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    • 1. 发明授权
    • Optical transmission device and optical transmission method
    • 光传输装置及光传输方式
    • US08150258B2
    • 2012-04-03
    • US12343480
    • 2008-12-24
    • Katsuhiko Hakomori
    • Katsuhiko Hakomori
    • H04B10/08
    • H04B10/071H04B10/0771
    • An optical transmission device for controlling an optical signal output includes a return light detection section for detecting return light of the optical signal transmitted via the optical transmission line; a superimposed light transmission section for generating superimposed light having a superimposed basic low-frequency wave and transmitting the light when return light is detected by the return light detection section; a return light identification section for identifying the return light detected by the return light detection section as Fresnel light caused by a disconnection of the optical connector or Stokes light caused by stimulated Brillouin scattering based on an analysis result of the return superimposed light with respect to the superimposed light transmitted by the superimposed light transmission section.
    • 用于控制光信号输出的光传输装置包括用于检测通过光传输线传输的光信号的返回光的返回光检测部分; 叠加光透射部分,用于产生具有叠加的基本低频波的叠加光,并且在由返回光检测部检测到返回光时透射光; 一个返回光识别部分,用于将由返回光检测部分检测的返回光识别为由受激布里渊散射引起的光连接器或斯托克斯光的断开引起的菲涅尔光,基于返回的叠加光的分析结果相对于 由叠加光透射部分透射的叠加光。
    • 3. 发明授权
    • Optical receiver
    • 光接收机
    • US07903984B2
    • 2011-03-08
    • US12031841
    • 2008-02-15
    • Katsuhiko HakomoriMasakazu Horishita
    • Katsuhiko HakomoriMasakazu Horishita
    • H04B10/00
    • H04B10/69H01L31/08
    • An optical receiver comprising: a photoelectric converting unit converting an input optical signal into an converted electrical signal; a splitting unit splitting the converted electrical signal into a plurality of split electrical signals; an amplifier amplifying one of the plurality of the split electrical signals with a first input time constant and thereby outputting an output signal; a detection circuit detecting an interruption of the input optical signal with a second input time constant on the basis of one of the plurality of the split electrical signals other than the one of the plurality of the split electrical signals input to the amplifier and thereby outputting a detection signal; and a delay circuit configured to delay the detection signal; wherein, the second input time constant of the detection circuit is smaller than the first input time constant of the amplifier.
    • 一种光接收机,包括:光电转换单元,将输入光信号转换成转换的电信号; 分离单元,将转换的电信号分解为多个分离的电信号; 放大器,以第一输入时间常数放大多个分割电信号中的一个,从而输出输出信号; 基于除了输入到放大器的多个分割电信号中的一个以外的多个分离电信号中的一个分离电信号中的第二输入时间常数来检测输入光信号的中断的检测电路,从而输出 检测信号; 以及延迟电路,被配置为延迟所述检测信号; 其中,检测电路的第二输入时间常数小于放大器的第一输入时间常数。
    • 4. 发明申请
    • LINE FAULT DETECTION CIRCUIT
    • 线路故障检测电路
    • US20080074153A1
    • 2008-03-27
    • US11858258
    • 2007-09-20
    • Katsuhiko Hakomori
    • Katsuhiko Hakomori
    • H03K5/1532
    • G01R31/021H03K5/1532H03K5/24
    • A line trouble detecting circuit comprises a peak detecting circuit, a first comparison circuit, a bottom detecting circuit, a bottom detecting circuit, a second comparison circuit, and a signal keeping circuit.The peak detecting circuit detects a peak voltage of amplitude of the one of the differential signal. The first comparison circuit compares an output of the peak detector and a first reference voltage. The bottom detecting circuit detects bottom voltage of the amplitude of the one of the differential signal. The second comparison circuit compares an output of the bottom detecting circuit and a second reference voltage. The signal keeping circuit keeps a signal from the first comparison circuit or the second comparison circuit.
