SHARP LQ190E1LW02 Specification

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Specification
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LQ190E1LW02
Doc. No.: LD-19Z57
Version December 2007
Note: This specification is subject to change without prior notice
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Υ
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LD – 19Z57
TECHNICAL LITERATURE
FOR
TFT - LCD module
These parts have corresponded with the RoHS directive.
MODEL No.
The technical literature is subject to change without notice.
So, please contact SHARP or its representative before designing
your product based on this literature.
Engineering department
Mobile LCD Division
MOBILE LIQUID CRYSTAL DISPLY GROUP
LQ190E1LW02
SHARP CORPORATION
-
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LQ190E1LW02
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RECORDS OF REVISION
SPEC No. DATE
No. PAGE
LD19Z57 Dec.14.2007 - - - 1st Issue
REVISED
SUMMARY NOTE
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^1. Application
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This
The application example published in this technical literature is used to explain a typical application example
technical literature applies
technical literature
These
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.
that uses the product of our company. It is not the one to permit the guarantee or the execution right to the
execution of an industrial property and other right according to this technological material. Moreover, SHARP
assumes no responsibility for any problem related to the third party and the industrial property, etc. occurring
by having used the product of our company.
The device listed in these
electronic equipment.
In case of using the device for applications such as control and safety equipment for transportation (controls of
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.
to the color TFT-LCD module LQ190E1LW02.
sheets are the proprietary product of SHARP CORPORATION (”SHARP) and
technical literature
sheets was designed and manufactured for use in general
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
Confirm "11. Handling Precautions " item when you use the device.
Contact and consult with a SHARP sales representative for any questions about this device.
technical literature
sheets.
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2. Overview
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This module is a color active matrix LCD module incorporating amorphous silicon TFT (T
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 1280×RGB×1024 dots panel with about 16,777,216 colors by using
LVDS (L
driving and supply voltage for backlight.
It is a wide viewing-angle-module and color filters (NTST72%) of excellent color performance.
Backlight-driving DC/AC inverter is not built in this module.
3. Mechanical Specifications
ow Voltage Differential Signaling) and supplying +5.0V DC supply voltages for TFT-LCD panel
Parameter Specifications Unit
Display size 48 (19.0”) Diagonal cm Active area 376.32 (H)×301.056 (V) mm Pixel format 1280 (H)×1024 (V) Pixel (1 pixel=R+G+B dots)
Aspect ratio 4:3
Pixel pitch 0.294 (H)×0.294 (V) mm
hin Film Transistor).
Pixel configuration R, G, B vertical stripe
Display mode Normally black Unit outline dimensions *1 404.2(W)×330.0(H) ×20.0(D)TYP mm
Mass 2,800 (max) g
Surface treatment (Haze value) Anti-glare coating :
(Haze value 40%, Hardness 2H)
*1.Note: excluding back light cables and connecters.
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 +5.0V power supply)
Using connectors FI-X30SSL-HF (Japan Aviation Electronics Industry, Limited) Corresponding connectors FI-X30M (FPC type) (Japan Aviation Electronics Industry, Limited) FI-X30H (Wire type), FI-X30HL(Wire type with lock) :FI-X30C (Coaxial cable type), FI-X30C2L(Coaxial cable type with luck) Using LVDS receiver Type contained in a control IC
Corresponding LVDS TransmitterDS90CF383, C385 (NS Corporation) or equivalent)
Pin No. Symbol Function Remark
1 RxO0- Receiver signal of LVDS (O0-) LVDS
2 RxO0+ Receiver signal of LVDS (O0+) LVDS
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(DS90CR386 (NS Corporation) or equivalent)
