BOE HV320WXC-200 Specification

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PROPRIETARY NOTE
BEG
G
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BEIJING BOE DISPLAY TECHNOLOGY
ISSUE DATE
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P1
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TFT LCD
REVISION HISTORY
REV. ECN NO. DESCRIPTION OF CHANGES DATE PREPARED
P0 - Initial Release 2011.07.29 S. M. Lee
P1 -
Max. Logic Power Consumption Change
2011.09.01 S.M. Lee
6.3W 7.1W
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TFT LCD
Contents
No ITEM Page
REVISIONS HISTORY 2
CONTENTS
1 GENERAL DESCRIPTION
1.1 Introduction
1.2 Features
1.3 Applications
1.4 General Specification
2 ABSOLUTE MAXIMUM RATINGS 6
3 ELECTRICAL SPECIFICATIONS 7
3.1 TFT LCD Module
3.2 LED Converter
3
4
4 INTERFACE CONNECTION 9
4.1 Module Input Signal & Power
4.2 LVDS Interface
4.3 LED Converter Input Signal & Power
5 SIGNAL TIMING SPECIFICATIONS
5.1 Timing Parameters
5.2 Signal Timing Waveform
5.3 Input Signals, Basic Display Colors & Cray Scale Of Colors
5.4 Power Sequence
6 OPTICAL SPECIFICATIONS 16
7 MECHANICAL CHARACTERISTICS 18
8 RELIABLITY
9 PRODUCT SERIAL NUMBER 20
10 PACKING INFORMATION
11 HANDING & CAUTIONS 23
12 APPENDIX
12
19
21
24
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TFT LCD
1.0 GENERAL DESCRIPTION
1.1 Introduction
HV320WXC-200 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 31.51 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.
RGB(Mini-LVDS)
VDD
+12.0V
LVDS
5pairs
LVDS_SEL
# 9
BIST_
# 27
CN1
(30pin)
Timing Controller
[LVDS Rx & Mini-LVDS
Tx integrated]
S1 S1366
G1
Gate Driver Circuit
Source Driver Circuit
TFT - LCD Panel
(1366 Ý RGB Ý 768 pixels)
G768
Back light Assembly
(80ea LED)
VBL
+24.0V
VDIM
# 13
PDIM
# 14
CN2
(14pin)
Power Circuit
Block
LED Converter
1.2 Features
z LVDS interface with 1 pixel / clock z High-speed response z Low color shift image quality z 8-bit color depth, display 16.7M colors z High luminance and contrast ratio, low reflection and wide viewing angle z DE (Data Enable) only mode z AFFS technology is applied for high display quality
z RoHS compliant
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TFT LCD
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 >
Parameter Specification Unit Remark
Active area
697.685(H) Ý 392.256(V)
mm
Number of pixels
Pixel pitch
Pixel arrangement Pixels RGB Vertical stripe
Display colors 16.7M(8bits-true) colors
Display mode Transmission mode, Normally Black
Outline Dimension
Weight 5900 (max.) gram
Power Consumption Total=40.0Watt (Typ.)
Surface Treatment Haze 10%, 3H, Semi-glare treatment
170.25(H) ശRGBശ510.75(V)
735.4(H) Ý 433.0(V) Ý 16.2(D) typ.
1366(H) 768(V)
(Logic=4.0W, BL=36W )
(Front Polarizer)
pixels
mm
Watt
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TFT LCD
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 >
Parameter Symbol Min. Max. Unit Remark
Power Supply Voltage
LCD Module
VDD VSS-0.3 13.2 V
Converter VBL VSS-0.3 26.4 V
T
Operating Temperature
T
Storage Temperature T
Operating Ambient Humidity
Hop 10 80 %RH
0 +50
OP
0 +60
SUR
-20 +60
ST
ć
ć
ć
[VSS=GND=0V]
Ta = 2 5 ć
Note 1
Storage Humidity Hst 10 80 %RH
Note 1 : Temperature and relative humidity range are shown in the figure below. Wet bulb temperature should be 39 ć max. and no condensation of water.
