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    • 3. 发明授权
    • Variable-volume injection valve
    • 可变容积喷射阀
    • US09115815B2
    • 2015-08-25
    • US13808263
    • 2011-08-26
    • Geoff C. GerhardtKeith Fadgen
    • Geoff C. GerhardtKeith Fadgen
    • F16K11/074F16K11/00
    • F16K11/00F16K11/0743Y10T137/0318Y10T137/86863
    • Variable-volume injection valves include a stator and a rotor. The stator has a first port, a second port, and a contact surface with a groove therein. The first port opens into the stator groove. The rotor has a contact surface with a groove therein. The contact surface of the rotor is urged against the contact surface of the stator such that the rotor groove opposes the stator groove with one end of the rotor groove overlapping the stator groove and the opposite end of the rotor groove overlapping the second port of the stator. The overlapping grooves of the rotor and stator provide a fluidic channel between the first and second ports of the stator. The rotor is movable with respect to the stator in order to vary a length of overlap between their overlapping grooves.
    • 可变容积喷射阀包括定子和转子。 定子具有第一端口,第二端口和与其中的凹槽的接触表面。 第一端口通向定子槽。 转子具有与其中的凹槽的接触表面。 转子的接触表面被推靠在定子的接触表面上,使得转子槽与定子槽相对,转子槽的一端与定子槽重叠,转子槽的相对端与定子的第二端重叠 。 转子和定子的重叠槽在定子的第一和第二端口之间提供流体通道。 转子相对于定子是可移动的,以便改变其重叠槽之间的重叠长度。
    • 6. 发明申请
    • VARIABLE-VOLUME INJECTION VALVE
    • 可变容积注射阀
    • US20130206240A1
    • 2013-08-15
    • US13808263
    • 2011-08-26
    • Geoff C. GerhardtKeith Fadgen
    • Geoff C. GerhardtKeith Fadgen
    • F16K11/00
    • F16K11/00F16K11/0743Y10T137/0318Y10T137/86863
    • Variable-volume injection valves include a stator and a rotor. The stator has a first port, a second port, and a contact surface with a groove therein. The first port opens into the stator groove. The rotor has a contact surface with a groove therein. The contact surface of the rotor is urged against the contact surface of the stator such that the rotor groove opposes the stator groove with one end of the rotor groove overlapping the stator groove and the opposite end of the rotor groove overlapping the second port of the stator. The overlapping grooves of the rotor and stator provide a fluidic channel between the first and second ports of the stator. The rotor is movable with respect to the stator in order to vary a length of overlap between their overlapping grooves.
    • 可变容积喷射阀包括定子和转子。 定子具有第一端口,第二端口和与其中的凹槽的接触表面。 第一端口通向定子槽。 转子具有与其中的凹槽的接触表面。 转子的接触表面被推靠在定子的接触表面上,使得转子槽与定子槽相对,转子槽的一端与定子槽重叠,转子槽的相对端与定子的第二端重叠 。 转子和定子的重叠槽在定子的第一和第二端口之间提供流体通道。 转子可相对于定子移动,以便改变其重叠槽之间的重叠长度。
    • 7. 发明授权
    • System and method of measuring convection induced impedance gradients to determine liquid flow rates
    • 测量对流感应阻抗梯度以确定液体流速的系统和方法
    • US06962077B2
    • 2005-11-08
    • US10328986
    • 2002-12-23
    • Geoff C. GerhardtKeith Fadgen
    • Geoff C. GerhardtKeith Fadgen
    • G01F1/684G01N30/32G01N30/64G01F1/68
    • G01F1/6847G01N30/64G01N2030/324
    • A method and system for measuring the flow rate of a liquid or gas within a flow channel utilizing a centrally located excitation source and a plurality of sensor means. Said excitation means is comprised of a heating element coupled with an alternating current generator. Of the plurality of sensor means, at least one of said sensors is located in a position upstream of the excitation source location, and additionally a second of said plurality of sensors is located in a position downstream of the excitation source. Instantaneous fluid flow rate is calculated utilizing a high gain differential amplifier electrically coupled to said sensors, wherein the convectively induced inductive gradient of the flowing fluid is compared to the symmetrical zero flow induction gradient. Following such a comparison, a voltage signal proportional to the flow of fluid within the channel is derived.
    • 一种用于利用位于中心的激励源和多个传感器装置来测量流动通道内的液体或气体的流量的方法和系统。 所述激励装置包括与交流发电机耦合的加热元件。 在多个传感器装置中,至少一个所述传感器位于激励源位置的上游位置,并且所述多个传感器中的另一个位于激发源的下游位置。 利用电耦合到所述传感器的高增益差分放大器来计算瞬时流体流速,其中流动流体的对流感应感应梯度与对称零流感应梯度进行比较。 在进行这样的比较之后,导出与通道内的流体流量成比例的电压信号。
    • 8. 发明授权
    • Electrokinetically controlled calibrant delivery
    • 电动控制校准品输送
    • US09396916B2
    • 2016-07-19
    • US14004236
    • 2012-03-08
    • Geoff C. GerhardtKeith Fadgen
    • Geoff C. GerhardtKeith Fadgen
    • G01D18/00G12B13/00H01J49/00H01J49/04
    • H01J49/0009H01J49/00H01J49/04
    • An electrokinetic pump can be used to deliver calibrant (“lock mass”) ions to a mass spectrometer for calibration of a mass spectrometry system. Electrokinetically controlled calibrant delivery can help to eliminate the need for the more cumbersome mechanisms that are often used for ion delivery. In addition, electrokinetically controlled calibrant delivery can provide for a more user-friendly system in which a calibrant solution can be packaged into a disposable cartridge. Furthermore, when implemented in a microfluidic format, electrokinetically controlled calibrant delivery can be coupled with an electrokinetically controlled separation system, such as capillary electrophoresis (CE), to allow efficient solid-state switching between analytical and calibrant sprays.
    • 可以使用电动泵将校准物(“锁定质量”)离子输送到质谱仪用于校准质谱系统。 电动控制的校准物输送可以帮助消除对经常用于离子传递的更繁琐的机制的需要。 此外,电动控制的校准物输送可以提供更加用户友好的系统,其中校准液可以被包装到一次性盒中。 此外,当以微流体形式实施时,电动控制的校准物输送可与电动控制的分离系统(例如毛细管电泳(CE))结合,以允许分析和校准喷雾之间的有效固态切换。