3 RxO1- Receiver signal of LVDS (O1-) LVDS
4 RxO1+ Receiver signal of LVDS (O1+) LVDS
5 RxO2- Receiver signal of LVDS (O2-) LVDS
6 RxO2+ Receiver signal of LVDS (O2+) LVDS
7 GND GND
8 RxOC- Receiver signal of LVDS (OC-) LVDS
9 RxOC+ Receiver signal of LVDS (OC+) LVDS
10 RxO3- Receiver signal of LVDS (O3-) LVDS
11 RxO3+ Receiver signal of LVDS (O3+) LVDS
12 RxE0- Receiver signal of LVDS (E0-) LVDS
13 RxE0+ Receiver signal of LVDS (E0+) LVDS
14 GND GND
15 RxE1- Receiver signal of LVDS (E1-) LVDS
16 RxE1+ Receiver signal of LVDS (E1+) LVDS
17 GND GND
18 RxE2- Receiver signal of LVDS (E2-) LVDS
19 RxE2+ Receiver signal of LVDS (E2+) LVDS
20 RxEC- Receiver signal of LVDS (EC-) LVDS
21 RxEC+ Receiver signal of LVDS (EC+) LVDS
22 RxE3- Receiver signal of LVDS (E3-) LVDS
23 RxE3+ Receiver signal of LVDS (E3+) LVDS
24 GND GND
25 SEL LVDS Selection of LVDS mapping
26 N.C.
27 N.C.
28 Vcc +5V power supply
29 Vcc +5V power supply
30 Vcc +5V power supply
Note: There is a possibility that trouble occurs in initial and long-term reliability when using it
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4-2. Data Mapping
1) 8 bit input Note 1pin assignment with LVDS_SET pin
Transmitter: DS90CF383, C385 (NS Corporation) or equivalent
Transmitter 25pin SELLVDS
Pin No Data = H (3.3V) = L (GND) or Open
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51 TA0
52 TA1
54 TA2
55 TA3
56 TA4
3 TA5
4 TA6
6 TB0
7 TB1
11 TB2
12 TB3
14 TB4
15 TB5
19 TB6
20 TC0
22 TC1
23 TC2
24 TC3
27 TC4
28 TC5
30 TC6
50 TD0
2 TD1
8 TD2
10 TD3
16 TD4
18 TD5
25 TD6
R0 (LSB) R2
R1 R3 R2 R4 R3 R5 R4 R6 R5 R7 (MSB)
G0 (LSB) G2
G1 G3 G2 G4 G3 G5 G4 G6 G5 G7 (MSB)
B0 (LSB) B2
B1 B3 B2 B4 B3 B5 B4 B6
