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CubeSat scale receivers for measurement of ice in clouds

机译:云层测量冰块的立方体秤接收器

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Global measurements of ice in clouds, both the amount and particle size distribution, are critically needed to reduce uncertainties in global climate models. The retrieval of this information is best achieved with a range of receiver channels across the submillimeter wave range. Advancement of low noise Indium Phosphide (InP) MMIC amplifier technology enabled us to develop miniature submillimeter-wave receivers for a CubeSat scale instrument that achieves 6 km spatial resolution. The heritage of InP MMICs includes continuous operation for four years in the PLANCK Low Frequency Instrument and providing world-record sensitivity with high reliability in several airborne instruments. We have developed a set of InP MMICs for receivers at 240, 310, 380 and 670 GHz with significantly lower noise than previously reported. The noise temperature is NT=450 K at 240 GHz, NT=550K at 310 GHz and NT=650 K at 380 GHz. The 670 GHz LNAs provide a NT of 2400 K. These channels are complemented by the previously-developed and airborne-proven 183 and 118 GHz MMIC receivers that were tested to TRL 6.
机译:云中的全球冰量测量,金额和粒度分布都是批判性的,以减少全球气候模型中的不确定性。通过跨越亚倍数波范围内的一系列接收器通道,最好地实现了该信息的检索。低噪声铟磷化铟(INP)MMIC放大器技术的进步使我们能够为立方体尺度仪器开发微型亚倍率波接收器,以实现6公里的空间分辨率。 INP MMICS的遗产包括在Planck低频仪器中的四年内连续运行,并在几个空中仪器中提供具有高可靠性的世界纪录的敏感性。我们已经为240,310,380和670GHz的接收器开发了一组INP MMIC,其噪声明显低于先前报告。噪声温度为240GHz,NT = 550k,在310GHz,NT = 650K处为380 GHz。 670 GHz LNA提供了一个2400 K的NT。这些通道由先前开发的和空中经过验证的183和118 GHz MMIC接收器进行了补充,该接收器测试到TRL 6。

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