T-51516D150J-FW_A_AA (OPTREX)
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First Edition
Jan 16, 2002
Final Revision
******
OPTREX LCD Module Technical Specification
T-51516D150J-FW-A-AA
Checked by (Quality Assurance Div.)
Checked by (Design Engineering Div.)
Table of Contents
Prepared by (Production Div.)
1. Overview .................................................................................................................................................. 2
2. Absolute Maximum Ratings ........................................................................................................ 3
3. Electrical Characteristics .............................................................................................................. 3
4. Interface Pin Connection............................................................................................................... 5
5. Interface Timing ................................................................................................................................. 7
6. Block Diagram .................................................................................................................................... 11
7. Mechanical Specification............................................................................................................... 12
8. Optical Characteristics ................................................................................................................ 14
9. Reliability Test Condition.......................................................................................................... 16
10. Inspection Standards ...................................................................................................................... 17
11. Handling Precautions for TFT-LCD Module ................................................................. 18
Revision History
Rev. Date
Page
Comment
www.DataSheet4U.com
www.DataSheet4U.com
T-51516-D150J-FW-A-AA
www.DataSheet4U.com
OPTREX CORPORATION
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1. OVERVIEW
T-51516-D150J-FW-AA is 15.0” color TFT-LCD (Thin Film Transistor Liquid Crystal Display)
modules composed of LCD panel, driver ICs, control circuit, and backlight unit.
By applying 8bit digital data, 1024 ´ 768, 16.7M-color images are displayed on the 15.0” diagonal
screen. Input power voltages are 5.0 V for LCD driving.
The type of data and control signals are digital, and 2 pixel data are transmitted per Typ. 32.5
MHz clock cycle.
General specifications are summarized in the following table:
ITEM
SPECIFICATION
Display Area (mm)
Number of Dots
304.1 (H) ´ 228.1 (V)
(15.0-inch diagonal)
1024 ´ 3 (H) ´ 768 (V)
Pixel Pitch (mm)
0.297 (H) ´ 0.297 (V)
Color Pixel Arrangement
RGB vertical stripe
Display Mode
normally white TN
Number of Color
16.7 M (8 bits/color)
Brightness
300 cd/m2 Typ.
Wide Viewing Angle Technology
Optical Compensation Film
Viewing Angle
-75~75° (H) -60~50° (V)
Surface Treatment
Anti-glare and hard-coating 3H
Electrical Interface
CMOS (VI = 3~5 V, 2pixel / clock)
Optimum Viewing Angle(Contrast ratio)
6 o’clock
Module Size (mm)
350.0 (W) ´ 266.5 (H) ´ 16.8 (D)
Module Mass (g)
1500
Backlight Unit
CCFL, 4-tubes, edge-light, replaceable
Characteristic value without any note is typical value.
The LCD product described in this specification is designed and manufactured for the standard
use in OA equipment and consumer products, such as computers, communication equipment,
industrial robots, AV equipment and so on.
Do not use the LCD product for the equipment that require the extreme high level of reliability,
such as aerospace applications, submarine cables, nuclear power control systems and medical
or other equipment for life support.
ADI assumes no responsibility for any damage resulting from the use of the LCD product in
disregard of the conditions and handling precautions in this specification.
If customers intend to use the LCD product for the above items or other no standard items,
please contact our sales persons in advance.
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2. ABSOLUTE MAXIMUM RATINGS
ITEM
SYMBOL
MIN.
MAX.
UNIT
Power Supply Voltage for LCD
VCC
0
7.0
V
Logic Input Voltage
VI -0.5 6.1
V
Lamp Voltage
VL
0
2500
Vrms
Lamp Current
IL 0 10.0 mArms
Lamp Frequency
FL -- 100 kHz
Operation Temperature *)
Top
0
50 °C
Storage Temperature *) Tstg -20 60 °C
[Note]
*) Top,Tstg £ 40°C : 90% RH max. without condensation
Top,Tstg > 40°C : Absolute humidity shall be less than the value of 90% RH at 40°C without
condensation.
3. ELECTRICAL CHARACTERISTICS
(1) TFT- LCD
ITEM
SYMBOL MIN. TYP.
