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Analysis and Design Strategy of On-Chip Charge Pumps for Micro-power Energy Harvesting Applications

机译:用于微功率收集应用的片上电荷泵的分析与设计策略

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Charge balance law based on conservation of charge is stated and employed to analyze on-chip linear, Fibonacci and exponential charge pumps. For micro-power on-chip implementations, both the positive- and the negative-plate parasitic capacitors have to be considered. Voltage conversion ratios and efficiencies can be obtained in closed form for single- and dual-branch linear charge pumps, but not for Fibonacci and exponential charge pumps. Instead, a first iteration approximation analysis for computing voltage conversion ratio is proposed. For the linear charge pump, efficiency optimization is achieved by first computing the optimal number of stages, and then obtaining from the required output voltage the reduction factor that is a function of load current, flying capacitor and switching frequency. Using a 0.35μm CMOS process, 8X linear, Fibonacci and exponential charge pumps are designed and their performances are compared and confirmed by extensive Cadence Spectre simulations. It is concluded that linear charge pumps attain the best efficiency.
机译:基于收费守恒的投资平衡定律进行了规定,采用分析片上线性,斐波纳契和指数电荷泵。对于微型电源片状实施方式,必须考虑正极和负板寄生电容。电压转换比和效率可以以封闭形式获得,用于单分支线性电荷泵,但不是用于斐波纳契和指数电荷泵。相反,提出了用于计算电压转换比的第一迭代近似分析。对于线性电荷泵,通过首先计算最佳级数,然后从所需的输出电压获得效率优化,这是负载电流,飞行电容器和开关频率的函数的所需输出电压。设计了0.35μm的CMOS工艺,设计了8倍线性,斐波纳契和指数电荷泵,并通过广泛的Cadence Specter模拟进行了比较和证实了它们的性能。结论是线性电荷泵达到最佳效率。

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