EP3942129B1 - Detektor zur erfassung der position eines türrahmenstiftes und türrahmen mit einem solchen detektor - Google Patents

Detektor zur erfassung der position eines türrahmenstiftes und türrahmen mit einem solchen detektor Download PDF

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Publication number
EP3942129B1
EP3942129B1 EP20711935.5A EP20711935A EP3942129B1 EP 3942129 B1 EP3942129 B1 EP 3942129B1 EP 20711935 A EP20711935 A EP 20711935A EP 3942129 B1 EP3942129 B1 EP 3942129B1
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EP
European Patent Office
Prior art keywords
housing
rod
battery
detector
along
Prior art date
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Active
Application number
EP20711935.5A
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English (en)
French (fr)
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EP3942129A1 (de
Inventor
Stéphane BEAU
David SERVE
Serge Robin
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 Activites SA
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Somfy Activites SA
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Publication of EP3942129A1 publication Critical patent/EP3942129A1/de
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Publication of EP3942129B1 publication Critical patent/EP3942129B1/de
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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/02Mechanical actuation
    • G08B13/08Mechanical actuation by opening, e.g. of door, of window, of drawer, of shutter, of curtain, of blind
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B45/00Alarm locks
    • E05B45/06Electric alarm locks
    • E05B45/08Electric alarm locks with contact making inside the lock or in the striking plate
    • E05B45/083Electric alarm locks with contact making inside the lock or in the striking plate with contact making either in the striking plate or by movement of the bolt relative to the striking plate
    • 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
    • E05B2047/0067Monitoring
    • E05B2047/0069Monitoring bolt position

Definitions

  • the present invention relates to a pin position detector, the pin being carried by an edge belonging to a pivoting opening or to a fixed frame of a frame, and relates to such a frame, equipped with such a detector.
  • the invention relates to means for detecting the opening of a frame with a pivoting sash, for example an oscillating and/or swinging sash.
  • This frame is for example a window, a door or a shutter.
  • a position detector described by DE 44 44 839 C1 comprises a transmission unit, comprising a box mounted on the edge of the frame and a rod, partially housed in the box and moved in translation by the pin of the frame.
  • the rod is held in abutment against the pin by a spring contained in the case.
  • the rod carries a metal plate, which comes opposite a detection unit carried by the frame, to detect the position of the rod and thus determine the position of the pin.
  • the detection unit is wired to a remote power supply and operating circuit.
  • a disadvantage of this position detector lies in the need to provide a device fitted to the opening and a device fitted to the frame, as well as a wired connection, which complicates installation and adjustment and may prove to be unattractive.
  • the space available in the gap between the frame and the sash is particularly small and generally does not allow housing of the rod, the spring, the detection unit and the operating and control unit at the same time. 'food.
  • the invention aims to provide, for a frame with a pivoting leaf, a new position detector which, while being capable of detecting the position of any type of frame pin, in particular a non-metallic pin, is particularly compact and easy to install.
  • the position detector is self-powered, each battery directly supplying the electronic means from inside the case. No wires are therefore necessary for the power supply of the detector.
  • the detector does not require any wired connection, if the transmitter is also able to communicate wirelessly.
  • Each battery being arranged along the rod, for example parallel to the rod, its size is minimized, so that the battery does not interfere with the movement of the rod and allows the design of a box which fits in the gap provided between the edge of the sash and the edge of the frame. Thanks to the invention, it is even possible to provide that each battery is a standard commercial battery, less expensive and easy to replace, even if such a standard battery is relatively bulky.
  • the installation of the detector is particularly simple, since the position detector is installed on only one part of the frame at a time, either the opening or the frame.
  • the figure 1 illustrates a hinged frame 1, which is a particular type of frame with a pivoting leaf, to selectively close or open a bay of a building wall.
  • Frame 1 is currently a window.
  • the frame 1 is a door or a shutter, or any other similar frame, in particular applicable to a building.
  • the frame 1 comprises an opening 3, which is preferably glazed, and a frame 4, which constitutes a fixed frame, delimiting the bay of the building.
  • the opening 3 is pivotally mounted on the frame 4 using hinges not shown, or any suitable means.
  • the sash 3 can be mounted swinging, that is to say pivoting around a vertical swing axis, or oscillating, that is to say pivoting around a horizontal axis of oscillation.
  • the opening 3 be configured to be able to be pivoted according to the two opening modes at the same time, so as to be tilt and turn.
