EP2256875B1 - Dispositif de raccordement d'alimentation en courant pour un appareil électrique paramétrable - Google Patents

Dispositif de raccordement d'alimentation en courant pour un appareil électrique paramétrable Download PDF

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Publication number
EP2256875B1
EP2256875B1 EP10161568.0A EP10161568A EP2256875B1 EP 2256875 B1 EP2256875 B1 EP 2256875B1 EP 10161568 A EP10161568 A EP 10161568A EP 2256875 B1 EP2256875 B1 EP 2256875B1
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EP
European Patent Office
Prior art keywords
power supply
combination
data
electrical
accordance
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.)
Not-in-force
Application number
EP10161568.0A
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German (de)
English (en)
Other versions
EP2256875A3 (fr
EP2256875A2 (fr
Inventor
Claus Höhn
Dieter Reuker
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.)
Balluff GmbH
Original Assignee
Balluff GmbH
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Filing date
Publication date
Application filed by Balluff GmbH filed Critical Balluff GmbH
Publication of EP2256875A2 publication Critical patent/EP2256875A2/fr
Publication of EP2256875A3 publication Critical patent/EP2256875A3/fr
Application granted granted Critical
Publication of EP2256875B1 publication Critical patent/EP2256875B1/fr
Not-in-force legal-status Critical Current
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component

