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    • 1. 发明授权
    • Ion mobility spectrometer
    • 离子迁移谱仪
    • US07714278B2
    • 2010-05-11
    • US11659262
    • 2005-08-02
    • Paul BoyleAndrew KoehlDavid Ruiz Alonso
    • Paul BoyleAndrew KoehlDavid Ruiz Alonso
    • H01J49/28
    • G01N27/624
    • An ion mobility spectrometer is described having an ion filter in the form of at least one ion channel having a plurality of electrodes. A time-varying electric potential applied to the conductive layers allows the filler to selectively admit ion species. The electric potential has a drive and a transverse component, and in preferred embodiments each of the electrodes is involved in generating a component of both the drive and transverse fields. The device may be used without a drift gas flow, Microfabrication techniques are described for producing microscale spectrometers, as are various uses of the spectrometer.
    • 描述了一种离子迁移谱仪,其具有至少一个具有多个电极的离子通道形式的离子过滤器。 施加到导电层的时变电位允许填料选择性地允许离子种类。 电位具有驱动和横向分量,并且在优选实施例中,每个电极参与产生驱动和横向场的分量。 该设备可以不使用漂移气体流动使用,微加工技术被描述用于生产微量光谱仪,以及光谱仪的各种用途。
    • 6. 发明申请
    • Ion Mobility Spectrometer
    • 离子流动光谱仪
    • US20080191132A1
    • 2008-08-14
    • US11659262
    • 2005-08-02
    • Paul BoyleAndrew KoehlDavid Ruiz Alonso
    • Paul BoyleAndrew KoehlDavid Ruiz Alonso
    • H01J49/40
    • G01N27/624
    • An ion mobility spectrometer is described having an ion filter in the form of at least one ion channel having a plurality of electrodes. A time-varying electric potential applied to the conductive layers allows the filler to selectively admit ion species. The electric potential has a drive and a transverse component, and in preferred embodiments each of the electrodes is involved in generating a component of both the drive and transverse fields. The device may be used without a drift gas flow, Microfabrication techniques are described for producing microscale spectrometers, as are various uses of the spectrometer.
    • 描述了一种离子迁移谱仪,其具有至少一个具有多个电极的离子通道形式的离子过滤器。 施加到导电层的时变电位允许填料选择性地允许离子种类。 电位具有驱动和横向分量,并且在优选实施例中,每个电极参与产生驱动和横向场的分量。 该设备可以不使用漂移气体流动使用,微加工技术被描述用于生产微量光谱仪,以及光谱仪的各种用途。