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    • 1. 发明申请
    • Device for the ir-spectrometric analysis of a solid, liquid or gaseous medium
    • 固体,液体或气体介质的光谱分析装置
    • US20060115201A1
    • 2006-06-01
    • US10522158
    • 2003-07-18
    • Camiel HeffelsDirk SteinmuellerDick ScholtenPeter Lindmueller
    • Camiel HeffelsDirk SteinmuellerDick ScholtenPeter Lindmueller
    • G02B6/00
    • G01J3/26G01N21/3504G01N21/3563G01N21/3577G01N21/552
    • The invention relates to a device for the IR-spectrometric analysis of a solid, liquid or gaseous medium. The device includes a process probe, which has a reflection element. The device additionally includes a linear variable filter, at least one detector element, and a control/evaluation unit. At least one light source is also provided, the light of which is coupled into the reflection element via a collimating optics. At least one optical waveguide having a light input section and a light output section is provided. The light is guided via the light output section of the optical waveguide into a defined region of the linear variable filter. The detector element and the linear variable filter are arranged movably relative to one another over approximately the length of the linear variable filter. The control/evaluation unit determines the spectrum of the medium on the basis of the measured values delivered from the detector element.
    • 本发明涉及用于固体,液体或气体介质的IR光谱分析的装置。 该装置包括具有反射元件的过程探针。 该装置还包括线性可变滤波器,至少一个检测器元件和控制/评估单元。 还提供至少一个光源,其光被经由准直光学器件耦合到反射元件中。 提供具有光输入部和光输出部的至少一个光波导。 光通过光波导的光输出部被引导到线性可变滤波器的限定区域中。 检测器元件和线性可变滤波器在线性可变滤波器的大约长度上相对于彼此可移动地布置。 控制/评估单元基于从检测器元件传送的测量值来确定介质的光谱。
    • 3. 发明申请
    • Online analyzer
    • 在线分析仪
    • US20060051238A1
    • 2006-03-09
    • US10515306
    • 2003-05-17
    • Ralf SteuerwaldCamiel HeffelsDirk Steinmueller
    • Ralf SteuerwaldCamiel HeffelsDirk Steinmueller
    • G01N21/00
    • G01N21/253
    • An on-line analyzer for analyzing a test sample, having a measuring device, which includes at least one measuring cell and at least one optoelectronic component. The measuring device determines, at at least one wavelength, the transmission or absorption of electromagnetic radiation passing through the test sample and provides measurement signals. The analyzer further includes a control/evaluation unit, which evaluates the measurement signals delivered by the measuring device and makes analysis data available. The measuring cell and the control/evaluation unit are located spatially separated from one another; the at least one optoelectronic component of the measuring device is assigned to the control/evaluation unit; the measuring cell and the at least one optoelectronic component are connected together via a light wave conductor.
    • 一种用于分析测试样品的在线分析器,其具有包括至少一个测量单元和至少一个光电子部件的测量装置。 测量装置在至少一个波长处确定通过测试样品的电磁辐射的透射或吸收并提供测量信号。 分析器还包括控制/评估单元,其评估由测量装置传递的测量信号并使分析数据可用。 测量单元和控制/评估单元位于空间上彼此分离; 将测量装置的至少一个光电子部件分配给控制/评估单元; 所述测量单元和所述至少一个光电子部件经由光波导体连接在一起。
    • 4. 发明授权
    • Online analyzer
    • 在线分析仪
    • US08268248B2
    • 2012-09-18
    • US10515306
    • 2003-05-17
    • Ralf SteuerwaldDirk SteinmuellerCamiel Heffels
    • Ralf SteuerwaldDirk SteinmuellerCamiel Heffels
    • G01N21/00
    • G01N21/253
    • An on-line analyzer for analyzing a test sample, having a measuring device, which includes at least one measuring cell and at least one optoelectronic component. The measuring device determines, at at least one wavelength, the transmission or absorption of electromagnetic radiation passing through the test sample and provides measurement signals. The analyzer further includes a control/evaluation unit, which evaluates the measurement signals delivered by the measuring device and makes analysis data available. The measuring cell and the control/evaluation unit are located spatially separated from one another; the at least one optoelectronic component of the measuring device is assigned to the control/evaluation unit; the measuring cell and the at least one optoelectronic component are connected together via a light wave conductor.
