会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • METHOD OF OPERATING A MASS SPECTROMETER TO PROVIDE RESONANT EXCITATION ION TRANSFER
    • 操作质谱仪以提供共振激发离子传输的方法
    • US20080017789A1
    • 2008-01-24
    • US11778954
    • 2007-07-17
    • Jim HagerBruce Thomson
    • Jim HagerBruce Thomson
    • H01J49/00
    • H01J49/4225H01J49/004H01J49/4265H01J49/4285
    • A method of operating a mass spectrometer having a rod set is provided. The rod set has a first end, a second end opposite to the first end, and a longitudinal axis extending between the first end and the second end. The method comprises a) admitting ions into the rod set; b) trapping at least some of the ions in the rod set by i) producing a first barrier field at a first end member adjacent to the first end of the rod set, ii) producing a second barrier field at a second end member adjacent to the second end of the rod set, and iii) providing an aggregate field comprising an RF field between the rods of the rod set; c) selecting a first selected mass to charge ratio of a first group of ions in the ions; d) determining a first excitement level of a selected characteristic of the aggregate field for the first group of ions; e) adjusting the selected characteristic of the aggregate field to the first excitement level to resonantly excite the first group of ions to mass selectively eject the first group of ions from the rod set past the barrier field; and, f) maintaining the selected characteristic of the aggregate field at the first excitement level during an excitement time interval wherein the excitation time interval is at least 1 millisecond.
    • 提供了具有棒组的操作质谱仪的方法。 杆组具有第一端,与第一端相对的第二端和在第一端和第二端之间延伸的纵向轴线。 该方法包括:a)将离子进入棒组; b)通过以下步骤捕获所述棒组中的至少一些离子:i)在与所述棒组的第一端相邻的第一端构件处产生第一屏障场,ii)在邻近所述杆组的第二端构件处产生第二屏障场 所述杆组的第二端,以及iii)提供包括所述杆组的杆之间的RF场的聚集场; c)选择离子中的第一组离子的第一选择质量与电荷比; d)确定第一组离子的聚集场的选定特征的第一兴奋度; e)将聚集场的所选特征调整到第一兴奋水平以共振地激发第一组离子以质量选择性地从穿过屏障场的棒组中弹出第一组离子; 以及f)在所述激发时间间隔至少为1毫秒的兴奋时间间隔期间将所述聚集场的选定特性保持在所述第一兴奋度水平。
    • 5. 发明授权
    • Mass spectrometry method using supplemental AC voltage signals
    • 使用补充交流电压信号的质谱法
    • US5200613A
    • 1993-04-06
    • US753325
    • 1991-08-30
    • Paul E. Kelley
    • Paul E. Kelley
    • G01N27/62H01J49/42
    • H01J49/0063H01J49/424H01J49/4285
    • A mass spectrometry method in which a supplemental AC voltage signal having at least one high power frequency component, and at least one low power frequency component, is applied to an ion trap. Each high power component has an amplitude sufficiently large to eject one or more selected ions from the trap, by resonantly exciting the ions. Each low power component has an amplitude sufficient to induce dissociation (or reaction) of one or more selected ions, but insufficient to resonate the ions for detection. The frequency (or band of frequencies) of each high and low power frequency component is selected to match a resonance frequency of ions having a desired mass-to-charge ratio. Each low power component is applied for the purpose of inducing dissociation or reaction of specific trapped ions, which may be parent, daughter, reagent, or product ions, and each high power component is applied to eject undesired products of each such dissociation or reaction process from the trap. In accordance with the invention, a supplemental voltage signal having appropriately selected high and low power frequency components is applied to a trap during an (MS).sup.n or CI, or combined CI/(MS).sup.n, mass spectrometry operation.
    • 一种质谱法,其中具有至少一个高功率频率分量和至少一个低功率频率分量的补充AC电压信号被施加到离子阱。 每个高功率分量具有足够大的振幅,通过共振地激发离子从捕获器中排出一个或多个选定的离子。 每个低功率分量具有足以引起一个或多个选定离子的解离(或反应)的振幅,但不足以共振用于检测的离子。 选择每个高和低功率频率分量的频率(或频带)以匹配具有期望质荷比的离子的谐振频率。 施加每个低功率组分以诱导特定捕获离子的解离或反应的目的,所述离子可以是亲本,子代,试剂或产物离子,并且每个高功率组分被施加以排出每个这样的解离或反应过程的不需要的产物 从陷阱。 根据本发明,在(MS)n或CI或组合的CI /(MS)n质谱操作期间,将具有适当选择的高功率和低功率频率分量的补充电压信号施加到陷阱。
    • 9. 发明授权
    • Linear ion trap for radial amplitude assisted transfer
    • 线性离子阱用于径向幅度辅助传输
    • US08680463B2
    • 2014-03-25
    • US13813881
    • 2011-08-03
    • Alexandre Loboda
    • Alexandre Loboda
    • H01J49/26
    • H01J49/36H01J49/0031H01J49/4225H01J49/4285
    • Systems, methods and apparatus for radial amplitude assisted transfer (RAAT) in mass spectrometers are provided in which ions for RAAT are accelerated along a longitudinal axis of a mass spectrometer in order to decrease the magnitude of excitation energy of radially excited ions in an ion trap that allows the radially excited ions to exit the ion trap. Hence, the radially excited ions exit the ion trap with reduced radial energy thereby decreasing the exit angle of the radially exited ions from the ion trap. Furthermore, combined forces on the ions are such that radially excited ions exit the ion trap while unexcited ions remain in the ion trap.
    • 提供了用于质谱仪中径向幅度辅助转移(RAAT)的系统,方法和装置,其中RAAT的离子沿着质谱仪的纵轴被加速,以便减小离子阱中径向激发的离子的激发能量的大小 这允许径向激发的离子离开离子阱。 因此,径向激发的离子以减小的径向能量离开离子阱,从而减小径向排出的离子离离子阱的出射角。 此外,离子上的组合力使得径向激发的离子离开离子阱,而未离子离子保留在离子阱中。
    • 10. 发明申请
    • LINEAR ION TRAP FOR RADIAL AMPLITUDE ASSISTED TRANSFER
    • 线性放大器用于辐射放大器辅助传输
    • US20130299689A1
    • 2013-11-14
    • US13813881
    • 2011-08-03
    • Alexandre Loboda
    • Alexandre Loboda
    • H01J49/36H01J49/00
    • H01J49/36H01J49/0031H01J49/4225H01J49/4285
    • Systems, methods and apparatus for radial amplitude assisted transfer (RAAT) in mass spectrometers are provided in which ions for RAAT are accelerated along a longitudinal axis of a mass spectrometer in order to decrease the magnitude of excitation energy of radially excited ions in an ion trap that allows the radially excited ions to exit the ion trap. Hence, the radially excited ions exit the ion trap with reduced radial energy thereby decreasing the exit angle of the radially exited ions from the ion trap. Furthermore, combined forces on the ions are such that radially excited ions exit the ion trap while unexcited ions remain in the ion trap.
    • 提供了用于质谱仪中径向幅度辅助转移(RAAT)的系统,方法和装置,其中RAAT的离子沿着质谱仪的纵轴被加速,以便减小离子阱中径向激发的离子的激发能量的大小 这允许径向激发的离子离开离子阱。 因此,径向激发的离子以减小的径向能量离开离子阱,从而减小径向排出的离子离离子阱的出射角。 此外,离子上的组合力使得径向激发的离子离开离子阱,而未离子离子保留在离子阱中。