研究目的
To develop a fourth-order dual-band high-temperature superconducting (HTS) differential bandpass filter (BPF) with controllable midband frequencies and bandwidths using modified multimode square ring loaded resonators (SRLRs).
研究成果
The paper successfully develops a compact fourth-order dual-band HTS differential BPF based on modified multimode SRLRs, achieving independent control of midband frequencies and bandwidths. The fabricated filter demonstrates ultralow in-band insertion losses and high selectivity, making it suitable for multiband communication systems requiring high-sensitivity and high anti-interference properties.
研究不足
The study focuses on the design and performance of a specific type of dual-band BPF using HTS technology, which may limit its applicability to other technologies or filter types. The fabrication process requires precise control over the HTS YBCO thin films and MgO substrate.
1:Experimental Design and Method Selection
The design utilizes modified multimode square ring loaded resonators (SRLRs) analyzed by the even- and odd-mode method twice to understand DM and CM resonant properties. Tunable patches are added to the square ring for flexible DM resonance adjustment.
2:Sample Selection and Data Sources
The filter is fabricated using HTS YBCO thin films on a MgO substrate.
3:List of Experimental Equipment and Materials
HTS YBCO thin films, MgO substrate, Agilent E5071C four-port vector network analyzer for measurement.
4:Experimental Procedures and Operational Workflow
The filter design involves adjusting the internal coupling between SRLRs using geometrical parameters, designing the external coupling structure, and optimizing the overall filter circuit for desired performance.
5:Data Analysis Methods
Frequency responses are simulated and measured to verify the filter's performance, with comparisons made between simulated and measured results.
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