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A Bit-Time-Dependent Model of I/O Drivers for Overclocking Analysis

机译:用于超频分析的I / O驱动程序的比特时间依赖模型

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摘要

This article proposes a bit-time-dependent behavioral model of input-output (I/O) drivers for overclocking simulation. The driver behavior under overclocking conditions is investigated, and the corresponding weighting function response surface is demonstrated. In contrast to the previous approaches that use fixed timing signals extracted under normal operating conditions only, the proposed model addresses the modeling of overclocking behavior by using bit-time-dependent weighting functions (BTDWFs) along with a transition variable. The weighting coefficients can be generated appropriately for different overclocking scenarios. The corresponding model extraction flow is presented. Using the proposed BTDWFs, the driver input signal is processed during run-time by a finite state machine (FSM) algorithm which can be implemented in the widely supported hardware description languages such as Verilog-A. The proposed model is able to capture the driver's behavior accurately under both normal operation and overclocking conditions. Its fidelity and simulation speedup are validated with modeling examples using commercial driver circuit.
机译:本文提出了用于超频仿真的输入输出(I / O)驱动程序的比特时间相关行为模型。研究了超频条件下的驾驶员行为,并对应进行相应的加权函数响应表面。与使用在正常操作条件下仅提取的先前使用固定定时信号的先前方法相比,所提出的模型通过使用比特时间相关的加权函数(BTDWF)以及转换变量来解决超频行为的建模。可以适当地生成加权系数以用于不同的超频方案。提出了相应的模型提取流。使用所提出的BTDWFS,通过有限状态机(FSM)算法在运行时处理驱动器输入信号,该算法可以以诸如Verilog-A的广泛支持的硬件描述语言实现。所提出的模型能够在正常操作和超频条件下准确地捕获驾驶员的行为。它的保真和仿真加速度通过使用商业驱动器电路的建模示例进行了验证。

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