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    • 6. 发明授权
    • Coated optical fiber and coated optical fiber with connector
    • 涂层光纤和带有连接器的涂层光纤
    • US07542644B2
    • 2009-06-02
    • US10523994
    • 2004-02-19
    • Kazunori TanakaKaoru OkunoTomoyuki HattoriKiyoaki MoriuchiHiroshi Hayami
    • Kazunori TanakaKaoru OkunoTomoyuki HattoriKiyoaki MoriuchiHiroshi Hayami
    • G02B6/44
    • C03C25/1065G02B6/02395G02B6/3838
    • An object of the present invention is to provide a buffered optical fiber, which excels in environmental characteristics and mechanical characteristics and has high flame retardancy and excels in optical transmission characteristics, and to provide a buffered optical fiber, which is terminated with a connector and uses this buffered optical fiber. The buffered optical fiber of the invention is provided with a second coating layer on an outer peripheral surface of an optical fiber produced by providing a first coating layer on an outer peripheral surface of a glass fiber. A second resin composition constituting the second coating layer comprises 100 to 250 weight parts of metal hydroxide and 10 to 100 weight parts of a nitrogen-based flame retardant material per 100 weight parts of the base polymer. Further, the second resin composition does not contain halogenated materials.
    • 本发明的目的是提供一种缓冲光纤,其环境特性和机械特性优异,并且具有高阻燃性和优异的光传输特性,并且提供缓冲光纤,其被连接器端接,并且使用 这种缓冲光纤。 本发明的缓冲光纤在玻璃纤维的外周面上设置第一被覆层而制造的光纤的外周面上设置有第二被覆层。 构成第二涂层的第二树脂组合物每100重量份的基础聚合物包含100至250重量份的金属氢氧化物和10至100重量份的基于氮的阻燃材料。 此外,第二树脂组合物不含有卤化物质。
    • 7. 发明授权
    • Optical fiber tape core
    • 光纤胶带芯
    • US07116872B2
    • 2006-10-03
    • US10515767
    • 2003-05-28
    • Kaoru OkunoTomoyuki Hattori
    • Kaoru OkunoTomoyuki Hattori
    • G02B6/44G02B6/036
    • G02B6/4403G02B6/02004G02B6/02266G02B6/02271G02B6/02395G02B6/0281G02B6/03611G02B6/3636G02B6/4495
    • In an optical fiber ribbon 1 according to the present invention, four optical fibers 10, 20, 30 and 40 are arranged in parallel to each other in a plane, a part of the periphery of these four optical fibers is covered with a ribbon matrix 51, but no rest thereof is covered with the ribbon matrix. First areas covered with the ribbon matrix 51 and second areas uncovered with the ribbon matrix alternate with each other along the longitudinal direction thereof. Alternatively, the optical fiber ribbon 1 is covered with the ribbon matrix over its entire length. In the glass section of each optical fibers, the mode field diameter defined by the definition of Petermann-I at a wavelength of 1.55 μm is 8 μm or less, and the cable cutoff wavelength is 1.26 μm or less.
    • 在根据本发明的光纤带1中,四个光纤10,20,30和40在平面中彼此平行地布置,这四个光纤的周边的一部分被带状矩阵51覆盖 ,但是没有其余部分被带状矩阵覆盖。 用带状矩阵51覆盖的第一区域和未被覆盖的带状矩阵的第二区域沿其纵向相互交替。 或者,光纤带1在其整个长度上被带状矩阵覆盖。 在每个光纤的玻璃部分中,由波特1.55μm的Petermann-I定义的模场直径为8μm或更小,电缆截止波长为1.26μm或更小。
    • 8. 发明授权
    • Coated optical fiber
    • 涂层光纤
    • US06810188B1
    • 2004-10-26
    • US10111768
    • 2002-04-29
    • Atsushi SuzukiTomoyuki HattoriKazunori TanakaToshifumi Hosoya
    • Atsushi SuzukiTomoyuki HattoriKazunori TanakaToshifumi Hosoya
    • G02B602
    • G02B6/02395G02B6/443
    • A coated optical fiber is shown in which, by coating a glass optical fiber with a primary coating having a storage modulus E′ of 0.01 kg/mm2 to 2.0 kg/mm2 at 25° and 110 Hz and an adhesion of 10 g/cm to 200 g/cm to the glass optical fiber, delamination at the interface between the glass optical fiber and the primary coating, and voids are prevented during and after the production, for example, on the line during drawing and winding. An optical fiber ribbon of the present invention, which is formed by collectively coating the coated optical fibers each including a primary coating with a storage modulus E′ of 0.01 kg/mm2 to 0.5 kg/mm2 and an adhesion of 10 g/cm to 100 g/m, has a high delamination resistance and a good collective strippability of coatings. In an optical fiber unit of the present invention which is formed by collectively coating the coated optical fibers having a storage modulus E′ of 0.01 kg/mm2 to 0.5 kg/mm2 and an adhesion of 100 g/cm to 200 g/cm, delamination and voids will not occur.
    • 示出了涂覆光纤,其中通过在25°和110Hz下涂覆具有0.01kg / mm 2至2.0kg / mm 2的储能模量E'的初级涂层的玻璃光纤和粘附 对于玻璃光纤为10g / cm至200g / cm,玻璃光纤与初级涂层之间的界面处的分层,并且在制造期间和之后例如在拉丝和卷绕期间在线上防止空隙 。 本发明的光纤带,其通过共同涂覆涂布的光纤而形成,每个涂覆的光纤包括具有0.01kg / mm 2至0.5kg / mm 2的储能模量E'的初级涂层和 10g / cm至100g / m,具有高的耐分层性和良好的涂层集体剥离性。 在本发明的光纤单元中,通过将具有0.01kg / mm 2至0.5kg / mm 2的储能模量E'和100g / cm 2的粘合力的涂覆光纤共同涂覆 200g / cm,不会发生分层和空隙。