EP2219272B1 - Connecteur avec verrouillage - Google Patents

Connecteur avec verrouillage Download PDF

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Publication number
EP2219272B1
EP2219272B1 EP20100152494 EP10152494A EP2219272B1 EP 2219272 B1 EP2219272 B1 EP 2219272B1 EP 20100152494 EP20100152494 EP 20100152494 EP 10152494 A EP10152494 A EP 10152494A EP 2219272 B1 EP2219272 B1 EP 2219272B1
Authority
EP
European Patent Office
Prior art keywords
locking pin
plug
connector element
connector
locking
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.)
Active
Application number
EP20100152494
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German (de)
English (en)
Other versions
EP2219272A2 (fr
EP2219272A3 (fr
Inventor
Stefan Gattwinkel
Helmut Eicher
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.)
Amad Mennekes Holding GmbH and Co KG
Original Assignee
Amad Mennekes Holding GmbH and Co KG
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 Amad Mennekes Holding GmbH and Co KG filed Critical Amad Mennekes Holding GmbH and Co KG
Publication of EP2219272A2 publication Critical patent/EP2219272A2/fr
Publication of EP2219272A3 publication Critical patent/EP2219272A3/fr
Application granted granted Critical
Publication of EP2219272B1 publication Critical patent/EP2219272B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/639Additional means for holding or locking coupling parts together, after engagement, e.g. separate keylock, retainer strap

