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PDF LK400D3HC75 Data sheet ( Hoja de datos )

Número de pieza LK400D3HC75
Descripción TFT LCD Module
Fabricantes Sharp 
Logotipo Sharp Logotipo



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No Preview Available ! LK400D3HC75 Hoja de datos, Descripción, Manual

No.
DATE
LD-K25653
July. 22. 2013
TECHNICAL
LITERATURE
FOR
TFT - LCD PANEL
(Open Cell )
MODEL No. LK400D3HC75
The technical literature is subject to change without notice.
So, please contact SHARP or its representative before designing
your product based on this literature.
DEVELOPMENT DEPARTMENT 1
DISPLAY DEVICE UNIT V
DISPLAY DEVICE BUSINESS DIVISION
SHARP CORPORATION

1 page




LK400D3HC75 pdf
32 BIN2- Bport (-)LVDS CH2 differential data input
33 BIN2+ Bport (+)LVDS CH2 differential data input
34 GND
35 BCK- Bport LVDS Clock signal(-)
36 BCK+ Bport LVDS Clock signal(+)
37 GND
38 BIN3- Bport (-)LVDS CH3 differential data input
39 BIN3+ Bport (+)LVDS CH3 differential data input
40 BIN4- Bport (-)LVDS CH4 differential data input
41 BIN4+ Bport (+)LVDS CH4 differential data input
42 GND
43 GND
44 GND
45 GND
46 GND
47
VCC
+12V Power Supply
48
VCC
+12V Power Supply
49
VCC
+12V Power Supply
50
VCC
+12V Power Supply
51
VCC
+12V Power Supply
[Note] You should connect GND plane in Control PWB to module chassis.
[Note 1] The equivalent circuit figure of the terminal:
Terminal
4.7KΩ
Control PWB
LD-K256533

5 Page





LK400D3HC75 arduino
6 Electrical Characteristics of input signals
Parameter
Supply voltage
Current dissipation
+12V supply
voltage
Inrush current
Permissible input ripple voltage
Differential input
High
threshold voltage
Low
Input Low voltage
Input High voltage
Input leak current (Low)
Symbol
Vcc
Icc
IRUSH1
IRUSH2
VRP
VTH
VTL
VIL
VIH
IIL
Min.
11.4
-
-
-
100
0
2.3
-
Input leak current (High)
IIH -
Terminal resistor
RT -
[Note]VCM: Common mode voltage of LVDS driver.
Typ.
12
(0.73)
TBD
TBD
-
-
-
-
3.3
-
-
100
Max.
12.6
(1.6)
-
-
100
-100
1.0
3.6
1700
700
-
LD-K256539
Unit
V
A
A
A
mVP-P
mV
mV
V
V
µA
µA
Ta=25 °C
Remark
[Note 1]
[Note 2]
t1=500µs
[Note 6]
T1>5ms
[Note 6]
Vcc = +12.0V
VCM = +1.2V
[Note 5]
[Note 3]
VI = 0V
[Note 4]
VI = 3.3V
[Note 3]
Differential
input
[Note1]
Input voltage sequences
50µs < t1 < 20ms
20ms < t2 < 50ms
20ms < t3 < 50ms
0 < t4 < 1s
1s < t5-1 1s < t5-2
0 < t6 -1 0 < t6 -2
1s < t7
0.9Vcc
0.1Vcc
Vcc
t1 t2
Data1
t3
Data2
t6-1
t5-1
Back light:VON OFF
ON
ON
ON
Dip conditions for supply voltage
V2 < Vcc < V1
td < 10ms
This case is based on input voltage sequences.
0. 9Vcc
0.1Vcc
0.1 Vcc
t7
t4
t3
t6-2
t5-2
OFF
Vcc
V1=10.8V
V2=9.1V
td
Data1: ACK±, AIN0±, AIN1±, AIN2±, AIN3±, AIN4±,BCK±, BIN0±, BIN1±, BIN2±, BIN3±, BIN4±
Data2: SELLVDS

11 Page







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