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MIMO Switched-Capacitor DC–DC Converters Using Only Parasitic Capacitances Through Scalable Parasitic Charge Redistribution

机译:通过可扩展的寄生电荷再分配仅使用寄生电容的MIMO开关电容器DC-DC转换器

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摘要

This paper presents a multiple-input multiple-output (MIMO) switched-capacitor (SC) dc–dc converter that only uses the parasitic capacitance already present in fully integrated SC power converters to generate multiple dc voltages. When used in an SC converter together with the scalable parasitic charge redistribution technique, the presented MIMO converter provides additional voltage rails, which can be used to power gate drivers or control blocks without any area overhead. Moreover, because the proposed converter only makes use of elements, which are already present in fully integrated SC converters, only conductive losses are introduced. This means that, for low output powers, efficiencies arbitrarily close to 100% can be achieved. The presented type of converter is characterized using an MIMO model, which is, in turn, used to prove the efficiency of the converter compared with regular SC MIMO converters, particularly for a large number of inputs or outputs. Measurements verify the basic working principle of the presented converter, demonstrating a peak efficiency of 98.9% and output powers sufficient to power internal converter blocks.
机译:本文提出了一种多输入多输出(MIMO)开关电容器(SC)dc-dc转换器,该转换器仅使用完全集成的SC电源转换器中已经存在的寄生电容来产生多个dc电压。当与可扩展的寄生电荷再分配技术一起用于SC转换器时,提出的MIMO转换器可提供额外的电压轨,可用于为栅极驱动器或控制模块供电,而不会产生任何面积开销。此外,由于所提出的转换器仅利用完全集成的SC转换器中已经存在的元件,因此仅引入了导电损耗。这意味着,对于低输出功率,可以实现任意接近100%的效率。提出的类型的转换器使用MIMO模型进行表征,该模型进而用于证明与常规SC MIMO转换器相比的转换器效率,尤其是对于大量输入或输出而言。测量结果验证了所提供转换器的基本工作原理,证明其峰值效率为98.9%,输出功率足以为内部转换器模块供电。

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