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A Monolithic Polyimide Micro Cryogenic Cooler: Design, Fabrication, and Test

机译:单片式聚酰亚胺微低温冷却器:设计,制造和测试

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摘要

In this paper, we present the design, fabrication, and testing of a monolithic polymer Joule-Thomson microcryogenic cooler (MCC) cold stage. The MCC cold stages were fabricated monolithically on a wafer out of polyimide. The fabrication was based on surface micromachining technologies using electroplated copper as the sacrificial layers and polyimide as the structural material. The process consisted of multilayers of metallization, coating of polyimide, and the patterning on each layer. One of the key techniques enabling this monolithic approach was the development of the wafer-level 3-D interconnect for making high pressure (e.g., 10 atm) polymer fluid microchannels. To evaluate the performance of the MCC, a five-component fluid mixture designed for cooling from 300 to 200 K was used as a refrigerant. The cold tip reached 190 K under a refrigerant pressure ratio of 6.2:1.1 bar. The heat-lift at 200 K was measured to be 5.2 mW.
机译:在本文中,我们介绍了整体式聚合物焦耳-汤姆森微低温冷却器(MCC)冷阶段的设计,制造和测试。 MCC冷台是用聚酰亚胺在晶片上整体制造的。该制造基于表面微加工技术,该技术使用电镀铜作为牺牲层,并使用聚酰亚胺作为结构材料。该过程包括金属化多层,聚酰亚胺涂层以及每层上的图案。支持这种单片方法的关键技术之一是用于制造高压(例如10 atm)聚合物流体微通道的晶圆级3-D互连技术的开发。为了评估MCC的性能,使用了设计用于从300 K冷却到200 K的五组分混合液作为制冷剂。在制冷剂压力比为6.2:1.1 bar时,冷端达到190K。经测量,在200 K时的热升为5.2 mW。

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