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Optical techniques to feed and control GaAs MMIC modules for phased array antenna applications

机译:用于相控阵天线应用的GaAs MMIC模块的馈电和控制的光学技术

摘要

A complex signal distribution system is required to feed and control GaAs monolithic microwave integrated circuits (MMICs) for phased array antenna applications above 20 GHz. Each MMIC module will require one or more RF lines, one or more bias voltage lines, and digital lines to provide a minimum of 10 bits of combined phase and gain control information. In a closely spaced array, the routing of these multiple lines presents difficult topology problems as well as a high probability of signal interference. To overcome GaAs MMIC phased array signal distribution problems optical fibers interconnected to monolithically integrated optical components with GaAs MMIC array elements are proposed as a solution. System architecture considerations using optical fibers are described. The analog and digital optical links to respectively feed and control MMIC elements are analyzed. It is concluded that a fiber optic network will reduce weight and complexity, and increase reliability and performance, but higher power will be required.
机译:需要复杂的信号分配系统来馈送和控制20 GHz以上相控阵天线应用的GaAs单片微波集成电路(MMIC)。每个MMIC模块将需要一条或多条RF线,一条或多条偏置电压线和数字线,以提供至少10位的组合相位和增益控制信息。在间隔很近的阵列中,这些多条线路的布线会带来困难的拓扑问题以及很高的信号干扰概率。为了克服GaAs MMIC相控阵信号分布问题,提出了一种与GaAs MMIC阵列元件互连到单片集成光学组件的光纤。描述了使用光纤的系统架构注意事项。分析了分别馈送和控制MMIC元件的模拟和数字光学链路。结论是,光纤网络将减轻重量和复杂度,并提高可靠性和性能,但是将需要更高的功率。

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