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PDF LK0DZ1C0063 Data sheet ( Hoja de datos )

Número de pieza LK0DZ1C0063
Descripción Display Module
Fabricantes Sharp 
Logotipo Sharp Logotipo



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No Preview Available ! LK0DZ1C0063 Hoja de datos, Descripción, Manual

LK0DZ1C0063
Free Datasheet http://www.datasheet4u.com/

1 page




LK0DZ1C0063 pdf
LD-K21383-2
4. Input Terminals
4-1. TFT panel driving
CN1 (Interface signals and +12V DC power supply) (Shown in Fig.1)
Using connector FI-X30SSL-HF (Japan Aviation Electronics Ind. , Ltd.)
Matching connector FI-X30H/FI-X30HL, FI-X30C/FI-X30C2L
or FI-X30M (Japan Aviation Electronics Ind. , Ltd.)
Matching LVDS transmitterTHC63LVDM83R (THine) or equivalent device
Pin No.
1
2
3
4
5
6
7
8
Symbol
VCC
VCC
VCC
VCC
GND
GND
GND
GND
Function
+12V Power Supply
+12V Power Supply
+12V Power Supply
+12V Power Supply
Ground
Ground
Ground
Ground
9 SELLVDS Select LVDS data order [Note 1]
10
Reserved
Not Available
11
GND
Ground
12
RIN0-
Negative (-) LVDS differential data input
13
RIN0+
Positive (+) LVDS differential data input
14
GND
Ground
15
RIN1-
Negative (-) LVDS differential data input
16
RIN1+
Positive (+) LVDS differential data input
17
GND
Ground
18
RIN2-
Negative (-) LVDS differential data input
19
RIN2+
Positive (+) LVDS differential data input
20
GND
Ground
21
CLKIN-
Clock Signal(-)
22
CLKIN+
Clock Signal(+)
23
GND
Ground
24
RIN3-
Negative (-) LVDS differential data input
25
RIN3+
Positive (+) LVDS differential data input
26
GND
Ground
27
Reserved
Not Available
28
Reserved
Not Available
29
GND
Ground
30
GND
Ground
[Note] GND of a liquid crystal panel drive part has connected with a module chassis.
Remark
Default: Pull up
(H:3.3V)
[Note 2]
LVDS
LVDS
LVDS
LVDS
LVDS
LVDS
LVDS
LVDS
LVDS
LVDS
Free Datasheet http://www.datasheet4u.com/

5 Page





LK0DZ1C0063 arduino
LD-K21383-8
6. Electrical Characteristics
6-1. Control circuit driving
Parameter
Symbol
Supply voltage VCC
+12V supply
ICC
voltage Current dissipation IRUSH
TRUSH
Permissible input ripple voltage VRP
Differential input
threshold voltage
High
Low
VTH
VTL
Input Low voltage
VIL
Input High voltage
VIH
Input leak current (Low)
IIL
Min.
+11.4
-
-
-
-
-
-100
0
2.6
-
Typ.
+12.0
300
1500
0.5
-
-
-
-
-
-
Max.
+12.6
600
2700
-
100
100
-
0.7
3.3
400
Uniit
V
mA
mA
ms
mVP-P
mV
mV
V
V
µA
Input leak current (High) IIH -
- 100 µA
Terminal resistor
RT -
[Note] VCM: Common mode voltage of LVDS driver.
100
-ȍ
[Note 1]
Input voltage sequences
Dip conditions for supply voltage
0 < t1 d 10ms
0< t2-1 d 20ms
a) 9.1V d VCC < 10.8V
td d 10ms
t2-2 t 10ms
0 < t3 d 1s
b) VCC < 9.1V
Dip conditions for supply voltage is
t4 t 1s
based on input voltage sequence.
t5 t 200ms
Ta=25°C
Remark
[Note 1]
[Note 2]
[Note 5]
[Note 5]
Vcc = +12.0V
VCM = +1.2V
[Note 4]
[Note 3]
VI = 0V
[Note 3]
VI =3.3V
[Note 3]
Differential input
0.9VCC
VC0C.1VCC
t2-1
t1
Data1
Data2
t2-2
t5
Back light: VINV OFF
ON
0.9VCC
0.1VCC
t3 t4
0 .1V CC
OFF
8EE
VF
̪ Data1: CLKINr,RIN0r,RIN1r, RIN2r, RIN3r
̪ Data2: SELLVDS
̪ About the relation between data input and back light lighting, please base on the above-mentioned input
sequence.
When back light is switched on before panel operation or after a panel operation stop, it may not display
normally. But this phenomenon is not based on change of an incoming signal, and does not give damage to a
liquid crystal display.
Free Datasheet http://www.datasheet4u.com/

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