ړڋڀٻ
ڑڋٻ
ڑڋڀٻ
ڲۀۏٻڝېۇڽٻ گۀۈۋۀۍڼۏېۍۀٻڶڞڸٻ
ڍڋٻ
ڌڋٻ
ڋٻ
ڌڋٻ ڍڋٻ ڎڋٻ ڏڋٻ ڐڋٻ ڑڋٻ ڒڋٻ ړڋٻڋٻڈڍڋٻ
ڟۍ۔ٻڝېۇڽٻگۀۈۋۀۍڼۏېۍۀٻڶ
ڎڋٻ
ڏڋٻ
ڐڋٻ
ڏڋڀٻ
ڣېۈۄڿۄۏ۔ٻڶڃڀڄڭڣڸٻ
ڌڋڀٻ
Cڸٻ
ڮۏۊۍڼۂۀٻ
ڪۋۀۍڼۏۄۊۉٻ
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TFT LCD
3.0 ELECTRICAL SPECIFICATIONS
3.1 TFT LCD Module
< Table 3. LCD Module Electrical Specifications >
Values
Parameter Symbol
Min Typ Max
Power Supply Input Voltage VDD 10.8 12 13.2 Vdc Power Supply Ripple Voltage VRP 300 mV
Power Supply Current IDD - 333 525 mA Power Consumption PDD 4.0 7.1 Watt Rush current IRUSH - - 3.0 A Note 2
Differential Input High
VLVTH +100 +300 mV
Threshold Voltage
LVDS Interface
Differential Input Low Threshold Voltage
VLVTL -300 -100 mV
[Ta =25ധ2 ć]
Unit Remark
Note 1
Common Input Voltage VLVC 1.0 1.2 1.4 V
Input High Threshold
VIH 2.7 - 3.3 V
CMOS Interface
Voltage Input Low Threshold
VIL 0 - 0.6 V
Voltage
Note 1 : The supply voltage is measured and specified at the interface connector of LCM.
The current draw and power consumption specified is for VDD=12.0V,
Frame rate fV=60Hz and Clock frequency = 75.4MHz. Test Pattern of power supply current a) Typ : Mosaic 8 x 6 Pattern(L0/L255) b) Max : Skip 1H2V Sub Dot Pattern(L0/L255)
Note 2 : The duration of rush current is about 2ms and rising time of Power Input is 1ms(min)
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TFT LCD
3.2 LED Converter
< Table 4. LED Converter Electrical Specifications >
Values
Parameter Symbol Condition
Min. Typ. Max.
Input Voltage VBL 22.8 24.0 25.2 V
Input Current IBL V
Rush current IRUSH VBL= 24V
Power
PBL
Consumption
BL ON = High 2.8 3.3 5 V
B/L on/off control V
Analog Dimming
ON/OFF
V
Voltage 0 3.3 V
DIM
L
Luminance 20 100 %
DIM
BL OFF =Low 0 - 0.8 V
=3.3V - 1.5 1.7 A Note 1
DIM
- - 3 A
Typical
- 36 40 Watt
Luminance
[Ta =25ധ2 ć]
Unit Note
PWM Frequency F
140 190 240 Hz
PWM
High Level 2.8 3.3 5 V
PWM Level
Low Level 0 - 0.5 V
PWM Duty D
10 - 100 % Note 2
PWM
Life Time 30k - - Hrs Note 3
Note 1:The specified current and power consumption are under the typical supply Input voltage, 24V. It is total power consumption. Note 2 : High-duty = On/(On+Off) * 100
Note 3 : The life time of LED, 30,000Hrs, is determined as the time at which luminance of the LED is 50% compared to that of initial value at the typical LED current on condition of continuous operating at 25 r 2¶C.
On
Off
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TFT LCD
4.0 INTERFACE CONNECTION
4.1 Module Input Signal & Power
- Connector : IS100-L30B-C23(Manufactured by UJU) or Equivalent.
