SHARP LK520D1LH08 Specification

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RODUCT SPECIFICATIONS
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AVC Liquid Crystal Displays Group
LK520D1LH08
Spec. Issue Date: June 30, 2007
No: LD-20125-1
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RECORDS OF REVISION
MODEL No. : LK520D1LH08
SPEC No. : LD-20125-1
REVISED
DATE NO. PAGE SUMMARY
No.
NOTE
2007.04.12 LD-20125
2007.09.28 LD-20125-1
A
P26 Changed Timing
characteristics
1st Issu
2nd Issue
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1. Application
This specification applies to the color 52.0” TFT-LCD module LK520D1LH08.
* These technical literature are proprietary products 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.
* 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 that does not comply with
the instructions and the precautions specified in these specification.
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LD- 20125-1
* 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, inverter circuit and back light
system etc. Graphics and texts can be displayed on a 1920×RGB×1080 dots panel with
using LVDS (Low Voltage Differential Signaling) to interface, +12V of DC supply voltages.
This module not includes the DC/AC inverter to dri ve the CCFT.
And in order to improve the response time of LCD, this module applies the Over Shoot driving (O/S driving) technology for the control circuit .In the O/S driving technology, signals are being applied to the Liquid Crystal according to a pre-fixed process as an image signal of the present frame when a difference is found between image signal of the previous frame and that of the current frame after comparing them.
With this technology, image signals can be set so that liquid crystal response completes within one frame. As a result, motion blur reduces and clearer display performance can be realized.
one billion
colors by
3. Mechanical Specifications
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4. Input Terminals
4-1. TFT panel driving
CN1 (Interface signals) (Shown in Fig.1-2)
Using connector : FI-RE41S-HF (Japan Aviation Electronics Ind. , Ltd.) Mating connector : FI-RE41HL,FI-R41H (Japan Aviation Electronics Ind. , Ltd.)
Mating LVDS transmitter :THC63LVDM83R(THine) or equivalent device
Pin No. Symbol Function Remark
1 2 3 4 5 6 7 8
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30
31 32 33 34 35 36 37 38 39 40 41
[note] GND of a liquid crystal panel drive part has connected with a module chassis.
[note] L,”0”: Low level voltage (GND) H,”1”: High level voltage(3.3V)
[note]
GND
AIN0- Aport (-)LVDS CH0 differential data input LVDS
AIN0+ Aport (+)LVDS CH0 differential data input LVDS
AIN1- Aport (-)LVDS CH1 differential data input LVDS
AIN1+ Aport (+)LVDS CH1 differential data input LVDS
AIN2- Aport (-)LVDS CH2 differential data input LVDS
AIN2+ Aport (+)LVDS CH2 differential data input
GND GND
ACK- Aport LVDS Clock signal(-) ACK+ Aport LVDS Clock signal(+) LVDS AIN3- Aport (-)LVDS CH3 differential data input LVDS
AIN3+ Aport (+)LVDS CH3 differential data input LVDS
NC It is required to set non-connection (OPEN) NC It is required to set non-connection (OPEN)
GND GND
BIN0- Bport (-)LVDS CH0 differential data input LVDS
BIN0+ Bport (+)LVDS CH0 differential data input LVDS
BIN1- Bport (-)LVDS CH1 differential data input LVDS
BIN1+ Bport (+)LVDS CH1 differential data input LVDS
BIN2- Bport (-)LVDS CH2 differential data input LVDS
BIN2+ Bport (+)LVDS CH2 differential data input LVDS
GND GND
BCK- Bport LVDS Clock signal(-) LVDS BCK+ Bport LVDS Clock signal(+) LVDS BIN3- Bport (-)LVDS CH3 differential data input LVDS
BIN3+ Bport (+)LVDS CH3 differential data input LVDS
NC It is required to set non-connection (OPEN) NC It is required to set non-connection (OPEN)
GND GND
SELLVDS Select LVDS data order [Note 1]
R/L Horizontal shift direction[Note 2]
U/D Vertical shift direction [Note 2]
VBRT Inverter Brightness Control (Analog Voltage:0-3.3V) [Note 4]
Frame1 Frame frequency setting H:60Hz, L:50Hz
Reserved It is required to set non-connection (OPEN)
TEMP3 Data3 of panel surface temperature [Note3] TEMP2 Data2 of panel surface temperature [Note3] TEMP1 Data1 of panel surface temperature [Note3]
VON Inverter ON/OFF setting H:ON, L:OFF [Note 4]
O/Sset O/S operation setting H:O/S_ON, L:O/S_OFF
NC It is required to set non-connection (OPEN)
In case of O/S set setting ”0”(O/S_OFF), it should be set the Temp1~3 to “0”.
