BOE HV260WX1-100 Specification

Page 1
PROPRIETARY NOTE
THIS SPECIFICATION IS THE PROPERTY OF BOE TFT-LCD SB U AND SHALL NOT BE REPRODUCED OR COPIED WITHOUT THE WRITTEN PERMISSION OF BOE TFT­LCD SBU AND MUST BE RETURNED TO BOE TFT-LCD SBU UPON ITS REQUEST
TITLE : HV260WX1-100
Preliminary Product Specification
Rev. P0
BOE TFT-LCD SBU
BEIJING BOE OPTOELECTRONICS TECHNOLOGY
BOE HYDIS TECHNOLOGY
SPEC. NUMBER
B2005-C001-O(1/3) A4(210 X 297)
PRODUCT GROUP
TFT-LCD
REV.
P0
ISSUE DATE
2005.12.13
1
OF 27
A4(210 X 297)
Page 2
PRODUCT GROUP
REV
ISSUE DATE
TFT- LCD Product
REVISION HISTORY
P0
2005.12.13
PREPARED DATE DESCRIPTION OF CHANGES ECN NO.REV.
Y. J. Yoon05.12.13Initial ReleaseP0
SPEC. NUMBER
B2005-C001-O(2/3) A4(210 X 297)
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
2
OF 27
Page 3
PRODUCT GROUP
REV
ISSUE DATE
TFT- LCD PRODUCT
Contents
1.1 Introduction
1.2 Features
1.3 Applications
1.4 General Specification
ELECTRICAL SPECIFICATIONS3
3.1 TFT LCD Module
3.2 Inverter
4.1 Module Input Signal & power
4.2 LVDS Interface
4.3 Inverter Input Signal & Power
5.1 Timing Parameter
5.2 Signal Timing Waveform
5.3 Input Signals, Basic Display Colors & Cray Scale Of Colors
5.4 Power Sequence
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Page ITEMNo
2REVISIONS HISTORY 3CONTENTS 4GENERAL DESCRIPTION1
6ABSOLUTE MAXIMUM RATINGS2
9INTERFACE CONNECTION4
12SIGNAL TIMING SPECIFICATIONS5
16OPTICAL SPECIFICATIONS6 18MECHANICAL CHARACTERISTICS7 19RELIABLITY8 20PRODUCT SERIAL NUMBER9 21PACKING10 23HANDING & CAUTIONS11 24APPENDIX12
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1.0 GENERAL DESCRIPTION
1.1 Introduction
HV260WX1-100 is a color active matrix TFT LCD module using amorphous silicon TFT's (Thin Film Transistors) as an active switching devices. This module has a 26.0 inch diagonally measured active area with WXGA resolutions (1366 horizontal by 768 vertical pixel array). Each pixel is divided into RED, GREEN, BLUE dots which are arranged in vertical stripe and this module can display 16.7M colors. The TFT-LCD panel used for this module is adapted for a low reflection and higher color type.
Source Driver Circuit
S1 S1366
TFT - LCD Panel
(1366 × RGB × 768 pixels)
LVDS
5pair
+5.0V
CN
(30pin)
RGB
Timing Controller
(LVDS Rx + RSDS)
Gate Driver Circuit
G1
G768
Power Circuit
Block
+24V
GND
CN2
(14Pin)
Inverter
Block
2pin x 16CNs
(High)
Back light Assembly
( U Type_8CCFL)
1.2 Features
z LVDS Interface with 1 pixel / clock z High-speed response z Low power consumption z 8-bit color depth, display 16.7M colors z Incorporated 8 U-type CCFL back-light z High luminance and contrast ratio, low reflection and wide viewing angle z DE (Data Enable) only mode z RoHS Compliant
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1.3 Application
z Home Alone Multimedia TFT-LCD TV z Display Terminals for Control System z High Definition TV(HD TV) z AV application Products
1.4 General Specification
< Table 1. General Specifications >
P0
mm575.77(H) * 323.71(V) Active area
pixels1366(H) ×768(V)Number of pixels
mm0.4215(H) ×0.4215(V)Pixel pitch
05.12.13
RemarksUnitSpecificationParameter
RGB Vertical stripePixel arrangement
colors16.7M(8bits-true)Display colors
Normally BlackDisplay mode
mm626.0(H) × 373.0(V) × 51.0(D) typ.Outline Dimension
gram4300 (typ.)Weight
Haze 25%, 3HSurface Treatment
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B2005-C001-O(3/3) A4(210 X 297)
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HV260WX1-100 Preliminary Product Specification
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2.0 ABSOLUTE MAXIMUM RATINGS
The followings are maximum values which, if exceed, may cause faulty operation or damage to the unit. The operational and non-operational maximum voltage and current values are listed in Table 2.
