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Tolerance design of optical micro-bench by statistical design of experiment

机译:基于实验统计设计的光学微工作台公差设计

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Design rule of optical micro-bench and tolerance of positional error of components assembled onto the bench are investigated in case of simple linear connections of incoming and outgoing optical fibers with and without ball lenses. Since there are many error variables with wide range of values that affects the optical coupling, the efficient array with reduced number of combinations is generated using statistical design of experiment and coupling efficiencies are calculated. From 3d B point, the tolerance of each position error is determined. For the fiber-to-fiber connection with ball lenses, the longitudinal and lateral positional errors have the strong interaction with each other to the coupling efficiency and thus should be be limited simultaneously.
机译:在带有和不带有球形透镜的输入和输出光纤的简单线性连接的情况下,研究了光学微型工作台的设计规则和组装到工作台上的组件的位置误差的容差。由于存在许多影响光学耦合的误差变量,其值的范围很广,因此使用实验的统计设计可生成组合数量减少的有效阵列,并计算出耦合效率。从3d B点,确定每个位置误差的公差。对于与球形透镜的光纤到光纤的连接,纵向和横向位置误差在耦合效率上具有很强的相互影响,因此应同时加以限制。

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