DocumentCode :
1067269
Title :
Current Leads and Optimized Thermal Packaging for Superconducting Systems on Multistage Cryocoolers
Author :
Kadin, Alan M. ; Webber, Robert J. ; Gupta, Deepnarayan
Author_Institution :
HYPRES Inc., Elmsford
Volume :
17
Issue :
2
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
975
Lastpage :
978
Abstract :
Packaging of a superconducting electronic system on a compact multistage cryocooler requires careful management of thermal loads from input and output leads, in order not to exceed the heat lift capacity of the various stages of the cooler. In particular, RSFQ systems typically require a large total bias current or greater. A general analysis of resistive wires shows that the tradeoff between heat flow and Joule heating yields a minimum heat load from optimized bias leads on a low- stage, given by , where is the thermalization temperature of the leads on the previous (hotter) stage. This is independent of the material, number, and geometry of the leads, as long as the total lead resistance is optimized. A similar tradeoff between heat flow and signal attenuation can be applied to the optimization of high-frequency input/output lines. Superconducting leads are not subject to these limitations, and can result in further reduction in heat load. Design examples are presented for an RSFQ-based radio receiver on either a two-stage or a four-stage cooler.
Keywords :
cryogenic electronics; heat transfer; thermal management (packaging); Joule heating; RSFQ system; cryopackaging; current leads; heat flow; multistage cryocoolers; resistive wires; signal attenuation; superconducting electronic system; thermal load management; thermal optimization; thermal packaging; thermalization temperature; Electronic packaging thermal management; Heating; Load flow analysis; Superconducting materials; Temperature; Thermal loading; Thermal management; Thermal management of electronics; Thermal resistance; Wires; Cryocooler; cryopackaging; current leads; thermal optimization;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2007.898719
Filename :
4277480
Link To Document :
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