< Table 2. LCD Module Electrical Specifications >
Power Supply Voltage
Back-light Lamp Frequency Operating Temperature
Storage Temperature
LCD Module Inverter
DD
IN
L
OP
SUR
ST
V6.0VSS-0.5V V25.2VSS-0.3V
KHz8040F +500T +500T +60-20T
℃ ℃ ℃
05.12.13
[VSS=GND=0V]
RemarksUnitMax.Min.SymbolParameter
Ta = 25
1)
1)
1)
Note : 1) Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39
100
80
60
40
Relative Humidity (%RH)
20
90
O
C max. and no condensation of water.
(39, 90)
Oper a ting Ran ge
Storage Range
5
0
20 40 60 80-20
Temperature (˚C)
(50, 50)
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3.0 ELECTRICAL SPECIFICATIONS
3.1 TFT LCD Module
< Table 3. LCD Module Electrical Specifications >
Parameter Symbol
IDDPower Supply Current
Vsync Frequency Hsync Frequency
V
H
Values
P0
05.12.13
[Ta =25±2 ℃]
NotesUnit
MaxTypMin
Vdc5.55.04.5VDDPower Supply Input Voltage
A1TBD-
1
A1.2TBD-
Watt6TBDPLCDPower Consumption
Hz636048f
KHz-48.5444f
MHz8275PLCDMain Clock Frequency
2A4.0--IRUSHRush current
Notes : 1. The supply voltage is measured and specified at the interface connector of LCM.
The current draw and power consumption specified is for VDD=5.0V, Frame rate=60Hz and Clock frequency = 80MHz. Test Pattern of power supply current
a) Typ : Black Pattern b) Max : Sub Dot Pattern
2. The duration of rush current is about 2ms and rising time of Power Input is 1ms(min)
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3.2 Inverter
Input Voltage Input Current
Power Consumption
B/L on/off control
Analog Dimming
TFT- LCD PRODUCT
< Table 4. Inverter Electrical Specifications >
Values
ConditionSymbolParameter
IN
DDB
B
V
ON/OFF
A
DIM
Unit
05.12.13
Notes
P0
Max.Typ.Min.
V25.224.022.8V A5.5TBD-Vadim=3.3VI
1
Watt100TBD-Typ LuminanceP
V5.02.4Lamp ON = High V0.80.0Lamp OFF =Low
0Min. Luminance
V
3.3Max. Luminance
PWM Dimming
Notes: 1.The specified current and power consumption are under the typical supply Input voltage, 24V.
2. High-duty = On/(On+Off) * 100
On
3. The life time of a Lamp, 50,000Hrs, is determined as the time at which luminance of the lamp is 50%
value at the typical lamp current on condition of continuous operating at 25 ± 2°C.
DIM
Off
%100-TBDPWM
2 3Hrs50,000Life Time
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4.0 INTERFACE CONNECTION
4.1 Module Input Signal & Power
- Connector : FI-E30S (Manufactured by JAE) or Equivalent < Table 5. LCM Module Input Connector Pin Configuration >
Pin No
*
NC 2 3
* *
LVDS Receiver Signal(-)RX0-5
GroundGND7
16 17 18 19 20 21 22 23 24
P0
SymbolDescriptionSymbolPin No
GNDNot Connected1 RX3-Not ConnectedNC
RX3+Not ConnectedNC
LVDS Receiver Signal(-)
LVDS Receiver Signal(+)
GNDGroundGND4
*
NC
OPT*LVDS Receiver Signal(+)RX0+6
*
NC GNDLVDS Receiver Signal(-)RX1-8 GNDLVDS Receiver Signal(+)RX1+9
Description
Ground
Ground
Not Connected
LVDS Option
Not Connected
Power Ground Power Ground
05.12.13
25 26 27 28 29 30
Notes : 1. N*(Not Connected) : This pins are only used for BOE HYDIS internal operations.
