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    • 4. 发明授权
    • Front end interface for data receiver
    • 数据接收机的前端接口
    • US07519130B2
    • 2009-04-14
    • US10905705
    • 2005-01-18
    • Louis L. HsuMatt R. Cordrey-GaleJames S. MasonPhilip J. MurfetKarl D. SelanderMichael A. SornaHuihao Xu
    • Louis L. HsuMatt R. Cordrey-GaleJames S. MasonPhilip J. MurfetKarl D. SelanderMichael A. SornaHuihao Xu
    • H04L25/34
    • H04L25/0274H04L25/0296
    • A data receiver is provided which includes a front end interface circuit having an alternating current (AC) transmission receiving mode and a direct current (DC) transmission receiving mode. The front end interface circuit includes an offset compensation circuit operable to compensate a DC voltage offset between a pair of differential signals input to the data receiver. The front end interface circuit further includes an AC/DC selection unit operable to switch between (a) the DC transmission receiving mode, and (b) the AC transmission receiving mode, such that the data receiver is operable in (i) the DC transmission mode in which the offset compensation circuit is disabled, (ii) the DC transmission mode in which the offset compensation circuit is enabled, (iii) the AC transmission mode in which the offset compensation circuit is disabled, and (iv) the AC transmission receiving mode in which the offset compensation circuit is enabled.
    • 提供一种数据接收器,其包括具有交流(AC)发送接收模式和直流(DC)发送接收模式的前端接口电路。 前端接口电路包括偏移补偿电路,其可操作以补偿输入到数据接收器的一对差分信号之间的直流电压偏移。 前端接口电路还包括可操作以在(a)直流发送接收模式和(b)交流发送接收模式之间切换的AC / DC选择单元,使得数据接收器可操作于(i)直流传输 偏移补偿电路被禁用的模式,(ii)使能偏移补偿电路的直流传输模式,(iii)偏移补偿电路被禁用的AC传输模式,以及(iv)AC传输接收 偏移补偿电路使能的模式。
    • 6. 发明授权
    • Structure for apparatus for reduced loading of signal transmission elements
    • 信号传输元件负载减小的装置结构
    • US08024679B2
    • 2011-09-20
    • US11999627
    • 2007-12-06
    • Louis L. HsuKarl D. SelanderMichael A. SornaDaniel W. Storaska
    • Louis L. HsuKarl D. SelanderMichael A. SornaDaniel W. Storaska
    • G06F17/50
    • H03K19/0185H04L25/0266
    • A design structure for a signal-handing apparatus or communication apparatus is provided which includes a common signal node operable to conduct a first signal, a first circuit coupled to the common signal node to utilize the first signal and a signal-handling element coupled to the common signal node. A signal-handling apparatus may include an isolating circuit coupled to a first conductor, a second conductor to conduct an output of the isolating circuit, and a signal-handling circuit coupled to the second conductor. A signal-handling circuit can perform a signal-handling function in response to the output of the isolating circuit. The signal-handling circuit and the first circuit may be isolated from the second conductor and the signal-handling circuit such that a communication signal may be conducted with less capacitance and be subject to less return loss.
    • 提供了一种用于信号处理装置或通信装置的设计结构,其包括可操作以传导第一信号的公共信号节点,耦合到公共信号节点以利用第一信号的第一电路和耦合到第一信号的信号处理元件 公共信号节点。 信号处理装置可以包括耦合到第一导体的隔离电路,用于导通隔离电路的输出的第二导体以及耦合到第二导体的信号处理电路。 信号处理电路可以响应于隔离电路的输出而执行信号处理功能。 信号处理电路和第一电路可以与第二导体和信号处理电路隔离,使得通信信号可以以较小的电容进行并且具有较小的回波损耗。
    • 7. 发明申请
    • Structure for apparatus for reduced loading of signal transmission elements
    • 信号传输元件负载减小的装置结构
    • US20090146692A1
    • 2009-06-11
    • US11999627
    • 2007-12-06
    • Louis L. HsuKarl D. SelanderMichael A. SornaDaniel W. Storaska
    • Louis L. HsuKarl D. SelanderMichael A. SornaDaniel W. Storaska
    • H03K19/0175
    • H03K19/0185H04L25/0266
    • A design structure for a signal-handing apparatus or communication apparatus is provided which includes a common signal node operable to conduct a first signal, a first circuit coupled to the common signal node to utilize the first signal and a signal-handling element coupled to the common signal node. A signal-handling apparatus may include an isolating circuit coupled to a first conductor, a second conductor to conduct an output of the isolating circuit, and a signal-handling circuit coupled to the second conductor. A signal-handling circuit can perform a signal-handling function in response to the output of the isolating circuit. The signal-handling circuit and the first circuit may be isolated from the second conductor and the signal-handling circuit such that a communication signal may be conducted with less capacitance and be subject to less return loss.
