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    • 1. 发明申请
    • Multimode optical fiber coupler and fabrication method
    • 多模光纤耦合器及其制造方法
    • US20050244105A1
    • 2005-11-03
    • US11079685
    • 2005-03-12
    • Qinglin WangYanyan MaJianhua WangLixuan Xu
    • Qinglin WangYanyan MaJianhua WangLixuan Xu
    • G02B6/26G02B6/28
    • G02B6/2835
    • The present invention relates to a surface interaction type multimode optical fiber coupler. A representative embodiment of the present invention comprises a plurality of optical fibers with at least one having an expanded core section. Sections of the optical fibers including at least a portion of the expanded core sections are fused together forming a fused section. At least one of the optical fibers is suitable for multimode operations. According to an embodiment of the present invention, a method of fabrication an optical fiber coupler comprises: providing a plurality of optical fibers with at least one having an expanded core section; and maintaining sections of the optical fibers including at least a portion of the expanded core sections in contact and simultaneously heating at least a portion of the sections that are in contact to form a fused section until a predetermined end condition is reached.
    • 本发明涉及一种表面相互作用型多模光纤耦合器。 本发明的代表性实施例包括具有至少一个具有扩展的芯部分的多个光纤。 包括至少一部分发泡芯部分的光纤的部分熔合在一起,形成熔融部分。 至少一根光纤适用于多模操作。 根据本发明的实施例,一种制造光纤耦合器的方法包括:提供具有至少一个具有扩展的芯部分的多个光纤; 并且保持包括至少一部分所述膨胀的芯部分的光纤的部分接触,并且同时加热至少部分接触的部分以形成熔融部分,直到达到预定的结束条件。
    • 2. 发明授权
    • Multimode optical fiber coupler and fabrication method
    • 多模光纤耦合器及其制造方法
    • US07248767B2
    • 2007-07-24
    • US11079685
    • 2005-03-12
    • Qinglin WangYanyan MaJianhua WangLixuan Xu
    • Qinglin WangYanyan MaJianhua WangLixuan Xu
    • G02B6/26
    • G02B6/2835
    • The present invention relates to a surface interaction type multimode optical fiber coupler. A representative embodiment of the present invention comprises a plurality of optical fibers with at least one having an expanded core section. Sections of the optical fibers including at least a portion of the expanded core sections are fused together forming a fused section. At least one of the optical fibers is suitable for multimode operations. According to an embodiment of the present invention, a method of fabrication an optical fiber coupler comprises: providing a plurality of optical fibers with at least one having an expanded core section; and maintaining sections of the optical fibers including at least a portion of the expanded core sections in contact and simultaneously heating at least a portion of the sections that are in contact to form a fused section until a predetermined end condition is reached.
    • 本发明涉及一种表面相互作用型多模光纤耦合器。 本发明的代表性实施例包括具有至少一个具有扩展的芯部分的多个光纤。 包括至少一部分发泡芯部分的光纤的部分熔合在一起,形成熔融部分。 至少一根光纤适用于多模操作。 根据本发明的实施例,一种制造光纤耦合器的方法包括:提供具有至少一个具有扩展的芯部分的多个光纤; 并且保持包括至少一部分所述膨胀的芯部分的光纤的部分接触,并且同时加热至少部分接触的部分以形成熔融部分,直到达到预定的结束条件。
    • 3. 发明申请
    • Multimode optical fiber coupler and fabrication method
    • 多模光纤耦合器及其制造方法
    • US20050201677A1
    • 2005-09-15
    • US11079687
    • 2005-03-12
    • Qinglin WangYanyan MaJianhua Wang
    • Qinglin WangYanyan MaJianhua Wang
    • G02B6/26G02B6/42
    • G02B6/2835
    • The present invention relates to a surface interaction type multimode fused optical fiber coupler. A representative embodiment of the present invention comprises a plurality of optical fibers with a section of each of the optical fibers fused together forming a fused section. At least one of the optical fibers is suitable for multimode operations. At least one of the optical fibers comprises a thermally expanded core section. At least a portion of the thermally expanded core section is in the fused section. An example method of fabricating an optical fiber coupler comprises maintaining a section of each of the optical fibers in contact with at least a section of one other optical fiber and simultaneously heating at least a portion of the sections that are in contact to thermally expand the core of at least one of the optical fibers and to form a fused section.
