AUO T216XW01 V2 Specification

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AUO Model Name: T216XW01 V2
Customer Part No/Project Name:
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Customer Signature Date AUO 2009/03/02
Approved By: PM Director / Frank Hsu
Reviewed By: RD Director / Eugene CC Chen
Reviewed By: Project Leader / Sarah Ke
Prepared By: PM / Marcus Lai
©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 1/29 No Reproduction and Redistribution Allowed
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Product Specifications
21.6” WXGA Color TFT-LCD Module Model Name: T216XW01 V2
(*) Preliminary Specifications
() Final Specifications
©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 2/29 No Reproduction and Redistribution Allowed
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No ITEM
COVER
CONTENTS
RECORD OF REVISIONS
1 GENERAL DESCRIPTION
2 ABSOLUTE MAXIMUM RATINGS
3 ELECTRICAL SPECIFICATIONS
3-1 ELECTRICAL CHARACTERISTICS
3-2 INTERFACE CONNECTIONS
3-3 SIGNAL TIMING SPECIFICATIONS
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Contents
3-4 SIGNAL TIMING WAVEFORMS
3-5 COLOR INPUT DATA REFERENCE
3-6 POWER SEQUENCE for LCD
4 OPTICAL SPECIFICATIONS
5 MECHANICAL CHARACTERISTICS
5-1 FRONT VIEW
5-2 REAR VIEW
6 RELIABILITY
7 INTERNATIONAL STANDARDS
7-1 SAFETY
7-2 EMC
7-3 GREEN
8 PACKING
8-1 PACKING INSTRUCTION
8-2 SHIPPING LABEL
8-3 CARTON LABEL
9 PRECAUTIONS
9-1 MOUNTING PRECAUTIONS
9-2 OPERATING PRECAUTIONS
9-3 ELECTROSTATIC DISCHARGE CONTROL
9-4 PRECAUTIONS FOR STRONG LIGHT EXPOSURE
9-5 STORAGE
9-6 HANDLING PRECAUTIONS FOR PROTECTION FILM
Record Revision
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Version Date No Old Description New Description Remark
0.0 2009/03/02 First Draft
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©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 4/29 No Reproduction and Redistribution Allowed
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1. General Description
This specification applies to the 21.6 inch Color TFT-LCD Module T216XW01. This LCD module has a TFT
active matrix type liquid crystal panel with 1,366x768 pixels, and the diagonal size is 21.6 inches. This module
supports 1,366x768 XGA-WIDE mode (Non-interlace).
Each pixel is divided into Red, Green and Blue sub-pixels or dots which are arranged in vertical stripes. Gray
scale or the brightness of the sub-pixel color is determined with an 8-bit gray scale signal for each dot.
The T216XW01 has been designed to apply to 8-bit and 1 channel LVDS interface method. It is intended to
support displays where high brightness, wide viewing angle, high color saturation, and high color depth are
very important.
This module is not equipped with inverter board for backlight.
* General Information
Item Specification Unit Note
Active Screen Size 21.6 Inch
Display Area 477.417 (H) x 268.416 (V) mm
Outline Dimension
Resolution 1,366 x 768 pixel
Pixel Pitch 0.3495 mm
Pixel Arrangement RGB vertical stripe
Display mode Normally Black
Display Colors 16.7M (8-bit for R,G,B) color
Typical White Luminance 350 @ 9.5 mA [cd/m2]
Surface Treatment AG, Haze=11%, 3H
Green RoHS compliance
523 (H)
315 (V) 29 (D)
mm w/o Inverter
©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 5/29 No Reproduction and Redistribution Allowed
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2. Absolute Maximum Ratings
The following are maximum values which, if exceeded, may cause faulty operation or damage to the unit.
