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    • 3. 发明授权
    • Optical fiber cable for use in harsh environments
    • 用于恶劣环境的光纤电缆
    • US06690866B2
    • 2004-02-10
    • US10139006
    • 2002-05-03
    • Jeffrey A. BonjaDouglas A. NortonChristopher J. ChestnutRobert A. Rubino
    • Jeffrey A. BonjaDouglas A. NortonChristopher J. ChestnutRobert A. Rubino
    • G02B644
    • E21B47/123E21B17/00G02B6/4427G02B6/4484G02B6/4488G02B6/4492
    • A fiber optic cable includes a core and a surrounding protective layer. The core includes an inner tube having one or more optical fibers contained therein, and the surrounding protective layer includes an outer tube received over the inner tube, and a layer of buffer material positioned between the outer tube and the inner tube. The buffer material maintains the inner tube generally centrally located within the outer tube and providing a mechanical link between the inner tube and the outer tube to prevent relative movement therebetween. The inner tube may be coated with a low hydrogen permeability material to minimize the entrance of hydrogen into the inner tube. The low hydrogen permeability material may be coated with a protective layer of hard, scratch resistant material to protect the integrity of the low hydrogen permeability material. The area in the inner tube not occupied by the optical fibers may be filled with a filler material, the filler material being selected to have a sufficient viscosity to resist the shear forces applied to it as a result of the weight of the optical fibers within the tube while allowing movement of the optical fibers within the tube during spooling, deployment and handling of the cable to thereby prevent damage and microbending of the optical fibers. The filling material may be impregnated with a hydrogen absorbing/scavenging material to remove any excess hydrogen within the inner tube. The optical fibers have an excess length with respect to the inner tube, and the cable may include an outer jacket of a high temperature, protective material to protect the cable during handling and installation.
    • 光纤电缆包括芯和周围的保护层。 该芯包括内管中包含一根或多根光纤的内管,周围的保护层包括容纳在内管上的外管和位于外管与内管之间的缓冲材料层。 缓冲材料将内管大体中心地保持在外管内,并且在内管和外管之间提供机械连接,以防止其间的相对运动。 内管可以涂覆有低透氢性材料,以使氢气进入内管最小化。 低透氢性材料可以涂覆有硬质耐划伤材料的保护层,以保护低渗透性材料的完整性。 未被光纤占据的内管中的区域可以填充填充材料,填充材料被选择为具有足够的粘度以抵抗施加到其上的剪切力,这是由于光纤内的重量 同时允许光纤在卷绕,展开和处理电缆期间光纤在管内移动,从而防止光纤的损坏和微弯曲。 填充材料可以用吸氢/清除材料浸渍以除去内管中的任何过量的氢。 光纤相对于内管具有过长的长度,并且电缆可以包括高温保护材料的外护套,以在处理和安装期间保护电缆。
    • 4. 发明授权
    • Multi-fiber, in-line attenuator module and assembly for optoelectronic networks
    • 用于光电子网络的多光纤,在线衰减器模块和组件
    • US06669375B1
    • 2003-12-30
    • US10219452
    • 2002-08-15
    • Jeffrey A. BonjaMark E. FillionAndre A. Vankov
    • Jeffrey A. BonjaMark E. FillionAndre A. Vankov
    • G02B638
    • G02B6/266
    • A multi-fiber in-line attenuator module configured for insertion in the fiber optic pathway of an optoelectronic network to provide a predetermined value of attenuation for all propagating modes in the pathway includes first and second multi-channel interface members each having a mating face, an interconnect face, and alignment holes and n-optical channels formed therethrough, a multi-fiber ribbon cable terminating in the interconnect face of each multi-channel interface member with the optical fibers thereof disposed in the n-optical channels, alignment pins disposed in the alignment holes of the first and second multi-channel interface members so that the n-optical channels of the first and second multi-channel interface members are optically aligned, a mating clip for retaining the first and second multi-channel interface members in mated combination, and an NDF (neutral density filter) film adhered to at least one of the mating faces of the first and second the multi-channel interface members, the adhered NDF film having a predetermined composition and thickness to provide the predetermined value of attenuation for the multi-fiber in-line attenuator module.
