EP3613103B1 - Raccordement à ressort - Google Patents
Raccordement à ressort Download PDFInfo
- Publication number
- EP3613103B1 EP3613103B1 EP18715002.4A EP18715002A EP3613103B1 EP 3613103 B1 EP3613103 B1 EP 3613103B1 EP 18715002 A EP18715002 A EP 18715002A EP 3613103 B1 EP3613103 B1 EP 3613103B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- spring
- actuating element
- actuating
- contact
- conductor
- 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
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R4/00—Electrically-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
- H01R4/28—Clamped connections, spring connections
- H01R4/48—Clamped connections, spring connections utilising a spring, clip, or other resilient member
- H01R4/4809—Clamped connections, spring connections utilising a spring, clip, or other resilient member using a leaf spring to bias the conductor toward the busbar
- H01R4/48185—Clamped connections, spring connections utilising a spring, clip, or other resilient member using a leaf spring to bias the conductor toward the busbar adapted for axial insertion of a wire end
- H01R4/4819—Clamped connections, spring connections utilising a spring, clip, or other resilient member using a leaf spring to bias the conductor toward the busbar adapted for axial insertion of a wire end the spring shape allowing insertion of the conductor end when the spring is unbiased
- H01R4/4821—Single-blade spring
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R4/00—Electrically-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
- H01R4/28—Clamped connections, spring connections
- H01R4/48—Clamped connections, spring connections utilising a spring, clip, or other resilient member
- H01R4/4809—Clamped connections, spring connections utilising a spring, clip, or other resilient member using a leaf spring to bias the conductor toward the busbar
- H01R4/4828—Spring-activating arrangements mounted on or integrally formed with the spring housing
- H01R4/483—Pivoting arrangements, e.g. lever pushing on the spring
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R4/00—Electrically-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
- H01R4/28—Clamped connections, spring connections
- H01R4/48—Clamped connections, spring connections utilising a spring, clip, or other resilient member
- H01R4/4809—Clamped connections, spring connections utilising a spring, clip, or other resilient member using a leaf spring to bias the conductor toward the busbar
- H01R4/4828—Spring-activating arrangements mounted on or integrally formed with the spring housing
- H01R4/4835—Mechanically bistable arrangements, e.g. locked by the housing when the spring is biased
Definitions
- the invention relates to a spring force connection for connecting an electrical conductor according to the preamble of claim 1.
- Such a spring-loaded connection comprises a housing part and an electrically conductive contact element arranged on the housing part for making electrical contact with a conductor connected to the spring-loaded connection.
- a spring element has a clamping leg, which can be adjusted relative to the contact element, for applying a spring force to a conductor connected to the spring-force connection.
- An actuating element is used to adjust the clamping leg.
- a pulling element is also provided, which is movably coupled to the actuating element and movably coupled to the clamping leg and is designed to exert a tensile force on the clamping leg when the actuating element is actuated, in order to adjust the clamping leg relative to the contact element.
- Such a spring force connection can be used to connect an electrical conductor to an associated electrical assembly, for example to a contact insert of a connector part, to a terminal block, to a printed circuit board or to another assembly.
- a spring-loaded connection enables an electrical conductor to be connected in a simple, intuitive manner, in that the electrical conductor is plugged onto the housing part and is locked in the plugged-in position on the contact element by spring force.
- the conductor is pressed against a contact section of the contact element with a stripped end of the conductor, for example, via the clamping leg of the spring element, so that the conductor is held mechanically on the contact element, but is also electrically contacted with the contact element.
- a spring-cage connection is desirable that allows an electrical conductor to be easily plugged in with reliable electrical contact and also with reliable mechanical support, but at the same time can be operated easily and possibly without using a tool in order to release an electrical conductor that is plugged into the spring-cage connection again.
- the loosening takes place here by actuating the actuating element, which acts on the clamping leg in order to adjust it in such a way that the mechanical retention of the conductor on the spring-loaded connection is canceled.
- an actuating element in the form of a lever element is arranged pivotably on a housing part.
- the actuating element acts on a clamping limb of a spring element via a pin in order to adjust the clamping limb for releasing a conductor from the spring-loaded connection.
- U1 discloses a terminal for connecting a conductor that has a terminal cage that can be inserted into a housing.
- a clamping spring can be moved into an open position by means of an actuating element in such a way that a conductor end can be inserted into a clamping point of the housing or can also be removed again from the clamping point.
- the actuating element acts by pulling on the clamping leg.
- an actuating element is rotatably arranged on a housing part and coupled in an articulated manner to a clamping leg of a spring element in such a way that the clamping leg can be adjusted by turning the actuating element.
- the DE 10 2015 115 612 A1 discloses a spring force connection with a spring element and an actuating element.
