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A non-contact surface measurement system for freeform and conformal optics

机译:用于自由形式和共形光学的非接触表面测量系统

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OptiPro Systems has been developing the UltraSurf, a non-contact measuring system using state of the art, precision motion control. The goal is to precisely scan standard optical shapes such as concave and convex spherical surfaces, as well as the complex geometries of aspheric, ogive, and freeform shapes without the limitations associated with other measurement methods. Common optical measurement methods have limitations with surface roughness, slope error, and deviation from best-fit sphere. Optipro designed the UltraSurf to further the manufacturing capabilities of companies generating complex precision optics. The UltraSurf measures with sub-micrometer non-contact point sensors to collect surface information. Various sensors are commercially available from multiple companies, each with their own distinct optical measuring technology. One optical sensor uses white light confocal chromatic imaging to measure individual optical surfaces. Another optical sensor uses low-coherence interferometry with a near infrared laser, and is able to measure the inside, outside, and thickness of optical materials at a single point. The UltraSurf scans the optical sensors over the surface of the part under test, keeping it normal to the surface. The single point measuring method coupled with computer-controlled motion gives the UltraSurf flexibility to measure greatly varied geometries. Ultimately, a point cloud of the measured surface is generated. The cloud can be used to calculate deviation from the desired shape, as well as various surface parameters. Applications, definitions, and measurement results of freeform and conformal shapes using UltraSurf will be presented
机译:OptiPro Systems一直在开发UltraSurf,这是一种使用最先进的精密运动控制技术的非接触式测量系统。目的是精确扫描标准光学形状,例如凹球形和凸球形表面,以及非球面,齿形和自由形形状的复杂几何形状,而不受其他测量方法的限制。常见的光学测量方法在表面粗糙度,倾斜度误差以及与最佳拟合球的偏差方面存在局限性。 Optipro设计了UltraSurf,以提高生产复杂精密光学器件的公司的制造能力。 UltraSurf使用亚微米非接触点传感器进行测量以收集表面信息。可以从多家公司购得各种传感器,每种传感器都有自己独特的光学测量技术。一个光学传感器使用白光共焦彩色成像来测量各个光学表面。另一个光学传感器将低相干干涉技术与近红外激光一起使用,并且能够在单个点上测量光学材料的内部,外部和厚度。 UltraSurf会在被测零件的表面上扫描光学传感器,使其保持垂直于表面。单点测量方法与计算机控制的运动相结合,使UltraSurf可以灵活地测量变化很大的几何形状。最终,生成了被测表面的点云。云可用于计算与所需形状的偏差以及各种表面参数。将介绍使用UltraSurf的自由形和保形形状的应用,定义和测量结果

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