EP3791034A1 - Dispositif de fermeture comportant un dispositif de protection contre la manipulation et clé - Google Patents

Dispositif de fermeture comportant un dispositif de protection contre la manipulation et clé

Info

Publication number
EP3791034A1
EP3791034A1 EP19722854.7A EP19722854A EP3791034A1 EP 3791034 A1 EP3791034 A1 EP 3791034A1 EP 19722854 A EP19722854 A EP 19722854A EP 3791034 A1 EP3791034 A1 EP 3791034A1
Authority
EP
European Patent Office
Prior art keywords
key
pin
protective
channel
rch
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
EP19722854.7A
Other languages
German (de)
English (en)
Other versions
EP3791034B1 (fr
Inventor
Michael Riesel
Christian Wittmann
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.)
EVVA Sicherheitstechnologie GmbH
Original Assignee
EVVA Sicherheitstechnologie GmbH
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 EVVA Sicherheitstechnologie GmbH filed Critical EVVA Sicherheitstechnologie GmbH
Priority to SI201930259T priority Critical patent/SI3791034T1/sl
Priority to HRP20220894TT priority patent/HRP20220894T1/hr
Priority to RS20220559A priority patent/RS63318B1/sr
Publication of EP3791034A1 publication Critical patent/EP3791034A1/fr
Application granted granted Critical
Publication of EP3791034B1 publication Critical patent/EP3791034B1/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
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/0038Operating or controlling locks or other fastening devices by electric or magnetic means using permanent magnets
    • E05B47/0044Cylinder locks with magnetic tumblers
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B27/00Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in

