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    • 6. 发明授权
    • Optical adaptor for mounting to a receptacle to optically couple connectorized optical cables
    • 光学适配器,用于安装到一个容器,用于光学连接准备用于连接光缆
    • EP3029501B1
    • 2017-03-15
    • EP14195836.3
    • 2014-12-02
    • CCS Technology, Inc.
    • Wimmer, MichaelMueller-Schlomka, Gordon
    • G02B6/38
    • G02B6/3825G02B6/387G02B6/3874G02B6/3891G02B6/3893G02B6/3894G02B6/3897
    • An optical adaptor (2000) for mounting to a receptacle (3000) to optically couple connectorized optical cables (1, 2) comprises an optical interface (100) to optically couple a first connectorized optical cable (1) terminated by a first optical connector (10) and a second connectorized optical cable (2) terminated by a second optical connector (20). The optical adaptor (2000) further comprises a mounting element (200) being configured to insert the optical interface (100) and being mountable to the receptacle (3000). The mounting element (200) is secured to the receptacle (3000), when the first optical connector (10) is mounted to the mounting element (200) in a first state (S1), and the mounting element (200) is released from the receptacle (3000), when the first optical connector (10) is mounted to the mounting element (200) in a second state (S2) allowing to pull the optical adaptor (2000) out of the receptacle (3000).
    • (光学适配器(2000),用于安装到一个插座(3000)以光学地耦合连接器化光纤电缆(1,2)通过一个第一光连接器端接光纤接口(100),以光学地耦合的第一连接器化光纤电缆(1)包括 10)和由第二光学连接器(20终止的第二连接器化光纤电缆(2))。 光学适配器(2000)还包括一个安装元件(200)被配置为插入所述光纤接口(100)和可安装到所述接收器(3000)。 安装元件(200)被固定到所述容器(3000),当所述第一光学连接器(10)安装到在第一状态(S1),所述安装构件(200)和安装元件(200)被从释放 容器(3000),当所述第一光学连接器(10)安装到在第二状态下允许拉光学适配器(2000)从容器(3000)的安装构件(200)(S2)。
    • 10. 发明公开
    • METHODS OF FORMING A FIBER COUPLING DEVICE AND FIBER COUPLING DEVICE
    • VERFAHREN ZUR HERSTELLUNG EINER FASERKOPPLUNGSVORRICHTUNG UND FASERKOPPLUNGSVORRICHTUNG
    • EP3114517A2
    • 2017-01-11
    • EP15709815.3
    • 2015-03-04
    • CCS Technology, Inc.
    • DE JONG, MichaelFORTUSINI, Davide DomenicoMATISS, AndreasSPREEMANN, MartinTEN HAVE, Eric Stephan
    • G02B6/42
    • G02B6/4214B23K2203/42B23K2203/50B29C64/135B29C64/35B29K2105/0058B29L2031/36B33Y10/00B33Y40/00B33Y80/00G02B6/138G02B6/4221G02B6/4239G02B6/424G02B6/4243G02B6/425G02B6/4257
    • The application provides a method of forming a fiber coupling device comprising at least one optoelectronic and/or photonic element (50) and a fiber coupling alignment structure (5) that is optically transmissive, - wherein the method at least comprises: a) applying a polymerizable material (2) to the substrate surface (16) of the substrate (15), b) selectively polymerizing, using a method of 3D lithography, a region of the polymerizable material (2) so as to convert the region of the polymerizable material (2) into a polymer material (4), thereby forming at least one fiber coupling alignment structure (5) that comprises: - a support interface surface (6) at which the polymer material (4) is in direct contact with the substrate surface (16) of the substrate (15), - a fiber support region (7) adapted to support at least one optical fiber in an aligned position for optical coupling to the substrate (15), and - a reflection surface (8) for reflecting light propagating between an optical fiber and the substrate (15), and c) cleaning the substrate (15) and the polymer material (4) from remaining non-polymerized polymerizable material (2), thereby exposing the at least one fiber coupling alignment structure (5) of the fiber coupling device (1).
    • 该应用提供了形成光纤耦合器件的方法,该光纤耦合器件包括至少一个光电子和/或光子元件(50)和光学透射的光纤耦合对准结构(5),其中该方法至少包括:a) 可聚合材料(2)到基板(15)的基板表面(16),b)使用3D光刻的方法选择性聚合可聚合材料(2)的区域,以便将可聚合材料的区域 (2)转化成聚合物材料(4),从而形成至少一个纤维耦合对准结构(5),该结构包括: - 支撑界面(6),聚合物材料(4)与基底表面直接接触 (15)的光纤耦合器(16); - 光纤支撑区域(7),其适于将至少一个光纤支撑在对准位置以与所述衬底(15)进行光学耦合;以及 - 反射表面(8) 在光学f之间传播的光 以及c)从剩余的未聚合的可聚合材料(2)清洁所述基底(15)和所述聚合物材料(4),从而暴露所述至少一个纤维结合对准结构(5) 光纤耦合器(1)。