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A Need for Processes that Future Proof the Fiber Optic Installation

机译:需要未来证明光纤安装的过程

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The tenets of IEC 61300-3-35 have influenced and contributed to numerous standards. These include: a.) the importance of cleaning the fiber optic connection, b.) the concept of diameter of debris or contamination, and, c.) the area of the end face to be cleaned, d.) methods of cleaning. As capacity and bandwidth expand, deployments updated, and new technicians trained, a clear understanding of several other tenets of precision cleaning the connection may also be considered. There are many types of debris and contamination. Some are dry Figure-1 and others are fluidic Figure-2. Debris on an end face may also be present in combination Figure-3. The cleaning procedure should strive to be a first time event. A best practice procedure can be identified that does not require multiple techniques and numerous attempts. Dry, fluidic, or combinations of contaminants also have height Figure-4. (12) Commonly used cleaning techniques can create fluidic contamination outside the field of view of most video inspection and software analysis Figure-5. Another technique can create a static field that attracts additional debris Figure-1. There are well established tenets, present in everyday life, that point the direction to properly cleaning the fiber optic connection. Dry wipers, use of solvents and surfactants, and identification of debris or contamination are every-day choices. These are relevant to precision clean a fiber optic connection. Ineffective cleaning fiber optic cleaning procedures may result in debris being mis-characterized as an artifact. Currently, IEC 61300-3-35 is relative to both production line applications (OEM) and field service (OSP) applications. Various standards are based on IEC. In this work the term OEM refers to Original Equipment Manufacturer or a production line environment. The term OSP refers to Outside Plant/Field Service, or the installation and the post production line maintenance environment. This paper is an effort to define and update inspection and cleaning procedures to facilitate existing operations and anticipate future needs.
机译:IEC 61300-3-35的原则受到了许多标准的影响。这些包括:a。)清洁光纤连接的重要性b。)碎屑或污染的直径概念,以及c。)待清洁的端面的面积,d。)清洁方法。随着容量和带宽的扩展,更新的部署和培训的新技术人员,也可以考虑对几个精密清洁的若干特权的理解也可以考虑。有许多类型的碎片和污染。有些是干燥的图-1,其他是流体图-2。端面上的碎屑也可以组合于图3中存在。清洁程序应努力成为第一次事件。可以识别最佳实践程序,这不需要多种技术和多次尝试。污染物的干燥,流体或组合也具有高度图-4。 (12)常用的清洁技术可以在大多数视频检查和软件分析的视野外产生流体污染图-5。另一种技术可以创建一个静态字段,吸引额外的碎片图1。在日常生活中存在良好的宗旨,这指出了正确清洁光纤连接的方向。干刮水器,溶剂和表面活性剂的使用,以及核肉或污染的鉴定是每天选择。这些与精确清洁光纤连接有关。无效的清洁光纤清洁程序可能导致碎屑被称为伪影。目前,IEC 61300-3-35是相对于生产线应用(OEM)和现场服务(OSP)应用程序。各种标准基于IEC。在这项工作中,OEM的术语是指原始设备制造商或生产线环境。术语OSP指的是外部植物/现场服务,或安装和后生产线维护环境。本文是努力定义和更新检验和清洁程序,以促进现有的运营和预测未来需求。

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