Mitsubishi AA170EC01 Specification

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Preliminary
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TENTATIVE
All information in this technical data sheet is tentative
and subject to change without notice.
17.0”SXGA
AA170EC01
MITSUBISHI ELECTRIC Corp.
Date: Jan.17,’13
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CONTENTS
No. Item Page
-- COVER 1
-- CONTENTS 2 1 APPLICATION 3 2 OVERVIEW 4 3 ABSOLUTE MAXIMUM RATINGS 5 4 ELECTRICAL CHARACTERISTICS 5, 6, 7
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5 INTERFACE PIN CONNECTION 8, 9, 10, 11 6 INTERFACE TIMING 12, 13, 14, 15, 16 7 BLOCK DIAGRAM 17 8 MECHANICAL SPECIFICATION 18, 19
9 OPTICAL CHARACTERISTICS 20, 21, 22 10 RELIABILITY TEST CONDITION 23 11 OTHER FEATURE 24 12 HANDLING PRECAUTIONS FOR TFT-LCD MODULE 25, 26, 27
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1. APPLICATION
This specification applies to color TFT-LCD module, AA170EC01.
These specification papers are the proprietary product of Mitsubishi Electric Corporation (“MITSUBISHI) and include materials protected under copyright of MITSUBISHI. No part of this document may be reproduced in any form or by any means without the express written permission of MITSUBISHI.
MITSUBISHI does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from use of a product specified in this document. No license, express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of MITSUBISHI or of others.
MITSUBISHI classifies the usage of the TFT-LCD module as follows. Please confirm the usage before using the product.
(1) Standard Usage
Computers, office equipment, factory automation equipment, test and measurement equipment, communications, transportation equipment(automobiles, ships, trains, etc.), provided, however, that operation is not influenced by TFT-LCD directly.
(2) Special Usage
Medical equipment, safety equipment, transportation equipment, provided, however, that TFT-LCD is necessary to its operation.
(3) Specific Usage
Cockpit Equipment, military systems, aerospace equipment, nuclear reactor control systems, life support systems and any other equipment. MITSUBISHI should make a contract that stipulate apportionment of responsibilities between MITSUBISHI and our customer.
The product specified in this document is designed for “Standard Usage” unless otherwise specified in this document. If customers intend to use the product for applications other than those specified for “Standard Usage”, they should first contact MITSUBISHI sales representative for it's intended use in writing.
MITSUBISHI has been making continuous effort to improve the reliability of its products. Customers should implement sufficient reliability design of their application equipments such as redundant system design, fail-safe functions, anti-failure features.
MITSUBISHI assumes no responsibility for any damage resulting from the use of the product that does not comply with the instructions and the precautions specified in this document.
Please contact and consult a MITSUBISHI sales representative for any questions regarding this product.
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2. OVERVIEW
AA170EC01 is 17.0” color TFT-LCD (Thin Film Transistor Liquid Crystal Display) modules composed of LCD panel, driver ICs, control circuit, and backlight unit.
By applying 6 bit or 8 bit digital data, 1280u 1024, 262k-color or 16.7M-color images are displayed on the 17.0” diagonal screen. Input power voltages are 3.3 / 5.0V for LCD driving. The type of data and control signals are digital and transmitted via LVDS interface per Typ. 54 MHz clock cycle.
Driver circuit for LED backlight is not included in this module. General specifications are summarized in the following table:
ITEM SPECIFICATION
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Display Area (mm) Number of Dots
Pixel Pitch (mm) Color Pixel Arrangement RGB vertical stripe Display Mode Normally white Number of Color 262k(6 bit/color), 16.7M(8 bit/color) Luminance (cd/m2) (600) Viewing Angle (CR t10) 80~80° (H), 60~80° (V) Surface Treatment Anti-glare and hard-coating 3H Electrical Interface LVDS (6 bit/8 bit)
Viewing Direction Module Size (mm)
Module Mass (g) TBD
337.92 (H) u 270.336 (V) (17.0-inch diagonal)
1280 u3 (H) u 1024 (V)
0.264 (H) u 0.264 (V)
Higher Contrast ratio: 6 o'clock
Less gray scale reversal: 12 o'clock
358.5 (W) u 296.5 (H) u 16.9 (D)
Backlight Unit LED, edge-light, Unreplaceable
Characteristic value without any note is typical value.
