IPS Alpha AX080E002B Specification

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RECORD OF REVISION
The upper section : Previous revision
The lower section : New revision
Date
Sheet No. Page
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Summary
Jun. 18, 2007
Aug. 28, 2007
Sep. 10, 2007
IPS4PS-2611-AX080E002B-1
IPS4PS-2611-AX080E002B-2
IPS4PS-2611-AX080E002B-2
IPS4PS-2611-AX080E002B-3
IPS4PS-2611-AX080E002B-3
IPS4PS-2611-AX080E002B-4
11-2/2
Changing Inverter and FFC (Add Rev.B)
11-2/2
11-2/2
Added buffer material (Add Rev.C)
11-2/2
11-2/2
Changing Source Driver (Add Rev.D)
11-2/2
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2-1/1PageIPS4PS 2602 -AX080E002B-4Sheet No.Sep. 10, 2007IPS Alpha Technology, Ltd. Date
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The following specifications are applied to the following TFT module.
ote : Inverter for back light unit is built in this module.
Product Name : AX080E002B
Effective Display Area (H)697.685×(V)392.256 (mm)
Number of Pixels (H)1,366×(V)768 (pixels)
Pixel Pitch (H)0.51075×(V)0.51075 (mm)
Color Pixel Arrangement : R+G+B Vertical Stripe
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DESCRIPTION
General Specifications
Display Mode : Transmissive Mode
Normally Black Mode
Top Polarizer Type : Anti-Glare
Number of Colors 16,777,216 (colors)
Viewing Angle Range : Wide Version
(Horizontal & Vertical : 178qat Ǿ=0q,90q㧘180q,270q, CR҈10
Input Signal : 1-channel LVDS (LVDS:Low Voltage Differential Signaling)
Back Light : 16 pcs. of EEFL
External Dimensions : (H)760.0 x (V)450.0 x (t)49.0 max (mm)
Weight Typ 7,000 (g)
Sep. 10, 2007 3-1/1IPS Alpha Technology, Ltd. Date Sheet No. Page2603 -AX080E002B-4IPS4PS
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1. ABSOLUTE MAXIMUM RATINGS
1.1 Environmental Absolute Maximum Ratings
Min. Max. Min. Max.
Temperature 0
Vibration - 4.9(0.5G) - 14.7(1.5G)
Shock - 29.4(3G)
Corrosive Gas Not Acceptable
Illumination at
LCD Surface
Note 1) Temperature of display screen's surface.
2)
Ta40 㷄㵹㵹㵹Relative humidity should be less than 90%RH max. Dew is prohibited. Ta40 Relative humidity should be lower than the moisture of the 90%RH at 40.
3)
Frequency of the vibration is between 15Hz and 100Hz. (Remove the resonant point)
4)
Pulse width of the shock is 10 ms. All mounting holes shall be fixed. (Rear mountng holes)
5) The brightness of a lamp tends to drop at low temperature. Besides, the life-time becomes shorter
at low temperature.
Long operation under low temperature may cause some portion of display area to be reddish for several minutes
after turning on the product. However, it does not affect the characteristics and reliability of the product.
- 50,000
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Operating Storage
65
1)
2)
-20 60
2)Humidity
-
Not Acceptable
- 50,000 1x
294(30G)
RH
m/s
m/s
-
NoteUnitITEM
5)
2
2
3)
4)
1.2 Electrical Absolute Maximum Ratings
(1)TFT Module Vss = 0 V
ITEM SYMBOL
Power Supply Voltage
Input Voltage for logic
Electrostatic Durability
DD
1
ESD0
ESD1
Min.
-0.3
-0.3
Max.
13.2
3.6 V
±100 V 2), 3)
±8
Unit
V
kV
Note
1)
2), 4)
Noteޓ1)It is applied to pixel data signal and clock signal.
ޓޓޓ2)Discharge Coefficient200pF-250ǡ, Environmental25-70RH ޓޓޓ3)It is applied to I/F connector pins. ޓޓޓ4)It is applied to the surface of a metallic bezel and a LCD panel.
(2) Back-light Inverter Vss = 0 V
ITEM
Input Voltage
ON/OFF Control Input Voltage
Brightness Control Voltage
SYMBOL Min. Max.
Vin -0.3 28.0 V
5.5ON/OFF -0.3
BRT -0.3 5.5 V
Unit Note
V
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2. INITIAL OPTICAL CHARACTERISTICS
The following optical characteristics are measured under stable conditions. It takes about 30 minutes
to reach stable conditions. The measuring point is the center of display area unless otherwise noted.
The optical characteristics should be measured in a dark room or equivalent state.
Measuring equipmentCS-1000A or equivalent (Except MPRT)
Ambient Temperature =25, VDD=12.0V, f V=60Hz, VBL=24V, BRT=3.3V
ITEM SYMBOL CONDITION
Contrast Ratio
Response Time
Brightness of white Bwh 400 500
Brightness uniformity Buni - - 30
Color
Chromaticity
CIE
Variation of
Color Position
(CIE)
Contrast Ratio at 89° CR89 10
Gray scale
Rise ton -
Fall toff -
Red
Green
Blue
White
Red
Green
Blue
White
㧯㧾
ǿ 㨥 ǿ 㨥 ǿ 㨥 ǿ
㨥 Ǎǿ Ǎ㨥 Ǎǿ Ǎ㨥 Ǎǿ Ǎ㨥 Ǎǿ Ǎ㨥
L255
L239
L223
L207 -
L191
L175
L159
L143
L127
L111
L95 -
L79
L63
L47
L31 L15
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MPRT-1000 (MPRT)
Min.
