A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band

Abstract An efficient and compact dual bandpass filter having single narrow rejection band between S-band and C-band using CPW arrangement is proposed. The half wavelength square resonator is used in ground surface to eliminate certain frequency bands. The transmission zero of rejection band is rest...

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Main Authors: S. Oudaya Coumar, S. Tamilselvan
Format: Article
Language:English
Published: SpringerOpen 2020-04-01
Series:Journal of Electrical Systems and Information Technology
Subjects:
Online Access:http://link.springer.com/article/10.1186/s43067-020-00013-8
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spelling doaj-a5db06310f09470db05bb13ce684ee102020-11-25T02:52:09ZengSpringerOpenJournal of Electrical Systems and Information Technology2314-71722020-04-017111110.1186/s43067-020-00013-8A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-bandS. Oudaya Coumar0S. Tamilselvan1Vignan Lara Institute of Technology and SciencePondicherry Engineering CollegeAbstract An efficient and compact dual bandpass filter having single narrow rejection band between S-band and C-band using CPW arrangement is proposed. The half wavelength square resonator is used in ground surface to eliminate certain frequency bands. The transmission zero of rejection band is restricted by modifying the dimension of the resonator. The CPW-based DB-BPF is simulated and tested with its equivalent prototype. This work emphasizes DB-BPF with square resonator coupling constructed on CPW process. An innovative integration of circular resonator incorporated with inter-digital line coupling in the top surface of the substrate and square resonator at the bottom surface of the substrate produces wide band and narrow stop band, respectively. The DB-BPF has remarkable bandwidth from 2 to 3.8 GHz and 4.3 to 7.8 GHz as S-band and C-band, respectively. Hence, the overall bandwidth of the filter is 5.3 GHz (1.8 GHz and 3.5 GHz). The filter performances are evaluated and analyzed through the factors like S-parameters, Q-factor and group delay. The overall dimension of DB-BPF is achieved to be (39 × 4.5 × 1.6) mm3, which is very much compact in dimension. The filter characteristics show the return loss of − 35.2 dB and insertion loss of − 1.2 dB which are validated by measured results.http://link.springer.com/article/10.1186/s43067-020-00013-8Coplanar waveguide (CPW)Microstrip (MS)Dual-band filter (DB-BPF)ResonatorInsertion loss (IL)Return loss (RL)
collection DOAJ
language English
format Article
sources DOAJ
author S. Oudaya Coumar
S. Tamilselvan
spellingShingle S. Oudaya Coumar
S. Tamilselvan
A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band
Journal of Electrical Systems and Information Technology
Coplanar waveguide (CPW)
Microstrip (MS)
Dual-band filter (DB-BPF)
Resonator
Insertion loss (IL)
Return loss (RL)
author_facet S. Oudaya Coumar
S. Tamilselvan
author_sort S. Oudaya Coumar
title A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band
title_short A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band
title_full A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band
title_fullStr A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band
title_full_unstemmed A compact conductor-backed CPW-based dual bandpass filter for satellite S-band and C-band
title_sort compact conductor-backed cpw-based dual bandpass filter for satellite s-band and c-band
publisher SpringerOpen
series Journal of Electrical Systems and Information Technology
issn 2314-7172
publishDate 2020-04-01
description Abstract An efficient and compact dual bandpass filter having single narrow rejection band between S-band and C-band using CPW arrangement is proposed. The half wavelength square resonator is used in ground surface to eliminate certain frequency bands. The transmission zero of rejection band is restricted by modifying the dimension of the resonator. The CPW-based DB-BPF is simulated and tested with its equivalent prototype. This work emphasizes DB-BPF with square resonator coupling constructed on CPW process. An innovative integration of circular resonator incorporated with inter-digital line coupling in the top surface of the substrate and square resonator at the bottom surface of the substrate produces wide band and narrow stop band, respectively. The DB-BPF has remarkable bandwidth from 2 to 3.8 GHz and 4.3 to 7.8 GHz as S-band and C-band, respectively. Hence, the overall bandwidth of the filter is 5.3 GHz (1.8 GHz and 3.5 GHz). The filter performances are evaluated and analyzed through the factors like S-parameters, Q-factor and group delay. The overall dimension of DB-BPF is achieved to be (39 × 4.5 × 1.6) mm3, which is very much compact in dimension. The filter characteristics show the return loss of − 35.2 dB and insertion loss of − 1.2 dB which are validated by measured results.
topic Coplanar waveguide (CPW)
Microstrip (MS)
Dual-band filter (DB-BPF)
Resonator
Insertion loss (IL)
Return loss (RL)
url http://link.springer.com/article/10.1186/s43067-020-00013-8
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