工具链
快速单通量量子
计算机科学
物理设计
电子设计自动化
标准电池
磁通量量子
电路设计
网络列表
嵌入式系统
集成电路设计
计算机体系结构
计算机硬件
集成电路
磁通量
软件
约瑟夫森效应
物理
操作系统
超导电性
量子力学
磁场
作者
Coenrad J. Fourie,Kyle Jackman,Johannes A. Delport,Lieze Schindler,Tessa Hall,Pascal Febvre,Lucas Iwanikow,Olivia Chen,Christopher L. Ayala,Nobuyuki Yoshikawa,Mark E. Law,Thomas Weingartner,Yanzhi Wang,Peter A. Beerel,Sandeep K. Gupta,Haipeng Zha,Sasan Razmkhah,Mustafa Altay Karamuftuoglu,Arash Fayyazi,Mingye Li,Murali Annavaram,Shahin Nazarian,Massoud Pedram
标识
DOI:10.1109/tasc.2023.3306381
摘要
In five and a half years, the ColdFlux project under the IARPA SuperTools program pushed the boundaries of digital and analog superconductor electronic design automation (S-EDA) tools. The SuperTools program demanded significant beyond-state-of-the-art deliverables in four main areas: RTL synthesis, architectures, and verification; analog design and layout synthesis; physical design and test; and technology CAD and cell library design. Through the work of academic groups scattered over four continents, the ColdFlux effort forged into a powerful set of open-source and commercial S-EDA tools unlike any before, rivaled only by a commercial toolchain from Synopsys under the same SuperTools umbrella. We present an overview of the tools from where we started to the eventual project deliverables. These include powerful simulation and extraction engines, magnetic field and flux trapping analysis, advanced clocking methods, multi-chip interface extraction and verification, unified multi-layer design-rule compliant track blocks for automated place and route of both rapid single flux quantum (RSFQ) and adiabatic quantum-flux-parametron (AQFP) cells, models and tools for validation and test, multi-bit single flux quantum (SFQ) cells, architecture innovations for full CPU designs and more. Comprehensive cell libraries and a process design kit (PDK) were developed with the ColdFlux tools. The AQFP cell library features a logically rich collection of 80+ cells, including 3- and 5-input logic gates, signal-driving boosters, and refined RSFQ-to-AQFP interfaces, while the RSFQ library has 30+ cells. Finally, we discuss how the full toolchain enables and enhances the superconductor IC design process.
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