$Q$ -factor of radio-frequency (RF) magnetic thin film inductor integrated in chip-size-package RF-ICs, two sche'/> Increase of <formula formulatype='inline'> <tex Notation='TeX'>$Q$</tex></formula>-Factor of RF Magnetic Thin Film Inductor by Introducing Slit-Patterned Magnetic Thin Film and Multiline-Conductor Spiral Coil
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Increase of $Q$-Factor of RF Magnetic Thin Film Inductor by Introducing Slit-Patterned Magnetic Thin Film and Multiline-Conductor Spiral Coil

机译:引入缝隙式磁性薄膜和多线导体螺旋增加射频电磁薄膜电感器的 $ Q $ -因子卷材

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摘要

In order to increase $Q$ -factor of radio-frequency (RF) magnetic thin film inductor integrated in chip-size-package RF-ICs, two schemes have been investigated experimentally. For suppressing the in-plane eddy current of the magnetic thin film, a slit-patterned structure was introduced, and it was found that the slit-patterned magnetic thin film is very effective for increasing $Q$-factor. On the other hand, for suppressing alternating current (ac) copper loss, a multiline-conductor spiral coil was introduced, and it was found that the multiline coil is effective for improving decrease of inductance at high frequencies. By introducing the two schemes, a maximum $Q$-factor of 18 at 1.5 GHz was obtained in a spiral inductor with a bottom slit-patterned CoFeSiO/SiO$_{2}$ granular multilayer film and triple-line-conductor spiral coil.
机译:为了增加集成在芯片尺寸中的射频(RF)磁性薄膜电感器的 $ Q $ 系数,封装RF-IC,已经对两种方案进行了实验研究。为了抑制磁性薄膜的面内涡流,引入了狭缝图案的结构,发现狭缝图案的磁性薄膜对于提高<公式式> inline> $ Q $ -factor。另一方面,为了抑制交流(ac)铜损,引入了多线导体螺旋线圈,并且发现多线线圈对于改善高频下的电感降低是有效的。通过引入这两种方案,在具有1.5GHz的螺旋电感器中,最大的 $ Q $ 系数在1.5 GHz下获得了18。底部缝隙图案的CoFeSiO / SiO <公式>颗粒状多层膜和三线导体螺旋线圈。

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