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RECORDS OF REVISION
MODEL No : LQ315T3LZ23
SPEC No : LD-17408
Date Revised No. PAGE SUMMARY NOTE
2005.05.10 - - 1st Issue
2005.05.17 A P.10 Changed the sentence 2nd Issue
(Reliability and lifetime ~ -> Display works ~)
P.12 Deleted the sentence
(When vertical period is very long, ~)
Added the vertical frequency




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LD- 17408-1
1. Application
This specification applies to the color TFT-LCD module LQ315T3LZ23.

* 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 which 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, +5V of DC supply voltages and supply voltage for
back light.
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 O/S (over shoot) 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
Display size 80.04 Diagonal cm
31.5 Diagonal inch
Active area 697.69 (H) x 392.26 (V) mm
Pixel Format 1366 (H) x 768 (V)
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 *1 780.0(W) x 450.0(H) x Max 48.0(D) mm
Mass 6.4 +/- 0.3 kg
Surface treatment Anti-glare, low reflection coating
Hard coating: 2H
Haze: 23 +/- 5%

(*1 )Outline dimensions are shown in Fig.1




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LD- 17408-2
4. Input Terminals
4-1. TFT panel driving
CN1 (Interface signals and +5V DC power supply) (Shown in Fig.1)
Using connector FI-X30SSL-HF (Japan Aviation Electronics Ind. , Ltd.) or
SM30B-LDYGLS-01(Japan Solderless Terminals MGF. Co., Ltd)
Mating connector FI-X30H,FI-X30C or FI-X30M (Japan Aviation Electronics Ind. , Ltd.)
Mating LVDS transmitter THC63LVDM83A or equivalent device
Pin No. Symbol Function Remark
1 VCC +5V Power Supply
2 VCC +5V Power Supply
3 VCC +5V Power Supply
4 VCC +5V Power Supply
5 GND
6 GND
7 GND
8 GND
9 SELLVDS Select LVDS data order Note1 Pull up
Default H:3.3V
10 NC
11 GND
12 RIN0- Negative (-) LVDS differential data input LVDS
13 RIN0+ Positive (+) LVDS differential data input LVDS
14 GND
15 RIN1- Negative (-) LVDS differential data input LVDS
16 RIN1+ Positive (+) LVDS differential data input LVDS
17 GND
18 RIN2- Negative (-) LVDS differential data input LVDS
19 RIN2+ Positive (+) LVDS differential data input LVDS
20 GND
21 CLKIN- Clock Signal(-) LVDS
22 CLKIN+ Clock Signal(+) LVDS
23 GND
24 RIN3- Negative (-) LVDS differential data input LVDS
25 RIN3+ Positive (+) LVDS differential data input LVDS
26 GND
27 R/L Horizontal shift direction Note 2
28 U/D Vertical shift direction Note 2
29 Reserved Not Available
30 Reserved Not Available
Note
1. Shield case on the module's back surface connects the GND of internal circuit.
2. It is recommend to connect all the GND terminals because of stable operation.




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LD- 17408-3


Note1 SELLVDS

Transmitter SELLVDS
Pin No Data =L(GND) =H(3.3V) or Open
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 NC NC
28 TC5 (RSV1) (RSV1)
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)




Block Diagram (LCD Module)




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LD- 17408-4

Interface block diagram
Corresponding Transmitter:THC63LVDM83R(THine) etc.

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

Rx1IN2+(19)
Rx1IN2-(18)
TTL
Internal circuits




LVDS
Rx1IN3+(25)
ENAB
Rx1IN3-(24) ENAB

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




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LD- 17408-5
SELLVDS= Low(GND)

1 cycle


CLKIN+


CLKIN-


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 NA NA B5 B4 B3 B2 DE
RIN2-


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



SELLVDS= High(3.3V) or Open

1 cycle


CLKIN+


CLKIN-



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


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



RIN2+ B5 B4 DE NA NA B7 B6 B5 B4 DE
RIN2-


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


DE: Display Enable
NA: Not Available (Fixed Low)




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LD- 17408-6
Note 2
Normal (Default) Horizontal reverse image
:




Vertical reverse image Horizontal and vertical reverse image
: :




CN2(O/S control) -(Shown in Fig 1)
OS Driving Pin No and function
Using connector : SM07B-SRSS-TB-A (JST)
Mating connector : SHR-07V-S or SHR-07V-S-B JST
Pin No. Symbol Function Default
1 Frame Frame frequency setting H:60Hz, L:50Hz Pull down 0V : (GND)
2 O/S set O/S operation setting H:O/S_ON, L:O/S_OFF Pull down 0V : (GND)
3 TEST Fix to Low level usually. Pull down 0V : (GND)
4 Temp3 Data3 of panel surface temperature Pull down 0V : (GND)
5 Temp2 Data2 of panel surface temperature Pull down 0V : (GND)
6 Temp1 Data1 of panel surface temperature Pull down 0V : (GND)
7 GND
* L: Low level voltage (GND) H: High level voltage(3.3V)
Note In case of O/S set setting "L"(O/S_OFF), it should be set the "Temp1~3" and "Frame" to "L".




