The Single Flux Quantum (SFQ) logic family is a novel digital logic as it provides ultra-fast and energy-efficient circuits. For large-scale SFQ circuit design, specialized electronic design automation (EDA) tools are required due to the differences in logic type, timing constraints and circuit architecture, in contrast to the CMOS logic. In order to improve the overall performance of an SFQ circuit, an efficient routing algorithm should be applied during the layout design to perform accurate timing adjustment for fixing hold violations and optimizing critical paths. Thus, a hybrid Josephson transmission line and passive transmission line routing framework is proposed. It consists of four main modules and an exploration of the potential timing performance based on the given layout placement. The proposed routing tool is demonstrated on seven testbench circuits. The obtained results demonstrate that the operating frequency is greatly improved, and all the hold violations are eliminated for each circuit.
翻译:单一通量逻辑(SFQ)是一个新的数字逻辑,因为它提供了超快和节能的电路。对于大型SFQ电路设计,需要专门的电子设计自动化工具(EDA),因为与CMOS逻辑相反,逻辑类型、时间限制和电路结构不同。为了改善SFQ电路的总体性能,在设计设计时应采用高效的线路算法,以精确地调整时间,确定违反搁置规定的情况并优化关键路径。因此,提议了一个混合的Josephson传输线和被动传输线路由框架。它由四个主要模块组成,并探索基于特定布局布局安排的潜在时间性能。拟议的路由工具在七条试管电路上展示。获得的结果表明,操作频率大为改进,并且消除了每条线路的所有违反搁置规定的情况。