DDBU Marketing Division / AU Optronics Croporation
CustomerChecked & Approved by
EthanLin
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(C) Copyright AU Optronics, Inc.
January, 2003 All Rights Reserved.M190EN01 v.2 Ver0.1
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Product Specifications
19.0” SXGA Color TFT-LCD Module
Model Name: M190EN01
V.2
( ) Preliminary Specifications
(
) Final Specifications
Note: This Specification is subject to change without notice.
(C) Copyright AU Optronics, Inc.
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i Contents
ii Record of Revision
1.0 Handling Precautions
2.0 General Description
2.1 Display Characteristics
2.2 Functional Block Diagram
2.3 Optical Characteristics
2.4 Pixel format image
3.0 Electrical characteristics
3.1 Absolute Maximum Ratings
3.2 Connectors
3.3 Signal Pin
3.4 Signal Description
3.5 Signal Electrical Characteristics
3.6 Interface Timing
3.6.1 Timing Characteristics
3.6.2 Timing Definition
3.7 Power Consumption
3.8 Power ON/OFF Sequence
4.0 Backlight Characteristics
4.1 Signal for Lamp connector
4.2 Parameter guide line for CCFL Inverter
5.0 Vibration, shock and drop
5.1 Vibration and shock
5.2 Drop test
6.0 Environment
6.1 Temperature and humidity
6.1.1 Operating conditions
6.1.2 Shipping conditions
6.2 Atmospheric pressure
6.3 Thermal shock
7.0 Reliability
7.1 Failure criteria
7.2 Failure rate
7.2.1 Usage
7.2.2 Components de-rating
7.3 CCFL life
7.4 ON/OFF cycle
8.0 Safety
8.1 Sharp edge requirement
8.2 Material
8.2.1 Toxicity
8.2.2 Flammability
8.3 Capacitors
8.4 Hazardous voltage
9.0 Other requirements
9.1 Smoke free design
9.2 National test lab requirement
10.0 Mechanical Characteristics
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ii Record of Revision
Version and DatePageOld descriptionNew DescriptionRemark
0.1 2003/09/26AllFirst Edition for CustomerAll
1.0Handling Precautions
1) Since front polarizer is easily damaged, pay attention not to scratch it.
2) Be sure to turn off power supply when inserting or disconnecting from input connector.
3) Wipe off water drop immediately. Long contact with water may cause discoloration or spots.
4) When the panel surface is soiled, wipe it with absorbent cotton or other soft cloth.
5) Since the panel is made of glass, it may break or crack if dropped or bumped on hard surface.
6) Since CMOS LSI is used in this module, take care of static electricity and insure human earth when
handling.
7) Do not open nor modify the Module Assembly.
8) Do not press the reflector sheet at the back of the module to any directions.
9) At the insertion or removal of the Signal Interface Connector, be sure not to rotate nor tilt the Interface
Connector of the TFT-LCD module.
10) After installation of the TFT-LCD module into an enclosure (LCD monitor housing, for example), do not
twist nor bend the TFT -LCD module even momentary. At designing the enclosure, it should be taken
into consideration that no bending/twisting forces are applied to the TFT -LCD module from outside.
Otherwise the TFT -LCD module may be damaged.
(C) Copyright AU Optronics, Inc.
January, 2003 All Rights Reserved.M190EN01 v.2 Ver0.1
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2.0General Description
This specification applies to the 19.0 inch Color TFT-LCD Module M190EN01.
The display supports the SXGA (1280(H) x 1024(V)) screen format and 16.7M colors (RGB 8-bits data).
All input signals are 2 Channel LVDS interface compatible.
This module does not contain an inverter card for backlight.
