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High-efficiency, switched-capacitor power conversion using a resonant clocking circuit to produce gate drive signals for switching capacitors

机译:使用谐振时钟电路的高效开关电容器功率转换,以产生用于开关电容器的栅极驱动信号

摘要

Some embodiments of the present invention provide a system that efficiently converts between a lower input voltage and a higher output voltage. This system includes an input which receives the input voltage, and an output which provides the output voltage. The system also includes a first capacitor with a higher potential terminal and a lower potential terminal, as well as a first set of switching devices which selectively couple the higher potential and lower potential terminals of the first capacitor between the input voltage, the output voltage and a base voltage. The system additionally includes a resonant clocking circuit which generates clock signals with substantially non-overlapping clock phases, including a first phase and a second phase. This resonant clocking circuit is configured to control the first set of switching devices so that during the first phase, the higher potential terminal of the first capacitor is coupled to the input voltage and the lower potential terminal of the first capacitor is coupled to the base voltage, and during the second phase, the higher potential terminal of the first capacitor is coupled to the output voltage and the lower potential terminal of the first capacitor is coupled to the input voltage.
机译:本发明的一些实施例提供了一种在较低的输入电压和较高的输出电压之间有效转换的系统。该系统包括接收输入电压的输入和提供输出电压的输出。该系统还包括具有较高电势端子和​​较低电势端子的第一电容器,以及在输入电压,输出电压和输入电压之间有选择地将第一电容器的较高电势端子和​​较低电势端子耦合的第一组开关装置。基本电压。该系统还包括谐振时钟电路,该谐振时钟电路产生具有基本上不重叠的时钟相位的时钟信号,该时钟相位包括第一相位和第二相位。该谐振时钟电路被配置为控制第一组开关装置,使得在第一阶段期间,第一电容器的较高电势端子耦合至输入电压,并且第一电容器的较低电势端子耦合至基极电压。并且,在第二阶段期间,第一电容器的较高电势端子耦合至输出电压,并且第一电容器的较低电势端子耦合至输入电压。

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