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Precision crystal oscillator for interplanetary radio science

机译:用于行星际无线电科学的精密晶体振荡器

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This paper describes a 4.788194-MHz crystal oscillator developed for the radio science experiments aboard the Cassini spacecraft. The oscillator contains a bus voltage converter, stress-compensated resonator oscillator assembly, temperature controller, a single-stage oven, titanium vacuum flask, /spl times/24 frequency multiplier, magnetic shielding, three-axis vibration isolators, and two well-isolated buffer amplifiers. Power consumption is less than 2.8 W at +20/spl deg/C. The oscillator is housed in a 81-in/sup 3/ package and has a mass of 1.78 kg. The design of this oscillator originated with Peter G. Sulzer in the late 1960s and was later translated for space flight by Jerry R. Norton and James M. Cloeren at The Johns Hopkins University Applied Physics Laboratory (JHU/APL). This work at JHU/APL has produced oscillators with outstanding performance for many spacecraft with widely diverse missions. Details of the Cassini radio science mission are presented to delineate the scientific needs that drove the design of the oscillator.
机译:本文介绍了为卡西尼号航天飞机上的无线电科学实验开发的4.788194-MHz晶体振荡器。该振荡器包含总线电压转换器,应力补偿谐振器振荡器组件,温度控制器,单级烘箱,钛真空烧瓶,/ spl times / 24倍频器,磁屏蔽,三轴振动隔离器和两个隔离良好的振荡器缓冲放大器。在+ 20 / spl deg / C时,功耗小于2.8W。振荡器采用81英寸/ sup 3 /封装,质量为1.78千克。这种振荡器的设计起源于1960年代后期的Peter G. Sulzer,后来由约翰·霍普金斯大学应用物理实验室(JHU / APL)的Jerry R. Norton和James M. Cloeren进行了太空飞行翻译。 JHU / APL的这项工作为许多任务广泛的航天器生产了性能卓越的振荡器。介绍了卡西尼号无线电科学任务的详细信息,以描述推动振荡器设计的科学需求。

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