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    • 53. 发明授权
    • Optical transceiver
    • 光收发器
    • US07200335B2
    • 2007-04-03
    • US10229748
    • 2002-08-28
    • Masahiko TsumoriHaruo TanakaTomohiro Yamazaki
    • Masahiko TsumoriHaruo TanakaTomohiro Yamazaki
    • H04B10/00
    • H04B10/1143
    • An optical transceiver is equipped with at least one coupling lens which condenses reception signal light from an optical medium and condenses transmission signal light to the optical medium, an optical plate which passes the reception signal light and reflects the transmission signal light, a light receiving element which receives the reception signal light passed through the optical plate, and a light emitting element which transmits the transmission signal light so as to be reflected by the optical plate, wherein an emission port of the transmission signal light of the light emitting element is arranged at a position to enable the transmission signal light from the light emitting element to form an image in the optical medium via the optical plate and the coupling lens, and wherein the emission port of the transmission signal light of the light emitting element is arranged in a direction that makes the incident angle formed on the optical plate by the beam center line of the transmission signal light transmitted from the light emitting element larger than the incident angle of the beam center line for maximally condensing the transmission signal light from the light emitting element to the optical medium in order to move the beam center line of the transmission signal light from the light emitting element away from the light receiving element, whereby it becomes possible to reduce the near-end crosstalk from the light emitting element to the light receiving element in the optical transceiver.
    • 一种光收发器配备有至少一个耦合透镜,其将来自光学介质的接收信号光聚合,并将透射信号光冷凝到光学介质,使得接收信号光通过并反射透射信号光的光学板,光接收元件 其接收通过光学板的接收信号光,以及发送透射信号光以被光学板反射的发光元件,其中发光元件的透射信号光的发射端口布置在 使来自发光元件的透射信号的光能够经由光学板和耦合透镜在光学介质中形成图像的位置,并且其中发光元件的透射信号光的发射端口被布置在 这使得通过透镜的光束中心线在光学板上形成入射角 从发光元件发射的光束信号光大于光束中心线的入射角,以便将来自发光元件的透射信号光最大程度地聚光到光学介质,以便将来自发光元件的透射信号光的光束中心线移动 发光元件远离光接收元件,从而可以减少光收发器中从发光元件到光接收元件的近端串扰。