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LP140WH2
Liquid Crystal Display
Product Specification




SPECIFICATION
FOR
APPROVAL


( ) Preliminary Specification
( ) Final Specification


Title 14.0" HD TFT LCD

Customer SUPPLIER LG Display Co., Ltd.

MODEL *MODEL LP140WH2
Suffix TLA2
*When you obtain standard approval,
please use the above model name without suffix



APPROVED BY SIGNATURE APPROVED BY SIGNATURE

K. S. Kwon / S.Manager
/
REVIEWED BY

/
N. J. Seong / Manager

/ PREPARED BY

S. S. Han / Engineer
C. H. Lee / Engineer


Please return 1 copy for your confirmation with Products Engineering Dept.
your signature and comments. LG Display Co., Ltd




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Product Specification




Contents

No ITEM Page
COVER 1

CONTENTS 2

RECORD OF REVISIONS 3

1 GENERAL DESCRIPTION 4

2 ABSOLUTE MAXIMUM RATINGS 5

3 ELECTRICAL SPECIFICATIONS

3-1 ELECTRICAL CHARACTREISTICS 6

3-2 INTERFACE CONNECTIONS 7

3-3 LVDS SIGNAL TIMING SPECIFICATION 8-9

3-4 SIGNAL TIMING SPECIFICATIONS 10

3-5 SIGNAL TIMING WAVEFORMS 10

3-6 COLOR INPUT DATA REFERNECE 11

3-7 POWER SEQUENCE 12

4 OPTICAL SFECIFICATIONS 13-15

5 MECHANICAL CHARACTERISTICS 16-18

6 RELIABLITY 19

7 INTERNATIONAL STANDARDS

7-1 SAFETY 20

7-2 EMC 20

8 PACKING

8-1 DESIGNATION OF LOT MARK 21

8-2 PACKING FORM 21

9 PRECAUTIONS 22-23

A APPENDIX. Enhanced Extended Display Identification Data 24-26




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Product Specification


RECORD OF REVISIONS

EDID
Revision No Revision Date Page Description
ver
1.0 Jul. 16. 2009 - Final Specification. 1.0




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1. General Description
The LP140WH2 is a Color Active Matrix Liquid Crystal Display with an integral Light Emitting Diode (LED)
backlight system. The matrix employs a-Si Thin Film Transistor as the active element. It is a transmissive
type display operating in the normally white mode. This TFT-LCD has 15.6 inches diagonally measured
active display area with HD resolution(768 vertical by 1366 horizontal pixel array). Each pixel is divided into
Red, Green and Blue sub-pixels or dots which are arranged in vertical stripes. Gray scale or the brightness
of the sub-pixel color is determined with a 6-bit gray scale signal for each dot, thus, presenting a palette of
more than 262,144 colors.
The LP140WH2 has been designed to apply the interface method that enables low power, high speed, low
EMI.
The LP140WH2 is intended to support applications where thin thickness, low power are critical factors and
graphic displays are important. In combination with the vertical arrangement of the sub-pixels, the
LP140WH2 characteristics provide an excellent flat display for office automation products such as Notebook
PC.




'




General Features
Active Screen Size 14.0 inches diagonal
Outline Dimension 320.4(H, typ) 198.6(V, typ) 3.6(D,max) [mm] (with PCB Board)
Pixel Pitch 0.2265mm 0.2265 mm
Pixel Format 1366 horiz. By 768 vert. Pixels RGB strip arrangement
Color Depth 6-bit, 262,144 colors
Luminance, White 200 cd/m2 (Typ.5 point)
Power Consumption Total 4.29 Watt(Typ.) @ LCM circuit 1.29 Watt (Typ._Mosaic), B/L 3.0Watt(Typ.)
Weight 320g (Max.)
Display Operating Mode Transmissive mode, normally white
Surface Treatment Hard Coating(3H), Glare treatment of the front polarizer
RoHS Comply Yes

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Product Specification


2. Absolute Maximum Ratings
The following are maximum values which, if exceeded, may cause faulty operation or damage to the unit.


