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    • 1. 发明授权
    • Optical transceiver having a single optical subassembly
    • 具有单个光学子组件的光收发器
    • US06955482B2
    • 2005-10-18
    • US10609930
    • 2003-06-30
    • Paul K. RosenbergGary SasserChris TogamiDonald A. Ice
    • Paul K. RosenbergGary SasserChris TogamiDonald A. Ice
    • G02B6/42G02B6/36
    • G02B6/4292G02B6/42G02B6/4246
    • An optical transceiver module for use in optical communications networks is disclosed. The transceiver features a simplified optical subassembly structure that facilitates the alignment and calibration of active optical components located thereon. The transceiver includes a shell that contains a transceiver printed circuit board and a transmitter/receiver optical subassembly (“TROSA”) connected to the printed circuit board via a TROSA connector. The TROSA includes a singular substrate on which a laser for producing optical signals and a photodetector for receiving optical signals are disposed. The laser and photodetector are precisely positioned on the TROSA substrate to have a specified spacing therebetween. So positioned, the laser and photodetector can be aligned with conduits of a sleeve assembly in a single alignment operation, thereby simplifying calibration of the transceiver module. The present transceiver eliminates the use of multiple substrates separately supporting the laser and the photodetector, thus also eliminating related alignment challenges.
    • 公开了一种用于光通信网络的光收发模块。 收发器具有简化的光学子组件结构,其有利于位于其上的有源光学部件的对准和校准。 收发器包括一个包含收发器印刷电路板和经由TROSA连接器连接到印刷电路板的发射器/接收器光学子组件(“TROSA”)的外壳。 TROSA包括单个基板,在其上设置用于产生光信号的激光器和用于接收光信号的光电检测器。 激光和光电检测器精确地定位在TROSA基板上以在它们之间具有指定的间距。 如此定位,激光和光电检测器可以在单一对准操作中与套管组件的管道对准,从而简化了收发器模块的校准。 本收发器消除了使用分开支持激光器和光电检测器的多个基板,从而也消除了相关的对准挑战。
    • 2. 发明授权
    • Methods for assembling an optical transceiver
    • 组装光收发器的方法
    • US07435014B2
    • 2008-10-14
    • US10924135
    • 2004-08-23
    • Paul K. RosenbergGary SasserChris TogamiDonald A. Ice
    • Paul K. RosenbergGary SasserChris TogamiDonald A. Ice
    • G02B6/36
    • G02B6/4292G02B6/42G02B6/4246
    • Methods for assembly of optical transceivers. In one example, the method is performed in connection with an optical transceiver that includes a transmitter optical subassembly and a receiver optical subassembly, as well as structure that defines a pair of ports with which the transmitter optical subassembly and receiver optical subassembly, respectively, are to be aligned. This example of the method involves positioning the transmitter optical subassembly and the receiver optical subassembly in a desired position relative to each other. The transmitter optical subassembly and the receiver optical subassembly are then fixed in the desired position. Next, the transmitter optical subassembly is aligned with one of the ports, and the receiver optical subassembly is aligned with the other port. The alignment of both the transmitter optical subassembly and the receiver optical subassembly with their respective ports is performed in a single operation.
    • 装配光收发器的方法。 在一个示例中,该方法与包括发射机光学子组件和接收机光学子组件的光收发器相关联地执行,以及限定一对端口的结构,发射机光学子组件和接收机光学子组件分别与哪个端口 要对齐 该方法的该示例涉及将发射器光学子组件和接收器光学子组件相对于彼此定位在期望位置。 然后将发射机光学子组件和接收器光学子组件固定在期望的位置。 接下来,发射机光学子组件与其中一个端口对准,并且接收机光学子组件与另一个端口对准。 发射器光学子组件和接收器光学子组件与它们各自的端口的对准在一个操作中执行。
    • 3. 发明申请
    • POSITIONING PLATE FOR OPTICAL SUBASSEMBLY
    • 定位板用于光学分层
    • US20080205896A1
    • 2008-08-28
    • US12039598
    • 2008-02-28
    • Joshua MooreDonald A. IceChris Togami
    • Joshua MooreDonald A. IceChris Togami
    • H04B10/00
    • G02B6/4201G02B6/4256G02B6/4261
    • In one example, an optical subassembly positioning plate is provided that includes a substantially flat body that defines at least one edge. A port is defined in the body. The port is configured to receive and secure an optical subassembly in an x-direction and a y-direction when said optical subassembly positioning plate is positioned within an optoelectronic transceiver module. A plurality of fingers is defined along at least one edge of the body. Each of the plurality of fingers is configured to contact a shell of the optoelectronic transceiver module so as to bias a flange of the optical subassembly against a portion of the shell of the optoelectronic transceiver module such that the optical subassembly is substantially retained in a z-direction when the optical subassembly positioning plate is positioned within the optoelectronic transceiver module.
    • 在一个示例中,提供了光学子组件定位板,其包括限定至少一个边缘的基本平坦的主体。 一个端口在机体中定义。 端口被配置为当所述光学子组件定位板位于光电收发器模块内时,在x方向和y方向上接收和固定光学子组件。 沿着身体的至少一个边缘限定多个手指。 多个指状物中的每一个构造成接触光电收发器模块的壳体,以便将光学子组件的凸缘抵靠光电收发器模块的壳体的一部分偏置,使得光学子组件基本上保持在z- 光学子组件定位板位于光电收发模块内时的方向。
    • 5. 发明授权
    • Positioning plate for optical subassembly
    • 光学组件定位板
    • US07665910B2
    • 2010-02-23
    • US12039598
    • 2008-02-28
    • Joshua MooreDonald A. IceChris Togami
    • Joshua MooreDonald A. IceChris Togami
    • G02B6/42H04B10/00
    • G02B6/4201G02B6/4256G02B6/4261
    • In one example, an optical subassembly positioning plate is provided that includes a substantially flat body that defines at least one edge. A port is defined in the body. The port is configured to receive and secure an optical subassembly in an x-direction and a y-direction when said optical subassembly positioning plate is positioned within an optoelectronic transceiver module. A plurality of fingers is defined along at least one edge of the body. Each of the plurality of fingers is configured to contact a shell of the optoelectronic transceiver module so as to bias a flange of the optical subassembly against a portion of the shell of the optoelectronic transceiver module such that the optical subassembly is substantially retained in a z-direction when the optical subassembly positioning plate is positioned within the optoelectronic transceiver module.
    • 在一个示例中,提供了光学子组件定位板,其包括限定至少一个边缘的基本平坦的主体。 一个端口在机体中定义。 端口被配置为当所述光学子组件定位板位于光电收发器模块内时,在x方向和y方向上接收和固定光学子组件。 沿着身体的至少一个边缘限定多个手指。 多个指状物中的每一个构造成接触光电收发器模块的壳体,以便将光学子组件的凸缘抵靠光电收发器模块的壳体的一部分偏置,使得光学子组件基本上保持在z- 光学子组件定位板位于光电收发模块内时的方向。