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Stacked-spiral RF inductors with vertical nanoparticle magnetic core for radio-frequency integrated circuits in CMOS

机译:具有垂直纳米粒子磁芯的堆叠螺旋式RF电感器,用于CMOS中的射频集成电路

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摘要

A new concept of stacked-spiral inductor with vertical near-closed-circuit nanoparticles-magnetic-core in CMOS is reported. Nanoparticle-embedded magnetic medium is designed, modeled, prepared and characterized, which achieves significantly increased operation frequency to multiple-GHz for RF inductor applications. New inductor prototypes with vertically integrated nanoparticle-magnetic-cores are fabricated in a foundry 0.18 μm CMOS backend process featuring six aluminum metal interconnects (6-Al). Measurement shows significantly improved inductance (L) and quality factor (Q) up to 2.5 GHz. An areal inductance density of 825 nH/mm2, or a +52% increase, is obtained, which is promising for making super compact inductors in RF SoC. Limiting factors and improvement methods for the prototype's Q-factor (Qmax = 3.4 @ 3.2 GHz) are discussed.
机译:报道了具有垂直近闭路纳米粒子-磁芯的CMOS堆叠式螺旋电感器的新概念。设计,建模,制备和表征了嵌入纳米粒子的磁性介质,可将工作频率显着提高至RF电感器应用的数GHz。具有垂直集成纳米粒子磁芯的新型电感器原型是在0.18μmCMOS晶圆代工厂后端工艺中制造的,该工艺具有六个铝金属互连(6-Al)。测量表明,高达2.5 GHz的电感(L)和品质因数(Q)显着提高。获得的面积电感密度为825 nH / mm2,或增加了+ 52%,这有望在RF SoC中制造超紧凑型电感器。讨论了原型Q因子的限制因素和改进方法(Qmax = 3.4 @ 3.2 GHz)。

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