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Finding False Paths for Sequential Circuits Using Operations on ROBDDs

机译:使用ROBDDS上的操作查找顺序电路的假路径

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Performance of VLSI is, first of all, its high operation speed determined by a clock frequency. Developing of VLSI is oriented to maximal possible clock frequency under correct functioning. Clock frequency estimation is reduced to finding paths with maximal delays (critical paths) among logical components of VLSI. But some of the selected paths may be false. It means that the path has no impact on component functioning. It is necessary to fmd such paths in order to exclude them from consideration when we determine clock frequency. Detecting false paths may increase VLSI operation speed. The precise method of fmding false paths in a sequential circuit based on finding test pairs for non-robust path delay faults (PDFs) is developed. The length of a transfer sequence delivering the test pair from the initial internal state is not more the given value l. The method is based on applying operations on ROBDDs extracted from the combinational part of a sequential circuit. Experimental results illustrate the suggested method.
机译:最重要的是,其性能首先,其高运行速度由时钟频率决定。 vlsi的开发是在正确运行的最大可能的时钟频率方面取向。时钟频率估计减少到查找VLSI的逻辑组件中具有最大延迟(关键路径)的路径。但是一些所选路径可能是假的。这意味着路径对组件功能没有影响。在确定时钟频率时,有必要FMD以便排除它们以供他们考虑。检测假路径可能会增加VLSI操作速度。开发了基于针对非鲁棒路径故障(PDFS)的查找测试对的顺序电路中的FMDingS错误路径的精确方法。从初始内部状态传递测试对的转移序列的长度并不多于给定的值l。该方法基于在从顺序电路的组合部分中提取的ROBDD上应用操作。实验结果说明了建议的方法。

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