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    • 5. 发明授权
    • Optical digital regenerator
    • 光学数字再生器
    • US06532091B1
    • 2003-03-11
    • US09246256
    • 1999-02-08
    • Tetsuya MiyazakiTomohiro OtaniMasatoshi SuzukiNoboru EdagawaShu Yamamoto
    • Tetsuya MiyazakiTomohiro OtaniMasatoshi SuzukiNoboru EdagawaShu Yamamoto
    • H04B1002
    • H04B10/299
    • An optical digital regenerator for digitally regenerating an input signal in an intact optical state. A first operating unit has a first probe light generator for generating a first probe light and a first optical operator for converting a waveform of the first probe light output from a first probe light generator according to an optical intensity waveform of the input signal light. A clock extractor extracts a clock component of the input signal light from a photocurrent generated by the first optical operator. A second optical operating unit has a second probe light generator for generating a second probe light pulsed in accordance with the clock output from the clock extractor and a second optical operator for sampling the second probe pulse light output from the second probe light generator.
    • 一种用于以完整光学状态数字再生输入信号的光学数字再生器。 第一操作单元具有用于产生第一探测光的第一探测光发生器和用于根据输入信号光的光强度波形转换从第一探测光发生器输出的第一探测光的波形的第一光学操作器。 时钟提取器从由第一光学运算器产生的光电流提取输入信号光的时钟分量。 第二光学操作单元具有第二探测光发生器,用于产生根据来自时钟提取器的时钟输出脉冲的第二探测光,以及第二光学操作器,用于对从第二探测光发生器输出的第二探测脉冲光进行采样。
    • 6. 发明授权
    • Multi-wavelength light source and discrete-wavelength-variable light source
    • 多波长光源和离散波长可变光源
    • US06285477B1
    • 2001-09-04
    • US09469936
    • 1999-12-21
    • Tetsuya MiyazakiNoboru EdagawaShu Yamamoto
    • Tetsuya MiyazakiNoboru EdagawaShu Yamamoto
    • H04J1402
    • H01S3/2383H01S3/06791H01S3/08086H04J14/02
    • In a light source for generating light containing multiple wavelengths substantially uniform in intensity, a wavelength demultiplexing element 10 (for example, waveguide-type wavelength selecting filter) demultiplexes input light into a plurality of wavelengths &lgr;1 through &lgr;32. Optical amplifiers 14-1 through 14-32 amplify outputs of the element 10 and applies them to input ports of a wavelength multiplexing element 12. The wavelength multiplexing element 12 wavelength-multiplexes their input. Output of the wavelength multiplexing element 12 is applied to a fiber coupler 16 which, in turn, applies one of its outputs to the wavelength demultiplexing element 10. The optical amplifiers 14 have a gain larger by approximately 10 dB than the loss in the optical loop made of the element 10, optical amplifier 14, element 12 and fiber coupler 16. The other output of the fiber coupler 16 is wavelength-multiplex light containing wavelengths &lgr;1 through &lgr;32.
    • 在用于产生强度基本均匀的多个波长的光的光源中,波长解复用元件10(例如,波导型波长选择滤波器)将输入光分离成多个波长lambd1至lambd32。 光放大器14-1至14-32放大元件10的输出并将其施加到波长多路复用元件12的输入端口。波长复用元件12对其输入进行波长多路复用。 波长多路复用元件12的输出被施加到光纤耦合器16,光纤耦合器16又将其一个输出施加到波长解复用元件10.光放大器14具有比光环路中的损耗大约10dB的增益 由元件10,光放大器14,元件12和光纤耦合器16制成。光纤耦合器16的另一个输出是波长lambd1至lambd32的波长多路复用光。
    • 7. 发明授权
    • Multi-wavelength light source and discrete-wavelength-variable light source
    • 多波长光源和离散波长可变光源
    • US06219163B1
    • 2001-04-17
    • US09625385
    • 2000-07-26
    • Tetsuya MiyazakiNoboru EdagawaShu Yamamoto
    • Tetsuya MiyazakiNoboru EdagawaShu Yamamoto
    • H04J1402
    • H01S3/2383H01S3/067H01S3/06791H01S3/08086H04B2210/258H04J14/02
    • In a light source for generating light containing multiple wavelengths substantially uniform in intensity, a wavelength demultiplexing element 10 (for example, waveguide-type wavelength selecting filter) demultiplexes input light into a plurality of wavelengths &lgr;1 through &lgr;32. optical amplifiers 14-1 through 14-32 amplify outputs of the element 10 and applies them to input ports of a wavelength multiplexing element 12. The wavelength multiplexing element 12 wavelength-multiplexes their input. Output of the wavelength multiplexing element 12 is applied to a fiber coupler 16 which, in turn, applies one of its outputs to the wavelength demultiplexing element 10. The optical amplifiers 14 have a gain larger by approximately 10 dB than the loss in the optical loop made of the element 10, optical amplifier 14, element 12 and fiber coupler 16. The other output of the fiber coupler 16 is wavelength-multiplex light containing wavelengths &lgr;1 through &lgr;32.
