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Single Flux Quantum Circuit Technology and CAD overview

机译:单通量量子电路技术和CAD概述

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Single Flux Quantum (SFQ) electronic circuits originated with the advent of Rapid Single Flux Quantum (RSFQ) logic in 1985 and have since evolved to include more energy-efficient technologies such as ERSFQ and eSFQ. SFQ logic circuits, based on the manipulation of quantized flux pulses, have been demonstrated to run at clock speeds in excess of 120 GHz, and with bit-switch energy below 1 aJ. Small SFQ microprocessors have been developed, but characteristics inherent to SFQ circuits and the lack of circuit design tools have hampered the development of large SFQ systems. SFQ circuit characteristics include fan-out of one and the subsequent demand for pulse splitters, gate-level clocking, susceptibility to magnetic fields and sensitivity to intra-gate and inter-gate inductance. Superconducting interconnects propagate data pulses at the speed of light, but suffer from reflections at vias that attenuate transmitted pulses. The recently started IARPA SuperTools program aims to deliver SFQ Computer-Aided Design (CAD) tools that can enable the successful design of 64 bit RISC processors given the characteristics of SFQ circuits. A discussion on the technology of SFQ circuits and the most modern SFQ fabrication processes is presented, with a focus on the unique electronic design automation CAD requirements for the design, layout and verification of SFQ circuits.
机译:单一通量量子(SFQ)电子电路起源于1985年的快速单通量量子(RSFQ)逻辑,此后发展成为包括更节能的技术,例如ERSFQ和eSFQ。 SFQ逻辑电路基于量化磁通量脉冲的操作,已证明以超过120 GHz的时钟速度运行,并且位开关能量低于1 aJ。已经开发了小型SFQ微处理器,但是SFQ电路固有的特性和电路设计工具的缺乏阻碍了大型SFQ系统的开发。 SFQ电路的特性包括扇出一个以及随后对脉冲分配器的需求,栅极电平时钟,对磁场的敏感性以及对栅极内和栅极间电感的敏感度。超导互连以光速传播数据脉冲,但会受到过孔反射的影响,该反射会衰减传输的脉冲。最近启动的IARPA SuperTools计划旨在提供SFQ计算机辅助设计(CAD)工具,这些工具可以在给定SFQ电路特性的情况下成功设计64位RISC处理器。讨论了SFQ电路的技术和最现代的SFQ制作工艺,重点是针对SFQ电路的设计,布局和验证的独特电子设计自动化CAD要求。

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