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Performance and Tolerance Sensitivity Optimization of Highly Aspheric Miniature Camera Lenses

机译:非球面微型相机镜头的性能和公差灵敏度优化

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摘要

Miniature camera lenses are currently manufactured at volumes over 1 billion units per year. In this high volume industry, design methods that improve tolerance to manufacturing errors result in improved yield and significantly reduced cost. Few, if any, design for manufacture methods have been developed for this solution space, which is vastly different than traditional design as it is dominated by highly aspheric optics and compact design forms. In this paper, five design for manufacture methods that were developed for traditional designs are examined for their efficacy in improving the as-built performance of a well-corrected injection molded miniature camera lens. Building on the results of the evaluation, a new design for manufacture method is developed which is highly correlated to the sensitivities associated with this solution space and requires little computational overhead. The new method generates 1.3 times the number of improved solutions and produces a design with 1.7X looser tolerances than the starting point.
机译:目前,微型相机镜头的年产量超过10亿个。在这个大批量行业中,提高对制造错误的容忍度的设计方法可提高产量并显着降低成本。对于这种解决方案空间,很少有制造方法的设计被开发出来,这与传统设计有很大不同,因为它主要由高度非球面光学器件和紧凑的设计形式所主导。在本文中,研究了针对传统设计开发的五种设计制造方法,它们在改善经过良好校正的注模微型相机镜头的实际性能方面的功效。根据评估结果,开发了一种新的制造方法设计,该方法与与此解决方案空间相关的灵敏度高度相关,并且需要很少的计算开销。新方法产生的改进解决方案数量是其1.3倍,并且所产生的设计公差比起点要小1.7倍。

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