Table 1. ABSOLUTE MAXIMUM RATINGS

Values
Parameter Symbol Units Notes
Min Max
Power Input Voltage VCC -0.3 4.0 Vdc at 25 r 5qC

Operating Temperature TOP 0 50 qC 1

Storage Temperature HST -20 60 qC 1

Operating Ambient Humidity HOP 10 90 %RH 1

Storage Humidity HST 10 90 %RH 1


Note : 1. Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39qC Max, and no condensation of water.


90% 80%

60 60%


Wet Bulb 50
Humidity[(%)RH]




Temperature [ ] Storage

40 40%

30 Operation
20
20%
10
0
10%


-20 0 10 20 30 40 50 60 70 80


Dry Bulb Temperature [ ]




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3. Electrical Specifications
3-1. Electrical Characteristics
The LP140WH2 requires two power inputs. The first logic is employed to power the LCD electronics and to
drive the TFT array and liquid crystal. The second backlight is the input about LED BL.with LED Driver.
Table 2. ELECTRICAL CHARACTERISTICS
Values
Parameter Symbol Unit Notes
Min Typ Max
LOGIC :
Power Supply Input Voltage VCC 3.0 3.3 3.6 V
Mosaic 330 390 450 1
Power Supply Input Current ICC mA
Black 390 460 530
Power Consumption PCC - 1.29 1.49 W 1
Power Supply Inrush Current ICC_P - - 1500 mA
LVDS Impedance ZLVDS 90 100 110 2
BACKLIGHT : ( with LED Driver)
LED Power Input Voltage VLED 7.0 12.0 20.0 V
LED Power Input Current ILED - 20 - mA 3
LED Power Consumption PLED - 3.0 3.2 W 3
LED Power Inrush Current ILED_P - - 1000 mA
PWM Dimming (Duty) Ratio - 5 - 100 % 4
PWM Impedance ZPWM 20 40 60 k
PWM Frequency FPWM 200 - 10000 Hz 5
PWM High Level Voltage VPWM_H 3.0 - 5.5 V
PWM Low Level Voltage VPWM_L 0 - 0.3 V
LED_EN High Voltage VLED_EN_H 3.0 - 5.5 V
LED_EN Low Voltage VLED_EN_L 0 - 0.3 V
Life Time 12,000 - - Hrs 6

Note)
1. The specified Icc current and power consumption are under the Vcc = 3.3V , 25 , fv = 60Hz condition
whereas Mosaic pattern is displayed and fv is the frame frequency.



