EP0433301B1 - Ensemble actuateur pour serrure - Google Patents

Ensemble actuateur pour serrure Download PDF

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Publication number
EP0433301B1
EP0433301B1 EP89909183A EP89909183A EP0433301B1 EP 0433301 B1 EP0433301 B1 EP 0433301B1 EP 89909183 A EP89909183 A EP 89909183A EP 89909183 A EP89909183 A EP 89909183A EP 0433301 B1 EP0433301 B1 EP 0433301B1
Authority
EP
European Patent Office
Prior art keywords
lock
existing
casing
assembly
accordance
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP89909183A
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German (de)
English (en)
Other versions
EP0433301A1 (fr
Inventor
Leif Nordqvist
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.)
SCANDIA METRIC AB
Original Assignee
SCANDIA METRIC AB
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
Priority claimed from SE8802898A external-priority patent/SE8802898D0/xx
Priority claimed from SE8803413A external-priority patent/SE8803413D0/xx
Priority claimed from SE8900696A external-priority patent/SE8900696D0/xx
Priority claimed from SE8901053A external-priority patent/SE8901053D0/xx
Application filed by SCANDIA METRIC AB filed Critical SCANDIA METRIC AB
Publication of EP0433301A1 publication Critical patent/EP0433301A1/fr
Application granted granted Critical
Publication of EP0433301B1 publication Critical patent/EP0433301B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • 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
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0657Controlling mechanically-operated bolts by electro-magnetically-operated detents by locking the handle, spindle, follower or the like
    • E05B47/0661Controlling mechanically-operated bolts by electro-magnetically-operated detents by locking the handle, spindle, follower or the like axially, i.e. with an axially engaging blocking element
    • 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
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0657Controlling mechanically-operated bolts by electro-magnetically-operated detents by locking the handle, spindle, follower or the like
    • E05B47/0665Controlling mechanically-operated bolts by electro-magnetically-operated detents by locking the handle, spindle, follower or the like radially
    • E05B47/0669Controlling mechanically-operated bolts by electro-magnetically-operated detents by locking the handle, spindle, follower or the like radially with a pivotally moveable blocking element
    • 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
    • E05B2047/0072Operation
    • E05B2047/0079Bi-stable electromagnet(s), different pulse to lock or unlock
    • 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
    • E05B47/0001Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
    • E05B47/0002Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof with electromagnets
    • E05B47/0003Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof with electromagnets having a movable core
    • E05B47/0004Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof with electromagnets having a movable core said core being linearly movable
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/04Locks or fastenings with special structural characteristics for alternative use on the right-hand or left-hand side of wings

