G=(0.280, 0.607)
B=(0.146, 0.055)
W=(0.280, 0.290)
(Typical value measured at CMO’s module)
Cell Transparency [и]
Polarizer (CF side) Glare coating,Hard coating (3H) 709.7(H) x 405(w)..
4.6%Typ.
(Typical value measured at CMO’s module)
Approval
Polarizer (TFT side) Super Wide View, 709.7(H) x 405(w)..
1.3 MECHANICAL SPECIFICATIONS
Item Min. Typ. Max. Unit Note
Weight 1115 1215 1315 g -
I/F connector mounting
position
Note (1) Please refer to the attached drawings for more information of front and back outline dimensions.
(2) Connector mounting position
The mounting inclination of the connector makes
the screen center within ±0.5mm as the horizontal.
+/- 0.5mm
(2)
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Issued Date: Feb. 13, 2009
Model No.: V315H1-PH1
2. ABSOLUTE MAXIMUM RATINGS
2.1 ABSOLUTE RATINGS OF ENVIRONMENT (BASED ON CMO MODULE V315H1-LH1)
Item Symbol
Storage Temperature TST -20 +60 ºC (1), (3)
Operating Ambient Temperature TOP 0 50 ºC (1), (2), (3)
Altitude Operating A OP 0 5000 M (3)
Altitude Storage A ST 0 12000 M (3)
Note (1) Temperature and relative humidity range is shown in the figure below.
(a) 90 %RH Max. (Ta Љ 40 ºC).
(b) Wet-bulb temperature should be 39 ºC Max. (Ta > 40 ºC).
(c) No condensation..
Min. Max.
Value
Unit Note
Approval
Relative Humidity (%RH)
100
90
80
60
Operating Range
40
20
10
Storage Range
Temperature (ºC)
80 60 -20 40 0 20 -40
Note (2) The maximum operating temperature is based on the test condition that the surface temperature of
display area is less than or equal to 65 ºC with LCD module alone in a temperature controlled chamber.
Thermal management should be considered in your product design to prevent the surface temperature of
display area from being over 65 ºC. The range of operating temperature may degrade in case of improper
thermal management in your product design.
Note (3) The rating of environment is base on LCD module. Leave LCD cell alone, this environment condition can’t
be guaranteed. Except LCD cell, the customer has to consider the ability of other parts of LCD module
and LCD module process.
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2.2 ABSOLUTE RATINGS OF ENVIRONMENT (OPEN CELL)
Storage Condition : With shipping package.
Storage temperature range : 25±5 к
Storage humidity range : 50±10%RH
Shelf life : a month
2.3 ELECTRICAL ABSOLUTE RATINGS (OPEN CELL)
Item Symbol
Power Supply Voltage VAA -0.3 +18 V
Power Supply Voltage VGH -0.3 +31.0 V
Power Supply Voltage VGL -8.3 -0.3 V
Logic Input Voltage VIN -0.3 3.4 V
Value
Min Max
Unit
Issued Date: Feb. 13, 2009
Model No.: V315H1-PH1
Approval
Note
(1)
Note (1) Permanent damage to the device may occur if maximum values are exceeded. Function operation should
be restricted to the conditions described under Normal Operating Conditions.
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3. ELECTRICAL CHARACTERISTICS
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Model No.: V315H1-PH1
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3.1 TFT LCD MODULE
Ta = 25 ± 2 ºC
Parameter Symbol
VGHP 29 30 31 V
VGL -8.3 -8 -7.7 V
Power Supply Voltage
VAA 17.4 17.7 18 V
V33V 3.2 3.3 3.4 V
VREF 16.7 17 17.3 V
IGH - - 50 mA
Power Supply Current
IGL - - 50 mA
IAA - - 880 mA
I3.3V - - 2300 mA
interface
V
IH
V
IL
2.7 - 3.3 3.3 V CMOS
0 - 0.7 0.7 V
3.2 RSDS CHARACTERISTICS
RSDS high input Voltage V
RSDS low input Voltage V
RSDS common mode
input voltage range
RSDS Input leakage
current
Ta = -10~+85 ºC
Item SymbolCondition
DIFFRSDSVCMRSDS
DIFFRSDSVCMRSDS
V
V
CMRSDS
I
DL
DIFFRSDS
A/BDxxP, A/BDxxN,
A/BCLKP, A/BCLKN
Value
Min. Typ. Max.
