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A Surrogate Model-based Framework for Design and Macromodeling of Self-calibrated Analog Circuits.

机译:基于代理模型的自校准模拟电路设计和宏建模框架。

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摘要

As integrated circuit technologies scale down, process variations become increasingly critical and lead to large variances in important transistor parameters. As a result, circuit performance varies significantly, and some circuits may even fail. The large process uncertainties have caused significant performance yield loss. In addition, reliability issues such as ageing effects and environmental condition variations, further contribute to yield reduction and make it more challenging to create a reliable, robust analog circuit design.;In this work, a new approach to design cost-effective self-calibrated analog circuits is proposed. The key idea is to build multiple states for compensating the extreme variations. Particularly, each state is able to tolerate a specified range of variations. Therefore, at run time, the states can be adaptively selected to compensate the in situ variations. In the circuit implementation, a set of design parameters are selected and their values for each state are determined at the design phase. The pre-computed results can be stored on chip and applied to on-line calibration.;The new method has several key benefits. Firstly, it is a general design method that can be used for a wide range of analog circuits. Secondly, it is able to achieve better trade-offs among performance, yield, and cost by using multiple states. Thirdly, the new method introduces low design complexity. The optimal state can be selected according to the variations, and this would be possible to eliminate the needs for performance measurement, which is usually difficult to design and invasive to the circuit. Furthermore, the new method is able to achieve high efficiency in calibration using pre-determined results stored on chip, and it is able to compensate the process and temperature variations simultaneously.;An associated surrogate model-based macromodeling and design flow is developed. Surrogate models are able to provide approximations of more expensive circuit simulations. Once the surrogate models are built, they can be used to explore the design space. Since the models are extremely fast to execute, the model-based design is simple and computational inexpensive compared to the design using the actual circuit simulations. Moreover, the models can be reused for different design objectives and constraints. Therefore, surrogate-based methods are able to improve the overall design flexibility and efficiency.;The proposed method for self-calibrated design is demonstrated on a low noise amplifier (LNA) design and a phase locked loop (PLL) design. The results show that the proposed method is remarkably effective to compensate the large temperature and process variations. In the presented cases, the performance yields are greatly improved and better trade-offs between cost and yields are derived.;In addition, a new surrogate-based method is proposed to generate accurate and scalable macromodels for Input/Output (IO) buffer circuits. The macromodels have shown good accuracy in capturing the effects of reflections and variations, and their scalability makes flexible signal integrity analysis possible.
机译:随着集成电路技术的按比例缩小,工艺变化变得越来越关键,并导致重要晶体管参数的较大差异。结果,电路性能会发生很大变化,甚至某些电路可能会发生故障。较大的工艺不确定性已导致显着的性能良率损失。此外,诸如老化效应和环境条件变化之类的可靠性问题进一步加剧了良率的降低,并使创建可靠,鲁棒的模拟电路设计更具挑战性。在这项工作中,一种新的方法来设计具有成本效益的自校准提出了模拟电路。关键思想是建立多个状态以补偿极端变化。特别地,每个状态都能够容忍指定的变化范围。因此,在运行时,可以适应性地选择状态以补偿原位变化。在电路实现中,选择一组设计参数,并在设计阶段确定每个状态的值。预先计算的结果可以存储在芯片上,并用于在线校准。首先,这是一种通用设计方法,可用于各种模拟电路。其次,它可以通过使用多个状态在性能,良率和成本之间取得更好的折衷。第三,新方法引入了较低的设计复杂度。可以根据变化选择最佳状态,这将有可能消除性能测量的需求,而性能测量通常很难设计并且对电路具有侵入性。此外,该新方法能够利用存储在芯片上的预定结果实现较高的校准效率,并且能够同时补偿过程和温度变化。;开发了一种基于代理模型的相关宏模型和设计流程。替代模型能够提供更昂贵的电路仿真的近似值。替代模型一旦建立,就可以用来探索设计空间。由于模型的执行速度极快,因此与使用实际电路仿真的设计相比,基于模型的设计简单且计算量少。此外,可以将模型重新用于不同的设计目标和约束。因此,基于代理的方法能够提高整体设计的灵活性和效率。在低噪声放大器(LNA)设计和锁相环(PLL)设计上论证了所提出的自校准设计方法。结果表明,该方法在补偿较大的温度和工艺变化方面非常有效。在所提出的情况下,性能良率得到了极大的提高,并且在成本和良率之间取得了更好的折衷。此外,提出了一种新的基于代理的方法来为输入/输出(IO)缓冲电路生成准确且可扩展的宏模型。 。宏模型在捕获反射和变化的影响方面显示出良好的准确性,其可伸缩性使灵活的信号完整性分析成为可能。

著录项

  • 作者

    Zhu, Ting.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Computer.;Engineering General.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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