2. This impedance value is needed to proper display and measured form
LVDS Tx to the mating connector.
3. The specified LED current and power consumption are under the Vled = 12.0V , 25 , Dimming of Max
luminance whereas White pattern is displayed and fv is the frame frequency.
4. The operation of LED Driver below minimum dimming ratio may cause flickering or reliability issue.
5. This Spec. is not effective at 100% dimming ratio as an exception because it has DC level equivalent
to 0Hz. In spite of acceptable range as defined, the PWM Frequency should be fixed and stable for
more consistent brightness control at any specific level desired.
6. The life time is determined as the time at which brightness of LCD is 50% compare to that of minimum
value at Table 9. These LED backlight has 6 strings on it and the typical current of LED's string is base
on typical current at Table 2.
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3-2. Interface Connections
This LCD employs one interface connections, a 40 pin connector is used for the module electronics interface
and LED Driver.
The electronics interface connector is a model IS050-L40B-C1 manufactured by I-PEX.
Table 3. MODULE CONNECTOR PIN CONFIGURATION (CN1)
Pin Symbol Description Notes
1 NC No connection
2 VCC Power Supply, 3.3V Typ.
3 VCC Power Supply, 3.3V Typ.
4 V EEDID DDC 3.3V power
1, Interface chips
5 NC No Connection 1.1 LCD : SW, SW0624 (LCD Controller)
6 Clk EEDID DDC Clock including LVDS Receiver
7 DATA EEDID DDC Data 1.2 System : THC63LVDF823A
or equivalent
8 Odd_RIN 0- Negative LVDS differential data input * Pin to Pin compatible with LVDS
9 Odd_RIN 0+ Positive LVDS differential data input
10 GND Ground 2. Connector
2.1 LCD:CABLINE-VS RECE ASS'Y, I-PEX
11 Odd_RIN 1- Negative LVDS differential data input
GT05Q-40S-H10, LSM
12 Odd_RIN 1+ Positive LVDS differential data input IS050-L40B-C10, UJU
13 GND Ground or equivalent
2.2 Mating : CABLINE-VS PLUG CABLE
14 Odd_RIN 2- Negative LVDS differential data input
ASS'Y or equivalent
15 Odd_RIN 2+ Positive LVDS differential data input 2.3 Connector pin arrangement
16 GND Ground
17 Odd_CLKIN- Negative LVDS differential clock input
18 Odd_CLKIN+ Positive LVDS differential clock input
19 GND Ground
20 NC No Connection [LCD Module Rear View]
21 NC No Connection
22 GND Ground
23 NC No Connection
24 NC No Connection
25 GND Ground
26 NC No Connection
27 NC No Connection
28 GND Ground
29 NC No Connection
30 NC No Connection
31 VLED_GND LED Ground
32 VLED_GND LED Ground
33 VLED_GND LED Ground
34 NC No Connection
35 BLIM PWM for Luminance control
36 LED_EN Backlight On/Off Control
37 NC No Connection (Reserved)
38 VLED LED Power Supply (7V-20V)
39 VLED LED Power Supply (7V-20V)
40 VLED LED Power Supply (7V-20V)


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3-3. LVDS Signal Timing Specifications

3-3-1. DC Specification




Symb
Description Min Max Unit Notes
ol
LVDS Differential Voltage |VID| 100 600 mV -
LVDS Common mode Voltage VCM 0.6 1.8 V -
LVDS Input Voltage Range VIN 0.3 2.1 V -




3-3-2. AC Specification




Description Symbol Min Max Unit Notes
85MHz > Fclk
tSKEW - 400 + 400 ps
65MHz
LVDS Clock to Data Skew Margin
65MHz > Fclk
tSKEW - 600 + 600 ps
25MHz
LVDS Clock to Clock Skew Margin (Even
tSKEW_EO - 1/7 + 1/7 Tclk -
to Odd)
Maximum deviation
FDEV - 3 % -
of input clock frequency during SSC
Maximum modulation frequency
FMOD - 200 KHz -
of input clock during SSC


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< Clock skew margin between channel >

Freq.

Fmax


Fcenter


Fmin




Time

< Spread Spectrum >
3-3-3. Data Format
1) LVDS 1 Port



RCLK+



RA+/- R3 R2 R1 R0 G0 R5 R4 R3 R2 R1 R0 G0 R5 R4


RB+/- G4 G3 G2 G1 B1 B0 G5 G4 G3 G2 G1 B1 B0 G5


RC+/- B5 B4 B3 B2 DE VSYNC HSYNC B5 B4 B3 B2 DE VSYNC HSYNC


RD+/- G7 G6 R7 R6 X B7 B6 G7 G6 R7 R6 X B7 B6


Previous (N-1)th Cycle Current (Nth ) Cycle Next (N+1)th Cycle




< LVDS Data Format >

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3-4. Signal Timing Specifications
This is the signal timing required at the input of the User connector. All of the interface signal timing should be
satisfied with the following specifications and specifications of LVDS Tx/Rx for its proper operation.
Table 6. TIMING TABLE

