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Canonical switched capacitor converters. Comments, complements, and refinements

机译:规范的开关电容转换器。注释,补充和完善

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Switched Capacitor Converters (SCC) form useful blocks in low/medium power applications as they are suitable for integration, both as off-chip and on-chip IC realizations. However, the problem with SCC is that their voltage conversion ratio is topology-dependent. By changing the SC circuit configuration, we can gain control over voltage conversion but the available ratio remains of a discrete nature, i.e. it maps into a countable set of target voltages. Recent papers, on two-phase and multi-phase converters have attempted to solve the so-called canonical circuit realization problem. A converter circuit is canonical in the sense that (1) it can realize all theoretically attainable ratios, (2) the said realizations are not necessarily unique, (3) it contains the minimum number of circuit elements needed for such a circuit, and (4) it takes the form of expandable modular blocks. We briefly review reported SCC topologies with large numbers of ratios and critically filter out and assess the candidates for canonicity. We focus on two illustrative examples based on our previous research. Finally, we comment on open questions and theoretical peculiarities found.
机译:开关电容转换器(SCC)构成了低/中功率应用中的有用模块,因为它们适合作为片外和片上IC实现的集成。但是,SCC的问题在于它们的电压转换率取决于拓扑。通过更改SC电路配置,我们可以获得电压转换的控制权,但可用比率仍然是离散的,即它映射到可计数的目标电压集合中。最近关于两相和多相转换器的论文试图解决所谓的规范电路实现问题。转换器电路是规范的,其含义是:(1)它可以实现所有理论上可达到的比率;(2)所述实现不一定是唯一的;(3)它包含此电路所需的最少数量的电路元件;以及( 4)采用可扩展模块块的形式。我们简要回顾了报告的具有大量比率的SCC拓扑,并严格筛选并评估了候选者的正典性。在我们之前的研究的基础上,我们将重点放在两个说明性示例上。最后,我们对未解决的问题和发现的理论特点进行评论。

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