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Behavior and Analysis of Deep Sub-Micron Integrated Circuits Including Self and Mutual Inductances

机译:包含自感和互感的深亚微米集成电路的行为和分析

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Here a set of Elmore-like closed form solutions to analyze the behavior of integrated circuits in the presence of self and mutual inductances is presented. These expressions have linear complexity with the number of elements in the interconnect network, and Elmore delay accuracy characteristics. Besides the use of these expressions in evaluating signal characteristics, the simplicity of the solutions allows an intuitive understanding of the behavior of integrated circuits in the presence of self and mutual inductances together with capacitive coupling. Three problems are analyzed based on these solutions. First, a simple figure of merit to determine the importance of inductance in a bus is introduced. Second, the problem of shielding inductive coupling is investigated analytically. It is shown that inserting ground lines is not very effective in reducing inductive coupling compared to the differential signaling technique. Finally, the delay uncertainty due to different line-switching patterns is investigated. It is shown that inductive coupling reduces the delay variation (switching window width). With these applications of the delay model the opposite impacts of capacitive and inductive coupling in different signal switching patterns are illustrated with reference to the work of Kahng, Muddu, and Sarto.
机译:这里介绍了一组类似Elmore的闭式解决方案,用于分析在存在自感和互感的情况下集成电路的行为。这些表达式具有随着互连网络中元素数量的线性复杂度以及Elmore延迟精度特性。除了使用这些表达式评估信号特性外,解决方案的简单性还可以直观地了解在存在自感和互感以及电容耦合的情况下集成电路的行为。基于这些解决方案分析了三个问题。首先,介绍了一种简单的品质因数,用于确定总线中电感的重要性。其次,对屏蔽电感耦合问题进行了分析研究。结果表明,与差分信号技术相比,插入接地线在减少电感耦合方面不是很有效。最后,研究了由于不同的线路切换模式而引起的延迟不确定性。结果表明,电感耦合减小了延迟变化(切换窗口宽度)。在延迟模型的这些应用中,参考了Kahng,Muddu和Sarto的工作,说明了在不同信号切换模式下电容和电感耦合的相反影响。

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