ITEM Symbol Min Typ Max Unit Note

DCLK Frequency fCLK - 75.1 - MHz

Period tHP 1470 1526 1600

Hsync Width tWH 23 32 42 tCLK

Width-Active tWHA 1366 1366 1366

Period tVP 779 800 804
Vsync
Width tWV 2 5 8 tHP

Width-Active tWVA 768 768 768

Horizontal back porch tHBP 72 118 138
tCLK
Data Horizontal front porch tHFP 8 48 54
Enable Vertical back porch tVBP 8 24 24
tHP
Vertical front porch tVFP 1 3 4

Condition : VCC =3.3V
3-5. Signal Timing Waveforms
High: 0.7VCC
Data Enable, Hsync, Vsync
Low: 0.3VCC

tCLK
DCLK 0.5 Vcc




tHP
Hsync t
WH

tHBP tWHA tHFP

Data Enable
tVP
tWV
Vsync tVFP
tVBP tWVA


Data Enable

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3-6. Color Input Data Reference
The brightness of each primary color (red,green and blue) is based on the 6-bit gray scale data input for the
color ; the higher the binary input, the brighter the color. The table below provides a reference for color
versus data input.

Table 7. COLOR DATA REFERENCE
Input Color Data
RED GREEN BLUE
Color
MSB LSB MSB LSB MSB LSB
R5 R4 R3 R2 R1 R0 G5 G4 G3 G2 G1 G0 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

Red 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0

Green 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0

Basic Blue 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1
Color Cyan 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1

Magenta 1 1 1 1 1 1 0 0 0 0 0 0 1 1 1 1 1 1

Yellow 1 1 1 1 1 1 1 1 1 1 1 1 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

RED (00) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

RED (01) 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0

RED ... ... ... ...

RED (62) 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0

RED (63) 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0

GREEN (00) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

GREEN (01) 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0

GREEN ... ... ... ...

GREEN (62) 0 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0 0

GREEN (63) 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0

BLUE (00) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

BLUE (01) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1

BLUE ... ... ... ...

BLUE (62) 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 0

BLUE (63) 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1




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3-7. Power Sequence
90% 90%
Power Supply Input
VCC
0V 10% 10%

T3 T7 T4
T1 T2 Valid Data
Interface Signal, Vi
LVDS
0V

T5 T6
LED on/off control Signal
0V (Off)
LED_EN
T9 T10



Dimming control signal Valid Data
Of LED BL 0V (Low)
PWM
T8 T11

90%
LED input Voltage
VLED 0V 10%

Table 6. POWER SEQUENCE TABLE
Value
Parameter Units
Min. Typ. Max.
T1 0.5 - 10 ms
T2 0 - 50 ms
T3 0 - 50 ms
T4 400 - - ms
T5 200 - - ms
T6 200 - - ms
T7 3 - 10 ms
T8 10 - - ms
T9 0 - - ms
T10 0 - - ms
T11 10 - - ms
Note)
1. Valid Data is Data to meet "3-3. LVDS Signal Timing Specifications"
2. Please avoid floating state of interface signal at invalid period.
3. When the interface signal is invalid, be sure to pull down the power supply for LCD VCC to 0V.
4. LED power must be turn on after power supply for LCD and interface signal are valid.

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4. Optical Specification
Optical characteristics are determined after the unit has been `ON' and stable for approximately 30 minutes in
a dark environment at 25qC. The values specified are at an approximate distance 50cm from the LCD surface
at a viewing angle of ) and 4 equal to 0q.
FIG. 1 presents additional information concerning the measurement equipment and method.

