AUO M215HW01 V0 Specification

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Product Specification
AU OPTRONICS CORPORATION
(V) Preliminary Specification ( ) Final Specification
Module 21.5Color TFT-LCD
Model Name M215HW01 V0
M215HW01 V0
Customer Date
Approved by
Note: This Specification is subject to
change without notice.
Approved by Date
CM Wung
Prepared by
Boris Chu
Desktop Display Business Group /
AU Optronics corporation
2008/04/02
2008/04/02
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M215HW01 V0
Contents
1.0 Handling Precautions.............................................................................................................4
2.0 General Description ...............................................................................................................5
2.1 Display Characteristics.......................................................................................................5
2.2 Optical Characteristics .......................................................................................................6
3.0 Functional Block Diagram ...................................................................................................11
4.0 Absolute Maximum Ratings ................................................................................................12
4.1 TFT LCD Module ..............................................................................................................12
4.2 Backlight Unit ...................................................................................................................12
4.3 Absolute Ratings of Environment .....................................................................................12
5.0 Electrical characteristics .....................................................................................................13
5.1 TFT LCD Module ..............................................................................................................13
5.1.1 Power Specification .......................................................................................................13
5.1.2 Signal Electrical Characteristics....................................................................................14
6.0 Signal Characteristic............................................................................................................16
6.1 Pixel Format Image ..........................................................................................................16
6.2 The input data format .......................................................................................................16
6.3 Signal Description ............................................................................................................17
6.4 Timing Characteristics ......................................................................................................18
6.5 Timing diagram.................................................................................................................19
6.6 Power ON/OFF Sequence................................................................................................20
7.0 Connector & Pin Assignment..............................................................................................21
7.1 TFT LCD Module ..............................................................................................................21
7.1.1 Pin Assignment
7.2 Backlight Unit ...................................................................................................................22
7.2.1 Signal for Lamp connector
8.0 Reliability Test......................................................................................................................23
9.0 Shipping Label......................................................................................................................24
10.0 Mechanical Characteristics ...............................................................................................25
......................................................................................................21
......................................................................................22
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M215HW01 V0
Record of Revision
Version and Date Page Old description New Descrip tion Remark
0.1 2008/04/02 All First Edition for Customer -
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1.0 Handling 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 or 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 CCFL 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, 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
(IEC60950 or UL1950), or be applied exemption.
14) The LCD module is designed so that the CCFL in it is supplied by Limited Current Circuit
(IEC60950 or UL1950). Do not connect the CCFL in Hazardous Voltage Circuit.
M215HW01 V0
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M215HW01 V0
2.0 General Description
This specification applies to the 21.5 inch-wide Color a-Si TFT-LCD Module M215HW01.The display supports the WUXGA - 1920(H) x 1080(V) screen format and 16.7M colors (RGB 6-bits + Hi-FRC data). All input signals are 2-channel LVDS interface and this module doesn’t contain an inverter board for backlight.
2.1 Display Characteristics
The following items are characteristics summary on the table under 25 condition:
ITEMS Unit SPECIFICATIONS
Screen Diagonal [mm] Active Area [mm] 476.64 (H) x 268.11 (V) Pixels H x V 1920(x3) x 1080 Pixel Pitch [um] 248.25 (per one triad) ×248.25 Pixel Arrangement R.G.B. Vertical Stripe Display Mode TN Mode, Normally White White Luminance ( Center ) [cd/m2] Contrast Ratio 1000 (Typ.) (TBD) Optical Response Time [msec] 5ms (Typ., on/off) Nominal Input Voltage VDD [Volt] +5.0 V (TBD) Power Consumption (VDD line + CCFL line) Weight [Grams] TBD (Typ.) Physical Size [mm] 495.6(W) × 292.2(H) × 16.35(D) typ Electrical Interface Dual channel LVDS Support Color 16.7M colors (RGB 6-bit + Hi_FRC ) Surface Treatment Anti-Glare, 3H Temperature Range
Operating Storage (Shipping)
RoHS Compliance RoHS Compliance
[Watt] TBD W (Typ.)
o
C]
[
o
[
C]
546.86(21.53)
2
300 cd/m
(without inverter, all black pattern)
0 to +50
-20to+60
(Typ.)
