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Design methodologies, models and tools for very-large-scale integration of NEM relay-based circuits

机译:用于基于NEM继电器的电路的大规模集成的设计方法,模型和工具

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摘要

Integrated circuits based on nano-electro-mechanical (NEM) relays are a promising alternative to conventional CMOS technology in ultra-low energy applications due to their (near) zero stand-by energy consumption. Here we describe the details of an overarching design framework for NEM relays, including automated synthesis from design entry in RTL to layout, based on commercially available EDA tools and engines. Critical differences between relays and FETs manifest in fundamentally different timing characteristics, which significantly affect static timing analysis and the requisite timing models. The adaptation of existing EDA methods, models, tools and platforms for logic and physical synthesis to account for these differences are described, providing insight into large-scale design of NEM relay-based digital processors. A historically well-known processor, the Intel 4004, and a modern MIPS32 compatible processor are synthesized based on a NEM relay-based standard cell library to demonstrate the customized synthesis methodology. An energy study is carried out using the proposed design framework on benchmark circuits implemented in existing CMOS nodes and NEM node, to better understand the energy saving potential of NEM technology.
机译:在超低能耗应用中,基于纳米机电(NEM)继电器的集成电路是常规CMOS技术的有前途的替代产品,因为它们的(待机)零能耗接近(零)。在这里,我们描述了基于NEM继电器的总体设计框架的详细信息,包括基于市售EDA工具和引擎的从RTL中的设计输入到布局的自动综合。继电器和FET之间的关键差异体现在根本不同的时序特性上,这严重影响了静态时序分析和必要的时序模型。描述了适用于逻辑和物理综合的现有EDA方法,模型,工具和平台的改编,以解决这些差异,从而为基于NEM中继的数字处理器的大规模设计提供了见识。在基于NEM中继的标准单元库的基础上,合成了历史上著名的处理器Intel 4004和现代的MIPS32兼容处理器,以演示定制的合成方法。使用建议的设计框架对在现有CMOS节点和NEM节点中实现的基准电路进行了能源研究,以更好地了解NEM技术的节能潜力。

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