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Design of resonance based DC current sensor using BAW quartz resonators

机译:基于BAW石英谐振器的基于共振直流电流传感器的设计

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摘要

A novel approach is attempted to measure DC current in the range of 0-0.7 A in this paper. The proposed current sensing system is designed using an AT-cut BAW quartz resonator sandwiched at the center of the rectangular beam. The SMA wire bonded over the rectangular beam changes its shape with the change in input current. The quartz crystal resonator is maintained at first mode resonance frequency using a closed loop resonator electronics. The electric current change in the SMA wire contracts its length which bends the beam and produces an axial force on the quartz resonator which changes the resonance frequency of the BAW crystal placed in between the beam. The shift in quartz crystal resonant frequency is related to the input electrical current in the SMA wire. The analytical model of the entire current sensing system is derived, and the proposed concept is verified experimentally. It is observed that the experimentation results are highly linear, and it has the sensitivity of 350 Hz/A DC current. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中试图测量0-0.7 A的DC电流的新方法。所提出的电流检测系统是使用夹在矩形光束中心的剪切BAW石英谐振器设计的。在矩形光束上粘合的SMA线随着输入电流的变化而改变其形状。使用闭环谐振器电子设备在第一模式共振频率处保持石英晶体谐振器。 SMA线中的电流变化收缩其长度,其弯曲光束并在石英谐振器上产生轴向力,该石英谐振器改变放置在梁之间的BAW晶体的谐振频率。石英晶谐振频率的偏移与SMA线中的输入电流有关。导出整个电流传感系统的分析模型,并通过实验验证所提出的概念。观察到实验结果是高度线性的,并且它具有350Hz / A DC电流的灵敏度。 (c)2018年elestvier b.v.保留所有权利。

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