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    • 4. 发明授权
    • Methods of preparing strength member pulling members in fiber optic cable furcations and related components, assemblies, and fiber optic cables
    • 在光缆分支及相关组件,组件和光纤电缆中制备强度构件牵引构件的方法
    • US08630523B2
    • 2014-01-14
    • US13181785
    • 2011-07-13
    • Matthew Wade SmithWesley Allan Yates
    • Matthew Wade SmithWesley Allan Yates
    • G02B6/00G02B6/44
    • G02B6/4465
    • Methods of preparing strength member pulling members in fiber optic cable furcations and related components, assemblies, and fiber optic cables are disclosed. To allow fiber optic cables to be pulled without damaging optical fiber(s) disposed therein, a strength member pulling loop is formed from a strength member disposed inside the fiber optic cable. A pulling cord can be disposed in the strength member pulling loop to pull the fiber optic cable. The pulling load applied to the pulling cord is translated to the strength member pulling loop, which is translated to the strength member disposed inside the fiber optic cable. In this manner, when the fiber optic cable is pulled, the pulling load is translated to the strength member disposed inside the fiber optic cable to prevent or avoid damaging the optical fiber(s) disposed inside the fiber optic cable.
    • 公开了在光纤分路器及相关组件,组件和光纤电缆中制备强度构件牵引构件的方法。 为了允许光纤电缆被拉动而不损坏设置在其中的光纤,强度构件拉环由设置在光纤电缆内部的强度构件形成。 牵引绳可以设置在强度构件拉环中以拉动光缆。 施加到牵引绳的牵引负载被转移到强度构件牵引环,该拉动环被转换成设置在光纤电缆内部的强度构件。 以这种方式,当拉动光纤电缆时,牵引负载被转换成设置在光纤电缆内部的强度部件,以防止或避免损坏设置在光纤电缆内的光纤。
    • 7. 发明申请
    • FURCATING FIBER OPTIC CABLES WITHOUT DIRECT COUPLING OF OPTICAL FIBERS TO STRENGTH MEMBERS, AND RELATED ASSEMBLIES AND METHODS
    • 对光纤无法直接耦合到强度成员的纤维光纤线,以及相关组件和方法
    • US20140241676A1
    • 2014-08-28
    • US13792870
    • 2013-03-11
    • Matthew Wade Smith
    • Matthew Wade Smith
    • G02B6/44
    • G02B6/4476G02B6/4477G02B6/4479
    • Furcating fiber optic cables without direct coupling of optical fibers to strength members are disclosed. Related methods and assemblies are also disclosed. The furcation includes shrink tube(s) securing optical fiber(s) to their fiber sub-unit jacket(s). The shrink tube(s) is secured inside a cable jacket of the fiber optic cable to secure fiber sub-unit(s) and their optical fiber(s) as part of the furcation. The strength member(s) of the fiber optic cable is also secured to the cable jacket as part of the furcation. The shrink tube(s) prevents direct coupling of the optical fiber(s) to the strength member(s) in the furcation. By not directly coupling the optical fiber(s) to the strength member(s), cable strain can be directed to the cable jacket and the fiber sub-unit jacket(s). The shrink tube(s) can also prevent or reduce micro-bubbles from forming around the optical fiber(s) in the furcation which may cause attenuation from optical fiber micro-bending.
    • 公开了将光纤直接耦合到强度构件的折叠光纤电缆。 还公开了相关的方法和组件。 分叉包括将光纤固定到其纤维子单元护套的收缩管。 收缩管固定在光纤电缆的电缆护套内,以固定光纤子单元及其光纤作为分叉的一部分。 光纤电缆的强度构件也作为分叉的一部分固定到电缆护套。 收缩管防止光纤与分叉处的强度构件的直接耦合。 通过不将光纤直接耦合到强度构件,电缆应变可以被引导到电缆护套和光纤子单元护套。 收缩管还可以防止或减少在分叉处的光纤周围形成的微小气泡,这可能导致光纤微弯曲的衰减。