deg.
SPEC. NUMBER
SPEC. TITLE
damage to the unit. The operational and non-operational maximum voltage and current
values are listed in Table 2.
< Table 3. Absolute Maximum Ratings>
Min.
Max.
The followings are maximum values which, if exceed, may cause faulty operation or
Note : 1) Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39 ℃ max. and no condensation of water.
SPEC. NUMBER
SPEC. TITLE
< Table 4. LCD Module Electrical specifications >
Min. Typ.
Max.
Notes : 1. The supply voltage is measured and specified at the interface connector of LCM.
The current draw and power consumption specified is for VBAT=3.8V, Frame rate f
and Clock frequency = 156.8MHz. Test Pattern of power supply current
a) Typ : Mosaic 8 x 6 Pattern(L0/L255) b) Max : Black
2. The duration of rush current is about 2ms and rising time of Power Input is 1ms(min)
SPEC. NUMBER
SPEC. TITLE
Table 5. LED Driver Electrical Specifications >
Min.
Typ.
Max.
Notes: 1. ILED=4*25mA=100mA,4Parallel*6String
2. 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 2°C.
SPEC. NUMBER
SPEC. TITLE
This LCD employs two interface connections, a 20 pin ZIF connector is used for the
LCD module electronics interface and a 5 pin ZIF connector is used for the internal
backlight system.
< Table7. Pin Assignment for LCD Module Connector >
Pin No. Symbol
SPEC. NUMBER
SPEC. TITLE
< Table8. Pin assignment for LED Bar >
SPEC. NUMBER
SPEC. TITLE
< Table11. DC Specification >
SPEC. NUMBER
SPEC. TITLE
< Table12. AC Specification >
SPEC. NUMBER
SPEC. TITLE
< Table13. Timing Parameter >
SPEC. NUMBER
SPEC. TITLE
< Table15. Sequence Table >
Min.
Typ.
Max.
SPEC. NUMBER
SPEC. TITLE
The test of optical specifications shall be measured in a dark room (ambient luminance
1lux and temperature = 252℃) with the equipment of Luminance meter system (Gonio
meter system and TOPCON BM-5) and test unit shall be located at an approximate dista
nce 50cm from the LCD surface at a viewing angle of θ and Φ equal to 0. We refer to θØ
=0 (=θ3 ) as the 3 o’clock direction (the “right”), θØ=90 (= θ12 ) as the 12 O’clock
direction (“upward”), θØ=180 (= θ9 ) as the 9 O’clock direction (“left”) and θØ=27
0(= θ6 ) as the 6 O’clock direction (“bottom”). While scanning θ and/or Ø, the center
of the measuring spot on the Display surface shall stay fixed.
< Table16. Optical Table >
Typ.
SPEC. NUMBER
SPEC. TITLE
The test condition is at ILED=100mA and measured on the surface of LCD module at 25℃.
The data are measured after LEDs are lighted on for more than 5 minutes and LCM displays are fully
white. The brightness is the center of the LCD. Measurement equipment CS2000 or similar equipments
Measuring surroundings: Dark room.
Measuring temperature: Ta=25℃.
Adjust operating voltage to get optimum contrast at the center of the display.
Measured value at the center point of LCD panel must be after more than 5 minutes while backlight
turning on.
The test condition is at ILED=100mA and measured on the surface of LCD module at 25℃.
Bp (Min.) = Minimum brightness in 9 measured spots.
SPEC. NUMBER
SPEC. TITLE
.
Note4:ThedefinitionofContrastRatio (Test LCM using CS2000 or similar equipments):
The output sign also photo detector are measured when the input sign also are changed from “black
” to “white”(Voltage falling time)and from “white” to “black” (Voltage rising time), respectively .
The response time is defined as the time interval between the 10% and 90% of amplitudes . Refer to fi
gures below.
Measurement equipment: DMS501 or similar equipments.
Test method: we define 8 grays L0-L7,the grays of L0-L7 were defined as:0,36,73, 109, 146, 182, 219, 25
5. Theoutputsignalsofphotodetectoraremeasuredwhentheinputsignalsarechanged from “Lx” to “Ly”
, x, y= [0, 7]. The response time is defined as the time interval between the 10% and 90% of amplitudes.
SPEC. NUMBER
SPEC. TITLE
The test condition is at ILED=100mA and measured on the surface of LCD module at 25℃.
The Color Coordinate (CIE 1931) is the measurement of the center of the display shown in below figure.
Note 7: Definition of Color of CIE Coordinate and NTSC Ratio.
Viewing direction is normal user viewing direction which is vertical to the display surface
The X axis is defined as parallel line to top & bottom sidelines of the Active Area
The polarization degree parameter must be indicated in range of 0deg to 180deg according to abov
SPEC. NUMBER
SPEC. TITLE
Refer to the graph of note 9.
