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MAS1634 데이터시트(PDF) 7 Page - Micro Analog systems

부품명 MAS1634
상세설명  Quad LED Driver IC
PDF  8 Pages
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제조업체  MAS [Micro Analog systems]
홈페이지  http://www.mas-oy.com
Logo MAS - Micro Analog systems

MAS1634 데이터시트(HTML) 7 Page - Micro Analog systems

  MAS1634 Datasheet HTML 1Page - Micro Analog systems MAS1634 Datasheet HTML 2Page - Micro Analog systems MAS1634 Datasheet HTML 3Page - Micro Analog systems MAS1634 Datasheet HTML 4Page - Micro Analog systems MAS1634 Datasheet HTML 5Page - Micro Analog systems MAS1634 Datasheet HTML 6Page - Micro Analog systems MAS1634 Datasheet HTML 7Page - Micro Analog systems MAS1634 Datasheet HTML 8Page - Micro Analog systems  
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DA1634.001
28 November, 2008
MAS1634 SAMPLES IN DIL-20 PACKAGE
1
2
VDD1 3
XPD 4
IN1 5
IN2 6
IN3 7
IN4 8
VDD2 9
10
20
19 GND1
18
17 OUT1
16 OUT2
15 OUT3
14 OUT4
13 GND2
12
11
Top Marking Definitions:
YYWW = Year Week
XXXXX.X = Lot Number
xx = Sample Version
PIN DESCRIPTION
Pin Name
Pin
Type
Function
Note
1
NC
2
NC
VDD1
3
P
Positive Power Supply
1
XPD
4
DI
Power Down Input
3
IN1
5
DI
LED Current Driver Input 1
4
IN2
6
DI
LED Current Driver Input 2
4
IN3
7
DI
LED Current Driver Input 3
4
IN4
8
DI
LED Current Driver Input 4
4
VDD2
9
P
Positive Power Supply
1
10
NC
11
NC
12
NC
GND2
13
G
Power Supply Ground
2
OUT4
14
AO
LED Current Driver Output 4
OUT3
15
AO
LED Current Driver Output 3
OUT2
16
AO
LED Current Driver Output 2
OUT1
17
AO
LED Current Driver Output 1
18
NC
GND1
19
G
Power Supply Ground
2
20
NC
A = Analog, D = Digital, P = Power, G = Ground, I = Input, O = Output, NC = Not Connected
Notes:
1) Keep VDD1 and VDD2 in same potential since both are internally connected together. Due to internal
connection it is only necessary to connect at least one of the two VDD pins to supply voltage.
2) Keep GND1 and GND2 in same potential since both are internally connected together. Due to internal
connection it is only necessary to connect at least one of the two GND pins to supply ground.
3) Power down mode when XPD is low and operating mode when XPD is high.
4) Each led driver input has 1.7MΩ ± 15% pull-down resistor but which are in an inactive high impedance
state if the XPD input is low (i.e. power down mode). This is the reason why XPD pin requires external
control to achieve properly controlled operation.



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