用于驱动和读出谐振传感器的双向电路

M. Azadmehr, Belal K. Khajeh, Y. Berg
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引用次数: 12

摘要

在本文中,我们展示了一种谐振传感器的驱动和读出的新方法。在这种方法中,我们使用光束的频率作为传感器响应的度量,而不是在共振中读取谐振光束的振幅。通过使用双向放大器,在一个方向上将脉冲发送到谐振传感器,并且使用放大器的相反方向测量传感器的频率响应。这种方法的结果是更紧凑和更节能的系统。这种方法模仿雷达的工作方式,即发送脉冲并测量反射。该电路结构紧凑,元件扩展小,驱动传感器时平均功耗为22μW,最大功率为100μW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A bidirectional circuit for actuation and read-out of resonating sensors
In this paper we have demonstrated a novel approach for actuation and read-out of resonating sensors. In this approach, instead of reading the amplitude of the resonating beam in resonance, we use the frequency of the beam as a measure of the sensors response. By using a bidirectional amplifier a pulse is sent to a resonating sensor in one direction and the frequency response of the sensor is measured using the opposite direction of the amplifier. This approach results in more compact and more power conservative systems. This approach mimics the way radars operate where a pulse is sent out and the reflection is measured. The circuit is very compact with low component spread and consumes an average power of 22μW and a maximum power of 100μW when actuating the sensor.
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