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^1 CHI MO 

OPTOELECTRONICS CORR 


t'V © 


Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


TFT LCD Tentative Specification 


MODEL NO.: M156B1-L02 


Customer: 
Approved by: 


Note: 


For Reference Only 


nun 

ru 


mm 


sw 

2008-04-21 
15:18:28 CST 

PMMD 

Director 

csJee^^H 
/5651 0/44926) 

Director 

Accept 


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t'V © 


Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


- CONTENTS - 


REVISION HISTORY 3 

1 . GENERAL DESCRIPTION 4 

1.1 OVERVIEW 

1.2 FEATURES 

1.3 APPLICATION 


1 .4 GENERAL SPECIFICATIONS 

1.5 MECHANICAL SPECIFICATIONS 

2. ABSOLUTE MAXIMUM RATINGS 5 

2.1 ABSOLUTE RATINGS OF ENVIRONMENT 

2.2 ELECTRICAL ABSOLUTE RATINGS 

2.2.1 TFT LCD MODULE 

2.2.2 BACKLIGHT UNIT 


3. ELECTRICAL CHARACTERISTICS 7 

3. 1.1 TFT LCD MODULE 

3.1.2 Vcc Power Dip Condition: 

3.2 BACKLIGHT UNIT 

4. BLOCK DIAGRAM 11 

4.1 TFT LCD MODULE 

4.2 BACKLIGHT UNIT 

5. INPUT TERMINAL PIN ASSIGNMENT 12 

5.1 TFT LCD MODULE 

5.2 LVDS DATA MAPPING TABLE 

5.3 BACKLIGHT UNIT 

5.4 COLOR DATA INPUT ASSIGNMENT 

6. INTERFACE TIMING 15 

6.1 INPUT SIGNAL TIMING SPECIFICATIONS 

6.2 POWER ON/OFF SEOUENCE 

7. OPTICAL CHARACTERISTICS 17 

7.1 TEST CONDITIONS 

7.2 OPTICAL SPECIFICATIONS 

8. PACKAGING 21 

8.1 PACKING SPECIFICATIONS 

8.2 PACKING METHOD 

9. DEFINITION OF LABELS 23 

10. PRECAUTIONS 24 

10.1 ASSEMBLY AND HANDLING PRECAUTIONS 

10.2 SAFETY PRECAUTIONS 

11. MECHANICAL CHARACTERISTICS 25 


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Ml CHI MO 

OPTOeueCTRONICS CORR 


t'V © 


Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


REVISION HISTORY 


Version 

Date 

Section 

Description 

Ver 0.0 

Apr. 02, 08’ 


M156B1-L02 Tentative specification was first issued. 


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Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


1 . GENERAL DESCRIPTION 

1.1 OVERVIEW 

M156B1-L02 is a 15.6” TFT Liquid Crystal Display module with 2 CCFL Backlight unit and 30pin 
Ich-LVDS interface. This module supports 1366 x 768 WXGA mode and can display up to 16.7M colors. 
The inverter module for Backlight is not built in. 

1.2 FEATURES 

- Contrast ratio 500:1 

- Response time 8ms. 

- Brightness 250nits 

- Color saturation NTSC 65%. 

- WXGA (1366 x 768 pixels) resolution. 

- DE (Data Enable) only mode. 

- LVDS (Low Voltage Differential Signaling) interface. 

- RoHS compliance. 


1.3 APPLICATION 
- TFT LCD Monitor 


1 .4 GENERAL SPECIFICATIONS 


Item 

Specification 

Unit 

Note 

Active Area 

344.232(H) x 193.536(V) (15.6” diagonal) 

mm 

(1) 

Bezel Opening Area 

347.5(H)x196.8(V) 

mm 

Driver Element 

a-Si TFT active matrix 

- 

- 

Pixel Number 

1366 xR.G.B.x 768 

pixel 

- 

Pixel Pitch 

0.252 (H) x 0.252 (V) 

mm 

- 

Pixel Arrangement 

RGB vertical stripe 

- 

- 

Display Colors 

16. 7M 

color 

- 

Transmissive Mode 

Normally White 

- 

- 

Surface Treatment 

AG type, 3H hard coating, Haze 25 

- 

- 


1.5 MECHANICAL SPECIFICATIONS 


Item 

Min. 

