Wavelength auto-negotiation
    3.
    发明授权
    Wavelength auto-negotiation 有权
    波长自动协商

    公开(公告)号:US09313562B2

    公开(公告)日:2016-04-12

    申请号:US13958561

    申请日:2013-08-04

    Abstract: An apparatus includes a bank of optical detectors, an input optical filter and a selector. The optical detectors are configured to output respective detection indications in response to detecting a presence of an optical signal. The input optical filter is configured to receive an input optical signal having an input wavelength, and to route the input optical signal to one of the optical detectors in the bank depending on the input wavelength. The selector is configured to select an output wavelength based on the detection indications of the optical detectors, and to cause generation and transmission of an output optical signal at the selected output wavelength.

    Abstract translation: 一种装置包括一组光学检测器,输入滤光器和选择器。 光检测器被配置为响应于检测到光信号的存在而输出相应的检测指示。 输入滤光器被配置为接收具有输入波长的输入光信号,并且根据输入波长将输入光信号路由到存储体中的一个光检测器。 选择器被配置为基于光学检测器的检测指示来选择输出波长,并且使得在所选择的输出波长处的输出光信号的产生和传输。

    Compensating for transmitter nonlinearities
    5.
    发明申请

    公开(公告)号:US20200252032A1

    公开(公告)日:2020-08-06

    申请号:US16779610

    申请日:2020-02-02

    Abstract: A method for communication includes producing an error signal by comparing a driving signal applied to a transmitter to an output signal generated by the transmitter in response to the driving signal. The error signal is decomposed into a linear component having a first memory depth and a nonlinear component having one or more polynomial orders and a second memory depth that is less than the first memory depth. First coefficients, up to the first memory depth, of a linear predistortion kernel are computed for application to the driving signal so as to compensate for the linear component of the error signal. Second coefficients for the one or more polynomial orders, up to the second memory depth, of a nonlinear predistortion kernel are computed so as to compensate for the nonlinear component of the error signal. Operation of the transmitter is optimized using the first and second coefficients.

    OPTICAL TESTING OF FK MODULATORS FOR SILICON PHOTONICS APPLICATIONS

    公开(公告)号:US20180335653A1

    公开(公告)日:2018-11-22

    申请号:US15597835

    申请日:2017-05-17

    CPC classification number: G02F1/025 G02F2001/0157

    Abstract: An method for characterizing a modulator for fabricating a silicon photonics circuit and an apparatus (e.g., a silicon photonics wafer) made via the method are described. The method includes determining an absorption spectrum of a modulator and determining, based at least on the determined absorption spectrum, an operational bandwidth of the modulator. The method further includes selecting a laser for coupling with the modulator using the operational bandwidth of the modulator. In this way, the laser is selected such that it has an emission bandwidth that corresponds to the operational bandwidth of the modulator.

    High-reliability active optical cable (AOC) with redundant emitters
    8.
    发明授权
    High-reliability active optical cable (AOC) with redundant emitters 有权
    具有冗余发射器的高可靠性有源光缆(AOC)

    公开(公告)号:US09351055B2

    公开(公告)日:2016-05-24

    申请号:US14458273

    申请日:2014-08-13

    CPC classification number: H04Q11/0005 H04B10/032 H04Q2011/0043

    Abstract: An apparatus includes an array of electro-optical transducers, control circuitry, and a connector housing. The electro-optical transducers are configured to convert between electrical signals and respective optical signals conveyed over respective optical fibers. The control circuitry is configured, in response to a failure of a first electro-optical transducer in the array that is associated with a given optical fiber, to switch one or more of the electrical signals and the optical signals so as to replace the first electro-optical transducer with a second electro-optical transducer in the array in conveying an optical signal over the given optical fiber. The connector housing contains the array of the electro-optical transducers and the control circuitry.

    Abstract translation: 一种装置包括电光换能器,控制电路和连接器壳体阵列。 电光换能器被配置为在电信号和通过各个光纤传送的各个光信号之间进行转换。 控制电路被配置为响应于与给定光纤相关联的阵列中的第一电光换能器的故障,以切换电信号和光信号中的一个或多个,以便代替第一电 - 光学传感器,其中阵列中的第二电光换能器在给定光纤上传送光信号。 连接器壳体包含电光换能器和控制电路的阵列。

    High-reliability Active Optical CABLE (AOC) with Redundant Emitters
    9.
    发明申请
    High-reliability Active Optical CABLE (AOC) with Redundant Emitters 有权
    高可靠性有源光电缆(AOC)与冗余发射器

    公开(公告)号:US20150050015A1

    公开(公告)日:2015-02-19

    申请号:US14458273

    申请日:2014-08-13

    CPC classification number: H04Q11/0005 H04B10/032 H04Q2011/0043

    Abstract: An apparatus includes an array of electro-optical transducers, control circuitry, and a connector housing. The electro-optical transducers are configured to convert between electrical signals and respective optical signals conveyed over respective optical fibers. The control circuitry is configured, in response to a failure of a first electro-optical transducer in the array that is associated with a given optical fiber, to switch one or more of the electrical signals and the optical signals so as to replace the first electro-optical transducer with a second electro-optical transducer in the array in conveying an optical signal over the given optical fiber. The connector housing contains the array of the electro-optical transducers and the control circuitry.

    Abstract translation: 一种装置包括电光换能器,控制电路和连接器壳体阵列。 电光换能器被配置为在电信号和通过各个光纤传送的各个光信号之间进行转换。 控制电路被配置为响应于与给定光纤相关联的阵列中的第一电光换能器的故障,以切换电信号和光信号中的一个或多个,以便代替第一电 - 光学传感器,其中阵列中的第二电光换能器在给定光纤上传送光信号。 连接器壳体包含电光换能器和控制电路的阵列。

    SYSTEMS, METHODS, AND DEVICES FOR INTERCONNECTING NETWORK DEVICES

    公开(公告)号:US20240015115A1

    公开(公告)日:2024-01-11

    申请号:US17862068

    申请日:2022-07-11

    Inventor: Shai Cohen

    CPC classification number: H04L49/15 H04L49/253 H04L49/30

    Abstract: An apparatus for interconnecting devices in a network comprises a connection interface with a first face and a second face opposite the first face. The apparatus includes a first 2D array of first connection points arranged on the first face of the connection interface. Each first connection point in each column of the first 2D array connects to a different host device from among a plurality of host devices, and each first connection point in each row of the first 2D array connects to a single host device from among the plurality of host devices. A second 2D array of second connection points is arranged on the second face of the connection interface. Each second connection point is connected to a respective first connection point, each second connection point in each column of the second 2D array connects to a single network switch from among a plurality of network switches, and each second connection point in each row of the second 2D array connects to a different network switch from among the plurality of network switches.

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