700
0.62
ǰ㧩° 0.30 0.33 0.36
1) 0.27 0.30
0.60
0.12 0.15 0.18
0.04 0.07 0.10
0.243 0.273
0.245 0.275 0.305
-
ǰ㧩+50° Ǿ㧩0°, 90°
180°, 270°
1)
Ǿ㧩0°, 90°,
180°, 270° 1)
ǰ㧩°
1)
- - 0.04
--
- - 0.04
-
--
- - 0.04
--
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-L0
Typ.
950
820ms
620
0.65 0.68
0.63 0.66
- 0.04
- 0.04
-
100%
87%
74%
63%
53%
44%
35%
28%
22%
16%
11%
7.6%
4.6%
2.4%
0.97%
0.34%
0.12%
Max. UNIT NOTE
--
ms
-
0.33
0.303
0.04
0.04
0.04
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
cd/m
-
-
-
-
2
2)
3)
3)
4)
ޣGray scale
=255ޤ
5)
ޣGray scale
=255ޤ
Estimated value
MPRT MPRT -
IPS Alpha Technology, Ltd. Date Sheet No.
Sep. 10, 2007
17
IPS4PS 2605 -AX080E002B-4
-
ms
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Note 1) Definition of Viewing Angle
㧔QENQEM㧕
Ǿ㧩q
:
㧔QENQEM㧕
2) Definition of Contrast Ratio (CR)
Luminance at displaying WHITE
CR=
Luminance at displaying BLACK
3) Definition of Response Time
Displaying
Data Signal
㪙㪣㪘㪚㪢
Ǿ㧩q
;
6(6.%/
ǰ㧩q <
G[G
ǰ
<
; 㧔QENQEM㧕
㪮㪟㪠㪫㪜
㫋㫆㫅 㫋㫆㪽㪽
Ǿ
Ǿ㧩q
:㧔QENQEM㧕
Ǿ㧩q
㪙㪣㪘㪚㪢
Optical
Response
( Luminance)
4) Definition of Brightness Uniformity
㪈㪇㩼
㩿㪈㪀 㩿㪉㪀 㩿㪊㪀
㪐㪇㩼
㩿㪋㪀 㩿㪌㪀 㩿㪍㪀
㩿㪎㪀
㪈㪇㩼
䋺㫄㪼㪸㫊㫌㫉㫀㫅㪾㩷㫇㫆㫀㫅㫋㫊
㪈㪇㪇
㪐㪇
㪈㪇
㩿㪏㪀 㩿㪐㪀
㪌㪇㩼
㪌㪇㩼
㪐㪇㩼
Display pattern is white (255 level) . The brightness
uniformity is defined as the following equation. Brightness at each
point is measured, and average, maximum and minimum
brightness is calculated.
Buni
where, Bmax = Maximum brightness
Bmin = Minimum brightness
Bmax or Bmin - Bave
Bave
×100
㰿㩷㩿㪙㩿㫂㪀㪀
Bave Average brightness=
㫂㪔㪈
5) Variation of color position on CIE is defined as difference between colors at ǰ=0° and atǰ㧩50°and Ǿ=0°, 90°, 180°, 270°.
Sep. 10, 2007IPS Alpha Technology, Ltd. Date IPS4PS
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3. ELECTRICAL CHARACTERISTICS
3.1 TFT-LCD Module Ta=25ޔVss=0V
ITEM
Power supply Voltage
Power supply Current
Ripple voltage of power Supply
Note 1) fV=60.0HzfCLK=82MHzVDD=12.0Vand display pattern is white.
SYSTEM Min.
11.4
-
- 350 m
㨂 㧵
䌄䌄
䌄䌄
䌄䌄䌒
Typ
12.0 12.6
0.5 0.6
-
Max
න૏
㨂 㧭
஻⠨
1), 2)
DC Ampere Meter
TFT Module
DD
SS
2) Current fuse is built in a module. Current capacity of power supply for VDD
should be larger than 4A, so that the fuse can be opened at the trouble of electrical circuit of module.
3.2 Back Light
ITEM
Input Voltage
Input Current
ON/OFF Control
Imput Voltage
Brigthness Control
Input Voltage
PWM Duty
ON
OFF
Min. Brightness
Max. Brightness
Min. Brightness
Max. Brightness
Symbol Min. Typ. Max. Unit
VBL 21.6 24.0 26.4 V
IBL
ON/OFF
BRT
on-Duty
-
-
2.2
0 - 0.8
-
3.0
-
-
-
4.1
-
0
- 3.3 V
20
- 100
4.8
4.5
5.5
-
-
A
V
V
V
%
3)
4)
BRT=0V
BRT=3.3V
Notes
BRT=3.3V,
Ta=25
Average Lamp Life Time hours
Note 3)Warm up period ( 1 hour after back light is turnd on. )
Stable period ( After warm up period )
4
Life time of a lamp is defined as the time at which brightness of the lamp is 50% compared to that of initial value
5
at that typical lamp current on condition of continuous operating at 25 ± 2.
