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Novel High-Q Partially Air-Filled Pedestal Resonator and Filter Integrated in a Printed Circuit Board (PCB)

  • Leanne Johnson
  • , Hassan Bouazzaoui
  • , Elmine Meyer
  • , Petrie Meyer
  • , Benjamin Potelon (Corresponding author)
  • , Cedric Quendo
  • , Rozenn Allanic

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

In this paper, a resonator and second order filter are fabricated using a novel technological process based on micromachining and thermo-diffusion. The use of this innovative process opens the way to the design of RF components relying on partially air-filled Substrate Integrated Waveguides (SIW). These topologies and particularly the proposed partially air-filled pedestal SIW resonator is suitable to design high-Q, yet compact SIW resonators. In this paper, a study of partially air-filled pedestal SIW resonator is proposed to offer an optimized trade-off between Q-factor and compactness. Then, based on this study, a partially air-filled pedestal resonator working at 5 GHz is designed and manufactured. The measured prototype exhibits a Q-factor of 285, which represents a 53 % increase in Q-factor compared to a fully dielectrically-filled-in pedestal SIW resonator, while the size is kept constant. Finally, a second order filter based on this resonator topology is also designed, measured and discussed.

Original languageEnglish
Pages (from-to)101160-101167
Number of pages8
JournalIEEE Access
Volume10
DOIs
Publication statusPublished - 2022

Keywords

  • AFSIW
  • ESIW
  • filter
  • micromachining
  • PCB process
  • resonator
  • SIW
  • thermo-diffusion

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