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    • 1. 发明授权
    • Run-time scalable switch fabric
    • 运行时可伸缩交换矩阵
    • US08284771B1
    • 2012-10-09
    • US13103040
    • 2011-05-06
    • Martin JulienRobert BrunnerStéphane Lessard
    • Martin JulienRobert BrunnerStéphane Lessard
    • H04L12/52
    • H04L49/45H04L49/1515
    • Systems and methods according to these exemplary embodiments provide for dynamically scalable switching fabrics. A dynamically scalable switching fabric can include a first set of fabric element (FE) interfaces and a second set of FE interfaces, interconnectable by a reconfigurable crossbar. By selectively populating the FE interfaces, different switching capabilities, e.g., bandwidth per processor blade and/or number of processor blades supported, can be achieved. When the population of the FE interfaces is modified, the reconfigurable crossbar can reconfigure the links between FEs. According to one embodiment, a three-stage CLOS architecture can be implemented. According to another embodiment, a multi-plane architecture can be implemented.
    • 根据这些示例性实施例的系统和方法提供了动态可扩展的交换结构。 动态可扩展的交换结构可以包括第一组结构元素(FE)接口和第二组FE接口,可由可重新配置的交叉开关互连。 通过选择性地填充FE接口,可以实现不同的交换能力,例如每个处理器刀片的带宽和/或支持的处理器刀片的数量。 当FE接口的总体被修改时,可重配置的交叉开关可以重新配置FE之间的链路。 根据一个实施例,可以实现三级CLOS架构。 根据另一实施例,可以实现多平面架构。
    • 3. 发明授权
    • Data network elements, crossbars, and methods providing coupling between remote PHY and MAC devices
    • 提供远程PHY和MAC设备之间耦合的数据网元,交叉栏和方法
    • US08780927B2
    • 2014-07-15
    • US13048369
    • 2011-03-15
    • Martin JulienRobert Brunner
    • Martin JulienRobert Brunner
    • H04L12/28H04L12/56
    • H04L45/10H04L45/02H04L49/351
    • A crossbar may be coupled between a plurality of PHY devices configured to provide physical layer functions according to an Open Systems Interconnection, OSI, model and a plurality of MAC devices configured to provide data link layer functions according to the OSI model. First data couplings may be provided through the crossbar between the plurality of PHY devices and the plurality of MAC devices during a first time period. Second data couplings may be provided through the crossbar between the plurality of PHY devices and the plurality of MAC devices during a second time period, with the first and second data couplings being different. Related network elements, interfaces, and networks are also discussed.
    • 交叉开关可以耦合在被配置为根据开放系统互连,OSI,模型和被配置为根据OSI模型提供数据链路层功能的多个MAC设备来提供物理层功能的多个PHY设备之间。 可以在第一时间段期间通过多个PHY设备和多个MAC设备之间的交叉开关来提供第一数据耦合。 第二数据耦合可以在第二时间段期间通过多个PHY设备和多个MAC设备之间的交叉开关提供,其中第一和第二数据耦合是不同的。 还讨论了相关网络元件,接口和网络。
    • 6. 发明申请
    • Fine-Grained Optical Shuffle Interconnect Topology Migration
    • 细粒度光学随机互连拓扑迁移
    • US20130322838A1
    • 2013-12-05
    • US13486736
    • 2012-06-01
    • Martin JulienRobert Brunner
    • Martin JulienRobert Brunner
    • G02B6/00
    • G02B6/4446G02B6/4452H04Q1/025H04Q1/13H04Q11/0005
    • An optical patch unit is adapted for mounting in or on an optical equipment rack and facilitates a migration from one optical shuffle box or topology to another. The optical patch unit simplifies the replacement of an optical shuffle box, in some cases allowing a phased migration that minimizes system down-time. The optical patch units described herein include passive optical patch panels. Chassis card and optical shuffle connections are terminated at the passive optical patch panel, making it possible to simplify the cabling between the chassis cards and the optical shuffle box. Once installed, chassis card cables do not need to be manipulated at all during subsequent optical shuffle maintenance procedures. Other optical patch units described herein include active optical patch units, which make the migration process less dependent on human intervention and can further reduce system down-time.
