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    • 12. 发明授权
    • Method for the optical determining of a measured variable of a medium
    • 光学测定介质测量变量的方法
    • US08625100B2
    • 2014-01-07
    • US13003594
    • 2009-07-07
    • Michael Hanko
    • Michael Hanko
    • G01J3/30G01J1/58
    • G01N21/80G01N31/22G01N2201/0691
    • In a method for determining a measured variable of a measured medium, wherein the measured medium is brought in contact with an indicator or an indicator mixture, whose absorption spectrum has a first, and a second, wavelength range, which essentially do not overlap, a first light source is activated for emitting a first light signal with a wavelength from the first wavelength range and a second light source is activated for emitting a second light signal with a wavelength from the second wavelength range. The intensity of the first light signal is modulated by a first and the intensity of the second light signal by a second, periodic signal, wherein at least a part of the first light signal and at least a part of the second light signal propagate as first and second measurement light signals along a measuring path and are transformed on the measuring path by optical interaction with the indicator or the indicator mixture to transformed measurement light signals, and wherein a total intensity of the transformed first and second measurement light signals is registered. The first periodic signal has a first phase difference relative to the second, periodic signal, and a second phase difference between the total intensity of the transformed first and second measurement light signals and the first, or the second, periodic signal is ascertained. The measured variable is determined with application of the second phase difference.
    • 在用于确定测量介质的测量变量的方法中,其中测量的介质与指示剂或指示剂混合物接触,所述指示剂或指示剂混合物的吸收光谱具有基本上不重叠的第一和第二波长范围, 第一光源被激活以发射具有来自第一波长范围的波长的第一光信号,并且第二光源被激活以发射具有来自第二波长范围的波长的第二光信号。 第一光信号的强度由第一和第二光信号的强度由第二周期信号调制,其中第一光信号的至少一部分和第二光信号的至少一部分作为第一光信号传播 以及沿着测量路径的第二测量光信号,并且通过与指示器或指示器混合物的光学相互作用而在测量路径上变换成变换的测量光信号,并且其中登记变换的第一和第二测量光信号的总强度。 第一周期性信号相对于第二周期信号具有第一相位差,并且确定变换的第一和第二测量光信号的总强度与第一或第二周期信号之间的第二相位差。 测量的变量通过应用第二相位差来确定。
    • 14. 发明申请
    • METHOD AND APPARATUS FOR MEASURING VOLUME FLOW RATE OF LIQUID FLOWING INTO A CONTAINER AND/OR VOLUME OF LIQUID WHICH HAS FLOWED INTO THE CONTAINER
    • 用于测量液体流入集装箱和/或流入容器的液体的体积流量的方法和装置
    • US20130104668A1
    • 2013-05-02
    • US13807768
    • 2011-06-20
    • Michael HankoStefanie Honncher
    • Michael HankoStefanie Honncher
    • G01F1/34
    • G01F1/34G01F3/38G01F13/00G01F22/02
    • A method and apparatus for measuring volume flow rate of a liquid flowing into a container and/or volume of the liquid flowed into the container, with which method, respectively with which apparatus a high measure of automation is achievable in microfluidic systems, especially in the field of analysis Before liquid flows in, gas is enclosed under a starting pressure in a predetermined starting volume in the container, then liquid is allowed to flow into the container to compress the enclosed gas to a gas volume dependent on the volume of the flowed-in liquid, and to effect a rise of gas pressure of the gas in the container relative to the starting pressure dependent on the volume of liquid which has flowed in and on the volume flow rate of the inflowing liquid, the gas pressure in the container is measured as a function of time, and the volume flowed in up to a given time and/or the volume flow rate of inflowing liquid at the given time are/is determined based on the measured gas pressure.
    • 用于测量流入容器中的液体的体积流量和/或流入容器的液体体积的方法和装置,分别利用哪种装置在微流体系统中实现高度自动化的方法,特别是在 分析领域在液体流入之前,将气体以容器内的预定起始体积的起始压力封闭,然后允许液体流入容器以将封闭的气体压缩至取决于流动的容积的体积的气体体积, 液体中的气体压力,并且相对于起始压力而使容器中的气体的气体压力升高,这取决于流入的液体的体积和流入液体的体积流量,容器中的气体压力为 作为时间的函数测量,并且在给定时间内流入的体积和/或在给定时间的流入液体的体积流量基于测量的气体压力确定 ure。
    • 15. 发明申请
    • Probe Arrangement
    • 探测器安排
    • US20110290045A1
    • 2011-12-01
    • US13109065
    • 2011-05-17
    • Michael HANKORené KÜNDSCHERTorsten PECHSTEIN
    • Michael HANKORené KÜNDSCHERTorsten PECHSTEIN
    • G01D21/00
    • G01D11/245G01N27/333
    • A probe arrangement, in the case of which a probe is arranged within a tubular housing, wherein the tubular housing has at least one process window open to the process medium, and at least one functional element is secured on the probe and surrounded by the process medium. In order to suppress a taking along of the process medium during transfer of the functional element from the measured medium into a rinsing chamber, the tubular housing includes at least one treatment window open opposite the probe (3), preferably for washing, rinsing and/or calibrating the functional element, wherein the functional element is movable between the process window and the treatment window, and, during the measuring in the process medium, the at least one functional element is arranged approximately coincident with the at least one process window of the housing.
