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RECORDS OF REVISION
LQ150X1LGF1
SPEC No. DATE REVISED SUMMARY NOTE
No. PAGE
LD-14804 Aug. 26. 2002 1st Issue




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1. Application
This specification applies to the color 15.0 XGA TFT-LCD module LQ150X1LGF1.


This technical literature are the proprietary product of SHARP CORPORATION("SHARP) and include
materials protected under copyright of SHARP. Do not reproduce or cause any third party to reproduce them
in any form or by any means, electronic or mechanical, for any purpose, in whole or in part, without the
express written permission of SHARP.


The device listed in this technical literature was designed and manufactured for use in OA equipment.


In case of using the device for applications such as control and safety equipment for transportation(aircraft,
trains, automobiles, etc. ), rescue and security equipment and various safety related equipment which require
higher reliability and safety, take into consideration that appropriate measures such as fail-safe functions and
redundant system design should be taken.


Do not use the device for equipment that requires an extreme level of reliability, such as aerospace applications,
telecommunication equipment(trunk lines), nuclear power control equipment and medical or other equipment
for life support.


SHARP assumes no responsibility for any damage resulting from the use of the device which does not comply
with the instructions and the precautions specified in these technical literature sheets.


Contact and consult with a SHARP sales representative for any questions about this device.




2. Overview
This module is a color active matrix LCD module incorporating amorphous silicon TFT (
Thin Film Transistor).
It is composed of a color TFT-LCD panel, driver ICs, control circuit, power supply circuit and a back light unit.
Graphics and texts can be displayed on a 1024 RGB 768 dots panel with about 16 million colors by using
LVDS (Low Voltage Differential Signaling) and supplying +3.3V DC supply voltages for TFT-LCD panel driving
and supply voltage for backlight.




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3. Mechanical Specifications
Parameter Specifications Unit
Display size 38 (Diagonal) cm
15.0 (Diagonal) Inch
Active area 304.1 (H) 228.1 (V) mm
Pixel format 1024 (H) 768 (V) Pixel
(1 pixel R+G+B dots)
Pixel pitch 0.297 (H) 0.297 (V) mm
Pixel configuration R, G, B vertical stripe
Display mode Normally white
Unit outline dimensions *1 331.3(W) 257.9(H) 11.0(D) mm
Mass 1300(MAX) g
Surface treatment Anti-glare and hard-coating 2H
(Haze value = 28)
*1.Note: excluding back light cables.
The thickness of module (D) doesn't contain the projection.
Outline dimensions are shown in Fig.1.




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4. Input Terminals
4-1. TFT-LCD panel driving
CN1 (Interface signals and +3.3V DC power supply)
Using connectors DF14H-20P-1.25H (Hirose Electric Co., Ltd.)
Corresponding connectors DF14-20S-1.25C(Connector)
DF14-2628SCFA(Terminal)
Corresponding LVDS Transmitter THC63LVDM83R(Thine) or compatible


Pin No. Symbol Function Remark
1 Vcc +3.3V Power supply
2 Vcc +3.3V Power supply
3 GND Ground
4 GND Ground
5 Rx0- LVDS CH0 data signal (-) LVDS
6 Rx0+ LVDS CH0 data signal (+) LVDS
7 GND Ground
8 Rx1- LVDS CH1 data signal (-) LVDS
9 Rx1+ LVDS CH1 data signal (+) LVDS
10 GND Ground
11 Rx2- LVDS CH2 data signal (-) LVDS
12 Rx2+ LVDS CH2 data signal (+) LVDS
13 GND Ground
14 CK- LVDS CH0 clock signal (-) LVDS
15 CK+ LVDS CH0 clock signal (+) LVDS
16 GND Ground
17 Rx3- LVDS CH2 data signal (-) LVDS
18 Rx3+ LVDS CH2 data signal (+) LVDS
19 GND Ground
20 LVDS_SET LVDS_SET note1




