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    • 2. 发明授权
    • Apparatus for operating a process installation
    • 用于操作过程安装的设备
    • US08271946B2
    • 2012-09-18
    • US12084113
    • 2006-10-17
    • Thomas Budmiger
    • Thomas Budmiger
    • G06F9/44G06F9/45
    • G05B19/0423G05B2219/23299G05B2219/23307G05B2219/25101G05B2219/25323G05B2219/25428
    • A set-up for operating a process installation. The set-up includes a control station and at least one field device, which determines or monitors at least one process variable. Each field device has a program memory, in which a boot-loader software is persistently implemented. The boot-loader software enables communication of the field device with the control station. A transmission link is provided, via which the control station and the field device, or field devices, communicate with one another during operation. Each field device transmits to the control station upon booting of the field device, via the transmission link, device-specific information. The control station transmits to the field device, after receipt of the device-specific information, application- and/or device-specific, measurement/control/evaluation software, which is matched to a particular application of the field device and which the field device stores in a data memory associated with it. The field device, based on application- and/or device-specific, measurement/control/evaluation software available to it during operation, makes available information concerning the process variable.
    • 用于操作过程安装的设置。 该设置包括控制站和至少一个现场设备,其确定或监视至少一个过程变量。 每个现场设备都有一个程序存储器,其中持续执行引导加载程序软件。 引导加载软件使现场设备与控制站通信。 提供传输链路,控制站和现场设备或现场设备在操作期间彼此通信。 每个现场设备在通过传输链路引导现场设备时向控制站发送设备特定信息。 控制站在接收到与设备特定信息相关的应用和/或设备特定的测量/控制/评估软件之后向现场设备发送,该软件与现场设备的特定应用匹配,并且现场设备 存储在与其相关联的数据存储器中。 现场设备基于应用和/或设备特定的测量/控制/评估软件在操作期间可用,提供有关过程变量的信息。
    • 3. 发明授权
    • Magneto-inductive flow measuring device
    • 磁感应流量测量装置
    • US07921736B2
    • 2011-04-12
    • US11921649
    • 2006-05-11
    • Thomas Budmiger
    • Thomas Budmiger
    • G01F1/58
    • G01F1/584G01F1/60
    • The invention relates to a magneto-inductive flow measuring device (1), including: A measuring tube (2), through which a medium (11) flows essentially in a direction of a measuring tube axis (16); a magnet arrangement (6, 7), which produces a magnetic field (H) passing through the measuring tube (2) and extending essentially perpendicularly to the measuring tube axis (16); a first measuring electrode (3) and a second measuring electrode (4); wherein the measuring electrodes (3, 4) are positioned in the measuring tube (2) on a connecting line, which is directed essentially perpendicularly to the measuring tube axis (16) and to the magnetic field (H); and an evaluation/control unit (12), which ascertains, on the basis of a measurement voltage tapped on the measuring electrodes (3, 4), the volume- and/or mass-flow of the medium (11) through the measuring tube (2).In order to increase the measuring accuracy of the multi-parameter flow measuring device (1), the first measuring electrode (3) is made of a first material (A) and the second measuring electrode (4) is made of a second material (C) different from the first material (A); the control/evaluation unit (12) ascertains the direct voltage portion (UD) of the voltages (U3, U4) tapped on the two measuring electrodes (3, 4) relative to a reference potential (ΦR), and makes available, on the basis of the direct voltage portion (UD), medium-specific information.
    • 本发明涉及一种磁感应流量测量装置(1),包括:测量管(2),介质(11)通过该测量管基本沿着测量管轴线(16)的方向流动; 磁体布置(6,7),其产生通过所述测量管(2)并且基本垂直于所述测量管轴线(16)延伸的磁场(H)。 第一测量电极(3)和第二测量电极(4); 其中所述测量电极(3,4)位于所述测量管(2)中的基本上垂直于所述测量管轴线(16)和所述磁场(H)的连接线上。 以及评估/控制单元(12),其基于测量电极(3,4)上的测量电压确定介质(11)通过测量管的体积和/或质量流量 (2)。 为了提高多参数流量测量装置(1)的测量精度,第一测量电极(3)由第一材料(A)制成,第二测量电极(4)由第二材料( C)不同于第一材料(A); 控制/评估单元(12)确定相对于参考电位(ΦR)在两个测量电极(3,4)上敲击的电压(U3,U4)的直流电压部分(UD),并且在 直接电压部分(UD)的基础,中等特定信息。
    • 4. 发明申请
    • Apparatus for Operating a Process Installation
    • 用于操作过程安装的装置
    • US20090306796A1
    • 2009-12-10
    • US12084113
    • 2006-10-17
    • Thomas Budmiger
    • Thomas Budmiger
    • G05B19/042
    • G05B19/0423G05B2219/23299G05B2219/23307G05B2219/25101G05B2219/25323G05B2219/25428
    • A set-up for operating a process installation. The set-up includes a control station and at least one field device which determines or monitors at least one process variable. Each field device has a program memory in which a boot-loader software is persistently implemented. The boot-loader software enables communication of the field device with the control station. A transmission link is provided, via which the control station and the field device, or field devices communicate with one another during operation. Each field device transmits to the control station upon booting of the field device via the transmission link device-specific information. The control station transmits to the field device after receipt of the device-specific information, application- and/or device-specific, measurement/control/evaluation software, which is matched to a particular application of the field device and which the field device stores in a data memory associated with it. The field device based on application- and/or device-specific, measurement/control/evaluation software available to it during operation, makes available information concerning the process variable.