FIG. 1 Optical Characteristic Measurement Equipment and Method

LCD Module Pritchard 880 or
Optical Stage(x,y)
equivalent




50cm
Table 9. OPTICAL CHARACTERISTICS

Ta=25qC, VCC=3.3V, fV=60Hz, fCLK= 75.1MHz, ILED= 17mA
Values
Parameter Symbol Units Notes
Min Typ Max
Contrast Ratio CR 400 500 - 1
2
Surface Luminance, white LWH 170 200 - cd/m 2
Luminance Variation G WHITE - 1.4 1.6 3
Response Time TrR+ TrD - 16 25 ms 4
Color Coordinates
RED RX 0.554 0.584 0.614
RY 0.322 0.352 0.382
GREEN GX 0.308 0.338 0.368
GY 0.521 0.551 0.581
BLUE BX 0.127 0.157 0.187
BY 0.107 0.137 0.167
WHITE WX 0.283 0.313 0.343
WY 0.299 0.329 0.359
Viewing Angle 5
x axis, right()=0q) 4r 40 - - degree
x axis, left ()=180q) 4l 40 - - degree
y axis, up ()=90q) 4u 10 - - degree
y axis, down ()=270q) 4d 30 - - degree
Color Gamut % - 45 -
Gray Scale 6



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Note)
1. Contrast Ratio(CR) is defined mathematically as
Surface Luminance with all white pixels
Contrast Ratio =
Surface Luminance with all black pixels

2. Surface luminance is the average of 5 point across the LCD surface 50cm from the surface with
all pixels displaying white. For more information see FIG 1.

LWH = Average(L1,L2, ... L5)

3. The variation in surface luminance , The panel total variation (G WHITE) is determined by measuring LN
at each test position 1 through 13 and then defined as followed numerical formula.
For more information see FIG 2.

Maximum(L1,L2, ... L13)
G WHITE =
Minimum(L1,L2, ... L13)

4. Response time is the time required for the display to transition from white to black (rise time, Tr R) and
from black to white(Decay Time, TrD). For additional information see FIG 3.

5. Viewing angle is the angle at which the contrast ratio is greater than 10. The angles are determined
for the horizontal or x axis and the vertical or y axis with respect to the z axis which is normal to the
LCD surface. For more information see FIG 4.

6. Gray scale specification * fV = 60Hz

Gray Level Luminance [%] (Typ)
L0 0.15
L7 0.84
L15 3.59
L23 9.25
L31 19.7
L39 34.9
L47 53.0
L55 78.1
L63 100




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FIG. 2 Luminance

H

10mm A


6 7 8 10mm
2 3
B H,V : ACTIVE AREA
V A : H/4 mm
9 1 10
B : V/4 mm
POINTS: 13 POINTS
4 5 13
11 12




FIG. 3 Response Time Active Area
The response time is defined as the following figure and shall be measured by switching the input signal
for "black" and "white".
TrR TrD
%
100
90

Optical
Response
10
0 white white
black



FIG. 4 Viewing angle Normal
Eye Y
I = 90 q , Up



I = 180 q ,
Left T

I


I = 0q ,
Right



I = 270 q ,
Down

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5. Mechanical Characteristics
The contents provide general mechanical characteristics for the model LP140WH2. In addition the figures
in the next page are detailed mechanical drawing of the LCD.


Horizontal 320.4 r 0.5mm

Outline Dimension Vertical 198.6 r 0.5mm

Thickness 3.6mm (max)

Horizontal 312.40 r 0.5mm
Bezel Area
Vertical 176.95 r 0.5mm

Horizontal 309.40 mm
Active Display Area
Vertical 173.95 mm

Weight 320g (Max.)

Surface Treatment Hard Coating(3H), Glare treatment of the front polarizer




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Note) Unit:[mm], General tolerance: r 0.5mm




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Note) Unit:[mm], General tolerance: r 0.5mm




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6. Reliability

Environment test condition

No. Test Item Conditions
1 High temperature storage test Ta= 60qC, 240h
2 Low temperature storage test Ta= -20qC, 240h
3 High temperature operation test Ta= 50qC, 50%RH, 240h
4 Low temperature operation test Ta= 0qC, 240h
5 Vibration test (non-operating) Sine wave, 10 ~ 500 ~ 10Hz, 1.5G, 0.37oct/min
3 axis, 1hour/axis
6 Shock test (non-operating) Half sine wave, 180G, 2ms
one shock of each six faces(I.e. run 180G 2ms
for all six faces)
7 Altitude operating 0 ~ 10,000 feet (3,048m) 24Hr
storage / shipment 0 ~ 40,000 feet (12,192m) 24Hr

{ Result Evaluation Criteria }
There should be no change which might affect the practical display function when the display quality
test is conducted under normal operating condition.




