Technical Documents
Specifications
Brand
Power IntegrationsProduct Type
Capacitor Discharge IC
Series
MinE-CAP
Series Resistance
2mΩ
Mount Type
Surface
Package Type
SOP
Pin Count
12
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
105°C
Length
11.32mm
Height
2.16mm
Standards/Approvals
No
Automotive Standard
No
Product Details
The Power Integrations MinE-CAP is a bulk capacitor miniaturization and inrush management IC which dramatically shrinks the size of input bulk capacitors without compromising output ripple, operating efficiency or requiring redesign of the transformer. When compared to traditional techniques such as very high switching frequency operation, this IC achieves the same or greater overall power supply size reduction whilst avoiding the challenges of complex EMI filtering and the increased transformer or clamp dissipation associated with very high frequency designs. It has pin short-circuit and UV and OV fault reporting.
Stock information temporarily unavailable.
AED 17,334.00
AED 8.667 Each (On a Reel of 2000) (ex VAT)
AED 18,200.70
AED 9.10 Each (On a Reel of 2000) (inc. VAT)
2000
AED 17,334.00
AED 8.667 Each (On a Reel of 2000) (ex VAT)
AED 18,200.70
AED 9.10 Each (On a Reel of 2000) (inc. VAT)
Stock information temporarily unavailable.
2000
Technical Documents
Specifications
Brand
Power IntegrationsProduct Type
Capacitor Discharge IC
Series
MinE-CAP
Series Resistance
2mΩ
Mount Type
Surface
Package Type
SOP
Pin Count
12
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
105°C
Length
11.32mm
Height
2.16mm
Standards/Approvals
No
Automotive Standard
No
Product Details
The Power Integrations MinE-CAP is a bulk capacitor miniaturization and inrush management IC which dramatically shrinks the size of input bulk capacitors without compromising output ripple, operating efficiency or requiring redesign of the transformer. When compared to traditional techniques such as very high switching frequency operation, this IC achieves the same or greater overall power supply size reduction whilst avoiding the challenges of complex EMI filtering and the increased transformer or clamp dissipation associated with very high frequency designs. It has pin short-circuit and UV and OV fault reporting.