Invalid Data 
 
Invalid Data 
     a. Horizontal Timing Chart 
DCLK 
First Data 
3
 
5
ODD  DATA
(R,G,B) 
 
1
 
1277 
 
1279 
Invalid Data 
 
Invalid Data 
 
Last Data 
t
HA
t
HB
 
DENA 
b. Vertical Timing Chart 
t
VB
 
DENA 
t
VA
 
 
Invalid Data 
LINE DATA 
 
1
    
2
 
1023 
 
1024  3 
 
Invalid Data 
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(C) LVDS DATA 
 
a. Timing Chart 
 
 
b  Data mapping (6bit + FRC  or  6bit  selection) 
 
Cell  Input Pin *)  Data(6bit + FRC) Data(6bit) 
RA0 
RA1 
RA2 
RA3 
RA4 
RA5 
RA6 
RB0 
RB1 
RB2 
RB3 
RB4 
RB5 
RB6 
RC0 
RC1 
RC2 
RC3 
RC4 
RC5 
RC6 
RD0 
RD1 
RD2 
RD3 
RD4 
RD5 
RD6 
Ref-RCLK 
TxlN0 
TxlN1 
TxlN2 
TxlN3 
TxlN4 
TxlN6 
TxlN7 
TxlN8 
TxlN9 
TxlN12 
TxlN13 
TxlN14 
TxlN15 
TxlN18 
TxlN19 
TxlN20 
TxlN21 
TxlN22 
TxlN24 
TxlN25 
TxlN26 
TxlN27 
TxlN5 
TxlN10 
TxlN11 
TxlN16 
TxlN17 
TxlN23 
TxCLKIN 
RI0 
RI1 
RI2 
RI3 
RI4 
RI5 
GI0 
GI1 
GI2 
GI3 
GI4 
GI5 
BI0 
BI1 
BI2 
BI3 
BI4 
BI5 
RSVD 
RSVD 
DENA 
RI6 
RI7 
GI6 
GI7 
BI6 
BI7 
(RSVD) 
DCLKI 
0 
0 
RI0 
RI1 
RI2 
RI3 
0 
0 
GI0 
GI1 
GI2 
GI3 
0 
0 
BI0 
BI1 
BI2 
BI3 
RSVD 
RSVD 
DENA 
RI4 
RI5 
GI4 
GI5 
BI4 
BI5 
(RSVD) 
DCLKI 
 
                                     *)GDS90C383MTD  
 
RC 0   RC 6   RC 5   RC 4 RC 1   RC 1 RC 2 RC 3   RC 0
RA1   RA0   RA4 RA5 RA6   RA2 RA3   RA1   RA0
RB1   RB0   RB6   RB5   RB3 RB4   RB2   RB1   RB0
RC LK
RA
RB
RC
1C LK
D ATA for current C LK cycle
  NEXT
RD   RD 0   RD 6   RD 5   RD 4 RD 1   RD 1 RD 2 RD 3   RD 0
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 (D)Color Data Assignment 
R DATA  G DATA  B DATA 
R7  R6 R5  R4  R3  R2  R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6  B5  B4  B3  B2 B1 B0
COLOR  INPUT DATA 
MSB            LSB MSB LSB MSB         LSB
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
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(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
CYAN  0  0 0  0  0  0  0 0 1 1 1 1 1 1 1 1 1 1  1  1  1  1 1 1
MAGENTA  1  1 1  1  1  1  1 1 0 0 0 0 0 0 0 0 1 1  1  1  1  1 1 1
YELLOW  1  1 1  1  1  1  1 1 1 1 1 1 1 1 1 1 0 0  0  0  0  0 0 0
BASIC 
COLOR 
WHITE  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(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
RED(1)  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(2)  0  0 0  0  0  0  1 0 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 
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(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
GREEN(1)  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(2)  0  0 0  0  0  0  0 0 0 0 0 0 0 0 1 0 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 
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(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
BLUE(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
BLUE(2)  0  0 0  0  0  0  0 0 0 0 0 0 0 0 0 0 0 0  0  0  0  0 1 0
                     
                     
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 
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
 
 [Note] 
(1)Definition of gray scale: 
    Color(n) : n indicates gray scale level. 
    Higher n means brighter level. 
(2) Data:1-High,0-Low. 
(3) This assignment is applied to both odd and even data. 
 
