Tunable SIW-based Evanescent-mode Cavity-backed Slot Antenna with Contactless Tuning
This paper presents a frequency reconfigurable evanescent-mode cavity-backed slot antenna (ECBSA) with a wide tuning range, high-power handling capability, and simplified manufacturing. The tuning mechanism consists of external long-range linear actuators and a contactless tuner disc to vary the cap...
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description | This paper presents a frequency reconfigurable evanescent-mode cavity-backed slot antenna (ECBSA) with a wide tuning range, high-power handling capability, and simplified manufacturing. The tuning mechanism consists of external long-range linear actuators and a contactless tuner disc to vary the capacitive loading of an evanescent-mode cavity. The antenna's operating frequency is tuned by changing the cavity's critical gap size. Radiation occurs through an annular slot aperture on the cavity's ground plane. The design is realized on a printed circuit board (PCB) using substrate-integrated waveguide (SIW) technology to facilitate easier system integration with other planar circuits. The fabricated prototype of the antenna shows 40% tuning from 1.71-2.58 GHz when the contactless tuner is displaced vertically across a distance of 508 μm. Measurement results for the peak realized gain of ECBSA is as high as 5.48 dB at the maximum operating frequency of 2.58 GHz. Due to a larger range of the cavity's critical gap sizes, achieved using external linear actuators, the power handling capability is higher than the typically used piezoelectric disk tuners in ECBSA design. The proposed antenna also exhibits the largest tuning range among the high-power mechanically-tuned cavity-backed slot antennas presented in the literature. |
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The tuning mechanism consists of external long-range linear actuators and a contactless tuner disc to vary the capacitive loading of an evanescent-mode cavity. The antenna's operating frequency is tuned by changing the cavity's critical gap size. Radiation occurs through an annular slot aperture on the cavity's ground plane. The design is realized on a printed circuit board (PCB) using substrate-integrated waveguide (SIW) technology to facilitate easier system integration with other planar circuits. The fabricated prototype of the antenna shows 40% tuning from 1.71-2.58 GHz when the contactless tuner is displaced vertically across a distance of 508 μm. Measurement results for the peak realized gain of ECBSA is as high as 5.48 dB at the maximum operating frequency of 2.58 GHz. Due to a larger range of the cavity's critical gap sizes, achieved using external linear actuators, the power handling capability is higher than the typically used piezoelectric disk tuners in ECBSA design. The proposed antenna also exhibits the largest tuning range among the high-power mechanically-tuned cavity-backed slot antennas presented in the literature.</description><identifier>ISSN: 2169-3536</identifier><identifier>EISSN: 2169-3536</identifier><identifier>DOI: 10.1109/ACCESS.2023.3265571</identifier><identifier>CODEN: IAECCG</identifier><language>eng</language><publisher>Piscataway: IEEE</publisher><subject>Actuators ; Antenna design ; Antennas ; Circuit boards ; Circuit design ; contactless tuning ; evanescent-mode cavity ; Feeds ; Ground plane ; high-power ; Loading ; Piezoelectricity ; Printed circuits ; Resonator filters ; Slot antennas ; Substrate integrated waveguides ; substrate-integrated waveguide (SIW) ; Substrates ; Tunable slot antennas ; Tuners ; Tuning</subject><ispartof>IEEE access, 2023-01, Vol.11, p.1-1</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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The tuning mechanism consists of external long-range linear actuators and a contactless tuner disc to vary the capacitive loading of an evanescent-mode cavity. The antenna's operating frequency is tuned by changing the cavity's critical gap size. Radiation occurs through an annular slot aperture on the cavity's ground plane. The design is realized on a printed circuit board (PCB) using substrate-integrated waveguide (SIW) technology to facilitate easier system integration with other planar circuits. The fabricated prototype of the antenna shows 40% tuning from 1.71-2.58 GHz when the contactless tuner is displaced vertically across a distance of 508 μm. Measurement results for the peak realized gain of ECBSA is as high as 5.48 dB at the maximum operating frequency of 2.58 GHz. Due to a larger range of the cavity's critical gap sizes, achieved using external linear actuators, the power handling capability is higher than the typically used piezoelectric disk tuners in ECBSA design. The proposed antenna also exhibits the largest tuning range among the high-power mechanically-tuned cavity-backed slot antennas presented in the literature.