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Integration of Magnetostrictive Microsensor With Hall Element for Microstructure Resonant Detection

机译:磁致伸缩微经传感器与霍尔元素的集成微观结构共振检测

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Magnetostrictive materials are useful for actuators, sensors. In this work, a Hall sensor is integrated in a magnetostrictive micromechanics. Deformation of the magnetostrictive material induces the change of magnetization, which is detected by the Hall sensor. In order to demonstrate this concept, a FeGa-Si biomaterial cantilever with a Si Hall sensor is microfabricated. FeGa thin film is deposited by a novel electroplating method. The Hall sensor signal can be obtained when the cantilever is vibrated at its resonant frequency. This Hall sensing element integration is effective way for the detection of strain and vibration of micromechanics.
机译:磁致伸缩材料对于执行器,传感器是有用的。 在这项工作中,霍尔传感器集成在磁致伸缩微机械中。 磁致伸缩材料的变形诱导霍尔传感器检测的磁化的变化。 为了证明这种概念,具有Si Hall传感器的Fega-Si生物材料悬臂是微制造的。 Fega薄膜通过新型电镀方法沉积。 当悬臂在其谐振频率上振动时,可以获得霍尔传感器信号。 该霍尔传感元件集成是用于检测微机械的应变和振动的有效方法。

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