B5 B7 (MSB) (NA) (NA) (NA) (NA)
DE DE
R6 R0 (LSB)
R7 (MSB) R1
G6 G0 (LSB)
G7 (MSB) G1
B6 B0 (LSB)
B7 (MSB) B1
(NA) (NA)
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< SELLVDS = H >
Rx*C+
Rx*C-
Rx*0+
Rx*0-
Rx*1+
Rx*1-
Rx*2+
Rx*2-
Rx*3+
Rx*3-
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1 cycle
G0 R5 R4 R3 R2 R1 R0 R0R1 G0
B1 B0 G5 G4 G3 G2 G1 G1G2 B1
DE B5 B4 B3 B2 B2B3 DENA NA
NA G7 G6 R7 R6 R6R7 NAB7 B6
0 or D
DE : Display Enable
NA : Not Available
< SELLVDS=L or Open >
Rx*C+
Rx*C-
Rx*0+
Rx*0-
Rx*1+ Rx*1-
Rx*2+
Rx*2-
Rx*3+
Rx*3-
1 cycle
G2 R7 R6 R5 R4 R3 R2 R2R3 G2
B3 B2 G7 G6 G5 G4 G3 G3G4 B3
DE B7 B6 B5 B4 B4B5 DENA NA
NA G1 G0 R1 R0 R0R1 NAB1 B0
0 or E
DE : Display Enable
NA : Not Available
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䎹䎧䎶䎃䎬䏑䏗䏈䏕䏉䏄䏆䏈䎃䏅䏏䏒䏆䏎䎃䏇䏌䏄䏊䏕䏄䏐
䎩䏌䏊䏘䏕䏈䎃䎔
䎋䎦䏒䏐䏓䏘䏗䏈䏕䫹䎶䏌䏇䏈䎌
SELLVDS=H (25 pin=3.3[V])
䎲䎧䎧䎃䎧䎤䎷䎤
䎦䏒䏑䏗䏕䏒䏏䏏䏈䏕
䎵䎙䎏䎵䎚䎏䎪䎙䎏䎪䎚䎏
䎃䎚
䎃䎚
䎃䎚
䎃䎚
䎷䎤䎃䎓䎃䎐䎃䎙
䎷䎥䎃䎓䎃䎐䎃䎙
䎷䎦䎃䎓䎃䎐䎃䎙
䎷䎧䎃䎓䎃䎐䎃䎙
䎦䰘䎮䎃䎬䎱
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䎧䎶䎜䎓䎦䎩䎖䎛䎖䎏䎦䎖䎛䎘
䎯䎹䎧䎶
䎃䎷䎷䎯䎃䎳䎤䎵䎤䎯䎯䎨䎯䎐䎷䎲䎐
䎵䎻䎲䎓䎎䎋䎕䎌 䎵䎻䎲䎓䎐䎋䎔䎌
䎵䎻䎲䎔䎎䎋䎗䎌 䎵䎻䎲䎔䎐䎋䎖䎌
䎵䎻䎲䎕䎎䎋䎙䎌 䎵䎻䎲䎕䎐䎋䎘䎌
䎵䎻䎲䎖䎎䎋䎔䎔䎌 䎵䎻䎲䎖䎐䎋䎔䎓䎌
䎵䎻䎲䎦䎎䎋䎜䎌 䎵䎻䎲䎦䎐䎋䎛䎌
䎋䎷䎩䎷䎐䎯䎦䎧䎃䏖䏌䏇䏈䎌
䎦䏒䏑䏗䏕䏒䏏䎃䎬䎦䎃䎋䎥䏘䏌䏏䏗䎃䏌䏑䎃䎯䎹䎧䎶䯵
䎯䎹䎧䎶䎐䎷䎲䎐䎳䎤䎵䎤䎯䎯䎨䎯
䎷䎷䎯
䎵䎤䎃䎓䎃䎐䎃䎙
䎵䎥䎃䎓䎃䎐䎃䎙
䎵䎦䎃䎓䎃䎐䎃䎙
䎵䎧䎃䎓䎃䎐䎃䎙
䎦䰘䎮䎃䎲䎸䎷
䎬䏑䏗䏈䏕䏑䏄䏏䎃䏆䏌䏕䏆䏘䏌䏗䏖
䎨䎹䎨䎱䎃䎧䎤䎷䎤
䎦䏒䏑䏗䏕䏒䏏䏏䏈䏕
䎵䎙䎏䎵䎚䎏䎪䎙䎏䎪䎚䎏
䎃䎚
䎃䎚
䎃䎚
䎃䎚
SELLVDS=H (25 pin=GND or OPEN)
䎲䎧䎧䎃䎧䎤䎷䎤
䎦䏒䏑䏗䏕䏒䏏䏏䏈䏕
䎵䎓䎏䎵䎔䎏䎪䎓䎏䎪䎔䎏
䎃䎚
䎃䎚
䎃䎚
䎃䎚
䎷䎤䎃䎓䎃䎐䎃䎙
䎷䎥䎃䎓䎃䎐䎃䎙
䎷䎦䎃䎓䎃䎐䎃䎙
䎷䎧䎃䎓䎃䎐䎃䎙
䎦䰘䎮䎃䎬䎱
䎷䎤䎃䎓䎃䎐䎃䎙
䎷䎥䎃䎓䎃䎐䎃䎙
䎷䎦䎃䎓䎃䎐䎃䎙
䎷䎧䎃䎓䎃䎐䎃䎙
䎦䰘䎮䎃䎬䎱
䎧䎶䎜䎓䎦䎩䎖䎛䎖䎏䎦䎖䎛䎘
䎯䎹䎧䎶
䎃䎷䎷䎯䎃䎳䎤䎵䎤䎯䎯䎨䎯䎐䎷䎲䎐
䎧䎶䎜䎓䎦䎩䎖䎛䎖䎏䎦䎖䎛䎘
䎯䎹䎧䎶
䎃䎷䎷䎯䎃䎳䎤䎵䎤䎯䎯䎨䎯䎐䎷䎲䎐
䎵䎻䎨䎓䎎䎋䎔䎖䎌 䎵䎻䎨䎓䎐䎋䎔䎕䎌
䎵䎻䎨䎔䎎䎋䎔䎙䎌 䎵䎻䎨䎔䎐䎋䎔䎘䎌
䎵䎻䎨䎕䎎䎋䎔䎜䎌 䎵䎻䎨䎕䎐䎋䎔䎛䎌
䎵䎻䎨䎖䎎䎋䎕䎖䎌 䎵䎻䎨䎖䎐䎋䎕䎕䎌
䎵䎻䎨䎦䎎䎋䎕䎔䎌 䎵䎻䎨䎦䎐䎋䎕䎓䎌
䎵䎻䎲䎓䎎䎋䎕䎌 䎵䎻䎲䎓䎐䎋䎔䎌
䎵䎻䎲䎔䎎䎋䎗䎌 䎵䎻䎲䎔䎐䎋䎖䎌
䎵䎻䎲䎕䎎䎋䎙䎌 䎵䎻䎲䎕䎐䎋䎘䎌
䎵䎻䎲䎖䎎䎋䎔䎔䎌 䎵䎻䎲䎖䎐䎋䎔䎓䎌
