EP3586404A1 - Connexion élastique et connecteur rond comportant une pluralité de connexions élastiques - Google Patents

Connexion élastique et connecteur rond comportant une pluralité de connexions élastiques

Info

Publication number
EP3586404A1
EP3586404A1 EP18705650.2A EP18705650A EP3586404A1 EP 3586404 A1 EP3586404 A1 EP 3586404A1 EP 18705650 A EP18705650 A EP 18705650A EP 3586404 A1 EP3586404 A1 EP 3586404A1
Authority
EP
European Patent Office
Prior art keywords
spring
contact spring
leg
force
pivot lever
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
EP18705650.2A
Other languages
German (de)
English (en)
Other versions
EP3586404B1 (fr
EP3586404C0 (fr
Inventor
Michael Lüdke
Frank Mellies
Jörg HOHMEIER
Falk Langer
Torsten TASCHE
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.)
Phoenix Contact GmbH and Co KG
Original Assignee
Phoenix Contact 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 Phoenix Contact GmbH and Co KG filed Critical Phoenix Contact GmbH and Co KG
Priority to EP23213326.4A priority Critical patent/EP4329103A3/fr
Publication of EP3586404A1 publication Critical patent/EP3586404A1/fr
Application granted granted Critical
Publication of EP3586404B1 publication Critical patent/EP3586404B1/fr
Publication of EP3586404C0 publication Critical patent/EP3586404C0/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R4/00Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
    • H01R4/28Clamped connections, spring connections
    • H01R4/48Clamped connections, spring connections utilising a spring, clip, or other resilient member
    • H01R4/4809Clamped connections, spring connections utilising a spring, clip, or other resilient member using a leaf spring to bias the conductor toward the busbar
    • H01R4/4828Spring-activating arrangements mounted on or integrally formed with the spring housing
    • H01R4/48365Spring-activating arrangements mounted on or integrally formed with the spring housing with integral release means
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/22Bases, e.g. strip, block, panel
    • H01R9/24Terminal blocks
    • H01R9/2491Terminal blocks structurally associated with plugs or sockets