Using luminance test method.
If the viewing direction is 12 o’clock ,then test the luminance while θ=-60°,θ=-50°, θ=-40°, θ=-30°,
θ=-20°, θ=-10°, θ=0°, θ=10°, θ=20°, θ=30°, θ=40°, θ=-50°, θ=60°. The luminance test as figure below:
SPEC. NUMBER
SPEC. TITLE
The Reliability test items and its conditions are shown in below.
No
1
2
3
4
5
6
7
8
Test Items
High temperature storage test
Low temperature storage test
High temperature & high humidity
(operation test)
Low temperature operation test
High temperature operation test
Thermal Shock Test
ALT
PCT
80℃,240hr
-30℃,240hr
60℃,90%RH,240hr
-20℃,240hr
70℃,240hr
-40℃~85℃,1hr/cycle,100cycle
-10℃~65℃,0%~93%,24hr/cycle,1
0 cycle
121℃,100%RH,2atm,12hr
150pF,330Ω,±6kV(Contact),±8kV
(Air)
1.47G,1-200hz,X,Y,±Z,30min/Axis
Conditions
9
ESD
10 Packing VIB
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6.0 PACKING INFORMATION(产品形态: )
Packing procedure:
-.Put 1pcs Panel into PE Bag
Crimp PE Bag opening
-. Insert 1pcs panel horizontally into the slot
-. 28pcs Panel /EPE Box
-. Put 1pcs EPE cover upon EPE box
-.Put EPE Box& EPE cover into Inner Box
-. 28pcs Panel /Inner Box
-. 4 layers/ Pallet
-. 4 boxes/ Layer
-. 448pcs Panel / Pallet
6.1 Packing Note(产品形态:LCM)
Box Dimension: 500mm(W) x 400mm(D) x 300mm(H)
Package Quantity in one Box: 28pcs
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6.2 Box label (产品形态: )
Label Size :115mm*55mm
Contents
Model : LCM
Q`ty : 28pcs/Box
Serial No. : Box Serial No. as shown below.
Date : Packing Date
FG Code : FG Code of Product
BA104S01-300
1
XXXXXXXXXXXXX
3
28
2
20XX / XX/ XX
4
xxxx
5
No.
Code
1
X
2
X
GBN
3
S
Grade
4
3
B3
5
1
6
8
7
B
Month
8
0
Rev
9
0
10
0
11
1
12
H
13
D
Year Serial number
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7.0 Product Label
1
2
3
4
Label Size: 48mmx12mmx0.08mm,
44-9231007
1. Customer Code
2. MDL ID bar code
3. MDL ID
4. FG-CODE First 12 digits
BOE MDL ID rule
No. 1 2 3 4 5 6 7 8 9 10 11
1
2
1
3
1
4
1
5
1
6
1
7
Code X X S 3 8 3 2 D 8 5 0 0 0 0 0 2 1
GBN Grade B3 Year Month Day FG Code last four digits Serial number
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8.0 Handling & Cautions
8.1 Mounting Method
The panel of the LCD consists of two thin glasses with polarizers which easily get
damaged. So extreme care should be taken when handling the LCD.
Excessive stress or pressure on the glass of the LCD should be avoided. Care must be
taken to insure that no torsional or compressive forces are applied to the LCD unit
when it is mounted.
If the customer's set presses the main parts of the LCD, the LCD may show the abnormal
display. But this phenomenon does not mean the malfunction of the LCD and should be
pressed by the way of mutual agreement.
To determine the optimum mounting angle, refer to the viewing angle range in the
specification for each model.
Mount a LCD module with the specified mounting parts.
8.2 Caution of LCD Handling and Cleaning
Since the LCD is made of glass, do not apply strong mechanical impact or static load
onto it. Handling with care since shock, vibration,and careless handling may seriously
affect the product. If it falls from a high place or receives a strong shock, the glass may
be broken.
The polarizers on the surface of panel are made from organic substances. Be very
careful for chemicals not to touch the polarizers or it leads the polarizers to be deteriorated.
If the use of a chemical is unavoidable, use soft cloth with solvent(recommended below)
to clean the LCD‘s surface with wipe lightly.
-IPA(Isopropyl Alcohol), Ethyl Alcohol, Trichlorotriflorothane
Do not wipe the LCD's surface with dry or hard materials that will damage the polarizers
and others. Do not use the following solvent.
-Water, Ketone, Aromatics
It is recommended that the LCD be handled with soft gloves during assembly, etc. The
polarizers on the LCD's surface are vulnerable to scratch and thus to be damaged by
sharp particles.
Do not drop water or any chemicals onto the LCD's surface.
