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    • 2. 发明申请
    • FIBER OPTIC CABINET
    • 光纤柜
    • US20120256526A1
    • 2012-10-11
    • US13517382
    • 2009-12-30
    • Jian WeiYifeng CuiPeiyou XiongYingyu WangBin LuBin YuZhiyong XuYingliang Peng
    • Jian WeiYifeng CuiPeiyou XiongYingyu WangBin LuBin YuZhiyong XuYingliang Peng
    • G02B6/44
    • G02B6/4442
    • The present invention relates to a fiber optic telecommunication cabinet for use in fiber optic telecommunication networks. The fiber optic telecommunication cabinet comprises a base and a housing. The housing defines an internal cavity from an open first end that extends longitudinally to a closed second end. The base is configured for attachment to the open first end of the housing to provide an enclosed configuration. The base has a plurality of ports passing through the base to allow passage telecommunication cables into the fiber optic cabinet. A center support column extends from the base from the base. The fiber optic cabinet includes a plurality of patch panel frames disposed radially around the center support column and a patch cord management plate attached to the center support column above the plurality of patch panel frames.
    • 本发明涉及一种用于光纤通信网络的光纤通信柜。 光纤通信柜包括基座和外壳。 壳体从开放的第一端限定内腔,其纵向延伸到闭合的第二端。 基座被配置为附接到壳体的敞开的第一端以提供封闭的构造。 基座具有穿过基座的多个端口,以允许将通信电缆通入光纤机柜。 中心支撑柱从底座延伸出来。 光纤机柜包括围绕中心支撑柱径向布置的多个接线板框架和在多个接线板框架上方连接到中心支撑柱的接插线管理板。
    • 4. 发明授权
    • Optical rotary position encoder
    • 光学旋转位置编码器
    • US06399940B1
    • 2002-06-04
    • US09309398
    • 1999-05-10
    • Yifeng CuiHadi A. AkeelMichael A. McNeill
    • Yifeng CuiHadi A. AkeelMichael A. McNeill
    • G01D534
    • G01D5/3473G01D5/34715
    • The present invention recognizes that the limiting structures to size reduction for an optical encoder were the laser diode/photo diode package and the photodetector with amplifier package(s). The invention includes removing the discrete components from the laser diode cover package and mounting the much smaller discrete components on a base framework. The photodetector with amplifier package of the invention have an altered photodetector/amplifier geometry including shortening the leads between them. This resulted in significant size reduction of the encoder, a reduction in required gain and resulting increase in bandwidth. The entire base framework is temperature cooled by disposing two thermo-electric coolers between the base framework and an adjacent heat sink. Such positioning of the two coolers between the base framework and it's adjacent heat sink stabilizes both the laser diode's and the photo detector's outputs. In addition this novel design stabilizes the entire footprint/base of the encoder from thermal effects, whatever their origin.
    • 本发明认识到光学编码器的尺寸减小的限制结构是激光二极管/光电二极管封装和具有放大器封装的光电检测器。 本发明包括从激光二极管封装封装中去除分立组件,并将更小的分立组件安装在基架上。 具有本发明的放大器封装的光电检测器具有改变的光电检测器/放大器几何形状,包括缩短它们之间的引线。 这导致编码器的显着尺寸减小,所需增益的减少和带宽的增加。 整个基座框架通过在基座框架和相邻的散热器之间设置两个热电冷却器进行温度冷却。 两个冷却器在基座框架及其相邻散热器之间的这种定位稳定了激光二极管和光电检测器的输出。 此外,这种新颖的设计使编码器的整个占地面积/基数均不受热效应的影响,无论其起源如何。