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High thermal conductivity connector having high electrical isolation
   
Document Number
US Patent 5386870
Issued Date
February 7, 1995
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Inventors
Nieman; Ralph C. (Downers Grove, IL)
Nicol; Thomas H. (St. Charles, IL)
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Abstract
A method and article for providing a low-thermal-resistance, high-electrical-isolation heat intercept connection. The connection method involves clamping, by thermal interference fit, an electrically isolating cylinder between an outer metallic ring and an inner metallic disk. The connection provides durable coupling of a heat sink and a heat source.
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High thermal conductivity connector having high electrical isolation - US Patent 5386870 Drawing
Drawing from US Patent 5386870
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Number of Claims:
20
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Owner
University of Chicago (Chicago, IL)
Published
February 7, 1995
Application Number
08/090,425
Filed
July 12, 1993
US Classification
165/185   257/E23.102
Int'l Classification
H01L   23/367   (20060101)   F28F   13/00   (20060101)   H01L   23/34   (20060101)  
USPTO Field of Search
165/185   165/1  
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A method for cooling a superconducting device by using a sleeve assembly which thermally interconnects a two stage cryocooler with the device. In operation, the cryocooler is moveable relative to the sleeve assembly between a first configuration wherein the cryocooler is engaged with the sleeve assembly, and a second configuration wherein the cryocooler is disengaged from the sleeve assembly. The cryocooler is disposed in the sleeve assembly with the cooling element of the cryocooler positioned at a distance from the cylinder of the sleeve assembly to establish thermal communication therebetween. Also, the cooling probe of the cryocooler is in contact with the receptacle of the sleeve assembly and is urged against the receptacle to establish thermal communication therebetween. A bellows joins the cryocooler with the sleeve assembly to create an enclosed chamber therebetween and helium is pumped into the sleeve assembly to maintain an operational pressure in the sleeve assembly.

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Description
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