Unit Note
Value
Min Typ Max
Unit
= +1.2 V (1)100 200 - mV
= +1.2 V (1)- -200 -100 mV
= 200 mV
(2)
VSSD+0.5 Note(3) VSSD-1.2V
-10 - 10
ӴA
Note (1) V
Note (2) V
Note (3) V
= (VCLKP + VCLKN)/2 or V
CMRSDS
DIFFRSDS
= VCLKP - VCLKN or V
= 1.2V(VDDD = 3.3V)
CMRSDS
CMRSDS
DIFFRSDS
= (VDXXP + VDXXN)/2
= VDXXP - VDXXN
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4. BLOCK DIAGRAM
4.1 TFT LCD OPEN CELL
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Issued Date: Feb. 13, 2009
Model No.: V315H1-PH1
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TFT LCD PANEL
(1920x3x1080)
X(R) BOARD
X(L) BOARD
PPRSDS SIGNAL INPUT
Connector Part No.: HRS FH31H-80S-0.5SH(06) OR MOLEX 501559-8010
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5. INPUT TERMINAL PIN ASSIGNMENT
5.1 TFT LCD MODULE
CN1(XL) Connector Pin Assignment
Pin No.Symbol Description Pin No. Symbol Description
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
Data driver clock
Data driver clock
A-Path RSDS data signal
A-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
Data driver clock
Data driver clock
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
A-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
B-Path RSDS data signal
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
Gamma Power supply
A-Path RSDS data signal
A-Path RSDS data signal
No connection
No connection
A-Path RSDS data signal
A-Path RSDS data signal
Model No.: V315H1-PH1
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6. OPTICAL CHARACTERISTICS
6.1 TEST CONDITIONS
Item Symbol Value Unit
Ambient Temperature Ta
Ambient Humidity Ha
Supply Voltage V
CC
25±2
50±10
5.0 V
Input Signal According to typical value in "3. ELECTRICAL CHARACTERISTICS"
Inverter Current I
Inverter Driving Frequency F
L
L
5.20.5
583
6.2 OPTICAL SPECIFICATIONS
The relative measurement methods of optical characteristics are shown as below. The following items should be
measured under the test conditions described in 7.1 and stable environment shown in Note (5).
Item SymbolCondition Min. Typ. Max. UnitNote
Red
Green
Color
Chromaticity
Blue
White
Center Transmittance T%- 4.6 4.6 % (1), (7)
Contrast Ratio CR
Response Time
White Variation
Horizontal
Viewing Angle
Vertical
Rx
Ry 0.322
Gx
Gy 0.607
Bx
By 0.055
=0°, θY =0°
θ
x
˩˼˸˼˺ʳ˴˺˿˸ʳ˴ʳ˴˿ʳ
˷˼˸˶˼
With CMO module
Typ.-0 .03
Wx
Wy
θ
=0°, θY =0°
x
Gray to
gray
average
δW
θx+
θ
-
x
θY+
θ
-
Y
With CMO Module
θ
=0°, θY =0°
x
With CMO
Module@120Hz
θ
=0°, θY =0°
x
With CMO Module
CR≥20
With CMO Module
3000 4000- (1), (3)
-
1.3 - (1), (6)
80 88 80
80
80
0.633
0.280
0.146
Typ+0.03
0.280
0.290
4.5 9
88 88 88 -
o
C
%RH
mA
KHz
-
-
-
-
-
-
-
-
ms (4)
Deg. (1), (2)
Approval
(1),(5)
Note (1) Light source is CMO’s V315H1-LH1 BLU and driving voltages are based on suitable gamma voltages.
Note (2) Definition of Viewing Angle (θx, θy):
Viewing angles are measured by EZ-Contrast 160R (Eldim)
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Normal
θx = θy = 0º
θy-θy+
θX- = 90º
6 o’clock
θ
y-
= 90º
x-
y-
Note (3) Definition of Contrast Ratio (CR):
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) = L255 / L0
L255: Luminance of gray level 255
L 0: Luminance of gray level 0
CR = CR (5) ,where CR (X) is corresponding to the Contrast Ratio of the point X at the figure in Note (6).
