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Single-Bit Self-Powered Digital Counter Using a Wiegand Sensor for Rotary Applications

机译:使用Wiegand传感器的单位自动数字计数器用于旋转应用

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摘要

This work explores energy harvesting from rotary motion using a Wiegand sensor, which is a magnetic sensor that induces a voltage pulse when the magnetization is reversed. The main feature of the Wiegand sensor is that a pulse is generated regardless of how slowly magnetism reversal occurs. Self-sustained sensors play major roles in advancing the Internet of Things (IoT) and wireless sensor networks (WSN). In this study, we identified a linear relationship between rotational motion, magnetic field reversal, and the rotational frequency generated by the Wiegand sensor. In addition, the maximum energy per pulse and its dependence were derived analytically. A maximum energy of 130 nJ per pulse was reported for the sensor used. We developed a single-bit, self-powered digital counter that was sufficiently driven with 38 nJ of energy. In this study, single rotations were measured without the need for external power.
机译:这项工作探讨了使用Wiegand传感器从旋转运动的能量收集,这是一个磁传感器,该磁传感器在磁化逆转时诱导电压脉冲。 Wiegand传感器的主要特征是产生脉冲,而不管磁力逆转如何发生速度。自我持续的传感器在推进事物互联网(IOT)和无线传感器网络(WSN)方面发挥着重要作用。在这项研究中,我们识别了Wiegand传感器产生的旋转运动,磁场反转和旋转频率之间的线性关系。另外,分析地推导出每次脉冲的最大能量及其依赖性。报告了每个脉冲的130 nJ的最大能量为使用的传感器。我们开发了一个单位的自动数字计数器,充分驱动38 NJ的能量。在这项研究中,测量单次旋转而无需外部电源。

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