< Table 5. LCM Module Input Connector Pin Configuration >
Pin
No
1 VDD Power Supply +12.0V 16 RX1+ LVDS Receiver Signal(+) 2 VDD 3 VDD Power Supply +12.0V 18 RX2- LVDS Receiver Signal(-) 4 VDD Power Supply +12.0V 19 RX2+ LVDS Receiver Signal(+) 5 GND Ground 20 GND Ground 6 GND Ground 21 RCLK- LVDS Receiver Clock Signal(-) 7 GND Ground 22 RCLK+ LVDS Receiver Clock Signal(+) 8 GND Ground 23 GND Ground
9 LVDS_SEL ‘L’=JEIDA , ‘H’or NC= VESA 24 RX3- LVDS Receiver Signal(-) 10 NC No Connection 25 RX3+ LVDS Receiver Signal(+) 11 GND Ground 26 GND Ground
12 RX0- LVDS Receiver Signal(-) 27 BIST
13 RX0+ LVDS Receiver Signal(+) 28 NC No Connection 14 GND Ground 29 NC No Connection 15 RX1- LVDS Receiver Signal(-) 30 GND Ground
Notes : 1. NC(Not Connected) : This pins are only used for BOE internal operations.
2. Input Level of LVDS signal is based on the IEA 664 Standard.
3. LVDS_SEL : This pin is used for selecting LVDS signal data format. If this Pin : High (3.3V) or Open (NC) Æ Normal NS LVDS format Otherwise : Low (GND) Æ JEIDA LVDS format
4. BIST : This pin is used for selecting display pattern mode when input DE or input CLOCK quits toggling. If this Pin : Low (GND) or Open (NC) Æ Free run mode(Black Pattern) Otherwise : High( 3.3V) Æ BIST mode(BIST Pattern) Sequence : On = VDD ≥LVDS Option , BIST Option ≥Interface signal
Off = Interface signal ≥ LVDS Option , BIST Option ≥ VDD
Symbol Description
Power Supply +12.0V 17 GND Ground
Rear view of LCM
Pin
Symbol Description
No
‘L’ or NC=Free run mode ,
‘H’= BIST mode
BIST Pattern
1
IS100-L30B-C23 (UJU)
30
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4.2 LVDS Interface
TFT LCD
- LVDS Receiver : Timing Controller (LVDS Rx merged) / LVDS Data : Pixel Data < Table 6. LCM Module Input Connector Pin Configuration >
LVDS Pin Vesa Data format JEIDA Data format Remark
TxIN/RxOUT0 Red0 [LSB] R2
TxIN/RxOUT1 Red1 R3
TxIN/RxOUT2 Red2 R4
TxOUT/RxIN0
TxOUT/RxIN1
TxIN/RxOUT3 Red3 R5
TxIN/RxOUT4 Red4 R6
TxIN/RxOUT6 Red5 R7 [MSB]
TxIN/RxOUT7 Green0 [LSB] G2
TxIN/RxOUT8 Green1 G3
TxIN/RxOUT9 Green2 G4
TxIN/RxOUT12 Green3 G5
TxIN/RxOUT13 Green4 G6
TxOUT/RxIN2
TxOUT/RxIN3
TxIN/RxOUT14 Green5 G7 [MSB]
TxIN/RxOUT15 Blue0 [LSB] B2
TxIN/RxOUT18 Blue1 B3
TxIN/RxOUT19 Blue2 B4
TxIN/RxOUT20 Blue3 B5
TxIN/RxOUT21 Blue4 B6
TxIN/RxOUT22 Blue5 B7 [MSB]
TxIN/RxOUT24 HSYNC HSYNC
TxIN/RxOUT25 VSYNC VSYNC
TxIN/RxOUT26 DEN DEN
TxIN/RxOUT27 Red6 R0 [LSB]
TxIN/RxOUT5 Red7 [MSB] R1
TxIN/RxOUT10 Green6 G0 [LSB]
TxIN/RxOUT11 Green7 [MSB] G1
TxIN/RxOUT16 Blue6 B0 [LSB]
TxIN/RxOUT17 Blue7 [MSB] B1
TxIN/RxOUT23 Reserved Reserved
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TFT LCD
4.3 LED Converter Input Signal & Power
- Connector : CI0114M1HRL-NH (Cvilux) or equivalent
< Table 7. LED Converter Input Connector Pin Configuration >
Pin No Symbol Description Remarks
1 VBL Power Supply +24V 2 VBL Power Supply +24V 3 VBL Power Supply +24V 4 VBL Power Supply +24V 5 VBL Power Supply +24V 6 GND Ground 7 GND Ground 8 GND Ground 9 GND Ground
10 GND Ground
11 DET
