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Modular removable precision mechanism for alignment of an FUV spatial heterodyne interferometer

机译:用于FUV空间外差干涉仪对准的模块化可移动精密机构

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Abstract: Spaceflight optical instruments have two conflicting requirements; they need to be both rigid and lightweight. In addition, for interferometric far ultraviolet spectrometers, the requirements for precision positioning are more severe than for conventional spectrometers. To meet the challenge of lightweight optical instruments, a modular adjustment mechanism was developed to position two orthogonal axes of a universal three-axis gimbal support system with a positioning accuracy on the order of 10 arc sec. The mechanism was designed as a self- contained assembly which can be removed after final alignment of a spacebound optical instrument to reduce its in-flight mass. To demonstrate the concept, a number of these assemblies were made and mounted on two of the positioning axes of a far ultraviolet spatial heterodyne interferometer. A shaft clamp was used on each positioning axis to retain the adjusted position. This paper describes the design of the mechanism and presents optical test results. !2
机译:摘要:航天光学仪器有两个相互矛盾的要求:它们必须既坚固又轻巧。另外,对于干涉式远紫外光谱仪,精确定位的要求比常规光谱仪更为严格。为了应对轻型光学仪器的挑战,开发了一种模块化调节机构,用于定位通用三轴万向支架系统的两个正交轴,其定位精度约为10弧秒。该机构设计为自包含组件,可以在最终对准空间受限的光学仪器后将其卸下,以减少飞行中的质量。为了证明这一概念,制造了许多这样的组件并将其安装在远紫外空间外差干涉仪的两个定位轴上。每个定位轴上都使用了一个轴夹,以保持调整后的位置。本文介绍了该机制的设计并提供了光学测试结果。 !2

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