    • 探针布置,在探针布置在管状壳体内的情况下,其中管状壳体具有至少一个对加工介质开放的处理窗口,并且至少一个功能元件固定在探针上并被该工艺包围 中。 为了在将功能元件从测量介质转移到漂洗室中时抑制沿着处理介质的吸收,管状壳体包括与探针(3)相对开放的至少一个处理窗口,优选用于洗涤,漂洗和/ 或校准所述功能元件,其中所述功能元件可在所述处理窗口和所述处理窗口之间移动,并且在所述处理介质中的所述测量期间,所述至少一个功能元件被布置为与所述至少一个工艺窗口 住房。
    • 16. 发明申请
    • METHOD FOR THE OPTICAL DETERMINING OF A MEASURED VARIABLE OF A MEDIUM
    • 用于测量中等变量的光学方法
    • US20110108739A1
    • 2011-05-12
    • US13003594
    • 2009-07-07
    • Michael Hanko
    • Michael Hanko
    • G01N21/64G01N21/00
    • G01N21/80G01N31/22G01N2201/0691
    • In a method for determining a measured variable of a measured medium, wherein the measured medium is brought in contact with an indicator or an indicator mixture, whose absorption spectrum has a first, and a second, wavelength range, which essentially do not overlap,a first light source (6) is activated for emitting a first light signal with a wavelength from the first wavelength range and a second light source (7) is activated for emitting a second light signal with a wavelength from the second wavelength range, wherein the intensity of the first light signal is modulated by a first and the intensity of the second light signal by a second, periodic signal, wherein at least a part of the first light signal and at least a part of the second light signal propagate as first and second measurement light signals along a measuring path and are transformed on the measuring path by optical interaction with the indicator or the indicator mixture to transformed measurement light signals, and wherein a total intensity of the transformed first and second measurement light signals is registered, wherein the first periodic signal has a first phase difference relative to the second, periodic signal, and a second phase difference between the total intensity of the transformed first and second measurement light signals and the first, or the second, periodic signal is ascertained, and the measured variable is determined with application of the second phase difference.
    • 在用于确定测量介质的测量变量的方法中,其中测量的介质与指示剂或指示剂混合物接触,所述指示剂或指示剂混合物的吸收光谱具有基本上不重叠的第一和第二波长范围, 第一光源(6)被激活以发射具有来自第一波长范围的波长的第一光信号,并且第二光源(7)被激活以发射具有来自第二波长范围的波长的第二光信号,其中强度 所述第一光信号的第一光信号的第一和第二光信号的强度由第二周期信号调制,其中所述第一光信号的至少一部分和所述第二光信号的至少一部分作为第一和第二信号传播 沿着测量路径测量光信号,并通过与指示器或指示剂混合物的光学相互作用在测量路径上变换成变换的测量光信号,并且wh 注册变换的第一和第二测量光信号的总强度,其中第一周期信号相对于第二周期信号具有第一相位差,并且变换的第一和第二测量光的总强度之间的第二相位差 确定光信号和第一或第二周期信号,并且通过应用第二相位差确定测量的变量。
    • 17. 发明授权
    • Method and apparatus for measuring volume flow rate of liquid flowing into a container and/or volume of liquid which has flowed into the container
    • 用于测量流入容器中的液体的体积流量和/或流入容器的液体体积的方法和装置
    • US08959997B2
    • 2015-02-24
    • US13807768
    • 2011-06-20
    • Michael HankoStefanie Honncher
    • Michael HankoStefanie Honncher
    • G01F23/00G01F1/34G01F3/38G01F13/00G01F22/02
    • G01F1/34G01F3/38G01F13/00G01F22/02
    • A method and apparatus for measuring volume flow rate of a liquid flowing into a container and/or volume of the liquid flowed into the container, with which method, respectively with which apparatus a high measure of automation is achievable in microfluidic systems, especially in the field of analysis. Before liquid flows in, gas is enclosed under a starting pressure in a predetermined starting volume in the container, then liquid is allowed to flow into the container to compress the enclosed gas to a gas volume dependent on the volume of the flowed-in liquid, and to effect a rise of gas pressure of the gas in the container relative to the starting pressure dependent on the volume of liquid which has flowed in and on the volume flow rate of the inflowing liquid, the gas pressure in the container is measured as a function of time, and the volume flowed in up to a given time and/or the volume flow rate of inflowing liquid at the given time are/is determined based on the measured gas pressure.
    • 用于测量流入容器中的液体的体积流量和/或流入容器的液体体积的方法和装置,分别利用哪种装置在微流体系统中实现高度自动化的方法,特别是在 分析领域 在液体流入之前,气体以容器内预定的起始体积的起始压力封闭,然后允许液体流入容器以将封闭的气体压缩至取决于流入液体的体积的气体体积, 并且根据流入的液体的体积和流入液体的体积流量,相对于起始压力使容器内的气体的气体压力升高,将容器内的气体压力作为 时间的函数,以及在给定时间内流动的体积和/或给​​定时间的流入液体的体积流量根据所测量的气体压力来确定。