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Advantages of paralleling inductors-on-silicon in high frequency power converters

机译:高频功率转换器中的硅上并联电感器的优势

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In general power supplies are moving towards higher switching frequencies to reduce the size of passive components; the ultimate goal is to facilitate the integration of active and passive components on a single silicon chip providing a Power Supply on Chip (PSoC). The purpose of this work is to show that distributing inductors-on-silicon in parallel can increase the output current and reduce losses while also maintaining the same overall footprint area and the same effective inductance as a single micro-inductor. The performance of distributed micro-inductors is compared in a range of parallel micro-inductor configurations to show which configuration provides the best overall performance in terms of circuit size, conversion efficiency and power handling. For that purpose, detailed analysis of the performance of all power components (inductors and MOSFETs) is carried out.
机译:一般而言,电源正朝着更高的开关频率发展,以减小无源元件的尺寸。最终目标是促进有源和无源组件在单个硅芯片上的集成,从而提供片上电源(PSoC)。这项工作的目的是表明,在硅上并联分布电感器可以增加输出电流并减少损耗,同时还可以保持与单个微电感器相同的总占地面积和相同的有效电感。在一系列并联微电感配置中比较了分布式微电感的性能,以显示哪种配置在电路尺寸,转换效率和功率处理方面可提供最佳的整体性能。为此,对所有功率组件(电感器和MOSFET)的性能进行了详细分析。

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