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    • 1. 发明授权
    • Self-detecting electronic connection for electronic devices
    • 电子设备自检电子连接
    • US08249501B2
    • 2012-08-21
    • US12114934
    • 2008-05-05
    • Justin Potok BandholzThomas Dixon Pahel, Jr.Pravin PatelPhilip Louis Weinstein
    • Justin Potok BandholzThomas Dixon Pahel, Jr.Pravin PatelPhilip Louis Weinstein
    • H04B5/00
    • G06F13/385H01R13/665
    • According to one embodiment, an apparatus has first and second connectors configured for removably connecting to one another. The first connector circuit has a first differential amplifier, a first differential signal path, a first capacitor section capacitively coupling the first differential amplifier to the first differential signal path, and a first DC biasing circuit for imparting a first DC bias to the first differential signal path opposite the first capacitor section. The second connector circuit has a second differential amplifier, a second differential signal path, a second capacitor section capacitively coupling the second differential amplifier to the second differential signal path, and a second DC biasing circuit for imparting a second DC bias to the second differential signal path opposite the second capacitor section having a different magnitude than the first DC bias when the first and second connector are not connected. One or both of the first and second connector circuits is configured for detecting a change in the first or second DC bias and outputting a connection status signal in response to the detected change.
    • 根据一个实施例,一种装置具有被配置为可互相连接的第一和第二连接件。 第一连接器电路具有第一差分放大器,第一差分信号路径,将第一差分放大器电容耦合到第一差分信号路径的第一电容器部分和用于向第一差分信号施加第一DC偏置的第一DC偏置电路 路径与第一电容器部分相对。 第二连接器电路具有第二差分放大器,第二差分信号路径,将第二差分放大器电容耦合到第二差分信号路径的第二电容器部分,以及用于向第二差分信号施加第二DC偏置的第二DC偏置电路 当所述第一和第二连接器未连接时,所述第二电容器部分的路径与所述第一DC偏置的幅度不同。 第一和第二连接器电路中的一个或两个被配置用于检测第一或第二DC偏置的变化,并且响应于检测到的变化而输出连接状态信号。
    • 2. 发明申请
    • Self-Detecting Electronic Connection For Electronic Devices
    • 电子设备自检电子连接
    • US20090273911A1
    • 2009-11-05
    • US12114934
    • 2008-05-05
    • Justin Potok BandholzThomas Dixon Pahel, Jr.Pravin PatelPhilip Louis Weinstein
    • Justin Potok BandholzThomas Dixon Pahel, Jr.Pravin PatelPhilip Louis Weinstein
    • H01R9/00H01R13/60
    • G06F13/385H01R13/665
    • According to one embodiment, an apparatus has first and second connectors configured for removably connecting to one another. The first connector circuit has a first differential amplifier, a first differential signal path, a first capacitor section capacitively coupling the first differential amplifier to the first differential signal path, and a first DC biasing circuit for imparting a first DC bias to the first differential signal path opposite the first capacitor section. The second connector circuit has a second differential amplifier, a second differential signal path, a second capacitor section capacitively coupling the second differential amplifier to the second differential signal path, and a second DC biasing circuit for imparting a second DC bias to the second differential signal path opposite the second capacitor section having a different magnitude than the first DC bias when the first and second connector are not connected. One or both of the first and second connector circuits is configured for detecting a change in the first or second DC bias and outputting a connection status signal in response to the detected change.
    • 根据一个实施例,一种装置具有被配置为可互相连接的第一和第二连接件。 第一连接器电路具有第一差分放大器,第一差分信号路径,将第一差分放大器电容耦合到第一差分信号路径的第一电容器部分和用于向第一差分信号施加第一DC偏置的第一DC偏置电路 路径与第一电容器部分相对。 第二连接器电路具有第二差分放大器,第二差分信号路径,将第二差分放大器电容耦合到第二差分信号路径的第二电容器部分,以及用于向第二差分信号施加第二DC偏置的第二DC偏置电路 当所述第一和第二连接器未连接时,所述第二电容器部分的路径与所述第一DC偏置的幅度不同。 第一和第二连接器电路中的一个或两个被配置用于检测第一或第二DC偏置的变化,并且响应于检测到的变化而输出连接状态信号。
    • 3. 发明授权
    • Dual-band communication of management traffic in a blade server system
    • 刀片服务器系统中管理流量的双频通信
    • US08306652B2
    • 2012-11-06
    • US12048624
    • 2008-03-14
    • Justin Potok BandholzClifton Ehrich KerrPravin PatelBruce James Wilkie
    • Justin Potok BandholzClifton Ehrich KerrPravin PatelBruce James Wilkie
    • G06F15/173G06F15/16
    • G06F13/4072H04L12/40032H05K7/1492
    • In one embodiment, a communication system for a multi-blade server system includes a multi-drop serial bus network interconnecting a management module with each of a plurality of servers in a multi-server chassis. A first transceiver subsystem is configured for communicating over the serial bus network between the management module and each server within a first frequency band. A second transceiver subsystem is configured for simultaneously communicating over the serial bus network between the management module and the servers within a second frequency band higher than the first frequency band. A first signal-filtering subsystem substantially filters out signals in the second frequency band from the first transceiver subsystem. A second signal-filtering subsystem substantially filters out the signals in the first frequency band from the second transceiver subsystem.
