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Optomechanical tolerancing and lens alignment using elastomeric lens mount to efficiently meet optical requirements

机译:使用弹性透镜安装座实现光机械公差和透镜对准,可有效满足光学要求

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Lens positioning accuracy and manufacturing cost are two main concerns for optomechanical engineers looking for solutions to reduce costs while meeting stringent optical and environmental requirements. Minimizing optical component positioning errors generally translates into significant cost increases. To maximize the precision-to-cost ratio, there are significant advantages in having both an accurate optomechanical tolerance calculation method and an effective technique to mount and align lenses. This paper presents a tool that has been developed at INO to easily perform complex optomechanical statistical tolerancing using Monte Carlo simulation to reduce manufacturing and alignment costs. This tolerancing method provides a more realistic prediction of optical component errors compared to the classical worst case and root sum square calculations. In addition, precision alignment using elastomeric lens mounting is presented. Thermal stability and often overlooked factors for effective alignments are discussed. Results of tests performed on real optical assemblies are presented for tolerancing, thermal stability and alignment performance. The use of these methods can considerably reduce cost while efficiently ensuring compliance with requirements.
机译:镜片定位精度和制造成本是光机械工程师主要关注的两个问题,他们在寻求解决方案以在满足严格的光学和环境要求的同时降低成本。最小化光学组件定位误差通常会转化为成本的显着增加。为了使精度成本比最大化,在拥有精确的光学机械公差计算方法和安装和对准透镜的有效技术方面都具有显着的优势。本文介绍了由INO开发的一种工具,该工具可以使用Monte Carlo仿真轻松执行复杂的光机统计公差,从而降低制造和校准成本。与经典的最坏情况和均方根计算相比,这种容差方法提供了对光学组件错误的更实际的预测。另外,提出了使用弹性透镜安装的精确对准。讨论了热稳定性和有效对准时经常被忽略的因素。给出了在实际光学组件上执行的测试结果的公差,热稳定性和对准性能。这些方法的使用可以大大降低成本,同时有效地确保符合要求。

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