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    • 3. 发明授权
    • Ion transfer tube with spatially alternating DC fields
    • 离子转移管与空间交替的直流场
    • US07982183B2
    • 2011-07-19
    • US12513939
    • 2007-11-07
    • Alexander MakarovReinhold PeschRobert MalekViacheslav Kozlovskiy
    • Alexander MakarovReinhold PeschRobert MalekViacheslav Kozlovskiy
    • H01J49/24H01J49/04H01J3/18H01J37/301
    • H01J49/065
    • An ion transfer arrangement for transporting ions between higher and lower pressure regions of a mass spectrometer includes an electrode assembly (120) with a first plurality of ring electrodes (205) arranged in alternating relation with a second plurality of ring electrodes (210). The first plurality of ring electrodes (205) are narrower than the second plurality of ring electrodes (210) in a longitudinal direction, but the first plurality of ring electrodes have a relatively high magnitude voltage of a first polarity applied to them whereas the second plurality of ring electrodes (210) have a relatively lower magnitude voltage applied to them, of opposing polarity to that applied to the first set of ring electrodes (205). In this manner, ions passing through the ion transfer arrangement experience spatially alternating asymmetric electric fields that tend to focus ions away from the inner surface of the channel wall and towards the channel plane or axis of symmetry.
    • 用于在质谱仪的较高和较低压力区域之间输送离子的离子传递装置包括具有与第二多个环形电极(210)交替设置的第一多个环形电极(205)的电极组件(120)。 第一多个环形电极(205)在纵向方向上比第二多个环形电极(210)窄,但是第一多个环形电极具有施加到它们的第一极性的相对高的幅度电压,而第二个多个环形电极 环形电极(210)具有相对于施加到第一组环形电极(205)的相反极性的相对较低的施加到它们的幅度电压。 以这种方式,通过离子转移装置的离子经历空间交替的不对称电场,其倾向于将离子聚焦离开通道壁的内表面并朝向通道平面或对称轴线。
    • 4. 发明授权
    • Ion transfer arrangement with spatially alternating DC and viscous ion flow
    • 离子转移排列与空间交替的直流和粘性离子流
    • US08148680B2
    • 2012-04-03
    • US12513954
    • 2007-11-07
    • Alexander MakarovReinhold PeschRobert MalekViacheslav Kozlovskiy
    • Alexander MakarovReinhold PeschRobert MalekViacheslav Kozlovskiy
    • H01J37/301H01J49/04H01J49/24H01J3/18
    • H01J49/062H01J3/14
    • A method of transporting gas and entrained ions between higher and lower pressure regions of a mass spectrometer comprises providing an ion transfer conduit 60 between the higher and lower pressure regions. The ion transfer conduit 60 includes an electrode assembly 300 which defines an ion transfer channel. The electrode assembly 300 has a first set of ring electrodes 305 of a first width D1, and a second set of ring electrodes of a second width D2 (≧D1) and interleaved with the first ring electrodes 305. A DC voltage of magnitude V1 and a first polarity is supplied to the first ring electrodes 205 and a DC voltage of magnitude V2 which may be less than or equal to the magnitude of V1 but with an opposed polarity is applied to the second ring electrodes 310. The pressure of the ion transfer conduit 60 is controlled so as to maintain viscous flow of gas and ions within the ion transfer channel.
