DocumentCode :
2637679
Title :
Current driven synchronous rectifier for LLC resonant converter with a novel integrated current transformer
Author :
Ho, Godwin Kwun Yuan ; Ruiyang Yu ; Pong, B.M.H.
fYear :
2012
fDate :
27-29 March 2012
Firstpage :
1
Lastpage :
5
Abstract :
This paper proposes a synchronous rectifier with a current transformer integrated with the main transformer. This Integrated Synchronous Rectifier is insensitive to parasitic inductance. It is completely self-contained and needs no external power supply. The integrated current transformer reduces circuit joints in the power path and makes the system more compact. A 0.5mΩ soldering joint in 25A current path produces 0.31W loss. A method to integrate the current transformer into the main transformer is explained. A model is suggested to explain the operation principle of the proposed Integrated Synchronous rectifier. An enhanced driving circuit is designed to provide accurate turn on and off timing for the synchronous rectifier MOSFET. A 300W 400V-12V converter is built to demonstrate the advantages of the proposed current driven synchronous rectifier. It can achieve 97.2% efficiency. There is 3.4% efficiency increase compared with schottky diode.
Keywords :
Schottky diodes; current transformers; driver circuits; power MOSFET; rectifiers; resonant power convertors; LLC resonant converter; Schottky diode; current 25 A; current driven synchronous rectifier; enhanced driving circuit; integrated current transformer; integrated synchronous rectifier; parasitic inductance; power 300 W; power path; resistance 0.5 mohm; soldering joint; synchronous rectifier MOSFET; voltage 12 V to 400 V; Current Driven Synchronous Rectifier; Integrated Current Transformer; LLC Resonant Converter;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Power Electronics, Machines and Drives (PEMD 2012), 6th IET International Conference on
Conference_Location :
Bristol
Electronic_ISBN :
978-1-84919-616-1
Type :
conf
DOI :
10.1049/cp.2012.0216
Filename :
6242066
Link To Document :
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