Definitions

  • the invention relates to a locking device, comprising a lock cylinder, a key and a tamper protection device, wherein the lock cylinder has a cylinder core mounted in a housing, wherein between the housing and the cylinder core formed a parting line, according to the preamble of claim 1. Furthermore, the invention relates to a key, in particular for use in a locking device according to the invention.
  • a key is to be specified for a safety rotary cylinder, in which the copying of a key equipped with it is made more difficult by a movable pusher and the user is given increased security.
  • an object of the invention to provide an advanced locking device having a lock cylinder, a key and a tamper protection device. Furthermore, it is an object of the invention to provide a further developed key, which is particularly suitable for use in an advanced locking device.
  • the object is achieved in connection with a locking device comprising a locking cylinder, a key and a tamper protection device according to the feature combination according to claim 1.
  • the solution is based on the subject matter of claim 13 in connection with a key.
  • the subclaims include at least expedient refinements and developments.
  • a closing device comprises a closing cylinder, a key and a manipulation protection device, wherein the locking cylinder has a cylinder core mounted in a housing, wherein a parting line is formed between the housing and the cylinder core.
  • the parting line is formed or has such dimensions that the cylinder core can be rotated in an opening operation in the housing. As a parting line is therefore regularly no oversized large gap to understand. Dividing joints are often referred to as parting planes.
  • the anti-tamper protection device has at least one protective pin, which is displaceably mounted in a protective pin channel, wherein the protective pin channel has a housing section and a cylinder core section.
  • the protective pin In a blocking position of the closing device, the protective pin is arranged at least in sections in the housing section of the protective pin channel such that the parting line is blocked.
  • the guard pin due to a key inserted in the cylinder core and at least one formed on or in the key shank of the key sels magnetic element completely in the cylinder core - section of the guard pin channel displaced and the parting line releasable.
  • the blocking position of the closing device can also be a closed position of the closing device.
  • the manipulation protection device comprises the at least one protective pin, the at least one protective pin channel and at least one magnetic element which is formed on the key shaft of the key.
  • the protective pin channel is preferably designed such that it is at least partially formed in the cylinder core and at least partially in the housing.
  • the guard pin channel thus has a housing portion and a cylinder core portion.
  • the housing portion and the cylinder core portion are aligned with each other such that a continuous guard pin channel is formed.
  • the housing portion and the cylinder portion are preferably arranged in alignment with each other, so that the guard pin channel is formed.
  • the parting line is formed between the housing section and the cylinder core section.
  • the protective pin In a blocking position of the closing device, the protective pin is located at least in sections in the housing section of the protective pin channel. In addition, in the blocking position, the protective pin is additionally formed in the cylinder core section, so that the protective pin also extends over the parting line and blocks it.
  • the guard pin in the blocking position is largely formed in the cylinder core section.
  • the cylinder core portion of the guard pin channel is preferably larger, in particular longer, than the housing portion of the guard pin channel.
  • the blocking position of the closing device on the one hand relates to the completely closed state of the closing device, ie the state of a locked lock.
  • the blocking position can also be assumed, provided the key has not yet been completely inserted into the keyway of the lock cylinder. Due to the inventive design of the locking device, an effective anti-tamper protection device is provided, so that the safety of a locking device can be increased.
  • the protective pin has, for example, a round cross-section.
  • the protective pin is made of a steel.
  • the at least one protective pin is made of a hardened steel.
  • the protective pin consists of essentially two basic sections.
  • the first section is preferably the section of the protective pin which is formed in a blocking position of the closing device in the housing section.
  • a further or second section of the protective pin is located in the blocking position of the closing device substantially in the cylinder core section.
  • the second portion may have a larger cross-section than the first portion of the guard pin.
  • a magnetic element of the guard pin is formed in the second portion of the guard pin.
  • the protective pin has a shape such that a positional guidance of the protective pin is made possible due to the shape of the protective pin and the complementary shape of the protective pin channel.
  • the protective pin can be displaced.
  • the protective pin is moved in the direction of the magnetic element or in other words pulled.
  • the protective pin is completely pulled into the cylinder core, so that the parting line is no longer blocked and therefore released.
  • the cylinder core portion is closed in the direction of a keyway of the cylinder core.
  • the cylinder core section of the protective pin channel is open in the direction of the housing section, however, so that the protective pin is correspondingly movable.
  • the guard pin channel is thus preferably not accessible from the key channel. A direct manipulation of the at least one protective pin is thus not possible starting from the key channel. This leads to additional manipulation protection.
  • the at least two protective pins preferably have the same magnetic polarity. It is possible that the at least two protection pins each have a magnetic element.
  • the protective pins themselves are formed as a magnetic element.
  • the two guard pins preferably have a magnetic monopole or are formed as a magnetic monopole.
  • the formation of at least two protection pins having a same magnetic polarity has the advantage that the two protective pins repel each other.