- a connecting element is formed in one piece on the clamping leg of the clamping spring, via which the actuating element can apply a tensile force to the clamping leg of the clamping spring.
- the DE 10 2014 114 026 A1 discloses a spring force connection with a clamping spring and an actuating lever.
- a driver element is formed on the clamping leg of the clamping spring and is in operative connection with the actuating lever in order to convert the clamping leg into an open position and a closed position.
- the object of the present invention is to provide a spring-loaded connection that is easy to use and can ensure reliable mechanical support and also reliable electrical contacting when the conductor is connected.
- the pulling element is formed by a bracket element which is connected in an articulated manner to the actuating element via a first bracket section and detachably surrounds the clamping leg with a second bracket section.
- the actuation of the clamping limb for connecting an electrical conductor to the spring force connection or for releasing an electrical conductor from the spring force connection thus takes place in that the actuating element is coupled to the clamping limb of the spring element via a tension element.
- the actuating element thus acts by applying a tensile force to the clamping leg, so that by actuating the actuating element, the clamping leg can be adjusted relative to the contact element in such a way that a conductor can be plugged into the contact element of the spring-cage connection or a conductor connected to the spring-cage connection can be disconnected from the spring-cage connection can be removed.
- tension element is designed as a bracket that is articulated to the actuating element and also encompasses the clamping leg of the spring element for coupling purposes results in simple, cost-effective manufacture using fewer components with reliable power transmission from the actuating element to the clamping leg of the spring element.
- the articulated connection of the pull element in the form of the bracket element to the actuating element can be produced, for example, by a coupling point which has the shape of an elongated hole.
- the first bracket section of the tension element designed as a bracket element lies with play in the coupling point of the actuating element and can thus be pivoted in an articulated manner relative to the actuating element and also moved along the elongated hole to the actuating element.
- This mounting of the tension element on the actuating element which is subject to play, allows the tension element to deviate, for example, when a conductor is connected to the spring-loaded connection by direct plugging, ie without actuating the actuating element. In this case, the tension element can deviate and does not prevent the conductor from being plugged directly into the spring-cage connection.
- the actuating element is formed by a lever element that can be pivoted relative to the contact element.
- the actuating element can be mounted pivotably on the contact element, for example via a bearing element arranged on the contact element in the form of a pin, which engages in a bearing opening of the actuating element. Because the actuating element is mounted directly on the contact element (and not on the housing part), when the actuating element is actuated, there is a flow of force predominantly between the actuating element and the contact element, so that twisting of the housing part can be avoided.
- the actuating element When actuated, the actuating element thus moves in a defined manner relative to the contact element, acting on the clamping leg of the spring element, which is thus adjusted relative to the contact element in order to connect a conductor to the spring-loaded connection or to remove a connected conductor from the spring-loaded connection.
- the actuating path of the actuating element relative to the contact element can be limited here, for example via one or more path-limiting elements that act between the contact element and the actuating element.
- projections protruding radially inwards
- the actuating element can be movable between a non-actuated position and an actuated position relative to the contact element.
- the actuated position and the non-actuated position can be predetermined by the path limiting elements, with the clamping leg being removed from a contact section of the contact element by transferring the actuating element from the non-actuated position to the actuated position.
- the clamping leg In a basic position, the clamping leg is, for example, brought closer to the contact section of the contact element, so that an electrical conductor can be attached to the spring-loaded connection for a clamping hold.
- the clamping limb In a clamping position, the clamping limb then holds the electrical conductor in contacting contact with the contact section, so that on the one hand an electrical contact is established and on the other hand a mechanical hold of the conductor on the contact element is established.
- the clamping leg By actuating the actuating element, the clamping leg can be removed far enough from the contact section of the contact element that a conductor can be easily connected to the spring-cage connection or, when the conductor is connected, the clamped hold can be canceled and the conductor can be removed.
- the actuating element is in a stable position relative to the contact element in the actuated position. If the actuating element is transferred from the non-actuated position to the actuated position, the actuating element remains thus in the then assumed, actuated position and, in particular, cannot automatically move back into the non-actuated position without further ado. Only by acting on the actuating element, for example by hand or using a tool, is the actuating element moved back into the non-actuated position. The fact that the actuating element remains in the actuated position after it has been actuated indicates that the actuating element has been actuated. It is thus immediately apparent to a user that a conductor can now be plugged into the spring-loaded connection or a connected conductor can be removed.
- Such a stable position of the actuating element in the actuated position can be realized in different ways.
- the pulling element which couples the actuating element to the clamping leg of the spring element, can extend at least approximately through a pivot axis of the actuating element in the actuated position, so that no restoring moment towards the non-actuated position is applied to the actuating element due to elastic tension on the spring element is exerted due to the spring force.
- the actuating element thus assumes a stable position in the actuated position, from which the actuating element can only be moved out again by the action of force, for example by manual action or by using a tool.
