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1. General Description
The LP156WF1 is a Color Active Matrix Liquid Crystal Display with an integral LED backlight system. The
matrix employs a-Si Thin Film Transistor as the active element. It is a transmissive type display operating in
the normally white mode. This TFT-LCD has 15.6 inches diagonally measured active display area with HD+
resolution (1600 horizontal by 900 vertical pixel array). Each pixel is divided into Red, Green and Blue subpixels or dots which are arranged in vertical stripes. Gray scale or the brightness of the sub-pixel color is
determined with a 6-bit gray scale signal for each dot, thus, presenting a palette of more than 262,144
colors. The LP156WF1 has been designed to apply the interface method that enables low power, high
speed, low EMI. The LP156WF1 is intended to support applications where thin thickness, low power are
critical factors and graphic displays are important. In combination with the vertical arrangement of the subpixels, the LP156WF1 characteristics provide an excellent flat display for office automation products such as
Notebook PC.
Display Operating ModeTransmissive mode, normally white
Surface TreatmentAnti-Glare treatment of the front polarizer(3H)
RoHS ComplyYes
BFR / PVC / As Free Yes all.
(Typ.5 point)
1920
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2. Absolute Maximum Ratings
The following are maximum values which, if exceeded, may cause faulty operation or damage to the unit.
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LP156WF1
Liquid Crystal Display
Product Specification
Table 1. ABSOLUTE MAXIMUM RATINGS
ParameterSymbol
Power Input Voltage
Operating Temperature
Storage Temperature
Operating Ambient Humidity
Storage Humidity
VCC-0.34.0Vdcat 25 r 5qC
TOP050qC1
HST-2060qC1
HOP1090%RH1
HST1090%RH1
Values
UnitsNotes
MinMax
Note : 1. Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39
Wet Bulb
Temperature [
10
0
20
]
30
qC Max, and no condensation of water.
90% 80%
60
50
40
60%
Humidity[(%)RH]
40%
20%
10%
Storage
Operation
-20
10
20304050
6070800
Dry Bulb Temperature []
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3. Electrical Specifications
3-1. Electrical Characteristics
The LP156WF1 requires two power inputs. The first logic is employed to power the LCD electronics and to
drive the TFT array and liquid crystal. The second backlight is the input about LED BL with LED Driver.
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LP156WF1
Liquid Crystal Display
Product Specification
Table 2. ELECTRICAL CHARACTERISTICS
ParameterSymbol
UnitNotes
MinTypMax
LOGIC :
Values
Power Supply Input VoltageV
MosaicI
CC3.03.33.6V1
CC-530636mA2
Power Supply Input Current
BlackICC_max---mA3
Power ConsumptionP
Power Supply Inrush CurrentI
LVDS ImpedanceZ
CC-1.742.1W2
CC_P-8001500mA4
LVDS90100110
ȳ
BACKLIGHT : ( with LED Driver)
LED Power Input VoltageV
LED Power Input CurrentI
LED Power ConsumptionP
LED Power Inrush CurrentI
LED7.012.020.0V6
LED-440475mA7
LED-5.35.7W7
LED_P-9001500mA8
PWM Duty Ratio6-100%9
PWM Jitter
-
0-0.2%10
5
PWM ImpedanceZ
PWM FrequencyF
PWM High Level VoltageV
PWM Low Level VoltageV
LED_EN ImpedanceZ
LED_EN High Voltage
LED_EN Low Voltage
PWM204060kȳ
PWM200-1000Hz11
PWM_H
PWM_L
PWM204060kȳ
V
LED_EN
_H
LED_EN
V
_L
3.0-5.3V
0-0.5V
3.0-5.3V
0-0.5V
Life Time12,000--Hrs12
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Note)
1. The measuring position is the connector of LCM and the test conditions are under 25, fv = 60Hz,
Black pattern.
2. The specified Icc current and power consumption are under
the Vcc = 3.3V , 25, fv = 60Hz condition whereas Mosaic pattern
is displayed and fv is the frame frequency.
3. This Spec. is the max load condition for the cable impedance designing.
4. The below figures are the measuring Vcc condition and the Vcc control block LGD used.
The Vcc condition is same the minimum of T1 at Power on sequence.
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LP156WF1
Liquid Crystal Display
Product Specification
Rising time
Vcc
0V
5. This impedance value is needed to proper display and measured form LVDS Tx to the mating connector.
6. The measuring position is the connector of LCM and the test conditions are under 25.
7. The current and power consumption with LED Driver are under the Vled = 12.0V , 25, Dimming of
Max luminance whereas White pattern is displayed and fv is the frame frequency.
8. The below figures are the measuring Vled condition
and the Vled control block LGD used.
VLED control block is same with Vcc control block.