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2.2 Optical Characteristics
The optical characteristics are measured under stable conditions at 25:
Item Unit Conditions Min. Typ. Max. Note
Horizontal (Right)
Viewing Angle [degree]
Contrast ratio Normal Direction 600 1000 -
Response Time [msec]
CR = 10 (Left)
Vertical (Up) CR = 10 (Down)
Raising Time (TrR)
Falling Time (TrF)
Raising + Falling
Red x
Red y
Color / Chromaticity Coordinates (CIE)
Green x
Green y
Blue x
Blue y
White x
Color Coordinates (CIE) White
Central Luminance [cd/m2] 240 300 - 6
Luminance Uniformity
Crosstalk (in 60Hz)
Flicker
[%]
[%]
dB
White y
150 170
140 160
-
-
-
3.4 7.4
1.6 2.6
5 10
0.618 0.648 0.678
0.309 0.339 0.369
0.262 0.292 0.322
0.573 0.603 0.633
0.113 0.143 0.173
0.040 0.070 0.100
0.283 0.313 0.343
0.299 0.329 0.359
75 80
-
-
-
-
-
1.5
-20
2
3 (TBD)
4
5 (TBD)
7
8
9
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M215HW01 V0
Note 1: Measurement method
The LCD module should be stabilized at given temperature for 30 minutes to avoid abrupt temperature change during measuring (at surface 35 ) . In order to stabilize the luminance, the measurement should be executed after lighting Backlight for 30 minutes in a stable, windless and dark room.
Photo detector
Measured distance
LCD Panel
Center of the screen
TFT-LCD
Note 2: Definition of viewing angle measured by ELDIM (EZContrast 88) Viewing angle is the measurement of contrast ratio 10, at the screen center, over a 180°
horizontal and 180° vertical range (off-normal viewing angles). The 180° viewing angle range is
broken down as follows; 90° (θ) horizontal left and right and 90° (Φ) vertical, high (up) and low
(down). The measurement direction is typically perpendicular to the display surface with the
screen rotated about its center to develop the desired measurement viewing angle.
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M215HW01 V0
Note 3: Contrast ratio is measured by TOPCON SR-3
Note 4: Definition of Response time measured by Westar TRD-100A
The output signals of photo detector are measured when the input signals are changed from “Full
Blackto “Full White” (rising time, Tr
), and from Full Whiteto Full Black(falling time, TfF),
R
respectively. The response time is interval between the 10% and 90% (1 frame at 60 Hz) of
amplitudes.
%
Optical
Optical
response
response
100
100
90
10
10
%
White Black
0
0
Tr
Tr
F
F
Black
1 Frame 1 Frame
Tr
Tr
R
R
White
Tr
+TfF= 5 msec (typ.).
R
Algorithm:Gray Level A – Gray Level B16, then the average gray to gray response time is 2 ms, (F= 60 Hz).
Note 5: Color chromaticity and coordinates (CIE) is measured by TOPCON SR-3
Note 6: Central luminance is measured by TOPCON SR-3
Note 7: Luminance uniformity of these 9 points is defined as below and measured by
TOPCON SR-3
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Uniformity =
Note 8: Crosstalk is defined as below and measured by TOPCON SR-3
CT = | YB – YA | / YA 100 (%)
Where
YA = Luminance of measured location without gray level 0 pattern (cd/m2)
YB = Luminance of measured location with gray level 0 pattern (cd/m2)
9)-(1points9inLuminanceMinimum
9)-(1Points9inLuminanceMaximum
M215HW01 V0
Note 9: Test Patern: Subchecker Pattern measured by TOPCON SR-3
RGBRGB
Gray Level = L127
R GBRGB
RGBRGB
Gray Level = L0
Method: Record dBV & DC value with TRD-100
Amplitude
DC
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AC
Time
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log20(dB)Flicker =
Hz)30Level(atAC
LevelDC
M215HW01 V0
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3.0 Functional Block Diagram
The following diagram shows the functional block of the 21.5 inch Color TFT-LCD Module:
AUO
LVDS
LVD
+5V
Connector
LVDS
Receiver
AUO ASIC
Timing
Controller
RSDS
Transmitter
G1
G1080
Y-Driver IC
TFT-LCD
1920(x3) x 1080
Pixels
X-Driv
D1 D5760
rI
DC/DC
Converter
I/F + X-PCB
I/F PCB Interface:
FI-XB30SSRL-HF16 (JAE) or AL230F-A0G1D-P(P-TWO)
Mating Type:
FI-X30HL (Locked Type)
FI-X30H (Unlocked Type)
4 CCFL
Gamma
Correction
DC
Inverter
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4.0 Absolute Maximum Ratings
Absolute maximum ratings of the module are as following:
4.1 TFT LCD Module
Item Symbol Min Max Unit Conditions
Logic/LCD Drive
Voltage
4.2 Backlight Unit
Item Symbol Min Max Unit Conditions
CCFL Current ICFL
4.3 Absolute Ratings of Environment
Item Symbol Min. Max. Unit Conditions
Operating Temperature TOP 0 +50 [oC]
Operation Humidity HOP 5 90 [%RH]
Storage Temperature TST -20 +60 [oC]
VDD 0 5.5 [Volt] Note 1,2
3.0 7.5
[mA] rms Note 1,2
M215HW01 V0
Note 3
Storage Humidity HST
590
[%RH]
Note 1: With in Ta (25) Note 2: Permanent damage to the device may occur if exceeding maximum values
Note 3: For quality perfermance, please refer to AUO IIS(Incoming Inspection Standard).