Definitions

  • the present invention relates to spring terminals and circular connectors having a plurality of spring terminals.
  • DE 10 2010 048 698 AI describes an electrical connec ⁇ tion clamp with an insulating material and with a arranged in this spring clamp connection, wherein the spring terminal connection has a cage tension spring, which is resting on a busbar section plant leg, an adjoining rear spring bow and an actuating leg wherein the actuating limb has a window recess on a clamping section bent over in the direction of the busbar section, through which the busbar section is passed and whose lower transverse web forms a clamping point for clamping an electrical conductor between the transverse web and the busbar section, and wherein a tab extends forwards from the actuating limb and protrudes outwardly in the direction opposite to the rear spring bow direction, wherein the spring clamp connection has a Actu ⁇ supply lever, which in front of the clamping portion of the Actu ⁇ leg of the cage cage spring is pivotally mounted adjacent to the tab and has a bearing for resting on the tab support.
  • connection terminal has a com ⁇ plex geometry.
  • the cage-type tension spring must, to ensure its functionality, have a complex geometry with a large number of bends and a window recess exhibit.
  • a conductor can only be inserted into the connection terminal and can be clamped by the cage tension spring when the cage tension spring is in its release position.
  • the present the object underlying the invention is to provide an improved spring force connector, which has a simpler structure and a simpler and more flexible ⁇ re handleability.
  • the object underlying the present invention by a spring force connection with a housin ⁇ seteil, with a pivot lever which is pivotable between an open position and a closed position, with an electrically conductive connection means which is accessible via aêteintechnologyö réelle of the housing part, and with a Contact spring, by means of a introduced via theêteintechnologyö réelle in the housing part conductor is kraftbeaufschlagbar on the connecting device, wherein the spring connection is characterized in that the pivotable between a release position and a clamping position contact spring has a pressure leg and a connected thereto via a bending joint clamping leg wherein the pivot lever has a pusher and a driver, wherein the pressure leg is arranged at least in the closed position of the pivot lever between the pusher and the driver, w obei by pivoting the pivot lever in the closed position of the pusher the pressure arm at least indirectly such force applied that the contact spring is pivoted in its clamping position, so that an inserted via the conductor insertion opening in the housing part conductor
  • the spring force connection according to the invention and in particular the contact spring have a simple construction. Therefore, the assembly of the spring force connection is simplified. Despite the simple structure of the spring force connection, a forced coupling between the position of the pivot lever and the position of the contact spring is still ensured.
  • a movement of the pivot lever is thus positively coupled with a pivoting of the contact spring, insbesonde ⁇ re the transfer of the contact spring must be made in the release position by means of the pivot lever.
  • the contact spring is pivoted by entrainment of the pressure leg in the clamping position, and by transferring the pivot lever in its open position, the contact spring is pivoted by entrainment of the pressure leg in its release position.
  • the contact spring is actively pivotable by means of the pivot lever between the release position and the clamping position. Consequently, the contact spring is always subjected to force during a pivoting of the pivoting lever and is always carried along by the pivoting lever.
  • the spring connection inventive ease of use, seeing the inventive spring ⁇ power connection is handed to use.
  • the pivoting lever is preferably pivoted into its open position, although this is not absolutely necessary, as will be explained below. Since the pivoting lever remains in its open Stel ⁇ lung, can then be inserted via the conductor insertion opening in the spring connection of the electrical conductor, whereupon the pivot lever is pivoted into its closed position. This operation is carried out with one hand.
  • the spring-force connection serves in particular for connecting an electrical conductor to a further electrical connection device, e.g. with an electrical contact pin or with an electrical connection socket.
  • the housing part has a conductor insertion opening for each pole, via which electrical conductors can be inserted into the housing part and can be brought into contact with the connection device.
  • Both the housing part and the pivot lever are formed from an electrically insulating material or comprise an electrically insulating material at the locations where they come into contact with the electrical conductors or with the contact spring.
  • the electrically insulating material is in particular a plastic.
  • the contact spring which may be as a leg spring, preferably consists of a spring steel or comprises this at least in the region of the bending joint. Further, the contact spring is pivotable about a pivot axis, which is defined by the housing part and / or the connecting means and / or the geometry of the contact spring.
  • the pusher can also be referred to as the first driver, as the first pressure element or as the first pressure surface.
  • the pusher is preferably formed as part of an inner surface of the pivot lever.