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g
3. ABSOLUTE MAXIMUM RATINGS
ITEM SYMBOL MIN. MAX. UNIT
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Power Supply Voltage for LCD VCC Logic Input Voltage VI
0.30.3
6.5 V
5.5 V Backlight (LED) Current IF 0 180 mA Operation Temperature (Panel) Operation Temperature (Ambient) Storage Temperature
Note 1,2)
T
Note 2)
T
Note 2)
T
op(Panel)
op(Ambient)
stg
202020
70 °C 70 °C 80 °C
[Note]
1) Measured at the center of active area and at the center of panel back surface
2) Top,Tstgd 40qC : 90%RH max. without condensation Top,Tstg > 40qC : Absolute humidity shall be less than the value of 90%RH at 40qC without
condensation.
4. ELECTRICAL CHARACTERISTICS
(1) TFT- LCD Ambient Temperature: Ta = 25°C
ITEM SYMBOL MIN. TYP. MAX. UNIT Remarks
Power Supply Voltage for LCD Power Supply
3.3V powered VCC 3.0 3.3 3.6 V *1)
5.0V powered VCC 4.5 5.0 5.5 V *1)
3.3V powered ICC - 450 680 mA *2)
Current for LCD
5.0V powered ICC - 300 480 mA *2)
Permissive Input Ripple Voltage VRP -- -- 100 mVp-p VCC=+3.3V/ 5.0V
High VIH 2.7 -- 5.5 V MODE, SC
Logic Input Voltage
Low VIL 0 -- 0.6 V MODE, SC
*1) Power and signals sequence:
0.1 ms d t1 d10ms 200 ms 10 ms  t2 0 t3
d 50 ms 200 ms d t5
d 50 ms 0 d t6
0.9VCC
LCD Power Supply
Lo
ic Signal
Backlight Power Supply
0.1VCC
d t4
data
t2
t1
VCC
t3
0.9VCC
0.1VCC
t4
0.1VCC
t5 t6
data: RGB DATA, DCLK, DENA, MODE, SC
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VCC-dip conditions:
(a) 3.3 V powered
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1) When 2.6 V
2) When VCC < 2.6 V VCC-dip conditions should also follow the power and signals sequence.
(b) 5.0V powered
1) When 3.6 V
2) When VCC < 3.6 V VCC-dip conditions should also follow the power and signals sequence.
d VCC < 3.0 V, td d 10 ms
VCC
3.0 V
2.6 V
td
d VCC < 4.5 V, td d 10 ms
VCC
4.5 V
3.6 V
td
*2) VCC = +3.3V / 5.0V, fH= 64.0 kHz, fV= 60 Hz, f
= 54 MHz
CLK
Display image at typical power supply current value is 256-gray-bar pattern (8 bit), 1024 line mode.
*3) Fuse
Parameter Fuse Type Name Supplier Remark
VCC FHC16402AD Kamaya Electric Co., Ltd. *)
*) The power supply capacity should be designed to be more than the fusing current.
(2) Backlight
ITEM SYMBOL MIN. TYP. MAX. UNIT Remarks
-- (24) 29.1 V IF = 130 mA, Ta = 25°C, *2)
LED Voltage VF
-- -- 29.8 V IF = 130 mA, Ta = 0°C
-- -- 30.4 V
IF = 130 mA, Ta = 20°C
LED Current IF -- 130 140 mA Ta = 25°C, *1), *3) LED Life Time LT 80,000 100,000 -- h
IF = 130 mA, Ta = 25°C
*4), *5), Continuous operation
[Note]
*1) Constant Current Drive *2) The Voltage deviation between strings: |V
fMAX
– V
fMIN
| d 2V
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A
A
A
A
*3) LED Current measurement method
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LCD
Module
C1
1
C2
2
C3
3
C4
4
A
A
A
A
Power
Supply
Power
Supply
Power
Supply
Power
Supply
*4) LED life time is defined as the time when the brightness becomes 50% of the initial value. *5) The life time of the backlight depends on the ambient temperature. The life time will decrease
under high temperature.
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V
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5. INTERFACE PIN CONNECTION
(1) CN 1(Interface Signal)
Used Connector: FI-XB30SSRL-HF16, FI-XB30SSRLA-HF16 (JAE) Corresponding connector: FI-X30H, FI-X30HL (JAE)
Pin
No.
