A design method of elliptical window optical system is proposed and it is based on the fixed aspheric corrector.
提出了一种基于非球面固定校正元件的椭球形窗口光学系统设计方法。
Finally, the aspheric lens system was processed by single point diamond turning techniques and its shaping ability was tested by the optical analyzing software.
最后,利用金刚石单点车削法加工该非球面光学系统,并利用光束分析软件对系统的整形效果进行了测试。
Aspherics are applied more and more widely in optical design as the use of aspheric lens simplifies the optical system.
非球面镜的使用能大大简化光学系统,因此被越来越多地应用到各种光学设计中。
This paper presents a method of producing high gradient precise optical aspheric surface by CCOS technology. We have designed an auto surfacing CAM system with 5 degrees of freedom.
本文提出了采用计算机控制光学表面成型(CCOS)技术用于高陡度精密光学非球面成型的一种方法,并阐述了CCOS的工艺流程,设计了相应的CAM系统。
This paper presents a method of producing high gradient precise optical aspheric surface by CCOS technology. We have designed an auto surfacing CAM system with 5 degrees of freedom.
本文提出了采用计算机控制光学表面成型(CCOS)技术用于高陡度精密光学非球面成型的一种方法,并阐述了CCOS的工艺流程,设计了相应的CAM系统。
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