Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter

This paper focuses on the analysis to find suitable locations to place dielectric resonators on microstrip transmission line in order to obtain a high coupling effect. A novel design of an X-Band bandpass filter from a combination of a simple transmission line and three cylindrical dielectric r...

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Main Authors: Ain, M.F., Ahmad, Z.A., Othman, M.A., Zubir, I.A., Hutagalung, S.D., Sulaiman, A. A., Othman, A.K.
Format: Article
Language:English
Published: IEEE 2010
Subjects:
Online Access:http://ir.unimas.my/id/eprint/16322/
http://ir.unimas.my/id/eprint/16322/1/Quarter%20Wavelength%20Matching%20in%20Dielectric%20Resonator%28abstract%29.pdf
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author Ain, M.F.
Ahmad, Z.A.
Othman, M.A.
Zubir, I.A.
Hutagalung, S.D.
Sulaiman, A. A.
Othman, A.K.
author_facet Ain, M.F.
Ahmad, Z.A.
Othman, M.A.
Zubir, I.A.
Hutagalung, S.D.
Sulaiman, A. A.
Othman, A.K.
author_sort Ain, M.F.
building UNIMAS Institutional Repository
collection Online Access
description This paper focuses on the analysis to find suitable locations to place dielectric resonators on microstrip transmission line in order to obtain a high coupling effect. A novel design of an X-Band bandpass filter from a combination of a simple transmission line and three cylindrical dielectric resonators are used in this analysis. The three dielectric resonators are same in permittivity and radius of 60 and 2.55 mm, respectively. This analysis found that the coupling effect can be maximized by placing dielectric resonators a distance of quarter or half wavelength from each other.
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institution Universiti Malaysia Sarawak
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language English
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publishDate 2010
publisher IEEE
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spelling unimas-163222017-05-18T02:48:14Z http://ir.unimas.my/id/eprint/16322/ Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter Ain, M.F. Ahmad, Z.A. Othman, M.A. Zubir, I.A. Hutagalung, S.D. Sulaiman, A. A. Othman, A.K. TK Electrical engineering. Electronics Nuclear engineering This paper focuses on the analysis to find suitable locations to place dielectric resonators on microstrip transmission line in order to obtain a high coupling effect. A novel design of an X-Band bandpass filter from a combination of a simple transmission line and three cylindrical dielectric resonators are used in this analysis. The three dielectric resonators are same in permittivity and radius of 60 and 2.55 mm, respectively. This analysis found that the coupling effect can be maximized by placing dielectric resonators a distance of quarter or half wavelength from each other. IEEE 2010 Article PeerReviewed text en http://ir.unimas.my/id/eprint/16322/1/Quarter%20Wavelength%20Matching%20in%20Dielectric%20Resonator%28abstract%29.pdf Ain, M.F. and Ahmad, Z.A. and Othman, M.A. and Zubir, I.A. and Hutagalung, S.D. and Sulaiman, A. A. and Othman, A.K. (2010) Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter. IEEE Asia-Pacific Conference on Applied Electromagnetics (APACE), 2010. ISSN ISBN : 978-1-4244-8566-6 http://ieeexplore.ieee.org/document/5719772/ DOI: 10.1109/APACE.2010.5719772
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Ain, M.F.
Ahmad, Z.A.
Othman, M.A.
Zubir, I.A.
Hutagalung, S.D.
Sulaiman, A. A.
Othman, A.K.
Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter
title Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter
title_full Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter
title_fullStr Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter
title_full_unstemmed Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter
title_short Quarter Wavelength Matching in Dielectric Resonator Bandpass Filter
title_sort quarter wavelength matching in dielectric resonator bandpass filter
topic TK Electrical engineering. Electronics Nuclear engineering
url http://ir.unimas.my/id/eprint/16322/
http://ir.unimas.my/id/eprint/16322/
http://ir.unimas.my/id/eprint/16322/
http://ir.unimas.my/id/eprint/16322/1/Quarter%20Wavelength%20Matching%20in%20Dielectric%20Resonator%28abstract%29.pdf