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4-2 Data Mapping note1
1) 8 bit input
note LVDS_SET(Thine:THC63LVDM83R)

Transmitter 20pin LVDS_SET
Pin No Data =H (3.3V) =L (GND) or Open
51 TA0 R0 (LSB) R2
52 TA1 R1 R3
54 TA2 R2 R4
55 TA3 R3 R5
56 TA4 R4 R6
3 TA5 R5 R7 (MSB)
4 TA6 G0 (LSB) G2
6 TB0 G1 G3
7 TB1 G2 G4
11 TB2 G3 G5
12 TB3 G4 G6
14 TB4 G5 G7 (MSB)
15 TB5 B0 (LSB) B2
19 TB6 B1 B3
20 TC0 B2 B4
22 TC1 B3 B5
23 TC2 B4 B6
24 TC3 B5 B7 (MSB)
27 TC4 (NA) (NA)
28 TC5 (NA) (NA)
30 TC6 DE DE
50 TD0 R6 R0 (LSB)
2 TD1 R7 (MSB) R1
8 TD2 G6 G0 (LSB)
10 TD3 G7 (MSB) G1
16 TD4 B6 B0 (LSB)
18 TD5 B7 (MSB) B1
25 TD6 (NA) (NA)




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1 cycle


RxCXIN+
RxCXIN-



RxIN0+
RxIN0-


RxIN1+
RxIN1-


RxIN2+
RxIN2-

RxIN3+
RxIN3-

DE : Display Enable
NA : Not Available



1 cycle


RxCXIN+
RxCXIN-



RxIN0+
RxIN0-


RxIN1+
RxIN1-


RxIN2+
RxIN2-

RxIN3+
RxIN3-

DE : Display Enable
NA : Not Available




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2) 6 bit input
note LVDS_SET(Thine:THC63LVDM83R)

Transmitter 20pin LVDS_SET
Pin No Data =H (3.3V) =L (GND) or Open
51 TA0 R0 (LSB)
52 TA1 R1
54 TA2 R2
55 TA3 R3
56 TA4 R4
3 TA5 R5 (MSB)
4 TA6 G0 (LSB)
6 TB0 G1
7 TB1 G2
11 TB2 G3
12 TB3 G4
14 TB4 G5 (MSB)
15 TB5 B0 (LSB)
19 TB6 B1
20 TC0 B2
22 TC1 B3
23 TC2 B4
24 TC3 B5 (MSB)
27 TC4 (NA)
28 TC5 (NA)
30 TC6 DE
50 TD0 GND
2 TD1 GND
8 TD2 GND
10 TD3 GND
16 TD4 GND
18 TD5 GND
25 TD6 (NA)
1 cycle


RxCXIN+
RxCXIN-



RxIN0+
RxIN0-


RxIN1+
RxIN1-


RxIN2+
RxIN2-
DE : Display Enable
NA : Not Available In case of supplying 6 bit signal, it is recommended to connect
pin No.17(Rx3-) and No.18(Rx3+) of input connector with GND.



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(Computer Side) (TFT-LCD side)
8Bit Mode
LVDS_SET=H (20 pin=3.3[V])


Controlle THC63LVDM83R
Single LVDS interface contained in a control
7 RX0+(6) RA 0 - 6
R0-R5,G0 TA 0 - 6




TTL PARALLEL-TO-LVDS
7 RX0-(5) RB 0 - 6
TB 0 - 6




LVDS-TO-PARALLEL TTL
G1-G5,B0,B1
7 RX1+(9) RC 0 - 6
TC 0 - 6
B2-B5, NA,NA,DE
7 RX1-(8) RD 0 - 6
TD 0 - 6




Internal circuits
R6,R7,G6,G7,
RX2+(12)
B6,B7,NA
RX2-(11)

RX3+(18)

RX3-(17)


