HannStar HSD156MGW1-A Product Specification

HannStar Display Corp.
The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
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Document No. Revision 1.0
HannStar Product Specification
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-A
Note:1.The information contained herein is tentative and may be changed without prior notices.
2.Please contact HannStar Display Corp. before designing your product based on this module
specification.
3.The information contained herein is presented merely to indicate the characteristics and perfor­ mance of our products. No responsibility is assumed by HannStar for any intellectual property claims or other problems that may result from application based on the module described herein.
4. The mark “ ** ” of Model means sub-model code.
Model : HSD156MGW1
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The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
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Document No. Revision 1.0
Record of Revisions
Rev.
1.0
Date Sub-Model
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A00
Formal Product Spec was first released for customer
Description of change
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HannStar Display Corp.
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Document No. Revision 1.0
Contents
1.0 General description ……………………………….… p.5
2.0 Absolute maximum ratings …………………………. p.7
3.0 Optical characteristics ………………………………. p.9
4.0 Block diagram ……………………………………….. p.13
5.0 Interface pin connection ……………………………. p.16
6.0 Electrical characteristics ……………………………. p.17
7.0 Outline dimension …………………………………… p.25
8.0 Lot mark …………………………….………………… p.28
9.0 Package specification ………………………………. p.29
10.0 General precaution ………………………………….. p.30
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1.0 GENERAL DESCRIPTION
1.1 Introduction
HannStar Display model HSD156MGW1-A is a color active matrix thin film transistor (TFT) liquid crystal display (LCD) that uses amorphous silicon TFT as a switching device. This model is composed of a TFT LCD panel, a driving circuit and a back light system. This TFT LCD has a 15.6 inch diagonally measured active display area with WXGA+ resolution (768 vertical by 1366 horizontal pixel ) and can display up to
16.7M (6-bit+HiFRC)colors.
1.2 Features
15.6 WXGA+ for Monitor application
High Resolution: 1366*768
1-ch LVDS interface system
LCD Timing Controller
Wide Viewing Angle
RoHS Compatible
VESA Compatible
Halogen Free
1.3 Applications
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Desktop Monitor
Display terminals for AV applications
Display terminals for industrial application
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1.4 General information
Item Specification Unit Outline Dimension 363.8 x 215.9 x 14.3 (Typ.) mm Display area 344.2 (H) x 193.5 (V) mm Number of Pixel 1366(H) x 768(V) pixels Pixel pitch 0.252(H) x 0.252(V) mm Pixel arrangement RGB Vertical stripe Display color 16.7M (6-bit+HiFRC) colors Color Gamut 63% NTSC Display mode Normally white Surface treatment Antiglare (3H) Weight 1150 g Back-light 2-CCFLs, Top & bottom edge side Input signal 1-ch LVDS
Power Consumption
1.5 Mechanical Information
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Module
Size
Weight (Without inverter) Torque of customer screw hole
Logic System 2.5(TYP.) W B/L System 8.4(TYP.) W
Item Min. Typ. Max. Unit Horizontal (H) 363.3 363.8 364.3 mm Vertical (V) 215.4 215.9 216.4 mm Depth (D)
14.0 14.3
-
- - 3.0
1150 - g
14.6 mm
Kgf•Cm
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40
0
20 40
Document Title HSD156MGW1-A Formal Specification Page No. 6 / 41
Document No. Revision 1.0
2.0 ABSOLUTE MAXIMUM RATINGS
2.1 Absolute Rating of Environment
Item Symbol Min. Max. Unit Note Storage temperature T Operating temperature T Vibration (non-operating) V
Shock (non-operating) S Storage humidity H
-20 60
STG
0 50
OPR NOP
NOP
10 90 %RH (3)
STG
1.5 G (2) 70 G (3)
o
C
o
C (1)
Operating humidity HOP 10 90 %RH (4) Low pressure (operating) P
Low pressure (non-operating) P
697
LOP
116
LNOP
hPa (5) hPa (6)
Note (1) Storage / Operating temperature
Humidity (%)
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-40
-20
(2) 5-500-5Hz sine wave, X, Y, Z each directions, 30min/cycle.
