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RECORDS OF REVISION
MODEL No. : LK315T3LZ93
SPEC No. : LD-19Z12
REVISED
DATE NO. PAGE SUMMARY NOTE
No.
2007.12.20 LD-19Z12 1st Issue




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LD-19Z12-1

1. Application
This specification applies to the color 31.5" Wide XGA TFT-LCD module LK315T3LZ93.

* These specification sheets 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 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, inverter circuit and back light
system etc. Graphics and texts can be displayed on a 1366 RGB 768 dots panel with 16,777,216 colors by
using LVDS (Low Voltage Differential Signaling) to interface, +12V of DC supply voltages.
This module also includes the DC/AC inverter to drive the CCFT. (+24V of DC supply voltage)
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.
By using the captioned process, the image signals of this LCD module are being set so that image response can be
completed within one frame, as a result, image blur can be improved and clear image performance can be realized.



3. Mechanical Specifications
Parameter Specifications Unit
80.039 Diagonal cm
Display size
31.5 Diagonal inch
Active area 697.69 (H) x 392.26 (V) mm
1366 (H) x 768 (V)
Pixel Format pixel
1pixel = R + G + B dot
Pixel pitch 0.51075(H) x 0.51075 (V) mm
Pixel configuration R,G, B vertical stripe
Display mode Normally black
Unit Outline Dimensions (*1) 760.0(W) x 450.0(H) x 50.1(D) mm
Mass 6.5 0.5 kg
Anti glare
Surface treatment
Hard coating: 3H
(*1) Outline dimensions are shown in Fig.1




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LD-19Z12-2

4. Input Terminals
4-1. TFT panel driving
CN1 (Interface signals and +12V DC power supply) (Shown in Fig.1)
Using connector FI-X30SSL-HF (Japan Aviation Electronics Ind. , Ltd.) or equivalent
Mating connector FI-X30H/FI-X30HL, FI-X30C/FI-X30C2L
or FI-X30M (Japan Aviation Electronics Ind. , Ltd.)
Mating LVDS transmitter THC63LVDM83R or equivalent device
Pin No. Symbol Function Remark
1 VCC +12V Power Supply
2 VCC +12V Power Supply
3 VCC +12V Power Supply
4 VCC +12V Power Supply
5 GND GND
6 GND GND
7 GND GND
8 GND GND

Default : Pull down
9 SELLVDS Select LVDS data order Note 1
(L:GND)
[Note 2]
10 Reserved Not Available
11 GND Ground
12 RIN0- Negative (-) LVDS differential data input LVDS
13 RIN0+ Positive (+) LVDS differential data input LVDS
14 GND Ground
15 RIN1- Negative (-) LVDS differential data input LVDS
16 RIN1+ Positive (+) LVDS differential data input LVDS
17 GND Ground
18 RIN2- Negative (-) LVDS differential data input LVDS
19 RIN2+ Positive (+) LVDS differential data input LVDS
20 GND Ground
21 CLKIN- Clock Signal(-) LVDS
22 CLKIN+ Clock Signal(+) LVDS
23 GND Ground
24 RIN3- Negative (-) LVDS differential data input LVDS
25 RIN3+ Positive (+) LVDS differential data input LVDS
26 GND Ground
27 Reserved Not Available
28 Reserved Not Available
29 Reserved Not Available
30 Reserved Not Available
[Note]GND of a liquid crystal panel drive part has connected with a module chassis.




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LD-19Z12-3

[Note 1]SELLVDS

Transmitter SELLVDS
Pin No Data =L(GND) or Open =H(3.3V)
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
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."

[Note 2]The equivalent circuit figure of the terminal


Terminal
1.0K ohm
10K ohm




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LD-19Z12-4

Interface block diagram
Corresponding Transmitter: THC63LVDM83R (THine) or equivalent device

side
(TFT - LCD side)
8 Rx1IN0+(13)
G0 G7
8
8 Rx1IN0-(12) R0 R7
R0 R7
Rx1IN1+(16) 8
8 G0 G7
B0 B7
LVDS 8
Rx1IN1-(15) TTL B0 B7




Internal circuits
Rx1IN2+(19)
Rx1IN2-(18)
TTL
LVDS
Rx1IN3+(25)
ENAB
Rx1IN3-(24) ENAB

Rx1CLKIN+(22)
controller
CLK PLL PLL
Rx1CLKIN-(21) CK




Block Diagram (LCD Module)




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LD-19Z12-5

SELLVDS= High (3.3V)
1 cycle


CKAIN+


CKAIN-



RIN0+ R3 R2 G2 R7 R6 R5 R4 R3 R2 G2

RIN0-


RIN1+ G4 G3 B3 B2 G7 G6 G5 G4 G3 B3
RIN1-



B5 B4 DE (Vsyc) (Hsyc) B7 B6 B5 B4 DE
RIN2+
RIN2-


RIN3+ R1 R0 NA B1 B0 G1 G0 R1 R0 NA
RIN3



SELLVDS= Low(GND) or Open
1 cycle

CKIN+


CKIN-



RIN0+ R1 R0 G0 R5 R4 R3 R2 R1 R0 G0

RIN0-


RIN1+
G2 G1 B1 B0 G5 G4 G3 G2 G1 B1
RIN1-



RIN2+ B3 B2 DE (Vsyc) (Hsyc) B5 B4 B3 B2 DE

RIN2-


RIN3+ R7 R6 NA B7 B6 G7 G6 R7 R6 NA
RIN3-


DE: Display Enable, Vsyc: Vertical Sync, Hsyc: Horizontal Sync
NA: Not Available (Fixed Low)