CK+(15)
C K IN CK OUT
CK PLL K-(14) PLL




8Bit Mode
LVDS_SET=L (20 pin=GND or OPEN)


Controlle THC63LVDM83R
Single LVDS interface contained in a control IC
7 RX0+(6) RA 0 - 6
R2-R7,G2 TA 0 - 6
TTL PARALLEL-TO-LVDS




7 RX0-(5) RB 0 - 6
TB 0 - 6
LVDS-TO-PARALLEL TTL

G3-G7,B2,B3
7 RX1+(9) RC 0 - 6
TC 0 - 6
B4-B7, NA,NA,DE
7 RX1-(8) RD 0 - 6
TD 0 - 6




Internal circuits
R0,R1,G0,G1,
RX2+(12)
B0,B1,NA
RX2-(11)

RX3+(18)
RX3-(17)


CK+(15)
C K IN CK OUT
CK PLL K-(14) PLL




6Bit Mode
LVDS_SET=L (20 pin=GND or OPEN)


Controlle THC63LVDM83R
Single LVDS interface contained in a control IC
7 RX0+(6) RA 0 - 6
R0-R5,G0 TA 0 - 6
TTL PARALLEL-TO-LVDS




7 RX0-(5) RB 0 - 6
TB 0 - 6
LVDS-TO-PARALLEL TTL




G1-G5,B0,B1
7 RX1+(9) RC 0 - 6
TC 0 - 6
B2-B5, NA,NA,DE
7 RX1-(8) RD 0 - 6
TD 0 - 6
Internal circuits




ALL NA
RX2+(12)

RX2-(11)

RX3+(18)
RX3-(17)


CK+(15)
C K IN CK OUT
CK PLL K-(14) PLL




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4-4 Backlight
CN 2, 3
The module-side connector BHR-03VS-1 (JST)
The user-side connector SM02(8.0)B-BHS-1 (JST)
Pin no. symbol I/O Function
1 H I Power supply for lamp (High voltage side)
2 NC Open
3 L I Power supply for lamp (Low voltage side)




5. Absolute Maximum Ratings
Parameter Symbol Condition Ratings Unit Remark
Supply voltage Vcc Ta=25 0 + 4.0
Storage temperature T STG 25 + 60 Note1
Operating temperature (Ambient) T OPA 0 + 50
Note1 Humidity 95%RH Max. ( Ta 40 )
Maximum wet-bulb temperature at 39 or less. ( Ta>40 )
No condensation.




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6. Electrical Characteristics
6-1. TFT-LCD panel driving Ta 25
Parameter Symbol Min. Typ. Max. Unit Remark
Vcc Supply voltage Vcc +3.0 +3.3 +3.6 V Note1
Current dissipation Icc 450 600 mA Note2
Permissive input ripple voltage VRF 100 mVp-p


Note1
1 On-off sequences of Vcc and Vcc
V1 V1
data
0 t1 10ms data data
0 t2 10ms V2
V2
0 t3 1s
t4 1s t3 t4 t1 t2




2 Dip conditions for supply voltage


1) V2 Vcc V1
td 10ms
V1 : 3.0V
2) Vcc V2
V2 : 2.5V V2 V1
Vcc-dip conditions should also
follow the on-off conditions.




Note2 Typical current situation : 16-gray-bar pattern
Vcc=+3.3V, CK=65MHz
Horizontal period =20.7 us
Gray scale : GS(4n)
n=0 15
The explanation of each gray scale, GS(4n), is described below section 8.