䎵䎻䎲䎦䎎䎋䎜䎌 䎵䎻䎲䎦䎐䎋䎛䎌
䎦䏒䏑䏗䏕䏒䏏䎃䎬䎦䎃䎋䎥䏘䏌䏏䏗䎃䏌䏑䎃䎯䎹䎧䎶䯵
䎷䎷䎯
䎵䎤䎃䎓䎃䎐䎃䎙
䎵䎥䎃䎓䎃䎐䎃䎙
䎵䎦䎃䎓䎃䎐䎃䎙
䎵䎧䎃䎓䎃䎐䎃䎙
䎯䎹䎧䎶䎐䎷䎲䎐䎳䎤䎵䎤䎯䎯䎨䎯
䎦䰘䎮䎃䎲䎸䎷
䎦䏒䏑䏗䏕䏒䏏䎃䎬䎦䎃䎋䎥䏘䏌䏏䏗䎃䏌䏑䎃䎯䎹䎧䎶䯵
䎷䎷䎯
䎵䎤䎃䎓䎃䎐䎃䎙
䎵䎥䎃䎓䎃䎐䎃䎙
䎵䎦䎃䎓䎃䎐䎃䎙
䎵䎧䎃䎓䎃䎐䎃䎙
䎯䎹䎧䎶䎐䎷䎲䎐䎳䎤䎵䎤䎯䎯䎨䎯
䎦䰘䎮䎃䎲䎸䎷
䎬䏑䏗䏈䏕䏑䏄䏏䎃䏆䏌䏕䏆䏘䏌䏗䏖
䎬䏑䏗䏈䏕䏑䏄䏏䎃䏆䏌䏕䏆䏘䏌䏗䏖
䎨䎹䎨䎱䎃䎧䎤䎷䎤
䎦䏒䏑䏗䏕䏒䏏䏏䏈䏕
䎵䎓䎏䎵䎔䎏䎪䎓䎏䎪䎔䎏
䎃䎚
䎃䎚
䎃䎚
䎃䎚
䎷䎤䎃䎓䎃䎐䎃䎙
䎷䎥䎃䎓䎃䎐䎃䎙
䎷䎦䎃䎓䎃䎐䎃䎙
䎷䎧䎃䎓䎃䎐䎃䎙
䎦䰘䎮䎃䎬䎱
䎧䎶䎜䎓䎦䎩䎖䎛䎖䎏䎦䎖䎛䎘
䎯䎹䎧䎶
䎃䎷䎷䎯䎃䎳䎤䎵䎤䎯䎯䎨䎯䎐䎷䎲䎐
䎵䎻䎨䎓䎎䎋䎔䎖䎌 䎵䎻䎨䎓䎐䎋䎔䎕䎌
䎵䎻䎨䎔䎎䎋䎔䎙䎌 䎵䎻䎨䎔䎐䎋䎔䎘䎌
䎵䎻䎨䎕䎎䯴䎔䎜䎌 䎵䎻䎨䎕䎐䎋䎔䎛䎌
䎵䎻䎨䎖䎎䎋䎕䎖䎌 䎵䎻䎨䎖䎐䎋䎕䎕䎌
䎵䎻䎨䎦䎎䎋䎕䎔䎌 䎵䎻䎨䎦䎐䎋䎕䎓䎌
䎦䏒䏑䏗䏕䏒䏏䎃䎬䎦䎃䎋䎥䏘䏌䏏䏗䎃䏌䏑䎃䎯䎹䎧䎶䯵
䎷䎷䎯
䎯䎹䎧䎶䎐䎷䎲䎐䎳䎤䎵䎤䎯䎯䎨䎯
䎍䎃䎱䎤䰆䎱䏒䏗䎃䎤䏙䏄䏌䏏䏄䏅䏏䏈 䎍䎃䎶䎨䎯䏂䎯䎹䎧䎶䎠䎫
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䎵䎤䎃䎓䎃䎐䎃䎙
䎵䎥䎃䎓䎃䎐䎃䎙
䎵䎦䎃䎓䎃䎐䎃䎙
䎵䎧䎃䎓䎃䎐䎃䎙
䎬䏑䏗䏈䏕䏑䏄䏏䎃䏆䏌䏕䏆䏘䏌䏗䏖
䎦䰘䎮䎃䎲䎸䎷
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4-3. Backlight CN-AD
Using connector : BHR-03VS-1 : White (JST)
: BHR-03VL-1 : Yellow (JST)
Corresponding connector : SM02(8.0)B-BHS-1R-TB (JST)
Pin no. symbol Function Color of FL cable
1
Power supply for lamp (High voltage side) Pink Orange
HIGH
2
3
Power supply for lamp (Low voltage side) Blue Gray
LOW
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CN-A/C CN-B/D
Color of connector White Yellow
5. Absolute Maximum Ratings
Parameter Symbol Condition Terminal Symbol Ratings Unit Remark
Supply voltage Vcc Ta=25 Vcc -0.3 〜 + 6.0
VI1 Ta=25 LVDS input signal -0.3 +3.6
V
Ta=25 SELLVDS -0.3 〜 + 3.6
I2
Lamp input voltage V
Storage temperature T
Operating temperature T
HIGH
Ambient
STG
Ambient
OPA
V
(CN-AD) 0 〜 +3000 Vrms 【Note1,2】
HIGH
-25 + 60 0 + 60
(Panel surface)
Note1Humidity90%RH Max. ( Ta40 ) Maximum wet-bulb temperature at 39 or less. ( Ta>40 )
Note1
V V
℃ ℃
Input voltage
Note1】 【Note1
No condensation. Note2Do not keep the high voltage when the lamp does not work.
