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    • 1. 发明授权
    • Process for producing an optical fiber coupler
    • 光纤耦合器的制造方法
    • US5309536A
    • 1994-05-03
    • US899783
    • 1992-06-17
    • Hiroshi SuganumaTomoyuki HattoriHiroaki TakimotoYoshiharu OkawaHiroshi YokotaKazuhiko Arimoto
    • Hiroshi SuganumaTomoyuki HattoriHiroaki TakimotoYoshiharu OkawaHiroshi YokotaKazuhiko Arimoto
    • G02B6/28G02B6/26C03C25/02
    • G02B6/2856G02B6/2835
    • The first process for producing an optical fiber coupler includes a first step wherein at least one of the optical fibers to be used is stripped of the coating, a second step in which the bare portion of that optical fiber is heated for a predetermined time to diffuse the dopants, a third step wherein the other optical fibers which have not been heat-treated are stripped of their coating, a fourth step in which the bare portions of all the optical fibers are heated as they are brought into intimate contact, thereby forming a unitary portion, and a fifth step wherein the unitary portion is drawn via heating to form the coupling portion of an optical fiber coupler. The second process for producing an optical fiber coupler includes stripping the coating from at least one optical fiber, fixing the fiber so as to impart an axial stress thereto and then heating the bare portion of the stripped optical fiber thereby thinning the diameter of the heated portion, and then proceeding in the same manner as described with respect to the third through fifth steps of the first embodiment of the present invention. The processes according to the present invention enable a wide-band optical fiber coupler to be easily produced without using optical fibers of different structures but using optical fibers of identical structures.
    • 制造光纤耦合器的第一种方法包括:第一步骤,其中使用的光纤中的至少一种被剥离涂层;第二步骤,将该光纤的裸露部分加热预定时间以扩散 掺杂剂,第三步骤,其中未经热处理的其它光纤被剥离,其第四步是将所有光纤的裸露部分紧密接触加热,从而形成 以及第五步骤,其中整体部分通过加热被拉伸以形成光纤耦合器的耦合部分。 制造光纤耦合器的第二工艺包括从至少一根光纤剥离涂层,固定光纤以向其施加轴向应力,然后加热剥离的光纤的裸露部分,从而使加热部分的直径变薄 ,然后以与关于本发明的第一实施例的第三至第五步骤所述相同的方式进行。 根据本发明的方法使得能够容易地制造宽带光纤耦合器,而不使用不同结构的光纤,而是使用相同结构的光纤。
    • 8. 发明授权
    • Fiber coupler manufacturing apparatus having an automatic breaking test
device
    • 具有自动断裂测试装置的光纤耦合器制造装置
    • US5306323A
    • 1994-04-26
    • US907023
    • 1992-07-01
    • Hiroaki TakimotoHiroshi SuganumaKazuhiko Arimoto
    • Hiroaki TakimotoHiroshi SuganumaKazuhiko Arimoto
    • G01M11/08G02B6/255G02B6/28C03B37/023
    • G01M11/088G02B6/2551G02B6/2835
    • The present invention provides a fiber coupler manufacturing apparatus comprising a pair of fiber holding portions and a fiber clamp disposed on each of the fiber holding portions for holding at least two optical fibers. A weight and pulley system is arranged wherein a first weight is coupled to each of the fiber holding portions to pull the fiber holding portions away from each other to apply tension to the optical fibers. A heating unit is disposed between the fiber holding portions and proximate to the optical fibers to heat the optical fibers. A second weight is coupled to either the fiber holding portions or the first weight and rests on a movable platform. As the movable platform descends in a vertical direction, the second weight applies additional force to the fiber holding portions and thus applies additional tension to the optical fibers.
    • 本发明提供了一种光纤耦合器制造装置,其包括一对光纤保持部和设置在每个光纤保持部上的用于保持至少两根光纤的光纤夹。 布置了重量和滑轮系统,其中第一重物联接到每个纤维保持部分以将纤维保持部分彼此远离以向光纤施加张力。 加热单元设置在光纤保持部分之间并且靠近光纤以加热光纤。 第二重物耦合到纤维保持部分或第一重物,并且搁置在可移动平台上。 当可移动平台在垂直方向上下降时,第二重量对纤维保持部分施加额外的力,因此对光纤施加额外的张力。