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A Fixed-angle Dynamic Heat Spreading Model For (an)lsotropic Rear-cooled Substrates

机译:(各向同性)后冷却基板的固定角动态热扩散模型

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摘要

During a period of almost 40 years already, various fixed-angle heat spreading models have been developed in the literature. These models are commonly used by thermal engineers as approximations for the thermal steady-state resistance of a heat source on a rear-cooled substrate. In this paper, an extension of these models to dynamic (time-dependent) phenomena is proposed. The heat dissipated by a square source (side a) is assumed to spread out into the substrate (thickness b) under an angle φ. An analytical solution for the complex thermal impedance Z_(th)(jω) in phasor notation is derived. The obtained expression, in which φ is used as a fitting parameter, is compared with accurate analytical results. A very good agreement is observed (average relative error less than 6%) for a wide range of the normalized thickness λ =b/a. A compact expression for the optimal heat spreading angle as a function of λ is given. Also the temperature response to a heat power step is investigated, and a simple formula for the thermal rise time is provided. Finally, the model can be. easily extended to anisotropic media, which often appear in electronic packaging applications. Overall the proposed model allows a thermal designer to make quick yet accurate estimations about the dynamic behavior of the device.
机译:在近40年的时间里,文献中已经开发出各种固定角度的散热模型。热工程师通常使用这些模型作为后冷却基板上热源的热稳态电阻的近似值。在本文中,提出了将这些模型扩展到动态(时间相关)现象的方法。假设由方形源(a面)散发的热量以角度φ散布到基板中(厚度b)。推导了用相量符号表示的复数热阻Z_(th)(jω)的解析解。将获得的表达式(其中φ用作拟合参数)与准确的分析结果进行比较。对于宽范围的标准化厚度λ= b / a,观察到非常好的一致性(平均相对误差小于6%)。给出了最佳散热角与λ的函数关系的紧凑表达式。还研究了对热功率步骤的温度响应,并提供了热上升时间的简单公式。最后,模型即可。容易扩展到各向异性介质,通常出现在电子包装应用中。总体而言,所提出的模型允许热设计人员对器件的动态行为进行快速而准确的估计。

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