EP2109086B1 - Autonomer Befehlsgeber für Heimanlage - Google Patents

Autonomer Befehlsgeber für Heimanlage Download PDF

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Publication number
EP2109086B1
EP2109086B1 EP09157451A EP09157451A EP2109086B1 EP 2109086 B1 EP2109086 B1 EP 2109086B1 EP 09157451 A EP09157451 A EP 09157451A EP 09157451 A EP09157451 A EP 09157451A EP 2109086 B1 EP2109086 B1 EP 2109086B1
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EP
European Patent Office
Prior art keywords
key
command
keys
group
movement
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Active
Application number
EP09157451A
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English (en)
French (fr)
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EP2109086A1 (de
Inventor
Bernard Grehant
Stéphane Lapierre
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.)
Somfy SA
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Somfy SA
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 Somfy SA filed Critical Somfy SA
Publication of EP2109086A1 publication Critical patent/EP2109086A1/de
Application granted granted Critical
Publication of EP2109086B1 publication Critical patent/EP2109086B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/10Power supply of remote control devices
    • G08C2201/11Energy harvesting
    • G08C2201/112Mechanical energy, e.g. vibration, piezoelectric
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H2221/00Actuators
    • H01H2221/008Actuators other then push button
    • H01H2221/016Lever; Rocker
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H2231/00Applications
    • H01H2231/032Remote control
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H2239/00Miscellaneous
    • H01H2239/076Key stroke generating power