  • the opening 3 comprises an edge 5, which is an outer peripheral surface of the opening 3, delimiting its periphery.
  • the fixed frame comprises an edge 6, which is an internal peripheral surface of the fixed frame 4, delimiting its internal contour.
  • the opening 3 is equipped with a pin 10, carried by a surface S5 of the edge 5.
  • This surface S5 preferably extends parallel to the vertical axis of beat of the opening 3 and/or perpendicular to the horizontal axis of oscillation of the opening 3.
  • the surface S5 of the edge 5 carrying the pin 10 extends, for its longest dimension, along a longitudinal axis X20, attached to the opening 3, and, for its narrowest dimension, along a transverse axis Y20, perpendicular to the longitudinal axis X20.
  • Surface S5 of edge 5 is advantageously parallel to the vertical axis of beat and/or perpendicular to the horizontal axis of oscillation.
  • the axis X20 is preferably vertical when the opening 3 is closed.
  • the transverse axis Y20 is advantageously horizontal when the opening 3 is closed.
  • An axis of thickness Z20 is defined, perpendicular to the axes X20 and Y20, and which crosses the two surfaces of the facing edges 5 and 6 when the opening 3 is closed.
  • the pin 10 is movable in translation along the edge 5, along the longitudinal axis X20, between two positions, one of which is represented on the picture 3 , and the other on the figure 4 .
  • piece 10 is shown in broken lines.
  • the pin 10 advantageously cooperates, like a bolt, with a striker fitted to the edge 6 of the frame 4.
  • the sash 3 is kept locked in closed position.
  • the opening 3 is released from the closed position so as to be able to be moved into the open position in flapping pivoting.
  • the pin 10 can adopt another position along the axis X20 in which the opening 3 is released from the closed position so as to be able to be moved into the open position in oscillation pivoting.
  • the opening 3 is advantageously equipped with a handle 7 to actuate the movement of the pin 10, by means of an internal mechanism of the opening 3, sometimes referred to as a "fitting".
  • the fitting and the pin can be moved by means of a motor (not shown).
  • the frame 1 is equipped with a position detector 12 of the pin 10, shown on the figures 1 to 6 .
  • the detector 12 essentially comprises a housing 20, a rod 22, electronic means 24, and two batteries 30 and 32.
  • the box 20 is fixed to the edge 5, for example by means of screw lugs 40 with which the box 20 is provided, or any similar means.
  • the casing 20 is of generally parallelepipedal shape, being of elongated shape along the longitudinal axis X20.
  • the case 20 is thin along the Z20 axis, compared to its dimensions along the Y20 axis and along the X20 axis, in order to be able to be accommodated in the gap provided between the edges 5 and 6 in the closed position of the frame 1.
  • the size of the housing 20 along the axis Y20 is advantageously less than or equal to 24 mm (millimeters).
  • the size of the box 20 along the axis Z20 is advantageously less than or equal to 9.5 mm.
  • the box 20 advantageously comprises a bottom wall 41 and an upper wall 42, better visible on the figure 5 and 6 .
  • the walls 41 and 42 are flat, parallel to the axes X20 and Y20 and perpendicular to the axis Z20.
  • the walls 41 and 42 are separated from each other at a thickness distance limited by the thickness along the axis Z20 of the gap formed by the edges 5 and 6.
  • the bottom wall 41 comes against the surface S5 of edge 5 when housing 20 is fixed to edge 5.
  • Upper wall 42 comes along the surface of edge 6, with a clearance, when sash 3 is closed.
  • the bottom wall 41 is advantageously formed by a base of the box 20, fixed to the edge 5.
  • the upper wall 42 is formed by a cover of the box 20, which is removable with respect to the base to allow access to the interior of the housing 20, for example for maintenance.
  • the housing 20 advantageously comprises a side wall 43 and a side wall 44, parallel to the axis X20 and to the axis Z20, spaced apart along the axis Y20, and each connecting the wall 41 to the wall 42.
  • one of the walls 42 and 43 extends along a rebate of the opening 3, or even against said rebate, while the other wall 43 extends along a rebate of the frame 4, or even against said rabbet when the opening 3 is closed.
  • rebate is meant an edge, carrying a surface, which extends from the edge of the frame or the edge of the sash, over at least a portion of the contour of the sash or the frame, according to a plane parallel to the plane of the sash or frame.