Symbol
1
LinkO0 2 LinkO0+ 3
LinkO1 4 LinkO1+ 5
LinkO2 6 LinkO2+ 7 GND GND 8
CLKOIN
9 CLKOIN+
10
LinkO3
11 LinkO3+ 12
LinkE0
13 LinkE0+ 14 GND GND 15
LinkE1
16 LinkE1+ 17 GND GND 18
LinkE2
19 LinkE2+ 20
CLKEIN 21 CLKEIN+ 22
LinkE3 23 LinkE3+ 24 GND
25 MODE Low=ISP 6 bit compatibility mode 26 SC
27 NC 28 VCC 3.3 / 5.0 V Power Supply 29 VCC 3.3 / 5.0 V Power Supply 30 VCC 3.3 / 5.0 V Power Supply
RO0, RO1, RO2, RO3, RO4,
RO5, GO0
GO1, GO2, GO3, GO4, GO5,
BO0, BO1
BO2, BO3, BO4, BO5,
DENA
RE0, RE1, RE2, RE3, RE4,
RE5, GE0
GE1, GE2, GE3, GE4, GE5,
BE0, BE1
BE2, BE3, BE4, BE5 BE4, BE5, BE6, BE7 BE2, BE3, BE4, BE5
Scan direction control ( Low = Normal , High = Reverse )
*1) Metal frame is connected to signal GND. *2) Recommended wiring of Pin 10,11,22,23 (6 bit input)
(a) VCC=3.3 V powered
Function(ISP 6 bit compatibility mode)
6 bit input 8 bit input
RO2, RO3, RO4, RO5, RO6,
RO7, GO2
GO3, GO4, GO5, GO6, GO7,
BO2, BO3
BO4, BO5, BO6, BO7, DENA
Clock O
See: *2)
See: *2)
RO0, RO1, GO0, GO1, BO0,
BO1
RE2, RE3, RE4, RE5, RE6,
RE7, GE2
GE3, GE4, GE5, GE6, GE7,
BE2, BE3
Clock E
RE0, RE1, GE0, GE1, BE0,
BE1
GND
NC
Function(ISP 8 bit
compatibility mode)
RO0, RO1, RO2, RO3, RO4,
RO5, GO0
GO1, GO2, GO3, GO4, GO5,
BO0, BO1
BO2, BO3, BO4, BO5,
DENA
m
m
RO6, RO7, GO6, GO7, BO6,
BO7
RE0, RE1, RE2, RE3, RE4,
RE5, GE0
m
GE1, GE2, GE3, GE4, GE5,
BE0, BE1
m
m
RE6, RE7, GE6, GE7, BE6,
BE7
m
High=ISP 8 bit compatibility mode
m m m m m
CC
LVD S transmitter
LOW data
Pin 10,22
Pin 11,23
or
1000
560
Ω
Pin 10,22
Pin 11,23
Ω
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V
(b) VCC=5.0 V powered
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CC
LVD S transmitter
(2) CN2 (Backlight)
Backlight-side connector: SM10B-SHLS-TF(LF)(SN) (JST) Corresponding connector: SHLP-10V-S-B (JST)
Pin No. Symbol Function
1800
LOW data
Ω
Pin 10,22
Pin 11,23
or
560
Ω
1 NC This pin should be open. 2 NC This pin should be open. 3 LED C 1 LED cathode 1 4 LED A 1 LED anode 1 5 LED A 2 LED anode 2 6 LED C 2 LED cathode 2 7 LED C 3 LED cathode 3
Pin 10,22
Pin 11,23
8 LED A 3 LED anode 3 9 LED A 4 LED anode 4
10 LED C 4 LED cathode 4
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(3) ISP data mapping
a. ISP 6 bit compatibility mode(6 bit input)
<ODD>
CLKIN+/-
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1CLK
Link0+/-
Link1+/-
Link2+/-
<EVEN>
CLKIN+/-
Link0+/-
Link1+/-
Link2+/-
b. ISP 6 bit compatibility mode(8 bit input)
<ODD>
CLKIN+/-
RO0
GO1
BO2
RE0
GE1
BE2
RO1GO0 RO5 RO4 RO3 RO2 RO0
GO2BO1 BO0 GO5 GO4 GO3 GO1
BO3DENA BO5 BO4 BO2
1CLK
RE1GE0 RE5 RE4 RE3 RE2 RE0
GE2BE1 BE0 GE5 GE4 GE3 GE1
BE3BE5 BE4 BE2
1CLK
GO0
BO1
DENA
GE0
BE1
Link0+/-
Link1+/-
Link2+/-
Link3+/- RO6
<EVEN>
CLKIN+/-
Link0+/-
Link1+/-
Link2+/-
Link3+/- RE6
RO0
GO1
BO2
RE0
GE1
BE2
BO1 BO0
BE1 BE0
RO3GO2 RO7 RO6 RO5 RO4 RO2
GO4BO3 BO2 GO7 GO6 GO5 GO3
BO5DENA BO7 BO6 BO4
GO1 GO0 RO0
GE1 GE0 RE0
RO1
1CLK
RE3GE2 RE7 RE6 RE5 RE4 RE2
GE4BE3 BE2 GE7 GE6 GE5 GE3
BE5BE7 BE6 BE4
RE1
GO0
BO1
DENA
GE0
BE1
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c. ISP 8 bit compatibility mode
<ODD>
CLKIN+/-
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1CLK
Link0+/-
Link1+/-
Link2+/-
Link3+/- RO6
<EVEN>
CLKIN+/-
Link0+/-
Link1+/-
Link2+/-
Link3+/- RE6
RO0
GO1
BO2
RE0
GE1
BE2
