首页> 外国专利> OPTIMIZED RECONFIGURABLE OPTICAL ADD-DROP MULTIPLEXER ARCHITECTURE WITH MEMS-BASED ATTENUATION OR POWER MANAGEMENT

OPTIMIZED RECONFIGURABLE OPTICAL ADD-DROP MULTIPLEXER ARCHITECTURE WITH MEMS-BASED ATTENUATION OR POWER MANAGEMENT

机译:具有基于MEMS的衰减或电源管理的优化的可重构光学增减多路复用器架构

摘要

A wavelength selective switch architecture for ROADMs for switching the spectral channels of a multi-channel, multi-wavelength optical signal between input and output ports employs a biaxial MEMS port mirror array for optimal coupling efficiency and ITU grid alignment, an anamorphic beam expander for expanding input optical signals to create an elongated beam profile, a diffraction grating for spatially separating the spectral channels, an anamorphic focusing lens system, an array of biaxial elongated channel MEMS micromirrors, a built-in Optical Channel Monitor, and an electronic feedback control system. The bi-axial channel micromirrors are rotatable about one axis to switch spectral channels between ports, and are rotatable about an orthogonal axis to vary the coupling of the spectral channel to an output port and control attenuation of the spectral signal for complete blocking or for a predetermined power level. The architecture affords hitless switching, near notchless operation, ITU channel alignment, high passband, stability over a broad temperature range, and minimum insertion loss through the optimal optical coupling efficiency enabled by the feedback control system.
机译:用于ROADM的波长选择开关体系结构,用于在输入和输出端口之间切换多通道,多波长光信号的光谱通道,采用了双轴MEMS端口反射镜阵列,以实现最佳耦合效率和ITU网格对准,以及用于扩展的变形光束扩展器输入光信号以产生拉长的光束轮廓,用于空间分离光谱通道的衍射光栅,变形聚焦透镜系统,双轴拉长通道MEMS微镜阵列,内置的光通道监控器和电子反馈控制系统。双轴通道微镜可绕一个轴旋转以在端口之间切换光谱通道,并且可绕正交轴旋转以改变光谱通道与输出端口的耦合并控制光谱信号的衰减,以实现完全阻塞或信号衰减。预定功率水平。通过反馈控制系统实现的最佳光耦合效率,该架构可实现无中断切换,近乎无切口的操作,ITU信道对准,高通带,在宽温度范围内的稳定性以及最小的插入损耗。

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