Definitions

  • the invention relates to the field of the remote control of the actuators for moving a moving element in a building and more particularly the case where the control commands are issued from a radiofrequency transmitter self-powered by the energy supplied. by the user when he activates a command key.
  • Such a self-powered transmitter is described by the patent EP 1 473 748 , with in particular six control keys.
  • Each control key is mechanically connected to a rocker element, common to several control keys, and to a switching contact.
  • the rocking element is itself connected to a mechanical-electrical energy generator.
  • a number of switching contacts less than the number of keys.
  • the keys functionally by sets of three keys relating to the same actuator: a movement control key in a first direction, a stop control key , a control key to move in a second direction.
  • the object of the invention is to provide a transmitter of orders overcoming these drawbacks and improving the order issuers known from the prior art.
  • the invention proposes a transmitter of orders optimizing the material and energy resources.
  • the invention also relates to methods of configuring and operating such a self-powered transmitter. It also relates to a home automation installation comprising at least one such issuer of orders.
  • the command transmitter according to the invention is defined by claim 1.
  • the home automation system comprises at least one home automation device controlled in motion by a command transmitter defined above.
  • the figure 1 represents a home automation system 100 comprising an autonomous command transmitter 1 controlling a home automation device 110 comprising for example an actuator 4 for operating a mobile element 7.
  • the command transmitter is self-powered, that is, say that the actions of a user on it provide the energy necessary for its operation.
  • This command transmitter comprises a control keyboard 2 and a signal transmitter 3, for example radiofrequency signals, here represented by an antenna symbol.
  • the command transmitter communicates by means of signals, for example radio frequency signals with the actuator 4, comprising a signal receiver 5, for example of radio frequency signals, represented by an antenna symbol, and an engine represented by its mechanical output 6 which is also the output member of the actuator.
  • the signal receiver 5 receives the commands transmitted by the signal transmitter and transforms them if necessary into motor control commands.
  • the output of the actuator is connected to the movable element 7 which can move in a first direction DIR1 or in a second direction DIR2 according to the command applied to the engine.
  • the movable element 7 is installed in a building or its surroundings and moves in a space 8 of the building, for example in front of a bay.
  • the movable element is for example a roller shutter, a terrace awning, a garage door or a gate.
  • a particular position 9 is defined on the path of the movable member. This is for example an intermediate position predefined by the user or the installer, for example a position of "perforated blades" for a roller shutter, a "pedestrian opening” position for a gate.
  • control keyboard comprises at least three control keys. According to the key pressed by the user, the radiofrequency transmitter emits: a movement command in the first direction, a movement command in the second direction, a stop command.
  • the actuator is provided with unrepresented electromechanical or electronic devices which make it possible to stop the motor automatically when the movable element reaches the end of its trajectory in the space 8, for example in high abutment and in low abutment if it is a rolling shutter.
  • the figure 2 represents in side view, and partially, a first embodiment of the self-powered command transmitter 1 according to the invention, while the figure 3 represents it in top view.
  • This command transmitter has a structure very close to the device described in the patent EP 1 473 748 . It comprises an electronic module 10, fixed on a base 20 for example to be fixed on a vertical wall as is the case with a wall switch, a front plate (or cover) not shown, and a set of control buttons, here six in number, which are visible a first key 21 and a second key 22. Alternatively, the order transmitter can be intended to be integrated into a nomadic remote control.
  • the electronic module comprises a first switching contact 11 arranged under the first key and a second switching contact. 12 placed under the second key. It also comprises a first rocking element 13 and a second rocking element 14.
  • each of the two rocker elements is mechanically connected to the same energy generating means 18a.
  • the command transmitter comprises six control buttons referenced 21 to 26.
  • a third control key 23 is disposed in extension of the first key 21, a fourth control key 24 is arranged in extension of the second control key 22, a fifth control key 25 is arranged in extension of the third control key and a sixth control key 26 is arranged in extension of the fourth control key.
  • a hinge means 27 of the keys disposed on the upper part 17 of the electronic module.
  • the first key is fixed by an upper first end 21a to the hinge means. It is the same for the second key in a second upper end 22a.
  • a first lower end 21b of the first key is in contact with the first rocker element, and likewise a second lower end 22b of the second key is in contact with the second rocker element.
  • the first key has, in its lower part, a first finger 21c, disposed in abutment on the first switching contact 11.
  • the second key has, in its lower part, a second finger 22c, disposed in abutment on the second contact of switching 12.
  • the first key 21 is shown at rest, while the second key 22 is shown in the active state, depressed under the action of a force F exerted by the finger of the user.
  • the second key has pivoted around the hinge means which has the effect of pivoting the second rocking element 14, and thus generating electrical energy, and driving the second switching contact 12, and therefore to make it active: driver if it is a normally open or non-conducting contact if it is a normally closed contact.
  • the self-powered radiofrequency transmitter differs mainly from the device described in the patent EP 1 473 748 in that the structure of the figure 2 does not repeat identically for the six control keys. Indeed, no switching contact is arranged under the third control key 23 and the fourth control key 24. On the other hand, a third switch contact 15 is arranged under the fifth control key 25 and a fourth switch contact. switching 16 is arranged under the sixth control key 26.
  • control keys which are specifically associated with an operating sensor means such as a switching contact form a first group, here constituted by the first, second, fifth and sixth control keys 21, 22, 25, 26.
  • the third and fourth control keys are nevertheless identical to the other control keys and their lower end is in contact with the first rocking element 13 and with the second rocking element 14. These two keys therefore make it possible to generate energy electrical, but without the possibility of identifying which key has been activated since the two rocker elements operate the same means of energy generation.
  • the switching contacts 11, 12, 15 and 16 associated with the keys 21, 22, 25, 26 are sensor means for actuating the control keys of the first set. On the other hand, no means makes it possible to positively identify whether the control keys 23 and / or 24 are actuated.
