DDBU Marketing Division / AU Optronics Croporation
CustomerChecked & Approved by
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Product Specifications
15.0” XGA Color TFT-LCD Module
Model Name:M150XN07
V.1
() Preliminary Specifications
() Final Specifications
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i Contents
1.0 Handling Precautions
2.0 General Description
2.1 Display Characteristics
2.2 Functional Block Diagram
3.0 Absolute Maximum Ratings
4.0 Optical Characteristics
4.1 Signal for Lamp connector
4.2 Parameter guideline for CCFL Inverter
5.0 Signal Interface
5.1 Module Interface Connectors
5.2 Module Connector Pin Configuration
5.3 Backlight Connectors
5.4 Backlight Connector Pin Configuration
5.5 Signal Electrical Characteristics
5.6 Interface Timings Characteristics
5.7 Interface Timing Definition
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6.0 Pixel format image
7.0 Power Consumption
8.0 Power ON/OFF Sequence
9.0 Backlight Characteristics
9.1 Signal for Lamp connector
9.2 Parameter guideline for CCFL Inverter
10.0Vibration, Shock, and Drop
10.1 Vibration & Shock
10.1.1 Vibration Test Spec
10.1.2 Shock Test Spec
10.2 Drop
11.0 Environment
11.1 Temperature and Humidity
11.1.1 Operating Conditions
11.1.2 Shipping Conditions
11.2 Atmospheric Pressure
11.3 Thermal Shock
12.0 Reliability
12.1 Failure criteria
12.2 Failure rate
12.2.1 Usage
12.2.2 Components de-rating
12.3 CCFL life
12.4 ON/OFF cycle
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13.0 Safety
13.1 Sharp edge requirement
13.2 Material
13.2.1 Toxicity
13.2.2 Flammability
13.3 Capacitors
13.4 Hazardous voltage
14.0 Other requirements
14.1 Smoke free design
14.2 National test lab requirement
15.0 Label
16.0 Mechanical Characteristics
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ii Record of Revision
Version and Date PageOld descriptionNew DescriptionRemark
0.1 2003/06/10
AllFirst Edition for CustomerAll
(C) CopyrightAU Optronics, Inc.
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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) In case if a Module has to be put back into the packing container slot after once it was taken out from the
container, do not press the center of the CCFL Reflector edge. Instead, press at the far ends of the CFL
Reflector edge softly. Otherwise the TFT Module may be damaged.
10) At the insertion or removal of the Signal Interface Connector, be sure not to rotate nor tilt the Interface
Connector of the TFT Module.
11) After installation of the TFT Module into an enclosure (LCD monitor housing, for example), do not twist nor
bend the TFT Module even momentary. At designing the enclosure, it should be taken into consideration
that no bending/twisting forces are applied to the TFT Module from outside. Otherwise the TFT Module
may be damaged.
12) Cold cathode fluorescent lamp in LCD contains a small amount of mercury. Please follow local ordinances or
regulations for disposal.
13) Small amount of materials having no flammability grade is used in the LCD module. The LCD module should be
supplied by power complied with requirements of Limited Power Source (2.11, IEC60950 or UL1950), or be applied
exemption.
14) The LCD module is designed so that the CFL in it is supplied by Limited Current Circuit (2.4, IEC60950 or UL1950).
Do not connect the CFL in Hazardous Voltage Circuit.
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2.0General Description
This specification applies to the 15.0 inch Color TFT-LCD Module M150XN07.
The display supports the XGA (1024(H) x 768(V)) screen format and 262,144 colors (RGB 6-bits data).
All input signals are 1 Channel LVDS interface compatible.
This module does not contain an inverter card for backlight.
Features
-XGA 1024(H) x 768(V) resolution
-2 CCFLs (Cold cathode Fluorescent Lamp)
-High contrast ratio, high aperture ratio
-Wide viewing angle
-High-speed response
-Low power consumption
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Application
Desktop monitors
2.1 Display Characteristics
The following items are characteristics summary on the table under 25 condition:
ITEMSUnitSPECIFICATIONS
Screen diagonal[mm]381 (15”)
Outline dimension[mm]326.5 x 253.5 x 12.0 typ.