Definitions

  • This invention relates to a lock actuator assembly and a housing therefore, of such a kind where the use of a keyed information, e.g. a magnetic card, activates a solenoid, by means of which activation the lock assembly turns to a released state.
  • a keyed information e.g. a magnetic card
  • the assembly is used as a supplement on doors having existing locks which necessitate the use of a key, in order to open the door from the outside.
  • the main object of the invention is to provide a lock for keyed information of the above described type, which may be easily and cheaply, whilst still being securely, installed to already existing locks.
  • a lock assembly and casing for the opening of doors by means of keyed information, comprising; a torque transmitting means, for transmitting force from one end of said casing to the other; a movable interacting means, which in its activated position allows said torque transmitting means to be rotated; a solenoid for moving said interacting means when activated; a power supply for supplying the solenoid in connection with the activation thereof: and means for the input of keyed information by means of which said activation is initiated, if authorized, wherein, said torque transmitting means is adapted to be connected to the torque shaft of an existing lock mechanism; the casing has a set of mounting means which are positioned in order to match the preexisting attachment holes of the existing lock ; and that the inner handle of the existing lock mechanism, can be rotated independently of the position of said interacting means.
  • the invention also relates to a method for supplementing an existing lock with a casing in accordance with the above, as is defined in claim 8, and furthermore a door having such a casing, as is defined in claim 10.
  • Fig 3 shows a door 8 which has an ordinary lock assembly 9 mounted thereon, i.e. comprising an inner and outer handle 13, 14 as well as at least one lock plunger 10 which interacts with a securing plate 11.
  • an ordinary lock assembly 9 mounted thereon, i.e. comprising an inner and outer handle 13, 14 as well as at least one lock plunger 10 which interacts with a securing plate 11.
  • Fig 4 shows a housing 12, connected to a shaft 28 in accordance with the invention. Accordingly the housing has arranged thereto the handle 14 of the existing lock assembly 9 (not shown), which is attached thereto by means of special mounting means (i.e a ring 14'), cages and screws from the inside.
  • the existing screws from the existing lock assembly are preferably used. One has only, to provide for new lengthy adapted cages passing through the ring 14', into which the screws are to be threaded.
  • the housing 12 has a rear plate 18. It is, however, possible to let the casing be open at the back, since this side when mounted is facing the door. Since most of existing lock assemblies also have a special cylinder mechanism 16 (dead bolt lock) this plate 18 extends further than the casing, which extending part 18 is adapted for the fitting of the existing cylinder device 16 (i.e. holes). For the mounting of this cylinder device 16 there is no need for specially adapted cages since the plate 18 is very thin.
  • fig 4 shows one embodiment of a keyboard 1.
  • the lock mechanism When tapping a special combination on this keyboard the lock mechanism will turn to its released state and it is possible to open the door.
  • Fig 5 is a cross-section through a casing of fig 4, which shows one mode of example of a lock mechanism in accordance with the invention.
  • the casing 12 is attached to a door 8 comprising an existing lock 9 the casing 12 comprising its locking mechanism is attached to the outside of the door.
  • the first torque transmitting member 27 (hereinafter called first torquer) is mounted to the shaft 28 of the existing lock 9.
  • This shaft 28 has a square cross-section as has the cavity of said first torquer 27.
  • the second torquer is interconnected with the outer handle 14 by means of shaft a 25 having the same cross-section as the shaft 28 of the existing lock 9.
  • a torque transmitting device 34, 35 which can transmit torque from the outer handle 14 to the shaft 28 of the existing lock. This is only possible in the direction indicated by the arrow 36, since a position pin 33 hinders rotation in the opposite direction.
  • Helical springs 31, 32 provide for that the first and second torquer 26, 27 normally will be positioned as shown in fig 6, in the rest position.
  • the above described torque transmitting device can be blocked by a retaining/releasing mechanism.
  • a flattened surface of the second torquer 26 interacts with a first retaining arm 24 which is pivotable about an axis 23 and spring urged 30.
  • the first retaining arm 24 interacts with a second retaining arm 22, which also is pivotable about an axis 21 and spring urged 29.
  • a plunger 20 (see fig 8) of a solenoid 19 pushes, when activated via power from the battery 17, the second retaining arm 22 away from its blocking position into a second position where it is retained by a toggle 37.
  • Fig 10 shows an exploded view of the best mode of example.
  • This view shows that the lock mechanism should be mounted between two plates 101, 201.
  • These plates are arranged with a number of attachments holes 106, 206, for attaching the casing 12 to the door 8. Further these holes are symetrically positioned in order to provide for the possibility to mount the housing on doors, which are hinged on the left hand side as well as doors hinged on the right hand side.
  • these shown plates 101, 201 are prepared for being mounted onto doors of which the outer handle 14 and, its clamping ring 14, is fitted by means of two diametrically placed screws and cages (not shown). It is of course possible to prepare these plates with an even larger number of such attachment holes 106, 206, so that it can be fitted to different kinds of existing locks.
