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Speed analysis of wireless communication technology banked on HBT: An analytical approach to determine the impact of GaAs/GaAsBi diode model

机译:基于HBT的无线通信技术的速度分析:一种确定GaAs / GaAsBi二极管模型影响的分析方法

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摘要

HBT has emerged as the predominant technology for many commercial applications. This paper reports on the high speed GaAs/GaAsBi HBT technologies which are suitable for applications such as cellular, WLAN, modulator driver circuits. This paper presents a scheme of threshold-voltage-based 2-D theoretical model of GaAs/GaAsBi heterojunction diode in accordance with its various operational characteristics. Using MATLAB simulation current-voltage relationship of the recommended diode model is implemented for the prediction of its application in semiconductor filed. Furthermore depletion width-voltage characteristic give prediction of transit time of HBT using GaAs/GaAsBi material system. Capacitance-voltage relationship helps to anticipate about device performance after biasing. A comparative study of these relationships for various doping concentration is necessary for the purpose of selecting doping concentration that is attributed to device fabrication. The analytical simulation for Bismuth doping concentration of 2.1 %, 2.5 %, 3.1 %, 6.3 % and 12.5 % is done that reveals the dependency of performance characteristics of proposed heterojunction diode model on Bismuth doping concentration.
机译:HBT已经成为许多商业应用中的主要技术。本文报告了适用于蜂窝,WLAN,调制器驱动器电路等应用的高速GaAs / GaAsBi HBT技术。根据GaAs / GaAsBi异质结二极管的各种工作特性,提出了一种基于阈值电压的二维理论模型。利用MATLAB仿真,实现了推荐二极管模型的电流-电压关系,以预测其在半导体领域的应用。此外,利用GaAs / GaAsBi材料系统的耗尽宽度-电压特性可以预测HBT的通过时间。电容电压关系有助于在偏置后预期器件性能。为了选择归因于器件制造的掺杂浓度,有必要对各种掺杂浓度的这些关系进行比较研究。对铋掺杂浓度分别为2.1%,2.5%,3.1%,6.3%和12.5%进行了分析仿真,揭示了所提出的异质结二极管模型的性能特性对铋掺杂浓度的依赖性。

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