  • the surface of the rabbet serves as a stop in rotation of the sash relative to the fixed frame when the sash is in the closed position, the surface of the rabbet carried by the sash coming into abutment against the fixed frame and/or the surface of the rebate carried by the fixed frame receiving the sash in abutment.
  • the housing 20 advantageously comprises an outlet wall 45, oriented parallel to the axes Y20 and Z20, and provided with an opening or notch 47 through which the rod 22 passes.
  • the wall 45 connects the walls 41, 42, 43 and 44 to close the housing 20 by a front longitudinal end thereof.
  • a rear wall 46 oriented parallel to the axes Y20 and Z20, connects the walls 41, 42, 43 and 44 to a rear longitudinal end of the casing 20 opposite the rod 22, to close said casing 20 at this rear longitudinal end. .
  • the rod 22 comprises a feeler end 51, which extends outside the housing 20 and an internal end 52, which extends inside the housing 20.
  • the ends 51 and 52 are therefore on either side other of the wall 45.
  • the ends 51 and 52 are each centered on the axis X20. Between the ends 51 and 52, the rod 22 is advantageously rectilinear and centered on the axis X20.
  • the end 51 is provided to receive the pin 10 resting against it along the longitudinal axis X20, as shown on the figure 3 and 4 .
  • the end 51 advantageously has a rounded hollow shape, as shown in the figures, in order to match the shape of the pin 10, generally cylindrical with a circular base, coaxially with an axis parallel to the axis Z20.
  • the rod 22 is fixed to the pin 10, so as to rest on the pin 10 and so that the rod 22 can thus be pulled by the pin 10.
  • the feeler end 51 is advantageously provided to receive a mechanical action from the pin 10, that is to say a force transmitted by contact of the pin 10 against the end 51, in order to move the rod 22.
  • rod 22 advantageously extends in a central position of housing 20, that is to say at equal distance from walls 43 and 44.
  • rod 22 is advantageously closer of the bottom wall 41 than of the top wall 42, or even extends along and against the bottom wall 41. The position of the rod 22 is thus suitable for most frames, where the pin is not always exactly the same configuration.
  • the rod 22 is mounted in the housing 20 in a movable manner, being guided by the housing 20 in a rectilinear translation along the axis X20, relative to the housing 20.
  • the housing 20 being fixed to the edge 5, the pin 10 , translating along the axis X20 with respect to the edge 5, drives the rod 22 in translation with respect to the housing 20 along the axis X20 via the end 51.
  • the end 51 being held in contact with the pin 10, the rod 22 and pin 10 are integral in translation with respect to edge 5 and housing 20.
  • the position of rod 22 thus reflects the position of pin 10.
  • a front longitudinal direction X51 and a rear longitudinal direction X52 opposite and parallel to the longitudinal axis X20 are defined.
  • the X51 direction is oriented in the direction going from the end 52 to the end 51. It follows that the X51 direction is oriented in the direction going from the wall 46 to the wall 45.
  • the pin 10 is located in the direction X51 with respect to box 20.
  • the rod 22 comprises a first part 53, extending from the end 51.
  • a part of the first part 53 extends outside the housing 20, and another extends inside the housing 20.
  • the first part 53 advantageously slides in the opening or the notch 47 of the wall 45, which guides the rod 22 in its translation.
  • the first part 53 and the opening or the notch 47 of the wall 45 are of complementary shape to prevent rotation of the rod 22 with respect to the housing 20 around the axis X20.
  • the first part 53 is flat in shape along a plane parallel to the plane defined by the axes X20 and Y20.
  • the opening or the notch 47 is fitted around the rod 22, so as to avoid the introduction of foreign bodies inside the case, in particular dust, or humidity.
  • the rod 22 comprises a second part 54, cylindrical with a circular base coaxial with the axis X20, extending from the end 52.
  • the second part 54 extends to a rear end 55 of the first part 53.
  • the rear end 55 is advantageously centered on the axis X20.
  • Detector 12 advantageously includes jumper 60, mounted entirely inside housing 20, preferably on wall 41. In use, jumper 60 is fixed relative to housing 20. Jumper 60 includes an opening 61 of guiding the rod 22 in its translation along the axis X20. The opening 61 receives in particular the second part 54 of the rod 22. To provide guidance, the opening 61 advantageously has a circular shape centered on the axis X20, corresponding to the shape of the second part 54. For any position of the rod 22 with respect to the housing 20, the ends 51 and 52, as well as, preferably, the ends 55 and 52, are located on either side of the jumper 60 along the axis X20.