100
90
80
60
Storage Range
20
10
0
Temperature (oC)
Operating Range
50
60
(3) 11ms, ±X, ±Y, ±Z direction, one time each. For this shock test, it is
necessary to fill the silicon rubber between the shock jig as buffer. (4) Max wet bulb temp.= 39oC (5) 2hrs. (10000 feet) (6) 24hrs. (50000 feet)
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2.2 Electrical Absolute Rating
2.2.1 TFT LCD Module
Item Symbol Min. Max. Unit Note Power supply voltage VDD -0.3 6.0 V (1) (2) Logic input voltage VIN -0.3 VDD+0.3
2.2.2 Back-Light Unit
Item Symbol Min. Max. Unit Note Lamp current IL 3.0 Lamp frequency fL 40 60 KHz (1) (2)
Note (1) Permanent damage may occur to the LCD module if beyond this
specification. Functional operation should be restricted to the conditions described under normal operating conditions.
(2) Ta =25±2
8.0
mA (1) (2)
V (1) (2)
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The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
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Document No. Revision 1.0
3.0 OPTICAL CHARACTERISTICS
3.1 Optical specification
Item Symbol Condition Min. Typ. Max. Unit Note
Contrast CR
Rising TR - 1.5
Response time
White luminance (Center)
Color chromaticity
(CIE1931)
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Viewing angle
Viewing angle
Falling TF - 3.5
RT TR +T
YL 200 250
Rx
Red
Ry Gx
Green
Gy Bx
Blue
By
Wx 0.283
White
Wy
Θ
Hor.
Ver.
Hor.
Ver.
Θ Θ Θ Θ Θ Θ Θ
R
D
U
R
D
U
F
L
L
Θ=0
viewing
angle
-
-
CR>10
CR>5
480 600
-
0.613
0.318
0.284
0.560
0.115
0.058
0.299 60
60 50 40 75
75 85 - 75 85 75 85
5 10
0.643 0.673
0.348 0.378
0.314 0.344
0.590 0.620
0.145 0.175
0.088 0.118
0.313 0.343
0.329 0.359 70 ­70 ­60 50 85 -
- (1)(2)
3 7
-
-
-
-
-
msec (1)(3)
(1)(4)(5)
2
cd/m
(IL=7mA)
(1)(4)
Θ
Brightness uniformity B
UNI
=0
70 - - % (6)
3.2 Measuring Condition
Measuring surrounding: dark room
Lamp current IBL: 7.0±0.1mA, lamp freq. FL=50 KHz, Inverter: TDK TBD315NR-1
VDD=5.0V, fV=60Hz
Ambient temperature: 25±2oC
30min. Warm-up time.
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The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
o
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3.3 Measuring Equipment
FPM520 of Westar Electric Corp., which utilized SR-3 for Chromaticity and BM-5A for other optical characteristics.
Measuring spot size: 20~21mm
Note (1) Definition of Viewing Angle:
Note (2) Definition of Contrast Ratio (CR): measured at the center point of panel
Luminance with all pixels white (L255) CR = Luminance with all pixels black (L0)
Note (3) Definition of Response Time: Sum of TR and TF
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Φ=180
Θ
L
6’ o’clock
Φ=270
Θ
Θ
U
12’ o’clock
Φ=90
Θ
D
o
o
R
Φ=0o
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Document No. Revision 1.0
Optical response
Note (4) Optical characteristic measurement setup
LCD Panel
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white(TFT OFF) black (TFT ON) white(TFT OFF)
T
100%
90%
10%
0%
120cm
R
Field = 1
o
T
F
Photo-detector (BM-5A)
time
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Y1
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Document No. Revision 1.0
Note (5) Definition of Average Luminance of White
Y
Center Luminance =
1
1/10V
1/10 H
1/2H
1/10H
1/2V
1/10V
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Note (6) Definition of brightness uniformity
Luminance uniformity = ×100%
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(Min Luminance of 9 points) (Max Luminance of 9 points)
HannStar Display Corp.
