Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications

This paper presents a resonant converter with the benefits of wide output voltage, wide soft switching characteristics for power devices and high circuit efficiency. Since the series resonant circuit is adopted on the primary side, the power switches are turned on under zero voltage switching and po...

Full description

Bibliographic Details
Main Authors: Bor-Ren Lin, Guan-Hong Lin, Aries Jian
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/8/1/3
id doaj-e7296f8efacc4d2080a6ad3e9b8d7193
record_format Article
spelling doaj-e7296f8efacc4d2080a6ad3e9b8d71932020-11-24T21:53:41ZengMDPI AGElectronics2079-92922018-12-0181310.3390/electronics8010003electronics8010003Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power ApplicationsBor-Ren Lin0Guan-Hong Lin1Aries Jian2Department of Electrical Engineering, National Yunlin University of Science and Technology, Yunlin 640, TaiwanDepartment of Electrical Engineering, National Yunlin University of Science and Technology, Yunlin 640, TaiwanMean Well Enterprises Co., Ltd., New Taipei City 24891, TaiwanThis paper presents a resonant converter with the benefits of wide output voltage, wide soft switching characteristics for power devices and high circuit efficiency. Since the series resonant circuit is adopted on the primary side, the power switches are turned on under zero voltage switching and power diodes on the secondary side can be turned off under zero current switching. To overcome the drawback of narrow voltage operation range in the conventional resonant converter, full-bridge rectifier and voltage-doubler rectifier topologies are employed on the secondary side for low-voltage output and high-voltage output applications. Therefore, the voltage rating of power devices on the secondary side is clamped at output voltage, rather than two times output voltage, in the center-tapped rectifier circuit. Synchronous power switches are used on the secondary side to further reduce the conduction losses so that the circuit efficiency can be further improved. To verify the theoretical analysis and circuit performance, a laboratory prototype with 1 kW rated power was built and tested.https://www.mdpi.com/2079-9292/8/1/3soft switchingresonant converterwide output voltage
collection DOAJ
language English
format Article
sources DOAJ
author Bor-Ren Lin
Guan-Hong Lin
Aries Jian
spellingShingle Bor-Ren Lin
Guan-Hong Lin
Aries Jian
Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications
Electronics
soft switching
resonant converter
wide output voltage
author_facet Bor-Ren Lin
Guan-Hong Lin
Aries Jian
author_sort Bor-Ren Lin
title Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications
title_short Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications
title_full Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications
title_fullStr Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications
title_full_unstemmed Resonant Converter with Voltage-Doubler Rectifier or Full-Bridge Rectifier for Wide-Output Voltage and High-Power Applications
title_sort resonant converter with voltage-doubler rectifier or full-bridge rectifier for wide-output voltage and high-power applications
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2018-12-01
description This paper presents a resonant converter with the benefits of wide output voltage, wide soft switching characteristics for power devices and high circuit efficiency. Since the series resonant circuit is adopted on the primary side, the power switches are turned on under zero voltage switching and power diodes on the secondary side can be turned off under zero current switching. To overcome the drawback of narrow voltage operation range in the conventional resonant converter, full-bridge rectifier and voltage-doubler rectifier topologies are employed on the secondary side for low-voltage output and high-voltage output applications. Therefore, the voltage rating of power devices on the secondary side is clamped at output voltage, rather than two times output voltage, in the center-tapped rectifier circuit. Synchronous power switches are used on the secondary side to further reduce the conduction losses so that the circuit efficiency can be further improved. To verify the theoretical analysis and circuit performance, a laboratory prototype with 1 kW rated power was built and tested.
topic soft switching
resonant converter
wide output voltage
url https://www.mdpi.com/2079-9292/8/1/3
work_keys_str_mv AT borrenlin resonantconverterwithvoltagedoublerrectifierorfullbridgerectifierforwideoutputvoltageandhighpowerapplications
AT guanhonglin resonantconverterwithvoltagedoublerrectifierorfullbridgerectifierforwideoutputvoltageandhighpowerapplications
AT ariesjian resonantconverterwithvoltagedoublerrectifierorfullbridgerectifierforwideoutputvoltageandhighpowerapplications
_version_ 1725870662926467072