Item Symbol Min Max Unit Note
Logic/LCD Drive Voltage Vdd -0.3 6 [Volt] 1
Input Voltage of Signal Vin -0.3 3.6 [Volt] 1
Operating Temperature TOP 0 +50 [oC] 2
Operating Humidity HOP 10 90 [%RH] 2
Storage Temperature TST -20 +60 [oC] 2
Storage Humidity HST 10 90 [%RH] 2
Note
1, Duration = 50 msec
2, Maximum Wet-Bulb should be 39 and
non-condensing at temperatures of 40 or less. At temperatures greater than 40 , the w
temperature must not exceed 39 .
3, Surface temperature is measured at 50
к
к
no condensation. The relative humidity must not exceed 90%
кк
к
Dry condition
et bulb
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3. Electrical Specification
The T216XW01 requires two power inputs. One is employed to power the LCD electronics and to drive the
TFT array and liquid crystal. An inverter typically generates the second input, which powers the CCFL.
3-1 Electrical Characteristics
Values
Parameter Symbol
Min Typ Max
Power Supply Input Voltage Vcc 4.5 5.0 5.5 Vdc 1
Unit Notes
LCD
LVDS
Interface
CMOS
Interface
Note :
1. The ripple voltage should be controlled under 10% of V
2. Vcc=5.0V,
3. Measurement condition:
Power Supply Input Current Icc
Power Consumption Pc - 4.0 5.0 Watt 2
Inrush Current I
Differential Input High Threshold Voltage
Differential Input Low Threshold Voltage
Common Input Voltage VCIM 0.6 1.25 1.8 V 4
Input High Threshold Voltage
Input Low Threshold Voltage
Life Time 50,000 - - 5,6,7,8
=vf
60Hz, fCLK=81.5Mhz , 25к, Test Pattern : White Pattern
ʳ
- - 3 Apeak 3
RUSH
VTH - - 100 mV 4
VTL -100 - - mV 4
VIH
(High)
VIL
(Low)
- 0.8 1.0 A 2
2.0 3.3 3.6 Vdc
0 - 0.8 Vdc
CC
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4. VCIM = 1.25V
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VCIM
VTH
VIL
0V
5. Take the life time and brightness for example, the performance of the lamp in LCD panel is extremely
influenced by the characteristics of the DC-AC Inverter. All the parameters of the inverter should be
carefully designed to avoid producing too much leakage current from high-voltage output of the inverter.
Please make sure unwanted lighting caused by the mismatch of the lamp and the inverter (no lighting,
flicker, etc) never occurs. After confirmation, the LCD panel should be operated in the same condition
as installed in your instrument.
6. Do not attach a conducting tape to lamp connecting wire. If the lamp wire attach to conducting tape, the
TFT-LCD Module has a low luminance and the inverter has abnormal action because leakage current
occurs between lamp wire and conducting tape.
7. The relative humidity must not exceed 80% non-condensing at temperatures of 40 or less. At
temperatures greater than 40 , the wet bulb temperature must not exceed 39 . When operate at low
temperatures, the brightness of CCFL will drop and the life time of CCFL will be reduced.
8. Specified values are for a single lamp only which is aligned horizontally. The lifetime is defined as the
time which luminance of the lamp is 50% compared to its original value.
[Operating condition: Continuous operating at Ta = 25±2 ]
кк
к
к
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3-2 Interface Connectionsʳ
3-2-1 LCD connector (CN1): Starconn 093G30-B0001A-1
Pin No Symbol Description Note
1 Reserved Open AUO internal test pin
2 Reserved Open AUO internal test pin
3 Reserved Open AUO internal test pin
4 GND Ground
5 Rx0- LVDS Channel 0 [Polarity: Negative]
6 Rx0+ LVDS Channel 0 [Polarity: Positive]
7 GND Ground
8 Rx1- LVDS Channel 1 [Polarity: Negative]
9 Rx1+ LVDS Channel 1 [Polarity: Positive]
10 GND Ground
11 Rx2- LVDS Channel 2 [Polarity: Negative]
12 Rx2+ LVDS Channel 2 [Polarity: Positive]
13 GND Ground
ʳ
ʳʳ
14 RXCLK- LVDS Clock [Polarity: Negative]
15 RXCLK+ LVDS Clock [Polarity: Positive]
16 GND Ground
17 Rx3- LVDS Channel 3 [Polarity: Negative]
18 Rx3+ LVDS Channel 3 [Polarity: Positive]
19 GND Ground
20 Reserved Open AUO internal test pin
21 LVDS Option* Low for JEIDA, High/Open for NS
22 Reserved Open
23 GND Ground
24 GND Ground
25 GND Ground
26 Vdd (+5V) 5V, DC, Regulated
27 Vdd (+5V) 5V, DC, Regulated
28 Vdd (+5V) 5V, DC, Regulated
29 Vdd (+5V) 5V, DC, Regulated
30 Vdd (+5V) 5V, DC, Regulated
NoteΚ
1, All GND (ground) pins should be connected together and should also be connected to the LCD’s metal
frame.
