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Magnetically Aligned Anisotropic Conductive Adhesive for Microwave Applications

机译:微波应用的磁取向各向异性导电胶

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Randomly dispersed particles in a material can be forced to align due to the presence of an externally applied field. These self-aligning materials are examples through which order is obtained through structure created internally which alters the bulk properties of the material. One such material is a magnetically aligned anisotropic conductive adhesive which uses the alignment of ferromagnetic particles in order to create current flow in only one direction. This paper discusses microwave application of such a material. We demonstrate that the magnetically aligned $Z$ -axis anisotropic conductive adhesive works at microwave frequencies interconnecting silicon substrates through 90 GHz. The $Z$-axis material is found to be a suitable replacement for solder bumping even at high frequencies of operation. The effect of material composition and the radio frequency design is discussed in this paper. Finally, the $Z$ -axis anisotropic conductive adhesive is found to be a suitable cost-effective replacement for solder bumps at high frequencies.
机译:由于存在外部施加的电场,材料中随机分散的颗粒可能会被迫对齐。这些自对准材料是示例,通过这些示例可通过内部创建的结构获得顺序,该结构会改变材料的体积特性。一种这样的材料是磁性取向的各向异性导电粘合剂,其使用铁磁性颗粒的取向以便仅在一个方向上产生电流。本文讨论了这种材料的微波应用。我们证明了磁对准的$ Z $轴各向异性导电胶可以在微波频率下通过90 GHz互连硅基板。发现$ Z $轴材料即使在较高的操作频率下也可以替代焊料凸点。本文讨论了材料成分和射频设计的影响。最后,发现$ Z $轴各向异性导电胶粘剂是高频下焊料凸块的一种经济有效的替代物。

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