  • switching contacts are the most common technology, any other sensor technology may be used to detect the actuation of a key.
  • the figure 4 details the functional links of the components of a self-powered command transmitter using the key assignment and operating methods according to the invention.
  • This figure represents the electronic module 10, comprising the four switching contacts 11, 12, 15 and 16, as well as the two rocker elements 13 and 14, already described.
  • Both the first rocker element 13 and the second rocker element 14 are mechanically connected to a power generation means 18a such as a mechano-electric transducer, converting part of the energy into electrical energy. mechanical provided by the rocker element.
  • This energy converter uses for example an electromagnetic induction mechanism or piezoelectric effect, known from the prior art. It is generally relatively bulky and / or expensive, which justifies that a single transducer is used in combination with the two rocker elements.
  • the output of the energy generation means 18a is connected to an electrical energy accumulator 18b, of the capacitor type, possibly comprising voltage matching means of the regulator type.
  • the output of the electrical energy accumulator 18b feeds a microcontroller 18c, comprising software means 19 necessary in particular for implementing the operating method and / or the configuration method according to the invention.
  • the software means comprise means for executing each step of the methods and in particular means for determining whether only one actuating sensor means is activated, means for identifying the activated sensor means, means for causing, in this case the transmission, a movement order in relation to the activated sensor means and a means for causing, if this is not the case, the transmission of a stop motion command.
  • These software means may include computer programs.
  • the microcontroller analyzes the state of the switching contacts 11, 12, 15 and 16, due to an electrical connection between these contacts and four inputs of the microcontroller.
  • the microcontroller is connected to the radiofrequency transmitter 3, which allows the control thereof according to the support exerted by the user on the control keys.
  • the four switching contacts are also connected to the inputs of a logic gate 51 of the EXCLUSIVE OR type (active at the output if an input and only one is activated) whose output is connected to the microcontroller: such an arrangement allows the microcontroller in a single read to know if only one of the contacts is activated or if none of the contacts is activated.
  • This logic gate 51 is part with the contacts 11, 12, 15, 16 of a means 50 for determining whether one of the keys of the second set is actuated.
  • This determination means comprises the sensor means 11, 12, 15, 16. Equivalently, a single read operation of the same input port comprising the four inputs makes it possible to know if one of the contacts is activated or if none of the contacts are activated. contacts is activated: in this case, the logic gate 51 is useless, and the determination is ensured by the microcontroller 18c and the software means 19.
  • the figure 5 represents an embodiment of the configuration method of the command transmitter according to the invention.
  • the amount of electrical energy caused by pressing a key is very limited, it is important to use it very sparingly.
  • stop command For a home automation device with moving element, it is the stop command which generally has a security character, especially with respect to the protection of persons, which justifies that it is preferred over other commands , as regards conservation and energy recovery.
  • an additional security command may be associated with the stop movement command: for example a fast reversal order of movement or a fast opening command with activation of an alarm signal.
  • An additional advantage of this choice is that it guarantees safety by issuing a stop motion command in any case of failure of a switching contact or any actuating sensor means.
  • the configuration procedure makes it possible to configure association means comprising, for example, the microcontroller 18c and / or the software means 19 which associate a control key of the second set with a security control command of the home automation device 110 so that the signal transmitter transmits a stop command command at least when the device is active and when a control key of the second set is actuated.
  • the choice of assigning a key of the second group interposed between two keys of the first group also has the mechanical advantage of a better centering of the force exerted on the rocking element, thus a better energy recovery. mechanical.
  • the figure 6 represents in the form of a flow chart a mode of execution of the operating method of the command transmitter according to the invention.
  • a first step E1 the presence of electrical energy, caused by the pressing on any one of the keys and thus the tilting of one of the rocker elements, allows the supply of the microcontroller and the start of the software program implementing the method.
  • a reading of the input port comprising the inputs connected to the four switching contacts 11, 12, 15 and 16 is performed.
  • an EXCLUSIVE OR function output active at output if an input and only one is activated connected to these four contacts is tested, for example on an interrupt input of the microcontroller.
  • a test is performed on the activation of one of the switching contacts. If only one of the switching contacts is activated, then the third step E3, in which the activated contact is recognized, is then transmitted to the actuator, by activation of the radiofrequency transmitter, the order of implementation. movement (or any other particular order) corresponding to the active contact.
  • the figure 7 represents different variants of transmitter according to the invention.
  • the self-powered radiofrequency transmitter controls a single drive actuator of a movable element. It comprises a descent button 31 of the actuator, corresponding to the first control key 21, a stop button 33 of the actuator, corresponding to the third control key 23, a rising key 35 of the actuator .
  • a first specific key 32 corresponds to the second command key 22 and a second specific key 36 corresponds to the sixth command key 26. No key is disposed at the location of the fourth key 24 (which indicates a reference 34 without corresponding element).
  • the two specific keys belong to the first group. They relate to specific functions of the actuator, for example two specific positions or the programming keys of the actuator. Alternatively, the two specific keys concern a completely different application than the actuator, for example a first lighting of the room and a second lighting of the room. The specific keys therefore allow the issuing of orders other than setting in motion or stop motion.
  • the motion control keys may express a horizontal movement of the movable member, for example a curtain movement in front of a bay window.
  • the first variant is preferably used for controlling a blade or slat solar protection, such as a venetian blind.
  • the specific keys correspond to the slow control of the slat orientation movement.
  • the generation of electrical energy takes place differently depending on whether one acts on the first rocking element 13 or the second rocking element 14.
