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Document Version: 0.1
Date: 2004/08/20
Product Functional Specification
15 inch XGA Color TFT-LCD Module
Model Name: T150XG01 V.0
(*) Preliminary Specification
( ) Final Specification
Note: This Specification is subject to change without notice.
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COVER
CONTENTS
RECORD OF REVISION
GENERAL DESCRIPTION 1
BSOLUTE MAXIMUM RATINGS 2
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Contents
ITEM No
ELECTRICAL SPECIFICATIONS 3
SIGNAL ELECTRONIC CHARACTERISTIC 3-1
INTERFACE CONNECTIONS 3-2
SIGNAL TIMING SPECIFICATIONS 3-3
SIGNAL TIMING WAVEFORMS 3-4
COLOR INPUT DATA REFERNECE 3-5
POWER ON/OFF SEQUENCE
3-6
3-7 FUNCTION BLOCK DIAGRAM
OPTICAL SFECIFICATIONS 4
MECHANICAL CHARACTERISTICS 5
RELIABLITY TEST ITEMS 6
INTERNATIONAL STANDARDS 7
SAFETY 7-1
EMC 7-2
PACKING 8
PRECAUTIONS 9
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Version Date Chapter Description Remark
0.0 Aug. 05,’ 04 5 First Draft (Preliminary)
0.1 Aug. 20,’ 04 3-3 To update Timing Spec.
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Record of Revision
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1. General Description
This specification applies to the 15.0 inch Color TFT-LCD Module T150XG01.
This module supports the XGA (1024(H) x 768(V)) screen format and 16.2M colors (6-bits + FRC).
All input signals are 1 channel LVDS interface compatible.
All the design rules of this module can correspond to PSWG standard.
This module is without any inverter card for backlight.
Features
-XGA 1024(H) x 768(V) resolution
-50,000 hours lamp life
-4 CCFL (Cold Cathode Fluorescent Lamp)
-High brightness, High contrast ratio
-Wide viewing angle
-Fast response Time
-Low power consumption
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Application
Person TV
Multi-function media
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* General Information
The following items are characteristics summary on the table 25 condition:
Items Specification Unit Note
Active Screen Size 15.0 inches 38.1cm diagonal
Display Area
Outline Dimension
Resolution
Pixel Pitch 0.297 x 0.297
Pixel Arrangement RGB vertical stripe
Display mode TN mode, Normally White
Display Colors 16.2M (6-bit + FRC for R,G,B) Colors
Typical White Luminance 450 nit (typ.) @ 6.0mA [cd/m2]
Contrast Ratio 450:1(typ.)
Color Gamut 65%(typ.) of NTSC
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304.128(H)
326.5(H)
253.5(V)14.4(D) (typ.)
1024(R,G,B
228.096(V)
3) x 768
mm
mm Without inverter
Pixels
Response Time 16ms(typ.) (Tr+Tf) ms
Power Consumption 22 W (typ.)(VDD line +CCFL line) W @6.0mA
Electronic Interface 1ch LVDS (8 bit)
Frame rate 60Hz(typ.), 75Hz(max.) Hz
Weight 1350(max) g
Surface Treatment Hard-Coating 3H, AG
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2. Absolute Maximum Ratings
The following table shows the maximum values which, if exceeded (8.5mA), may cause faulty
operation or damage to the unit.
Item Symbol Min. Max. Unit Note
Logic/LCD Drive Voltage VDD
Input Voltage of Signal Vin
CCFL Current ICFL
Operating Temperature T
Storage Temperature H
Operating Humidity H
Storage Humidity H
Vibration
Shock
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-0.3 +3.6
-0.3 +3.6
+2.5 +8.5
OP
ST
OP
ST
0 +50 Note 1
-20 +60 Note 1
20 85 %RH Note 1
10 90 %RH Note 1
- 1/10-200
- 50/20
Volt
Volt
mA
G/Hz
G/ms
rms
Half sine wave
Note: 1. Temperature and relative humidity range are shown in the figure below. Wet bulb temperature
should be 39 and No condensation.
