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Pathways to mm-scale DC-DC converters: Trends, opportunities, and limitations

机译:毫米级DC-DC转换器的发展趋势,机遇与局限

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Despite ongoing advances in semiconductor technologies, power conversion circuits and subcomponents remain a major bottleneck in a variety of performance and embedded computing applications. This paper reviews and discusses some of the fundamental tradeoffs and future prospects for high-density passive components, active devices, and circuit architectures that show promise in the direction of monolithic or mm-scale power conversion. These trends are unified in a minimum power loss figure of merit (FOM) that can be used to compare DC-DC converters under various constraints on passive components (area, energy storage, and/or volume). The paper highlights switched-capacitor and hybrid-resonant converters and outlines important trends and tradeoffs that relate to active- and passive-component utilization and conversion ratio.
机译:尽管半导体技术不断进步,但是功率转换电路和子组件仍然是各种性能和嵌入式计算应用程序中的主要瓶颈。本文回顾并讨论了高密度无源元件,有源器件和电路架构的一些基本权衡和未来前景,这些朝着单片或毫米级功率转换的方向显示了希望。这些趋势统一在最小功率损耗因数(FOM)中,可用于比较无源组件(面积,能量存储和/或体积)各种约束条件下的DC-DC转换器。本文重点介绍了开关电容器和混合谐振转换器,并概述了与有源和无源组件利用率和转换率有关的重要趋势和取舍。

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