-
60,000 -
-
5)
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4. BLOCK DIAGRAM
(1) TFT Module
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㪪㫆㫌㫉㪺㪼㩷㪛㫉㫀㫍㪼㫉
LVDS
Display data.
Timing signal.
DC Power supply
(2) Back light unit
DC
power supply
ON/OFF Control
Brightness
Control
CN2
㪚㪥㪈
Back light
Inverter
(Master )
㪫㪺㫆㫅
㪣㪭㪛㪪
㪩㪼㪺㪼㫀㫍㪼㫉
HV HV
㪫㫀㫄㫀㫅㪾
㪚㫆㫅㫍㪼㫉㫋㪼㫉
㪛㪚㪆㪛㪚
㪚㫆㫅㫍㪼㫉㫋㪼㫉
Lamp 16
Lamp 15
㪞㪈
㪞㪉
㪞㪸㫋㪼㩷㪛㫉㫀㫍㪼㫉
㪞㪎㪍㪏
㪪㪈 㪪㪉 㪪㪋㪇㪐㪏
㪫㪝㪫㪄㪣㪚㪛
Back light
Inverter
(Slave)
CN3
DC power supply
Lamp 2
Lamp 1
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5. INTERFACE PIN ASSIGNMENT
5. 1 TFT-LCD MODULE
CN1:HIROSE FX15S-41S-0.5SH
(Matching connector : HIROSE FX15S-41P-C)
PIN
Symbol Description
No. No.
1 VDD 28
2 VDD 29 IC
3 VDD
4
VDD
VDD
5
6 VDD
7 VSS
8 VSS 35
9 VSS 36
10 VSS
11 VSS 38 IC
12 VSS
13 Rx0-
14 Rx0+
15 VSS GND(0V)
16 Rx1-
17 Rx1+
18 VSS
19 Rx2-
20 Rx2+
21 VSS GND(0V)
22 CLK-
23 CLK+
24 VSS
25 Rx3-
26 Rx3+
27 VSS GND(0V)
Power Supply (typ.+12V)
GND(0V)
Pixel Data
Pixel Data
GND(0V)
Pixel Data
Pixel Clock
GND(0V)
Pixel Data
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PIN
1)
2)
3)
2)
3)
2)
3)
2)
3)
2)
3)
2)
30
31
32
33
34
37
39
40
41 IC
SYMBOL
IC
IC
IC
IC
IC
IC
IC
IC
IC
IC
IC
DescriptionNote
Internally Connected ,
Keep Open
Note
Notes 1) All VDD pins shall be connected to +12.0V(Typ.).
2) All VSS pins shall be grounded. Metal bezel is internally connected to VSS.
3) Rx n+ and Rx n- (n=0,1,2,3) shall be wired by twisted-pairs or side-by-side FPC patterns, respectively.
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷
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5. 2 BACK-LIGHT UNIT
CN2 : JST S14B-PH-SM3-TF(LF) (Matching connecor : JST PHR-14)
CN3 : JST S12B-PH-SM3-TF(LF) (Matching connecor : JST PHR-12)
Pin No. Description Note
1
2 VBL
4
5
6
7
8
9
10
11
12
13 BRT
14
Master(CN2) Slave(CN3)
SYMBOL
VBL
VBL3
VBL
VBL
VSS
VSS
VSS
VSS
VSS
㪜㪩㪩
㪥㪚
NC
NCON/OFF
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Power Supply (typ.+24.0V)
GND(0V)
Normal:External Pull-up䋬䇭Abnormal:0V
High:Lamp ON, Low:Lamp OFF
Brightness controll of Back Light
1)
2)
3)
4)
otes 1) All VBL pins shall be connected to +24.0V(Typ.).
2) All VSS pins shall be grounded. Metal bezel is internally connected to VSS.
3) Pin 11 and 12 of Slave (CN3) are ignored.
4) Pin 14 of Master (CN2) are ignored.
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5.3 BLOCK DIAGRAM OF INTERFACE
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CN1
TFT-LCD Module sideTV set side
TxIN R0-R7 G0-G7 B0-B7
DE
DCLK
PLL
Host Graphics Controller
R0R7 Pixel R Data G0G7 Pixel G Data B0B7 Pixel B Data DE Data Enable
Rx 0+ Rx 0­Rx 1+
Rx 1­Rx 2+
Rx 2-
Rx 3+ Rx 3-
CLK+
CLK-
(7; MSB, 0; LSB)
(7; MSB, 0; LSB)
(7; MSB, 0; LSB)
100
100
100
100
100
Timing Converter
PLL
xOUT
R0R7 G0G7 B0B7
DE
DCLK
Timing Converter
1) The system must have LVDS transmitter to drive the module.
otes
2) LVDS cable impedance shall be 50 ohms per signal line or about 100 ohms per twisted-pair line
when it is used differentially.