    • 多光纤在线衰减器模块被配置为插入在光电子网络的光纤通路中以为该路径中的所有传播模式提供预定衰减值包括第一和第二多通道接口部件,每个具有配合面, 互连面,以及通过其形成的对准孔和n光通道,多纤维带状电缆终止于每个多通道接口构件的互连面,其光纤布置在n个光通道中,对准销设置在 所述第一和第二多通道接口构件的对准孔使得所述第一和第二多通道接口构件的所述n个光学通道被光学对准,用于将所述第一和第二多通道界面构件保持在配合位置的配合夹具 组合和粘附到第一和第二多通道相互作用的至少一个配合面上的NDF(中性密度过滤器)膜 面部构件,具有预定组成和厚度的粘附的NDF膜以提供多光纤在线衰减器模块的预定衰减值。
    • 5. 发明授权
    • Method and assembly for mounting at least one optical fiber
    • 用于安装至少一根光纤的方法和组件
    • US06928225B2
    • 2005-08-09
    • US10114972
    • 2002-04-03
    • Jeffrey A. Bonja
    • Jeffrey A. Bonja
    • G02B6/36G02B6/42
    • G02B6/3616G02B6/3644G02B6/4219G02B6/422
    • An assembly for mounting at least one optical fiber including a mounting frame defining a passageway therethrough. A fiber assembly plate generally defines a plane generally perpendicular to an axis of the at least one optical fiber and has a perimeter. The fiber assembly plate receives the at least one optical fiber. A mounting mechanism is disposed at a fixed location on the mounting frame and supports the fiber assembly plate over the at least one passageway. The mounting mechanism allows generally planar thermal expansion and/or contraction of the fiber assembly plate. A method of positioning at least one optical fiber in optical communication with an optical component using an athermal mount is also disclosed herein.
    • 一种用于安装至少一根光纤的组件,包括限定通过其中的通道的安装框架。 光纤组件板通常限定大致垂直于至少一根光纤的轴线的平面并具有周长。 光纤组件板接收至少一根光纤。 安装机构设置在安装框架上的固定位置处,并且将纤维组件板支撑在至少一个通道上。 安装机构允许纤维组件板的大体上平面的热膨胀和/或收缩。 本文还公开了使用无热基座将至少一根光纤定位成与光学部件进行光通信的方法。
    • 8. 发明授权
    • Optical fiber cable having fiber in metal tube core with outer protective layer
    • 光纤在金属管芯中具有外保护层
    • US06404961B1
    • 2002-06-11
    • US09121468
    • 1998-07-23
    • Jeffrey A. BonjaDouglas A. NortonChristopher J. ChestnutRobert A. Rubino
    • Jeffrey A. BonjaDouglas A. NortonChristopher J. ChestnutRobert A. Rubino
    • G02B644
    • E21B47/123E21B17/00G02B6/4427G02B6/4484G02B6/4488G02B6/4492
    • A fiber optic cable includes a core and a surrounding protective layer. The core includes an inner tube having one or more optical fibers contained therein, and the surrounding protective layer includes an outer tube received over the inner tube, and a layer of buffer material positioned between the outer tube and the inner tube. The buffer material maintains the inner tube generally centrally located within the outer tube and providing a mechanical link between the inner tube and the outer tube to prevent relative movement therebetween. The inner tube may be coated with a low hydrogen permeability material to minimize the entrance of hydrogen into the inner tube. The low hydrogen permeability material may be coated with a protective layer of hard, scratch resistant material to protect the integrity of the low hydrogen permeability material. The area in the inner tube not occupied by the optical fibers may be filled with a filler material, the filler material being selected to have a sufficient viscosity to resist the shear forces applied to it as a result of the weight of the optical fibers within the tube while allowing movement of the optical fibers within the tube during spooling, deployment and handling of the cable to thereby prevent damage and microbending of the optical fibers. The filling material may be impregnated with a hydrogen absorbing/scavenging material to remove any excess hydrogen within the inner tube. The optical fibers have an excess length with respect to the inner tube, and the cable may include an outer jacket of a high temperature, protective material to protect the cable during handling and installation.
    • 光纤电缆包括芯和周围的保护层。 该芯包括内管中包含一根或多根光纤的内管,周围的保护层包括容纳在内管上的外管和位于外管与内管之间的缓冲材料层。 缓冲材料将内管大体中心地保持在外管内,并且在内管和外管之间提供机械连接,以防止其间的相对运动。 内管可以涂覆有低透氢性材料,以使氢气进入内管最小化。 低透氢性材料可以涂覆有硬质耐划伤材料的保护层,以保护低渗透性材料的完整性。 未被光纤占据的内管中的区域可以填充填充材料,填充材料被选择为具有足够的粘度以抵抗施加到其上的剪切力,这是由于光纤内的重量 同时允许光纤在卷绕,展开和处理电缆期间光纤在管内移动,从而防止光纤的损坏和微弯曲。 填充材料可以用吸氢/清除材料浸渍以除去内管中的任何过量的氢。 光纤相对于内管具有过长的长度,并且电缆可以包括高温保护材料的外护套,以在处理和安装期间保护电缆。