Presentation 2007-09-07
A propose for a high efficiency single stage PFC converter that employs extreme low-noise Serenity SMPS technology
Shin NAKAGAWA, Masahiko SUGIYAMA, Manabu SASA, Tamotsu NINOMIYA,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) A single-stage PFC converter using an extremely low noise "Serenity SMPS" is proposed. A high efficiency of 93.3% was obtained by an experimental breadboard. This paper describes its operational principle and some good features, and furthermore the self-oscillation specified for the optimum operation. Some characteristics such as harmonics reduction, power efficiency, power factor, and load characteristics are shown with experimental waveforms of voltage and current.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Voltage-mode resonance / ZVS / Self oscillation / Power-factor correction / Mains harmonics current / PFC / Single stage converter / High efficiency / Low-noise / Serenity power supply
Paper # EE2007-28
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Conference Information
Committee EE
Conference Date 2007/8/31(1days)
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Paper Information
Registration To Energy Engineering in Electronics and Communications (EE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A propose for a high efficiency single stage PFC converter that employs extreme low-noise Serenity SMPS technology
Sub Title (in English)
Keyword(1) Voltage-mode resonance
Keyword(2) ZVS
Keyword(3) Self oscillation
Keyword(4) Power-factor correction
Keyword(5) Mains harmonics current
Keyword(6) PFC
Keyword(7) Single stage converter
Keyword(8) High efficiency
Keyword(9) Low-noise
Keyword(10) Serenity power supply
1st Author's Name Shin NAKAGAWA
1st Author's Affiliation FIDELIX Co.()
2nd Author's Name Masahiko SUGIYAMA
2nd Author's Affiliation NAYUTA Co.
3rd Author's Name Manabu SASA
3rd Author's Affiliation NAYUTA Co.
4th Author's Name Tamotsu NINOMIYA
4th Author's Affiliation Dept. of EESE, Kyushu University
Date 2007-09-07
Paper # EE2007-28
Volume (vol) vol.107
Number (no) 211
Page pp.pp.-
#Pages 6
Date of Issue