EP1476725A2 - Eingabemodul fur physikalische grösse - Google Patents

Eingabemodul fur physikalische grösse

Info

Publication number
EP1476725A2
EP1476725A2 EP03717405A EP03717405A EP1476725A2 EP 1476725 A2 EP1476725 A2 EP 1476725A2 EP 03717405 A EP03717405 A EP 03717405A EP 03717405 A EP03717405 A EP 03717405A EP 1476725 A2 EP1476725 A2 EP 1476725A2
Authority
EP
European Patent Office
Prior art keywords
acquisition module
analog
module according
digital converter
input
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP03717405A
Other languages
English (en)
French (fr)
Inventor
Alain Pasty
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ERMME
Original Assignee
ERMME
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ERMME filed Critical ERMME
Publication of EP1476725A2 publication Critical patent/EP1476725A2/de
Withdrawn legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D21/00Measuring or testing not otherwise provided for
    • G01D21/02Measuring two or more variables by means not covered by a single other subclass

Definitions

  • the present invention relates to an acquisition module for measuring physical quantities, and relates in particular, but not liiuitatively, to an autonomous acquisition card.
  • an acquisition card includes a connector to be connected to a physical magnitude sensor such as for example the temperature.
  • the acquisition card receives analog data from the sensor, converts it into digital data in the direction of a microcomputer or any other means of calculation and processing.
  • an acquisition card has several acquisition channels.
  • Each acquisition channel comprises means for protection against overvoltage and means for filtering and amplifying the analog signal.
  • the acquisition channels inject the analog signals into a single multiplexer intended to connect a single acquisition channel to an analog to digital converter at all times.
  • the prior art acquisition cards have inputs which are predetermined for a given physical quantity. For example, an acquisition card designed to receive an input voltage cannot measure a current or a resistance without using specific adapters. These adapters are restrictive because they require specific cabling and make measurement difficult.
  • Analog-to-digital converters of the Delta-Sigma type are known, for example, produced by the company Analog Devices®.
  • the technical specifications of these converters mention a certain number of implementation modes, in which there are for example two modes for measuring the temperature, by means of a platinum probe PT100 (temperature sensor) and by means of a thermocouple, and one mode for measure the pressure using a pressure transducer. It is clearly noted that each mode of implementation requires cabling and a specific configuration.
  • the present invention aims to remedy the aforementioned drawbacks by proposing an acquisition module capable of measuring a large number of physical quantities, that is to say making the inputs of such an acquisition card almost universal, and mainly for the values Voltage, Current and Resistance.
  • Another object of the invention is to limit the use of an adapter upstream of the inputs of an acquisition card, in particular the use of external measurement converters.
  • an acquisition module for measuring physical quantities, this module comprising at least one analog-digital converter and at least one input connector capable of receiving a sensor.
  • this acquisition module further comprises a power source and a reference impedance arranged in series between the power source and a terminal of the input connector.
  • the analog-digital converter has a reference input supplied by a voltage taken from the terminals of the reference impedance and a conversion input supplied by a voltage taken via the input connector at the terminals of the sensor.
  • this acquisition module includes means for delivering an image of the physical quantity measured by the sensor.
  • the present invention is remarkable in that it advantageously uses an analog-digital converter requiring an external reference.
  • This converter can be of the differential input type and by way of nonlimiting example, it is possible to cite Delta-sigma type converters, successive approximation converters, flash converters or even ramp converters.
  • the analog-digital converter can also be of the type with common mode inputs; and it may include a first differential amplifier disposed between the reference input and the reference impedance and a second differential amplifier disposed between the conversion input and the sensor. In this case it is necessary to define a mass common to these two amplifiers.
  • the power source is a voltage and the impedance a resistance.
  • the characteristics of the voltage source and the reference resistance being known, it is then possible to deduce the value of the physical quantity measured from the digital value generated by the analog-digital converter.
  • the acquisition module can include a memory for storing all the parameters and variables.
  • the acquisition card according to the invention can measure a voltage or a resistance without modifying the architecture of the card and without interposing any adapter.
  • each connector comprises four pins so that several types of mounting can be envisaged such as the measurement on four wires in using the four pins or even measuring voltage or current using only two pins.
  • the acquisition module also includes a measurement resistor arranged across the terminals of the input connector.
  • the measurement resistance is crossed by the current to be measured and by the current from the voltage source.
  • Current measurement simply requires the addition of a measurement resistor.
  • This additional resistor can be a resistor pre-arranged on the card, taking it into account by switching the input connector to this resistor automatically by means of an analog switch, for example.
  • the acquisition module consists of a card which can be plugged into a processing unit such as a microcomputer. Therefore, it can be equipped with a PCI (Peripheral Component Interconnect) connector.
  • PCI Peripheral Component Interconnect
  • the power source can be user supplied or from an independent source.