(E) Color Data Assignment 
D(1,1)  D(2,1)  --  D(X,1)  --  D(1279,1)  D(1280,1)
D(1,2)  D(2,2)  --  D(X,2)  --  D(1279,2)  D(1280,2)
|  |  +  ..  +  |  | 
D(1,Y)  D(2,Y)  --  D(X,Y)  --  D(1279,Y)  D(1280,Y)
|  |  +  ..  +  |  | 
D(1,1023)  D(2, 1023) --  D(X, 1023) -- 
D(1279,1023
)
D(1280,1023
)
D(1,1024)  D(2, 1024) --  D(X, 1024) -- 
D(1279,1024
)
D(1280,1024
)
 
 
 
 
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6. BLOCK DIAGRAM  
 
 
 
 
LVDS receiver 2ch 
Timing 
Controller 
Lamp Unit in Backlight
Source Driver 
 
LCD Panel 
 
1280 X 3 X 1024 
G
a
t
e
 
D
r
i
v
e
r
 
 
 
 
 
Power Supply   
Circuit 
 
CN2
TFT-LCD Module 
Lamp Uint in Backlight 
 
CCFL 
 
 
1 
 
2 
CN2,4 
 
C
N
1
 
I
/
F
 
C
o
n
n
e
c
t
o
r
 
 
CN3
 
CN4
 
CN5
Lamp Unit in Backlight
 
 
1 
 
2 
CN3,5 
CCFL 
 
 
 
 
 
 
 
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  7. MECHANICAL SPECIFICATION 
(a) Front side(Tolerance is 0.5mm unless noted) 
                           Unit: mm 
 
                         
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(b) Rear side (Tolerance is 0.5mm unless noted) 
                         Unit: mm 
 
 
 
 
Suggestion: don release the lamp wire from side hook   for protect lamp solder 
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8.OPTICAL CHARACTERISTICS 
                                                                       Ta=25JA VCC=5.0V 
ITEM 
SYMBO
L 
CONDITION  MIN.  TYP.  MAX.  UNIT 
Contrast Ratio  CR  =r 0X 450  500  --  -- 
Center  L  =r 0X 250  300  --  cd/m
2
 
Luminance 
Uniformity  L  =r 0X 75%  --  --   
Tr  =r 0X --  5  10  ms 
Response Time 
Tf  =r 0X --  7  14  ms 
Horizontal  r   80/80  85/85  --   
Vertical   
CR 5 
80/80  85/85  --   
Horizontal  r   60/60  70/70  --   
Viewing 
Angle 
Vertical   
CR 10 
60/55  67/63  --   
White 
Wx 
Wy  
0.283 
0.299 
0.313 
0.329 
0.343 
0.359 
Red 
Rx 
Ry 
0.614 
0.308 
0.644 
0.338 
0.674 
0.368 
Green 
Gx 
Gy 
0.237 
0.592 
0.267 
0.622 
0.297 
0.652 
Color 
Coordinates 
Blue 
Bx 
By 
=r 0X
0.110 
0.054 
0.140 
0.084 
0.170 
0.114 
-- 
Image sticking  Tis  2  hour       2  sec 
Crosstalk  CT        1%   
Gamut  CS    69%  72%     
Gamma  y  GL( 32- 223) 2.0  2.3  2.6   
                                                               
 
 All optical specification  condition: 
(1) Equipment:  CS-1000  (MINOLUTA)  OR  BM-5A(TOPCON)  under  the  dark  room 
condition( no ambient light) after more than 30 minutes  turning on the lamp  
(2) Condition: IL=7.0( each lamp)mA, Inverter: Multipal ( M063-4), Frequency=50kHz. 
 
 
[Note 1] Defination of Contrast RatioG    CR=ON(White)Luminance/OFF(Black)Luminance 
[Note 2] Defination of Luminance and Luminance uniformity 
GL=[L(Min)/L(Max)]100 % 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
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[Note 3] Definition of Viewing Angle(c ,r ) 
                                  
p
Upper
Right
Lower
Left
c
 
 
[Note 4] Definition of Response Time 
                           
 
 
 
 
 
 
 
 
 
               
 
 
 
 
Luminance 
White 
Black 
90 %
90 %
10 % 10 %
tf 
tr 
(1,1) 
(1280,1024) 
640
512 
 
 
1/10 W 
H 
1/10 H  1 
8 7 
6 5 4 
3 2
9
W 
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  [Note 5] Definition of image sticking: 
 From Continuous display pattern(white R with blue background) 2hours 
change to 128 gray level pattern .The previous image shall not persist more 
then 2 second at 25 C. 
 
