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Abstract
This paper introduces a new design methodology of filtering antenna (filtenna) based on the coupled radiating resonator structure. The idea is to integrate both filter and antenna as a single component with combined treatment. The patch antenna structure backed by substrate integrated cavity (SIC) resonator is effectively employed to comply with coupled-resonator filtering function. The proposed filtenna is a compact stack-layered array antenna module with the aim of highly integrated 5G massive array antenna application. A fourth-degree filtenna with operating frequency band of 27-29 GHz and return loss better than 22-dB is designed to verify the design method. The simulated results are in good agreement compared with those of analytical synthesis and circuit model.
Originalsprache | englisch |
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Seitenumfang | 4 |
DOIs | |
Publikationsstatus | Veröffentlicht - 13 Mai 2020 |
Veranstaltung | 2020 International Workshop on Antenna Technology - Bucharest, Rumänien Dauer: 25 Feb. 2020 → 28 Feb. 2020 http://iwat2020.org/ |
Konferenz
Konferenz | 2020 International Workshop on Antenna Technology |
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Kurztitel | iWAT |
Land/Gebiet | Rumänien |
Ort | Bucharest |
Zeitraum | 25/02/20 → 28/02/20 |
Internetadresse |
ASJC Scopus subject areas
- Elektronische, optische und magnetische Materialien
- Instrumentierung
- Computernetzwerke und -kommunikation
Fields of Expertise
- Information, Communication & Computing
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- 1 Laufend
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CD-Labor für Technologie basiertes Design und Charakterisierung von elektronischen Komponenten
Bösch, W., Hatab, Z., Gadringer, M. E., Takahashi, H., Maier, C., Sarbandi Farahani, H., Pauser, C., Paulitsch, H. & Rezaee, B.
1/11/20 → 31/10/27
Projekt: Foschungsprojekt