- the actuating element can be held in its non-actuated position and/or its actuated position, for example by the action of a locking device.
- a locking device can be formed, for example, by a locking projection on the housing part or on a lever section of the actuating element, which can be brought into operative connection with an associated locking recess on the respective other part, i.e. on the actuating element or the housing part. In a locking position, the locking projection engages in the associated locking recess and in this way locks the actuating element in the position just assumed, ie for example in the non-actuated position and/or the actuated position.
- the spring element has a holding leg, via which the spring element is supported on the contact element and possibly also on the housing part.
- the spring element is thus supported on the contact element and is also held on the housing part.
- the clamping leg is elastically adjustable relative to the holding leg, so that by deflecting the clamping leg, a preload is applied to the spring element and, via this, a clamping force for mechanical holding and for electrical Contacting an electrical conductor can be provided.
- the clamping limb is elastically adjusted relative to the holding limb, with deformation of the spring element.
- the housing part has a plug-in opening for plugging in an electrical conductor along a plug-in direction.
- the electrical conductor can be inserted into the plug-in opening, for example with a stripped conductor end, so that the conductor end interacts with the spring element and is held on the contact element in an electrically contacting and mechanically locking manner via the clamping leg.
- FIG. 1A , 1B to 6 show an exemplary embodiment of a spring-loaded connection 1, which has a housing part 10 and an electrically conductive contact element 11, arranged on the housing part 10, in the form of a current bar.
- the housing part 10 is made of an electrically insulating (plastic) material and has an insertion opening 100 into which a conductor 2 (see FIG Figures 4A and 4B ) can be inserted in a plug-in direction E in order to make electrical contact with the contact element 11 .
- the spring force connection 1 has a spring element 12 which is made of an elastically resilient material, for example spring steel, and is placed around a holding section 101 of the housing part 10 and held above it on the housing part 10 .
- the spring element 12 is supported in relation to the contact element 11 and also on the housing part 10 via a holding leg 121 .
- a clamping leg 120 is bent over towards the holding leg 21 and extends into the area of the plug-in opening 100 towards a flat contact section 110 of the contact element 11 .
- the spring-loaded connection 1 enables a so-called direct plugging of the conductor 2 by inserting the conductor 2 with a stripped conductor end into the plug-in opening 100 and thereby removing the clamping leg 120 from the in Figure 1B shown position deflects.
- the conductor end of the conductor 2 comes to rest between the clamping leg 120 and the contact section 110 of the contact element 11, so that the conductor end is pressed into electrically contacting contact with the contact section 110 via the clamping leg 120 and is also clamped to the contact element via the clamping leg 120 110 is held as is in Figures 4A and 4B is shown.
- the spring force connection 1 has an actuating element 13 in the form of a lever element with a lever section 130 to be actuated manually, which is mounted on the contact element 11 such that it can pivot about a pivot axis D.
- the actuating element 13 has a body 135 in which a bearing opening 131 is formed through which through which engages a bearing element 112 in the form of a flat pin formed integrally on a portion 111 of the contact element 11 .
- the actuating element 13 is thus mounted directly on the contact element 11 and can be pivoted relative to the contact element 11 .
- the actuating element 13 is coupled to the clamping leg 120 of the spring element 12 via a tension element 14 in the form of a bracket.
- the pull element 14 is coupled at one end in an articulated manner to the actuating element 13 via two first bracket sections 140 formed by the ends of the bracket and encompasses a second bracket section 141 connected to the first bracket section 140 via a longitudinal section 142 at the other, remote end the clamping leg 120, so that the pulling element 14 can be moved both to the actuating element 13 and to the clamping leg 120.
- the tension element 14 in the form of the bracket can, for example, be ring-shaped (almost closed, but separated on the side of the actuating element 13) and in this case engages in a coupling point 132 in the form of a slot in the body 135 on both sides.
- the pull element 14 is articulated to the actuating element 13, but can also be moved with play in the coupling point 132, so that the pull element 14 can give way when a conductor 2 is plugged in directly, as will be explained below.
- Insertion slots 134 are formed on both sides of the body 135 (see, for example, Figure 2A , via which the first bracket sections 140 can be inserted into the coupling point 132 on the body 135 when the spring force connection 1 is installed.
- the tension element 14 can be designed as a U-shaped bracket, which engages in the coupling point 132 with a bracket section 140 and encloses the clamping leg 120 with a second bracket section 141 .
- the actuating element 13 serves to facilitate the connection of a conductor 2 and also to enable a connected conductor 2 to be removed.
- a non-actuated position shown in Figures 1A and 1B , the lever section 130 points vertically upwards (parallel to the plug-in direction E), and the clamping leg 120 is (if no conductor 2 is connected to the spring-loaded connection 1) in the in Figure 1B shown basic position.
