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    • 33. 发明申请
    • SCALABLE AND MODULAR AUTOMATED FIBER OPTIC CROSS-CONNECT SYSTEMS
    • 可调和模块化自动光纤交叉连接系统
    • US20120321255A1
    • 2012-12-20
    • US13279304
    • 2011-10-23
    • Anthony Kewitsch
    • Anthony Kewitsch
    • G02B6/36B25J13/08G05B19/18G02B6/00G02B6/44
    • G02B6/356G02B6/3502G02B6/3556G02B6/3564G02B6/3897G02B6/4452H04Q1/145H04Q11/0005H04Q2011/0058
    • This invention discloses scalable and modular automated optical cross-connect devices which exhibit low loss and scalability to high port counts. In particular, a device for the programmable interconnection of large numbers of optical fibers is provided, whereby a two-dimensional array of fiber optic connections is mapped in an ordered and rule based fashion into a one-dimensional array with tensioned fiber optic elements tracing substantially straight lines there between. Fiber optic elements are terminated in a stacked arrangement of flexible fiber optic elements with a capacity to retain excess fiber lengths while maintaining an adequate bend radius. The combination of these elements partitions the switch volume into multiple independent, non-interfering zones. The separation into spaced-apart zones provides clearance for one or more robotic actuators to enter the free volume substantially adjacent to the two-dimensional array of connectors and mechanically reconfigure connectors without interrupting other fiber elements.
    • 本发明公开了可扩展和模块化的自动光学交叉连接装置,其对高端口数量表现出低损耗和可扩展性。 特别地,提供了用于大量光纤的可编程互连的设备,由此将光纤连接的二维阵列以有序和规则的形式映射成一维阵列,其中张紧的光纤元件基本上跟踪 直线之间。 光纤元件以柔性光纤元件的堆叠布置端接,具有保持足够弯曲半径的多余纤维长度的能力。 这些元件的组合将开关体积分成多个独立的非干扰区域。 分离成间隔开的区域为一个或多个机器人致动器提供间隙,以进入与二维连接器阵列基本相邻的自由体积,并机械地重新配置连接器而不中断其它光纤元件。
    • 34. 发明申请
    • SWITCH
    • 开关
    • US20120235025A1
    • 2012-09-20
    • US13321622
    • 2011-03-16
    • Kokichi TobitaKazuaki Morita
    • Kokichi TobitaKazuaki Morita
    • H03K17/78
    • H01H13/18G02B6/3564H01H9/54
    • A slit is formed in a plunger of a limit switch in such a manner that an amount of light incident on a light receiving element is changed in accordance with displacement of the plunger. The limit switch is provided with a setting processing unit (123) for setting a voltage value outputted from the light receiving element as a threshold value when a setting instruction is inputted in a state where the plunger is displaced to a designated position by a user, a position detecting unit (113) for performing detection processing of detecting whether or not the plunger is placed at a closer position to a reference position than to the designated position by comparing the set threshold value and the voltage value outputted from the light receiving element, and an output signal controlling unit (119) for outputting a signal based on a result of the detection processing. Thereby, the switch for outputting the signal in accordance with a position of a displacement member, the switch being capable of easily outputting the signal in accordance with a desired position of the displacement member without need for an adjusting screw can be provided.
    • 在极限开关的柱塞中形成狭缝,使得入射到光接收元件上的光量根据柱塞的位移而改变。 限位开关设置有设定处理单元(123),用于在由用户将柱塞移动到指定位置的状态下输入设定指示时,将从光接收元件输出的电压值设定为阈值, 位置检测单元(113),用于通过比较设定的阈值和从光接收元件输出的电压值来执行检测柱塞是否位于比指定位置更靠近参考位置的检测处理; 以及输出信号控制单元,用于基于检测处理的结果输出信号。 因此,可以提供根据位移构件的位置输出信号的开关,该开关能够根据位移构件的期望位置容易地输出信号而不需要调节螺钉。
    • 38. 发明授权
    • Optical element and optical apparatus having the optical element
    • 具有光学元件的光学元件和光学装置
    • US07529045B2
    • 2009-05-05
    • US11449251
    • 2006-06-08
    • Takashi Urakawa
    • Takashi Urakawa
    • G02B7/02
    • G02B6/3564G02B6/3512G02B7/00G02B7/02G02B7/18
    • Provided is an optical element with a configuration in which distortion due to fixing thereof on an effective optical portion can be reduced, preferably be eliminated and an apparatus including an optical element. The optical element comprising an effective optical portion on which a light beam is incident, a connecting portion with a holding member which holds the optical element, and a recess portion between the connecting portion and the effective optical portion. It is configured that force effecting on the connecting portion is attenuated by the recess portion then transmits to the effective optical portion. The recess portion is configured in groove shape, and the effective optical portion and the connecting portion can be configured different from each other in thickness.
    • 提供一种光学元件,其具有可以减少由于其在有效光学部分上的固定而引起的变形,优选地被消除的装置和包括光学元件的装置。 所述光学元件包括光束入射的有效光学部分,与保持所述光学元件的保持部件的连接部以及所述连接部和所述有效光学部之间的凹部。 构造为,通过凹部使作用于连接部的力衰减,然后传递到有效光学部。 凹部形成为槽状,有效光学部和连接部的厚度可以不同。
    • 39. 发明申请
    • OPTICAL SWITCH
    • 光开关
    • US20080267558A1
    • 2008-10-30
    • US11850672
    • 2007-09-05
    • Kuo-An Yen
    • Kuo-An Yen
    • G02B6/26
    • G02B6/3508G02B6/355G02B6/3564
    • An optical switch including an alignment head, a first fiber, a second fiber, a third fiber, a wedge, and a displacing means is provided. The alignment head has a base and a cover. The base has a first V-groove, a second V-groove, and a trench linked to the first and the second V-grooves. An end of the first fiber and that of the second fiber are mounted in the first and the second V-grooves, respectively. The cover is mounted on the base to secure the ends of the first and the second V-grooves. An end of the third fiber located in the trench is aligned to that of the first fiber. The wedge located beside the base has an incline. The displacing means set under the wedge is capable of aligning the end of the third fiber to that of the second fiber by moving the wedge.
    • 提供了包括对准头,第一光纤,第二光纤,第三光纤,楔形和位移装置的光学开关。 对准头具有基部和盖。 底座具有第一V形槽,第二V形槽和连接到第一和第二V形槽的沟槽。 第一纤维的端部和第二纤维的端部分别安装在第一和第二V形槽中。 盖安装在基座上以固定第一和第二V形槽的端部。 位于沟槽中的第三纤维的端部与第一纤维的端部对齐。 位于基地旁边的楔子有斜坡。 设置在楔形件下方的移位装置能够通过移动楔块来将第三纤维的端部与第二纤维的端部对准。