  • the cages which are to be positioned in the attachment holes, 106, 206 have to be adapted lengthwise to the height of the casing 12, so that the threads of the existing screws can co-operate with the threads of the exchanged longer casings (not shown).
  • the torque transmitting device 25, 26, 27 and the blocking/releasing-mechanism is fitted between the plates 101, 201 at a certain distance by means of a appropriate spacers 805, 508. Two of the spacers 508 are used to support the pivoting retaining arm 24.
  • the torque transmitting device 25, 26, 27 is positioned above the spacers 508.
  • the first torquer 27 has a stub shaft 270 for which there is a corresponding cavity 260 in the second torquer 26.
  • First torquer 27 has at its rear end a square cavity which is adapted to fit on the end of the existing shaft 28 of the lock 9.
  • the first torquer 27 has a protruding part 503 threaded thereto, which part has the function of a stop position pin.
  • This protruding part 503, which is movable together with the first torquer 27, interacts with a positioning element 33 which is attached to the rear plate 101. As is evident from the figures this positioning element 33 is movable between two predetermined holes 107, in order to provide for the adaption to left hinged doors as well as right hinged doors.
  • the second torquer 26 is interconnected with the outer shaft 25 by means of a security release device, here a ball 505, a resilient element 506 and a screw 504.
  • the ball 505 co-operates with an indentation in the shaft 25.
  • the second torquer 26 also has two holes 263, into one of which a force transmitting part 34 is positioned by means of threads. There are two such holes 263 in order to provide for the possibility to use the mechanism on right hinged doors as well as left hinged doors.
  • this force transmitting part 34 interacts with transversely projecting stop surfaces 35 which radially delimit a recess 66 of the first torquer 27. Also the number of these recesses are two, so that the mechanism can be fitted to either right or left hinged doors. Since the recesses 66 are provided for in the first torquer 27 it is always possible to rotate the inner handle and therewith this first torquer 27, without affecting the second torquer 26.
  • the already mentioned retaining arm 24 is pivotally mounted about an axis 509.
  • the upper end surface 241 of the retaining arm 24 interacts with a substantially flat surface 261 of the second torquer 26.
  • this surface 261 is arranged parallel to, and non coaxial in relation to, the axis of rotation of the torquers 26, 27.
  • the upper surface 241 of the retaining arm 24 prevents the second torquer 26 from rotation when it is in its retaining position, i.e. a position where the concerned surfaces 241, 261 almost are contacting each other.
  • the retaining arm 24 is urged to this retaining position by an helical spring 512.
  • first torquer 27 is arranged with a downwardly directed surface 271, which is also non coaxial in relation to the axis of the torquer.
  • This surface 271 is positioned more distanced from said axis than the surface 261 of the second torquer 26. This provides for a protruding shoulder against which the retaining arm 24 can rest in its retaining position.
  • the second torquer 26 also has a recess which at one end is partly limited by an outwardly directed axial surface 262. This axially directed surface 262 prevents the retaining arm 24 from returning to its retaining position before the second torquer 26 has returned to its rest position.
  • this shows that the retaining arm 24 is moved to its non-retaining position by means of a solenoid 19.
  • This solenoid 19 has a plunger 20 which acts on a lever 242 of the retaining arm 24.
  • the solenoid 19 is attached to the inner plate 101 by means of screws.
  • the solenoid 19 is effected by a power impulse, being relatively short (e.g. 20 millisec)
  • the plunger 20 moves upwardly and pushes the lever 242 so that retaining arm 24 pivots outwardly to its releasing position.
  • this mode has exchanged the mechanical retaining device 37, fig 6, for a permanent magnet. By doing so the number of movable parts can be even more reduced.
  • This kind of solenoids are known, so called bistable electromagnets.
  • the force with which the magnet retains the plunger 20 in its extended position has to be relatively small, so that the plunger can be reset either in a mechanical manner or by a pulse of current of reversed polarity to the solenoid 19 which can be of either the pull or push type.
  • the resetting action of the best mode is provided for in a mechanical manner by the first torquer 27.
  • the transition area 273 between the substantially flat surface 271 and the cylindrical surface of the first torquer 27, forms a cam surface 273.
  • the mechanism also includes some kind of time based resetting device, by means of which the plunger 20 is reset by a pulse of current of reversed polarity after a predetermined time, if the handle has not been turned.
  • a keyed information e.g. via a magnetic card or a keyboard 1, confirms that the person is authorized to pass the door.
  • a short pulse of current from the battery 17 is supplied to the solenoid 19.
  • the plunger 20 moves upwardly and its top part 191 contacts and pushes the lever 242 of the retaining arm 24.
  • the plunger is securely held by a permanent magnet, within the bistable solenoid, and the retaining arm 24 is put in its releasing position, after pivoting about the shaft 509.
  • This rotation will be transferred to the second torquer 26 via a shaft 25, which shaft has a rectangular cross section and is provided with an indication of fracture 145.