90%
10%
0.5ms
3.3V
Rising time
LED
V
0V
10%
12.0V
90%
0.5ms
9. The operation of LED Driver below minimum dimming ratio may cause flickering or reliability issue.
10. If Jitter of PWM is bigger than maximum. It may cause flickering.
11. This Spec. is not effective at 100% dimming ratio as an exception because it has DC level equivalent
to 0Hz. In spite of acceptable range as defined, the PWM Frequency should be fixed and stable for
more consistent brightness control at any specific level desired.
12 The life time is determined as the time at which the typical brightness of LCD is 50% compare to that of
initial value at the typical LED current. These LED backlight has 6 strings on it and the typical current
of LED’s string is base on 20mA.
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3-2. Interface Connections
This LCD employs two interface connections, a 40 pin connector is used for the module electronics interface
and the other connector is used for the integral backlight system.
The electronics interface connector is a model CABLINE-VS RECE ASS’Y manufactured by I-PEX.
Table 3. MODULE CONNECTOR PIN CONFIGURATION (CN1)
PinSymbolDescriptionNotes
1NCNo connection
2VCCPower Supply, 3.3V Typ.
3VCCPower Supply, 3.3V Typ.
4V EEDIDDDC 3.3V power
5BISTNo connection
6Clk EEDIDDDC Clock
7DATA EEDIDDDC Data
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31VLED_GNDLED Ground
32VLED_GNDLED Ground
33VLED_GNDLED Ground
34NCNo Connection
35BLIMPWM for Luminance control
36BL_OnBacklight On/Off Control
37NCNo Connection
38VLEDLED Power Supply (7V-20V)
39VLEDLED Power Supply (7V-20V)
40VLEDLED Power Supply (7V-20V)
ˢ˷˷˲˥˼˃ˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
ˢ˷˷˲˥˼˃ʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
˩˦˦˄˚˷
ˢ˷˷˲˥˼˄ˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
ˢ˷˷˲˥˼˄ʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
˩˦˦˅˚˷
ˢ˷˷˲˥˼˅ˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
ˢ˷˷˲˥˼˅ʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
˩˦˦ˆ˚˷
ˢ˷˷˲˖˿˾˜ˡˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˶˿˶˾ʳ˼ʳ
ˢ˷˷˲˖˿˾˜ˡʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˶˿˶˾ʳ˼
˩˦˦ˇ˚˷
˘˸˲˥˼˃ˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼ʳ
˘˸˲˥˼˃ʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼
˩˦˦ˈ˚˷
˘˸˲˥˼˄ˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼
˘˸˲˥˼˄ʾʳˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼
˩˦˦ˉ˚˷
˘˸˲˥˼˅ˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼
˘˸˲˥˼˅ʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˷˴˴ʳ˼
˩˦˦ˊ˚˷
˘˸˲˖˿˾˜ˡˀˡ˸˺˴˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˶˿˶˾ʳ˼
˘˸˲˖˿˾˜ˡʾˣ˼˼˸ʳ˟˩˗˦ʳ˷˼˹˹˸˸˼˴˿ʳ˶˿˶˾ʳ˼
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Product Specification
LP156WF1
Liquid Crystal Display
1, Interface chips
1.1 LCD : SW, ST2_BS (LCD Controller)
including LVDS Receiver
1.2 System : THC63LVDF823A
or equivalent
* Pin to Pin compatible with LVDS
2. Connector
2.1 LCD : CABLINE-VS RECE ASS’Y, I-PEX
2.2 Mating : CABLINE-VS PLUG CABLE
2.3 Connector pin arrangement
[W
or its compatibles
ASS’Y or equivalent.
X
[LCD Module Rear View]
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3-3. LVDS Signal Timing Specifications
3-3-1. DC Specification
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LP156WF1
Liquid Crystal Display
Product Specification
Description
LVDS Differential Voltage|V
LVDS Common mode VoltageV
LVDS Input Voltage RangeV
3-3-2. AC Specification
DescriptionSymbolMinMaxUnitNotes
LVDS Clock to Data Skew Margin
Symb
ol
|100600mV-
ID
CM
IN
t
SKEW
t
SKEW
MinMaxUnitNotes
0.61.8V-
0.32.1V-
- 400+ 400ps
- 600+ 600ps
85MHz > Fclk ˻
65MHz > Fclk ˻
65MHz
25MHz
LVDS Clock to Clock Skew Margin (Even
to Odd)
Maximum deviation
of input clock frequency during SSC
Maximum modulation frequency
of input clock during SSC
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t
SKEW_EO
F
DEV
F
MOD
- 1/7+ 1/7T
clk
-· 3%-
-200KHz-
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Freq.
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LP156WF1
Liquid Crystal Display
Product Specification
< Clock skew margin between channel >
F
max
F
center
F
min
3-3-3. Data Format
1) LVDS 2 Port
X
m
tvk
< Spread Spectrum >
m
QGm
Time
kl}
< LVDS Data Format >
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