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TEASE: A systematic analysis framework for early evaluation of FinFET-based advanced technology nodes

机译:TEASE:一个用于早期评估基于FinFET的先进技术节点的系统分析框架

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This paper proposes TEASE (Technology Exploration and Analysis for SoC-level Evaluation), a framework to systematically analyze and evaluate system design in finFET-based technology node. The proposed framework combines both lithography and electrical constraints of a particular technology node to optimize the standard cell library performance. Growing complexity of logic design at nodes below 20nm causes to adopt a design style that can embrace the simplicity required to enable manufacturing, along with a process technology that can be finely tuned to the desired performance constraints. Additionally, the introduction of finFET based devices poses a new challenge for the designers to come up with an efficient standard cell template. The proposed framework can be used to detect the technology constraints that act as the bottleneck for the enablement of design at these advanced nodes. Results presented in this paper show by optimizing these bottlenecks we can improve the performance of a standard cell library significantly. Furthermore, adapting to such an analysis framework at an early stage of technology development helps to take the design constraints into the decision loop for realization of technology research into real products.
机译:本文提出了TEASE(用于SoC级评估的技术探索和分析),这是一个用于在基于finFET的技术节点中系统地分析和评估系统设计的框架。所提出的框架结合了光刻技术和特定技术节点的电约束条件,以优化标准单元库性能。在低于20nm的节点上,逻辑设计的复杂性日益增长,导致采用的设计风格应能够满足制造所需的简单性,同时还可以对工艺技术进行微调,以使其达到理想的性能要求。此外,基于finFET的器件的推出对设计人员提出一个新的挑战,要求他们设计出高效的标准单元模板。所提出的框架可以用来检测技术约束,这些技术约束是在这些高级节点处实现设计的瓶颈。本文介绍的结果表明,通过优化这些瓶颈,我们可以显着提高标准单元库的性能。此外,在技术开发的早期阶段适应这样的分析框架有助于将设计约束纳入决策环中,以实现对实际产品的技术研究。

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