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    • 42. 发明授权
    • System and method for processing video
    • 视频处理系统及方法
    • US08380053B2
    • 2013-02-19
    • US12330338
    • 2008-12-08
    • Thanh T. TranTodd C. HiersIvan GarciaJian Wang
    • Thanh T. TranTodd C. HiersIvan GarciaJian Wang
    • H04N5/917
    • G09G5/363G09G2320/0252G09G2360/06G09G2360/121G09G2360/18H04N19/436H04N19/61
    • A system and method for allocating video processing tasks over multiple video processors include an apparatus. The apparatus includes a plurality of video processors. Each video processor includes a first processor that processes video data and manages buffers used in conversion and displaying video data. The video processor includes a second processor that performs video data signal processing and manages buffers used in processing video data. The apparatus also includes a switch coupled to each video processor, as well as video inputs and video outputs. A third processor coupled to the switch, and a memory coupled to each video processor and to the third processor, are also part of the apparatus. The switch selectively couples a video processor to a video input or a video output, the third processor configures the switch based on processing requirements of each video stream, and the memory buffers and stores video data.
    • 用于在多个视频处理器上分配视频处理任务的系统和方法包括一种装置。 该装置包括多个视频处理器。 每个视频处理器包括处理视频数据并管理用于转换和显示视频数据的缓冲器的第一处理器。 视频处理器包括执行视频数据信号处理并管理在处理视频数据中使用的缓冲器的第二处理器。 该装置还包括耦合到每个视频处理器的开关,以及视频输入和视频输出。 耦合到开关的第三处理器和耦合到每个视频处理器和第三处理器的存储器也是该装置的一部分。 开关将视频处理器选择性地耦合到视频输入或视频输出,第三处理器基于每个视频流的处理要求配置开关,并且存储器缓冲并存储视频数据。
    • 43. 发明申请
    • METHOD, SYSTEM AND SERVER FOR FEEDING BACK STATE OF RECEIVING END
    • 方法,系统和服务器,用于接收接收端的状态
    • US20130041967A1
    • 2013-02-14
    • US13641891
    • 2011-03-03
    • Jian WangFangfang Liao
    • Jian WangFangfang Liao
    • G06F15/16
    • H04W4/14H04W4/20H04W8/22
    • The present invention provides a method, a system and a server for feeding back the state of a receiving end. The method includes: the server activating the function of feeding back the state of the receiving end for a first terminal (101); after the server receives a short message sent by the first terminal, the server forwarding the short message to the receiving end, and if the short message sent from the receiving end to the first terminal is not received in a preset time period from the moment that the server receives the short message, the server acquiring the current state of the receiving end and feeding back it to the first terminal (102). In the method and system, the first terminal can acquire the current state of the receiving end in the cases that the receiving end is suspended, powered off, or has not registered.
    • 本发明提供一种用于反馈接收端的状态的方法,系统和服务器。 该方法包括:服务器启动对第一终端(101)的接收端的状态进行反馈的功能; 在服务器接收到由第一终端发送的短消息之后,服务器将短消息转发到接收端,并且如果从接收端发送到第一终端的短消息在从预定的时间段起不被接收 服务器接收短消息,服务器获取接收端的当前状态并将其反馈到第一终端(102)。 在方法和系统中,在接收端暂停,断电或尚未注册的情况下,第一终端可以获取接收端的当前状态。
    • 44. 发明申请
    • ELECTRICAL CONNECTOR HAVING A MAGNETIC ASSEMBLY
    • 具有磁性组件的电气连接器
    • US20130034996A1
    • 2013-02-07
    • US13195356
    • 2011-08-01
    • JAYDIP DASJIAN WANGNA ANRANDY K. RANNOWMARK W. ELLSWORTH
    • JAYDIP DASJIAN WANGNA ANRANDY K. RANNOWMARK W. ELLSWORTH
    • H01R13/66
    • H01R13/6477H01R13/7193H01R24/64
    • An electrical connector includes a housing having a plug cavity configured to receive a modular plug therein. A terminal assembly is coupled to the housing. The terminal assembly has a plurality of terminals configured to engage corresponding terminals of the modular plug. The electronic connector includes a magnetic assembly that has a circuit board. The terminals are terminated to the circuit board. The magnetic assembly has magnetic circuits coupled to the circuit board. Each magnetic circuit has a ferrous portion and conductors circumferentially wrapped around the ferrous portion. At least one of the magnetic circuits is coated with a coating material that includes a matrix and filler. The filler can have a higher or lower dielectric constant than the matrix. The dielectric characteristics of the nano-composite can be tuned by varying the concentrations of the filler and matrix material. This tunable nano-composite can serve as an additional design knob for better impedance matching for the magnetic connectors over a wide frequency range.
