DocumentCode
917508
Title
Ultra-Low Heat Leak YBCO Superconducting Leads for Cryoelectronic Applications
Author
Webber, Robert J. ; Delmas, Jean ; Moeckly, Brian H.
Author_Institution
Hypres, Inc., Elmsford, NY, USA
Volume
19
Issue
3
fYear
2009
fDate
6/1/2009 12:00:00 AM
Firstpage
999
Lastpage
1002
Abstract
We report on high temperature superconductor (HTS) DC current leads developed for the specific purpose of delivering small currents (<100 mA) to cryocooled electronic devices operating at 4 K, with significantly reduced heat leak. Multi-stage cryocoolers can provide a suitable platform for niobium-based superconducting electronics at 4 K; the necessary multiple parallel biasing of the circuitry can result in total currents of several amps, which can produce substantial thermal loading of the cryocooler when conventional resistive leads are used. Our approach has been to adapt the comparatively mature technology of high-current second-generation (2G) YBCO-coated conductor tape to low current needs by splitting the tape into electrically isolated narrow lines by ion milling. Performance issues discussed are: obtained critical currents, thermal conductance of the composite conductors, line-to-line electrical isolation, resistance of the joints and robustness. Operation as a current lead between the first and second stage of a Gifford-McMahon cryocooler is reported.
Keywords
barium compounds; carbon compounds; critical currents; cryogenic electronics; high-temperature superconductors; thermal conductivity; yttrium compounds; DC current; Gifford-McMahon cryocooler; YBCO; composite conductors; cryocooled electronic devices; cryoelectronic applications; electrical isolation; high temperature superconductor; high-current second-generation coated conductor tape; ion milling; multiple parallel biasing; substantial thermal loading; temperature 4 K; thermal conductance; Cryocooler; YBCO tape; cryoelectronics; current leads;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2009.2017768
Filename
4982588
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