  • the guard pins are thus held in the blocking position due to the magnetic repulsion force in the housing portion of the respective guard pin channel. It is possible that the magnetic repulsive force acts as an additional force to maintain the guard pins in the housing portion of the guard pin channel.
  • the at least two guard pins are formed as a north pole and / or have a magnet with a north pole.
  • a first guard pin In forming two guard pins, it is possible for a first guard pin to be biased by a spring, the bias acting toward the housing portion of the guard post passage.
  • the spring can be introduced into the cylinder core section of the protective pin channel.
  • the spring can rest on a section of the cylinder core that closes the cylinder core section of the protective pin channel.
  • the spring is formed in an upper guard pin channel.
  • guard pin channel which is preferably the lower guard pin channel
  • no spring must be introduced because due to the orientation of this guard pin channel down, the corresponding guard pin due to the weight down, and thus in the direction of the housing portion of the guard pin channel slides.
  • a key in particular a reversible key, which cooperates in particular with a lock cylinder, the at least two protection pins with the same has magnetic polarity, has at least two magnetic elements having a same magnetic polarity.
  • the magnetic elements of the key in particular of the reversible key, preferably have a polarity opposite to the magnetic polarity of the protective pins.
  • the guard pins preferably have a north pole or are a north pole.
  • the magnetic elements of the key are preferably each formed as a south pole.
  • the two protection pins are pulled in the direction of the magnetic elements, which have a second polarity, due to the first magnetic polarity.
  • the guard pins are both pulled in the direction of the key, in particular in the direction of the reversible key, so that the parting line is releasable.
  • the magnetic elements of the key are preferably designed as a magnetic monopole.
  • the magnetic elements of the key in particular the reversible wrench, formed as a south pole.
  • the at least one magnetic element may be formed on an end of the key shaft facing a key head.
  • the magnetic element may be formed at one end of the key shaft facing in the direction of the key head or key grain.
  • the protective pin can only be moved into the cylinder core after the almost complete insertion of the key shaft into the key channel.
  • the guard pin does not cooperate with a coding element of the key.
  • the at least one protective pin is not an additional coding of a closing device.
  • the protective pin is used exclusively for manipulation protection, in particular the drill protection and / or pull protection and / or a percussion protection and / or a picking protection.
  • the at least one protective pin is not a coding element.
  • Known keys have mechanical and / or electronic codes in the form of indentations and / or hollows and / or electronic elements. The profile of the key itself also serves as coding.
  • these codes are scanned. If the profile and the codes of the key and the profiling of the lock cylinder match, the key can be inserted. Also fit the cuts of the key, coding pins arrange themselves in the lock cylinder so that the core of the lock cylinder can be rotated. In summary, codings are formed in known closing devices if notches or drill bits are arranged at different depths and / or at different locations on the key.
  • the closing device according to the invention can have further coding elements.
  • the guard pins described are not to be understood as part of such encoding devices.
  • the cylinder core is formed with a protective pin as described, which forms a pull-protection element.
  • This pull protection element forms a positive connection between the cylinder core and the cylinder housing.
  • the positive connection can not be overcome with the help of mechanical aids, since the at least one protective pin is located in a keyway from the view, closed guard pin channel. Direct contact with the pull protection element (protective pin) is prevented. Since the pull-protection element (protective pin) can continue to be designed as a drill-on protection, further possible manipulation is made more difficult.
  • the key of the locking device can be a cylinder key or a pointed key or a reversible key.
  • the at least one magnetic element is formed in a coding-free, in particular bore-free and / or recess-free section of the key shaft.
  • the magnetic element is in formed such a portion of the key shaft, which has no bore and / or no recess.
  • the at least one magnetic element is preferably to be formed outside notches or grooves for key codes. Such a design of the at least one magnetic element in a coding-free section causes no positive connection between the key shaft and the protective pin and thus the key is still axially movable.
  • At least one magnetic element is formed on each of the two key broad sides of the key shaft.
  • at least two magnetic elements are arranged at equal distances to the key tip and / or the back of the key.
  • At least two magnetic elements are arranged at different distances to the key tip and / or the back of the key.
  • At least one magnetic element is formed in the spine.
  • at least one first magnetic element may be formed in the spine and at least one second magnetic element may be formed on the opposite side of the key shaft from the spine. Due to such a variable arrangement of at least one magnetic element, the protective pin can likewise be mounted in variably oriented protective pin channels. If at least one magnetic element is present in the key is formed back, it is preferably provided that the protective pin extends perpendicular to the longitudinal extension of the key shaft.
  • the at least one protective pin can be mounted biased in the protective pin channel.
  • the guard pin is biased so that the guard pin is pressed in a blocking position of the locking device in the direction of the housing portion of the guard pin channel.
  • the at least one protective pin in the protective-pin channel can be biased by means of a spring. Due to such a biasing force of manipulation protection, in particular the Bohrsch protection and / or pull protection is increased.
  • the at least one protective pin may be formed in a cylinder cover and / or a keyway opening facing side of the lock cylinder. If the at least one protective pin is formed so close to the cylinder cover or on the escutcheon or so close to the keyway opening, it is possible that the protective pin can be actuated only after almost complete insertion of the key shaft in the keyway and then can be pulled in the direction of the cylinder core portion of the protective pin channel.
