Technical Documents
Specifications
Brand
Power IntegrationsProduct Type
PFC Controller
Sub Type
Power Factor Controller
Switching Frequency
60kHz
Supply Current
23A
Zero Power Detection
No
Mount Type
Surface
Package Type
Plastic eSIP
Minimum Supply Voltage
5V
Pin Count
16
Maximum Supply Voltage
12V
Minimum Operating Temperature
-40°C
Length
16mm
Height
1.96mm
Standards/Approvals
No
Maximum Operating Temperature
150°C
Automotive Standard
No
Product Details
The Power Integrations e HiperPFS-4 family PFC controller has Integrated 600 V MOSFET T and diode option in a single, low-profile power package. It is optimized for high PF and efficiency across load range. HiperPFS-4 devices eliminate need for external current sense resistors and their associated power loss, and use an innovative control technique that adjusts the switching frequency over output load, input line voltage, and input line cycle.
Stock information temporarily unavailable.
€ 119.10
€ 3.97 Each (In a Tube of 30) (Exc. VAT)
€ 140.54
€ 4.685 Each (In a Tube of 30) (inc. VAT)
30
€ 119.10
€ 3.97 Each (In a Tube of 30) (Exc. VAT)
€ 140.54
€ 4.685 Each (In a Tube of 30) (inc. VAT)
Stock information temporarily unavailable.
30
Technical Documents
Specifications
Brand
Power IntegrationsProduct Type
PFC Controller
Sub Type
Power Factor Controller
Switching Frequency
60kHz
Supply Current
23A
Zero Power Detection
No
Mount Type
Surface
Package Type
Plastic eSIP
Minimum Supply Voltage
5V
Pin Count
16
Maximum Supply Voltage
12V
Minimum Operating Temperature
-40°C
Length
16mm
Height
1.96mm
Standards/Approvals
No
Maximum Operating Temperature
150°C
Automotive Standard
No
Product Details
The Power Integrations e HiperPFS-4 family PFC controller has Integrated 600 V MOSFET T and diode option in a single, low-profile power package. It is optimized for high PF and efficiency across load range. HiperPFS-4 devices eliminate need for external current sense resistors and their associated power loss, and use an innovative control technique that adjusts the switching frequency over output load, input line voltage, and input line cycle.