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Analysis, modelling and measurement of the effects of aluminium and polymer heatsinks on conducted electromagnetic compatibility in DC-DC converters

机译:分析,建模和测量铝和聚合物散热器对DC-DC转换器中传导电磁兼容性的影响

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摘要

Effects of polymer heatsink materials on electromagnetic interference (EMI) noise in converters have not been adequately investigated. Heatsinks provide a path to ground for the common-mode (CM) noise. Selecting an appropriate heatsink material can therefore help reduce CM noise by increasing noise path impedance. The critical parameter is the heatsink-to-device capacitance and accurate models of the heatsink impedance need to be developed. This is necessary for results that are accurate enough to allow prequalification of a converter as would happen in an accredited environment. However, simplified CM and differential-mode models of the step-down DC-DC converter are adequate to predict the effects of the heatsink on the conducted noise. This study will demonstrate that compared to a solid aluminium material, using polymer material incorporating conductive fillers can greatly lower the device-to-heatsink capacitance, and still be adequate for heat dissipation in low power converters. This in turn reduces CM noise in the frequency band below 30 MHz. The measurement test setup is configured according to MIL-STD-461F standard. It consists of a wideband two-port line impedance stabilising network (LISN), a properly grounded copper sheet, a suspended feed-line from the LISN to the device under test and an oscilloscope recording the data.
机译:尚未充分研究聚合物散热器材料对转换器中电磁干扰(EMI)噪声的影响。散热器为共模(CM)噪声提供了接地路径。因此,选择合适的散热器材料可以通过增加噪声路径阻抗来帮助降低CM噪声。关键参数是散热器到设备的电容,需要开发散热器阻抗的精确模型。这对于获得足够准确的结果(如在认可的环境中进行转换器的资格预审)是必要的。但是,降压型DC-DC转换器的简化CM模式和差模模式足以预测散热器对传导噪声的影响。这项研究将证明,与固态铝材料相比,使用掺有导电填料的聚合物材料可以大大降低器件到散热器的电容,并且仍然足以满足低功率转换器的散热要求。反过来,这可降低30 MHz以下频带中的CM噪声。根据MIL-STD-461F标准配置测量测试设置。它由宽带两端口线路阻抗稳定网络(LISN),正确接地的铜片,从LISN到被测设备的悬挂馈线以及记录数据的示波器组成。

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    Grobler, Inus; Gitau, M.N.;

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  • 年度 2017
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  • 正文语种 en
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