Datasheet T-51513-D104-FW-A-AB Datasheet (OPTREX)

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T-51513-D104U-FW-A-AB (AB) No. 2002-0186 OPTREX CORPORATION Page 1/37
LCD Module Technical Specification
T-51513-D104U-FW-A-AB
CONTENTS
No. Item Page
1 OVERVIEW 2 2 ABSOLUTE MAXIMUM RATINGS 3 3 ELECTRICAL CHARACTERISTICS 35 4 INTERFACE PIN CONNECTION 6 5 INTERFACE TIMING 79 6 BLOCK DIAGRAM 10 7 MECHANICAL SPECIFICATION 1113 8 OPTICAL CHARACTERISTICS 14,15
9 RELIABILITY TEST CONDITION 16 10 INSPECTION STANDARDS 17 11 HANDLING PRECAUTIONS FOR TFT-LCD MODULE 1820 12 REVISION STATUS 21,22 13 REVISION STATUS (INTERNAL USE ONLY) 23 14 PACKAGING SPECIFICATION 2327 15 PRODUCTS NUMBER LABELING FORMS 2830 16 LAMP UNIT FOR 10.4 VGA 3137
Checked by (Design Engineering Div.)
Checked by (Quality Assurance Div.)
Approved by (Production Div.)
Prepared by (Production Div.)
Type No.
Jul 1, 2002
OPTREX
First Edition
Final Revision
******
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1. OVERVIEW
AA104VB05 is 10.4” color TFT-LCD (Thin Film Transistor Liquid Crystal Display) module composed of LCD panel, driver ICs, control circuit, and backlight unit.
By applying 6 bit digital data 640 × 480, 260K-color images are displayed on the 10.4” diagonal screen. Input power voltage is single 3.3 / 5.0V for LCD driving. Both 3.3V-CMOS and 5.0V-CMOS level voltage are acceptable for logic input voltage.
Inverter for backlight is not included in this module. General specifications are summarized in the following table:
ITEM SPECIFICATION
Display Area (mm)
211.2 (H) × 158.4 (V)
(10.39-inch diagonal)
Number of Dots 640 × 3 (H) × 480 (V) Pixel Pitch (mm) 0.33 (H) × 0.33 (V) Color Pixel Arrangement RGB vertical stripe Display Mode normally white Number of Color 260 K Wide Viewing Angle Technology Optical compensation film Optimum Viewing Angle(Contrast ratio) 12 o’clock Brightness (cd/m2) 380 Module Size (mm) 243.0 (W) × 181.6 (H) × 12.2 (D) Module Mass (g) 530 Backlight Unit CCFL, 2-tubes, replaceable Surface Treatment Anti-glare and hard-coating 3H
Characteristic value without any note is typical value.
The LCD product described in this specification is designed and manufactured for the standard use in OA equipment and consumer products, such as computers, communication equipment, industrial robots, AV equipment and so on. Do not use the LCD product for the equipment that require the extreme high level of reliability, such as aerospace applications, submarine cables, nuclear power control systems and medical or other equipment for life support. ADI assumes no responsibility for any damage resulting from the use of the LCD product in disre­gard of the conditions and handling precautions in this specification. If customers intend to use the LCD product for the above items or other no standard items, please contact our sales persons in advance.
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2. ABSOLUTE MAXIMUM RATINGS
ITEM SYMBOL MIN. MAX. UNIT
Power Supply Voltage for LCD VCC -0.3 6.5 V Logic Input Voltage VI 0 6.5 V Lamp Voltage VL 0 2000 Vrms Lamp Current IL 0 10.0 mArms Lamp Frequency FL -- 80 kHz Operation Temperature *1) T
op
0 50 °C
Storage Temperature *1) T
stg
-20 60 °C
[Note]
*1) Top,Tstg 40°C : 90%RH max. without condensation
Top,Tstg > 40°C : Absolute humidity shall be less than the value of 90%RH at 40°C without
condensation.
3. ELECTRICAL CHARACTERISTICS
(1) TFT- LCD Ambient Temperature : Ta = 25°C
ITEM SYMBOL MIN. TYP. MAX. UNIT Remarks
3.3 V powered VCC 3.0 3.3 3.6 V
A), D)
Power Supply Voltage for LCD
5.0 V powered VCC 4.75 5.0 5.25 V
A), D)
3.3 V powered ICC - 220 380 mA VCC=3.3 V
B)
Power Supply Current for LCD
5.0 V powered ICC - 150 280 mA VCC=5.0 V
B)
Permissive Input Ripple Voltage VRP - - 100 mVp-p VCC=+3.3 V/5.0 V
High VIH 2.0 - 5.25 V
Logic Input Voltage
Low VIL 0 - 0.8 V
(2) Backlight Ta=25°C
ITEM SYMBOL MIN. TYP. MAX. UNIT Remarks
Lamp Voltage VL -- 580 -- Vrms IL=6.0mArms Lamp Current IL 3.0 6.0 7.0 mArms *1) Lamp Frequency FL 40 -- 80 kHz *2) Starting Lamp Voltage Ta=25°C 810 -- -- Vrms
Ta=0°C
VS
1000 -- -- Vrms
IL=3.0mArms 50000 50000 -- h *3),*4)
Lamp Life Time IL=6.0mArms LT 40000 50000 -- h
IL=7.0mArms 30000 40000 -- h
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*1) Lamp Current measurement method (The current meter is inserted in low voltage line.)