2, All Vcc (power input) pins should be connected together.
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* LVDS Option = L (GND) ÎÎÎÎ JETDA Format
Previous Cycle Current Cycle Next Cycle
Clock
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RIN0+ RIN0-
RIN1+ RIN1-
RIN2+ RIN2-
RIN3+
RIN3-
* LVDS Option = H (3.3V) or N.C.ÎÎÎÎ NS Format
Previous Cycle Current Cycle Next Cycle
Clock
G7
R2R7 G2G2R2R3 R4R5R6 R3
G3B2 B3B3G3G4 G5G6 G4
B4NA DEDEB4B5 B6B7NA B5
R0B1 NANAR0R1 G0G1B0 R1
RIN0+ RIN0-
RIN1+ RIN1-
RIN2+ RIN2-
RIN3+
RIN3-
R0R5 G0G0R0R1 R2R3R4 R1
G1B0 B1B1G1G2 G3G4G5 G2
B2NA DEDEB2B3 B4B5NA
B3
R6B7 NANAR6R7 G6G7B6 R7
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3-2-2 Backlight Electrical Specification
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ʳ
1 Operating Voltage Vo 1060.2 1178 1295.8 Vrms
2 Operating Current Io 8.0 9.5 10 mArms
3 BL Total Power Dissipation PBL 30 36 Watt
4 Striking Voltage
5 Striking Time Ts 1000 - 1500 msec
6 Operating Frequency fo - 58 - kHz
.7 PWM Operating Frequency F_PWM 140 180 240 Hz
Description Min Typ Max Unit Condition/Note
At 0к
At 25
к
Vstrike
1860 2060 -
Vrms
1550 1750 -
1. Dimming range is set 100%
2. Base on lamp specification, for each lamp need to be applied at least minimum operating voltage to ensure each lamp can be normally worked!
1. Dimming range is set 100%
2. Base on lamp specification, for each lamp need to be applied at least minimum operating current to ensure each lamp can be normally worked!
1. Dimming range is set 100%.
2. In order to get typical light out, the backlight need to be applied typical power.
3. Input power of JIG BD is about 75 W (typ.) by AUO’s measurement!
1. Base on lamp specification, to ensure each lamp can be normally ignited, need to apply at least minimum striking voltage to each lamp
1. To ensure each lamp can be normally ignited, each lamp need to be applied at least minimum striking voltage during minimum striking time.
1. Operating frequency is set by customers.
2. Need to double confirm display quality.(*)
1. PWM frequency is set by customers.
2. Need to double confirm display quality.(*)
8 PWM Dimming Duty Ratio D_PWM 10 - 100 %
9 Lamp Type U type
10 Number of Lamps 3 pcs
Note :
1, Ta=25±5 , Turn on for 45minutes
2, When PWM dimming ratio is operated within recommend value, backlight can be ensured that there is
no flicker and uniformity issue and display quality of panel can be normally display! When PWM
dimming ration is operated less than recommend value, backlight need to be double confirmed display
quality. LIPS need to be double confirmed feedback signal and all protection function!
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к
Note 2. Note 3. Duty ratio definition.
