Presentation 2017-08-25
Size reduction of a Broadside-coupled Split Ring Resonator Antenna
Makoto Sano, Keiju Yamada, Makoto Higaki,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Because of miniaturization of wireless devices, small antennas which can be printed on a circuit board are demanded. In our previous study, we proposed an electrically small antenna using one of metamaterial components, broadside-coupled split ring resonator (BC-SRR), as a radiating element. In this report, we present that the resonant frequency of a 1.5 mm×10 mm-BC-SRR antenna on a 2-layer substrate is lowered from 2.52 GHz to 2.00 GHz by adding L-shaped notches to the BC-SRR, without increasing the size of the BC-SRR. At the resonant frequency of 2.00 GHz, the proposed BC-SRR is as small as 1.00%×6.67% in terms of the wavelength. It is also presented that the resonant frequency of the proposed BC-SRR antenna is not dependent on the substrate size, and the resonant frequency is further lowered by forming BC-SRR on a 4-layer substrate.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Split ring resonator / Electrically small antenna / Metamaterial
Paper # AP2017-84
Date of Issue 2017-08-17 (AP)

Conference Information
Committee AP
Conference Date 2017/8/24(2days)
Place (in Japanese) (See Japanese page)
Place (in English) National Institute of Technology, Hakodate College
Topics (in Japanese) (See Japanese page)
Topics (in English) Antennas and Propagation
Chair Jiro Hirokawa(Tokyo Tech.)
Vice Chair Ryo Yamaguchi(SoftBank)
Secretary Ryo Yamaguchi(NTT DoCoMo)
Assistant Nobuyasu Takemura(Nippon Inst. of Tech.) / Satoshi Yamaguchi(Mitsubishi Electric)

Paper Information
Registration To Technical Committee on Antennas and Propagation
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Size reduction of a Broadside-coupled Split Ring Resonator Antenna
Sub Title (in English)
Keyword(1) Split ring resonator
Keyword(2) Electrically small antenna
Keyword(3) Metamaterial
1st Author's Name Makoto Sano
1st Author's Affiliation Corporate Research & Development Center, Toshiba Corporation(Toshiba)
2nd Author's Name Keiju Yamada
2nd Author's Affiliation Corporate Research & Development Center, Toshiba Corporation(Toshiba)
3rd Author's Name Makoto Higaki
3rd Author's Affiliation Corporate Research & Development Center, Toshiba Corporation(Toshiba)
Date 2017-08-25
Paper # AP2017-84
Volume (vol) vol.117
Number (no) AP-181
Page pp.pp.87-92(AP),
#Pages 6
Date of Issue 2017-08-17 (AP)