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Characterisation of cooling curves for power device die attach using a transient cooling curve measurement

机译:使用瞬态冷却曲线测量的电动装置管芯的冷却曲线的表征

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In this paper the analysis of cooling curves for power levels of up to 65 W is presented. The paper details a constant temperature fixture to keep a test vehicle at a constant temperature for these power levels. The test vehicle consists of a special designed copper block, a die attachment layer and a bare die for heating and sensing. The diode V/sub f/ is used for sensing junction temperature. The tooling curve method of temperature characterisation is used instead of the widely used heating curve measurement because at this power level heating curves are difficult to obtain when specially designed thermal test chips are not available. The design of the special test vehicle is presented in detail. It is designed to achieve an equal temperature distribution across the test diode. The test vehicle has a three-layer structure to minimise the number of thermal interfaces. This enables a more precise cooling curve analysis later in this work. The experimental results were correlated through the use of CFD models and thermal equivalent electrical networks. From these CFD models, the thermal resistance and thermal capacitance of the die attach layer can be evaluated. A network model is used to implement the thermal performance in network analyser tools such as SPICE. The paper shows a good agreement between the CFD model, the lumped thermal network and the measurements.
机译:本文提出了高达65 W的电力水平的冷却曲线的分析。本文详细说明了一种恒温夹具,以保持测试车辆在这些功率水平的恒定温度下。测试车辆由特殊设计的铜块,管芯附接层和用于加热和感测的裸管组成。二极管V / SUB F /用于传感结温。使用温度表征的工具曲线方法代替广泛使用的加热曲线测量,因为在该功率水平时,难以在特殊设计的热试验芯片时获得加热曲线。特殊测试车辆的设计详细介绍。它旨在在测试二极管上实现相等的温度分布。试验车具有三层结构,以最小化热界面的数量。这使得在这项工作之后可以实现更精确的冷却曲线分析。通过使用CFD模型和热量电气网络,实验结果是相关的。从这些CFD模型,可以评估模具附着层的热电阻和热电容。网络模型用于在诸如Spice之类的网络分析器工具中实现热性能。本文显示了CFD模型,集总热网络和测量之间的良好一致性。

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