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    • 3. 发明申请
    • FLUIDIC VALVE WITH SELECTIVELY SWITCHABLE STORAGE PATHS
    • 具有选择性切换储物阀的流体阀
    • WO2014000778A1
    • 2014-01-03
    • PCT/EP2012/062394
    • 2012-06-26
    • AGILENT TECHNOLOGIES, INC.WITT, KlausCHOIKHET, Konstantin
    • WITT, KlausCHOIKHET, Konstantin
    • G01N30/20B01D15/18G01N30/46
    • G01N30/80B01D15/1871G01N27/447G01N30/06G01N30/20G01N30/461G01N30/6039G01N2030/208
    • A sample separation apparatus (100, 200) for separating a fluidic sample (104), the sample separation apparatus (100, 200) comprising: a first separation unit (102) for separating the fluidic sample (104); a first fluid drive (106) configured for generating a fluid flow for conducting the fluidic sample (104) to be separated through the first separation unit (102); a second separation unit (110), arranged downstream of the first separation unit (102), for further separating the fluidic sample (104) after treatment by the first separation unit (102); a second fluid drive (112) configured for generating a fluid flow for conducting the fluidic sample (104) or at least parts thereof, after treatment by the first separation unit (102), through the second separation unit (110); a fluidic valve (114) having a first inlet (116) fluidically coupled to one of the first fluid drive (106) and the second fluid drive (112); the fluidic valve (114) having a second inlet (118) fluidically coupled to the other of the first fluid drive (106) and the second fluid drive (112); the fluidic valve (114) comprising at least two different sets (131, 133) of storage paths, wherein each set of storage paths comprises a first storage path (128); and wherein the first storage path (128) of a first set (131) of said at least two sets of storage paths has a first volume and the first storage path (132) of a second set (133) of said at least two sets of storage paths has a second volume different from the first volume; the fluidic valve (114) being configured for selectively switching one set of said least two sets of storage paths to the first inlet (116) and the second inlet (118).
    • 1.一种用于分离流体样品(104)的样品分离装置(100,200),所述样品分离装置(100,200)包括:用于分离流体样品(104)的第一分离单元(102) 第一流体驱动器(106),其被配置用于产生用于传导待通过所述第一分离单元(102)分离的所述流体样品(104)的流体流; 布置在第一分离单元(102)的下游的第二分离单元(110),用于在通过第一分离单元(102)处理之后进一步分离流体样品(104); 第二流体驱动器(112),被配置为在通过第一分离单元(102)处理之后通过第二分离单元(110)产生用于传导流体样品(104)或其至少部分的流体流; 流体阀(114)具有流体耦合到第一流体驱动器(106)和第二流体驱动器(112)之一的第一入口(116); 流体阀(114)具有与第一流体驱动器(106)和第二流体驱动器(112)中的另一个流体连接的第二入口(118)。 所述流体阀(114)包括至少两个不同的存储路径组(131,133),其中每组存储路径包括第一存储路径(128); 并且其中所述至少两组存储路径中的第一组(131)的第一存储路径(128)具有第一卷,并且所述至少两个集合的第二集合(133)的第一存储路径(132) 的存储路径具有与第一卷不同的第二卷; 所述流体阀(114)构造成用于选择性地将一组所述至少两组存储路径切换到所述第一入口(116)和所述第二入口(118)。
    • 7. 发明申请
    • TWO-DIMENSIONAL FLUID SEPARATION WITH CONTROLLED PRESSURE
    • 具有控制压力的二维流体分离
    • WO2013167193A1
    • 2013-11-14
    • PCT/EP2012/058695
    • 2012-05-10
    • AGILENT TECHNOLOGIES, INC.WITT, KlausCHOIKHET, Konstantin
    • WITT, KlausCHOIKHET, Konstantin
    • G01N30/32G01N30/46
    • B01D15/18G01N27/44704G01N30/32G01N30/34G01N30/463G01N30/465G01N30/6095G01N30/72G01N2030/322G01N2030/328
    • A sample separation apparatus (200) for separating a fluidic sample, the sample separation apparatus (200) comprising a first separation unit (204) for separating the fluidic sample, a first fluid drive (202) configured for conducting the fluidic sample to be separated through the first separation unit (204), a second separation unit (208), arranged downstream of the first separation unit (204), for further separating the fluidic sample after treatment by the first separation unit (204), a second fluid drive (206) configured for at least partially conducting the fluidic sample, after treatment by the first separation unit (204), through the second separation unit (208), and a fluidic valve (218) having fluidic interfaces (222, 224, 226, 228) fluidically coupled to the first fluid drive (202) and the second fluid drive (206) and being switchable for performing the separation of the fluidic sample, wherein the sample separation apparatus (200) is configured for adjusting a pressure at a predefined position to a predefined value, wherein the predefined position is in a fluidic path between an outlet (270) of the first separation unit (204) and an inlet (272) of the second separation unit (208) or in fluid communication with this fluidic path.