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5.4 LVDS INTERFACE
TRANSMITTER
24bit
SIGNAL
R2 51 Tx IN0
R3 52 Tx IN1
R4
R5 55 Tx IN3
R6
R7 3 Tx IN6
G2
G3 6 Tx IN8
G4 7
G5
G6 12 Tx IN13
G7 14 Tx IN14
B2 15 Tx IN15
B3
B4 20 Tx IN19
B5
B6 23
B7 24 Tx IN22
R0 50 Tx IN27 R0
G0 8 Tx IN10 TA OUT3+ Rx 3+ G0
G1 10 Tx IN11
B0
B1 18 Tx IN17 TA OUT3-
RSVD 1) 25
DCLK 31
THC63LVDM83A
PINR1INPUT
54 Tx IN2
56
11
19 Tx IN18 B3
22 Tx IN20
-
- 28 Tx IN25 TA OUT2- Rx 2- not connected
30
16 Tx IN16
R0R7 :Pixel B Data (7;MSB, 0;LSB) G0G B0B7 :Pixel B Data (7;MSB, 0;LSB)
DE :Data Enable
Tx IN4
4 Tx IN7
Tx IN9
Tx IN12 TA OUT1+
Tx IN21 TA OUT2+
Tx IN2427
Tx IN26DE
2 Tx IN5
Tx IN23
TxCLK IN TxCLK OUT+
:Pixel B Data (7;MSB, 0;LSB)
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INTERFACE CONNECTOR
TV Set
TA OUT0+ Rx 0+ R4
TA OUT0-
TA OUT1- B2
TxCLK OUT- RxCLK IN-
TFT-LCD
Rx 0-
Rx 1+
Rx 1-
Rx 2+
Rx 3-
RxCLK IN+
CONTROL
INPUT
not connected
not connected
DCLK
TFT
R2
R3
R5
R6
R7
G2
G3
G4
G5
G6
G7
B4
B5
B6
B7
DE
R1
G1
B0
B1
Notes 1) RSVD(reserved) pins on the transmitter shall be tied to"H"or"L".
IPS4PS 2608
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㧔㧘㧕
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%144'5210&'0%'$'69''0+0276##0&&+52.#;+/#)'
Display data of one pixel is latched during one cycle of DCLK.
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     
    
    
㫇㫀㫏㪼㫃㩷㪩㪇㪩㪎 㪑㪩㩷㪻㪸㫋 㪸 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪞㪇㪞㪎 㪑㪞㩷㪻㪸㫋㪸
㪙㪇 㪙㪎 㪑㪙㩷㪻㪸㫋㪸
&%.-
4㨪4 )㨪) $㨪$
&6/)
㩷㪛㪜
  
+08#.+&         +08#.+&
 
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5.6 RELATIONSHIP BETWEEN DISPLAY COLORS AND INPUT SIGNALS
Red Data Green Data Blue Data
R4 R3 R2 R1 R0 G7 G6Input R7 R6 R5 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
Color
Black
Red(255)
Green(255)
Basic Blue(255)
Color Cyan
Magenta
Yellow
White
Black
Red (1)
Red (2)
Red
Red(254)
Red(255)
Black
Green (1)
Green (2)
Green
Green(254)
Green(255)
Black
Blue (1)
Blue (2)
Blue
Blue (254)
Blue (255)
MSB LSB MSB LSB MSB LSB
000000000000000000000000
111111110000000000000000
000000001111111100000000
000000000000000011111111
000000001111111111111111
111111110000000011111111
111111111111111100000000
111111111111111111111111
000000000000000000000000
000000010000000000000000
000000100000000000000000
: ::::::::::::::::::::::::
: ::::::::::::::::::::::::
111111100000000000000000
111111110000000000000000
000000000000000000000000
000000000000000100000000
000000000000001000000000
: ::::::::::::::::::::::::
: ::::::::::::::::::::::::
000000001111111000000000
000000001111111100000000
000000000000000000000000
000000000000000000000001
000000000000000000000010
: ::::::::::::::::::::::::
: ::::::::::::::::::::::::
000000000000000011111110
0000000000000000111 11111
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Notes 1) Definition of gray scale: Color(n)࡮࡮࡮࡮Number in parenthesis indicates gray scale level. Larger n corresponds to brighter level.
2) Data: 1:High, 0:Low
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6. INTERFACE TIMING
6.1 LVDS receiver timing
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㫋㪩㪧㪉
㫋㪩㪧㪊
㫋㪩㪧㪋
㫋㪩㪧㪌
㫋㪩㪧㪍
㫋㪩㪧㪇
㫋㪩㪧㪈
㪩㫏 㪇
㪩㫏㪈
㪩㫏㪉
㪩㫏㪊
㪞㪉 㪩㪎 㪩㪍 㪩㪌 㪩㪋 㪩㪊 㪩㪉
㪙㪊 㪙㪉 㪞㪎 㪞㪍 㪞㪌 㪞㪋 㪞㪊
㪛㪜
㪯 㪙㪈㪙㪇㪞㪈㪞㪇㪩㪈㪩
㪭㪪㪰㪥㪚㪟㪪㪰
㪚㪣㪢
Rx0 = (Rx0+) - (Rx0-)
Rx1 = (Rx1+) - (Rx1-)
Rx2 = (Rx2+) - (Rx2-)
Rx3 = (Rx3+) - (Rx3-)
CLK = (CLK+) - (CLK-)
Item
RCLK
Rx0
Rx1
Rx2 tRP4
Rx3
Frequency
0 data position
1st data position
2nd data position
3rd data position
4th data position
5th data position
6th data position
㪥㪚
㪙㪎 㪙㪍 㪙㪌 㪙㪋
㪭㪻㫀㪽㪽㪔㪇㪭
Symbol
1
tCLK
tRP0
tRP1
tRP2
tRP3
tRP5
tRP6
65 82 85 MHz
1/7tCLK - 0.40
- 0.40
6/7tCLK - 0.40
5/7tCLK - 0.40
4/7tCLK - 0.40
3/7tCLK - 0.40
2/7tCLK - 0.40
Typ MaxMin
1/7tCLK
0
6/7tCLK
5/7tCLK
4/7tCLK
3/7tCLK
2/7tCLK
㫋㪚㪣㪢
1/7tCLK + 0.40
+ 0.40
6/7tCLK + 0.40
5/7tCLK + 0.40
4/7tCLK + 0.40
3/7tCLK + 0.40
2/7tCLK + 0.40
㪭㪻㫀㪽㪽㪔㪇㪭
㪭㪻㫀㪽㪽㪔㪇㪭
㪭㪻㫀㪽㪽㪔㪇㪭
㪭㪻㫀㪽㪽㪔㪇㪭
Unit
ns
IPS Alpha Technology, Ltd.