A protective film is supplied on the LCD and should be left in place until the LCD is
required for operation.
The ITO pad area needs special careful caution because it could be easily corroded.
Do not contact the ITO pad area with HCFC,Soldering flux,Chlorine,Sulfur,saliva or
fingerprint. To prevent the ITO corrosion, customers are recommended that the ITO
area would be covered by UV or silicon.
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8.3 Caution Against Static Charge
The LCD modules use C-MOS LSI drivers, so customers are recommended that any unused
input terminal would be connected to Vdd or Vss, do not input any signals before
power is turn on, and ground you body, work/assembly area, assembly equipments to
protect against static electricity.
Remove the protective film slowly, keeping the removing direction approximate
30-degree not vertical from panel surface, If possible, under ESD control device like
ion blower, and the humidity of working room should be kept over 50%RH to reduce the
risk of static charge.
Avoid the use work clothing made of synthetic fibers. We recommend cotton clothing or
other conductivity-treated fibers.
In handling the LCD, wear non-charged material gloves. And the conducting wrist to the
earth and the conducting shoes to the earth are necessary.
8.4 Caution For operation
It is indispensable to drive the LCD within the specified voltage limit since the higher
Voltage than the limit causes the shorter LCD's life. An electro-chemical reaction due to
DC causes undesirable deterioration of the LCD so that the use of DC drive should avoid.
Do not connect or disconnect the LCD to or from the system when power is on.
Never use the LCD under abnormal conditions of high temperature and high humidity.
When expose to drastic fluctuation of temperature (hot to cold or cold to hot),the
LCD may be affected; Specifically, drastic temperature fluctuation from cold to hot ,produces
dew on the LCD's surface which may affect the operation of the polarizer and the LCD.
Response time will be extremely delayed at lower temperature than the operating
temperature range and on the other hand at higher temperature LCD may turn black at
temperature above its operational range. However those phenomena do not mean
malfunction or out of order with the LCD. The LCD will revert to normal operation once
the temperature returns to the recommended temperature range for normal operation.
Do not display the fixed pattern for a long time because it may develop image sticking
due to the LCD structure. If the screen is displayed with fixed pattern, use a screen saver
.
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8.5 Packaging
Modules use LCD element, and must be treated as such.
-Avoid intense shock and falls from a height.
-To prevent modules from degradation, do not operate or store them exposed directly
to sunshine or high temperature/humidity for long periods.
8.6 Storage
A slight dew depositing on terminals is a cause for electro-chemical reaction resulting
in terminal open circuit. Relative humidity of the environment should therefore be kept
below 60%RH.
Original protective film should be used on LCD’s surface (polarizer). Adhesive type
protective film should be avoided, because it may change color and/or properties of
the polarizers.
Do not store the LCD near organic solvents or corrosive gasses.
Keep the LCD safe from vibration, shock and pressure.
Black or white air-bubbles may be produced if the LCD is stored for long time in the
lower temperature or mechanical shocks are applied onto the LCD.
In the case of storing for a long period of time for the purpose or replacement use,
the following ways are recommended.
-Store in a polyethylene bag with sealed so as not to enter fresh air outside in it.
-Store in a dark place where neither exposure to direct sunlight nor light is.
-Keep temperature in the specified storage temperature range.
-Store with no touch on polarizer surface by the anything else. If possible, store the LCD
in the packaging situation LCD when it was delivered.
8.7 Safety
For the crash damaged or unnecessary LCD, it is recommended to wash off liquid crystal
by either of solvents such as acetone and ethanol an should be burned up later.
In the case the LCD is broken, watch out whether liquid crystal leaks out or not. If your
hands touch the liquid crystal, wash your hands cleanly with water an soap as soon
as possible.
If you should swallow the liquid crystal, first, wash your mouth thoroughly with water,
then drink a lot of water and induce vomiting, and then, consult a physician.
If the liquid crystal should get in your eyes, flush your eyes with running water for at
least fifteen minutes.
If the liquid crystal touches your skin or clothes, remove it and wash the affected part
of your skin or clothes with soap and running water.
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9.0 APPENDIX
Mechanical Drawing
Drawing Attachment: Front
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Mechanical Drawing
Drawing Attachment: Back
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2024年5月24日发(作者:欧阳孤晴)
PROPRIETARY NOTE
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
SPEC. NUMBER
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BA104S01-300Product Specification Rev.P0
BUYER
SUPPLIER
FG-Code
HEFEI BOE Optoelectronics Technology CO., LTD
BA104S01-300(ET104S0M-N10-3850)
ITEM BUYER SIGNATURE DATE
ITEM SUPPLIER SIGNATURE DATE
Prepared
Reviewed
Approved
HEFEI BOE OPTOELECTRONICS TECHNOLOGY
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REVISION HISTORY
REV.