ʳ
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3, Duty ratio definition:
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3-2-3 Lamp specification
Description Min Typ Max
1 Lamp voltage Vlamp 1060.2 1178 1295.8 Vrms At Ilamp=12.5mA
2 Lamp current Ilamp 8.0 9.5 10 mArms
3 Lamp frequency flamp 40 55 80 kHz
4 Striking voltage
Delayed discharge
5
time
6 Life time 50K 50K - hour
7 Unsymmetrical ratio - - 10% -
8 Crest factor (C.F)
Note
1, The above characteristics are measured under the conditions:
At 25к
At 0
к
Tdelay - - 1000 msec
- - 1550 Vrms
- - 1860 Vrms
2 10%
2
2 10%+
Unit
Note 2
-
Note
Ambient temperature: 25±2 ,
Relative Humidity: 65±20%RH.
2. Please light on the lamp with symmetrical voltage and current waveform
(unsymmetrical ratio is less than 10%, crest factor within
©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 12/29 No Reproduction and Redistribution Allowed
к
2 10%±
).
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3-2-4 Input Interface for LIPS board
CN1: EL7H001ZZ2 (Manufactured by JAE)
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3-3 Signal Timing Specifications
This is the signal timing required at the input of the User connector. All of the interface signal timings should be
satisfied with the following specifications for the proper operation.
* Timing Table
Signal Item Symbol Min. Typ. Max. Unit
Period Tv 776 810 1,015 Th Ver t ical Section
Horizontal
Section
Active Tdisp(v) 768 Th
Blanking Tblk (v) 8 42 247 Th
Period Th 1,414 1,648 2,000 Tclk
Active Tdisp(h) 1,366 Tclk
Blanking Tblk (h) 48 282 634 Tclk
LVDS Clock Frequency Fclk (1/Tclk) 50 80 86 MHz
Ver t ical
Frequency
Horizontal
Frequency
NoteΚ
1, CLK signal input must be valid while power supply is applied.
2, Display position is specific by the rise of DE signal only. Horizontal display position is specified by the falling
edge of 1
specified by the rise of DE after a “Low” level period equivalent to eight times of horizontal period. The 1
corresponding to one horizontal line after the rise of DE is displayed at the top line of screen.
3, If a period of DE “High” is less than 1,366 CLK or less than 768 lines, the rest of the screen displays black.
4, The display position does not fit to the screen if a period of DE “High” and the effective data period do not
synchronize with each other.
st
CLK right after the rise of DE, is displayed on the left edge of the screen. Vertical display position is
Frequency Fv 47 60 63 Hz
Frequency Fh 43 48 53 kHz
st
data
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3-4 Signal Timing Waveforms
RGB Data
1366
Invalid Data
DE
Pi xel
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CLK
Tcl k
RGB
Dat a
Line
768
Invalid Data Invalid Data
DE
1
2
3
4
5
6
1366
Invalid Data
Line
Pix el
Pixe l
Pixe l
Pix el
Pixe l
Pixe l
Pi xel
Tdisp( h)
Th
1
Line
2
Line
3
Line
4
Line
768
Th
Tv
Tdi sp(v)
Pi xel
1
Pix el
2
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3-5 Color Input Data Reference
The brightness of each primary color (red, green and blue) is based on the 8 bit gray scale data input for the
color. The higher the binary input, the brighter the color. The table below provides a reference for color versus
data input.
* COLOR DATA REFERENCE
Color
Basic Color
RED
Input Color Data
RED
MSB LSB
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
Black(L0) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Red(255) 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Green(255) 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0
Blue(255) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
Cyan 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1
Magenta 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
Yellow 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0
White(L255) 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1
RED(000) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
RED(001) 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
----
RED(254) 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
RED(255) 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
GREEN(000) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
MSB LSB
GREEN
BLUE
MSB LSB
GREEN
BLUE
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GREEN(001) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0
----
GREEN(254) 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0
GREEN(255) 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0
BLUE(000) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
BLUE(001) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1
-------
BLUE(254) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 0
BLUE(255) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
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3-6 Power Sequence
Power Supply for LCD (Vdd)
LVDS Data & CLK
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Power for LAMP
Parameter
t1 0.4 - 30 ms
t2 0.1 - 50 ms
t3 200 - - ms
t4 10 - - ms
t5 0.1 - 50 ms
t6 - - 300 ms
t7 500 - - ms
Apply the lamp voltage within the LCD operating range. When the backlight turns on before the LCD operation
or the LCD turns off before the backlight turns off, the display may momentarily become abnormal.
