A Design Method for Highly Selective Dual-Band Filters Based on Frequency-Variant Triplets

This letter presents a method for the design of highly selective dual-band filters. The frequency-variant triplets (FVTs) are applied to dual-band filter design. In addition to different passbands with different orders, bandwidths, or return losses, this method can generate {N} -1 transmission zero...

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Veröffentlicht in:IEEE microwave and wireless technology letters (Print) 2024-02, Vol.34 (2), p.175-178
Hauptverfasser: Cao, Guoqun, Hu, Yulu, Gao, Luanfeng, Tan, Zheng, Yuan, Haiying, Zeng, Yi, Zhu, Shilong, Li, Bin
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Sprache:eng
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Zusammenfassung:This letter presents a method for the design of highly selective dual-band filters. The frequency-variant triplets (FVTs) are applied to dual-band filter design. In addition to different passbands with different orders, bandwidths, or return losses, this method can generate {N} -1 transmission zeros (TZs) for the specified {N} th-order filter, significantly improving the frequency selectivity of dual-band filters. Moreover, the limitation of TZs achieved by the frequency-variant couplings (FVCs) structure widely used in coaxial cavity filter design is discussed for the first time. Furthermore, to facilitate physical implementation, a strategy is proposed to guide the selection of the production sequence of TZs in dual-band filters formed by inline FVCs and FVTs. Finally, a dual-band filter with four TZs is fabricated, whose synthesis, simulation, and test results perform the desired responses and are well-matched with each other.
ISSN:2771-957X
2771-9588
DOI:10.1109/LMWT.2023.3339160