Journal Article

·2009 OPEN ACCESS

DESIGN OF AN ULTRA-WIDEBAND, LOW-NOISE AMPLIFIER USING A SINGLE TRANSISTOR: A TYPICAL APPLICATION EXAMPLE

Salih Demirel YTU , Filiz Güneş YTU , Ufuk Özkaya YTU

Progress In Electromagnetics Research B

Abstract

Abstract—In this work, a design method of an Ultra-Wideband (UWB), low-noise amplifier (LNA) is proposed exerting the performance limitations of a single high-quality discrete transistor. For this purpose, the compatible (Noise F, Input VSWR Vi, Gain GT) triplets and their (ZS, ZL) terminations of a microwave transistor are exploited for the feasible design target space with the minimum noise Fmin(f), maximum gain GT max(f) and a low input VSWR Vi over the available bandwidth B. This multi-objective design procedure is reduced into syntheses of the Darlington equivalences of the ZSopt(f), ZL max(f) terminations with the Unit-elements and short-circuited stubs in the T-, L-, Π-configurations and Particle Swarm Intelligence is successfully implemented as a comparatively simple and efficient optimization tool into both verification of the design target space and the design process of the input and output matching circuits. A typical design example is given with its challenging performance in the simple Π- and Π-configurations realizable by the microstrip line technology. Furthermore the performances of the synthesized amplifiers are compared using an analysis programme in MATLAB code and a microwave system simulator and verified to agree with each other. 1.

Keywords

Wideband Amplifier Computer science Low-noise amplifier Noise (video) Transistor Electronic engineering Electrical engineering Telecommunications Bandwidth (computing) Engineering Artificial intelligence

Subject Areas

Radio Frequency Integrated Circuit Design ·Electrical and Electronic Engineering ·Physical Sciences
Microwave Engineering and Waveguides ·Electrical and Electronic Engineering ·Physical Sciences
Advanced Power Amplifier Design ·Electrical and Electronic Engineering ·Physical Sciences

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