Inline Waveguide Filter With Transmission Zeros Using a Modified-T-Shaped-Post Coupling Inverter

This letter reports the design techniques for a class of inline waveguide bandpass filters with sharp-rejection capabilities at the lower stopband based on a novel nonlinear-frequency-variant-coupling (NFVC) structure. The proposed NFVC consists of a modified-T-shaped metallic post (MTP) that is pla...

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Published inIEEE microwave and wireless technology letters (Print) Vol. 33; no. 2; pp. 145 - 148
Main Authors Sandhu, Muhammad Yameen, Jasinski, Maciej, Lamecki, Adam, Gomez-Garcia, Roberto, Mrozowski, Michal
Format Journal Article
LanguageEnglish
Published IEEE 01.02.2023
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ISSN2771-957X
2771-9588
DOI10.1109/LMWC.2022.3208141

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Abstract This letter reports the design techniques for a class of inline waveguide bandpass filters with sharp-rejection capabilities at the lower stopband based on a novel nonlinear-frequency-variant-coupling (NFVC) structure. The proposed NFVC consists of a modified-T-shaped metallic post (MTP) that is placed at the center of the waveguide broad wall with its open arms lying along the waveguide width. The engineered NFVC structure produces a first-order bandpass filtering transfer function with a pair of transmission zeros (TZs) located below the passband range. To demonstrate the usefulness of the proposed NFVC inverter, a 9.9-GHz third-order inline waveguide bandpass filter prototype with two TZs is developed and tested. It consists of two half-wavelength cavity resonators coupled together via the conceived MTP coupling structure. The measured results are in close agreement with the electromagnetic (EM) simulated ones, thus validating the devised waveguide filter design principle.
AbstractList This letter reports the design techniques for a class of inline waveguide bandpass filters with sharp-rejection capabilities at the lower stopband based on a novel nonlinear-frequency-variant-coupling (NFVC) structure. The proposed NFVC consists of a modified-T-shaped metallic post (MTP) that is placed at the center of the waveguide broad wall with its open arms lying along the waveguide width. The engineered NFVC structure produces a first-order bandpass filtering transfer function with a pair of transmission zeros (TZs) located below the passband range. To demonstrate the usefulness of the proposed NFVC inverter, a 9.9-GHz third-order inline waveguide bandpass filter prototype with two TZs is developed and tested. It consists of two half-wavelength cavity resonators coupled together via the conceived MTP coupling structure. The measured results are in close agreement with the electromagnetic (EM) simulated ones, thus validating the devised waveguide filter design principle.
Author Sandhu, Muhammad Yameen
Gomez-Garcia, Roberto
Jasinski, Maciej
Mrozowski, Michal
Lamecki, Adam
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Snippet This letter reports the design techniques for a class of inline waveguide bandpass filters with sharp-rejection capabilities at the lower stopband based on a...
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StartPage 145
SubjectTerms 3-D filter
bandpass filter
coupling-matrix synthesis
Couplings
Electromagnetic waveguides
Frequency measurement
frequency-dependent coupling
inline filter
Inverters
microwave filter
Passband
Prototypes
Resonant frequency
transmission zero (TZ)
waveguide filter
Title Inline Waveguide Filter With Transmission Zeros Using a Modified-T-Shaped-Post Coupling Inverter
URI https://ieeexplore.ieee.org/document/9912139
Volume 33
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