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Power density improvement in integrated electromagnetic passive modules with embedded heat extractors

机译:嵌入式散热器集成电磁无源模块的功率密度提高

摘要

In this paper, heat extractors are embedded into the magnetic materials of the integrated power electronics passive modules. The optimum volume of heat-extracting material may slightly reduce the amount of electromagnetic energy that is processed, but more efficient heat removal yields higher allowable levels of both electromagnetic stress and losses per unit volume in the remaining material. Without influencing the electromagnetic performance, heat extractors provide the potential to improve the power density of passive modules. This paper introduces the mechanism of heat extractors into passive power electronics modules. Theoretical thermal models and simulation are used toinvestigate factors influencing the module performance and the improvement on power density. Prototypes are built for experimental investigation. The experimental results show great improvement of power density by the application of heat extraction technology. High power density, more than 1 kW/in3 (70 W/cm3 ), is achieved on the prototype.
机译:在本文中,吸热器被嵌入到集成电力电子无源模块的磁性材料中。最佳吸热材料的体积可能会略微减少所处理的电磁能的量,但是更有效的除热会在剩余材料中产生更高的电磁应力水平和每单位体积的损耗。在不影响电磁性能的情况下,吸热器提供了改善无源模块功率密度的潜力。本文将吸热器的原理介绍到无源功率电子模块中。理论热模型和仿真用于研究影响模块性能和功率密度提高的因素。建立原型用于实验研究。实验结果表明,利用排热技术可以大大提高功率密度。在原型上实现了超过1 kW / in3(70 W / cm3)的高功率密度。

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