Design, Modeling, and Implementation of Dual Notched UWB Bandpass Filter Employing Rectangular Stubs and Embedded L-Shaped Structure

Author:

Basit Abdul12ORCID,Daraz Amil12,Khan Muhammad Irshad3ORCID,Saqib Najmus4,Zhang Guoqiang1

Affiliation:

1. School of Information Science and Engineering, NingboTech University, Ningbo 315104, China

2. College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou 310027, China

3. College of Electronics and Information Engineering, Nanjing University of Aeronautics and Astronautics (NUAA), Nanjing 210000, China

4. Department of Electrical Engineering, University of Engineering and Technology, Peshawar 25000, Pakistan

Abstract

Targeting the range defined by the FCC (Federal Communication Commission) in 2002 for ultra-passband bandpass filters, i.e., 3.1 to 10.6 GHz, this article presents a simple compact multipoles ultra-wideband bandpass filter (range starting from 2.9 GHz and end at 11.5 GHz with central frequency 7.2 GHz) using parallel coupled microstrip line and multimode resonator with controllable double narrow notched bands at 3.5 GHz and 7.5 GHz by embedded a spur line structure and rectangular stub resonator coupled to the middle section of the multimode resonator to eliminate the interference with the existing radio signals falls in the range of 3.1 to 10.6 GHz, respectively. After optimization of the proposed filter, some attractive features were obtained, i.e., a compact size 21 mm × 5.2 mm, simple topology, good reflection coefficient lower than −18 dB, good passband transmission coefficient –1.1 dB over the entire fractional bandwidth of about 119.4%, and four transmission poles at 3.4 GHz, 4.6 GHz, 6.5 GHz, and 10 GHz, respectively, can be seen which improves the performance of the filter. Finally, the fabricated filter was tested, and the results obtained demonstrated an excellent agreement.

Funder

Young Talent Sub-project of Ningbo Yongjiang Talent Introduction Programme

Publisher

MDPI AG

Subject

Statistics and Probability,Statistical and Nonlinear Physics,Analysis

Reference35 articles.

1. Wang, L.T., Xiong, Y., He, M., and Kheir, M. (2019). UWB Technology-Circuits and Systems, IntechOpen.

2. FCC (2002). Revision of Part 15 of the Commission’s Rules Regarding Ultra-Wideband Transmission System, FCC.

3. Miniaturized CPW-fed UWB-MIMO antennas with decoupling stub and enhanced isolation;Khattak;Int. J. Microw. Wirel. Technol.,2022

4. Basit, A., Khattak, M.I., Zubir, F., and Shah, S.W. (2022). Miniaturized ultra-wideband filter with independently controlled notch bands for 5.1/6/8 GHz wireless applications. PloS ONE, 17.

5. An ultra-wideband (UWB) bandpass filter with complementary split ring resonator for coupling improvement;Sarkar;Int. J. Electron. Commun.,2017

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