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Pressure sensing method based on the transient response of a thermally actuated micro-wire

机译:基于热激励微丝瞬态响应的压力传感方法

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This paper presents a novel kind of measurement method for MEMS pressure sensor based on the well known approach of the thermally actuated micro-wire. The originality of this work relies on the monitoring of the time-based transient response, particularly the step response of the heated wire - this is not a Pirani gauge. The sensor is investigated in the 1-11 bar pressure range as well as in the 20-80 degrees C ambient temperature range. The sensing part is a 1 mm long, 4 k Omega resistive micro-wire made of polysilicon and coated with silicon nitride. Its fabrication relies on a fully standardized industrial process, followed by a frontside anisotropic wet etching to release the micro-wire from the silicon substrate. The measurement relies on the time needed to reach a specified voltage and uses only a 1-bit ADC (i.e. a single voltage comparator), and a digital clock. Thus, in case of a readout circuitry monolithically integrated with the sensor, this measurement method will be very effective in terms of extra-power consumption, silicon area and design time. Performance were measured in nitrogen and gave: a sensitivity of approximately 100 ns/mbar, at atmospheric pressure a precision of 0.2% and at 11 bar a precision of 0.05%, a power consumption of approximately 1.5 mW with 600 mu A, and showed highly linear characteristics with low drift with respect to ambient temperature. Those results are very encouraging given the proof feature of this work. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于热致动微丝的众所周知的MEMS压力传感器的新型测量方法。这项工作的独创性取决于对基于时间的瞬态响应(尤其是加热丝的阶跃响应)的监视-这不是皮拉尼规。在1-11 bar的压力范围以及20-80摄氏度的环境温度范围内对传感器进行了研究。感应部分是一条1毫米长的4 kΩ电阻微线,由多晶硅制成并涂有氮化硅。它的制造依赖于完全标准化的工业过程,然后进行正面各向异性湿法蚀刻,以从硅衬底释放微线。测量取决于达到指定电压所需的时间,并且仅使用一个1位ADC(即单个电压比较器)和一个数字时钟。因此,在读出电路与传感器单片集成的情况下,这种测量方法在额外功耗,硅面积和设计时间方面将非常有效。在氮气中测量性能,得出的灵敏度为:大约100 ns / mbar,在大气压下为0.2%的精度,在11 bar下为0.05%的精度,在600μA电流下的功耗约为1.5 mW,显示出很高的灵敏度。相对于环境温度具有低漂移的线性特性。考虑到这项工作的证明功能,这些结果令人鼓舞。 (C)2014 Elsevier B.V.保留所有权利。

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