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    • 8. 发明授权
    • Measuring apparatus
    • 测量装置
    • US08368877B2
    • 2013-02-05
    • US13002017
    • 2009-07-01
    • Benoit BataillouPascal BanckenDavid van SteenwinckelViet Nguyen HoangRadu Surdeanu
    • Benoit BataillouPascal BanckenDavid van SteenwinckelViet Nguyen HoangRadu Surdeanu
    • G01N33/48G01N21/01
    • C09K11/06G01N15/1459G01N21/45G01N2021/458
    • An apparatus comprising at least one measuring cell (10) is disclosed. The measuring cell comprises a first cavity (16 and a second cavity (18) perpendicular to the first cavity, the first cavity and the second cavity comprising an overlap at first respective ends and a reflective surface (20) at the opposite respective ends. A beam splitter (15) is located in the overlap and an electromagnetic radiation source (12) is arranged to project a beam of electromagnetic radiation onto the beam splitter (15) such that the beam is projected into each of the cavities. A phase detector (22) for detecting a phase difference between the respective electromagnetic radiation reflected by the first and second cavity (16; 18) is also provided. In addition, the apparatus has a fluid channel (26), at least a part of which runs parallel to the first cavity (16) such that the electromagnetic radiation projected into the first cavity extends into said part of the fluid channel. This allows for the interferometric detection of particles in the fluid channel.
    • 公开了一种包括至少一个测量单元(10)的装置。 所述测量单元包括第一空腔(16和垂直于所述第一空腔的第二空腔),所述第一空腔和所述第二空腔包括在第一相应端部处的重叠部分和在相对的相应端部处的反射表面(20) 分束器(15)位于重叠中,并且电磁辐射源(12)被布置成将电磁辐射束投射到分束器(15)上,使得射束投射到每个空腔中。相位检测器 还提供了用于检测由第一和第二空腔(16; 18)反射的各个电磁辐射之间的相位差的装置(22),另外,该装置具有流体通道(26),其流体通道的至少一部分平行于 所述第一空腔(16)使得投射到所述第一空腔中的电磁辐射延伸到所述流体通道的所述部分中,这允许对所述流体通道中的颗粒进行干涉检测。