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A battery-less, 255 nA quiescent current temperature sensor with voltage regulator fully powered by harvesting ambient vibrational energy

机译:较少的电池,255个NA静态电流温度传感器,具有电压调节器,通过收获环境振动能量完全供电

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We report on the circuit design and experimental demonstration of a battery-less, self-powering temperature sensor node, powered entirely by a piezoelectric (PZE) ambient vibrational energy harvester, and enabled by a novel ultra-low-power application-specific integrated circuit (ASIC). The ASIC collects and stores energy generated by the PZE transducer into a supercapacitor, powers both the on-ASIC temperature sensor and the on-board RF module for wireless temperature sensing applications. The ASIC is fabricated using a standard 0.5 μm CMOS process. The quiescent current in the entire ASIC is only 55 nA for energy harvesting, and 255 nA when temperature sensing is further included. Such self-powering temperature sensors can help enable low-cost transformation of today's ordinary buildings into energy-efficient smart buildings.
机译:我们报告了电池电路设计和实验演示的电池,自动温度传感器节点,完全由压电(PZE)环境振动能量收割机提供动力,并通过新颖的超低功耗应用专用集成电路实现(ASIC)。 ASIC收集并将通过重新传感器产生的能量存储在超级电容器中,为无线温度传感应用提供上ASIC温度传感器和车载RF模块。使用标准的0.5μmCMOS工艺制造ASIC。整个ASIC中的静态电流仅用于能量收集的55 nA,并且当进一步包括温度感测时255 NA。这种自动温度传感器可以帮助将当今普通建筑物的低成本转变为节能智能建筑。

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