Date
Sep. 10, 2007
Sheet No. 9-1/3PageIPS4PS 2609 -AX080E002B-4
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6.2 SYNCRONIZATION SIGNAL TIMING
DE
DE
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tV
tVD
tH
tHD
Item
Vertical Frequency
Vertical Period
DE
Vertical Valid
Horizontal Frequency
Horizontal Period
Horizontal Valid
Symbol Min
fV
tV
tVD
fH
tH
tHD
48
784
41
1410
Typ Max
60
800
768
48 60
1708 1992
1366
62
1000
Unit Note
Hz
tH
tH
kHz
tCLK
tCLK
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6.3 TIMING BETWEEN INTERFACE SIGNALS POWER SUPPLY
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Power Supply VDD
Interface VI
Back light power supply VBL
Back light ON/OFF
1)
0V
12V
0V
24V
0V
T1
0V
11.4V
1V
Hi-Z or Lo
T3
T2
21.6V
T4
Active Signal
T10
T9
T8
Hi-Z or Lo
T7
T5
Back light BRT
1)
Note 1) In all periods, the backlight ON/OFF signal voltage and the BRT signal voltage should be lower than
the backlight power supply voltage.
0V
0.5
T1
350
T2 T7 T3 T8
0
T4 T9
0
T5 T10 Unit : ms
10 -100
-100
010
0
1000
T6
T6
IPS4PS 2609 -AX080E002B-4
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Page 18
Page 19
Page 20
㪩㪜㪭 㪤㪘 㪛㪜㩷㩷㪠㪥 㩷㩷㪡㪘㪧㪘㪥
㪘㪯㪇㪏 㪇㪜㪇 㪇㪉㪙 㪇㪍㪇 㪎㪈㪟 㪘㪇㪇 㪇㪇㪇㪈
㪠㪧㪪㩷㪘㫃㫇㪿㪸㩷㪫㪼㪺㪿㫅㫆㫃㫆㪾㫐㪃㩷㪣㫋㪻 㪅
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8. DESIGNATION OF LOT MARK
8.1 LOT MARK
㪤㫆㫅㫋㪿 䇭㪉㪀
㪰㪼㪸㫉䇭㪈㪀
Notes
1) 2) 3) Year Mark Month Mark Month Mark Week(Day)
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㪍㩷㪻㫀㪾㫀㫋㫊㩷㪽㫆㫉㩷㫇㫉㫆㪻㫌㪺㫋㫀㫆㫅㩷㫅㫌㫄㪹㪼㫉 䋨㪇㪇㪇㪇㪇㪈䌾㪐㪐㪐㪐㪐㪐䋩
㪪㫇㪼㪺㫀㪸㫃㩷㫄㪸㫉㫂䇭㪋㪀
㪧㫉 㫆㪻㫌 㪺 㫋㫀 㫆㫅㩷 㫄㪸 㫅㪸㪾 㪼 㫄㪼 㫅㫋㩷㫊㫀 㪾 㫅
㪮㪼㪼㫂䇭㪊㪀
Mark
2006 06 1 01 7 07 1䌾䋷 2007 07 2 02 8 08 814 2 2008 08 3 03 9 09 1521 3
4 041010 22䌾28 4 5 051111 29䌾31 5
6 061212
4)"A":Liquid crystal A, "B":Liquid crystal B
8.2 Revision (REV.) control
REV. is the column for manufacturing convenience. A-Z except I and O may be written
on this column.
8.3 Location of lot mark
Lot mark is printed on a label. The label is on the metallic bezel as shown in 7. External Dimensional.
The style of character will be changed without notice.
