标题: | 光耦合器产品品质之发展 The Product Quality Development of Fiber Coupler |
作者: | 廖德铭 Dirac Liao 苏朝墩 C. T. Su 工业工程与管理学系 |
关键字: | 光纤耦合器;可靠度;田口方法;多重反应问题;类神经网路;基因法则演算法;指数满意度函数;fiber coupler;reliability;Taguchi method;multi-response problem;neural network;genetic algorithm;exponential desirability function |
公开日期: | 2002 |
摘要: | 摘 要 全球光通信传输所面临的困难是各传输网所需的基础模组与元件的规格不统一。在众多光被动元件中之光耦合器制造,因牵涉到光学、机械、电子、热融等物理的控制,尚无法自动化,量产所必须面临的管理与技术整合问题颇多,其中产品品质的发展是一项重要的挑战课题。本文探讨并介绍光耦合器产品品质之发展,建议藉由产品设计验证与制程参数最佳化两项产品品质发展工具,确保光耦合器的产品品质与生产良率改善。本文所研究的结果可提供类似光通信元件厂,欲建立具品质与成本竞争优势的光耦合器产品的参考。 本文所建议的产品品质发展工具包含:产品研发可靠度设计验证,制程参数最佳化。前者确保产品的可靠度能符合市场的规范要求;后者深入探讨关键烧拉制程参数最佳化,应用(A)田口方法,(B)类神经网路与指数满意度函数分析与(C)类神经网路、指数满意度函数与基因法则演算法之整合分析等三项常用的方法来提升制程良率,所建立的参数最佳化程序可取代传统的尝试错误方法,迅速满足光通信市场上大量客制化规格需求的制程参数。总结来说,第三种整合方法最适宜用来改善烧拉制程参数最佳化。 最后,本文以新竹科学园区某光通信被动元件公司为例,说明在光通信元件产业中应用本文产品品质之发展的成效。初期以可靠度设计验证来提升其产品本身光特性与品质的优越性,顺利完成各项严厉的环境试验挑战,不过产品烧拉制程良率仅能达成65%左右。接着,进行第二阶段烧拉制程的参数最佳化,使产品的制程良率由65%改善至平均99%以上,且特优等级产品占90%以上。本文光耦合器产品品质之发展,不仅仅获得上述成果,对客制化产品的评估反应时间也从七至十天缩短为一至二天内完成,各种结果均显现出令人满意的结论。 ABSTRACT The worldwide difficulties in fiber optical transmission industry these years are coming from various developing techniques and inconsistent specifications to the basic devices and components. Among numerous passive devices, the fused fiber coupler manufacturing is most difficult to be fully automated due to its physical interactions among optics, mechanics, electrics, and heat fusion. The product quality development of fiber coupler is a critical and challenging task. This study illustrates the progress of fiber coupler quality development and recommends two tools, reliability design verification and fusion process optimization approach, to ensure the product and process quality. The success of the implementation could be provided to those manufacturers as a useful reference to establish the coupler product with competitive advantages. The two tools for ensuring fiber coupler quality are reliability design verification and fusion process optimization approach. The former provides the conformity of the product by meeting the requirements in optical industry; the latter provides the competitive cost performance by significant improvement in production yield rate. This dissertation also deeply illustrates the procedures to optimize fiber coupler fusion parameters with three different approaches, i.e. (a) Taguchi methods, (b) neural network and exponential desirability function analysis and (c) integrated neural network, exponential desirability function and genetic algorithm analysis. This study demonstrates it could easily take place of traditional trial-and-error approach, to promptly fulfill the need of frequent specification changes from market. In summary, the outcomes from the third hybrid approach are superior to the first two approaches and it is also very suitable to solve the problems for parameter optimization in fusion process. Finally, this product quality development of fiber coupler is successfully demonstrated on a commercial passive optical communication company in Hsinchu Science-based Industrial Park, Taiwan. The first illustration demonstrates product reliability by design verification. The result is encouraging that low optical performance variations has been observed under severe environmental testing as specified in optical industry. But it is unsatisfied that only 65% fusion process yielding ratio was achieved. The second illustration demonstrates process quality by parameters optimization. The recommended hybrid approach, (c), demonstrates that the exercised company not only obtain considerable yielding ratio improvement in fiber coupler fusion process from 65% to 99% but also gain supreme product performance and quality. In addition to above creditable advantages, the cycle time of specification evaluation for customized product has been reduced from 7~10 days to 1~2 days. All above evidences conclude to satisfactory results. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT910031065 http://hdl.handle.net/11536/69825 |
显示于类别: | Thesis |