  • the driver can also be second Driver, be referred to as the second pressure edge, as a return edge, as a return ⁇ holky or as a return lug.
  • the electrically conductive connection device preferably has a current bar.
  • the at least indirect application of force to the pressure limb by means of the pusher or the driver of the pivoting lever is preferably effected by means of a latching limb which is connected to the pressure limb via a latching joint.
  • the pressure leg is arranged at least in the closed position of the pivot lever between the pusher and the driver.
  • the spring force connection is formed such that the contact spring further comprises a locking leg connected to the pressure leg locking leg, which is arranged between the pusher and the driver, the contact spring is at least partially elastic and an included by the pressure leg and locking leg angle is variable, wherein upon pivoting of the Kunststofffe ⁇ in the direction of its clamping position of the locking leg comes into contact with a latching device of the spring force connection, wherein the angle between the locking leg and the pressure leg by exerted by the pivot lever closing force is increased, wherein in the closed position of the pivot lever of the locking leg engages behind the latching device, so that a pivoting of the pivot lever in the direction of its open position is only possible under elastic deformation of the locking joint, and wherein upon pivoting of the contact spring in the direction of En release position of the driver the force acting on the locking leg so that the angle between the locking leg ⁇ and the pressure leg is increased by the force exerted by the pivot lever opening force.
  • the correspondingly formed spring-force connection has the advantage that in the closed position of the pivoting element, a latching of the contact spring with a latching device of the spring force connection, so that the pivot lever can be pivoted only in exceeding its predetermined opening force in its open position.
  • a secure contact of the connected to the spring force connection electrical conductor is ensured.
  • a pre-bending of the locking joint is preferably in the same direction as a pre-bending of the bending joint.
  • the locking joint can also be referred to as the second bending joint of the contact spring.
  • the bending joint between the pressure Leg and the clamping leg is then referred to as the first Biegege ⁇ steering.
  • the latching device can also be referred to as a latching lug or as a latching projection.
  • the latching device may be formed as part of the housing part.
  • the spring force connection is such ⁇ out forms that the electrically conductive connection means comprises a spring cage with two side walls and arranged between the side walls busbar, wherein an electrical conductor via the PortereinDOMö réelle in an insertion between the side walls of the spring basket is posi ⁇ tioned, wherein a positioned between the side walls electrical conductor by pivoting the contact spring in the clamping position by means of the clamping leg on the busbar kraftbeetzschlagbar, and wherein the latching device has at least one locking projection which is formed on one of theêteintechnology Maschinen Maschinenntz remote edge of a side wall.
  • the spring cage is preferably electrically connected to the busbar, which may also be referred to as a current bar. Further preferably, the spring cage and the busbar are integrally formed. Still further preferably, the spring basket has a U-shaped cross-sectional geometry.
  • the spring-force connection is formed such that the contact spring has two pivot pins which extend laterally from the bending joint in opposite directions and define a pivot axis of the contact spring, by which the contact spring between the release position and the clamping position is pivotable.
  • the spring force connection is formed such that in each of the two side walls of the spring basket each have a groove formed on an edge facing the Porterein Kunststoffötechnisch, wherein the contact spring is suspended in the spring cage, that the pivot pins are arranged in the grooves of the side walls ,
  • the contact spring can be hung in a particularly simple manner in the spring force connection, so that the structure and the assembly of the correspondingly formed spring connection are particularly simple.
  • the spring force connection is designed such that a pivot axis of the contact spring, by which the Dodgefe ⁇ between the release position and the clamping position is pivotable, is arranged between theêtein lecturö réelle and the pusher and / or the driver of the pivot lever.
  • the spring force connection is formed such that the pusher and the driver of the pivot lever between the Porterein technological Anlagen réelle and a pivot lever axis about which the pivot lever between the open position and the closed position is pivotable, are arranged.
  • the pivot axis of the con ⁇ tact spring and the pivot lever pivot axis of the pivot lever and the contact spring always pivot in opposite directions. That is, if, for example, the pivot lever is pivoted in the clockwise direction from its open position to its closed position, the contact spring pivots counterclockwise. set to clockwise from their release position in their clamping position. As a result, the appropriately trained contact plug is very compact.
  • the spring force connection is formed such that the contact spring is at least partially elastic and a trapped angle of the pressure arm and clamping angle is changed, so that in befindlichem in clamping position contact spring a conductor via the Porterein lecturö réelle in the housing part and under elastic deformation of the contact spring between the Clamping leg and the busbar is positionable.