Typ. 

Max. 

Unit 

Note 

Module Size 

Horizontal(H) 

363.3 

363.8 

364.3 

mm 

(1) 

Vertical (V) 

215.4 

215.9 

216.4 

mm 

Depth(D) 

13.8 

14.3 

14.8 

mm 

Weight 

- 


1300 

9 

- 


Note (1 ) Please refer to the attached drawings for more information of front and back outline dimensions. 


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t'V © 


Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


2. ABSOLUTE MAXIMUM RATINGS 
2.1 ABSOLUTE RATINGS OF ENVIRONMENT 


Item 

Symbol 

Value 

Unit 

Note 

Min. 

Max. 

Storage Temperature 

Tst 

-20 

60 

°C 

(D 

Operating Ambient Temperature 

Top 

0 

50 

°C 

(D, (2) 

Shock (Non-Operating) 

Snop 

- 

50 

G 

(3), (5) 

Vibration (Non-Operating) 

Vnop 

- 

1.5 

G 

(4), (5) 


Note (1) Temperature and relative humidity range is shown in the figure below. 

(a) 90 %RH Max. (Ta ^ 40 °C). 

(b) Wet-bulb temperature should be 39 °C Max. (Ta > 40 °C). 

(c) No condensation. 

Note (2) The temperature of panel display surface area should be 0 °C Min. and 60 °C Max. 

Relative Humidity (%RH) 



Temperature (°C) 


Note (3) 11ms, half sine wave, 1 time for ± X, ± Y, ± Z. 

Note (4) 10 ~ 300 Hz, lOmin/cycle, 3 cycles 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 that the module would not be twisted or bent by the fixture. 

The fixing condition is shown as below: 



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Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


2.2 ELECTRICAL ABSOLUTE RATINGS 
2.2.1 TFT LCD MODULE 


Item 

Symbol 

Value 

Unit 

Note 

Min. 

Max. 

Power Supply Voltage 

Vcc 

-0.3 

+6.0 

V 

(1) 

Logic Input Voltage 

V|N 

-0.3 

4.3 

V 


2.2.2 BACKLIGHT UNIT 


Item 

Symbol 

Value 

Unit 

Note 

Min. 

Max. 

Lamp Voltage 

V L 


2.5K 

VrmS 

(D, (2) 

Lamp Current 

II 

3 

8 

itiArms 

(D, (2) 

Lamp Frequency 

F l 

50 

60 

KHz 

(D, (2), (3) 

40 

80 

KHz 

(D, (2), (4) 


Note (1) Permanent damage might occur if the module is operated at conditions exceeding the maximum 


values. 

Note (2) Specified values are for lamp (Refer to 3.2 for further information). 

Note (3) The frequency range can guarantee the optical and electrical characteristics. 
Note (4) The frequency range will not effect the Lifetime and reliability characteristics. 


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Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


3. ELECTRICAL CHARACTERISTICS 

3.1.1 TFT LCD MODULE Ta = 25 ± 2 °C 


Parameter 

Symbol 

Value 

Unit 

Note 

Min. 

Typ. 

Max. 

Power Supply Voltage 

Vcc 

4.5 

5.0 

5.5 

V 

- 

Ripple Voltage 

Vrp 

- 

- 

100 

mV 

- 

Rush Current 

Irush 



2 

A 

(2) 


White 

- 


(0.3) 


A 

(3)a 

Power Supply Current 

Black 

- 


(0.35) 


A 

(3)b 


Vertical Stripe 

- 


(0.4) 


A 

(3)c 

LVDS differential input voltage 

Vid 

100 

- 

600 

mV 


LVDS common input voltage 

Vic 

- 

1.2 

- 

V 



Note (1) The module should be always operated within above ranges. 