Wet bulb temperature chart
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3. Electrical Specification
3-1 Signal Electrical Characteristics
Each signal characteristics are as follows:
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Parameter Symbol
Min Typ Max
LCD:
Power Supply Input Voltage Vcc 3.0 3.3 3.6 Vdc
Power Supply Input Current Icc - 1.0 1.3 A 1
Power Consumption Pc - 3.3 4.3 Watt 1
Allowable Ripple & Noise VDDns - - 100 mVp-p
Inrush Current I
Lamp Power Consumption - 16.4 17.4 W 2
Life Time 50,000 - - hr 3
RUSH
- - TBD Apeak 1
Values
Unit Notes
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3-2 Interface Connections
- LCD connector (CN1): DF-14H-20P-1.25H (Hirose) or equivalent
- LVDS Transmitter : DS90C385 (N.S.) or THC63LVDM83A (THINE) or equivalent
Pin No. Symbol Function
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1
2 VDD Power Supply +3.3V
3
4
5 Rx0-
6
7
8 Rx1-
9
10
11 Rx2-
12
13
14 RxCLK2-
15
16
17 Rx3-
18
19
20
Note: All GND (ground) pins should be connected together and to Vss, which should also be
connected to the LCD’ s metal frame. All Vcc (power input) pins should be connected
together.
VDD Power Supply +3.3V
GND Power Ground
GND Power Ground
- LVDS Receiver Signal (R0-R5, G0)
Rx0+
GND Ground
+ LVDS Receiver Signal (R0-R5, G0)
- LVDS Receiver Signal (G0-G5, B0-B1)
Rx1+
GND Ground
+ LVDS Receiver Signal (G0-G5, B0-B1)
- LVDS Receiver Signal (B2-B5, HS, VS, DE)
Rx2+
GND Ground
+ LVDS Receiver Signal (B2-B5, HS, VS, DE)
- LVDS Receiver Clock Signal
RxCLK2+
GND Ground
+ LVDS Receiver Clock Signal
- LVDS Receiver Signal (R6-R7, G6-G7, B6-B7)
Rx3+
GND Ground
NC Reserved
+ LVDS Receiver Signal (R6-R7, G6-G7, B6-B7)
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8-bit input LVDS data format
RXCLK+
RXCLK-
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RX0
RX1
RX2
RX3
G1 B1 B0 G3 G4 G1 G2 B1 G5
R6 R7 B7 R6 B6 G7 G6
G0 R5 R4 R3 R2 R1 R0 G0 R0
DE VS HS
B5 B3 B2 B4 B2
Note : Since this is DE only mode, please set the HS and VS to logic 1.
Backlight Connector Pin Configuration
Pin# Signal Name
1 Lamp High Voltage
2 Ground
Electrical specification (Lamp spec.)
Symbol Parameter Min Typ Max Units Condition
IRCFL CCFL operation range 3.0 6.0 8.5 [mA] rms
ICFL CCFL Inrush current - - 20 [mA]
FCFL CCFL Frequency 40 55 60 [KHz]
ViCFL CCFL Ignition Voltage 1000 - - [Volt] rms
ViCFL CCFL Ignition Voltage 1300 - - [Volt] rms
VCFL CCFL Discharge Voltage - 680 725 [Volt] rms
(Ta=25 )
(Ta=25 )
(Ta=25)
(Ta=25 )
(Reference)
(Ta= 0)
(Reference)
(Ta=25)
PCFL
Note1: CCFL Frequency should be carefully determined to avoid interference between inverter and TFT LCD
Note2: Calculate value for reference (
Note3: CCFL inverter should be able to give out a power that has a generating capacity of over 1300 voltage.
Note4: CCFL life time 50,000 hr at 6.0 mA, it’ s defined as when the brightness is reduced by half.
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CCFL Power consumption @
- 16.4 17.4 [Watt]
6.0 mA (excluding inverter)
IRCFL x VCFL x 4 = PCFL)
Lamp units need 1300 voltage minimum for ignition
It’ s recommended not to exceed 6.0 mA for CCFL life time concern and it ’ s prohibited to exceed
8.5mA for safety concern
(Ta=25)
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3-3 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 for it’s proper operation.
