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Discharge-path-based antenna effect detection and fixing for X-architecture clock tree

机译:基于X架构时钟树的基于放电路径的天线效应检测和修复

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摘要

Antenna effect is a phenomenon in the plasma-based nanometer process and directly influences the manufacturing yield of VLSI circuits. Because antenna-critical metal wires have sufficient charges to damage the thin gate oxides of the clock input ports connected by a clock tree, the standard cells or IPs cannot be driven by the clock source synchronously. For a given X-architecture clock tree that connects n clock sinks, we consider the antenna effect in the clock tree and propose a discharge-path-based antenna effect detection method. To fix the antenna violations, we use the jumper insertion technique recommended by foundries. Furthermore, we integrate the layer assignment technique to reduce the inserted jumper and via counts. Differing from the existing works, the delay of vias is considered in delay calculation, and a wire sizing technique is applied for clock skew compensation after fixing the antenna violations. Experimental results on benchmarks show that our algorithm runs in O(n~2) to averagely insert 48.21% less jumpers and reduce 20.35% in vias compared with other previous algorithms. Moreover, the SPICE simulation further verifies the correctness of the resulting clock tree.
机译:天线效应是基于等离子体的纳米工艺中的一种现象,直接影响VLSI电路的制造良率。由于对天线至关重要的金属线具有足够的电荷,足以损坏由时钟树连接的时钟输入端口的薄栅极氧化物,因此标准单元或IP无法由时钟源同步驱动。对于连接n个时钟接收器的给定X架构时钟树,我们考虑了时钟树中的天线效应,并提出了一种基于放电路径的天线效应检测方法。为了解决天线冲突问题,我们使用了代工厂推荐的跳线插入技术。此外,我们集成了层分配技术,以减少插入的跳线和过孔数量。与现有工作不同的是,在延迟计算中会考虑过孔的延迟,并且在解决天线违规问题后将导线尺寸调整技术应用于时钟偏斜补偿。在基准上的实验结果表明,与其他以前的算法相比,我们的算法以O(n〜2)运行,平均可减少48.21%的跳线,并减少20.35%的过孔。此外,SPICE仿真进一步验证了所得时钟树的正确性。

著录项

  • 来源
    《Integration》 |2012年第1期|p.76-90|共15页
  • 作者单位

    Department of Computer Science and Information Engineering, Nanhua University, Chiayi, Taiwan, ROC;

    Graduate Institute of Computer and Communication, National Taipei University of Technology, Taipei, Taiwan, ROC;

    Graduate Institute of Computer and Communication, National Taipei University of Technology, Taipei, Taiwan, ROC;

    Graduate Institute of Computer and Communication, National Taipei University of Technology, Taipei, Taiwan, ROC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    antenna effect; discharge path; jumper insertion; layer assignment; x-architecture clock tree;

    机译:天线效应放电路径跳线插入;层分配;x架构时钟树;

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