Definitions

  • the invention relates to a plug-in device element such as a (power) socket with a plug-in collar. Furthermore, it relates to a method for locking such a plug-in device element.
  • Electrical plug-in device elements as they are based, for example, the standard DIN EN 60309, have a circular cylindrical or sleeve-shaped plug collar, in which a radially outwardly pointing unmistakable groove is formed.
  • the plug-in device element with the Unver Cauleysnut a socket (coupling), in which a complementary plug can be inserted.
  • An on-plug located, radially outwardly facing guide nose must then lie when mating in the Unvercicanssnut, as can and plug fit only together. In this way, a wrong, "twisted” mating can be prevented in multi-pin plug devices.
  • the WO 01/31750 A1 an electrical plug-in device with a plug and a coupling, wherein the plug collar of the coupling has a transverse to the insertion direction through opening. Through this passage opening the bracket of a padlock can be inserted to lock a connector connected to the connector in the inserted state.
  • the plug has for this purpose on its outer side a circumferential groove which receives said bracket of the padlock.
  • a printed circuit board connector which is anchored on a printed circuit board by means of rotatable locking bolts.
  • the locking bolts carry an eccentrically mounted locking head, which can engage behind the circuit board.
  • the mentioned "complementary" plug-in device elements have a nose or the like which has to traverse the space occupied by the locking section or the recess in the plug-in collar during the plugging operation. Then can be selectively blocked or released by a rotation of the locking pin about its longitudinal axis of the plug collar for the passage of the complementary plug-in device element. In particular, it can be prevented in the se way that an inserted complementary plug-in device element is unintentionally or unauthorized withdrawn. If the locking pin for the change between closed position and open position only has to be rotated about its longitudinal axis (and not additionally shifted), this has the advantage that its spatial position remains essentially the same.
  • the longitudinal axis of the locking pin preferably extends through the interior of the plug collar or contacts it at least. In this way, the most compact design possible.
  • the longitudinal axis of the locking pin is preferably transverse (i.e., not parallel) to the direction of insertion of the connector device element.
  • the "plug-in direction” is understood to be the direction in which a complementary plug-in device element is moved when it is plugged into the plug-in collar.
  • the longitudinal axis may extend at an angle of about 45 ° to 135 °, particularly preferably of about 90 ° to the insertion direction.
  • the locking pin is mounted on two opposite sides of the recess and / or the Sperrabs chnittes. The pen is then stored safely against strong forces and protected against bending or breaking off.
  • the locking pin in the general case can take on virtually any shape, it is preferably formed substantially cylindrical, wherein said longitudinal axis of rotation coincides with the cylinder axis. Particularly preferably, it is a circular cylindrical shape, which is rotationally symmetrical about the longitudinal axis.
  • the recess and the locking portion of the locking pin are centered on different sides with respect to the longitudinal axis of the locking pin (ie on different sides of a plane containing the longitudinal axis). In this case, by a (180 °) rotation of the locking pin about its longitudinal axis, the recess and the locking portion to swap their position.
  • a rotational movement of the locking pin can be achieved in various ways.
  • the locking pin can project freely outwardly with one end, so that a user can grasp this end and turn the locking pin.
  • engagement surfaces eg screwdriver slot, wrench surfaces, teeth, etc.
  • the locking pin is verbu with a transverse (in particular perpendicular) extending to the longitudinal axis lever. About such a radially to the longitudinal axis of the lever can then be effected with relatively small forces rotation of the locking pin.
  • the lever can either be formed integrally with the locking pin or preferably represent a separate component which engages in a transverse hole of the locking pin. By a screw thread on the lever and the transverse hole can be taken care of a positive, tight fit of the lever.
  • the above-mentioned lever can engage according to an embodiment of the invention on one side of the locking pin in a pocket which limits the possibilities of movement of the lever.
  • a previously mounted locking pin can be stored captive on the plug device element in this way.
  • the locking pin is coupled to a spring element which biases him into a given rest position.
  • the rest position can correspond in particular to the opening position, in which an unhindered mating (or separating) of two plug-in device elements is possible.
  • the plug-in device element described above can optionally be developed so that the edge of the recess of the locking pin is in its rest position so inclined to the direction of insertion of the plug device element that a force acting on this edge in the insertion direction force can cause a rotation of the locking pin.