  • An appropriately designed spring-cage connection has the advantage that, despite the swivel element located in the closed position and thus in the clamping position of the contact spring, a preferably rigid conductor can be introduced into the housing part via the conductor insertion opening and brought into connection with the connecting device, wherein it remains ensured that the conductor remains connected is subjected to force by means of the contact spring on the connecting device and thus clamped.
  • the handling of the ent ⁇ designed spring-applied terminal is therefore considerably improved, since for contacting an electrical conductor with the spring force connection, the pivot element does not necessarily have to be pivoted in its release position.
  • the spring-force connection is formed such that the connecting device has a busbar, with a conductor inserted into the housing part via the conductor insertion opening can be brought into contact, wherein in the clamping position of the contact spring of the clamping legs and the busbar an opened to Leitein Concreteö réelle angle of less or equal to 90 °.
  • the present invention has for its object to provide an improved circular connector, which has a simple structure and a simple and flexible manageability ⁇ ability.
  • this object of the present invention is achieved by a circular connector having a plurality of the spring force terminals described above, wherein a housing of the circular connector forms the respective housing parts of the spring force terminals, and wherein the respectiveêteintechnologyö Stammen the spring force terminals are arranged on a front side of the housing ,
  • the housing preferably accommodates a number of pivoting levers, connecting devices and contact springs corresponding to the number of poles.
  • the circular connector is formed such that the respective spring force connections are arranged to each other such that the respective pivot lever of the spring force connections are arranged at an extent of the housing angularly offset from each other.
  • Figures 1A to 4A is a lateral cross-sectional view of an inventive Federkraftanschlus- ses in different phases of transferring a pivoted lever from its open position to its closed position, wherein a housing part of the Federkraftan ⁇ circuit is not shown;
  • Figures 1B to 4B a side cross-sectional view of a circular connector with an inte ⁇ grated spring connection in different ⁇ phases of a transferring a pivot lever from its open position in its closed position;
  • Figures 5A to 8A a cross-sectional side view of the spring force connection according to the invention in different phases of a transfer of a pivot lever of the Sch.stel ⁇ ment in its open position, wherein a housing part of the spring force connection is not shown;
  • Figures 5B to 8B a side cross-sectional view of
  • Circular connector with an integrated spring force connection in different phases of a transfer of a Schwenkhe- lever from its closed position in the
  • Figure 9 is a perspective view of the inventions ⁇ to the invention and shown in Figures 1A to 8A spring power connection without the housing part and without the pivot lever;
  • FIG. 10A a side view of a contact spring of the spring force connection according to the invention.
  • FIG. 10B shows the contact spring shown in FIG. 10A in perspective view
  • Figure IIA a perspective view of the in the
  • FIGS 1B to 8B illustrated circular connector with fifth integrated spring force connections according to the invention, wherein all pivot lever are in their open position;
  • Figure IIB the circular connector shown in Figure IIA, with all the pivot lever are in its closed position.
  • FIGS 1A to 4A show a lateral cross-sectional view of a spring force connection 10 according to the invention in different phases of transferring a pivot lever 20 of the spring force connection 10 of its open position in its closed position, wherein in Figure 1A, the Schwenkhe- at 20 in its open position and in Figure 4A in the Closed position is located. In the figures 1A to 4A, a housing part 11 of the spring force connection is not shown.
  • a round connector 1 according to the present inventions is shown dung, wherein the rotary connector 1 comprises a plurality, in this case five, spring terminals 10th
  • the respective pivot levers 20 are in the same positions as shown in Figures 1A to 4A positions.
  • Figures 5A to 8A show a lateral cross-sectional view of the spring force connection 10 according to the invention in different phases of transferring the pivot lever 20 of the spring force connection 10 of its closed position in its open position, wherein in Figure 5A, the pivot lever 20 is in its closed position and in Figure 8A in its open position , Also in the figures 5A to 8A, the housing part 11 of the spring force connection 10 is not shown.
  • Figures 5B to 8B is shown in lateral Quer4.000sdar- position of the circular connector 1, wherein the respective pivot lever 20 are in the same positions as shown in Figures 5A to 8A positions.
  • the spring force connection 10 is shown in isolation in a perspective view, wherein both the housing part 10 and the pivot lever 20 are not shown.
  • a contact spring 40 of the spring force ⁇ terminal according to the invention is 10 Darge provides ⁇ , wherein in Figure 10A, the contact spring is shown spatially in a lateral plan view and in Figure 10B 40th
