技術文件
規格
Brand
MicrochipPower Switch Topology
High Side
Product Type
Power Switch IC
Power Switch Type
High Side
Switch On Resistance RdsOn
100mΩ
Number of Outputs
2
Mount Type
Surface
Package Type
SOIC
Minimum Supply Voltage
2.7V
Pin Count
8
Maximum Supply Voltage
6V
Operating Current
1.25A
Maximum Operating Temperature
85°C
Minimum Operating Temperature
-40°C
Length
4.93mm
Height
1.63mm
Standards/Approvals
RoHS
Width
3.94mm
Automotive Standard
No
Series
MIC2026A/2076A
產品詳情
The Microchip high side MOSFET switches is optimized for general-purpose power distribution requiring circuit protection. It is particularly well suited for USB applications. This mosfet is internally current limited and have thermal shutdown that protects the device and load. The device employs soft-start circuitry that minimizes inrush current in applications where highly capacitive loads are employed.
暫時無法取得庫存資訊。
83.00 MOP
8.296 MOP Each (Supplied in a Tube) (不含稅)
生產包 (管子)
10
83.00 MOP
8.296 MOP Each (Supplied in a Tube) (不含稅)
暫時無法取得庫存資訊。
生產包 (管子)
10
| 數量 | 單價 | 每管子 |
|---|---|---|
| 10 - 10 | 8.296 MOP | 82.96 MOP |
| 20 - 40 | 8.162 MOP | 81.62 MOP |
| 50 - 90 | 7.997 MOP | 79.97 MOP |
| 100+ | 7.863 MOP | 78.63 MOP |
技術文件
規格
Brand
MicrochipPower Switch Topology
High Side
Product Type
Power Switch IC
Power Switch Type
High Side
Switch On Resistance RdsOn
100mΩ
Number of Outputs
2
Mount Type
Surface
Package Type
SOIC
Minimum Supply Voltage
2.7V
Pin Count
8
Maximum Supply Voltage
6V
Operating Current
1.25A
Maximum Operating Temperature
85°C
Minimum Operating Temperature
-40°C
Length
4.93mm
Height
1.63mm
Standards/Approvals
RoHS
Width
3.94mm
Automotive Standard
No
Series
MIC2026A/2076A
產品詳情
The Microchip high side MOSFET switches is optimized for general-purpose power distribution requiring circuit protection. It is particularly well suited for USB applications. This mosfet is internally current limited and have thermal shutdown that protects the device and load. The device employs soft-start circuitry that minimizes inrush current in applications where highly capacitive loads are employed.