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    • 1. 发明申请
    • Field device for determining or monitoring a physical or chemical process variable
    • 用于确定或监测物理或化学过程变量的现场设备
    • US20110087460A1
    • 2011-04-14
    • US12923108
    • 2010-09-02
    • Romuald GirardeyMichael HübnerDietmar Frühauf
    • Romuald GirardeyMichael HübnerDietmar Frühauf
    • G06F19/00G01N27/00
    • G05B9/02G05B23/0289
    • Field device for determining or monitoring a physical or chemical process variable, wherein the field device is composed of a sensor, which works according to a defined measuring principle, and a control/evaluation unit, which, as a function of a safety standard required for the particular safety-critical application, conditions and evaluates, along at least two equivalent measuring paths, measurement data delivered by the sensor. The control/evaluation unit is implemented on an FPGA, on which are provided at least a first section and a second section, wherein, in each section, a digital measuring path, which is composed of a plurality of software-based and/or hardware-based function modules, is dynamically reconfigurable. The sections are isolated from one another by permanently configured spacer regions, wherein the spacer regions are embodied in such a way, that a temperature and/or a voltage change in one of the sections has no influence on the other section or other sections, and, in the case of malfunction, no connection occurs between the sections. The control/evaluation unit, as a function of the particular defined safety-critical application, partially dynamically reconfigures the function modules in the measuring paths in such a manner, that the field device fulfills the required safety standard.
    • 用于确定或监测物理或化学过程变量的现场设备,其中所述现场设备由根据定义的测量原理工作的传感器和控制/评估单元组成,所述控制/评估单元作为所述安全标准的函数 沿着至少两个等效的测量路径,传感器传送的测量数据,特定的安全关键应用,条件和评估。 控制/评估单元在FPGA上实现,其中至少提供有第一部分和第二部分,其中在每个部分中,数字测量路径由多个基于软件的和/或硬件组成 的功能模块,是动态可重构的。 这些部分通过永久构造的间隔区域彼此隔离,其中间隔区域以这样的方式实施,使得其中一个部分中的温度和/或电压变化对另一部分或其它部分没有影响,以及 在故障的情况下,部分之间不会发生连接。 作为特定定义的安全关键应用的功能的控制/评估单元以这种方式部分地动态地重新配置测量路径中的功能模块,即现场设备满足所需的安全标准。
    • 2. 发明授权
    • Field device for determining or monitoring a physical or chemical process variable
    • 用于确定或监测物理或化学过程变量的现场设备
    • US08712727B2
    • 2014-04-29
    • US12923108
    • 2010-09-02
    • Romuald GirardeyMichael HübnerDietmar Frühauf
    • Romuald GirardeyMichael HübnerDietmar Frühauf
    • G06F11/30
    • G05B9/02G05B23/0289
    • A field device is composed of a sensor, which works according to a defined measuring principle, and a control/evaluation unit, for a particular safety-critical application, conditions and evaluates, along at least two equivalent measuring paths, measurement data delivered by the sensor. The control/evaluation unit is implemented on an FPGA, provided with at least a first section and a second section. In each section, a digital measuring path, is dynamically reconfigurable. The sections are isolated from one another by permanently configured spacer regions, wherein the spacer regions are embodied in such a way, that a temperature and/or a voltage change in one of the sections has no influence on the other section or other sections, and, in the case of malfunction, no connection occurs between the sections. The control/evaluation unit, as a function of the particular defined safety-critical application, partially dynamically reconfigures the function modules in the measuring paths in such a manner, that the field device fulfills the required safety standard.
    • 现场设备由根据定义的测量原理工作的传感器和用于特定安全关键应用的控制/评估单元组成,沿着至少两个等效测量路径条件和评估,由 传感器。 控制/评估单元在FPGA上实现,至少提供第一部分和第二部分。 在每个部分中,数字测量路径是动态可重构的。 这些部分通过永久构造的间隔区域彼此隔离,其中间隔区域以这样的方式实施,使得其中一个部分中的温度和/或电压变化对另一部分或其它部分没有影响,以及 在故障的情况下,部分之间不会发生连接。 作为特定定义的安全关键应用的功能的控制/评估单元以这种方式部分地动态地重新配置测量路径中的功能模块,即现场设备满足所需的安全标准。
    • 4. 发明申请
    • Field device for determining or monitoring a physical or chemical variable
    • 用于确定或监测物理或化学变量的现场设备
    • US20110054637A1
    • 2011-03-03
    • US12805870
    • 2010-08-23
    • Romuald GirardeyMichael Hübner
    • Romuald GirardeyMichael Hübner
    • G05B9/03G05B13/02
    • G05B19/0428G05B9/03G05B2219/21109G05B2219/21156G05B2219/24182G05B2219/25428
    • A field device for determining or monitoring a physical or chemical variable, comprising a sensor, which works according to a defined measuring principle, and a control/evaluation unit, which, as a function of a required safety standard for a particular safety-critical application, conditions and evaluates along at least two equivalent measuring paths measurement data delivered by the sensor. The control/evaluation unit is implemented on an application-specific integrated circuit—an ASIC—which, in at least a first section and in a second section, is embodied as a dynamically reconfigurable logic chip. In each of the two sections, in each case, a measuring path composed of a plurality of function modules can be configured; wherein the individual sections are spaced apart from one another in such a manner, that a temperature and/or a voltage change in one of the sections has no influence on the other section or the other sections. The control/evaluation unit partially dynamically reconfigures the function modules in the measuring paths as a function of the particular defined safety-critical application, so that the field device fulfills the required safety standard.
