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Conference Paper: Measurement and modeling of stray capacitances in high frequency transformers
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TitleMeasurement and modeling of stray capacitances in high frequency transformers
 
AuthorsLu, HY1
Zhu, JG1
Ramsden, VS1
Hui, SYR1
 
KeywordsCapacitors
Computer Simulation
Electric Inductors
Electric Inverters
High Frequency Transformers
Ladder Networks
Magnetic Cores
Transformer Windings
 
Issue Date1999
 
PublisherIEEE
 
CitationPesc Record - Ieee Annual Power Electronics Specialists Conference, 1999, v. 2, p. 763-768 [How to Cite?]
 
AbstractThis paper proposes an approach to incorporate stray capacitances into a dynamic circuit model of high frequency transformers. The measuring techniques for stray capacitances in high frequency transformers and inductors are presented. A 500W transformer in a full bridge inverter operating at 25 kHz has been simulated with the new model and the theoretical results are confirmed by experiments.
 
ISSN0275-9306
 
DC FieldValue
dc.contributor.authorLu, HY
 
dc.contributor.authorZhu, JG
 
dc.contributor.authorRamsden, VS
 
dc.contributor.authorHui, SYR
 
dc.date.accessioned2011-07-29T02:13:08Z
 
dc.date.available2011-07-29T02:13:08Z
 
dc.date.issued1999
 
dc.description.abstractThis paper proposes an approach to incorporate stray capacitances into a dynamic circuit model of high frequency transformers. The measuring techniques for stray capacitances in high frequency transformers and inductors are presented. A 500W transformer in a full bridge inverter operating at 25 kHz has been simulated with the new model and the theoretical results are confirmed by experiments.
 
dc.description.naturelink_to_subscribed_fulltext
 
dc.identifier.citationPesc Record - Ieee Annual Power Electronics Specialists Conference, 1999, v. 2, p. 763-768 [How to Cite?]
 
dc.identifier.epage768
 
dc.identifier.issn0275-9306
 
dc.identifier.scopuseid_2-s2.0-0033352646
 
dc.identifier.spage763
 
dc.identifier.urihttp://hdl.handle.net/10722/136851
 
dc.identifier.volume2
 
dc.languageeng
 
dc.publisherIEEE
 
dc.publisher.placeUnited States
 
dc.relation.ispartofPESC Record - IEEE Annual Power Electronics Specialists Conference
 
dc.subjectCapacitors
 
dc.subjectComputer Simulation
 
dc.subjectElectric Inductors
 
dc.subjectElectric Inverters
 
dc.subjectHigh Frequency Transformers
 
dc.subjectLadder Networks
 
dc.subjectMagnetic Cores
 
dc.subjectTransformer Windings
 
dc.titleMeasurement and modeling of stray capacitances in high frequency transformers
 
dc.typeConference_Paper
 
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<item><contributor.author>Lu, HY</contributor.author>
<contributor.author>Zhu, JG</contributor.author>
<contributor.author>Ramsden, VS</contributor.author>
<contributor.author>Hui, SYR</contributor.author>
<date.accessioned>2011-07-29T02:13:08Z</date.accessioned>
<date.available>2011-07-29T02:13:08Z</date.available>
<date.issued>1999</date.issued>
<identifier.citation>Pesc Record - Ieee Annual Power Electronics Specialists Conference, 1999, v. 2, p. 763-768</identifier.citation>
<identifier.issn>0275-9306</identifier.issn>
<identifier.uri>http://hdl.handle.net/10722/136851</identifier.uri>
<description.abstract>This paper proposes an approach to incorporate stray capacitances into a dynamic circuit model of high frequency transformers. The measuring techniques for stray capacitances in high frequency transformers and inductors are presented. A 500W transformer in a full bridge inverter operating at 25 kHz has been simulated with the new model and the theoretical results are confirmed by experiments.</description.abstract>
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<publisher>IEEE</publisher>
<relation.ispartof>PESC Record - IEEE Annual Power Electronics Specialists Conference</relation.ispartof>
<subject>Capacitors</subject>
<subject>Computer Simulation</subject>
<subject>Electric Inductors</subject>
<subject>Electric Inverters</subject>
<subject>High Frequency Transformers</subject>
<subject>Ladder Networks</subject>
<subject>Magnetic Cores</subject>
<subject>Transformer Windings</subject>
<title>Measurement and modeling of stray capacitances in high frequency transformers</title>
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Author Affiliations
  1. University of Technology Sydney