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6. Electrical Characteristics
6-1. TFT-LCD panel driving Ta=+25℃
Parameter Symbol Min. Typ. Max. Unit Remark
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Supply voltage VCC +4.75 +5.0 +5.25 V
Current dissipation Vcc=5.0V ICC
Input voltage for LVDS LVDS signal VL 0
Permissive input ripple voltage VRP
Differential input threshold
High
V
TH
(900) (1500) mA
2.4 V
100 mVp-p Vcc=+3.3V
VCM +100
mV V
voltage
VCM –100
Low
High VIH 2.2
Low V
Input current
High IOH
Low I
Terminal resistor
V
TL
0
IL
-10
OL
R
T
100
3.3 V Input voltage
0.8 V
400
+10
Ω
mV
μA
μA
Note1 VCM : Common mode voltage of LVDS driver. 【Note2 SELLVDS
【Note3】 【Note4】
=+1.2V
CM
Note1】 【Note2
V12=+3.3V
Note2
V12=0V
Note2
Differential
input
Note3On-off condition for supply voltage Vcc-dip conditions
4.75V
0.5V 0.5V
t3
t4
Vth
td
Vcc
data
0.5V
4.75V
t1 t2
0t120ms 0t240ms 1) Vth Vcc Vmin 0t340ms 0.5st4 td 20ms
2) Vcc<Vth
Vcc-dip conditions should also follow the
on-off conditions for supply voltage.
Note4 Current dissipation
Standard value: 16-gray-bar pattern
RGB
GS0
RGB GS16
RGB GS32
(Measurement condition Vcc=+5.0V, fck=54MHz, Ta=25℃) Refer to Chapter 8 for RGB each gray scale
Maximum value: All white display
(Measurement condition Vcc=+4.75V, fck=54MHz, Ta=25℃)
....
Vmin
Vcc
RGB
GS224
Vth4.5V Vmin:4.75V
RGB
GS240
11
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r
6-2. Backlight
The back light system is an edge-lighting type with 4 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.
Parameter Symbol Min. Typ. Max. Unit Remark
Lamp current range IL 4.0 7.0 8.0 mArms
Lamp voltage VL
Lamp power consumption PL Lamp frequency FL 40 50 60 kHz Kick-off voltage Note4
Vs
Note1Lamp current is measured by high frequency current measurement equipment connected to V
circuit showed below.
CN-A䌾D䋺1pin
Module
CN-A䌾D䋺2pin
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Note1
750
5.25
1500 1600
(T.B.D)
(T.B.D)
Inverter
V 〜
output voltage
A 〜
Vrms
W
Vrms
=7.0mArms Ta=25
I
L
【Note2】 【Note3】
Inverter output voltage
Transformer output voltage
Ballast capacitor
Inverte
Transformer
output voltage
Ta=0
at
LOW
Note2Referential data per one CCFT by calculation ( I
The data don’t include loss at inverter. (I
=7.0 mArms)
L
× VL ) .
L
Note3Lamp frequency of inverter may produce interference with horizontal synchronous frequency, and this
may cause horizontal beat on the display. Therefore, adjust lamp frequency, and keep inverter as far as from module or use electronic shielding between inverter and module to avoid interference.
Note4This is transformer output voltage at 12pF for the ballast capacitor of a AS114(NF corporation).
The kick-off voltage may rise up on the user set, please decide the open output voltage by checking not to occur lighting failure under operation state. The open output voltage of the inverter shall be maintained for more than 1s; otherwise the lamp may not be turned on. Moreover, the circuit composition shall not be decreased until both lamps light.
Note5The lamp is expendable supplies. The lifetime of the lamp is 50,000 hours (reference value) in the
following condition but this numerical value is not guaranteed. Above value is applicable when lamp is placed horizontally.
