DocumentCode
3441626
Title
Design methodology for a very high frequency resonant boost converter
Author
Burkhart, Justin M. ; Korsunsky, Roman ; Perreault, David J.
Author_Institution
Lab. for Electromagn. & Electron. Syst., Massachusetts Inst. of Technol., Cambridge, MA, USA
fYear
2010
fDate
21-24 June 2010
Firstpage
1902
Lastpage
1909
Abstract
This document introduces a design methodology for a resonant boost converter topology that is suitable for operation at very high frequencies. The topology we examine features a low parts count and fast transient response but suffers from higher device stresses compared to other topologies that use a larger number of passive components. A numerical design procedure is developed for this topology that does not rely on time-domain simulation sweeps across parameters. This allows the optimal converter design to be found for a particular main semiconductor switch. If an integrated power process is used where the designer has control over layout of the semiconductor switch, the optimal combination of converter design and semiconductor layout can be found. To validate the proposed converter topology and design approach, a 75 MHz prototype converter is designed and experimentally demonstrated. The performance of the prototype closely matches that predicted by the design procedure, and achieves good efficiency over a wide input voltage range.
Keywords
resonant power convertors; semiconductor switches; time-domain analysis; frequency 75 MHz; integrated power process; numerical design procedure; optimal converter design; resonant boost converter topology; semiconductor switch; time-domain simulation; very high frequency resonant boost converter; Design methodology; Frequency conversion; Power semiconductor switches; Prototypes; Resonance; Resonant frequency; Stress; Switching converters; Topology; Transient response;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Conference (IPEC), 2010 International
Conference_Location
Sapporo
Print_ISBN
978-1-4244-5394-8
Type
conf
DOI
10.1109/IPEC.2010.5542054
Filename
5542054
Link To Document