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    • 12. 发明授权
    • Method and system for a ciphering interface with list processing
    • 具有列表处理的加密接口的方法和系统
    • US08306219B2
    • 2012-11-06
    • US11353687
    • 2006-02-14
    • Yi ZhouLi Fung ChangNelson Sollenberger
    • Yi ZhouLi Fung ChangNelson Sollenberger
    • H04L29/06
    • H04L9/0618H04L2209/12
    • A method and system for ciphering interface with list processing is described. Various aspects of a system for ciphering interface with list processing may include a cipher module that enables deciphering and/or bit stuffing, in hardware, of a potion of one of a plurality of data blocks starting at any bit location that is subsequent to a first bit of the one of the plurality of data blocks. One of the plurality of data blocks may comprise at least one data word. A modulus of a number representing the bit location with respect to a number of bits in the one of the data words may be a number greater than 0. The cipher module may enable selection of any bit location based on and index and/or an offset. The cipher module may enable selection of deciphering and/or bit stuffing based on configured information.
    • 描述了用列表处理加密接口的方法和系统。 用于加密具有列表处理的接口的系统的各个方面可以包括密码模块,其能够在硬件中解密和/或位填充多个数据块中的一个数据块的一部分,从在第一 所述多个数据块中的一个。 多个数据块中的一个可以包括至少一个数据字。 表示相对于数据字中的一个数据位的位数的数字的模数可以是大于0的数字。加密模块可以使得能够基于索引和/或偏移来选择任何位位置 。 密码模块可以使得能够基于配置的信息来选择解密和/或位填充。
    • 14. 发明授权
    • Cable connector assembly
    • 电缆连接器组件
    • US08157584B2
    • 2012-04-17
    • US12829407
    • 2010-07-02
    • Yi ZhouXian-Kui ShiChung-Yen Yang
    • Yi ZhouXian-Kui ShiChung-Yen Yang
    • H01R13/60
    • H01R13/518H01R24/58H01R2107/00
    • A cable connector assembly includes an insulative housing, a number of connectors retained in the insulative housing and a number of cables retained at a rear side of the insulative housing to electrically connect with the connectors. The insulative housing defines a plurality of first cavities and a second cavity arranged in a row along a transverse direction thereof, and a third cavity at an upper side of the second cavity. The second cavity defines a height which is larger than a width thereof. The connectors include a number of standard USB connectors retained in the first cavities, a lower Audio jack uprightly retained in the second cavity and an upper Audio jack horizontally retained in the third cavity.
    • 电缆连接器组件包括绝缘壳体,保持在绝缘壳体中的多个连接器以及保持在绝缘壳体的后侧以与连接器电连接的多个电缆。 绝缘壳体限定了多个第一空腔和沿着其横向布置成一排的第二空腔,以及在第二空腔的上侧的第三空腔。 第二腔限定高于其宽度的高度。 连接器包括保持在第一腔中的多个标准USB连接器,竖立地保持在第二腔中的下部音频插孔和水平保持在第三腔中的上部音频插孔。
    • 19. 发明申请
    • System and method for effectively performing enhanced mobile-device location procedures
    • 用于有效执行增强的移动设备定位过程的系统和方法
    • US20100019969A1
    • 2010-01-28
    • US12586992
    • 2009-09-30
    • Yi Zhou
    • Yi Zhou
    • G01S5/14G01S3/02G01S1/00
    • G01S19/09G01S19/48
    • A system and method for effectively performing enhanced device location procedures to determine the current physical location of a mobile device includes a plurality of satellites that wirelessly transmit satellite beacon signals, a plurality of base stations that wirelessly transmit pilot signals, and a plurality of access points that wirelessly transmit access-point beacon signals. A location detector of the mobile device coordinates a device location procedure by measuring the satellite beacon signals, the pilot signals, and the access-point beacon signals to generate corresponding satellite information, base station information, and access point information. The location detector analyzes the satellite information, the base station information, and the access point information to select an optimal system configuration from the most effective satellites, base stations, and access points. The location detector then utilizes the optimal system configuration to accurately calculate the current physical location of the mobile device.
    • 用于有效执行增强的设备定位过程以确定移动设备的当前物理位置的系统和方法包括:无线发射卫星信标信号的多个卫星,无线发射导频信号的多个基站以及多个接入点 无线发送接入点信标信号。 移动设备的位置检测器通过测量卫星信标信号,导频信号和接入点信标信号来协调设备定位过程,以产生对应的卫星信息,基站信息和接入点信息。 位置检测器分析卫星信息,基站信息和接入点信息,以从最有效的卫星,基站和接入点中选择最佳系统配置。 然后,位置检测器利用最佳系统配置来精确地计算移动设备的当前物理位置。