Presentation 2017-11-22
Analysis for Skin Surface Temperature Rise Under Convergence Beam Exposure of 40GHz and 95GHz Millimeter Wave
Hiroki Sakiyama, Atsuhiro Nishikata, Kensuke Sasaki, Yoshikazu Ugawa,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) While expanding use of millimeter wave is progressing, experimental data for establishing safety guide- line considering the action on living organisms due to millimeter wave exposure is required. Therefore, 95 GHz and 40 GHz millimeter wave perception experiments were conducted in 2015-2017 Ministry of Internal Affairs and Communications’ Bioelectromagnetic Environmental Studies"Thermal perception threshold in millimeter wave ex- posure". The effect on the living body by millimeter waves is dominated by thermal effect, and it is important to clarify the temperature rise during millimeter wave exposure in assessing exposure. Therefore, from the data obtained in this experiment, we analyzed the skin surface temperature rise due to millimeter-wave focused beam exposure.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Millimeter Wave / Exposure / Temperature Rise / Transient characteristics
Paper # EMCJ2017-64
Date of Issue 2017-11-15 (EMCJ)

Conference Information
Committee EMCJ
Conference Date 2017/11/22(1days)
Place (in Japanese) (See Japanese page)
Place (in English) Kikai-Shinko-Kaikan Bldg.
Topics (in Japanese) (See Japanese page)
Topics (in English) Young Scientist Meeting
Chair Osami Wada(Kyoto Univ.)
Vice Chair Kensei Oh(Nagoya Inst. of Tech.)
Secretary Kensei Oh(AIST)
Assistant Shinichiro Yamamoto(Univ. of Hyogo) / Chie Sasaki(Panasonic) / Shinobu Nagasawa(Mitsubishi Electric)

Paper Information
Registration To Technical Committee on Electromagnetic Compatibility
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Analysis for Skin Surface Temperature Rise Under Convergence Beam Exposure of 40GHz and 95GHz Millimeter Wave
Sub Title (in English)
Keyword(1) Millimeter Wave
Keyword(2) Exposure
Keyword(3) Temperature Rise
Keyword(4) Transient characteristics
1st Author's Name Hiroki Sakiyama
1st Author's Affiliation Tokyo Institute of Technology(Titech)
2nd Author's Name Atsuhiro Nishikata
2nd Author's Affiliation Tokyo Institute of Technology(Titech)
3rd Author's Name Kensuke Sasaki
3rd Author's Affiliation National Institute of Information and Communications Technology(NICT)
4th Author's Name Yoshikazu Ugawa
4th Author's Affiliation Fukushima Medical University(FMU)
Date 2017-11-22
Paper # EMCJ2017-64
Volume (vol) vol.117
Number (no) EMCJ-319
Page pp.pp.1-6(EMCJ),
#Pages 6
Date of Issue 2017-11-15 (EMCJ)