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    • 1. 发明申请
    • METHOD AND APPARATUS FOR ALIGNING OPTICAL TRANSPORTS IN A FERRULE
    • 用于对准光纤传输的方法和装置
    • WO2012008996A1
    • 2012-01-19
    • PCT/US2011/001188
    • 2011-07-07
    • TYCO ELECTRONICS NEDERLAND B.V.TYCO ELECTRONICS CORPORATIONDUIS, Jeroen Antonius, MariaRIETVELD, Jan, WillemELENBAAS, Jacco
    • DUIS, Jeroen Antonius, MariaRIETVELD, Jan, WillemELENBAAS, Jacco
    • G02B6/38
    • G02B6/3652G02B6/3839G02B6/3861G02B6/3883G02B6/3885G02B6/3898
    • A method of aligning a plurality of optical transports (101) in a ferrule (102) includes the step of providing a ferrule (102) having a ferrule body (102) with a front face (106), a rear face (104), and at least one lateral side face (116) extending between the front face and the rear face. The ferrule also has a longitudinal cavity (104) running from the front face to the rear face for receiving a plurality of optical transports (101), and the longitudinal cavity has a lateral side opening through the at least one lateral face (116). The ferrule further has a lateral alignment feature (108) on the front face (106) of the ferrule. A first jig (200) is also provided that has a first face, an opposing second face, at least one lateral side face extending between the first face and the second face, a longitudinal window (204) running from the first face to the second face for receiving the plurality of optical transports and the longitudinal window has a lateral side opening through the at least one lateral face, and a lateral alignment feature (202) on the first face of the jig adapted to mate to the lateral alignment feature (108) of the ferrule to laterally align the first jig and the ferrule. The window of the first jig includes a surface bearing a plurality of longitudinal grooves (208) for accepting the plurality of optical transports (101) therein. When the first jig (204) is mounted on the ferrule (102) via the mating alignment features (108/202), the surface and grooves of the first jig are laterally aligned relative to the ferrule such that an optical transport passing longitudinally though the cavity of the ferrule and longitudinally into the window of the first jig and resting in each one of the grooves in the first jig will be positioned within the cavity of the ferrule in a desired lateral alignment. The method further includes the steps of mounting the ferrule (102) on the first jig (200) via the mating alignment features (108/202); placing a plurality of optical transports (101) longitudinally through the cavity (104) in the ferrule and extending into the window (204) of the first jig with each one of the optical transports resting in a one of the grooves (208); and affixing the plurality of optical transports (101) to the ferrule while they are resting in the grooves (208) of the first jig.
    • 将多个光学传送器(101)对准在套圈(102)中的方法包括提供具有带有前表面(106),后表面(104)的套圈本体(102)的套圈(102)的步骤, 以及在前表面和后表面之间延伸的至少一个横向侧面(116)。 套圈还具有从前表面延伸到后表面的纵向腔(104),用于容纳多个光学传送器(101),并且纵向腔体具有穿过至少一个侧面(116)的侧面开口。 套圈还具有在套圈的前表面(106)上的横向对准特征(108)。 还提供了第一夹具(200),其具有第一面,相对的第二面,在第一面和第二面之间延伸的至少一个侧面,从第一面到第二面的纵向窗(204) 用于接收多个光学传送器的面,纵向窗口具有通过至少一个侧面的侧面开口,并且夹具的第一面上的横向对准特征(202)适于与横向对准特征(108 )以横向对齐第一夹具和套圈。 第一夹具的窗口包括承载多个纵向凹槽(208)的表面,用于在其中接纳多个光学传送件(101)。 当通过配合对准特征(108/202)将第一夹具(204)安装在套圈(102)上时,第一夹具的表面和凹槽相对于套圈横向对准,使得光学传输器纵向通过 套管的空腔并且纵向进入第一夹具的窗口并且放置在第一夹具中的每个凹槽中将以期望的横向对准位于套圈的空腔内。 该方法还包括以下步骤:通过配合对准特征(108/202)将套圈(102)安装在第一夹具(200)上; 将多个光学传送器(101)纵向穿过套管中的空腔(104)并延伸到第一夹具的窗口(204)中,每个光学传输件搁置在一个凹槽(208)中; 以及当所述多个光学传送器(101)搁置在所述第一夹具的凹槽(208)中时将所述多个光学传送器(101)固定到所述套圈上。
    • 2. 发明公开
    • METHOD AND APPARATUS FOR ALIGNING OPTICAL TRANSPORTS IN A FERRULE
    • 方法和装置光传输IN A线圈排列
    • EP2593823A1
    • 2013-05-22
    • EP11741489.6
    • 2011-07-07
    • Tyco Electronics Nederland B.V.
    • DUIS, Jeroen Antonius, MariaRIETVELD, Jan, WillemELENBAAS, Jacco
    • G02B6/38
    • G02B6/3652G02B6/3839G02B6/3861G02B6/3883G02B6/3885G02B6/3898
    • A method of aligning a plurality of optical transports (101) in a ferrule (102) includes the step of providing a ferrule (102) having a ferrule body (102) with a front face (106), a rear face (104), and at least one lateral side face (116) extending between the front face and the rear face. The ferrule also has a longitudinal cavity (104) running from the front face to the rear face for receiving a plurality of optical transports (101), and the longitudinal cavity has a lateral side opening through the at least one lateral face (116). The ferrule further has a lateral alignment feature (108) on the front face (106) of the ferrule. A first jig (200) is also provided that has a first face, an opposing second face, at least one lateral side face extending between the first face and the second face, a longitudinal window (204) running from the first face to the second face for receiving the plurality of optical transports and the longitudinal window has a lateral side opening through the at least one lateral face, and a lateral alignment feature (202) on the first face of the jig adapted to mate to the lateral alignment feature (108) of the ferrule to laterally align the first jig and the ferrule. The window of the first jig includes a surface bearing a plurality of longitudinal grooves (208) for accepting the plurality of optical transports (101) therein. When the first jig (204) is mounted on the ferrule (102) via the mating alignment features (108/202), the surface and grooves of the first jig are laterally aligned relative to the ferrule such that an optical transport passing longitudinally though the cavity of the ferrule and longitudinally into the window of the first jig and resting in each one of the grooves in the first jig will be positioned within the cavity of the ferrule in a desired lateral alignment. The method further includes the steps of mounting the ferrule (102) on the first jig (200) via the mating alignment features (108/202); placing a plurality of optical transports (101) longitudinally through the cavity (104) in the ferrule and extending into the window (204) of the first jig with each one of the optical transports resting in a one of the grooves (208); and affixing the plurality of optical transports (101) to the ferrule while they are resting in the grooves (208) of the first jig.