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    • 1. 发明申请
    • METHOD AND SYSTEM FOR VACUUM DRIVEN MASS SPECTROMETER INTERFACE WITH ADJUSTABLE RESOLUTION AND SELECTIVITY
    • 具有可调分辨率和选择性的真空驱动质谱仪接口的方法和系统
    • US20100282966A1
    • 2010-11-11
    • US12783854
    • 2010-05-20
    • BRADLEY SCHNEIDERThomas Covey
    • BRADLEY SCHNEIDERThomas Covey
    • H01J49/26H01J49/24H01J49/02
    • H01J49/26G01N27/622H01J49/004H01J49/0404H01J49/0468H01J49/24
    • A mass spectrometer system and a method of operating same are provided. The system comprises a) an ion conduit for receiving ions; b) a boundary member defining a curtain gas chamber containing the ion conduit; c) a curtain gas supply for providing a curtain gas directed by the boundary member to an inlet of the ion conduit to provide a gas flow into the ion conduit, and a curtain gas outflow out of a curtain gas chamber inlet; d) a mass spectrometer at least partially sealed to, and in fluid communication with, the ion conduit for receiving the ions from the ion conduit; a vacuum chamber surrounding the mass spectrometer operable to draw the gas flow including the ions through the ion conduit and into the vacuum chamber; and, e) a gas outlet for drawing a gas outflow from the gas flow located between the ion conduit and the mass spectrometer to increase the gas flow rate through the ion conduit.
    • 提供了一种质谱仪系统及其操作方法。 该系统包括:a)用于接收离子的离子导管; b)限定包含离子导管的帘式气室的边界构件; c)帘式气体供应装置,用于将由边界构件引导的帘式气体提供到离子管道的入口,以提供气流到离子管道中,并且帘式气体从帘式气体室入口流出; d)质谱仪,其至少部分地密封到离子管道并与离子管道流体连通,用于从离子管道接收离子; 围绕质谱仪的真空室可操作以将包括离子的气流通过离子导管抽入真空室; 以及e)气体出口,用于从位于离子导管和质谱仪之间的气流拉出气体流出,以增加通过离子导管的气体流速。
    • 2. 发明申请
    • Method and apparatus for sample deposition
    • 用于样品沉积的方法和装置
    • US20060186043A1
    • 2006-08-24
    • US11349337
    • 2006-02-08
    • Thomas CoveyPeter Kovarik
    • Thomas CoveyPeter Kovarik
    • B01D15/08
    • G01N30/84G01N30/466G01N2030/027G01N2030/8411G01N2030/8417G01N2030/847Y10T436/255
    • A method and apparatus is disclosed to prepare a sample or a plurality of samples for subsequent analysis. A single sample deposition apparatus, and a multiplexed sample deposition apparatus are shown. The apparatus allows for a system that can provide a high throughput deposition of samples to form chromatograms by discrete droplet deposition or as continuous traces. The system can achieve high resolution digitization by pulsing the fluid emanating from the chromatographs by applying a voltage to the target plate that operates at frequencies equal to or greater than about 10 Hz, and up to and including about 1 KHz. The system also allows for analogue recording (i.e., approaching infinite resolution) by nebulizing the fluid coming from multiple columns and simultaneously collecting it on a target plate as a continuous trace.
    • 公开了一种制备样品或多个样品用于后续分析的方法和装置。 示出了单个样品沉积装置和多个样品沉积装置。 该装置允许可以提供样品的高通量沉积以通过离散液滴沉积或作为连续迹线形成色谱图的系统。 该系统可以通过将脉冲从色谱仪发出的流体施加电压施加到等于或大于约10Hz,以及高达和约1KHz的频率的目标板来实现高分辨率数字化。 该系统还允许通过雾化来自多个塔的流体并同时将其收集在靶板上作为连续迹线来进行模拟记录(即,接近无限分辨率)。
    • 3. 发明申请
    • Laser desorption ion source with ion guide coupling for ion mass spectroscopy
    • 激光解吸离子源与离子导向耦合离子质谱法
    • US20060124846A1
    • 2006-06-15
    • US11317368
    • 2005-12-22
    • Thomas CoveyHassan JavaheriBradley Schneider
    • Thomas CoveyHassan JavaheriBradley Schneider
    • H01J49/00
    • H01J49/063H01J49/164
    • A laser desorption ion source provides enhanced ion sampling efficiency and measurement sensitivity by using one or more ion guides to effectively capture ions in a plume emitted from the ion target and guide the ions through an aperture into a downstream vacuum chamber. In one configuration using two RF multipole ion guides, a first RF multipole ion guide disposed next to the ion target is selected to be sufficiently large to capture a substantial portion of the plume, while the second RF multipole ion guide disposed between the first multipole ion guide and the aperture has a smaller dimension to assist focusing of ions into the aperture. The first RF multipole ion guides the ions in the plume into the second RF multipole ion guide, which then focuses the ions so that they pass through the aperture into the downstream vacuum chamber.
    • 激光解吸离子源通过使用一个或多个离子引导件有效地捕获从离子靶发射的羽流中的离子并将离子引导通过孔进入下游真空室来提供增强的离子采样效率和测量灵敏度。 在使用两个RF多极离子引导件的一种配置中,选择邻近离子靶设置的第一RF多极离子导向器足够大以捕获大部分羽流,而第二射频多极离子导向器设置在第一多极离子 导向件和孔径具有较小的尺寸以辅助将离子聚焦到孔中。 第一RF多极离子将羽流中的离子引导到第二射频多极离子导向器中,然后将离子聚焦以使它们通过孔进入下游真空室。
    • 9. 发明申请
    • Radio frequency ion guide
    • 射频离子导向
    • US20070187614A1
    • 2007-08-16
    • US11703756
    • 2007-02-08
    • Bradley SchneiderThomas Covey
    • Bradley SchneiderThomas Covey
    • H01J3/14
    • H01J49/062
    • An ion guide with two or more ion focusing elements and a gas channeling sleeve is described. An ion transport space within the gas channeling sleeve is in fluid communication with a pumping port. A suction device is used to suction gas out of the ion transport space through the pumping port establishing a gas flow. Ions in the ion transport space are transported from an ion entry end to an ion exit end of the ion guide by the gas flow. Several examples include a multipole ion guide in which rods are used as ion focusing elements. The gas channeling sleeve is fitted about the rods. In another example, toroidal or ring shaped ion focusing elements are used as ion focusing elements. In another example, a set of ion focusing rings are mounted between insulators to form a cylinder with a gas impermeable side wall. The cylinder is itself used as the gas channeling sleeve.
    • 描述了具有两个或更多离子聚焦元件和气体导引套筒的离子导向器。 气体通道套管内的离子传输空间与泵送口流体连通。 抽吸装置用于通过建立气流的泵送端口将气体排出离子传输空间。 离子传输空间中的离子通过气流从离子入口端输送到离子导向器的离子出口端。 几个实例包括其中杆用作离子聚焦元件的多极离子导向器。 气体通道套筒围绕杆安装。 在另一示例中,使用环形或环形离子聚焦元件作为离子聚焦元件。 在另一示例中,一组离子聚焦环安装在绝缘体之间以形成具有不透气侧壁的圆筒。 气缸本身用作气体导引套筒。