  • the energy electrical is created only when pressing a key while in the second case the electrical energy is created when pressing and releasing a key.
  • the second specific key corresponds to the slow orientation in the other direction.
  • the self-powered radiofrequency transmitter controls two movable element drive actuators. It comprises a first descent key 41 of the first actuator, corresponding to the first control key 21, a first stop key 43 of the first actuator, corresponding to the third control key 23, a first up key 45 of the first actuator . It comprises a second descent key 42 of the second actuator, corresponding to the second control key 22, a second stop key 44 of the second actuator, corresponding to the fourth control key 24, a second up key 46 of the second actuator .
  • the programming settings relating to each actuator must be made using another type of transmitter, preferably a conventional electric battery transmitter or a specific adjustment tool. It is this transmitter or specific tuning tool that will allow each actuator to go into a programming mode that allows them to "learn" the identity of the radio-frequency transmitter self-powered.
  • a variant of the operating method consists in issuing a stop motion control command, when actuating a control key belonging to the second group, only if the home automation device is active, for example in case of movement in Classes.
  • the issued order may relate to a command other than a stop motion command, for example a command to go to a predefined position.
  • control keys similar to that of the patent EP 1 473 748 . It applies to any other provision, provided that it is a transmitter self-powered by the same means of energy generation, including mechanical-transducer type, activated by several control keys when the number The number of control keys is greater than the number of switch contacts specifically associated with the control keys.
  • FIG. 8 to 11 thus represent a second embodiment of an order transmitter 1 'according to the invention, comprising the same electronic module 10 as in the first embodiment, and a same plastron 20.
  • the electronic module is again equipped with four switching contacts 11, 12, 15 and 16, and two rocker elements 13 and 14.
  • FIG. figure 8 in top view, there are also 6 control keys displayed in transparency.
  • control keys occupying the same location as in the first embodiment of the figure 3 are referenced by the same added numbers of 100. These keys are differentiated this time, in that the keys of the first group are physically different from the keys of the second group.
  • the figure 9 represents in top view the three differentiated keys to the left of the order transmitter of the figure 8 .
  • a differentiated first key 121, a differentiated third key 123 and a differentiated fifth key 125 are arranged in vertical alignment.
  • the first and fifth differentiated keys belong to the first group.
  • the third differentiated key belongs to the second group, that is, it is not specifically associated with any activation sensor means.
  • a coupling rod 60 passes through, in a hole 123e, the key of the second group and is mechanically integral, while it is simply supported on a coupling housing formed in each key of the first group surrounding the previous one.
  • a first coupling housing has the reference 121d in the differentiated first key and a second coupling housing is 125d in the fifth differentiated key.
  • the figure 10 represents the first differentiated key 121, according to a section plane passing through the axis XX 'and perpendicular to the plane of the figure 9 .
  • the fifth differentiated key 125 is identical to the first differentiated, simply noted key 121 in its description.
  • the key 121 comprises an upper end 121 connected to a hinge means 127 here common to the keys, a lower end 121b provided to press the rocker element 13, a finger 121c provided to activate the switching contact 11 (all these elements being identical to those of the first embodiment).
  • the first key 121 also includes the coupling housing 121d, notched. Alternatively, this housing has its top masked for aesthetic reasons.
  • the coupling rod 60 is supported on the lower part of the coupling housing and can move vertically without stress, for example on a height equal to the diameter of the coupling rod. A vertical support from top to bottom on the key does not cause movement of the coupling rod, while the same pressing on the coupling rod causes the actuation of the key 121.
  • the figure 11 represents the third differentiated key 123, along a plane of section passing through the axis ZZ 'and perpendicular to the plane of the figure 9 . It differs from the first key in that the lower end 123b can be located above the lower end 121b (shown in dotted line) because it is not necessary that the third differentiated key is in contact with the Likewise, no finger similar to the finger 121c is provided, this key does not actuate any switching contact. A hole 123e allows the passage of the coupling rod 60, in tight assembly.
  • the activation of a key of the first group, such as the first differentiated key 121 is therefore without effect on a key of the second group, such as the second differentiated key 123.
  • the activation of a key of the second group activates the two keys of the first group located on either side.
  • the activation of the contacts 11, 15 is done indirectly by means of the keys 121 and 125 during the actuation of the key 123. This simultaneous activation exerts a well distributed mechanical force on the rocking element 13, which optimizes the collection of mechanical energy.
  • the activation of the contacts 11, 15 could also be carried out indirectly by means of other elements when the key 123 is actuated.
  • each key 221, 222, 225 and 226 is specifically associated with an actuating sensor means. These keys are the first group of keys. On the other hand, each key 223, 224 is not specifically associated with any actuating sensor means, since they each activate two sensor means when they are actuated. Thus, these keys constitute the second group of keys. In the mode described in the figure, the keys of the second group have an area greater than the keys of the first group, which is beneficial for the good energy collection and ergonomics security function.
  • the sensor means could be completely under the keys 221 and 225 and extensions could be provided on the key 223 to activate the sensor means when activated.
  • these second and third embodiments of the invention make it possible to issue six different commands from six control keys and four actuation sensors.
  • the invention makes it possible to produce a command transmitter at a lower cost while saving material resources, while ensuring that a stop motion command is caused by a mechanical action whose symmetry guarantees the best possible collection of data. mechanical energy.
  • actuation sensor specifically associated with a key By “means of actuation sensor specifically associated with a key” is meant that the actuation of the key activates one and only one sensor means. Nevertheless, this actuating sensor means can, in particular in safety applications, comprise a redundancy of detection elements constituting the sensor means, such as for example several switching contacts or several sensors of different types linked by an OR logic function.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Selective Calling Equipment (AREA)
  • Massaging Devices (AREA)
  • Control Of Position, Course, Altitude, Or Attitude Of Moving Bodies (AREA)
  • Transmitters (AREA)

