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    • 3. 发明授权
    • Method and device for recording data of terminal
    • 记录终端数据的方法和装置
    • US09521233B2
    • 2016-12-13
    • US13522525
    • 2010-09-17
    • Jun Xie
    • Jun Xie
    • G06F15/173H04M1/725H04M1/656H04L12/70H04L12/64H04M3/42
    • H04M1/72522H04L2012/563H04L2012/5636H04L2012/5652H04L2012/6443H04L2463/121H04M1/656H04M3/42221H04M2250/60
    • A method and device for recording data of a terminal are disclosed. The method includes: setting a relation condition list for triggering recording among function modules, and setting a corresponding random probability generator for each function module; determining whether to start recording data, and whether to end the data recording operation in accordance with the relation condition list or the random probability generator, during the operation process of each function module; and sending the respective data packets obtained by recording to a data management module for storage after the data record operation of each function module is ended. By adopting the method and device, fuzzy recording can be performed on data of the terminal, and data of different function modules can be stored centrally, and a query operation is simplified.
    • 公开了一种用于记录终端数据的方法和装置。 该方法包括:设置用于在功能模块之间触发记录的关系条件列表,并为每个功能模块设置相应的随机概率发生器; 在每个功能模块的操作过程中,确定是否开始记录数据,以及是否根据关系条件列表或随机概率发生器结束数据记录操作; 并且在每个功能模块的数据记录操作结束之后将通过记录获得的各个数据包发送到数据管理模块进行存储。 通过采用该方法和装置,可以对终端的数据执行模糊记录,可以集中存储不同功能模块的数据,简化查询操作。
    • 6. 发明申请
    • INJECTION METHOD FOR MICROFLUIDIC CHIPS
    • 微流感注射液的注射方法
    • US20100155244A1
    • 2010-06-24
    • US12341233
    • 2008-12-22
    • Wei-Cheng TianErin Jean FinehoutLi ZhuJun Xie
    • Wei-Cheng TianErin Jean FinehoutLi ZhuJun Xie
    • B01D57/02
    • B01D57/02
    • Methods and systems for injecting a sample during electrophoresis, that generally comprise: loading a sieving matrix through a first end of a separation channel; having the an end of the sieving matrix at a set distance from the intersection of the separation channel and a loading channel; pressure loading a sample through the loading channel and filling an empty portion of the separation channel; applying an electric field across the separation channel while flowing a washing buffer through the loading channel; and injecting a portion of the sample into the separation channel, wherein the portion of the sample injected is of a size that is determined by a distance between the end of the sieving matrix and the intersection of the loading and separation channels.
    • 用于在电泳期间注射样品的方法和系统,其通常包括:通过分离通道的第一端装载筛分基质; 筛分矩阵的结束距离分离通道和加载通道的交点处一定距离; 通过加载通道加载样品并填充分离通道的空的部分; 在使洗涤缓冲液流过所述装载通道的同时,在所述分离通道上施加电场; 以及将所述样品的一部分注入所述分离通道中,其中所述注入的所述样品的所述部分具有由所述筛分矩阵的末端与所述加载和分离通道的交点之间的距离确定的尺寸。
    • 9. 发明申请
    • On-chip electrochemical flow cell
    • 片上电化学流通池
    • US20070145262A1
    • 2007-06-28
    • US11454364
    • 2006-06-16
    • Yu-Chong TaiJun XieDarron Young
    • Yu-Chong TaiJun XieDarron Young
    • H01J49/00
    • H01J49/165H01J49/0018
    • A microfluidic device including at least one microfabricated electrochemical flow cell and method of manufacturing such a device are disclosed herein. The electrochemical cell comprising at least a substrate, wherein the substrate has a front face and a back face; a channel wall bonded to the front face of the substrate without using a spacer, wherein the wall and the substrate define a microchannel having an inlet for receiving a fluid and an outlet for transmitting the fluid; a plurality of electrodes inside the microchannel, wherein said plurality of electrodes comprises one or more working electrodes and one or more counter electrodes, wherein the fluid flows over the surface of the plurality of electrodes and wherein optionally a length of the microchannel over the one or more working electrodes is greater than a height of the microchannel over the one or more working electrodes. Other peripherals may also be included in the microfluidic device of the current invention, including an electrospray ionization (ESI) nozzle, one or more detectors, a chromatographic column, etc. each of which may be microfluidically coupled to the electrochemical flow cells to create more complicated analytic devices.
    • 本文公开了包括至少一个微加工电化学流动池的微流体装置及其制造方法。 所述电化学电池至少包括衬底,其中所述衬底具有正面和背面; 通道壁,其不使用间隔件结合到所述基板的前表面,其中所述壁和所述基板限定具有用于接收流体的入口和用于传输所述流体的出口的微通道; 微通道内的多个电极,其中所述多个电极包括一个或多个工作电极和一个或多个反电极,其中所述流体流过所述多个电极的表面,并且其中可选地,所述微通道的长度在所述一个或多个 更多的工作电极大于在一个或多个工作电极上的微通道的高度。 其他外围设备也可以包括在本发明的微流体装置中,包括电喷雾离子化(ESI)喷嘴,一个或多个检测器,色谱柱等,其中每一个可以微流体耦合到电化学流动池以产生更多的 复杂的分析设备。