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Optimization of Sine-Wave Clocking for High-Frequency AC–DC Conversion

机译:用于高频AC-DC转换的正弦波时钟优化

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Wireless energy harvesting devices convert received ac energy into dc voltages suitable to power the back-end functionality of the devices. The low energy available to the devices require high ac–dc conversion efficiency in order for enough power to be delivered to the load. This paper presents a model to characterize loss through charge pump cells in wireless energy harvesting devices. The proposed model includes the time-domain effects of the input radio-frequency energy wave and provides additional insight into how clock and switch parameters along with architecture considerations can be used to improve the efficiency of ac–dc conversion. Results are verified using simulation in a 0.18-$mu$m CMOS technology. We show the impact of threshold voltage on reverse conduction and the limitations on increasing transistor switch sizes to support high current loads. Design examples use the presented model to optimize design parameters to decrease loss in the charge pump. We compare the performance between sine-wave and square-wave clocked charge pumps to show the tradeoff between charge pump loss and clock generation power consumption. Furthermore, the benefits of easily computing architectural changes is demonstrated using the proposed model showing how the calculated equivalent resistance can be used to determine the benefits of mixed-mode clocking.
机译:无线能量收集设备将接收到的交流能量转换为适合于为设备的后端功能供电的直流电压。设备可用的低能量要求高的AC-DC转换效率,以便将足够的功率传递给负载。本文提出了一个模型来表征无线能量收集设备中电荷泵单元的损耗。所提出的模型包括输入射频能量波的时域效应,并提供了关于如何使用时钟和开关参数以及体系结构方面的考虑的更多见解,可以用来提高AC-DC转换的效率。使用0.18- n $ mu $ nm CMOS技术。我们展示了阈值电压对反向传导的影响,以及为支持高电流负载而增加晶体管开关尺寸的限制。设计实例使用提出的模型来优化设计参数,以减少电荷泵中的损耗。我们比较了正弦波和方波时钟电荷泵之间的性能,以显示电荷泵损耗与时钟产生功耗之间的权衡。此外,使用建议的模型展示了轻松计算架构更改的好处,该模型显示了如何将计算出的等效电阻用于确定混合模式时钟的好处。

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