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    • 5. 发明申请
    • Composites for wireless optical communication
    • 用于无线光通信的复合材料
    • US20070098333A1
    • 2007-05-03
    • US11546931
    • 2006-10-12
    • Keith GossenShridhar YarlagaddaEric WetzelDaniel O'Brien
    • Keith GossenShridhar YarlagaddaEric WetzelDaniel O'Brien
    • G02B6/36G02B6/12
    • G02B6/4214
    • An apparatus and process for operating connectorless, free-space data porting optical structural composites with integrated optical or electrical busses are disclosed. Optical transceivers and fiber optic/coaxial cable are embedded into a foam-core composite sandwich structure which is infiltrated with vinyl ester resin. The embedded busses are composed of a signal source producing an optical free space signal, which is shone onto an optical/electrical bus containing a transceiver for converting this signal into another electrical or optical signal which then is imprinted upon a coaxial or fiber optic cable buried in the composite structure. The signal traverses the composite structure, then a transceiver converts the electrical/optical signal into a free space optical signal which shines out of the composite structure to an outside free space optical receiver. The optical free space signal is oriented to be received and transmitted at an angle of about 90 degrees relative to the composite material.
    • 公开了一种用于操作无连接器,自由空间数据移植具有集成光学或电气总线的光学结构复合材料的装置和方法。 光收发器和光纤/同轴电缆被嵌入到用乙烯基酯树脂渗透的泡沫芯复合夹层结构中。 嵌入式总线由产生光学自由空间信号的信号源组成,该信号源被照射到包含用于将该信号转换成另一个电或光信号的收发器的光/电总线上,该电信号或光信号被印在同轴或光缆上 在复合结构中。 信号穿过复合结构,然后收发器将电/光信号转换成从复合结构发射到外部自由空间光接收器的自由空间光信号。 光学自由空间信号被定向为相对于复合材料以约90度的角度接收和传播。