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PDF LK400D3HAxx Data sheet ( Hoja de datos )

Número de pieza LK400D3HAxx
Descripción TFT LCD Module
Fabricantes Sharp 
Logotipo Sharp Logotipo



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No. LD-K22553
DATE
May. 21. 2010


    㨀㧱㧺㨀㧭㨀㧵㨂㧱

TECHNICAL
LITERATURE
FOR
TFT - LCD PANEL
( Open Cell )
MODEL No. LK400D3HA㧖㧖
 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. 2
LIQUID CRYSTAL DISPLAY DIVISION.1
LIQUID CRYSTAL DISPLAY GROUP
SHARP CORPORATION
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LK400D3HAxx pdf
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LD-K225533
4 Cell Driving Specifications
4.1 Driving interface of Control PWB SHARP specifies[LK0DZ1C0㧖㧖㧖]
CN1 (Interface signals and +12V DC power supply) (Shown in Fig1)
Using connector
: FI-RNE51SZ-HF (Japan Aviation Electronics Ind., Ltd.)
Matching connector : FI-RE51HL, FI-RE51CL (Japan Aviation Electronics Ind., Ltd.)
Matching LVDS transmitter : THC63LVD1023 or equivalent device
Pin No.
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
Symbol
GND
Reserved
Reserved
Reserved
FRAME
O/S set
SELLVDS
Reserved
Reserved
Reserved
GND
AIN0-
AIN0+
AIN1-
AIN1+
AIN2-
AIN2+
GND
ACK-
ACK+
GND
AIN3-
AIN3+
AIN4-
AIN4+
GND
GND
BIN0-
BIN0+
BIN1-
BIN1+
BIN2-
BIN2+
GND
BCK-
BCK+
GND
BIN3-
BIN3+
BIN4-
BIN4+
GND
GND
GND
GND
GND
VCC
VCC
VCC
VCC
VCC
Function
Remark
It is required to set non-connection(OPEN)
It is required to set non-connection(OPEN)
It is required to set non-connection(OPEN)
Frame frequency setting 0:120Hz 1:100Hz [Note 1]
O/S operation setting H:O/S ON, L:O/S OFF [Note 2]
Select LVDS data order [Note 2,3]
It is required to set non-connection(OPEN)
It is required to set non-connection(OPEN)
It is required to set non-connection(OPEN)
Pull up 3.3V
Pull up 3.3V
Pull up 3.3V
Pull down : (GND)
Pull up 3.3V
Pull up 3.3V
Pull down : (GND)
Pull down : (GND)
Pull down : (GND)
Aport (-)LVDS CH0 differential data input
Aport (+)LVDS CH0 differential data input
Aport (-)LVDS CH1 differential data input
Aport (+)LVDS CH1 differential data input
Aport (-)LVDS CH2 differential data input
Aport (+)LVDS CH2 differential data input
Aport LVDS Clock signal(-)
Aport LVDS Clock signal(+)
Aport (-)LVDS CH3 differential data input
Aport (+)LVDS CH3 differential data input
Aport (-)LVDS CH4 differential data input
Aport (+)LVDS CH4 differential data input
Bport (-)LVDS CH0 differential data input
Bport (+)LVDS CH0 differential data input
Bport (-)LVDS CH1 differential data input
Bport (+)LVDS CH1 differential data input
Bport (-)LVDS CH2 differential data input
Bport (+)LVDS CH2 differential data input
Bport LVDS Clock signal(-)
Bport LVDS Clock signal(+)
Bport (-)LVDS CH3 differential data input
Bport (+)LVDS CH3 differential data input
Bport (-)LVDS CH4 differential data input
Bport (+)LVDS CH4 differential data input
+12V Power Supply
+12V Power Supply
+12V Power Supply
+12V Power Supply
+12V Power Supply
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LD-K225539
4.4 Electrical Characteristics of input signals

Ta=25 qC
Parameter
Supply voltage
+12V supply Current dissipation
voltage
Inrush current
Permissible input ripple voltage
Differential input
threshold voltage
High
Low
Input Low voltage
Input High voltage
Input leak current (Low)
Symbol
Vcc
Icc
IRUSH
VRP
VTH
VTL
VIL
VIH
IIL1
IIL2
Input leak current (High)
IIH1
IIH2
Terminal resistor
RT
Min.
11.4
-
-
-
-
-100
0
2.3
-
-
-
-
-
Typ.
12
700
6000
-
-
-
-
3.3
-
-
-
-
100
Max.
12.6
2000
-
100
100
-
1.0
3.6
400
40
40
400
-
Unit
V
mA
mA
mVP-P
mV
mV
V
V
μA
μA
μA
μA
:
Remark
[Note 1]
[Note 2]
[Note 7]
Vcc = +12.0V
VCM = +1.2V
[Note 6]
[Note 3]
VI = 0V
[Note 4]
VI = 0V
[Note 5]
VI = 3.3V
[Note 4]
VI = 3.3V
[Note 5]
Differential
input
[Note]VCM: Common mode voltage of LVDS driver.
[Note 1]
Input voltage sequences
Dip conditions for supply voltage
0 < t1 ҇ 20ms
a) 6.5V ҇ Vcc < 10.8V
10 < t2 ҇ 50ms
td ҇ 10ms
10 < t3 ҇ 50ms
b) Vcc < 6.5V
0 < t4 ҇ 1s
Dip conditions for supply voltage is
t5 ҈ 1000 ms
based on input voltage sequence.
t6 ҈ 0
t7 ҈ 300ms
0.9VCC
0.1Vcc
Vcc
t1
Data1 t2
t3
Data2
ON
0.9Vcc
0.1Vcc
0.1Vcc
t7
t4
t3
Vcc
V1
V2
V1:10.8V
V2:6.5V
td
Back light:VON
t5
OFF
t6
OFF
̪ Data1: ACKr, AIN0r, AIN1r, AIN2r, AIN3r, AIN4r,BCKr, BIN0r, BIN1r, BIN2r, BIN3r, BIN4r
   CCKr, CIN0r, CIN1r, CIN2r, CIN3r, CIN4r,DCKr, DIN0r, DIN1r, DIN2r, DIN3r, DIN4r
*VCM voltage pursues the sequence mentioned above
̪ Data2: SELLVDS, FRAME, O/S_SET
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