  • the axis of the protective pin channel is formed parallel to the longitudinal extension of the key channel opening.
  • the axis of the protective pin channel is to be understood as the longitudinal axis of the protective pin channel.
  • the longitudinal extent of the keyway opening is to be understood as the longest extent of the keyway opening cross section.
  • the axis of the protective pin channel and the longitudinal extension of the key channel opening are thus preferably formed parallel to each other.
  • the axis of the protective pin channel is preferably formed perpendicular to the longitudinal axis of the key channel.
  • the longitudinal axis of the key channel is to be understood as the axis of the key channel which predefines the direction of movement or insertion direction of the key shaft.
  • the axis of the protective pin channel can be perpendicular, in particular at right angles, to the longitudinal extent of the key channel opening and perpendicular to the longitudinal axis of the key channel. forms his.
  • the at least one magnetic element is formed in or on the key back of the key shaft.
  • the anti-tamper protection device has two protective pins which are each slidably mounted in a protective pin channel.
  • the two protective pin channels are preferably formed parallel to one another.
  • the two protective pin channels are formed parallel to each other and substantially perpendicular to the longitudinal axis of the key channel.
  • the two protective pin channels are formed parallel to one another and substantially mirror-symmetrically to the longitudinal extension of the key channel opening.
  • such an arrangement of the protective pin channels is to be understood as essentially mirror-symmetrical which deviates at most slightly from the parallel arrangement with respect to one another and / or with respect to the distance to a mirror axis.
  • the at least one protective pin can only be actuated when the key shaft is almost completely inserted into the key channel, it can be ensured that the magnetic elements can only act if a large number of standardized decoding has been carried out previously.
  • the key of the locking device according to the invention has known code elements that initially cause, for example, the movement of housing pins, so that the key shank can be inserted piece by piece into the keyway and virtually upon complete insertion of the key shank an actuation of the protective pin and Thus, an unlocking of the parting line can be effected.
  • Another, in particular subsidiary, aspect of the invention relates to a key, in particular for use in an inventive
  • Closing device is used.
  • the key is designed in particular as a reversible key, wherein the reversible key has two discrete magnets with the same polarity.
  • two independent magnets are necessary so that they can cooperate with the magnetic polarity of at least two protective pins.
  • the discrete magnets may be formed, for example, by means of micro-coils.
  • a battery could be arranged in the key head of the key according to the invention, so that the micro-coils can be actuated.
  • the discrete magnets are formed by piezo elements.
  • the discrete magnets are each designed as a magnetic monopole. Particularly preferably, the discrete magnets are south pole magnets.
  • the key consists of two key halves.
  • the dividing line between the key halves extends in this case from the key head to the key tip, specifically in the extension of the longitudinal extent of a corresponding key channel opening.
  • the two key halves are each magnetized.
  • Fig. La a first embodiment of a closing device according to the invention in a blocking position
  • FIG. 1b shows the embodiment according to the invention in accordance with FIG. 1a in the opening position
  • FIG. 2a shows a second embodiment with regard to a closing device according to the invention in a blocking position
  • FIG. 1b shows the embodiment according to the invention in accordance with FIG. 1a in the opening position
  • FIG. 2a shows a second embodiment with regard to a closing device according to the invention in a blocking position
  • FIG. 1b shows the embodiment according to the invention in accordance with FIG. 1a in the opening position
  • FIG. 2a shows a second embodiment with regard to a closing device according to the invention in a blocking position
  • FIG. 2b shows the embodiment according to FIG. 2a in an open position
  • FIG. 3a shows a key of a closing device according to the invention in a perspective view
  • FIG. 3b a longitudinal section through the key according to FIG. 3a;
  • FIG. 4a shows a third embodiment with respect to a closing device according to the invention in a blocking position
  • Fig. 4b the embodiment of Figure 4a with inserted key.
  • FIG. 5a shows a further embodiment with respect to a lock cylinder in a blocking position
  • Fig. 5b the embodiment of FIG. 5a with inserted key.
  • FIGS. 1 a and 1 b show a first embodiment with regard to a closure device 10 according to the invention.
  • Fig. La the blocking position of the locking device is shown. In this case, no key is inserted in the lock cylinder.
  • Fig. Lb of the key shank 52 of a key 50 is shown.
  • the key shaft 52 is inserted in the keyway 32.
  • the locking device 10 comprises the lock cylinder 20, the key 50 and a tamper protection device.
  • the lock cylinder 20 in turn has a cylinder core 30 mounted in a housing 40. Between the housing 40 and the cylinder core 30, a parting line 25 is formed. Due to the parting line 25, the cylinder core 30 can be rotated in the housing. Furthermore, the protective pin 35 can be seen.
  • the protective pin 35 is displaceably mounted in the protective pin channel 41.
  • the guard pin channel has a housing portion 45 and a cylinder core portion 46.
  • the cylinder core section 46 of the protective pin channel 41 is formed in the cylinder core 30.
  • the housing section 45 of the protective-pin channel 41 is formed in the housing 40.
  • the housing portion 45 and the cylinder portion 46 are arranged in alignment with each other, so that the protection pin channel 41 is formed. It can be seen that the housing section 45 is substantially smaller than the cylinder core section 46.
  • the protective pin 35 is also arranged in the housing section 45, so that the protective pin 35, starting from the cylinder core section 46, projects beyond the parting line 25 into the housing section 45.