Ambient Temperature : Ta = 25°C
MAX. UNIT
Remarks
Power Supply Voltages for LCD VCC
4.5 5.0
5.5
V
*1)
Power Supply Currents for LCD ICC
-- 300 500
mA
*2)
Permissive Input Ripple Voltage VRP -- -- 100 mVp-p VCC = +5.0V
Logic Input
High
VIH
2.2 3.3
5.5
V
Voltage
Low
VIL 0 -- 0.8
V
*1) Power and signals sequence:
t1 £ 10 ms
0 < t2 £ 10 ms
0 < t3 £ 1 s
0 < t4 £ 50 ms
1 s £ t5
200 ms £ t6
0 £ t7
4.5V
LCD Power Supply
Logic Signal 0.5V
VCC
data
4.5V
2.2V
0.5V
t1 t2
t3 t4 t5
VL
Backlight Power Supply
t6 t7
Data: RGB DATA, DCLK, HD, VD, DENA
,
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VCC-dip conditions:
1) When VCCMIN ³ 3.6 V, td £ 10 ms
2) When VCCMIN < 3.6 V
VCC-dip conditions should also follow the power and signals sequence.
VCC
td
*2) Typical current condition:
256- gray- bar-pattern
768 line mode
VCC = 5.0 V, fH=48.4kHz, fV=60Hz, fCLK= 32.5MHz
(2) Backlight
ITEM
SYMBOL MIN. TYP. MAX. UNIT
Ta = 25°C
Remarks
Lamp Voltage
VL -- 570 -- Vrms IL = 12.0 mArms
Lamp Current
IL 7.0 12.0 16.0 mArms
*1)
Lamp Frequency
FL 40 -- 70 kHz
*2)
Starting Lamp Voltage
Lamp Life Time
VS
LT
1400
--
-- Vrms
Ta = 0°C
1200
--
-- Vrms
Ta = 25°C
--
50000
--
*3), IL = 12.0 mArms,
h Continuous
Operation
*1) Lamp Current measurement method (The current meter is inserted in low voltage line.)
CTL
A
LCD
Module
CTH
CTH
CTL
CTH
CTH
A
Inverter
Power
Supply
*2) Lamp frequency of inverter may produce interference with horizontal synchronous frequency,
and this may cause horizontal beat on the display. Therefore, please adjust lamp frequency,
and keep inverter as far from module as possible or use electronic shielding between inverter
and module to avoid the interference.
*3) Lamp life time is defined as the time either when the brightness becomes 50% of the initial
value, or when the starting lamp voltage does not meet the value specified in this table.
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4. INTERFACE PIN CONNECTION
(1) CN 1(Data Signal and Power Supply)
Used Connector: IL-FHR-45S-HF (JAE)
