Capacitive micromachined ultrasonic transducer as a resonant temperature sensor

Zhikang Li, Libo Zhao, Zhiying Ye, Hongyan Wang, Yulong Zhao, Zhuangde Jiang
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Abstract

The capacitive ultrasonic transducer (CMUT) was initially proposed for temperature measurement. A simple CMUT structure and the corresponding matching circuits were designed. Then the effects of vibration modes and bias voltage on sensitivity were analyzed by the finite element method. The results showed that the resonant frequency varied almost linearly with the temperature over the range of 45 °C to 120 °C, and the sensitivity and the nonlinear error were about -1931.6ppm/°C (or -21.2 kHz /°C) and 1.33% respectively when the CMUT working at the first order vibration mode with a bias voltage of 22.05V. It was demonstrated that the first order vibration mode had a higher sensitivity than the other three higher modes and the sensitivity could be adjusted by the bias voltage.
电容式微机械超声换能器作为谐振式温度传感器
电容式超声换能器(CMUT)最初被提出用于温度测量。设计了一种简单的CMUT结构和相应的匹配电路。然后用有限元法分析了振动模态和偏置电压对灵敏度的影响。结果表明,在45℃~ 120℃范围内,谐振频率随温度的变化几乎呈线性变化,当CMUT工作在一阶振动模式下,偏置电压为22.05V时,灵敏度约为-1931.6ppm/°C(或-21.2 kHz /°C),非线性误差约为1.33%。结果表明,一阶振动模态比其他三阶振动模态具有更高的灵敏度,且灵敏度可以通过偏置电压调节。
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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