2.1 Display Characteristics
The following items are characteristics summary on the table under 25 condition:
ITEMSUnitSPECIFICATIONS
Screen Diagonal[mm]480(19")
Active Area[mm]376.32 (H) x 301.056 (V)
Pixels H x V1280(x3) x 1024
Pixel Pitch[mm]0.294 (per one triad) x 0.294
Pixel ArrangementR.G.B. Vertical Stripe
Display ModeNormally Black
White Luminance ( Center )[cd/m2]
Contrast Ratio700 : 1 (Typ)
Optical Response Time[msec]25 (Typ)
Nominal Input Voltage VDD[Volt]+5.0 V
Power Consumption
(VDD line + CCFL line)
Weight[Grams]2700 (Typ)
Physical Size[mm]404.2(W) x 330(H) x 20(D) (Typ)
Electrical InterfaceEven/Odd R/G/B data, 3 sync signal,
Support Color16.7M colors (RGB 8-bit data )
Temperature Range
Operating
Storage (Shipping)
[Watt]40W (typ.) (w/o Inverter, All white pattern)
o
C]
[
o
C]
[
300 cd/m
Clock
0 to +50
-20 to +60
2 @7mA
(Typ)
(C) Copyright AU Optronics, Inc.
January, 2003 All Rights Reserved.M190EN01 v.2 Ver0.1
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2.2 Functional Block Diagram
The following diagram shows the functional block of the 19 inches Color TFT-LCD Module:
AU ASIC
G1
LVDS
+5V
Connector
DC/DC
Converter
LVDS
Receiver
I/F + X-PCB
-
Timing
Controlle
r
G1024
D1D3840
Gamma
Correction
DC POWER
TFT-LCD
1280*(3)*1024
Pixels
-
Inverter
JAE FI-X30SSL-HF or compatible JST BHSR-02VS-1
Mating Type:Mating Type: SM02(8.0)B-BHSS
JAE FI-X30HL-T ( Locked Type )
JAE FI-X30S-H ( Unlocked Type )
4 CCFL
(C) Copyright AU Optronics, Inc.
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2.3 Optical Characteristics
The optical characteristics are measured under stable conditions at 25 (Room Temperature):
ItemUnitConditionsMin.Typ.Max.
Viewing Angle
[degree]
[degree]
[degree]
[degree]
Contrast ratioNormal Direction500700
Response Time (Note 1)
[msec]Raising Time-15 25
[msec]Falling Time- 10 15
[msec]Raising + Falling-2540
Color / Chromaticity
Coordinates (CIE)
Red y 0.3240.3540.384
Green x0.2780.3080.338
Green y 0.5760.6060.636
Blue x0.1080.1380.168
Blue y 0.0570.0870.117
White x0.280.310.34Color Coordinates (CIE) White
White y 0.300.330.36
85
85
-
-
-
-
EquipmentPattern Generator, Power Supply, Digital Voltmeter, Luminance meter (PR 880, BM-5A ,
BM 7 , & EZContrast* )
Aperture 1with 100cm VD or 2with 50cm viewing distance
Test Point Center (ISO point 22)
Environment< 1 lux
LCD Module
PR-880 /
BM5A /
BM7
measuring distance
Module Driving Equipment
‘*’ EZ Contrast is different measurement tool with very close viewing distance.
Note 1: Definition of Response time:
(C) Copyright AU Optronics, Inc.
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p
100%
90%
10%
0%
f
The output signals of photodetector are measured when the input signals are changed from“ Black” to “ White”
(raising time), and from “White” to “ Black” (falling time), respectively. The response time is interval between the
10% and 90% of amplitudes. Refer to figure as below.
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T
Optical
onse
Res
Note 2: Brightness uniformity of these 9 points is defined as below:
90 %
50 %
Tr
10 %
10 %
Minimum Luminance in 9 Points (1-9)
Uniformity = ———————————————————
Maximum Luminance in 9 Points (1-9)
(C) Copyright AU Optronics, Inc.
