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    • 1. 发明申请
    • DATA REPRODUCTION CIRCUIT
    • 数据复制电路
    • US20100164575A1
    • 2010-07-01
    • US12377081
    • 2006-09-04
    • Naoki SuzukiHitoyuki TagamiMasamichi NogamiJunichi Nakagawa
    • Naoki SuzukiHitoyuki TagamiMasamichi NogamiJunichi Nakagawa
    • H03L7/06H03L7/00
    • H04L7/0338H04L7/04
    • Provided is a data recovery circuit including an input data phase detection circuit for outputting a gate signal synchronized with a rising phase of input data, a gated multiphase oscillator for instantly generating N-phase clocks based on the gate signal as a trigger, data discriminating and reproducing circuits for outputting sampled data of the input data which are synchronized with the clocks, a continuous clock generation circuit for generating a continuous clock which is a reference clock, continuous clock synchronization circuits for synchronizing the sampled data with the continuous clock and outputting the synchronized sampled data as phase synchronization data, and a phase selector for selecting the phase synchronization data having an optimum discrimination phase with the largest phase margin with respect to the input data and outputting the selected phase synchronization data as recovery data.
    • 提供了一种数据恢复电路,包括输入数据相位检测电路,用于输出与输入数据的上升相位同步的门信号,门控多相振荡器,用于基于门信号作为触发立即产生N相时钟,数据识别和 用于输出与时钟同步的输入数据的采样数据的再现电路,用于产生作为参考时钟的连续时钟的连续时钟产生电路,用于使采样数据与连续时钟同步的连续时钟同步电路,并输出同步 采样数据作为相位同步数据,以及相位选择器,用于相对于输入数据选择具有最大相位裕度的最佳鉴别相位的相位同步数据,并输出所选择的相位同步数据作为恢复数据。
    • 2. 发明授权
    • Data recovery circuit
    • 数据恢复电路
    • US07924076B2
    • 2011-04-12
    • US12377081
    • 2006-09-04
    • Naoki SuzukiHitoyuki TagamiMasamichi NogamiJunichi Nakagawa
    • Naoki SuzukiHitoyuki TagamiMasamichi NogamiJunichi Nakagawa
    • H03L7/06
    • H04L7/0338H04L7/04
    • Provided is a data recovery circuit including an input data phase detection circuit for outputting a gate signal synchronized with a rising phase of input data, a gated multiphase oscillator for instantly generating N-phase clocks based on the gate signal as a trigger, data discriminating and reproducing circuits for outputting sampled data of the input data which are synchronized with the clocks, a continuous clock generation circuit for generating a continuous clock which is a reference clock, continuous clock synchronization circuits for synchronizing the sampled data with the continuous clock and outputting the synchronized sampled data as phase synchronization data, and a phase selector for selecting the phase synchronization data having an optimum discrimination phase with the largest phase margin with respect to the input data and outputting the selected phase synchronization data as recovery data.
    • 提供了一种数据恢复电路,包括输入数据相位检测电路,用于输出与输入数据的上升相位同步的门信号,门控多相振荡器,用于基于门信号作为触发立即产生N相时钟,数据识别和 用于输出与时钟同步的输入数据的采样数据的再现电路,用于产生作为参考时钟的连续时钟的连续时钟产生电路,用于使采样数据与连续时钟同步的连续时钟同步电路,并输出同步 采样数据作为相位同步数据,以及相位选择器,用于相对于输入数据选择具有最大相位裕度的最佳鉴别相位的相位同步数据,并输出所选择的相位同步数据作为恢复数据。
    • 5. 发明授权
    • Optical receiver
    • 光接收机
    • US08155535B2
    • 2012-04-10
    • US12086292
    • 2006-03-03
    • Masaki NodaMasamichi NogamiJunichi Nakagawa
    • Masaki NodaMasamichi NogamiJunichi Nakagawa
    • H04B10/06
    • H03F3/08H03G3/001H03G3/3084H04B10/6931
    • An optical receiver for stably reproducing packets having different light receiving levels is disclosed. The optical receiver includes: a light receiving element for outputting a current in response to a light receiving level of an optical signal; a preamplifier for converting the current signal outputted from the light receiving element into a voltage signal; a circuit for detecting a consecutive same binary symbols portion from a binary symbols stream of the voltage signal outputted from the preamplifier to output a time constant switching signal in response to a detection result thereof; a level detecting circuit for detecting a voltage level of the voltage signal outputted from the preamplifier based upon a time constant which is switched/controlled in response to the time constant switching signal; and an amplifier for amplifying an output voltage of the level detecting circuit to apply a control voltage for controlling the gain to the preamplifier.
    • 公开了一种用于稳定再现具有不同光接收电平的分组的光接收机。 光接收器包括:用于响应于光信号的光接收电平输出电流的光接收元件; 用于将从光接收元件输出的电流信号转换为电压信号的前置放大器; 用于从前置放大器输出的电压信号的二进制符号流检测连续相同的二进制符号部分的电路,以响应其检测结果输出时间常数切换信号; 电平检测电路,用于基于响应于时间常数切换信号而被切换/控制的时间常数来检测从前置放大器输出的电压信号的电压电平; 以及放大器,用于放大电平检测电路的输出电压,以将用于控制增益的控制电压施加到前置放大器。
    • 7. 发明申请
    • LASER DIODE DRIVER CIRCUIT
    • 激光二极管驱动电路
    • US20130308669A1
    • 2013-11-21
    • US13983879
    • 2011-02-07
    • Masamichi NogamiSatoshi YoshimaJunichi Nakagawa
    • Masamichi NogamiSatoshi YoshimaJunichi Nakagawa
    • H01S5/00
    • H01S5/0085H01S5/0427H01S5/06226H04B10/504
    • A laser diode drive circuit includes a laser diode (LD), a modulation-current differential drive circuit, a bias-current differential drive circuit, a first inductance connected between an anode of the LD and a positive power source, a second inductance connected between a cathode of the LD and a negative-phase output terminal of the bias-current differential drive circuit, a first resistor connected to a connection point of the anode of the LD and the first inductance and connected to a negative-phase output terminal of the modulation-current differential drive circuit, and a second resistor connected to a connection point of the cathode of the LD and the second inductance and connected to a positive-phase output terminal of the modulation-current differential drive circuit, and a positive-phase output terminal of the bias-current differential drive circuit is connected to the connection point.