  • This embodiment fixes the associated with component tolerances risk that the locking pin in its opening position still something in the plug collar protrude and could block it.
  • the locking pin is in fact inclined so that a complementary plug device element when plugged together can push it aside if necessary.
  • the plug-in collar of the plug-in device element is preferably provided with a Uncicleysnut. As already explained, this serves to receive the guide nose of an inserted complementary plug-in device element and thus to guarantee a correct angular position of the socket and plug.
  • the locking portion or the recess of the locking pin preferably engage in the unmistakable groove, usually in an axially central region of the groove, so that the guide nose of a complementary plug device element which has already been fully inserted does not collide with the locking portion.
  • the longitudinal axis of the locking pin preferably extends transversely to and / or through the unmistakable groove or at least touches it.
  • the plug-in device element hereinafter referred to as a "sensor” (one or more parts) assembly, which is “activated” by a complementary plug-in device element, when the latter was (completely or at least partially) inserted into the plug-in device element.
  • the "activation” of the sensor can in particular consist of a change in position (displacement, rotation, etc.) of the sensor, which can be exploited to recognize the inserted state.
  • the said sensor may in particular be coupled to a locking mechanism which prevents movement of the locking pin when the sensor is not activated. In the activated state of the sensor, the movement of the locking pin is released accordingly.
  • This embodiment makes sense in a latching pin biased to the open position. because it prevents unintentional inadvertent or improper locking of the plug collar.
  • the senor can be coupled to a closing mechanism which can transfer the locking pin into the closed position or at least transfer it when the sensor is activated.
  • a closing mechanism which can transfer the locking pin into the closed position or at least transfer it when the sensor is activated.
  • an automatic locking can take place after the mating of two plug-in device elements.
  • the embodiment described above is developed such that the locking mechanism can only transfer the locking pin (with the sensor activated) into the closed position when an electrical voltage is applied to the plug-in device element. In the de-energized state, therefore, no locking of the plug-in device is possible even when the sensor is activated, which makes sense, as a Verriegelu ng then safety is not necessary.
  • the aforementioned voltage-sensitive closing mechanism may in particular include an electromagnet which is operated by voltage applied to the plug-in device element.
  • the solenoid may cause the locking pin to rotate when connected to an existing voltage by activation of the sensor.
  • the senor may also comprise at least one electrical contact component of the plug-in device element, ie a typically metallic part with a freely accessible (“contactable”) surface.
  • An “activation” of the sensor can then take place in that the contact component (mechanical and in particular electrical) gets contact with an electrically conductive component of an inserted complementary plug-in device element.
  • the contact component mechanical and in particular electrical
  • an electrically conductive component of an inserted complementary plug-in device element for example, could be provided in an outlet two spaced plug-in contact components between which upon insertion of a plug an electrical connection is made, closed by a circuit and a desired effect is triggered.
  • contact devices plugets, plug pins
  • plug-and-socket devices they can advantageously be used simultaneously for the realization of the sensor in the described embodiment.
  • those of the "normal" contact components are used for the realization of the sensor, which are touched as the last (towards the end of the mating process) of its counter-contact.
  • the locking pin is designed so that it can exert on a plugged into the plug collar, complementary plug device element a force acting in (or opposite) the plugging direction.
  • the locking portion like the tooth of a gear, may press on a complementary male member to move it in the insertion direction.
  • An active support of the insertion process can in particular ensure that the electrical contact components get in the plug-in device egg nen sufficient overlap for a secure power transmission.
  • the locking pin can optionally be designed so that it can be manually rotated by a user about its longitudinal axis.
  • the plug-in device element may also include an active drive, which can move the locking pin from the open position to the closed position and / or vice versa from the closed position to the open position.
  • the energy for this drive can be taken in particular of the plug-in device element usually applied voltage.
  • the active drive of the locking pin has z. B. the advantage that the lock can be done automatically, which is comfortable and prevents accidental forgetting.
