EP1838941A1 - Dispositif pour determiner la position d'une poignee d'actionnement et/ou d'un vantail de fenetre ou de porte ou similaire - Google Patents

Dispositif pour determiner la position d'une poignee d'actionnement et/ou d'un vantail de fenetre ou de porte ou similaire

Info

Publication number
EP1838941A1
EP1838941A1 EP06701508A EP06701508A EP1838941A1 EP 1838941 A1 EP1838941 A1 EP 1838941A1 EP 06701508 A EP06701508 A EP 06701508A EP 06701508 A EP06701508 A EP 06701508A EP 1838941 A1 EP1838941 A1 EP 1838941A1
Authority
EP
European Patent Office
Prior art keywords
actuating
handle
switching element
switching
radio
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.)
Granted
Application number
EP06701508A
Other languages
German (de)
English (en)
Other versions
EP1838941B1 (fr
Inventor
Heinz-Eckhard Engel
Simon Petross
Oliver Erich Rudolf Schuberth
Christian Josef Stephan Zeus
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.)
Hoppe AG
Hoppe AG St Martin
Original Assignee
Hoppe AG
Hoppe AG St Martin
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 Hoppe AG, Hoppe AG St Martin filed Critical Hoppe AG
Priority to PL06701508T priority Critical patent/PL1838941T3/pl
Publication of EP1838941A1 publication Critical patent/EP1838941A1/fr
Application granted granted Critical
Publication of EP1838941B1 publication Critical patent/EP1838941B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B45/00Alarm locks
    • E05B45/06Electric alarm locks
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B17/00Accessories in connection with locks
    • E05B17/22Means for operating or controlling lock or fastening device accessories, i.e. other than the fastening members, e.g. switches, indicators
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/02Mechanical actuation
    • G08B13/06Mechanical actuation by tampering with fastening
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B2047/0048Circuits, feeding, monitoring
    • E05B2047/0057Feeding
    • E05B2047/0062Feeding by generator