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4.0 BLOCK DIAGRAM
4.1 TFT LCD Module
X-driver IC
Connector CN1
Converter
TCON with
LVDS receiver
DC/DC
Liquid Crystal Panel
1366×768 pixels
Y-driver IC
Gamma
Reference
Voltage
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Generator
4.2 Back Light Unit
CN2
2 Cold1 1 Hot 1
CN3
1 Hot 2 2 Cold 2
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B G
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4.3 Pixel Format
1,1
1,2
1,3
(odd)
(even)
2,1
(odd)
768,1
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(odd)
1,4
(even)
LCD Display Area
1 Pixel
R
R
1366 Pixels
R
1,1366
768, 1366
768 Lines
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scale of
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4.4 Relationship Between Displayed Color and Input
Basic color
Gray scale of Red
Gray scale of Green
Gray scale of Blue
Gray White &
Black
MSB LSB
Display
Black L L L L L L L L L L L L L L L L L L
Blue L L L L L L L L L L L L H H H H H H
Green L L L L L L H H H H H H L L L L L L
Light Blue L L L L L L H H H H H H H H H H H H
Red H H H H H H L L L L L L L L L L L L Purple H H H H H H L L L L L L H H H H H H Yellow H H H H H H H H H H H H L L L L L L
White H H H H H H H H H H H H H H H H H H
Black L L L L L L L L L L L L L L L L L L
Dark
Light
Red H H H H H H L L L L L L L L L L L L Red L63
Black L L L L L L L L L L L L L L L L L L
Dark
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Light
Green L L L L L L H H H H H H L L L L L L Green L63
Black L L L L L L L L L L L L L L L L L L
Dark
Light
Blue L L L L L L L L L L L L H H H H H H Blue L63
Black L L L L L L L L L L L L L L L L L L
Dark
Light
White H H H H H H H H H H H H H H H H H H White L63
R5 R4 R3 R2 R1 R0
L L L L L H L L L L L L L L L L L L L L L L H L L L L L L L L L L L L L
↑ ↓
H H H H L H L L L L L L L L L L L L H H H H H L L L L L L L L L L L L L
L L L L L L L L L L L H L L L L L L L L L L L L L L L L H L L L L L L L
↑ ↓
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L L L L L L H H H H L H L L L L L L L L L L L L H H H H H L L L L L L L
L L L L L L L L L L L L L L L L L H L L L L L L L L L L L L L L L L H L
↑ ↓
L L L L L L L L L L L L H H H H L H L L L L L L L L L L L L H H H H H L
L L L L L H L L L L L H L L L L L H L L L L H L L L L L H L L L L L H L
↑ ↓
H H H H L H H H H H L H H H H H L H H H H H H L H H H H H L H H H H H L
: :
: :
: :
: :
MSB LSB G5 G 4 G3 G2 G1 G 0
: :
: :
: :
: :
MSB LSB B5 B4 B3 B2 B1 B0
: :
: :
: :
: :
Gray scale
L3…L60
L3…L60
L3…L60
L3…L60
level
-
-
-
-
-
-
-
­L0 L1 L2
L61 L62
L0 L1 L2
L61 L62
L0 L1 L2
L61 L62
L0 L1 L2
L61 L62
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5.0 INTERFACE PIN CONNECTION
5.1 TFT LCD Module Interface Connector (30-pins ) (
Pin No. Signal Description
Frame Vss Ground
1 NC No Connection 2 NC No Connection 3 NC No Connection 4 VSS Ground 5 Rin0- -LVDS differential data input, Chan 0 6 Rin0+ +LVDS differential data input, Chan 0 7 VSS Ground 8 Rin1- -LVDS differential data input, Chan 1 9 Rin1+ +LVDS differential data input, Chan 1
10 VSS Ground
11 Rin2- -LVDS differential data input, Chan 2 12 Rin2+ +LVDS differential data input, Chan 2 13 VSS Ground 14 RinC- -LVDS Differential Clock input 15 RinC+ +LVDS Differential Clock input 16 VSS Ground 17 Rin3- -LVDS differential data input, Chan 3
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5.2 Back-Light Unit
CN2, 3: CCFL Power Source (YEONHO 35001HS –02L or equivalent) Mating connector: SM02B-BHSS-1-TB or equivalent
Terminal No.