Note (2) Measurement Conditions: 



Vcc rising time is 470ns 

Vcc 



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Issued Date: 
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Apr. 02, 2008 
: M156B1-L02 

Tentative 


Note (3) The specified power supply current is under the conditions at Vcc = 5.0 V, Ta = 25 ± 2 °C, f v = 60 
Hz, whereas a power dissipation check pattern below is displayed. 


a. White Pattern 


b. Black Pattern 



Active Area Active Area 

c. Vertical Stripe Pattern 



3.1.2 Vcc Power Dip Condition: 



Dip condition: 4.0F < Vcc < 4.5V, Td <20ms 


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Issued Date: 
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: M156B1-L02 

Tentative 


3.2 BACKLIGHT UNIT Ta = 25 ± 2 °C 


Parameter 

Symbol 

Value 

Unit 

Note 

Min. 

Typ. 

Max. 

Lamp Input Voltage 

v L 

585 

650 

715 

VrmS 

l L = 7.0 mA 

Lamp Current 

II 

3.0 

7.0 

8.0 

mARMs 

(D 

Lamp Turn On Voltage 

V s 



1200 (0°C) 

VrmS 

(2) 



1100 (25°C) 

VrmS 

(2) 

Operating Frequency 

F l 

50 

55 

60 

KHz 

(3)(7) 

40 

55 

80 

KHz 

(3)(8) 

Lamp Life Time 

Lbl 

40,000 

50,000 


Hrs 

(5), l L = 7.0mA 

Power Consumption 

Pl 


9.24 


W 

(4), l L = 7.0 mA 


Note (1) Lamp current is measured by current amplify & oscilloscope as shown below: 



Measure equipment: 

Current Amplify: Tektronix TCPA300 
Current probe: Tektronix TCP312 
Oscilloscope: TDS3054B 


Note (2) The voltage that must be larger than Vs should be applied to the lamp for more than 1 second 
after startup. Otherwise, the lamp may not be turned on normally. 

Note (3) The lamp frequency may produce interference with horizontal synchronization frequency from the 
display, which might cause line flow on the display. In order to avoid interference, the lamp 
frequency should be detached from the horizontal synchronization frequency and its harmonics as 
far as possible. 

Note (4) P L = l L x V L x 2 (for 2 lamps) 

Note (5) The lifetime of lamp can be defined as the time in which it continues to operate under the condition 
Ta = 25 ±2 °C and l L = TO mArms until one of the following events occurs: 

(a) When the brightness becomes ^ 50% of its original value. 

(b) Effective lighting length decreases 80% under for initial. (Effective lighting length is a scope of 
luminance 80% over for average luminance at several point in lamp center.) 

Note (6) The waveform of the voltage output of inverter must be area-symmetric and the design of the 
inverter must have specifications for the modularized lamp. The performance of the Backlight, 
such as lifetime or brightness, is greatly influenced by the characteristics of the DC-AC inverter for 
the lamp. All the parameters of an inverter should be carefully designed to avoid producing too 

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Issued Date: 
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Apr. 02, 2008 
: M156B1-L02 

Tentative 


much current leakage from high voltage output of the inverter. When designing or ordering the 
inverter please make sure that a poor lighting caused by the mismatch of the Backlight and the 
inverter (miss-lighting, flicker, etc.) never occurs. If the above situation is confirmed, the module 
should be operated in the same manners when it is installed in your instrument. 


The output of the inverter must have symmetrical (negative and positive) voltage waveform and 
symmetrical current waveform. (Unsymmetrical ratio is less than 10%) Please do not use the inverter 
which has unsymmetrical voltage and unsymmetrical current and spike wave. Lamp frequency may 
produce interface with horizontal synchronous frequency and as a result this may cause beat on the 
display. Therefore lamp frequency shall be as away possible from the horizontal synchronous 
frequency and from its harmonics in order to prevent interference. 

