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    • 2. 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。
    • 4. 发明授权
    • Split type optical fiber tape core
    • 分体式光纤胶带芯
    • US06898356B2
    • 2005-05-24
    • US10432168
    • 2002-03-14
    • Toshihisa SatoTomoyuki HattoriToshifumi Hosoya
    • Toshihisa SatoTomoyuki HattoriToshifumi Hosoya
    • C03C25/10G02B6/44
    • C03C25/1065G02B6/4404G02B6/4482
    • The separable optical fiber ribbon in accordance with the present invention is an optical fiber ribbon in which a plurality of colored optical fibers arranged in parallel are coated with a collective coating resin so as to be integrated into an optical fiber ribbon, and a plurality of such optical fiber ribbons are arranged in parallel and coated with a binding resin; wherein the binding resin is obtained by curing a UV-curable resin composition satisfying the condition represented by the following expression (1): 1.0×10−4≦(W·N/100MW)≦4.0×10−4  (1) where W is the compounding ratio [wt %] of a urethane acrylate compound contained in the resin composition, N is the number of urethane groups in one molecule of the urethane acrylate compound, and MW is the average molecular weight of the urethane acrylate compound.
    • 根据本发明的可分离的光纤带是其中平行布置的多个着色光纤被涂覆有聚合涂层树脂以便被整合到光纤带中的多个光纤带,并且多个这样的光纤带 光纤带平行布置并涂覆有粘合树脂; 其中所述粘合树脂通过固化满足以下表达式(1)表示的条件的UV可固化树脂组合物获得:<?in-line-formula description =“In-line Formulas”end =“lead”≥> 1.0×10 =(WN / 100MW)<= 4.0×10 -4(1)<?in-line-formula description =“ 其中W是树脂组合物中所含的氨基甲酸酯丙烯酸酯化合物的配混比[wt%],N是氨基甲酸酯丙烯酸酯化合物的一个分子中的氨基甲酸酯基数,以及 M W是氨基甲酸酯丙烯酸酯化合物的平均分子量。
    • 8. 发明授权
    • Dispersion compensation unit and method of producing the same
    • 色散补偿单元及其制造方法
    • US06785455B2
    • 2004-08-31
    • US10221345
    • 2002-09-11
    • Takashi FujiiToshifumi Hosoya
    • Takashi FujiiToshifumi Hosoya
    • G02B602
    • G02B6/29377G02B6/02261G02B6/03627G02B6/3628G02B6/4457
    • A dispersion compensating fiber 1 is placed in the form of a coil or bundle within a housing 2, and a filling material 3 having a viscosity of 0.01 Pa·s to 0.6 Pa·s at normal temperature before curing is filled in a space around the dispersion compensating fiber 1 within the housing 2 and then the filling material is cured. As a result, a change of transmission loss caused by a temperature variation due to heat cycles of the dispersion compensator can be reduced. A difference in transmission loss can be further reduced by employing a method of placing the dispersion compensating fiber in the housing in the form of a loosely wound bundle and then pouring the filling material, or a method of applying vibration to the housing, in which the dispersion compensating fiber is placed, when pouring the filling material.
    • 色散补偿光纤1以壳体2内的线圈或束的形式放置,并且在固化之前的常温下粘度为0.01Pa.s至0.6Pa.s的填充材料3填充在围绕 色散补偿光纤1在壳体2内,然后填充材料被固化。 结果,可以降低由于色散补偿器的热循环引起的温度变化引起的传输损耗的变化。 通过采用将散布补偿光纤放置在松散缠绕的束的形式并随后将填充材料倒入的方法或将振动施加到壳体的方法,可以进一步降低传输损耗的差异,其中 当注入填充材料时,放置色散补偿光纤。