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Reducing the Maximum Length of Connections in Single Flux Quantum Circuits During Routing

机译:在路由期间减少单磁通量子电路中的最大连接长度

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As the number of nets connecting single-flux-quantum (SFQ) cells in large-scale SFQ circuits grows, powerful electronic design automation (EDA) tools are needed to mitigate the wire routing task. Moreover, the clock frequency of SFQ circuits is heavily influenced by the longest wire delay. However, current routing tools have no means to control the maximum length of routing wires. In this paper, we present an innovative post-routing optimization framework which reduces the maximum wirelength in SFQ circuits. A framework is developed in which the longest wire is ripped and re-routed by resorting to a maze routing algorithm after the acquisition of wire density distribution using a machine learning method. Based on the MIT-LL SFQ5ee process technology and using a small library of SFQ logic cells, we show that the proposed framework can complete post-routing optimization of 13 SFQ circuits in 8 minutes while reducing the length of the longest wire by 11.8% on average over the state-of-the-art EDA routing tool for large-scale SFQ circuits.
机译:随着在大规模SFQ电路中连接单通道 - 量子(SFQ)单元的网络数量增长,需要强大的电子设计自动化(EDA)工具来减轻电线路由任务。此外,SFQ电路的时钟频率受到最长导线延迟的严重影响。但是,当前的路由工具没有控制路由线的最大长度。在本文中,我们提出了一种创新的路由后优化框架,可降低SFQ电路中的最大WireLength。开发了一种框架,其中最长导线通过借助于使用机器学习方法获取线密度分布后通过借助迷宫路由算法来剥离和重新路由。基于MIT-LL SFQ5EE工艺技术和使用SFQ逻辑单元的小型库,我们表明所提出的框架可以在8分钟内完成13个SFQ电路的路由后优化,同时将最长电线的长度降低11.8%用于大型SFQ电路的最先进的EDA路由工具的平均值。

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