BO7 BO6
BE7 BE6
RO1GO0 RO5 RO4 RO3 RO2 RO0
GO2BO1 BO0 GO5 GO4 GO3 GO1
BO3DENA BO5 BO4 BO2
GO7 GO6 RO6
GE7 GE6 RE6
RO7
1CLK
RE1GE0 RE5 RE4 RE3 RE2 RE0
GE2BE1 BE0 GE5 GE4 GE3 GE1
BE3BE5 BE4 BE2
RE7
GO0
BO1
DENA
GE0
BE1
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6. INTERFACE TIMING
LVDS transmitter input signal
(1) Timing Specifications
ITEM SYMBOL MIN. TYP. MAX. UNIT
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DCLK
DENA
Frequency f Period t
Active Time t Blanking Time t
Horizontal
Frequency f Period Active Time t Blanking Time t
Vertical
Frequency f Period t
CLK
CLK
HA
HB
H
t
H
VA
VB
V
V
45 54 70 MHz
14.3 18.5 22.2 ns 640 640 640 t
45 204 -- t
51.8 64.0 71.4 kHz
14 15.6 19.3
1024 1024 1024 t
12 42 -- t 50 60 68 Hz
14.7 16.7 20.0 ms
[Note]
1) DENA (Data Enable) shall always be positive polarity as shown in the timing specification.
2) DCLK shall appear during all invalid period.
3) In case of blanking time fluctuation, please satisfy following condition. t
VBn
> t
VBn-2
7(t
)
H
4) 2 macros compatible to DS90CF386( 24bit LVDS Receiver FPD-Link)(NS) are implemented.
CLK
CLK
Ps
H
H
EVEN-ODD Skew TsEO 0.3 - 0.3 Tin
ODD-CLKIN+/-
EVEN-CLKIN+/-
ITEM SYMBOL Min Typ Max UNIT
TsEO
Tin
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V
V
(2) Timing Chart
a. Horizontal Timi ng Chart
DCLK
ODD DATA (RO,GO,BO)
EVEN DATA (RE,GE,BE)
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First Data Last Data
1 3
First Data
2 4
5Invalid Data Invalid Data
6Invalid Data Invalid Data
1277 1279
1278 1280
Last Data
t
HB
DENA
b. Vertical Timing Chart
LINE DATA
DENA
t
HA
tH=1/f
H
1 2 1023 1024 3Invalid Data Invalid Data
t
VB
t
A
tV=1/f
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(3) Color Data Assignment
a. 6 bit input
COLOR
R5 R4 R3 R2 R1 R0 G5 G4 G3 G2 G1 G0 B5 B4 B3 B2 B1 B0
MSB LSB MSB LSB MSB LSB
BLACK 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 RED(63) 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 GREEN(63) 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0
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INPUT DATA
R DATA G DATA B DATA
BASIC
COLOR
RED
GREEN
BLUE(63) 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 CYAN 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 MAGENTA 1 1 1 1 1 1 0 0 0 0 0 0 1 1 1 1 1 1 YELLOW 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 WHITE 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 RED(1) 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 RED(2) 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0
RED(62) 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 RED(63) 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 GREEN(1) 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 GREEN(2) 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0
GREEN(62) 0 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0 0 GREEN(63) 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0 BLUE(1) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 BLUE(2) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0
BLUE
BLUE(62) 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 0 BLUE(63) 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1
[Note]
1) Definition of gray scale Color (n) --- n indicates gray scale level.