    • 本发明涉及一种表面相互作用型多模融合光纤耦合器。 本发明的代表性实施例包括多个光纤,其中每个光纤的一部分熔合在一起形成熔化部分。 至少一根光纤适用于多模操作。 光纤中的至少一个包括热膨胀芯部。 热膨胀芯部分的至少一部分在熔融部分中。 制造光纤耦合器的示例性方法包括保持每个光纤的一部分与另一个光纤的至少一个部分接触,同时加热至少部分接触的部分以热膨胀芯部 的至少一个光纤并且形成熔融部分。
    • 4. 发明授权
    • Optical module package
    • 光模块封装
    • US07018113B1
    • 2006-03-28
    • US10718355
    • 2003-11-18
    • Jianhua WangQinglin WangYanyan MaHongtao HouAlex Chun-Lai Hsu
    • Jianhua WangQinglin WangYanyan MaHongtao HouAlex Chun-Lai Hsu
    • G02B6/36
    • G02B6/2804G02B6/0218G02B6/2856G02B6/36G02B6/3887
    • In at least some embodiments, an optical module package includes a housing, a plurality of optical fiber cables connected to the housing, and optical fiber connectors terminating each cable. Each optical fiber cable may include an optical fiber, two concentric flexible protective tubes enclosing the fiber, and aramid (e.g. Kevlar®) fibers disposed between the protective tubes. Each protective tube is capable of longitudinally sliding relative to the optical fiber along at least part of the cable, to release stresses resulting from differential thermal expansion of the optical fiber and the protective tubes. Each optical fiber may be held fixed relative to the housing and distal connectors, and one or both of the ends of the protective tubes may be free to move. The protective tubes may also be held fixed relative to the housing, and the optical fiber(s) allowed to move within the housing.
    • 在至少一些实施例中,光学模块封装包括外壳,连接到外壳的多条光纤电缆以及端接每条电缆的光纤连接器。 每个光纤电缆可以包括光纤,包围纤维的两个同心的柔性保护管和布置在保护管之间的芳族聚酰胺(例如Kevlar)纤维。 每个保护管能够沿着电缆的至少一部分相对于光纤纵向滑动,以释放由于光纤和保护管的不同热膨胀而产生的应力。 每个光纤可以相对于壳体和远端连接器保持固定,并且保护管的一端或两端可以自由移动。 保护管也可以相对于壳体保持固定,并且允许光纤在壳体内移动。
    • 5. 发明申请
    • Multimode optical fiber coupler and fabrication method
    • 多模光纤耦合器及其制造方法
    • US20050201676A1
    • 2005-09-15
    • US11079686
    • 2005-03-12
    • Qinglin WangYanyan MaJianhua Wang
    • Qinglin WangYanyan MaJianhua Wang
    • G02B6/26G02B6/42
    • G02B6/2835G02B6/02023
    • The present invention relates to a surface interaction type multimode fused optical fiber coupler. A representative embodiment of the present invention comprises a plurality of optical fibers and an over-fused fused section formed by fusing a section from each of the optical fibers together. At least one of the optical fibers is suitable for multimode operations. The average cross-sectional area of the fused section is at least substantially seventy percent of the sum of the cross-sectional areas of all the optical fibers. A method of fabricating an optical fiber coupler according to an example embodiment of the present invention comprises maintaining a section of each of the optical fibers in contact with at least a section of one other optical fiber and simultaneously heating at least a portion of the sections that are in contact to form a fused section until a predetermined end condition is reached.
    • 本发明涉及一种表面相互作用型多模融合光纤耦合器。 本发明的代表性实施例包括多个光纤和通过将来自每个光纤的部分融合在一起而形成的过熔融熔融部分。 至少一根光纤适用于多模操作。 熔融部分的平均横截面面积至少是所有光纤的横截面面积之和的百分之七十。 根据本发明的示例性实施例的制造光纤耦合器的方法包括:保持每根光纤的一部分与另一根光纤的至少一部分接触,同时加热部分的至少一部分, 接触形成熔融部分直到达到预定的终止条件。
    • 6. 发明授权
    • Multimode optical fiber coupler and fabrication method
    • 多模光纤耦合器及其制造方法
    • US07200304B2
    • 2007-04-03
    • US11079683
    • 2005-03-12
    • Qinglin WangYanyan MaJianhua Wang
    • Qinglin WangYanyan MaJianhua Wang
    • G02B6/26
    • G02B6/2835
    • The present invention relates to a surface interaction type multimode optical fiber coupler. A representative embodiment of the present invention comprises a plurality of optical fibers with each having an expanded core section. The expanded core sections of the optical fibers are fused together forming a fused section. Each of the optical fibers is optically coupled with at least one other optical fiber primarily through surface interaction in the fused section. The optical fibers are suitable for multimode operations. According to an embodiment of the present invention, a method of fabrication an optical fiber coupler comprises: providing a plurality of optical fibers with each having an expanded core section; and maintaining at least a portion of the expanded core sections in contact and simultaneously heating at least a portion of the expanded core sections that are in contact to form a fused section until a predetermined end condition is reached.
