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    • 1. 发明申请
    • DETECTION METHOD, DEVICE AND SYSTEM FOR DETECTING SELF-CAPACITANCE TOUCH SCREEN
    • 用于检测自适应触摸屏的检测方法,装置和系统
    • US20130342497A1
    • 2013-12-26
    • US13596837
    • 2012-08-28
    • Lianghua MoWeiping Liu
    • Lianghua MoWeiping Liu
    • G06F3/044
    • G06F3/044G06F3/0418
    • It is provided a self-capacitance touch screen detection method, device and system. The method includes: receiving a scanning waveform by a currently detected channel of a self-capacitance touch screen; inputting the voltage of the scanning waveform into an input terminal of a voltage following unit, and driving at least a preset channel that is adjacent to the currently detected channel of the self-capacitance touch screen via an output terminal of the voltage following unit; and calculating self-capacitance touch screen coordinate data for a touch in the currently detected channel. The method not only avoids the disturbance to the detection for a touch in the currently detected channel generated due to water vapor or a water droplet, but also obtains an increased relative change generated by the same touch, and thereby the detection sensibility of the self-capacitance touch screen is improved.
    • 提供了一种自电容式触摸屏检测方法,装置和系统。 该方法包括:通过自电容触摸屏的当前检测通道接收扫描波形; 将所述扫描波形的电压输入到电压跟随单元的输入端,并经由所述电压跟随单元的输出端至少驱动与所述自电容触摸屏的当前检测到的通道相邻的预设通道; 以及计算当前检测到的通道中的触摸的自电容触摸屏坐标数据。 该方法不仅避免了由于水蒸气或水滴而产生的当前检测通道中的触摸检测的干扰,而且获得了由相同触摸产生的增加的相对变化, 电容触摸屏得到改善。
    • 8. 发明申请
    • SINGLE LAYER SELF-CAPACITANCE TOUCH SCREEN REALIZING MULTI-TOUCH IDENTIFICATION AS WELL AS ITS DATA PROCESSING METHOD
    • 单层自适应触摸屏实现多触摸识别及其数据处理方法
    • US20140009438A1
    • 2014-01-09
    • US13929267
    • 2013-06-27
    • Weiping LiuJK Zhang
    • Weiping LiuJK Zhang
    • G06F1/16G06F3/044
    • G06F1/16G06F3/044G06F2203/04104
    • A single layer self-capacitance touch screen and its data processing method which can realize multi-touch identification, the said touch screen includes at least two self-capacitance electrode assemblies independent of each other, all of which are located in the same plane layer and fully cover the whole touch zone of the touch screen without overlapping each other; the said self-capacitance electrode assembly includes at least a pair of self-capacitance coupling electrode couples, which include two electrode plates seated in the same plane, and these two electrode plates all include their own straight-line electrode plate coupling side and straight-line electrode plate base, which have included angle of acute angle; in the self-capacitance electrode assembly, the centre lines of the self-capacitance coupling electrode couples are placed parallel to each other, and the centre lines of arbitrarily two self-capacitance coupling electrode couples are also placed parallel to each other. This invention fully utilizes simple technological structure feature of single layer self-capacitance touch screen and realizes multi-point touch control function at possible lowest manufacturing cost.
    • 一种可实现多点触摸识别的单层自电容触摸屏及其数据处理方法,所述触摸屏包括彼此独立的至少两个自电容电极组件,它们都位于相同的平面层中,并且 完全覆盖触摸屏的整个触摸区域,而不会重叠; 所述自电容电极组件包括至少一对自电容耦合电极耦合,其包括两个位于同一平面中的电极板,并且这两个电极板都包括它们自己的直线电极板耦合侧和直线电极板耦合侧, 线电极板底座,具有夹角角; 在自电容电极组件中,自电容耦合电极耦合的中心线彼此平行放置,并且任意两个自电容耦合电极对的中心线也彼此平行放置。 本发明充分利用单层自电容触摸屏的简单工艺结构特点,以最低的制造成本实现多点触摸控制功能。
    • 9. 发明申请
    • Stacked type lithium ion secondary batteries
    • 堆叠式锂离子二次电池
    • US20050048361A1
    • 2005-03-03
    • US10932362
    • 2004-08-31
    • Chaunfu WangWeiPing LiuHong XiaoYuchen He
    • Chaunfu WangWeiPing LiuHong XiaoYuchen He
    • H01M2/02H01M2/04H01M2/08H01M2/18H01M2/26H01M4/02H01M4/13H01M4/131H01M4/58H01M4/66H01M10/052H01M10/0525H01M10/058H01M10/0583
    • H01M4/70H01M2/26H01M2/34H01M4/02H01M4/13H01M4/131H01M4/661H01M10/052H01M10/0525H01M10/0583H01M2004/021
    • A type of stacked lithium ion secondary battery is disclosed. Therein, the positive electrode is formed by smearing an active material on the surface of an aluminum foil body, where said active material includes lithium with attachable and detachable lithium ions and compound oxide(s) of transition metals; and a strip extending from said aluminum foil body is used as the conductor of the positive electrode. The negative electrode is formed by smearing an active material on the surface of a copper foil body, where said active material includes carbon material capable of attaching and detaching lithium ions; and a strip extending from said copper foil body is used as the conductor of the negative electrode. The positive and negative electrodes in plate form are arranged and stacked on the two sides of the separator forming said electrode core. The stacked lithium ion secondary battery can effectively use the internal space of the battery shell, increasing the capacity density and decreasing the battery's internal resistance; thereby improving the large current discharge characteristic of the lithium ion secondary battery.
    • 公开了一种堆叠的锂离子二次电池。 其中,正极通过在铝箔体的表面上涂抹活性物质而形成,其中所述活性材料包括具有可附接和可分离的锂离子的锂和过渡金属的复合氧化物; 并且使用从所述铝箔体延伸的条作为正极的导体。 负极通过在铜箔体的表面上涂抹活性物质而形成,其中所述活性材料包括能够附着和分离锂离子的碳材料; 并且使用从所述铜箔体延伸的条作为负极的导体。 板状的正极和负极被布置和堆叠在形成所述电极芯的隔膜的两侧。 堆叠式锂离子二次电池可有效利用电池外壳的内部空间,提高电池容量密度,降低电池内阻; 从而提高锂离子二次电池的大电流放电特性。