False coupling interactions in static timing analysis

Ravishankar Arunachalam, R. D. Blanton, L. Pileggi
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引用次数: 34

Abstract

Neighboring line switching can contribute to a large portion of the delay of a line for today's deep submicron designs. In order to avoid excessive conservatism in static timing analysis, it is important to determine if aggressor lines can potentially switch simultaneously with the victim. In this paper, we present a comprehensive ATPG-based approach that uses functional information to identify valid interactions between coupled lines. Our algorithm accounts for glitches on aggressors that can be caused by static and dynamic hazards in the circuit. We present results on several benchmark circuits that show the value of considering functional information to reduce the conservatism associated with worst-case coupled line switching assumptions during static timing analysis.
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静态时序分析中的伪耦合相互作用
对于今天的深亚微米设计,相邻线路切换可能会导致线路延迟的很大一部分。为了避免在静态时序分析中过度保守,确定攻击线是否可能与受害者同时切换是很重要的。在本文中,我们提出了一种基于atpg的综合方法,该方法使用功能信息来识别耦合线之间的有效相互作用。我们的算法考虑了可能由电路中的静态和动态危险引起的攻击器故障。我们给出了几个基准电路的结果,显示了在静态时序分析中考虑功能信息以减少与最坏情况耦合线路切换假设相关的保守性的价值。
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False coupling interactions in static timing analysis Scalable hybrid verification of complex microprocessors System-level power/performance analysis for embedded systems design Automated pipeline design Test strategies for BIST at the algorithmic and register-transfer levels
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