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    • 5. 发明申请
    • SYSTEMS AND METHODS FOR POWERING NETWORK ACCESS DEVICES FROM CUSTOMER PREMISES EQUIPMENT
    • 用于从客户设备供电网络接入设备的系统和方法
    • US20120250840A1
    • 2012-10-04
    • US13437700
    • 2012-04-02
    • Daniel M. JoffeJared D. Cress
    • Daniel M. JoffeJared D. Cress
    • H04M11/00
    • H04M11/062H04L12/2878H04M19/001
    • A communication system has a network access device (NAD) that is designed to deliver Plain Old Telephone Service (POTS) along with high-speed data to Customer Premises Equipment (CPE). The NAD is backpowered by the CPE across a subscriber line. When backpower is provided from the CPE, circuitry (referred to as a “POTS signaling element”) within the network access device converts POTS control signaling to digital data for transmission to the CPE. The band vacated by the POTS control signaling is used for the power signal on the subscriber line. In the absence of backpower, components of the network access device are bypassed, thereby providing POTS in the event of a power failure. The NAD receives advance warning of the backpowering so that it can disable the bypassing in order to prevent the power signal from leaking through the NAD to the network.
    • 通信系统具有网络接入设备(NAD),其被设计成将普通老式电话服务(POTS)以及高速数据传送到客户端设备(CPE)。 NAD在用户线路上由CPE支持。 当从CPE提供反向功率时,网络接入设备内的电路(称为POTS信令元件)将POTS控制信令转换为数字数据,以传输到CPE。 由POTS控制信令腾出的频带用于用户线上的功率信号。 在没有反向功率的情况下,网络接入设备的组件被旁路,从而在电源故障的情况下提供POTS。 NAD接收到反向强制的提前警告,以便它可以禁止旁路,以防止电源信号通过NAD泄漏到网络。
    • 8. 发明授权
    • Amplifier circuits and methods for cancelling Miller capacitance
    • 用于消除米勒电容的放大器电路和方法
    • US08432226B1
    • 2013-04-30
    • US13179297
    • 2011-07-08
    • Daniel M. Joffe
    • Daniel M. Joffe
    • H03F1/14
    • H03F3/45085H03F1/14
    • An amplifier circuit has an input stage, a current mirror stage, and an output stage. The output stage has a transistor for which a non-linear and/or linear Miller capacitance exists across the transistor. A capacitive element, referred to herein as a “negative Miller capacitor,” is coupled between an input node of the current mirror stage and the transistor's collector or drain causing the current flowing through the negative Miller capacitor to be inverted, supplying the current taken by the usual Miller capacitance of the output stage. Thus, the negative Miller capacitor cancels the usual Miller capacitance across the transistor of the output stage, and such cancellation occurs without significantly increasing the amplifier's input power and costs. In some embodiments, both linear and non-linear components of the usual Miller capacitor are cancelled. Further, cancellation of the Miller capacitance generally enhances bandwidth and reduces distortion, thereby improving the performance of the operational amplifier.
    • 放大电路具有输入级,电流镜级和输出级。 输出级具有晶体管,晶体管在晶体管两端存在非线性和/或线性米勒电容。 电容元件(这里称为“负的米勒电容器”)耦合在电流镜级的输入节点和晶体管的集电极或漏极之间,导致流过负的米勒电容器的电流被反相,从而提供由 输出级通常的米勒电容。 因此,负的米勒电容器消除了输出级晶体管两端通常的米勒电容,并且这种消除不会显着增加放大器的输入功率和成本。 在一些实施例中,通常的米勒电容器的线性和非线性分量均被消除。 此外,取消米勒电容通常会增加带宽并减少失真,从而提高运算放大器的性能。
    • 9. 发明授权
    • Quiescent current control for class AB output stages
    • AB类输出级的静态电流控制
    • US08400220B1
    • 2013-03-19
    • US13211068
    • 2011-08-16
    • Daniel M. JoffePaul C. Ferguson
    • Daniel M. JoffePaul C. Ferguson
    • H03F3/18
    • H03F3/45237H03F1/301H03F1/3211H03F3/3028H03F3/45659H03F2200/453H03F2200/456H03F2203/45674
    • Quiescent current control for Class AB output stages is provided that is responsive to a sum of current of the pull-up and pull-down transistors in the crossover region, and responsive to a minimum of the pull-up or pull-down transistors otherwise. Replicating transistors operate responsive to activation of the pull-up and pull-down transistors. Additional circuit elements provide a summed current output that corrects for quiescent current variation, while having good operation over PVT variations, and having minimal distortive effects. Use of scaled replicating transistors reduces the current in the quiescent current control circuit. Additionally, a current limiter or topology change may be used to reduce current spikes in replication of the output stage current. Adjustment of a reference current can also prevent turning off a non-active output element to reduce the need to stew the element back on.
    • 提供AB类输出级的静态电流控制,其响应于交叉区域中的上拉和下拉晶体管的电流之和,否则响应于最小的上拉或下拉晶体管。 复制晶体管响应于上拉和下拉晶体管的激活而工作。 附加电路元件提供校正静态电流变化的总和电流输出,同时对PVT变化具有良好的操作,并且具有最小的失真效应。 使用经缩放的复制晶体管降低了静态电流控制电路中的电流。 另外,可以使用电流限制器或拓扑变化来减少输出级电流的复制中的电流尖峰。 参考电流的调整还可以防止关闭非有效输出元件,以减少重新启动元件的需要。
    • 10. 发明授权
    • Surge protection systems and methods for outside plant ethernet
    • 外部工厂以太网的浪涌保护系统和方法
    • US08243412B2
    • 2012-08-14
    • US12430694
    • 2009-04-27
    • James B. WieseDaniel M. Joffe
    • James B. WieseDaniel M. Joffe
    • H01C7/12H02H11/00
    • H04L12/2881H02H9/008
    • The present disclosure generally pertains to surge protection systems that protect outside plant equipment from high-energy surges. In one exemplary embodiment, a protection system is used for protecting Ethernet equipment that is coupled to an outside Ethernet cable. The protection system provides protection and remains capable of coupling signal energy between an Ethernet cable and Ethernet equipment without significantly degrading Ethernet performance. However, the protection system, while allowing the desirable Ethernet signals to pass between the cable and the equipment, prevents the electrical voltages and currents of high-energy surges, such as surges from lightning or AC power faults, from damaging the Ethernet equipment.
    • 本公开通常涉及用于保护设备外部设备免受高能量浪涌的浪涌保护系统。 在一个示例性实施例中,保护系统用于保护耦合到外部以太网电缆的以太网设备。 保护系统提供保护,并且仍然能够在以太网电缆和以太网设备之间耦合信号能量,而不会显着降低以太网性能。 然而,保护系统在允许希望的以太网信号在电缆和设备之间通过时,可防止诸如闪电或AC电源故障的高能量浪涌的电压和电流损坏以太网设备。