  • the force transmitting part 34, of the second torquer 26 interacts with radially directed stop surface 35 of the first torquer 27. Accordingly also the inner torquer 27 will be rotated and therefore also the existing lock mechanism 9 and its plunger 10.
  • the torquers are urged back to this neutral position by means of existing springs in the existing lock 9. Sometimes it is necessary to supplement this spring force, by a stronger spring or an additional spring preferably acting on the first torquer 27.
  • the stop in 503 of the first torquer 27 and the positioning element 33 defines this neutral position.
  • the second torquer 26 is urged back into this position by means of the force transmitting part 34 and stop surface 35 of the first torquer 27.
  • the force transmitting part 34 has to be moved from hole 263 on the left hand side to the hole on the right hand side of the second torquer 26 (see fig 5).
  • the positioning element 33 also has to be moved and in this case from a hole 107 on the right hand side to a hole on the left hand side. Accordingly it is only necessary to move two parts 33, 34 in order to rearrange the mechanism to be adapted to a door hinged on the right hand side instead of a left hinged.
  • the keyboard has an outer panel 5 comprising a number of recesses 6. Each recess 6 has a button 2 lodged therein, in this case ball shaped elements 4.
  • Fig 16 shows a different mode of example where the bowls 4 has been exchanged for cylindrical elements 4.
  • the envelope surface of this elements 4 can also be convex.
  • Fig 17 shows a cross section of keyboard as described above.
  • the recesses 6 are preferably tapered.
  • the spherically shaped element 4 is kept in its recess 6 by means of a bottom plate 7.
  • the bottom plate 7 comprises a sensor device 3 which is placed at the area where the surface of the button 2 contacts the bottom plate 7.
  • the sensor elements can be of different well known kind, such as electronic contact elements, which sense if pressure is supplied to a button 2.
  • the bottom surface 7 is preferably arranged in order to act on the buttons 2 with a resilient force which is directed outwardly. This can be achieved in different ways i e.g. by using springs underneath said surface 7, by using a resilient material (foamlike), etc. In some cases it is appropriate to arrange the counter resisting force to be discontinuous.
  • the recesses 6 are adopted to match the form of the element to which it is going to be used, i.e. round if a ball is used.
  • the contact surface of recesses 6, however, does not have to be continuous.
  • buttons 2 can always rotate when they are touched upon. In other words no grippy contact between the surfaces of the elements 2, 4 and their surroundings contact surfaces. Furthermore the material of this element should be of long lasting type and preferably relatively cheap. It has been found that the active parts in bearings, rolls and balls, are perfectly suited for this purpose.
  • buttons 2 When such a keyboard is used a person applies pressure to the (touched) buttons 2 and they will rotate and accordingly be positioned in another state. Furthermore if someone slides over the keyboard with his hand's palm this will make all elements rotate. This rotation, generally about an axis parallel with the plane of the keyboard, of the elements 4 result in a different part of the surface of the element 4 being exposed through the recess 6. Accordingly it is not only one surface that will be touched upon and polished by the actuation thereof, as is the case with the commonly used keyboards. This is a major disadvantage with commonly used keyboard because this makes it possible to deduce which buttons are used for the keyed information.
  • the mechanism is preferably arranged with a power supply sensing means, which by means of for example a flashing lamp indicates that the battery has to be exchanged. Further, it is advantagable to have an additional power source, e.g. a battery having less capacity. Such a battery can for example be activated by pressing a special button (or buttons) on the keyboard, whereafter the tapping of the keyed combination would release the lock.
  • stop pin 503. it would be possible to have this stop pin 503 arranged to a movable annulus which then could be positioned differently on the first torquer 27. Such an arrangement would make it possible to only have one hole 107 for the positioning element 33.
  • the cavity 66 forms the force transmitting end surfaces 35. It would be possible to movably attach some means on the first torquer 27 which means would carry those end surfaces 35.
  • the outer end surface of the second torquer 26 would not comprise any recesses to form the end surfaces 262, but would directly form these end surfaces 262. This, however, is not always preferable since the stub shaft 270 as well as the attachment of the intermediate shaft 25, require that the second torquer 26 has a certain length.
  • lock mechanism has been exemplified when used within a casing in accordance with the invention. It is obvious, however, that this kind of mechanism also can be directly installed on a door e.g. without being mounted to preexisting lock.
  • the sensors 3 used together with the preferred keyboard 1, can be of any kind well known to the skilled man within this field, e.g. inductive, capacitive, electronic, electrical etc.
  • An optional way of mounting the casing to a door having a preexisting lock assembly 9, would be to pre-install an outer handle, either a new one or the existing one, on the outwardly projecting shaft 25 of the casing 12. Such a method would exclude the necessity of through holes 106, 206 through the casing 12, but would require an arrangement of matching attachment means on the backside of the casing 12.