Requirements for a system inverter design, which is intended to have a better display performance, a 
better power efficiency and a more reliable lamp. It shall help increase the lamp lifetime and reduce its 
leakage current. 

a. The asymmetry rate of the inverter waveform should be 10% below; 

b. The distortion rate of the waveform should be within 2 ± 10%; 

c. The ideal sine wave form shall be symmetric in positive and negative polarities 



* Asymmetry rate: 

I Ip- I -p| /Inns *100% 

* Distortion rate 

I p (or I _p) / l rms 


Note (7) 50~60KHz, the frequency range can guarantee the optical and electrical characteristics. 
Note (8) 40~80KHz, the frequency range will not effect the Lifetime and reliability characteristics. 


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t'V © 


Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


4. BLOCK DIAGRAM 
4.1 TFT LCD MODULE 



4.2 BACKLIGHT UNIT 



1 HV(Pink) 


'2 LV(White) 


1 HV(Pink) 


'2 LV(White) 


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Issued Date: 
Model No. 


Apr. 02, 2008 
: M156B1-L02 

Tentative 


5. INPUT TERMINAL PIN ASSIGNMENT 
5.1 TFT LCD MODULE 


Pin 

Name 

Description 

1 

NC 

No connection. 

2 

NC 

No connection. 

3 

NC 

No connection. 

4 

GND 

Ground 

5 

RX0- 

Negative LVDS differential data input. Channel 0 

6 

RX0+ 

Positive LVDS differential data input. Channel 0 

7 

GND 

Ground 

8 

RX1- 

Negative LVDS differential data input. Channel 1 

9 

RX1 + 

Positive LVDS differential data input. Channel 1 

10 

GND 

Ground 

11 

RX2- 

Negative LVDS differential data input. Channel 2 

12 

RX2+ 

Positive LVDS differential data input. Channel 2 

13 

GND 

Ground 

14 

RXCLK- 

Negative LVDS differential clock input. 

15 

RXCLK+ 

Positive LVDS differential clock input. 

16 

GND 

Ground 

17 

RX3- 

Negative LVDS differential data input. Channel 3 

18 

RX3+ 

Positive LVDS differential data input. Channel 3 

19 

GND 

Ground 

20 

NC 

Not connection, this pin should be open. 

21 

NC 

Not connection, this pin should be open. 

22 

NC 

Reserved. (For internal test used) 

23 

GND 

Ground 

24 

GND 

Ground 

25 

GND 

Ground 

26 

VCC 

+5.0V power supply 

27 

VCC 

+5.0V power supply 

28 

VCC 

+5.0V power supply 

29 

VCC 

+5.0V power supply 

30 

VCC 

+5.0V power supply 


Note (1) Connector Part No.: STM MSAKT2407P30A or STARCONN 093G30-B0001 A 


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Issued Date: 
Model No. 


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: M156B1-L02 

Tentative 


5.2 LVDS mapping table 



LVDS Channel 0 

LVDS output 

D7 

D6 

D4 

D3 

D2 

D1 

DO 

Data order 

GO 

R5 

R4 

R3 

R2 

R1 

R0 

LVDS Channel 1 

LVDS output 

D18 

D15 

D14 

D13 

D12 

D9 

D8 

Data order 

B1 

B0 

G5 

G4 

G3 

G2 

G1 

LVDS Channel 2 

LVDS output 

D26 

D25 

D24 

D22 

D21 

D20 

D19 

Data order 

DE 

NA 

NA 

B5 

B4 

B3 

B2 

LVDS Channel 3 

LVDS output 

D23 

D17 

D16 

Dll 

D10 

D5 

D27 

Data order 

NA 

B7 

B6 

G7 

G6 

R7 

R6 


5.3 BACKLIGHT UNIT: 


Pin 

Symbol 

Description 

Remark 

1 

HV 

High Voltage 

Pink 

2 

LV 

Low Voltage 

White 


Note (1):Connector Part No.: YEONHO 35001HS-02L or equivalent 


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Issued Date: 
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: M156B1-L02 

Tentative 


5.4 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 


color versus data input. 


