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Optimization of Fully-Integrated Power Converter Circuits Comprising Tapered Inductor Layout and Temperature Effects

机译:包含锥形电感布局和温度影响的全集成功率转换器电路的优化

摘要

A technique for the optimization of fully-integrated inductive DC-DC converters is presented. An optimization framework is used to acquire an optimal converter, focusing on the on-chip inductor as well as on the accurate layout-based modeling of temperature effects. For the inductor in inductive DC-DC converters, a tapered topology is introduced. A fully-integrated DC-DC boost converter is designed and optimized in a 0.13 μm CMOS technology. The power loss in the circuit is reduced with 27 % resulting in a 7 % efficiency improvement, compared to a fully-integrated DC-DC boost converter with a regular inductor topology.
机译:提出了一种用于优化完全集成式感应DC-DC转换器的技术。优化框架用于获取最佳转换器,重点放在片上电感器以及基于精确布局的温度效应建模上。对于电感式DC-DC转换器中的电感器,引入了锥形拓扑。采用0.13μmCMOS技术设计和优化了完全集成的DC-DC升压转换器。与具有常规电感器拓扑结构的全集成DC-DC升压转换器相比,电路中的功率损耗降低了27%,效率提高了7%。

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