    • 用于操作过程安装的设置。 该设置包括控制站和至少一个现场设备,其确定或监视至少一个过程变量。 每个现场设备都有一个程序存储器,其中持续执行引导加载程序软件。 引导加载软件使现场设备与控制站通信。 提供传输链路,通过该传输链路,控制站和现场设备或现场设备在操作期间彼此通信。 每个现场设备经由传输链路设备专用信息在现场设备启动时向控制站发送。 控制站在接收到与现场设备的特定应用相匹配的设备特定信息,应用和/或设备特定的测量/控制/评估软件之后,向现场设备发送,并且现场设备存储 在与其相关联的数据存储器中。 基于应用和/或设备特定的测量/控制/评估软件的现场设备在运行期间可用,可提供有关过程变量的信息。
    • 5. 发明申请
    • Method for start-up and/or reconfiguration of a programmable field-device
    • US20080288933A1
    • 2008-11-20
    • US12149310
    • 2008-04-30
    • Thomas BudmigerMichael KirstWolfgang DrahmSimon Stingelin
    • Thomas BudmigerMichael KirstWolfgang DrahmSimon Stingelin
    • G06F9/44G06F15/16G01R23/16
    • G01F1/8431G01F15/063G01F25/0007G05B19/0426G05B2219/21092G05B2219/23307G05B2219/23336G05B2219/25014G05B2219/25428
    • An installed hardware of a measuring field device includes at least one transducer reacting during operation to a chemical and/or physical, measured variable of a pourable and/or flowable medium, especially a pourable or flowable bulk good, liquid, gas or the like, as well as a microcomputer communicating during operation with the transducer. The field device is first installed by means of the transducer on, and/or in a process vessel serving for conveying and/or holding pourable and/or flowable media for forming a process measuring point. Thereafter, the microcomputer is booted and a basic software held in a memory provided within the field device for providing, at least in part, basic functionalities of the field device is activated in such a manner that the basic software is executable by means of the microcomputer so that, in the interaction of basic software and hardware installed in the field device, the basic functionalities of the field device are available. Additionally, at least one initial identification parameter set held at least temporarily in the field device and at least approximately identifying the process measuring point is transferred, with application of basic software executed in the microcomputer, to a data processing system superordinated externally of the field device, and at least one upgrade software providing custom functionalities for the field measuring device going beyond the basic functionalities and held in a second memory, is selected from an ensemble of software products, taking into consideration the at least one, initial identification parameter set. A selected upgrade software fitted to the process measuring point is then transferred into a third memory provided within the field measuring device and then activated in such a manner that it is executable by means of the microcomputer, so that, in interaction of upgrade software and hardware installed in the field device, custom functionalities of the field measuring device are available.
    • 6. 发明申请
    • Method for operating and/or reviewing a magneto-inductive flow meter
    • US20060081067A1
    • 2006-04-20
    • US11230497
    • 2005-09-21
    • Thomas Budmiger
    • Thomas Budmiger
    • G01F1/56
    • G01F1/60G01F25/0007
    • A flow meter includes a measuring tube for conveying a fluid to be measured and a magnetic field system, which has at least one field coil, through which an exciter current (IM) flows, at least at times, for producing a magnetic field passing through the fluid at least partly perpendicularly to a stream direction. In the method, the voltage (UH) instantaneously driving the exciter current (IM) is changed at a second point in time, t2, from the second voltage level, Udrv, to a third voltage level, Ushort, especially to a third voltage level which is constant or controlled to be constant, in order to achieve a sinking of the electrical current strength of the exciter current (IM) instantaneously flowing in the at least one field coil from the maximum current value, Im, to an electrical current end value, Iczu, especially a constant end value, predetermined for the exciter current (IM) In such case, the third voltage level, Ushort, is chosen smaller than the second voltage level, Urev. For determining a third point in time, t3, which corresponds to the reaching of the electrical current end value, Ic, the exciter current IM is registered, at least at times. Based on this, a first time constant, Tshort, for the magnetic field system is determined, which corresponds to a time span, t3−t2, lying between the second point in time, t2, and the third point in time, t3, and/or a second time constant, Trev+Tshort, for the magnetic field system, which corresponds to a time span, t3−t1, lying between the first point in time, t1, and the third point in time, t3. For determining a diagnosis value representing an instantaneous operating state of the flow meter, the determined first time constant, Tshort, is then compared with a predetermined first reference value, T1ref, and/or the determined second time constant, Trev+Tshort, is compared with a predetermined second reference value, T2ref.
