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Cryogenic dual-temperature low noise amplifier in K band

机译:K波段低温双温度低噪声放大器

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摘要

Future ground stations will require a high level of operational flexibility and, for this reason, the possibility to adjust their receiving performance (i.e. signal-over-noise) is beneficial. This study presents an approach to achieve this flexibility based on a dual-temperature low-noise amplifier, which can be normally operated at room temperature (300 K), reducing the operational and maintenance costs, and at cryogenic temperature (103 K) only when required, for example, for critical mission supports. To demonstrate the effectiveness of this solution, a dual-temperature K-band low-noise amplifier is designed, manufactured and measured for the first time. Critical aspects, such as the stability of the electromagnetic response over the entire temperature range, and the reduction of the thermal load from the entire assembly, fundamental for a fast transition between room and cryogenic temperatures, are discussed. In particular, the low-noise amplifier exhibits a minimum gain of 20 dB over the entire working bandwidth (18–22 GHz) and a maximum noise figure of 2.2 at 300 K and 1.4 at 103 K, with a transition time between room and cryogenic temperature of <120 min because of a total thermal load lower than 1 W.
机译:未来的地面站将需要高度的操作灵活性,因此,调整其接收性能(即信噪比)的可能性是有益的。这项研究提出了一种基于双温度低噪声放大器的灵活性的方法,该放大器可以在室温(300 K)下正常运行,从而降低了运行和维护成本,并且只有在低温(103 K)下才能工作例如,关键任务支持所需。为了证明该解决方案的有效性,首次设计,制造和测量了双温度K波段低噪声放大器。讨论了一些关键方面,例如整个温度范围内的电磁响应稳定性以及整个组件的热负荷降低,这是室温和低温之间快速转换的基础。特别是,低噪声放大器在整个工作带宽(18–22 GHz)上表现出最小的20 dB增益,最大噪声系数在300 K时为2.2,在103 K时为1.4,在室温和低温之间具有过渡时间由于总热负载低于1 W,因此温度<120分钟。

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