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    • 8. 发明申请
    • Packaging architecture for a multiple array transceiver using a flexible cable
    • 使用柔性电缆的多阵列收发器的封装架构
    • US20030103734A1
    • 2003-06-05
    • US10006835
    • 2001-11-05
    • International Business Machines Corporation
    • Johnny R. BrezinaBrian M. KerriganGerald D. Malagrino JR.James R. Moon
    • G02B006/42
    • G02B6/4246G02B6/4292
    • The packaging architecture for a multiple array transceiver using a flexible cable of the present invention provides a 90-degree transition between an optical signal input at a communications chassis bulkhead and an interior board within the communications chassis. The packaging architecture system comprises a forward vertical carrier having an optical converter, a paddle card, a flexible cable operably connected between the forward vertical carrier and the paddle card, and a rearward horizontal I/O block operably connected to the paddle card, the rearward horizontal I/O block oriented about 90 degrees from the forward vertical carrier. The multiple array transceiver makes the 90-degree transition within a narrow gap established by industry and manufacturer standards. The multiple array transceiver further provides cooling through a heat sink.
    • 使用本发明的柔性电缆的多阵列收发器的封装架构提供了在通信机箱隔板输入的光信号与通信机箱内的内板之间的90度转换。 包装架构系统包括前向垂直载体,其具有光学转换器,桨形卡,可操作地连接在正向垂直载体和桨形卡之间的柔性电缆以及可操作地连接到桨状卡的向后水平I / O块, 水平I / O块与前向垂直载体取向约90度。 多阵列收发器使得90度的转换在由行业和制造商标准确定的狭窄差距内。 多阵列收发器进一步通过散热器提供冷却。
    • 9. 发明申请
    • Optical alignment in a fiber optic transceiver
    • 光纤收发器中的光学对准
    • US20030086662A1
    • 2003-05-08
    • US10007027
    • 2001-11-05
    • International Business Machines Corporation
    • Johnny R. BrezinaChristopher M. GabelBrian M. KerriganBenjamin M. KreuzRoger T. LindquistGerald D. Malagrino JR.James R. Moon
    • G02B006/36
    • G02B6/4246G02B6/4231G02B6/4234G02B6/4239
    • The present invention provides methods for aligning a fiber optic cable with an optical component on a device carrier using a fiber optic lens assembly. One method provides that movement of the lens assembly is fixed with respect to the fiber optic cable. Light is sent through the lens assembly. The fixed lens assembly and fiber optic cable are moved with respect to the device carrier. The light sent though the fixed lens assembly is monitored, and movement of the fixed lens assembly is fixed with respect to the device carrier according to the monitored light. Another method provides that movement of the lens assembly is fixed with respect to the device carrier. Light is sent through the lens assembly. The fixed lens assembly and device carrier are moved with respect to the fiber optic cable. The light sent though the fixed lens assembly is monitored, and movement of the fixed lens assembly is fixed with respect to the fiber optic cable according to the monitored light. The present invention further provides aligned transceiver assemblies having a fiber optic cable, device carrier, and fiber optic lens assembly having features that facilitate alignment and fixing according to the invention methods.
    • 本发明提供了使用光纤透镜组件将光纤电缆与装置载体上的光学部件对准的方法。 一种方法提供了透镜组件相对于光纤电缆固定的移动。 光通过镜头组件传送。 固定透镜组件和光纤电缆相对于设备载体移动。 通过固定透镜组件发送的光被监视,并且固定透镜组件的移动根据监视的光而相对于装置载体固定。 另一种方法提供了透镜组件相对于装置载体的移动。 光通过镜头组件发送。 固定透镜组件和装置载体相对于光纤电缆移动。 通过固定透镜组件发送的光被监视,并且固定透镜组件的运动相对于光纤电缆根据监视的光被固定。 本发明还提供了具有光纤电缆,器件载体和光纤透镜组件的对准的收发器组件,其具有根据本发明的方法便于对准和固定的特征。