2. Input Level of LVDS signal is based on the IEA 664 Standard.
3. OPT* (LVDS Option) : This pin is used for selecting LVDS signal data format. If this Pin : High (3.3V) Æ Normal NS LVDS format Otherwise : Low (GND) or Open (NC) Æ JEIDA LVDS format Sequence : On = Vdd LVDS Option Interface signal
Off = Interface signal LVDS Option ≥ Vdd
Rear view of LCM
1
FI-E30S (JAE)
30
GNDGroundGND10
VddLVDS Receiver Signal(-)RX2-11 VddLVDS Receiver Signal(+)RX2+12 VddGroundGND13 VddLVDS Receiver Clock Signal(-)RXCLK-14 VddLVDS Receiver Clock Signal(+)RXCLK+15
Power supply + 5.0V dc Power supply + 5.0V dc Power supply + 5.0V dc Power supply + 5.0V dc Power supply + 5.0V dc
Power Ground
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4.2 LVDS Interface
- LVDS Receiver : Timing Controller (LVDS Rx merged)
- LVDS Data : Pixel Data < Table 6. LCM Module Input Connector Pin Configuration >
TxOUT/RxIN0
P0
R2Red0 [LSB]TxIN/RxOUT0 R3Red1TxIN/RxOUT1 R4Red2TxIN/RxOUT2 R5Red3TxIN/RxOUT3 R6Red4TxIN/RxOUT4
R7 [MSB]Red5TxIN/RxOUT6
G2Green0 [LSB]TxIN/RxOUT7 G3Green1TxIN/RxOUT8 G4Green2TxIN/RxOUT9 G5Green3TxIN/RxOUT12
05.12.13
RemarkJEIDA Data formatLVDS Data formatLVDS Pin
TxOUT/RxIN1
TxOUT/RxIN2
TxOUT/RxIN3
G6Green4TxIN/RxOUT13
G7 [MSB]Green5TxIN/RxOUT14
B2Blue0 [LSB]TxIN/RxOUT15 B3Blue1TxIN/RxOUT18 B4Blue2TxIN/RxOUT19 B5Blue3TxIN/RxOUT20 B6Blue4TxIN/RxOUT21
B7 [MSB]Blue5TxIN/RxOUT22
HSYNCHSYNCTxIN/RxOUT24 VSYNCVSYNCTxIN/RxOUT25
DENDENTxIN/RxOUT26
R0 [LSB]Red6TxIN/RxOUT27
R1Red7 [MSB]TxIN/RxOUT5
G0 [LSB]Green6TxIN/RxOUT10
G1Green7 [MSB]TxIN/RxOUT11
B0 [LSB]Blue6TxIN/RxOUT16
B1Blue7 [MSB]TxIN/RxOUT17
ReservedReservedTxIN/RxOUT23
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4.3 Inverter Input Signal & Power
- Connector : S14B-PH-SM3 Side entry type (Manufactured by JST) or Equivalent < Table 6. Inverter Input Connector Pin Configuration >
RemarksDescriptionSymbolPin No
Power Supply +24VVBL1 Power Supply +24VVBL2 Power Supply +24VVBL3 Power Supply +24VVBL4 Power Supply +24VVBL5 GroundGND6 GroundGND7 GroundGND8 GroundGND9 GroundGND10 Not ConnectedNC11
05.12.13
Backlight On/off SignalVON/OFF12
- Connector : B4B-ZR-SM3A-TF (Manufactured by JST) or Equivalent
< Table 7. Inverter Control Signal Connector Pin Configuration >
Brightness Adjustable VoltagePWM dimmer1 Brightness Adjustable VoltageAnalog dimmer2 Backlight On/off SignalON/OFF3 Backlight GroundGND4
Rear view of LCM
PCB
14
1
PCB
(On :2.4V~3.6V/Off :0.0~0.8V)
(Max :3.3V / Min :0.0V)Brightness Adjustable VoltageAnalog Dimmer13 (Max :3.3V / Min :0.0V)Brightness Adjustable VoltagePWM Dimmer14
RemarksDescriptionSymbolPin No
B4B-ZR-SM3A-TF
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SPEC. NUMBER
S14B-PH-SM3-TB
(JST : Japan Solderless Terminal Co.,Ltd.)
(JST : Japan Solderless Terminal Co.,Ltd.)