    • 提供了一种用于信号处理装置或通信装置的设计结构,其包括可操作以传导第一信号的公共信号节点,耦合到公共信号节点以利用第一信号的第一电路和耦合到第一信号的信号处理元件 公共信号节点。 信号处理装置可以包括耦合到第一导体的隔离电路,用于导通隔离电路的输出的第二导体以及耦合到第二导体的信号处理电路。 信号处理电路可以响应于隔离电路的输出而执行信号处理功能。 信号处理电路和第一电路可以与第二导体和信号处理电路隔离,使得通信信号可以以较小的电容进行并且具有较小的回波损耗。
    • 9. 发明授权
    • Method and system for optimizing transmission and reception power levels in a communication system
    • 用于优化通信系统中的发射和接收功率电平的方法和系统
    • US06980824B2
    • 2005-12-27
    • US10249546
    • 2003-04-17
    • Louis L. HsuBrian L. JiKarl D. SelanderMichael A. Sorna
    • Louis L. HsuBrian L. JiKarl D. SelanderMichael A. Sorna
    • H04B7/005H04B7/00
    • H04W52/20
    • A method and system are disclosed herein for determining optimum power level settings for a transmitter and receiver pair of a communication system having a plurality of transmitter and receiver pairs, as determined with respect to bit error rate. In the method disclosed herein, the power levels of a transmitter and a receiver pair coupled to communicate over a duplex communication link are set to initial values. The bit error rate is then determined over the link. Then, the power level of the transmitter, the receiver, or both, is altered, incrementally, and the effect upon the bit error rate is determined. When an improvement appears in the bit error rate at an altered power level, the power level of the transmitter, the receiver or both, are set to the altered power level at which the improvement is found. The steps of incrementally altering power levels, determining the bit error rate, and establishing new power level settings when there is an improvement are repeated until power levels are determined at which the bit error rate is optimized.
    • 本文公开了一种用于确定具有多个发射机和接收机对的通信系统的发射机和接收机对的最佳功率电平设置的方法和系统,如针对误码率确定的。 在本文公开的方法中,耦合到通过双工通信链路进行通信的发射机和接收机对的功率电平被设置为初始值。 然后通过链路确定误码率。 然后,发送器,接收器或两者的功率电平被改变,递增地,并且确定对误码率的影响。 当在改变的功率电平上出现比特错误率的改进时,发射机,接收机或两者的功率电平被设置为发现改进的改变的功率电平。 重复改变功率级别,确定误码率和建立新的功率电平设置的步骤,直到确定位误码率被优化的功率电平为止。
    • 10. 发明授权
    • Programmable peaking receiver and method
    • 可编程峰值接收机和方法
    • US06937054B2
    • 2005-08-30
    • US10250043
    • 2003-05-30
    • Louis L. HsuKarl D. SelanderMichael A. SornaWilliam F. WashburnHuihao H. XuSteven J. Zier
    • Louis L. HsuKarl D. SelanderMichael A. SornaWilliam F. WashburnHuihao H. XuSteven J. Zier
    • H04L25/02H03K19/003
    • H04L25/0272H04L25/0278H04L25/0294H04L25/03885
    • Methods and structures are disclosed herein for programmably adjusting a peaking function of a differential signal receiver. The disclosed method includes inputting a pair of differential signals to a pair of input transistors coupled to conduct currents differentially between a pair of load impedances and a pair of tail transistors. The impedance of an adjustable shunt impedance element between the tail transistors of the receiver is varied by programming signal input, such that higher current is conducted over a peaking range of frequencies. In a disclosed structural embodiment, an integrated circuit is provided having a programmable peaking receiver. The programmable peaking receiver includes a pair of input transistors coupled to conduct differentially according to a pair of differential inputs applied to the pair of input transistors. Each of the input transistors produces an output in accordance with the differential input applied thereto. The programmable peaking receiver also includes a pair of tail transistors, coupled to draw current from the input transistors, and a programmably adjustable impedance element coupled between current-conducting nodes of the tail transistors. The impedance of the programmably adjustable impedance element is thereby adjustable in response to programming signal input to adjust a peaking function of the programmable peaking receiver.
    • 本文公开了可编程地调节差分信号接收器的峰值功能的方法和结构。 所公开的方法包括将一对差分信号输入到耦合以在一对负载阻抗和一对尾部晶体管之间差分地传导电流的一对输入晶体管。 接收器的尾部晶体管之间的可调节分流阻抗元件的阻抗由编程信号输入变化,使得在峰值范围的频率上进行更高的电流。 在公开的结构实施例中,提供了具有可编程峰值接收器的集成电路。 可编程峰值接收器包括一对输入晶体管,其被耦合以根据施加到该对输入晶体管的一对差分输入进行差分导通。 每个输入晶体管根据施加到其上的差分输入产生输出。 可编程峰值接收器还包括耦合以从输入晶体管抽取电流的一对尾部晶体管,以及耦合在尾部晶体管的导电节点之间的可编程可调阻抗元件。 可编程可调阻抗元件的阻抗因此可响应于编程信号输入而调节,以调节可编程峰值接收器的峰值功能。