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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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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