  • the circular connector 1 according to the invention is shown in a spatial representation in Figures IIA and IIB, wherein in the illustration according to Figure IIA, the respective pivot lever 20 of the respective spring force terminals 10 are in their open position, whereas in Figure IIB, the respective pivot lever 20 in its closed position are shown.
  • the spring force connection 10 has a housing ⁇ part 11, which is formed in the illustrated embodiment as a housing 11 of the circular connector 1.
  • the housing 11 of the circular connector 1 shown in Figures 1B to 8B and IIA and IIB forms the respective Gepatiusetei ⁇ le 11 of the five spring terminals 10.
  • Each spring terminal 10 has a pivot lever 20 which is pivotable between an open position and a closed position.
  • the pivot lever 20 is shown in its open position
  • Figures 4A and 5A the pivot lever 20 is shown in its closed position.
  • the pivot lever 20 is shown in intermediate positions between the open position and the closed position.
  • the spring force connection 10 also has an electrically conductive connection device 30, which is accessible via a conductor insertion opening 13 of the housing 11.
  • the electrically conductive connection device 30 has a spring cage 31, which in turn has two side walls 32 and a bus bar 37 arranged between the side walls 32.
  • An electrical conductor L is connected via the conductor lead opening 13 in an insertion direction R shown in Figure 1A between the side walls 32 of the spring basket 31 positio ⁇ nable.
  • the spring-force connection 10 furthermore has a contact spring 40, by means of which a conductor L introduced via the conductor insertion opening 13 into the housing 11 and between the two side walls 32 can be subjected to a force on the connecting device 30, more precisely on a busbar 37 of the connecting device 30.
  • the contact spring 40 has a pressure leg 41 and a clamping leg 45 connected thereto via a bending joint 44.
  • the contact spring 40 also has a locking leg 43 connected to the pressure leg 41 via a latching joint 42. It can be seen that the bending of the bending joint 44 is in the same direction as the bending of the latching joint 42.
  • the clamping legs 45 is formed curved and has at its end a clamping edge 46 on ⁇ .
  • the contact spring 40 is pivotable between a release position shown in Figures 1A and 8A and a clamping position shown in Figures 4A and 5A.
  • the contact spring 40 has two pivot pins 47, which extend laterally out of the bending joint 40 in opposite directions and define a pivot axis 48 of the contact spring 40 about which the contact spring 40 is pivotable between the release position and the clamping position ,
  • a groove 36 is formed in the two side walls 32 of the spring cage 31 in the edges 34 facing the conductor insertion opening 13.
  • the contact spring 40 is so in the Suspended spring cage 31, that the pivot pins 47 are arranged in the grooves 36 of the side walls 32.
  • the pivoting lever 20 has a pusher 21 which, in the illustrated embodiment, is designed as a pressure surface 21 of the pivoting lever 20.
  • the pressure surface 21 and the pusher 21 are formed as an inner surface 21 of the pivot lever 20.
  • the pivoting lever 20 further comprises a driver 22, which is formed in the illustrated embodiment as a bent pin 22 which is connected to the inner surface 21 to form a gap.
  • FIGS. 1A to 8A the locking leg 43 is arranged between the pusher 21 and the driver 22.
  • the contact spring 40 is formed elastically in the illustrated embodiment and formed for example of a Fe ⁇ derstahl. Consequently, an angle between the pressure leg 41 and the clamping leg 45 is variable. Further, an angle between the pressure leg 41 and the locking leg 43 is also variable.
  • a latching device 35 has on ⁇ that 34 of the side walls 32 are formed of the edges remote from the conductor insertion openings 13 in the illustrated embodiment, as two locking projections 35th
  • the contact spring 40 pivots in the direction of its clamping position
  • the locking limb 43 comes into contact with the latching projections 35
  • the angle between the latching limb 43 and the pressure limb 41 being exerted by means of the pivoting lever 20 Closing force is increased.
  • the spring connection 10 of the invention is thus the art ⁇ formed that from its open position angle in the closed position of the Druckschen- during the transfer of the pivot lever 20 is acted upon by force 41 at least indirectly by the inner surface 21 of the pivot lever 20th
  • the pressure leg 41 is subjected to force by means of the locking ⁇ leg 43 by the driver 22. Consequently, a forced coupling between the position or the position of the pivot lever 20 and the position or the position of the contact spring 40 before.
  • the contact spring 40 pivots clockwise from their release position in their clamping position.
  • the clamping spring 40 pivots counterclockwise from its clamping position in its release position.
  • the angle between the pressure leg 41 and the clamping leg 45 is variable, so that in a befindaji in clamping position contact spring 40, a conductor L on the Leiterein technological Anlagen réelle 13 in the housing 11 is inserted and under elastic deformation of the contact spring 40 between the Clamping leg 45 and the busbar 37 is positionable.
  • Figu ⁇ ren 4A and 5A it is seen that in the clamping position of the contact spring 40 of the clamping legs 45 and the power rail 37 to an open conductor insert opening 13 angle of a few ger than 90 °. In this way, insertion of the electrical conductor L in the spring connection 10 is erleich ⁇ tert.
  • busbar (connecting device / spring cage)