18 Rin3+ +LVDS differential data input, Chan 3 19 VSS Ground 20 NC No Connection 21 NC No Connection 22 NC No Connection 23 VSS Ground 24 VSS Ground 25 VSS Ground 26 VDD+5V Power Supply, 5V (Typical) 27 VDD+5V Power Supply, 5V (Typical) 28 VDD+5V Power Supply, 5V (Typical) 29 VDD+5V Power Supply, 5V (Typical) 30 VDD+5V Power Supply, 5V (Typical)
Frame Vss Ground
Symbol Function 1 VL CCFL power supply (high voltage) 2 NC No connection 3 GL CCFL power supply (low voltage)
JAE/
FI-XB30SSRL-HF16
or equivalent
)
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0.1VDD
V
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6.0 ELECTRICAL CHARACTERISTICS
6.1
TFT LCD Module
Item Symbol Voltage of power supply VDD 4.5 5.0 5.5 V Current of power supply IDD Vsync frequency fV
Hsync frequency fH Frequency f
Input rush current I
Note (1) VDD =5.0V, Black pattern (L0)
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Min. Typ. Max. Unit Note
mA (1)
Hz (2)
KHz
MHz
DCLK
Rush
376 470 564
40
32.24
50.3 75.44 85
- -
48.36
60
76
61.26
3.0 A (3)
Note (2) When fv is too low, a flicker may be occurred on the display. Note (3) Input Rush Current condition
0.9VDD
5
GND
500us~10ms
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WHITE(Ground
RED
2
WHITE(Ground
RED
2
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Document No. Revision 1.0
6.2 Back-Light Unit
The back- light system is an edge-lighting type with 2 CCFL. The characteristic of the lamp is shown in the following tables.
Item Symbol Min. Typ. Max. Unit Note Lamp current IL 3.0 7.0 8.0 mA(rms) Lamp voltage VL 540 600 660 V(rms) (6) IL=7.0mA Frequency fL 40 50 60 KHz (2) Operating lamp life time
Startup voltage Vs
Hr 50,000
1100 1520
- -
- -
Hour (3) IL=7.0mA
(4)(5) at
V(rms)
25±2
(4)(5) at
Note (1) Lamp current is measured with current meter for high frequency as
shown below. Specified valued are for single lamp.
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LCD MODULE
INVERTER
1
(TDK TBD315NR-1)
A
1
A
Note (2) Lamp frequency may produce interference with horizontal synchronous
frequency and this may cause ripple noise on the display. Therefore lamp frequency shall be kept away from the horizontal synchronous frequency and its harmonics as far as possible in order to avoid interference.
*Suggest the inverter frequency avoid fL=41~49KHz
Note (3) Lamp life time (Hr) can be defined as the time in which it continues to
operate under the condition: Ta=25±2 oC, typical IL value indicated in the above table until the brightness becomes less than 50%.
Note (4) CCFL inverter should be able to provide a voltage over specified
value (Vs) in the above table. Lamp units need at least Vs value shown above to ignition.
Note (5) The voltage over specified value (Vs) should be applied to the lamp more
than 1 second after startup. Otherwise, the lamp may not be turned on. The used lamp current is the lamp typical current.
(1)(6)
0±2
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Document No. Revision 1.0
Note (6) The output voltage waveform and current waveform of the inverter must
be symmetrical (Unsymmetrical ratio is less than 10%). Please do not use the inverter which has unsymmetrical voltage and current waveform, and spike waveform. The inverter design which can provide the best optical performance, power efficiency, and lamp life should under the following conditions.
a. The asymmetry rate of the inverter waveform should be less than 10%. b. The distortion tae of the waveform should be within 2±10%. c. The inverter output waveform should be better similar to the ideal sine
wave.
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Asymmetry rate = |Ip-I-p| / Irms x 100% Distortion rate = Ip (or I-p) / Irms
Ip
I-p
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6.3
Switching Characteristics for LVDS Receiver
Item Symbol
Min. Typ.
