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    • 1. 发明申请
    • MID-BOARD OPTICAL MODULE
    • 中板光学模块
    • WO2018044295A1
    • 2018-03-08
    • PCT/US2016/049710
    • 2016-08-31
    • CCS TECHNOLOGY, INC.
    • KUBIAK, Tomasz MateuszTOSIK, Grzegorz
    • G02B6/42G02B6/44
    • G02B6/4285G02B6/4278G02B6/4452
    • A mid-board optical module (1) comprises a plurality of optical adapters (10) to respectively receive an optical connector, a plurality of optical engines (20), a plurality of optical fibers (30) and a casing (40). A respective one of the optical adapters (10) is arranged in a respective one of first openings (41) of the casing (40). A respective one of the optical engines (20) terminates a respective one of the optical fibers (30) that is guided through a respective one of the second openings (42) of the casing (40). The mid-board optical module (1) may be installed in an opto-electronic assembly (2) without any process with the cabling. The optical engines may be secured in securing elements (50) of the module (1) during transportation and connected to connectors of the opto-electronic assembly after mounting the module (1) in the opto-electronic assembly (2).
    • 中板光学模块(1)包括多个光学适配器(10)以分别接收光学连接器,多个光学引擎(20),多个光纤(30) 和壳体(40)。 相应的一个光学适配器(10)布置在壳体(40)的相应一个第一开口(41)中。 光学引擎(20)中的相应一个端接相应的一根光纤(30),所述相应的一根光纤(30)被引导穿过壳体(40)的相应一个第二开口(42)。 中板光模块(1)可以安装在光电组件(2)中,而不需要布线的任何处理。 光学引擎可以在运输期间固定在模块(1)的固定元件(50)中并且在将模块(1)安装在光电组件(2)中之后连接到光电组件的连接器。
    • 6. 发明申请
    • HYBRID FIBER OPTIC CABLE HAVING MULTI-MODE AND SINGLE-MODE OPTICAL FIBERS, AND RELATED COMPONENTS, SYSTEMS, AND METHODS
    • 具有多模和单模光纤的混合光纤电缆及相关部件,系统和方法
    • WO2016044565A2
    • 2016-03-24
    • PCT/US2015050643
    • 2015-09-17
    • CCS TECHNOLOGY INC
    • KESKIN MUSTAFA
    • G02B6/38
    • G02B6/3885G02B6/3897G02B6/441G02B6/4453
    • A hybrid fiber optic cable comprising a plurality of optical fibers including a plurality of single-mode optical fibers and a plurality of multi-mode optical fibers is disclosed. One advantage of this arrangement is that transition back and forth between single-mode and multi-mode connectivity, or simultaneous use of both types of connectivity, is enabled through installation of a single cable. In one example, eight (8) multi-mode fibers are included, corresponding to fiber positions 1-4 and 9-12 of a conventional BASE-8 parallel optical connection scheme. In addition, four (4) single-mode optical fibers may be disposed in the otherwise unused fiber positions 5-8, thereby enabling simultaneous connectivity with a pair of single-mode duplex connections, or other single-mode connectivity. In this manner, a single multi-fiber connection can support both parallel optical multi-mode connectivity and serial single-mode connectivity simultaneously, thereby allowing easy transition between the two connectivity solutions as requirements change over time.
    • 公开了一种混合光缆,包括包括多个单模光纤和多个多模光纤的多个光纤。 这种安排的一个优点是可以通过安装单个电缆来实现单模式和多模式连接之间来回转换,或同时使用两种类型的连接。 在一个示例中,包括八(8)个多模光纤,对应于常规BASE-8并行光连接方案的光纤位置1-4和9-12。 此外,四(4)个单模光纤可以被布置在另外未使用的光纤位置5-8中,从而使得能够与一对单模双工连接或其它单模连接同时连接。 以这种方式,单个多光纤连接可以同时支持并行光学多模式连接和串行单模连接,从而允许随着时间的变化随着两个连接解决方​​案之间的轻松过渡。
    • 10. 发明申请
    • A METHOD TO MANUFACTURE AN OPTOELECTRONIC ASSEMBLY
    • 制造光电组件的方法
    • WO2014120586A1
    • 2014-08-07
    • PCT/US2014/013100
    • 2014-01-27
    • CCS TECHNOLOGY, INC.CONTAG, Karsten
    • CONTAG, Karsten
    • G02B6/42
    • G02B6/4204G02B6/4214G02B6/423G02B6/4236G02B6/4246
    • A method to manufacture an optoelectronic assembly comprises a step of structuring a first wafer to provide a plurality of optical components to change a beam of light in the optoelectronic assembly with a respective alignment structure being formed to couple the respective optical component to an optical connector. A second wafer is provided with a plurality of optoelectronic components. The first and second wafer are stacked on top of each other, aligned and bonded together. The bonded first and second wafers are separated into a plurality of optoelectronic modules. The optical connector is manufactured by structuring a third wafer so that the third wafer is provided with a plurality of optical connectors. The third wafer is separated into a plurality of the optical connectors. The optical fiber is coupled to one of the optical connectors and then is coupled to one of the separated optoelectronic modules.
    • 一种制造光电组件的方法包括:构造第一晶片以提供多个光学部件以改变光电子组件中的光束的步骤,其中相应的对准结构被形成为将相应的光学部件耦合到光学连接器。 第二晶片设置有多个光电子部件。 第一和第二晶片彼此顶部堆叠,对齐并结合在一起。 结合的第一和第二晶片被分离成多个光电子模块。 通过构造第三晶片来制造光学连接器,使得第三晶片设置有多个光学连接器。 第三晶片被分成多个光学连接器。 光纤耦合到一个光学连接器,然后耦合到一个分离的光电子模块。