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    • 1. 发明申请
    • Method and systems for optimizing high-speed signal transmission
    • 用于优化高速信号传输的方法和系统
    • US20060025945A1
    • 2006-02-02
    • US11235856
    • 2005-09-27
    • Alain BlancPatrick Jeanniot
    • Alain BlancPatrick Jeanniot
    • G06F19/00
    • H04L25/03343H04L1/0001H04L1/20H04L7/0337H04L2025/03375
    • A method and systems for automatically adjusting the parameters of signal emitter in a synchronous high-speed transmission system, is disclosed. According to the method of the invention, the quality of a high-speed received signal is analyzed for a plurality of sets of parameter values and the one producing the best signal quality is selected. In a first embodiment, the quality of the high-speed received signal is determined by analyzing a digital eye characterizing the signal behavior, obtained by over-sampling the high-speed received signal. In a second embodiment, the quality of the high-speed received signal is determined by analyzing the behavior of the phase rotator used for data sampling. Finally, in a third embodiment, the quality of the high-speed received signal is determined by analyzing a digital eye, obtained by moving the position of a phase rotator from one end to the other and sampling data at each position.
    • 公开了一种在同步高速传输系统中自动调整信号发射器参数的方法和系统。 根据本发明的方法,对多组参数值分析高速接收信号的质量,并选择产生最佳信号质量的参数值。 在第一实施例中,通过分析表征由高速接收信号过采样得到的信号行为的数字眼来确定高速接收信号的质量。 在第二实施例中,通过分析用于数据采样的相位旋转器的行为来确定高速接收信号的质量。 最后,在第三实施例中,通过分析通过将相位旋转器的位置从一端移动到另一端而获得的数字眼,并且在每个位置处采样数据来确定高速接收信号的质量。
    • 3. 发明申请
    • METHOD AND SYSTEMS FOR OPTIMIZING HIGH-SPEED SIGNAL TRANSMISSION
    • 用于优化高速信号传输的方法和系统
    • US20070271050A1
    • 2007-11-22
    • US11764453
    • 2007-06-18
    • Alain BlancPatrick Jeanniot
    • Alain BlancPatrick Jeanniot
    • G06F19/00
    • H04L25/03343H04L1/0001H04L1/20H04L7/0337H04L2025/03375
    • A method and systems for automatically adjusting the parameters of signal emitter in a synchronous high-speed transmission system, is disclosed. According to the method of the invention, the quality of a high-speed received signal is analyzed for a plurality of sets of parameter values and the one producing the best signal quality is selected. In a first embodiment, the quality of the high-speed received signal is determined by analyzing a digital eye characterizing the signal behavior, obtained by over-sampling the high-speed received signal. In a second embodiment, the quality of the high-speed received signal is determined by analyzing the behavior of the phase rotator used for data sampling. Finally, in a third embodiment, the quality of the high-speed received signal is determined by analyzing a digital eye, obtained by moving the position of a phase rotator from one end to the other and sampling data at each position.
    • 公开了一种在同步高速传输系统中自动调整信号发射器参数的方法和系统。 根据本发明的方法,对多组参数值分析高速接收信号的质量,并选择产生最佳信号质量的参数值。 在第一实施例中,通过分析表征由高速接收信号过采样得到的信号行为的数字眼来确定高速接收信号的质量。 在第二实施例中,通过分析用于数据采样的相位旋转器的行为来确定高速接收信号的质量。 最后,在第三实施例中,通过分析通过将相位旋转器的位置从一端移动到另一端而获得的数字眼,并且在每个位置处采样数据来确定高速接收信号的质量。
    • 5. 发明授权
    • Predictive clock recovery circuit
    • 预测时钟恢复电路
    • US4941151A
    • 1990-07-10
    • US252303
    • 1988-10-03
    • Jean-Claude AbbiateAlain BlancPatrick JeanniotEric Lallemand
    • Jean-Claude AbbiateAlain BlancPatrick JeanniotEric Lallemand
    • H04L7/033
    • H04L7/0331
    • A predictive clock extracting circuit having a first circuit for determining the duration between two consecutive transitions of a multilevel digital signal and a second circuit for generating an SPL pulse at half the duration after a third transition following on two consecutive previous transitions. A phase locked oscillator which is driven by said SPL pulse generates the extracted clock signal which is in phase with the SPL pulse and coincides with the center of the eye intervals of said multilevel digital signal. The system includes a first counter N which starts running in response to the detection of the first transition of the multilevel digital signal. The running stops when the second transition occurs. The result N(i) stored into the first counter N at second transition is therefore representative of the duration between the two consecutive first and second transitions. The preferred embodiment of the invention also involves an up/down counter K which generates a second counter K(i) that is expected to be representative of half the value of the first counter N(i). Counter K is adaptively updated by incrementing its current value K(i) by a fixed factor or, on the contrary, by decrementing its current value K(i) by a fixed damping factor.