Operating Range Storage Range
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AU OPTRONICS CORPORATION
5.0 Electrical characteristics
5.1 TFT LCD Module
5.1.1 Power Specification
Input power specifications are as following:
Symbol Parameter Min Typ Max Unit Conditions
VDD
IDD Input Current
PDD VDD Power
IRush Inrush Current
VDDrp
Logic/LCD Drive
Voltage
Allowable Logic/LCD Drive Ripple Voltage
4.5 5.0 5.5 [Volt] +/-10%
-
-
-
-
TBD TBD [A]
TBD TBD [Watt]
- TBD [A]
- 300 [mV] p-p
VDD= 5.0V, All Black Pattern At 75Hz, +30% VDD= 5.0V, All Black Pattern At 75Hz
Note 1
VDD= 5.0V, All Black Pattern At 75Hz
Note 1: Measurement conditions:
The duration of rising time of power input is 470us.
(High to Low) Control Signal
SW1
SW MAG-SPST
1 2
+12.0V
+5.0V
C2 1uF/25V
R1 47K
R2
1K
VR1
47K
D6 D5 D2 S D1
G
C3
0.01uF/25V
Q3 AO6402
D2SD1D5
G
D6
Q3
AO6402
F1
VCC
(LCD Module Input)
C1 1uF/16V
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5.1.2 Signal Electrical Characteristics
Input signals shall be low or Hi-Z state when VDD is off. Please refer to specifications of
SN75LVDS82DGG (Texas Instruments) in detail.
Characteristics of each signal are as following:
Symbol Parameter Min Typ Max Units Condition
VTH
VTL
VID Input Differential Voltage 100 - 600 [mV] Note 1
VICM
Differential Input High
Threshold
Differential Input Low
Threshold
Differential Input Common
Mode Voltage
- +50 +100 [mV]
-100 -50 - [mV]
+1.0 +1.2 +1.5 [V]
VICM = 1.2V
Note 1
VICM = 1.2V
Note 1
VTH-VTL = 200MV (max)
Note 1
Note 1: LVDS Signal Waveform
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5.2 Backlight Unit
Parameter guideline for CCFL Inverter is under stable conditions at 25 (Room Temperature):
Parameter Min. Typ. Max. Unit Note
CCFL Standard Current (ISCFL) 7.0 7.5 8.0 [mA] rms
CCFL Operation Current (IRCFL) 3.0 7.5 8.0 [mA] rms
CCFL Frequency (FCFL) TBD [KHz]
CCFL Ignition Voltage (ViCFL, Ta= 0 ) 1780 - - [Volt] rms
CCFL Ignition Voltage (ViCF, Ta= 25 ) 1380 - - [Volt] rms
CCFL Operation Voltage (VCFL) -
CCFL Power Consumption (PCFL)
791
(@ 7.5mA)
- 23.7 26.4
880
[Volt] rms
[Watt]
2
3, 4
5
6
CCFL Life Time (LTCFL) 40,000 50,000 - [Hour]
7
Note 1: Typ. values are AUO recommended design values.
*1 All of characteristics listed are measured under the condition using the AUO test inverter. *2 In case of using an inverter other than listed, it is recommended to check the inverter carefully.
Sometimes, interfering noise stripes appear on the screen, and substandard luminance or flicker at low power may happen.
*3 While designing an inverter, it is suggested to check safety circuit very carefully. Impedance of
CCFL, for instance, becomes more than 1 [M ohm] when CCFL is damaged.
*4 Generally, CCFL has certain delay time after applying kick-off voltage. It is recommended to
keep on applying kick-off voltage for 1 [Sec] until discharge.
*5 Reducing CCFL current will increase CCFL discharge voltage and generally increases CCFL
discharge frequency. So all the parameters of the inverter should be carefully designed so the inverter will not produce too much leakage current from high-voltage output.