12 VBLON/OFF Backlight ON/OFF control On : 2.8V~5.0V/Off :0~0.8V 13 VDIM Internal PWM control signal Max : 3.3V / Min : 0V
14 PDIM External PWM control signal
Notice: 1. PIN 13:Internal PWM Control (Use Pin 13): Pin 14 must open. PIN 14:Extermal PWM Control (Use Pin 14): Pin 13 must open. Pin 13(VDIM) and Pin 14(PDIM) can’t open in same period.
2. While system is turned ON or OFF, the power sequences must follow as below descriptions: Turn ON sequence: VBL PWM signal → BLON Turn OFF sequence: BLOFF PWM signal → VBL
Normal (Low) / Abnormal (Open Collector)
Low : 0~0.8V
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TFT LCD
5.0 SIGNAL TIMING SPECIFICATION
5.1 Timing Parameters (DE only mode)
< Table 8. Timing Table >
ITEM Symbol Min Typ Max Unit Note
Period t
CLK
Frequency - 56 75.4 85.0 MHz
Period t
Hsync
Frequency f
Period t
Vsync
Frequency fV 47 60 65 Hz
11.8 13.3 17.9 ns
CLK
HP
H
778 806 1200 t
VP
1450 1560 2000 t
CLK
39.4 48.4 55 KHz
HP
Horizontal
Valid t
HV
- 1366 - t
CLK
Active
Display Term
Vertical Active
Total t
Valid t
HP
VV
1450 1560 2000 t
- 768 - t
CLK
HP
Display Term
Notes: This product is DE only mode. The input of Hsync & Vsync signal does not have an effect on normal
operation.
Total t
VP
778 806 1200 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
TFT LCD
Valid data
Pixel data
Pixel data
Pixel data
Valid data
Pixel data
Invalid data
Invalid data
HSync
DE(Data Enable)
VSync
DE(Data Enable)
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tHP
tHV
tVP
tVV
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5.3 Input Signals, Basic Display Colors and Gray Scale of Colors
< Table 9. Input Signal and Display Color Table >
Color & Gray Scale
Basic Colors
Gray Scale
of Red
Gray Scale of Green
Gray Scale of Blue
Gray Scale
of White
୞ ୠ
୞ ୠ
୞ ୠ
୞ ୠ
an
n
er
k
er
R6
0
0
0
0
R2 0 R1 B7 G7 R7
0
R3
R4
R5
Input Data Signal
G6
R0
0
0
G5
0
0 G4
0 G3 0 G2 0 G1 0 G0
B6 0 B5 0 B4 0 B3 0 B2 0 B1 0 B0
0 0 0 Black
0
Blue Data Green Data Red Data
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Black 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Blue 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 Gree 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 Cy 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 Red 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 Magenta 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 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 1 1 1 1 1 1 1 1 White 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Black 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 Dark
↑ ↓
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 1 1 1 1 1 1 Brighter 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 Red 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Blac 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Darker
↑ ↓
0 0 0 0 0 0 0 0 1 0 1 1 1 1 1 1 0 0 0 0 0 0 0 0 Brighter 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 Green
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Black 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Dark
↑ ↓