Pin No. Symbol
Function
1 GND
2 DCLK Dot Clock
3 GND
4 DENA Data enable
5 GND
6 VD Vertical Sync
7 GND
8 HD Horizontal Sync
9 GND
10 NC This pin should be open or GND.
11 GND
12 BO7 Blue odd data(MSB)
13 BO6 Blue odd data
14 BO5 Blue odd data
15 BO4 Blue odd data
16 GND
17 BO3 Blue odd data
18 BO2 Blue odd data
19 BO1 Blue odd data
20 BO0 Blue odd data(LSB)
21 GND
22 GO7 Green odd data(MSB)
23 GO6 Green odd data
24 GO5 Green odd data
25 GO4 Green odd data
26 GND
27 GO3 Green odd data
28 GO2 Green odd data
29 GO1 Green odd data
30 GO0 Green odd data(LSB)
31 GND
32 RO7 Red odd data(MSB)
33 RO6 Red odd data
34 RO5 Red odd data
35 RO4 Red odd data
36 GND
37 RO3 Red odd data
38 RO2 Red odd data
39 RO1 Red odd data
40 RO0 Red odd data(LSB)
41 VCC
42 VCC
43 TEST This pin should be open. Test signal output for only internal test use.
44 TEST This pin should be open. Test signal output for only internal test use.
45 TEST This pin should be open. Test signal output for only internal test use.
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(2) CN 2 (Data signal)
Used Connector: IL-FHR-30S-HF (JAE)
Pin No. Symbol
Function
1 GND
2
BE7
Blue even data(MSB)
3
BE6
Blue even data
4
BE5
Blue even data
5
BE4
Blue even data
6 GND
7
BE3
Blue even data
8
BE2
Blue even data
9
BE1
Blue even data
10
BE0
Blue even data(LSB)
11 GND
12
GE7
Green even data(MSB)
13
GE6
Green even data
14
GE5
Green even data
15
GE4
Green even data
16 GND
17
GE3
Green even data
18
GE2
Green even data
19
GE1
Green even data
20
GE0
Green even data(LSB)
21 GND
22
RE7
Red even data(MSB)
23
RE6
Red even data
24
RE5
Red even data
25
RE4
Red even data
26 GND
27
RE3
Red even data
28
RE2
Red even data
29
RE1
Red even data
30
RE0
Red even data(LSB)
(3) CN 3, 4(Backlight)
Backlight-side connector: BHR-04VS-1(JST)
Inverter-side connector: SM03(7-D1)B-BHS-1-TB
Pin No.
Symbol
1, 2 CTH
4 CTL
[Note]
VBLH-VBLL=VL
Function
VBLH High Voltage
VBLL Low Voltage
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5. INTERFACE TIMING
(1) Timing Specifications
ITEM
SYMBOL MIN.
TYP.
MAX.
UNIT
Frequency
fCLK 30 32.5 40 MHz
DCLK
*1) *4)
Period
Low Width
tCLK
tWCL
25.0
8
30.8
--
33.3
--
ns
ns
High Width
tWCH
8
--
--
ns
DATA *1) Set up time
(R,G,B,DENA,
HD, VD) Hold time
tDS 2.3
--
--
ns
tDH 7.3
--
--
ns
Horizontal Active Time tHA 512 512 512 tCLK
Horizontal Front Porch tHFP
0
12
--
tCLK
DENA
*3)
Horizontal Back Porch
Vertical Active Time
tHBP
tVA
6
768
148 --
768 768
tCLK
tH
Vertical Front Porch
tVFP
0
3
--
tH
Vertical Back Porch
tVBP
4
35
--
tH
HD
*2)*4)
Frequency
Period
Low Width
fH
--
48.4 62.5
kHz
tH 16 20.7 --
ms
tWHL
1
68
-- tCLK
Frequency
VD
*2)
Period
fV 55 60 75 Hz
tV 13.3 16.7 18.2 ms
Low Width
tWVL
1
6
--
tH
[Note]
*1) DATA is latched at fall edge of DCLK in this specification.
*2) Polarities of HD and VD are negative in this specification.
*3) DENA (Data Enable) should always be positive polarity as shown in the timing specification.
*4) DCLK should appear during all invalid period, and HD should appear during invalid period
of frame cycle.
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(2) Timing Chart
a. Pixel Timing Chart
DCLK
tCLK
tWCH
tWCL
2.2V
0.8V
DATA
(R,G,B,ODD,EVEN),
DENA, HD, VD
tDS tDH
2.2V
0.8V
b. Horizontal Timing Chart
DCLK
ODD DATA
(R,G,B)
EVEN DATA
(R,G,B)
Invalid Data
First Data
135
Invalid Data 2 4 6
tHFP
tHBP
tHA
DENA
HD
tWHL
tH=1/fH
1021 1023 Invalid Data
1022 1024 Invalid Data
Last Data
c. Vertical Timing Chart
HD
LINE DATA
DENA
VD
Invalid Data 1 2 3
tVFP
tVBP
tVA
tWVL
tV=1/fV
767 768 Invalid Data
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(3) Color Data Assignment
R DATA
G DATA
B DATA
COLOR
INPUT
DATA
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
MSB
LSB MSB
LSB MSB
LSB
BLACK
0 000000 0
RED(255) 1 1 1 1 1 1 1 1
BASIC GREEN(255 0 0 0 0 0 0 0 0
)
COLOR BLUE(255) 0 0 0 0 0 0 0 0
CYAN
0 000000 0
MAGENTA 1 1 1 1 1 1 1 1
YELLOW 1 1 1 1 1 1 1 1
WHITE
1 111111 1
RED(0)
0 000000 0
RED(1)
0 000000 1
RED(2)
0 000001 0
RED
0 000000 0
0 000000 0
1 111111 1
0 000000 0
1 111111 1
0 000000 0
1 111111 1
1 111111 1
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
1 111111 1
1 111111 1
1 111111 1
0 000000 0
1 111111 1
0 000000 0
0 000000 0
0 000000 0
RED(254)
RED(255)
GREEN(0)
GREEN(1)
GREEN(2)
GREEN
1 111111 0
1 111111 1
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 1
0 000001 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
GREEN(254 0 0 0 0 0 0 0 0
)
GREEN(255 0 0 0 0 0 0 0 0
)
BLUE(0)
0 000000 0
BLUE(1)
0 000000 0
BLUE(2)
0 000000 0
BLUE
1 111111 0
1 111111 1
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 0
0 000000 1
0 000001 0
BLUE(254) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 0
BLUE(255) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
[Note]
*1) Definition of gray scale
Color (n) ---n indicates gray scale level.
