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    • 1. 发明授权
    • Method for reducing condensation water in gas sensor arrangements
    • 减少气体传感器装置中冷凝水的方法
    • US07626168B2
    • 2009-12-01
    • US11166593
    • 2005-06-24
    • Joerg FischerMarco ForlenzaRobert FrodlRudi MinuthKuno StraubThomas Tille
    • Joerg FischerMarco ForlenzaRobert FrodlRudi MinuthKuno StraubThomas Tille
    • G01N21/35
    • G01N21/3504G01N21/15G01N2021/158
    • The present invention relates to a method for measuring the presence and/or the concentration of an analyte by means of a gas sensor arrangement and to a corresponding gas sensor arrangement. The gas sensor arrangement comprises a radiation-emitting radiation source, a gas measuring chamber, which may be filled with a test gas containing at least one analyte to be measured, and at least one radiation-detecting detector device which generates an output signal as a function of the presence and/or the concentration of the analyte. In order to be able to reduce the harmful effects of condensation water, which condenses in the gas measuring chamber, the gas measuring chamber according to the invention is heated before the measurement process, such that the wall of the gas measuring chamber assumes a temperature which lies above the dew point of the test gas.
    • 本发明涉及一种通过气体传感器装置和对应的气体传感器装置来测量分析物的存在和/或浓度的方法。 气体传感器装置包括辐射发射辐射源,气体测量室,其可填充含有待测量的至少一种分析物的测试气体,以及至少一个辐射检测检测器装置,其产生输出信号 分析物的存在和/或浓度的功能。 为了能够减少在气体测量室中冷凝的冷凝水的有害影响,根据本发明的气体测量室在测量过程之前被加热,使得气体测量室的壁呈现温度 位于测试气体的露点之上。
    • 7. 发明授权
    • Radiation source for a sensor arrangement with making current limitation
    • 具有电流限制的传感器装置的辐射源
    • US07842925B2
    • 2010-11-30
    • US11670561
    • 2007-02-02
    • Kuno StraubThomas Tille
    • Kuno StraubThomas Tille
    • G01J5/02
    • H05B39/02G01J3/108G01N21/3504
    • A radiation source for an optical sensor arrangement has an incandescent lamp being switched by a semiconductor switch. The incandescent lamp emits a broadband light spectrum. The semiconductor switch has a control terminal driven by a control signal to switch a connection of the incandescent lamp to a supply voltage. The semiconductor switch has a first terminal which is connected to the incandescent lamp, and a second terminal which is connected to a reference potential. When the semiconductor switch is in an on state, a current path is formed between the first and second terminals. A capacitor is connected between the control terminal and the first terminal. A first resistor connects the control terminal to the control signal and a second resistor or capacitor connects the control terminal to the reference potential.
    • 用于光学传感器装置的辐射源具有由半导体开关切换的白炽灯。 白炽灯发出宽带光谱。 半导体开关具有由控制信号驱动的控制端子,以将白炽灯的连接切换到电源电压。 半导体开关具有连接到白炽灯的第一端子和连接到参考电位的第二端子。 当半导体开关处于导通状态时,在第一和第二端子之间形成电流通路。 电容器连接在控制端子和第一端子之间。 第一个电阻器将控制端子连接到控制信号,第二个电阻器或电容器将控制端子连接到参考电位。
    • 8. 发明申请
    • RADIATION SOURCE FOR A SENSOR ARRANGEMENT WITH MAKING CURRENT LIMITATION
    • 用于传感器布置的辐射源产生电流限制
    • US20070181812A1
    • 2007-08-09
    • US11670561
    • 2007-02-02
    • Kuno StraubThomas Tille
    • Kuno StraubThomas Tille
    • G01N21/61
    • H05B39/02G01J3/108G01N21/3504
    • A radiation source is disclosed for an optical sensor arrangement having an incandescent lamp being switched by a semiconductor switch. The incandescent lamp emits a broadband light spectrum. The semiconductor switch has a control terminal driven by a control signal to switch a connection of the incandescent lamp to a supply voltage. The semiconductor switch has a first terminal which is connected to the incandescent lamp, and a second terminal which is connected to a reference potential. When the semiconductor switch is in an on state, a current path is formed between the first and second terminals. A capacitor is connected between the control terminal and the first terminal. A first resistor connects the control terminal to the control signal and a second resistor or capacitor connects the control terminal to the reference potential.
    • 公开了一种用于具有由半导体开关切换的白炽灯的光学传感器装置的辐射源。 白炽灯发出宽带光谱。 半导体开关具有由控制信号驱动的控制端子,以将白炽灯的连接切换到电源电压。 半导体开关具有连接到白炽灯的第一端子和连接到参考电位的第二端子。 当半导体开关处于导通状态时,在第一和第二端子之间形成电流通路。 电容器连接在控制端子和第一端子之间。 第一个电阻器将控制端子连接到控制信号,第二个电阻器或电容器将控制端子连接到参考电位。