Gap waveguides can provide a cost-effective and low-loss solution for high frequency transmission line technologies. This paper introduces a novel electromagnetic bandgap structure for a gap waveguide operating across the entire E band, targeting automotive radar applications. The proposed concept is compatible with cost-effective FR4-based printed circuit boards, utilizing substrate-integrated hole unit cells. Broken glide-symmetric geometry is adopted in the proposed approach to reach wider stopbands and greater adaptability for larger gap sizes. The final design achieves an average transmission loss of 0.1 dB/cm within the 76 - 81GHz frequency band.
Cost Effective PCB Gap Waveguide Based on Broken Glide Symmetry / Aktas, K., Petek, M., Tolin, E., Bruni, S., Vipiana, F.. - (2025), pp. 1-4. (2025 19th European Conference on Antennas and Propagation (EuCAP) Stockholm (Sweden) 30 March 2025 - 04 April 2025).
Cost Effective PCB Gap Waveguide Based on Broken Glide Symmetry
Aktas, Kaan;Petek, Martin;Tolin, Enrico;Vipiana, Francesca
2025
Abstract
Gap waveguides can provide a cost-effective and low-loss solution for high frequency transmission line technologies. This paper introduces a novel electromagnetic bandgap structure for a gap waveguide operating across the entire E band, targeting automotive radar applications. The proposed concept is compatible with cost-effective FR4-based printed circuit boards, utilizing substrate-integrated hole unit cells. Broken glide-symmetric geometry is adopted in the proposed approach to reach wider stopbands and greater adaptability for larger gap sizes. The final design achieves an average transmission loss of 0.1 dB/cm within the 76 - 81GHz frequency band.Pubblicazioni consigliate
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https://hdl.handle.net/11583/3015755
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