January, 2003 All Rights Reserved.M190EN01 v.2 Ver0.1
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50 %
90 %
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Note 3: Crosstalk is defined as below :
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1/2
A
1/6
1/6
2/31/3
1/2
A
1/2
B
184 gray level184 gray level
Unit: percentage of dimension of display area
l L
l L
l / LAx 100%= 1.5% max., LA and LB are brightness at location A and B
A-LA’
l / LBx 100%= 1.5% max., LA’ and LB’ are brightness at location A’ and B’
B-LB’
2.4 Pixel format image
Following figure shows the relationship of the input signals and LCD pixel format.
1/6
1/6
1/3
1/2
B’
2/3
0 gray level
1st Line
1024
th
Line
121279 1280
R G B R G B
R G B R G B
R G B R G B
R G B R G B
(C) Copyright AU Optronics, Inc.
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3.0 Electrical characteristics
3.1 Absolute Maximum Ratings
Absolute maximum ratings of the module is as following:
ItemSymbolMinMaxUnitConditions
Logic/LCD Drive VoltageVIN-0.3+5.5[Volt]
Select LVDS data orderSELLVDSNCNC[Volt]
CCFL Inrush currentICFLL-38[mA]Note 1
CCFL CurrentICFL-7.5[mA] rms
Operating TemperatureTOP0+50 [oC]Note 2
Operating HumidityHOP895[%RH]Note 2
Storage TemperatureTST-20+60 [oC]Note 2
Storage HumidityHST895[%RH]Note 2
Note 1 : Duration=50 msec.
Note 2 : Maximum Wet-Bulb should be 39
and No condensation.
Relative Humidity %
Twb=39
T=40,H=95%
100
95
80
T=50,H=55%
60
T=60,H=39%
Storage
40
range
Operation range
T=65,H=29%
20
Storage
5
0
-20
06050
TemperatureoC
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3.2 Connectors
Physical interface is described as for the connector on module.
These connectors are capable of accommodating the following signals and will be following components.
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3.4 Signal Description
The module using a pair of LVDS receiver SN75LVDS82(Texas Instruments) or compatible. LVDS is a
differential signal technology for LCD interface and high speed data transfer device. Transmitter shall be
SN75LVDS83(negative edge sampling) or compatible. The first LVDS port(RxOxxx) transmits odd pixels
while the second LVDS port(RxExxx) transmits even pixels.
PIN #SIGNAL NAMEDESCRIPTION
1RxO0-Negative LVDS differential data input (Odd data)
2RxO0+Positive LVDS differential data input (Odd data)
3RxO1-Negative LVDS differential data input (Odd data)
11RxO3+Positive LVDS differential data input (Odd data)
12RxE0-Negative LVDS differential data input (Even clock)
13RxE0+Positive LVDS differential data input (Even data)
14GNDPower Ground
15RxE1-Positive LVDS differential data input (Even data)
16RxE1+Negative LVDS differential data input (Even data)
17GNDPower Ground
18RxE2-Negative LVDS differential data input (Even data)
19RxE2+Positive LVDS differential data input (Even data)
20RxEC-Negative LVDS differential clock input (Even clock)
21RxEC+Positive LVDS differential clock input (Even clock)
22RxE3-Negative LVDS differential data input (Even data)
23RxE3+Positive LVDS differential data input (Even data)
24GNDPower Ground
25NC26NC27NC28POWERPower
29POWERPower
30POWERPower
Positive LVDS differential data input (Odd data)
Note: Input signals of odd and even clock shall be the same timing.
LVDS DATA NameDescription
DSPDisplay Timing: When the signal is high, the pixel data shall be valid to be displayed
V-SVertical Sync: Both Positive and Negative polarity are acceptable
H-SHorizontal Sync: Both Positive and Negative polarity are acceptable
(C) Copyright AU Optronics, Inc.
January, 2003 All Rights Reserved.M190EN01 v.2 Ver0.1
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3.5 Signal Electrical Characteristics
Input signals shall be low or Hi-Z state when Vin is off
It is recommended to refer the specifications of SN75LVDS82DGG (Texas Instruments) in detail.