  • the drive can also be used for this purpose ensure that a force is actively exerted in (or against) the direction of insertion on a complementary plug-in device element, in order to convert this into an electrically safe plug state.
  • the mentioned active drive may optionally include an end position sensor, which detects the reaching of a predefined end position of the locking pin. In this way it can be verified that the locking pin is in a desired target position - for example, the closed position - is. Furthermore, the detection of the end position can be used to control the drive and to change it, for example, from a control operation to a (energy-saving) holding operation.
  • the invention relates to a plug-in device element with a plug-in sleeve, which has a notch on its outer side.
  • This notch is preferably geometrically designed so that it can accommodate a transverse to the direction of insertion cylindrical body.
  • the notch may be formed as a circumferential groove around the socket.
  • the plug-in device element is a plug, but in principle it can also be a can / coupling.
  • the described plug-in device element can in particular be used together with a plug-in device element according to the first aspect of the invention.
  • the two plug-in device elements of their dimensions and shapes are so complementary form, that the socket fits into the plug collar and that in the inserted state of the locking portion of the locking pin can engage in the notch of the socket to lock the inserted state.
  • the invention further relates to a method for locking the plug-in collar of a plug-in device element, in particular a plug-in device element of the type described above.
  • the method is characterized in that a locking pin is rotated about its longitudinal axis, whereby optionally a recess or a locking portion of the locking pin come to rest in the plug collar.
  • the method generally corresponds to the operation of the above-described plug-in device element, so that reference may be made to the description given there for the explanation of its details and advantages.
  • the locking mechanism according to the invention is located on the plug-in socket 100 or a coupling of a force plug-in device. It should be noted, however, that in principle it could also be formed on a plug.
  • Steckvoriquessdose 100 has in a known manner a circular cylindrical plug collar 101, which surrounds a bushing insert 103 (shown dotted in the sectional views) to form an annular gap.
  • the socket insert 103 contains the usual electrical devices, such as contact sockets for various phases, conductor terminals, etc. in a manner which is of no further interest here.
  • FIG. 3 shows in this regard a complementary plug 200 (in the FIGS. 3 and 4 shown with black cut surfaces and otherwise cross-hatched), in which a cylindrical plug-in sleeve 201, the current-carrying connector pins (not shown) protectively surrounds.
  • said plug-in sleeve 201 fits exactly into the annular gap in the plug-in collar 101.
  • a guide nose 202 located radially outward at the front end of the plug-in sleeve 201 must be received by the uniqueness groove 102 so that the plug-in process is in the correct relative angular position of the can 100 and plug 200 can be done.
  • a locking pin 10 is provided according to the invention, which is designed substantially as an elongated circular cylinder and rotatably in a cylindrical bearing sleeve 20 of the socket housing about its longitudinal axis D ( FIG. 2 ) is housed.
  • the locking pin 10 extends transversely through the unmistakable groove 102, at an axially approximately central position of this groove.
  • the locking pin 10 has a recess 12, wherein the recess opposite material of the locking pin corresponding to a so-called "lock portion" 11 forms ( FIG. 7 ).
  • a torsion spring 22 can be seen, which biases the locking pin in a certain rest position.
  • this rest position corresponds to in FIG. 1 shown opening position PP.
  • the recess 12 In this opening position ⁇ P the recess 12 is in the Unver Caullleysnut 102 so that a guide nose can pass freely through this groove.
  • the locking pin is preferably positioned with the edge of the recess 12 slightly obliquely to the axis of the unmistakable groove 102, so that he even in unavoidable component and dimensional tolerances in no case hinrag in the near-open area in the Unvercicleysnut, which could inadvertently block a guide lug.
  • FIG. 1 upper (opening away) end of the locking portion 11 in the unmistakable groove 102 only the in FIG. 1 upper (opening away) end of the locking portion 11 in the unmistakable groove 102 in, but this does not bother, since it can be easily pushed aside by a guide lug during insertion.
  • FIG. 3 shows a state in which a plug 200 is inserted by movement in the direction of insertion S about halfway into the can 100.
  • the above-mentioned state is recognizable that the guide lug 202, if necessary, pushes aside an optionally in the way blocking portion 11 aside.
  • FIG. 4 shows the socket 100 after the plug 200 has been fully inserted.
  • the guide lug 202 has moved through the unmistakable groove 102 to behind the locking pin 10.