    • 在一个实施例中,用于多刀片服务器系统的通信系统包括将管理模块与多服务器机箱中的多个服务器中的每一个互连的多点串行总线网络。 第一收发器子系统被配置用于通过串行总线网络在管理模块和第一频带内的每个服务器之间进行通信。 第二收发器子系统被配置为在高于第一频带的第二频带内在管理模块和服务器之间通过串行总线网络同时通信。 第一信号滤波子系统基本上从第一收发器子系统滤出第二频带中的信号。 第二信号滤波子系统基本上从第二收发器子系统滤除第一频带中的信号。
    • 7. 发明授权
    • Server network diagnostic system
    • 服务器网络诊断系统
    • US08589741B2
    • 2013-11-19
    • US13458319
    • 2012-04-27
    • David WindellPravin PatelJames HughesChristopher WestRobert PiperTimothy Schlude
    • David WindellPravin PatelJames HughesChristopher WestRobert PiperTimothy Schlude
    • G06F11/00
    • G06F11/325H04L41/0645
    • Methods and systems for implementing such methods for providing server fault notifications, diagnostic and system management information may include, but are not limited to: receiving a network fault status request input; illuminating one or more server node fault indicators for one or more degraded server nodes having one or more faults; receiving a server node fault status request input for a degraded server node having one or more faults; and displaying one or more diagnostic service notifications for one or more faults of the degraded server node.The displaying of the diagnostic service notifications may allow for the completion of various service operations associated with the service notifications once the information specific to a fault is presented.
    • 用于实现用于提供服务器故障通知,诊断和系统管理信息的这种方法的方法和系统可以包括但不限于:接收网络故障状态请求输入; 为具有一个或多个故障的一个或多个退化服务器节点照亮一个或多个服务器节点故障指示符; 接收具有一个或多个故障的劣化服务器节点的服务器节点故障状态请求输入; 以及显示针对所述退化服务器节点的一个或多个故障的一个或多个诊断服务通知。 一旦出现故障特有的信息,诊断服务通知的显示可以允许完成与服务通知相关联的各种服务操作。
    • 8. 发明授权
    • Tuning a switching power supply
    • 调整开关电源
    • US07906950B2
    • 2011-03-15
    • US12270477
    • 2008-11-13
    • Justin P. BandholzNickolas J. GruendlerPravin Patel
    • Justin P. BandholzNickolas J. GruendlerPravin Patel
    • G05F1/00G05D17/00
    • H02M3/156
    • Tuning a switching power supply, the power supply including a switching transistor; a filter circuit; a pulse generator that drives the switching transistor; a programmable filter connected to the output of the filter circuit; a digital signal processor (‘DSP’) connected to the output of the filter circuit, the DSP configured to program the programmable filter; and a tuning control circuit connected to the output of the filter circuit, to the pulse generator, and to the DSP; including calculating by the DSP, from sampled voltage values of a tuning pulse driven through the filter circuit by the pulse generator, the actual impedance of the filter circuit; and programming, by the DSP, the programmable filter, setting the combined impedance of the filter circuit and the programmable filter to the design impedance of the filter circuit.
    • 调谐开关电源,电源包括开关晶体管; 滤波电路; 驱动开关晶体管的脉冲发生器; 连接到滤波电路的输出的可编程滤波器; 数字信号处理器(“DSP”)连接到滤波电路的输出端,DSP配置为对可编程滤波器进行编程; 以及调谐控制电路,连接到滤波电路的输出,脉冲发生器和DSP; 包括由DSP计算的脉冲发生器通过滤波电路驱动的调谐脉冲的采样电压值,滤波器电路的实际阻抗; 并由DSP编程可编程滤波器,将滤波电路和可编程滤波器的组合阻抗设置为滤波电路的设计阻抗。