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    • 4. 发明公开
    • ION TRANSFER DEVICE FOR MASS SPECTROMETRY
    • 离子迁移装置用于质谱分析
    • EP3291281A1
    • 2018-03-07
    • EP17189166.6
    • 2017-09-04
    • Agilent Technologies, Inc. (A Delaware Corporation)
    • Newton, Kenneth R.
    • H01J49/04
    • H01J49/0404H01J49/145H01J49/24
    • An ion transfer device (188; 288; 388; 488; 588; 688; 788; 888; 988) for transferring ions from one chamber to another, reduced-pressure chamber includes an inlet section section (214; 314; 414; 514; 614; 714; 814; 914) and a main capillary section (218; 318; 418; 518; 618; 718; 818; 918). The inlet section has a lumen (222; 322; 422; 522; 622; 722; 822; 922) and the main capillary section has a bore (230; 330; 430; 530; 630; 730; 830; 930) communicating with the lumen. The inside diameter of the lumen is less than that of the bore. The inlet section may be removable from an installation site separately from the main capillary section. The ion transfer device may be utilized, for example, in an atmospheric-pressure interface of a mass spectrometer.
    • 一种用于将离子从一个腔室转移到另一个腔室的离子转移装置(188; 288; 388; 488; 588; 688; 788; 888; 988),所述减压腔室包括入口截面部分(214; 314; 414; 514; 614; 714; 814; 914)和主毛细管部分(218; 318; 418; 518; 618; 718; 818; 918)。 所述入口部分具有内腔(222; 322; 422; 522; 622; 722; 822; 922),并且所述主毛细管部分具有与所述入口部分连通的孔(230; 330; 430; 530; 630; 730; 830; 930) 流明。 内腔的内径小于孔的内径。 入口部分可以与主毛细管部分分开地从安装现场移除。 离子转移装置可以用于例如质谱仪的大气压界面。
    • 6. 发明公开
    • MID-INFRARED SCANNING SYSTEM
    • 中红外扫描系统
    • EP3001179A2
    • 2016-03-30
    • EP15186716.5
    • 2015-09-24
    • Agilent Technologies, Inc. (A Delaware Corporation)
    • Hoke, CharlesRaghunathan, Varun
    • G01N21/35G01N21/3563G01N21/359G01N21/39
    • G02B21/361G01N21/35G01N21/3563G01N21/359G01N21/39G02B21/002G02B21/08G02B21/367H04N5/33
    • An apparatus and method for generating a mid-infrared region image of a specimen (16) are disclosed. The apparatus includes a mid-infrared region laser (11) that generates a first light beam (18), and a stage (57) adapted to carry a specimen to be scanned. An optical assembly (31) focuses the first light beam to a point on the specimen. A first light detector (13) measures a first intensity of light leaving the point on the specimen. A stage actuator assembly causes the specimen to move relative to the point in two dimensions. A controller (39) forms a mid-infrared region image from the first intensity. The image can be based on reflected or transmitted light. The maximum size of the imaged area is determined by a scanning assembly that moves in a first direction relative to the stage, the stage moving in a direction orthogonal to the first direction.
    • 公开了用于生成样本(16)的中红外区域图像的设备和方法。 该设备包括产生第一光束(18)的中红外区激光器(11)和适于携带待扫描样本的台(57)。 光学组件(31)将第一光束聚焦到样品上的一个点。 第一光检测器(13)测量离开样本上的点的第一光强度。 平台致动器组件使样本相对于该点在二维中移动。 控制器(39)从第一强度形成中红外区域图像。 图像可以基于反射光或透射光。 成像区域的最大尺寸由扫描组件确定,扫描组件在相对于平台的第一方向上移动,平台在与第一方向正交的方向上移动。