DocumentCode
38465
Title
Improved Operation of SiC–BJT-Based Series Resonant Inverter With Optimized Base Drive
Author
Sarnago, Hector ; Lucia, O. ; Mediano, Arturo ; Burdio, Jose M.
Author_Institution
Dept. of Electron. Eng. & Commun., Univ. of Zaragoza, Zaragoza, Spain
Volume
29
Issue
10
fYear
2014
fDate
Oct. 2014
Firstpage
5097
Lastpage
5101
Abstract
New semiconductor technology is enabling the design of more reliable and high performance power converters. In particular, silicon carbide (SiC) technology provides faster switching times, higher operating temperature, and higher blocking voltage. Among the new SiC devices, bipolar junction transistors (BJTs) present interesting features in terms of conduction and switching losses. However, one of the main drawbacks is that these devices have low gain, requiring high base current to activate them. As a consequence, the base drive circuit becomes more complex and the final efficiency is decreased. This letter presents an optimized base drive circuit for a zero-voltage switching series resonant inverter. The proposed circuit maximizes the driver efficiency and minimizes the driver current requirements. Moreover, the proposed circuit optimizes the power converter switching conditions, increasing the converter efficiency. The proposed base drive circuit has been tested with a SiC-BJT-based series resonant inverter applied to induction heating.
Keywords
bipolar transistors; driver circuits; induction heating; network synthesis; optimisation; resonant invertors; silicon compounds; switching convertors; wide band gap semiconductors; BJT; SiC; bipolar junction transistors; driver current requirements; driver efficiency; induction heating; optimized base drive circuit; power converter switching conditions; power converters; semiconductor technology; silicon carbide technology; switching losses; zero-voltage switching series resonant inverter; Driver circuits; RLC circuits; Resonant inverters; Silicon carbide; Transistors; Zero voltage switching; Induction heating (IH); inverter; resonant power conversion;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2014.2312216
Filename
6774481
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