    • 激光二极管驱动电路包括激光二极管(LD),调制电流差分驱动电路,偏置电流差分驱动电路,连接在LD的阳极和正电源之间的第一电感, LD的阴极和偏置电流差分驱动电路的负相输出端子,连接到LD的阳极的连接点和第一电感的第一电阻器,并连接到所述偏置电流差动驱动电路的负相输出端子 调制电流差分驱动电路和连接到LD的阴极和第二电感的连接点并连接到调制电流差分驱动电路的正相输出端的第二电阻器,以及正相输出端 偏置电流差动驱动电路的端子连接到连接点。
    • 8. 发明申请
    • POINT-TO-MULTIPOINT OPTICAL COMMUNICATION SYSTEM
    • 点对多点光通信系统
    • US20100189436A1
    • 2010-07-29
    • US12664678
    • 2007-07-18
    • Junichi NakagawaMasamichi Nogami
    • Junichi NakagawaMasamichi Nogami
    • H04J14/02
    • H04B10/272H04J14/0226H04J14/0227H04J14/0246H04J14/0247H04J14/025H04J14/0252H04J14/0279H04J14/0282
    • Provided is a point-to-multipoint optical communication system capable of extending a transmission distance between a subscriber apparatus and a station apparatus without changing wavelengths of an upstream optical signal and a downstream optical signal, which are used in both of the apparatuses. The point-to-multipoint optical communication system includes, as a basic configuration thereof, an optical network for connecting one station apparatus (1) to a plurality of (n) subscriber apparatuses (4). Among m basic configurations, one station-side wavelength multiplexer/demultiplexer (22), one optical fiber transmission line (30), and one subscriber-side wavelength multiplexer/demultiplexer (12) are shared. The point-to-multipoint optical communication system further includes a station-side repeating unit (20) and a subscriber-side repeating unit (10) each including the one wavelength multiplexer/demultiplexer (22 or 12) and m wavelength converters (21 or 11). An optical signal having a conventionally-used wavelength is used between the station apparatus (1) and the station-side repeating unit (20) and between the subscriber apparatus (4) and the subscriber-side repeating unit (10), and an extensible optical signal, on which wavelength division multiplexing has been performed, is used between the wavelength multiplexers/demultiplexers (12 and 22) via the optical fiber transmission line (30).
    • 提供了能够在不改变在两个装置中使用的上游光信号和下行光信号的波长的情况下扩展用户装置与站装置之间的传输距离的点对多点光通信系统。 点对多点光通信系统作为其基本配置包括用于将一个站设备(1)连接到多个(n)个用户设备(4)的光网络。 在m个基本配置中,共享一个站侧波长多路复用器/解复用器(22),一个光纤传输线(30)和一个用户侧波长复用器/解复用器(12)。 点对多点光通信系统还包括站侧重复单元(20)和用户侧重复单元(10),每个重复单元包括一个波长多路复用器/解复用器(22或12)和m个波长转换器(21或 11)。 在站设备(1)和站侧重复单元(20)之间以及用户设备(4)和用户侧重复单元(10)之间使用具有传统使用波长的光信号,并且可扩展 通过光纤传输线(30)在波分多路复用器/解复用器(12和22)之间使用已进行波分复用的光信号。
    • 10. 发明授权
    • Optical receiver
    • 光接收机
    • US08165478B2
    • 2012-04-24
    • US12516574
    • 2006-12-21
    • Masaki NodaMasamichi NogamiJunichi Nakagawa
    • Masaki NodaMasamichi NogamiJunichi Nakagawa
    • H04B10/06
    • H03G3/3084H04B10/6931H04B10/695
    • An optical receiver of wide-dynamic range characteristic that stably reproduces a burst signal having different light receiving levels. A preamplifier converts an output from a light receiving element into a voltage signal. A level detecting circuit includes: a first level detecting unit having a shorter time constant; and a second level detecting unit having a longer time constant and switching over to any of the level detecting units in response to a time constant switching signal to detect a voltage level of an output voltage signal output from the preamplifier. An amplifier variably controls conversion gain of the preamplifier based on the detecting result. A time constant switching control outputs the time constant switching signal to the level detecting unit based on the output voltage signal from the preamplifier, to select the first level detecting unit or the second detecting unit based on a number of consecutive identical digits being equal to, smaller, or larger than the predetermined number.
    • 具有宽动态范围特性的光接收机,其稳定地再现具有不同光接收电平的脉冲串信号。 前置放大器将来自光接收元件的输出转换成电压信号。 电平检测电路包括:具有较短时间常数的第一电平检测单元; 以及具有较长时间常数的第二电平检测单元,并且响应于时间常数切换信号切换到任何电平检测单元,以检测从前置放大器输出的输出电压信号的电压电平。 放大器基于检测结果可变地控制前置放大器的转换增益。 时间常数切换控制基于来自前置放大器的输出电压信号将时间常数切换信号输出到电平检测单元,基于等于的连续相同数字的数量来选择第一电平检测单元或第二检测单元, 小于或大于预定数量。