P0
ECN No. DESCRIPTION OF CHANGES
Initial Release
DATE
2018-4-8
PREPARED
王兵
P1 2018-6-12 王兵
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Contents
No. Items Page
1.0
2.0
3.0
4.0
5.0
6.0
7.0
8.0
9.0
General Description
Absolute Maximum Ratings
Electrical Specifications
Optical Specifications
Reliability Test
Packing Information
Product Label
Handling & Cautions
Appendix
*
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1.0 GENERAL DESCRIPTION
1.1 Introduction
BA104S01-300 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 10.4 inch diagonally measured active area with SVGA
resolutions (800 horizontal by 600 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.
LVDS Signal
Timing
Controller
TFT LCD
800*600
Signal Input
Connector
LCD Power
DC/DC
Converter
IC
BLU Input
Connector
VLED
LED
driver
LED Light Bar
1.2 Features
0.5T Glass(Single);
Module Design
6/ 8bits LVDS data input selection
Thin and light weight
High luminance and contrast ratio, low reflection and wide viewing angle
RoHS compliant
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1.3 Application
Medical & Industrial application
1.4 General Specification
The followings are general specifications at the ** ********
Parameter
Active Area
Number Of Pixels
Pixel Pitch
Pixel Arrangement
Display Mode
Display Colors
Display Mode
Surface Treatment
Contrast Ratio
Viewing Angle(CR>10)
Response Time
Color Gamut
Brightness
Brightness Uniformity
Power Consumption
Outline Dimension
Weight
Specification
211.2(H)*158.4(V)
800(H)×600(V)
0.264(H)×RGB×0.264(V)
Pixels RGB stripe arrangement
Normally White
16.2M(8bits)
Transmissive mode
AG25(CF),Clear(TFT)
800:1(typ.)
80/80/65/75(typ.)
30(typ.)
55%
300(min)/350(typ)
9 point: min 70%
9 point: typ 80%
Unit
mm
pixels
mm
Remarks
colors 6+2
deg.
ms
cd/m2
LCD: 0.58(Max.)(Black Pattern)
BLU: 1.98W(Max.)
236(H)*176.9(V)*5.6(typ)(LCM)
300(Max.)
watt
mm
gram
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damage to the unit. The operational and non-operational maximum voltage and current
values are listed in Table 2.
< Table 3. Absolute Maximum Ratings>
Parameter
LCD
Module
BLU
Operating Temperature
Storage Temperature
Symbol
VDD
Min.
VSS-0.3
Max.
3.9
Unit
V
Remarks
The followings are maximum values which, if exceed, may cause faulty operation or
2.0 ABSOLUTE MAXIMUM RATINGS
Power
Supply
VLED
ILED
T
OP
T
ST
VSS-0.3
-
-20
-30
43
25
+70
+80
V
mA
℃
℃
Ta = 25 ℃
Note 1
Note : 1) Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39 ℃ max. and no condensation of water.
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< Table 4. LCD Module Electrical specifications >
[Ta =25±2 ℃]
3.0 ELECTRICAL SPECIFICATIONS
3.1 TFT LCD Module
Parameter
Power Supply Voltage
Power Supply Current
BLU Supply Voltage
BLU Supply Current
Power Consumption
BLU Power Consumption
Symbol
VDD
IDD
VLED
ILED
PLCD
PBLU
Values
Min. Typ.
3.0 3.3
120
150
11.5 12
- 120
0.4 0.495
- -
Max.
3.6
180
12.5
-
0.59
1.98
Unit
V
mA
V
mA
W
W
Notes
Notes : 1. The supply voltage is measured and specified at the interface connector of LCM.
The current draw and power consumption specified is for VBAT=3.8V, Frame rate f
V
=60Hz
and Clock frequency = 156.8MHz. Test Pattern of power supply current
a) Typ : Mosaic 8 x 6 Pattern(L0/L255) b) Max : Black
2. The duration of rush current is about 2ms and rising time of Power Input is 1ms(min)
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3.2 Back-Light Unit
Table 5. LED Driver Electrical Specifications >
[Ta =25±2 ℃]
Parameter
LED Supply Voltage
LED Forward Current
Power Consumption
BLU on/off Level
Symbol
VLED
VRP
ILED
PLED
BLU on
BLU off
High Level
Low Level
F
PWM
D
PWM
QLED
TLED
Values
Min.
-
-
-
3
0
3
0
200
1
-
30000
-
-
24
-
Typ.
19.2
25
1.92
Max.
