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Micro-pressure sensor dynamic performance analysis

机译:微压传感器动态性能分析

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摘要

Purpose - The purpose of this paper is to report on a piezoresistive pressure sensor for micro-pressure measurement with a cross-beam membrane (CBM) structure. This study analyzes the dynamic characteristics of the proposed device. Design/methodology/approach - This CBM sensor possesses high stiffness and sensitivity, measuring dynamic pressure more effectively in a high-frequency environment compared with other piezoresistive structures. The dynamic characteristics are derived using the finite element method to analyze the dynamic responses of the new structure, including natural frequency and lateral effect performances. The CBM dynamic performances are compared with traditional structures. Findings - The pressure sensor performance was evaluated, and the experimental results indicate that they all exhibit similar dynamic characteristics as the designed model. Compared with traditional structures such as the single island, the CBM proves to be superior in evaluating the dynamic performances of pressure sensors at high frequencies of > 30 kHz. Originality/value - Most studies of this micro pressure sensors attempt to promote the sensitivity or focus on the static performance of pressure sensor with micro gauge. This study is concerned with analyze the dynamic characterism of micro pressure sensor and compared with the traditional structures, that prove the CBM structure has stable dynamic performance and is a better option for measuring dynamic micro pressure in biomedical applications.
机译:目的-本文的目的是报告一种具有跨束膜(CBM)结构的用于微压测量的压阻式压力传感器。这项研究分析了所提出的设备的动态特性。设计/方法/方法-这种CBM传感器具有很高的刚度和灵敏度,与其他压阻结构相比,在高频环境中可以更有效地测量动压力。使用有限元方法导出动力特性,以分析新结构的动力响应,包括固有频率和横向效应。将煤层气的动态性能与传统结构进行了比较。发现-对压力传感器的性能进行了评估,实验结果表明它们都表现出与设计模型相似的动态特性。与传统的结构(例如单个岛)相比,CBM在评估压力传感器(> 30 kHz的高频)的动态性能方面表现出色。原创性/价值-对该微型压力传感器的大多数研究都试图提高灵敏度或关注带有微型仪表的压力传感器的静态性能。这项研究关注于分析微压力传感器的动态特性,并与传统结构进行比较,证明CBM结构具有稳定的动态性能,是在生物医学应用中测量动态微压力的更好选择。

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