 
 
 
 
 
 
 
 
 
 
 
  [Note 6] Defination of crosstalk 
 = MAX((| (LB1-LA)/LC | )100), (| (LB2-LA)/LC| )100) 
LAGBrightness of   measured location   at  Pattern a  
LB1B LB2GBrightness of   measured location   at  Pattern b1B b2 
 LCGBrightness of   measured location at  Pattern C 
 
 
 
 
Black
(256, 192) 
(768,576)
Half-Tone
Half-Tone  White 
(896,384) 
White
Half-Tone
(512,672)
 
Pattern  b1 
Pattern  a 
Pat t ern  c 
Pattern  b2 
RRRRRRRRRRRRRRR
RRRRRRRRRRRRRRR
RRRRRRRRRRRRRRR
RRRRRRRRRRRRRRR
RRRRRRRRRRRRRRR
RRRRRRRRRRRRRRR
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[Note7] Defination of Gamma ( ^ ) , Gray level  32~223 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
GL  32 
T % 
y=ax
^ 
223
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9.RELIABILITY TEST CONDITIONS 
 
(1) Temperature and Humidity 
TEST ITEMS  CONDITIONS 
HIGH TEMPERATURE 
HIGH HUMIDITY OPERATION 
50J ; 90%RH; 240h 
(No condensation) 
HIGH TEMPERATURE 
HIGH HUMIDITY STORAGE 
60J ; 90%RH;48h 
(No condensation) 
HIGH TEMPERATURE OPERATION  50J ; 240h 
HIGH TEMPERATURE STORAGE  60J ; 240h 
LOW TEMPERATURE OPERATION  0J ; 240h 
LOW TEMPERATURE STORAGE  -20J ; 240h 
THERMAL SHOCK  BETWEEN -20J (1hr)AND 60J (1hr); 100 CYCLES 
 
(2)Shock & Vibration 
ITEMS  CONDITIONS 
SHOCK 
(NON-OPERATION) 
Shock level:1470m/s^2(150G) 
Waveform: half sinusoidal wave, 2ms 
Number of shocks: one shock input in each direction of three mutually 
perpendicular axes for a total of six shock inputs 
VIBRATION 
(NON-OPERATION) 
Vibration level: 9.8m/s^2(1.0G) zero to peak 
Waveform: sinusoidal 
Frequency range: 5 to 500 Hz 
Frequency sweep rate: 0.5 octave/min 
Duration: one sweep from 5 to 500Hz in each of three mutually 
perpendicular axis(each x,y,z axis: 1 hour, total 3 hours) 
 
(3)  ESD 
POSITION  CONDITION( MDL turn off) 
Connector 
1. 200 pFA 0    250 V  
2. contact mode for each pin 
Moudle 
1.  150 pFA 330    15K V  
2.  Air mode, test 25 times for each test point 
3.  Contact mode, 25 times for each test point 
  
 
(4) Judgment standard 
The judgment of the above test should be made as follow: 
Pass:  Normal display image with no obvious non-uniformity and no line defect. 
Partial transformation of the module parts should be ignored. 
Fail:   No display image, obvious non-uniformity, or line defects. 
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10. HANDLING PRECAUTIONS FOR TFT-LCD MODULE 
 
  Please pay attention to the followings in handling- TFT-LCD products; 
 