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7. International Standards
7-1. Safety
a) UL 60950-1:2003, First Edition, Underwriters Laboratories, Inc.,
Standard for Safety of Information Technology Equipment.
b) CAN/CSA C22.2, No. 60950-1-03 1st Ed. April 1, 2003, Canadian Standards Association,
Standard for Safety of Information Technology Equipment.
c) EN 60950-1:2001, First Edition,
European Committee for Electrotechnical Standardization(CENELEC)
European Standard for Safety of Information Technology Equipment.




7-2. EMC

a) ANSI C63.4 "Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and
Electrical Equipment in the Range of 9kHZ to 40GHz. "American National Standards Institute(ANSI),
1992
b) C.I.S.P.R "Limits and Methods of Measurement of Radio Interface Characteristics of Information
Technology Equipment." International Special Committee on Radio Interference.
c) EN 55022 "Limits and Methods of Measurement of Radio Interface Characteristics of Information
Technology Equipment." European Committee for Electrotechnical Standardization.(CENELEC), 1998
( Including A1: 2000 )




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8. Packing
8-1. Designation of Lot Mark
a) Lot Mark

A B C D E F G H I J K L M



A,B,C : SIZE(INCH) D : YEAR
E : MONTH F ~ M : SERIAL NO.


Note
1. YEAR
Year 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010

Mark 1 2 3 4 5 6 7 8 9 0


2. MONTH

Month Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec

Mark 1 2 3 4 5 6 7 8 9 A B C



b) Location of Lot Mark
Serial No. is printed on the label. The label is attached to the backside of the LCD module.
This is subject to change without prior notice.


8-2. Packing Form
a) Package quantity in one box : 20pcs

b) Box Size : 412mm X 330mm X 274mm




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9. PRECAUTIONS

Please pay attention to the followings when you use this TFT LCD module.

9-1. MOUNTING PRECAUTIONS
(1) You must mount a module using holes arranged in four corners or four sides.
(2) You should consider the mounting structure so that uneven force (ex. Twisted stress) is not applied to the
module. And the case on which a module is mounted should have sufficient strength so that external
force is not transmitted directly to the module.
(3) Please attach the surface transparent protective plate to the surface in order to protect the polarizer.
Transparent protective plate should have sufficient strength in order to the resist external force.
(4) You should adopt radiation structure to satisfy the temperature specification.
(5) Acetic acid type and chlorine type materials for the cover case are not desirable because the former
generates corrosive gas of attacking the polarizer at high temperature and the latter causes circuit break
by electro-chemical reaction.
(6) Do not touch, push or rub the exposed polarizers with glass, tweezers or anything harder than HB
pencil lead. And please do not rub with dust clothes with chemical treatment.
Do not touch the surface of polarizer for bare hand or greasy cloth.(Some cosmetics are detrimental
to the polarizer.)
(7) When the surface becomes dusty, please wipe gently with absorbent cotton or other soft materials like
chamois soaks with petroleum benzene. Normal-hexane is recommended for cleaning the adhesives
used to attach front / rear polarizers. Do not use acetone, toluene and alcohol because they cause
chemical damage to the polarizer.
(8) Wipe off saliva or water drops as soon as possible. Their long time contact with polarizer causes
deformations and color fading.
(9) Do not open the case because inside circuits do not have sufficient strength.