Display Area[mm]304.128 (H) x 228.096(38.1cm diagonal)
Resolution1024(R,G,B x 3) x 768
Pixel Pitch[mm]0.297 x 0.297
Pixel ArrangementR.G.B. Vertical Stripe
Display ModeTN mode, Normally White
Typical white Luminance.[cd/m2]
Brightness uniformity80% typ. (note 2)
Luminance uniformity1.7 max.(Note 3)
Crosstalk (at 60Hz)1.2% max. (note 4)
Contrast Ratio 400 : 1 typ.
Support Colors262,144 colors (6-bit for R,G,B)
Chromaticity(CIE1931)
White-x0.313
White-y0.329
Color Gamut60% typ., of NTSC coverage
Viewing angle60(left),60(right),40(up),60(down) CR=10
Response Time[msec]16ms typ. (Tr +Tf)
Nominal Input Voltage VDD[Volt]+3.3 V
Power Consumption
(VDD line + CCFL line)
Electrical InterfaceLVDS (1 ch)
Frame rate[Hz]60Hz typ., 75Hz max.
Weight[Grams]1100 typ.
Mounting methodSide mounting
Surface treatmentAnti-glare, hard coating (3H)
Temperature Range
Operating
Storage (Shipping)
(C) CopyrightAU Optronics, Inc.
Feb. 2003 All Rights Reserved.M150XN07Ver0.1
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[Watt]15 (typ.) @8mA (All Black Pattern)
o
[
C]
o
[
C]
250nit (typ) @8mA
0 to +50
-20 to +60
(note 1)
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256512
2
1
4
Note 1: Brightness is measured at the center point of brightness value with all pixels displaying white.
90 %
50 %
768
3
192
384
5
576
Unit: pixels
10 %
10 %
50 %
90 %
Unit: percentage of dimension of display area
Note 2: Brightness uniformity of these 9 points is defined as below:
(Min. brightness/ Max. brightness) x 100%
Note 3: TCO ’99 Certification Requirements and test methods for environmental labeling of Display Report No. 2
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A
A
TCO 99 certification requirements and test methods:
1) Diagrammatic
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m
d
Note 4:
L
max+30
and L
min+30
Effective areaW×H
2) D is the diagonal of the screen in centimeters. And m
m
(cm)=D×1.5 with a minimum distancemd=50 cm
d
is as follow.
d
3) The measurement positions shall consist of an active white square of size 4 by 4 cm.
4) Measure L
max+30
degrees and measure L
and L
that are given as points L & R. And then rotated to an azimuth angle of –30
min+30
max-30
and L
again using the same procedure.
min-30
5) The variation in luminance ratio is calculated as the ratio:
L
=(( L
R
max+30
/ L
min+30
1/2
)(L
max-30
1/6
/ L
min-30
1/6
))/2 1.7
1/2
2/31/3
’
1/2
B
184 gray level184 gray level
B’
1/6
1/6
1/3
1/2
2/3
Unit: percentage of dimension of display area
l L
l / LAx 100%= 1.2% max., LA and LB are brightness at location A and B
A-LA’
l / LBx 100%= 1.2% max., LA’ and LB’ are brightness at location A’ and B’
l L
B-LB’
0 gray level
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2.2 Functional Block Diagram
The following diagram shows the functional block of 15.0 inches Color TFT-LCD Module:
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AU ASIC
G1
LVDS
Timing
Connector
LVDS
RSDS
TFT-LCD
1024*(3)*768
Pixels
+ 3.3 V
G768
D1D3072
DC/DC
Gamma
DC POWER
Inverter
DF-14H-20P-1.25H (Hirose)JST BHR-03VS-1
2 CCFL
CWY20G-A0D1T (PTWO)
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g
ge
3.0 Absolute Maximum Ratings
Absolute maximum ratings of the module is as following:
ItemSymbolMinMaxUnitConditions
Logic/LCD Drive VoltageVDD0.3+3.6[Volt]
Input Voltage of SignalVin0.3VDD+0.3[Volt]
CCFL CurrentICFL3.08.5[mA] rms
Operating TemperatureTOP0+50 [oC]Note 2
Operating HumidityHOP2085[%RH]Note 2
Storage TemperatureTST-20+60 [oC]Note 2
Storage HumidityHST595[%RH]Note 2
Vibration1.5 / 10-200[G / Hz]
Shock50/20[G / ms]Half sine wave
Assured Torque at Side Mount2.0[kgf.cm]
Re-screw3[Times]
Note 1: CCFL life time will drop dramatically if exceeding 8.0 mA; It will have safety concern if exceeding 8.5
mA.
