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    • 6. 发明授权
    • Molded communications module having integrated plastic circuit structures
    • 具有集成塑料电路结构的模制通信模块
    • US08059415B2
    • 2011-11-15
    • US11958085
    • 2007-12-17
    • Stephen T. NelsonDonald A. IceDarin James Douma
    • Stephen T. NelsonDonald A. IceDarin James Douma
    • H05K5/00
    • G02B6/4246G02B6/4201G02B6/424G02B6/4255G02B6/4257G02B6/4262G02B6/4263G02B6/4274
    • An embodiment disclosed herein relates to a communications module. The communications module includes a body composed of a plastic resin and a plurality of conductive traces and contact pads defined on a portion of a surface of the body. The module also includes at least one substantially vertical ridge defined on the body surface, and at least one pocket defined on the body suitable for receiving an electronic component. The communications module may also include a body composed of a plastic resin and conductive features defined on a surface of the body configured to render the communications module operable without implementing a printed circuit board as part of the body. Additional embodiments relate to systems and methods for attaching one or more optical transmit assemblies to the communications module and for electrically connecting conductive traces in a temporary fashion on the surface of the body of the communications module.
    • 本文公开的实施例涉及通信模块。 通信模块包括由塑料树脂和限定在主体表面的一部分上的多个导电迹线和接触垫构成的主体。 模块还包括限定在身体表面上的至少一个基本上垂直的脊,以及限定在主体上的适于接收电子部件的至少一个口袋。 通信模块还可以包括由塑料树脂构成的主体和限定在主体的表面上的导电特征,其被配置为使得通信模块可操作而不将印刷电路板实施为身体的一部分。 另外的实施例涉及用于将一个或多个光学传输组件附接到通信模块并且用于将通信模块的主体表面上的临时导电迹线电连接的系统和方法。
    • 8. 发明授权
    • Receptacle with multiple contact sets for different connector types
    • 具有不同连接器类型的多个触点组的插座
    • US07828569B2
    • 2010-11-09
    • US12211734
    • 2008-09-16
    • Lewis B. AronsonDonald A. Ice
    • Lewis B. AronsonDonald A. Ice
    • H01R27/00
    • H01R24/64H01R13/514H01R13/6658H01R27/00
    • A receptacle that is configured to receive connectors of different types. If a connector of one type is received into the receptacle, the connector contacts engage one set of receptacle contacts. If a connector of another type is received into the receptacle, the connector contacts engage another set of receptacle contacts, and so forth for potentially other connector types and other contact sets. A communication system may also control which PHY circuitry communicates with the receptacle depending on which connector type is plugged into the receptacle. The receptacle can include a connector detection mechanism configured to detect whether a connector of the first type or second type is inserted into the receptacle. Circuitry and pin design of the receptacle also depends on the first and second connector types.
    • 配置为接收不同类型连接器的插座。 如果一种类型的连接器被接收到插座中,则连接器触点接合一组插座触点。 如果另一种类型的连接器被接收到插座中,则连接器触点接合另一组插座触点,等等,用于潜在的其它连接器类型和其它触点组。 根据哪个连接器类型插入到插座中,通信系统还可以控制哪个PHY电路与插座通信。 插座可以包括连接器检测机构,其被配置为检测第一类型或第二类型的连接器是否被插入到插座中。 插座的电路和引脚设计也取决于第一和第二连接器类型。
    • 9. 发明授权
    • Optical transceiver with variably positioned insert
    • 具有可变定位插件的光收发器
    • US07670063B2
    • 2010-03-02
    • US11026439
    • 2004-12-30
    • Donald A. Ice
    • Donald A. Ice
    • G02B6/36H04B10/00
    • G02B6/4292G02B6/4246
    • An optical transceiver includes a transceiver housing configured to receive an optical sub-assembly insert. The optical sub-assembly insert includes duplex cavities configured to hold a transmit optical sub-assembly front end and a receive optical sub-assembly front end in a fixed spatial orientation for a given optical connector interface. The optical sub-assembly insert is configurable to fit inside a transceiver housing with a relatively wide range of X and Y dimensional tolerance. In one implementation, the X-Y position of the optical sub-assembly insert is dictated by the position of the transmit optical-sub assembly front end after its corresponding back end has been mounted to a heat dissipation element. Any gaps that form between the optical sub-assembly insert and the inside surface of the transceiver housing as a result of the transmit optical sub-assembly position can be accommodated with filler material.
    • 光收发器包括被配置为接收光学子组件插入件的收发器壳体。 光学子组件插入件包括被配置为将光学子组件前端和接收光学子组件前端固定在用于给定光学连接器接口的固定空间取向中的双重空腔。 光学子组件插入件可配置为装配在具有相对较宽范围的X和Y尺寸公差的收发器壳体内。 在一个实施方案中,光学子组件插入件的X-Y位置由发射光学组件前端在其对应的后端已经被安装到散热元件之后的位置决定。 作为透射光学子组件位置的结果,在光学子组件插入件和收发器壳体的内表面之间形成的任何间隙可以用填充材料容纳。
    • 10. 发明申请
    • CFP MECHANICAL PLATFORM
    • CFP机械平台
    • US20100039778A1
    • 2010-02-18
    • US12203027
    • 2008-09-02
    • Donald A. Ice
    • Donald A. Ice
    • H05K7/00H01R12/00
    • G02B6/4246G02B6/4201G02B6/4274G02B6/4284
    • In one example embodiment, a host device includes a host bezel, first and second guides, and a host connector. The host bezel defines an opening configured to receive a pluggable module. A first cutout on one side of the opening and a second cutout on the opposite side of the opening are adapted to receive corresponding guiderails on the module. The first and second guides are coupled to the host bezel and to a host printed circuit board. Each of the first and second guides defines a channel configured to receive the first and second guiderails of the module. The host connector is coupled to the host printed circuit board and is disposed at the back end of the first and second guides. The host connector includes a recessed slot configured to receive a module connector to electrically couple the module to the host printed circuit board.
    • 在一个示例性实施例中,主机设备包括主机挡板,第一和第二引导件以及主机连接器。 主机挡板定义了一个配置为接收可插拔模块的开口。 在开口的一侧上的第一切口和在开口的相对侧上的第二切口适于在模块上接收对应的导轨。 第一和第二引导件联接到主机边框和主机印刷电路板。 第一和第二引导件中的每一个限定了构造成接收模块的第一和第二引导件的通道。 主机连接器耦合到主机印刷电路板,并且设置在第一和第二引导件的后端。 主机连接器包括凹槽,其被配置为接收模块连接器以将模块电耦合到主机印刷电路板。