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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Macromodeling of I/O Buffers via Compressed Tensor Representations and Rational Approximations
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Macromodeling of I/O Buffers via Compressed Tensor Representations and Rational Approximations

机译:通过压缩张量表示和有理逼近来对I / O缓冲区进行宏建模

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This paper addresses the generation of accurate and efficient macromodels of high-speed input/output buffers. The proposed modeling approach extends the state-of-the-art methods that are currently available, yielding to a modular and scalable tool for model generation. The modeling procedure applies to both single-ended and differential devices, possibly exhibiting a rich dynamical behavior due to large supply fluctuations or internal voltage regulators. The models are defined by the combination of static surfaces described via compact tensor approximations and linear dynamical state-space relations generated using a robust time-domain vector fitting algorithm. A simple and effective solution is adopted to account for the overclocking operation of output buffer models as well. The feasibility and strength of the proposed method are demonstrated using real devices and complex application test cases for signal and power integrity cosimulations.
机译:本文介绍了高速输入/输出缓冲器的精确有效的宏模型的生成。所提出的建模方法扩展了当前可用的最新方法,从而产生了用于模型生成的模块化和可扩展的工具。建模过程适用于单端和差分设备,由于大的电源波动或内部稳压器,可能表现出丰富的动态特性。这些模型是由通过紧凑张量逼近描述的静态曲面与使用鲁棒时域矢量拟合算法生成的线性动态状态空间关系的组合定义的。采用一种简单有效的解决方案来解决输出缓冲区模型的超频操作。使用实际设备以及信号和电源完整性协同仿真的复杂应用测试案例,证明了该方法的可行性和优势。

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