    • 6. 发明申请
    • METHOD AND SYSTEMS FOR ANALYZING THE QUALITY OF HIGH-SPEED SIGNALS
    • 用于分析高速信号质量的方法和系统
    • US20080013615A1
    • 2008-01-17
    • US11774572
    • 2007-07-07
    • Alain BlancPatrick Jeanniot
    • Alain BlancPatrick Jeanniot
    • H04B3/46
    • H04L1/20
    • Methods and systems for analyzing the quality of high-speed signals are provided, wherein a high speed signal is sampled simultaneously a plurality of times during a sampling clock period at each of a plurality of phase rotator positions to generate a plurality of partial values, wherein subset pluralities of the partial values are associated to phase rotator positions. The partial values are combined into a global value which is analyzed to determine a quality of the high speed signal. Phase rotator behavior may also be analyzed to determine signal quality. A best position to lock a phase rotator when determining signal quality may be determined from a graphic characterization of a phase rotator position distribution.
    • 提供了用于分析高速信号质量的方法和系统,其中在多个相位旋转器位置中的每个相位旋转器位置处的采样时钟周期期间,高速信号被同时多次采样以产生多个部分值,其中 子集多个部分值与相位旋转器位置相关联。 将部分值组合成全局值,该值被分析以确定高速信号的质量。 也可以分析相位旋转器行为以确定信号质量。 确定信号质量时锁定相位旋转器的最佳位置可以从相位旋转器位置分布的图形表征来确定。
    • 7. 发明授权
    • Decimation filter for a sigma-delta converter and A/D converter using
the same
    • 用于Σ-Δ转换器和使用其的A / D转换器的抽取滤波器
    • US5461641A
    • 1995-10-24
    • US981157
    • 1992-11-23
    • Jean-Claude AbbiateAlain BlancPatrick JeanniotGerard Richter
    • Jean-Claude AbbiateAlain BlancPatrick JeanniotGerard Richter
    • H03M3/04H03H17/06H04B14/04
    • H03H17/0664
    • A Decimation filter for converting a train of sigma-delta pulses S(i) in synchronism with a sigma-delta clock (fs) into a train of Pulse Coded Modulation (PCM) samples in accordance with the formula ##EQU1## where Cn is the sequence of the coefficients of the decimation filter which corresponds to a determined decimation factor, and the PCM samples being processed by a Digital Signal Processor (DSP). The decimation filter includes a device for storing a digital value representative of the DC component introduced during the sigma-delta coding process, with the digital value being computing by the DSP processor during an initialization phase. The decimation filter further includes a device operating after the latter initialization phase for subtracting the stored digital value from each of the PCM samples so that the resulting sequence of PCM samples appears free of any DC component introduced during the sigma-delta coding. This accurate DC component suppression is achieved without necessitating the use of additional digital signal processor resources from the processor. Preferably, the decimation filter comprises a device for detecting a saturation occurring in the computing of the PCM sample, and responsive to the saturation detection, for transmitting a predetermined PCM sample to the DSP processor.
