Power divider and balun filters with a single cross-coupled quadruplet
A filtering power divider and a filtering balun of fourth-order are synthesized with a single cross coupled quadruplet filter. The entire circuit uses only five resonators and both three-port circuits share four of the five resonators, leading to a compact circuit size and low insertion loss. In syn...
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Institute of Electrical and Electronics Engineers Inc.
2019
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my.utp.eprints.235532021-08-19T07:56:56Z Power divider and balun filters with a single cross-coupled quadruplet Lin, C.-H. Ng, C.L. Wong, P.W. Kuo, J.-T. A filtering power divider and a filtering balun of fourth-order are synthesized with a single cross coupled quadruplet filter. The entire circuit uses only five resonators and both three-port circuits share four of the five resonators, leading to a compact circuit size and low insertion loss. In synthesis, given bandwidth, in-band return loss and transmission zeros, all coupling coefficients can be determined. For demonstration, a filtering divider and a filtering balun are designed at 2.4 GHz with a bandwidth of 5. Measured responses of the experimental circuits have good agreement with the simulated data, and this validates the synthesis. © 2019 IEEE. Institute of Electrical and Electronics Engineers Inc. 2019 Conference or Workshop Item NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85082988450&doi=10.1109%2fAPMC46564.2019.9038415&partnerID=40&md5=82d680b1e430df7e15a1fe282f182c7a Lin, C.-H. and Ng, C.L. and Wong, P.W. and Kuo, J.-T. (2019) Power divider and balun filters with a single cross-coupled quadruplet. In: UNSPECIFIED. http://eprints.utp.edu.my/23553/ |
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A filtering power divider and a filtering balun of fourth-order are synthesized with a single cross coupled quadruplet filter. The entire circuit uses only five resonators and both three-port circuits share four of the five resonators, leading to a compact circuit size and low insertion loss. In synthesis, given bandwidth, in-band return loss and transmission zeros, all coupling coefficients can be determined. For demonstration, a filtering divider and a filtering balun are designed at 2.4 GHz with a bandwidth of 5. Measured responses of the experimental circuits have good agreement with the simulated data, and this validates the synthesis. © 2019 IEEE. |
format |
Conference or Workshop Item |
author |
Lin, C.-H. Ng, C.L. Wong, P.W. Kuo, J.-T. |
spellingShingle |
Lin, C.-H. Ng, C.L. Wong, P.W. Kuo, J.-T. Power divider and balun filters with a single cross-coupled quadruplet |
author_facet |
Lin, C.-H. Ng, C.L. Wong, P.W. Kuo, J.-T. |
author_sort |
Lin, C.-H. |
title |
Power divider and balun filters with a single cross-coupled quadruplet |
title_short |
Power divider and balun filters with a single cross-coupled quadruplet |
title_full |
Power divider and balun filters with a single cross-coupled quadruplet |
title_fullStr |
Power divider and balun filters with a single cross-coupled quadruplet |
title_full_unstemmed |
Power divider and balun filters with a single cross-coupled quadruplet |
title_sort |
power divider and balun filters with a single cross-coupled quadruplet |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2019 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85082988450&doi=10.1109%2fAPMC46564.2019.9038415&partnerID=40&md5=82d680b1e430df7e15a1fe282f182c7a http://eprints.utp.edu.my/23553/ |
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13.211869 |