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A Cryogenic Integrated Noise Calibration and Coupler Module Using a MMIC LNA

机译:使用MMIC LNA的低温集成噪声校准和耦合器模块

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摘要

A new cryogenic noise calibration source for radio astronomy receivers is presented. Dissipated power is only 4.2 mW, allowing it to be integrated with the cold part of the receiver. Measured long-term stability, sensitivity to bias voltages, and noise power output versus frequency are presented. The measured noise output versus frequency is compared to a warm noise diode injected into a cryogenic $K$-band receiver and shows the integrated noise module to have less frequency structure, which will result in more accurate astronomical flux calibrations. It is currently in operation on the new seven-element $K$-band focal plane array receiver on the National Radio Astronomy Observatory Robert C. Byrd Green Bank Telescope.
机译:提出了一种用于射电天文接收机的新型低温噪声校准源。耗散功率仅为4.2 mW,使其可以与接收器的低温部分集成在一起。给出了测得的长期稳定性,对偏置电压的灵敏度以及噪声功率输出与频率的关系。将测得的噪声输出与频率的关系与注入到低温 $ K $ 频段接收器中的热噪声二极管进行比较,并显示集成的噪声模块具有较少的频率结构,这将导致更准确的天文通量校准。它目前正在美国国家射电天文台的新型七元素 $ K $ 波段焦平面阵列接收机上运行罗伯特·C·伯德·格林银行望远镜。

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