Claims (8)

  1. Befehlssender (1; 1'; 1") zum Steuern der Bewegung einer haustechnischen Einrichtung (110), welche eine Gruppe von Befehlstasten (21, 22, 23, 24, 25, 26; 121, 122, 123, 124, 125, 126; 221, 222, 223, 224, 225, 226), ein Mittel zur Energieerzeugung (18b), welches mindestens indirekt durch eine Betätigung jeder Befehlstaste aktivierbar ist, einen Sender (3) von Befehlssignalen, der vom Mittel zur Energieerzeugung gespeist wird, und ein Mittel (11, 12, 15, 16) zum Abfühlen einer Betätigung aufweist, welches jeweils spezifisch jeder Taste eines ersten Tastensatzes (21, 22, 25, 26; 121, 122, 125, 126; 221, 222, 225, 226) der Befehlstasten zugeordnet ist, wobei andere Tasten (23, 24; 123, 124; 223, 224), die einen zweiten Tastensatz mit mindestens einer Taste ohne spezifisch zugeordnetes Mittel zum Abfühlen einer Betätigung bilden, dadurch gekennzeichnet, dass ein Befehlssignal anschliessend an eine Aktivierung des Mittels zur Energieerzeugung (18b) gesendet wird, wobei dieses Signal einen Befehl zum Einleiten der Bewegung der haustechnischen Einrichtung beim Betätigen einer einzigen Taste des ersten Tastensatzes und einen Befehl zum Anhalten der Bewegung der haustechnischen Einrichtung beim Betätigen mindestens einer Taste des zweiten Tastensatzes enthält.
  2. Befehlssender nach vorstehendem Anspruch, dadurch gekennzeichnet, dass eine Taste (23; 123; 223) des zweiten Satzes zwischen einer ersten Taste (21; 121; 221) und einer zweiten Taste (25; 125; 225) des ersten Satzes eingesetzt ist, wobei der Befehl zum Einleiten der Bewegung der haustechnischen Einrichtung in unterschiedlicher Richtung lautet, je nachdem, ob die erste oder die zweite Taste des ersten Satzes gedrückt wird.
  3. Befehlssender (1'; 1") nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die Betätigung einer Taste (123; 223) des zweiten Teilsatzes die gleichzeitige Aktivierung von mindestens zwei Mitteln zum Abfühlen einer Betätigung herbeiführt.
  4. Befehlssender (1') nach Anspruch 3, dadurch gekennzeichnet, dass die Betätigung der Taste (123) des zweiten Satzes die gleichzeitige Aktivierung von mindestens zwei Tasten (121, 125) des ersten Satzes herbeiführt.
  5. Befehlssender nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass ein Befehl, die Bewegung anzuhalten, von einem besonderen Befehl überlagert wird, wenn der Befehlssender von einem inaktiven Zustand der haustechnischen Einrichtung informiert wird.
  6. Befehlssender nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass er Hardwaremittel und Softwaremittel aufweist, die dazu eingerichtet sind, ein Betriebsverfahren auszuführen, welches die folgenden Schritte aufweist, und zwar nach dem Abfühlen der Energieerzeugung oder im Verlaufe des Abfühlens der Energieerzeugung:
    • die Ermittlung, ob ein einziges Mittel zum Abfühlen einer Betätigung aktiviert ist, die Identifikation dieses aktivierten Abfühlmittels und in diesem Fall die Übermittlung eines Befehls zur Bewegung in Verbindung mit dem aktivierten Abfühlmittel,
    • und wenn dies nicht der Fall ist, die Übermittlung eines Befehls zum Anhalten der Bewegung.
  7. Befehlssender nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass er spezifische Tasten aufweist, die dem ersten Tastensatz angehören und die Übermittlung eines Befehlssignals ermöglichen, welches einen anderen Befehl als denjenigen zur Einleitung der Bewegung oder einen Befehl zum Anhalten der Bewegung der haustechnischen Einrichtung enthält.
  8. Haustechnische Anlage (100), enthaltend mindestens eine haustechnische Einrichtung (110), deren Bewegungen von einem Befehlssender (1; 1', 1") nach einem der vorstehenden Ansprüche gesteuert werden.
EP09157451A 2008-04-07 2009-04-07 Autonomer Befehlsgeber für Heimanlage Active EP2109086B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR0801898A FR2929779B1 (fr) 2008-04-07 2008-04-07 Emetteur d'ordres autonome pour installation domotique