  • Jumper 60 is held in housing 20 using two studs 62, which are advantageously symmetrical with respect to the plane along axes X20 and Z20.
  • the pads 62 are formed inside the housing 20 on the inner surface of the wall 41, preferably being integral with the wall 41.
  • the jumper 60 fits into studs 62, coming into abutment in the rear direction X52.
  • jumper 62 is fixed relative to housing 20, in rotation and in translation along axes Y20 and Z20.
  • the jumper 62 can however slide relative to the studs 62 along the longitudinal axis X20, no abutment of the jumper 62 relative to the housing 20 along the forward direction X51 being advantageously provided.
  • Jumper 60 can thus easily be detached from case 20, by translation of jumper 60 in direction X51 relative to case 20, in order to release jumper 60 from its interlocking with studs 62.
  • the jumper 60 advantageously comprises, for each stud 62, a lug, which is plugged into a blind notch belonging to the stud 62, the blind notch being blind in the rear direction X52 and emerging in the forward direction X51.
  • the connection between the jumper 60 and the pads 62 can be described as a plug-socket connection.
  • the rod 22 also advantageously comprises a front abutment 56, which is for example in the form of a lug, visible in particular on the figure 4 .
  • the lug of the front abutment 56 preferably protrudes from the first part 53 parallel to the axis Z20, and comes into abutment against the wall 45 when the rod 22 is moved in the forward direction X51.
  • the wall 45 locally comprises a reinforcement 49, preferably of a shape complementary to that of the abutment 56, and against which the front abutment 56 abuts.
  • the translation of the rod 22 relative to the housing 20 in the forward direction X51 is advantageously limited to a deployment position, shown on the figure 2 and 3 , here by abutment of the abutment 56 against the wall 45.
  • the abutment is formed by the second part 54 of the rod 22, this second part 54 of rod having a section different from that of the first part 53 of rod 22, or by a connecting piece 55 forming the connection between the two parts 53, 54 of the rod 22.
  • the second rod part 54 or the connecting piece 55 come into abutment against the wall 45 of the casing in the deployment position, insofar as they do not lodge in the notch or the opening of the wall 45.
  • the abutment 56 is formed on another part of the rod 22, for example at the end 52, and can bear in the forward direction X51 against the rider 60, or against a fixed abutment formed inside of the housing 20, for example projecting from the wall 41.
  • the rod 22 also advantageously comprises a witness 57, which advantageously takes the form of a magnet or a metal part.
  • the indicator 57 is entirely arranged inside the housing 20, for example being carried by the end 52.
  • the indicator 57 being carried by the rod 22, its movement in translation corresponds to that of the pin 10.
  • Detector 12 further comprises an axial spring 70, which is entirely disposed inside housing 20.
  • the axial spring 70 is advantageously a compression spring, along the axis X20.
  • the spring 70 comprises a movable end 71, in the direction X51, which bears against the rod 22 along the longitudinal axis X20, in particular against the connecting piece 55.
  • the axial spring 70 comprises a fixed end 72, in the direction X52, bearing against the housing 20 along the longitudinal axis X20, in particular against a bearing surface 63 formed by the rider 60 around the opening 61.
  • the axial spring 70 therefore imparts a force on the rod 22 by relative to the housing 20, tending to move the rod 22 and its feeler end 51 towards the outside of the housing 20, that is to say in the direction X51.
  • Rod 22 is therefore elastically biased by spring 70 towards an extended position.
  • the spring 70 is advantageously arranged coaxially with the longitudinal axis X20, so as to have minimal bulk. Also, the ends 71 and 72 of the spring 70 are advantageously arranged, along the axis X20, between the ends 51 and 52 of the rod, and even between the ends 55 and 52, whatever the position of the rod 22.
  • the spring 70 is of tubular shape around the axis X20, forming for example a helical spring. Thanks to this shape, the spring 70 is advantageously arranged around the rod 22, thus surrounding in particular only the second part 54 of said rod 22. The size of the rod 22 and of the spring 70 is thus grouped together in a single zone to inside the box 20, which leaves room for arranging other elements of the detector 12 inside the box, in particular the electronic means 24 and the batteries 30 and 32.
  • the spring 70 resting against the bearing surface 63 of the rider, the spring 70 keeps the rider 60 bearing in the rear direction X52 against the studs 62.
