DocumentCode
1067746
Title
A Wideband Superconducting Filter Using Strong Coupling Resonators for Radio Astronomy Observatory
Author
Yu, Tao ; Li, Chunguang ; Li, Fei ; Zhang, Qiang ; Sun, Liang ; Gao, Lu ; Wang, Yuehui ; Zhang, Xueqiang ; Li, Hong ; Jin, Chengjin ; Li, Jianbin ; Liu, Hongfei ; Gao, Changzheng ; Meng, Jibao ; He, Yusheng
Author_Institution
Beijing Nat. Lab. for Condensed Matter Phys., Chinese Acad. of Sci. (CAS), Beijing, China
Volume
57
Issue
7
fYear
2009
fDate
7/1/2009 12:00:00 AM
Firstpage
1783
Lastpage
1789
Abstract
A 12-pole wideband superconducting microstrip bandpass filter, which has a fractional bandwidth of 38% and a center frequency of 1455 MHz, is presented for the Miyun 50-m radio astronomy telescope, Beijing, China. A novel resonator, which can not only generate very large coupling, but also push its first spurious resonant peak away from the passband, is introduced. A new style interleaved coupling structure is proposed and successfully used in this study to realize the remarkably required strong coupling. To achieve high edge slope on the high side of the passband, as required, a single transmission zero was introduced. The filter was fabricated on a 36 mm times 30 mm times 0.5 mm double-sided YBa2Cu3O7 film deposited on an MgO substrate. The measured results showed that the filter had 0.05-dB minimum insertion loss, 0.08-dB passband ripple, and 23-dB return loss at a temperature of 40 K. The first spurious peak did not appear until 2632 MHz. The overall measured performance showed good agreement with the simulation.
Keywords
UHF filters; astronomical observatories; band-pass filters; barium compounds; high-temperature superconductors; microstrip filters; radioastronomy; radiotelescopes; strong-coupling superconductors; superconducting filters; superconducting resonators; superconducting thin films; yttrium compounds; YBa2Cu3O7; frequency 1455 MHz; frequency 2632 MHz; loss 0.05 dB; microstrip bandpass filter; radio astronomy observatory; radio astronomy telescope; size 0.5 mm; size 36 mm; strong-coupling resonators; temperature 40 K; wideband superconducting filter; Astronomy; strong coupling; superconducting; wideband filter;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2009.2022812
Filename
5071146
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