Note 2: CCFL standard current is measured at 252.
Note 3: CCFL discharge frequency should be carefully determined to avoid interference between
inverter and TFT LCD.
Note 4: The frequency range will not affect lamp life and reliability characteristics.
Note 5: CCFL inverter should be able to release power that has generating capacity exceeding
TBD volt. Lamp units need minimum voltage, TBD Volt, for ignition.
Note 6: The variance of CCFL power consumption is ±10%. (IRCFL × VCFL × 4 = PCFL)
Note 7: Definition of life time: brightness becomes 50%. The minimum life time of CCFL unit is on
the condition of 7.5mA CCFL current and 252.
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6.0 Signal Characteristic
6.1 Pixel Format Image
Following figure shows the relationship of the input signals and LCD pixel format.
1 2 1919 1920
1st Line
R G B R G B
R G B R G B
1080 Line
6.2 The input data format
R G B R G B
R G B R G B
Note 1: R/G/B data 7:MSB, R/G/B data 0:LSB O = First Pixel Data E=Second Pixel Data
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Product Specification
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M215HW01 V0
6.3 Signal Description
The module using one LVDS receiver SN75LVDS82(Texas Instruments). LVDS is a differential signal technology for LCD interface and high speed data transfer device. LVDS transmitters shall be SN75LVDS83(negative edge sampling). The first LVDS port(RxOxxx) transmits odd pixels while the second LVDS port(RxExxx) transmits even pixels.
PIN # SIGNAL NAME DESCRIPTION
1 RxOIN0- Negative LVDS differential data input(Odd data
2 RxOIN0+ Positive LVDS differential data input(Odd data
3 RxOIN1- Negative LVDS differential data input(Odd data
4 RxOIN1+ Positive LVDS differential data input(Odd data
5 RxOIN2- Negative LVDS differential data input(Odd data,DSPTMG
6 RxOIN2+ Positive LVDS differential data input(Odd data,DSPTMG
7 GND Power Ground
8RxOCLK- Ne
9 RxOCLK+ Positive LVDS differential clock input(Odd clock
10 RxOIN3- Negative LVDS differential data input(Odd data
11 RxOIN3+ Positive LVDS differential data input(Odd data
12 RxEIN0- Negative LVDS differential data input(Even data
13 RxEIN0+ Positive LVDS differential data input(Even data
14 GND Power Ground
15 RxEIN1- Positive LVDS differential data input (Even data
16 RxEIN1+ Negative LVDS differential data input(Even data
17 GND Power Ground
18 RxEIN2- Negative LVDS differential data input(Even data
19 RxEIN2+ Positive LVDS differential data input(Even data
20 RxECLK- Negative LVDS differential clock input(Even clock
21 RxECLK+ Positive LVDS differential clock input(Even clock
22 RxEIN3- Negative LVDS differential data input(Even data
23 RxEIN3+ Positive LVDS differential data input(Even data
24 GND Power Ground
25 NC No connection(for AUO test only. Do not connect
26 NC No connection (for AUO test only. Do not connect
27 NC No connection (for AUO test only. Do not connect
28 VDD Power +5V
29 VDD Power +5V
30 VDD Power +5V
ative LVDS differential clock input(Odd clock
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Note1: Start from left side
Product Specification
AU OPTRONICS CORPORATION
M215HW01 V0
Note2: Input signals of odd and even clock shall be the same timing.
6.4 Timing Characteristics
Basically, interface timing described here is not actual input timing of LCD module but close to output timing of SN75LVDS82DGG (Texas Instruments) or equivalent.
Item Symbol Min Typ Max Unit
(Typ=H-Period * V-Period*Frame Rate)
Period Th
Data CLK
H-section
Display Area Tdisp(h)
Blanking
Period Tv
V-section
Display Area Tdisp(v)
Blanking
Frame Rate F
Tcl k
Tblk(h)
Tblk(v)
55 72 90
1010 1050 2047
960 960 960
50 90
1108 1130 2047
1080 1080 1080
28 50
50 60 75
681 [Tclk]
255 [Th]
[MHz]
[Tclk]
[Tclk]
[Th]
[Th]
[Hz]
Note : DE mode only
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6.5 Timing diagram
Product Specification
AU OPTRONICS CORPORATION
M215HW01 V0
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6.6 Power ON/OFF Sequence
VDD power and lamp on/off sequence are as follows. Interface signals are also shown in the chart. Signals from any system shall be Hi-Z state or low level when VDD is off.
VESA standard. If dif ferent, review needed.
Parameter
Min. Typ. Max.