Lamp life time is defined that it applied either or under this condition (Continuous turning on at Ta=25
o
C, IL=7.0Arms)
Brightness becomes 50% of the original value under standard condition. Kick-off voltage at Ta=0
o
C exceeds maximum value, (1,600)Vrms.
(Lamp life time may vary if lamp is in portrait position due to the change of mercury density inside
the lamp.)
Lamp life time shortens according to the state of mounting and use.
In case of operating under lower temp environment, the lamp exhaustion is accelerated
and the brightness becomes lower. (Continuous operating for around 1 month under lower temp condition may reduce the brightness to half of the original brightness.) In case of such usage under lower temp environment, periodical lamp exchange is recommended.
Note6】・The performance of the backlight, for example life time 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 occur. When you confirm it, the module should be operated in the
same condition as it is installed in your instrument. Be sure to use a back light power supply with the safety protection circuit such as the detection circuit
for the excess voltage, excess current and or electric discharge waveform.
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Be sure to use the detect circuit by which one side of the CCFT lamps can be controlled independently.
Otherwise, when one side of the CCFT is open, the excess current may possibly be applied to the other
side of the lamp.
It is required to have the inverter designed so that to allow the impedance deviation of the four CCFT
lamps and the capacity deviation of ballast capacitor.
Under the environment of 10 lx or less, lamp may not turn on or it may take some time to turn on.
7. Timing characteristics of input signals
7-1. Timing characteristics
Parameter Symbol Min. Typ. Max. Unit Remark
Clock signal Frequency 1/Tc 40 54 70 MHz
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ENAB signal
Horizontal period (High) THd 640 640 640 clock
Vertical period (High) TVd 1024 1024 1024 line
Note1In case of using the long vertical period, the deterioration of display quality, flicker etc. may occur. Note2The horizontal display position is determined by ENAB signal and the input data corresponding
to the rising edge of DCLK is displayed at the left end of the active area.
Regarding the vertical display position, the data starting form following ENAB rising is displayed
at the top of the active area in case of no rising ENAB more than 2003clk from ENAB rising.
ENAB
TH
670 844 929 clock Horizontal period TH
12.3 15.6 - μs
1031 1066 2043 line Vertical period TV
13.1 16.7 20.5 ms
THd
Note2
Note1】 【Note2
O side
(R1,G1,B1)
E side
(R2,G2,B2)
ENAB
1279
1280
Tc
13
24 1280
12
TVd
TV
1279
1024 1023
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7-2. Input Data Signals and Display Position on the screen
Display position of input data (H, V)
R0 G0 B0 RE GE BE
D0(1,1) DE(2,1)
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Two pixels data is sampled at the same time.
DO (odd 1 data): RO0RO7, GO0GO7, BO0BO7 DE (even 1 data): RE0RE7, GE0GE7, BE0BE7
UP
D0(1,1)DE(2,1)D0(3,1)
D0(1,2) DE(2,2)
D0(1,3)
D0(1,1024)
DE(1280,1)
DE(1280,1024)
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8. Input Signals, Basic Display Colors and Gray Scale of Each Color
8-1. 8bit input
Colors & Gray
Gray scale Scale
Black
Blue
Basic Color Gray Scale of Red Gray Scale of Green Gray Scale of Blue
Green
Cyan
Red
Magenta
Yellow
White
Black
×
Darker
×
Ø
Brighter
Ø
Red
Black
×
Darker
×
Ø
Brighter
Ø
Green
Black
×
Darker
×
Ø
Brighter
Ø
Blue
R0 R1 R2 R3 R4 R5 R6 R7 G0 G1 G2 G3 G4 G5 G6 G7 B0 B1 B2 B3 B4 B5 B6 B7
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1
1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0
1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
ÈÈ È È
ÈÈ È È
253 1 0 0 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 254 1 1 0 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 255 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0
ÈÈ È È
ÈÈ È È
253 0 0 0 0 0 0 0 0 1 0 0 1 1 1 1 1 0 0 0 0 0 0 0 0 254 0 0 0 0 0 0 0 0 1 1 0 1 1 1 1 1 0 0 0 0 0 0 0 0 255 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 2 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0
ÈÈ È È
ÈÈ È È
253 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 1 1 1 1 1 254 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 0 1 1 1 1 1 255 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
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Data signal
0 : Low level voltage, 1 : High level voltage.
Each basic color can be displayed in 256 gray scales of red, 256 gray scales of green, and 256 gray scales of blue
from 8 bit data signals. According to the combination of total 24 bit data signals, 16,777,216 color display can be
achieved on the screen.
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)
d
9. Optical Characteristics
Ta=25℃, Vcc =+3.3V
Parameter Symbol Condition Min. Typ. Max. Unit Remark
Viewing
angle
range
Horizontal
Vertical
All direction
θ21,θ22 θ11,θ12
θ
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85
CR10
85
80
Deg.