  • the locking pin 10 has been rotated after passing through the guide nose 202 in its "closed position" SP, in which the locking portion 11 protrudes into the unmistakable groove 102.
  • the locking portion 11 protrudes into the guide groove 102 at the opening remote side, so that a retraction of the plug 200, the locking pin 10 (unlike plugging) could not push aside.
  • the bearing of the locking pin 10 on both sides of the unmistakable groove 102 ensures high stability even in the event that high forces are exerted on the locking pin 10 by retracting the plug 200 (improperly).
  • FIGS. 5 and 6 show the corresponding exterior views FIG. 3 (half plug 200) or FIG. 4 (completely plugged in 200). It can be seen in particular, as the movement of the locking pin 10 between the open position ⁇ P and closing position SP, ie the rotation of the locking pin 10 about its longitudinal axis D.
  • the lever 13 is realized by a threaded pin, which is guided in a through hole with internal thread in the locking pin 10. That in the FIGS. 5 and 6 right end of the lever 13 engages in a pocket 21 of the bearing 20 (the front surface of the pocket 21 is not visible due to the sectional view).
  • the pocket 21 prevents axial displacement of the locking pin 10 and limits its rotatability to a certain angular range.
  • the locking pin 10 When the solenoid 110 is de-energized, the locking pin 10 is rotated under the action of the spring 22 in a clockwise direction in the opening position ⁇ P and the plunger 112 is raised ( FIG. 5 ). In the de-energized state of the plug-in device thus no locking takes place, and the opening position ⁇ P is simultaneously determined by the spring tension as the rest position.
  • the switching on of the electromagnet 110 takes place in the illustrated embodiment via a sensor 111, which is attached to the bottom of the unmistakable groove 102.
  • the sensor 111 is displaced from the guide nose 202, whereby a switch (not shown) is closed and the solenoid 110 can be energized.
  • the solenoid 110 then brings the locking pin 10 in the closed position SP and ensures a locking of the plug-in device.
  • the entire plug-in device must either be de-energized (the locking pin 10 then assumes by the action of the spring 22 its rest position, ie the opening position ⁇ P), or the locking pin 10 must be manually rotated by a user back to the open position ,
  • suitable mechanical actuating means such as a rotary handle, which is not shown in detail in the figures.
  • the described function of the sensor 111 could also be fulfilled by at least one of the electrical contact components of the plug-in device element.
  • this could be the contact socket of the socket 100th be the last with an associated contact pin of the plug 200 gets electrical contact. Since a sensor realized in this way is activated directly at the first contact of the contact components, but on the other hand a certain minimum overlap of the electrical contacts is desirable for a safe current transmission, the above-mentioned active support of the insertion is additionally preferred. This means that after the first electrical contact of the sensor, an automatic, active support of the insertion process takes place until the desired minimum overlap is established.
  • the socket 100 has a plug-in collar 101 with a Unvercicleysnut 102, in which engages the guide nose 202 of the complementary plug 200.
  • the show FIGS. 8 to 10 three embodiments of connectors, which instead of a guide nose (at least) have a notch into which a locking pin can engage. The matching with these plugs outlet with such a locking pin results readily by appropriate modification of the circular cylindrical socket 100 from the FIGS. 1 to 6 and is not shown here.
  • FIG. 8 shows as a first embodiment of a connector 1200 in which electrical contact pins 1210 are housed in a socket 1201.
  • the triangular shape of the receptacle 1201 ensures that the plug 1200 can only be assembled in a single (correct) angular position with a complementary box.
  • one of the three edges extending in the plug-in direction S has a notch 1202 in the front region (ie near the opening of the plug-in sleeve 1201).
  • this notch 1202 the locking pin 10 (FIG. FIG. 7 ) of a complementary socket to lock the plug 1200 in the inserted state.
  • FIG. 9 shows a modification in the form of a plug 2200, in which the triangular receptacle 2201 has notches 2202 on all three edges.
  • This embodiment can thus provide up to three separate locking pins for a particularly secure locking of the inserted state. If an actively supported plugging (or separating) is provided by a drive of the locking pins, this can be done correspondingly more uniformly when using a plurality of locking pins.
  • FIG. 10 shows a plug 3200, in which the triangular plug-in collar 3201 has a notch in the form of a circumferential groove 3202.
  • one or more locking pins engage not only at the edges, but along the entire straight extension of a groove portion and thus ensure a particularly strong locking (or vigorous active movement of the plug).
  • FIGS. 8 to 10 Illustrated use of notches on a socket can of course be provided in other forms of the socket, for example in rotationally symmetric receptacles.

