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    • 1. 发明申请
    • ELECTRONIC DEVICE ENCLOSURE
    • 电子设备外壳
    • US20140028164A1
    • 2014-01-30
    • US13584756
    • 2012-08-13
    • YUN-LUNG CHENCHUNG CHAIZHI-QIANG LILEI ZHOU
    • YUN-LUNG CHENCHUNG CHAIZHI-QIANG LILEI ZHOU
    • H05K5/03
    • G06F1/181
    • An electronic device enclosure includes a base, a side plate attached to the base, and a rotating member rotatably attached to the side plate. The base includes a rear wall and a sidewall connected to the rear wall. The rear wall includes a rear wall flange, and a clipping hole is defined in the sidewall. The side plate includes a clamping portion. The rotating member includes a blocking portion. The side plate is moveable in a first direction substantially perpendicular to the rear wall to engage the clamping portion in the clipping hole, and the blocking portion engages with the rear wall flange to prevent the side plate moving in a second direction substantially opposite to the first direction.
    • 电子设备外壳包括底座,附接到基座的侧板以及可旋转地附接到侧板的旋转构件。 底座包括后壁和连接到后壁的侧壁。 后壁包括后壁凸缘,并且在侧壁中限定夹紧孔。 侧板包括夹紧部分。 旋转构件包括阻挡部。 侧板可以在基本上垂直于后壁的第一方向上移动,以将夹紧部分接合在夹紧孔中,并且阻挡部分与后壁凸缘接合,以防止侧板在与第一方向大体相反的第二方向上移动 方向。
    • 2. 发明申请
    • AUTO-DETECT METHOD FOR DETECTING IMAGE FORMAT AND PLAYBACK METHOD APPLYING THE SAME
    • 用于检测图像格式的自动检测方法和应用该图像格式的回放方法
    • US20130162769A1
    • 2013-06-27
    • US13592794
    • 2012-08-23
    • Lei ZHOUHeng YuChun Wang
    • Lei ZHOUHeng YuChun Wang
    • H04N13/00H04N3/27
    • H04N5/14H04N13/106H04N13/139H04N2013/0074H04N2213/007
    • An auto-detect method for detecting a single-frame image format is provided. A single-frame image is divided into a plurality of macro-blocks. Each of the macro-blocks is divided into a plurality of sub-blocks. A meta-block is allocated in each of the sub-blocks. A pixel luminance sum characteristic value for each of the meta-blocks is calculated. A first confidence between a left half and a right half of the single-frame image is calculated according to the pixel luminance sum characteristic values. A second confidence between an upper half and a lower hap of the single-frame image is calculated according to the pixel luminance sum characteristic values. A format of the single-frame image is determined according to the pixel luminance sum characteristic values, and the first and second confidences of the single-frame image.
    • 提供了一种用于检测单帧图像格式的自动检测方法。 单帧图像被分成多个宏块。 每个宏块被分成多个子块。 在每个子块中分配元块。 计算每个元块的像素亮度和特性值。 根据像素亮度和特性值计算单帧图像的左半部和右半部之间的第一置信度。 根据像素亮度和特性值计算单帧图像的上半部和下部hap之间的第二置信度。 根据像素亮度和特征值以及单帧图像的第一和第二置信度来确定单帧图像的格式。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR POSITIONING MOBILE TERMINAL'S LOCATION
    • 用于定位移动终端位置的方法和装置
    • US20110223940A1
    • 2011-09-15
    • US13131095
    • 2009-11-25
    • Chuan ZhongLei Zhou
    • Chuan ZhongLei Zhou
    • H04W64/00
    • G01S5/12G01S5/0036H04W64/00
    • A method by a Mobile Terminal (MT) for positioning the MT is provided. The method includes requesting a Base Station (BS) to allocate a first transmission time for transmitting a first sounding signal for the MT, receiving the first transmission time from the BS, transmitting the first sounding signal to the BS at the first transmission time, requesting the BS to allocate a second transmission time of a second sounding signal for the MT after the MT moves, receiving the second transmission time from the BS, transmitting the second sounding signal to the BS at the second transmission time, reporting a moving distance moved during the period between the first transmission time and the second transmission time, and receiving a position of the MT determined based on the first sounding signal, the second sounding signal, and the moving distance.
