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    • 52. 发明授权
    • Optical fiber cutter storage case
    • 光纤切割机储物盒
    • US08960428B2
    • 2015-02-24
    • US13698456
    • 2011-06-08
    • Masahiro HasegawaKiyoshi NakazawaToshihiko Homma
    • Masahiro HasegawaKiyoshi NakazawaToshihiko Homma
    • A45C11/26G02B6/25
    • G02B6/25
    • A case for accommodating a fiber cleaver is capable of preventing the fiber cleaver from being damaged. The case accommodating a fiber cleaver includes a base and a lid such that the lid is openably and closably provided for the base in an integrated fashion. The base of the case has therein a positioning space for the cleaver on its inner bottom surface, the positioning space positioning a main body included in a cleaver unit. Latches protruding inwardly in the base of the case are arranged on positioning walls defining part of the positioning space for the cleaver. The latches have a function of retaining a support of the main body of the cleaver in a direction along the height of the base of the case. The latch further has a function of retaining a slider included in the cleaver unit in a sliding direction.
    • 用于容纳光纤切割器的壳体能够防止光纤切断器被损坏。 容纳纤维切割器的壳体包括基座和盖子,使得盖子以一体的方式可开启和关闭地设置在底座上。 壳体的底部具有用于切割器在其内底表面上的定位空间,定位空间定位包括在切割器单元中的主体。 在壳体的底部向内突出的闩锁布置在定义壁上,该定位壁限定切割器的定位空间的一部分。 闩锁具有在沿着壳体的基部的高度的方向上保持切割器主体的支撑的功能。 闩锁还具有沿滑动方向保持包括在切割器单元中的滑块的功能。
    • 54. 发明授权
    • Light diffusing fibers with integrated mode shaping lenses
    • 具有集成模式成型透镜的光漫射光纤
    • US08953914B2
    • 2015-02-10
    • US13924972
    • 2013-06-24
    • Corning Incorporated
    • Michael Lucien Genier
    • G02B6/32
    • G02B6/32G02B6/001G02B6/02G02B6/0229G02B6/02295G02B6/03627G02B6/03644G02B6/25
    • A method including the steps of providing a light-diffusing optical fiber (12a) having a glass core (20), a cladding (40) surrounding the core (20), and a plurality of nano-sized structures in the form of voids (32) situated within said core (20) or at a core-cladding boundary; cleaving the light-diffusing fiber (12a), thereby forming a cleaved end face (66); and applying energy to one or more of 1) the cleaved end face (66) and 2) the light-diffusing fiber (12b) along a portion of the length thereof adjacent the cleaved end face (66), the amount of energy being sufficient to collapse and seal the voids (32) exposed at the cleaved end face (66), leaving a sealed cleaved end face (68). A lens may then be attached to the sealed cleaved end face (68), or the sealed cleaved end face (68) may be softened sufficiently to induce formation of a lensing surface such as a convex lensing surface (60) on the sealed end face (68).
    • 一种方法,包括以下步骤:提供具有玻璃芯(20)的光扩散光纤(12a),围绕所述芯(20)的包层(40)以及空隙形式的多个纳米尺寸结构 32),位于所述芯(20)内或芯 - 包层边界处; 切断光扩散纤维(12a),从而形成裂开的端面(66)。 并且沿着其相邻于所述劈开端面(66)的长度的一部分向1个所述劈开端面(66)和2)所述光漫射纤维(12b)中的一个或多个施加能量,所述能量足够 塌缩并密封在劈开的端面(66)处暴露的空隙(32),留下密封的切割端面(68)。 然后可以将透镜附接到密封的切割端面(68),或者密封的切割端面(68)可以被充分软化以引起在密封端面上形成诸如凸透镜表面(60)的透镜表面 (68)。
    • 55. 发明申请
    • OPTICAL FIBER CONNECTOR
    • 光纤连接器
    • US20150016781A1
    • 2015-01-15
    • US14078539
    • 2013-11-13
    • Hon Hai Precision Industry Co., Ltd.
    • I-THUN LIN
    • G02B6/38
    • G02B6/3838G02B6/25G02B6/3826G02B6/3839G02B6/3855G02B6/3885
    • An optical fiber connector includes a first surface, a second surface parallel with the first surface, a third surface, and a fourth surface parallel with the third surface. A groove and a fiber hole are defined in the optical fiber connector. The groove includes a bottom surface and a side surface connected with the bottom surface. A distance between the bottom surface and the bottom of the fiber hole is b. The optical fiber connector follows the relationship: d≦b≦α/tgθ, a is equal to the length of the optical fiber extending out of the fourth surface, d is equal to the diameter of an optical fiber for being received in the fiber hole, and θ is equal to a half of an angle of a laser which is used to cut the optical fiber.
    • 光纤连接器包括第一表面,与第一表面平行的第二表面,第三表面和与第三表面平行的第四表面。 在光纤连接器中限定有槽和光纤孔。 凹槽包括底表面和与底表面连接的侧表面。 纤维孔的底面和底部之间的距离为b。 光纤连接器遵循以下关系:d≦̸ b≦̸α/ tg&thetas; a等于从第四表面延伸出来的光纤的长度,d等于被接收在光纤中的光纤的直径 洞和洞穴; 等于用于切割光纤的激光的角度的一半。