Bridgeless PFC Boost Rectifier with Optimized. Magnetic Utilization. Yungtaek Jang, Milan M. Jovanović, and David L. Dillman. Power Electronics Laboratory. A Bridgeless PFC Boost Rectifier With Optimized Magnetic Utilization. Authors: Jang, Yungtaek; Jovanovic, Milan M. Publication: IEEE Transactions on Power. Page Closed Loop Performance Evaluation of Bridgeless PFC Boost Rectifier with Optimized Magnetic Utilization. hiraja1, 2.

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Skip to search form Skip to main content. The proposed implementation employs a unique multiple-winding, multicore inductor to increase the utilization of the magnetic material.

A Bridgeless PFC Boost Rectifier With Optimized Magnetic Utilization

The operation and performance of the circuit were verified on a Hoost, universal-line experimental prototype operating at kHz. This paper has citations. From This Paper Figures, tables, and topics from this paper. Bridge graph theory Search for additional papers on this topic. Topics Discussed in This Paper.


Multi-core processor Prototype Inductor Device Component.

Citations Publications citing this paper. Showing of extracted citations. An improved single-phase active front end rectifier system for use with three-phase variable frequency drives Mahesh M.

A Bridgeless PFC Boost Rectifier With Optimized Magnetic Utilization – Semantic Scholar

A Review Yong ChenW. PraneethSheldon S.

NeathJohn T. Citation Statistics Citations 0 10 20 30 ’10 ’12 ’14 ’16 ‘ Semantic Scholar estimates that this publication has citations based on the available data.

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Integrated magnetics for current-doubler rectifiers Jian SunK. Second generation of PFC solutions.

A Bridgeless PFC Boost Rectifier With Optimized Magnetic Utilization

Design of V voltage regulator modules with a novel integrated magnetics. High efficiency flyback converter using synchronous rectification.

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