A High-Performance Microstrip Triplexer With Compact Size, Flat Channels and Low Losses for 5G Applications

Yahya, Salah I. and Zubir, Farid and Nouri, Leila and Rezaei, Abbas and Hazzazi, Fawwaz and Chaudhary, Muhammad Akmal and Assaad, Maher and Yusoff, Zubaida and Nguyen Le, Binh (2023) A High-Performance Microstrip Triplexer With Compact Size, Flat Channels and Low Losses for 5G Applications. IEEE Access, 11. pp. 78768-78777. ISSN 2169-3536

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Abstract

A new microstrip triplexer with a compact size of 0.007 λ g 2 is proposed in this work, where designing a microstrip triplexer with a size less than 0.01 λ g 2 is a big challenge. In addition to the compact size, it shows a high performance i.e. its channels are wide with low insertion losses. Moreover, the channels are flat with three low group delays (GDs) of 0.65, 0.95 and 1.17 ns, while most of the previously reported triplexers have not considered this important parameter. The proposed resonator is mathematically analyzed to find a method to get rid of harmonics and tune the resonance frequency. Meanwhile, the 1 st , 2 nd , 3 rd and 4 th harmonics are suppressed above the first channel. The designed triplexer is suitable for 5G mid-band applications. The proposed triplexer is exactly fabricated and then measured to confirm the designing method and simulation results. The obtained results show that all the simulation, mathematical analysis and experimental results are in good agreement. Therefore, the proposed triplexer can be easily used in designing high-performance RF communication systems.

Item Type: Article
Uncontrolled Keywords: Microstrip, Compact, Triplexer, Harmonic, 5G, Group delay
Subjects: T Technology > T Technology (General)
Z Bibliography. Library Science. Information Resources > ZA Information resources > ZA4050 Electronic information resources
Divisions: Department of Communication and Computer Engineering > Research papers
Depositing User: ePrints Depositor
Date Deposited: 31 Oct 2024 00:01
Last Modified: 31 Oct 2024 00:01
URI: https://eprints.cihanuniversity.edu.iq/id/eprint/2402

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