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    • 5. 发明申请
    • RADIATION RECEIVER APPARATUS
    • 辐射接收装置
    • US20160277120A1
    • 2016-09-22
    • US15036098
    • 2014-11-13
    • OSRAM OPTO SEMICONDUCTORS GMBH
    • Hubert HalbritterMarkus Lermer
    • H04B10/67H04B10/116H04B10/114
    • H04B10/675H04B10/1141H04B10/116H04B10/671H04B10/672
    • Radiation receiver apparatus with a radiation receiver and a radiation entrance face, wherein the radiation receiver includes an active region that detects radiation with a target wavelength in the near-infrared, an optical element is arranged between the radiation entrance face and the radiation receiver, an optical axis of the optical element extends through the radiation receiver, the optical element is shaped and arranged relative to the radiation receiver such that, of radiation incident on the radiation entrance face at an angle of greater than or equal to 40° to the optical axis, at most 10% is incident on the radiation receiver, and a visible light filter is formed between the radiation receiver and the radiation entrance face.
    • 具有辐射接收器和辐射入射面的辐射接收器装置,其中所述辐射接收器包括检测近红外线中的目标波长的辐射的有源区域,光学元件布置在所述辐射入射面和所述辐射接收器之间, 光学元件的光轴延伸穿过辐射接收器,光学元件相对于辐射接收器成形和布置,使得以与光轴成大于或等于40°的角度入射在辐射入射面上的辐射 ,最多10%入射到辐射接收器上,并且在辐射接收器和辐射入射面之间形成可见光滤光器。
    • 7. 发明授权
    • Multiple high frequency bands small form factor pluggable receiving unit
    • 多个高频带小型可插拔接收单元
    • US09363019B2
    • 2016-06-07
    • US14245740
    • 2014-04-04
    • EMBRIONIX DESIGN INC.
    • Steve Légaré-ValléeRenaud Lavoie
    • H04B10/50H04B10/69H04L7/00H04B10/40H04L25/20H04B10/67
    • H04B10/40H04B10/671H04B10/69H04L25/20
    • The present disclosure relates to a small form factor pluggable (SFP) unit for receiving multiple high frequency bands optical signals. The SFP unit comprises an optical connector for receiving an optical signal and means for generating two electrical signals based on the received optical signal. The SFP unit comprises two transimpedance amplifiers (TIAs) operating respectively at two determined ranges of frequencies, for respectively amplifying the first and second electrical signals. The SFP unit comprises a re-clocker for generating a re-clocked electrical signal based on either one of, or a combination of, the first and second amplified electrical signals. The SFP unit comprises a control unit for controlling the operating frequency of the re-clocker based on a determined quality of the re-clocked electrical signal. The SFP unit comprises an electrical connector for outputting the re-clocked electrical signal.
    • 本公开涉及一种用于接收多个高频带光信号的小型可插拔(SFP)单元。 SFP单元包括用于接收光信号的光连接器和用于基于接收的光信号产生两个电信号的装置。 SFP单元包括分别在两个确定的频率范围上操作的两个跨阻抗放大器(TIAs),用于分别放大第一和第二电信号。 SFP单元包括用于基于第一和第二放大电信号中的任一个或其组合产生重新计时的电信号的再计时器。 SFP单元包括控制单元,用于基于所确定的重新计时的电信号的质量来控制重新计时器的工作频率。 SFP单元包括用于输出重新计时的电信号的电连接器。
    • 8. 发明申请
    • SELF-EQUALIZING PHOTO DETECTOR
    • 自拍均衡摄影机
    • US20150331193A1
    • 2015-11-19
    • US14716735
    • 2015-05-19
    • California Institute of Technology
    • Behrooz AbiriSeyed Ali HajimiriFirooz AflatouniAndy Zhou
    • G02B6/28H01L31/105G02B6/293
    • H04B10/671G02B6/2861G02B6/2935G02B6/29352
    • A self-equalizing photo-detector (SEPD) includes, in part, a multitude of optical splitters and photo detectors, and at least one optical delay element. The first optical splitter splits an optical signal into second and third optical signals. The optical delay element delays the second optical signal to generate a fourth optical signal. The second optical splitter splits a signal representative of the fourth optical signal to generate fifth and sixth optical signals. The first photo detector receives the third optical signal via a first optical path, has an anode terminal coupled to an output terminal of the detector and a cathode terminal coupled to a first supply voltage. The second photo detector receives the sixth optical signal via a second optical path, has an anode terminal coupled to a second supply voltage and a cathode terminal coupled to the output terminal of the detector.
    • 自平衡光检测器(SEPD)部分包括多个光分路器和光电检测器以及至少一个光延迟元件。 第一光分路器将光信号分离成第二和第三光信号。 光延迟元件延迟第二光信号以产生第四光信号。 第二光分路器分离代表第四光信号的信号以产生第五和第六光信号。 第一光电检测器经由第一光路接收第三光信号,具有耦合到检测器的输出端的阳极端子和耦合到第一电源电压的阴极端子。 第二光电检测器经由第二光路接收第六光信号,具有耦合到第二电源电压的阳极端子和耦合到检测器的输出端子的阴极端子。
    • 10. 发明授权
    • Polarization-multiplexed signal receiver, polarization multiplexing system and polarization-multiplexed signal receiving method
    • 偏振复用信号接收机,偏振复用系统和偏振复用信号接收方法
    • US08903255B2
    • 2014-12-02
    • US13564331
    • 2012-08-01
    • Takeshi Okamoto
    • Takeshi Okamoto
    • H04B10/06
    • H04J14/06H04B10/6151H04B10/671H04B10/69
    • A polarization-multiplexed signal receiver includes a polarization adjustment unit to adjust a polarization state of inputted polarization-multiplexed signal, which is carrying signal data on each of two polarized waves being inputted, based on a control signal and to output the adjusted polarization-multiplexed signal, an optical signal reception unit to convert the polarization-multiplexed signal having the adjusted polarization state into an analog electric signal and output the analog electric signal, an A/D conversion unit to convert the analog electric signal into a digital electric signal and output the digital electric signal, a digital signal processing unit to perform digital coherent processing to the digital electric signal and take out the signal data and a feedback control unit to generate the control signal based on quality of the signal data and output the signal data to the polarization adjustment unit.
    • 偏振复用信号接收机包括:偏振调整单元,用于根据控制信号调整正在输入的两个偏振波中的每一个上携带信号数据的输入偏振复用信号的偏振状态,并输出调整后的偏振复用信号 信号,光信号接收单元,将具有调整后的偏振态的偏振复用信号转换为模拟电信号并输出​​模拟电信号; A / D转换单元,将模拟电信号转换为数字电信号并输出 数字电信号,数字信号处理单元,用于对数字电信号执行数字相干处理并取出信号数据,反馈控制单元根据信号数据的质量产生控制信号,并将信号数据输出到 极化调整单元。