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Towards optimizing enhanced surfaces for passive immersion cooled heat sinks

机译:致力于优化增强型表面,以实现被动式沉浸式散热器

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Reduction in die feature-size due to improvements in microelectronics fabrication technology have increased the demands on effective thermal management. As a consequence, innovative heat removal schemes must be explored. Immersion cooling in a dielectric fluid, despite the increased complications, continues to be studied as a possible solution. The characteristics of a surface used as a pool boiling heat sink depend on its microscopic features. This paper reports results from an investigation in which the shape and spacing of these microscopic features were studied in order to achieve improved thermal performance. The heat sources were thin-film heaters deposited in an array on a silicon wafer which was immersed in FC-72 coolant.
机译:由于微电子制造技术的改进而减小了管芯特征尺寸,从而增加了对有效热管理的需求。结果,必须探索创新的除热方案。尽管增加了复杂性,但将介电液中的浸入冷却作为可能的解决方案仍在继续进行研究。用作池沸腾散热器的表面的特性取决于其微观特征。本文报告了一项调查结果,其中研究了这些微观特征的形状和间距,以实现改进的热性能。热源是薄膜加热器,该加热器以阵列形式沉积在浸入FC-72冷却剂的硅晶片上。

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