2006Unpublished venueRequires access

Experimental Results fortheSingleCapacitor SingleInductor Active Snubber

Gerardo Ceglia, Victor Guzmain, Julio Walter

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Abstract

In this workthepractical results obtained with theSingleCapacitor SingleInductorActiveSnubber (SCSIAS)circuit usingthe DiodeBridgeSwitch Configuration arepresented, proving theadvantages ofthis proposedtopology,whichcanbe implemented with minimumcomponentcount.The SCSIASconfiguration ensures thatthemainpowerdevices undergo a ZVS off- commutation and a ZCS on-commutation, minimizing commutation losses inalloperating conditions. Snubber topology alsoensures thatmostauxiliary commutations take place underzerovoltage/zero current conditions.

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What this paper is about

In this workthepractical results obtained with theSingleCapacitor SingleInductorActiveSnubber (SCSIAS)circuit usingthe DiodeBridgeSwitch Configuration arepresented, proving theadvantages ofthis proposedtopology,whichcanbe implemented with minimumcomponentcount.The SCSIASconfiguration ensures thatthemainpowerdevices undergo a ZVS off- commutation and a ZCS on-commutation, minimizing commutation losses inalloperating conditions. Snubber topology alsoensures thatmostauxiliary commutations take place underzerovoltage/zero current conditions.

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Available abstract

In this workthepractical results obtained with theSingleCapacitor SingleInductorActiveSnubber (SCSIAS)circuit usingthe DiodeBridgeSwitch Configuration arepresented, proving theadvantages ofthis proposedtopology,whichcanbe implemented with minimumcomponentcount.The SCSIASconfiguration ensures thatthemainpowerdevices undergo a ZVS off- commutation and a ZCS on-commutation, minimizing commutation losses inalloperating conditions. Snubber topology alsoensures thatmostauxiliary commutations take place underzerovoltage/zero current conditions.

Key concepts: Snubber, Commutation, Control theory (sociology), Topology (electrical circuits), Current (fluid), Computer science, Mathematics, Engineering

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