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    • 12. 发明授权
    • Assembly device for a measuring probe for measuring process variables in a process
    • 用于在过程中测量过程变量的测量探头的装配装置
    • US08621947B2
    • 2014-01-07
    • US13265381
    • 2010-03-30
    • Rainer SchlerethHans-Joachim Oppermann
    • Rainer SchlerethHans-Joachim Oppermann
    • G01D11/30
    • G01N27/283
    • An assembly device, especially a retractable assembly, for a measuring probe for measuring process variables in a process, comprising: an assembly housing with a connection system for connecting the assembly device to a process container; a tubular holder for a measuring probe, wherein the tubular holder is guided in the assembly housing axially displaceably between a measuring position in the process container and a maintenance position outside of the process container; and a damping system to damp axial shifting of the tubular holder. The damping system comprises a fluid filled, damping cylinder within the assembly housing, and a damping piston unit guided within the damping cylinder (15) in operative connection with the tubular holder.
    • 一种用于测量过程中的过程变量的测量探针的装配装置,特别是可伸缩组件,包括:具有用于将组装装置连接到处理容器的连接系统的组件壳体; 用于测量探针的管状保持器,其中所述管状保持器在所述组件壳体中被轴向移动地引导到所述处理容器中的测量位置和所述处理容器外部的维护位置; 以及阻尼系统来阻止管状夹持器的轴向移动。 阻尼系统包括在组件壳体内的流体填充的阻尼缸,以及在与管状保持器可操作连接的阻尼缸(15)内引导的阻尼活塞单元。
    • 13. 发明授权
    • Method and arrangement for automatic calibrating of spectrometers
    • 自动校准光谱仪的方法和布置
    • US08543348B2
    • 2013-09-24
    • US12996668
    • 2009-06-03
    • Thomas AlberEdin Andelic
    • Thomas AlberEdin Andelic
    • G06F19/00
    • G01J3/28
    • An arrangement and method for calibrating a spectrometer with a spectrometric apparatus for measuring spectral fractions of the substance to be examined as well as with a calibration unit. The calibrating of the spectrometric apparatus and/or measurement data based on measured spectrometric data is performed, by the following steps: a) measuring a totality of spectral fractions of the substance to be examined; b) storing the totality of the measured spectral fractions in a memory module in the form of a multidimensional coefficient vector; c) automatic extracting, from the totality of the measured spectral fractions physically relevant for the particular measuring procedure via an automatically running, iterative, estimation method furnished in the calibration unit; and d) calibrating the measured spectrometric measurement data for the investigated substance based on the step c) extracted, spectral fractions of the spectrometric data physically relevant for the substance to be examined.
    • 用于用用于测量被检物质的光谱分数以及校准单元的光谱测量装置校准光谱仪的装置和方法。 通过以下步骤进行基于测量的光谱数据校准光谱仪和/或测量数据:a)测量待检物质的光谱级数的总和; b)以多维系数向量的形式将所测量的频谱分数的总和存储在存储器模块中; c)通过在校准单元中提供的自动运行,迭代的估计方法,从与特定测量程序物理相关的测量的光谱分数的总和自动提取; 以及d)基于步骤c)所提取的与待检物质相关的光谱数据的光谱分数来校准被测物质的测量光谱测量数据。
    • 17. 发明申请
    • PROBE SYSTEM FOR MEASURING A MEASURED VARIABLE OF A PROCESS MEDIUM CONTAINED IN A PROCESS CONTAINER
    • 用于测量过程容器中包含的过程介质的测量变量的探测系统
    • US20120272756A1
    • 2012-11-01
    • US13454144
    • 2012-04-24
    • Thomas PfauchIngrid WunderlichRené Kündscher
    • Thomas PfauchIngrid WunderlichRené Kündscher
    • G01D21/00
    • G01N27/283
    • A probe system, including: a connector apparatus; a treatment chamber part having at least one treatment medium supply line communicating with the treatment chamber; a measuring head seated so as to be axially shiftable, and a treatment position, wherein the immersion tube, on its connector apparatus-side front end, has a front-end closed, protective cylinder, and is arranged in a section of the immersion tube, so that, in the measuring position of the immersion tube, the measuring head is contactable via perforations with the process medium, and in the treatment position of the immersion tube, is contactable with the treatment medium; and a drive system for axial shifting of the immersion tube, arranged on the end region of the probe system facing away from the connector apparatus. The treatment chamber part is surrounded by a support structure connected with the connector apparatus and with the drive system.
    • 一种探针系统,包括:连接器装置; 处理室部分,其具有与处理室连通的至少一个处理介质供应管线; 一个测量头可以轴向移动,以及一个处理位置,其中浸入管在其连接器装置侧的前端具有前端关闭的保护筒,并且设置在浸入管的一部分中 使得在浸入管的测量位置,测量头可以通过穿孔与处理介质接触,并且在浸入管的处理位置可与处理介质接触; 以及设置在远离连接器装置的探针系统的端部区域上的用于浸入管的轴向移动的驱动系统。 治疗室部分由与连接器装置和驱动系统连接的支撑结构围绕。
    • 18. 发明授权
    • Method for function monitoring of a sensor
    • 传感器功能监控方法
    • US07957928B2
    • 2011-06-07
    • US11793824
    • 2005-11-29
    • Axel TischendorfHermann StraubTorsten Pechstein
    • Axel TischendorfHermann StraubTorsten Pechstein
    • G01D18/00
    • G01N27/4163G01D3/08
    • A method for monitoring a sensor function by repeatedly acquiring data records including sensor-specific calibration data; by storing the acquired data records; by analyzing changes of the calibration data over time using the stored data records; and by determining time or time weighted with a load factor until the next calibration is due, using at least the changes of the calibration data over time. The resulting time or the determined time weighted with a load factor can, for example, be output in suitable form directly after determination, thereby allowing for a long-term planning of calibration, and/or it can be stored as a date or a remaining time. A comparison with a time signal or a count-down of the remaining time allows at the due date to output a request, or prompt, signal, optionally with a desired lead time.