    • 光学贴片单元适于安装在光学设备机架中或其上,并且有助于从一个光学洗牌盒或拓扑迁移到另一个。 光学贴片单元简化了光学洗牌盒的更换,在某些情况下允许使系统停机时间最小化的分阶段迁移。 本文所述的光学贴片单元包括无源光学接线板。 在无源光接插板上,机箱卡和光学洗牌连接终止,使得可以简化机箱卡和光学洗牌盒之间的布线。 一旦安装,在随后的光学洗牌维护程序中,根本不需要操作机箱卡电缆。 本文所述的其它光学贴片单元包括主动光学贴片单元,其使得移动过程较少依赖于人类干预,并且可以进一步减少系统停机时间。
    • 8. 发明申请
    • METHOD FOR ALIGNING A SERIAL BIT STREAM WITH A PARALLEL OUTPUT
    • 用并行输出排列串行数据流的方法
    • US20100302079A1
    • 2010-12-02
    • US12475250
    • 2009-05-29
    • Robert BrunnerDavid GordonMartin JulienLudovic Beliveau
    • Robert BrunnerDavid GordonMartin JulienLudovic Beliveau
    • H03M9/00
    • H04J3/0608H03M9/00H04J3/0632H04L7/041
    • The invention relates to a method and circuit for aligning a serial bit stream with a parallel output. The method comprises latching Q bits from the serial bit stream into a register, locating a position P of a first bit of a start of frame delimiter (SFD) in the register and discarding P-1 bits from the serial bit stream, before the position of the first bit of the SFD, thereby aligning the serial bit stream with the parallel output. The circuit comprises a latch, a fault tolerant analysis logic (FTAL) for locating a position P of a first bit of a start of frame delimiter (SFD) in the register and a shift register for discarding P-1 bits from the serial bit stream, before the position of the first bit of the SFD, thereby aligning the serial bit stream with the parallel output.
    • 本发明涉及一种用于将串行比特流与并行输出对准的方法和电路。 该方法包括将Q位从串行比特流锁定到寄存器中,在位置之前定位寄存器中的起始帧定界符(SFD)的第一位的位置P,并从串行位流中丢弃P-1位 的SFD的第一位,从而使串行比特流与并行输出对齐。 电路包括锁存器,用于定位寄存器中的起始帧定界符(SFD)的第一位的位置P的容错分析逻辑(FTAL)和用于从串行位流中丢弃P-1位的移位寄存器 ,在SFD的第一位的位置之前,从而使串行比特流与并行输出对齐。
    • 9. 发明申请
    • OPTICAL PHYSICAL INTERFACE MODULE
    • 光学物理接口模块
    • US20150346441A1
    • 2015-12-03
    • US14308020
    • 2014-06-18
    • Martin JulienRobert Brunner
    • Martin JulienRobert Brunner
    • G02B6/42H04B10/80
    • G02B6/4231G02B6/3885G02B6/3897G02B6/4293G02B6/43H04B10/25H04B10/40H04B10/801H04B10/808
    • An optical physical interface module is provided which includes a first optical physical interface, a second optical physical interface and one or more optical components. The first optical physical interface is configured to plug into a first connector and communicate optical signals toward the first connector. The second optical physical interface is configured to receive a second connector and communicate optical signals toward the second connector. The one or more optical components are operable to process optical signals between the first and second optical physical interfaces. The optical physical interface module may be provided at the edge of a circuit board so that the circuit board has an optical interface for external communication. The optical physical interface module may be a stand-alone module or integrated into a connector of an optical cable, among other configurations.
    • 提供了一种光学物理接口模块,其包括第一光学物理接口,第二光学物理接口和一个或多个光学部件。 第一光学物理接口被配置成插入第一连接器并将光信号传送到第一连接器。 第二光学物理接口被配置为接收第二连接器并且向第二连接器传送光信号。 一个或多个光学部件可操作以处理第一和第二光学物理接口之间的光信号。 光学物理接口模块可以设置在电路板的边缘处,使得电路板具有用于外部通信的光学接口。 光学物理接口模块可以是独立模块或集成到光缆的连接器中,以及其他配置。
    • 10. 发明申请
    • Fine-Grained Optical Shuffle Interconnect Topology Migration
    • 细粒度光学随机互连拓扑迁移
    • US20140314386A1
    • 2014-10-23
    • US14195203
    • 2014-03-03
    • Martin JulienRobert Brunner
    • Martin JulienRobert Brunner
    • G02B6/44
    • G02B6/4446G02B6/4452H04Q1/025H04Q1/13H04Q11/0005
    • An optical patch unit is adapted for mounting in or on an optical equipment rack and facilitates a migration from one optical shuffle box or topology to another. The optical patch unit simplifies the replacement of an optical shuffle box, in some cases allowing a phased migration that minimizes system down-time. The optical patch units described herein include passive optical patch panels. Chassis card and optical shuffle connections are terminated at the passive optical patch panel, making it possible to simplify the cabling between the chassis cards and the optical shuffle box. Once installed, chassis card cables do not need to be manipulated at all during subsequent optical shuffle maintenance procedures. Other optical patch units described herein include active optical patch units, which make the migration process less dependent on human intervention and can further reduce system down-time.
    • 光学贴片单元适于安装在光学设备机架中或其上,并且有助于从一个光学洗牌盒或拓扑迁移到另一个。 光学贴片单元简化了光学洗牌盒的更换,在某些情况下允许使系统停机时间最小化的分阶段迁移。 本文所述的光学贴片单元包括无源光学接线板。 在无源光接插板上,机箱卡和光学洗牌连接终止,使得可以简化机箱卡和光学洗牌盒之间的布线。 一旦安装,在随后的光学洗牌维护程序中,根本不需要操作机箱卡电缆。 本文所述的其它光学贴片单元包括主动光学贴片单元,其使得移动过程较少依赖于人类干预,并且可以进一步减少系统停机时间。