Higher n means brighter level.
2) Data 1:High, 0: Low
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b. 8 bit input
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INPUT DATA
BASIC
COLOR
RED
COLOR
BLACK RED(255)
GREEN(255)
BLUE(255) CYAN MAGENTA YELLOW WHITE RED(1) RED(2)
RED(255)
R DATA G DATA B DATA
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
MSB LSB MSB LSB MSB LSB
0 00 0 0 0 00 0 000000 0 0 0 0 0 0 000 1 11 1 1 1 11 0 000000 0 0 0 0 0 0 000 0 00 0 0 0 00 1 111111 1 0 0 0 0 0 000 0 00 0 0 0 00 0 000000 0 1 1 1 1 1 111 0 00 0 0 0 00 1 111111 1 1 1 1 1 1 111 1 11 1 1 1 11 0 000000 0 1 1 1 1 1 111 1 11 1 1 1 11 1 111111 1 0 0 0 0 0 000 1 11 1 1 1 11 1 111111 1 1 1 1 1 1 111 0 00 0 0 0 01 0 000000 0 0 0 0 0 0 000 0 00 0 0 0 10 0 000000 0 0 0 0 0 0 000
1 11 1 1 1 11 0 000000 0 0 0 0 0 0 000
GREEN(1) GREEN(2)
GREEN
GREEN(255)
BLUE(1) BLUE(2)
BLUE
BLUE(255)
[Note]
1) Definition of gray scale
Color (n) --- n indicates gray scale level.
2) Data
0 00 0 0 0 00 0 000000 1 0 0 0 0 0 000 0 00 0 0 0 00 0 000001 0 0 0 0 0 0 000
0 00 0 0 0 00 1 111111 1 0 0 0 0 0 000 0 00 0 0 0 00 0 000000 0 0 0 0 0 0 001 0 00 0 0 0 00 0 000000 0 0 0 0 0 0 010
0 00 0 0 0 00 0 000000 0 1 1 1 1 1 111
Higher n means brighter level.
1:High, 0: Low
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(4) Display Position and Scan Direction
D(X,Y) shows the data number of input signal.
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SC: Low
D(1,1) D(1280,1)
D(1,1024)
D(1280,1024)
SC: High
CN2
D(1280,1024) D(1,1024)
D(1280,1) D(1,1)
CN2
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7. BLOCK DIAGRAM
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CN1
Timing
Controller
Voltage Supply for Gray Levels
and Vcom
DC/DC
Converter
Gate Driver
CN2
Source Driver
LCD Panel
1280 X 3 X 1024
LED
A1
C1
A2
C2
A3
C3
A4
C4
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8. MECHANICAL SPECIFICATIONS
(1) Front side
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(Unit: mm)
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(2) Rear side
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CN1 : FI-XB30SSRL-HF16, FI-XB30SSRLA-HF16 (JAE)
CN2 : SM10B-SHLS-TF(LF)(SN) (JST)
(Unit: mm)
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9. OPTICAL CHARACTERISTICS
ITEM SYMBOL CONDITION MIN. TYP. MAX. UNIT Remarks
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Ta = 25°C, VCC = 3.3/5.0 V, Input Signals: Typ. values shown in Section 6
Contrast Ratio CR
Luminance Lw
Luminance Uniformity
'Lw T
tr
Response Time
tf
Viewing Angle
Horizontal Vertical
T
TV
TV qTH q
TV qTH q
qTH q
V
TV qTH q
TV qTH q
65a65 80a80
H
CR t10
520 800 -- -- *1)*2)*5)
(480) (600) -- cd/m2 *1)*5)
-- -- 30 % *1)*3)*5)
-- 6 -- ms *1)*4)*5)
-- 19 -- ms *1)*4)*5)
-- ° *1)*5)
45a65 60a80
-- ° *1)*5)
Image Sticking tis 2 h -- -- 2 s *6)
Red Rx (0.603) (0.643) (0.683)
Ry (0.301) (0.341) (0.381)
Green Gx (0.270) (0.310) (0.350)
Color Coordinates
Blue Bx (0.118) (0.158) (0.198)
Gy (0.594) (0.634) (0.674)
TV qTH q
-- *1) *5)
By (0.034) (0.074) (0.114)
White Wx (0.273) (0.313) (0.353)
Wy
(0.289) (0.329) (0.369)
[Note]
These items are measured using EZContrast (ELDIM) for viewing angle and CS2000 (Minolta) or equivalent equipment for others under the dark room condition (no ambient light) after more than 30 minutes from turning on the backlight unless noted.