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Note 1
Note 2: Maximum Wet-Bulb should be 39
Wet bulb temperature chart
Relative Humidity %
100
95
90
80
70
60
50
Stora
40
e ran
Operation range
and No condensation.
=39
Twb
T=40,H=95%
T=50,H=55%
T=60,H=39%
T=65,H=29%
30
20
Storage range
10
5
0
-2006050
TemperatureoC
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4.0 Optical Characteristics
The optical characteristics are measured under stable conditions at 25 (Room Temperature):
ItemUnitConditionsMin.Typ.Max.
Viewing Angle
CR: Contrast Ratio
Contrast ratio
Response Time( Note 1)[msec]
Color / ChromaticityRed x
Coordinates (CIE)Red y
Color Coordinates (CIE) W hite
Brightness Uniformity[%]
White Luminance at CCFL 8.0mA
White Luminance at CCFL 6.5mA
Crosstalk ( in 60Hz)
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Horizontal (Right)
[degree]
[degree]
[degree]
[degree]
[msec]
[msec]Raising + Falling
CR = 10(Left)
Horizontal (Right)
CR =5(Left)
Vertical(Upper)
CR = 10(Lower)
Vertical(Upper)
CR = 5(Lower)
Normal Direction300400-
Raising Time Ton
( 10%-90% )
Falling Time Toff
( 90%-10% )
Green x
Green y
Blue x
Blue y
White x
White y
[cd/m2]
50
50
60
60
30
50
60
65
-46
-1217
-1623
0.5870.6170.647
0.3170.3470.377
0.2600.2900.320
0.5630.5930.623
0.1180.1480.178
0.0700.1000.130
0.2830.3130.343
0.2990.3290.359
7580-
200
170
[%]1.2
60
60
75
75
40
60
70
75
250
200
-
-
Note 1: Definition of Response time:
The output signals of photodetector are measured when the input signals are changed from “ Black” to “ White”
(falling time), and from “White” to “ Black” (rising time), respectively. The response time interval between the 10% and
90% of amplitudes. Refer to figure as below.
TrR
%
TrD
100
90
Optical
Response
10
white
0
white
black
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A
)
5.0 Signal Interface
5.1 Module Interface 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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Connector Name
Manufacturer
Type / Part Number
5.2Module Connector Pin Configuration
DF-14H-20P-1.25H (Hirose) or CWY20G-A0D1T (PTWO)
Pin No. SymbolDescription
1VDDPower Supply, 3.3V (typical)
2VDDPower Supply, 3.3V (typical)
3VSSGround
4VSSGround
5Rin0-- LVDS differential data input (R0-R5, G0)
6Rin0++ LVDS differential data input (R0-R5, G0)
7VSSGround
8Rin1-- LVDS differential data input (G1-G5, B0-B1)
9Rin1++ LVDS differential data input (G1-G5, B0-B1)
Interface Connector
Hirose, PTWO or compatible
DF-14H-20P-1.25H (Hirose)
CWY20G-
0D1T (PTWO
10VSSGround
11Rin2-- LVDS differential data input (B2-B5, HS, VS, DE)
12Rin2++ LVDS differential data input (B2-B5, HS, VS, DE)
13VSSGround
14ClkIN-- LVDS differential clock input
15ClkIN++ LVDS differential clock input
16VSSGround
17Rin3-NC
18Rin3+NC
19VSSGround
20NC
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5.3 Backlight Connectors
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Connector Name / Designation
Manufacturer
Type / Part Number
Mating Type / Part Number
For Lamp Connector
JST or compatible
BHR-03VS-1
SM02(8.0)B-BHS-1-TB
5.4 Backlight Connector Pin Configuration
Pin SymbolDescription
1HVLamp High Voltage
2NCNo connection
3LVGround
Cable length: 140 +- 5 mm
Connector-output position: right side (front view)
Lamp assy design shall be easy for replacement and repair.