Deg.
Deg.
Contrast ratio
Response Time
CRn Optimum
τr+τd
(BlackWhiteBlack)
Chromaticity of
White
Chromaticity of
Red
Chromaticity of
Green
Chromaticity of
Blue
Luminance of white Y
x
y
x
y
x
y
x
y
LI
White Uniformity δw
400 900
Note2,4
viewing
angle
12
0.283 0.313 0.343
0.299 0.329 0.359
(0.610) (0.640) (0.670)
(0.319) (0.349) (0.379)
θ=0°
(0.253) (0.283) (0.313)
(0.568) (0.598) (0.628)
(0.112) (0.142) (0.172)
(0.041) (0.071) (0.101)
210 300
1.43
ms
cd/m2
Note3(Condition2),4,5
Note4】
Note4】
Note5
The measurement shall be executed 30 minutes after lighting at rating.(IL=7.0mArms)
The optical characteristics shall be measured in a dark room or equivalent state with the method shown
in Fig.2 below.
Photodetector(EZ-CONTRAST
Center of screen (=0°
TFT-LCD-Modul
Fig2-1 Viewing angle measurement method
400mm
Field=1°
Center of screen(=0°
TFT-LCD-Module
Fig2-2 Luminance/Contrast ratio/Response time/Chromaticity
Fig2 Optical characteristics measurement method
Photodetector
Response Time (BM-5A)
Contrast ratio/Luminance/
Chromaticity (SR-3)
measurement metho
16
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Note1Definitions of viewing angle range:
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Normal line
T22
T12
T11
T21
Note2Definition of contrast ratio:
The contrast ratio is defined as the following.
Contrast Ratio (CR)
Note3Definition 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".
Photodetector Output
100%
90%
10%
(Relative Value)
0%
Luminance (brightness) with all pixels white
Luminance (brightness) with all pixels black
White White Black
6o’clock direction
Wr Wd
Note4This shall be measured at center of the screen. Note5Definition of white uniformity:
White uniformity is defined as the following with nine measurements (①〜⑨).
192 640
Maximum luminance ①〜⑨)
δW =
Minimum luminance ①〜⑨)
Time
1088
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Pixels
154
512
0
87
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10. Display dignity
The item concerning externals and the display dignity is decided by the shipment inspection standard book..
11. 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 polarizer is easily damaged, pay attention not to scratch it.
Blow away dust on the polarizer with antistatic sensitive. It is recommended to peel off softly using the adhesive tape when soil or finger oil is stuck to the polarizer.
When unavoidable, wipe off carefully with a cloth for wiping lenses. d) Wipe off water drop immediately. Long contact with water may cause discoloration or spots. 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 set the human earth
when handling. Observe all other precautionary requirements in handling components.
h) Since there is a circuit board in the module back, stress is not added at the time of a design assembly.
If stress is added, there is a possibility that circuit parts may be damaged.
i) Protection film is attached to the module surface to prevent it from being scratched .
Peel the film off slowly, just before the use, with strict attention to electrostatic charges.
Blow off 'dust' on the polarizer by using ionized nitrogen. j) The polarizer surface on the panel is treated with Anti-Glare for low reflection. In case of attaching protective board over the LCD, be careful about the optical interface fringe etc. which degrades
display quality.
k) Connect GND to 4 place of mounting holes to stabilize against EMI and external noise.
l) There are high voltage portions on the backlight and very dangerous. Careless touch may lead to electrical shock.
When exchange lamps or service, turn off the power without fail.
m) When handling LCD modules and assembling them into cabinets, please avoid that long-terms 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 modules.
n) Please consider dewy consideration prevention when using it in high temperature and high humidity
environment.
o) Cold cathode fluorescent lamp in LCD panel contains a small amount of mercury, please follow local
ordinances or regulations for disposal.
p) Be careful of a back light lead not to pull by force at the time of the wiring to an inverter, or line processing. q) When install LCD modules in the cabinet, please tighten with “torque = max 0.343 N・m (max 3.5kgf・cm).
Be sure to confirm it in the same condition as it is installed in your instrument.
r) Liquid crystal contained in the panel may leak if the LCD is broken. Rinse it as soon as possible if it gets
inside your eye or mouth by mistake.
s) Notice : Never dismantle the module , because it will cause failure.
Moreover, please do not peel off and do not cut the tapes pasted to the product.
However, the tape fixed panel protection film is excluded.
t) Be careful when using it for long time with fixed pattern display as it may cause afterimage.