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6-2. Backlight
The back light system is an edge-lighting type with 2 CCFTs (Cold Cathode Fluorescent Tube).
The characteristics of the lamp are shown in the following table.
The value mentioned below is at the case of one CCFT.
CCFT Model Name : KTBE24MSTF-321MA239-Z (STANLEY ELECTRIC CO., LTD.
Parameter Symbol Min. Typ. Max. Unit Remark
Lamp current range IL 3.5 7.5 8.0 mArms Note1
Lamp voltage VL 600 690 Vrms IL=7.5 mArms Ta=25
Lamp power consumption PL 4.5 5.2 W Note2
IL=7.5 mArms Ta=25
Lamp frequency FL 40 60 70 kHz Note3
Kick-off voltage Vs 1350 Vrms Ta=25 Note4
1500 Vrms Ta=0 Note4
Lamp life time TL 30,000 hour Note5
Note1 A lamp can be light in the range of lamp current shown above.
Maximum rating for current is measured by high frequency current measurement equipment
connected to VLOW at circuit showed below.
(Note : To keep enough kick-off voltage and necessary steady voltage for CCFT.)
Lamp frequency : 40 70kHz
Ambient temperature : 0 50




Note2 Referential data per one CCFT by calculation ( IL VL ) .
The data don't include loss at inverter.
Note3 Lamp frequency may produce interference with horizontal synchronous frequency, and this may
cause beat on the display. Therefore lamp frequency shall be detached as much as possible from the
horizontal synchronous frequency and from the harmonics of horizontal synchronous to avoid
interference.
Note4 It is defined at 27pF for the ballast capacitor of a DC-AC inveter.
The kick-off voltage may rise up in the user set, please decide the open output voltage by checking not
to occur lighting failure under operating state.
The open output voltage should be applied to the lamp for more than 1 second to startup. Or when the
ambient luminance around the lamp is more than 1lux, it should be applied to the lamp for more than
100ms. Otherwise the lamp may not be turned on.
Note5 Lamp life time is defined as the time when either or occurs in the continuous operation under
the condition of Ta=25 and IL=7.5 mA rms.
Brightness becomes 50% of the original value under standard condition.
Kick-off voltage at Ta=0 exceeds 1500 Vrms value.
Note
The performance of the backlight, for example lifetime or brightness, is much influenced by the characteristics
of the DC-AC inverter for the lamp. When you design or order 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. When you
confirm it, the module should be operated in the same condition as it is installed in your instrument.
Use the lamp inverter power source incorporating such safeguard as overvoltage / overcurrent protective
circuit or lamp voltage waveform detection circuit, which should have individual control of each lamp.
In case one circuit without such individual control is connected to more than two lamps, excessive current
may flow into one lamp when the other one is not in operation.




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7. Timing characteristics of input signals
7-1. Timing characteristics


Parameter Symbol Min. Typ. Max. Unit
Clock signal Frequency 1/Tc 50.0 65.0 79.0 MHz
ENAB signal Horizontal period TH 1056 1344 1720 clock
16.6 20.7 23.4 s
Horizontal period (High) THd 1024 1024 clock
Vertical period TV 773 806 990 line
Vertical period (High) TVd 768 768 line
Note In case of using the long vertical period, the deterioration of display quality, flicker etc. may occur.




DE

DATA
(R,G,B)




DE




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7-2 Input Data Signals and Display Position on the screen




R1 G1 B1 R2 G2 B2




R G B




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Data signal
Colors & Gray
Gray Scale

Black
Blue

Green
Basic Color




Cyan

Red

Magenta

Yellow

White

Black GS0
GS1
Gray Scale of Red




Darker GS2




Brighter GS250

GS251

Red GS252

Black GS0

GS1
Gray Scale of Green




Darker GS2




Brighter GS250

GS251

Green GS252

Black GS0

GS1
Gray Scale of Blue




Darker GS2




Brighter GS250

GS251

Blue GS252

0 : Low level voltage, 1 : High level voltage. X :Don't care.
Each basic color can be displayed in 253 gray scales from 8 bit data signals. According to the combination of
total 24 bit data signals, the 16-million-color display can be achieved on the screen.




