Quantitative Analysis of MEMS Piezoresistive Pressure Sensors Based on Wide Band Gap Materials

压阻效应 材料科学 硅带隙温度传感器 钻石 碳化硅 压力传感器 光电子学 微电子机械系统 电子工程 复合材料 电气工程 机械工程 工程类 电压 分压器 跌落电压
作者
Vinod Belwanshi,Anita Topkar
出处
期刊:Iete Journal of Research [Taylor & Francis]
卷期号:68 (1): 667-677 被引量:19
标识
DOI:10.1080/03772063.2019.1620641
摘要

Wide band gap materials such as silicon carbide and diamond are considered more suitable compared to silicon for the fabrication of piezoresistive pressure sensors for operation at high temperatures. We have carried out extensive FEM simulation study for theoretically assessing the response of pressure sensors incorporating these wide band gap materials. Response of sensors incorporating silicon micromachined diaphragm with oxide isolated piezoresistors of diamond or silicon carbide was studied using FEM simulations. The study was further extended for sensors incorporating diaphragm as well as piezoresistors of diamond or silicon carbide. The results in both cases were compared with those obtained for a single crystal or polycrystalline piezoresistor-based silicon pressure sensor. The results presented in this paper demonstrate that among the materials studied in this work, diamond-based sensors will have the least pressure sensitivity compared to silicon carbide or silicon-based sensors. However, considering the nonlinearity of response, diamond-based sensors will have the minimum nonlinearity of pressure response compared to silicon-based pressure sensors. Hence for the same nonlinearity, it would be possible to operate the diamond-based sensors up to much higher pressures.
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