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LD-19Z12-6


4-2. Backlight driving
CN101 (Inverter control)
Using connector: B14B-PH-SM3-TB(JST)
Mating connector: PHR-14 (JST)
Pin No. Symbol Function Default(OPEN) Input Impedance Remark
1 VINV +24V -
2 VINV +24V -
3 VINV +24V -
4 VINV +24V -
5 VINV +24V -
6 GND -
7 GND -
8 GND -
9 GND -
10 GND -
11 Reserved OPEN
12 Von/off Inverter ON/OFF 3.3V : pull up 22k ohm [Note 1]
Inverter ON
13 Pdim Brightness Control 2 3.3V : pull up 100k ohm [Note 3]
Duty 100%
14 Pdim_sel PWM selection 3.3V : pull up 60k ohm [Note 2]
Selected Analog PWM

[Note 1] Inverter ON/OFF
Input voltage Function
3.3V Inverter: ON (Default)
0V Inverter: OFF

[Note 2] PWM selection
Pin No.14 is used for the selection of dimming control for Pdim pin (Pin No.13).
Input voltage Pdim
0V Pulse PWM
3.3V Analog PWM

[Note 3]Brightness Control (Pulse PWM Dimming)
1. Pulse PWM Dimming
Pin No.13 is used for the control of the PWM duty with input pulse from 100Hz to 350Hz.
Ta=25
Pulse signal Function
MIN TYP MAX
DUTY(TON/T) 30%: Dark - 100%: Bright
100 165 350




High 2.3~3.3V ow 0~1.0V




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LD-19Z12-7

[Reference] The characteristic of the pulse PWM duty vs dimming level
DUTY(TON/T) Dimming level
(luminance ratio) Input Condition
30% 18% Pulse Signal=165Hz
40% 29%
Ta=25
50% 41%
60% 54%
70% 65%
80% 77%
90% 88%
100% 100%
(*)Minimum dimming level defined according to acceptable uniformity.
Without this limitation, minimum acceptable duty cycle is 30%.


2. Analog PWM Dimming
Pin No.13 is used for the dimming control with input voltage from 0 to 3.3V.
(when Analog PWM is selected with Pin 14.) Ta=25
MIN TYP MAX Function
Input voltage [V] 0 <-> 3.3 0V: Dark - 3.3V: Bright
Brightness ratio % 20 <-> 100
[Note] PWM frequency : 165r10Hz

4-3. The back light system characteristics
The back light system is direct type with 12 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.
Item Symbol Min. Typ. Max. Unit Remarks
Life time TL 50000 60000 - Hour [Note]
[Note] Lamp life time is defined as the time when brightness becomes 50% of the original value in the continuous
operation under the condition of Ta=25 and brightness control(VBRT=3.3V).
This definition is valid with the condition that the module is placed horizontally. (The wide side of the
module should be parallel to the ground.)


5. Absolute Maximum Ratings
Parameter Symbol Condition Ratings Unit Remark
Input voltage
VI Ta=25 -0.3 ~ 5.0 V [Note 1]
(for Control)
+12V supply voltage
VCC Ta=25 0 ~ + 15 V
(for Control)
Input voltage VBRT
Ta=25 0 ~ + 6.0 V
(for Inverter) VON
+24V supply voltage
VINV Ta=25 0 ~ +29 V
(for Inverter)
Storage temperature Tstg - -25 ~ +60
[Note 2]
Operation temperature
Topa - 0 ~ +50
(Ambient)
[Note 1]SELLVDS
[Note 2]Humidity 95%RH Max.(Ta 40 )
Maximum wet-bulb temperature at 39 or less.(Ta>40 )
No condensation.




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LD-19Z12-8

6. Electrical Characteristics
6-1. Control circuit driving Ta=25
Parameter Symbol Min. Typ. Max. Uniit Remark
Supply voltage Vcc +11.4 +12.0 +12.6 V [Note 1]
+12V supply Current dissipation Icc - 340 (600) mA [Note 2]
voltage IRUSH - 2.1- - A [Note 7]
TRUSH - 0.4- - ms [Note 7]
Permissible input ripple voltage VRP - - 100 mVP-P Vcc = +12.0V
Differential input High VTH - - 100 mV VCM = +1.2V
threshold voltage Low VTL -100 - - mV [Note 4]
Input Low voltage VIL 0 - 0.7 V
[Note 3]
Input High voltage VIH 2.6 - 3.3 V
VI = 0V
Input leak current (Low) IIL - - 400