  • the spring 70 For mounting an assembly comprising the rider 60, the spring 70 and the rod 22 in the housing, it suffices to insert the first part 53 of the rod 22 into the notch or the opening of the wall 45 of the housing, then to compress the spring 70 by sliding the rider along the rod 22 in direction X51.
  • the jumper 60 can be released, which then comes to be housed and locked in translation in the studs 62.
  • the electronic means 24 are entirely received inside the box 20.
  • the electronic means 24 include the indicator 57 carried by the rod 22.
  • the electronic means 24 also include an electronic card 80, fixed inside the case 20.
  • board 80 is shown partially, being cut away to show stem 22. In practice, board 80 may extend further than shown in figure 2 in the X51 direction.
  • the electronic card 80 is oriented parallel to the axes X20 and Y20, resting for example against all or part of the upper 42, side 43 and 44 and rear 46 walls.
  • the rod 22, at least for the second part 54 is advantageously arranged, along the axis Z20, between the card 80 and the wall 41. This is possible insofar as these two elements have a particularly small thickness along the axis Z20.
  • the indicator 57 can circulate for example between the bottom wall 41 and the card 80, or otherwise along the card 80, for example between the wall 44 and the card 80. respective of the card 80 and the rod 22 are therefore arranged in an optimized manner taking into account the volume available in the housing 20.
  • the electronic means 24 comprise a sensor, including the indicator 57 carried by the rod 22 and a detecting part 81 carried by the card 80.
  • the detecting part 81 is for example a magnetic sensor, such as a Hall effect sensor, fixed to the card 80, detecting the position of the witness 57, for example metallic or magnetic.
  • this sensor determines the position of the rod 22 relative to the housing 20 along the axis X20, or determines whether the rod 22 is in a given position relative to the housing 20, so as to generate position information as a function of the position of the rod 22 relative to the housing 20.
  • This position information is advantageously a signal in electronic form. This position information thus reflects the position of piece 10.
  • the electronic means 24 also comprise a transmitter 82, that is to say for example a wireless transmitter, such as a radio transmitter comprising an antenna, designed to transmit the position information supplied by the sensor 57 and 81 to a third-party device.
  • the transmitter 82 is advantageously in the form of one or more components fixed on the card 80, and interconnected by printed circuit on the card 80 to the detector part 81.
  • the electronic means 24 can also comprise a processing unit, such as a microprocessor fixed on the card 80, in order to convert the raw signal supplied by the detecting part 81, containing the position information, into a signal usable by the transmitter 82.
  • the batteries 30 and 32 are entirely arranged inside the box 20.
  • the batteries 30 and 32 are used to supply electrical energy to the electronic means 24.
  • the batteries 30 and 32 only supply the card 80, so as to supply in particular the detector part 81 and the transmitter 82.
  • the indicator 57 is passive and does not require power from the batteries 30 and 32.
  • Each battery 30 and 32 is preferably a standard battery, rechargeable or not, for example of the AAAA type.
  • each battery 30 and 32 is generally cylindrical in shape with a circular base, has a diameter of approximately 8.3 mm and a length of 42.5 mm.
  • the batteries 30 and 32 are therefore relatively bulky compared to the size of the case 20 mentioned above.
  • the implementation of a standard battery is nevertheless less expensive than the implementation of a battery specifically developed for the application, and facilitates maintenance by simply replacing the standard battery with another standard battery.
  • each battery 30 and 32 is arranged along the rod 22.
  • Each battery 30 and 32 defines a respective battery axis X30 and X32, due to its cylindrical shape.
  • Each battery 30 and 32 is arranged so that its axis X30 or X32 is parallel to the axis X20.
  • battery 30 is disposed between rod 22 and wall 44.
  • battery 32 is disposed between rod 22 and wall 43.
  • Batteries 30 and 32 are therefore arranged on either side of rod 22, preferably symmetrically with respect to a plane defined by axes X20 and Z20.
  • the batteries are arranged in the same plane parallel to the plane defined by the axes X20 and Y20.
  • batteries 30 and 32 and rod 22 are traversed by axis Y20.
  • the batteries 30 and 32 are arranged at the same height along the axis X20 relative to the housing 20, namely close to or against the wall 45.
  • each battery 30 and 32 is arranged side by side between walls 41 and 42, in the same plane parallel to axes X20 and Y20.
  • each battery 30 and 32 advantageously occupies all the available space connecting wall 41 to wall 42.
  • the batteries 30 and 32 are not in contact with the rod 22 so as not to oppose its translation.
