Presentation 2003/10/17
A Waveguide Switch Design Using Electromagnetic Bandgap Substrates(Component & Antenna)
Kim W., Kim M., Kim Y.H., Chang Y.K.,
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Abstract(in English) A waveguide switch design using electromagnetic bandgap (EBG) substrates as the 3cm-long covers for the top and bottom surfaces of a standard Ku-band waveguide have been investigated. The gap size in the front side metal pattern determines the EBG resonant frequency at which the large surface impedance prevents TE_<10> mode from propagating in the waveguide. A simple modification to the EBG cover design can improve the switch frequency bandwidth performance. Experiments showed that varying the gap size in the EBG, thus changing the resonant frequency at different locations, produces an increase of 200 percent in the switch rejection bandwidth of better than 20 dB. The complete waveguide switch can be built by loading switching devices, such as RF MEMS switches or diodes, on the EBG to instantaneously convert the large surface impedance to regular metal impedance. Efforts are currently being made to fabricate monolithic MEMS-switchable EBG substrates for millimeter-wave applications.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Electromagnetic Bandgap Substrate / Waveguide Switch / RF MEMS Switch
Paper # SAT2003-132
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Committee SAT
Conference Date 2003/10/17(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A Waveguide Switch Design Using Electromagnetic Bandgap Substrates(Component & Antenna)
Sub Title (in English)
Keyword(1) Electromagnetic Bandgap Substrate
Keyword(2) Waveguide Switch
Keyword(3) RF MEMS Switch
1st Author's Name Kim W.
1st Author's Affiliation EE Department, Korea University()
2nd Author's Name Kim M.
2nd Author's Affiliation EE Department, Korea University
3rd Author's Name Kim Y.H.
3rd Author's Affiliation MAE Department, Seoul National University
4th Author's Name Chang Y.K.
4th Author's Affiliation AE Department, Hankuk Aviation University
Date 2003/10/17
Paper # SAT2003-132
Volume (vol) vol.103
Number (no) 386
Page pp.pp.-
#Pages 6
Date of Issue