Definitions

  • the invention relates to a device for detecting the position of an actuating handle and / or a window sash, a door leaf or the like.
  • Actuation handles are known in many embodiments. They serve, for example, for opening and closing a window or a door, in particular a window sash or a door leaf, wherein a handle is usually formed by a square pin for rotational entrainment of an associated actuator in the sash or door leaf, such as a Sch tonuß or a window gear.
  • a stopper body is provided, with which the handle is axially fixed-rotatably connected.
  • Locking or spring means formed within the stop body define preferred or standard angular positions of the handle, each angular position being associated with a particular operative position of the window or door (e.g., closed, open-hinged or open-tilted in windows).
  • sensors are installed in the area of all the window and door wings of the building, usually in the form of electrical, magnetic and / or optical contacts are formed. Each sensor detects the position of an associated door or window sash or a fitting and transmits a change of state via a connecting line to an evaluation device. This supplies the sensor element via the connecting line at the same time with the required operating voltage.
  • Each evaluation device is connected via a connecting line with a central reporting device.
  • a major disadvantage of such systems is that the installation cost is very high because separate cables must be routed to each window and door. All cables must also be assigned to the relevant window or door in one or more control centers, which often leads to wiring problems. Retrofitting of existing buildings is therefore hardly possible or associated with significant investment costs.
  • sensors In order to reduce the circuit complexity, sensors have been developed with battery or battery operation (see, for example, DE-U1-297 18 264).
  • the trained as Reedschalter sensors monitor the closed position of a window sash and the functional positions of the latch mechanism and thus the window handle, the detected state changes are sent wirelessly via a radio link to an evaluation.
  • DE-C2-100 59 582 therefore proposes a monitoring device for the opening, closing, locking and / or unlocking state of a window, a door or the like. before, with a base station and an evaluation device attached to the casement.
  • the latter comprises a sensor (reed contact), which detects the locking or unlocking of a lock pin from the displacement position of a relocating when locking detector, wherein the base frame of the window or the door arranged base station together with the evaluation device forms a transponder unit through which the Ver - Is unlocked or unlocked state without contact.
  • the evaluation device mounted on or in the window sash does not require a power supply.
  • the circuit complexity is still relatively high, because the base station via an electrical line with a processing device, e.g. an alarm system is to connect.
  • Base station and evaluation must also always be arranged opposite each other within the frame elements in order to ensure reliable operation of the monitoring device can.
  • the installation in the rebate air area can often lead to sealing problems. A subsequent installation is only conditionally possible and associated with high costs.
  • a sensor system disclosed in DE-C2-101 50 128 dispenses with both batteries and connecting lines.
  • Each sensor is assigned to this a voltage generator, which gains energy from the environment or from a mechanical movement and converts it into electrical energy, which is stored for the operation of the sensor and a radio transmitter.
  • the voltage generator may be a solar cell, a piezoelectric transducer or an inductive converter, wherein the energy store is a capacitor that provides the necessary for the most short-term operation power even when the voltage generator can not provide energy.
  • a timer circuit is activated which activates the entire system.
  • Each connected sensor is polled at definable time intervals.
  • the thereby detected change of state or a determined measured value is coded together with an identification number in a radio transmission telegram and sent by the radio transmitter via a radio link to a central evaluation unit. This transmits the information to power grid-connected actuators, a bus system or suitable display elements.
  • such a sensor system can be installed only conditionally retrofitted, because in the range of already installed window and door leaves usually only little space is available and the individual sensors (preferably reed contacts with associated permanent magnets as a reporting transmitter) optically disturbing most.
  • each sensor must be placed so that the movement of the window or door leaf is always reliably detected, which is not always easy eg in narrow window niches or double doors. If there is insufficient energy available, the monitoring can not be performed or not at the required time, because the timer circuit activates the sensor system only when the energy storage is fully charged.
  • the aim of the invention is to avoid these and other disadvantages of the prior art and a device for detecting the position of an actuating handle and / or a window, a door or the like.
  • a device for detecting the position of an actuating handle and / or a window, a door or the like To develop, which is constructed inexpensively by simple means and allows always reliable and needs-based wire and battery-free monitoring of windows and doors. It should also be easy to handle and easy to retrofit in a visually appealing manner, especially in combination with existing window and / or door fittings.
