Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications
This paper introduces a new multilayered polymeric comb array antenna fabricated on a polydimethylsiloxane (PDMS) dielectric substrate. PDMS is selected due to its excellent electrical and mechanical properties such as low permittivity, water resistance and robustness. The polymeric comb array anten...
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my.utm.661292017-07-11T07:44:31Z http://eprints.utm.my/id/eprint/66129/ Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications Wan Muhamad, Wan Asilah Ngah, Razali Jamlos, Mohd. Faizal Ping, Jack Soh Ali, Mohd. Tarmizi Narbudowicz, Adam TK Electrical engineering. Electronics Nuclear engineering This paper introduces a new multilayered polymeric comb array antenna fabricated on a polydimethylsiloxane (PDMS) dielectric substrate. PDMS is selected due to its excellent electrical and mechanical properties such as low permittivity, water resistance and robustness. The polymeric comb array antenna consists of a zigzag array aligned at −90° with respect to the radiating patch with full ground plane. The radiating patch is embedded inside the PDMS substrate while the coaxial connector is located at the bottom of the transmission line. The proposed antenna functions from 22.649 to 27.792 GHz. Simulated and measured reflection coefficients and radiation patterns agreed well. A maximum gain of 9.856 dB is recorded at 25 GHz, indicating suitability for implementation in millimeter-wave applications. Springer 2017-01-01 Article PeerReviewed Wan Muhamad, Wan Asilah and Ngah, Razali and Jamlos, Mohd. Faizal and Ping, Jack Soh and Ali, Mohd. Tarmizi and Narbudowicz, Adam (2017) Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications. Applied Physics A: Materials Science and Processing, 123 (1). p. 105. ISSN 0947-8396 http://dx.doi.org/10.1007/s00339-016-0677-4 DOI:10.1007/s00339-016-0677-4 |
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TK Electrical engineering. Electronics Nuclear engineering Wan Muhamad, Wan Asilah Ngah, Razali Jamlos, Mohd. Faizal Ping, Jack Soh Ali, Mohd. Tarmizi Narbudowicz, Adam Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
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This paper introduces a new multilayered polymeric comb array antenna fabricated on a polydimethylsiloxane (PDMS) dielectric substrate. PDMS is selected due to its excellent electrical and mechanical properties such as low permittivity, water resistance and robustness. The polymeric comb array antenna consists of a zigzag array aligned at −90° with respect to the radiating patch with full ground plane. The radiating patch is embedded inside the PDMS substrate while the coaxial connector is located at the bottom of the transmission line. The proposed antenna functions from 22.649 to 27.792 GHz. Simulated and measured reflection coefficients and radiation patterns agreed well. A maximum gain of 9.856 dB is recorded at 25 GHz, indicating suitability for implementation in millimeter-wave applications. |
format |
Article |
author |
Wan Muhamad, Wan Asilah Ngah, Razali Jamlos, Mohd. Faizal Ping, Jack Soh Ali, Mohd. Tarmizi Narbudowicz, Adam |
author_facet |
Wan Muhamad, Wan Asilah Ngah, Razali Jamlos, Mohd. Faizal Ping, Jack Soh Ali, Mohd. Tarmizi Narbudowicz, Adam |
author_sort |
Wan Muhamad, Wan Asilah |
title |
Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
title_short |
Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
title_full |
Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
title_fullStr |
Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
title_full_unstemmed |
Bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
title_sort |
bandwidth enhancement of a multilayered polymeric comb array antenna for millimeter-wave applications |
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Springer |
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2017 |
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http://eprints.utm.my/id/eprint/66129/ http://dx.doi.org/10.1007/s00339-016-0677-4 |
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