    • 在用于产生强度基本均匀的多个波长的光的光源中,波长解复用元件10(例如,波导型波长选择滤波器)将输入光分离成多个波长lambd1至lambd32。 光放大器14-1至14-32放大元件10的输出并将其施加到波长多路复用元件12的输入端口。波长复用元件12对其输入进行波长多路复用。 波长多路复用元件12的输出被施加到光纤耦合器16,光纤耦合器16又将其一个输出施加到波长解复用元件10.光放大器14具有比光环路中的损耗大约10dB的增益 由元件10,光放大器14,元件12和光纤耦合器16制成。光纤耦合器16的另一个输出是波长lambd1至lambd32的波长多路复用光。
    • 8. 发明授权
    • Signal demultiplexing device and signal routing device in high speed transmission system
    • 高速传输系统中的信号分离装置和信号路由装置
    • US06741810B2
    • 2004-05-25
    • US09784558
    • 2001-02-15
    • Tomohiro OtaniTetsuya MiyazakiShu Yamamoto
    • Tomohiro OtaniTetsuya MiyazakiShu Yamamoto
    • H04J1408
    • H04J14/0223H04J14/08
    • In a signal demultiplexing device formed by a probe light source, a wavelength converter, and a wavelength demultiplexer, the probe light source is formed by a plurality of sub-probe light sources configured to respectively generate the sub-probe lights with the prescribed different wavelengths for respective time-slots, a multiplexer configured to multiplex the sub-probe lights generated by the plurality of sub-probe light sources, and a phase different giving unit configured to give phase differences corresponding to time-slot positions to the sub-probe lights multiplexed by the multiplexer, and to sequentially output the sub-probe lights with the phase differences in correspondence to respective time-slots.
    • 在由探测光源,波长转换器和波长解复用器形成的信号解复用装置中,探测光源由多个子探测光源形成,该多个子探测光源被配置为分别产生具有规定的不同波长的子探测光 对于各个时隙,多路复用器被配置为对由多个子探测光源产生的子探测光进行多路复用,以及相位不同给出单元,被配置为给子探针灯提供对应于时隙位置的相位差 通过多路复用器多路复用,并且依次输出具有与各个时隙对应的相位差的子探测灯。
    • 10. 发明授权
    • Optical wavelength routing device
    • 光波长路由设备
    • US06317534B1
    • 2001-11-13
    • US09215225
    • 1998-12-18
    • Tetsuya MiyazakiShu YamamotoKoichi MaruHisato Uetsuka
    • Tetsuya MiyazakiShu YamamotoKoichi MaruHisato Uetsuka
    • G02B628
    • G02B6/12011
    • An optical wavelength routing device comprises an arrayed waveguide comprising a plurality of channel waveguides formed on a substrate, a plurality of input waveguides having 12 input ports located on an input side of the arrayed waveguide, a plurality of output waveguides having 16 input ports located on an output side of the arrayed waveguide, an input slab waveguide for coupling the plurality of input waveguides to the arrayed waveguide to provide a first coupling portion on the side of the input waveguide, and an output slab waveguide for coupling the arrayed waveguide to the plurality of output waveguides to provide a second coupling portion on the side of the output waveguide, in which central wavelengths of lights input to the input ports and output from the output ports are controlled such that a difference between a predetermined wavelength and a central wavelength is suppressed within the range of +&dgr;&lgr;/4. By this structure, a maximum central wavelength difference can be suppressed at minimum.
    • 光波长路由设备包括阵列波导,其包括形成在衬底上的多个通道波导,多个输入波导,其具有位于阵列波导的输入侧上的12个输入端口,多个输出波导具有位于 阵列波导的输出侧,用于将多个输入波导耦合到阵列波导的输入平板波导,以在输入波导侧提供第一耦合部分,以及用于将阵列波导耦合到多个波导的输出平板波导 的输出波导,以在输出波导侧提供第二耦合部分,其中输入到输入端口的光的中心波长和从输出端口输出被控制,使得预定波长和中心波长之间的差被抑制 在+ deltalambd / 4的范围内。 通过这种结构,最大限度地抑制最大中心波长差。