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    • 1. 发明授权
    • High throughput systems and methods for parallel sample analysis
    • 高通量系统和并行样本分析方法
    • US06987263B2
    • 2006-01-17
    • US10736154
    • 2003-12-13
    • Steven E. HobbsStephen D. O'ConnorRonald C. Gamble
    • Steven E. HobbsStephen D. O'ConnorRonald C. Gamble
    • B01D54/44H01J49/00
    • G01N30/6043B01L3/5027G01N30/6095G01N30/72H01J49/009H01J49/04
    • Systems for analyzing multiple samples in parallel using mass spectrometric preferably coupled with fluid phase separation techniques are provided. A multi-analyzer mass spectrometer includes multiple inlets, multiple mass analyzers, and multiple transducers to conduct mass analyses of multiple samples in parallel. A modular mass analyzer may include a vacuum enclosure, a chassis, and multiple mass analysis modules disposed within the chassis. Modules are preferably disposed in a spatially compact two-dimensional array. A common multi-stage vacuum system may be utilized in conjunction with baffles or partitions disposed within and between modules to maintain differential vacuum conditions within the spectrometer utilizing a minimum number of pumps. Common control inputs may be provided to multiple modules or other components within a multi-analyzer spectrometer. Fluid phase separation devices for use with a multi-analyzer spectrometer may be microfluidic devices utilizing chromatographic, electrophoretic, or other separation methods.
    • 提供了使用优选与流体相分离技术耦合的质谱分析多个样品的系统。 多分析仪质谱仪包括多个入口,多个质量分析仪和多个换能器,用于并行进行多个样品的质量分析。 模块化质量分析器可以包括真空外壳,底盘以及设置在底盘内的多个质量分析模块。 模块优选地设置在空间紧凑的二维阵列中。 共同的多级真空系统可以与设置在模块内和模块之间的挡板或隔板一起使用,以利用最少数量的泵来保持光谱仪内的差分真空条件。 通常的控制输入可以提供给多分析仪光谱仪中的多个模块或其他组件。 用于多分析仪光谱仪的流体相分离装置可以是利用色谱,电泳或其它分离方法的微流体装置。
    • 2. 发明申请
    • SYSTEMS AND METHODS FOR MANAGING UTILITY CONSUMPTION
    • 用于管理实用消费的系统和方法
    • US20110178610A1
    • 2011-07-21
    • US13120920
    • 2009-10-15
    • Stephen D. O'ConnorRonald C. GambleRichard A. Suchter
    • Stephen D. O'ConnorRonald C. GambleRichard A. Suchter
    • G05B13/04G06G7/48
    • G06Q10/06
    • A system and method for monitoring and managing utility consumption includes use of (A) one or more sensors arranged to monitor an operating condition and/or utility consumption of at least one segment or appliance of a first facility; (B) a memory including at least one of (i) stored utility consumption information correlated or normalized to at least one designated parameter affecting utility consumption or (ii) hypothetical utility consumption; (C) a processor to compare the monitored information with the stored information, and (D) an output medium to store and/or display the comparison information. Stored consumption information may relate to the first facility or a second facility. Hypothetical utility consumption information may relate to a segment or appliance of the first facility operated according to optimized conditions, or an upgraded segment or appliance.
    • 一种用于监测和管理公用事业消耗的系统和方法包括使用(A)布置成监测第一设施的至少一个段或设备的运行状况和/或公用事业消耗的一个或多个传感器; (B)存储器,其包括以下至少一个:(i)存储的与至少一个影响公用事业消耗的指定参数相关或归一化的公用消费信息;(ii)假设的公用事业消费; (C)处理器,用于将所监视的信息与存储的信息进行比较,以及(D)存储和/或显示比较信息的输出介质。 存储的消费信息可能与第一设施或第二设施有关。 假设效用消耗信息可以涉及根据优化条件操作的第一设施的段或设备,或升级的段或设备。
    • 9. 发明授权
    • Parallel fluid processing systems and methods
    • 平行流体处理系统和方法
    • US07178386B1
    • 2007-02-20
    • US10821567
    • 2004-04-09
    • Ronald C. GambleSergey I. Osechinskiy
    • Ronald C. GambleSergey I. Osechinskiy
    • G01N30/02B01D15/08
    • G01N30/466G01N30/6095G01N30/8665G01N30/8668
    • A parallel fluid processing system including multiple fluid process regions containing solid material in fluid communication with a common first fluid source may be used to conduct analyses and/or synthesis in parallel. A parallel fluid processing data correction method includes supplying and processing a calibrant in each fluid process region, measuring a first physical parameter and deriving at least one correction factor based on the parameter, supplying and processing at least one second fluid in each fluid process region, and then applying the correction factor to yield corrected process data. Retention time correction, peak area correction, and other useful data corrections may be performed. Parallel fluid processing may be performed with microfluidic devices and systems. A system for correcting retention times in parallel liquid chromatography is further provided.
    • 可以使用包括含有与公共第一流体源流体连通的固体材料的多个流体处理区域的平行流体处理系统来并行地进行分析和/或合成。 并行流体处理数据校正方法包括在每个流体处理区域中提供和处理校准物,测量第一物理参数并基于该参数导出至少一个校正因子,在每个流体处理区域中提供和处理至少一个第二流体, 然后应用校正因子来产生校正过程数据。 可以执行保留时间校正,峰值区域校正和其他有用的数据校正。 可以用微流体装置和系统进行并行流体处理。 还提供了用于校正并联液相色谱中保留时间的系统。