Landscapes

  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connections Arranged To Contact A Plurality Of Conductors (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Abstract

La présente invention concerne une connexion élastique (10) comportant une partie de boîtier (11), un levier pivotant (20) qui peut pivoter entre une position ouverte et une position fermée, un dispositif de connexion (30) électriquement conducteur qui est accessible par une ouverture d'introduction (13) de conducteur de la partie de boîtier (11) et un ressort de contact (40) au moyen duquel un conducteur (L) introduit par l'ouverture d'introduction (13) de conducteur dans la partie de boîtier (11) peut être sollicité par une force sur le dispositif de connexion (30), la connexion élastique étant caractérisée en ce que le ressort de contact (40) pouvant osciller entre une position de libération et une position de serrage comporte une branche de pression (41) et une branche de serrage (45) connectée à celle-ci par une charnière flexible (44), et en ce que le levier pivotant (20) comporte une détente (21) et un entraîneur (22), la branche de pression (41) étant agencée au moins en position fermée du levier pivotant (20) entre la détente (21) et l'entraîneur (22), et en ce que, par pivotement du levier pivotant (20) dans sa position fermée, la détente (21) sollicite par une force au moins indirectement la branche de pression (41) de telle sorte que le ressort de contact (40) pivote dans sa position de serrage, pour qu'un conducteur (L) introduit par l'ouverture d'introduction (13) de conducteur dans la partie de boîtier (11) soit sollicité par une force au moyen de la branche de serrage (45) sur le dispositif de connexion (30), et en ce que, par pivotement du levier pivotant (20) dans sa position ouverte, l'entraîneur (22) sollicite par une force au moins indirectement la branche de pression (41) de telle sorte que le ressort de contact (40) pivote dans sa position de libération.
EP18705650.2A 2017-02-27 2018-02-20 Connexion élastique et connecteur rond comportant une pluralité de connexions élastiques Active EP3586404B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP23213326.4A EP4329103A3 (fr) 2017-02-27 2018-02-20 Borne à ressort et connecteur rond doté d'une pluralité de bornes à ressort

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
BE20175116A BE1024468B1 (de) 2017-02-27 2017-02-27 Federkraftanschluss und Rundsteckverbinder mit einer Vielzahl von Federkraftanschlüssen
PCT/EP2018/054155 WO2018153862A1 (fr) 2017-02-27 2018-02-20 Connexion élastique et connecteur rond comportant une pluralité de connexions élastiques

Related Child Applications (1)

Application Number Title Priority Date Filing Date
EP23213326.4A Division EP4329103A3 (fr) 2017-02-27 2018-02-20 Borne à ressort et connecteur rond doté d'une pluralité de bornes à ressort

Publications (3)

Publication Number Publication Date
EP3586404A1 true EP3586404A1 (fr) 2020-01-01
EP3586404B1 EP3586404B1 (fr) 2023-12-13
EP3586404C0 EP3586404C0 (fr) 2023-12-13

Family

ID=58401297

Family Applications (2)

Application Number Title Priority Date Filing Date
EP18705650.2A Active EP3586404B1 (fr) 2017-02-27 2018-02-20 Connexion élastique et connecteur rond comportant une pluralité de connexions élastiques
EP23213326.4A Pending EP4329103A3 (fr) 2017-02-27 2018-02-20 Borne à ressort et connecteur rond doté d'une pluralité de bornes à ressort

Family Applications After (1)

Application Number Title Priority Date Filing Date
EP23213326.4A Pending EP4329103A3 (fr) 2017-02-27 2018-02-20 Borne à ressort et connecteur rond doté d'une pluralité de bornes à ressort

Country Status (7)

Country Link
US (1) US10998649B2 (fr)
EP (2) EP3586404B1 (fr)
JP (1) JP6995870B2 (fr)
CN (1) CN110366799B (fr)
BE (1) BE1024468B1 (fr)
DE (2) DE202018006858U1 (fr)
WO (1) WO2018153862A1 (fr)

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EP3586404B1 (fr) 2023-12-13
JP2020508554A (ja) 2020-03-19
DE202018006858U1 (de) 2023-10-30
US20200059014A1 (en) 2020-02-20
EP3586404C0 (fr) 2023-12-13
BE1024468B1 (de) 2018-02-28
EP4329103A3 (fr) 2024-05-22
JP6995870B2 (ja) 2022-02-04
EP4329103A2 (fr) 2024-02-28
US10998649B2 (en) 2021-05-04
CN110366799A (zh) 2019-10-22
WO2018153862A1 (fr) 2018-08-30
DE202018006437U1 (de) 2020-05-27
CN110366799B (zh) 2021-10-22

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