    • 一种用于分析测试样品的在线分析器,其具有包括至少一个测量单元和至少一个光电子部件的测量装置。 测量装置在至少一个波长处确定通过测试样品的电磁辐射的透射或吸收并提供测量信号。 分析器还包括控制/评估单元,其评估由测量装置传递的测量信号并使分析数据可用。 测量单元和控制/评估单元位于空间上彼此分离; 将测量装置的至少一个光电子部件分配给控制/评估单元; 所述测量单元和所述至少一个光电子部件经由光波导体连接在一起。
    • 6. 发明申请
    • Method for monitoring sensor function
    • 监测传感器功能的方法
    • US20060155511A1
    • 2006-07-13
    • US10525952
    • 2003-08-26
    • Dirk SteinmuellerWilfried HammelehleDetlev WittmerAxel Fikus
    • Dirk SteinmuellerWilfried HammelehleDetlev WittmerAxel Fikus
    • G06F15/00
    • G01N27/4163G01D3/08G01D18/008G01N33/007
    • The invention relates to a method for monitoring the functioning of sensors for the measurement and monitoring of state parameters of liquids or gases, especially in the field of process measurement technology, for example of electrochemical, electrophysical or optical sensors, wherein the sensor is placed into a test state at time intervals and test parameters are registered, or these test parameters are registered at time intervals in the course of the measured value registration, wherein the registered parameters are stored and a backwards-looking, chronological development of the stored test parameters is evaluated for performing the functional monitoring and the development of sensor behavior to be expected in the future is predicted therefrom and information concerning the duration of the remaining, disturbance-free operation of the sensor is obtained.
    • 本发明涉及一种用于监测用于测量和监测液体或气体的状态参数的传感器的功能的方法,特别是在诸如电化学,电物理学或光学传感器的过程测量技术领域中,其中将传感器置于 以时间间隔的测试状态和测试参数被注册,或者在测量值注册过程中以时间间隔登记这些测试参数,其中存储注册的参数,并且所存储的测试参数的后向开发是按 评估用于执行功能监视和将来预期的传感器行为的发展,并且获得关于传感器的剩余的无干扰运行的持续时间的信息。
    • 7. 发明授权
    • Method for monitoring sensor function
    • 监测传感器功能的方法
    • US08005629B2
    • 2011-08-23
    • US10525952
    • 2003-08-26
    • Dirk SteinmuellerWilfried HammelehleDetlev WittmerAxel Fikus
    • Dirk SteinmuellerWilfried HammelehleDetlev WittmerAxel Fikus
    • G06F15/00
    • G01N27/4163G01D3/08G01D18/008G01N33/007
    • A method for monitoring the functioning of sensors for the measurement and monitoring of state parameters of liquids or gases, especially in the field of process measurement technology, for example of electrochemical, electrophysical or optical sensors, wherein the sensor is placed into a test state at time intervals and test parameters are registered, or these test parameters are registered at time intervals in the course of the measured value registration. The registered parameters are stored and a backwards-looking, chronological development of the stored test parameters is evaluated for performing the functional monitoring and the development of sensor behavior to be expected in the future is predicted therefrom and information concerning the duration of the remaining, disturbance-free operation of the sensor is obtained.
    • 一种用于监测用于测量和监测液体或气体的状态参数的传感器的功能的方法,特别是在过程测量技术领域,例如电化学,电物理或光学传感器,其中传感器被置于测试状态 注册时间间隔和测试参数,或者在测量值注册过程中以时间间隔登记这些测试参数。 存储注册的参数,并且评估存储的测试参数的向后看的,按时间顺序的开发以执行功能监视,并且预测将来预期的传感器行为的发展以及关于剩余的干扰的持续时间的信息 获得传感器的自由操作。