  • a device for detecting the position of an actuating handle and / or a window sash, a door leaf or the like.
  • At least one actuating element couples the actuating and / or rotary movement of the actuating handle and / or the pivoting movement of the window sash, the door leaf or the like. with the switching element of the radio switch such that upon reaching each functional position of the handle and / or a position of the window sash, the door leaf or the like. the switching element is actuated
  • the radio switch generates a radio signal and transmits it, for example to a central receiving station, which can evaluate and process the radio signal.
  • the radio signal is triggered only when reaching a functional position of the handle. It is therefore for capturing the position of a Window or door handle irrelevant, at which angle this is.
  • the assignment of the radio signals takes place directly on the functional positions of the actuating handle, ie only when they are actually achieved, the transmission of a radio signal.
  • the radio switch Because the radio switch generates the necessary electrical energy itself, the device is overall energy self-sufficient. The laying of leads or the use of batteries is therefore not necessary. In addition, the desired information is transmitted over a radio link, i. Data lines are also not necessary. Both the training and retrofitting of the device according to the invention is therefore extremely simple, not least because the connection of the device takes place directly to the rotational movement of the actuating handle.
  • FIG. 1 is an oblique view of a device for detecting the position of an actuating handle and an associated actuating handle
  • FIG. 2 is an oblique view of the device of FIG. 1 without actuating handle, partly in section,
  • FIG. 3 is a sectional view of the device of Fig. 1 in a first operating position
  • FIG. 4 is a sectional view of the device of Fig. 1 in a second operating position
  • FIG. 5 shows another embodiment of a device for detecting the position of an actuating handle
  • Firg. 7 is a schematic oblique view of a device for detecting the position of an actuating handle and a window sash, a door leaf or the like.
  • Firg. 8 shows a partial view of the device of FIG. 7 with the window closed, partly in section,
  • Firg. 9 is a partial view of the device of Fig. 7 with the window open, partly in section,
  • FIG. 10 is a partial enlargement of FIG. 9, partly in section, FIG.
  • Firg. 11 shows another embodiment of a device for detecting the position of an actuating handle and a window sash, a door leaf or the like, with the window closed, partly in section,
  • Firg. 12 shows a partial view of the device of FIG. 11 with the window open, partly in section,
  • Firg. 13 shows a partial view of the device of FIG. 11 with the window open, partly in section, and FIG
  • Firg. 14 is a partial enlargement of Fig. 13, partially in section.
  • the generally designated 10 in Fig. 1 device is used for detecting and monitoring the position of an actuating handle 20 and for wireless transmission of the detected position information to a (not shown) central evaluation unit, such as an alarm system, a bus system or the like.
  • a central evaluation unit such as an alarm system, a bus system or the like.
  • the actuating handle 20 has a handle 21 with a handle main part 22 and a handle neck 23, which is axially fixed-rotatably mounted on a stop body 24, for example, a rosette. This is fastened by means (not shown) fixing screws together with the device 10 on a (not shown here) window sash F, wherein a rotationally fixed in the handle neck 23 driver 28, preferably a square pin, through the device 10 into a (also not visible) Actuator engages in the sash F.
  • the latter is articulated in a manner known per se to a (not shown here) frame R, which is fixedly mounted in a window opening of a building.
  • the device 10 comprises a housing 12 which - as shown in FIG. 2 - is provided on its underside with cams 14. These take the mounting screws and ensure a position fixation on the window sash F. Concentrically over the cam 14, blind holes 15 are introduced in the housing 12, whose spacing and dimensions tions correspond to the cam 25 of the stopper body 24. The entire assembly 10, 20 can thereby axially and rotationally mounted on the sash F mount.
  • a radio switch 30 which generates and sends after actuation of a switching element 34 by means of an electronic circuit 36 a receivable by the evaluation and identifiable radio signal.
  • the electronic circuit 36 has a processor controller 37 with a microprocessor 35 and an electronic memory 38, which conveniently stores information for identifying the handle 20 to be monitored.
  • the switching element 34 is movable between two switching positions back and forth, the electronic circuit 36 generates a distinguishable radio signal upon reaching each end position of the switching element 34 and sends to the evaluation unit.
  • the radio signal therefore preferably comprises an identification number of the handle 20 which can be retrieved from the memory 38 and at least information about the direction in which the switching element 34 has been actuated.