Each signal characteristics are as follows;
ParameterConditionMinMaxUnit
Vth
Vtl
Differential InputHigh
Voltage(Vcm=+1.2V)
Differential Input Low
Voltage(Vcm=+1.2V)
100
-100
[mV]
[mV]
3.6 Interface Timings
Basically, interface timings described here is not actual input timing of LCD module but output timing of
SN75LVDS82DGG (Texas Instruments) or equivalent.
Note: Typical value refer to VESA STANDARD, (*1) Tha+Thb should be less than 1024 Tck.
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t
t
H38H
H
3.6.2 Timing Definition
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1688dot
H-Sync
248dot48dot
112do
DSPTMG
V-Sy nc
1
3
DSPTMG
3.7 Power Consumption
Input power specifications are as follows;
1280do
SymbolParameterMinTypMaxUnitsCondition
VDDLogic/LCD Drive
Voltage
IDDVDD current 11001300[mA]
IIDDInrush VDD current 7[A]t < 80us
PDDVDD Power8[Watt]Vin=5V, All White Pattern
VDDrpAllowable
Logic/LCD Drive
Ripple Voltage
VDDnsAllowable
Logic/LCD Drive
Ripple Noise
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4.555.5[Volt]
100[mV]
p-p
100[mV]
p-p
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3.8 Power ON/OFF Sequence
Vin power and lamp on/off sequence is as follows. Interface signals are also shown in the chart. Signals
from any system shall be Hi-Z state or low level when Vin is off.
1sec
min.
Vin
Signal
Lamp
On
0 V
0 V
0 V
10%
90%90%
15ms max.
10%10%
min.
250ms
10%
10%
0 min.0 min.
0 min.
4.0Backlight Characteristics
4.1 Signal for Lamp connector
Pin #Signal Name
1Lamp High Voltage
2
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Lamp Low Voltage
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4.2 Parameter guide line for CFL Inverter
SymbolParameterMinTypMaxUnitsCondition
(L255)White Luminance200300-[cd/m2](Ta=25oC)
ISCFLCCFL standard current6.57.07.5[mA]
(Ta=25oC)
rms
IRCFLCCFL operation range3.07.07.5[mA]
(Ta=25oC)
rms
fCFLCCFL Frequency405060[KHz](Ta=25oC)
Note 1
ViCFL
o
C)
(0
ViCFL
o
C)
(25
CCFL Ignition Voltage1800[Volt]
CCFL Ignition Voltage1500[Volt]
VCFLCCFL Discharge Voltage
(Reference)
660
rms
rms
720780[Volt]
rms
(Ta=0
Note 2
(Ta=25
Note 2
(Ta=25
Note 3
o
C)
o
C)
o
C)
PCFLCCFL Power consumption17.1620.16 23.4[Watt](Ta=25oC)
Note 3
Note 1: CCFL Frequency should be carefully determined to avoid interference between inverter and TFT LCD
Note 2: CCFL inverter should be able to give out a power that has a generating capacity of over 1800 voltage.
Lamp units need 1800 voltage minimum for ignition
Note 3: Calculator value for reference (ICFL×VCFL=PCFL)
Note 4: Lamp soldering method is required to use “Hook Soldering”.
5.0 Vibration, Shock, and Drop
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5.1 Vibration & Shock
Frequency:10 - 200Hz
Sweep: 30 Minutes each Axis (X, Y, Z)
Acceleration:1.5G(10~200Hz P- P)
Test method:
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Acceleration (G)
Frequency (Hz)
Active time(min)
5.2 Shock Test Spec:
Acceleration (G) –a
Active time -b
Wave form
Times
Direction: X , Y, Z
5.3 Drop test
Package test: The drop height is 60 cm.
1.5
10~200~10
30
50
20
half-sin
1
6.0 Environment
The display module will meet the provision of this specification during operating condition or after storage
or shipment condition specified below. Operation at 10% beyond the specified range will not cause
physical damage to the unit.