1 0 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Brighter 0 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Blue
1 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0
0 1 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 1 0 0 0 0 0 0 Darker
↑ ↓
1 0 1 1 1 1 1 1 1 0 1 1 1 1 1 1 1 0 1 1 1 1 1 1 Brighter 0 1 1 1 1 1 1 0 1 1 1 1 1 1 1 0 1 1 1 1 1 1 1
1
1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 White
1 1 1
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5.4 Power Sequence
XY}G
WU`}kkG
wGzG
}kkG
pGzG GOGpGkGPG
wGzG
}isG
kGzG
G}kptVwkptG
WUX}kkG
W}G
{XG
oTG
Y[}G
W}G
W}G
{YG
WU`}isG
WUX}isG
{[G
TFT LCD
{ZG
hGzG
{^G
{\G
}G
{]G
WU_}isOPG
WU`}isG
{_G
{XWG
{`G
WU`}kkG
{XXG
WUX}kkG
{XYG
oTG
is|GvuVvmmGG
GOG}vuVvmmGPG
W}G
< Table 10. Sequence Table >
Parameter
Min Typ Max
Values
Units
T1 0.5 - 20 ms T2 0 - 50 ms T3 200 - - ms T4 20 - - ms T5 500 - - ms T6 0 - - ms T7 - - 10 ms
T8 0 - - ms
T9 500 - - ms T10 200 - - ms T11 0 - 50 ms T12 1 - - s
Notes: 1. Even though T1 is over the specified value, there is no problem if I2T spec of fuse is satisfied. 2 .Even though T4 is over the specified value, there is no problem if I2T spec of fuse is satisfied.
3. Back Light must be turn on after power for logic and interface signal are valid.
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6.0 OPTICAL SPECIFICATIONS
The test of optical specifications shall be measured in a dark room (ambient luminanced1 lux and temperature=25r2ć) with the equipment of Luminance meter system (Goniometer system and PR730) 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 0q. We refer to θ o’clock direction (the “right”), θ ) as the 9 o’clock direction (“left”) and θ
(= θ12 ) as the 12 o’clock direction (“upward”), θ
Ø=90
(= θ6 ) as the 6 o’clock direction (“bottom”). While
Ø=270
scanning θ and/or 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
12.0V +/-10% at 25qC. Optimum viewing angle direction is 6 ’clock. < Table 11. Optical Table >
[VDD = 12.0V, Frame rate = 60Hz, Ta =25·2 ć]
Parameter Symbol Condition Min Typ Max Unit Remark
89 Deg.
89 Deg.
Viewing
Angle
Horizontal
Vertical
Θ
3
Θ
Θ
Θ
9
12
6
CR > 10
89 Deg.
89 Deg.
Color Temperature - 10,000 K
(=θ3 ) as the 3
Ø=0
Ø=180
Note 1
(= θ9
Color Gamut - 72 %
Contrast ratio CR
Luminance of White Y
w
900:1 1200:1 - Note 2
330 380 - cd/m
2
Note 3
White luminance uniformity ΔY 75 - % Note 4
White
W
W
Red
Reproduction
of color
R
G
Green
G
Blue
Response Time G to G T
x
0.290
y
R
0.630
x
y
x
y
B
x
B
y
g
Θ = 0q
(Center)
Normal
Viewing
Angle
TYP.
- 0.03
- 8 10 ms Note 6
0.280
0.340
0.300
0.630
0.148
0.068
TYP.
Note 5
+ 0.03
Gamma Scale 2.0 2.2 2.4
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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 T= 0q 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.
Luminance when displaying a white raster
CR =
Luminance when displaying a black raster
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 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 5points / Maximum Luminance of 5points ) * 100
(See Figure 2 shown in Appendix).
