Calibration machine for linear scales

G. Hermann, M. Báthor, Z. Bánki
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Abstract

The aim of the project, described in this paper, is to retrofit a Zeiss length measuring machine for the calibration of linear scales, with a pitch distance of a few micrometers. The retrofitting consists of optics, equipped with a CCD camera, for capturing the line sizes and distances, an appropriate illumination system, a motion system carrying the scale and providing linear motion at constant speed. The paper starts with discussing the various definitions of the pitch distance. From these definitions simple algorithms, to determine the pitch distance, are derived. The main point is to minimize the effect of non-linearity and diffraction, by using appropriate optics and illumination, hereby improving measurement accuracy. The carriage carrying the scale is driven by ultrasonic piezomotor providing nanometer resolution. The displacement is measured by an HP laser interferometer. For higher resolution the CCD camera system can be replaced by a near field microscope.
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线性刻度校准机
该项目的目的,在本文中描述,是改造蔡司长度测量机校准线性尺度,与几微米的间距距离。改造包括光学装置,配备CCD相机,用于捕捉线的大小和距离,适当的照明系统,一个运动系统携带标尺,并提供匀速线性运动。本文首先讨论了音高距离的各种定义。根据这些定义,推导了确定螺距的简单算法。重点是通过使用适当的光学和照明,尽量减少非线性和衍射的影响,从而提高测量精度。承载秤的小车由纳米级分辨率的超声波压电马达驱动。位移由高压激光干涉仪测量。为了获得更高的分辨率,可以用近场显微镜代替CCD相机系统。
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