  • a transducer element 32 is provided, for example a piezoelectric, an electrodynamic, a magnetodynamic and / or a magnetostrictive element, which converts mechanical energy into electrical energy.
  • the mechanical energy is introduced via the switching element 34 in the transducer element 32, wherein the switching element 34 is preferably designed as a spring element and part of a dead center mechanism. This ensures that the radio switch 30 always has unique switching states. If the switching element 34 is moved, the introduced mechanical energy is initially stored until a certain point is reached. If this is exceeded, the energy stored in the spring element 34 is emitted in the direction of the nearest dead center. This is done - regardless of speed, duration and force of the causally acting mechanical actuation by the switching element 34 - a always uniform energy transfer to the transducer element 32, the energy generated is always constant.
  • a separate spring mechanism (not shown), which can be actuated via the switching element 34 and - as described - is coupled to the transducer element 32.
  • an actuating element 50 is provided between this and the actuating handle 20, which is designed as a coupling element and any adjustment and / or rotational movement of the handle 21 transmits to the switching element 34 of the radio switch 30, so that at Reaching each functional position of the handle 20 and the handle 21, the switching element 34 and thus the radio switch 30 is actuated in a predetermined direction.
  • the coupling element 50 is preferably a control disk, a control roller 52 or the like.
  • the axially fixed-rotatably mounted in the housing 12 and rotationally fixed on the square pin 28 with the handle 20 is in operative connection.
  • a square recess 53 is centrally provided in the control roller 52, while in the outer circumference a circumferential groove 54 is introduced, which has a wave or sinusoidal contour.
  • the latter causes the switching element 34, which may directly engage therein, to be periodically reciprocated, i. the actuating or rotary movement of the handle 20 is converted into an actuating or pivoting movement for the switching element 34.
  • the circumferential groove 54 forms a control groove and is designed so that the switching element 34 after each quarter turn (90 ° rotation) of the control roller 52 passes from a switching or end position in the other.
  • the switching element 34 thus moves symmetrically to a zero position back and forth, wherein in each end position by the radio switch 30, a radio signal is generated.
  • the control roller or control disk 52 can be locked in at least one angular position, which suitably correspond to the functional positions of the handle 20.
  • latching means may be provided between the housing 12 and the control disk 52.
  • the actuating handle 20 itself has within the stopper body 24 via suitable latching means which define preferred or standard angular positions of the handle 21, each angular position of a particular functional position of the handle 21 is associated.
  • a force transmission element 60 is provided between the coupling element 50 and the switching element 34.
  • a rocker 62 which is pivotally mounted in the housing 12 with lateral axle journal 63. It also surrounds the cam 14 of the housing 12 with a recess 68, so that the housing 12 and thus the device 10 have extremely compact dimensions.
  • the rocker 62 At its end 64 facing the coupling element 50 or the control disk 52, the rocker 62 carries a finger 65, a pin or the like which slidably engages in the control groove 54 of the control roller 52 with as little movement play as possible.
  • the radio switch 30 facing the end 66 of the rocker 62 is formed as a bracket 67 or as a terminal. This detects the switching element 34 of the radio switch 30th
  • the bottom of the housing 12 is suitably closed by a housing bottom 13.
  • the mode of operation of the device 10 can be seen schematically in FIGS. 3 and 4.
  • the radio switch 30 is actuated, i. the switching element 34 is moved out of its previous position in a different switching position.
  • the transducer element 32 generates electrical energy used by the electronic circuit 36 to generate a radio signal. This signals the evaluation unit, that the handle 20 has been actuated, wherein the radio signal is transmitted only when actually another detent position has been reached. If the handle is only moved "back and forth", no signal is generated, the device 10 thus always ensuring reliable statements about the position of the handle 20
  • the control roller 52 also rotates by 90 ° and the rocker 62 is due to the forced coupling between the finger 65 and the cam 54 is pivoted about the stub axles 63 around.
  • the switching element 32 of the radio switch 30 is folded. This generates via the transducer element 32 electrical energy, however, changes the sign due to the change in direction. This information is detected by the electronic controller 36 and integrated into the radio signal.
  • the Evaluation unit detects that the handle 21 has been moved from its previous position, eg closed, in the open position.
  • a separate sensor 70 is arranged in the housing 12 (see FIG. 5).
  • This is preferably an electromagnetically or electrostatically actuated switching contact, for example a reed contact 71, which can be actuated by a permanent magnet 72.
  • the reed contact 71 is seated for this purpose on the longitudinal center of the housing 12 between the outer cam 14 and the control roller 52, the edge of the permanent magnet 72 carries. This is arranged so that the reed contact 71 is always closed when the handle 20 and the handle 21 are in tilted position.
