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Automatic Josephson-transmission-line routing for single-flux-quantum cell-based logic circuits

机译:用于单通量量子单元逻辑电路的自动Josephson传输线路由

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In single-flux-quantum (SFQ) circuits, the delay produced by the Josephson transmission line (JTL) is comparable with or larger than the one produced by the logic cells. Therefore, it is difficult to find the routes that satisfy the timing constraints in a large circuit manually. To overcome this obstacle, we propose a two-step automatic JTL routing technology that performs coarse and fine timing adjustments. First, an automatic router draws dummy wires within coarse timing constraints, and then the dummy wires are replaced with JTL cells. Fine timing adjustments are done in the latter step. Some JTL cells in clock and data paths are replaced with faster JTL cells so that clock signals always arrive earlier than data signals at clocked-gates. Two example circuits were designed using the automatic JTL routing technology. One is composed of nearly 600 Josephson junctions. It was experimentally tested up to 35 GHz with on-chip test components. The other is composed of about 4000 Josephson junctions. After the fine timing adjustment, logic simulation showed that it can operate at 20 GHz. We also experimentally confirmed its correct operations at low speed.
机译:在单通量量子(SFQ)电路中,约瑟夫森传输线(JTL)产生的延迟与逻辑单元产生的延迟相当或更大。因此,很难在大型电路中手动找到满足时序约束的路由。为了克服这一障碍,我们提出了一种两步自动JTL路由技术,该技术可以执行粗略和精细的时序调整。首先,自动路由器在粗略的时序约束内绘制虚拟线,然后用JTL单元替换虚拟线。在后续步骤中会进行精细的时序调整。时钟和数据路径中的某些JTL单元被更快的JTL单元所取代,因此时钟信号总是比时钟门处的数据信号更早到达。使用自动JTL路由技术设计了两个示例电路。其中一个由近600个约瑟夫森路口组成。它已通过片上测试组件进行了高达35 GHz的实验测试。另一个由约4000个约瑟夫森路口组成。经过精细的时序调整后,逻辑仿真表明它可以在20 GHz下工作。我们还通过实验证实了其在低速下的正确操作。

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