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Anisotropic Heatsinks for Heat-Assisted Magnetic Recording

机译:用于热辅助磁记录的各向异性散热器

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摘要

The relevance of anisotropic heatsinks for heat-assisted magnetic recording (HAMR) is investigated. First, 3-D thermal modeling is used to demonstrate that the heatsink performance on a glass substrate is determined by the heatsink in-plane thermal conductivity. The out-of-plane thermal conductivity has almost no impact on the heatsink ability to carry heat away from the hot spot. As a result, an anisotropic heatsink can be a good alternative to some conventional isotropic heatsink materials when its in-plane thermal conductivity is larger than that of the isotropic material. Second, time-domain thermo-reflectance (TDTR) measurements are presented to extract both the in-plane and the out-of-plane thermal conductivities of a (Cu/Ta) multilayer heatsink. The sensitivity to in-plane thermal conductivity is achieved by using small laser beam sizes and by combining measurements at multiple modulation frequencies on both a low and a high thermally conductive substrate. The fitting of all TDTR spectra gives for the (Cu[5.1]/Ta[1.4]) multilayers an effective out-of-plane thermal conductivity of 11.5 W/mK and an in-plane thermal conductivity of 69 W/mK. These thermal properties make such multilayer material an interesting candidate as HAMR heatsink, equivalent to a 70 W/mK isotropic material.
机译:研究了对热辅助磁记录(HAMR)的各向异性散热器的相关性。首先,使用3-D热建模来证明玻璃基板上的散热性能由散热器面内导热率决定。平面外导热率几乎没有对散热能力携带远离热点的热量。结果,当其面内导热率大于各向同性材料时,各向异性散热器可以是某些常规各向同性散热物材料的良好替代方案。其次,提出了时域热反射率(TDTR)测量以提取(Cu / Ta)多层散热器的平面内和外平面热导体。通过使用小激光束尺寸和通过在低和高导热基板上的多种调制频率下组合测量来实现对面内导热率的敏感性。所有TDTR光谱的拟合赋予(Cu [5.1] / Ta [1.4])多层的多层外平面导热率为11.5W / mk,平面的平面导热率为69w / mk。这些热性质使得这种多层材料成为HAMR散热器的有趣候选者,其等于70W / MK各向同性材料。

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