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Micromechanical mode-localized electric current sensor

机译:微机械模式定位电流传感器

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This paper outlines the design of a novel mode-localized electric current sensor based on a mechanically sensitive element of weakly coupled resonator systems. With the advantage of a high voltage sensitivity of weakly coupled resonator systems, the current under test is converted to voltage via a silicon shunt resistor, which causes stiffness perturbation to one resonator. The mode-localization phenomenon alters the energy distribution in the weakly coupled resonator system. A theoretical model of current sensing is established, and the performance of the current sensor is determined: the sensitivity of the electric current sensor is 567/A, the noise floor is 69.3 nA/root Hz, the resolution is 183.6 nA, and the bias instability is 81.6 nA. The mode-localized electric current sensor provides a new approach for measuring sub-microampere currents for applications in nuclear physics, including for photocurrent signals and transistor leakage currents. It could also become a key component of a portable mode-localized multimeter when combined with a mode-localized voltmeter. In addition, it has the potential for use in studying sensor arrays to achieve higher resolution.
机译:本文概述了一种基于弱耦合谐振器系统机械敏感元件的新型模式局部电流传感器的设计。由于弱耦合谐振器系统具有高电压灵敏度的优点,被测电流通过硅分流电阻器转换为电压,从而对一个谐振器产生刚度扰动。模式局域化现象改变了弱耦合谐振器系统中的能量分布。建立了电流检测的理论模型,确定了电流传感器的性能:电流传感器的灵敏度为567/A,本底噪声为69.3 nA/root Hz,分辨率为183.6 nA,偏置不稳定性为81.6 nA。模式定位电流传感器为测量核物理应用的亚微安电流提供了一种新方法,包括光电流信号和晶体管泄漏电流。当与模式本地电压表结合使用时,它也可以成为便携式模式定位万用表的关键组件。此外,它还有可能用于研究传感器阵列以实现更高的分辨率。

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