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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Modeling and Characterization of Soft Magnetic Film Actuated 2-D Scanners
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Modeling and Characterization of Soft Magnetic Film Actuated 2-D Scanners

机译:软磁膜驱动二维扫描仪的建模与表征

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摘要

Magnetic behavior of polymer-based scanners is studied in detail with emphasis on a new magnetic actuator model and dc deflection experiments. A 30-$mu$m-thick permalloy sheet is plated on a polymer cantilever scanner and actuated using an external coil. Mechanical and magnetic modeling of the device and experimental results are presented. Shape anisotropy of the thin, soft magnetic film is explored for push and pull operation in different configurations. A new magnetic actuator model is developed based on the distributed point-by-point calculation of the magnetostatic moments and forces across the film surface. This effort helps one to obtain generic equations for magnetic force and torque without limiting the use of the model to the case where magnetic material is assumed to be fully saturated. Two-dimensional (2-D) scanning utilizing the orthogonal modes of the scanner, using only one actuation coil is presented.
机译:对聚合物扫描仪的磁性能进行了详细研究,重点是新的磁致动器模型和直流偏转实验。将厚度为30-μm的坡莫合金板镀在聚合物悬臂扫描仪上,并使用外部线圈驱动。给出了该装置的机械和磁性建模以及实验结果。探索了软磁性薄膜的形状各向异性,以进行不同配置的推拉操作。基于静磁矩和跨膜表面力的分布式点对点计算,开发了一种新的磁致动器模型。这项工作有助于获得有关磁力和转矩的通用方程,而不会将模型的使用限于假设磁性材料完全饱和的情况。提出了使用扫描仪正交模式的二维(2-D)扫描,仅使用一个驱动线圈。

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