    • 7. 发明授权
    • Magneto-inductive flow measuring device
    • 磁感应流量测量装置
    • US08042410B2
    • 2011-10-25
    • US12227486
    • 2007-05-16
    • Thomas BudmigerGeorg Szaloky
    • Thomas BudmigerGeorg Szaloky
    • G01F1/58
    • G01F1/584G01F1/60
    • An apparatus for measuring volume- or mass-flow of a medium flowing through a measuring tube in the direction of the measuring tube axis, and includes: a magnet system, which produces a magnetic field passing through the measuring tube essentially transversely to the measuring tube axis; at least one measuring electrode, which contacts the medium in a defined surface region; and a control/evaluation unit, which provides information concerning volume- or mass flow of the medium in the measuring tube on the basis of a measurement voltage induced in the at least one measuring electrode. At least the medium-contacting surface region of the at least one measuring electrode is manufactured of a chemically inert and electrochemically and mechanically resistant material.
    • 一种用于测量在测量管轴线方向上流过测量管的介质的体积或质量流量的装置,包括:磁体系统,其产生穿过测量管的磁场,基本上横向于测量管 轴; 至少一个测量电极,其在限定的表面区域中接触介质; 以及控制/评估单元,其基于在所述至少一个测量电极中感应的测量电压提供关于所述测量管中的介质的体积或质量流量的信息。 至少一个测量电极的介质接触表面区域至少由化学惰性和电化学和机械抵抗材料制成。
    • 9. 发明授权
    • Apparatus for measurement of volume-or-mass-flow of a medium
    • 用于测量介质的体积或质量流量的装置
    • US07891255B2
    • 2011-02-22
    • US12226359
    • 2007-04-13
    • Thomas Budmiger
    • Thomas Budmiger
    • G01F1/56
    • G01F1/58G01F1/60
    • An apparatus for measuring volume- or mass-flow of a medium flowing through a measuring tube in the direction of a measuring tube axis, includes: a magnet system producing a magnetic field passing through the measuring tube essentially transversely to the measuring tube axis; at least one measuring electrode coupled with the medium; a reference component lying at a defined potential, wherein the reference component is connected with a resistance; and a control/evaluation unit, which, on the basis of measurement voltage induced in the at least one measuring electrode, delivers information concerning volume- or mass flow of the medium in the measuring tube. For the purpose of an early recognizing of a malfunction of the measuring apparatus device, or a component of the measuring apparatus device, a measuring device is provided, which makes available information concerning whether electrical current is flowing through the resistance.
    • 一种用于测量在测量管轴线方向上流过测量管的介质的体积或质量流量的装置包括:磁体系统,其基本上横贯于测量管轴线产生通过测量管的磁场; 与所述介质耦合的至少一个测量电极; 位于限定电位的参考部件,其中所述参考部件与电阻连接; 以及控制/评估单元,其基于在所述至少一个测量电极中感应的测量电压,传送关于所述测量管中的介质的体积或质量流量的信息。 为了早期识别测量装置装置或测量装置装置的部件的故障,提供了一种测量装置,其提供有关电流是否流经电阻的信息。
    • 10. 发明申请
    • Magneto-Inductive Flow Measuring Device
    • 磁感应流量测量装置
    • US20100281996A1
    • 2010-11-11
    • US12083693
    • 2006-09-22
    • Thomas Budmiger
    • Thomas Budmiger
    • G01F1/58
    • G01F1/60
    • A magneto-inductive flow measuring device, including: A measuring tube, through which a medium flows essentially directed along a measuring tube axis; a magnet arrangement, which produces an alternating magnetic field passing through the measuring tube essentially perpendicularly to the measuring tube axis; two measuring electrodes arranged essentially on a line directed essentially perpendicularly to the measuring tube axis and to the magnetic field; and a control/evaluation unit, which determines volume, or mass, flow of the medium through the measuring tube on the basis of a measurement voltage tapped on the measuring electrodes. In order to detect an error state at the flow measuring device early, the control/evaluation unit determines current, actual, settling time to reach a stable measurement state of the measuring device. The control/evaluation unit then compares the actual settling time with a desired settling time predetermined for the measuring device for reaching the stable measurement state and generates an error report, when the actual settling time is greater than the predetermined, desired, settling time.
    • 一种磁感应流量测量装置,包括:测量管,介质沿着测量管基本上沿测量管轴指向; 磁体布置,其产生基本上垂直于测量管轴线穿过测量管的交变磁场; 两个测量电极基本上布置在基本上垂直于测量管轴线和磁场的线上; 以及控制/评估单元,其基于测量电极上的测量电压来确定介质通过测量管的体积或质量流量。 为了及早检测流量测量装置的错误状态,控制/评估单元确定测量装置的稳定测量状态的当前,实际,建立时间。 然后,当实际建立时间大于预定的期望的建立时间时,控制/评估单元将实际建立时间与为测量装置达到稳定测量状态而预定的期望建立时间进行比较,并产生错误报告。