  • the reed contact is connected via electrical lines 75 to the electronic circuit 36 of the radio switch 30.
  • This polarity change is taken into account in the radio telegram of the electronic circuit 36.
  • the receiver therefore recognizes whether the handle 21 is in the "open” or "closed” rotational position.
  • the shift drum 52 When the handle 21 is rotated 90 ° further to "12 o'clock", the shift drum 52 returns the rocker 62 to its initial state, ie, the terminal 67 and the associated switching element 34 are moved down.
  • the radio switch 30 again generates a voltage pulse At the same time, however, the reed contact 71 is closed by the magnet 72.
  • the electronic circuit 36 thus receives an additional signal, from which the processor control 37 recognizes that the handle 21 is not in the closed, but in the tilted position.
  • the radio signal is modified accordingly, so that the evaluation unit can utilize this switching state or this position of the handle 20 accordingly.
  • the senor 70 is not at the "12 o'clock position” but is offset by 180 degrees at the so-called “6 o'clock position", i. the reed contact 71 always supplies an additional switching signal when the handle 21 or the handle 20 are in the "closed” position If the reed contact 71 should fail once, the radio switch signals an unsecured state (window tilted), which can easily be checked leaves.
  • FIG. 10 Another important embodiment of the device 10 is shown in FIG. Here, the housing 12 and the stopper body 24 are structurally combined. This gives an extremely compact design, which differs only slightly from conventional fittings.
  • Fig. 7 of a device 10 serves not only for detecting and monitoring the position of an actuating handle 20, but for the simultaneous monitoring of the position of the sash F with respect to the window frame R.
  • the (not shown here) window handle 20 is - as in the embodiments of FIGS. 1 to 6 - via the driver 28, in a bearing 55 rotatable first actuator 50 and the pivotally mounted power transmission element 60, 62 with the first switching element 34 of a first Wireless switch 30 coupled to the detected position information wirelessly transmitted to a (not shown) central evaluation unit, such as an alarm system, a bus system or the like.
  • a central evaluation unit such as an alarm system, a bus system or the like.
  • a further radio switch 130 is provided in the housing 12 of the device 10, which is preferably arranged in the longitudinal direction of the housing 12 in alignment behind the first radio switch 30. It has its own further switching element 134, which - as shown in FIGS. 8 and 9 - can be actuated via a further force transmission element 160 by a further actuating element 150.
  • the further actuating element 150 is, for example, a bolt 151 fastened to the window frame R, which, when the window is closed, projects through a through bore 18 introduced into the window sash F and ends with a probe tip 152 formed in the free end of the housing bottom 13 and / or in the housing 12.
  • the housing bottom 13 is for this purpose provided with a corresponding bore 16 or recess whose diameter is greater than the outer diameter of the probe tip 152 and which is smaller than the outer diameter of the bolt 151.
  • This may be rigidly connected to the frame.
  • the pin 151 is preferably mounted longitudinally displaceably in a sleeve 155 against the pressure of a spring 154. The latter is rigidly anchored in frame R.
  • the power transmission element 160 is a substantially cylindrical pressure piece 161, which is mounted longitudinally displaceably in a guide 162 and is permanently loaded by a spring 164 in the direction of the frame R (see FIG. 10). It is in engagement with the switching element 134 of the radio switch 130 and protrudes in its rest position into the bore 16 of the housing bottom 13.
  • An example formed laterally shoulder 166 serves as a stop which rests on a shoulder 168 of the housing bottom 13 and which is provided for connecting the pressure piece 161 to the switching element 134 with a mouth-shaped recess 167 which engages around the free end of the switching element 134 on both sides.
  • the actuator 150 is received by the bore 18 of the sash F and the probe tip 152 of the bolt 151 penetrates into the bore 16 of the housing bottom 13 a.
  • the pressure piece 161 deviates against the spring 164 to the rear, wherein the spring 164 of the pressure piece 161 is weaker than the spring 154 of the bolt 151.
  • Its length or the length of the probe tip 152 are selected such that the pressure piece 161 with the window closed reached a rear end position.
  • the pin 151 can penetrate into the housing 12 only with the probe tip 152 due to the smaller diameter bore 16. He finds rather in the closed position of the window on the bottom 13 of the housing 12 a stop, the spring 154 always provides the necessary tolerance compensation. At the same time it is ensured that the pressure piece 161 always has the same Axialhub.
  • the pin 151 releases the pressure piece 161. This is brought by the spring 164 in its front stop position.
  • the opening and closing of the window generates a longitudinal movement of the pressure piece 161 and that this movement on the switching element 134 of the Wireless switch 130 is transmitted, wherein in each end position of the pressure piece 161, the switching element 134 and thus the wireless switch 130 is actuated in a predetermined direction.