  • the protective pin 35 is formed in a section of the lock cylinder 20 facing the cylinder cover 22 or the key channel opening 33. Accordingly, the protective pin 35 can only be actuated when the key shank 52 is largely inserted in the keyway 32.
  • the key shank 52 is inserted in the keyway 32.
  • the magnetic force of the magnetic element 60 acts on the protective pin 35.
  • the protective pin 35 is displaced or pulled in the direction of the magnetic element 60. Therefore, the guard pin 35 is located only in the cylinder core portion 46 of the guard pin channel 41. The parting line 25 is therefore no longer blocked by the protective pin 35, so that the cylinder core 30 is released and can be rotated.
  • FIGS. 2 a and 2 b show a second embodiment with regard to a closure device 10 according to the invention, this embodiment of the closure device 10 having large correspondence with the embodiment according to FIGS. 1 a and 1 b.
  • the spring 28 presses the protective pin 35 in the direction of the housing section 45 of the protective pin channel 41 Fig. 2a illustrated blocking position of the protective pin is thus pressed in the direction of the housing portion 45 due to the spring force. This increases the security against manipulation.
  • the key shank 52 is inserted with the magnetic element 60 in the keyway 32.
  • the protective pin 35 is pushed in the direction of the magnetic element 60 due to the magnetic forces.
  • the spring 28 is compressed.
  • the dimensions of the spring 28 and of the protective pin 35 are to be selected such that both the compressed spring 28 and the protective pin 35 can be arranged completely in the cylinder core section 46 of the protective pin channel 41 during the open position of the closing device 10.
  • the parting line 25 is released in the state shown in Fig. 2b, so that the cylinder core 30 can be rotated in the housing 40.
  • a key 50 of a locking device 10 is shown. It can be seen that the magnetic element 60 is formed on the end of the key shaft 52 facing the key head (not shown) 51 or the key neck 56. In other words, the magnetic element is formed on the end of the key shaft 52 opposite the key tip 53.
  • the key shank 52 has on the key broadsides 55 milling 58.
  • 54 coding elements 59 can be seen on the key back.
  • the magnetic element 60 is formed in such a portion of the key shaft that has no milling 58 or coding 59.
  • a magnetic element can be formed on the side 57 of the key shaft 52 that is opposite the key back 54, as the case may be.
  • the magnetic elements are formed at equal distances from the key tip 53.
  • the magnetic elements are formed on the key broad sides 55 and are arranged at different distances from the key tip 53 and / or the key back 54.
  • FIG. 4 a shows a further embodiment with regard to a closing device 10 according to the invention.
  • the key 50 has a magnetic element 60 on both key broadside sides 55, in the present case only one key-width side 55 being visible.
  • the magnetic element 60 is in turn formed on the end of the key shaft 52 opposite the key tip 53.
  • FIG. 4 a shows in a partial sectional view, on the one hand, that the lock cylinder 20 has a cylinder cover 22.
  • the protective pin 35 can be seen. This is mounted in a protective pin channel 41, wherein in Fig. 4a it can be seen that the protective pin 35 is disposed in the housing portion 45 of the protective pin channel 41. The parting line 25 is thus blocked.
  • the axis A of the protective pin channel is formed parallel to the longitudinal extension LE of the key channel opening 33.
  • a further protective pin with an associated protective pin channel (not shown) is likewise formed on the side of the lock cylinder 20 which is not shown cut.
  • the axis A of the protective pin channel 41 is further formed perpendicular to the longitudinal axis L of the key channel 32.
  • FIG. 5 a shows a further embodiment with regard to a closing device 10 according to the invention.
  • Fig. 5a no key is inserted into the keyway 32.
  • FIG. 5 a thus shows the blocking position of the closing device 10.
  • the guard pins 35 can be seen, which are each formed in a protective pin channel 41.
  • the guard pin channel 41 and the cylinder core section 46 are each closed in the direction of the keyway 32.
  • a section of the cylinder core 36 is formed between the keyway 32 and the cylinder core section 46. The guard pins 35 can thus not be accessed from the key channel 32.
  • the upper guard pin 35 i. the trained above the keyway 32 guard pin 35 is biased by means of a spring 28.
  • the spring 28 pushes the protective pin 35 upwards, and thus towards the housing portion 45.
  • At the lower, i.e. the trained below the keyway 32 guard pin 35, such a bias is not necessary because the guard pin 35 due to the weight down in the direction of the housing portion 45 g lei Tet.
  • both guard pins 35 each have a first portion 37 and a second portion 38.
  • the first sections 37 were particular for the introduction of the protection pin 35 in the housing section 45th
  • the end faces 39 of the protective pins 35 are each chamfered.
  • the second sections 38 are each formed wider.
  • the shape of the second portion 38 of the protective pins 35 also causes a position guide of the pin 35 in the protective pin channel 41, in particular in the cylinder core portion 46th
  • magnets 34 are each formed in the second section 38.
  • the magnets 34 have the same magnetic polarity, in particular a north polarity.
  • the magnets 34, and thus the guard pins 35 thus abut each other in the blocking position shown, so that due to this repulsive force, the guard pins 35 are additionally pressed into their respective positions in the housing sections 45.
  • Fig. 5a is further shown that the axes of the protective pin channels 41 are substantially parallel to each other. Furthermore, the axes of the protective pin channels 41 are arranged perpendicular to the longitudinal axis of the key channel and perpendicular to the longitudinal extent of the keyway opening 33.
  • Fig. 5b the locking device 10 with inserted key 50, which is in this case a reversible key, shown.
  • the key 50 has two magnetic elements 60.
  • the magnetic elements 60 have the same magnetic polarity.
  • the magnetic polarity of the magnetic elements 60 of the key 60 is opposite in terms of the magnetic polarity of the magnets 34 of the guard pins 35. Accordingly, the protective pins 35 or their magnets 34 are moved in the direction of the key 50 upon insertion of the key 50 into the keyway 32.
  • the biasing force of the spring 28 and the weight of the lower guard pin 35 are overcome due to the magnetic attraction.
  • the parting line 25 is released due to this. LIST OF REFERENCE NUMBERS