    • 提供了一种用于定位MT的移动终端(MT)的方法。 该方法包括请求基站(BS)分配第一传输时间以发送用于MT的第一探测信号,从BS接收第一传输时间,在第一传输时间向BS发送第一发射信号,请求 BS在MT移动之后为MT分配用于MT的第二探测信号的第二传输时间,从BS接收第二传输时间,在第二传输时间向BS传送第二探测信号,报告移动的移动距离 第一发送时间和第二发送时间之间的时段,以及接收基于第一探测信号,第二探测信号和移动距离确定的MT的位置。
    • 6. 发明授权
    • Distributed RF front-end for UWB receivers
    • UWB接收机的分布式射频前端
    • US07792513B2
    • 2010-09-07
    • US11857696
    • 2007-09-19
    • Aminghasem SafarianLei ZhouPayam Heydari
    • Aminghasem SafarianLei ZhouPayam Heydari
    • H04B1/16
    • H04B1/0092H04B1/18H04B1/71637
    • Described herein are ultra wide-band distributed RF (UWB-DRF) front-end receivers comprising composite cells distributed along transmission lines, where each composite cell comprises a low-noise amplifier (LNA) merged with a mixer. By merging the LNA and the mixer in each composite cell, the power consumption and chip area of the RF front-end is reduced. Further, the distributed architecture of the RF front-end allows it to operate over a wide bandwidth by absorbing the parasitic capacitances of the composite cells into the transmission lines of the RF-front end. Embodiments of the RF front-end provide wideband flat gain, low noise figure (NF), wideband linearity, and wideband matching at the inputs of the RF front-end. In an embodiment, a programmable resistance at the termination of the RF transmission line allows the RF front-end to trade off a few decibels of mismatch at the RF input for higher gain and lower NF.
    • 这里描述的是包括沿着传输线分布的复合信元的超宽带分布式RF(UWB-DRF)前端接收机,其中每个复合信元包括与混合器合并的低噪声放大器(LNA)。 通过在每个复合单元中合并LNA和混频器,降低了RF前端的功耗和芯片面积。 此外,RF前端的分布式架构允许其通过将复合单元的寄生电容吸收到RF前端的传输线中而在宽带宽上工作。 RF前端的实施例在RF前端的输入端提供宽带平坦增益,低噪声系数(NF),宽带线性度和宽带匹配。 在一个实施例中,在RF传输线的终止处的可编程电阻允许RF前端在RF输入端取消几分贝的失配,以获得更高的增益和更低的NF。
    • 10. 发明申请
    • TDD-based method for transmitting high-speed data
    • 用于传输高速数据的基于TDD的方法
    • US20050094605A1
    • 2005-05-05
    • US10956380
    • 2004-10-01
    • Lixin SunLei Zhou
    • Lixin SunLei Zhou
    • H04B7/26H04J3/00
    • H04B7/2646
    • Embodiments of the present invention include a TDD-based method for transmitting high-speed data, comprising: first, time slices for uplink sending and downlink sending are allocated in a time frame respectively; second, synchronization time slot for uplink synchronization and synchronization time slot for downlink synchronization, control time slot for transmitting uplink signaling and control time slot for transmitting downlink signaling, as well as several traffic time slots for transmitting high-speed data services are allocated respectively; third, different traffic time slots are configured with different time spans; next, traffic time slots of appropriate time spans are allocated for different users as required for service data transmission; finally, data services are transmitted; with above solution, longer time slots can be allocated for users with higher service levels or better transmission conditions; therefore, embodiments of the present invention can improve data transmission efficiency and spectrum utilization efficiency, and reduce data transmission costs.
    • 本发明的实施例包括用于发送高速数据的基于TDD的方法,包括:首先在时间帧中分配用于上行链路发送和下行链路发送的时间片; 第二,用于上行链路同步的同步时隙和用于下行链路同步的同步时隙,用于发送上行链路信令的控制时隙和用于发送下行链路信令的控制时隙,以及用于传输高速数据业务的几个业务时隙; 第三,不同的流量时隙配置有不同的时间跨度; 接下来,为服务数据传输所需的不同用户分配适当时间段的业务时隙; 最后传输数据业务; 利用上述解决方案,可以为具有较高服务水平或更好传输条件的用户分配更长的时隙; 因此,本发明的实施例可以提高数据传输效率和频谱利用效率,并且降低数据传输成本。