Definitions

  • the invention relates to a power supply connection device for a parameterizable electrical device.
  • the invention has for its object to provide a power supply connection device with extended capabilities.
  • the power supply connection device for a parameterizable electrical device comprises a first connection for a power source, a second connection to the electrical device and a storage device for parameter data, which can be read by the electrical device ,
  • a power supply connection device provides the power supply of the corresponding electrical device. In particular, it ensures an electrical connection to a power grid.
  • a power grid connection device establishes a location-dependent electrical connection due to the wiring.
  • a selected power supply connection device thus characterizes a certain location and thus also the associated electrical device.
  • the power supply connection device is designed so intelligently that the electrical device can be supplied with parameter data via the power supply connection device.
  • This can be an electrical device in a certain place, for example a plant, with the necessary parameter data for its operation.
  • the parameterization of electrical devices for example, in a system is performed only once during commissioning.
  • the corresponding parameter data is normally stored in a non-volatile memory of the electrical device.
  • Such an arrangement is in FR-A-2 913 149 beschriben. If a corresponding device in a system fails during operation, a replacement device must be installed as soon as possible in order to minimize downtimes. However, such a replacement device is usually not correctly parameterized.
  • the correct parameters for the corresponding electrical device in the associated power supply connection device are included, which does not need to be replaced when replacing the device.
  • a replacement device can thereby be parameterized in a rapid manner by reading the data from the memory device of the power supply connection device.
  • the memory device comprises at least one nonvolatile memory, such as an EEPROM. This allows parameter data to be stored permanently.
  • the first connection is comprised by a plug or formed by a plug.
  • the power supply connection device can be easily connected to a power grid.
  • the second connection is encompassed by a plug or is formed by a plug.
  • the power supply connection device can be easily connected to an electrical Connect device and even if, for example, a replacement device must be provided to easily solve this electrical device.
  • the storage device is arranged on (in particular in) the plug and in particular is integrated in the latter.
  • the plug provides the necessary space for the integration of the storage device. Furthermore, data from the memory device can then be read into the associated electrical device in a simple manner. Furthermore, it is also possible to easily describe the storage device of the power supply connection device.
  • the storage device is seated on a carrier (which is arranged in particular in an interior of a plug) and is encapsulated. As a result, the storage device is arranged protected.
  • the memory device is associated with an interface for reading data and / or writing data.
  • the storage device Via the interface, the storage device can be provided with specific parameter data or via the interface, parameter data can be supplied to an electrical device for its parameterization.
  • a third connection is provided for reading out and / or writing to the memory device.
  • the third connection is used to exchange data with the electrical device. This can be unidirectional. In principle, it is also possible to describe the memory device via the third connection, for example via a separate programming device or also via the electrical device.
  • the third port is integrated with the second port.
  • the number of components for the power supply connection device can be kept low. It can be with appropriate design of the electrical device when the power supply connection device is connected to achieve both an electrical power supply and a benz
  • the power supply connection device is designed as a power supply cable with at least one connector. This results in low production costs a simple way to parameterize electrical equipment, for example, in a system.
  • the display device which is associated with the storage device of the power supply connection device.
  • the display device which is, for example, an optical display device, can indicate whether or not a memory device is or will be described. Thereby, an operator can easily recognize whether a power supply terminal device contains parameter data or not.
  • the power supply connection device is provided for connection to a power grid such as a low-voltage power grid.
  • a power grid such as a low-voltage power grid.
  • a combination of a power supply connection device with a programming device for writing to the memory device is provided.
  • data can be read into the memory device of the power supply connection device via a corresponding connection, which provides a mechanical / electrical contact. It is also possible wireless data transmission. For example, it is also possible for data to be modulated via the programming device of the power supply in order to describe the memory device. According to the invention, a combination of electrical device and power supply connection device is further provided.
  • a correspondingly designed electrical device can also be used to achieve a data description with parameter data of the power supply connection device stored in the electrical device.
  • the power supply connection device is detachably connectable to the electrical device. In this way, if a corresponding device fails, a replacement device can be provided in a simple manner, which can be parameterized "locally" via the power supply connection device.
  • the electrical device has a memory device for parameter data in order to be able to store, for example, corresponding operating parameters.
  • the electrical device has a control device which controls the reading and / or storage of parameter data. It is then possible, for example, to check on initialization of the electrical device whether or not the memory device contains parameter data. If no parameter data is contained, then, for example, a reading of parameter data from the storage device of the power supply connection device can be initiated. In principle, it is also possible via the control device to use parameter data of an electrical device in order to write it into the memory device of a connected power supply connection device.
  • the control device expediently reads data from the storage device of the power supply connection device and / or a storage device of the electrical device during the initialization of the electrical device out. This ensures that the electrical device receives the correct data during commissioning.
  • control device data from the storage device of the electrical device to the storage device of the power supply connection device can be transferred. This makes it possible, for example, in a simple manner that, without an external programming device must be provided to store the parameter data of an electrical device in the associated power supply connection device. If then the electrical device must be replaced, the new device receives its parameter data via the power supply connection device.
  • the electrical device comprises an interface for the data transmission from the power supply connection device in order to be able to read data from there.
  • the interface for data transmission is formed by the power supply connection device.
