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Experimental Studies of Temperature Dependence of Transfer Function of Molecular Electronic Transducers at High Frequencies

机译:分子电子换能器高频传递函数温度依赖性的实验研究

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The main objective of this paper is to study the temperature change of the characteristics of MET-based transducers (molecular electronic transducer) using the example of geophone. The method of temperature measurement of operation factors was used and the experiments were performed in a heat chamber in a wide temperature range. The temperature characteristics of geophone at high frequencies were obtained and the dependence of amplitude temperature coefficient on frequency was found. It was established that in the frequency range of 100-500 Hz, the amplitude temperature coefficient does not depend on the frequency. The obtained results provide new information about the behavior of MET-based transducers and will improve thermal compensation systems of manufactured devices in the future. This paper is an important part of the study of MET temperature behavior and it provides important information for further development of this direction.
机译:本文的主要目的是通过地震检波器的例子研究基于MET的传感器(分子电子传感器)特性的温度变化。使用操作因子的温度测量方法,并在较宽的温度范围内的加热室中进行了实验。获得了地震检波器的高频温度特性,并发现了振幅温度系数与频率的关系。可以确定的是,在100-500 Hz的频率范围内,幅度温度系数与频率无关。获得的结果提供了有关基于MET的换能器性能的新信息,并将在将来改进制造设备的热补偿系统。本文是MET温度行为研究的重要组成部分,为进一步发展该方向提供了重要信息。

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