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
B2005-C001-O(3/3) A4(210 X 297)
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5.0 SIGNAL TIMING SPECIFICATION
5.1 Timing Parameters ( DE only mode)
< Table 8. Timing Table >
CLK
Hsync
Vsync
Horizontal Active
Display Term
Period
Period Frequency Period Frequency Valid Total
CLK
HP
H
VP
V
HV
HP
P0
05.12.13
NoteUnitMaxTypMinSymbolITEM
ns13.312.411.8t
MHz8580.475.3-Frequency
177615281416t
5047.445f
1063790775t
t
CLK
KHz
t
HP
Hz636047f
-1366-t
t
CLK
165016001560t
Vertical Active
Display Term
Notes: This product is DE only mode. The input of Hsync & Vsync signal does not have an effect on normal operation.
Valid Total
VV
VP
-768-t
855838805t
t
HP
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5.2 Signal Timing Waveform
DCLK
tCLK
First data
Second data
DE(Data Enable)
0.5 VDD
Invalid data
Invalid data
Valid data
Pixel data
Valid data
Pixel data
Pixel data
Pixel data
P0
Invalid data
Invalid data
05.12.13
HSync
DE(Data Enable)
VSync
DE(Data Enable)
SPEC. NUMBER
tHP
tHV
tVP
tVV
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5.3 Input Signals, Basic Display Colors & Gray Scale Of Colors
Color & Gray Scale
Basic Colors
Gray Scale of Red
Gray Scale of Green
Gray Scale of Blue
Gray Scale of White
R6
R3
0R40R50
R1 B7G7R7
000000Darker
000000Darker
000000Darker
0
0R20
11111
Input Data Signal
G6
R0
0G50G40G30G20G10
0
0
G0
P0
05.12.13
Blue DataGreen DataRed Data
△ ↓
△ ↓
△ ↓
0B60B50B40B30B20B10
000Black
△ ↓
B0
000000000000000000000000Black 111111110000000000000000Blue 000000001111111100000000Green
11111111111111100000000Cyan
1 000000000000000011111111Red 111111110000000011111111Magenta 000000001111111111111111Yellow 111111111111111111111111White 000000000000000000000000Black 000000000000000010000000 000000000000000001
000000000000000010111111Brighter 000000000000000001111111 000000000000000011111111Red 000000000000000000000000Black 000000001000000000000000 000000000100000000
000000001011111100000000Brighter 000000000111111100000000 000000001111111100000000Green 000000000000000000000000Black 100000000000000000000000 010000000000000000
101111110000000000000000Brighter 011111110000000000000000 111111110000000000000000Blue
100000001000000010000000 010000000100000001000000Darker
101111111011111110111111Brighter 011111101111111011
1111111111111111111111111White
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5.4 Power Sequence
To prevent a latch-up or DC operation of the LCD module, the power on/off sequence shall be as shown in below
Power Supply
Interface Signal
( Input Data )
0.9VDD
0.1VDD
0V
T1
T2
Valid
0V
T3 T4
0.9VDD
T5
0.1VDD
T6
05.12.13
Inverter Signal
( B/L On/Off )
0V
Values
Parameter
Notes:
1. When the power supply VDD is 0V, Keep the level of input signals on the low or keep high impedance.
2. Do not keep the interface signal high impedance when power is on.
3. Back Light must be turn on after power for logic and interface signal are valid.
Units
MaxTypMin
ms10-0.5T1 ms50-0.5T2 ms--1T3
--100T4
ms ms50-0.5T5
s--3.0T6
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6.0 OPTICAL SPECIFICATION
The test of Optical specifications shall be measured in a dark room (ambient luminance 1 lux and
temperature = 25±2) with the equipment of Luminance meter system (Goniometer system and TOPCON BM-5) and test unit shall be located at an approximate distance 50cm from the LCD surface at a viewing angle of θ and Φ equal to 0°. We refer to θ (the “right”), θ direction (“left”) and θ
(= θ12) as the 12 o’clock direction (“upward”), θ
Ø=90
(= θ6 ) as the 6 o’clock direction (“bottom”). While scanning θ and/or
Ø=270
Ø, the center of the measuring spot on the Display surface shall stay fixed. The measurement shall be executed after 30 minutes warm-up period. VDD shall be 5.0V +/-10% at 25°C. Optimum viewing angle direction is 6 ’clock.