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Data signal
Colors & Gray
R0 R1 R2 R3 R4 R5 G0 G1 G2 G3 G4 G5 B0 B1 B2 B3 B4 B5
Gray scale Scale

Black 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

Blue 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1

Green 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0
Basic Color




Cyan 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1

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

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

Black GS0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

GS1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Gray Scale of Red




Darker GS2 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0




Brighter GS61 1 0 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0

GS62 0 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0

Red GS63 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0

Black GS0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
GS1 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0
Gray Scale of Green




Darker GS2 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0




Brighter GS61 0 0 0 0 0 0 1 0 1 1 1 1 0 0 0 0 0 0

GS62 0 0 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0

Green GS63 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0

Black GS0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

GS1 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
Gray Scale of Blue




Darker GS2 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0




Brighter GS61 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 1 1 1

GS62 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1

Blue GS63 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1

0 : Low level voltage, 1 : High level voltage.
Each basic color can be displayed in 64 gray scales from 6 bit data signals. According to the combination of
total 18 bit data signals, the 262,144-color display can be achieved on the screen.




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9. Optical Characteristics
Ta=25 , Vcc =+3.3V
Parameter Symbol Condition Min. Typ. Max. Unit Remark
Viewing Vertical 11 CR 5 40 55 Deg. Note1,4

angle 12 70 80 Deg.
range Horizontal 21, 22 70 80 Deg.
Vertical 11 CR 10 30 45 Deg.
12 45 55 Deg.
Horizontal 21, 22 50 60 Deg.
Contrast ratio =0 250 350 Note2,4

Response Rise r 5 20 ms Note3,4

Time Fall d 20 40 ms
Chromaticity of x 0.283 0.313 0.343 Note4
White y 0.299 0.329 0.359

Chromaticity of x 0.551 0.581 0.611
Red y 0.292 0.322 0.352

Chromaticity of x 0.277 0.307 0.337
=0
Green y 0.516 0.546 0.576

Chromaticity of x 0.121 0.151 0.181
Blue y 0.097 0.127 0.157
2
Luminance of white YL 200 250 cd/m IL=7.5mA rms

fL =60kHz
Note4

White Uniformity w 1.25 Note5

The measurement shall be executed 30 minutes after lighting at rating.
The optical characteristics shall be measured in a dark room or equivalent state with the method shown
in Fig.2 below.




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Note1 Definitions of viewing angle range:








'
Note2 Definition of contrast ratio:
The contrast ratio is defined as the following.

Luminance (brightness) with all pixels white
Contrast Ratio (CR)
Luminance (brightness) with all pixels black

Note3 Definition of response time:
The response time is defined as the following figure and shall be measured by switching the input
signal for "black" and "white".








Note4 This shall be measured at center of the screen.
Note5 Definition of white uniformity:
White uniformity is defined as the following with five measurements (A E).
256 512 768 pixel




A D
Maximum Luminance of five points (brightness)
192
Minimum Luminance of five points (brightness)
C 384

B E 576
pixel




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10. Handling Precautions
a) Be sure to turn off the power supply when inserting or disconnecting the cable.
b) Be sure to design the cabinet so that the module can be installed without any extra stress such as warp or
twist.
c) Since the front polarize is easily damaged, pay attention not to scratch it.
d) Since long contact with water may cause discoloration or spots, wipe off water drop immediately.
e) When the panel surface is soiled, wipe it with absorbent cotton or other soft cloth.
f) Since the panel is made of glass, it may break or crack if dropped or bumped on hard surface. Handle
with care.
g) Since CMOS LSI is used in this module, take care of static electricity and take the human earth into
consideration when handling.
h) Make sure the four mounting holes of the module are grounded sufficiently. Take electro-magnetic
interference (EMI) into consideration.
i) The module has some printed circuit boards (PCBs) on the back side. Take care to keep them form any
stress or pressure when handling or installing the module; otherwise some of electronic parts on the PCBs
may be damaged.
j) Observe all other precautionary requirements in handling components.
k) When some pressure is added onto the module from rear side constantly, it causes display non-uniformity
issue, functional defect, etc. So, please avoid such design.
l) When handling LCD modules and assembling them into cabinets, please be noted that long-term
storage in the environment of oxidization or deoxidization gas and the use of such materials as reagent,
solvent, adhesive, resin, etc. which generate these gasses, may cause corrosion and discoloration of the
LCD modules.


