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    • 23. 发明申请
    • Dual stage modular optical devices with insert digital diagnostics component
    • 具有插入数字诊断部件的双级模块化光学器件
    • US20050285236A1
    • 2005-12-29
    • US11151900
    • 2005-06-13
    • Gary SasserChris Togami
    • Gary SasserChris Togami
    • G02B6/42H01L23/495
    • G02B6/4292G02B6/4204G02B6/423H01L2924/0002H01L2924/00
    • Embodiments of the present invention are directed to dual stage modular optical devices with insert digital diagnostics components. A first portion of a leadframe couples a first fabricated package including a light source and/or light detector to a second fabricated package with first opening for receiving inserts. A second portion of the leadframe couples the second fabricated package to a third fabricated package with a second opening for receiving inserts. A first component insert is coupled to the second fabricated package such that components of the first component insert can electrically interoperate with the light source and/or light detector. A second component insert is coupled to the third fabricated package such that components of the second component insert can electrically interoperate with components of the first component insert to implement digital diagnostics functions.
    • 本发明的实施例涉及具有插入式数字诊断部件的双级模块化光学装置。 引线框的第一部分将包括光源和/或光检测器的第一制造封装与用于接收插入件的第一开口耦合到第二制造封装。 引线框架的第二部分将第二制造封装耦合到具有用于接收插入件的第二开口的第三制造封装。 第一部件插入件耦合到第二制造封装,使得第一部件插入件的部件可以与光源和/或光检测器电互操作。 第二部件插入件耦合到第三制造的封装,使得第二部件插入件的部件可以与第一部件插入件的部件电互操作以实现数字诊断功能。
    • 26. 发明授权
    • Electronic module having an integrated latching mechanism
    • 具有集成锁定机构的电子模块
    • US06533603B1
    • 2003-03-18
    • US10075835
    • 2002-02-12
    • Chris Togami
    • Chris Togami
    • H01R1364
    • G02B6/4246G02B6/3893G02B6/3898G02B6/4292H01R13/6275
    • An integrated latching mechanism for use with a user pluggable electronic module, such as an opto-electronic transceiver module, is disclosed. The latching mechanism allows the user to selectively latch the module within a corresponding host port by manipulation of a lever formed on a bail. Movement of the bail causes a locking pin to extend and latch the module within the port. Conversely, movement of the bail can be used to disengage the locking pin and thereby allow the user to extract the module from within the port. Operative movement of the lock pin is accomplished by forming a cam on the bail lever. Movement of the bail lever thus causes movement of the cam, which corresponds to movement of a locking pin from a latched to a delatched position. The bail may be substantially disposed either within or outside of the electronic module.
    • 公开了一种用于可插拔电子模块(如光电收发模块)的集成锁定机构。 闩锁机构允许用户通过操纵形成在保释卡上的杠杆来选择性地将模块闩锁在相应的主机端口内。 吊钩的移动使得锁定销在端口内延伸和锁定模块。 相反,可以使用吊环的移动来解除锁定销的接合,从而允许使用者从端口内提取模块。 锁定销的操作运动通过在吊环上形成凸轮来实现。 因此,吊环杠杆的移动导致凸轮的移动,其对应于锁定销从锁定位置移动到脱扣位置。 保释可以基本上设置在电子模块的内部或外部。
    • 29. 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。
    • 30. 发明授权
    • Electromagnetic interference containment in a transceiver module
    • 收发模块中的电磁干扰抑制
    • US07422481B2
    • 2008-09-09
    • US11689379
    • 2007-03-21
    • Chris TogamiGary D. SasserAndy Engel
    • Chris TogamiGary D. SasserAndy Engel
    • G02B6/42
    • H04B15/00H01F2017/0093H01F2019/085H01R13/6582H01R13/6594
    • A transceiver module that utilizes an electromagnetic interference (EMI) containment structure for dealing with electromagnetic interference generated within the transceiver module. In one example embodiment, a transceiver module includes a housing, a printed circuit board disposed within the housing, and an EMI shield disposed about the printed circuit board. In this example embodiment, the printed circuit board includes electronic circuitry and a plurality of differential signal lines. Further, the EMI shield includes a body having a slot, a plurality of fingers on at least one edge of the body, and tabs that are operative to connect the body to the printed circuit board. The slot of the EMI shield receives the printed circuit board such that the differential signal lines of the printed circuit board pass through the slot. The fingers of the EMI shield enable the body to maintain a biased contact with the housing.
    • 收发器模块,其利用电磁干扰(EMI)容纳结构来处理收发器模块内产生的电磁干扰。 在一个示例实施例中,收发器模块包括壳体,布置在壳体内的印刷电路板和围绕印刷电路板设置的EMI屏蔽。 在该示例性实施例中,印刷电路板包括电子电路和多条差分信号线。 此外,EMI屏蔽包括具有槽的主体,在主体的至少一个边缘上的多个指状物,以及可操作以将主体连接到印刷电路板的突出部。 EMI屏蔽的槽口接收印刷电路板,使得印刷电路板的差分信号线通过槽。 EMI屏蔽的指状物使得主体能够保持与壳体的偏置接触。