5.5 Signal Electrical Characteristics
Each signal characteristics are as follows;
ItemSymbolMinTypMaxUnit
LCD Drive
voltage
“High” input signal
voltage
“Low” input signal
voltage
VDD+3.0+3.3+3.6[V]
Vih2.0--[V]
Vil--0.8[V]
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6bits input data format
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Clkln
R0IN0
R1IN1
R2IN2
Note: R/G/B data 7:MSB, R/G/B data 0:LSB
Vdiff=0V
G0R5R4R3R2R1R0
B1B0G5G4G3G2G1
DEVSHSB5B4B3B2
PreviousData for current Clk cycleNext
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5.6 Signal Electrical Characteristics
Input signals shall be low or Hi-Z state when Vin is off
It is recommended to refer to the specifications of SN75LVDS82DGG (Texas Instruments) in detail.
Each signal characteristics are as follows:
ParameterConditionMinMaxUnit
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Vth
Vtl
Differential InputHigh
Voltage(Vcm=+1.2V)
Differential Input Low
Voltage(Vcm=+1.2V)
100
-100
[mV]
[mV]
5.7 Interface Timings
Basically, interface timings described here is not actual input timing of LCD module but output timing of
SN75LVDS82DGG (Texas Instruments) or equivalent.
5.7.1 Timing Characteristics
SignalParameterSymbolMINTYPMAXUnit
Clock TimingClock frequency
Hsync Timing
Vsync Timing
Horizontal active
Horizontal blanking
Horizontal period
Vertical active
Vertical blanking
Vertical period
clk506581MHz
Thd102410241024Tclk
Thbl40320400Tclk
Th106413441424Tck
Tvd768768768Th
Tvbl83875Th
Tv776806843Th
Note: Typical value refer to VESA STANDARD
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5.8 Interface Timing Definition
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6.0 Pixel format image
Following figure shows the relationship of the input signals and LCD pixel format.
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7.0 Power Consumption
Input power specifications are as follows;
SymbolParameterMinTypMaxUnitsCondition
VDDLCD Drive Voltage3.03.33.6[V]
IDDLCD Drive Current TBDTBDTBD[mA]VDD=3.3v, All Black Pattern
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PDDLCD Drive power
consumption
VDDnsAllowable
LCD Drive Ripple
Noise
TBDTBDTBD[W att]VDD=3.3v, All Black Pattern
100[mV]
p-p
8.0 Power ON/OFF Sequence
VDD power and lamp on/off sequence is as follows. Interface signals are also shown in the chart.
1sec
min.
Vin
Signal
0 V
0 V
10%
90%90%
10ms max.
10%10%
10%
10%
0 min.0 min.
Lamp
On
0 V
200ms
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)
9.0Backlight Characteristics
9.1 Signal for Lamp connector
Pin #signal Name
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1
2
3
Lamp High Voltage
No connection
Ground
9.2 Parameter guide line for CCFL Inverter
SymbleParameterMinTypMaxUnitsCondition
IRCFLCCFL operation range2.58.08.5[mA]
rms
ICFLCCFL Inrush current--20[mA]
FCFLCCFL Frequency405580[KHz]
ViCFL
(25)
(reference)
ViCFL
(0)
(reference)
VCFLCCFL Discharge Voltage
CCFL Ignition Voltage
CCFL Ignition Voltage
(Reference)
1000
1300
590650
[Volt]
rms
[Volt]
rms
[Volt]
rms
(Ta=25)
Note 4
(Ta=25)
Note 1
(Ta= 25)
Note 3
(Ta= 0)
Note 3
(Ta=25)
Note 2
PCFLCCFL Power consumption
@ 8mA (excluding
inverter
Note 1: CCFL Frequency should be carefully determined to avoid interference between inverter and TFT LCD
Note 2: Calculator value for reference (IRCFL×VCFLx2=PCFL)
Note 3: CCFL inverter should be able to give out a power that has a generating capacity of over 1300 voltage.
Lamp units need 1300 voltage minimum for ignition
Note 4: CCFL life time 30,000hr at 8mA,it’s defined as when the brightness is reduced by half.
