1.
    发明专利
    未知

    公开(公告)号:DE60308675T2

    公开(公告)日:2007-08-16

    申请号:DE60308675

    申请日:2003-05-20

    Abstract: A wavelength selective switch is realized by combining a quantized dispersion element and an array of switching means. The quantized dispersion element enables to concentrate all the wavelengths within predetermined wavelength bands onto the same location in the switching array. With this arrangement, a low fill factor switching array can be used while maintaining good flat-top spectral performance with no spectral dips and improving alignment tolerances.

    WAVELENGTH CROSS CONNECT WITH PER PORT PERFORMANCE CHARACTERISTICS
    5.
    发明申请
    WAVELENGTH CROSS CONNECT WITH PER PORT PERFORMANCE CHARACTERISTICS 审中-公开
    波长交叉连接端口性能特性

    公开(公告)号:WO2007006142A1

    公开(公告)日:2007-01-18

    申请号:PCT/CA2006/001124

    申请日:2006-07-10

    Abstract: Abstract A wavelength cross connect is provided in which there is a dispersive arrangement per port for each input port and each output port. Some of the dispersive arrangements have differing characteristics so as to result in different performances at the ports. The dispersive arrangements can differ in the selection of different dispersive elements or differing coupling optics. A particular implementation features a first set of waveguide dispersive elements having first performance characteristics, and a second set of waveguide dispersive elements having second performance characteristics.

    Abstract translation: 摘要提供了一种波长交叉连接,其中每个端口和每个输出端口具有每个端口的色散配置。 一些分散布置具有不同的特性,从而导致端口的不同性能。 分散布置在不同色散元件或不同耦合光学元件的选择方面可能不同。 特定的实施方式具有第一组具有第一性能特性的波导色散元件和具有第二性能特性的第二组波导色散元件。

    A MICRO-ELECTRO-MECHANICAL-SYSTEM TWO DIMENSIONAL MIRROR WITH ARTICULATED SUSPENSION STRUCTURES FOR HIGH FILL FACTOR ARRAYS
    8.
    发明申请
    A MICRO-ELECTRO-MECHANICAL-SYSTEM TWO DIMENSIONAL MIRROR WITH ARTICULATED SUSPENSION STRUCTURES FOR HIGH FILL FACTOR ARRAYS 审中-公开
    具有用于高填充因子阵列的具有悬浮结构的微电子机械系统二维反射镜

    公开(公告)号:WO2004094301A1

    公开(公告)日:2004-11-04

    申请号:PCT/CA2004/000598

    申请日:2004-04-20

    Abstract: The invention provides a micro-electro-mechanical-system (MEMS) mirror device, comprising: a mirror having a 2-dimensional rotational articulated hinge at a first end, and having a 1-dimensional rotational articulated hinge at a second end opposite the first end; a movable cantilever connected to the mirror through the 1-dimensional rotational articulated hinge; a support structure connected to the mirror through the 2-dimensional rotational articulated hinge and connected to the movable cantilever; whereby movement of said movable cantilever causes rotation of the mirror in a first axis of rotation, and the mirror is also rotatable about a second torsional axis of rotation perpendicular to said first axis of rotation.

    Abstract translation: 本发明提供一种微电子机械系统(MEMS)镜装置,其包括:在第一端具有二维旋转铰接铰链的反射镜,并且在与第一端相对的第二端处具有一维旋转铰接铰链 结束; 通过一维旋转铰接铰链连接到镜子的可移动悬臂; 通过二维旋转关节铰链连接到反射镜并连接到可移动悬臂的支撑结构; 由此所述可移动悬臂的运动引起反射镜在第一旋转轴线中的旋转,并且所述反射镜也可以绕垂直于所述第一旋转轴线的第二扭转旋转轴线旋转。

    SHARED OPTICAL PERFORMANCE MONITORING
    9.
    发明申请
    SHARED OPTICAL PERFORMANCE MONITORING 审中-公开
    共享光学性能监控

    公开(公告)号:WO2006005192B1

    公开(公告)日:2006-05-18

    申请号:PCT/CA2005001100

    申请日:2005-07-15

    Abstract: An apparatus for shared optical performance monitoring (OPM) is provided. A wavelength sensitive device receives light at an input port and routes it wavelength selectively to a set of output ports. To perform optical performance monitoring on the output ports, a monitoring component of each output signal is extracted, and these monitoring components are then combined. A single OPM function is then performed on the combined signal. However, with knowledge of the wavelengths that were included in each output signal, a virtual OPM function can be realized for each output port. The per port functionality can include total power per port, power per wavelength per port, variable optical attentuation, dynamic gain equalization, the latter two examples requiring feedback.

    Abstract translation: 提供了一种用于共享光学性能监视(OPM)的设备。 波长敏感设备在输入端口接收光并将其波长选择性地路由到一组输出端口。 为了对输出端口进行光学性能监视,提取每个输出信号的监视组件,然后组合这些监视组件。 然后对组合信号执行单个OPM功能。 然而,通过了解每个输出信号中包含的波长,可以为每个输出端口实现虚拟OPM功能。 每端口功能可以包括每端口的总功率,每端口的每波长功率,可变光学注意度,动态增益均衡,后两个需要反馈的示例。

    SHARED OPTICAL PERFORMANCE MONITORING
    10.
    发明申请
    SHARED OPTICAL PERFORMANCE MONITORING 审中-公开
    共享光学性能监测

    公开(公告)号:WO2006005192A1

    公开(公告)日:2006-01-19

    申请号:PCT/CA2005/001100

    申请日:2005-07-15

    Abstract: An apparatus for shared optical performance monitoring (OPM) is provided. A wavelength sensitive device receives light at an input port and routes it wavelength selectively to a set of output ports. To perform optical performance monitoring on the output ports, a monitoring component of each output signal is extracted, and these monitoring components are then combined. A single OPM function is then performed on the combined signal. However, with knowledge of the wavelengths that were included in each output signal, a virtual OPM function can be realized for each output port. The per port functionality can include total power per port, power per wavelength per port, variable optical attentuation, dynamic gain equalization, the latter two examples requiring feedback.

    Abstract translation: 提供了一种用于共享光学性能监视(OPM)的设备。 波长敏感装置在输入端口接收光并将其波长选择性地路由到一组输出端口。 为了对输出端口执行光学性能监测,提取每个输出信号的监测组件,然后将这些监测组件组合。 然后对组合信号执行单个OPM功能。 但是,在了解每个输出信号中包含的波长的情况下,可以为每个输出端口实现虚拟OPM功能。 每个端口的功能可以包括每个端口的总功率,每端口每个波长的功率,可变光衰减,动态增益均衡,后两个示例需要反馈。

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