Presentation 2017-10-26
Study on a Phase controlled Magnetron based on Full Wave Voltage Doubler
Bo Yang, Tomohiko Mitani, Naoki Shinohara,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Magnetrons have been widely used as microwave heating applications typified as microwave ovens. Theadvantages of magnetrons include high efficiency, low cost, and lightweight. However, the magnetrons have poorly stable output frequency, and high noise. Our research group has observed these disadvantages and developed the phase-controlled magnetron as the transmission apparatus of a wireless power transfer system. Until now, the power source of the phase-controlled magnetron is stabilized power supply which is expensive. In this study, using a full-wave voltage doubler circuit which is based on a power source of the microwave oven, we demonstrated the phase-controlled magnetron.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Phase-controlled Magnetron / Full-Wave Voltage Doubler Circuit / Phased-Array / Wireless power transfer
Paper # ED2017-41
Date of Issue 2017-10-19 (ED)

Conference Information
Committee ED
Conference Date 2017/10/26(2days)
Place (in Japanese) (See Japanese page)
Place (in English)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair Kunio Tsuda(Toshiba)
Vice Chair Michihiko Suhara(TMU)
Secretary Michihiko Suhara(New JRC)
Assistant Toshiyuki Oishi(Saga Univ.) / Tatsuya Iwata(TUT)

Paper Information
Registration To Technical Committee on Electron Devices
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Study on a Phase controlled Magnetron based on Full Wave Voltage Doubler
Sub Title (in English)
Keyword(1) Phase-controlled Magnetron
Keyword(2) Full-Wave Voltage Doubler Circuit
Keyword(3) Phased-Array
Keyword(4) Wireless power transfer
1st Author's Name Bo Yang
1st Author's Affiliation Kyoto University(Kyoto Univ.)
2nd Author's Name Tomohiko Mitani
2nd Author's Affiliation Kyoto University(Kyoto Univ.)
3rd Author's Name Naoki Shinohara
3rd Author's Affiliation Kyoto University(Kyoto Univ.)
Date 2017-10-26
Paper # ED2017-41
Volume (vol) vol.117
Number (no) ED-267
Page pp.pp.23-26(ED),
#Pages 4
Date of Issue 2017-10-19 (ED)