GND
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LVDS
LVDS
10kΩ Pull up :3.3V 10kΩ Pull Down :GND 10kΩ Pull Down :GND
10kΩ Pull Down :GND
10kΩ Pull Down :GND 10kΩ Pull Down :GND 10kΩ Pull Down :GND 10kΩ Pull Down :GND 10kΩ Pull Down :GND
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CN2(+12V
Using connector :
Mating connector :
:
Pin No. Symbol Function Remark
1 VCC 2 VCC 3 VCC 4 VCC 5 VCC 6 7 8
9 10 11 Reserved 12 Reserved 13 Reserved 14 Reserved 15 Reserved 16 Reserved 17 Reserved 18 Reserved 19 Reserved 20 Reserved
DC power supply Shown in Fig.1-2)
(J.S.T. Mfg Co.,Ltd.)
+12V Power Supply +12V Power Supply +12V Power Supply +12V Power Supply
+12V Power Supply GND GND GND GND GND GND GND GND GND GND
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
It is required to set non-connection (OPEN)
SM20B-SHLDS-G-TF(LF)(SN) SHLDP-20V-S-1 SSHL-003GA1-P0.2
(connector)(J.S.T. Mfg Co.,Ltd.)
(Terminal)(J.S.T. Mfg Co.,Ltd.
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[Note 2] LVDS Data order
SELLVDS
Data
L(GND) or Open
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LD- 20125-4
H(3.3V)
TA0
TA1 TA2 TA3
TA4 TA5 TA6
TB0 TB1 TB2 TB3 TB4 TB5 TB6 TC0 TC1 TC2 TC3 TC4 NA
TC5 NA
TC6 TD0
TD1 TD2 TD3
TD4 TD5 TD6
TE0 TE1 TE2 TE3 TE4 TE5 TE6
R2
R3
R4
R5
R6
R7
G2
G3
G4
G5
G6
G7
B2
B3
B4
B5
B6
B7
DE(*)
R8
R9(MSB)
G8
G9(MSB)
B8
B9(MSB)
NA
R0(LSB)
R1
G0(LSB)
G1
B0(LSB)
B1
NA
R4 R5 R6 R7 R8 R9(MSB) G4 G5 G6 G7 G8 G9(MSB) B4 B5 B6 B7 B8 B9(MSB) NA
NA DE(*) R2
R3 G2 G3 B2 B3 N/A R0(LSB) R1 G0(LSB) G1 B0(LSB) B1
N/A NA: Not Available (*)Since the display position is prescribed by the rise of DE(Display Enable)signal, please do not fix DE signal during operation at ”High”.
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LD- 20125-5
SELLVDS= Low (GND) or OPEN
ACK+,BCK+
,BCK
,BIN2
,BIN3
R3
G4
B5
R9
R2
G3
B4
R8
ACK
AIN0+,BIN0+ AIN0–,BIN0
AIN1+,BIN1+
AIN1–,BIN1
AIN2+,BIN2+
AIN2
AIN3+,BIN3+
AIN3
A
G2
B3
DE
NA
1 cycle
R7
B2
NA NA
B9 B8
R6
G7
R5
G6
B7
G9
R4
G5
B6
G8
R3
G4
B5
R9
R2
G3
B4
R8
G2
B3
DE
NA
AIN4+,BIN4+
AIN4–,BIN4
SELLVDS= High (3.3V)
ACK+,BCK+
ACK
,BCK
AIN0+,BIN0+
AIN0
,BIN0
AIN1+,BIN1+
,BIN1
,BIN2
,BIN3
AIN1
AIN2+,BIN2+
AIN2
AIN3+,BIN3+ AIN3
R1
R5
G6
B7
R3
R0
R4
G5
B6
R2
NA
G4
B5
DE
NA
B1
R9
B4
NA
B3
B0
R8
G9
NA
B2
G1
1 cycle
R7
G8
B9
G3
G0
R6
G7
B8
G2
R1
R5
G6
B7
R3
R0
R4
G5
B6
R2
NA
G4
B5
DE
NA
AIN4+,BIN4+
AIN4
,BIN4
R1
R0
NA
B1
B0
G1
G0
R1
R0
DE: Display Enable, NA: Not Available (Fixed Low)
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NA
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