DocumentCode :
2636692
Title :
Exactly analysis of ZVS behavior for class E inverter with resonant components varying
Author :
Li, Yen-Fang ; Sue, Shinn-Ming
Author_Institution :
Dept. of Elec. Eng., Minghsin Univ. of Sci. & Technol., Hsinchu, Taiwan
fYear :
2011
fDate :
21-23 June 2011
Firstpage :
1245
Lastpage :
1250
Abstract :
Class E resonant power amplifier (or inverter) is often applied to design a high frequency switching power converter. The zero voltage switching (ZVS) or zero current switching (ZCS) operation leads the converter to high converting efficiency even the converter works at high frequency. Theoretically, with a high speed power transistor, the class E amplifier can work from several megahertzes to dozen of megahertzes. While the resonant components of class E inverter are varying, the ZVS operation will be shifting around the dominant operating point. In this paper, an exact circuit model is proposed to analyze the circuit behavior for the class E inverter. Unnecessarily mathematical assumption and complicated numerical iteration, the proposed model is easy to analyze the class E circuits in frequency domain. Through this model, a close form formula is proposed to solve the load current and drain-source end voltage of MOSFET at switching instants for steady state without a complicated numerical iterating. By this formula, the optimal and suboptimal conditions for the ZVS operation are expressed in terms of the shifting angle of load current with respect to drain-source voltage. Also, some practical design examples are given to demonstrate the formula calculating results that are good agreement with the numerical iterating results.
Keywords :
power MOSFET; power amplifiers; resonant invertors; switching convertors; zero current switching; zero voltage switching; MOSFET; ZCS; ZVS behavior; circuit behavior; class E circuits; class E inverter; class E resonant power amplifier; drain-source end voltage; exact circuit model; frequency domain; high frequency switching power converter; high speed power transistor; load current; resonant components varying; zero current switching; zero voltage switching; Inverters; MOSFET circuits; Mathematical model; Q factor; RLC circuits; Steady-state; Zero voltage switching; Class E inverter; Resonant power converter; ZVS drifting; components varying; zero voltage switching;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics and Applications (ICIEA), 2011 6th IEEE Conference on
Conference_Location :
Beijing
ISSN :
pending
Print_ISBN :
978-1-4244-8754-7
Electronic_ISBN :
pending
Type :
conf
DOI :
10.1109/ICIEA.2011.5975776
Filename :
5975776
Link To Document :
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