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    • 81. 发明申请
    • Data Card
    • 数据卡
    • US20110182014A1
    • 2011-07-28
    • US13015310
    • 2011-01-27
    • Bin ZhangJianjun XiaoMenglong ZhaoXi Jia
    • Bin ZhangJianjun XiaoMenglong ZhaoXi Jia
    • H05K7/16
    • H05K5/0278H01R13/60
    • A data card includes a circuit board, a holder, an upper cover, a connecting wire, and an interface. The circuit board is fixed in the holder. One end of the flexible connecting wire is connected with the circuit board, and the other end of the flexible connecting wire is connected with the interface. The upper cover covers the holder. When the data card is idle, the interface and the flexible connecting wire are located in the cavity formed by the upper cover and the holder. When the data card is connected with an external device by the interface, the interface is located outside the cavity formed by the upper cover and the holder. The data card enables flexible adjustment of the location of the interface, and fixes the upper cover on the data card when the data card is connected for use.
    • 数据卡包括电路板,保持器,上盖,连接线和接口。 电路板固定在支架上。 柔性连接线的一端与电路板连接,柔性连接线的另一端与接口连接。 上盖覆盖支架。 当数据卡空闲时,接口和柔性连接线位于由上盖和支架形成的空腔中。 当数据卡通过接口与外部设备连接时,接口位于由上盖和支架形成的腔体的外部。 数据卡可以灵活调整接口的位置,并在数据卡连接使用时将上盖固定在数据卡上。
    • 82. 发明申请
    • SCREENING METHODS FOR HEAT-SHOCK RESPONSE MODULATORS
    • 用于热冲击响应调制器的筛选方法
    • US20110166038A1
    • 2011-07-07
    • US12994703
    • 2009-06-03
    • Bin ZhangShi Chung NgQingyan Au
    • Bin ZhangShi Chung NgQingyan Au
    • C40B30/06C40B60/00C07C61/29
    • G01N33/5035
    • High-throughput methods are provided for quantitatively measuring the modulation of heat shock protein (HSP) expression in a cell by exposing the cell to at least one stress and measuring cellular stress responses. High-throughput methods for identifying modulators (activators or inhibitors) of HSP or HSF expression in a cell by treating the cell with an agent, such as a compound or composition, exposing the cell to a stress, and measuring responses of the cell to the stress in the presence or absence of the agent are also provided. Devices useful in performing high-throughput methods of the invention, and modulators identified using such methods, are also provided.
    • 提供了高通量方法,用于通过将细胞暴露于至少一种应激和测量细胞应激反应来定量测量细胞中热休克蛋白(HSP)表达的调节。 通过用试剂(例如化合物或组合物)将细胞暴露于应激来测定细胞中的HSP或HSF表达的调节剂(激活剂或抑制剂)的高通量方法,以及测量细胞对 还提供在存在或不存在试剂的情况下的压力。 还提供了可用于执行本发明的高通量方法的装置,以及使用这些方法识别的调制器。
    • 85. 发明申请
    • MULTIPLE PROCESSING CORE DATA SORTING
    • 多处理核心数据分配
    • US20110055492A1
    • 2011-03-03
    • US12553883
    • 2009-09-03
    • Ren WuBin ZhangMeichun Hsu
    • Ren WuBin ZhangMeichun Hsu
    • G06F12/10
    • G06F9/5066G06F7/24
    • Sorting data using a multi-core processing system is disclosed. An unsorted data set is copied from a global memory device to a shared memory device. The global memory device can store data sets for the multi-core processing system. The shared memory device can store unsorted data sets for sorting. The unsorted data set can include a plurality of data elements. The unsorted data set can be sorted into sorted data in parallel on the shared memory device using a cluster of processors of the multi-core processing system. The cluster of processors may include at least as many processors as a number of the data elements in the unsorted data set. The sorted data can be copied from the shared memory device to the global memory device.
    • 公开了使用多核处理系统对数据进行排序。 将未分类的数据集从全局存储设备复制到共享存储器设备。 全局存储设备可以存储多核处理系统的数据集。 共享内存设备可以存储未排序的数据集进行排序。 未排序的数据集可以包括多个数据元素。 未分类数据集可以使用多核处理系统的一组处理器在共享存储设备上并行分类为排序数据。 处理器集群可以包括至少与未排序的数据集中的数据元素的数量一样多的处理器。 分类数据可以从共享存储设备复制到全局存储设备。
    • 86. 发明授权
    • USB connector and USB device
    • USB连接器和USB设备
    • US07828599B2
    • 2010-11-09
    • US12391612
    • 2009-02-24
    • Menglong ZhaoBin Zhang
    • Menglong ZhaoBin Zhang
    • H01R13/648
    • H01R13/6594H01R13/5845H01R13/64H01R13/642H01R13/6471H01R13/6485H01R13/6658H01R35/04Y10S439/936Y10S439/947
    • A USB connector for connecting with a USB female comprises metal legs, a connecting line, a substrate and a rotating shaft assembly. One end of the metal legs connects with one end of the connecting line. The metal legs are formed on a surface of the substrate. The connecting line is fixed to the surface of the substrate. The rotating shaft assembly is fixed to the surface of the substrate. The present invention also provides a USB device. According to the USB connector and the USB device of the present invention, the metal legs are formed on the surface of the substrate so as to ensure the connecting strength of the metal legs. Since the size of the USB connector depends mainly on the substrate and as long as the thickness meets a requirement of inserting the USB connector into the USB female, the thickness of the USB connector and further the thickness of the USB device are reduced without compromising the function of the USB connector. Compared with the conventional USB products, the thickness of the USB device according to the present invention is greatly reduced so that the USB device takes less space and easy to carry. It not only meets the people's requirement for exquisite and compact electronic products, but also improves the practicality and aesthetics of the USB device.
    • 用于与USB母头连接的USB连接器包括金属支腿,连接线,基板和旋转轴组件。 金属腿的一端与连接线的一端连接。 金属腿形成在基板的表面上。 连接线固定到基板的表面。 旋转轴组件固定到基板的表面。 本发明还提供一种USB装置。 根据本发明的USB连接器和USB装置,金属支柱形成在基板的表面上,以确保金属支柱的连接强度。 由于USB连接器的尺寸主要取决于基板,只要厚度满足将USB连接器插入USB母头的要求,USB连接器的厚度以及USB设备的厚度进一步减小,而不会影响 USB连接器的功能。 与传统的USB产品相比,根据本发明的USB设备的厚度大大降低,使得USB设备占用较少的空间并且易于携带。 它不仅满足了人们对精巧紧凑的电子产品的要求,而且提高了USB设备的实用性和美观性。