  • This generates by means of a (unspecified) electronic circuit in each case a radio signal and sends it to the evaluation unit.
  • the other radio switch 130 is constructed like the first radio switch 30, preferably both components 30, 130 are identical.
  • the first radio switch 30 of the device works as already described. However, the signal of the second or further radio switch 130 supplements the signal of the first. If this signals a closed window because the window handle 20 is in its corresponding position (usually "6 o'clock") and the second radio switch 130 is activated by opening the window by the pin 151 releasing the pressure piece 161, the evaluation unit recognizes that the window has not been opened via the window handle 20 and thus not regularly.An alarm sender can immediately report a "break-in".
  • the signal of the second wireless switch 130 is simply suppressed, because the window was opened via the window handle 20 regular and the device 10 only has to recognize in which functional position, the handle 20 is located.
  • each actuator 50, 150 has a separate radio switch 30, 130, each with its own switching element 34, 134
  • the invention provides in the embodiment of FIGS. 11 to 14 that the actuators 50, 150 and respectively associated power transmission elements 60, 160 are assigned to a common radio switch 30.
  • the control groove 54 of the control roller 52 is modified such that the switching rocker 62 is pivotable even when the actuating handle 20 is not rotated.
  • the clear height of the cam 54 in the control roller 52 of the actuator 50 - as Fig. 14 shows - in a peripheral region higher than the end 65 of the rocker 62 so that it can move up and down within the groove 54 ,
  • the peripheral area with the higher trained area of the cam groove 54 is always in the area of the rocker 62, when the operating handle 20 is in the "window closed" position ("6 o'clock” position).
  • FIG. 11 shows the state of the device 10 when the window handle 20 is closed and the window sash F is closed
  • FIG. 13 the window handle 20 continues to be in the closed position (window closed), while the window has been opened.
  • the window sash F has moved away from the frame R so far that the actuator 150 with the power transmission element 160 is disengaged.
  • the pressure piece 161 is brought by the spring 164 in its front end position, wherein the lateral projection 166, the switching element 34 entrains.
  • the radio switch 30 generates the necessary energy and transmits a radio signal.
  • the additional sensor 70 which is also preferably designed as a reed contact. With this additional switching contact, the evaluation unit can recognize the following states:
  • ⁇ Mode B window open; Window handle 20 open; Reed contact, the end 66 of the rocker 62 is pivoted downward (see Fig. 12);
  • the device 10 can be used in numerous other embodiments, for example, for monitoring the closed state of a door bolt or a door leaf. Since the bolt is usually only in two positions, the device 10 can be used without additional sensor 70. However, the latter can also record further closed positions here. Also, additional sensors can be used in doors and windows to detect further opening or pivoting position. The corresponding information from the sensors can be forwarded to the electronic circuit 36 and sent as needed via the radio signal.
  • the further radio switch 130 in the embodiment of FIGS. 7 to 10 can also be designed separately and installed as an independent module on the window or integrated into the window sash F.
  • the device 10 on or in skylights, shut-off grids, or shaft caps, wherein the further force transmission element 60 - as needed - a lever mechanism, a gear or the like. can be.
  • the device 10 for monitoring the position of a window handle has a generally elongate housing 12 with two cam depressions 15 for a standard window handle rosette 24 which can be screwed onto it.
  • the axial continuation of the countersinks 15 or the screw holes formed therein opens into two cams 14, which engage with the window sash.
  • Window handle 20 and switch housing 10 are thus struck together, the device 10 is sandwiched between the handle 20 and the window.
  • the interior of the housing 12 consists essentially of three components.
  • the radio switch 30 with radio transmitter, antenna and energy generator
  • the shift drum 52, the tangential circumferential, groove-like switching cam 54 guides the finger 65 of the rocker 62.
  • the shift drum 52 is axially fixed-rotatably mounted in the housing 12. It is penetrated in the broken state axially by the square pin 28 of the window handle 21 and thus able to transmit desired torques.
  • the switching rocker 62 is pivoted about the finger 65 about the axle 63, which causes an approximately comparable movement on the opposite side 66 of the rocker 62.
  • This movement serves to drive the switching element 34, preferably a leaf spring element which has only two stable end positions. Therefore, the switching element 34 snaps abruptly when turning the window handle 21 from one position to the other, which is used in the radio switch 30 to induce a voltage pulse.
  • This in turn supplies the electronic circuit 36 with energy, which sends a corresponding radio signal with information about the position of the handle 20 and the handle 21.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Burglar Alarm Systems (AREA)
  • Power-Operated Mechanisms For Wings (AREA)