    • 电连接器包括具有被配置为在其中容纳模块化插头的插头腔的壳体。 端子组件联接到壳体。 端子组件具有多个端子,其被配置为接合模块化插头的相应端子。 电子连接器包括具有电路板的磁性组件。 端子端接到电路板。 磁性组件具有耦合到电路板的磁路。 每个磁路都有一个铁质部分和围绕铁基部分周向缠绕的导体。 至少一个磁路涂覆有包括基体和填料的涂层材料。 填料可以具有比基体更高或更低的介电常数。 可以通过改变填料和基体材料的浓度来调节纳米复合材料的介电特性。 这种可调谐的纳米复合材料可以作为额外的设计旋钮,在较宽的频率范围内为磁性连接器提供更好的阻抗匹配。
    • 45. 发明授权
    • Electronic device and method for debugging programs
    • 用于调试程序的电子设备和方法
    • US08370815B2
    • 2013-02-05
    • US13286086
    • 2011-10-31
    • Xiao-Mei LiuGuang-Jian WangJin-Rong Zhao
    • Xiao-Mei LiuGuang-Jian WangJin-Rong Zhao
    • G06F9/44G06F11/00
    • G06F11/366
    • In a method for debugging programs of an electronic device, the method adds an appended block to one or more memory blocks allocated by one or more memory allocation functions of a specified program, so as to obtain one or more appended blocks, stores an identifier of each memory allocation function into a corresponding appended block, and executes a memory leak test to determine one or more unqualified memory allocation functions. The method further searches for one or more identifiers from the appended blocks if the memory leak test fails, and obtains a position of each unqualified memory allocation function in the specified program according to each found identifier if source codes of the specified program are available in a storage device of the electronic device.
    • 在一种用于调试电子设备程序的方法中,该方法将附加块添加到由指定程序的一个或多个存储器分配功能分配的一个或多个存储器块中,以获得一个或多个附加块,存储 每个存储器分配功能转换成对应的附加块,并且执行存储器泄漏测试以确定一个或多个不合格的存储器分配功能。 如果存储器泄漏测试失败,则该方法进一步从附加块中搜索一个或多个标识符,并且如果指定程序的源代码可用,则根据每个找到的标识符获得指定程序中的每个不合格的存储器分配功能的位置 电子设备的存储设备。
    • 49. 发明申请
    • METHOD AND SYSTEM FOR MEASURING FREQUENCY
    • 用于测量频率的方法和系统
    • US20130018615A1
    • 2013-01-17
    • US13217469
    • 2011-08-25
    • MING-HUNG CHOUNAI-JIAN WANGCHING-FENG HSIEH
    • MING-HUNG CHOUNAI-JIAN WANGCHING-FENG HSIEH
    • G06F19/00
    • G01R23/15G01R23/10G01R23/12
    • A method for measuring frequency includes the steps of obtaining the cycle number of the clock rate of a signal under test based on a reference signal and a clock mask synchronous with the signal under test; obtaining a frequency of the signal under test based on the cycle number; correcting the frequency of the signal under test based on a plurality of phase shift signals generated based on the reference signal; and minimizing an error of the frequency of the signal under test by increasing the quantity of the phase shift signals. The method enhances the accuracy of the obtained frequency of the signal under test, speeds up frequency measurement, and reduces the required circuit areas. A system for measuring frequency is further introduced for use with the method.
    • 用于测量频率的方法包括以下步骤:基于参考信号和与所测信号同步的时钟屏蔽获得被测信号的时钟频率的周期数; 基于循环次数获得被测信号的频率; 基于基于所述参考信号生成的多个相移信号来校正被测信号的频率; 并且通过增加相移信号的量来最小化被测信号频率的误差。 该方法提高了被测信号的频率精度,加快了频率测量,减少了所需的电路面积。 进一步介绍了一种用于测量频率的系统,用于该方法。