19.8
300
-
1.98
3.6
0..5
3.6
0.5
20K
100
-
-
Unit
V
mV
mA
W
V
V
V
V
Hz
%
EA
Hrs
Notes
Ripple
Note 1
Level
PWMIN
Frequency
Duty Ratio
LED Quantity
LED Life Time
Note 2
Notes: 1. ILED=4*25mA=100mA,4Parallel*6String
PLED = VLED ×ILED (Without LED converter transfer efficiency)
2. 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 2°C.
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3.4 INPUT TERMINAL PIN ASSIGNMENT
This LCD employs two interface connections, a 20 pin ZIF connector is used for the
LCD module electronics interface and a 5 pin ZIF connector is used for the internal
backlight system.
3.4.1 Pin assignment for LCD module
Connector : MSB24013P20 _HA(STM) or equivalent
< Table7. Pin Assignment for LCD Module Connector >
Pin No. Symbol
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
VCC
VCC
GND
Description
Power supply
Power supply
Ground
I/O
P
P
-
I
I
I
-
I
I
-
I
I
-
I
I
-
I
I
I
SEL
RIN0-
RIN0+
GND
RIN1-
RIN1+
GND
RIN2-
RIN2+
GND
CLKIN-
CLKIN+
GND
RIN3-
RIN3+
NC
NC/GND
VCC:8Bits; GND/NC:6Bits
LVDS signal input
LVDS signal input
Ground
LVDS signal input
LVDS signal input
Ground
LVDS signal input
LVDS signal input
Ground
LVDS clock input
LVDS clock input
Ground
LVDS signal input
LVDS signal input
No connection
Test function
20 -
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3.4.2 Pin assignment for LED Bar
Connector : MSB24038P5 (STM) or equivalent
< Table8. Pin assignment for LED Bar >
Pin No
1
2
Symbol
NC
PWM
Description
No connection
Luminance control
Remarks
3
4
5
EN
GND
VLED
3.3V-on / 0V-off
Ground
Power supply
12V
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3.5.2 DC Specification
Parameter
< Table11. DC Specification >
Symbol Min Typ Max Unit Condition
Supply current
LVDS DC specifications
Differential input high threshold
Differential input low threshold
LVDS common mode voltage
LVDS swing voltage
LVCLKN
I
DD
V
TH
V
TL
V
IC
V
ID
-
-
-100
0.7
±100
75
-
-
-
-
-
+100
-
1.6
±600
mA
mV
mV
V
mV
V
IC
=1.2V
V
ID
LVCLKP
V
IC
GND
V
ID
0V
LVCLKP-LVCLKN
< LVDS V
ID
and V
IC
definition>
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3.5.3 AC Specification
LVCLKP
LVCLKN
LV0P/N
~
LV3P/N
T
BIT
=1/(F*7)
(1)
LVCLKP
LVCLKN
50%
T
LVSK
LV0P/N
~
LV3P/N
T
SH
(2)
T
LVSK
50%
Note:
(1)T
BIT
: Data period
(2)Internal CLK sampling data window
< LVDS channel to channel skew>
< Table12. AC Specification >
Description
LVDS Input frequency
LVDS channel to channel
skew
Symbol
F
Condition
-
Min
20
Typ
-
Max
85
Unit
MHz
T
LVSK
F=65MHz
V
IC
=1.2V
V
ID
=±200m
V
-600 - +600 ps
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3.6 Interface timing Parameter
< Table13. Timing Parameter >
Item
LCD
Frame Rate
Pixels Rate
Horizontal total time
Horizontal
Timing
Vertical
Horizontal Active time
Horizontal Back Porch
Horizontal Front Porch
Vertical total time
Vertical Active time
Vertical Back Porch
Vertical Front Porch
Lane
Symbol
-
-
tHP
tHadr
tHBP
tHFP
tvp
tVadr
tVBP
tVFP
-
min
-
37.69
-
typ
60
37.879
1056
800
88
40
628
600
23
1
1 -
max
-
38.068
-
UNIT
Hz
MHz
t
CLK
t
CLK
t
CLK
t
CLK
t
H
t
H
t
H
t
H
Lane
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3.7 Power Sequence
90%
0V
10%
90%
10%
[Ta =25±2 ℃]
Power Supply VDD
T
1
T
2
T
6
T
7
T
8
Tcon Reset
Interface Signal
(LVDS/MIPI/eDP)
0V
T
3
OFF
Valid
video
T
4
LED ON
T
5
OFF
Power for LED
< Table15. Sequence Table >
Parameter
T1
T2
T3
T4
T5
T6
T7
T8
Value
Min.
0.1
10
5
200
200
0
0
500
Typ.
-
-
-
-
-
-
-
-
Max.