Color 

Data Signal 

Red 

Green 

Blue 

R7 

R6 

R5 

R4 

R3 

R2 

R1 

R0 

R7 

R6 

G5 

G4 

G3 

G2 

G1 

GO 

R7 

R6 

B5 

B4 

B3 

B2 

B1 

B0 


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 

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 

1 

1 

1 

1 

1 

1 

1 

1 

0 

0 

0 

0 

0 

0 

0 

0 

Basic 

Blue 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

1 

1 

Colors 

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 


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) / Dark 

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 

Gray 


























Scale 


























Of 

Red(253) 

1 

1 

1 

1 

1 

1 

0 

1 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

Red 

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(0) / Dark 

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(l) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

0 

0 

0 

0 

0 

0 

0 

0 

Gray 

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 

Scale 


























Of 

Green(253) 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

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(0) / Dark 

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 

Gray 

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 

Scale 


























Of 

Blue(253) 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

0 

1 

1 

1 

1 

1 

1 

0 

1 

UIUU 

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 


Note (1) 0: Low Level Voltage, 1: High Level Voltage 


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6. INTERFACE TIMING 
6.1 INPUT SIGNAL TIMING SPECIFICATIONS 


The input signal timing specifications are shown as the following table and timing diagram. 


Signal 

Item 

Symbol 

Min. 

Typ. 

Max. 

Unit 

Note 

LVDS Clock 

Frequency 

Fc 

50.0 

85 

TBD 

MHz 

- 

Period 

To 

- 

13.0 

- 

ns 


High Time 

Tch 

- 

4/7 

- 

To 

- 

Low Time 

Tel 

- 

3/7 

- 

To 

- 

LVDS Data 

Setup Time 

Tlvs 

600 

- 

- 

ps 

- 

Hold Time 

Tlvh 

600 

- 

- 

ps 

- 

Vertical Active Display Term 

Frame Rate 

Fr 

40 

60 

TBD 

Hz 

Tv=Tvd+Tvb 

Total 

Tv 

TBD 

795 

TBD 

Th 

- 

Display 

Tvd 

TBD 

768 

TBD 

Th 

- 

Blank 

Tvb 

TBD 

27 

Tv-Tvd 

Th 

- 

Horizontal Active Display Term 

Total 

Th 

TBD 

1798 

TBD 

To 

Th=Thd+Thb 

Display 

Thd 

TBD 

1366 

TBD 

To 

- 

Blank 

Thb 

TBD 

432 

Th-Thd 

To 

- 


Note: Because this module is operated by DE only mode, Hsync and Vsync input signals should be set 

to low logic level or ground. Otherwise, this module would operate abnormally. 


INPUT SIGNAL TIMING DIAGRAM 




^ 'I 

fr- 

Thb 


4 

Thd 


DE 




w 



W 







DATA 







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6.2 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. 


Power On 


Power Off Restart 


- Power Supply 
for LCD, Vcc 


- Interface Signal 
(LVDS Signal of 
Transmitter), V i 


Power for Lamp 



Timing Specifications: 

0.5< tl ^ 10 msec 
0 < t2 ^ 50 msec 
0 < t3 ^ 50 msec 
t4 ^ 500 msec 
t5 ^ 450 msec 
t6 ^ 90 msec 


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7. OPTICAL CHARACTERISTICS 
7.1 TEST CONDITIONS 


Item 

Symbol 

Value 

Unit 

Ambient Temperature 

Ta 

25±2 

°C 

Ambient Humidity 

Ha 

50±10 

%RH 

Supply Voltage 

< 

O 

O 

5V 

V 

Input Signal 

According to typical value in "3. ELECTRICAL CHARACTERISTICS" 

Lamp Current 

II 

7.0 

mA 

Inverter Operating Frequency 

F l 

55±5 

KHz 

Inverter 

Darfon VK12164.101 


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 Note (5). 


Item 

Symbol 

Condition 

Min. 

Typ. 

Max. 

