Novel Dielectric Resonator-Based Microstrip Filters with Adjustable Transmission and Equalization Zeros

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Abstract

This work presents a comprehensive technological study of dielectric resonator-based microstrip filters (DRMFs), encompassing the design, fabrication, and rigorous characterization of the (Formula presented.) mode. Through systematic coupling analysis, we demonstrate filters featuring novel input–output coupling techniques and innovative implementations of both transmission zeros (4-2-0 configuration) and equalization zeros (4-0-2 configuration), specifically designed for demanding space and radar receiver applications, while the loaded quality factor ((Formula presented.)) and insertion loss do not match those of dielectric resonator cavity filters (DRCFs), our solution significantly surpasses conventional microstrip filters (MFs), achieving (Formula presented.) > 3000 compared to typical (Formula presented.) ≈ 200 for coupled-line MFs in X-band. The fabricated filters exhibit exceptional performance as follows: input reflection ((Formula presented.)) below −18 dB (4-2-0) and −16.5 dB (4-0-2), flat transmission response ((Formula presented.)), and out-of-band rejection exceeding −30 dB. Mechanical tuning enables precise control of input–output coupling, inter-resonator coupling, cross-coupling, and frequency synthesis, while equalization zeros provide tailored group delay characteristics. This study positions DRMFs as a viable intermediate technology for high-performance RF systems, bridging the gap between conventional solutions.

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Espinosa-Adams, D., Llorente-Romano, S., González-Posadas, V., Jiménez-Martín, J. L., & Segovia-Vargas, D. (2025). Novel Dielectric Resonator-Based Microstrip Filters with Adjustable Transmission and Equalization Zeros. Electronics (Switzerland), 14(13). https://doi.org/10.3390/electronics14132557

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