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    • 1. 发明授权
    • Ionization device
    • 电离装置
    • US08022362B2
    • 2011-09-20
    • US12520536
    • 2007-12-13
    • Daiji OkudaShigeru KimotoHiroshi OkudaMotoaki Adachi
    • Daiji OkudaShigeru KimotoHiroshi OkudaMotoaki Adachi
    • H01J49/14H01J37/317H01J37/04
    • G01N15/0266
    • An ionization device includes an ionization chamber (1) and a charging chamber (20) separately prepared therefrom. The ionization chamber (1) has a discharge electrode (6) and an opposing electrode (10) in an interior (4) of a case having an ionizing gas introducing inlet (14). The opposing electrode (10) has an orifice (8) communicating with outside and formed at a position opposing the tip end of the discharge electrode (6). The charging chamber (20) is arranged adjacent to the orifice (8) side of the ionization chamber (1). An introduction inlet (28) of a charge object introduction portion of the charging chamber (20) is arranged at the position near the exit of the orifice (8). The size of the orifice (8) is set so that the charge object is sucked therein by a negative pressure generated when a gas containing ions is sprayed from the exit of the orifice (8) into the charging chamber (20) and the ionization chamber (1) has a higher pressure than the charging chamber (20).
    • 电离装置包括离子化室(1)和从其分别制备的充电室(20)。 电离室(1)在具有电离气体导入口(14)的壳体的内部(4)中具有放电电极(6)和对置电极(10)。 对置电极(10)具有与外部连通并形成在与放电电极(6)的前端相对的位置的孔口(8)。 充电室(20)邻近电离室(1)的孔(8)侧布置。 充气室(20)的充电对象导入部的导入口(28)配置在孔口(8)的出口附近。 孔口8的尺寸被设定为使得当从孔口8的出口喷射含离子的气体进入充气室(20)和电离室(10)时,通过产生的负压将电荷对象吸入其中 (1)具有比充电室(20)更高的压力。
    • 2. 发明申请
    • IONIZATION DEVICE
    • 离子装置
    • US20090314953A1
    • 2009-12-24
    • US12520536
    • 2007-12-13
    • Daiji OkudaShigeru KimotoHiroshi OkudaMotoaki Adachi
    • Daiji OkudaShigeru KimotoHiroshi OkudaMotoaki Adachi
    • H01J27/00
    • G01N15/0266
    • An ionization device includes an ionization chamber (1) and a charging chamber (20) separately prepared therefrom. The ionization chamber (1) has a discharge electrode (6) and an opposing electrode (10) in an interior (4) of a case having an ionizing gas introducing inlet (14). The opposing electrode (10) has an orifice (8) communicating with outside and formed at a position opposing the tip end of the discharge electrode (6). The charging chamber (20) is arranged adjacent to the orifice (8) side of the ionization chamber (1). An introduction inlet (28) of a charge object introduction portion of the charging chamber (20) is arranged at the position near the exit of the orifice (8). The size of the orifice (8) is set so that the charge object is sucked therein by a negative pressure generated when a gas containing ions is sprayed from the exit of the orifice (8) into the charging chamber (20) and the ionization chamber (1) has a higher pressure than the charging chamber (20).
    • 电离装置包括离子化室(1)和从其分别制备的充电室(20)。 电离室(1)在具有电离气体导入口(14)的壳体的内部(4)中具有放电电极(6)和相对电极(10)。 对置电极(10)具有与外部连通并形成在与放电电极(6)的前端相对的位置的孔口(8)。 充电室(20)邻近电离室(1)的孔(8)侧布置。 充气室(20)的充电对象导入部的导入口(28)配置在孔口(8)的出口附近。 孔口8的尺寸被设定为使得当从孔口8的出口喷射含离子的气体进入充气室(20)和电离室(10)时,通过产生的负压将电荷对象吸入其中 (1)具有比充电室(20)更高的压力。