Publications (2)

Publication Number Publication Date
EP2109086A1 EP2109086A1 (de) 2009-10-14
EP2109086B1 true EP2109086B1 (de) 2010-11-17

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EP09157451A Active EP2109086B1 (de) 2008-04-07 2009-04-07 Autonomer Befehlsgeber für Heimanlage

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EP (1) EP2109086B1 (de)
AT (1) ATE488828T1 (de)
DE (1) DE602009000363D1 (de)
FR (1) FR2929779B1 (de)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5622821B2 (ja) * 2012-03-22 2014-11-12 ミツミ電機株式会社 発電スイッチ装置
FR3104805B1 (fr) 2019-12-13 2022-01-21 Somfy Activites Sa Point de commande pour une installation de fermeture ou de protection solaire et installation de fermeture ou de protection solaire comprenant un tel point de commande

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1473748B1 (de) * 2003-04-30 2006-11-02 Christian Genter Gehäuse mit mehreren Schaltern und einer energieatuarken Funkschaltvorrichtung
ITVA20030018A1 (it) * 2003-06-05 2004-12-06 Sergio Piacentini Sistema elettronico di comando per impianti elettrici basato su onde radio.
FR2885722B1 (fr) 2005-05-13 2007-08-03 Somfy Sas Procede de fonctionnement d'une installation domotique et installation domotique pour sa mise en oeuvre.

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Publication number Publication date
ATE488828T1 (de) 2010-12-15
FR2929779A1 (fr) 2009-10-09
DE602009000363D1 (de) 2010-12-30
EP2109086A1 (de) 2009-10-14
FR2929779B1 (fr) 2010-06-04

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