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High-level current macro model for logic blocks

机译:逻辑块的高级当前宏模型

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摘要

The authors present a frequency domain current macro-modeling technique for capturing the dependence of the block current waveform on its input vectors. The macro model is based on estimating the discrete cosine transform (DCT) of the current waveform and then taking the inverse transform to estimate the time domain current waveform. The DCT of a current waveform is very regular and closely resembles the DCT of a triangular or a trapezoidal wave. The authors use this fact and the relation between the DCT, discrete Fourier transform (DFT), discrete time Fourier transform (DTFT), and the Fourier transform (FT) to infer the template functions for the current macro model. These template functions are characterized by using various parameters like amplitude, phase decay factor, time period, etc. These parameters are modeled as functions of the input vector pair using regression. Regression is done on a set of current waveforms generated for each circuit using HSPICE. These template functions are used in an automatic characterization process to generate current macro models for various CMOS combinational circuits.
机译:作者提出了一种频域电流宏建模技术,用于捕获模块电流波形对其输入矢量的依赖性。宏模型基于估算电流波形的离散余弦变换(DCT),然后采用逆变换估算时域电流波形。电流波形的DCT非常规则,并且非常类似于三角波或梯形波的DCT。作者利用这一事实以及DCT,离散傅立叶变换(DFT),离散时间傅立叶变换(DTFT)和傅立叶变换(FT)之间的关系来推断当前宏模型的模板函数。这些模板函数通过使用各种参数(例如幅度,相位衰减因子,时间段等)来表征。使用回归将这些参数建模为输入向量对的函数。使用HSPICE对为每个电路生成的一组电流波形进行回归。这些模板功能用于自动表征过程,以生成用于各种CMOS组合电路的当前宏模型。

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