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Novel Approach to the Extraction of Delphi-like Boundary-Condition-Independent Compact Thermal Models of Planar Transformer Devices

机译:平面变压器装置类德尔菲边界条件无关紧凑热模型提取的新方法

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Planar Magnetic Components are new alternatives to classic transformers. Based on the combination of a low profile high frequency magnetic core and a Printed Circuit Board, these devices allow large reduction in terms of weight and size, which exacerbates power density constraints. To circumvent the potential issues of a multi-layer embedding of flatten high-current-density copper windings at the heart of a substrate, a set of analyses were conducted to characterize electro-thermo-magnetic combined effects with the purpose of elaborating a pertinent thermal model. Using a set of numerical simulations, several concepts of multi-source surrogate thermal model were derived with the prospect of shortening the expensive computation time of the fine Detailed Thermal Model. These approximated models permit to monitor the sensitive temperatures of the primary and secondary windings as well as core ones. Designers can therefore perform trivial calculations to analyse the thermal behaviour of planar transformers for various boundary conditions.
机译:平面磁性元件是经典变压器的新替代品。这些设备基于薄型高频磁芯和印刷电路板的组合,可大幅减少重量和尺寸,从而加剧了功率密度限制。为了避免在基板的中心多层嵌入扁平的高电流密度铜绕组的潜在问题,进行了一系列分析来表征电磁-电磁组合效应,以阐明相关的热学特性。模型。通过一组数值模拟,推导了多源替代热模型的几个概念,以期缩短精细详细热模型的昂贵计算时间。这些近似模型可以监控初级和次级绕组以及铁心绕组的敏感温度。因此,设计人员可以进行简单的计算,以分析各种边界条件下平面变压器的热性能。

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