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    • 8. 发明申请
    • SWITCH CONTROL UNIT, TEST APPARATUS AND METHOD FOR LIQUID CRYSTAL CELL
    • 开关控制单元,液晶单元的测试装置和方法
    • US20100090719A1
    • 2010-04-15
    • US12574833
    • 2009-10-07
    • Zhilong PENGXiangfei HEChunbae PARKWei WANG
    • Zhilong PENGXiangfei HEChunbae PARKWei WANG
    • G01R31/00G09G5/00
    • G01R1/20G09G3/006G09G3/3688
    • The present invention discloses a switch control unit, a test apparatus and method for a liquid crystal cell. The switch control unit controls a signal input to the liquid crystal display driver and controls the output of the signal from the liquid crystal display driver accordingly, and includes a control signal generator and a switch module. The test apparatus for the liquid crystal cell comprises: a switch control unit connected with a gate driver, for controlling ON and OFF of a signal input to the gate driver and controlling ON and OFF of a gate scan signal accordingly. The test method for the liquid crystal cell comprises: inputting a test signal; controlling ON and OFF of a gate scan signal by controlling ON and OFF of a signal input to a gate driver so as to determine the badness positions on a screen.
    • 本发明公开了一种用于液晶单元的开关控制单元,测试装置和方法。 开关控制单元控制输入到液晶显示驱动器的信号,并相应地控制来自液晶显示驱动器的信号的输出,并且包括控制信号发生器和开关模块。 用于液晶单元的测试装置包括:与栅极驱动器连接的开关控制单元,用于控制输入到栅极驱动器的信号的ON和OFF,并相应地控制栅极扫描信号的ON和OFF。 液晶单元的测试方法包括:输入测试信号; 通过控制输入到门驱动器的信号的ON和OFF来控制门扫描信号的ON和OFF,以便确定屏幕上的不良位置。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR BALANCING CELLS IN A BATTERY PACK WITH SELECTIVE BYPASS PATHS
    • 在具有选择性旁路状态的电池组中平衡电池的系统和方法
    • US20090091293A1
    • 2009-04-09
    • US12335325
    • 2008-12-15
    • Wei WANGGuoxing LiSean XIAO
    • Wei WANGGuoxing LiSean XIAO
    • H02J7/00
    • H02J7/0016
    • A system and method for cell balancing with smart low-voltage control circuit. The cell balancing system comprises a plurality of battery cells, an external bypass path for each cell, an internal bypass path for each cell, an input terminal receiving an enable signal for each cell, an input terminal receiving a selection signal, and a cell balancing unit for generating a configuration signal to conduct the external bypass path or internal bypass path. The enable signal is configured to enable a bypass current of each cell, and the selection signal is configured to select the external bypass path or internal bypass path. The cell balancing unit is employed to receive signals from input terminals, and generate a configuration signal to control the conductance of external bypass paths or internal bypass paths.
    • 一种智能低压控制电路电池平衡的系统和方法。 电池平衡系统包括多个电池单元,每个单元的外部旁路路径,每个单元的内部旁路路径,每个单元接收使能信号的输入端子,接收选择信号的输入端子和单元平衡 用于产生配置信号以传导外部旁路路径或内部旁路路径的单元。 使能信号被配置为启用每个单元的旁路电流,并且选择信号被配置为选择外部旁路路径或内部旁路路径。 采用电池平衡单元从输入端子接收信号,并产生配置信号以控制外部旁路路径或内部旁路路径的电导。
    • 10. 发明申请
    • PROCESS FOR PREPARING POWDER OF NIOBIUM SUBOXIDES OR NIOBIUM
    • 制备铌氧化物或铌的粉末的方法
    • US20090053132A1
    • 2009-02-26
    • US12196492
    • 2008-08-22
    • Wenfeng SHIXudong XIYong LIXueqing CHENWei WANG
    • Wenfeng SHIXudong XIYong LIXueqing CHENWei WANG
    • C01G33/00B22F9/20
    • C01G33/00B22F9/20B22F2998/10C01P2004/03C01P2006/10C01P2006/40C01P2006/80B22F1/0003B22F1/0085
    • The present invention relates to a process for preparing powders of niobium suboxides or niobium, wherein the process comprising: mixing the niobium oxides as raw material with reducing agent, conducting a reaction at a temperature in the range of 600˜1300° C. in an atmosphere of vacuum or inert gas or hydrogen gas, leaching the reaction product to remove the residual reducing agent and the oxides of the reducing agent and other impurities, heat treating at a temperature of the range of 1000˜1600° C. in an atmosphere of vacuum or inert gas, and screening to obtain the powders of niobium suboxide or niobium of capacitor grade. According to the present invention, the niobium oxides were directly reduced into capacitor grade niobium suboxides or niobium with reducing agents which can be easily removed by mineral acids, wherein the speed of the reaction can be controlled and the reaction can directly reduce the niobium oxides into capacitor grade niobium suboxides or niobium powder. According to the present invention, the process is simple with high yield and high productivity. The products obtained have good flowability, low impurities, uniform distribution of oxygen, and have good electrical properties.
    • 本发明涉及一种制备低氧化铌或铌粉末的方法,其中该方法包括:将作为原料的铌氧化物与还原剂混合,在600〜1300℃的温度范围内进行反应 气氛中的真空或惰性气体或氢气,浸出反应产物以除去残留的还原剂和还原剂的氧化物等杂质,在1000〜1600℃的温度范围内进行热处理,在 真空或惰性气体,并筛选得到电容器级的低氧化铌或铌粉末。 根据本发明,铌氧化物通过还原剂直接还原成电容器级铌低氧化物或铌,其可以通过无机酸容易地除去,其中可以控制反应速度,反应可以直接将铌氧化物还原成 电容器级铌粉或铌粉。 根据本发明,该方法简单,产率高,生产率高。 所得产品流动性好,杂质低,氧分布均匀,电性能好。