  • the first part 53 of the rod 22 is advantageously chamfered on its two longitudinal edges in order to free up space for the batteries 30 and 32.
  • the battery 30 bears against the wall 44, along the axis Y20. Provision can also be made for battery 32 to rest against wall 43 along axis Y20.
  • the detector 12 advantageously comprises, for each battery 30 and 32, a pair of electrical contacts 90 and 92, fixed entirely inside the casing 20, for example on the wall 41. These contacts 90 and 92 are better visible on the figure 3 and 4 .
  • the two contacts 90 and 92 are distributed along an axis parallel to the longitudinal axis X20.
  • the contact 90 is arranged against the wall 45 and the contact 92 is arranged in the rear direction X52 with respect to the contact 90.
  • Each pair of contacts 90 and 92 receives one of the batteries 30 and 32, said battery 30 or 32 being interposed between the two contacts 90 and 92 so as to be fixed relative to the housing 20 along the longitudinal axis X20.
  • Contacts 90 and 92 are electrically connected to electronic means 24 so that batteries 30 and 32 supply said electronic means 24 via contact pairs 90 and 92.
  • each retaining recess 94 forms a blind concavity, that is to say a depression, made in the thickness of the wall 41 and whose shape is complementary to the cylindrical shape of the battery 30 or 32 concerned.
  • each retaining recess 94 accommodates a lower peripheral portion of one of the batteries 30 or 32.
  • Each recess 94 advantageously has the general shape of a cylinder portion with a circular base, the cylinder axis of which is parallel to the axis X20.
  • Each recess 94 preferably extends over the entire length of the battery 30 or 32 concerned, along the axis X20.
  • the recesses 94 are arranged, along the axis Y20, on either side of the rod 22, preferably symmetrically with respect to the plane defined by the axes X20 and Z20.
  • a plurality of discrete pads, or cradles are provided, formed in relief on the internal surface of the wall 41, to hold the battery concerned according to the Y20 axis.
  • each retaining recess 96 forms a blind concavity, that is to say a depression, formed in the thickness of the wall 42 and whose shape is complementary to the cylindrical shape of the battery 30 or 32 concerned.
  • each retaining recess 94 houses an upper peripheral portion of one of the batteries 30 or 32.
  • Each recess 96 advantageously has the general shape of a cylinder portion with a circular base, the cylinder axis of which is parallel to the axis X20 .
  • Each recess 96 extends over the entire length of the battery 30 or 32 concerned, along the axis X20.
  • the recesses 96 are arranged, along the axis Y20, on either side of the rod 22, preferably symmetrically with respect to the plane defined by the axes X20 and Z20.
  • a plurality of discrete studs, or cradles are provided, formed in relief on the internal surface of the wall 42, to hold the battery concerned according to the Y20 axis.
  • each battery 30 and 32 being received by the recess 94 and the recess 96, each battery 30 and 32 is fixed by the recesses 94 and 96 along the axis Y20 with respect to the housing 20.
  • the batteries 30 and 32 can be arranged as close as possible to the rod 22, since no means for holding the batteries 30 and 32 needs to be interposed between the rod 22 and the batteries 30 and 32.
  • Each holding recess 94 and 96 thus constitutes an element of holding, along the axis Y20, of one of the batteries 30 or 32 with respect to the casing 20, this holding element being formed on the bottom wall 41 or on the upper wall 42.
  • the implementation of the recesses 94 and 96 also makes it possible to integrate part of the size of the batteries 30 and 32 into the thickness of the walls 41 and 42, which constitutes a significant space saving along the axis Y20.
  • each battery 30 and 32 is interposed between the two walls 41 and 42 along the axis Z20, so that each battery 30 and 32 is fixed along the axis Z20 with respect to the housing 20.
  • each battery 30 and 32 is in contact with the respective bottom of the recesses 94 and 96, formed respectively by the walls 41 and 42.
  • only the recesses 94 or only the recesses 96 are provided, the other wall 42 or 42 having on the contrary a flat surface, on which the battery 30 or 32 concerned bears along the axis Z20.
  • each battery being arranged inside the housing 20, along the rod 22, being distributed on either side of the rod 22.
  • the housing of the position detector 12 and the pin 10 are positioned on the edge 6 of the frame 4.
