温度相关倾斜调度的双图方法

M. Kaneko
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引用次数: 0

摘要

温度是延迟变化的主要来源之一,这可能会导致时间违规。为了提高时序电路在温度相关延迟变异性下的时钟频率、工作温度范围等性能,提出了一种新的温度相关故意偏度设计方法。我们的方法是基于一个约束图,它由两个子图和用于桥接这两个子图的边组成。一个子图用于表示在指定的低端工作温度下的约束,另一个子图用于表示在高端工作温度下的约束,桥接边约束了低端和高端温度下的偏差量之间的关系,反映了故意偏差的温度依赖特性。我们的方法可以处理组合电路中信号传播延迟和故意偏斜的时钟传播延迟的各种类型的温度相关延迟的混合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-Graph Approach to Temperature Dependent Skew Scheduling
Temperature is one of the major sources of delay variability which may cause timing violations. In this paper, a novel design method of temperature dependent intentional skew is proposed in order to improve the performances (clock frequency, operating temperature range, etc.) of a sequential circuit under the temperature dependent delay variability. Our approach is based on a constraint graph which consists of two subgraphs and edges for bridging these two subgraphs. One subgraph is for representing constraints at a specified low-end operating temperature, another subgraph is for constraints at a high-end temperature, and bridging edges constrain the relation between the amounts of skew at the low-end and high-end temperatures reflecting the characteristics of the temperature dependency of intentional skews. Our approach can handle the mixture of various types of temperature dependent delays of both signal propagation delays in a combinatorial circuit and clock propagation delays for intentional skews.
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