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    • 6. 发明授权
    • Half-rate DFE with duplicate path for high data-rate operation
    • 具有高数据速率操作的重复路径的半速率DFE
    • US07782935B1
    • 2010-08-24
    • US11514490
    • 2006-08-31
    • Wilson WongSergey Yuryevich ShumarayevSimardeep MaangatThungoc M. TranTim Tri HoangTin H. Lai
    • Wilson WongSergey Yuryevich ShumarayevSimardeep MaangatThungoc M. TranTim Tri HoangTin H. Lai
    • H03H7/30
    • H03H11/26H04L25/03878H04L2025/0349
    • Methods and circuits are presented for providing equalization, including decision feedback equalization (DFE), to high data-rate signals. Half-rate delay-chain circuitry produces delayed samples of an input signal using two or more delay-chain circuits operating at a fraction of the input signal data-rate. Two delay-chain circuits operating at one-half the input signal data-rate may be used. More generally, n delay-chain circuits operating at 1/n the input signal data-rate may be used. Multiplexer circuitry combines the outputs of the delay-chain circuits to produce an output signal including samples of the input signal at the input signal data-rate. Duplicate path DFE circuitry includes two paths used to provide DFE equalization while reducing the load of the DFE circuitry on the circuitry that precedes it. A first path produces delayed samples of a DFE signal, while a second path produces the DFE output signal from the delayed samples.
    • 提出了用于向高数据速率信号提供均衡的方法和电路,包括判决反馈均衡(DFE)。 半速率延迟链电路使用以输入信号数据速率的一小部分工作的两个或多个延迟链电路产生输入信号的延迟采样。 可以使用以输入信号数据速率的一半工作的两个延迟链电路。 更一般地,可以使用以1 / n输入信号数据速率工作的n个延迟链电路。 多路复用器电路组合延迟链电路的输出以产生包括输入信号数据速率的输入信号样本的输出信号。 重复路径DFE电路包括用于提供DFE均衡的两个路径,同时减少DFE电路之前的电路上的DFE电路的负载。 第一路径产生DFE信号的延迟采样,而第二路径产生来自延迟采样的DFE输出信号。
    • 10. 发明授权
    • Signal detect for high-speed serial interface
    • 信号检测用于高速串行接口
    • US08290750B1
    • 2012-10-16
    • US13036437
    • 2011-02-28
    • Wilson WongAllen ChanSergey ShumarayevThungoc M. TranTim Tri HoangWeiqi Ding
    • Wilson WongAllen ChanSergey ShumarayevThungoc M. TranTim Tri HoangWeiqi Ding
    • H03F1/26
    • H03K5/19H03K19/1774H03K19/17744H03K19/1778
    • Signal detection circuitry for a serial interface oversamples the input—i.e., samples the input multiple times per clock cycle—so that the likelihood of missing a signal is reduced. Sampling may be done with a regenerative latch which has a large bandwidth and can latch a signal at high speed. The amplitude threshold for detection may be programmable, particularly in a programmable device. Thus, between the use of a regenerative latch which is likely to catch any signal that might be present, and the use of oversampling to avoid the problem of sampling at the wrong time, the likelihood of failing to detect a signal is greatly diminished. Logic, such as a state machine, may be used to determine whether the samples captured s do or do not represent a signal. That logic may be programmable, allowing a user to set various parameters for signal detection.
    • 串行接口的信号检测电路对输入进行过采样,即每个时钟周期对输入进行多次采样,从而减少信号丢失的可能性。 可以使用具有大带宽的再生锁存器并且可以高速锁存信号来进行采样。 用于检测的幅度阈值可以是可编程的,特别是在可编程器件中。 因此,在可能捕获可能存在的任何信号的再生锁存器的使用之间以及使用过采样以避免在错误时间采样的问题,大大减少了不能检测信号的可能性。 可以使用诸如状态机的逻辑来确定捕获的样本是否或不表示信号。 该逻辑可以是可编程的,允许用户设置用于信号检测的各种参数。