Condition: IF = 130 mA
Measurement method for luminance and color coordinates is as follows.
T=1q(Field)
TFT-LCD module
500 mm
The luminance is measured according to FLAT PANEL DISPLAY MEASUREMENTS STANDARD
(VESA Standard).
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*1) Measurement Point
Contrast Ratio, Luminance, Response Time, Viewing Angle, Color Coordinates: Display Center Luminance Uniformity: point 1
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a5 shown in a figure below
256
512
768
(1,1)
320 640
1
3
960
2
5
4
*2) Definition of Contrast Ratio
CR=Luminance with all white pixels / Luminance with all black pixels
*3) Definition of Luminance Uniformity
'Lw=[Lw(MAX)/Lw(MIN)-1]u100
*4) Definition of Response Time
White
90%90%
(1280,1024)
Luminance
tr
*5) Definition of Viewing Angle (T
Left (-)
T
)
V
H
Upper(+)
Normal Axis
T
V
10%10% Black
tf
T
H
Right (+)
LCD panel
Lower(-)
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*6) Image Sticking
Continuously display the test pattern shown in the figure below for two-hours. Then display a completely white screen. The previous image shall not persist more than two seconds at 25°C.
Rows 510-514
TEST PATTERN FOR IMAGE STICKING TEST
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Cols 638-642
White
Area
Black Lines
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10. RELIABILITY TEST CONDITION
(1) Temperature and Humidity
ITEM CONDITIONS
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HIGH TEMPERATURE
HIGH HUMIDITY OPERATION
HIGH TEMPERATURE OPERATION 70°C, 240 h
LOW TEMPERATURE OPERATION
HIGH TEMPERATURE STORAGE 80°C, 240 h
LOW TEMPERATURE STORAGE
THERMAL SHOCK (NON-OPERATION)
(2) Shock & Vibration
ITEM CONDITIONS
Shock level: 1470 m/s2(150 G
SHOCK
(NON-OPERATION)
Waveform: half sinusoidal wave, 2 ms Number of shocks: one shock input in each direction of three mutually Perpendicular axes for a total of six shock inputs Vibration level: 9.8 m/s2 (1.0 G)zero to peak Waveform: sinusoidal
40°C, 90% RH, 240 h
(No condensation)
20°C, 240 h
20°C, 240 h
20°C (1h) a 80°C(1h),
100 cycles S
VIBRATION
(NON-OPERATION)
(3) ESD Test
ITEM CONDITIONS
CONTACT DISCHARGE
(OPERATION)
SIGNAL PIN DISCHARGE
(NON-OPERATION)
(4) Judgment standard
The judgment of the above tests should be made as follow:
Pass: Normal display image, no damage of the display function. (ex. no line defect)
Partial transformation of the module parts should be ignored.
Fail: No display image, damage of the display function. (ex. line defect)
Frequency range: 5 to 500 Hz Frequency sweep rate: 0.5 octave /min Duration: one sweep from 5 to 500 Hz in each of three mutually
perpendicular axis(each x,y,z axis: 1 hour, total 3 hours)
150pF, 330
200pF, 0
:, r8kV, 10 times at 1 sec interval
:, r200V, 10 times at 1 sec interval
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11. OTHER FEATURE
This LCD module complies with RoHS*) directive.
*)
RoHS: Restriction of the use of certain hazardous substances in electrical and electronic
equipment
UL1950 certified (UL File# E158720)
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12. HANDLING PRECAUTIONS FOR TFT-LCD MODULE
Please pay attention to the followings in handling TFT-LCD products;
(1) ASSEMBLY PRECAUTION
a. Please mount the LCD module by using mounting hole with a screw clamping torque less than
0.5 Nm. Please do not bend or wrench the LCD module in assembling. Please do not drop, bend or twist the LCD module in handling. Please mount the LED driver circuit board by using mounting hole of rear side with a screw clamping torque less than 0.5 Nm.
b. Please design display housing in accordance with the following guide lines.
