DocumentCode
836224
Title
Mechanical tuning of Superconducting lumped element filter
Author
Hontsu, Shigeki ; Iguchi, Kazuki ; Agemura, Kazuyuki ; Nishikawa, Hiroaki ; Kusunoki, Masanobu
Author_Institution
Fac. of Biol.-Oriented Sci. & Technol., Kinki Univ., Wakayama, Japan
Volume
15
Issue
2
fYear
2005
fDate
6/1/2005 12:00:00 AM
Firstpage
972
Lastpage
975
Abstract
The tunable filter has variable center frequency (f0) and variable bandwidth (BW) that can be adapted to software defined radio. In our mechanical tunable filter, capacitance of each element is changed by motion of dielectric plate that is located above the capacitive elements. The dielectric plates are moved by piezoelectric bimorph actuators. Tuning test of the f0 in a cryocooler is performed using an actual superconducting filter fabricated with YBa2Cu3Oy thin film deposited on an MgO (100) substrate. Taking into account of the effective change of parallel capacitance to ground plane by movement of dielectric plates above the element, we choose the coplanar wave guide type filter that has the ground plane on top side of the substrate. Suitable design of the mechanically tunable superconducting lumped element filter is discussed.
Keywords
barium compounds; capacitance; coplanar waveguides; copper compounds; dielectric materials; high-temperature superconductors; lumped parameter networks; magnesium compounds; microwave filters; piezoelectric actuators; superconducting filters; tuning; yttrium compounds; MgO; MgO (100); capacitance; coplanar waveguide; cryocooler; dielectric plate; film deposition; mechanical tuning; piezoelectric bimorph actuators; superconducting filter; superconducting lumped element filter; tunable filter; Bandwidth; Capacitance; Dielectric substrates; Dielectric thin films; Frequency; Piezoelectric actuators; Software radio; Superconducting filters; Testing; Tuning; Band width; bimorph actuator; center frequency; coplanar wave guide; cryocooler; dielectric; lumped element filter; mechanical tuning;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2005.850146
Filename
1439802
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