Abstract

L'invention concerne un dispositif (10) servant à déterminer la position d'une poignée d'actionnement (20) et/ou d'un vantail de fenêtre (F) ou de porte ou similaire. Ce dispositif (10) comprend au moins un commutateur radio (30, 130) qui génère et émet un signal radio identifiable après actionnement d'un élément de commutation (34, 134) et qui produit lui-même l'énergie nécessaire à cet effet, au moins un élément d'actionnement (50, 150) couplant un mouvement de réglage et/ou de rotation de la poignée d'actionnement (20) et/ou un mouvement de pivotement du vantail de fenêtre (F) ou de porte ou similaire avec l'élément de commutation (34, 134) du commutateur radio (30, 130) de sorte que lorsqu'une des positions fonctionnelles de la poignée d'actionnement (20) et/ou une position du vantail de fenêtre (F) ou de porte ou similaire est atteinte, l'élément de commutation (34, 134) puisse être actionné. L'élément d'actionnement (50, 150) est un disque de commande, un cylindre de commande (52) ou similaire qui peut être mis en prise de manière solidaire en rotation avec la poignée d'actionnement (20). De façon complémentaire ou selon une variante, l'élément d'actionnement (50, 150) peut se présenter sous la forme d'un axe (151) qui peut être mis en prise avec le vantail de fenêtre (F) ou de porte ou similaire.
EP06701508.1A 2005-01-17 2006-01-17 Dispositif pour determiner la position d'une poignee d'actionnement et/ou d'un vantail de fenetre ou de porte ou similaire Active EP1838941B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL06701508T PL1838941T3 (pl) 2005-01-17 2006-01-17 Urządzenie do wykrywania pozycji uchwytu uruchamiającego i/albo skrzydła okiennego, skrzydła drzwi lub tym podobne

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202005000784U DE202005000784U1 (de) 2005-01-17 2005-01-17 Vorrichtung zum Erfassen der Position einer Betätigungshandhabe
PCT/EP2006/000399 WO2006074967A1 (fr) 2005-01-17 2006-01-17 Dispositif pour determiner la position d'une poignee d'actionnement et/ou d'un vantail de fenetre ou de porte ou similaire

Publications (2)

Publication Number Publication Date
EP1838941A1 true EP1838941A1 (fr) 2007-10-03
EP1838941B1 EP1838941B1 (fr) 2013-12-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP06701508.1A Active EP1838941B1 (fr) 2005-01-17 2006-01-17 Dispositif pour determiner la position d'une poignee d'actionnement et/ou d'un vantail de fenetre ou de porte ou similaire

Country Status (6)

Country Link
EP (1) EP1838941B1 (fr)
DE (1) DE202005000784U1 (fr)
ES (1) ES2445365T3 (fr)
PL (1) PL1838941T3 (fr)
PT (1) PT1838941E (fr)
WO (1) WO2006074967A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202015106590U1 (de) 2015-12-03 2016-01-07 Engeltech Gmbh Überwachungsvorrichtung und zugehöriger Neigungssensor

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DE202005000784U1 (de) 2006-05-24
ES2445365T3 (es) 2014-03-03
PL1838941T3 (pl) 2014-05-30
PT1838941E (pt) 2014-02-14
WO2006074967A1 (fr) 2006-07-20
EP1838941B1 (fr) 2013-12-11

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