㪘㪯㪇㪏㪇㪜㪇㪇㪉㪙
㪇㪍㪇㪎㪈㪟
㪇㪇㪇㪇㪇㪈
㜞㔚࿶ᵈᗧ
㪚㪘㪬㪫㪠㪦㪥㩷㪟㪠㪞㪟㩷㪭㪦㪣㪫㪘㪞㪜
㪩㪇
㪈㪉㪊㪋㪌㪍㪎㪏㪐㪇
ᧄ 䊂䉞䉴䊒䊧䉟䊡䊆 䉾䊃ౝ䈱Ⱟశ▤䈮 䈲᳓㌁䈏฽䉁 䉏䈩䈍䉍 䉁䈜䇯ᶧ᥏ 䊂䉞䉴䊒䊧䉟䈱 ᑄ
䈮ᒰ䈢 䈦䈩䈲࿾ᣇ⥄ᴦ૕䈱᧦଀ 䉁䈢 䈲ⷙೣ 䈮ᓥ 䈦䈩ᑄ䈚 䈩䈘 䈇䇯
㪝㪣㪬㪦㪩 㪜㪪 㪚㪜㪥 㪫㩷 㪣㪘㪤㪧 㩷㪠 㪥㩷㪚㪦㪣㪦㪩 㩷㪣㪚㪛 㩷㪚㪦㪥㪫 㪘㪠 㪥㪪㩷㪤 㪜㪩 㪚㪬㪩 㪰㪅
㪧㪣㪜 㪘㪪㪜 㩷㪝㪦㪣㪣㪦㪮㩷 㪣㪦㪚㪘㪣㩷 㪦㪩㪛㪠 㪥㪘㪥㪚㪜 㪪㩷㪦㪩㩷 㪩㪜 㪞㪬㪣㪘㪫㪠 㪦㪥㪪㩷㪝㪦㪩㩷 㪠㪫 㪪㩷㪛㪠 㪪㪧㪦㪪 㪘㪣㪅
IPS Alpha Technology, Ltd. Date Sep. 10, 2007 Sheet No.
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8.4 Record of the revision descrrived on the label
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㪩㪼㫍㪅
㪥㫆㪅
ABC
1 䂾㪄 㪄 2
䋭䂾䂾
3 䋭䋭䂾 4 䋭䋭䋭
No.
Initial
1
Changing Inverter and FFC (Setting up of GND stability) Inverter Rev E 㸢䇭F
2
FFC 8pin 㸢䇭10pin
Added buffer material (Prevention of hum noise)
3
Changing Source Driver
4
Before Matsushita Electric Industrial Co., Ltd. After SAMSUNG ELECTRONICS CO.,LTD.
D
㪄 䂾 䂾 䂾
Specification
-AX080E002B-4 11-2/2IPS Alpha Technology, Ltd. Date PageSheet No.Sep. 10, 2007 IPS4PS 2611
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9. COSMETIC SPECIFICATIONS
9.1 Condition for cosmetic inspection
(1) Viewing zone
a) The figure shows the correspondence
between eyes (of inspector) and
TFT-LCD module. ǰ45: when non-operating inspection 䇭䇭䇭 ǰ5 : when operating inspection
b) Inspection should be executed only from
front side and only A-zone.
Cosmetic of B-zone and C-zone are ignore.
(refer to 9.2 Definition of zone)
(2) Environmental
a) Temperature : 25 degrees
b) Ambient light : about 700 lx and non-directive when operating inspection.
: about 1000 lx and non-directive when non-operating inspection.
c) Back-light : when non-operating inspection, back-light should be off .
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㪠㫅㫊㫇㪼㪺㫋㫀㫆㫅㩷㫍㫀㪼㫎
㪣㫀㪾㪿㫋
㪸㪹㫆㫌㫋㩷㪌㪇㪇㫄㫄
㪫㪝㪫㪄㪣㪚㪛㩷㪤㫆㪻㫌㫃㪼
9.2 Definition of zone A-zone : Display area (pixel area)B-zone : Area between A-zone and C-zoneC-zone : Metallic bezel area
㪘㪄㫑㫆㫅㪼 㪙㪄㫑㫆㫅㪼
㪚㪄㫑㫆㫅㪼
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9.3 COSMETIC SPECIFICATIONS
When displaying conditions are not stable (ex. at turn on or off), the following specifications are not applied.
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Operating
inspection
No Unit
1
Dot defect
2
3
Stain inclusion
4
5
6
7
8 Wrinkles on polarizer
Line shape W : width (mm) L : length (mm)
Stain inclusion
Dot shape
D : ave. dia (mm)
Scratch on polarizer
Line shape W : width (mm) L : length (mm)
Scratch on polarizer
Dot shape and Bubbles,
Peeling in polarizer
D : ave. dia (mm)
ITEM
Sparkle
mode
Partial Sparkle
mode
Black mode
Line defect
Uneven brightness
W0.01
0.01W0.08
0.08㻡㪮
0.22D0.5
W0.01
0.01W0.08
0.08䋼㪮
0.1D0.5
1-dot
2-dots
3-dots
Density
Total
1-dot
2-dots
3-dots
Density
Total
1-dot
2-dots
3-dots
Density
Total
L : Ignore
L䋼㪊.0
3.0㻡㪣
Total
D0.22
0.5䋼㪛
L : Ignore
L10 10㻡㪣
D0.1
0.5D
Total
Max. acceptable numbe
Serious one is
not allowed
-
-
(See dot shape)
Serious one is
not allowed.