11. Packing form
a) Piling number of cartons : maximum 5 cartons.
b) Packing quantity in one carton : 5 modules
c) Carton size : 320mm(W) 272mm(H) 398mm(D)
d) Total mass of one carton filled with full modules : 7kg(typ.)
e) Packing form is shown in Fig.3




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12 Reliability test items
No Test item Conditions
1 High temperature storage test Ta = 60 240h
2 Low temperature storage test Ta = -25 240h
3 High temperature Ta = 40 ; 95%RH 240h
& high humidity operation test (No condensation)
4 High temperature operation test Ta = 50 240h
(The panel temp. must be less than 60 )
5 Low temperature operation test Ta = 0 240H
6 Vibration test Waveform : Sine wave
(non- operating) Frequency : 10 57Hz/Vibration width (one side) : 0.075mm
: 58 500Hz/Gravity : 9.8m/s2
Sweep time : 11minutes
Test period : 3 hours
(1 hour for each direction of X,Y,Z)
7 Shock test Max. gravity : 490m/s2
(non- operating) Pulse width : 11ms, sine wave
Direction : X, Y, Z,
once for each direction.
8 Thermal shock test Ta=-25 60 ; 5 cycles
(operating) Test period : 10 hours (1 hour for each temperature)
9 Altitude Ta=50 ,70kPa,3,048m(10,000ft), t=24h (Operating)
Ta=70 ,12kPa,15,240m(50,000ft), t=24h (Storage)
Result Evaluation Criteria
Under the display quality test conditions with normal operation state, these shall be no change
which may affect practical display function.




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13 Others
1) Lot No. and indication Bar Code Label:



Bar Code(Lot No.)




2) Packing Label
Model No. (LQ150X1LGF1)
L Q150X1LGF1
Bar code
Lot No. (Date)


Bar code Quantity


Bar code




3) Adjusting volume have been set optimally before shipment, so do not change any adjusted value.
If adjusted value is changed, the specification may not be satisfied.
4) Disassembling the module can cause permanent damage and should be strictly avoided.
5) Please be careful since image retention may occur when a fixed pattern is displayed for a long time.
6) The chemical compound which causes the destruction of ozone layer is not being used.
7) Warning of mercury and material information of LPG (Light Pipe Guide) are labeled on the back of the
module.
MATERIAL INFORMATION
>PLASTIC LIGHT GUIDE:PMMA<

8)Cold cathode fluorescent lamp in LCD PANEL contains a small amount of mercury, Please follow local
ordinances or regulations for disposal.
COLD CATHODE FLUORESCENT LAMP IN LCD PANEL
CONTAINS A SMALL AMOUNT OF MERCURY, PLEASE FOLLOW
LOCAL ORDINANCES OR REGULATION FOR DISPOSAL




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14. Carton storage condition
Temperature 0 to 40
Humidity 95%RH or less
Reference condition : 20 to 35 , 85%RH or less (summer)
: 5 to 15 , 85%RH or less (winter)
the total storage time (40 ,95%RH) : 240H or less
Sunlight Be sure to shelter a product from the direct sunlight.
Atmosphere Harmful gas, such as acid and alkali which bites electronic components and/or
wires must not be detected.
Notes Be sure to put cartons on palette or base, don't put it on floor, and store them with
removing from wall
Please take care of ventilation in storehouse and around cartons, and control
changing temperature is within limits of natural environment
Storage period 1 year




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LD-14804-21




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LD-14804-22




Fig 3 Packing Form


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