Title :
Tl/sub 2/Ba/sub 2/Ca/sub 1/Cu/sub 2/O/sub x/ thin films for microstrip filters
Author :
Zeisberger, M. ; Manzel, M. ; Bruchlos, H. ; Diegel, M. ; Thrum, F. ; Klinger, M. ; Abramowicz, A.
Author_Institution :
Inst. fur Phys. Hochtechnol., Jena, Germany
fDate :
6/1/1999 12:00:00 AM
Abstract :
High performance narrowband bandpass filters are required in satellite communication systems. Especially HTS filter banks are particularly attractive because of their low insertion loss and sharp filter skirts needed in input multiplexers. Tl/sub 2/Ba/sub 2/CaCu/sub 2/O/sub x/ thin films on 2"-LaAlO/sub 3/-substrates and 10/spl times/10 mm/sup 2/-sapphire substrates were prepared using a two step technology. A Tl-free precursor film is prepared by sputtering. The Tl-incorporation is performed by annealing in a Tl/sub 2/O loaded atmosphere. The best films show surface resistances below 100 /spl mu//spl Omega/ at 77 K and 4 GHz. Two-pole bandpass-filters with a center frequency of 4 GHz and a bandwidth of 17.5 MHz using dual-mode ring resonators have been fabricated from the films on LaAlO/sub 3/. The measured passband shape achieved with tuning elements is in good agreement with the specifications of the design.
Keywords :
annealing; band-pass filters; barium compounds; calcium compounds; high-temperature superconductors; microstrip filters; sputtered coatings; superconducting filters; superconducting microwave devices; superconducting thin films; thallium compounds; 17.5 MHz; 4 GHz; 77 K; LaAlO/sub 3/ substrate; Tl/sub 2/Ba/sub 2/Ca/sub 1/Cu/sub 2/O; Tl/sub 2/Ba/sub 2/Ca/sub 1/Cu/sub 2/O/sub x/ thin film; annealing; dual-mode ring resonator; input multiplexer; insertion loss; microstrip filter; sapphire substrate; satellite communication; skirt; sputtering; surface resistance; tuning element; two-pole bandpass filter; two-step technology; Band pass filters; Filter bank; High temperature superconductors; Insertion loss; Multiplexing; Narrowband; Satellite communication; Shape measurement; Sputtering; Substrates;
Journal_Title :
Applied Superconductivity, IEEE Transactions on