Higher n means brighter level.
*2) Data
1:High, 0: Low
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(4) Data Mapping
D( 1, 1)
D( 1, 2)
¦
D( 1, Y)
¦
D( 1,767)
D( 1,768)
D( 2, 1)
D( 2, 2)
¦
D( 2, Y)
¦
D( 2,767)
D( 2,768)
--- D( X, 1) --- D(1023, 1) D(1024, 1)
--- D( X, 2) --- D(1023, 2) D(1024, 2)
+¦+¦
¦
--- D( X, Y) --- D(1023, Y) D(1024, Y)
+¦+¦
¦
--- D( X,767) --- D(1023,767) D(1024,767)
--- D( X,768) --- D(1023,768) D(1024,768)
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6. BLOCK DIAGLAM
TFT-LCD Module
CN2
CN1
Timing
Controller
Voltage Supply
for Gray Levels
and Vcom
DC/DC
Converter
Backlight
Source Driver
LCD Panel
1024 X 3 X 768
Backlight
BACKLIGHT
CCFL
CN3, 4
1
2
4
CN3
CN4
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7. MECHANICAL SPECIFICATIONS
(1) Front Side
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(2)Rear side
[Note]
We recommend you referring to the detailed drawing for your design.
Please contact our company sales representative when you need the detailed drawing.
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8. OPTICAL CHARACTERISTICS
Ta=25°C, VCC=5.0V, Input Signals: Typ. Values shown in Section 5
ITEM
SYMBOL CONDITION MIN.
TYP.
MAX.
UNIT
Remark
s
Contrast Ratio
Luminance Normal
CR
q = f = 0°
200 350
Lw
q = f = 0°
240 300
--
-- *1)*2)*3
)
-- cd/m2 *2)*3)
Uniformity DLw
q = f = 0°
--
--
30 % *2)*3)
Response Time
tr q = f = 0° -- 6 -- ms *3)*4)
tf
q = f = 0°
--
19
-- ms *3)*4)
Horizontal
f
CR ³ 10
-- -75~75 --
° *3)
Viewing Vertical
q
-- -60~50 --
° *3)
Angle Horizontal
f
CR ³ 5
-- -80~80 --
° * 3)
Vertical
q
-- -80~70 --
° *3)
Image Sticking
tis 2 h -- -- 2 s *5)
Red Rx
0.611 0.641 0.671
Ry 0.304 0.334 0.364
Color
Green
Coordinates
Gx 0.252 0.282 0.312
Gy
q = f = 0°
0.570 0.600 0.630
--
*3)
Blue
Bx
0.114 0.144 0.174
By 0.026 0.056 0.086
White
Wx
0.283 0.313 0.343
Wy 0.294 0.324 0.354
[Note]
These items are measured using CS1000(MINOLTA) for color coordinates, and CS1000 or BM-
5A(TOPCON) for others under the dark room condition (no ambient light) after more than 30
minutes from turning on the lamp unless noted.
Condition: IL = 12.0 mArms, Inverter frequency: 60kHz
*1) Definition of Contrast Ratio
CR=ON (White) Luminance / OFF(Black) Luminance
*2) Definition of Contrast ratio, Luminance and Luminance Uniformity
DLw=[Lw(MAX)/Lw(MIN)-1] ´ 100
Measure Contrast ratio and White Luminance on the below 5 points
(1,1) 256 512 768
192 1 2
5
384
34
576
(1024,768)
MEASUREMENT POINT
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*3) Definition of Viewing Angle( q , f)
*4) Definition of Response Time
White
90%
90%
Luminance
10% Black 10%
tr tf
*5) Image Sticking
Continuously display the test pattern shown in the figure below for two-hours. Then display a
completely white screen. The previous image shall not persist more than two seconds at 25°C.
