Presentation 2001/6/15
A fundamental study of quarter-wavelength wave absorber using an FSS for milimeter-wave bands
Akihiko Itou, Osamu Hashimoto,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Resistive-type wave absorbers are fabricated by using a frequency selective surface (FSS) for millimeter-wave frequency at 60GHz (V-band) and 76GHz (W-band). The good shield and absorption characteristics are obtained at V and W bands for the vertical incidence. In addition, the absorption characteristics of each absorber are measured under the condition that the incident angle is changed. The difference between calculated and measured results appeared by the transmission line theory using the equivalent circuit under the condition that the reflector is assumed to be the metal plate. However the absorption of 20dB or more is obtained at 60GHz under the incident angle ranging from 5 to 40 degrees. As for 76GHz band version, the absorption of 20dB or more is also achieved under the incident angle ranging from 5 to 45 degrees. As a result, comparatively wide angle characteristics were obtained by the millimeter-wave absorbers using FSS.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Wave absorber / FSS / Resistive-film / millimeter-wave / Frequency selectivity
Paper # EMCJ2001-20
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Conference Information
Committee EMCJ
Conference Date 2001/6/15(1days)
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Paper Information
Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A fundamental study of quarter-wavelength wave absorber using an FSS for milimeter-wave bands
Sub Title (in English)
Keyword(1) Wave absorber
Keyword(2) FSS
Keyword(3) Resistive-film
Keyword(4) millimeter-wave
Keyword(5) Frequency selectivity
1st Author's Name Akihiko Itou
1st Author's Affiliation Technical Research Institute, TOPPAN PRINTING CO., LTD.()
2nd Author's Name Osamu Hashimoto
2nd Author's Affiliation College of Science and Engineering, Aoyama Gakuin University
Date 2001/6/15
Paper # EMCJ2001-20
Volume (vol) vol.101
Number (no) 129
Page pp.pp.-
#Pages 7
Date of Issue