Landscapes

  • Lock And Its Accessories (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Abstract

L'invention concerne un dispositif de fermeture (10) comprenant un cylindre de fermeture (20), une clé (50) et un dispositif de protection contre les manipulations, le cylindre de fermeture (20) ayant un noyau de cylindre (30) monté dans un boîtier (40), un plan de joint (25) étant formé entre le boîtier (40) et le noyau cylindrique (30). Selon l'invention, le dispositif de protection contre les manipulations comporte au moins une broche de protection (35) qui est montée de manière déplaçable dans un canal de broche de protection (41), le canal de broche de protection (41) comportant une section de boîtier (45) et une section du noyau de cylindre (46). Dans une position de blocage du dispositif de fermeture (10), la goupille de protection (35) étant disposée au moins par sections dans la section de boîtier (45) de telle sorte que le plan de joint (25) est bloqué, et, pour obtenir une position ouverte du dispositif de fermeture (10), la goupille de protection (35) pouvant être déplacée complètement dans la section du noyau de cylindre (46) sur la base d'une clé (50) pouvant être insérée dans le noyau de cylindre (30) et au moins un élément magnétique (60) formé sur ou dans l'arbre de clé (52) de la clé (50) et le plan de joint (25) pouvant être libéré.
EP19722854.7A 2018-05-09 2019-05-06 Dispositif de fermeture comportant un dispositif de protection contre la manipulation et clé Active EP3791034B1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
SI201930259T SI3791034T1 (sl) 2018-05-09 2019-05-06 Zapiralna naprava z napravo za zaščito pred manipulacijo in ključ
HRP20220894TT HRP20220894T1 (hr) 2018-05-09 2019-05-06 Uređaj za zaključavanje s uređajem za zaštitu od manipulacije i ključem
RS20220559A RS63318B1 (sr) 2018-05-09 2019-05-06 Uređaj za zaključavanje sa uređajem za zaštitu od manipulacije i ključem

