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PDF LK400D3LC03 Data sheet ( Hoja de datos )

Número de pieza LK400D3LC03
Descripción TFT LCD Module
Fabricantes Sharp 
Logotipo Sharp Logotipo



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PREPARED BY: DATE
APPROVED BY: DATE
LIQUID CRYSTAL DISPLAY GROUP
SHARP CORPORATION
SPECIFICATION
SPEC No. LD-K23Z01
FILE No.
ISSUE: Dec, 2, 2011
PAGE :  26 pages
APPLICABLE GROUP
LIQUID CRYSTAL DISPLAY GROUP
DEVICE SPECIFICATION FOR
TFT - LCD module
MODEL No. LLKQ400380QD53DLRCQ031
CUSTOMER'S APPROVAL
DATE
PRESENTED
BY BY
.7DQDND
$66,67$17'(3$570(17*(1(5$/0$1$*(5
'(9(/230(17'(3$570(17
/,48,'&5<67$/',63/$<*5283
                        6+$53&25325$7,21
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LK400D3LC03 pdf
Global LCD Panel Exchange Center
www.panelook.com
45 GND
46 GND
47 Reserved Non-connection (default : OPEN)
48
VCC
+12V Power Supply
49
VCC
+12V Power Supply
50
VCC
+12V Power Supply
51
VCC
+12V Power Supply
LD-K23Z01-3
CN2 (Interface signals)
Using connector
: 91213-0410 (Aces Electronics Co., Ltd.)
Mating connector : FI-RE41HL, FI-RE41CL (Japan Aviation Electronics Ind., Ltd.)
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
Symbol
Function
Reserved (VCC) +12V Power Supply
Reserved (VCC) +12V Power Supply
Reserved (VCC) +12V Power Supply
Reserved Non-connection (default : OPEN)
Reserved Non-connection (default : OPEN)
Reserved Non-connection (default : OPEN)
Reserved Non-connection (default : OPEN)
Reserved Non-connection (default : OPEN)
GND
CIN0- Cport (-)LVDS CH0 differential data input
CIN0+ Cport (+)LVDS CH0 differential data input
CIN1- Cport (-)LVDS CH1 differential data input
CIN1+ Cport (+)LVDS CH1 differential data input
CIN2- Cport (-)LVDS CH2 differential data input
CIN2+ Cport (+)LVDS CH2 differential data input
GND
CCK- Cport LVDS Clock signal(-)
CCK+ Cport LVDS Clock signal(+)
GND
CIN3- Cport (-)LVDS CH3 differential data input
CIN3+ Cport (+)LVDS CH3 differential data input
CIN4- Cport (-)LVDS CH4 differential data input
CIN4+ Cport (+)LVDS CH4 differential data input
GND
GND
DIN0- Dport (-)LVDS CH0 differential data input
DIN0+ Dport (+)LVDS CH0 differential data input
DIN1- Dport (-)LVDS CH1 differential data input
DIN1+ Dport (+)LVDS CH1 differential data input
DIN2- Dport (-)LVDS CH2 differential data input
DIN2+ Dport (+)LVDS CH2 differential data input
GND
DCK- Dport LVDS Clock signal(-)
DCK+ Dport LVDS Clock signal(+)
GND
DIN3- Dport (-)LVDS CH3 differential data input
DIN3+ Dport (+)LVDS CH3 differential data input
DIN4- Dport (-)LVDS CH4 differential data input
DIN4+ Dport (+)LVDS CH4 differential data input
GND
GND
Remark
 [Note] GND of a liquid crystal panel drive part has connected with a module chassis.
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory! www.panelook.com

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LK400D3LC03 arduino
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* Layout of LED PWB
㻸㻯㻰㻌㻼㻭㻺㻱㻸㻌
㻝㻥㻞㻜㽢㻟㻔㻾㻳㻮㻕㽢㻝㻜㻤㻜㻌
㻸㻱㻰㻌㻼㼃㻮㻞㻌
㻸㻱㻰㻌㻼㼃㻮㻝㻌
㻿㻻㼁㻾㻯㻱㻌 㻰㻾㻵㼂㻱㻾㻌
Front View
LD-K23Z01-9
4.4 The back light system characteristics
The back light system is side-edge-lit type with LED.
The characteristics of the LED are shown in the following table. The value mentioned below is at the case of one
LED.
Item
Life time
Symbol
TLED
Min.
30,000
Typ.
50,000
Max.
-
Unit
Hour
Remarks
[Note]
[Note]
LED life time is defined as the time when brightness becomes 50% of the original value in the
continuous operation under the Ta = 25Υ
[Operation condition]
ambient temperature Ta=25Υ
ILED = 0.240A (each LED PWB), using heat radiation system on the backside module
    *Under such a condition, please keep 85.0Υ or less the temperature of the terminal of LED.
5. Absolute Maximum Ratings
Parameter
Symbol
Input voltage
(for Control PWB)
VI
12V supply voltage
(for Control PWB)
VCC
Reverse voltage
for LED-PWB
VLED
Forward Current
for LED-PWB
ILED
Condition
Ta=25 qC
Ta=25 qC
Ta=25 qC
Ta=25 qC
Ratings
-0.3 ~ 3.6
0 ~ + 14
5
300
Storage temperature
Tstg
-
-25 ~ +60
Operation temperature
(Ambient)
Topa
-
0 ~ +50
[Note 1] SELLVDS, O/S_set
[Note 2] Humidity 95%RH Max.(Taӌ40qC)
Maximum wet-bulb temperature at 39 qC or less.(Ta>40qC)
No condensation.
[Note 3] PIN1 , PIN5(CN101)
Unit Remark
V [Note 1]
V
V
For each 1
LED
mA [Note 3]
qC
[Note 2]
qC
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