首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >An Improved VBIC Large-Signal Equivalent-Circuit Model for SiGe HBT With an Inductive Breakdown Network by src='/images/tex/380.gif' alt='X'> -Parameters
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An Improved VBIC Large-Signal Equivalent-Circuit Model for SiGe HBT With an Inductive Breakdown Network by src='/images/tex/380.gif' alt='X'> -Parameters

机译:具有感应击穿网络的SiGe HBT的改进的VBIC大信号等效电路模型,由 src =“ / images / tex / 380.gif” alt =“ X”> -参数

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摘要

In this paper, the -parameter measurements are applied first to establish an improved vertical bipolar inter-company (VBIC) large-signal equivalent-circuit model for silicon–germanium (SiGe) heterojunction bipolar transistors (HBTs), which can accurately describe novel and unusual characteristics of inductive behavior at breakdown that can occur in the active region under large-signal drive. This improved VBIC model presented here for SiGe HBTs is modified by incorporating a nonlinear base–collector junction breakdown network to account for the RF avalanche delay effect in the breakdown region. Good agreement between simulated and measured -parameters, which contain small-signal -parameters, large-signal spectrum, and hot -parameters, is achieved, validating the presented large-signal VBIC model in the breakdown region. The determined breakdown inductance and resistance agree well with the theoretical results. This modified model can be used to describe and predict RF large-signal performance accurately when transistors are operated in the breakdown and active regions.
机译:在本文中,首先使用-参数测量来建立用于硅锗(SiGe)异质结双极晶体管(HBT)的改进的垂直双极内部公司(VBIC)大信号等效电路模型,该模型可以准确地描述新颖且在大信号驱动下的有源区域中可能会发生击穿时电感特性的异常特征。此处介绍的针对SiGe HBT的改进的VBIC模型通过合并非线性基极-集电极结击穿网络进行了修改,以解决击穿区域中的RF雪崩延迟效应。包含小信号参数,大信号频谱和热参数的仿真参数和实测参数之间实现了良好的一致性,从而验证了在故障区域中提出的大信号VBIC模型。所确定的击穿电感和电阻与理论结果非常吻合。当晶体管在击穿区和有源区中工作时,此修改后的模型可用于准确描述和预测RF大信号性能。

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