CTL
CTH
CTL
CTH
LCD
Module
A
Inverter
Power
Supply
A
*2) Lamp frequency of inverter may produce interference with horizontal synchronous frequency, and
this may cause horizontal beat on the display. Therefore, please adjust lamp frequency, and keep inverter as far from module as possible or use electronic shielding between inverter and module to avoid the interference.
*3) Lamp life time is defined as the time either when the brightness becomes 50% of the initial value, or
when the starting lamp voltage does not meet the value specified in this table.
*4) The life time of the backlight depends on the ambient temperature. The life time will decrease under
low/high temperature.
[Note] A) Power and signals sequence:
t1 ≤ 10 ms 400 ms ≤ t5 0 < t2 50 ms 200 ms t6 0 < t3 50 ms 0 t7 0 < t4 50 ms
t1
t2 t3
data
0.9VCC
0.9VCC
0.1VCC
VCC
t4
t5
t6
t7
Backlight
data
: RGB DATA, DCLK, HD, VD, DENA
0.1VCC
0.1VCC
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VCC-dip conditions:
(a) 3.3 V powered
1) When 2.4 V VCC < 3.0 V, td 10 ms
2) When VCC < 2.4 V VCC-dip conditions should also follow the power and signals sequence.
td
2.4 V 3.0 V
VCC
(b) 5.0 V powered
1) When 3.6 V VCC < 4.5 V, td 10 ms
2) When VCC < 3.6 V VCC-dip conditions should also follow the power and signals sequence.
td
3.6 V 4.5 V
VCC
B) Typical current condition:
64- gray- bar-pattern 480 line mode VCC = + 3.3 / 5.0 V, fH=31.6kHz, fV=60Hz, f
CLK
= 25MHz
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4. INTERFACE PIN CONNECTION
CN 1(INTERFACE SIGNAL)
Used connector: DF9B-31P-1V(Hirose) Corresponding connector: DF9B-31S-1V(Hirose)
Pin No.
Symbol
Function
1
GND
2 DCLK  Clock signal for sampling catch data signal 3 HD Horizontal sync signal 4 VD  Vertical sync signal 5 GND 6 R0 Red data signal(LSB) 7 R1 Red data signal 8 R2 Red data signal 9 R3 Red data signal
10R4Red data
signal
11 R5 Red data signal(MSB) 12 GND 13 G0 Green data signal(LSB) 14 G1 Green data signal 15 G2 Green data signal 16 G3 Green data signal 17 G4 Green data signal 18 G5 Green data signal(MSB) 19 GND 20 B0 Blue data signal(LSB) 21 B1 Blue data signal 22 B2 Blue data signal 23 B3 Blue data signal 24 B4 Blue data signal 25 B5 Blue data signal(MSB) 26 GND 27 DENA Data enable signal(to settle the viewing area) 28 VCC 3.3 / 5.0 V Power Supply 29 VCC 3.3 / 5.0 V Power Supply 30 TEST This pin should be open. Test signal output for only internal test use. 31 SC Scan direction Control.(GND or Open:Normal, High:Reverse)
*1) The shielding case is connected with GND *2) See; Timing Chart(P9)
CN 2 , CN 3 (BACKLIGHT)
Backlight-side connector: BHR-02(8.0)VS-1N(JST) Inverter-side connector: SM02(8.0)B-BHS(JST)
Pin No. Symbol Function
1 CTH VBLHHigh Voltage 3 CTL VBLLLow Voltage
     [Note]
VBLH-VBLL=VL
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5. INTERFACE TIMING
(1) Timing Specifications
ITEM SYMBOL MIN. TYP. MAX. UNIT
Frequency f
CLK
-- 25 29 MHz
Period t
CLK
34.5 40 -- ns
Low Width t
WCL
12 -- -- ns
DCLK
*1) *4)
High Width t
WCH
12 -- -- ns
Set up time t
DS
5 -- -- ns
DATA *1)
(R,G,B,DENA
HD, VD)
Hold time t
DH
5 -- -- ns
Horizontal Active Time t
HA
640 640 640 t
CLK
Horizontal Front Porch t
HFP
10 16 -- t
CLK
Horizontal Back Porch t
HBP
2 144 -- t
CLK
Vertical Active Time t
VA
480 480 480 t
H
DENA
*3)
Vertical Front Porch t
VFP
1 12 -- t
H
Vertical Back Porch t
VBP
2 33 -- t
H
Frequency f
H
27 31.6 38 kHz
Period t
H
26.3 31.6 37.0 µs
HD
*2)*4)
Low Width t
WHL
5 96 -- t
CLK
Frequency f
V
55 60 70 Hz
Period t
V
14.3 16.7 18.2 ms
VD *2)
Low Width t
WVL
3 -- -- t
H
[Note]
*1) DATA is latched at fall edge of DCLK in this specification. *2) Polarities of HD and VD are negative in this specification. *3) DENA (Data Enable) should always be positive polarity as shown in the timing specification.