(a) Housing case must be designed carefully so as not to put stress on LCD and not to wrench
module. If customer uses compression mounting, please evaluate housing case with LCD carefully to avoid image quality issue caused by mechanical stress.
(b) Under high temperature environment, performance and life time of LED may heavily
shorten. When you design with our LCD product, please consider radiating heat and ventilation for good heat management.
(c) Keep sufficient clearance between LCD module back surface and housing when the LCD
module is mounted. Approximately 1.0mm of the clearance in the design is recommended taking into account the tolerance of LCD module thickness and mounting structure height on the housing.
(d) When some parts, such as, FPC cable and ferrite plate, are installed underneath the LCD
module, still sufficient clearance is required, such as 0.5mm. This clearance is, especially, to be reconsidered when the additional parts are implemented for EMI countermeasure.
(e) Design the LED driver location and connector position carefully so as not to give stress to
LED backlight cable.
(f) Keep sufficient clearance between LCD module and the others parts, such as inverter and
speaker so as not to interfere the LCD module. Approximately 1.0 mm of the clearance in the design is recommended.
(g) To avoid local elevation/decrease of temperature, considering location of heating element,
heat release, thermal design should be done.
c. Please do not push or scratch LCD panel surface with anything hard. And do not soil LCD panel
surface by touching with bare hands. (Polarizer film, surface of LCD panel is easy to be flawed.) d. Please wipe off LCD panel surface with absorbent cotton or soft cloth in case of it being soiled. e. Please wipe off drops of adhesives like saliva and water on LCD panel surface immediately. They
might damage to cause panel surface variation and color change. f. Please do not take a LCD module to pieces and reconstruct it. Resolving and reconstructing
modules may cause them not to work well.
g. Please do not touch metal frames with bare hands and soiled gloves. A color change of the metal
frames can happen during a long preservation of soiled LCD modules.
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h. Please handle metal frame carefully because edge of metal frame is very sharp. i. Please connect the metal frame of LCD module to GND in order to minimize the effect of external
noise and EMI. j. Be sure to connect the cables and the connecters correctly.
(2) OPERATING PRECAUTIONS
a. Please be sure to turn off the power supply before connecting and disconnecting signal input
cable.
b. Please do not change variable resistance settings in LCD module. They are adjusted to the most
suitable value. If they are changed, it might happen LCD does not satisfy the characteristics specification.
c. The interface signal speed is very high. Please pay attention to transmission line design and
other high speed signal precautions to satisfy signal specification.
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d. Condensation might happen on the surface and inside of LCD module in case of sudden change
of ambient temperature. Please take care so as not to cause any damage mentioned on (1)-d.
e. Please pay attention not to display the same pattern for very long time. Image sticking might
happen on LCD. Although image sticking may disappear as the operation time proceeds, screen saver function is recommended not to cause image sticking.
f. Please obey the same safe instructions as ones being prepared for ordinary electronic products.
(3) PRECAUTIONS WITH ELECTROSTATICS
a. This LCD module use CMOS-IC on circuit board and TFT-LCD panel, and so it is easy to be
affected by electrostatics. Please be careful with electrostatics by the way of your body connecting to the ground and so on.
b. Please remove protection film very slowly from the surface of LCD module to prevent from
electrostatics occurrence.
(4) STORAGE PRECAUTIONS
LCD should be stored in the room temperature environment with normal humidity. The LCD inventory should be processed by first-in first-out method.
(5) SAFETY PRECAUTIONS
a. When you waste damaged or unnecessary LCDs, it is recommended to crush LCDs into pieces
and wash them off with solvents such as acetone and ethanol, which should later be burned.
b. If any liquid leaks out of a damaged glass cell and comes in contact with the hands, wash off
thoroughly with soap and water.
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c. Be sure to turn off the power supply when inserting or disconnecting the LED backlight cable. d. LED driver should be designed carefully to limit or stop its function when over current is
detected on the LED.
(6) OTHERS
a. A strong incident light into LCD panel may cause deterioration to polarizer film, color filter, and
other materials, which will degrade the quality of display characteristics. Please do not expose
LCD module under strong Ultraviolet rays for a long time. b. Please pay attention to a panel side of LCD module not to contact with other materials in
preserving it alone.
c. For the packaging box handling, please see and obey with the packaging specification datasheet.
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