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首页> 外文期刊>Journal of Lightwave Technology >Postweld-shift-induced fiber alignment shifts in laser-welded laser module packages: experiments and simulations
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Postweld-shift-induced fiber alignment shifts in laser-welded laser module packages: experiments and simulations

机译:激光焊接激光模块封装中的焊后位移引起的光纤对准位移:实验和模拟

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摘要

The fiber alignment shifts induced by the postweld shift (PWS) in laser-welded transistor outline (TO)-Can-type laser module packages were studied experimentally and numerically. The PWS-induced fiber alignment shifts were quantitatively determined by four geometrical parameters, namely: 1) the lateral shift (r); 2) the position angle (/spl alpha/); 3) the swing angle (/spl theta/); and 4) the tilt angle (/spl psi/). The measured coupling powers in laser module packages before welding, after welding, and after a welding compensation clearly confirmed with the measured fiber alignment shifts determined by the dominant parameters of the r and /spl alpha/ that the fiber shifts due to the PWS could be realigned back closer to their original optimum position after applying a welding compensation, and, hence, the coupling power loss due to the PWS could be regained. A coupled thermal-elastoplasticity model of finite-element-method (FEM) analysis was performed to evaluate the effects of PWS on fiber alignment shifts in laser module packages. The measured fiber alignment shifts determined by the dominant parameters of the r and /spl alpha/ were in good agreement with the numerical calculation of the FEM analysis. In this study, the combination of the experimental and numerical results have significantly provided a practical design guideline for fabricating reliable laser-welded TO-Can-type laser module packages with a high yield and high performance for use in low-cost lightwave transmission systems.
机译:实验和数值研究了激光焊接晶体管轮廓线(TO)-Can型激光模块封装中由后焊接位移(PWS)引起的光纤对准位移。 PWS引起的光纤排列偏移由四个几何参数定量确定,即:1)横向偏移(r); 2)位置角(/ spl alpha /); 3)摆动角度(/ spl theta /);和4)倾斜角度(/ spl psi /)。激光模块封装在焊接前,焊接后和焊接补偿后测得的耦合功率已明确确认,由r和/ spl alpha /的主要参数确定的测得的光纤对准位移表明,由于PWS引起的光纤位移可能是在施加焊接补偿后,可将其重新调整到更接近其原始最佳位置的位置,因此,可以重新获得由于PWS引起的耦合功率损耗。进行了有限元法(FEM)分析的耦合热弹塑性模型,以评估PWS对激光模块封装中光纤对准偏移的影响。由r和/ spl alpha /的主要参数确定的测得的光纤对准位移与FEM分析的数值计算非常吻合。在这项研究中,实验结果和数值结果的结合为在低成本光波传输系统中使用高产量和高性能的可靠激光焊接TO-Can型激光模块封装提供了实用的设计指南。

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