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    • 1. 发明授权
    • Alignment system in a connector ferrule for a fiber optic cable
    • 用于光缆的连接器套圈中的对准系统
    • US5963691A
    • 1999-10-05
    • US909442
    • 1997-07-28
    • Gregory BuninIgor GroisIlya MakhlinMark MargolinRichard F. Roth
    • Gregory BuninIgor GroisIlya MakhlinMark MargolinRichard F. Roth
    • G02B6/40G02B6/38G02B6/36
    • G02B6/3885
    • An alignment system is disclosed in a connector ferrule for a fiber optic cable which includes at least one optical fiber. A ferrule body receives the cable and includes a fiber passage for receiving the optical fiber. A pin passage in the ferrule body is spaced from the fiber passage for receiving an alignment pin projecting from the ferrule body to align the body with an appropriate complementary connecting device. An alignment bushing is disposed in the pin passage for directly receiving the alignment pin. The outside dimensions of the bushing are smaller than the inside dimensions of the pin passage to define a space therebetween. A filler adhesive is applied in the space between the outside of the alignment bushing and the inside of the pin passage. Therefore, the bushing can be precisely aligned in the pin passage from exteriorly of the passage, and the filler adhesive can fix the bushing in that precise alignment interiorly of the passage.
    • 公开了用于光缆的连接器套圈中的对准系统,其包括至少一根光纤。 套圈主体接收电缆并且包括用于接收光纤的光纤通道。 套圈主体中的销通道与纤维通道间隔开,用于接收从套管本体突出的对准销,以使主体与适当的互补连接装置对准。 定位衬套设置在销通道中,用于直接接收对准销。 衬套的外部尺寸小于销通道的内部尺寸以限定它们之间的空间。 在对准衬套的外侧和销子通道的内部之间的空间中施加填料粘合剂。 因此,衬套可以在通道外部的销通道中精确对准,并且填充粘合剂可以将衬套固定在通道内部的精确对准中。
    • 2. 发明授权
    • Method of fabricating a fiber optic connector ferrule
    • 制造光纤连接器套圈的方法
    • US5923803A
    • 1999-07-13
    • US901478
    • 1997-07-28
    • Gregory BuninIgor GroisIlya MakhlinMark MargolinRichard F. Roth
    • Gregory BuninIgor GroisIlya MakhlinMark MargolinRichard F. Roth
    • G02B6/36G02B6/38G02B6/40
    • G02B6/3861G02B6/3885
    • A method is disclosed for fabricating a connector ferrule for a fiber optic ribbon cable which includes a plurality of generally parallel optical fibers in a line. A ferrule body is provided with a fiber passage which is elongated in cross-section to receive the line of optical fibers. A jacket is removed from an end portion of the fiber optic ribbon cable to expose the line of optical fibers. The ferrule body is placed in a fixture. The cable is placed in the ferrule body with the exposed line of optical fibers located in the fiber passage, and with distal ends of the exposed fibers projecting outwardly of the ferrule body. The exposed distal ends of the fibers are located on the fixture to precisely align the fibers relative to each other in the fiber passage. A filler adhesive is applied in the fiber passage about the exposed fibers to fix the fibers in the fiber passage while the fibers are held by the fixture in their precise alignment.
    • 公开了一种用于制造光纤带状电缆的连接器套圈的方法,该连接器套圈包括一条直线上的多个大致平行的光纤。 套圈主体设置有纤维通道,该纤维通道在横截面上被拉长以接收光纤线。 从光纤带状电缆的端部移除护套以露出光纤线。 套圈主体放置在固定装置中。 电缆被放置在套圈体中,其中光纤的暴露线位于纤维通道中,并且暴露的光纤的远端从套圈本体向外突出。 纤维的暴露的远端位于固定装置上以在纤维通道中相对于彼此精确对准纤维。 纤维通道中的填充粘合剂围绕暴露的纤维施加,以将纤维固定在纤维通道中,同时纤维被夹具固定在其精确对准中。
    • 5. 发明申请
    • METHOD OF MT FERRULE TERMINATION AND PROTRUSION EQUALIZATION FIXTURE
    • MT终止和推广均衡装置的方法
    • US20120145307A1
    • 2012-06-14
    • US13390740
    • 2010-08-20
    • Mark MargolinGregory BuninIlya Makhlin
    • Mark MargolinGregory BuninIlya Makhlin
    • B29C65/48B29C65/78
    • G02B6/3885G02B6/25G02B6/3861
    • A method for terminating a multifiber connector. A multifiber ribbon is stripped to the appropriate preliminary length A protruding from the ferrule. A cleave is performed for all fibers protruding from the ferrule leaving a residual fiber length A1. Cleaving and fiber end-face forming can be achieved by either laser processing, electrical arch impact, plasma forming, or any other method of similar nature. To achieve the working protrusion of the fibers beyond the ferrule A2, the ferrule is moved forward in a fixture until it stops against stopper B. The fibers are then pushed against the recess in the stopper for alignment until protrusion length A2 is achieved. During the finishing process, the epoxy moves into the fiber holes between the fibers and the walls of the fiber holes by capillary action, without the need to move the ribbon or fibers, or remove epoxy from the contact surface of the ferrule.
    • 一种用于终止多纤连接器的方法。 将多纤维带剥离到从套圈突出的适当的预备长度A. 对从套圈突出的所有纤维进行切割,留下残余纤维长度A1。 切割和光纤端面成型可以通过激光加工,电弧冲击,等离子体成型或任何其他具有相似性质的方法来实现。 为了实现纤维超过套圈A2的工作突起,套圈在夹具中向前移动,直到其停止止动件B.然后将纤维推压到止动件中的凹部以对准直到达到突出长度A2。 在整理过程中,环氧树脂通过毛细作用移动到纤维和纤维孔壁之间的纤维孔中,而不需要移动带或纤维,或者从套圈的接触表面去除环氧树脂。
    • 8. 发明申请
    • Active modular optoelectronic components
    • 主动模块化光电元件
    • US20080056647A1
    • 2008-03-06
    • US11513577
    • 2006-08-31
    • Mark MargolinGregory Bunin
    • Mark MargolinGregory Bunin
    • G02B6/36
    • G02B6/4201G02B6/4202G02B6/4251G02B6/4256G02B6/4292
    • Super miniature TFF and TFP active modular optoelectronic components are based on an optical interface that is substantially less than half the size of SFF/SFP components and more than five times smaller than an SC based component and provides a density that is three times higher than LC interfaces. The invention provides substantially smaller passive interconnect systems that can be used with substantially smaller photonic devices and combines the new photonic devices with the new smaller miniature interconnect systems such as the Push-Push Interconnect system. The new interface can be used with 0.8 mm or larger interfaces. Photonic devices are mounted directly on the active end of a ferrule thereby enabling use with coatings, avoiding the need for lenses, enabling use in active hermetic or non-hermetic subassemblies, and enabling use of optional posts to set the separation of the photonic device from the fiber.
    • 超小型TFF和TFP有源模块化光电子元件基于光学接口,其基本上小于SFF / SFP组件的一半,并且比基于SC的组件小五倍以上,并且提供比LC高三倍的密度 接口 本发明提供了基本上更小的无源互连系统,其可以与基本上较小的光子器件一起使用,并且将新的光子器件与新的较小的微型互连系统(例如推挽式互连系统)组合。 新界面可以使用0.8 mm或更大的接口。 光子器件直接安装在套管的活动端上,从而使得能够与涂层一起使用,避免使用镜头,使其能够用于主动密封或非密封子组件中,并且可以使用可选柱来设置光子器件的分离 纤维。