DocumentCode :
28039
Title :
Generalized Design Considerations and Analysis of Class-E Amplifier for Sinusoidal and Square Input Voltage Waveforms
Author :
Hayati, Mohsen ; Lotfi, Ahmad ; Kazimierczuk, Marian K. ; Sekiya, Hiroo
Author_Institution :
Dept. of Electr. Eng., Razi Univ., Kermanshah, Iran
Volume :
62
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
211
Lastpage :
220
Abstract :
In this paper, analytical expressions and design equations are presented for a class-E amplifier with MOSFET nonlinear drain-source capacitance and linear gate-drain parasitic capacitance, along with external linear shunt capacitance. The class-E amplifier characteristics are presented as functions of the ratio of the sum of the external linear shunt capacitance and the MOSFET linear gate-drain capacitance to the MOSFET drain-source junction capacitance when the switch voltage is zero. Although the effect of the MOSFET linear gate-drain capacitance is similar to that of the external linear shunt capacitance on the design of the class-E amplifier with a square input voltage, the difference between their effects should be considered for the sinusoidal input voltage, which is one of the most important suggestions in this paper. Additionally, analytical expressions of the output power capability is given, which is considerably affected by the external linear shunt capacitance. Two design examples are presented, taking into account as design specification the output power of 8.7 W and the operating frequency of 4 MHz, along with the PSpice-simulations and experimental waveforms.
Keywords :
MOSFET circuits; network analysis; network synthesis; power amplifiers; MOSFET drain-source junction capacitance; MOSFET nonlinear drain-source capacitance; class-E amplifier; external linear shunt capacitance; frequency 4 MHz; generalized design considerations; linear gate-drain parasitic capacitance; power 8.7 W; sinusoidal voltage waveforms; square input voltage waveforms; Capacitance; Logic gates; MOSFET; Power amplifiers; Power generation; Resistance; Switches; Class-E zero-voltage switching and the zero-derivative voltage switching (ZVS/ZDVS) conditions; external linear shunt capacitance; linear gate???drain capacitance; load resistance; nonlinear drain???source capacitance; output power;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2014.2327598
Filename :
6823684
Link To Document :
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