Design of a High-Power Superconducting Filter Using Resonators With Different Linewidths

This paper presents a design method to develop a high-power superconducting microstrip filter with different linewidth resonators. The linewidth of every resonator is optimized using this method to meet the same maximum current density. Thus, the power-handling capability of the five-pole filter on...

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Veröffentlicht in:IEEE transactions on microwave theory and techniques 2007-12, Vol.55 (12), p.2555-2561
Hauptverfasser: Guo, Xubo, Wei, Bin, Zhang, Xiaoping, Cao, Bisong, Jin, Shichao, Peng, Huili, Gao, Longma, Gao, Baoxin
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper presents a design method to develop a high-power superconducting microstrip filter with different linewidth resonators. The linewidth of every resonator is optimized using this method to meet the same maximum current density. Thus, the power-handling capability of the five-pole filter on a limited substrate size can reach a maximum value. The design method is verified by the electromagnetic simulation of the current density distribution. The high-power superconducting filter is designed and fabricated on a 38 mm times 30 mm times 0.505 mm LaAlO 3 substrate. The maximum resonator linewidth is 7 mm, and the minimum one is 1.6 mm. The filter has a center frequency of 2006 MHz and a narrow bandwidth of 1.0%. The measured power level is up to 35 dBm at 65 K without an evident change in insertion loss.
ISSN:0018-9480
1557-9670
DOI:10.1109/TMTT.2007.909604