  • the rod is hollow, or comprises a longitudinal notch, so as to receive the axial spring within it.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Length Measuring Devices With Unspecified Measuring Means (AREA)
  • Geophysics And Detection Of Objects (AREA)
  • Battery Mounting, Suspending (AREA)
  • Burglar Alarm Systems (AREA)

Claims (10)

  1. Detektor (12) der Position eines Stifts (10), wobei der Stift (10) von einer Kante (5; 6) getragen wird, die zu einem Flügel (3) oder einer Zarge (4) eines Rahmens (1) gehört, wie z. B. eine Tür, ein Fenster oder ein Fensterladen, der Detektor (12) umfassend:
    - ein Gehäuse (20), das konfiguriert ist, um an der Kante (5; 6) befestigt zu werden;
    - einen Stab (22), umfassend ein erstes Fühlerende (51), das sich außerhalb des Gehäuses (20) erstreckt, und ein inneres Ende (52), das sich innerhalb des Gehäuses (20) erstreckt, wobei das Fühlerende (51) und das innere Ende (52) jeweils auf einer Längsachse (X20) des Gehäuses (20) zentriert sind, wobei der Stab (22) konzipiert ist, um durch Einwirkung des Stifts (10) auf das Fühlerende (51) translatorisch in Bezug auf das Gehäuse (20) entlang der Längsachse (X20) verschoben zu werden;
    - elektronische Einrichtungen (24), die Folgendes umfassen:
    o einen Sensor (57, 81), das abhängig von der Translationsposition des Stabs (22) in Bezug auf das Gehäuse (20) Positionsinformationen erzeugt, und
    o einen Sender (82) der Positionsinformationen,
    dadurch gekennzeichnet, dass:
    - die elektronischen Einrichtungen (24) im Inneren des Gehäuses (20) angeordnet sind; und
    - der Detektor (12) ferner mindestens eine Batterie (30, 32) umfasst, die die elektronischen Einrichtungen (24) mit Strom versorgt und im Inneren des Gehäuses (20) entlang des Stabs (22) angeordnet ist.
  2. Detektor (12) nach Anspruch 1, wobei:
    - das Gehäuse (20) eine Bodenwand (41), eine obere Wand (42) und eine erste Seitenwand (44), die die obere Wand (42) mit der Bodenwand (41) verbindet, umfasst, wobei die Bodenwand (41), die erste Seitenwand (44) und die obere Wand (42) parallel zu der Längsachse (X20) sind;
    - die mindestens eine Batterie (30, 32) eine erste Batterie (30) umfasst, die zwischen der ersten Seitenwand (44) und dem Stab (22) angeordnet ist; und
    - die erste Batterie (30) und der Stab (22) zwischen der Bodenwand (41) und der oberen Wand (42) angeordnet sind.
  3. Detektor (12) nach Anspruch 2, wobei die erste Batterie (30) in Bezug auf das Gehäuse (20) entlang einer Querachse (Y20) des Gehäuses (20), die durch die erste Seitenwand (44), die erste Batterie (30) und den Stab (22) verläuft, durch mindestens ein Halteelement (94, 96), das an der Bodenwand (41) und/oder an der oberen Wand (42) gebildet ist, fixiert gehalten wird.
  4. Detektor (12) nach Anspruch 3, wobei:
    - die erste Batterie (30) eine allgemeine Zylinderform mit kreisförmiger Basis aufweist und parallel zu der Längsachse (X20) angeordnet ist; und
    - jedes Halteelement (94, 96) eine Halterungsaussparung umfasst, die in der Bodenwand (41) und/oder in der oberen Wand (42) vertieft ausgebildet ist, wobei jede Halterungsaussparung:
    o eine allgemeine Form eines Zylinderabschnitts mit kreisförmiger Basis aufweist, die komplementär zu der allgemeinen Form der ersten Batterie (30) ist, und
    o einen Abschnitt der ersten Batterie (30) aufnimmt, sodass die erste Batterie (30) in Bezug auf das Gehäuse (20) entlang der Querachse (Y20) fixiert ist, wenn sie innerhalb des Gehäuses (20) und in der Halterungsaussparung aufgenommen ist.
  5. Detektor (12) nach einem der Ansprüche 2 bis 4, wobei:
    - die mindestens eine Batterie (30, 32) eine zweite Batterie (32) umfasst, die die elektronischen Einrichtungen (24) mit Strom versorgt und im Inneren des Gehäuses (20) entlang des Stabs (22) und zwischen der Bodenwand (41) und der oberen Wand (42) angeordnet ist;
    - das Gehäuse (20) eine zweite Seitenwand (43) umfasst, die parallel zu der Längsachse (X20) ist und die obere Wand (42) mit der Bodenwand (41) verbindet; und die erste Batterie (30), der Stab (22) und die zweite Batterie (32) zwischen der ersten Seitenwand (44) und der zweiten Seitenwand (43) in einer gemeinsamen Ebene angeordnet sind, wobei der Stab (22) zwischen der ersten Batterie (30) und der zweiten Batterie (32) angeordnet ist.