ΚΚΚΚ
Caution
Min. Typ. Max.
Values
Unit
The above on/off sequence should be applied to avoid abnormal function in the display. In case of handling,
make sure to turn off the power when you plug the cable into the input connector or pull the cable out of the
connector.
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4. Optical Specification
Optical characteristics are determined after the unit has been ‘ON’ and stable for approximately 30 minutes in a
dark environment at 25
viewing angle of
к
. The values specified are at an approximate distance 50cm from the LCD surface at a
ӥ
and Ӱequal to 0.
PR880 or equivalent
Fig.4-1 Optical measurement equipment and method
Value
Parameter Symbol
Unit Note
Min. Typ. Max.
Contrast Ratio CR 2,000 2,500 1
cd/
ф
Surface Luminance, white LWH 300 350
Luminance Variation
Response Time
Ӭ
WHITE
9 p 1.3 3
T
ӫ
6.5 ms 4
2
Color Gamut 72 %
RED RX 0.640
R
0.330
Y
GREEN GX 0.290
Color Coordinates
G
0.600
Y
Typ.-0.03
Typ.+0.03
BLUE BX 0.150
B
0.060
Y
WHITE WX 0.285
Viewing Angle by ELDIM
W
x axis, right(ӽ=0)
x axis, left(ӽ=180)
y axis, up(ӽ=90)
y axis, down (
ӽ=0
)
Ӱ
Ӱ Ӱ Ӱ
Y
r
l
u
d
65 88 Degree 5
65 88 Degree 5
55 88 Degree 5
55 88 Degree 5
0.293
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NoteΚ
1, Contrast Ratio (CR) is defined mathematically as:
Surface Luminance of L
on1
Contrast Ratio=
Surface Luminance of L
off1
2, Surface luminance is luminance value at point 1 across the LCD surface 50cm from the surface with all pixels displaying white. From more information see FIG 4-2. When I L
=Lon1, Where Lon1 is the luminance with all pixels displaying white at center 1 location.
WH
= 57mA, LWH=350cd/ф(typ.)
BL
3, The variation in surface luminance,
Ӭ
WHITE(9P)
=Maximum(L
on1
V/2
V/6
Fig.4-2 Luminance
Ӭ
WHITE is defined (center of Screen) as:
, L
,…,L
on2
1
4 5 6
7 8
)/Minimum(L
on9
H
2 3
, L
on1
H/2 H/6
,…L
on2
on9
V
9
Fig.4-3 Luminance Variation
)
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4, Response time T
luminance ratio (0%,25%,50%,75%,100% brightness matrix) and is based on f
ʳ
5, Viewing angle is the angle at which the contrast ratio is greater than 10. The angles are determined for the
horizontal or x axis and the vertical or y axis with respect to the z axis which is normal to the LCD surface. For
more information see FIG 4-5.
ӫ
is the average time required for display transition by switching the input signal for five
=60Hz to optimize.
v
0% 25% 50% 75% 100%
0%
25%
50%
75%
100%
ʳ
t
25%-0%
t
50%-0%
t
75%-0%
t
100%-0%
t
t
t
0%-25%
50%-25%
75%-25%
t
100%-25%
ʳ
t
0%-50%
t
25%-50%
t
75%-50%
t
100%-50%
ʳ
t
t
t
0%-75%
25%-75%
t
50%-75%
ʳ
100%-75%
t
0%-100%
t
25%-100%
t
50%-100%
t
75%-100%
ʳ
Fig.4-4 Viewing Angle Definition
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5. Mechanical Characteristics
The contents provide general mechanical characteristics for the model T216XW01. In addition the figures in the
next page are detailed mechanical drawing of the LCD.
