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Small-Signal Modeling of SiGe HBTs Using Direct Parameter-Extraction Method

机译:使用直接参数提取方法对SiGe HBT进行小信号建模

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摘要

A simple and accurate parameter-extraction method of a high-frequency small-signal SiGe heterojunction bipolar transistor model is proposed in this paper. It was found that, without taking the intrinsic circuit elements into account, the conductance of the substrate network will be underestimated, while the susceptance of the substrate network will be overestimated. Therefore, a new extraction technique of the substrate-network parameters was developed, which has taken the intrinsic circuit elements into consideration. Transforming the intrinsic equivalent circuit into its common-collector configuration, all the intrinsic circuit elements are extracted directly from the measured S-parameters without any numerical optimization. Two formulas used to determine the intrinsic base resistance are presented, which is followed by an accuracy-improvement procedure to achieve a better accuracy of the extraction results. Simplified formulas to determine the base-emitter resistance, base-emitter capacitance, transconductance, and excess phase delay are also presented. The proposed method is validated with SiGe HBTs fabricated with a 0.35-μm BiCMOS technology from 1 to 30 GHz. The agreements between the measured and modeled data are excellent in the desired frequency range over a wide range of bias points.
机译:提出了一种简单,准确的高频小信号SiGe异质结双极晶体管模型参数提取方法。已经发现,如果不考虑固有电路元件,则将低估衬底网络的电导率,而将高估衬底网络的电纳。因此,开发了一种新的衬底网络参数提取技术,该技术已经考虑了固有电路元件。将本征等效电路转换成其共集电极配置,所有本征电路元件都直接从测量的S参数中提取出来,而无需进行任何数值优化。给出了用于确定本征基极电阻的两个公式,随后是精度提高程序,以实现更好的提取结果精度。还给出了确定基极-发射极电阻,基极-发射极电容,跨导和过量相位延迟的简化公式。该方法已通过采用0.35μmBiCMOS技术在1至30 GHz范围内制造的SiGe HBT进行了验证。测量的数据和建模的数据之间的一致性在很大的偏置点范围内的所需频率范围内均非常出色。

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