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Experimentally verified inductance extraction and parameter study for superconductive integrated circuit wires crossing ground plane holes

机译:经过实验验证的穿过地平面孔的超导集成电路导线的电感提取和参数研究

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As the complexity of rapid single flux quantum (RSFQ) circuits increases, both current and power consumption of the circuits become important design criteria. Various new concepts such as inductive biasing for energy efficient RSFQ circuits and inductively coupled RSFQ cells for current recycling have been proposed to overcome increasingly severe design problems. Both of these techniques use ground plane holes to increase the inductance or coupling factor of superconducting integrated circuit wires. New design tools are consequently required to handle the new topographies. One important issue in such circuit design is the accurate calculation of networks of inductances even in the presence of finite holes in the ground plane. We show how a fast network extraction method using InductEx, which is a pre- and post-processor for the magnetoquasistatic field solver FastHenry, is used to calculate the inductances of a set of SQUIDs (superconducting quantum interference devices) with ground plane holes of different sizes. The results are compared to measurements of physical structures fabricated with the IPHT Jena 1 kA cm~(-2) RSFQ niobium process to verify accuracy. We then do a parameter study and derive empirical equations for fast and useful estimation of the inductance of wires surrounded by ground plane holes. We also investigate practical circuits and show excellent accuracy.
机译:随着快速单通量量子(RSFQ)电路的复杂性增加,电路的电流和功耗都成为重要的设计标准。为了克服日益严重的设计问题,已经提出了各种新概念,例如用于节能RSFQ电路的电感偏置和用于电流回收的电感耦合RSFQ单元。这两种技术都使用接地平面孔来增加超导集成电路导线的电感或耦合系数。因此,需要新的设计工具来处理新的地形。这种电路设计中的一个重要问题是即使在接地平面中存在有限孔的情况下,电感网络的精确计算也是如此。我们展示了如何使用InductEx快速网络提取方法,该方法是磁准静态场求解器FastHenry的预处理器和后处理器,用于计算一组SQUID(超导量子干涉器件)的电感,这些SQUID具有不同的接地平面孔大小。将结果与使用IPHT Jena 1 kA cm〜(-2)RSFQ铌工艺制造的物理结构的测量结果进行比较,以验证准确性。然后,我们进行参数研究并导出经验方程式,以快速,有用地估计被接地孔包围的导线的电感。我们还研究了实际电路,并显示出卓越的精度。

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