It’s recommended not to exceed 8.0 mA for CCFL life time concern and it’s prohibited to exceed 8.5 mA for
safety concern.
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9.410.4
[Watt](Ta=25)
Note 2
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10.0Vibration,Shock,and Drop
10.1 Vibration & Shock
The module shall work error free after following vibration and shock condition. Likewise the module shall not sustain
any damage after vibration and shock test.
10.1.1 Vibration Test Spec:
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)
10.1.2 Shock Test Spec:
Acceleration (G)
Active time(ms)
Wave form
Times
Direction: X , Y, Z
10.2 Drop
Package test: The drop height is defined as 60 cm.
(1 corner,3 edges,6 flat faces)
-- No damage and defect found for panel.
1.5
10~200~10
30
50
20
Half-sin
1
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11.0 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.
11.1 Temperature and Humidity
11.1.1 Operating Conditions
The display module operates error free, when operated under the following conditions;
Temperature0
Relative Humidity20% to 85%
Wet Bulb Temperature39.0
11.1.2 Shipping Conditions
The display module operates error free, after the following conditions;
Temperature-20
Relative Humidity5% to 95%
Wet Bulb Temperature39.0
0
C to 50 0C
0
C
0
C to 60 0C
0
C
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11.2 Atmospheric Pressure
The display assembly is capable of being operated without affecting its operations over the pressure range as
following specified:
PressureAltitude
Maximum Pressure1040 hPa0 m = sea level
Minimum Pressure601 hPa3658 m = 12,000 feet
Note: Non-operation altitude limit of this display module = 40,000 feet. = 12193 m.
11.3 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
Thermal shock cycle
0
C for 30min
-20
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 back again.
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12.0 Reliability
This display module and the packaging of that will comply following standards.
12.1 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 75 cd/m
12.2 Failure Rate
The average failure rate of the display module (from first power-on cycle till 1,000 hours later) will not
exceed1.0%. The average failure rate of the display module from 1,000 hours until 10,000 hours will not
exceed 0.70% per 1000 hours.
12.2.1 Usage
The assumed usage for the above criteria is:
220 power-on hours per month
500 power on/off cycles per month
Maximum brightness setting
Operation to be within office environment (25
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2
or more.
0
C typical)
12.2.2 Component De-rating
All the components used in this device will be checked the load condition to meet the failure rate criteria.
12.3 CCFL Life
The assumed CCFL Life will be longer than 30,000 hours under stable conditi
Standard current at 8.00.5 mA
Definition of life: brightness becomes 50% or less than the minimum luminance value of CCFL.
on at 2550C;
12.4 ON/OFF Cycle
The display module will be capable of being operated over the following ON/OFF Cycles.
ON/OFFValueCycle
+VDD and CCFL power36,00010 seconds on / 10 seconds off
13.0 Safety
13.1 Sharp Edge Requirements
There will be no sharp edges or corners on the display assembly that could cause injury.
13.2 Materials
13.2.1 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.
13.2.2 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.
(C) CopyrightAU Optronics, Inc.
Feb. 2003 All Rights Reserved.M150XN07Ver0.1
No Reproduction and Redistribution Allowed.
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14.0 Other requirements
14.1 Smoke Free Design
Any smoke nor strange smell shall not be observed by the operator at any single failure.
14.2 National Test Lab Requirement
The display module will satisfy all requirements for compliance to the following requirement:
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UL 1950, First Edition
CSA C22.2 No.950-M89Canada, Information Technology Equipment
IEC 950 International, Information Technology Equipment
EN 60 950International, Information Processing Equipment
The construction of the display module is designed to suppress EMI. When mounted into a specified host
system, the system will meet the following EMI requirement:
FCC Part 15 Class B
VCCI Class 2
CISPR 22, class B
Taiwan CNS standard
China CCIB standard
U.S.A. Information Technology Equipment
(European Norm for IEC950)
15.0 Label
(C) CopyrightAU Optronics, Inc.
Feb. 2003 All Rights Reserved.M150XN07Ver0.1
No Reproduction and Redistribution Allowed.
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16.0 Mechanical Characteristics
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Feb. 2003 All Rights Reserved.M150XN07Ver0.1
No Reproduction and Redistribution Allowed.
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