  • This independent source can for example be the microcomputer to which the acquisition module is connected by means of a USB type link (Universal Serial Bus) for example.
  • the power source may be internal to the analog-to-digital converter. It can also be programmable.
  • the acquisition module can comprise processing means able to process the digital data coming from the analog-digital converter so as to determine a value of the physical quantity measured.
  • This characteristic would be advantageous for autonomous operation in the case of an acquisition module comprising an integrated intelligence such as for example a microcontroller associated with dedicated applications.
  • overvoltage protection means can be arranged between the analog-digital converter on the one hand and the reference resistor and the connector on the other hand.
  • the acquisition module can comprise a plurality of acquisition channels.
  • FIG. 1 is a block diagram illustrating an analog input channel of a physical quantities acquisition card according to the invention
  • - Figure 2 is a simplified electronic diagram of an acquisition card according to the invention for the measurement of a platinum probe according to the invention
  • Figure 3 is a simplified electronic diagram illustrating the basic principle for current measurement according to the invention.
  • FIG. 4 is a simplified electronic diagram illustrating the basic principle for the voltage measurement according to the invention.
  • Figure 5 shows the simplified electronic diagram of Figure 1 incorporating an operational amplifier
  • FIG. 6 is an electronic diagram illustrating an acquisition module according to the invention provided with several acquisition channels on the measurement branch.
  • This acquisition card comprises at least one analog input channel represented by a connector provided with two terminals 3 and 4.
  • the measurement object is intended to be connected between terminals 3 and 4.
  • the acquisition comprises an analog digital converter 2 of delta-sygma type for which the conversion input is supplied by the voltage across the terminals of the connector (3, 4).
  • the reference input of the analog-to-digital converter is supplied by a voltage V R f taken from the terminals of a resistor R.
  • the resistor R is disposed between a voltage source ST and terminal 3 of the input connector, the terminal 4 of the input connector being directly connected to ground 5.
  • the digital value at the output of the analog-to-digital converter 2 is directed to a processing unit 6 which can be a microcontroller placed on the acquisition card or then the microprocessor d '' a microcomputer in which the acquisition card is integrated.
  • Data storage means 7, arranged on the acquisition card keeps in memory the characteristic values of the voltage source ST and of the resistance R so as to allow the processing unit to determine the value of the physical quantity measured. For example, when there is a temperature sensor at terminals 3 and 4, the processing unit makes it possible to determine the temperature of this sensor from the digital value of the voltage measured at terminals 3 and 4.
  • FIG. 2 shows an embodiment of the acquisition card according to the invention for the measurement of a platinum probe of the PT100 or PTIOOO type, or strain gauge for example. Compared to the diagram in Figure 1, some additional elements are integrated. There are means of protection and testing
  • a protective resistor 10 is arranged between the voltage source ST and the reference resistor R.
  • the input connector has four pins (or terminals) 3a, 3b, 4a, 4b allowing measurements to be made according to the four-wire method with maximum precision. Having these four pins allows many types of mounting.
  • the platinum probe 9 to be measured is directly connected to the input connector by means of four wires.
  • FIG. 3 illustrates another embodiment of the acquisition card 1 according to the invention for measuring the current.
  • a new resistor 11 is added, the value of which is identical to the reference resistance value R.
  • This resistor 11 is arranged at the terminals of the input connector. The current to be measured is then applied across this resistor 11. The analog voltage which is then converted is the voltage across this resistor 11.
  • the assembly of FIG. 3 can also be used for the measurement of any type of thermocouples.
  • the cold junction temperature compensation can then be carried out by one of the available channels on the card, software that compensates and linearizes the measurements in the processing unit.
  • FIG. 4 shows another embodiment of the acquisition card according to the invention for measuring the voltage.
  • the voltage to be measured is directly applied across the input connector.
  • the supply voltage can be a reference voltage source internal to the analog converter.
  • digital it is a stabilized voltage which optimizes the measurements.
  • the invention is particularly remarkable in that the successive measurements are obtained in a precise, reliable and faithful manner. To do this, we protect us against possible drifts due to the power source or the measurement current. Indeed, with regard to the measurement of the voltage or the platinum probe for example
  • the current which flows through the measuring branch (I mes ) is the same as that (Iré f ) which crosses the reference resistance.
  • r éf R * Iref - voltage present across the reference resistance and measured by the reference input of the Analog-to-digital converter.
  • the acquisition card according to the invention allows the measurement of a plurality of physical quantities without for this profoundly modifying the architecture. Only for current measurement, a measurement resistance is to be placed across the input connector.
  • FIG. 5 illustrates an implementation mode in which the analog-digital converter is no longer of the type with differential inputs.
  • FIG. 6 illustrates a variant of the invention comprising several acquisition channels, only two channels being shown.
  • a reference voltage V r ef is kept and the analog-digital converter accepts two measurement voltages Vi n ⁇ ⁇ and Vi n2 ' .

