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Determining the Response of a Mechanical Shock Transducer Based on a Hall Effect Sensor

机译:基于霍尔效应传感器确定机械冲击换能器的响应

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This paper presents aspects regarding the response of a mechanical shock transducer that contains a Hall effect sensor as detecting element. An algorithm was developed in order to predict and analyze the behavior of the transducer's components interaction. This calculus model is focused on the movement of the elastic element of the shock transducer that is driven by external forces and contains a permanent magnet that produces the magnetic field needed to influence the Hall sensor. Two different types of mechanical excitation sources, rectangular and triangular, were considered. The excitation forces were applied to the transducer's support, the aim of the paper being to confer a prediction chain from mechanical movement to magnetic field fluctuation and finally to Hall voltage variation at the output of the transducer. Some constructive aspects related to the presented transducer were also presented.
机译:本文呈现了有关含有霍尔效应传感器作为检测元件的机械冲击换能器的响应的方面。开发了一种算法,以预测和分析换能器组件相互作用的行为。该微积分模型专注于由外力驱动的冲击换能器的弹性元件的运动,并包含产生影响霍尔传感器所需的磁场的永磁体。考虑了两种不同类型的机械激发源,矩形和三角形。激发力被应用于换能器的支撑,纸张的目的是赋予从机械运动到磁场波动的预测链,最后在换能器的输出处霍尔电压变化。还提出了与所提出的换能器相关的一些建设性方面。

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