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THERMAL PERFORMANCE OF NATURAL GRAPHITE HEAT SPREADERS WITH EMBEDDED THERMAL VIAS

机译:天然石墨热涂布器的热性能与嵌入式热通孔

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Natural graphite heat spreaders are in use in electronic cooling applications where heat flux density is low. Natural graphite is an anisotropic material, with a high thermal conductivity in the plane of the spreader combined with a much lower thermal conductivity through its thickness. This low through-thickness thermal conductivity poses a problem when attempting to cool heat sources with relatively high heat flux densities. This problem can be overcome by embedding a thermal via in the graphite material. This via is made from an isotropic material with a thermal conductivity significantly higher than the through-thickness graphite conductivity. This paper examines the thermal performance of a natural graphite heat spreader with an embedded thermal via. The work is primarily experimental although numerical models were used to guide the experiments. The thermal performance of these spreaders is compared to that of spreaders made from conventional isotropic materials. The effect of accelerated aging tests on the performance of these graphite spreaders is reviewed. Finally, two applications are examined; first cooling an ASIC module and second, cooling an FB-DIMM memory card.
机译:天然石墨热涂布器在电子冷却应用中,热通量密度低。天然石墨是一种各向异性材料,在吊具的平面中具有高导热率,通过其厚度与热导率更低。当试图冷却具有相对高的热通量密度的热源时,这种低通厚的导热性导致问题。通过将热通孔嵌入石墨材料中可以克服该问题。该通孔由各向同性材料制成,导热率显着高于贯穿厚度石墨电导率。本文介绍了天然石墨散热器与嵌入式热通孔的热性能。工作主要是实验性,尽管使用数值模型来指导实验。这些涂布器的热性能与由常规各向同性材料制成的散布器进行比较。综述了加速老化试验对这些石墨蔓延的性能的影响。最后,检查了两个应用程序;首先冷却ASIC模块并第二,冷却FB-DIMM存储卡。

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