5
30
100
-
-
50
10
-
Units
(ms)
(ms)
(ms)
(ms)
(ms)
(ms)
(ms)
(ms)
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4.1 Overview
4.0 OPTICAL SPECIFICATIONS
The test of optical specifications shall be measured in a dark room (ambient luminance
1lux and temperature = 252℃) with the equipment of Luminance meter system (Gonio
meter system and TOPCON BM-5) and test unit shall be located at an approximate dista
nce 50cm from the LCD surface at a viewing angle of θ and Φ equal to 0. We refer to θØ
=0 (=θ3 ) as the 3 o’clock direction (the “right”), θØ=90 (= θ12 ) as the 12 O’clock
direction (“upward”), θØ=180 (= θ9 ) as the 9 O’clock direction (“left”) and θØ=27
0(= θ6 ) as the 6 O’clock direction (“bottom”). While scanning θ and/or Ø, the center
of the measuring spot on the Display surface shall stay fixed.
4.2 Optical Specifications
< Table16. Optical Table >
Item
luminance
Brightness Uniformit
y
Symbol
Bp
△Bp
θL
Viewing Angle
θ
R
ψ
T
ψ
B
Contrast Ratio
Response Time
Cr
Tr+Tf
Rx
Ry
Gx
Color Coordinate of
CIE1931
Gy
Bx
By
Wx
Wy
NTSC Ratio
Polarization Direction
of Front Polarizer
Polarization Direction
of Rear Polarizer
Gray inversion angle
NTSC
PdF
PdR
CIE1931
θ=0°
θ=0°
FF=0°
Cr≥10
Condition
θ=0°
Min
300
70
70
70
55
65
600
-
0.574
0.296
0.279
0.548
0.119
0.070
0.254
0.290
50
Typ.
350
80
80
80
65
75
800
30
0.604
0.326
0.309
0.578
0.149
0.100
0.284
0.320
55
45°
45°
6点钟
35
0.634
0.356
0.339
0.608
0.179
0.130
0.314
0.350
-- %
deg
Note 8
Deg
Note 9
Note 7
- Note 6
Max
--
--
--
--
--
--
-
ms
Note 4
Note 5
deg Note 3
Unit
cd/m2
%
Note
Note 1
Note 2
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Note1:Luminance measurement
The test condition is at ILED=100mA and measured on the surface of LCD module at 25℃.
The data are measured after LEDs are lighted on for more than 5 minutes and LCM displays are fully
white. The brightness is the center of the LCD. Measurement equipment CS2000 or similar equipments
(Field of view:1deg,Distance:50cm)
Measuring surroundings: Dark room.
Measuring temperature: Ta=25℃.
Adjust operating voltage to get optimum contrast at the center of the display.
Measured value at the center point of LCD panel must be after more than 5 minutes while backlight
turning on.
Note2:Uniformity
The test condition is at ILED=100mA and measured on the surface of LCD module at 25℃.
Measurement equipment:CS2000 or similar equipments
The luminance uniformity is calculated by using following formula:
△Bp = Bp (Min.) / Bp (Max.)×100 (%)
Bp (Max.) = Maximum brightness in 9 measured spots
Bp (Min.) = Minimum brightness in 9 measured spots.
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Note 3:The definition of Viewing Angle
Refer to the graph below marked by
θ
and
Ф
.
Note4:ThedefinitionofContrastRatio (Test LCM using CS2000 or similar equipments):
Luminance When LCD is at “White” state
Contrast Ratio(CR)=
Luminance When LCD is at “Black” state
(Contrast Ratio is measured in optimum common electrode voltage)
Note5:DefinitionofResponse time.(Test LCD using DMS501 or similar equipments):
The output sign also photo detector are measured when the input sign also are changed from “black
” to “white”(Voltage falling time)and from “white” to “black” (Voltage rising time), respectively .
The response time is defined as the time interval between the 10% and 90% of amplitudes . Refer to fi
gures below.
L0
L1
L2
L3
L4
L5
L6
L7
L0
L1
L2
L3
L4
L5
L6
L7
Response time of gray to gray:
Measurement equipment: DMS501 or similar equipments.
Test method: we define 8 grays L0-L7,the grays of L0-L7 were defined as:0,36,73, 109, 146, 182, 219, 25
5. Theoutputsignalsofphotodetectoraremeasuredwhentheinputsignalsarechanged from “Lx” to “Ly”
, x, y= [0, 7]. The response time is defined as the time interval between the 10% and 90% of amplitudes.
The result of the test can be noted as below:
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Note 6: Color Coordinates of CIE 1931
The test condition is at ILED=100mA and measured on the surface of LCD module at 25℃.
Measurement equipment:CS2000 or similar equipments
The Color Coordinate (CIE 1931) is the measurement of the center of the display shown in below figure.
Note 7: Definition of Color of CIE Coordinate and NTSC Ratio.
