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The 600 V CoolMOS CFD7 SJ MOSFET takes performance to a whole new level

Monday, November 27, 2017

With the 600 V CoolMOS ™ CFD7, Infineon Technologies AG introduces the latest high-voltage super-junction MOSFET technology. The 600 V CoolMOS ™ CFD7 is a new addition to the CoolMOS 7 family. This new MOSFET meets the resonant topology needs of the high-power SMPS market. Its soft-switching topologies such as LLC and ZVS PSFB deliver industry-leading efficiency and reliability. This makes it ideal for high-power SMPS applications such as servers, telecom equipment and electric vehicle charging stations.

The predecessor of the 600 V CoolMOS CFD7 is the CoolMOS CFD2. The new MOSFET is 1.45% more efficient than its predecessor or competitive product. Not only does it have all the advantages of fast switching technology, it also combines high phase stability without compromising ease of deployment in the design process. The 600 V CoolMOS CFD7 has lower gate charge (Qg) and better shutdown performance. In addition, its reverse recovery charge (Qrr) is as much as 69% lower than competing products on the market. The 600 V CoolMOS CFD7 provides industry-leading solutions for THD and SMD devices to support high power density solutions.

CoolMOS CFD7

Availability

The 600 V CoolMOS CFD7 is currently in volume production and samples are available for purchase.

More Infineon MOSFET products

Part Number  Mfg Code   Stock(pcs

 RoHS 

 Category

 Unit Price($) 

SPW47N60CFD

Infineon 

446

RoHS

MOSFET N-CH 600V 46A TO-247

RFQ

SPW35N60CFD

Infineon 

1236

RoHS

3.72

Infineon 

316

RoHS

MOSFET N-CH 650V 21.7A TO-247

RFQ

 

SPW24N60CFD

Infineon 

15

RoHS

MOSFET N-CH 650V 21.7A TO-247

RFQ

SPW20N60CFD

Infineon 

81

RoHS

MOSFET N-CH 650V 20.7A TO-247

RFQ

SPW15N60CFD

Infineon  172 RoHS
MOSFET N-CH 650V 13.4A TO-247
RFQ

SPW11N60CFD

Infineon 

678

RoHS

MOSFET N-CH 650V 11A TO-247
RFQ
SPP24N60CFD

Infineon 

139  RoHS  
MOSFET N-CH 650V 21.7A TO-220
 RFQ
 SPP20N60CFDXKSA1 Infineon  5055  RoHS  
MOSFET N-CH 650V 20.7A TO-220
 RFQ

 Author:Brittany Antonia (The author of article owns the copyright.)   

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