首页> 外文期刊>Journal of Microelectromechanical Systems >Thermoresistive Effect for Advanced Thermal Sensors: Fundamentals, Design Considerations, and Applications
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Thermoresistive Effect for Advanced Thermal Sensors: Fundamentals, Design Considerations, and Applications

机译:先进热传感器的热阻效应:基本原理,设计注意事项和应用

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摘要

Microelectromechanical systems sensors have been intensively developed utilizing various physical concepts, such as piezoresistive, piezoelectric, and thermoresistive effects. Among these sensing concepts, the thermoresistive effect is of interest for a wide range of thermal sensors and devices, thanks to its simplicity in implementation and high sensitivity. The effect of temperature on the electrical resistance of some metals and semiconductors has been thoroughly investigated, leading to the significant growth and successful demonstration of thermal-based sensors, such as temperature sensors, convective accelerometers and gyroscopes, and thermal flow sensors. In this paper, we review the fundamentals of the thermoresistive effect in metals and semiconductors. We also discuss the influence of design and fabrication parameters on the thermoresistive sensitivity. This paper includes several desirable features of thermoresistive sensors and recent developments in these sensors are summarized. This review provides insights into how it is affected by various parameters, and useful guidance for industrial designers in terms of high sensitivity and linearity and fast response. [2017-0022]
机译:微机电系统传感器已经利用各种物理概念进行了集中开发,例如压阻,压电和热阻效应。在这些感测概念中,热阻效应因其实现简单且灵敏度高而引起广泛的热传感器和设备的关注。已经对温度对某些金属和半导体的电阻的影响进行了彻底的研究,从而导致基于热的传感器(例如温度传感器,对流加速度计和陀螺仪以及热流传感器)的显着增长和成功演示。在本文中,我们回顾了金属和半导体中热阻效应的基本原理。我们还将讨论设计和制造参数对热敏灵敏度的影响。本文包括了热电阻传感器的一些理想功能,并总结了这些传感器的最新发展。这篇综述提供了各种参数如何影响它的见解,并为工业设计师提供了有关高灵敏度,线性和快速响应方面的有用指南。 [2017-0022]

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