Mechanically Flexible Dielectric Waveguides and Bandstop Filters in Glass Technology at G-band

peer-reviewed
Erstveröffentlichung
2022-10-31Autoren
Galler, Thomas
Schulz-Ruhtenberg, Malte
Chaloun, Tobias
Waldschmidt, Christian
Beitrag zu einer Konferenz
Erschienen in
2022 52nd European Microwave Conference (EuMC). - : Institute of Electrical and Electronics Engineers (IEEE), 2022. - S. 294-297. - ISBN 978-2-8748-7069-9, ISBN 978-1-6654-5881-8
Link zur Originalveröffentlichung
https://dx.doi.org/10.23919/EuMC54642.2022.9924350Fakultäten
Fakultät für Ingenieurwissenschaften, Informatik und PsychologieInstitutionen
Institut für MikrowellentechnikDokumentversion
Akzeptierte VersionKonferenz
52nd European Microwave Conference (EuMC), 2022-09-27 - 2022-09-29, Milan
Zusammenfassung
A novel mechanically flexible filter integrated in a
glass dielectric waveguide is presented for sensor applications at
G-band (140–220 GHz). The use of laser-induced deep etching
(LIDE) technology enables the production of via holes and thus
the local modulation of the effective permittivity in a dielectric
waveguide. This approach enables the implementation of a filter
without the use of metal structures. In addition, extraordinary
mechanical flexibility is achieved through meandering slots, which
simultaneously perform the permittivity modulation. The RF
performance was studied in full-wave simulations and validated
by measurements of the manufactured bandstop prototypes. The
experimental results of the implemented filter element show good
agreement with the simulated values. At the center frequency
of 156 GHz a notch depth below −14 dB in the measured stop
band is achieved. Additional measurements show a stable filter
characteristic at up to 8◦ bend angle applicable for the use as a
low-loss waveguide under harsh environmental conditions
Projekt uulm
GlaRA / Verbundprojekt: Glasinterposer-Technologie zur Realisierung hochkompakter Elektroniksysteme für Hochfrequenzanwendungen - GlaRA -; Teilvorhaben: Hochfrequenzkomponenten auf Glassubstraten / BMBF / 16ES0692
Schlagwörter
[GND]: Filter | Glas[LCSH]: Glass | Millimeter waves
[Freie Schlagwörter]: dielectric waveguide | TGV
[DDC Sachgruppe]: DDC 620 / Engineering & allied operations
Metadata
Zur LanganzeigeDOI & Zitiervorlage
Nutzen Sie bitte diesen Identifier für Zitate & Links: http://dx.doi.org/10.18725/OPARU-46156
Galler, Thomas et al. (2022): Mechanically Flexible Dielectric Waveguides and Bandstop Filters in Glass Technology at G-band. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-46156
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