    • 在质谱仪的较高压力区域和较低压力区域之间输送气体和夹带离子的方法包括在较高压力区域和较低压力区域之间提供离子转移导管60。 离子传递管道60包括限定离子传递通道的电极组件300。 电极组件300具有第一组宽度为D1的环形电极305和第二组宽度D2(≧D1)的第二组环形电极,并与第一环形电极305交错。 将第一极性提供给第一环形电极205,并且可以将小于或等于V1的大小但具有相对极性的幅度为V2的DC电压施加到第二环形电极310.离子转移的压力 管道60被控制以便保持气体和离子在离子传递通道内的粘性流动。
    • 6. 发明申请
    • Method and apparatus for mass spectormetry
    • 质谱法的方法和装置
    • US20070023630A1
    • 2007-02-01
    • US10573394
    • 2004-09-24
    • Robert MalekOliver LangeReinhold PeschStevan Horning
    • Robert MalekOliver LangeReinhold PeschStevan Horning
    • B01D59/44H01J49/00
    • H01J49/0027
    • The present invention relates to mass spectrometry and, more particularly, to the scheduling of the steps involved in performing mass spectrometry. The present invention will be of particular benefit to types of mass spectrometry that generate large quantities of data and hence give rise to lengthy data-processing. The present invention provides a method of mass spectrometry comprising a plurality of cycles, each cycle comprising the steps of (a) preparing ions to be analysed by a mass spectrometer; (b) using a detector of the mass spectrometer to collect data from the ions prepared in step (a); and (c) processing the data collected in step (b) with processing means; wherein at least a part of step (a) and/or a part of step (b) of a cycle is performed concurrently with part (c) of a previous cycle.
    • 本发明涉及质谱,更具体地,涉及执行质谱法所涉及步骤的调度。 本发明对于产生大量数据的质谱的类型特别有益,因此引起冗长的数据处理。 本发明提供一种包含多个循环的质谱方法,每个循环包括以下步骤:(a)制备待通过质谱仪分析的离子; (b)使用质谱仪的检测器从步骤(a)中制备的离子收集数据; 和(c)用处理装置处理在步骤(b)中收集的数据; 其中与先前循环的部分(c)同时执行循环的步骤(a)和/或步骤(b)的一部分的至少一部分。
    • 7. 发明申请
    • Ion Transfer Arrangement with Spatially Alternating DC and Viscous Ion Flow
    • 离子转移布置与空间交替DC和粘性离子流
    • US20100038533A1
    • 2010-02-18
    • US12513954
    • 2007-11-07
    • Alexander A. MakarovReinhold PeschRobert MalekViacheslav Kozlovskiy
    • Alexander A. MakarovReinhold PeschRobert MalekViacheslav Kozlovskiy
    • H01J49/02
    • H01J49/062H01J3/14
    • A method of transporting gas and entrained ions between higher and lower pressure regions of a mass spectrometer comprises providing an ion transfer conduit 60 between the higher and lower pressure regions. The ion transfer conduit 60 includes an electrode assembly 300 which defines an ion transfer channel. The electrode assembly 300 has a first set of ring electrodes 305 of a first width D1, and a second set of ring electrodes of a second width D2 (≧D1) and interleaved with the first ring electrodes 305. A DC voltage of magnitude V1 and a first polarity is supplied to the first ring electrodes 205 and a DC voltage of magnitude V2 which may be less than or equal to the magnitude of V1 but with an opposed polarity is applied to the second ring electrodes 310. The pressure of the ion transfer conduit 60 is controlled so as to maintain viscous flow of gas and ions within the ion transfer channel.
    • 在质谱仪的较高压力区域和较低压力区域之间输送气体和夹带离子的方法包括在较高压力区域和较低压力区域之间提供离子转移导管60。 离子传递管道60包括限定离子传递通道的电极组件300。 电极组件300具有第一组宽度为D1的环形电极305和第二组宽度D2(≧D1)的第二组环形电极,并与第一环形电极305交错。 将第一极性提供给第一环形电极205,并且可以将小于或等于V1的大小但具有相对极性的幅度为V2的DC电压施加到第二环形电极310.离子转移的压力 管道60被控制以便保持气体和离子在离子传递通道内的粘性流动。
    • 8. 发明授权
    • Method and apparatus for mass spectrometry
    • 质谱法和方法
    • US07576318B2
    • 2009-08-18
    • US10573394
    • 2004-09-24
    • Robert MalekOliver LangeReinhold PeschStevan Horning
    • Robert MalekOliver LangeReinhold PeschStevan Horning
    • B01D59/44H01J49/00
    • H01J49/0027
    • The present invention relates to mass spectrometry and, more particularly, to the scheduling of the steps involved in performing mass spectrometry. The present invention will be of particular benefit to types of mass spectrometry that generate large quantities of data and hence give rise to lengthy data-processing. The present invention provides a method of mass spectrometry comprising a plurality of cycles, each cycle comprising the steps of (a) preparing ions to be analysed by a mass spectrometer; (b) using a detector of the mass spectrometer to collect data from the ions prepared in step (a); and (c) processing the data collected in step (b) with processing means; wherein at least a part of step (a) and/or a part of step (b) of a cycle is performed concurrently with part (c) of a previous cycle.
