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Fabrication and test of high-performance wide-angle lens assemblies for ocean color monitor

机译:用于海洋彩色监视器高性能广角镜头组件的制造和测试

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REOSC has supplied Indian Space Research Organization in 1998 and 1999 with two sets of eight lens assemblies to be used for the Ocean Color Monitor mission. First set will be launched on the Indian earth observation satellite IRS P4 during 1999. All lenses have a 20mm focal length and work with a very wide field of view angle. Each set of lenses covers the visible range using eight narrow spectral bands, one for each lens, distributed from 412nm to 865nm. The eight lenses of one set are matched for perfect registration: focal length better than $POM 0.01 percent, image format better than $POM 2 $mu@m, distortion better than $POM 0.45 $mu@m for each point of the field. In order to achieve these very tight requirements, REOSC has developed a specific spheroparabolic lens and particularly the process allowing to polish the parabolic surface with a very repetitive quality. A method has been settled to achieve the matching specifications of the lens assemblies by iterative correction of the optical design during the testing activities. The paper discusses the main points of these topics, reports this optical fabrication and testing challenge and presents the final obtained performances.
机译:Reosc于1998年和1999年提供印度空间研究组织,两套八个镜头组件可用于海洋颜色监控任务。在1999年,第一套将在印度地球观测卫星IRS P4上发射。所有镜头都有20毫米的焦距,并使用非常宽的视野角度。每组镜片使用八个窄光谱带,一个用于每个镜头的可见范围,从412nm分布到865nm。一个集合的八个镜头符合完美的注册:焦距优于$ POM 0.01%,图像格式好于$ POM 2 $ MU @ M,比$ 0.45 $ MU @ M为字段。为了实现这些非常紧张的要求,Reosc开发了一种特定的球蛋白镜片,特别是允许用非常重复的质量抛光抛物面的过程。通过在测试活动期间通过光学设计的迭代校正来实现一种方法以实现镜头组件的匹配规范。本文讨论了这些主题的要点,报道了这种光学制造和测试挑战并提出了最终的表现。

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