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A Study on Automation Program for the Characteristics Improvement of Optical Element Alignment System

机译:光学元件对准系统特性改进的自动化程序研究

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摘要

With the increasing demand for VBNS and VDSL, the development of the kernel parts of optical communication such as PLC(Planar Light Circuit), Coupler, and WDM elements has increased. The optical transmitter and the receiver module need precise and mechanical alignment within a few micrometers to couple the semiconductor device, optical fiber and waveguide. The alignment and the attachment technology are very important in the fabrication of an optical element. Presently, the alignment of the optical element is time consuming, and an effective alignment algorithm has not yet to be developed. In this paper, the optical element alignment of the multi-axis ultra precision stage is studied. Two alignment algorithms applied to the ultra precision multi-axis stage are used, the field search algorithm and the peak search algorithm. The automation program to improve the characteristics of the optical element alignment system is developed by Labview programming and is composed of three tabs, the field search tab, plotting tab and peak search tab. The developed program is applied to an actual system to determine the improvement in alignment performance.
机译:随着对VBNS和VDSL的需求的增加,诸如PLC(平面光电路),耦合器和WDM元件之类的光通信的核心部分的开发也在增加。光发射器和接收器模块需要在几微米内进行精确的机械对准,以耦合半导体器件,光纤和波导。对准和附接技术在光学元件的制造中非常重要。当前,光学元件的对准是耗时的,并且尚未开发有效的对准算法。本文研究了多轴超精密平台的光学元件对准。使用了应用于超精密多轴位移台的两种对准算法,即场搜索算法和峰值搜索算法。通过Labview编程开发了用于改善光学元件对准系统特性的自动化程序,该程序由三个选项卡组成,即字段搜索选项卡,绘图选项卡和峰搜索选项卡。将开发的程序应用于实际系统,以确定对齐性能的改进。

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