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The impact of variability on power

机译:可变性对电力的影响

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Summary form only given. The integrated circuit manufacturing process has inevitable imperfections and fluctuations that result in ever-growing systematic and random variations in the electrical parameters of active and passive devices fabricated. The impact of such variations on various aspects of chip performance has been the subject of numerous papers, and techniques for analyzing and dealing with such variability, broadly labelled design for manufacturability, are emerging as the next hot topic in this area. The focus of much of the current work in this area has been on timing, but it is well known that modern integrated circuits are very heavily power limited and that static and dynamic power have emerged as first class design objectives. In this paper, we review the various sources of process variability, and relate them to variability in the various parts of the power delivery subsystem. Specifically, we address variability in the following areas: 1. static (leakage) power; 2. dynamic power; 3. on-chip power grid; 4. on-chip decoupling capacitance; 5. package power grid; 6. workload. It is important to model all these sources of variability with the correct balance of effort and accuracy, thus it is important to get broad bounds on each of the sources in order to insure that the appropriate level of modeling and analysis investment is made in order to bound or worst-case each component without undue pessimism. It is also important to have a first order understanding of the technology trends in each of these sources of variability. This will allow the designer and CAD tool developer to anticipate future problem areas and plan work arounds as needed.
机译:摘要表格仅给出。集成电路制造工艺具有不可避免的缺陷和波动,从而导致制造的主动和被动设备的电气参数中不断增长的系统和随机变化。这种变化对芯片性能的各个方面的影响一直是众多论文的主题,以及用于分析和处理这种可变性的技术,广泛标记为可制造性设计,正在成为该地区的下一个热门话题。该领域大部分工作的重点是在时间上进行了定时,但众所周知,现代集成电路非常大量电力有限,静态和动态力量已成为一流的设计目标。在本文中,我们审查了各种过程变异性的来源,并将它们与电力输送子系统的各个部分的可变性相关联。具体而言,我们解决了以下领域的可变性:1。静态(泄漏)功率; 2.动态功率; 3.片上电网; 4.片上切屑去耦电容; 5.封装电网; 6.工作量。重要的是以正确的努力和准确性模拟所有这些可变性来源,从而在每个来源上获得广泛的界限是值得注意的,以确保旨在提出适当的建模和分析投资每个组件的束缚或最坏情况,没有过度悲观。在这些可变性源中的每个源中对技术趋势进行第一次订单了解也很重要。这将允许设计人员和CAD工具开发人员预测未来的问题区域并根据需要计划解决问题。

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