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    • 16. 发明申请
    • Evaluating Communications Feature Utilization
    • 评估通信功能利用率
    • US20160078382A1
    • 2016-03-17
    • US14487324
    • 2014-09-16
    • John Hanmer WatkinsNatalie CourtenayJames McCoy
    • John Hanmer WatkinsNatalie CourtenayJames McCoy
    • G06Q10/06
    • G06Q10/06315G06Q30/018H04L43/04H04L43/065H04W48/18
    • Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for evaluating the utilization of communications features. In one aspect, a method includes identifying, for a particular organization, a set of communications features that are included in a communications service that is provided to the particular organization. Usage levels of communications features by members of the organization are determined. Based on the usage levels a determination is made that the at least one of the communications features is being underutilized. An updated set of communications features that removes the at least one of the communications features from the communications service that is provided to the particular organization is selected. Data that changes the set of communications features provided to the particular organization based, at least in part on the updated set of communications features are generated.
    • 方法,系统和装置,包括在计算机存储介质上编码的计算机程序,用于评估通信特征的利用。 在一个方面,一种方法包括为特定组织识别包括在提供给特定组织的通信服务中的一组通信特征。 确定组织成员的通信功能的使用级别。 基于使用水平,确定至少一个通信特征未被充分利用。 选择从提供给特定组织的通信服务中移除通信特征中的至少一个的更新的一组通信特征。 至少部分地基于更新的通信特征集来改变提供给特定组织的通信特征集合的数据。
    • 19. 发明授权
    • Modular surface mount manifold assemblies
    • 模块化表面安装歧管组件
    • US07686041B2
    • 2010-03-30
    • US11378198
    • 2006-03-17
    • Paul G. EidsmoreMichael J. MohlenkampBenjamin J. OlechnowiczChristine M. Schilt DeinesDouglas NordstromJames McCoy
    • Paul G. EidsmoreMichael J. MohlenkampBenjamin J. OlechnowiczChristine M. Schilt DeinesDouglas NordstromJames McCoy
    • F16K11/10
    • F15B13/0814F15B13/0825F15B13/086F15B13/0892F16K27/003Y10S285/905Y10T137/87885
    • A modular manifold system is provided for interconnecting fluid components of a fluid system in a reduced area. The system is comprised of a one or more bridge fittings having an internal fluid passageway which has an inlet end in fluid communication with an outlet port of a first fluid component, and an outlet end in fluid communication with an inlet port of a second fluid component. The bridge fittings may additionally comprise two or more ports, which one of said ports may be in fluid communication with a manifold on another substrate level. The bridge fittings may be mounted within a channel of a backing plate for structural support or in channel blocks of varying sizes. An optional locator plate may be utilized which is mounted over the ends of the bridge fittings in order to align the inlet and outlet ports of the fluid components with the inlet and outlet ends of the bridge fittings. The bridge fittings may also be mounted to the locator plate in multiple directions forming multiple flow paths. Additionally, the bridge fittings may be stacked to form multiple layers where bridge fittings of one layer may be in fluid communication with bridge fittings of another layer. The invention may further comprise seals provided in a recess between the fluid ports and the mating bridge fittings ends.
    • 提供了一种模块化歧管系统,用于将减少区域中的流体系统的流体部件相互连接。 该系统包括具有内部流体通道的一个或多个桥接件,该内部流体通道具有与第一流体部件的出口流体连通的入口端,以及与第二流体部件的入口流体连通的出口端 。 桥接件可以另外包括两个或更多个端口,所述端口中的一个可以与另一基板级上的歧管流体连通。 桥接件可以安装在用于结构支撑的背板的通道内或安装在不同尺寸的通道块中。 可以使用可选的定位板,其安装在桥接件的端部上,以便使流体部件的入口端口和出口端口与桥接件的入口端和出口端对齐。 桥接件也可以在形成多个流动路径的多个方向上安装到定位板。 此外,桥接件可以堆叠形成多层,其中一层的桥接件可以与另一层的桥接件流体连通。 本发明还可以包括设置在流体端口和匹配桥接件端部之间的凹部中的密封件。
    • 20. 发明申请
    • Synchronization for OFDM signals
    • OFDM信号同步
    • US20070201349A1
    • 2007-08-30
    • US11362214
    • 2006-02-24
    • James McCoy
    • James McCoy
    • H04J11/00
    • H04L27/2675H04L27/2665H04L27/2695
    • A method of acquiring, at a receiver, fine timing synchronization for an Orthogonal Frequency Division Multiplexing (OFDM) signal as transported over a channel, includes determining an impulse response of the channel; dynamically creating a window function corresponding to the impulse response; and selecting a multiplicity of samples of the OFDM signal in accordance with the window function, where the multiplicity of samples are time aligned with an OFDM demodulator. A corresponding synchronizer includes a correlator for cross correlating a received preamble with a known preamble to provide an impulse response corresponding to the channel; a window generator configured to dynamically create a window function corresponding to the impulse response; and a selector configured to select a multiplicity of samples of the OFDM signal in accordance with the window function, where the multiplicity of samples are time aligned with a Fast Fourier Transform window associated with an OFDM demodulator.
    • 一种在接收机处获取通过信道传送的正交频分复用(OFDM)信号的精细定时同步的方法,包括确定信道的脉冲响应; 动态地创建对应于脉冲响应的窗口函数; 以及根据所述窗口函数选择所述OFDM信号的多个样本,其中多个样本与OFDM解调器进行时间对准。 相应的同步器包括一个相关器,用于将接收到的前同步码与已知的前同步码交叉相关,以提供对应于该信道的脉冲响应; 窗口生成器,其被配置为动态地创建与所述脉冲响应相对应的窗函数; 以及选择器,其被配置为根据所述窗口函数选择所述OFDM信号的多个样本,其中所述多个样本与与OFDM解调器相关联的快速傅里叶变换窗口进行时间对准。