Θ
Θ
Θ
Θ
3
9
12
6
Viewing
Angle
Horizontal
Vertical
CR > 10
[VDD = 5.0V, Frame rate = 60Hz, Ta =25±2 ℃]
(=θ3) as the 3 o’clock direction
Ø=0
(= θ9) as the 9 o’clock
Ø=180
RemarkUnitMaxTypMinConditionSymbolParameter
Deg.89 Deg.89
Note 1
Deg.89 Deg.89
TBDK12,000-Color Temperature
Luminance of White
Reproduction
of color
Response
Time
%72-Color Gamut
CRContrast ratio
w
W
White
Red
Green
Blue
Rise
Decay Note 6ms
G to G
x
y
x
y
x
y
x
y
r
d
g
Θ = 0°
(Center)
Normal
Viewing
Angle
TYP.
- 0.3
-T
0.272
0.277W
0.640R
0.330R
0.265G
0.590G
0.150B
0.057B
6
-500(450)Y
TYP. + 0.3
(7)6-T (7)
(10)8-T
cd/m
2.42.22.0Gamma Scale
Note 2-800:1(600:1)
2
Note 3 Note 4%-75ΔYWhite luminance uniformity
Note 5
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Note :
1. Viewing angle is the angle at which the contrast ratio is greater than 10. The viewing are
determined for the horizontal or 3, 9 o’clock direction and the vertical or 6, 12 o’clock direction with respect to the optical axis which is normal to the LCD surface.
2. Contrast measurements shall be made at viewing angle of θ= 0° and at the center of the LCD
surface. Luminance shall be measured with all pixels in the view field set first to white, then to the dark (black) state. (See FIGURE 1 shown in Appendix) Luminance Contrast Ratio (CR) is defined mathematically.
CR =
3. Center Luminance of white is defined as the LCD surface. Luminance shall be measured with
all pixels in the view field set first to white. This measurement shall be taken at the locations
Luminance when displaying a white raster
Luminance when displaying a black raster
shown in FIGURE 2 for a total of the measurements per display.
4. The White luminance uniformity on LCD surface is then expressed as :
ΔY = ( Minimum Luminance of 9points / Maximum Luminance of 9points ) * 100 (See FIGURE 2 shown in Appendix).
5. The color chromaticity coordinates specified in Table 4. shall be calculated from the spectral
data measured with all pixels first in red, green, blue and white. Measurements shall be made at the center of the panel.
6. The electro-optical response time measurements shall be made as FIGURE 3 shown in
Appendix by switching the “data” input signal ON and OFF. The times needed for the luminance to change from 10% to 90% is Td, and 90% to 10% is Tr.
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7.0 MECHANICAL CHARACTERISTICS
7.1 Dimensional Requirements
FIGURE 6 (located in Appendix) shows mechanical outlines for the model HV260WX1-100. Other parameters are shown in Table 5.
<Table 5. Dimensional Parameters>
Direct Light 8U CCFL typeBack-light
P0
05.12.13
UnitSpecificationParameter
mm626.0(H) ×373.0.3 (V) ×51.0 (D) ±1.0Dimensional outline
gram4300 (typ)Weight
mm575.77 (H) ×323.71(V)Active area mm0.4215(H) ×0.4215(V)Pixel pitch
pixels1366(H) ×768(V) (1 pixel = R + G + B dots)Number of pixels
7.2 Mounting
See FIGURE 5. (shown in Appendix)
7.3 Anti-Glare and Polarizer Hardness.
The surface of the LCD has an anti-glare coating to minimize reflection and a coating to reduce scratching.
7.4 Light Leakage
There shall not be visible light from the back-lighting system around the edges of the screen as seen from a distance 50cm from the screen with an overhead light level of 350 [lux.]
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8.0 RELIABLITY TEST
The Reliability test items and its conditions are shown in below.
