技術文件
規格
Brand
MicrochipPower Switch Type
Load Switch
Power Switch Topology
High Side
Product Type
Power Switch IC
Switch On Resistance RdsOn
55mΩ
Number of Inputs
1
Interface Type
TTL, CMOS
Mount Type
Surface
Minimum Supply Voltage
1.7V
Package Type
MLF
Maximum Supply Voltage
5.5V
Pin Count
4
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
125°C
Operating Current
3A
Standards/Approvals
RoHS
Length
1.2mm
Automotive Standard
No
Series
MIC94043
原產地
United States
產品詳情
The MIC94040/1/2/3 is a family of high-side load switches designed to operate from 1.7V to 5.5V input voltage. The load switch pass element is an internal 28mΩ RDSON P-channel MOSFET which enables the device to support up to 3A of continuous current. The MIC94040 and MIC94041 feature rapid turn on, while the MIC94042 and MIC94043 provide a slew rate controlled softstart turn-on of 100μs. The soft-start feature is provided to prevent an in-rush current event from pulling down the input supply voltage.
暫時無法取得庫存資訊。
P.O.A.
Each (On a Reel of 5000) (不含稅)
5000
P.O.A.
Each (On a Reel of 5000) (不含稅)
暫時無法取得庫存資訊。
5000
技術文件
規格
Brand
MicrochipPower Switch Type
Load Switch
Power Switch Topology
High Side
Product Type
Power Switch IC
Switch On Resistance RdsOn
55mΩ
Number of Inputs
1
Interface Type
TTL, CMOS
Mount Type
Surface
Minimum Supply Voltage
1.7V
Package Type
MLF
Maximum Supply Voltage
5.5V
Pin Count
4
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
125°C
Operating Current
3A
Standards/Approvals
RoHS
Length
1.2mm
Automotive Standard
No
Series
MIC94043
原產地
United States
產品詳情
The MIC94040/1/2/3 is a family of high-side load switches designed to operate from 1.7V to 5.5V input voltage. The load switch pass element is an internal 28mΩ RDSON P-channel MOSFET which enables the device to support up to 3A of continuous current. The MIC94040 and MIC94041 feature rapid turn on, while the MIC94042 and MIC94043 provide a slew rate controlled softstart turn-on of 100μs. The soft-start feature is provided to prevent an in-rush current event from pulling down the input supply voltage.