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Inductive sensors based on embedded coil technology for nanometric inter-segment position sensing of the E-ELT

机译:基于嵌入式线圈技术的电感式传感器,用于E-ELT的纳米级节间位置感测

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The primary mirror of the E-ELT consists of a mosaic of 798 hexagonal mirror segments whose relative positions will be measured by 4524 so-called edge sensors. The main properties of these three axes edge sensors are nanometric precision, high linearity, low sensitivity to temperature and humidity fluctuations as well as high reliability. This paper presents the outcome of a development carried out by Micro-Epsilon in the framework of prototype activities launched by the European Southern Observatory several years ago. The performance of inductive sensors based on Embedded Coil Technology are presented as well as results obtained on representative operational conditions.
机译:E-ELT的主镜由798个六边形镜段的马赛克组成,其相对位置将由4524个所谓的边缘传感器测量。这三轴边缘传感器的主要特性是纳米精度,高线性度,对温度和湿度波动的灵敏度低以及高可靠性。本文介绍了Micro-Epsilon在几年前欧洲南方天文台发起的原型活动框架内进行的开发成果。介绍了基于嵌入式线圈技术的电感式传感器的性能,以及在代表性工作条件下获得的结果。

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