Note 8: Polarization Direction Definition
Viewing direction is normal user viewing direction which is vertical to the display surface
The polarizer which is closer to viewer is defined as Front Polarizer
The polarizer which is on the rear side of viewer is defined as Rear Polarizer
The X axis is defined as parallel line to top & bottom sidelines of the Active Area
PdF which is marked in blue arrow is polarization degree of Front polarizer
PdB which is marked in red arrow is polarization degree of Back polarizer
The polarization degree parameter must be indicated in range of 0deg to 180deg according to abov
e definition
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Note 9: Definition of gray inversion angle
Refer to the graph of note 9.
Using luminance test method.
Test pattern : 128 gray
If the viewing direction is 12 o’clock ,then test the luminance while θ=-60°,θ=-50°, θ=-40°, θ=-30°,
θ=-20°, θ=-10°, θ=0°, θ=10°, θ=20°, θ=30°, θ=40°, θ=-50°, θ=60°. The luminance test as figure below:
200
150
100
50
0
-100-50050100
-60
-50
-40
-30
-20
-10
0
10
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5.0 RELIABLITY TEST
The Reliability test items and its conditions are shown in below.
No
1
2
3
4
5
6
7
8
Test Items
High temperature storage test
Low temperature storage test
High temperature & high humidity
(operation test)
Low temperature operation test
High temperature operation test
Thermal Shock Test
ALT
PCT
80℃,240hr
-30℃,240hr
60℃,90%RH,240hr
-20℃,240hr
70℃,240hr
-40℃~85℃,1hr/cycle,100cycle
-10℃~65℃,0%~93%,24hr/cycle,1
0 cycle
121℃,100%RH,2atm,12hr
150pF,330Ω,±6kV(Contact),±8kV
(Air)
1.47G,1-200hz,X,Y,±Z,30min/Axis
Conditions
9
ESD
10 Packing VIB
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6.0 PACKING INFORMATION(产品形态: )
Packing procedure:
-.Put 1pcs Panel into PE Bag
Crimp PE Bag opening
-. Insert 1pcs panel horizontally into the slot
-. 28pcs Panel /EPE Box
-. Put 1pcs EPE cover upon EPE box
-.Put EPE Box& EPE cover into Inner Box
-. 28pcs Panel /Inner Box
-. 4 layers/ Pallet
-. 4 boxes/ Layer
-. 448pcs Panel / Pallet
6.1 Packing Note(产品形态:LCM)
Box Dimension: 500mm(W) x 400mm(D) x 300mm(H)
Package Quantity in one Box: 28pcs
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6.2 Box label (产品形态: )
Label Size :115mm*55mm
Contents
Model : LCM
Q`ty : 28pcs/Box
Serial No. : Box Serial No. as shown below.
Date : Packing Date
FG Code : FG Code of Product
BA104S01-300
1
XXXXXXXXXXXXX
3
28
2
20XX / XX/ XX
4
xxxx
5
No.
Code
1
X
2
X
GBN
3
S
Grade
4
3
B3
5
1
6
8
7
B
Month
8
0
Rev
9
0
10
0
11
1
12
H
13
D
Year Serial number
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7.0 Product Label
1
2
3
4
Label Size: 48mmx12mmx0.08mm,
44-9231007
1. Customer Code
2. MDL ID bar code
3. MDL ID
4. FG-CODE First 12 digits
BOE MDL ID rule
No. 1 2 3 4 5 6 7 8 9 10 11
1
2
1
3
1
4
1
5
1
6
1
7
Code X X S 3 8 3 2 D 8 5 0 0 0 0 0 2 1
GBN Grade B3 Year Month Day FG Code last four digits Serial number
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8.0 Handling & Cautions
8.1 Mounting Method
The panel of the LCD consists of two thin glasses with polarizers which easily get
damaged. So extreme care should be taken when handling the LCD.
Excessive stress or pressure on the glass of the LCD should be avoided. Care must be
taken to insure that no torsional or compressive forces are applied to the LCD unit
when it is mounted.
If the customer's set presses the main parts of the LCD, the LCD may show the abnormal
display. But this phenomenon does not mean the malfunction of the LCD and should be
pressed by the way of mutual agreement.
To determine the optimum mounting angle, refer to the viewing angle range in the
specification for each model.
Mount a LCD module with the specified mounting parts.
8.2 Caution of LCD Handling and Cleaning
Since the LCD is made of glass, do not apply strong mechanical impact or static load
onto it. Handling with care since shock, vibration,and careless handling may seriously
affect the product. If it falls from a high place or receives a strong shock, the glass may
be broken.
The polarizers on the surface of panel are made from organic substances. Be very
careful for chemicals not to touch the polarizers or it leads the polarizers to be deteriorated.
If the use of a chemical is unavoidable, use soft cloth with solvent(recommended below)
to clean the LCD‘s surface with wipe lightly.
