Behavior of lossy Spiral Inductors and Their Applications to the Design of Tunable Band Reject Filters

H. Jia, R. Mansour
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Abstract

In this paper, we use a unique behavior of spiral inductors designed intentionally to have a large parasitic capacitance in the realization of a tunable band reject filter. It is shown that, regardless of the operating frequency, the conductivity of the metal strips forming the inductor has a significant impact on how the spiral inductor behaves as an inductor or a capacitor. The concept is used to demonstrate a band reject filter made out of niobium operating at 4K, whose conductivity can be changed with the application of a dc current. The same concept can be employed using other materials with conductivity that can be controlled either electrically, thermally or optically.
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损耗螺旋电感的特性及其在可调带阻滤波器设计中的应用
在本文中,我们利用螺旋电感的独特特性来设计具有较大的寄生电容来实现可调谐带阻滤波器。结果表明,无论工作频率如何,形成电感的金属条的导电性对螺旋电感作为电感或电容器的行为有显著影响。这个概念被用来演示一个由铌制成的带阻滤波器,工作在4K,其导电性可以随着直流电流的应用而改变。同样的概念也可以应用于其他具有导电性的材料,这些材料可以通过电、热或光学来控制。
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