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    • 3. 发明申请
    • Method and apparatus for processing optical duobinary signals
    • 用于处理光学双二进制信号的方法和装置
    • US20050185969A1
    • 2005-08-25
    • US10782231
    • 2004-02-19
    • Lothar Benedict MoellerChongjin Xie
    • Lothar Benedict MoellerChongjin Xie
    • H04B10/04H04B10/00H04B10/06H04B10/142H04B10/152H04B10/158H04L25/497
    • H04B10/695H04L25/497
    • An optical receiver adapted to apply multiple-sampling processing to an optical duobinary signal received over a transmission link in an optical communication system. In one embodiment, the receiver has an optical-to-electrical signal converter coupled to a decoder adapted to process an electrical signal generated by the converter to generate a bit sequence corresponding to the optical signal. To generate a bit value, the decoder first obtains two or more bit estimate values by sampling the electrical signal within a corresponding signaling interval two or more times. The decoder then applies a logical function to the bit estimate values, which produces the corresponding bit value for the bit sequence. Advantageously, embodiments of the present invention improve overall back-to-back (i.e., source-to-destination) system performance, e.g., by reducing the number of decoding errors associated with timing jitter and/or spontaneous beat noise in the received optical signal.
    • 一种光接收器,适于对通过光通信系统中的传输链路接收的光双二进制信号应用多采样处理。 在一个实施例中,接收机具有耦合到解码器的光电信号转换器,其适于处理由转换器产生的电信号以产生对应于光信号的比特序列。 为了产生位值,解码器首先通过在相应的信令间隔内对两个或更多次的电信号进行采样来获得两个或更多个比特估计值。 然后,解码器将逻辑功能应用于比特估计值,其产生比特序列的相应比特值。 有利地,本发明的实施例通过减少与接收到的光信号中的定时抖动和/或自发性差拍噪声相关联的解码错误的数量来改进整体背靠背(即,源到目的地)的系统性能 。
    • 6. 发明申请
    • Signal strength detection circuits for high speed optical electronics
    • 高速光电子学信号强度检测电路
    • US20050151063A1
    • 2005-07-14
    • US11068284
    • 2005-02-28
    • Phil Shapiro
    • Phil Shapiro
    • H01J40/14H04B10/158H04N7/01
    • H04B10/66
    • This disclosure is generally concerned with devices for determining photocurrent levels. One example of such a device is an optoelectronic transceiver that includes a laser and a photodetector. The photodetector is configured to receive an optical signal and generate a corresponding electrical signal. The electrical signal is received by a first stage circuit which then converts the received electrical signal to a differential output. Finally, a second stage circuit in communication with the first stage circuit is configured to derive an optical signal strength of the optical signal based upon the differential output received from the first stage circuit.
    • 本公开通常涉及用于确定光电流水平的装置。 这种装置的一个示例是包括激光器和光电检测器的光电收发器。 光电检测器被配置为接收光信号并产生相应的电信号。 电信号由第一级电路接收,然后第一级电路将接收到的电信号转换成差分输出。 最后,与第一级电路通信的第二级电路被配置为基于从第一级电路接收的差分输出来导出光信号的光信号强度。
    • 10. 发明申请
    • Optical receiving device
    • 光接收装置
    • US20050095013A1
    • 2005-05-05
    • US10745655
    • 2003-12-29
    • Chia-Ming Tsai
    • Chia-Ming Tsai
    • H04B10/158H04B10/06
    • H04B10/66
    • An optical receiving device. The optical receiving device has a photodiode, transimpedance amplifier, and a feedback component. The photodiode has a first terminal coupled to a voltage source and a second terminal. When detecting an optical signal, the photodiode generates a current signal output from the second terminal. The transimpedance amplifier converts the current signal to a voltage signal and outputs the voltage. The feedback component is coupled between the first terminal and a input terminal of the transimpedance amplifier. The feedback component feeds a first voltage-changing signal, occurring in the input terminal of the transimdepance amplifier with the current signal, to the first terminal.
    • 光接收装置。 光接收装置具有光电二极管,跨阻放大器和反馈部件。 光电二极管具有耦合到电压源和第二端子的第一端子。 当检测到光信号时,光电二极管产生从第二端输出的电流信号。 跨阻放大器将电流信号转换为电压信号并输出​​电压。 反馈部件耦合在第一端子和跨阻抗放大器的输入端子之间。 反馈部件将在跨导放大器的输入端子中出现的第一电压变化信号与电流信号馈送到第一端子。