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    • 7. 发明公开
    • OPTICAL COMMUNICATION DEVICE AND OPTICAL COMMUNICATION METHOD
    • OPTISCHE KOMMUNIKATIONSVORRICHTUNG UND OPTISCHES KOMMUNIKATIONSVERFAHREN
    • EP3125444A1
    • 2017-02-01
    • EP15768335.0
    • 2015-02-13
    • Sony Corporation
    • YAMAMOTO, MasanariTOBA, KazuakiSUZUKI, KazuyoshiKONDO, KazumotoNAKAJIMA, YasuhisaMIYAZAKI, Satoshi
    • H04B10/073
    • H04B10/073G02B6/3895H04B10/25
    • Light signal transmitter units 21-1 to 21-n of a transmitter device 20 perform optical communication with a receiver device 40 via optical fiber cables 61-1 to 61-n of an optical interface cable 61. A connection detection unit 22 detects whether connection to the receiver device is established via the optical interface cable, and a visible light source control unit 24 causes a visible light source unit 25 to emit visible light that can identify by an attribute a connection relationship with the receiver device connected via the optical interface cable, only when the connection to the receiver device 40 is not detected, and causes visible light superposition units 26-1 to 26-n to superpose the visible light on the cable. The receiver device also superposes on the cable the visible light that can identify by the attribute the connection relationship with the transmitter device connected via the optical interface cable, only when the connection to the transmitter device 20 is not established, in the same way as the transmitter device. The connection between the optical communication devices can be correctly and easily performed by using the optical transmission path.
    • 发送装置20的光信号发送单元21-1〜21-n经由光接口电缆61的光纤电缆61-1〜61-n与接收装置40进行光通信。连接检测部22检测是否连接 通过光接口电缆建立接收机设备,并且可见光源控制单元24使可见光源单元25发射可见光,其可以通过属性识别与经由光接口电缆连接的接收机设备的连接关系 只有当没有检测到与接收机40的连接,并且使可见光叠加单元26-1至26-n将可见光叠加在电缆上时。 接收机设备还在电缆上叠加可见光,其可以通过属性识别与经由光接口电缆连接的发射机设备的连接关系,只有当与发射机设备20的连接不被建立时,可以以与 发射机设备。 光通信设备之间的连接可以通过使用光传输路径被正确且容易地执行。
    • 8. 发明公开
    • OPTICAL CONNECTOR, CABLE, AND OPTICAL COMMUNICATION DEVICE
    • OPTISCHER STECKER,KABEL UND VORRICHTUNG ZUR OPTISCHEN KOMMUNIKATION
    • EP3101457A1
    • 2016-12-07
    • EP15758947.4
    • 2015-01-09
    • Sony Corporation
    • TOBA, KazuakiYAMAMOTO, MasanariSUZUKI, KazuyoshiKONDO, KazumotoNAKAJIMA, YasuhisaMIYAZAKI, Satoshi
    • G02B6/42G02B6/32
    • H04B10/60G02B6/32G02B6/3878G02B6/4206G02B6/4292H04B10/25
    • Lenses 311a that collect an entering light signal to a light transmission path or a light detection unit is provided in a plug housing 315 coupled to a transmission side optical connector of the light signal. In the housing 315, the light transmission path or the light detection unit is retained for each lens 311a. In the housing 315, attachment portions 316L, 316R that attach the housing 315 to the transmission side optical connector is provided in an array direction of a plurality of lenses. In the lenses 311a, an entrance range of the light signal that is collectable to the light transmission path or the light detection unit is expanded in a direction orthogonal to the array direction of the lenses. Even if force is exerted in a turning direction about an axis at the array direction LP of the lenses, the entering light signal can be collected to the light transmission path or the light detection unit, in order to perform robust optical communication.
    • 在与光信号的发送侧光连接器耦合的插头壳体315中设置有将入射光信号收集到光传输路径或光检测单元的透镜311a。 在壳体315中,为每个透镜311a保留光传输路径或光检测单元。 在壳体315中,在多个透镜的排列方向上设置将壳体315附接到透射侧光连接器的安装部316L,316R。 在透镜311a中,可以收集到光传输路径或光检测单元的光信号的入射范围在与透镜的阵列方向正交的方向上扩展。 即使在围绕透镜的排列方向LP的轴线的转动方向上施加力,也可以将入射光信号收集到光传输路径或光检测单元,以便进行鲁棒的光通信。