Cols 510-514
Rows 382-386
White
Area
Black
Lines
TEST PATTERN FOR IMAGE STICKING TEST
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9. RELIABILITY TEST CONDITION
(1) Temperature and Humidity
TEST ITEM
HIGH TEMPERATURE
HIGH HUMIDITY OPERATION
HIGH TEMPERATURE OPERATION
LOW TEMPERATURE OPERATION
THERMAL SHOCK
(Non-Operation)
HIGH TEMPERATURE STORAGE
LOW TEMPERATURE STORAGE
CONDITIONS
40°C, 90%RH, 240
(No condensation)
50°C, 240 h
0°C, 240 h
BETWEEN -20°C (1h) and 60°C(1h),
5 CYCLES
60°C, 240 h
-20°C, 240 h
(2) Shock & Vibration
ITEM
CONDITIONS
Shock level: 980m/s2 (100G
SHOCK
Waveform: half sinusoidal wave, 2ms
(NON-OPERATION) Number of shocks: one shock input in each direction of three mutually
perpendicular axes for a total of six shock inputs
Vibration level: 9.8m/s2 (1.0G zero to peak
Waveform: sinusoidal
VIBRATION
Frequency range: 5 to 500 Hz
(NON-OPERATION) Frequency sweep rate: 0.5 octave /min
Duration: one sweep from 5 to 500 Hz in each of three mutually
perpendicular axis(each x,y,z axis: 1 hour, total 3 hours)
(3) Judgment standard
The judgment of the above tests should be made as follow:
Pass: Normal display image with no obvious non-uniformity and no line defect.
Partial transformation of the module parts should be ignored.
Fail: No display image, obvious non-uniformity, or line defects.
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10. INSPECTION STANDARDS
Inspection condition is as follows:
Viewing distance is approximately 35cm.
Viewing angle is normal to the LCD panel.
Ambient temperature is approximately 25°C.
Ambient light is from 300 to 500 lx.
Bright Dot is defined as follows:
Visible through 5% transmission ND filter under the condition that black image (color 0) is
on the display.
DEFECT TYPE
LIMIT
SCRATCH
0.01 mm < W £ 0.05 mm
L £ 10 mm
0.01 mm £ W
10 mm < L
0.05 mm < W
N£4
N=0
N=0
VISUAL
DEFECT
DENT
BLACK SPOT
BUBBLE
LINT
0.15 mm < f £ 0.4 mm
0.4 mm < f
0.15 mm < f £ 0.5 mm
0.5 mm < f
L £ 3 mm
W £ 0.1 mm
3mm < L
0.1mm < W
N£4
N=0
N£2
N=0
N£2
N=0
BRIGHT DOT
N £ 8 (Green:5)
DARK DOT
N£8
TOTAL DOT
N £ 10
ELECTRICAL
DEFECT
TWO ADJACENT DOT
BRIGHT DOT
DARK DOT
THREE OR MORE
ADJACENT DOT
DISTANCE BETWEEN
£ 2 PAIRS
£ 2 PAIRS
NOT ALLOWED
DEFECTS
BRIGHT DOT
DARK DOT
LINE DEFECT
³ 15mm
³ 15mm
NOT ALLOWED
*1) W: width, L: length, f : diameter, N: number
*2) DEFINITION OF ADJACENT
RGB RGB RGB
RGB RGB RGB
RGB RGB RGB
Defective Dot
A d ja cent D o ts
The defects that are not defined above and considered to be problem shall be reviewed and discussed
by both parties.
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11. HANDLING PRECAUTIONS FOR TFT-LCD MODULE
Please pay attention to the followings in handling TFT-LCD products;
(1) ASSEMBLY PRECAUTION
a. Please use the mounting hole on the module in installing and do not bending or wrenching LCD in
assembling. And please do not drop, bend or twist LCD module in handling.
b. Please design display housing in accordance with the following guide lines.
(a) Housing case must be designed carefully so as not to put stresses on LCD all sides and not to
wrench module. The stresses may cause non-uniformity even if there is no non-uniformity
statically.
(b) Keep sufficient clearance between LCD module back surface and housing when the LCD
module is mounted. Approximately 1.0mm of the clearance in the design is recommended
taking into account the tolerance of LCD module thickness and mounting structure height on
the housing.