  6. Detektor (12) nach einem der vorherigen Ansprüche, der ferner umfassend für jede Batterie (30, 32) zwei jeweilige elektrische Kontakte (90, 92), die an dem Gehäuse (20) befestigt sind, indem sie parallel zu der Längsachse (X20) verteilt sind, wobei jede Batterie (30, 32) zwischen den zwei elektrischen Kontakten (90, 92) aufgenommen wird, um die jeweilige Batterie (30, 32) in Bezug auf das Gehäuse (20) entlang der Längsachse (X20) zu fixieren.
  7. Detektor (12) nach einem der vorherigen Ansprüche, ferner umfassend eine Axialfeder (70), die innerhalb des Gehäuses (20) angeordnet ist und die:
    - ein bewegliches Ende (71), das entlang der Längsachse (X20) an dem Stab (22) anliegt, und ein festes Ende (72), das entlang der Längsachse (X20) an dem Gehäuse (20) anliegt, umfasst, sodass die Axialfeder (70) eine Kraft auf die Stange (22) in Bezug auf das Gehäuse (20) ausübt, die dazu neigt, das Fühlerende (51) nach außen aus dem Gehäuse (20) zu verschieben, und
    - koaxial zu der Längsachse (X20) angeordnet ist, wobei das bewegliche Ende (71) und das feste Ende (72) zwischen dem Fühlerende (51) und dem inneren Ende (52) angeordnet sind.
  8. Detektor (12) nach Anspruch 7, wobei die Axialfeder (70) eine Schraubenfeder ist, die den Stab (22) umgibt.
  9. Detektor (12) nach einem der Ansprüche 7 bis 8, wobei:
    - der Detektor (12) ferner einen Bügel (60) umfasst, der innerhalb des Gehäuses (20) montiert ist, der Bügel (60) umfassend:
    o eine Führungsöffnung des Stabs (22) bei der Translation, wobei die Führungsöffnung von dem Stab (22) durchquert wird, und
    o eine Auflagefläche (63), die das feste Ende (72) entlang der Längsachse (X20) aufliegend aufnimmt;
    - das Gehäuse (20) Halteklötze (62) für den Bügel (60) umfasst, gegen die die Axialfeder (70) den Bügel (60) entlang der Längsachse (X20) in einer hinteren Längsrichtung (X52) in Anlage bringt, wobei der Bügel (60) gegenüber dem Gehäuse (20) in einer vorderen Längsrichtung (X51), die der hinteren Längsrichtung (X52) entgegengesetzt ist, frei ist.
  10. Rahmen (1), wie z. B. eine Tür, ein Fenster oder ein Fensterladen, umfassend:
    - den Detektor (12) nach einem der vorherigen Ansprüche;
    - die Zarge (4);
    - den Flügel (3), der schwenkbar an der Zarge (4) montiert ist; und
    - den Stift (10), der von der Kante (5; 6) getragen wird, die zu der Zarge (4) oder zu dem Flügel gehört, wobei das Gehäuse (20) an der Kante (5; 6) befestigt ist und der Stift (10) gegen das Fühlerende (51) drückt, sodass die Stange (22) in Translation betätigt wird.
EP20711935.5A 2019-03-19 2020-03-18 Detektor zur erfassung der position eines türrahmenstiftes und türrahmen mit einem solchen detektor Active EP3942129B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1902819A FR3094026B1 (fr) 2019-03-19 2019-03-19 Détecteur de position d’un pion d’huisserie et huisserie équipée d’un tel détecteur
PCT/EP2020/057394 WO2020187967A1 (fr) 2019-03-19 2020-03-18 Détecteur de position d'un pion d'huisserie et huisserie équipée d'un tel détecteur

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EP3942129B1 true EP3942129B1 (de) 2022-12-28

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WO2020187967A1 (fr) 2020-09-24
FR3094026A1 (fr) 2020-09-25
PL3942129T3 (pl) 2023-03-27
EP3942129A1 (de) 2022-01-26
FR3094026B1 (fr) 2021-04-02

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