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    • 2. 发明授权
    • Measuring apparatus comprising a measuring probe and a securement apparatus
    • 测量装置,包括测量探针和固定装置
    • US08925401B2
    • 2015-01-06
    • US13382955
    • 2010-06-22
    • Lothar AuerswaldChristian Fanselow
    • Lothar AuerswaldChristian Fanselow
    • G01N27/28G01D11/24
    • G01D11/24
    • A measuring apparatus, especially a measuring apparatus suitable for application in industrial process measurements technology for making measurements of physical or chemical, measured variables in a closed process container under increased pressure, comprising: a measuring probe, which has a probe shaft, especially a cylindrical probe shaft; and a securement apparatus to affix the measuring probe at a measuring point, wherein the securement apparatus comprises a sleeve, which at least sectionally accommodates probe shaft, wherein the measuring probe has a securement collar connected to the probe shaft; the securement collar is held, especially shape interlocked, between a coupling jacket releasably secured in sleeve and a counterbearing formed within sleeve, characterized in that, a first abutment surface is formed within the coupling jacket, and a second abutment surface, which lies opposite the first abutment surface, is formed on measuring probe.
    • 一种测量装置,特别是适用于在工业过程测量技术中应用的测量装置,用于在增加的压力下在封闭的过程容器中测量物理或化学测量的变量,包括:测量探针,其具有探针轴,特别是圆柱形 探头轴; 以及用于将测量探针固定在测量点处的固定装置,其中所述固定装置包括至少部分地容纳探头轴的套筒,其中所述测量探针具有连接到所述探针轴的固定套环; 将固定套环特别形状互锁地保持在可释放地固定在套筒中的联接护套和形成在套筒内的抵靠件之间,其特征在于,第一邻接表面形成在联接护套内,第二邻接表面与第二邻接表面相对, 第一邻接表面形成在测量探头上。
    • 4. 发明申请
    • APPARATUS FOR DETERMINING AND/OR MONITORING A CHEMICAL OR PHYSICAL PROCESS VARIABLE IN AUTOMATION TECHNOLOGY
    • 用于确定和/或监测自动化技术中变化的化学或物理过程的装置
    • US20130031285A1
    • 2013-01-31
    • US13557797
    • 2012-07-25
    • Holger Eberhard
    • Holger Eberhard
    • G06F13/42
    • G05B19/4186Y02P90/185
    • An apparatus for determining and/or monitoring a chemical or physical, process variable in automation technology, comprising: a superordinated control unit; and a transmitter electronics having a first interface, a second interface and a third interface. The transmitter electronics communicates with the superordinated control unit by means of the first interface via a bus protocol. The transmitter electronics can be connected with a service unit via the second interface; and the third interface has a plurality of data channels for corresponding data source components; and wherein individual data channels are addressable and tunable via the service unit as a function of the connected data source components, so that data selected from the data for the connected data source components can be transmitted at the same time in at least one telegram to the superordinated control unit.
    • 一种用于确定和/或监视自动化技术中的化学或物理过程变量的装置,包括:上级控制单元; 以及具有第一接口,第二接口和第三接口的发射机电子设备。 发射机电子设备通过总线协议通过第一接口与上位控制单元进行通信。 发射机电子设备可以通过第二接口与服务单元连接; 并且第三接口具有用于相应数据源组件的多个数据通道; 并且其中各个数据信道可以作为所连接的数据源组件的函数经由服务单元寻址和调谐,使得从所连接的数据源组件的数据中选择的数据可以在至少一个报文中同时发送到 上级控制单位。
    • 7. 发明申请
    • METHOD FOR START-UP OF A MEASURING DEVICE
    • 测量装置启动方法
    • US20120144894A1
    • 2012-06-14
    • US13324066
    • 2011-12-13
    • Thilo TrappTorsten Pechstein
    • Thilo TrappTorsten Pechstein
    • G01N33/00
    • G01N35/00693G01N27/4165G01N35/00712
    • A method for start-up of a measuring device, which is embodied to monitor by means of at least one measuring transducer in contact with the interior of a process container, especially of a single-use container, a measured variable of a medium contained in the process container, wherein, for ascertaining a measured value, at least one measurement signal of the measuring transducer is mapped to a measured value of the measured variable according to a predetermined characteristic curve, wherein the method includes: introducing a process medium into the process container; bringing the measuring transducer in contact with the process medium; and performing a one-point calibrating of the measuring device based on a measurement signal registered by the measuring transducer in the process medium or a measured value derived therefrom based on the characteristic curve.
