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Mixed-Signal Overclocked I/O Buffers Model Abstraction for Signal Integrity Assessment

机译:信号完整性评估的混合信号超频I / O缓冲区模型抽象

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This paper addresses the development of a behavioral modeling abstraction methodology that reduces the model order complexity of the transistor level physical model describing the input-output (I/O) buffers that interface the digital (i.e., discrete) and the analog world in the high-speed digital communication I/O links. In fact, the proposed high-level hybrid automaton behavioral model (HABM) is analyzed as a mixed-signal modeling approach that combines both discrete and continuous abstractions. The modeling framework investigates the quantization of the on-off nonreturn-to-zero input signal to analyze the mixed signal behavior of the predriver and the analog dynamics of the I/O buffer's last stage for easing the model's extraction and running complexities while accurately predicting the I/O buffer's nonlinear switching behavior under normal and overclocking conditions. The time decomposition of the input and state variables enables the approximation of the predriver's nonlinear dynamic by means of digitally controlled linear dynamic filters. The filter's outputs are multiplexed and integrated with the continuous-time nonlinear dynamic model of driver's last stage output admittances. The implemented mixed-signal HABM presents more accurate transient simulation results than the I/O buffer information specification algorithm when assessing the signal integrity performance while alleviating the computational cost under overclocking operation.
机译:本文探讨了行为建模抽象方法的发展,该方法降低了晶体管级物理模型的模型顺序复杂度,该模型描述了连接数字(即离散)和模拟世界的输入/输出(I / O)缓冲器。高速数字通信I / O链接。实际上,所提出的高级混合自动机行为模型(HABM)被分析为混合了离散和连续抽象的混合信号建模方法。建模框架研究了开/关不归零输入信号的量化,以分析预驱动器的混合信号行为以及I / O缓冲器最后一级的模拟动态特性,以简化模型的提取和运行复杂性,同时准确预测在正常和超频条件下,I / O缓冲区的非线性切换行为。输入和状态变量的时间分解可通过数字控制的线性动态滤波器来近似预驱动器的非线性动态。滤波器的输出被多路复用,并与驾驶员末级输出导纳的连续时间非线性动态模型集成在一起。当评估信号完整性性能并减轻超频操作下的计算成本时,所实现的混合信号HABM比I / O缓冲区信息规范算法提供了更准确的瞬态仿真结果。

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