9-2. OPERATING PRECAUTIONS
(1) The spike noise causes the mis-operation of circuits. It should be lower than following voltage :
V= 200mV(Over and under shoot voltage)

(2) Response time depends on the temperature.(In lower temperature, it becomes longer.)
(3) Brightness depends on the temperature. (In lower temperature, it becomes lower.)
And in lower temperature, response time(required time that brightness is stable after turned on) becomes
longer.
(4) Be careful for condensation at sudden temperature change. Condensation makes damage to polarizer or
electrical contacted parts. And after fading condensation, smear or spot will occur.
(5) When fixed patterns are displayed for a long time, remnant image is likely to occur.
(6) Module has high frequency circuits. Sufficient suppression to the electromagnetic interference shall be
done by system manufacturers. Grounding and shielding methods may be important to minimized the
interference.




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LP140WH2
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Product Specification



9-3. ELECTROSTATIC DISCHARGE CONTROL
Since a module is composed of electronic circuits, it is not strong to electrostatic discharge. Make certain that
treatment persons are connected to ground through wrist band etc. And don't touch interface pin directly.


9-4. PRECAUTIONS FOR STRONG LIGHT EXPOSURE
Strong light exposure causes degradation of polarizer and color filter.


9-5. STORAGE
When storing modules as spares for a long time, the following precautions are necessary.

(1) Store them in a dark place. Do not expose the module to sunlight or fluorescent light. Keep the
temperature between 5qC and 35qC at normal humidity.
(2) The polarizer surface should not come in contact with any other object.
It is recommended that they be stored in the container in which they were shipped.

9-6. HANDLING PRECAUTIONS FOR PROTECTION FILM
(1) When the protection film is peeled off, static electricity is generated between the film and polarizer.
This should be peeled off slowly and carefully by people who are electrically grounded and with well
ion-blown equipment or in such a condition, etc.
(2) The protection film is attached to the polarizer with a small amount of glue. If some stress is applied
to rub the protection film against the polarizer during the time you peel off the film, the glue is apt to
remain on the polarizer.
Please carefully peel off the protection film without rubbing it against the polarizer.
(3) When the module with protection film attached is stored for a long time, sometimes there remains a
very small amount of glue still on the polarizer after the protection film is peeled off.
(4) You can remove the glue easily. When the glue remains on the polarizer surface or its vestige is
recognized, please wipe them off with absorbent cotton waste or other soft material like chamois
soaked with normal-hexane.




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LP140WH2
Liquid Crystal Display
Product Specification

APPENDIX A. Enhanced Extended Display Identification Data (EEDIDTM) 1/3
EDID Data for Acer_ ver. 0.1 2009.05.14.

Byte Byte Value Value
(Dec) (Hex) Field Name and Comments (Hex) (Bin)
0 00 Header 00 00000000
1 01 Header FF 11111111
2 02 Header FF 11111111
Header




3 03 Header FF 11111111
4 04 Header FF 11111111
5 05 Header FF 11111111
6 06 Header FF 11111111
7 07 Header 00 00000000
8 08 EISA manufacture code ( 3 Character ID ) LGD 30 00110000
9 09 EISA manufacture code (Compressed ASC ) E4 11100100
10 0A Panel Supplier Reserved - Product Code 0211h 11 00010001
Vendor / Product
EDID Version




11 0B ( Hex. LSB first ) 02 00000010
12 0C LCD Module Serial No - Preferred but Optional ("0" If not used) 00 00000000
13 0D LCD Module Serial No - Preferred but Optional ("0" If not used) 00 00000000
14 0E LCD Module Serial No - Preferred but Optional ("0" If not used) 00 00000000
15 0F LCD Module Serial No - Preferred but Optional ("0" If not used) 00 00000000
16 10 Week of Manufacture 00 weeks 00 00000000
17 11 Year of Manufacture 2009 years 13 00010011
18 12 EDID structure version # = 1 01 00000001
19 13 EDID revision # = 3 03 00000011
20 14 Video input Definition = Digital signal 80 10000000
Parameters




21 15 Max H image size (Roun