Several refrigeration systems essential for cooling electronic and computing devices to cryogenic temperatures are explored in this chapter. Both passive and active cooling methods are categorized, with a focus on the operational principles, advantages, and limitations of cryocoolers. Emphasis is placed on energy efficiency and scalability, highlighting the role of different cycles (such as Stirling, Gifford-McMahon, and Claude) in achieving reliable cryogenic conditions.

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Cryogenic Systems for Electronic Applications

  • Nurzhan Zhuldassov,
  • Eby G. Friedman

摘要

Several refrigeration systems essential for cooling electronic and computing devices to cryogenic temperatures are explored in this chapter. Both passive and active cooling methods are categorized, with a focus on the operational principles, advantages, and limitations of cryocoolers. Emphasis is placed on energy efficiency and scalability, highlighting the role of different cycles (such as Stirling, Gifford-McMahon, and Claude) in achieving reliable cryogenic conditions.