Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators
In this paper, we have designed and fabricated a novel microstrip diplexer. It has two quite close channels at 1.67 GHz and 1.88 GHz make it suitable for FDD schemes and GSM applications. The proposed structure includes two coupled meandrous open loop resonators which are coupled to spiral cells. An...
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my.utm.915432021-06-30T12:17:47Z http://eprints.utm.my/id/eprint/91543/ Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators Rezaei, Abbas Yahya, Salah I. Leila Nouri, Leila Nouri Jamaluddin, Mohd H. TK Electrical engineering. Electronics Nuclear engineering In this paper, we have designed and fabricated a novel microstrip diplexer. It has two quite close channels at 1.67 GHz and 1.88 GHz make it suitable for FDD schemes and GSM applications. The proposed structure includes two coupled meandrous open loop resonators which are coupled to spiral cells. An approximated LC model of the presented resonator is proposed and analyzed to give some information about the resonator behavior. Based on the obtained information, the proposed diplexer is optimized and miniaturized. It occupies a small size of 0.036 λg2. Despite of having close channels, the low insertion losses of 0.43 dB and 0.35 dB are obtained for the first and second bands, respectively. For verifying the simulation results and designing method, the diplexer is fabricated and measured, where the measurement and simulation results show a good agreement. Springer 2020-03 Article PeerReviewed Rezaei, Abbas and Yahya, Salah I. and Leila Nouri, Leila Nouri and Jamaluddin, Mohd H. (2020) Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators. Analog Integrated Circuits and Signal Processing, 102 (3). pp. 579-584. ISSN 0925-1030 http://dx.doi.org/10.1007/s10470-020-01625-w |
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TK Electrical engineering. Electronics Nuclear engineering Rezaei, Abbas Yahya, Salah I. Leila Nouri, Leila Nouri Jamaluddin, Mohd H. Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
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In this paper, we have designed and fabricated a novel microstrip diplexer. It has two quite close channels at 1.67 GHz and 1.88 GHz make it suitable for FDD schemes and GSM applications. The proposed structure includes two coupled meandrous open loop resonators which are coupled to spiral cells. An approximated LC model of the presented resonator is proposed and analyzed to give some information about the resonator behavior. Based on the obtained information, the proposed diplexer is optimized and miniaturized. It occupies a small size of 0.036 λg2. Despite of having close channels, the low insertion losses of 0.43 dB and 0.35 dB are obtained for the first and second bands, respectively. For verifying the simulation results and designing method, the diplexer is fabricated and measured, where the measurement and simulation results show a good agreement. |
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Article |
author |
Rezaei, Abbas Yahya, Salah I. Leila Nouri, Leila Nouri Jamaluddin, Mohd H. |
author_facet |
Rezaei, Abbas Yahya, Salah I. Leila Nouri, Leila Nouri Jamaluddin, Mohd H. |
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Rezaei, Abbas |
title |
Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
title_short |
Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
title_full |
Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
title_fullStr |
Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
title_full_unstemmed |
Design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
title_sort |
design of a low-loss microstrip diplexer with a compact size based on coupled meandrous open-loop resonators |
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Springer |
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2020 |
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http://eprints.utm.my/id/eprint/91543/ http://dx.doi.org/10.1007/s10470-020-01625-w |
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