</description><subject>Actuators</subject><subject>Antenna design</subject><subject>Antennas</subject><subject>Circuit boards</subject><subject>Circuit design</subject><subject>contactless tuning</subject><subject>evanescent-mode cavity</subject><subject>Feeds</subject><subject>Ground plane</subject><subject>high-power</subject><subject>Loading</subject><subject>Piezoelectricity</subject><subject>Printed circuits</subject><subject>Resonator filters</subject><subject>Slot antennas</subject><subject>Substrate integrated waveguides</subject><subject>substrate-integrated waveguide (SIW)</subject><subject>Substrates</subject><subject>Tunable slot antennas</subject><subject>Tuners</subject><subject>Tuning</subject><issn>2169-3536</issn><issn>2169-3536</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><sourceid>ESBDL</sourceid><sourceid>RIE</sourceid><sourceid>DOA</sourceid><recordid>eNpNUU1LxDAQLaKgqL9ADwXPXZPmo81xKasuLHjYFY9hkk7XrjXRJqv4741WxLnM8N68NwMvyy4omVFK1PW8aRbr9awkJZuxUgpR0YPspKRSFUwwefhvPs7OQ9iRVHWCRHWSbTZ7B2bAfL18LAwEbPPFOzgMFl0sXnyLeQPvffxMpH1O7HrwMZ-7iM5B_tHHp7zxLoKNA4aQJ7febc-yow6GgOe__TR7uFlsmrtidX-7bOarwnKiYmFUzQ3UUrUKhC07ShknRCkpaIvEtMaQjkgrFFZcQmuZotaUHLrSECugYqfZcvJtPez069i_wPipPfT6B_DjVsMYezugFpYrSyqLknVcSJvOSsBKCcU6yqxJXleT1-vo3_YYot75_ejS-7qsiaoVp7xOW2zasqMPYcTu7yol-jsNPaWhv9PQv2kk1eWk6hHxn4KoSnLBvgDq_oV4</recordid><startdate>20230101</startdate><enddate>20230101</enddate><creator>Agasti, Rosalind</creator><creator>Blosser, Clayton G.</creator><creator>Ruyle, Jessica E.</creator><creator>Sigmarsson, Hjalti H.</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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The tuning mechanism consists of external long-range linear actuators and a contactless tuner disc to vary the capacitive loading of an evanescent-mode cavity. The antenna's operating frequency is tuned by changing the cavity's critical gap size. Radiation occurs through an annular slot aperture on the cavity's ground plane. The design is realized on a printed circuit board (PCB) using substrate-integrated waveguide (SIW) technology to facilitate easier system integration with other planar circuits. The fabricated prototype of the antenna shows 40% tuning from 1.71-2.58 GHz when the contactless tuner is displaced vertically across a distance of 508 μm. Measurement results for the peak realized gain of ECBSA is as high as 5.48 dB at the maximum operating frequency of 2.58 GHz. Due to a larger range of the cavity's critical gap sizes, achieved using external linear actuators, the power handling capability is higher than the typically used piezoelectric disk tuners in ECBSA design. The proposed antenna also exhibits the largest tuning range among the high-power mechanically-tuned cavity-backed slot antennas presented in the literature.</abstract><cop>Piscataway</cop><pub>IEEE</pub><doi>10.1109/ACCESS.2023.3265571</doi><tpages>1</tpages><orcidid>https://orcid.org/0009-0002-9112-8511</orcidid><orcidid>https://orcid.org/0000-0001-8636-091X</orcidid><orcidid>https://orcid.org/0000-0002-7154-8183</orcidid><orcidid>https://orcid.org/0000-0002-3568-4241</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Actuators Antenna design Antennas Circuit boards Circuit design contactless tuning evanescent-mode cavity Feeds Ground plane high-power Loading Piezoelectricity Printed circuits Resonator filters Slot antennas Substrate integrated waveguides substrate-integrated waveguide (SIW) Substrates Tunable slot antennas Tuners Tuning |
title | Tunable SIW-based Evanescent-mode Cavity-backed Slot Antenna with Contactless Tuning |
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