    • 一种抽取滤波器,用于根据与之对应的抽取滤波器的公式来将与Σ-Δ时钟(fs)同步的Σ-Δ脉冲序列转换成脉冲编码调制(PCM)采样序列 到确定的抽取因子,并且PCM采样由数字信号处理器(DSP)处理。 抽取滤波器包括用于存储代表在Σ-Δ编码处理期间引入的DC分量的数字值的装置,数字值由DSP处理器在初始化阶段期间计算。 抽取滤波器还包括在后一初始化阶段之后操作的装置,用于从每个PCM样本中减去所存储的数字值,使得所得到的PCM样本序列在Σ-Δ编码期间不会出现任何DC分量。 实现这种精确的DC分量抑制,而不需要使用来自处理器的附加数字信号处理器资源。 优选地,抽取滤波器包括用于检测在PCM采样的计算中出现的饱和度并且响应饱和检测用于将预定的PCM采样发送到DSP处理器的装置。
    • 9. 发明授权
    • Optimizing high speed signal transmission
    • 优化高速信号传输
    • US07668672B2
    • 2010-02-23
    • US11764453
    • 2007-06-18
    • Alain BlancPatrick Jeanniot
    • Alain BlancPatrick Jeanniot
    • G01R13/00H04B17/00
    • H04L25/03343H04L1/0001H04L1/20H04L7/0337H04L2025/03375
    • A method and systems for automatically adjusting the parameters of signal emitter in a synchronous high-speed transmission system, is disclosed. According to the method of the invention, the quality of a high-speed received signal is analyzed for a plurality of sets of parameter values and the one producing the best signal quality is selected. In a first embodiment, the quality of the high-speed received signal is determined by analyzing a digital eye characterizing the signal behavior, obtained by over-sampling the high-speed received signal. In a second embodiment, the quality of the high-speed received signal is determined by analyzing the behavior of the phase rotator used for data sampling. Finally, in a third embodiment, the quality of the high-speed received signal is determined by analyzing a digital eye, obtained by moving the position of a phase rotator from one end to the other and sampling data at each position.
    • 公开了一种在同步高速传输系统中自动调整信号发射器参数的方法和系统。 根据本发明的方法,对多组参数值分析高速接收信号的质量,并选择产生最佳信号质量的参数值。 在第一实施例中,通过分析表征由高速接收信号过采样得到的信号行为的数字眼来确定高速接收信号的质量。 在第二实施例中,通过分析用于数据采样的相位旋转器的行为来确定高速接收信号的质量。 最后,在第三实施例中,通过分析通过将相位旋转器的位置从一端移动到另一端而获得的数字眼,并且在每个位置处采样数据来确定高速接收信号的质量。
    • 10. 发明授权
    • Method and systems for analyzing the quality of high-speed signals
    • 分析高速信号质量的方法和系统
    • US07477685B2
    • 2009-01-13
    • US11774572
    • 2007-07-07
    • Alain BlancPatrick Jeanniot
    • Alain BlancPatrick Jeanniot
    • H04B3/46H04Q1/20
    • H04L1/20
    • Methods and systems for analyzing the quality of high-speed signals are provided, wherein a high speed signal is sampled simultaneously a plurality of times during a sampling clock period at each of a plurality of phase rotator positions to generate a plurality of partial values, wherein subset pluralities of the partial values are associated to phase rotator positions. The partial values are combined into a global value which is analyzed to determine a quality of the high speed signal. Phase rotator behavior may also be analyzed to determine signal quality. A best position to lock a phase rotator when determining signal quality may be determined from a graphic characterization of a phase rotator position distribution.
    • 提供了用于分析高速信号质量的方法和系统,其中在多个相位旋转器位置中的每个相位旋转器位置处的采样时钟周期期间,高速信号被同时多次采样以产生多个部分值,其中 子集多个部分值与相位旋转器位置相关联。 将部分值组合成全局值,该值被分析以确定高速信号的质量。 也可以分析相位旋转器行为以确定信号质量。 确定信号质量时锁定相位旋转器的最佳位置可以从相位旋转器位置分布的图形表征来确定。