    • 线路故障检测电路包括峰值检测电路,第一比较电路,底部检测电路,底部检测电路,第二比较电路和信号保持电路。 峰值检测电路检测差分信号之一的振幅的峰值电压。 第一比较电路比较峰值检测器的输出和第一参考电压。 底部检测电路检测差分信号之一的振幅的底部电压。 第二比较电路比较底部检测电路的输出和第二参考电压。 信号保持电路保持来自第一比较电路或第二比较电路的信号。
    • 7. 发明申请
    • Communication module
    • 通讯模块
    • US20120008303A1
    • 2012-01-12
    • US13137831
    • 2011-09-15
    • Katsuhiko HAKOMORI
    • Katsuhiko HAKOMORI
    • H05K9/00
    • H05K9/0058G02B6/4246G02B6/4277
    • An electromagnetic wave suppression material is fixed to a case of a communication module. The electromagnetic wave suppression material suppresses radiation of electromagnetic waves by coming into contact with a cage that is a module insertion portion of a chassis when the communication module is inserted into the cage. A piezoelectric element is provided on the case, and located between the case and the electromagnetic wave suppression material. When the communication module is inserted into the cage, the controller applies a voltage to the piezoelectric element to stretch it by the applied voltage, thereby increasing contact pressure between the cage and the electromagnetic wave suppression material.
    • 电磁波抑制材料固定在通信模块的情况下。 电磁波抑制材料通过在将通信模块插入保持架时与作为机箱的模块插入部的保持架抵接而抑制电磁波的辐射。 在壳体上设有压电元件,位于外壳和电磁波抑制材料之间。 当通信模块插入到保持架中时,控制器向压电元件施加电压以通过施加的电压拉伸,从而增加保持架和电磁波抑制材料之间的接触压力。
    • 9. 发明申请
    • Optical module
    • 光模块
    • US20070264022A1
    • 2007-11-15
    • US11826975
    • 2007-07-19
    • Katsuhiko HakomoriMasakazu Horishita
    • Katsuhiko HakomoriMasakazu Horishita
    • H04B10/00
    • H01L27/144H01L31/02002H04B10/40
    • In an optical module in which a transmitter and a receiver that respectively outputs and receives optical signals are stored in a casing, the transmitter and the receiver are connected to a common power line and to a common ground line, and a ferrite bead is arranged on the ground line in the receiver. The ferrite bead absorbs a high-frequency current component out of components in an electric signal passing through the ground line on which the ferrite bead is arranged. An inductance component that evolves on a ground line and a power line of a light receiving element and oscillation of a series resonance circuit that is formed of a capacitance component of the light receiving element are suppressed to reduce crosstalk.
    • 在分别输出和接收光信号的发射器和接收器存储在壳体中的光学模块中,发射器和接收器连接到公共电源线和公共接地线,铁氧体磁珠布置在 接收器中的接地线。 铁氧体磁珠通过穿过铁氧体磁珠的接地线的电信号中的部件中的高频电流分量吸收。 抑制在接地线和光接收元件的电力线上演化的电感分量和由光接收元件的电容分量形成的串联谐振电路的振荡,以减少串扰。
    • 10. 发明申请
    • OPTICAL TRANSMISSION DEVICE AND OPTICAL TRANSMISSION METHOD
    • 光传输设备和光传输方法
    • US20090169203A1
    • 2009-07-02
    • US12343480
    • 2008-12-24
    • Katsuhiko HAKOMORI
    • Katsuhiko HAKOMORI
    • H04B10/08
    • H04B10/071H04B10/0771
    • An optical transmission device for controlling an optical signal output includes a return light detection section for detecting return light of the optical signal transmitted via the optical transmission line; a superimposed light transmission section for generating superimposed light having a superimposed basic low-frequency wave and transmitting the light when return light is detected by the return light detection section; a return light identification section for identifying the return light detected by the return light detection section as Fresnel light caused by a disconnection of the optical connector or Stokes light caused by stimulated Brillouin scattering based on an analysis result of the return superimposed light with respect to the superimposed light transmitted by the superimposed light transmission section.
    • 用于控制光信号输出的光传输装置包括用于检测通过光传输线传输的光信号的返回光的返回光检测部分; 叠加光透射部分,用于产生具有叠加的基本低频波的叠加光,并且在由返回光检测部检测到返回光时透射光; 一个返回光识别部分,用于将由返回光检测部分检测的返回光识别为由受激布里渊散射引起的光连接器或斯托克斯光的断开引起的菲涅尔光,基于返回的叠加光的分析结果相对于 由叠加光透射部分透射的叠加光。