A-zone
0
0
0
0
0
4
0
0
1
4
5
1
0
3
5
Ignore
3
0
3
Ignore
3
0
Ignore
4
0
0
Ignore
4
0
4
pcs
Units
pcs/20mm 4)
pcs
pcs
Units
pcs/20mm
pcs
pcs
Units
pcs/20mm
pcs
-
pcs
pcs 6)
pcs 7)
pcs
-
Note
1), 3)
1), 3)
4)
2), 3), 4)
4), 5)
-
6)
7)
-
IPS Alpha Technology, Ltd. Date Sheet No. 12-2/3PageSep. 10, 2007 IPS4PS 2612 -AX080E002B-4
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Note
1) Definition of dot defect (Sparcle mode)
Bdot : Brightness of the dot at displaying black raster
Ignore Partial Sparcle mode Sparcle mode
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Red dot
Green dot
Blue dot
2) Definition of dot defect (Black mode)
Brightness of the dot is less than 70% of L255 brightness.
3) 1 dot : defect dot is isolated, not attached to other defect dot.
N dots : N defect dots are consecutive. (N means the number of defects dots)
4) Density : number of defect dots inside 20mm
5) Distance between defects shall be longer than 5mm.
6) Those stains which can be wiped out easily are acceptable.
7) Not applied to B-zone.
Bdot7.8%
Bdot㻡㪋㪅㪈%
Bdot㻡㪈㪏㪅㪇%
7.8%Bdot㻡㪉㪋㪅㪊%
4.1%Bdot㻡㪉㪋㪅㪊%
18.0%Bdot㻡㪉㪋㪅㪊%
24.3%䋼㪙㪻㫆㫋
24.3%䋼㪙㪻㫆㫋
24.3%䋼㪙㪻㫆㫋
IPS Alpha Technology, Ltd. Date Sheet No.
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10. PRECAUTION
Please pay attention to the followings when a TFT module with a back-light unit is used,
handled and mounted.
10.1 Precaution to handling and mounting
(1) Applying strong force to a part of the module may cause partial deformation of frame or mold,
and cause damage to the display.
(2) The module should gently and firmly be held by both hands. Never hold by just one hand in order
to avoid any internal damage. Never drop or hit the module.
(3) The module should be installed with mounting holes of a module.
(4) Uneven force such as twisted stress should not be applied to a module when a module is mounted
on the cover case. The cover case must have sufficient strength so that external force can not be
transmitted directly to a module.
(5) It is recommended to leave a space between a module and a holding board of a module so that
partial force is not applied to a module.
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B-zone
Cover case
Effective display area
Edge o
Polarizer
cover case
TFT module
Fig.1 Cross sectional view of a monitor set
(6) The edge of a cover case should be located inside more than 1mm from the edge of a module front
frame.
(7) A transparent protective plate should be added on the display area of a module in order to protect
a polarizer and TFT cell. The transparent protective plate should have sufficient strength
so that the plate can not touch a module by external force.
(8) Materials included acetic acid and choline should not be used for a cover case as well as other parts
and boards near a module. Acetic acid attacks a polarizer. Choline attacks electric circuits due to
electro-chemical reaction.
(9) The polarizer on a TFT cell should carefully be handled due to its softness, and should not be touched,
pushed or rubbed with glass, tweezers or anything harder than HB pencil lead. The surface of
a polarizer should not be touched and rubbed with bare hand, greasy clothes or dusty clothes.
(10) The surface of a polarizer should be gently wiped with absorbent cotton, chamois or other soft
materials slightly contained petroleum benzene when the surface becomes dirty. Normal-hexane
as cleaning chemicals is recommended in order to clean adhesives which fix front/rear polarizers
on a TFT cell. Other cleaning chemicals such as acetone, toluen and alcohol should not be
used to clean adhesives because they cause chemical damage to a polarizer.
(11) Saliva or water drops should be immediately wiped off. Otherwise, the portion of a polarizer may
be deformed and its color may be faded.
(12) The module should not be opened or modified. It may cause not to operate properly.
above precaution(5)
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(13) Metallic bezel of a module should not be handled with bare hand or dirty gloves. Otherwise,
color of a metallic frame may become dirty during its storage. It is recommended to use clean
soft gloves and clean finger stalls when a module is handled at incoming inspection process and
production (assembly) process.
(14) Lamp(EEFL) cables should not be pulled and held.
10.2 Precaution to operation
(1) The ambient temperature near the operated module should be satisfied with the absolute maximum
ratings. Unless it meets the specifications, sufficient cooling system should be adopted to system.
(2) The spike noise causes the mis-operation of a module. The level of spike noise should be as follows:
-200mV<=over- and under- shoot of VDD<= +200mV
VDD including over- and under- shoot should be satisfied with the absolute maximum ratings.
(3) Optical response time, luminance and chromaticity depend on the temperature of a TFT
module. Response time and saturation time of EEFL luminance become longer at lower temperature
operation.
(4) Sudden temperature change may cause dew on and/or in the a module. Dew males damage to a
polarizer and/or electrical contacting portion. Dew causes fading of displayed quality.
(5) Fixed patterns displayed on a module for a long time may cause after-image. It will be recovered
soon.
(6) A module has high frequency circuits. Sufficient suppression to electromagnetic interference should
be done by system manufacturers. Grounding and shielding methods may be effective to minimize
the interference.
(7) Noise may be heard when a back-light is operated. If necessary, sufficient suppression should be
done by system manufacturers.