6.1 Temperature and Humidity
6.1.1 Operating Conditions
The display module operates error free, when operated under the following conditions;
Temperature0
Relative Humidity8% to 95%
Wet Bulb Temperature39.0
6.1.2 Shipping Conditions
The display module operates error free, after the following conditions;
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0
C to 50 0C
0
C
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Temperature-20
Relative Humidity8% to 95%
Wet Bulb Temperature39.0
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0
C to 60 0C
0
C
6.2 Atmospheric Pressure
The display assembly is capable of being operated without affecting its operations over the pressure range
as following specified;
PressureNote
Maximum Pressure1040hPa0m = sea level
Minimum Pressure674hPa3048m = 10.000 feet
Note : Non-operation attitude limit of this display module = 30,000 feet. = 9145 m.
6.3 Thermal Shock
The display module will not sustain damage after being subjected to 100 cycles of rapid temperature
change. A cycle of rapid temperature change consists of varying the temperature from -20
back again.
Thermal shock cycle-20
0
C for 30min
0
60
C for 30min
Power is not applied during the test. After temperature cycling, the unit is placed in normal room ambient
for at least 4 hours before powering on.
0
C to 600C, and
7.0 Reliability
This display module and the packaging of that will comply following standards.
7.1 Failure Criteria
The display assembly will be considered as failing unit when it no longer meets any of the requirements
stated in this specification. Only as for maximum white luminance, following criteria is applicable.
Note : Maximum white Luminance shall be 125 cd/m
7.2 Failure Rate
The average failure rate of the display module (from first power-on cycle till 1,000 hours later) will not exceed
1.0%.
The average failure rate of the display module from 1,000 hours until 16,000 hours will not exceed 0.7%
per 1000 hours.
2
or more.
7.2.1 Usage
The assumed usage for the above criteria is:
220 power-on hours per month
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500 power on/off cycles per month
Maximum brightness setting
Operation to be within office environment (25
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0
C typical)
7.2.2 Component De-rating
All the components used in this device will be checked the load condition to meet the failure rate criteria.
7.3 CCFL Life
The assumed CCFL Life will be longer than 30,000 hours, typical value is 40,000 hours under stable condition at
o
25 ± 5
Standard current at 7.0 ± 0.5mA.
Definition of life: brightness becomes 50% or less than the minimum luminance value of CCFL.
C;
7.4 ON/OFF Cycle
The display module will be capable of being operated over the following ON/OFF Cycles.
ON/OFFValueCycles
+Vin and CCFL power30,00010 seconds on / 10 seconds off
8.0 Safety
8.1 Sharp Edge Requirements
There will be no sharp edges or comers on the display assembly that could cause injury.
8.2 Materials
8.2.1 Toxicity
There will be no carcinogenic materials used anywhere in the display module. If toxic materials are used,
they will be reviewed and approved by the responsible AUO Toxicologist.
8.2.2 Flammability
All components including electrical components that do not meet the flammability grade UL94-V1
in the module will complete the flammability rating exception approval process. The printed circuit
board will be made from material rated 94-V1 or better. The actual UL flammability rating will be
printed on the printed circuit board.
8.3 Capacitors
If any polarized capacitors are used in the display assembly, provisions will be made to keep them from
being inserted backwards.
8.4 Hazardous Voltages
Any point exceeding 42.4 volts meets the requirement of the limited current circuit. The current through a 2K
resistance is less than 0.7 x f (kHz) mA.
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9.0 Other requirements
9.1 National Test Lab Requirement
The display module will satisfy all requirements for compliance to
UL 1950, First EditionU.S.A. Information Technology Equipment
CSA C22.2 No.950-M89Canada, Information Technology Equipment
EEC 950 International, Information Technology Equipment
EN 60 950 International, Information Processing Equipment
(European Norm for IEC950)
9.2 Label
9.2.1 Product label
10.0 Mechanical Characteristic
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