*4) DCLK should appear during all invalid period, and HD should appear during invalid period of
frame cycle.
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(2) Timing Chart
a. Pixel Timing Chart
0.8
V
tWCH tWCL
tCLK
t
D
t
D
DCLK
DATA(R ,G,B), DENA, HD, VD
0.8V
2.0V
DCLK
DATA (R,G,B)
1 2 639 6403Invalid Data Invalid Data
t
HA
t
HFP
t
HBP
t
WHL
tH=1/f
H
DENA
HD
b. Horizontal Timing Chart
c. Vertical Timing Chart
1 2 479 4803Invalid Data Invalid Data
tWVL
t
VFP
t
VBP
tV=1/f
V
LINE DATA
VD
DENA
HD
tVA
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(3)Color Data Assignment
R DATA G DATA B DATA
R5 R4 R3 R2 R1 R0 G5 G4 G3 G2 G1 G0 B5 B4 B3 B2 B1 B0COLOR
INPUT
DATA
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 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
BASIC
COLOR
WHITE 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 RED(0) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 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
RED(63) 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 GREEN(0) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 GREEN(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 1 0 0 0 0 0 0
GREEN(62) 1 1 1 1 1 0 1 1 1 1 1 0 0 0 0 0 0 0
GREEN
GREEN(63) 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 BLUE(0) 0 0 0 0 0 0 0 0 0 0 0 0 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(62) 1 1 1 1 1 0 0 0 0 0 0 0 1 1 1 1 1 0
BLUE
BLUE(63) 1 1 1 1 1 1 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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6. BLOCK DIAGLAM
I/F Connector
Timing
Converter
Driver(source)
TFT-LCD
Driver(gate)
Power
Supply
Circuit
BACKLIGHT
CCFL
1 3
CN2, 3
G1
G2
G480
Timing signal Display data
S1
S2
S1919
S1920
Power
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7. MECHANICAL SPECIFICATIONS
(1) Front Side
Tolerance is ±0.5mm unless noted.
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(2) Rear Side
Tolerance is ±0.5mm unless noted
[Note]
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We recommend you referring to the detailed drawing for your design. Please contact our company sales representative when you need the detailed drawing.
(3) Scanning direction
SCHigh
CN3
D(1,1) D(640,1)
D(1,480)
D(640,480)
CN2
SC : GND or Open
CN2
D(1,1) D(640,1)
D(1,480)
D(640,480)
CN3
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8. OPTICAL CHARACTERISTICS
Ta=25°C, VCC=3.3 / 5.0 V, Input Signals: Typ. Values shown in Section 5
ITEM SYMBOL CONDITION MIN. TYP. MAX. UNIT Remarks
Contrast Ratio CR θ = φ = 0° 150 300 --
--
*1)*3)
Luminance Lw θ = φ = 0° 300 380 --
cd/m
2
*2)*3)
Response Time tr θ = φ = 0° -- 15 --
ms
*3)*4)
tf θ = φ = 0° -- 35 --
ms
*3)*4)
Viewing Horizontal φ CR 10 -- -6060 --
°
*3)
Angle Vertical θ -- -4555 --
°
*3)
Red Rx 0.54 0.57 0.60
Ry 0.30 0.33 0.36 Color Green Gx 0.30 0.33 0.36 Coordinates Gy θ = φ = 0° 0.49 0.52 0.55
--
*3)
Blue Bx 0.14 0.17 0.20
By 0.15 0.18 0.21
White Wx 0.29 0.32 0.35
Wy 0.31 0.34 0.37
[Note]
These items are measured using BM-5A(TOPCON) or LCD-7000(Otsuka Electronic) under the dark room condition (no ambient light).