  • This allows a "virgin" power supply connection device with parameter data to be directly supplied locally to the application, i. H. the corresponding electrical device can provide its parameter data to the power supply connection device, so that they are not stored there in a volatile manner so as to locally again maintain the corresponding parameter data outside the electrical device.
  • An embodiment of a power supply connection device which in FIG. 1 shown and designated therein by 10, comprises a first terminal 12.
  • This first terminal 12 is formed for example as or on a plug.
  • the power supply connection device 10 can be connected, for example, to a power network such as a low-voltage industrial network (+24 VDC).
  • the power supply connector 10 further includes a second terminal 14.
  • This second connection 14 is designed in particular as or on a plug 16. Via the second connection 14, the power supply connection device 10 is connected to a (parameterizable) electrical device 17 (FIG. FIG. 3 ) connectable.
  • the first terminal 12 and the second terminal 14 are connected by a cable 18.
  • cable cores 20a, 20b are led from the first terminal 12 to the second terminal 14.
  • the second terminal 14 has respective power supply terminals 22a, 22b electrically connected to the cable cores 20a, 20b.
  • the power supply connection device 10 forms a supply cable for the electrical device 17, via which the electrical device 17 is supplied with electrical energy.
  • a carrier 24 is arranged, for example in the form of a circuit board. On the carrier 24 sits a memory device 26, which holds (at least) a non-volatile memory for data.
  • the memory is designed for example as EEPROM.
  • the memory device 26 is associated with a display device 28.
  • the display device 28 is, for example, an optical display device, which in particular comprises one or more light-emitting diodes. By the display device 28 can be displayed, for example, whether the at least one memory of the memory device 26, for example, contains data or not.
  • the power supply connection device 10 has, on the plug 16, a third connection 30, via which data can be read out of the storage device 26 and made available to the electrical device 17.
  • the third connection 30 can in principle also be used to read data into the memory device 26.
  • the third port 30 is integrated with the second port 14. Accordingly, the second connection 14 then has connection points 32a, 32b, 32c, which in particular serve for reading out data from the memory device 26 and coupling into the electrical device 17 when connected to the electrical device 17.
  • the power supply connection device 10 has an interface 34 on the plug 16, which serve to communicate the memory device 26 with the electrical device 17.
  • the interface 34 is, for example, an I2C interface, via which reading of the memory device 26 / writing to the memory device 26 is possible.
  • the memory device 26 is arranged in an interior 36 (cavity) of the plug 16. It is encapsulated in a suitable manner. For example, she is overmoulded.
  • a programming device 38 For programming the power supply connection device 10, ie for writing data into the memory device 26, a programming device 38 (FIG. FIG. 2 ).
  • this programming device 38 comprises a connection 40 which can be connected directly to the third connection 30 via corresponding mechanical and electrical contact. Via a data field 42 or the like, corresponding data can then be written to the memory device 26, which are not stored there in a volatile manner.
  • the programming device 38 writes data wirelessly into the memory device 26 when the interface 34 is designed accordingly. Furthermore, it is possible, if the interface 34 is designed accordingly, to write data into the memory device 26, which are modulated onto the cable cores 20a, 20b for the purpose of power supply.
  • the electrical device 17 can be parameterized. For example, 17 different parameters must be set to operate the device. These parameters can be stored locally in the electrical device 17.
  • the parameters for the electrical device 17 may also include parameters that are characteristic of the location of the electrical device 17 in a network.
  • Corresponding parameters could include, for example, initialization parameters that ensure that the device transitions to the correct operating state after a restart.
  • the parameters of such an electrical device 17 are anyway necessary Power supply connection device 10 is provided, via which the electrical device is also supplied with electrical energy.
  • the electrical device 17 includes a control device 44, which is signal-effectively connected to the third terminal 30 of the power supply connection device 10.
  • the reading in of data from the memory device 26 can be controlled via this control device.
  • the control device 44 controls that data is read in from the storage device 26 of the power supply connection device 10 during the initialization of the electrical device 17.
  • the electrical device 17 has, in particular, a memory device 46 in which corresponding parameter data are stored.
  • the memory device 46 is coupled to the control device 44, so that parameter data read from the memory device 26 can be stored in the memory device 46.
  • control device 44 is used to write data into the memory device 26 of the power supply connection device 10.
  • control device causes data to be read from the memory device 46 and written to the memory device 26.
  • a "new" power connector 10 may receive parameter data directly from an electrical device 17 with nonvolatile memory 46 and later, when the electrical device 17 is replaced, provide that parameter data to a new electrical device.
  • the electrical device 17 accordingly has an interface 48, which is adapted to the interface 34, in order to be able to receive data from the power supply connection device 10 and, if appropriate, to be able to send data to the memory device 26.
  • a loading of the memory device 26 with data or a loaded memory device 26 is indicated in particular by the display device 28.
  • a user or operator of a system can recognize whether a power supply connection device 10 is "switched on” with regard to data storage.
  • control device 44 checks, for example, whether parameter data is stored in the memory device 46. If this is not the case, then it ensures that data is read in from the storage device 26 of the power supply connection device 10.
  • One possible application for an electrical device 17 is an evaluation unit for an identification system.
  • the inventive solution provides an intelligent power supply connection device 10, for example in the form of a supply cable, which can transmit parameters to an electrical device 17. If then, for example, the electrical device fails in particular in a system during operation, then a replacement device can be installed in a timely manner, which does not have to be externally parametrized consuming, but can take over the parameters of the remaining power supply connection device 10. As a result, the downtime and thus downtime costs can be kept low.
  • the power supply connection device 10 allows fast parameterization of replacement devices.
  • the control device 44 ensures that parameters are read from the memory device 26 of the power supply connection device 10 and written into the memory device 46. The corresponding electrical device 17 can then be put into the correct operating state.
  • the control device 44 can, for example, also control a control marker, which signals whether, in particular during the first startup, parameters from the memory device 46 are to be taken over and transferred to the memory device 26.
  • the memory device 26 with data via a programming device 38, which is independent of an electrical device 17.

