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    • 2. 发明申请
    • HYBRID POWER DRIVING SYSTEM
    • 混合动力驱动系统
    • WO2009143694A1
    • 2009-12-03
    • PCT/CN2009/000560
    • 2009-05-21
    • BYD COMPANY LIMITEDREN, YiNIU, RuruLIU, Xiaojun
    • REN, YiNIU, RuruLIU, Xiaojun
    • B60K6/48
    • B60K6/365B60K6/48F16H3/54Y02T10/6221
    • A hybrid power driving system includes a planetary gear mechanism having a first rotating component, a second rotating component, and a third rotating component. The system also includes an electric motor (1) operatively coupled to the first rotating component, a clutch (9), an internal-combustion engine (2) operatively coupled to the first rotating component by the clutch (9), and a brake (8) operatively coupled to the second rotating component and configured to control the second rotating component in a locked position or in an unlocked position. The third rotating component is operatively coupled to an output end (10) to provide driving power.
    • 混合动力驱动系统包括具有第一旋转部件,第二旋转部件和第三旋转部件的行星齿轮机构。 该系统还包括可操作地联接到第一旋转部件的电动机(1),离合器(9),通过离合器(9)可操作地联接到第一旋转部件的内燃机(2)和制动器 8),其可操作地联接到第二旋转部件并且被配置为在锁定位置或解锁位置中控制第二旋转部件。 第三旋转部件可操作地联接到输出端(10)以提供驱动力。
    • 6. 发明申请
    • PHOTO-IONIZATION SENSOR FOR DETECTING THE CONCENTRATION OF GAS AND METHOD THEREOF
    • 用于检测气体浓度的光电传感器及其方法
    • WO2008043201A8
    • 2009-06-04
    • PCT/CN2006002609
    • 2006-10-08
    • RAE SYSTEMS SHANGHAI INCQIAN YONGBIAOSU AIMINLIU XIAOJUNHSI PETER C
    • QIAN YONGBIAOSU AIMINLIU XIAOJUNHSI PETER C
    • G01N27/66
    • G01N27/66H01J41/02
    • A photo-ionization detector for detecting gas concentration and method thereof. Said detector includes a first bias electrode and a first measurement electrode. The first bias electrode is connected with a first bias circuit for absorbing one type of charge ion. The first measurement electrode is connected with a measurement circuit for absorbing one type of reverse charge ion. The constituent of inert gases in said ultraviolet lamp, the material of optical window and the material of low potential electrode, which is the material of said first measurement electrode or said first bias electrode, are selected that the ultraviolet light createdby the ultraviolet lamp and transmitted through said optical window incident upon the surface of said low potential electrode can create the photoelectric effect and that said driver electrodes can apply an high voltage AC signal on said ultraviolet lamp, which is high enough so that the number of discharged electrons overflow from the surface of said low potential electrode are enough to neutralize the positive ions, which are deposited near the three-dimensional space range of said low potential electrode, so that the saturated phenomenon of concentration measurement caused by the deposition of positive ions can be eliminated.
    • 一种用于检测气体浓度的光电离检测器及其方法。 所述检测器包括第一偏置电极和第一测量电极。 第一偏置电极与用于吸收一种类型的电荷离子的第一偏置电路连接。 第一测量电极与用于吸收一种反向电荷离子的测量电路连接。 选择所述紫外灯中的惰性气体的组分,光学窗口的材料和作为所述第一测量电极或所述第一偏置电极的材料的低电位电极的材料,使得由紫外线灯产生的紫外线和透射 通过入射在所述低电位电极的表面上的所述光学窗口可以产生光电效应,并且所述驱动电极可以对所述紫外线灯施加高电压AC信号,所述高电压AC信号足够高,使得放电的电子数量从表面溢出 所述低电位电极足以中和沉积在所述低电位电极的三维空间范围附近的正离子,从而可以消除由正离子的沉积引起的饱和浓度测量现象。