5. The color chromaticity coordinates specified in Table 11. 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. Response time Tg is the average time required for display transition by switching the input
signal as below table and is based on Frame rate fV =60Hz to optimize. Each time in below table is defined as Figure 3 and shall be measured by switching the
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7.0 MECHANICAL CHARACTERISTICS
7.1 Dimensional Requirements
Figure 4 (located in Appendix) shows mechanical outlines for the model HV320WXC-200.
Other parameters are shown in Table 12.
< Table 12. Dimensional Parameters >
Parameter Specification Unit
Dimensional outline
Weight 5900 (max) gram
Active area
Pixel pitch
Number of pixels
Back-light Edge Type LED Backlight (80ea)
1366(H) 768(V) (1 pixel = R + G + B dots)
735.4(H) 433.0 (V) 16.2 (D)
697.685 (H) ശ392.256(V)
0.51(H) ശ0.51(V)
mm
mm
mm
pixels
7.2 Mounting
See Figure 5. (Shown in Appendix)
7.3 Semi-Glare and Polarizer Hardness
The surface of the LCD has an semi-glare coating to minimize reflection and a coating to Reduce scratching.
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8.0 RELIABILITY TEST
The Reliability test items and its conditions are shown in below.
< Table 13. Reliability Test Parameters >
No Test Items Conditions
1 High temperature storage test
2 Low temperature storage test
3 High temperature & high
humidity operation test
4 High temperature operation test
5 Low temperature operation test
Ta = 60 ć, 240 hrs
Ta = -20 ć, 240 hrs
Ta = 50 ć, 80%RH, 240hrs
Ta = 50 ć, 240hrs
Ta = 0 ć, 240hrs
6 Thermal shock
7 Vibration test
(non-operating)
8 Shock test
(non-operating)
9 Electro-static discharge test Air :
Ta = -20 ć ↔ 60 ć (0.5 hr), 100 cycle
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
15kV , 150pF/330Ω ,100Point ,1time/Point
Contact : 8kV , 150pF/330Ω ,100Point , 1time/Point
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9.0 PRODCUT SERIAL NUMBER
1 2 3 4 5 6 7
X X X X X X X X X X X X X X X X X
1. Control Number
2. Rank / Grade
3. Line Classification
4. Year (2011 : 11, 2012 : 12, …)
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5. Month (1,2,3, … , 9, X, Y, Z)
6. Internal Use
7. Serial Number
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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
Put modules bundled with PE Bag into the inner EPS-box
Put inner EPS-lower on the pallet
Seal the box and stick label to the assigned area
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Put the other EPS-box on the first
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10.2 Packing Note
y Box Dimension : 975 mm (L) u 870 mm (W) u 545 mm (H) y Package Quantity in one Box : 14pcs
10.3 Box Label
y Label Size : 110 mm (L) u 55 mm (W) y Contents Model : HV320WXC-200 Q`ty : 28 Module in one box. Serial No. : Box Serial No. See next page for detail description. Date : Packing Date FG Code : FG Code of Product
HV320WXC-200
0000000000000
00 0 00 0 0 000000 Type Grade Year Month ITEM-CODE Serial_no
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14
201X.X.XX
3840
RoHS Mark
Internal 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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12.0 APPENDIX
TFT LCD
< Figure 1. Measurement Set Up >
wy^ZWG
ڃڧٻژٻڐڋھۈ ڄٻ
< Figure 2. White Luminance and Uniformity Measurement Locations >
1/4V
1/2V
3/4V
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1/4H 1/2H 3/4H
Active Area
Test points
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< Figure 3. Response Time Testing >
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< Figure 4. TFT-LCD Module Outline Dimensions (Front View) >
CVILUX CI0114M1HRL-NH or equivalent
4.USER MOUNTING TORQUE SPEC:4~5kgf.cm
3.LED CONVERTER CONNECTOR SPECIFICATION
UJU IS100-L30B-C23 or equivalent
2.I/F CONNECTOR SPECIFICATION
NOTE
1.Unspecified tolerances are to be ·1.0mm
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< Figure 5. TFT-LCD Module Outline Dimensions (Rear View) >
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