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Non-Contact Surface Temperature Sensing Based on a Single Bimorph pMUTs Array

机译:基于单个Bimorph pMUTs阵列的非接触表面温度感测

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This paper reports the non-contact surface temperature measurements using a single piezoelectric micromachined ultrasonic transducers (pMUTs) array based on time-of-flight (ToF) for the first time. Compared with the state-of-art technologies, four distinctive advancements have been achieved: (1) non-contact surface temperature sensing via pMUTs by the pulse-echo mode to detect the changes in ToF; (2) independence on surface material properties, e.g. emissivity; (3) integration with an ultrasonic analog frontend for both transmitting and receiving; and (4) recorded sensitivity of 143 ns/°C in ToF. As such, the proposed sensing scheme and results could open up a new class of non-contact temperature sensing in various media (air, liquid, tissue …) for industrial and biomedical applications.
机译:本文首次报告了基于飞行时间(ToF)的单个压电微机械超声换能器(pMUT)阵列的非接触表面温度测量。与最新技术相比,已经取得了四个显着进步:(1)通过脉冲回波模式通过pMUT进行非接触表面温度检测,以检测ToF的变化; (2)表面材料特性的独立性,例如发射率(3)与超声波模拟前端集成,以进行发送和接收; (4)在ToF中记录的灵敏度为143 ns /°C。这样,提出的传感方案和结果可以在工业和生物医学应用的各种介质(空气,液体,组织……)中开辟一类新型的非接触式温度传感。

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