Unit 

Note 

Color 

Chromaticity 
(CIE 1931) 

Red 

Rx 

0 X =O°, 0 Y =0° 
CS-1000T 

Typ- 

0.03 

(0.638) 

Typ + 
0.03 

- 

(1), (5) 

Ry 

(0.333) 

Green 

Gx 

(0.290) 

Gy 

(0.591) 

Blue 

Bx 

(0.153) 

By 

(0.082) 

White 

Wx 

0.283 

0.313 

0.343 

Wy 

0.299 

0.329 

0.359 

Center Luminance of White 
(Center of Screen) 

Lc 

(210) 

250 

- 

cd/m 2 

(4), (5) 

Contrast Ratio 

CR 

(350) 

(500) 

- 

- 

(2), (5) 

Response Time 

T r 

0 X =O°, 0 Y =0° 

- 

(2) 

(4) 

ms 

(3), (7) 

T f 

- 

(6) 

(12) 

T GtG AVE 

- 



White Variation 

SW 

0 X =O°, 0Y =0° 
USB2000 

- 

(1.4) 

(1.5) 

- 

(5), (6) 

Viewing Angle 

Horizontal 

0 X + 

CR ^ 10 
USB2000 

(75) 

(85) 

- 

Deg. 

(1), (5) 

0x- 

(75) 

(85) 

- 

Vertical 

0Y+ 

(70) 

(80) 

- 

0Y- 

(70) 

(80) 

- 


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Note (1) Definition of Viewing Angle (0x, 0y): 


Normal 
0x = 0y = 0° 



Note (2) Definition of Contrast Ratio (CR): 

The contrast ratio can be calculated by the following expression. 

Contrast Ratio (CR) = L255 / L0 
L255: Luminance of gray level 255 
L 0: Luminance of gray level 0 
CR = CR (1) 

CR (X) is corresponding to the Contrast Ratio of the point X at Figure in Note (6). 
Note (3) Definition of Response Time (T R , T F ): 



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Note (4) Definition of Luminance of White (L c ): 

Measure the luminance of gray level 255 at center point 

L C = L(1) 

L (x) is corresponding to the luminance of the point X at Figure in Note (6). 

Note (5) Measurement Setup: 

The LCD module should be stabilized at given temperature for 20 minutes to avoid abrupt 
temperature change during measuring. In order to stabilize the luminance, the measurement 
should be executed after lighting Backlight for 20 minutes in a windless room. 



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Note (6) Definition of White Variation (8W): 

Measure the luminance of gray level 255 at 13 points 

Maximum [L(1), L(2), L(3), L(4), L(5), L(6), L(7), L(8), L(9), L(10), L(11), L(12), L(13)] 

5W= 

Minimum [L(1), L(2), L(3), L(4), L(5), L(6), L(7), L(8), L(9), L(10), L(11), L(12), L(13)] 



Note (7) Definition of Response Time (Tgtgjwe): 

T gtg ave ' s defined as the total average response time for “Gray To Gray 
The Gray to Gray response time is defined as the following chart. 


Gray to Gray 

Target Gray 

GO 

G32 

G64 

G96 

G128 

G160 

G192 

G224 

G255 

Initial Gray 

GO 










G32 










G64 










G96 










G128 










G160 











G192 










G224 










G255 











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8. PACKAGING : 

8.1 PACKING SPECIFICATIONS 

(1) 10 LCD modules / 1 Box 

(2) Box dimensions: 489(L) X 382(W) X 330(H) mm 

(3) Weight: approximately 15.7Kg (10 modules per box) 


8.2 PACKING METHOD 

(1) Carton Packing should have no failure in the following reliability test items. 


Test Item 

Test Conditions 

Note 

Vibration 

ISTA STANDARD 

Random, Frequency Range: 1 - 200 Hz 
Top & Bottom: 30 minutes (+Z), 10 min (-Z), 
Right & Left: 10 minutes (X) 

Back & Forth 10 minutes (Y) 

Non Operation 

Dropping Test 

1 Angle, 3 Edge, 6 Face, 60cm 

Non Operation 



Figure. 8-1 Packing method 


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Sea and land transportation 


S p a and .and transportad a n 



dir iri | i a +ion 



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9. DEFINITION OF LABELS 
9.1 CMO MODULE LABEL 


The barcode nameplate is pasted on each module as illustration, and its definitions are as following explanation. 


