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Cryogenic Broadband Ultra-Low-Noise MMIC LNAs for Radio Astronomy Applications

机译:射电天文应用的低温宽带超低噪声MMIC LNA

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摘要

0.5–13- and 24–40-GHz broadband cryogenic monolithic-microwave integrated-circuit low-noise amplifiers (LNAs) have been designed and fabricated using a 130-nm InP HEMT process. Packaged LNAs have been measured at both 300 and 15 K. At 300 K, the measured minimum noise temperature of the 0.5–13-GHz LNA was 48 K at 7 GHz with a gain between 34–40 dB. At 15 K, the measured minimum noise temperature was 3 K at 7 GHz and below 7 K within the entire 0.5–13-GHz band with a gain between 38–44 dB. The 24–40-GHz LNA exhibited a lowest noise temperature of 110 K and an average of 125 K with a gain of more than 27.5 dB at 300 K. When cooled down to 15 K, the noise temperature dropped to a minimum of 10 K and average of 13.2 K with a gain of 28 dB. The results are of large interest for radio astronomy applications where large bandwidth and low noise figure in the receivers are key figures in the system design.
机译:使用130 nm InP HEMT工艺设计和制造了0.5-13 GHz和24-40 GHz宽带低温单片微波集成电路低噪声放大器(LNA)。打包的LNA在300 K和15 K时都进行了测量。在300 K时,测得的0.5-13 GHz LNA的最低噪声温度在7 GHz时为48 K,增益在34-40 dB之间。在15 K时,测得的最低噪声温度在7 GHz时为3 K,在整个0.5–13 GHz频带内低于7 K,增益在38–44 dB之间。 24–40 GHz LNA的最低噪声温度为110 K,平均噪声温度为125 K,在300 K时的增益超过27.5 dB。冷却至15 K时,噪声温度降至最低10 K平均为13.2 K,增益为28 dB。该结果对于射电天文应用非常感兴趣,其中接收机中的大带宽和低噪声系数是系统设计中的关键指标。

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