嵌入式电感器低温可加工芯材的研制

C.K. Liu, P. L. Cheng, Y.W. Law, I. Chong, D. Lam
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引用次数: 7

摘要

低温可加工微粒填充聚合物基复合电感的电感受聚合物基体磁性能的限制。研究了用多晶镍锌铁氧体(NZF)填料填充非晶镍锌铁氧化物基体制成的电感器的显微组织和电学性能。NZF具有高电阻,是高频应用中减少涡流损耗的必要条件。在玻璃晶圆衬底上制备了平面螺旋型(20/spl nu/%填料)nzf复合电感,并对其进行了不同温度的热处理。电感器的电学特性在兆赫频率范围内表征。复合电感在300/spl℃下加热1小时后,电感增加10% ~ 20%。这一增长与之前报道的聚合物铁氧体复合电感相当,尽管聚合物版本的填充物含量明显更高(90% wt%),而目前的nzf复合填充物含量明显较低(10-20%)。这表明这种增加与基体性能的改善有关。x射线衍射表征了基体组织的变化。然后根据观察到的微观结构变化来解释电感和相关电性能的增加。矩阵电感的增加表明,当使用高填料含量时,目前的方法在电感的大幅增强方面具有很强的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of low temperature processable core material for embedded inductor
The inductance of low temperature processable particulate filled polymer matrix composite inductors is constrained by the limited magnetic properties of the polymer matrix. The microstructural and electrical properties of inductors made from amorphous nickel-zinc-iron oxide matrix filled with polycrystalline nickel zinc ferrite (NZF) fillers are investigated in this study. NZF has high resistance, and is essential for high frequency application to reduce eddy current loss. Planar spiral NZF-composite (with 20/spl nu/% fillers) inductors were fabricated on glass wafer substrate and heated treated at different temperatures. The electrical properties of the inductors were characterized at frequencies in the MHz range. The inductance is found to increase between 10%-20% for composite inductor after heated at 300/spl deg/C for 1 hour. The increase is comparable to those reported previously for polymer ferrite composite inductors, albeit the polymer version has significantly higher filler content (90 wt%) while the current NZF-composite filler content is markedly less (10-20%). This indicates that the increase is associated with improvement of the matrix's properties. The changes in matrix microstructures were characterized by X-ray diffraction. The increase in inductance and associated electrical properties are then explained based on the observed microstructural changes. The increase in matrix inductance indicates that the current approach has strong potential in giving a large enhancement in inductance when high filler content is used.
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