THIS SPECIFICATION IS THE PROPERTY OF BOE HF AND SHALL NOT BE
REPRODUCED OR COPIED WITHOUT THE WRITTEN PERMISSION OF BOE HF AND
MUST BE RETURNED TO BOE HF UPON ITS REQUEST
TITLE : B3 HT185WXB-100
Preliminary Product Specification
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PROPRIETARY NOTE
Rev. P0
HEFEI BOE OPTOELECTRONICS TECHNOLOGY
SPEC. NUMBER
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PRODUCT GROUP
TFT-LCD
Rev. P0
ISSUE DATE
2010.09.01
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PRODUCT GROUP
TFT- LCD PRODUCTP0Sept. 1. 10’
REV
ISSUE DATE
REVISION HISTORY
REV.ECN No.DESCRIPTION OF CHANGES DATE PREPARED
P0
Initial Release
2010.09.01
ϕ⏞
SPEC
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HT185WXB-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 18.5 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.
Connector (CN
LVDS
t
Inpu
Signal
LVDS Rx
T/CON
i LVDS Tx
Min
+
+
Gate Driver
Source Driver
slkGsGi
TFT LCD Panel
ISSUE DATE
Sept. 1. 10’
DC
VDD
1
)
1.2 Features
z LVDS Interface with 1 pixel / clock
z High-speed response
z Low power consumption
z 6-bit (Hi-FRC) color depth, display 16. 7M colors
z Incorporated edge type back-light (One Light Bar)
z low reflection and normal viewing angle
z DE (Data Enable) only
z RoHS /TCO 5.0 Compliant
/DC
Gamma
Vcom
1366
768
juY
SPEC. NUMBER
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z Desktop Type of PC & Workstation Use
z Slim-Size Display for Stand-alone Monitor
z Display Terminals for Control System
z Monitors for Process Controller
1.4 General Specification
The followings are general specifications at the model HT185WX2-100.
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3.0 ELECTRICAL SPECIFICATIONS
3.1Electrical Specifications
< Table 3. Elec
ParameterMin.Typ.Max.UnitRemarks
Power Supply VoltageV
Power Supply CurrentI
In-Rush CurrentI
Permissible Input Ripple VoltageV
High Level Differential Input
Threshold Voltage
Low Level Differential Input
Threshold Voltage
LED Channel VoltageV
LED Channel C
LED Lifetime30,000--HrsI
urrentI
RUSH
V
V
trical specifications >
DD4.5 5.0 5.5
DD
RF
IH
IL
L
L
- 600 1000mA
-2.03.0ANote 2
--100mVVDD= 5.0V
--+100mV
-100--mV
-ஂ38ஃV
-
36.3
V
mV600-200|VID|Differential input voltage
1.51.21.0VcmDifferential input common mode voltage
mA6560
ISSUE DATE
Sept. 1. 10’
[Ta =25ധ2 ଇ]
Note1
V
=100mV,
IH
V
=-100mV
IL
Power Consumption
P
D
P
BLL
P
total
-34.5W
-
-
8.72
11.72
-W
-W
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=75Hz and
Clock frequency = 95MHz. Test Pattern of power supply current
a) Typ : Color Bar pattern
b) Max : Skip Sub Pixel Pattern
2. Durat
ion of rush current is about 2 ms and rising time of VDD is 520 Րs ρ 20 %
3. The lamp frequency should be selected as different as possible from the horizontal
synchronous frequency and its harmonics to avoid interference, which may cause line flow on the display
4. The voltage above this value should be applied to the lamps for more than 1 second to start-up. Otherwise the
lamps may not be turned on.
5. Calculated value for reference (V
ശ IL) ശ4(channel) excluding driver loss. (LED Light bar: 11S4P)
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ISSUE DATE
Sept. 1. 10’
4.0 OPTICAL SPECIFICATION
4.1 Overview
st of Optical specifications shall be measured in a dark room (ambient luminance d 1 lux and temperature =
The te
25r2) with the equipment of Luminance meter system (Goniometer system and TOPCONE BM-5) and test unit shall
be located at an approximate distance 50cm from the LCD surface at a viewing angle of ɂ and Ȱ equal to 0q. We refer
to ɂ
ɂ
(=ɂ3) as the 3 o’clock direction (the “right”), ɂ
Ø=0
) as the 9 o’clock direction (“left”) and ɂ
9
(= ɂ6) as the 6 o’clock direction (“bottom”). While scanning ɂ 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 25qC. Optimum viewing angle direction is 6 ’clock.
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ISSUE DATE
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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.
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
shown in FIGURE 2 for a total of the measurements per display.
4.The White luminance uniformity on LCD surface is then expressed as :
ԩY = ( 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.
7. Cross-Talk of one area of the LCD surface by another shall be measured by comparing the
luminance (Y
luminance (Y
) of a 25mm diameter area, with all display pixels set to a gray level, to the
A
) of that same area when any adjacent area is driven dark. (See FIGURE 4
B
shown in Appendix).
Luminance when displaying a white raster
Luminance when displaying a black raster
SPEC. NUMBER
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