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ROA-Brick Topology for Low-Skew Rotary Resonant Clock Network Design

机译:用于低偏斜旋转谐振时钟网络设计的ROA-Brick拓扑

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This paper presents a topology-based solution for a low-skew rotary oscillator array (ROA) clock distribution network design. An ROA-brick structure is proposed that limits the traveling wave oscillation to only two uniform ring rotation directions in the ROA-brick: all the rings in clockwise (CW) direction or all the rings in counter CW direction. An ROA built from the ROA-bricks has the following advantages: 1) similar to the ROA-brick, only two uniform ring rotation directions are feasible in the ROA; 2) the same phase tapping points of all the rings in the ROA are identifiable; and 3) these same phase tapping points of the ROA are independent from the two possible rotation directions. It is mathematically proved that the ROA-brick is the only ROA structure, which can limit the ring rotation direction combinations so as to guarantee the generation of same phase clock signals. The proposed brick-based ROA clock generation and distribution networks are designed for ISPD 10 clock benchmarks demonstrating the gigahertz operation with the low-skew clock generation and distributions through HSPICE.
机译:本文提出了一种基于拓扑的低偏斜旋转振荡器阵列(ROA)时钟分配网络解决方案。提出了一种ROA砖结构,该结构将行波振荡限制在ROA砖中仅两个均匀的环旋转方向上:所有环沿顺时针(CW)方向或所有环沿反CW方向。用ROA砖构建的ROA具有以下优点:1)与ROA砖相似,在ROA中只有两个均匀的环旋转方向是可行的; 2)可以识别出ROA中所有环的相同相位分接点;和3)ROA的这些相同的相位分接点与两个可能的旋转方向无关。从数学上证明,ROA-brick是唯一的ROA结构,它可以限制环旋转方向的组合,从而保证产生相同相位的时钟信号。拟议的基于砖的ROA时钟生成和分配网络是为ISPD 10时钟基准设计的,它通过HSPICE以低偏斜时钟生成和分配展示了千兆赫兹操作。

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