Claims (14)

  1. Combinaison d'un appareil électrique (17) paramétrable et d'un dispositif de raccordement d'alimentation en courant (10), dans laquelle le dispositif de raccordement d'alimentation en courant comprend :
    - un premier raccordement (12) pour une source de courant ;
    - un deuxième raccordement (14) avec l'appareil électrique (17), et
    - un dispositif d'enregistrement (26) pour des données de paramètres qui peuvent être lues par l'appareil électrique (17),
    et dans laquelle l'appareil électrique (17) comprend :
    - un dispositif de commande (44) qui commande la lecture et/ou l'enregistrement de données de paramètres.
  2. Combinaison selon la revendication 1, caractérisée en ce que le dispositif d'enregistrement (26) comprend au moins une mémoire non volatile.
  3. Combinaison selon la revendication 1 ou 2, caractérisée en ce que le premier raccordement (12) est compris dans une fiche ou formé par une fiche, et/ou en ce que le deuxième raccordement (14) est compris dans une fiche (16) ou formé par une fiche, et en particulier en ce que le dispositif d'enregistrement (26) est disposé au niveau de la fiche (16).
  4. Combinaison selon l'une des revendications précédentes, caractérisée en ce que le dispositif d'enregistrement (26) est placé sur un support (24) et enrobé par injection.
  5. Combinaison selon l'une des revendications précédentes, caractérisée en ce qu'une interface (34) pour la lecture de données et/ou l'écriture de données est affectée au dispositif d'enregistrement (26).
  6. Combinaison selon l'une des revendications précédentes, caractérisée par un troisième raccordement (30) pour la lecture et/ou l'écriture du dispositif d'enregistrement (26), et en particulier en ce que le troisième raccordement (30) est intégré dans le deuxième raccordement (14).
  7. Combinaison selon l'une des revendications précédentes, caractérisée par une formation sous forme de câble d'alimentation en courant avec au moins une fiche de raccordement (16).
  8. Combinaison selon l'une des revendications précédentes, caractérisée par un dispositif d'affichage (28) qui est affecté au dispositif d'enregistrement (26).
  9. Combinaison selon l'une des revendications précédentes, caractérisée en ce que le dispositif de raccordement d'alimentation en courant (10) est prévu pour être couplé à un réseau de courant, et en particulier en ce que le dispositif de raccordement d'alimentation en courant est prévu pour être couplé à un réseau de courant à basse tension.
  10. Combinaison selon l'une des revendications précédentes, avec un appareil de programmation (38) pour l'écriture du dispositif d'enregistrement (26).
  11. Combinaison selon l'une des revendications précédentes, caractérisée en ce que l'appareil électrique (17) comprend un dispositif d'enregistrement (46) pour des données de paramètres.
  12. Combinaison selon l'une des revendications précédentes, caractérisée en ce que le dispositif de commande (44), lors de l'initialisation de l'appareil électrique (17), lit des données du dispositif d'enregistrement (26) du dispositif de raccordement d'alimentation en courant (10) et/ou d'un dispositif d'enregistrement (46) de l'appareil électrique (17).
  13. Combinaison selon l'une des revendications précédentes, caractérisée en ce que, au moyen du dispositif de commande (44), des données du dispositif d'enregistrement (46) de l'appareil électrique (17) peuvent être transmises au dispositif d'enregistrement (26) du dispositif de raccordement d'alimentation en courant (10).
  14. Combinaison selon l'une des revendications précédentes, caractérisée en ce que l'appareil électrique (17) présente une interface (48) pour la transmission de données du dispositif de raccordement d'alimentation en courant (10), et en particulier en ce que l'interface (48) est formée pour la transmission de données vers le dispositif de raccordement d'alimentation en courant (10).
EP10161568.0A 2009-05-19 2010-04-30 Dispositif de raccordement d'alimentation en courant pour un appareil électrique paramétrable Not-in-force EP2256875B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202009007395U DE202009007395U1 (de) 2009-05-19 2009-05-19 Stromversorgungs-Anschlussvorrichtung für ein parametrierbares elektrisches Gerät

Publications (3)

Publication Number Publication Date
EP2256875A2 EP2256875A2 (fr) 2010-12-01
EP2256875A3 EP2256875A3 (fr) 2013-01-23
EP2256875B1 true EP2256875B1 (fr) 2015-11-25

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EP10161568.0A Not-in-force EP2256875B1 (fr) 2009-05-19 2010-04-30 Dispositif de raccordement d'alimentation en courant pour un appareil électrique paramétrable

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US (1) US8342883B2 (fr)
EP (1) EP2256875B1 (fr)
DE (1) DE202009007395U1 (fr)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19855431A1 (de) * 1998-11-30 2000-05-31 Bosch Gmbh Robert Steuergerät
TW538585B (en) * 2001-10-30 2003-06-21 Primax Electronics Ltd Power adapting device applied in portable electronic device
US6744150B2 (en) * 2001-12-03 2004-06-01 Neven V. Rendic Outlet strip controlled by PC using low voltage powertap
US20020149502A1 (en) * 2002-04-02 2002-10-17 Goss Milton E. Event counter apparatus
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US20050063116A1 (en) * 2003-09-24 2005-03-24 Dave Rotheroe Power cord with monitor circuit
JP3963470B2 (ja) * 2004-11-09 2007-08-22 株式会社東芝 携帯端末および当該端末の制御方法
US7341481B2 (en) * 2005-06-15 2008-03-11 Dgc Products, Inc. Power control circuit
TW200722950A (en) * 2005-12-14 2007-06-16 Golden Bridge Electech Inc Power supply and method for detecting and adjusting voltages and currents for supplying power requirement of electronic apparatus
FR2913149B1 (fr) * 2007-02-26 2011-03-11 Airbus France Systeme de connexion d'un equipement electronique embarque a bord d'un aeronef
EP2240936A1 (fr) * 2008-01-30 2010-10-20 Agere Systems, Inc. Méthode et appareil accroissant le rendement d'un circuit électronique
US8884189B2 (en) * 2009-01-16 2014-11-11 Illinois Tool Works Inc. Welding power to auxiliary power conversion system and method

Also Published As

Publication number Publication date
US20100297881A1 (en) 2010-11-25
US8342883B2 (en) 2013-01-01
EP2256875A3 (fr) 2013-01-23
DE202009007395U1 (de) 2009-08-20
EP2256875A2 (fr) 2010-12-01

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