    • 一种用于通过重复获取包括传感器特定校准数据的数据记录来监视传感器功能的方法; 通过存储获取的数据记录; 通过使用存储的数据记录分析随时间的校准数据的变化; 并且通过确定用负载因子加权的时间或时间,直到下一次校准到期为止,至少使用校准数据随时间的变化。 所得到的时间或以负载因子加权的确定时间可以例如在确定之后直接以适当的形式输出,从而允许长期规划校准,和/或可以将其存储为日期或剩余的 时间。 与时间信号的比较或剩余时间的倒计时允许在到期日期输出请求或提示信号,可选地具有期望的交货时间。
    • 19. 发明授权
    • Method and apparatus for manufacturing a glass body
    • 用于制造玻璃体的方法和装置
    • US07926302B2
    • 2011-04-19
    • US10581666
    • 2004-11-29
    • Katrin ScholzStefan AurasSven HaertigJens Voigtlaender
    • Katrin ScholzStefan AurasSven HaertigJens Voigtlaender
    • C03B23/04C03B23/057C03B23/11
    • C03B23/207C03B23/091C03B23/092C03B23/097
    • A method for manufacturing a glass body for a potentiometric sensor, including: loading a first spindle of a glass lathe with outer and inner glass tubes, so that the glass tubes are arranged coaxially with one another and with the axis of rotation of the first spindle, the inner glass tube and the outer glass tube each has a media-side end, and the two media-side ends have defined axial positions relative to one another; loading a second spindle with an auxiliary glass tube, so that the axis of rotation of the second spindle is arranged coaxially with the axis of rotation of the first spindle; moving the auxiliary glass tube to be contiguous with the outer glass tube; fusion joining of the outer glass tube with the auxiliary glass tube; producing a connection between the outer glass tube, or the auxiliary glass tube, and the inner glass tube; removing a remainder of the auxiliary glass tube; producing a media-side opening of the inner glass tube; and forming a media-side edge of the opening. Optionally, the method includes, additionally, the automatic blowing of a glass membrane on the media-side edge.
    • 一种用于制造电位传感器的玻璃体的方法,包括:将玻璃车床的第一主轴与外玻璃管和内玻璃管装载,使得玻璃管彼此同轴布置并且与第一主轴的旋转轴线 内玻璃管和外玻璃管各自具有介质侧端部,并且两个介质侧端部具有相对于彼此限定的轴向位置; 加载具有辅助玻璃管的第二主轴,使得第二主轴的旋转轴线与第一主轴的旋转轴同轴布置; 将辅助玻璃管移动为与外玻璃管邻接; 外玻璃管与辅助玻璃管的熔接; 在外玻璃管或辅助玻璃管与内玻璃管之间产生连接; 除去辅助玻璃管的剩余部分; 产生内玻璃管的介质侧开口; 以及形成所述开口的介质侧边缘。 可选地,该方法还包括在介质侧边缘上自动吹送玻璃膜。
    • 20. 发明授权
    • Potentiometric sensor and method for the start-up of a potentiometric sensor
    • 用于启动电位传感器的电位传感器和方法
    • US09217724B2
    • 2015-12-22
    • US13324057
    • 2011-12-13
    • Thilo TrappTorsten Pechstein
    • Thilo TrappTorsten Pechstein
    • G01N27/26G01N27/28G01N27/403G01N27/416
    • G01N27/4035G01N27/4163
    • A potentiometric sensor includes a housing, in which a reference half cell space and a separated, measuring half cell space are formed. The reference half cell space contains a reference electrolyte and at least one part of a first potential sensing electrode for sensing a reference potential, and the measuring half cell space is liquid-tightly sealed by a measuring membrane, and contains an inner electrolyte and at least one part of a second potential sensing electrode for sensing a measuring half cell potential. A passageway extends through a wall of the housing, and opens into the reference half cell space, and is sealed relative to a medium surrounding the housing. The potentiometric sensor has a way for producing through the passageway an electrolytic contact between the reference electrolyte and the medium surrounding the housing.
    • 电位传感器包括壳体,其中形成参考半电池空间和分离的测量半电池空间。 参考半电池空间包含参考电解质和用于感测参考电位的第一电位感测电极的至少一部分,并且测量半电池空间由测量膜液密地密封,并且至少包含内部电解质 用于感测测量半电池电位的第二电位感测电极的一部分。 通道延伸穿过壳体的壁,并且通向参考半电池空间,并且相对于围绕壳体的介质被密封。 电位传感器具有通过通道产生参考电解质和围绕壳体的介质之间的电解接触的方式。