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Featured researches published by Seiichi Yamada.


IEEE Transactions on Power Delivery | 2000

Improved zinc oxide surge arresters using high voltage gradient 300 V/mm, 400 V/mm ZnO elements

Shingo Shirakawa; Seiichi Yamada; Shigeru Tanaka; Iwao Ejiri; Satoshi Watahiki; Shinichi Kondo

Zinc oxide surge arresters using zinc oxide (ZnO) elements have been widely used for insulation coordination in the worlds power systems. These ZnO elements have basically reference voltage of about 200 V/mm. Recently, new ZnO elements having about 1.5, 2 times high voltage gradient zinc oxide element have been developed. This paper describes applications of high voltage gradient 300 V/mm ZnO elements to high performance porcelain type surge arresters and oil immersed surge arresters, and 300 V/mm or 400 V/mm ZnO elements to gas insulated tank type surge arresters for power systems. Adequate selection of voltage gradient of ZnO elements makes more compact design of the surge arresters.


IEEE Transactions on Power Delivery | 1999

Application of high voltage gradient zinc oxide elements to SF/sub 6/ gas insulated surge arresters for 22 kV-765 kV power systems

Shingo Shirakawa; I. Ejiri; Satoshi Watahiki; N. Iimura; S. Nakano; Seiichi Yamada; Shinichi Kondo

Zinc oxide elements have been developed for the surge arrester elements. Basically, these zinc oxide elements are evaluated by the reference voltage V/sub N/mA. Newly developed high voltage gradient zinc oxide elements have about twice value V/sub N/mA/mm of normal zinc oxide elements. This paper describes the application of the high voltage gradient zinc oxide elements to SF/sub 6/ gas insulated tank type surge arresters for 22 kV-765 kV power systems.


Archive | 1987

Magnetic head containing amorphous alloy and crystallizable glass

Seiichi Yamada; Takashi Naitoh; Takashi Namekawa; Akira Ikegami; Ryoo Gotoo; Toshikazu Nishiyama


Archive | 1986

Magnetic head having layers of amorphous magnetic alloy bonded together with a glass containing vandium oxide phosphorus oxide and antimony oxide

Takashi Naitoh; Takashi Namekawa; Seiichi Yamada; Satoru Ogihara; Juichi Morikawa


Archive | 1983

Infrared ray radiator

Ken Takahashi; Riyuutarou Jinbo; Yasuo Matsushita; Seiichi Yamada; Kousuke Nakamura


Electrical Engineering in Japan | 1996

Temporary overvoltage capability of surge arresters for 1000 kV power systems

Yasuhiko Nakada; Seiichi Yamada; Kazuya Oishi; Shingo Shirakawa


Archive | 1994

Magnetic head including PbO-V2 O5 -P2 O5 system glass bonding

Takashi Naitoh; Takashi Namekawa; Seiichi Yamada; Kunihiro Maeda; Kenkichi Inada


Journal of The Ceramic Society of Japan | 2000

Effect of Al2O3, MgO and SiO2 Additives on Electrical Resistivity and Sintering Property of ZnO Ceramics

Moritaka Shoji; Shigeru Tanaka; Shingo Shirakawa; Seiichi Yamada


Archive | 1996

Ceramic resistor, production method thereof, neutral grounding resistor and circuit breaker

Moritaka Syouji; Tadashi Kitami; Seiichi Yamada; Ken Takahashi; Shingo Shirakawa; Takeo Yamazaki; Shigeru Tanaka; Shigehisa Motowaki


Archive | 1995

Method of fabricating non-linear resistor

Seiichi Yamada; Shigeru Tanaka; Moritaka Shoji; Shigehisa Motowaki; Ken Takahashi; Shingo Shirakawa; Shinichi Oowada; Takeo Yamazaki

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