    • 1.一种用于分离流体样品的样品分离装置(200),所述样品分离装置(200)包括用于分离流体样品的第一分离单元(204),被配置用于传导待分离的流体样品的第一流体驱动器 通过第一分离单元(204),布置在第一分离单元(204)下游的第二分离单元(208),用于在第一分离单元(204)处理之后进一步分离流体样品,第二流体驱动器 206),其被配置为在通过所述第一分离单元(204)经过所述第二分离单元(208)处理之后至少部分地导电所述流体样品;以及流体阀(218),其具有流体界面(222,224,226,228) )流体耦合到所述第一流体驱动器(202)和所述第二流体驱动器(206)并且可切换以执行所述流体样品的分离,其中所述样品分离装置(200)构造成用于调节所述流体样品 预定位置到预定值,其中预定位置处于第一分离单元(204)的出口(270)和第二分离单元(208)的入口(272)之间的流体路径中,或者与该流体连通 流体路径
    • 8. 发明申请
    • PACKET-WISE PROPORTIONING FOLLOWED BY IMMEDIATE LONGITUDINAL MIXING
    • 随着纵向混合的分组比例增加
    • WO2013013717A2
    • 2013-01-31
    • PCT/EP2011062956
    • 2011-07-27
    • AGILENT TECHNOLOGIES INCWITT KLAUSCHOIKHET KONSTANTINHAERTL HANS-GEORG
    • WITT KLAUSCHOIKHET KONSTANTINHAERTL HANS-GEORG
    • F17D3/01G05D11/133Y10T137/2499
    • A fluid supply system (150) adapted for metering two or more fluids in controlled proportions and for supplying a resultant mixture, the fluid supply system (150) comprising a plurality of solvent supply lines (104 to 107), each fluidically connected with a fluid source (100 to 103) providing a respective fluid, a pumping unit (110) comprising a reciprocating element (115) adapted for intaking fluid supplied at an inlet of the pumping unit (110) and for supplying the pressurized fluid at an outlet of the pumping unit (110), wherein the pumping unit (110) is adapted for taking in fluids from selected solvent supply lines (104 to 107) and for supplying a pressurized mixture of the fluids at its outlet, a proportioning valve (108) interposed between the solvent supply lines (104 to 107) and the inlet of the pumping unit (110), the proportioning valve (108) adapted for modulating solvent composition by sequentially coupling selected ones of the solvent supply lines (104 to 107) with the inlet of the pumping unit (110), and a longitudinal mixing unit (152) adapted for mixing longitudinally subsequent sections of the fluids so as to modify their succession in flow direction.
    • 一种流体供应系统(150),其适于以受控比例计量两种或多种流体并用于供应所得混合物,所述流体供应系统(150)包括多个溶剂供应管线(104至107),每个流体连接有流体 源(100至103)提供相应的流体;泵送单元(110),包括适于吸入在泵送单元(110)的入口处供应的流体的往复运动元件(115),并用于在加压流体的出口 泵送单元(110),其中所述泵送单元(110)适于从选定的溶剂供应管线(104至107)吸入流体并且用于在其出口处供应流体的加压混合物,位于其间的比例阀(108) 溶剂供应管线(104至107)和泵送单元(110)的入口,比例阀(108)适于通过将选定的溶剂供应管线(104至107)中的选定溶剂供应管线(104至107)与入口 泵送单元(110)的纵向混合单元(152)和适于混合流体纵向后续部分的纵向混合单元(152),以便改变它们在流动方向上的连续性。
    • 9. 发明申请
    • SYNCHRONIZATION OF SUPPLY FLOW PATHS
    • 供应流程同步
    • WO2010015279A1
    • 2010-02-11
    • PCT/EP2008/060387
    • 2008-08-07
    • AGILENT TECHNOLOGIES, INC.WITT, KlausCHOIKHET, Konstantin
    • WITT, KlausCHOIKHET, Konstantin
    • F04B11/00F04B13/02
    • F04B11/0058F04B13/02F04B2203/0204Y10T137/0318Y10T137/86131
    • A solvent supply system for supplying a composite solvent is described. The solvent supply system comprises a first supply flow path with a first pump unit, the first supply flow path being adapted for supplying a flow of a first solvent to a mixing unit, the first pump unit operating periodically, and a second supply flow path with a second pump unit, the second supply flow path being adapted for supplying a flow of a second solvent to the mixing unit, the second pump unit operating periodically. The mixing unit is adapted for mixing the first and the second solvent and for supplying a composite solvent. The solvent supply system further comprises a control unit adapted for controlling operation of the first and the second pump unit, the control unit being adapted to prevent at least one of a predefined phase relation and a predefined frequency relation between the first pump unit and the second pump unit.
    • 描述了用于供应复合溶剂的溶剂供应系统。 所述溶剂供应系统包括具有第一泵单元的第一供应流动路径,所述第一供应流动路径适于将第一溶剂的流供应到混合单元,所述第一泵单元周期性地运行,以及第二供给流路, 第二泵单元,所述第二供应流路适于将第二溶剂的流供应到所述混合单元,所述第二泵单元周期性地运行。 混合单元适于混合第一和第二溶剂并供应复合溶剂。 所述溶剂供应系统还包括适于控制所述第一和第二泵单元的操作的控制单元,所述控制单元适于防止所述第一泵单元和所述第二泵单元之间的预定相位关系和预定频率关系中的至少一个 泵单元。