Wang Xinyi, Li Jiaxing, Zhou Chenyuan, Tao Kai, Qiao Dayong, Li Yunjia
School of Electrical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Micro and Nano Electromechanical Systems Laboratory, Northwestern Polytechnical University, Xi'an 710072, China.
Micromachines (Basel). 2021 Dec 12;12(12):1545. doi: 10.3390/mi12121545.
Most of the miniaturized electromagnetic vibrational energy harvesters (EVEHs) are based on oscillating proof mass suspended by several springs or a cantilever structure. Such structural feature limits the miniaturization of the device's footprint. This paper presents an EVEH device based on a torsional vibrating magnet over a stack of flexible planar coils. The torsional movement of the magnet is enabled by microfabricated silicon torsional springs, which effectively reduce the footprint of the device. With a size of 1 cm × 1 cm × 1.08 cm, the proposed EVEH is capable of generating an open-circuit peak-to-peak voltage of 169 mV and a power of 6.9 μW, under a sinusoidal excitation of ±0.5 g (g = 9.8 m/s) and frequency of 96 Hz. At elevated acceleration levels, the maximum peak-to-peak output voltage is 222 mV under the acceleration of 7 g (±3.5 g).
大多数小型化电磁振动能量采集器(EVEH)基于由多个弹簧或悬臂结构悬挂的振荡惯性质量块。这种结构特征限制了设备占地面积的小型化。本文提出了一种基于堆叠的柔性平面线圈上的扭转振动磁体的EVEH设备。磁体的扭转运动由微加工的硅扭转弹簧实现,这有效地减小了设备的占地面积。所提出的EVEH尺寸为1 cm×1 cm×1.08 cm,在±0.5 g(g = 9.8 m/s)的正弦激励和96 Hz的频率下,能够产生169 mV的开路峰峰值电压和6.9 μW的功率。在更高的加速度水平下,在7 g(±3.5 g)的加速度下,最大峰峰值输出电压为222 mV。