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首页> 外文期刊>IEEE Transactions on Vehicular Technology >A Distributed Millimeter-Wave Small-Signal HBT Model Based on Electromagnetic Simulation
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A Distributed Millimeter-Wave Small-Signal HBT Model Based on Electromagnetic Simulation

机译:基于电磁仿真的分布式毫米波小信号HBT模型

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摘要

In this paper, a novel distributed small-signal heterojunction bipolar transistor (HBT) model at millimeter-wave frequencies is proposed. This new approach integrates the electromagnetic (EM) simulation of the outer extrinsic passive part of an HBT, the coupled transmission lines for the fingers, and the Gupta multiport connection into an efficient global distributed modeling approach. For the first time, the values of the entire HBT intrinsic model elements used in the active elementary cells (AECs) can subsequently be extracted through the explicit analytical expressions derived through the multiport connection method. Good agreement between the measured and the simulated results has been demonstrated. This model has several unique advantages for microwave transistor optimization and synthesis in that the derived explicit analytical expressions are in terms of the effect of the extrinsic parts, allowing the designer to have better control over the whole transistor design. Furthermore, it serves as one of the valuable steps toward global modeling of millimeter-wave devices and circuits.
机译:本文提出了一种在毫米波频率下的新型分布式小信号异质结双极晶体管(HBT)模型。这种新方法将HBT外部外部无源部分的电磁(EM)仿真,手指的耦合传输线以及Gupta多端口连接集成到了有效的全局分布式建模方法中。首次,可以通过通过多端口连接方法导出的显式分析表达式,提取活动基本单元(AEC)中使用的整个HBT固有模型元素的值。实验结果与仿真结果吻合良好。该模型对于微波晶体管的优化和合成具有几个独特的优势,即所导出的明确的解析表达式是根据外部部分的影响,从而使设计人员可以更好地控制整个晶体管的设计。此外,它是对毫米波设备和电路进行全局建模的重要步骤之一。

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