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Power Supply- and Temperature-Aware I/O Buffer Model for Signal-Power Integrity Simulation

机译:信号 - 功率完整性模拟的电源和温度感知I / O缓冲模型

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摘要

This paper presents the development and evaluation of a large-signal equivalent circuit model that accounts for the power supply fluctuation and temperature variation of I/O buffers circuit designed based on the fully depleted silicon on insulator (FDSOI) 28 nm process for signal-power integrity (SPI) simulation. A solid electrical analysis based on the working mechanisms of the nominal I/O buffer information specification- (IBIS-) like model is presented to support the derivation of an accurate and computationally efficient behavioral model that captures the essential effects of the power supply bouncing under temperature variation. The formulation and extraction of the Lagrange interpolating polynomial are investigated to extend the nominal equivalent circuit model. The generated behavioral model is implemented using the Newton-Neville’s formula and validated in simultaneous switching output buffers (SSO) scenario under temperature variation. The numerical results show a good prediction accuracy of the time domain voltage and current waveforms as well as the eye diagram of the high-speed communication I/O link while speeding-up the transient simulation compared to the transistor level model.
机译:本文介绍了一种大信号等效电路模型的开发和评价,该模型考虑了基于完全耗尽硅的I / O缓冲电路的电源波动和温度变化,用于基于绝缘体(FDSOI)28 NM工艺的信号功率完整性(SPI)模拟。提出了基于标称I / O缓冲信息规范的工作机制的实心电气分析 - (IBIS-),如模型,以支持准确和计算有效的行为模型的推导,该模型捕获电源弹跳的基本效果温度变化。研究了拉格朗日插值多项式的配方和提取,以延长标称等效电路模型。使用Newton-Neville的公式实现生成的行为模型,并在温度变化下在同时切换输出缓冲器(SSO)方案中验证。数值结果显示了时域电压和电流波形的良好预测精度以及高速通信I / O链路的眼图,同时加速与晶体管电平模型相比的瞬态仿真。

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