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Developing MEMS DC electric current sensor for end-use monitoring of DC power supply: Part V - corresponding relationship between polarization and output voltage

机译:开发用于直流电源最终使用监控的MEMS直流电流传感器:第五部分-极化与输出电压之间的对应关系

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A bending type MEMS DC current sensor to satisfy the increasing needs of DC power supply for monitoring the electricity consumption by either one-wire or two-wire appliance cord was proposed in DTIP 2011. A linear relationship between the peak value of the impulsive output voltage and the DC current was obtained based on a macro-scale prototype device. In DTIP 2013, an oscillating type MEMS DC current sensor with integration of actuating and sensing elements was further proposed. By using a micro-scale prototype device, the maximum value of the output voltage was constantly measured and was found to linearly increase with the DC current. In present study (DTIP 2015), a bending type MEMS-scale DC current sensor device with three parallel PZT partition plates, was fabricated for preliminary examination. The output voltage monotonically increases with the increasing of the current and is in accordance with the variation of the theoretical magnetic force. While the corresponding relationship between polarization and output voltage is not clear. Compared with commercial Hall-effect devices, the proposed passive MEMS DC current sensor has two significant features of power-free passive sensing and two-wire direct measuring without using separator.
机译:在DTIP 2011中提出了一种弯曲型MEMS DC电流传感器,该传感器可满足DC电源不断增长的需求,以监控单线或两线设备电源线的用电量。脉冲输出电压峰值之间的线性关系并基于大型原型设备获得了直流电流。在DTIP 2013中,进一步提出了一种集成了致动和传感元件的振荡型MEMS DC电流传感器。通过使用微型原型设备,不断测量输出电压的最大值,并且发现其随DC电流线性增加。在本研究中(DTIP 2015),制造了具有三个平行PZT隔板的弯曲型MEMS规模的直流电流传感器设备,用于初步检查。输出电压随着电流的增加而单调增加,并且与理论磁力的变化一致。虽然极化和输出电压之间的对应关系不清楚。与商用霍尔效应器件相比,拟议的无源MEMS直流电流传感器具有两个显着特征:无源无源传感和无需隔离器的两线直接测量。

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