1  ASSEMBLY PRECAUTION 
(1) Please use the mounting hole on the module side in installing and do not beading or 
wrenching LCD in assembling.  And please do not drop, bend or twist LCD module in 
handling.  
(2) Please design display housing in accordance with the following guide lines. 
(2.1)  Housing  case  must  be  destined  carefully  so  as  not  to  put  stresses  on  LCD  all 
sides and not to wrench module.  The stresses may cause non-uniformity even if 
there is no non-uniformity statically. 
(2.2) Keep sufficient clearance between LCD module back surface and housing when 
the  LCD  module  is  mounted.    Approximately  1.0  mm  of  the  clearance  in  the 
design  is  recommended  taking  into  account  the  tolerance  of  LCD  module 
thickness and mounting structure height on the housing. 
(2.3) When some parts, such as, FPC cable and ferrite plate, are installed underneath 
the  LCD  module,  still  sufficient  clearance  is  required,  such  as  0.5mm.  This 
clearance  is,  especially,  to  be  reconsidered  when  the  additional  parts  are 
implemented for EMI countermeasure. 
(2.4)  Design  the  inverter  location  and  connector  position  carefully  so  as  not  to  give 
stress to lamp cable, or not to interface the LCD module by the lamp cable. 
(2.5)  Keep  sufficient  clearance  between  LCD  module  and  the  others  parts,  such  as 
inverter  and  speaker  so  as  not  to  interface  the  LCD  module.    Approximately 
1.0mm of the clearance in the design is recommended. 
(3)  Please  do  not  push  or  scratch  LCD  panel  surface  with  any-thing  hard.    And  do  not 
soil LCD panel surface by touching with bare hands. ( Polarizer film, surface of LCD 
panel is easy to be flawed.) 
(4)  Please  do  not  press  any  parts  on  the  rear  side  such    as  source  TCP,  gate  TCP, 
control circuit board and FPCs during handling LCD module.  If pressing rear part is 
unavoidable, handle the LCD module with care not to damage them. 
(5)  Please  wipe  out  LCD  panel  surface  with  absorbent  cotton  or  soft  cloth  in  case  of  it 
being soiled. 
(6)  Please  wipe  out  drops  of  adhesives  like  saliva  and  water  on  LCD  panel  surface 
immediately.  They might damage to cause panel surface variation and color change. 
(7)  Please  do  not  take  a  LCD  module  to  pieces  and  reconstruct  it.    Resolving  and 
reconstructing modules may cause them not to work well. 
(8) Please do not touch metal frames with bare hands and soiled gloves.  A color change 
of the metal frames can happen during a long preservation of soiled LCD modules. 
(9)  Please  pay  attention  to  handling  lead  wire  of  backlight  so  that  it  is  not  tugged  in 
connecting wit inverter. 
 
2  OPERATING PRECAUTIONS 
(1) Please be sure to turn off the power supply before connecting and disconnecting 
signal input cable. 
(2) Please do not change variable resistance settings in LCD module.  They are adjusted 
to the most suitable value.  If they are changed, it might happen LCD does not satisfy 
the characteristics specification. 
(3) Please consider that LCD backlight takes longer time to become stable of radiation 
characteristics in low temperature than in room temperature. 
(4) A condensation might happen on the surface and inside of LCD module in case of 
sudden charge of ambient temperature. 
(5) Please pay attention to displaying the same pattern for very long time.  Image might 
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stick on LCD.  If then, time going on can make LCD work well. 
(6) Please obey the same caution descriptions as ones that need to pay attention to 
ordinary electronic parts. 
 
3 PRECAUTFONSWITHELECTROSTATICS 
(1) This LCD module use CMOS-IC on circuit board and TFT-LCD panel, and so it is 
easy to be affected by electrostatics.  Please be careful with electrostatics by the way 
of your body connecting to the ground and so on. 
(2) Please remove protection film very slowly on the surface of LCD module to prevent 
from electrostatics occurrence. 
 
4  STORAGE PRECAUTIONS 
(1) When you store LCDs for a long time, it is recommended to keep the temperature 
between 0J  ~40J  without the exposure of sunlight and to keep the humidity less 
than 90%RH. 
(2) Please do not leave the LCDs in the environment of high humidity and high 
temperature such as 60J  90%RH. 
(3) Please do not leave the LCDs in the environment of low temperature; below -20J . 
 
5  SAFETY PRECAUTIONS 
(1) When you waste LCDS, it is recommended to crush damaged or unnecessary LCDs 
into pieces and wash them off with solvents such as acetone and ethanol, which 
should later be burned. 
(2) If any liquid  leaks out of a damaged-glass cell and comes in contact with the hands, 
wash off throughly  with soap and water. 
 
6 OTHERS 
(1)  A  strong  incident  light  into  LCD  panel  might  cause  display  characteristics'  changing 
inferior  because  of  polarizer  film,  color  filter,  and  other  materials  becoming  inferior. 
Please do not expose LCD module direct sunlight Land strong UV rays.  
(2)  Please  pay    attention  to  a  panel  side  of  LCD  module  not  to  contact  with  other 
materials in preserving it alone. 
(3) For the. packaging box, please pay attention to the followings: 
(3.1) Packaging box and  inner case for LCD are designed to protect the LCDs from 
the damage or scratching during transportation.  Please do not open except 
picking LCDs up from the box. 
(3.2) Please do not pile them up more than 5 boxes. (They are not designed so.) And 
please do not turn over. 
(3.3) Please handle packaging box with care not to give them sudden shock and 
vibrations.  And also please do not throw them up. 
(3.4) Packing box and inner case for LCDs are made of cardboard.  So please pay 
attention not to get them wet. (Such like keeping them in high humidity or wet 
place can occur getting them wet.)