Timing Table (DE mode only)
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Parameter Symbol Min. Typ. Max. Unit
Clock frequency 1/ T
Period T
Vertical
Section
Active T
Blanking T
Period T
Horizontal
Section
Active T
Blanking T
3-4 Signal Timing Waveforms
DOTCLK
Input
Data
T
CLOCK
Invaild
Data
Input Timing Definition ( DE Mode)
Pixel1Pixel2Pixel3Pixel
Clock
V
VD
VB
H
HD
HB
50 65 81 MHz
776 806 1024
768 768 768
8 38 256
1054 1344 2048
1024 1024 1024
T
30 320 1024
N-1
Pixel
N
Invaild
Data
T
Line
Clock
Pixel
1
DE
DE
T
HB
T
VB
T
HD
T
H
T
VD
T
V
Note : Since this is DE only mode, please set the HS and VS to logic 1.
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3-5 Color Input Data Reference
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 a reference for
color versus data input.
Color
MSB
LSB
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
Black 0 0 0000000000000000000000
Red(255) 1 11111110000000000000000
Green(255) 0 00000001111111100000000
Basic
Color
Blue(255) 0 00000000000000011111111
Cyan 0 00000001111111111111111
Magenta 1 11111110000000011111111
Yellow 1 11111111111111100000000
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COLOR DATA REFERENCE
Input Color Data
RED
MSB
LSB
GREEN
BLUE
MSB
LSB
RED
GREEN
BLUE
White 1 11111111111111111111111
RED(000) 0 00000000000000000000000
RED(001) 0 00000010000000000000000
----
RED(254) 1 11111100000000000000000
RED(255) 1 11111110000000000000000
GREEN(000) 000000000000000000000000
GREEN(001) 000000000000000100000000
----
GREEN(254) 000000001111111000000000
GREEN(255) 0 0 0000001111111100000000
BLUE(000) 0 00000000000000000000000
BLUE(001) 0 00000000000000000000001
-------
BLUE(254) 0 00000000000000011111110
BLUE(255) 0 00000000000000011111111
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3-6 Power On/Off Sequence
Vin and lamp power on/off sequence are as follows. The timing of interface signal are shown in the
table.
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Symbol
T1 0.5 - 10
T2 0.5 25 50
T3 200 - -
T4 200 - -
T5 0.5 16 50
T6 0.5 - 10
T7 1000 - -
Apply the lamp voltage within the LCD operating range. When the backlight turns on before the LCD
operation or the LCD turns off before the backlight turns off, the display may momentarily become
abnormal.
Caution :
case of handling, make sure to turn off the power when you plug the cable into the input connector or
pull the cable out of the connector.
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The above on/off sequence should be applied to avoid abnormal function in the display. In
Min Typ Max
Values
Unit
ms
ms
ms
ms
ms
ms
ms
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3-7 Function Block Diagram
The following diagram shows the functional block of 15.0 inches Color TFT-LCD Module:
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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 25 . The values specified are at an approximate distance 50cm
from the LCD surface at a viewing angle of and equal to 0 .
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PR880 or equivalent
Fig.4-1 Optical measurement equipment and method
Parameter
Symbol
Values
Units Notes
Min. Typ. Max.
Contrast Ratio CR 350 450 - 1
Surface Luminance, white L
Uniformity of Luminance
Response Time T
T
T
WH
WHITE
(10%-90%) -46m s 4
on
(90%-10%)
off
on+Toff
350 450 -
5 p - - 1.3 3
12 17 ms
16 23 ms
cd/
Color Coordinates - - -
RED R
R
GREEN G
G
BLUE B
B
WHITE W
W
X
Y
X
Y
X
Y
X
Y
TYP.
-0.03
TBD
TBD
TBD
TBD
TBD
TBD
TBD
TBD
TYP.
+0.03
Viewing Angle (Contrast Ration>10)
x axis, right( =0 )
x axis, left( =180 )
y axis, up(=90)
y axis, down (=0)
r
l
u
d
- 70 - Degree 5
-7 0-
-6 0-
-6 0-
2
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Note:
1. Contrast Ratio (CR) is defined mathematically as:
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Contrast ratio (CR)=
2. Surface luminance is luminance value at point 1 across the LCD surface 50cm from the surface with
all pixels displaying white. From more information see FIG 4-2. When I
(typ.) L
3. The variation in surface luminance, WHITE is defined (center of Screen) as:
=Lon1, Where Lon1 is the luminance with all pixels displaying white at center 1 location.