(c) When some parts, such as, FPC cable and ferrite plate, are installed underneath the LCD
module, still sufficient clearance is required, such as 0.5mm. This clearance is, especially, to
be reconsidered when the additional parts are implemented for EMI countermeasure.
(d) Design the inverter location and connector position carefully so as not to give stress to lamp
cable, or not to interface the LCD module by the lamp cable.
(e) Keep sufficient clearance between LCD module and the others parts, such as inverter and
speaker so as not to interface the LCD module. Approximately 1.0mm of the clearance in the
design is recommended.
c. Please do not push or scratch LCD panel surface with anything hard. And do not soil LCD panel
surface by touching with bare hands. (Polarizer film, surface of LCD panel is easy to be flawed.)
d. Please do not press any parts on the rear side such as source TCP, gate TCP, control circuit board
and FPCs during handling LCD module. If pressing rear part is unavoidable, handle the LCD
module with care not to damage them.
e. Please wipe off LCD panel surface with absorbent cotton or soft cloth in case of it being soiled.
f. Please wipe off drops of adhesives like saliva and water on LCD panel surface immediately. They
might damage to cause panel surface variation and color change.
g. Please do not take a LCD module to pieces and reconstruct it. Resolving and reconstructing mod-
ules may cause them not to work well.
h. Please do not touch metal frames with bare hands and soiled gloves. A color change of the metal
frames can happen during a long preservation of soiled LCD modules.
i. Please pay attention to handling lead wire of backlight so that it is not tugged in connecting with
inverter.
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j. Please connect the metal frame of LCD module to GND in order to minimize the effect of external
noise and EMI.
k. Be sure to connect the cables and the connectors correctly.
(2) OPERATING PRECAUTIONS
a. Please be sure to turn off the power supply before connecting and disconnecting signal input
cable.
b. Please do not change variable resistance settings in LCD module. They are adjusted to the most
suitable value. If they are changed, it might happen LCD does not satisfy the characteristics
specification.
c. LCD backlight takes longer time to become stable of radiation characteristics in low temperature
than in room temperature.
d. A condensation might happen on the surface and inside of LCD module in case of sudden change
of ambient temperature.
e. Please pay attention not to display the same pattern for very long time. Image might stick on
LCD. Even if image sticking happens, it may disappear as the operation time proceeds.
f. Please obey the same safe instructions as ones being prepared for ordinary electronic products.
(3) PRECAUTIONS WITH ELECTROSTATICS
a. This LCD module use CMOS-IC on circuit board and TFT-LCD panel, and so it is easy to be
affected by electrostatics. Please be careful with electrostatics by the way of your body
connecting to the ground and so on.
b. Please remove protection film very slowly from the surface of LCD module to prevent from
electrostatics occurrence.
(4) STORAGE PRECAUTIONS
a. Please do not leave the LCDs in the environment of high humidity and high temperature such as
60°C90%RH.
b. Please do not leave the LCDs in the environment of low temperature; below -20°C.
(5) SAFETY PRECAUTIONS
a. When you waste damaged or unnecessary LCDs, it is recommended to crush LCDs into pieces and
wash them off with solvents such as acetone and ethanol, which should later be burned.
b. If any liquid leaks out of a damaged glass cell and comes in contact with the hands, wash off
thoroughly with soap and water.
c. Be sure to turn off the power supply when inserting or disconnecting the cable.
d. Inverter should be designed carefully so as not to keep working in case of detecting over current
or open circuit on the lamp.
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(6) OTHERS
a. A strong incident light into LCD panel might cause display characteristics changing inferior
because of polarizer film, color filter, and other materials becoming inferior. Please do not
expose LCD module direct sunlight and strong UV rays.
b. Please pay attention to a panel side of LCD module not to contact with other materials in
preserving it alone.
c. For the packaging box, please pay attention to the followings;
(a) Packaging box and inner case for LCD are designed to protect theLCDs from the damage or
scratching during transportation. Please do not open except picking LCDs up from the box.
(b) Please do not pile them up more than 5 boxes. (They are not designed so.) And please do not
turn over.
(c) Please handle packaging box with care not to give them sudden shock and vibrations. And
also please do not throw them up.
(d) Packaging box and inner case for LCDs are made of cardboard. So please pay attention not
to get them wet. (Such like keeping them in high humidity or wet place can occur getting
them wet.)
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