    • 本发明涉及一种表面相互作用型多模光纤耦合器。 本发明的代表性实施例包括多个具有扩展芯部的光纤。 光纤的扩展的芯部分熔合在一起形成熔融部分。 每个光纤主要通过熔融部分中的表面相互作用与至少一个其它光纤光学耦合。 光纤适用于多模操作。 根据本发明的实施例,制造光纤耦合器的方法包括:提供多个光纤,每个光纤具有扩展的芯部分; 并且将至少一部分所述膨胀的芯部分保持在接触状态,同时加热至少部分所述接触的所述膨胀的芯部分以形成熔融部分,直到达到预定的最终状态。
    • 7. 发明申请
    • Multimode optical fiber coupler and fabrication method
    • 多模光纤耦合器及其制造方法
    • US20050201687A1
    • 2005-09-15
    • US11079683
    • 2005-03-12
    • Qinglin WangYanyan MaJianhua Wang
    • Qinglin WangYanyan MaJianhua Wang
    • G02B6/26
    • G02B6/2835
    • The present invention relates to a surface interaction type multimode optical fiber coupler. A representative embodiment of the present invention comprises a plurality of optical fibers with each having an expanded core section. The expanded core sections of the optical fibers are fused together forming a fused section. Each of the optical fibers is optically coupled with at least one other optical fiber primarily through surface interaction in the fused section. The optical fibers are suitable for multimode operations. According to an embodiment of the present invention, a method of fabrication an optical fiber coupler comprises: providing a plurality of optical fibers with each having an expanded core section; and maintaining at least a portion of the expanded core sections in contact and simultaneously heating at least a portion of the expanded core sections that are in contact to form a fused section until a predetermined end condition is reached.
    • 本发明涉及一种表面相互作用型多模光纤耦合器。 本发明的代表性实施例包括多个具有扩展芯部的光纤。 光纤的扩展的芯部分熔合在一起形成熔融部分。 每个光纤主要通过熔融部分中的表面相互作用与至少一个其它光纤光学耦合。 光纤适用于多模操作。 根据本发明的实施例,制造光纤耦合器的方法包括:提供多个光纤,每个光纤具有扩展的芯部分; 并且将至少一部分所述膨胀的芯部分保持在接触状态,同时加热至少部分所述接触的所述膨胀的芯部分以形成熔融部分,直到达到预定的最终状态。
    • 8. 发明申请
    • Optical filter assembly and method
    • 滤光片组件及方法
    • US20050163423A1
    • 2005-07-28
    • US11041688
    • 2005-01-23
    • Jianhua WangLixuan Xu
    • Jianhua WangLixuan Xu
    • G02B6/34G02B6/32
    • G02B6/2937G02B6/29389
    • According to an embodiment of the present invention an optical filter assembly suitable for use in, for example, an optical fiber system, comprises a focusing lens, a first holder holding the focusing lens; and an optical filter having a reflective surface attaching to the first holder optically coupling with the focusing lens. A method for fabricating an embodiment comprises positioning and securing the focusing lens and the optical filter on a first holder at predetermined positions. For setting the embodiment within a predetermined center wavelength range measured under a measurement condition, the method for fabricating the embodiment further comprises selecting an optical filter from a group of one or more optical filters of different center wavelengths and a focusing lens from a group of one or more focusing lenses of different focal length such that the selection will result in an embodiment that satisfies the center wavelength range requirement.
    • 根据本发明的实施例,适用于例如光纤系统​​的光学滤波器组件包括聚焦透镜,保持聚焦透镜的第一保持器; 以及具有附接到与聚焦透镜光学耦合的第一保持器的反射表面的滤光器。 用于制造实施例的方法包括将聚焦透镜和滤光器定位并固定在预定位置上的第一保持器上。 为了将实施例设置在在测量条件下测量的预定中心波长范围内,本实施例的制造方法进一步包括从一组不同中心波长的滤光器和一组聚焦透镜中选择一个滤光器 或更多个不同焦距的聚焦透镜,使得选择将导致满足中心波长范围要求的实施例。
    • 9. 发明申请
    • Optical filter assembly fabrication method
    • 滤光片组装制作方法
    • US20060245691A1
    • 2006-11-02
    • US11451655
    • 2006-06-13
    • Jianhua WangLixuan Xu
    • Jianhua WangLixuan Xu
    • G02B6/32
    • G02B6/2937G02B6/29389
    • According to an embodiment of the present invention an optical filter assembly, which is suitable for use in, for example an optical fiber system, comprises a focusing lens, an optical filter, and a first holder holding the focusing lens and the optical filter in position. A method for fabricating this optical filter assembly comprises: selecting a combination of focusing lens, optical filter, and the relative position and orientation of the focusing lens and the optical filter according to the desirable center wavelength characteristic of the optical filter assembly; and position and securing the focusing lens and the optical filter onto the first holder so that the focusing lens and the optical filter are substantially in the select relative position and orientation.
    • 根据本发明的实施例,适用于例如光纤系统​​的滤光器组件包括聚焦透镜,滤光器以及将聚焦透镜和滤光器保持在适当位置的第一夹持器 。 一种制造该滤光器组件的方法包括:根据所述滤光器组件的期望的中心波长特性来选择聚焦透镜,滤光器以及聚焦透镜和滤光器的相对位置和取向的组合; 并且将聚焦透镜和滤光器定位并固定到第一保持器上,使得聚焦透镜和滤光器基本上处于选择的相对位置和取向。