T1 0.5 - 10 [msec]
T2 0 - 50 [msec]
T3 200 - - [msec]
T4 200 - - [msec]
T5 0 16 50 [msec]
T6 - - 100 [msec]
T7 1000 - - [msec]
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Value
Unit
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7.0 Connector & Pin Assignment
Physical interface is described as for the connector on module. These connectors are capable of accommodating the following signals and will be following components.
7.1 TFT LCD Module
Connector Name / Designation Interface Connector / Interface card
Manufacturer JAE / P-TW O
Type Part Number FI-XB30SSRL-HF16 / AL230F-A0G1D-P
Mating Housing Part Number
FI-X30HL (Locked Type)
FI-X30H (Unlocked Type)
7.1.1 Pin Assignment
Pin# Signal Name Pin# Signal Name
1 RxOIN0- 2 RxOIN0+
3 RxOIN1- 4 RxOIN1+
5 RxOIN2- 6 RxOIN2+
7 GND 8 RxOCLKIN-
9 RxOCLKIN+ 10 RxOIN3-
11 RxOIN3+ 12 RxEIN0-
13 RxEIN0+ 14 GND
15 RxEIN1- 16 RxEIN1+
17 GND 18 RxEIN2-
19 RxEIN2+ 20 RxECLKIN-
21 RxECLKIN+ 22 RxEIN3-
23 RxEIN3+ 24 GND
25 NC (for AUO test only. Do not
connect)
27 NC (for AUO test only. Do not
connect)
29 VDD 30 VDD
26 NC (for AUO test only. Do not
connect)
28 VDD
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7.2 Backlight Unit
Physical interface is described as for the connector on module. These connectors are capable of
accommodating the following signals and will be following components.
Connector Name / Designation Lamp Connector / Backlight lamp
Manufacturer CVILUX
Type Part Number
Mating Type Part Number
CP0502SL090
CP0502P1ML0
7.2.1 Signal for Lamp connector
Connector No. Pin No. Input Color Function
CN1
Upper
CN2
1 Hot1 Pink High Voltage
2 Cold1 White Low Voltage
1 Hot2 Pink High Voltage
2 Cold2 White Low Voltage
Lower
Connector No. Pin No. Input Color Function
CN3
CN4
1 Hot1 Pink High Voltage
2 Cold1 White Low Voltage
1 Hot2 Pink High Voltage
2 Cold2 White Low Voltage
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8.0 Reliability Test
Environment test conditions are listed as following table.
Items Required Condition
Temperature Humidity Bias (THB) Ta= 50 , 80%RH, 300hours
High Temperature Operation (HTO) Ta= 50 , 50%RH, 300hours
Low Temperature Operation (LTO) Ta= 0 , 300hours
High Temperature Storage (HTS) Ta= 60 , 300hours
Low Temperature Storage (LTS) Ta= -20 , 300hours
Acceleration: 1.5 Grms Vibration Test (Non-operation)
Wave: Random
Frequency: 10 - 200 Hz
Sweep: 30 Minutes each Axis (X, Y, Z)
M215HW01 V0
Note
Acceleration: 50 G Shock Test (Non-operation)
Drop Test Height: 60 cm, package test
Thermal Shock Test (TST) -20 / 30min, 60 / 30min, 100 cycles
On/Off Test On/10sec, Off/10sec, 30,000 cycles
ESD (Electro Static Discharge)
Altitude Test
Wave: Half-sine
Active Time: 20 ms
Direction: X, Y, Z (one time for each Axis)
1
Contact Discharge: ± 8KV, 150pF(330Ω ) 1sec,
8 points, 25 times/ point.
2
Air Discharge: ± 15KV, 150pF(330Ω ) 1sec
8 points, 25 times/ point.
Operation:10,000 ft Non-Operation:30,000 ft
Note 1: The TFT-LCD 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
0
-2
to 60, and back again. Power is not applied during the test. After temperature cycling, the
unit is placed in normal room ambient for at least 4 hours before power on.
Note 2: EN61000-4-2, ESD class B: Certain performance degradation allowed
No data lost Self-recoverable No hardware failures.
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Product Specification
AU OPTRONICS CORPORATION
9.0 Shipping Label
The label is on the panel as shown below:
M215HW01 V 0
Note 1: For Pb Free products, AUO will add
Note 2: For RoHS compatible products, AUO will add
for identification.
M215HW01 V0
for identification.
Note 3: The Green Mark will be presented only when the green documents have been ready by
AUO Internal Green Team.
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10.0 Mechanical Characteristics
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