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DDRO: A novel performance monitoring methodology based on design-dependent ring oscillators

机译:DDRO:基于设计依赖环形振荡器的新型性能监测方法

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As CMOS technology scales, circuit performance becomes more sensitive to manufacturing and environmental variations. Hence, there is a need to measure or monitor circuit performance during manufacturing and at runtime. Since each circuit may have different sensitivities to process variations, previous works have focused on synthesis of circuit performance monitors that are specific to a given design. In this work, we study the potential benefit of having multiple design-dependent monitors. We develop a systematic approach to the synthesis of multiple design-dependent monitors, as well as a corresponding delay estimation method. Our approach synthesizes design-dependent ring oscillators (DDROs) using standard library gates. This has the advantage of quick design turnaround time and reduced schedule impact, because the DDRO implementation can leverage automation in conventional implementation flows. Our delay estimation method seeks to minimize the number of parameters as well as computing resources (i.e., to limit information storage and exchange) used in delay estimation based on monitoring results. Experiments show that our delay estimation method using multiple DDROs reduces overestimation (timing margin) by up to 25% compared to use of a single DDRO.
机译:作为CMOS技术尺度,电路性能对制造和环境变化变得更加敏感。因此,需要在制造期间和运行时测量或监控电路性能。由于每个电路可能具有不同的敏感性来处理变化,因此先前的作品专注于合成特定于给定设计的电路性能监视器。在这项工作中,我们研究了拥有多种设计依赖监视器的潜在益处。我们开发了一种系统的方法来合成多个设计依赖监视器,以及相应的延迟估计方法。我们的方法使用标准库门综合设计依赖的环形振荡器(DDROS)。这具有快速设计周转时间和调度影响降低的优势,因为DDRO实现可以利用传统实现流动的自动化。我们的延迟估计方法旨在最小化参数的数量以及基于监视结果的延迟估计中使用的计算资源(即,限制信息存储和交换)。实验表明,与使用单个DDRO相比,我们使用多个DDROS的延迟估计方法可将高度高达25%降低25%。

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