    • 本发明涉及质谱,更具体地,涉及执行质谱法所涉及步骤的调度。 本发明对于产生大量数据的质谱的类型特别有益,因此引起冗长的数据处理。 本发明提供一种包含多个循环的质谱方法,每个循环包括以下步骤:(a)制备待通过质谱仪分析的离子; (b)使用质谱仪的检测器从步骤(a)中制备的离子收集数据; 和(c)用处理装置处理在步骤(b)中收集的数据; 其中与先前循环的部分(c)同时执行循环的步骤(a)和/或步骤(b)的一部分的至少一部分。
    • 9. 发明授权
    • Measuring cell for ion cyclotron resonance spectrometer
    • 用于离子回旋共振光谱仪的测量池
    • US07351961B2
    • 2008-04-01
    • US10573194
    • 2004-09-24
    • Robert MalekFrank Czemper
    • Robert MalekFrank Czemper
    • B01D59/44
    • H01J49/38
    • This invention relates to a measuring cell for an Ion Cyclotron Resonance (ICR) spectrometer. The present invention provides a measurement cell for an FTMS spectrometer, comprising an excitation electrode arrangement positioned about a longitudinal axis which extends in a direction generally parallel to the field direction of an applied homogeneous magnetic field; and a trapping electrode arrangement, also positioned about the said longitudinal axis, for trapping ions longitudinally in the cell within a trapping region defined by the trapping electrode arrangement; wherein at least a part of the excitation electrode arrangement extends axially outwardly of the trapping region defined by the trapping electrode arrangement.
    • 本发明涉及用于离子回旋共振(ICR)光谱仪的测量池。 本发明提供了一种用于FTMS光谱仪的测量单元,包括围绕纵向轴线定位的激励电极装置,所述纵向轴线在大致平行于所施加的均匀磁场的场方向的方向上延伸; 以及围绕所述纵向轴线定位的捕获电极装置,用于在由所述捕获电极装置限定的捕获区域内在所述电池中纵向俘获离子; 其中所述激励电极装置的至少一部分沿着由所述捕获电极装置限定的所述捕获区域轴向向外延伸。
    • 10. 发明申请
    • Measuring cell for ion cyclotron resonance spectrometer
    • 用于离子回旋共振光谱仪的测量池
    • US20070040114A1
    • 2007-02-22
    • US10573194
    • 2004-09-24
    • Robert MalekFrank Czemper
    • Robert MalekFrank Czemper
    • B01D59/44
    • H01J49/38
    • This invention relates to a measuring cell for an Ion Cyclotron Resonance (ICR) spectrometer. The present invention provides a measurement cell for an FTMS spectrometer, comprising an excitation electrode arrangement positioned about a longitudinal axis which extends in a direction generally parallel to the field direction of an applied homogeneous magnetic field; and a trapping electrode arrangement, also positioned about the said longitudinal axis, for trapping ions longitudinally in the cell within a trapping region defined by the trapping electrode arrangement; wherein at least a part of the excitation electrode arrangement extends axially outwardly of the trapping region defined by the trapping electrode arrangement.
    • 本发明涉及用于离子回旋共振(ICR)光谱仪的测量池。 本发明提供了一种用于FTMS光谱仪的测量单元,包括围绕纵向轴线定位的激励电极装置,所述纵向轴线在大致平行于所施加的均匀磁场的场方向的方向上延伸; 以及围绕所述纵向轴线定位的捕获电极装置,用于在由所述捕获电极装置限定的捕获区域内在所述电池中纵向俘获离子; 其中所述激励电极装置的至少一部分沿着由所述捕获电极装置限定的所述捕获区域轴向向外延伸。