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  • Lock And Its Accessories (AREA)

Abstract

La présente invention se rapporte à un ensemble serrure et à un boîtier pour l'ouverture de portes au moyen d'informations codées, comprenant des organes transmetteurs de couple (26, 27), des organes de blocage (22, 24), des organes de libération (19, 20), une source de courant servant à alimenter les organes de libération (19) et l'organe (1) servant à l'introduction des informations codées, les organes transmetteurs de couple (26, 27) étant destinés à être connectés à l'arbre de torsion (28) d'un mécanisme de serrure existant. Le boîtier comporte un groupe de trous traversants (206, 107) qui sont positionnés de façon à correspondre aux trous de fixation préexistants de la serrure existante (9) et la poignée intérieure (13) du mécanisme de serrure existant (9) peut être utilisée indépendamment de la position du mécanisme de blocage (22, 24) contenu dans le boîtier (12).

Claims (10)

  1. Ensemble serrure et boîtier, pour ouvrir des portes au moyen d'une information introduite par clavier, comprenant :
    des moyens (26, 27) de transmission du couple, destinés à transmettre une force d'une extrémité dudit boîtier (12) à l'autre ;
    des moyens d'interaction mobiles qui, dans leur position activée, permettent auxdits moyens (26, 27) de transmission du couple de tourner ;
    un électro-aimant (19, 20) destiné à déplacer lesdits moyens d'interaction (22, 24) lorsqu'il est activé ;
    une alimentation (17), destinée à alimenter l'électro-aimant (19) dans le cas d'activation de celui-ci ;
    et des moyens (1) servant à entrer l'information introduite par clavier au moyen desquels ladite activation est déclenchée, si elle est autorisée,
    caractérisé en ce que lesdits moyens (26, 27) de transmission du couple sont adaptés pour être reliés à l'arbre (28) d'entraînement d'un mécanisme de la serrure existante ;
    le boîtier possède un jeu de moyens de montage qui sont positionnés pour s'accoupler à des trous de fixation pré-existants de la serrure existante (9) ;
    et en ce que la poignée intérieure (13) du mécanisme de la serrure existante (9) peut être tournée indépendamment de la position desdits moyens d'interaction.
  2. Ensemble selon la revendication 1,
    caractérisé en ce que lesdits moyens de montage sont des trous traversants (206, 107).
  3. Ensemble selon la revendication 1,
    caractérisé en ce que lesdits moyens de transmission du couple comprennent des premier et deuxième éléments (26, 27) de transmission du couple qui sont sensiblement immobilisés dans la direction axiale.
  4. Ensemble selon la revendication 2,
    caractérisé en ce que lesdits moyens d'interaction sont un mécanisme de blocage (24) qui, dans sa position non activée, bloque directement un deuxième élément (26) de transmission du couple appartenant auxdits moyens (26, 27) de transmission du couple, de sorte que la poignée extérieure (14) ne peut pas être tournée dans cette position.
  5. Ensemble selon la revendication 1,
    caractérisé en ce que lesdits moyens (26, 27) de transmission du couple comprennent des moyens à l'aide desquels il est possible d'utiliser le mécanisme sur des portes à charnières à droite aussi bien que sur des portes à charnières à gauche.
  6. Ensemble selon les revendications 2 et 4,
    caractérisé en ce que les moyens (33, 35) servant à transmettre le couple entre les transmetteurs de couple (26, 27) comprennent au moins une partie qui est fixée de façon démontable à l'un des transmetteurs de couple (26, 27) et des moyens de positionnement (33, 503) qui définissent la position neutre desdits transmetteurs de couple (26, 27), lesdits moyens de positionnement (33, 503) comprenant au moins un élément fixé de façon démontable.
  7. Ensemble selon la revendication 1,
    caractérisé en ce que lesdits moyens pour l'entrée de ladite information introduite par clavier est un clavier (1) possédant des boutons (2) dont chacun est disposé mobile en rotation autour d'un axe sensiblement parallèle à ce plan, qui contient les bords interactifs de la cavité (26) dans laquelle il est logé.
  8. Procédé pour compléter une serrure (9) existante avec un ensemble de serrure selon la revendication 1,
    caractérisé par les phases suivantes consistant à :
    (A) dévisser les vis de fixation des poignées (13, 14) de la serrure existante (9),
    (B) déplacer la poignée extérieure (14), avec son élément support (14'), de manière que l'extrémité extérieure de l'arbre existant (28) soit dégagée,
    (C) monter le boîtier (12) à l'extérieur de la porte (8) de manière que la partie intérieure des moyens (26, 27) de transmission du couple soit reliée à ladite extrémité extérieure dudit arbre existant (28),
    (D) fixer le boîtier (12) par l'insertion de cages de grande longueur, adaptées, à travers des trous traversants (107, 206) pré-existants, premièrement à travers les trous de l'élément support (14') de la poignée (14), deuxièmement à travers les trous (106, 206) du boîtier (12) et, finalement à travers les trous de la partie restante de la serrure existante (9), où elles sont en conséquence assemblées avec des vis partant de l'intérieur de la porte (8), de préférence les vis existantes provenant de la serrure existante (9).
  9. Procédé selon la revendication 8, dans lequel l'ensemble de la serrure existante (9) comprend aussi, à proximité de cet ensemble, un ensemble de serrure additionnel (16), caractérisé par les phases suivantes consistant à :
    (E) désassembler la serrure additionnelle (16) et enlever sa partie extérieure avant l'exécution de la phase (C),
    (F) réassembler la serrure additionnelle (16) sur une plaque saillante (18) du boîtier (12), de préférence à l'aide de vis existantes.
  10. Porte (8), caractérisée en ce qu'elle comporte un ensemble serrure selon la revendication 1, monté sur elle.
EP89909183A 1988-08-15 1989-08-14 Ensemble actuateur pour serrure Expired - Lifetime EP0433301B1 (fr)

