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A novel assembling technique for fiber collimator arrays using UV-curable adhesives

机译:使用紫外线固化粘合剂的光纤准直器阵列的新型组装技术

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摘要

Packaging and assembly covers almost 80% of the overall cost of any fiber-optic devices. It is thus a demanding issue to lower the cost of fiber-optic alignment and attachment process. This work summarizes the results for the development of automated alignment and attachment processes for the packaging of 1×8 collimator arrays, which are critical for many photonic devices. The emphasis of this work is on the comparison of the use of three different UV-curing adhesives (Adhesives A, B, and C). It is concluded that regardless of curing shrinkage, a proper adhesive joint design can alleviate the optical loss effect of the relative fiber-lens displacement induced during curing and the subsequent cooling processes.
机译:包装和组装几乎涵盖了所有光纤设备总成本的80%。因此,降低光纤对准和固定过程的成本是一个迫切的问题。这项工作总结了用于1×8准直器阵列包装的自动对准和附着过程的开发结果,这对于许多光子设备而言至关重要。这项工作的重点是比较三种不同的紫外线固化粘合剂(粘合剂A,B和C)的使用。结论是,不管固化收缩如何,适当的粘合接头设计都可以减轻固化和随后的冷却过程中引起的相对纤维-透镜位移的光学损失效应。

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