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A table-based bias and temperature-dependent small-signal and noise equivalent circuit model

机译:基于表的偏置和温度相关的小信号和噪声等效电路模型

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摘要

A new algorithm is presented for construction of accurate table-based bias and temperature dependent field-effect transistor (FET) small-signal and noise models. The algorithm performs two-dimensional (2-D) linear interpolation on a single stored data table to quickly produce bias and temperature-dependent model simulations. Comparisons of simulated FET S-parameters, noise figure, and device figures of merit (e.g., G/sub max/) versus measured data show the model to be accurate over a wide range of bias and temperatures. Model enabled simulations of a single-stage FET-based low-noise monolithic microwave integrated circuit (MMIC) amplifier are also shown to compare favorably with measured amplifier data. The new algorithm improves on previously available approaches in three ways: (1) it allows efficient and accurate small signal device and circuit simulations over bias and temperature; (2) it allows circuit optimization with respect to bias and temperature; and (3) it provides substantial data storage reduction over alternate approaches. Because one compact data table represents a single sample device, the approach can be readily adapted for use in a statistical FET model data base.
机译:提出了一种新算法,用于构建基于表的精确偏置和与温度相关的场效应晶体管(FET)小信号和噪声模型。该算法在单个存储的数据表上执行二维(2-D)线性插值,以快速生成与偏差和温度相关的模型仿真。模拟的FET S参数,噪声系数和器件品质因数(例如G / sub max /)与测量数据的比较表明,该模型在很大的偏置和温度范围内都是准确的。还显示了基于模型的基于FET的低噪声单片微波集成电路(MMIC)放大器的仿真,可以很好地与测量的放大器数据进行比较。新算法通过以下三种方式对先前可用的方法进行了改进:(1)允许在偏置和温度范围内进行高效,准确的小信号设备和电路仿真; (2)允许针对偏置和温度进行电路优化; (3)与其他方法相比,它可显着减少数据存储量。因为一个紧凑的数据表代表一个样本设备,所以该方法可以很容易地适用于统计FET模型数据库。

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