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MEMS-Based AlScN Resonating Energy Harvester With Solidified Powder Magnet

机译:基于MEMS的AlScN固体粉末磁铁共振能量采集器

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Energy harvesters offer an attractive power source alternative in particular for the next generation of mobile sensor applications. The current work investigates the power output of bulk micromachined 3 mm $imes2$ mm $imes50,,mu ext{m}$ sized cantilever-type piezoelectric (2 $mu ext{m}$ AlScN) energy harvesting device that is magnetically driven by miniaturized NdFeB permanent magnets attached to the free-end of the cantilevers. A novel energy harvester and one potential application is introduced. Properties and relevant figures-of-merit for AlScN in comparison to AlN are discussed on device level. Magnetic properties of the permanent magnet are summarized. The influences of the electrode area coverage, applied external magnetic field as well as fatigue properties of the harvesters are investigated. FEA results of the harvester's magnetic interactions are presented. Finally the suitability of a coil in comparison to a piezoelectric energy harvester is evaluated. A maximum peak power of 15.6 $mu ext{W}$ is obtained from a 2 mm wide cantilever with 2 mm long top electrode when driven under an homogeneous external field of magnitude $ext{B}_{mathrm {AC}} = 1$ G at resonance $f_{mathrm {res}} = 3240$ Hz. The maximum power density is calculated as 15.8 mW/cm(3) (2.6 W/m(2)) when applying the optimal load impedance approximately 117 $ext{k}Omega $ . [2019-0059]
机译:能量收集器提供了一种有吸引力的电源替代方案,特别是对于下一代移动传感器应用而言。目前的工作是研究散装微机械加工的3 mm功率乘以2毫米mm乘以50μm尺寸的悬臂式压电(2μm文字AlmS)能量收集设备,该设备由连接到悬臂自由端的小型NdFeB永磁体磁性驱动。介绍了一种新型的能量收集器和一种潜在的应用。在设备级别上讨论了AlScN与AlN相比的特性和相关的品质因数。总结了永磁体的磁性能。研究了电极面积覆盖率,施加的外部磁场以及收割机疲劳特性的影响。给出了收割机电磁相互作用的有限元分析结果。最后,评估了与压电能量采集器相比线圈的适用性。当在均匀的外部幅度$ text {B} _ { mathrm {AC}下驱动时,从2 mm宽,顶部电极长为2 mm的悬臂获得15.6 $ mu text {W} $的最大峰值功率。 }} =共振$ f _ { mathrm {res}}时的1 $ G = 3240 $ Hz。当应用最佳负载阻抗约为117 $ text {k} Omega $时,最大功率密度计算为15.8 mW / cm(3)(2.6 W / m(2))。 [2019-0059]

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