Landscapes

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

Claims (14)

  1. Élément de connecteur (100), comprenant
    a) un collier d'enfichage (101) ;
    b) au moins une goupille de verrouillage (10),
    caractérisé en ce que la goupille de verrouillage (10) est montée à rotation autour d'un axe longitudinal (D) de telle sorte que
    b1) dans une position de fermeture (SP), une section de verrouillage (11) de la goupille de verrouillage vienne en prise dans le collier d'enfichage,
    b2) dans une position d'ouverture (ÖP), un évidement (12) de la goupille de verrouillage se situe dans le collier d'enfichage.
  2. Élément de connecteur (100) selon la revendication 1,
    caractérisé en ce que l'axe longitudinal (D) de la goupille de verrouillage (10) s'étend transversalement à la direction d'enfichage (S) de l'élément de connecteur (100).
  3. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que la goupille de verrouillage (10) a essentiellement une forme cylindrique.
  4. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que l'évidement (12) et la section de verrouillage (11) se situent essentiellement sur des côtés différents de l'axe longitudinal (D) de la goupille de verrouillage (10).
  5. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que la goupille de verrouillage (10) est connectée à un levier (13) s'étendant transversalement à l'axe longitudinal (D).
  6. Élément de connecteur (100) selon la revendication 5,
    caractérisé en ce que le levier (13) vient en prise d'un côté de la goupille de verrouillage (10) dans une cavité (21) qui limite sa capacité de mouvement.
  7. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que la goupille de verrouillage (10) est précontrainte par un élément de ressort (22) dans une position de repos qui correspond de préférence à la position d'ouverture (ÖP).
  8. Élément de connecteur (100) selon la revendication 7,
    caractérisé en ce que le bord de l'évidement (12) dans la position de repos est incliné par rapport à la direction d'enfichage (S) de l'élément de connecteur (100), de telle sorte qu'une force agissant sur le bord dans la direction d'enfichage (S) puisse provoquer une rotation de la goupille de verrouillage (10).
  9. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce qu'il contient un palpeur (111), lequel est activé par un élément de connecteur complémentaire (200) enfiché dans l'élément de connecteur (100),
    - le palpeur (111) étant accouplé à un mécanisme de verrouillage qui bloque un mouvement de la goupille de verrouillage (10) lorsque le palpeur n'est pas activé, et/ou
    - le palpeur (111) étant accouplé à un mécanisme de fermeture (110, 112, 13) qui peut transférer la goupille de verrouillage (10) dans la position de fermeture (SP) lorsque le palpeur est activé.
  10. Élément de connecteur (100) selon la revendication 9,
    caractérisé en ce que le mécanisme de fermeture (110, 112, 13) ne peut transférer la goupille de verrouillage (10) dans la position de fermeture (SP) que lorsqu'une tension est appliquée à l'élément de connecteur (100).
  11. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que la goupille de verrouillage (10) peut exercer une force sur un élément de connecteur complémentaire (200) enfiché dans le collier d'enfichage (101), laquelle force agit dans ou à l'encontre de la direction d'enfichage (S).
  12. Élément de connecteur (100) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce qu'il comprend un entraînement actif (110), qui peut déplacer la goupille de verrouillage (10) depuis la position d'ouverture (ÖP) dans la position de fermeture (SP) et/ou dans la direction inverse, l'entraînement (110) comprenant de préférence un capteur de fin de course.
  13. Connecteur, comprenant un élément de connecteur (100) selon au moins l'une quelconque des revendications 1 à 12 et un élément de connecteur (1200, 2200, 3200) réalisé de manière complémentaire à celui-ci, lequel présente sur son côté extérieur une encoche (1202, 2202, 3202).
  14. Procédé pour verrouiller le collier d'enfichage en forme de douille (101) d'un élément de connecteur (100),
    caractérisé en ce qu'une goupille de verrouillage (10) est tournée autour d'un axe longitudinal (D), de sorte qu'un évidement (12) ou une section de verrouillage (11) de la goupille de verrouillage puisse venir se placer de manière sélective dans le collier d'enfichage (101).
EP20100152494 2009-02-13 2010-02-03 Connecteur avec verrouillage Active EP2219272B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE200910000829 DE102009000829A1 (de) 2009-02-13 2009-02-13 Steckvorrichtung mit Verriegelung

Publications (3)

Publication Number Publication Date
EP2219272A2 EP2219272A2 (fr) 2010-08-18
EP2219272A3 EP2219272A3 (fr) 2013-04-10
EP2219272B1 true EP2219272B1 (fr) 2014-03-12

Family

ID=41796187

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20100152494 Active EP2219272B1 (fr) 2009-02-13 2010-02-03 Connecteur avec verrouillage

Country Status (3)

Country Link
EP (1) EP2219272B1 (fr)
DE (1) DE102009000829A1 (fr)
ES (1) ES2465965T3 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021259985A1 (fr) * 2020-06-23 2021-12-30 Otto Bock Healthcare Products Gmbh Dispositif d'interface

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102018118681A1 (de) * 2018-08-01 2020-02-06 Amad Mennekes Holding Gmbh & Co. Kg Steckvorrichtung mit verrastbaren Komponenten
CN114976725B (zh) * 2022-05-27 2023-11-24 安徽明辉电气有限公司 用于高低压配电柜铜排及插件的连接结构

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW488571U (en) * 1999-04-20 2002-05-21 Hon Hai Prec Ind Co Ltd Electrical connector assembly with locking apparatus
FR2800521B1 (fr) * 1999-10-29 2002-01-18 Carrier Kheops Bac Connecteur electrique a verrouillage de connexion par cadenas
DE202007005013U1 (de) * 2007-04-03 2008-08-07 Weidmüller Interface GmbH & Co. KG Leiterplattenverbinder

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021259985A1 (fr) * 2020-06-23 2021-12-30 Otto Bock Healthcare Products Gmbh Dispositif d'interface

Also Published As

Publication number Publication date
ES2465965T3 (es) 2014-06-09
DE102009000829A1 (de) 2010-08-19
EP2219272A2 (fr) 2010-08-18
EP2219272A3 (fr) 2013-04-10

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