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LD- 17408-7

According as the surface temperature of the panel, enter the optimum 3 bit signal into pin No.4,5,6.
Measuring the correlation between detected temperature by the sensor on PWB in users side and actual surface
temperature of panel at center , convert the temperature detected by the sensor to the surface temperature of
panel to enter the 3 bit temperature data.

Surface temperature of panel
Pin no. 0-5 5-10 10-15 15-20 20-25 25-30 30-35 35 and
above
4 L L L L H H H H
5 L L H H L L H H
6 L H L H L H L H
* L: Low level voltage (GND) H: High level voltage(3.3V)
*For overlapping temperatures (such as 5 ,10 ,15 ,20 ,25 , 30 ,35 ) select the optimum parameter,
judging from the actual picture image.



3bit
Temperature Microcomputer
sensor LCD I/F
Convert temperature data below

1. serial temp. data parallel temp. data
2. measurement point temp. data
panel surface temp. data


OS Driving ref. circuit
Domain B

Domain A
There is a LM70(product by NS) etc. as a temperature sensor.
Please perform temperature compensation between a measurement point
and panel surface temperature with a microcomputer. Moreover, please give
hysteresis about the change of setting temperature.

Domain B
Domain A



4-2. Backlight driving
CN3 (Inverter control) Using connector: S6B-PH-SM3-TB(JST) Mating connector: PHR-6 (JST)
Pin No. Symbol Function Input Impedance Remark
1 VON Inverter ON/OFF 24k ohm Note 1
2 Reserved Not Available -
3 Reserved Not Available -
4 VBRT Brightness Control 100k ohm Note 2
5 Reserved Not Available -
6 GND GND
* GND of an inverter board is not connected to GND of a module chassis and a liquid crystal panel drive part.


Note 1 Inverter ON/OFF
Input voltage Function
3~5V Inverter: ON
0~1V Inverter: OFF




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LD- 17408-8
Note 2 Brightness Control
PWM Brightness is controlled by analog input voltage (0V to 5V) .
Input voltage Function
5V Brightness Control : Dark
0V Brightness Control : Bright

Reference The characteristic of the VBRT vs. dimming level
Dimming level
Input voltage (VBRT) (luminance)
0V 0%
0.5V 15%
1.0V 30%
1.5V 41%
2.0V 52%
2.5V 62%
3.0V 70%
3.5V 78%
4.0V 84%
4.5V 90%
5.0V 94%
* The measurement shall be executed more than 60 minutes after adjusting dimming voltage.


CN4,CN5 (Inverter Power input Pin layout) Using connector: B10B-PH-SM3-TB (JST)
Mating connector: PHR-10 (JST)
Pin No. Symbol Function
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 -
*GND of an inverter board is not connected to GND of a module chassis and a liquid crystal panel drive part.


4-3. Lamp characteristics
The back light system is direct type with 18 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.
CCFT type : CFL2753A/CFL(STANLEY ELECTRIC CO.,LTD)
CFL15E361Y728P5S30A (NEC Lighting, Ltd)
Item Symbol Min. Typ. Max. Unit Remarks
Life time TL 60000 - - Hour Note 1
Note 1 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=0V).




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LD- 17408-9
5. Absolute Maximum Ratings
Parameter Symbol Condition Ratings Unit Remark
Input voltage VI Ta=25 -0.3 ~ 3.6 V Note 1
(for Control)
5V supply voltage VCC Ta=25 0~+6 V
(for Control)
Input voltage VBRT Ta=25 0~+6 V
(for Inverter) VON
24V supply voltage VINV Ta=25 0 ~ +29 V
(for Inverter)
Storage temperature Tstg - -25 ~ +60
Operation temperature Topa - 0 ~ +50 Note 2
(Ambient)
Note 1 SELLVDS, R/L, U/D, Frame, O/S set, TEST, Temp1, Temp2, Temp3
Note 2 Humidity 95%RH Max.(Ta 40 )
Maximum wet-bulb temperature at 39 or less.(Ta>40 ) No condensation.
Note The management temperature of each part is shown in reference(page23,24)




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LD- 17408-10
6. Electrical Characteristics
6-1. Control circuit driving Ta=25
Parameter Symbol Min. Typ. Max. Unit Remark
Supply voltage Vcc +4.5 +5.0 +5.5 V Note 1
+5V supply
voltage Current Icc - 0.8 1.8 A Note 2
dissipation
Permissible input ripple VRP - - 100 mVP-P Vcc = +5.0V
voltage
Differential input High VTH - - 100 mV VCM = +1.2V
threshold voltage Low VTL -100 - - mV Note 6
Input Low voltage VIL 0 - 1.0 V
Note 3
Input High voltage VIH 2.3 3.3 3.6 V
VI = 0V
IIL1 - - 100