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Simultaneous Evaluation of Conductive/Near-Field Noise Suppression in Co-Zr-Nb Film Using Magnetic Circuit

机译:利用磁路同时评估Co-Zr-Nb薄膜中的导电/近场噪声抑制

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摘要

This paper discusses the integrated evaluation of the conductive and near-field noise suppression using magnetic circuit network. The proposed magnetic circuit evaluated the ferromagnetic resonance (FMR) loss and near-field intensity simultaneously and agreed with the measured value. The validity of the evaluation is successfully clarified. It is clarified that the near-field shielding effectiveness is maximized at the intrinsic FMR frequency, because the reluctance of the magnetic film is minimized. It is also clarified that the conductive noise suppression is maximized and the near-field shielding effectiveness is simultaneously minimized at the shifted FMR frequency by the demagnetizing field, because the magnetic circuit resonates. These results demonstrate that the proposed magnetic network model is of great usefulness for developing the integrated design method of the magnetic film-type noise suppressor.
机译:本文讨论了使用磁路网络对导电和近场噪声抑制的综合评估。拟议的磁路同时评估了铁磁共振(FMR)损耗和近场强度,并与测量值一致。成功阐明了评估的有效性。明确的是,因为磁膜的磁阻最小,所以在固有FMR频率下近场屏蔽效率最大化。还需要说明的是,由于磁路发生谐振,因此通过去磁磁场,在移动的FMR频率下,导电噪声的抑制作用会最大化,而近场屏蔽效果会同时降低。这些结果表明,所提出的磁网络模型对于开发磁性薄膜型噪声抑制器的集成设计方法具有很大的实用性。

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