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Design methodology for a very high frequency resonant boost converter

机译:极高频谐振升压转换器的设计方法

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This document introduces a design methodology for a resonant boost converter topology that is suitable for operation at very high frequencies. The topology we examine features a low parts count and fast transient response but suffers from higher device stresses compared to other topologies that use a larger number of passive components. A numerical design procedure is developed for this topology that does not rely on time-domain simulation sweeps across parameters. This allows the optimal converter design to be found for a particular main semiconductor switch. If an integrated power process is used where the designer has control over layout of the semiconductor switch, the optimal combination of converter design and semiconductor layout can be found. To validate the proposed converter topology and design approach, a 75 MHz prototype converter is designed and experimentally demonstrated. The performance of the prototype closely matches that predicted by the design procedure, and achieves good efficiency over a wide input voltage range.
机译:本文档介绍了适用于在非常高的频率下工作的谐振升压转换器拓扑的设计方法。与使用大量无源元件的其他拓扑相比,我们检查的拓扑具有较少的部件数量和快速的瞬态响应,但遭受更高的器件压力。为此拓扑开发了一种数值设计程序,该程序不依赖于跨参数的时域仿真扫描。这允许针对特定的主半导体开关找到最佳的转换器设计。如果使用集成电源工艺,设计人员可以控制半导体开关的布局,则可以找到转换器设计和半导体布局的最佳组合。为了验证所提出的转换器拓扑和设计方法,设计并通过实验演示了一个75 MHz的原型转换器。原型的性能与设计程序所预测的性能非常接近,并在较宽的输入电压范围内实现了良好的效率。

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