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Automation of Switch Insertion and Power Network Generation in 28 nm Power-Switched Designs

机译:28 nm电源开关设计中的开关插入和电网生成自动化

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摘要

Market competition drives design complexity higher and design cycle shorter resulting in rapid RTL and physical design changes through tape-out. Conventional switched power grid creation requires costly manual intervention to build and verify a complex switched power network. This manual effort often must be repeated for each iteration of the design and, consequently, becomes a bottleneck in complex power-managed design execution. We have developed an automated flow to accomplish the power switch insertion and power network generation leveraging Cadence Encounter (EDI) low-power capabilities. Our correct-by-construction flow cuts the switch and power network creation and validation cycle from days to minutes. It is developed for high-performance, multi-core production designs in 28 nm technology. This paper describes the design flow methodology as well as the challenges faced and our solutions.
机译:市场竞争加剧了设计的复杂性,缩短了设计周期,从而导致快速的RTL和通过流片的物理设计变更。传统的开关电网的创建需要昂贵的人工干预来构建和验证复杂的开关电源网络。通常必须为设计的每个迭代重复进行这种手动工作,因此,这成为复杂的功耗管理设计执行的瓶颈。我们已经开发了一种自动化流程,以利用Cadence Encounter(EDI)低功耗功能来完成电源开关的插入和电网的生成。我们的按构造校正流程将开关和电源网络的创建和验证周期从几天缩短到了几分钟。它是为28纳米技术的高性能,多核生产设计而开发的。本文介绍了设计流程方法论,面临的挑战和我们的解决方案。

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