A Double Inverted F-Shape Patch Antenna for Dual-Band Operation

A double inverted F-shape patch antenna is presented for dual-band operation. The proposed antenna is comprised of circular and rectangular slots on a printed circuit board of 40 mm × 40 mm × 1.6 mm with a 50 Ω microstrip transmission line. Commercially available high frequency structural simulator...

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Main Authors: M. M. Islam, M. R. I. Faruque, W. Hueyshin, J. S. Mandeep, T. Islam
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:International Journal of Antennas and Propagation
Online Access:http://dx.doi.org/10.1155/2014/791521
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author M. M. Islam
M. R. I. Faruque
W. Hueyshin
J. S. Mandeep
T. Islam
author_facet M. M. Islam
M. R. I. Faruque
W. Hueyshin
J. S. Mandeep
T. Islam
author_sort M. M. Islam
collection DOAJ
description A double inverted F-shape patch antenna is presented for dual-band operation. The proposed antenna is comprised of circular and rectangular slots on a printed circuit board of 40 mm × 40 mm × 1.6 mm with a 50 Ω microstrip transmission line. Commercially available high frequency structural simulator (HFSS) based on the finite element method (FEM) has been adopted in this investigation. It has a measured impedance bandwidths (2 : 1 VSWR) of 18.53% on the lower band and 7.8% on the upper band, respectively. It has achieved stable radiation efficiencies of 79.76% and 80.36% with average gains of 7.82 dBi and 5.66 dBi in the operating frequency bands. Moreover, numerical simulations have been indicated as an important uniformity with measured results.
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institution Kabale University
issn 1687-5869
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language English
publishDate 2014-01-01
publisher Wiley
record_format Article
series International Journal of Antennas and Propagation
spelling doaj-art-844f6fd0d69c4fb5aa2fd1c760925aef2025-02-03T06:07:08ZengWileyInternational Journal of Antennas and Propagation1687-58691687-58772014-01-01201410.1155/2014/791521791521A Double Inverted F-Shape Patch Antenna for Dual-Band OperationM. M. Islam0M. R. I. Faruque1W. Hueyshin2J. S. Mandeep3T. Islam4Centre for Space Science (ANGKASA), Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, MalaysiaCentre for Space Science (ANGKASA), Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, MalaysiaCentre for Space Science (ANGKASA), Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, MalaysiaDepartment of Electrical, Electronic and Systems Engineering, Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, MalaysiaDepartment of Electrical, Electronic and Systems Engineering, Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, MalaysiaA double inverted F-shape patch antenna is presented for dual-band operation. The proposed antenna is comprised of circular and rectangular slots on a printed circuit board of 40 mm × 40 mm × 1.6 mm with a 50 Ω microstrip transmission line. Commercially available high frequency structural simulator (HFSS) based on the finite element method (FEM) has been adopted in this investigation. It has a measured impedance bandwidths (2 : 1 VSWR) of 18.53% on the lower band and 7.8% on the upper band, respectively. It has achieved stable radiation efficiencies of 79.76% and 80.36% with average gains of 7.82 dBi and 5.66 dBi in the operating frequency bands. Moreover, numerical simulations have been indicated as an important uniformity with measured results.http://dx.doi.org/10.1155/2014/791521
spellingShingle M. M. Islam
M. R. I. Faruque
W. Hueyshin
J. S. Mandeep
T. Islam
A Double Inverted F-Shape Patch Antenna for Dual-Band Operation
International Journal of Antennas and Propagation
title A Double Inverted F-Shape Patch Antenna for Dual-Band Operation
title_full A Double Inverted F-Shape Patch Antenna for Dual-Band Operation
title_fullStr A Double Inverted F-Shape Patch Antenna for Dual-Band Operation
title_full_unstemmed A Double Inverted F-Shape Patch Antenna for Dual-Band Operation
title_short A Double Inverted F-Shape Patch Antenna for Dual-Band Operation
title_sort double inverted f shape patch antenna for dual band operation
url http://dx.doi.org/10.1155/2014/791521
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