(8) The module should not be connected or removed while a main system works.
(9) Inserting or pulling I/F connectors causes any trouble when power supply and signal dates are
on-state.I/F connectors should be inserted and pulled after power supply and signal dates are
turned off.
10.3 Electrostatic discharge control
(1) Since a module consists of a TFT cell and electronic circuits with CMOS-ICs, which are
very weak to electrostatic discharge, persons who are handling a module should be grounded
through adequate methods such as a list band. I/F connector pins should not be touched directly
with bare hands.
(2) Protection film for a polarizer on a module should be slowly peeled off so that the electrostatic
charge can be minimized.
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10.4 Precaution to strong light exposure
(1) A module should not be exposed under strong light. Otherwise, characteristics of a polarizer and
color filter in a module may be degraded.
10.5 Precaution to storage
When modules for replacement are stored for a long time, following precautions should be taken care of:
(1) Modules should be stored in a dark place. It is prohibited to apply sunlight or fluorescent light during storage. Modules should be stored at 0 to 35C at normal humidity (60%RH or less).
(2) The surface of polarizers should not come in contact with any other object. It is recommended that modules should be stored in the Hitachi's shipping box.
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10.6 Precaution to handling protection film
(1) The protection film for polarizers should be pealed off slowly and carefully by persons who are
electrically grounded with adequate methods such as a list band. Besides, ionized air should be blown
over during peeling action. Dusts on a polarizer should be blown off by an ionized nitrogen gun and
so on.
(2) The protection film should be peeling off without rubbing it to the polarizer. Because, if the film is
rubbed together with the polarizer, since the film is attached to the polarizer with a small amount
of adhesive, the adhesive may remain on a polarizer.
(3) The module with protection film should be stored on the conditions explained in 10.5 (1). However,
in case that the storage time is too long, adhesive may remain on a polarizer even after a protection
film is peeled off. Besides, in case that a module is stored at higher temperature and/or higher
humidity, adhesive may remain on a polarizer. The remained adhesive may cause non-uniformity
of display image.
(4) The adhesive can be removed easily with Normal-Hexane. The remained adhesive or its vestige on
the polarizer should be wiped off with absorbent cotton or other soft materials such as chamois
slightly contained Normal-Hexane.
10.7 Safety
(1) Since a TFT cell and lamps are made of glass, handling to the broken module should be taken
care sufficiently in order not to be injured. Hands touched liquid crystal from a broken cell should be
washed sufficiently.
(2) The module should not be taken apart during operation so that back-light drives by high voltage.
10.8 Environmental protection
(1) The TFT module contains cold cathode fluorescent lamps. Please follow local ordinance or
regulations for its disposal.
(2) Flexible printed circuits and printed circuits board used in a module contain small amount of lead.
Please follow local ordinance or regulations for its disposal.
10.9 Use restrictions and limitations
(1) This product is not authorized for use in life support devices or systems, military applications or
other applications which pose a significant risk of personal injury.
(2) In no event shall Hitachi, Ltd., be liable for any incidental, indirect or consequential damages in
connection with the installation or use of this product, even if informed of the possibility thereof
in advance. These limitations apply to all causes of action in the aggregate, including without
limitation breach of contact, breach of warranty, negligence, strict liability, misrepresentation and
other torts.
10.10 Others
(1) Electrical components which may not affect electrical performance are subjective to change without
notice because of their availability.
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11.Packing
2CTVKPIUVTKR
EQTTWICVGFRCRGT
7RRGTEQXGTEQTTWICVGFRCRGT
7RRGTDWHHGTOCVGTKCN
25(QCO
6(6/QFWNG (TQPVUKFG
6(6/QFWNG
$CEMUKFG
6(6/QFWNG
#PVK5VCVKE
'NGEVTKEKV[$CI
2CTVKPIUVTKR
EQTTWICVGFRCRGT
㪫㫌㫉㫅㫊㩷㫆㫅㩷㫋㪿㪼㩷㪹㪸㪺㫂
㫆㪽㩷㫋㪿㪼㩷㪫㪝㪫㪄㪤㫆㪻㫌㫃㪼㪅
6(6/QFWNG
$CPF
7PFGTDWHHGTOCVGTKCN
25(QCO
2'$CI
(TCOGEQTTWICVGFRCRGT
7PFGTEQXGTEQTTWICVGFRCRGT
2NCUVKERCNGVVG
Sizeޓޓ㧦1210(L)×1000(W)×680(H) mm Weight 142kg Maximum stack up : 3 layers
5VCVGQHRCEMKPI
VQRUKFGXKGY
6(6/QFWNGREU2CNGVVG
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
Page 14-1/2IPS Alpha Technology, Ltd. Date Sep. 10, 2007 Sheet No. IPS4PS 2614 -AX080E002B-4
www.panelook.com
Page 29
Global LCD Panel Exchange Center
(4
#:'$
www.panelook.com
production ship
address
REU

4'8#
Revision
quantity
Product Name
F0000003R01
production slip (ex.) label size (102 × 70)
#:'#
00008 A
#:'$
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
Page 14-2/2IPS Alpha Technology, Ltd. Date Sep. 10, 2007 Sheet No. IPS4PS 2614 -AX080E002B-4
www.panelook.com
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