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Testing Or Calibration Of Command Recording Devices (AREA)
  • Measurement Of Resistance Or Impedance (AREA)
  • Measurement Of Current Or Voltage (AREA)
  • Measuring Temperature Or Quantity Of Heat (AREA)
  • Analogue/Digital Conversion (AREA)
EP03717405A 2002-02-18 2003-02-18 Eingabemodul fur physikalische grösse Withdrawn EP1476725A2 (de)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
FR0202043 2002-02-18
FR0202043A FR2836248B1 (fr) 2002-02-18 2002-02-18 Module d'acquisition a entree universelle pour la mesure de grandeurs physiques
PCT/FR2003/000516 WO2003071237A2 (fr) 2002-02-18 2003-02-18 Module d'acquisition a entree universelle pour la mesure de grandeurs physiques

Publications (1)

Publication Number Publication Date
EP1476725A2 true EP1476725A2 (de) 2004-11-17

Family

ID=27636283

Family Applications (1)

Application Number Title Priority Date Filing Date
EP03717405A Withdrawn EP1476725A2 (de) 2002-02-18 2003-02-18 Eingabemodul fur physikalische grösse

Country Status (7)

Country Link
US (1) US7026828B2 (de)
EP (1) EP1476725A2 (de)
JP (1) JP2005517949A (de)
AU (1) AU2003222573A1 (de)
CA (1) CA2476009A1 (de)
FR (1) FR2836248B1 (de)
WO (1) WO2003071237A2 (de)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102004023645B4 (de) * 2004-05-08 2006-09-07 Carl Mahr Holding Gmbh Computer kompatibler Längenmesstaster und Messtastersystem
KR101541443B1 (ko) * 2007-04-04 2015-08-04 삼성디스플레이 주식회사 액정 표시 장치
JP5494965B2 (ja) * 2010-08-12 2014-05-21 横河電機株式会社 信号処理装置
FR2993981B1 (fr) * 2012-07-24 2015-04-03 Commissariat Energie Atomique Calorimetre auto-etalonnable par substitution electrique
CN104913858A (zh) * 2015-05-29 2015-09-16 中国科学院声学研究所 一种数据采集装置,探测装置以及系统
NL2017179B1 (en) * 2016-07-15 2017-07-17 Intermodal Telematics B V Temperature measuring circuit obviating calibration
US10317295B2 (en) * 2016-09-30 2019-06-11 Rosemount Inc. Heat flux sensor

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US3895376A (en) * 1971-10-26 1975-07-15 Iwatsu Electric Co Ltd Dual slope integrating analog to digital converter
US3859654A (en) * 1972-10-11 1975-01-07 Ibm Analog to digital converter for electrical signals
US4016557A (en) * 1975-05-08 1977-04-05 Westinghouse Electric Corporation Automatic gain controlled amplifier apparatus
GB2135842B (en) * 1983-01-22 1986-07-16 Measurement Systems Limited Electronic measurement systems
FR2625822B1 (fr) * 1988-01-13 1994-04-15 Ciapem Dispositif d'introduction de donnees dans un microprocesseur notamment pour la commande d'un appareil electromenager
US5152482A (en) * 1990-06-29 1992-10-06 Standard Space Platforms Corp. Modular mother satellite bus for subsidiary payloads
US5469051A (en) * 1994-04-29 1995-11-21 International Business Machines Corp. Electrical defect detector for circuit lines
US5949247A (en) * 1996-05-23 1999-09-07 Fremont/Dynamics Coporation Of America Method and apparatus for automatically testing and evaluating electric generator sets
US5877718A (en) * 1997-03-24 1999-03-02 International Business Machines Corporation Differential analog-to-digital converter with low power consumption
JP4190082B2 (ja) * 1999-04-15 2008-12-03 パナソニック株式会社 信号補正装置および信号補正方法
US6774643B2 (en) * 2001-03-21 2004-08-10 Signature Control Systems Non-bridged single electrode impedance measurement system for determining a condition of a dielectric according to impedance related changes over a range of frequencies
JP3902778B2 (ja) * 2004-01-07 2007-04-11 株式会社半導体理工学研究センター アナログディジタル変換回路

Non-Patent Citations (1)

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See references of WO03071237A2 *

Also Published As

Publication number Publication date
JP2005517949A (ja) 2005-06-16
US20050083069A1 (en) 2005-04-21
AU2003222573A1 (en) 2003-09-09
FR2836248A1 (fr) 2003-08-22
WO2003071237A3 (fr) 2004-03-25
CA2476009A1 (fr) 2003-08-28
WO2003071237A2 (fr) 2003-08-28
US7026828B2 (en) 2006-04-11
FR2836248B1 (fr) 2005-01-28

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