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Assembling of fiber collimators for photonic devices

机译:组装用于光子设备的光纤准直器

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摘要

Packaging and assembly covers almost 80% of the overall cost of any fiber-optic device. It is thus a demanding issue to lower the cost of fiber-optic alignment and attachment process. This work presents the development of automated packaging using adhesives, i.e., alignment and attachment of 8-channel fiber collimators for photonic devices. The optimal fiber-lens arrayed coupling and alignment are first determined, and the tolerances for all 3 linear (x, y, z) and 3 angular (pitch, roll and yaw) misalignments are obtained. The fiber and lens attachments using three different UV-curing adhesives of different properties are performed. The entire process of arrayed fiber-lens alignment and attachment is automated using AutoAlign/spl trade/. Optical tests are performed to determine the coupling loss of the assembled collimators as well as the coupling loss induced by the attachment process. The results show that the overall coupling loss of the assembled devices is well below 2 dB, and the assembly yield is found to be extremely high and consistent.
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。这项工作提出了使用粘合剂的自动包装的发展,即用于光子设备的8通道光纤准直器的对准和连接。首先确定最佳的光纤透镜阵列耦合和对准,然后获得所有3个线性(x,y,z)和3个角度(俯仰,滚动和偏航)未对准的公差。使用三种具有不同特性的不同紫外线固化胶粘剂进行光纤和透镜附件的安装。使用AutoAlign / spl trade /可以自动完成阵列排列的光纤透镜对准和附着的整个过程。进行光学测试以确定组装后的准直器的耦合损耗以及由附着过程引起的耦合损耗。结果表明,组装后的器件的总耦合损耗远低于2 dB,并且组装良率极高且一致。

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