Horizontal (typ.) 523 mm
Outline Dimension
Bezel Area
Active Display Area
Weight
Surface Treatment HC, 3H
Vertical (typ.) 315 mm
Depth (typ.) 29 mm (37.5 mm)
Horizontal (typ.) 481 mm
Vertical (typ.) 273 mm
Horizontal 477.417 mm
Vertical 268.416 mm
TBD (typ.)
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5-1 Front View (2D drawing)
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©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 22/29 No Reproduction and Redistribution Allowed
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5-2 Rear View (2D drawing)
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˸Κ
Not 1, Assembly lamp connecter type : YEONHO 35001HS-02L
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6. Reliability ʳ
Ё
Environment test condition
ʳ
1 High Temperature Storage 3
2 Low Temperature Storage 3
3 High Temperature Operation 3
4 Low Temperature Operation 3
5 Vibration (non-operation) 3
6 Shock (non-operation) 3
7 Vibration (With carton) 3
8 Drop (With carton) 3
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ʳ
ʳʳ
Test Items Q'ty Conditions
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к
300 hrs
60
-20
к
, 300 hrs
50
к
, 300 hrs
-5
к
, 300 hrs
(10 ~ 300Hz/1.5G/11min SR, XYZ 30min/axis) Vibration level : 1.5G RMS, Bandwidth : 10-300Hz Duration: X, Y, Z 30min, Shock level: 50G Waveform: have sine wave, 11ms Direction: ±X,±Y, ±Z One time each direction Random wave (1.5 Grms 10~200Hz) 30mins / Per each X.Y.Z axes Height: 45.7cm 1 corner, 3 edges, 6 surfaces (ASTMD4169-I)
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7. International Standard
7-1 Safety
1, UL6500, Underwriters Laboratories, Inc. (AUO file number : E204356)
Standard for Safety of Information Technology Equipment Including electrical Business Equipment.
2, CAN/CSA C22.2 No. 950-95 Third Edition, Canadian Standards Association, Jan. 28, 1995
Standard for Safety of Information Technology Equipment Including Electrical Business Equipment.
3, EN60950 : 1992+A2: 1993+A2: 1993+C3: 1995+A4: 1997+A11: 1997
IEC 950: 1991+A1: 1992+A2: 1993+C3: 1995+A4:1996
IEC 60065
European Committee for Electro technical Standardization (CENELEC)
EUROPEAN STANDARD for Safety of Information Technology Equipment Including Electrical Business
Equipment.
7-2. EMC
1, ANSI C63.4 “Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and
Electrical Equipment in the Range of 9kHz to 40GHz. “American National standards Institute(ANSI), 1992
2, C.I.S.P.R “Limits and Methods of Measurement of Radio Interface Characteristics of Information
Technology Equipment.” International Special committee on Radio Interference.
3, EN 55022 “Limits and Methods of Measurement of Radio Interface Characteristics of Information
Technology Equipment.” European Committee for Electrotechnical Standardization. (CENELEC), 1998
7-3 Green
Green Mark Description:
1, For Pb Free products, AUO will add
2, For RoHS compatible products, AUO will add
Note
The Green Mark will be present only when the green documents have been ready by AUO Internal Green Team. (The definition of green design follows the AUO green design checklist.)

for identification.
for identification.
©Copyright AU Optronics, Inc. April, 2007 All Rights Reserved. T216XW01 V2 Ver. 0.0 25/29 No Reproduction and Redistribution Allowed
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8. Packing
8-1 Packing Instruction
By air & by seaΚ4pcs/carton, (4*2)*2 layers, 16 boxes in a pallet, total 64 pcs of module in a pallet, 20 pallets/40”DC
Pallet Dimension
Dimension
Κ
1,150 * 1180 * 1,944 mm
Κ
1,150 * 1180 * 132 mm
Carton : 583mm*282mm*409mm
ᇘሉၦΚ4˂
carton
8-2 Shipping Label
Shipping Label : 100 mm * 23 mm
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Manufactured: XX/XX Model No : T216XW01 V2 AU Optronics XXXXG Made in XXX
8-3 Carton Label
Carton Label : 80 mm * 40 mm
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9. PRECAUTIONS
Please pay attention to the followings when you use this TFT LCD module.
