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An Input-Powered Vibrational Energy Harvesting Interface Circuit With Zero Standby Power

机译:具有零待机功率的输入供电振动能量收集接口电路

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This paper presents an input-powered energy-harvesting interface circuit that eliminates standby power consumption by automatically shutting down when the ac input voltage amplitude is too low for successful energy reclamation. This feature eliminates the need for precharging the load and allows for indefinitely long intervals between energy harvesting cycles. The interface comprises two subcircuits: an input-powered ac/dc converter and an input-powered dc/dc boost converter with regulated output. The two subcircuits are separately fabricated in the ON Semi 3M-2P 0.5 μm CMOS process. The entire interface circuit starts up when the ac input amplitude exceeds 1 V and supplies a regulated dc output up to 3 V. When the input amplitude drops below 600 mV, the interface automatically enters standby mode and consumes no power. The system achieves a maximum efficiency of 60% with 1.5-V ac input amplitude and 3 V regulated dc output, delivering 3.9 mW of output power. The interface also functions properly in tests with an electrodynamic (magnetic) vibrational energy harvester.
机译:本文提出了一种输入供电的能量收集接口电路,该电路通过在交流输入电压幅度过低而无法成功进行能量回收时自动关闭来消除待机功耗。此功能消除了对负载进行预充电的需要,并允许在能量收集周期之间无限长的间隔。该接口包括两个子电路:一个输入供电的ac / dc转换器和一个具有稳压输出的输入供电的dc / dc升压转换器。这两个子电路是在ON Semi 3M-2P0.5μmCMOS工艺中分别制造的。当交流输入幅度超过1 V时,整个接口电路就会启动,并提供高达3 V的稳定直流输出。当输入幅度降至600 mV以下时,该接口会自动进入待机模式,并且不消耗任何功率。该系统以1.5V交流输入幅度和3µV稳压直流输出实现了60%的最高效率,可提供3.9µmW的输出功率。该接口在使用电动(磁性)振动能量采集器的测试中也可以正常运行。

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