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Combine non simultaneous conjugate match and simultaneous conjugate match techniques for X-band LNA design

机译:结合非同时共轭匹配和同时共轭匹配技术,用于X频段LNA设计

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This paper studies the design of low noise amplifier (LNA) by using combining non simultaneous conjugate match and simultaneous conjugate match technique. The purpose of such combining technique is to obtain trade off minimum noise figure, minimum voltage standing wave ratio (VSWR) and high gain. In the design process, two stage configurations are applied. The first stage uses non simultaneous conjugate match (Non SCM) technique and the second one uses simultaneous conjugate match (SCM) technique. This work uses BJT transistors of BFP 840ESD and the rogers RO4003C substrate as planar structure for matching impedances network. The Agilent Design System (ADS) software is used to obtain LNA characteristics. The designed LNA at frequency 9.3 GHz achieves gain 28.01 dB, noise figure 1.57 dB, VSWR input and VSWR output are derived at values 1.17 and 1.28, respectively.
机译:本文通过使用组合非同时共轭匹配和同时共轭匹配技术来研究低噪声放大器(LNA)的设计。这种组合技术的目的是获得最低噪声系数,最小电压驻波比(VSWR)和高增益的折衷。在设计过程中,应用了两个阶段配置。第一阶段使用非同时共轭匹配(非SCM)技术,第二个阶段使用同时共轭匹配(SCM)技术。这项工作使用BFP 840ESD的BJT晶体管和Rogers RO4003C基板作为匹配阻抗网络的平面结构。 Agilent设计系统(广告)软件用于获得LNA特性。频率9.3 GHz的设计LNA实现了GAIN 28.01 DB,噪声图1.57DB,VSWR输入和VSWR输出分别以值为1.17和1.28导出。

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