用于低功耗能量收集应用的DC-DC PFM升压功率变换器的实现

Min-Chin Lee, Cheng-Han Li, Xiao-Xuan Yang
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引用次数: 1

摘要

本文实现了一种低功耗PFM升压功率转换器,可应用于低电压能量收集系统,如物联网智能微传感功率模块或能量收集接口电路。接口电路可以在能量收集装置和电负载之间提供电源管理功能。功率变换器采用PFM反馈控制机制实现升压变换器,当输入电压和负载发生变化时,可以稳定输出电压。当PFM升压功率变换器电路的输入电压小于Schmitt触发逆变电路的过渡电压时,功率变换器的PFM控制电路将停止运行反馈控制调节过程,升压功率变换器进入待机状态。因此,升压功率变换器的静态功耗是最小的。采用台积电0.35um 2P4M CMOS工艺技术对整个电路进行了仿真设计。该变换器芯片尺寸为0.324 × 0.43015 mm2,功耗约为2.287mW。该芯片可以在2.0V ~ 2.5V的输入电源电压范围内工作,在最大输出电流10mA时,其输出电压稳定在3.0V,纹波电压小于20mV。负载调节小于0.944mV/mA,线路电压调节小于34.6mV/V。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of DC-DC PFM Boost Power Converter for Low-power Energy Harvesting Applications
This paper implements a low-power PFM boost power converter that can be applied to low-voltage energy harvesting systems, such as in the IoT intelligent micro-sensing power module or energy harvesting interface circuit. The interface circuit can provide power management functions between the energy harvesting device and the electric load. The power converter uses the PFM feedback control mechanism to implement a boost converter which can stabilize the output voltage when the input voltage and load change. And when the input voltage of the PFM boost power converter circuit is less than the transition voltage of the Schmitt triggered inverter circuit, the PFM control circuit of the power converter will stop operating the feedback control regulation process, and the boost power converter will enter the standby mode. Therefore, the static power consumption of the boost power converter is minimized. The overall circuit is simulated and designed using TSMC 0.35um 2P4M CMOS process technology. The converter having 0.324x0.43015 mm2 chip size and power dissipation about 2.287mW. This chip can operate with input supply voltage from 2.0V to 2.5V, and its output voltage can stable at 3.0V and less than 20mV ripple voltage at maximum output current 10mA. The converter with a load regulation is less than 0.944mV/mA and the line voltage regulation is less than 34.6mV/V.
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