<Table 6. Reliability Test Parameters >
Test Items
Ta = 60 , 240 hrs Ta = -20 , 240 hrs Ta = 50 , 80%RH, 240hrs
Ta = 50 , 240hrs Ta = 0 , 240hrs
Ta = -20 ℃↔60 ℃ (0.5 hr), 100 cycle
1 2 3
4 5
6
No
High temperature storage test Low temperature storage test High temperature & high humidity
operation test High temperature operation test
Low temperature operation test Thermal shock
P0
Conditions
05.12.13
7
8
9
Vibration test (non-operating)
Shock test (non-operating)
Electro-static discharge test
Frequency : 10 ~ 300 Hz, Sweep rate 10 min
Gravity / AMP : 1.5 G Sine Period : ±X, ±Y, ±Z 30 min
Gravity : 50G
Pulse width : 11msec, Sine wave
±X, ±Y, ±Z Once for each direction
Air : ±15kV , 50pF/330Ω ,100Point ,1time/Point Contact : ±8kV , 150pF/330Ω ,100Point , 1time/Point
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9.0 Product Serial Number
TFT- LCD PRODUCT
HV260WX1-100
P0
05.12.13
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10.0 PACKING INFORMATION
BOE provides the standard shipping container for customers, unless customer specifies their packing information. The standard packing method and Barcode information are shown in below.
10.1 Packing Order
Module 11EA
Module 11EA
SPEC. NUMBER
Packing BOX
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
Cushion PAD
Cushion Middle
Cushion PAD
Pallet
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10.2 Packing Note
y Box Dimension : y Package Quantity in one Box : 3pcs
10.3 Box label
y Label Size : 108 mm (L) × 56 mm (W) y Contents
Model : HV260WX1 Q`ty : Module Q`ty in one box Serial No. : Box Serial No. See next page for detail description. Date : Packing Date FG Code : FG Code of Product
P0
05.12.13
HV260WX1- ###
0000000000000
00 0 0 00 0 0 00000 Type Grade Line Year Month ITEM-CODE Serial_no
SPEC. NUMBER
B2005-C001-O(3/3) A4(210 X 297)
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HV260WX1-100 Preliminary Product Specification
3
2005.11.22.
FG CODE
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11.0 HANDLING & CAUTIONS
(1) Cautions when taking out the module
y Pick the pouch only, when taking out module from a shipping package.
(2) Cautions for handling the module
y As the electrostatic discharges may break the LCD module, handle the LCD
module with care. Peel a protection sheet off from the LCD panel surface as slowly as possible.
y As the LCD panel and back - light element are made from fragile glass material,
impulse and pressure to the LCD module should be avoided.
y As the surface of the polarizer is very soft and easily scratched, use a soft dry
cloth without chemicals for cleaning.
y Do not pull the interface connector in or out while the LCD module is operating. y Put the module display side down on a flat horizontal plane. y Handle connectors and cables with care.
(3) Cautions for the operation
y When the module is operating, do not lose CLK, ENAB signals. If any one of
these signals is lost, the LCD panel would be damaged.
y Obey the supply voltage sequence. If wrong sequence is applied, the module
would be damaged.
(4) Cautions for the atmosphere
y Dew drop atmosphere should be avoided. y Do not store and/or operate the LCD module in a high temperature and/or
humidity atmosphere. Storage in an electro-conductive polymer packing pouch
and under relatively low temperature atmosphere is recommended.
(5) Cautions for the module characteristics
y Do not apply fixed pattern data signal to the LCD module at product aging. y Applying fixed pattern for a long time may cause image sticking.
(6) Other cautions
y Do not disassemble and/or re-assemble LCD module. y Do not re-adjust variable resistor or switch etc. yWhen returning the module for repair or etc., Please pack the module not to be
broken. We recommend to use the original shipping packages.
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SPEC. NUMBER
B2005-C001-O(3/3) A4(210 X 297)
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
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12.0 APPENDIX
TFT- LCD PRODUCT
Figure 1. Measurement Set Up
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Figure 2. White Luminance and Uniformity Measurement Locations
SPEC. NUMBER
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
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Page 25
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ca pt
Response
ectro-
100%
90%
10%
0%
TFT- LCD PRODUCT
Figure 3. Response Time Testing
High Gray (Bright)Low Gray (Dark) Low Gray (Dark)
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TfTr
Time
SPEC. NUMBER
B2005-C001-O(3/3) A4(210 X 297)
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
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REV
ISSUE DATE
TFT- LCD PRODUCT
Figure 5. TFT-LCD Module Outline Dimensions (Front view)
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SPEC. NUMBER
B2005-C001-O(3/3) A4(210 X 297)
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
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Page 27
PRODUCT GROUP
REV
ISSUE DATE
TFT- LCD PRODUCT
Figure 6. TFT-LCD Module Outline Dimensions (Rear view)
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SPEC. NUMBER
B2005-C001-O(3/3) A4(210 X 297)
SPEC. TITLE
HV260WX1-100 Preliminary Product Specification
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