    • 一种用于启动测量装置的方法,其被实施为通过与处理容器,特别是一次性容器的内部接触的至少一个测量传感器来监测包含在其中的介质的测量变量 所述处理容器,其中,为了确定测量值,所述测量传感器的至少一个测量信号根据预定特性曲线被映射到所述测量变量的测量值,其中所述方法包括:将处理介质引入所述过程 容器; 使测量传感器与处理介质接触; 并且基于由所述测量换能器在所述处理介质中登记的测量信号或基于所述特性曲线从其导出的测量值,对所述测量装置进行一点校准。
    • 8. 发明申请
    • Absorption Measurement System
    • 吸收测量系统
    • US20120140228A1
    • 2012-06-07
    • US13305970
    • 2011-11-29
    • Ralf BernhardAchim Gahr
    • Ralf BernhardAchim Gahr
    • G01N21/59
    • G01N21/8507G01N21/59G01N2201/0662
    • An absorption measurement system, flexibly usable over a large measuring range, for measuring at least one property of a medium reflected in its absorption behavior, especially a property such as an absorption coefficient (μ). The absorption measurement system comprises: a measuring chamber filled with the medium in measurement operation, in which radiatable beam paths usable as measuring paths and of different lengths, extend completely through the medium; a transmitting unit, which transmits radiation along the measuring paths through measuring chamber in measurement operation; a measuring and receiving unit, which receives radiation passing through measuring chamber on the measuring paths and measures its radiation intensities dependent on the property of the medium and the lengths of the measuring paths; and a measuring electronics, which determines the property based on the measured radiation intensities and the lengths of measuring paths.
    • 一种吸收测量系统,可在大的测量范围内灵活使用,用于测量其吸收行为反映的介质的至少一种性质,特别是吸收系数(μ)等特性。 吸收测量系统包括:在测量操作中填充介质的测量室,其中可用作测量路径和不同长度的可辐射光束路径完全延伸穿过介质; 发射单元,其在测量操作中通过测量室沿着测量路径传输辐射; 测量和接收单元,其接收通过测量路径上的测量室的辐射,并根据介质的性质和测量路径的长度测量其辐射强度; 以及测量电子器件,其基于测量的辐射强度和测量路径的长度来确定特性。
    • 9. 发明申请
    • METHOD FOR OPERATING A MEASURING DEVICE HAVING AT LEAST ONE PROBE, WHICH HAS AT LEAST ONE ION SELECTIVE ELECTRODE
    • 具有至少一个具有至少一个离子选择性电极的探针的测量装置的操作方法
    • US20120073989A1
    • 2012-03-29
    • US13246918
    • 2011-09-28
    • Stefan WilkeAnja HarbigDaniel ItenGünter Jahl
    • Stefan WilkeAnja HarbigDaniel ItenGünter Jahl
    • G01N27/333
    • G01N27/333
    • A method for operating a measuring device comprising the following steps: providing a first sample of the liquid; ascertaining an updated calibration function by means of a standard addition method, wherein the first sample is supplemented at least once with a standard solution, which has a known concentration of the measured ion; determining a measured value of concentration of the measured ion in the first sample; providing a second sample of the liquid; ascertaining a measured value of concentration of the measured ion in the second sample as a reference measured ion concentration (cref) by means of a reference method; and determining a difference (cdisturb) between the apparent measured ion concentration (capparent) and the reference measured ion concentration (cref) and deriving a correction value (ckorr) therefrom for future measured values of concentration of the measured ion in the liquid, as ascertained with the measuring device.
    • 一种操作测量装置的方法,包括以下步骤:提供液体的第一样品; 通过标准添加方法确定更新的校准功能,其中第一样品用已知浓度的测量离子的标准溶液补充至少一次; 确定第一样品中测量离子的浓度的测量值; 提供液体的第二个样品; 通过参考方法确定第二样品中测量离子的浓度的测量值作为参考测量离子浓度(cref); 并确定表观测量的离子浓度(capparent)与参考测量的离子浓度(cref)之间的差异(cdisturb),并从其中得出校正值(ckorr),用于未来测量的液体离子浓度的测量值,如所确定的 与测量设备。
    • 10. 发明申请
    • Method for determining number of drops
    • 确定滴数的方法
    • US20120028361A1
    • 2012-02-02
    • US13258262
    • 2010-03-15
    • Ulrich KatheOliver Bettmann
    • Ulrich KatheOliver Bettmann
    • G01N35/00G01N25/00
    • G01N33/1846G01N7/18G01N35/1016Y10T436/115831Y10T436/179228Y10T436/204998
    • A method for determining the number of drops metered with a drop frequency into a reactor, especially in a high temperature decomposition system for analyzers, wherein a gas stream is flowing through the reactor. There exists in the reactor a temperature, which is greater than the boiling temperature of the liquid, and a drop metered into the reactor transforms at least partially into the gas phase following entry into the reactor, especially due to heat transfer from contact with a surface within the reactor, especially directly after contact with the surface within the reactor. With a sampling rate, which is greater than the drop frequency, a sequence of pressure signals dependent on pressure within the reactor is registered, and, from the sequence of pressure signals or from values derived therefrom, the number of drops metered into the reactor is ascertained.
    • 一种用于确定滴定频率计入反应器中的液滴数量的方法,特别是用于分析器的高温分解系统中,其中气流流过反应器。 在反应器中存在大于液体的沸点温度的温度,并且计入反应器中的液滴在进入反应器之后至少部分地转化为气相,特别是由于与表面接触的热传递 特别是在与反应器内的表面接触之后。 采用大于下降频率的采样速率,记录取决于反应器内的压力的压力信号序列,并且根据压力信号序列或从其得到的值,计量到反应器中的液滴数为 确定