-IPA(Isopropyl Alcohol), Ethyl Alcohol, Trichlorotriflorothane
Do not wipe the LCD's surface with dry or hard materials that will damage the polarizers
and others. Do not use the following solvent.
-Water, Ketone, Aromatics
It is recommended that the LCD be handled with soft gloves during assembly, etc. The
polarizers on the LCD's surface are vulnerable to scratch and thus to be damaged by
sharp particles.
Do not drop water or any chemicals onto the LCD's surface.
A protective film is supplied on the LCD and should be left in place until the LCD is
required for operation.
The ITO pad area needs special careful caution because it could be easily corroded.
Do not contact the ITO pad area with HCFC,Soldering flux,Chlorine,Sulfur,saliva or
fingerprint. To prevent the ITO corrosion, customers are recommended that the ITO
area would be covered by UV or silicon.
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8.3 Caution Against Static Charge
The LCD modules use C-MOS LSI drivers, so customers are recommended that any unused
input terminal would be connected to Vdd or Vss, do not input any signals before
power is turn on, and ground you body, work/assembly area, assembly equipments to
protect against static electricity.
Remove the protective film slowly, keeping the removing direction approximate
30-degree not vertical from panel surface, If possible, under ESD control device like
ion blower, and the humidity of working room should be kept over 50%RH to reduce the
risk of static charge.
Avoid the use work clothing made of synthetic fibers. We recommend cotton clothing or
other conductivity-treated fibers.
In handling the LCD, wear non-charged material gloves. And the conducting wrist to the
earth and the conducting shoes to the earth are necessary.
8.4 Caution For operation
It is indispensable to drive the LCD within the specified voltage limit since the higher
Voltage than the limit causes the shorter LCD's life. An electro-chemical reaction due to
DC causes undesirable deterioration of the LCD so that the use of DC drive should avoid.
Do not connect or disconnect the LCD to or from the system when power is on.
Never use the LCD under abnormal conditions of high temperature and high humidity.
When expose to drastic fluctuation of temperature (hot to cold or cold to hot),the
LCD may be affected; Specifically, drastic temperature fluctuation from cold to hot ,produces
dew on the LCD's surface which may affect the operation of the polarizer and the LCD.
Response time will be extremely delayed at lower temperature than the operating
temperature range and on the other hand at higher temperature LCD may turn black at
temperature above its operational range. However those phenomena do not mean
malfunction or out of order with the LCD. The LCD will revert to normal operation once
the temperature returns to the recommended temperature range for normal operation.
Do not display the fixed pattern for a long time because it may develop image sticking
due to the LCD structure. If the screen is displayed with fixed pattern, use a screen saver
.
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8.5 Packaging
Modules use LCD element, and must be treated as such.
-Avoid intense shock and falls from a height.
-To prevent modules from degradation, do not operate or store them exposed directly
to sunshine or high temperature/humidity for long periods.
8.6 Storage
A slight dew depositing on terminals is a cause for electro-chemical reaction resulting
in terminal open circuit. Relative humidity of the environment should therefore be kept
below 60%RH.
Original protective film should be used on LCD’s surface (polarizer). Adhesive type
protective film should be avoided, because it may change color and/or properties of
the polarizers.
Do not store the LCD near organic solvents or corrosive gasses.
Keep the LCD safe from vibration, shock and pressure.
Black or white air-bubbles may be produced if the LCD is stored for long time in the
lower temperature or mechanical shocks are applied onto the LCD.
In the case of storing for a long period of time for the purpose or replacement use,
the following ways are recommended.
-Store in a polyethylene bag with sealed so as not to enter fresh air outside in it.
-Store in a dark place where neither exposure to direct sunlight nor light is.
-Keep temperature in the specified storage temperature range.
-Store with no touch on polarizer surface by the anything else. If possible, store the LCD
in the packaging situation LCD when it was delivered.
8.7 Safety
For the crash damaged or unnecessary LCD, it is recommended to wash off liquid crystal
by either of solvents such as acetone and ethanol an should be burned up later.
In the case the LCD is broken, watch out whether liquid crystal leaks out or not. If your
hands touch the liquid crystal, wash your hands cleanly with water an soap as soon
as possible.
If you should swallow the liquid crystal, first, wash your mouth thoroughly with water,
then drink a lot of water and induce vomiting, and then, consult a physician.
If the liquid crystal should get in your eyes, flush your eyes with running water for at
least fifteen minutes.
If the liquid crystal touches your skin or clothes, remove it and wash the affected part
of your skin or clothes with soap and running water.
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9.0 APPENDIX
Mechanical Drawing
Drawing Attachment: Front
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Mechanical Drawing
Drawing Attachment: Back
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