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    • 6. 发明授权
    • Method and apparatus for an optical multiplexer and demultiplexer with an optical processing loop
    • 具有光学处理回路的光复用器和解复用器的方法和装置
    • US06850364B2
    • 2005-02-01
    • US10170055
    • 2002-06-12
    • Ping XieR. Brad BettmanHaisheng RongKevin ZhangYalan MaoWei WangSimon Yuanxiang Wu
    • Ping XieR. Brad BettmanHaisheng RongKevin ZhangYalan MaoWei WangSimon Yuanxiang Wu
    • G02B6/34H04J14/02H04Q11/00G02B5/30
    • G02B6/272G02B6/29352H04J14/02H04Q11/0005H04Q2011/0009H04Q2011/0015H04Q2011/0016H04Q2011/0026H04Q2011/0075
    • An optical device that can be used in a range of telecommunications applications including optical multiplexers/demultiplexers and optical routers. The optical device includes an optical processing loop which allows multi-stage performance characteristics to be achieved with a single physical filtration stage. Optical processing on the first leg and second legs of the loop is asymmetrical thereby improving the integrity of the optical signals by effecting complementary chromatic dispersion on the first and second legs. In an embodiment of the invention the optical device includes a fundamental filter cell, a retro reflector and a splitter/combiner. The fundamental filter cell filters optical signals propagating on each of two legs of an optical loop which intersects the fundamental filter cell. The fundamental filter cell operates as a full waveplate to the odd set of channels and a half waveplate to the even set of channels on a selected one of the two legs and as a half waveplate to the odd set of channels and a full waveplate to the even set of channels on a remaining one of the two legs. The retro reflector optically couples with the fundamental filter cell to reflect the optical signals from one of the two legs to an other of the two legs to form the optical loop. The splitter/combiner optically couples between the fundamental filter cell and the retro reflector to split or combine the odd set of channels and the even set of channels depending on the propagation direction of the optical signals along the optical loop.
    • 可用于包括光复用器/解复用器和光路由器在内的一系列电信应用中的光学装置。 光学装置包括光学处理回路,其允许通过单个物理过滤级来实现多级性能特性。 在环路的第一腿部和第二腿部上的光学处理是不对称的,从而通过在第一和第二腿部上实现互补色散而提高光学信号的完整性。 在本发明的一个实施例中,光学装置包括基本滤波器单元,回射反射器和分离器/组合器。 基本滤波器单元滤波在与基波滤波器单元相交的光环路的两条支路上传播的光信号。 基本滤波器单元作为完整波片操作到奇数通道组,并且将半波片作用到两个选定的一个通道上的偶数通道组,以及半波片到奇数通道组,并将完整波片作为 甚至在两条腿中剩下的一条通道上设置通道。 后向反射器与基本滤波器单元光学耦合以将来自两个腿中的一个的光学信号反射到两个腿中的另一个,以形成光学环路。 分路器/组合器在基本滤波器单元和回射反射器之间光耦合,以根据沿着光学环路的光信号的传播方向将奇数组信道和偶数组信道分离或组合。
    • 7. 发明授权
    • Precision optical filter with a ball-end joint
    • 带球头接头的精密光学滤波器
    • US06621954B1
    • 2003-09-16
    • US09713634
    • 2000-11-14
    • Ping XieKevin ZhangRobert Burn, III
    • Ping XieKevin ZhangRobert Burn, III
    • G02B632
    • G02B6/2937
    • A portion of an optical device is disclosed. In one aspect of the present invention, the device comprises a cylinder formed about an axis having first and second ends, the second end being formed so as to define a segment of an inward-facing concave spherical surface. A module is provided defining a cylinder formed about the axis and having first and second ends and an optical element disposed therein about the axis. The first end of the module is formed so as to define a segment of an outward-facing convex spherical surface, and the convex surface is complimentary in shape to the concave surface. The complimentary concave and convex surfaces of the cylinder and the module are mated so as to allow the optical element to be aligned about a plane forming a predetermined angle with the axis.
    • 公开了一种光学装置的一部分。 在本发明的一个方面中,所述装置包括围绕具有第一和第二端的轴线形成的圆柱体,所述第二端部形成为限定向内凹的球形表面的一段。 提供模块,其限定围绕轴线形成的圆柱体,并且具有第一和第二端部以及围绕轴线设置在其中的光学元件。 模块的第一端形成为限定向外凸的球形表面的一段,并且凸形表面在凹形表面上互补。 气缸和模块的互补的凹凸表面配合,以允许光学元件围绕与轴线形成预定角度的平面对齐。
    • 8. 发明申请
    • LTR/OBFF DESIGN SCHEME FOR ETHERNET ADAPTER APPLICATION
    • 用于以太网适配器的LTR / OBFF设计方案
    • US20160162421A1
    • 2016-06-09
    • US14907649
    • 2013-08-07
    • Xuhong XIONGKevin ZHANGXiaofeng YANJack DUQUALCOMM INCORPORATED
    • Xuhong XiongKevin ZhangXiaofeng YanJack Du
    • G06F13/20G06F13/40G06F13/42
    • G06F13/20G06F13/385G06F13/4068G06F13/4282G06F2213/3808Y02D10/14Y02D10/151
    • A method of reducing power consumption in a computing platform is disclosed. An endpoint-device that is coupled to the computing platform includes a first data buffer and a second data buffer. The first data buffer buffers outgoing data to be transmitted to an external device via a first communications medium. The second data buffer buffers incoming data received from the external device via the first communications medium. At least one of the first or second data buffers may selectively communicate with the computing platform, via a second communications medium, during an active window of the other data buffer. The active window may be requested by the first and/or second data buffers based, at least in part, on a system idle signal. For some embodiments, the first communications medium is an Ethernet link. Further, for some embodiments, the second communications medium is a Peripheral Component Interconnect Express (PCIe) link.
    • 公开了一种降低计算平台功耗的方法。 耦合到计算平台的端点设备包括第一数据缓冲器和第二数据缓冲器。 第一数据缓冲器缓冲经由第一通信介质发送到外部设备的输出数据。 第二数据缓冲器缓冲经由第一通信介质从外部设备接收的输入数据。 第一或第二数据缓冲器中的至少一个可以在另一数据缓冲器的活动窗口期间经由第二通信介质选择性地与计算平台通信。 至少部分地基于系统空闲信号,可以由第一和/或第二数据缓冲器请求活动窗口。 对于一些实施例,第一通信介质是以太网链路。 此外,对于一些实施例,第二通信介质是外围组件互连Express(PCIe)链路。