(Please use a screen saver etc., in order to avoid an afterimage.)
u) Adjusting volume has been set optimally before shipment, so do not change any adjusted value.
If adjusted value is changed, the specification may not be satisfied.
v) If a minute particle enters in the module and adheres to an optical material, it may cause display
non-uniformity issue, etc. Therefore, fine-pitch filters have to be installed to cooling and inhalation hole
if you intend to install a fan.
w) The la
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mp used for this product is very sensitive to the temperature.
Luminance decreases rapidly when it is used for a long time or repeatedly under the environment of the low
temperature or the module is being cooled.
Please avoid the continuous or repeating use of it under such an environment.
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blow. It is undesirable to wipe off because a polarizer is
2
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It may decrease up to 50% of the initial luminance in about one month under the low temperature environment.
Please consult our company when it is used under the environment like the above mentioned.
12. Packing form
TBD
13Reliability test items
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No Test item Conditions
1
High temperature storage test Ta = 60 240h
2
Low temperature storage test Ta = -25 240h
3 High temperature
& high humidity operation test
4
High temperature operation test
5
Low temperature operation test Ta = 0℃ 240h
Ta = 40 ; 90%RH 240h
(No condensation)
Ta = 60 240h
6 Vibration test Waveform : Sine wave
Frequency : 1057Hz/Vibration width (one side) : 0.15mm
: 58〜500Hz/Gravity : 19.6m/s
Sweep time : 11minutes
Test period : 3 hours
(1 hour for each direction of X,Y,Z)
7 Shock test
Max. gravity : 490m/s2
Pulse width : 11ms, sine half-wave Direction : ±X, ±Y, ±Z,
once for each direction.
2
Note
8
Electrostatic discharge test
(non- operating)
Contact discharge (150pF 330Ω):
non-operation=±10kV, operation=±8kV
Aerial discharge (150pF 330Ω):
non-operation=±20kV, operation=±15kV
Note A gap of panel shall not occur by vibration or the shock.
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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T.B.D.
T.B.D.
14. Others
14-1. Lot No. Label
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14-2. Packing box Label
14-3. The chemical ozone depleting substance is not used.
14-4. Fluorescent lamp in LCD panel contains a small amount of mercury, please follow local ordinances or
regulations for disposal. (It marks on the back of the module.)
FLUORESCENT LAMPS IN THIS PRODUCT CONTAIN MERCURY AND MUST BE
DISPOSED OF ACCORDING TO LOCAL ORDINANCE,STATE OR FEDERAL LAWS.
この製品の内部の蛍光管には水銀が含まれていますので,地方自治体の条例・州
法または連邦法に従って廃棄してください。
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14-5. If any problem occurs in relation to the description of this specification, it shall be resolved
through discussion with spirit of cooperation.
The figure left below (cardboard box recycling symbol mark) is written to the packing box..
And, the figure right below is written to the packing box of the settlement for the RoHS restriction.
R.C.RoHS Compliancemeans it suits the RoHS directive.
This LCD module is compliant with RoHS Directive.
Cardboard box
Recycling symbol mark
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+PVGTPCN7UG1PN[
Mark for RoHS directive
14-6. Recommended inverter
An optical specification of this module uses the following inverters.
Model : LQ0DZC5016 Minimum order quantity : 10pcs
14-7. Fluorescent tube for exchange ASSY
Fluorescent tube ASSY for the exchange that suits this LCD unit supplies for value by an upper and lower
set as a material for maintenance.
Model T.B.D :upper and lower set Minimum order quantity T.B.D
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15Range of storage temperature and humidity environmental condition Temperature 0〜40℃ Relative humidity 90 and below Note)・Please manage as average value of the storage temperature and humidity environment
referring to the following condition.
Summer 20〜35℃ 85 and below, Winter 5〜15℃ 85 and below
Please manage within 240 hours in total at the time kept under the environment of 40
90%RH.
Direct sunlight
Please keep it in the state of wrapping or the darkroom so that direct sunshine should not strike
directly into the product.
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Ambient atmosphere
Please do not keep it in the place with the danger of the generation of the causticity gas and the
volatile solvent.
Dewy condensation prevention
Please do not put the wrapping box directly on the floor, and keep it on palette or rack to avoid
dewy condensation.
Moreover, please put it in a constant direction correctly to improve ventilation under the palette.
Please separate from the wall in the storage warehouse and keep it. Please pay attention that ventilation is improved, and set up the ventilator etc. in the warehouse. Please manage so that there is no rapid temperature change more than natural environment.
Storage period
Please keep within one year under the above-mentioned storage condition.
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T.B.D.
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T
Fig.3Packing form
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