DocumentCode
2464975
Title
Soft switching and optimal resonance conditions of APWM HB flyback converter for high efficiency under high output current
Author
Jung, Jee-Hoon ; Kwon, Joong-Gi
Author_Institution
Digital Printing Div., Samsung Electron. Co., Ltd., Suwon
fYear
2008
fDate
15-19 June 2008
Firstpage
2994
Lastpage
3000
Abstract
The soft switching and optimal resonance conditions of the asymmetrical pulse-width modulated (APWM) half-bridge (HB) flyback converter for high efficiency under high output current are proposed. This converter can operate under high efficiency by using soft switching techniques such as the zero-voltage switching (ZVS) of primary power switches and the zero-current switching (ZCS) of output rectifiers. Under high output current condition, however, the converter satisfied with the ZCS of output rectifiers does not always have higher efficiency than no ZCS cases. The ZCS condition grows the rms value of the output rectifier current to finish its resonance operation transferring power from the primary side to the secondary. This high rms current increases the conduction loss of the transformerpsilas secondary wire and output rectifier, especially the synchronous rectifier (SR). Therefore, the resonance should be considered by several factors such as the conduction loss of the output rectifier and its reverse recovery loss. Experimental results using a 300 W APWM HB converter are obtained to verify the suggested efficiency-optimal conditions by demonstrating the efficiency data of the converter under load variations.
Keywords
PWM power convertors; PWM rectifiers; asymmetrical pulse-width modulated half-bridge flyback converter; optimal resonance conditions; power 300 W; power switches; soft switching; synchronous rectifier; zero-current switching; zero-voltage switching; Load management; Pulse modulation; Pulse width modulation converters; Rectifiers; Resonance; Strontium; Switching converters; Wire; Zero current switching; Zero voltage switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Specialists Conference, 2008. PESC 2008. IEEE
Conference_Location
Rhodes
ISSN
0275-9306
Print_ISBN
978-1-4244-1667-7
Electronic_ISBN
0275-9306
Type
conf
DOI
10.1109/PESC.2008.4592407
Filename
4592407
Link To Document