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Design of An Optimal Low Noise Amplifier (LNA) for Signal Boosting

机译:用于信号升压的最佳低噪声放大器(LNA)的设计

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The purpose of a Low Noise Amplifier (LNA) is to amplify received signals to acceptable levels while minimizing noise. The LNA is used in communication systems to amplify very weak signals captured by an antenna. The design of an LNA in Microwave circuits requires a trade-off or careful balance of many important parameters such as Gain, Noise Figure (NF), and Stability. In view of this, it is essential to make calculated choices to realize an optimally functioning LNA. This paper presents a single stage 2.0 GHz LNA optimal design using lumped elements (discrete passive components) for the input and output matching networks. The Radio Frequency (RF) transistor used for this design is the ATF-21170, which is modelled by its Scattering (S) parameters. This is a high performance, low noise Gallium Arsenide Schottky barrier-gate Field Effect Transistor. The LNA is designed using conventional techniques to boost weak cell signals in the frequency range of 1.8GHz to 2.6GHz. The design is done with the aid of Advanced Design System (ADS) 2020 software. The LNA was successfully designed at an operating frequency of 2.0GHz with a gain of 14dB and a minimum noise figure (NFmin) of 0.83dB.
机译:低噪声放大器(LNA)的目的是将接收的信号放大到可接受的水平,同时最小化噪声。 LNA用于通信系统中,以放大由天线捕获的非常弱的信号。微波电路中的LNA设计需要折衷或仔细平衡许多重要参数,例如增益,噪声系数(NF)和稳定性。鉴于此,必须进行计算的选择来实现最佳运行的LNA。本文介绍了使用集总元件(离散无源组件)的单级2.0 GHz LNA最佳设计,用于输入和输出匹配网络。用于该设计的射频(RF)晶体管是ATF-21170,其由其散射参数建模。这是一种高性能,低噪音镓砷化镓肖特基势垒栅极场效应晶体管。使用常规技术设计LNA,将频率范围的频率范围升高到2.8GHz至2.6GHz。该设计是借助先进的设计系统(广告)2020软件进行的。 LNA以2.0GHz的工作频率成功设计,增益为14dB和0.83dB的最小噪声系数(nfmin)。

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