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Integration status of the configurable slit unit for GTC-EMIR

机译:GTC-EMIR可配置狭缝单元的集成状态

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The Configurable Slit Unit (CSU) is a key module of EMIR (wide field NIR multi-object spectrograph) which will be one of the key next generation instruments of the Gran Telescopio de Canarias (GTC). The CSU enables a multi-slit configuration, a long slit, or an imaging aperture in the 6’x6’ (340mm x 340mm) field of view. This is realized by 110 sliding bars which can be configured at cryogenic working temperature to create 55 slits with a position accuracy of 6 micron. The CSU incorporates a number of enabling technologies which have been developed, validated and matured as a part of the total development of the CSU. Dedicated actuator drive and position measurement technologies have been successfully developed. Also a selective surface treatment technology, to give detailed features on the same part opposite emissivity performances, has been developed. All these technologies are currently implemented in the realization of the unit. Manufacturing of components for the unit has challenged state of the art production equipment and skills to the limit due to the size, number, accuracy and complexity of the parts and features. Integration and verification of the CSU is advancing. Both mechanics as electronics have been tested at sub-module level. Ahead is the challenge of actual integration of the electronics and software in order to get the mechanical hardware to operate within specification. Control strategies are developed and tuned to guarantee robust operation of the unit in cryogenic working environment. As a final integration step all individual axes are calibrated with an external interferometer measurement system.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:可配置的狭缝单元(CSU)是EMIR(宽场NIR多物体光谱仪)的关键模块,它将是Gran Telescopio de Canarias(GTC)的关键下一代仪器之一。 CSU在6'X6'(340mm x 340mm)视场中,可以实现多缝配置,长狭缝或成像光圈。这是通过110滑块实现的,可以在低温工作温度下配置以产生55个狭缝,位置精度为6微米。 CSU包含许多已开发,验证和成熟的许多启用技术,作为CSU总开发的一部分。已成功开发专用执行器驱动器和位置测量技术。此外,还开发了一种选择性表面处理技术,以提供相同的发射率表现的相同部分的详细特征。所有这些技术目前在实现本机中实施。由于零件和特征的尺寸,数量,准确性和复杂性,该单元的组件制造对艺术生产设备和技能的挑战性,因此零件和特征的复杂性。 CSU的集成和验证正在推进。两种机械师都在子模块水平上进行了测试。提前是电子和软件实际集成的挑战,以便在规范内进行机械硬件运行。制定并调整控制策略,以保证低温工作环境中单位的鲁棒操作。作为最终集成步骤,所有单独的轴都用外部干涉仪测量系统校准。©(2012)照片光学仪表工程师的版权协会(SPIE)。仅供个人使用的摘要下载。

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