WH
Fig.4-2 Optical measurement point
WHITE(5P)
=Maximum(L
Brightness on the "white" state
Brightness on the "black" state
, L
on1
on2
,… ,L
)/Minimum(L
on5
= 6.0mA, LWH=450cd/
BL
, L
on1
on2
,… L
on5
)
4. Definition of response time:
The output signals of photo-detector are measured when the input signals are
changed from “ Black” to “ White” (falling time) and from “ White” to “ Black” (rising time),
respectively. The response time interval between the 10% and 90% of amplitudes.
Refer to figure as below.
Fig.4-3 Response time
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5. Viewing Angle:
To be measured with a viewing cone of 1 by Topcon luminance meter ELDIM EZ
Contrast 160D. The Viewing angle is defined as 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 FIG4-4.
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Fig.4-4 Viewing Angle Definition
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5. Mechanical Characteristics
The contents provide general mechanical characteristics for the model T150XG01. In addition the
figures in the next page are detailed mechanical drawing of the LCD.
Outline Dimension
Weight 1350g (typ.)
Surface Treatment Hard Coating (3H), AG
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Horizontal 326.5mm
Vertical 253.5mm
Depth 14.4mm(w/o inverter)
Horizontal 304.128mm Active Display Area
Vertical 228.096mm
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Fig.1 LCM outline dimension
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6. Reliability Test Items
Environment test condition
No Test Item Condition Remark
1 High temperature storage test
2 Low temperature storage test
3 High temperature operation test
4 Low temperature operation test
5
High temperature & high humidity
operation
6 Temperature cycling (non-operation)
7 Vibration test
(non-operation)
8 Shock test
(non-operation)
9 Electrostatic discharge
(non-operation)
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Ta=60240h
Ta = - 2 0 240h
Ta=50 240h
Ta=0240h
50, 80%RH, 240Hrs
(No condensation)
-20 ~60 1H, 10mins, 1H, 5cycles
Vibration level : 1G RMS
Bandwidth : 10-200-10Hz
Duration: X, Y, Z 120min
One time each direction
Shock level: 50G
Waveform: half since wave, 20ms
Direction:X,Y,Z
One time each direction
150 pF,150 ,10kV,1 second, 9
position on the panel, 10 times each
place
Note 1,2,3
Note 1,2,3
Note 1,2,3
Note 1,2,3
Note 1,2,3
Note 1,2,3
Note 1,2,3
Note 1,2,3
Note 3
Note 1: Evaluation should be tested after storage at room temperature for one hour.
Note 2: There should be no change which might affect the practical display function when the display
quality test is conducted under normal operating condition.
Note 3: Judgment: 1.Function OK.
2.No serious image quality degradation.
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7. International Standard
7-1. Safety
(1) UL1950 Third Edition, Underwriters Laboratories, Inc. Jan. 28, 1995
Standard for Safety of Information Technology Equipment Including electrical Business
Equipment.
(2) CAN/CSA C22.2 No. 950-95 Third Edition, Canadian Standards Association, Jan. 28, 1995
Standard for Safety of Information Technology Equipment Including Electrical Business
Equipment.
(3) EN60950 : 1992+A2: 1993+A2: 1993+C3: 1995+A4: 1997+A11: 1997
IEC 950: 1991+A1: 1992+A2: 1993+C3: 1995+A4:1996
European Committee for Electro technical Standardization (CENELEC)
EUROPEAN STANDARD for Safety of Information Technology Equipment Including Electrical
Business Equipment.
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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
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8. Packing
Label Sample
Carton Label
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Notes:
1. Max Capacity: 10 LCD module/Carton
2. Max Weight: 14kg/Carton
3. The outside dimension of carton is
490(L)mmx390(W)mmx360(H)mm
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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 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.
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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
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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 minimize the interface.
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.
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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 5 and 35 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) The protection film is attached to the bezel with a small masking tape. 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) When the module with protection film attached is stored for a long time, sometimes there remains
a very small amount of flue still on the Bezel after the protection film is peeled off.
(3) You can remove the glue easily. When the glue remains on the Bezel or its vestige is recognized,
please wipe them off with absorbent cotton waste or other soft material like chamois soaked with
normal-hexane.
© Copyright AU Optronics, Inc.
August, 2004 All Rights Reserved. T150XG01 V0 Spec Ver0.1 22/22
No Reproduction and Redistribution Allowed
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