    • 用于确定或监测物理或化学变量的现场设备,包括根据定义的测量原理工作的传感器,以及控制/评估单元,其作为特定安全关键应用的所需安全标准的函数 ,沿着至少两个等效测量路径的条件和评估,由传感器传送的测量数据。 控制/评估单元在专用集成电路(ASIC)上实现,ASIC至少在第一部分和第二部分被实现为动态可重配置的逻辑芯片。 在这两个部分中的每一个中,在每种情况下,可以配置由多个功能模块组成的测量路径; 其中各个部分以这样的方式彼此间隔开,使得其中一个部分中的温度和/或电压变化对另一部分或其它部分没有影响。 控制/评估单元根据特定的安全关键应用部分动态地重新配置测量路径中的功能模块,从而现场设备满足所需的安全标准。
    • 5. 发明授权
    • Field device for determining or monitoring a physical or chemical variable
    • 用于确定或监测物理或化学变量的现场设备
    • US08612920B2
    • 2013-12-17
    • US12805870
    • 2010-08-23
    • Romuald GirardeyMichael Hübner
    • Romuald GirardeyMichael Hübner
    • G06F11/22G06F17/50
    • G05B19/0428G05B9/03G05B2219/21109G05B2219/21156G05B2219/24182G05B2219/25428
    • A field device, comprising a sensor, and a control/evaluation unit. The control/evaluation unit is implemented on an application-specific integrated circuit—an ASIC—which, in at least a first section and in a second section, is embodied as a dynamically reconfigurable logic chip. In each of the two sections, in each case, a measuring path composed of a plurality of function modules can be configured; wherein the individual sections are spaced apart from one another in such a manner, that a temperature and/or a voltage change in one of the sections has no influence on the other section or the other sections. The control/evaluation unit partially dynamically reconfigures the function modules in the measuring paths as a function of the particular defined safety-critical application, so that the field device fulfills the required safety standard.
    • 包括传感器和控制/评估单元的现场设备。 控制/评估单元在专用集成电路(ASIC)上实现,ASIC至少在第一部分和第二部分被实现为动态可重配置的逻辑芯片。 在这两个部分中的每一个中,在每种情况下,可以配置由多个功能模块组成的测量路径; 其中各个部分以这样的方式彼此间隔开,使得其中一个部分中的温度和/或电压变化对另一部分或其它部分没有影响。 控制/评估单元根据特定的安全关键应用部分动态地重新配置测量路径中的功能模块,从而现场设备满足所需的安全标准。
    • 7. 发明授权
    • Circuit for the clocking of an FPGA
    • FPGA的时钟电路
    • US08797081B2
    • 2014-08-05
    • US13696945
    • 2011-04-14
    • Marc SchlachterRomuald Girardey
    • Marc SchlachterRomuald Girardey
    • H03K3/00
    • H03K19/177H03L7/099H03L7/16
    • The circuit for the clocking of an FPGA comprises an FLL-circuit; a reference clock of a first frequency, or a reference clock input for the reception of a signal of a reference clock of a first frequency; and a digitally controlled oscillator, which outputs a clocking signal for the FPGA, wherein the FLL-circuit is designed in order to register a first number of clocking signals from the digitally controlled oscillator during a second number of periods of the reference clock, the first number is larger than the second number, and, in order to give out a feedback signal to control the ratio between the first number and the second number, as the feedback signal acts on the frequency of the digitally controlled oscillator.
    • 用于FPGA的时钟的电路包括一个FLL电路; 第一频率的参考时钟或用于接收第一频率的参考时钟的信号的参考时钟输入; 以及数字控制振荡器,其输出用于FPGA的时钟信号,其中FLL电路被设计为在参考时钟的第二数量周期期间从数字控制的振荡器注册第一数量的定时信号,第一 数量大于第二数量,为了给出反馈信号以控制第一数量和第二数量之间的比率,因为反馈信号作用在数字控制振荡器的频率上。
    • 8. 发明申请
    • Field device for determining or monitoring a physical or chemical, process variable
    • 用于确定或监测物理或化学过程变量的现场设备
    • US20120004860A1
    • 2012-01-05
    • US13174840
    • 2011-07-01
    • Romuald Girardey
    • Romuald Girardey
    • G06F19/00
    • G05B9/03G05B2219/25428
    • A field device for determining or monitoring a physical or chemical, process variable, comprising: a sensor, which works according to a defined measuring principle; and a control/evaluation unit. The control/evaluation unit is realized on a partially dynamically reconfigurable FPGA component, which is constructed from a plurality of FPGA blocks units. Each FPGA block unit comprises a plurality of logic blocks. Global resources or global function blocks are associated with each FPGA block unit or groups of FPGA block units. At least a first section and a second section are provided on the FPGA-component. The sections comprise FPGA block units and corresponding global resources global function blocks. In each section a digital measuring path comprising a plurality of software based and/or hardware based, function modules, is partially dynamically reconfigurable.
    • 一种用于确定或监测物理或化学过程变量的现场设备,包括:根据定义的测量原理工作的传感器; 和控制/评估单元。 控制/评估单元由部分动态可重构的FPGA组件实现,其由多个FPGA块单元构成。 每个FPGA块单元包括多个逻辑块。 全局资源或全局功能块与每个FPGA块单元或FPGA块单元组相关联。 FPGA组件上至少提供第一部分和第二部分。 这些部分包括FPGA块单元和相应的全局资源全局功能块。 在每个部分中,包括多个基于软件和/或基于硬件的功能模块的数字测量路径是部分动态可重构的。