9-1 MOUNTING PRECAUTIONS
1, You must mount a module using holes arranged in four corners or four sides.
2, You should consider the mounting structure so that uneven force (ex. Twisted stress) is not applied to
module. And the case on which a module is mounted should have sufficient strength so that external
force is not transmitted directly to the module.
3, Please attach the surface transparent protective plate to the surface in order to protect the polarizer.
Transparent protective plate should have sufficient strength in order to the resist external force.
4, You should adopt radiation structure to satisfy the temperature specification.
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5, Acetic acid type and chlorine type materials for the cover case are not desirable because the former
generates corrosive gas of attacking the polarizer at high temperature and the latter causes circuit break
by electro-chemical reaction.
6, Do not touch, push or rub the exposed polarizers with glass, tweezers or anything harder than HB pencil
lead. And please do not rub with dust clothes with chemical treatment. Do not touch the surface of
polarizer for bare hand or greasy cloth. (Some cosmetics are detrimental to the polarizer.)
7, When the surface becomes dusty, please wipe gently with absorbent cotton or other soft materials like
chamois soaks with petroleum benzene. Normal-hexane is recommended for cleaning the adhesives
used to attach front/ rear polarizers. Do not use acetone, toluene and alcohol because they cause
chemical damage to the polarizer.
8, Wipe off saliva or water drops as soon as possible. Their long time contact with polarizer causes
deformations and color fading.
9, Do not open the case because inside circuits do not have sufficient strength.
9-2 OPERATING PRECAUTIONS
1, The device listed in the product specification sheets was designed and manufactured for TV application
2, The spike noise causes the mis-operation of circuits. It should be lower than following voltage:
V=±200mV(Over and under shoot voltage)
3, Response time depends on the temperature. (In lower temperature, it becomes longer..)
4, Brightness depends on the temperature. (In lower temperature, it becomes lower.) And in lower
temperature, response time (required time that brightness is stable after turned on) becomes longer.
5, Be careful for condensation at sudden temperature change. Condensation makes damage to polarizer or
electrical contacted parts. And after fading condensation, smear or spot will occur.
6, When fixed patterns are displayed for a long time, remnant image is likely to occur.
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7, Module has high frequency circuits. Sufficient suppression to the electromagnetic interference shall be
done by system manufacturers. Grounding and shielding methods may be important to minimize the
interface.
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9-3 ELECTROSTATIC DISCHARGE CONTROL
Since a module is composed of electronic circuits, it is not strong to electrostatic discharge. Make certain that
treatment persons are connected to ground through wrist band etc. And don’t touch interface pin directly.
9-4 PRECAUTIONS FOR STRONG LIGHT EXPOSURE
Strong light exposure causes degradation of polarizer and color filter.
9-5 STORAGE
When storing modules as spares for a long time, the following precautions are necessary.
1, Store them in a dark place. Do not expose the module to sunlight or fluorescent light. Keep the
temperature between 5
2, The polarizer surface should not come in contact with any other object. It is recommended that they be
stored in the container in which they were shipped.
к
and 35к at normal humidity.
9-6 HANDLING PRECAUTIONS FOR PROTECTION FILM
1, The protection film is attached to the bezel with a small masking tape. When the protection film is peeled
off, static electricity is generated between the film and polarizer. This should be peeled off slowly and
carefully by people who are electrically grounded and with well ion-blown equipment or in such a condition,
etc.
2, When the module with protection film attached is stored for a long time, sometimes there remains a very
small amount of flue still on the Bezel after the protection film is peeled off.
3, You can remove the glue easily. When the glue remains on the Bezel or its vestige is recognized, please
wipe them off with absorbent cotton waste or other soft material like chamois soaked with normal-hexane.
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