E» 


M156B1-L02 Rfi'AXX 

KKxmmDLhrjHit 


3cHS 


cW.s 

£207043 
««*L in KfHlH 


fill 


C M 1 5 B 1 2XXXXX L X XLYM DNNNN 


(a) Model Name: M156B1-L02 

(b) Revision: Rev. XX, for example: AO, A1 ... B 1 , B2... or Cl, C2...etc. 

(c) CMO barcode definition: 


Serial ID: XX-XX-X-XX-YMD-L-NNNN 


Code 

Meaning 

Description 

XX 

CMO internal use 

- 

XX 

Revision 

Cover all the change 

X 

CMO internal use 

- 

XX 

CMO internal use 

- 

YMD 

Year, month, day 

Year: 2001=1, 2002=2, 2003=3, 2004=4... 

Month: 1-12=1, 2, 3, ~, 9, A, B, C 

Day: 1-31 = 1, 2, 3, ~, 9, A, B, C, ~, W, X, Y, exclude 1, O, and U. 

L 

Product line # 

Line 1 = 1, Line 2=2, Line 3=3, ... 

NNNN 

Serial number 

Manufacturing sequence of product 


(d) Customer’s barcode definition: 


Serial ID: CM - 15B12 -X-X-X-XX-L-XX-L- YMD - NNNN 


Code 

Meaning 

Description 

CM 

Supplier code 

CMO=CM 

15B11 

Model number 

M156B1-L02 = 15B12 

X 

Revision code 

Non ZBD: 1,~,9,0 / ZBD: A~Z 

X 

Source driver 1C code 

Century=1, CLL=2, Demos=3, Epson=4, Fujitsu=5, Himax=6, Hitachi=7, Hynix=8, 
LDI=9, Matsushita=A, NEC=B, Novatec=C, OKI=D, Philips=E, Renasas=F, 
Samsung=G, Sanyo=H, Sharp=l, TI=J, Topro=K, Toshiba=L, Windbond=M 

X 

Gate driver 1C code 

XX 

Cell location 

Tainan Taiwan=TN, Ningbo China=NB 

L 

Cell line # 

1~12=1~C 

XX 

Module location 

Tainan Taiwan=TN, Ningbo China=NB 

L 

Module line # 

1~12=1~C 

YMD 

Year, month, day 

Year: 2001=1, 2002=2, 2003=3, 2004=4... 
Month: 1-12=1, 2, 3, ~, 9, A, B, C 
Day: 1-31 = 1, 2, 3, -, 9, A, B, C, ~, T, U, V 

NNNN 

Serial number 

By LCD supplier 


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10. PRECAUTIONS 

10.1 ASSEMBLY AND HANDLING PRECAUTIONS 

(1) Do not apply rough force such as bending or twisting to the module during assembly. 

(2) To assemble or install module into user’s system can be only in clean working areas. The dust and oil 
may cause electrical short or worsen the polarizer. 

(3) It’s not permitted to have pressure or impulse on the module because the LCD panel and Backlight will 
be damaged. 

(4) Always follow the correct power sequence when LCD module is connecting and operating. This can 
prevent damage to the CMOS LSI chips during latch-up. 

(5) Do not pull the l/F connector in or out while the module is operating. 

(6) Do not disassemble the module. 

(7) Use a soft dry cloth without chemicals for cleaning, because the surface of polarizer is very soft and 
easily scratched. 

(8) It is dangerous that moisture come into or contacted the LCD module, because moisture may damage 
LCD module when it is operating. 

(9) High temperature or humidity may reduce the performance of module. Please store LCD module within 
the specified storage conditions. 

(10) When ambient temperature is lower than 10°C may reduce the display quality. For example, the 
response time will become slowly, and the starting voltage of CCFL will be higher than room 
temperature. 

10.2 SAFETY PRECAUTIONS 

(1) The startup voltage of Backlight is approximately 1000 Volts. It may cause electrical shock while 
assembling with inverter. 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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