Low-Profile and Low-Volume Split-Distributed Resonators and Filters
A new class of low-profile resonators, named split-distributed resonators is introduced in this paper. The newly proposed resonator family features high quality Q-factors and relies not only on the coupling among the constituent resonant elements, but the constituent elements themselves are also mad...
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doaj-90bc772125864260ab83bd8400f21a4c2021-03-30T04:18:03ZengIEEEIEEE Access2169-35362020-01-01820634220635210.1109/ACCESS.2020.30376669257348Low-Profile and Low-Volume Split-Distributed Resonators and FiltersSenad Bulja0https://orcid.org/0000-0003-4830-9923Dmitry Kozlov1Nokia Bell Labs, Dublin 15, IrelandNokia Technology Center, Ulm, GermanyA new class of low-profile resonators, named split-distributed resonators is introduced in this paper. The newly proposed resonator family features high quality Q-factors and relies not only on the coupling among the constituent resonant elements, but the constituent elements themselves are also made in the distributed form. This, in comparison with the standard distributed resonator, caters for extremely low profiles, while allowing for a more uniform distribution of the electromagnetic fields inside the resonant cavity and hence higher unloaded quality factors. Furthermore, a uniform distribution of the electromagnetic fields facilitates a tremendous reduction of the resonator volume. As an experimental verification, two 5-pole band-pass filters using different realizations of individual resonant elements are designed and fabricated. The filters operate at a centre frequency of 1.8 GHz with a percentage bandwidth of 2%. The individual split-distributed resonator of these filters consists of 9 resonant elements, where each element is a distributed resonator of the second order and fourth order respectively. The measured insertion losses of the filters are in a good agreement with the values predicted by the simulations.https://ieeexplore.ieee.org/document/9257348/Filtersquality factorresonator |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Senad Bulja Dmitry Kozlov |
spellingShingle |
Senad Bulja Dmitry Kozlov Low-Profile and Low-Volume Split-Distributed Resonators and Filters IEEE Access Filters quality factor resonator |
author_facet |
Senad Bulja Dmitry Kozlov |
author_sort |
Senad Bulja |
title |
Low-Profile and Low-Volume Split-Distributed Resonators and Filters |
title_short |
Low-Profile and Low-Volume Split-Distributed Resonators and Filters |
title_full |
Low-Profile and Low-Volume Split-Distributed Resonators and Filters |
title_fullStr |
Low-Profile and Low-Volume Split-Distributed Resonators and Filters |
title_full_unstemmed |
Low-Profile and Low-Volume Split-Distributed Resonators and Filters |
title_sort |
low-profile and low-volume split-distributed resonators and filters |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2020-01-01 |
description |
A new class of low-profile resonators, named split-distributed resonators is introduced in this paper. The newly proposed resonator family features high quality Q-factors and relies not only on the coupling among the constituent resonant elements, but the constituent elements themselves are also made in the distributed form. This, in comparison with the standard distributed resonator, caters for extremely low profiles, while allowing for a more uniform distribution of the electromagnetic fields inside the resonant cavity and hence higher unloaded quality factors. Furthermore, a uniform distribution of the electromagnetic fields facilitates a tremendous reduction of the resonator volume. As an experimental verification, two 5-pole band-pass filters using different realizations of individual resonant elements are designed and fabricated. The filters operate at a centre frequency of 1.8 GHz with a percentage bandwidth of 2%. The individual split-distributed resonator of these filters consists of 9 resonant elements, where each element is a distributed resonator of the second order and fourth order respectively. The measured insertion losses of the filters are in a good agreement with the values predicted by the simulations. |
topic |
Filters quality factor resonator |
url |
https://ieeexplore.ieee.org/document/9257348/ |
work_keys_str_mv |
AT senadbulja lowprofileandlowvolumesplitdistributedresonatorsandfilters AT dmitrykozlov lowprofileandlowvolumesplitdistributedresonatorsandfilters |
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1724181995037130752 |