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Method and apparatus for controlling crosstalk, power and yield in nanometer technology ICs

机译:用于控制纳米技术集成电路中的串扰,功率和良率的方法和装置

摘要

A method for controlling crosstalk, power and yield in nanometer-technology integrated circuits (“ICs”) is based on a performance driven space optimization technique that minimizes the coupling capacitance between the interconnecting wires. Given a routed IC design, virtual compression-springs are inserted between all the elements of the design creating a mesh of springs. The design is then perturbed, or shaken, by transforming the spring system into a minimum-energy problem, a solution for which reduces or eliminates crosstalk violations, minimizes power and increases yield as the springs reach minimum energy state. In a described method, the primitives of a given IC layout are defined in terms of object points. In a first step, a mesh of virtual compression springs connecting all the layout primitives is generated from the object points. The spring constant for each virtual spring embedded between interconnecting wires is chosen to follow a relationship between a slack function and the separation distance between the interconnecting wires. In a second step, the design is shaken by minimizing the energy of the virtual compression-spring-loaded-system, resulting in new object points and new positions for the springs and the interconnecting wires.
机译:一种用于控制纳米技术集成电路(“ IC”)中的串扰,功率和良率的方法是基于性能驱动的空间优化技术,该技术可使互连线之间的耦合电容最小化。给定路由IC设计,将虚拟压缩弹簧插入设计的所有元素之间,从而创建弹簧网格。然后,通过将弹簧系统转换为最小能量问题来扰动或摇动设计,该解决方案可在弹簧达到最小能量状态时减少或消除串扰违规,最小化功率并提高产量。在所描述的方法中,根据对象点来定义给定IC布局的图元。第一步,从目标点生成连接所有布局图元的虚拟压缩弹簧网格。选择用于嵌入互连线之间的每个虚拟弹簧的弹簧常数,以遵循松弛函数和互连线之间的间隔距离之间的关系。在第二步中,通过最小化虚拟压缩弹簧加载系统的能量来震撼设计,从而为弹簧和互连线产生新的目标点和新位置。

著录项

  • 公开/公告号US7493583B1

    专利类型

  • 公开/公告日2009-02-17

    原文格式PDF

  • 申请/专利权人 JONATHAN WEISS;

    申请/专利号US20050150866

  • 发明设计人 JONATHAN WEISS;

    申请日2005-06-10

  • 分类号G06F17/50;

  • 国家 US

  • 入库时间 2022-08-21 19:30:00

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