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An industry-level implementation of a compact microwave diode switch matrix for flexible input multiplexing if a geo-stationary satellite payload

机译:如果地理卫星卫星有效载荷,则灵活输入复用的紧凑型微波二极管交换矩阵的行业级实现

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We have developed a electronically reconfigurable 4×4 switch matrix for satellite communications at Ka-band downlink frequencies (17 ... 22 GHz), utilizing low-temperature co-fired ceramic multilayer technology. During a successful one-year on-orbit verification aboard a German test satellite, the switch matrix showed continuous reliable operation and achieved the technology-readiness level (TRL = 9) for low-earth orbit missions. Based on these promising results und underlying qualification capabilities, we have designed an advanced version of the switch matrix as part of a flexible input multiplexer for operation during the entire operational lifetime of the German geo-stationary Heinrich-Hertz mission. The challenge of this approach lies in the combination of latest research concepts with an industry-level space-qualified microwave system-in-package approach including an automated hybrid assembly process, following the highest standards for satellite payload systems. Beside introducing and verifying new technologies in orbit, and thus reducing the design cycles for future satellite payloads in general, increased reproducibility and reliability of the module, and reduced manufacturing costs are further important consequences. The switch matrix incorporates double-sided hybrid integration, hermetic sealing of bare-die components, space-qualified PIN-diode switch-ICs, and wire-bonded coaxial connectors.
机译:我们开发了一种电子可重新配置的4×4开关矩阵,用于KA波段下行链路频率(17 ... 22 GHz),利用低温共烧陶瓷多层技术。在德国测试卫星上成功的一年内轨道验证期间,开关矩阵显示出连续可靠的操作,并实现了低地球轨道任务的技术准备水平(TRL = 9)。基于这些有希望的结果非潜在的资格化能力,我们设计了开关矩阵的先进版本,作为德国地理静止赫内克猎物主义任务的整个操作寿命期间的灵活输入多路复用器的一部分。这种方法的挑战在于最新的研究概念与行业级空间合格的微波系统在包装内容中,包括自动化混合组装过程,这是卫星有效载荷系统的最高标准。除了在轨道中引入和验证新技术旁边,从而减少了未来卫星有效载荷的设计周期,一般来说,增加了模块的再现性和可靠性,并降低了制造成本是进一步的重要影响。开关矩阵包括双面混合集成,裸模元件的密封,空间合格的引脚二极管开关 - IC和引线同轴连接器。

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