θx−
θx+
y+
12 o’clock direction
θ
y+
= 90º
x+
θX+ = 90º
Note (4) Definition of Gray-to-Gray Switching Time:
100%
90%
Optical
Response
10%
0%
Gray to gray
Switching time
The driving signal means the signal of luminance 0%, 20%, 40%, 60%, 80%, 100%.
Gray to gray average time means the average switching time of luminance 0%,20%,
40%, 60%, 80%, 100% to each other.
Note (5) Measurement Setup:
The LCD module should be stabilized at given temperature for 60 minutes to avoid abrupt temperature
Gray to gray
Switching time
Time
change during measuring. In order to stabilize the luminance, the measurement should be executed after
lighting Backlight for 60 minutes in a windless room.
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Model No.: V315H1-PH1
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Center of the Screen
Note (6) Definition of White Variation (δW):
Measure the luminance of gray level 255 at 5 points
δW = Maximum [L (1), L (2), L (3), L (4), L (5)] / Minimum [L (1), L (2), L (3), L (4), L (5)]
where L (X) is corresponding to the luminance of the point X at the figure below.
Display Color Analyzer
(Minolta CA210)
Light Shield Room
(Ambient Luminance < 2 lux)
Horizontal Line
D
D/4 D/2 3D/4
W/4
W/2
W
Vertical Line
3W/4
Note (7) Definition of Transmittance(T%):
Module is without signal input.
Transmittance =
1 2
5
3 4
Active Area
Luminance of LCD module
Luminance of backlight
13
Ϡ 100%
X
: Test Point
X=1 to 5
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7. DEFINITION OF LABELS
7.1 OPEN CELL LABEL
The barcode nameplate is pasted on each open cell as illustration for CMO internal control.
7.2 CARTON LABEL
The barcode nameplate is pasted on each box as illustration, and its definitions are as following explanation
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Model No.: V315H1-PH1
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V315H1-PH1
XXXXXXXXXXXXXX
(a) Model Name: V315H1– PH1
P.O. NO.
Parts ID.
Carton ID. Quantities 21
XXXXXXXXXXXXXX
Made in Taiwan
(b) Carton ID: CMO internal control
(c) Quantities:21
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8. PACKAGING
8.1 PACKING SPECIFICATIONS
(1) 21 LCD TV Panels / 1 Box
(2) Box dimensions : 970 (L) X 640 (W) X 319 (H)
(3) Weight : approximately 38Kg ( 21 panels per box)
8.2 PACKING METHOD
Figures 9-1 and 9-2 are the packing method
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Figure.9-1 packing method
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Sea & Land Transportation
Gross : 471kg
(L1130*50*50mm)
Film
Carton Label
(L1300*W1000*H140mm)
PE Sheet
(L1850*50*50mm)
PP Belt
(L1130*50*50mm)
Film
(L1300*W1000*H140mm)
Air Transportation
Gross : 319kg
PE Sheet
(L1130*50*50mm)
PP Belt
Carton Label
Figure.9-2 packing method
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9. PRECAUTIONS
10.1 ASSEMBLY AND HANDLING PRECAUTIONS
(1) Do not apply rough force such as bending or twisting to the product during assembly.
(2) To assemble backlight or install module into user’s system can be only in clean working areas. The dust and
oil may cause electrical short or worsen the polarizer.
(3) It’s not permitted to have pressure or impulse on the module because the LCD panel will be damaged.
(4) Always follow the correct power sequence when the product is connecting and operating. This can prevent
damage to the CMOS LSI chips during latch-up.
(5) Do not pull the I/F connector in or out while the module is operating.
(6) Use a soft dry cloth without chemicals for cleaning, because the surface of polarizer is very soft and easily
scratched.
(7) It is dangerous that moisture come into or contacted the product, because moisture may damage the product
when it is operating.
(8) High temperature or humidity may reduce the performance of module. Please store this product within the
specified storage conditions.
(9) When ambient temperature is lower than 10ºC may reduce the display quality. For example, the response
time will become slowly.
10.2 SAFETY PRECAUTIONS
(1) If the liquid crystal material leaks from the panel, it should be kept away from the eyes or mouth. In case of
contact with hands, skin or clothes, it has to be washed away thoroughly with soap.
(2) After the product’s end of life, it is not harmful in case of normal operation and storage.
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10. Mechanical Drawing
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