Max. Unit
Conditions Differential Input High Threshold Vth Differential Input Low Threshold Vtl
Input Current I
Input Voltage Range(Signal ended) Differential input Voltage |VID|
Common Mode Voltage Offset V Clock Frequency fc
LVDS Skew Margin t LVDS Input Clock Jitter Tolerance
IN
V
IN
CM
RSKM
1.25-(|VID|)/2
(|VID|/2)
100
200
50.3 75.44
mV
-100
±10 uA ±10 uA
1.25+(|VID|)/2 V 600 mV
1.8-0.4-(|VID|/2) 85
400 TBD %
mV
MHz
pS
VCM=1.2V
At fc=85MHz
center spread
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RCLK
Rin0
Rin1
Rin2
RSKM
RSKM
LVDS Receiver skew margin
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6.4 Bit Mapping & Interface Definition
7T
6.5/7T
5.5/7T
4.5/7T
3.5/7T
2.5/7T
1.5/7T
0.5/7T
RCLKP
Rin0
R[2]
R[1]
R[0]
G[0]
R[5]
R[4]
R[3]
R[2]
R[1]
R[0]
G[0]
Rin1
G[2]
G[1] B[1] B[0] G[5] G[4] G[3] G[2] G[1] B[1]G[3]
Rin2
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B[4]
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B[3] B[2] DE (VS) (HS) B[5] B[4] B[3] B[2] DE
Pervious Cycle Current Cycle
Next Cycle
Bit Mapping & Timing Definition
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(2)Horizontal
X,766
X,768
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Document No. Revision 1.0
6.5 Interface Timing ( DE mode)
Item Symbol Min. Typ. Max. Unit Frame Rate Frame Period t1 Vertical Display Time t2 Vertical Blanking Time t3 1 Line Scanning Time t4 Horizontal Display Time t5 Horizontal Blanking Time t6 Clock Rate t7
--
40 60 76 778 806 888 768 768 768
t1-t2 38 t1-t2 1437 1560 1936 1366 1366 1366
t4-t5 194 t4-t5
50.3 75.44 85
Hz line line line
clock clock clock
MHz
Timing Diagram of Interface Signal (DE mode)
(1)Vertical
NCLK
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DE
0~7
R
0~7
G B0~7
NCLK
DE
0~7
R G0~7 B0~7
t2
t4
X,1 X,2 X,3 X,Y
t7
t1
t4
t5 t6
1363 1364 1365 13665 6 13621 2 3 4
t3
X,767
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0.9VDD
0.9VDD
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Document No. Revision 1.0
6.6 Power ON/OFF Sequence
Power Supply
0V
Signal
0V
0.1V
DD
TP1
TP2
0.6V
TP3
0.6V
TP7
0.1V
DD
TP4
0.1V
DD
Backlight
(Recommended)
TP5
50%
TP6
50%
Note(1) The supply voltage of the external system for the module input should be the same as the
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Item Min. Typ. Max. Unit Remark
TP1 0.5 -- 10 msec TP2 0.01 -- 50 msec TP3 20 35 50 msec TP4 1000 -- -- msec TP5 200 -- -- msec TP6 200 -- -- msec TP7 1 -- 10 msec
definition of VDD.
(2) Apply the lamp volatge within the LCD operation range. When the back-light turns on
before the LCD operation or the LCD truns off before the back-light turns off, the display may momentarily become white.
(3) In case of VDD = off level, please keep the level of input signal on the low or keep a high
impedance.
(4) TP4 should be measured after the module has been fully discharged between power off
and on period.
(5) Interface signal shall not be kept at high impedance when the power is on.
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HannStar Display Corp.
The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
Document Title HSD156MGW1-A Formal Specification Page No. 23 / 41
Document No. Revision 1.0
7.0 OUTLINE DIMENSION
7.1 Front View Outline Dimension
nit : mm
N W
O D
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HannStar Display Corp.
The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
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Document No. Revision 1.0
7.2 Back View Outline Dimension
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~
distributed or reproduced in whole or in part without written permission of HannStar Display Corporation.
HannStar Display Corp.
