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Optical coupling efficiency studies of passively aligned CWDM optical modules

机译:无源对准CWDM光模块的光耦合效率研究

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摘要

A compact low-cost passively aligned optical sub-assembly (OSA) with four different optical transmission channels is fabricated for CWDM transceiver module. A silicon optical bench (SiOB) with V-groove, and U-groove was fabricated with dimensional accuracy of +/- 1 mu m. A 125 mu m diameter single mode optical fiber (SMF) and a 250 x 250 x 100 mu m(3) laser diode (LD) was passively aligned on the SiOB using adhesive and solder preform respectively. Process related coupling losses due to the shifting of fiber during the adhesive attachment and cure process is demonstrated. Analytical studies were carried out to find the effect of parameters such as dimensions of laser diode, SiOB and attachment process on the coupling losses of the module. It was found that dimensional uncertainty of SiOB and the attachment process parameters are the crucial parameters for the coupling loss in passive alignment assembly of CWDM transceiver. An optical coupling loss of 25% was observed due to the shift of fiber during the attachment process and it was in good agreement with the analytical calculated results. (c) 2004 Elsevier B.V. All rights reserved.
机译:为CWDM收发器模块制造了具有四个不同光学传输通道的紧凑型低成本无源对准光学子组件(OSA)。制作了具有V型槽和U型槽的硅光学平台(SiOB),尺寸精度为+/- 1μm。分别使用粘合剂和焊料预成型件将直径为125μm的单模光纤(SMF)和250 x 250 x 100μm(3)激光二极管(LD)被动对准到SiOB上。证明了由于在粘合剂附着和固化过程中纤维移位而引起的与过程相关的耦合损耗。进行分析研究以发现诸如激光二极管的尺寸,SiOB和附着工艺等参数对模块耦合损耗的影响。研究发现,在CWDM收发器的无源对准组件中,SiOB的尺寸不确定性和附着工艺参数是导致耦合损耗的关键参数。由于在连接过程中光纤的移动,观察到光耦合损耗为25%,这与分析计算结果非常吻合。 (c)2004 Elsevier B.V.保留所有权利。

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