Applications Claiming Priority (9)

Application Number Priority Date Filing Date Title
SE8802898A SE8802898D0 (sv) 1988-08-15 1988-08-15 Anordning for kodstyrd lasoppning vid dorrlas
SE8802898 1988-08-15
SE8803413A SE8803413D0 (sv) 1988-08-15 1988-09-27 Anordning for kodstyrd lasoppning vid dorrlas
SE8803413 1988-09-27
SE8900696A SE8900696D0 (sv) 1989-03-01 1989-03-01 Manoeverpanel
SE8900696 1989-03-01
SE8901053 1989-03-28
SE8901053A SE8901053D0 (sv) 1989-03-28 1989-03-28 Spaerrmekanism
PCT/EP1989/000966 WO1990001603A2 (fr) 1988-08-15 1989-08-14 Ensemble actuateur pour serrure

Publications (2)

Publication Number Publication Date
EP0433301A1 EP0433301A1 (fr) 1991-06-26
EP0433301B1 true EP0433301B1 (fr) 1994-06-15

Family

ID=27484691

Family Applications (1)

Application Number Title Priority Date Filing Date
EP89909183A Expired - Lifetime EP0433301B1 (fr) 1988-08-15 1989-08-14 Ensemble actuateur pour serrure

Country Status (4)

Country Link
EP (1) EP0433301B1 (fr)
DE (1) DE68916251D1 (fr)
DK (1) DK25491D0 (fr)
WO (1) WO1990001603A2 (fr)

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DE4012322A1 (de) * 1990-04-18 1991-10-24 Mauer Gmbh Elektrisch ansteuerbares tuerschloss
FR2686115B1 (fr) * 1992-01-14 1995-12-01 Unitechniques Serrure de surete.
DE4433333A1 (de) * 1993-09-20 1995-03-23 Harrow Products Inc Nachrüstbares Hilfsverriegelungssystem für ein Einsteckschloß
DE19529039C2 (de) * 1995-08-08 1999-06-10 Juergen Blask Haustür-Sicherheits- und Öffnungssystem im Türschild
JPH09217528A (ja) * 1995-12-06 1997-08-19 Seiko Instr Inc 電子キー
NO313761B1 (no) * 1996-06-13 2002-11-25 Vingcard As Anordning ved lås, spesielt en elektromagnetisk låseenhet
DE10247394A1 (de) * 2002-10-07 2004-06-17 Coreta Gmbh Schaltverfahren und Schaltanordnung für ein Getriebe
ITMI20120206U1 (it) * 2012-05-30 2013-12-01 Ivan E Dispositivo di sicurezza, particolarmente per maniglie di porte, di finestre, di porte finestre e simili.
EP4310276A1 (fr) * 2022-07-20 2024-01-24 Locinox Verrou de sécurité pour un élément de fermeture à charnière

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1447852A (en) * 1920-07-08 1923-03-06 Huttemann Wilhelm Door lock
JPS61113975A (ja) * 1984-11-08 1986-05-31 株式会社アルファ ドア用電子錠

Also Published As

Publication number Publication date
DE68916251D1 (de) 1994-07-21
DK25491A (da) 1991-02-14
EP0433301A1 (fr) 1991-06-26
DK25491D0 (da) 1991-02-14
WO1990001603A3 (fr) 1990-03-22
WO1990001603A2 (fr) 1990-02-22

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