A miniaturized autonomous microsystem for hydrogen gas sensing applications

Naser Khosro Pour, F. Krummenacher, M. Kayal
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引用次数: 3

Abstract

This paper presents a fully integrated, ultra-low power microsystem that is used for hydrogen gas sensing in an autonomous wireless sensor node. The proposed circuit harvests solar energy from a micro-power photovoltaic module to measure temperature and hydrogen concentration and transmits the measured value using wireless data transmission. A rechargeable NiMH microbattery is used to store harvested energy. Photovoltaic module charges this microbattery, using a highly area- and power-efficient power management circuit. In order to measure hydrogen concentration, conductance change of a miniaturized palladium nanowire sensor is measured and converted to a digital signal with 12-bit resolution, using an area-efficient readout circuit. The proposed microsystem has been implemented in a 0.18μm CMOS process and occupies a core area of only 0.47mm2. This circuit features a low current consumption of 200nA for power management circuit and an additional 1.1μA for sensor interface circuit. It operates with low power supply voltage in the 0.8V to 1.6V range.
用于氢气传感应用的小型化自主微系统
本文提出了一种完全集成的超低功耗微系统,用于自主无线传感器节点中的氢气传感。该电路从微功率光伏模块收集太阳能,测量温度和氢气浓度,并通过无线数据传输传输测量值。一个可充电的镍氢微电池被用来储存收集的能量。光伏模块为这个微型电池充电,使用一个高面积和功率效率的电源管理电路。为了测量氢气浓度,我们测量了小型化钯纳米线传感器的电导变化,并利用面积高效读出电路将其转换为12位分辨率的数字信号。该微系统采用0.18μm CMOS工艺实现,核心面积仅为0.47mm2。该电路功耗低,电源管理电路功耗为200nA,传感器接口电路功耗为1.1μA。在0.8V ~ 1.6V的低电压范围内工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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