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102018111148.7A DE102018111148A1 (de) 2018-05-09 2018-05-09 Schließvorrichtung mit Manipulationsschutzvorrichtung
PCT/EP2019/061485 WO2019215058A1 (fr) 2018-05-09 2019-05-06 Dispositif de fermeture comportant un dispositif de protection contre la manipulation et clé

Publications (2)

Publication Number Publication Date
EP3791034A1 true EP3791034A1 (fr) 2021-03-17
EP3791034B1 EP3791034B1 (fr) 2022-04-27

Family

ID=66448543

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19722854.7A Active EP3791034B1 (fr) 2018-05-09 2019-05-06 Dispositif de fermeture comportant un dispositif de protection contre la manipulation et clé

Country Status (16)

Country Link
EP (1) EP3791034B1 (fr)
AU (1) AU2019266910A1 (fr)
CY (1) CY1126068T1 (fr)
DE (1) DE102018111148A1 (fr)
DK (1) DK3791034T3 (fr)
ES (1) ES2916599T3 (fr)
HR (1) HRP20220894T1 (fr)
HU (1) HUE059342T2 (fr)
IL (1) IL278474B (fr)
LT (1) LT3791034T (fr)
PL (1) PL3791034T3 (fr)
PT (1) PT3791034T (fr)
RS (1) RS63318B1 (fr)
SG (1) SG11202010959PA (fr)
SI (1) SI3791034T1 (fr)
WO (1) WO2019215058A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111608487B (zh) * 2020-04-27 2021-06-04 殷卫平 一种卡片钥匙的防技开锁芯

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JPS5238479B2 (fr) * 1973-11-24 1977-09-29
IT1094288B (it) * 1977-03-25 1985-07-26 Kyoyasu Wake Serratura con corrispondente chiave di azionamento,chiave maestra e chiave sottomaestra o secondaria per un certo numero di serrature aventi corrispondenti chiavi di azionamento
US4627251A (en) * 1984-09-17 1986-12-09 Bhate Suresh K Combined mechanical and magnetic locking system
FR2572117A1 (fr) * 1984-10-22 1986-04-25 Ramblier Yves Ensemble de serrure a barillet a goupilles utilisant une action magnetique et sa cle
EP0571311A1 (fr) * 1992-04-23 1993-11-24 Metalurgica Cerrajera De Mondragon, S.A. Serrure cylindrique à goupilles magnétiques
FR2776327B1 (fr) * 1998-03-20 2000-05-26 Vachette Sa Cle a poussoir mobile, barillet de surete pour ladite cle et serrure equipee de ce barillet
EP1072740B1 (fr) * 1999-07-21 2004-12-15 MOTTURA SERRATURE DI SICUREZZA S.p.A. Serrure cylindrique et clé dans laquelle au moins une goupille est activée par une force magnetique
IL147219A0 (en) * 2001-12-20 2002-08-14 S E Yardeni Metal Products Ltd Lock and key incorporating a magnet
CN201972462U (zh) * 2010-12-02 2011-09-14 韩军 一种磁性锁及其开启钥匙
DE102013114423B4 (de) * 2013-12-19 2023-05-17 M. van der Wal Holding B. V. Schließzylinder mit magnetischem Zuhaltungsstift
CN106703521A (zh) * 2017-01-22 2017-05-24 中山市基信锁芯有限公司 一种防技术开启的锁及其配套使用的钥匙

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SG11202010959PA (en) 2020-12-30
WO2019215058A1 (fr) 2019-11-14
AU2019266910A1 (en) 2020-11-26
IL278474A (fr) 2020-12-31
CY1126068T1 (el) 2023-11-15
HUE059342T2 (hu) 2022-11-28
EP3791034B1 (fr) 2022-04-27
SI3791034T1 (sl) 2022-08-31
PL3791034T3 (pl) 2022-08-22
DK3791034T3 (da) 2022-07-25
PT3791034T (pt) 2022-07-01
LT3791034T (lt) 2022-06-27
ES2916599T3 (es) 2022-07-04
RS63318B1 (sr) 2022-07-29
HRP20220894T1 (hr) 2022-10-14
IL278474B (en) 2022-09-01
DE102018111148A1 (de) 2019-11-14

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