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Wideband, high gain, high linearity, low noise amplifier for GNSS frequencies with compensation for low frequency instability

机译:宽带,高增益,高线性度,用于GNSS频率的低噪声放大器,具有低频不稳定性的补偿

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This paper presents the design methodology, simulation results and implementation details of a low noise amplifier (LNA) designed to operate over the whole range of Global Navigation Satellite System (GNSS) frequencies (1164MHz to 1615.5MHz). This LNA works over combined (but overlapping) frequency bands of all three GNSS constellations (GNSS consist of the American Global Positioning System (GPS), European Galileo system and the Russian GLONASS system). Designed to be unconditionally stable with gain of over 18dB and noise figure of 2dB over a considerable bandwidth of about 450MHz, the achieved results conformed quite well to the specifications. Final implementation results include a gain of 18.5dB at the centre frequency with a nominal variation of ±1.3dB over the desired bandwidth. The noise figure obtained is 2.18dB and the amplifier stability range extends from 0Hz to 9GHz. Very high degree of linearity is achieved with output ldB compression at +13dBm and output third order intercept at +23dBm. This paper describes results at every stage of design, simulation and implementation along with a solution against typical low frequency instability by a small trade-off in noise figure.
机译:本文介绍了低噪声放大器(LNA)的设计方法,仿真结果和实施细节,旨在通过全局导航卫星系统(GNSS)频率(1164MHz至1615.5MHz)进行操作。该LNA对所有三个GNSS星座的组合(但重叠)的频段(GNSS由美国全球定位系统(GPS),欧洲伽利略系统和俄罗斯Glonass系统组成)。设计为无条件稳定,在大约450MHz的相当长的带宽中,2DB的增益具有超过18dB和2dB的噪声系数,所以实现的结果与规格相当符合。最终的实施结果包括在中心频率下的18.5dB的增益,其标称变化在所需的带宽上±1.3dB。所获得的噪声系数是2.18dB,放大器稳定性范围从0Hz到9GHz延伸。通过输出LDB压缩,在+ 13dBm的输出LDB压缩和+ 23dBM输出三阶截距来实现非常高的线性度。本文介绍了各个阶段的设计,仿真和实现的结果,以及通过噪声形象的小折衷来解决典型低频不稳定性的解决方案。

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