Condition: IL=6.0mArms, FL=55 kHz *1) Definition of Contrast Ratio
CR=ON (White) Luminance / OFF(Black) Luminance: average of 5 points
*2) Definition of Luminance
Lw= ON (White) Luminance: average of 5 points
(1,1)
160 320 480
120
240
360
(640,480)
2
4
5
3
1
MEASUREMENT POINT
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*3) Definition of Viewing Angle( θ , φ)
*4) Definition of Response Time
White
90%90%
10%10% Black
tf
tr
Luminance
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9. RELIABILITY TEST CONDITION
(1) Temperature and Humidity
TEST ITEM CONDITIONS
HIGH TEMPERATURE
HIGH HUMIDITY OPERATION
40°C, 90%RH, 240 h
HIGH TEMPERATURE STORAGE 60°C, 96 h
LOW TEMPERATURE STORAGE -20°C, 96 h
THERMAL SHOCK(NON-OPERATION)
BETWEEN -20°C (1h) and 60°C(1h),
5 CYCLES
(2) Shock & Vibration
ITEM CONDITIONS
Shock level: 1470m/s2 (150G)
SHOCK Waveform: half sinusoidal wave, 2ms
(NON-OPERATION) Number of shocks: one shock input in each direction of three mutually
perpendicular axis for a total of six shock inputs Vibration level: 9.8m/s2 (1.0G) Waveform: sinusoidal
VIBRATION Frequency range: 5 to 500Hz
(NON-OPERATION) Frequency sweep rate: 0.5 octave /min
Duration: one sweep from 5 to 500 to 5Hz in each of three mutually
perpendicular axis(total 3 hours)
(3) Judgment standard
The judgment of the above tests should be made as follow:
Pass: Normal display image with no obvious non-uniformity and no line defect.
Partial transformation of the module parts should be ignored.
Fail: No display image, obvious non-uniformity, or line defects.
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11. HANDLING PRECAUTIONS FOR TFT-LCD MODULE
Please pay attention to the followings in handling TFT-LCD products;
(1) ASSEMBLY PRECAUTION
a. Please use the mounting hole on the module in installing and do not bending or wrenching
LCD in assembling. And please do not drop, bend or twist LCD module in handling.
b. Please design display housing in accordance with the following guide lines.
(a) Housing case must be designed carefully so as not to put stresses on LCD all sides and
not to wrench module. The stresses may cause non-uniformity even if there is no non­uniformity statically.
(b) 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.
(c) 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.
(d) Design the inverter location and connector position carefully so as not to give stress to
lamp cable, or not to interface the LCD module by the lamp cable.
(e) Keep sufficient clearance between LCD module and the others parts, such as inverter
and speaker so as not to interface the LCD module. Approximately 1.0mm of the clearance in the design is recommended.
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 do not press any parts on the rear side such as source TCP, gate TCP, control circuit
board and FPCs during handling LCD module. If pressing rear part is unavoidable, handle the LCD module with care not to damage them.
e. Please wipe off LCD panel surface with absorbent cotton or soft cloth in case of it being
soiled.
f. 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.
g. Please do not take a LCD module to pieces and reconstruct it. Resolving and reconstructing
modules may cause them not to work well.
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h. 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.
i. Please pay attention to handling lead wire of backlight so that it is not tugged in connecting
with inverter.
j. Please connect the metal frame of LCD module to GND in order to minimize the effect of
external noise and EMI.
k. Please connect the metal frame of LCD module to GND in order to minimize the effect of
external noise and EMI.
(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. LCD backlight takes longer time to become stable of radiation characteristics in low
temperature than in room temperature.
d. A condensation might happen on the surface and inside of LCD module in case of sudden
change of ambient temperature.
e. Please pay attention not to display the same pattern for very long time. Image might stick on
LCD. Even if image sticking happens, it may disappear as the operation time proceeds.
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
a. Please do not leave the LCDs in the environment of high humidity and high temperature
such as 60°C90%RH.
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b. Please do not leave the LCDs in the environment of low temperature; below -20°C.
(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. c. Be sure to turn off the power supply when inserting or disconnecting the cable. d. Inverter should be designed carefully so as not to keep working in case of detecting over
current or open circuit on the lamp.
(6) OTHERS
a. A strong incident light into LCD panel might cause display characteristics changing inferior
because of polarizer film, color filter, and other materials becoming inferior. Please do not
expose LCD module direct sunlight and strong UV rays. 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, please pay attention to the followings;
(a) Packaging box and inner case for LCD are designed to protect the LCDs from the
damage or scratching during transportation. Please do not open except picking LCDs up from the box.
(b) Please do not pile them up more than 5 boxes. (They are not designed so.) And please do
not turn over.
(c) Please handle packaging box with care not to give them sudden shock and vibrations.
And also please do not throw them up.
(d) Packaging box and inner case for LCDs are made of cardboard. So please pay attention
not to get them wet. (Such like keeping them in high humidity or wet place can occur getting them wet.)
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