The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
10
11
12
13
14
15
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Document No. Revision 1.0
8.0 LOT MARK
8.1 Lot Mark
code 1,2,3,4,5,6: HannStar internal flow control code. code 7: production location. code 8: production year. code 9: production month. code 10,11,12,13,14,15: serial number.
Note (1) Production Year
Year 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008
Mark 9 0 1 2 3 4 5 6 7 8
Note (2) Production Month
Month Jan. Feb. Mar. Apr. May. Jun. Jul. Aug. Sep. Oct Nov. Dec.
Mark 1 2 3 4 5 6 7 8 9 A B C
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8.2 Location of Lot Mark
(1) The label is attached to the backside of the LCD module. (2) This is subject to change without prior notice.
HSD156MGW1
-A**
Rev:
RoHS
Hannstar Display Corporation
MADE IN TAIWAN
Lot mark
distributed or reproduced in whole or in part without written permission of HannStar Display Corporation.
HannStar Display Corp.
The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
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Document No. Revision 1.0
9.0 PACKAGE SPECIFICATION
9.1
packing form
(1) Package quantity in one carton: 10 pieces.
(2) Carton size: : 462 x 312 x 318
9.2
packing assembly drawings
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(mm)
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The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not be disclosed,
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Document No. Revision 1.0
10.0 GENERAL PRECAUTION
10.1 Use Restriction
This product is not authorized for use in life supporting systems, aircraft navigation control systems, military systems and any other application where performance failure could be life-threatening or otherwise catastrophic.
10.2 Disassembling or Modification
Do not disassemble or modify the module. It may damage sensitive parts inside LCD module, and may cause scratches or dust on the display. HannStar does not warrant the module, if customers disassemble or modify the module.
10.3 Breakage of LCD Panel
10.3.1 If LCD panel is broken and liquid crystal spills out, do not ingest or inhale liquid crystal, and do not contact liquid crystal with skin.
10.3.2 If liquid crystal contacts mouth or eyes, rinse out with water immediately.
10.3.3 If liquid crystal contacts skin or cloths, wash it off immediately with alcohol and rinse thoroughly with water.
10.3.4 Handle carefully with chips of glass that may cause injury, when the glass is broken.
10.4 Electric Shock
10.4.1 Disconnect power supply before handling LCD module.
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10.4.2 Do not pull or fold the CCFL cable.
10.4.3 Do not touch the parts inside LCD modules and the fluorescent lamp’s connector or cables in order to prevent electric shock.
10.5 Absolute Maximum Ratings and Power Protection Circuit
10.5.1 Do not exceed the absolute maximum rating values, such as the supply voltage variation, input voltage variation, variation in parts’ parameters, environmental temperature, etc., otherwise LCD module may be damaged.
10.5.2 Please do not leave LCD module in the environment of high humidity and high temperature for a long time.
10.5.3 It’s recommended to employ protection circuit for power supply.
10.6 Operation
10.6.1 Do not touch, push or rub the polarizer with anything harder than HB pencil lead.
10.6.2 Use fingerstalls of soft gloves in order to keep clean display quality, when persons handle the LCD module for incoming inspection or assembly.
10.6.3 When the surface is dusty, please wipe gently with absorbent cotton or other soft material.
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Document No. Revision 1.0
10.6.4 Wipe off saliva or water drops as soon as possible. If saliva or water drops contact with polarizer for a long time, they may causes deformation or color fading.
10.6.5 When cleaning the adhesives, please use absorbent cotton wetted with a little petroleum benzine or other adequate solvent.
10.7 Mechanism
Please mount LCD module by using mouting holes arranged in four corners tightly.
10.8 Static Electricity
10.8.1 Protection film must remove very slowly from the surface of LCD module to prevent from electrostatic occurrence.
10.8.2 Because LCD module use CMOS-IC on circuit board and TFT-LCD panel, it is very weak to electrostatic discharge. Please be careful with electrostatic discharge.
Persons who handle the module should be grounded through adequate
methods.
10.9 Strong Light Exposure
The module shall not be exposed under strong light such as direct sunlight.
Otherwise, display characteristics may be changed.
10.10 Disposal
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When disposing LCD module, obey the local environmental regulations.
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