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    • 33. 发明授权
    • Detection circuit and method for a liquid crystal display
    • 液晶显示器的检测电路及方法
    • US09275568B2
    • 2016-03-01
    • US12710713
    • 2010-02-23
    • Zhilong PengXiangfei HeWei Wang
    • Zhilong PengXiangfei HeWei Wang
    • G06F3/038G09G3/00G09G3/36
    • G09G3/006G06F3/038G09G3/3406G09G3/3614G09G3/3648G09G2300/0439G09G2310/08G09G2330/10
    • A detection circuit and a detection method for liquid crystal display are provided. The detection circuit comprises gate driver for providing row scan signal to liquid crystal cell to be detected; signal source for providing polarity inversion signal to source driver, polarity inversion signal comprises continuous high level signal and continuous low level signal; source driver for performing digital-analog conversion on received display data signal according to preset reference voltage and polarity inversion signal, generating pixel voltage signal, and sending pixel voltage signal to liquid crystal cell to be detected, polarity inversion mode formed by pixel voltage signal is column inversion mode. The polarity inversion mode of column inversion, formed by pixel voltage signal in technical solution makes white dot of damaged area of alignment film is more prominent during detection process, so it would be easy for the operator to recognize it and avoid the issue of missing detection.
    • 提供了用于液晶显示的检测电路和检测方法。 检测电路包括用于向要检测的液晶单元提供行扫描信号的栅极驱动器; 用于向源极驱动器提供极性反转信号的信号源,极性反转信号包括连续高电平信号和连续低电平信号; 源驱动器,根据预置的参考电压和极性反转信号对接收到的显示数据信号进行数模转换,产生像素电压信号,并将像素电压信号发送到要检测的液晶单元,由像素电压信号形成的极性反转模式为 列反转模式。 在技​​术方案中由像素电压信号形成的列反转极性反转模式使得检测过程中取向膜损伤区域的白点更加突出,因此操作者很容易识别,避免了检测失误的问题 。
    • 39. 发明授权
    • Hybrid energy storage systems utilizing redox active organic compounds
    • 利用氧化还原活性有机化合物的混合储能系统
    • US09130218B2
    • 2015-09-08
    • US13439083
    • 2012-04-04
    • Wei WangWu XuLiyu LiZhenguo Yang
    • Wei WangWu XuLiyu LiZhenguo Yang
    • H01M8/18H01M12/08
    • H01M8/188H01M12/08Y02E60/128Y02E60/528
    • Redox flow batteries (RFB) have attracted considerable interest due to their ability to store large amounts of power and energy. Non-aqueous energy storage systems that utilize at least some aspects of RFB systems are attractive because they can offer an expansion of the operating potential window, which can improve on the system energy and power densities. One example of such systems has a separator separating first and second electrodes. The first electrode includes a first current collector and volume containing a first active material. The second electrode includes a second current collector and volume containing a second active material. During operation, the first source provides a flow of first active material to the first volume. The first active material includes a redox active organic compound dissolved in a non-aqueous, liquid electrolyte and the second active material includes a redox active metal.
    • 氧化还原电池(RFB)由于能够存储大量电能和能量而引起了相当大的兴趣。 利用RFB系统的至少一些方面的非水能量存储系统是有吸引力的,因为它们可以提供操作电位窗口的扩展,这可以提高系统能量和功率密度。 这种系统的一个示例具有分离第一和第二电极的分离器。 第一电极包括第一集电器和包含第一活性材料的体积。 第二电极包括第二集电器和包含第二活性材料的体积。 在操作期间,第一源提供第一活性材料流到第一体积。 第一活性物质包括溶解在非水电解液中的氧化还原活性有机化合物,第二活性物质包括氧化还原活性金属。
    • 40. 发明授权
    • Internal liquid separating hood-type condensation heat exchange tube
    • 内部液体分离罩型冷凝热交换管
    • US09097470B2
    • 2015-08-04
    • US13984659
    • 2012-03-05
    • Hongxia ChenJinliang XuWei Wang
    • Hongxia ChenJinliang XuWei Wang
    • B01F3/04F28F1/10F28F13/04F28F9/013F28D15/04F28F1/42F28F1/16F28D15/02
    • F28F1/10F28D15/025F28D15/046F28F1/16F28F1/426F28F9/013F28F13/04
    • An internal liquid separating hood-type condensation head exchange tube, comprising an external heat exchange tube and an internal liquid separating hood disposed in the cavity of the external heat exchange tube and coaxial with the external heat exchange tube. The internal liquid separating hood is a hollow tube with a plurality of micropores or gaps distributed on a wall surface. The condensate formed during the heat exchange is pumped to the internal liquid separating hood in time under the effect of surface tension of the liquid via the micropores or gaps, and then is discharged from the heat exchange tube by the internal liquid separating hood. Vapor is retained to flow in the annular region between the external heat exchange tube and the internal liquid separating hood, so the inner wall of the external heat exchange tube comes into contact with the vapor to the greatest extent.
    • 内部液体分离罩型冷凝水头更换管,包括设置在外部热交换管的空腔中并与外部热交换管同轴的外部热交换管和内部分液罩。 内部液体分离罩是具有分布在壁表面上的多个微孔或间隙的中空管。 在热交换期间形成的冷凝物在液体的表面张力经由微孔或间隙的作用下及时被泵送到内部液体分离罩中,然后通过内部分液罩从换热管排出。 蒸汽保持在外部热交换管和内部分液罩之间的环形区域中流动,因此外部热交换管的内壁最大程度地与蒸气接触。