- the actuating element 13 can be moved to an in Figures 2A and 2B into the actuated position shown, in which the lever section 130 extends approximately horizontally to the contact element 11 (transverse to the insertion direction E) and acts on the clamping leg 120 via the tension element 14 in such a way that it is pulled out of its basic position and away from the contact section 110 of the contact element 11 is removed.
- tension element 14 is formed by a bracket element and is coupled to the actuating element 13 in an articulated manner and with play on the one hand and to the clamping leg 120 of the spring element 12 on the other by a loose grip, this results in a simple configuration using fewer components with reliable power transmission between the actuating element 13 and the clamping arm 120.
- locking projections 102 Arranged on the housing part 10 are locking projections 102 (see for example Figure 2A ), which cooperate with locking recesses 136 on the lever portion 130 of the actuating element 13.
- Actuating element 13 is accommodated between a front housing plate, not shown in the figures, and the rear housing plate visible in the figures, locking projections 102 being arranged on both housing plates, each pointing towards actuating element 13 point and interact with the locking recesses 136 on both sides of the lever portion 130.
- the actuating element 13 After actuating the actuating element 13, the actuating element 13 thus remains in the actuated position according to FIG Figures 2A and 2B and is not reset automatically, so that a user is shown that the actuating element 13 has been actuated and the clamping leg 120 has thus been deflected, so that a conductor 2 can be connected or a connected conductor 2 can be removed.
- the mounting of the actuating element 13 on the contact element 11 is provided by engagement of the bearing element 112 , which is formed from a bent section of the contact element 11 shaped as a bent sheet metal part, into the bearing opening 131 of the actuating element 13 .
- Two path limiting elements 133 are formed on the bearing opening 131 of the actuating element 13, which protrude radially inward and which limit the actuating path of the actuating element 13 between the non-actuated position ( Figures 1A, 1B ) and the actuated position ( Figures 2A, 2B ) limit.
- the actuating element 13 can thus be pivoted by approximately 90° between two defined positions (see also 6 ).
- the pulling element 14 with its second bracket section 141 with which the pulling element 14 grips the clamping leg 120 of the spring element 12, can thus move in a space R1 (see FIG figure 5 ) move when the clamping leg 120 is in its undeflected basic position. If, on the other hand, the clamping leg 120 is deflected by directly plugging in a conductor 2, the second clip section 141 can move in a space R2. When a conductor 2 is plugged in directly, the pulling element 14 can thus give way and does not prevent the conductor 2 from being plugged in, even though the actuating element 13 is not actuated. In particular, the pulling element 14 cannot wedge with the conductor 2 but can move within the coupling point 132 in such a way that the conductor 2 can easily be plugged onto the contact element 11 by deflecting the clamping leg 120 .
- a spring force connection of the type described here can be used, for example, on a contact insert for a connector part or also on a terminal arrangement, for example a terminal block or the like. However, this is not to be understood as limiting.
- a spring force connection of the type described here can be used in very different ways on very different electrical assemblies.
Landscapes
- Connections Arranged To Contact A Plurality Of Conductors (AREA)
- Details Of Connecting Devices For Male And Female Coupling (AREA)
- Coupling Device And Connection With Printed Circuit (AREA)
Claims (10)
- Raccord à force élastique (1) pour le raccordement d'un conducteur électrique (2), comprenant une partie de boîtier (10), un élément de contact électriquement conducteur (11) agencé sur la partie de boîtier (10) pour établir un contact électrique avec un conducteur (2) raccordé au raccord à force élastique (1), un élément élastique (12) qui présente une branche de serrage (120) déplaçable vers l'élément de contact (11) pour appliquer une force élastique à un conducteur (2) raccordé au raccord à force élastique (1), un élément d'actionnement (13) pour déplacer la branche de serrage (120), et un élément de traction (14) qui est couplé de manière mobile à l'élément d'actionnement (13) et de manière mobile à la branche de serrage (120) et qui est configuré pour exercer une force de traction sur la branche de serrage (120) lors de l'actionnement de l'élément d'actionnement (13) afin de déplacer la branche de serrage (120) vers l'élément de contact (11), caractérisé en ce que l'élément de traction (14) est réalisé par un élément en étrier qui est relié de manière articulée à l'élément d'actionnement (13) par l'intermédiaire d'une première section d'étrier (140) et qui, par une deuxième section d'étrier (141), vient en prise de manière amovible autour de la branche de serrage (120).
- Raccord à force élastique (1) selon la revendication 1, caractérisé en ce que l'élément d'actionnement (13) présente un point d'accouplement (132) sous la forme d'un trou oblong dans lequel s'engage la première section d'étrier (140).
- Raccord à force élastique (1) selon la revendication 1 ou 2, caractérisé en ce que l'élément d'actionnement (13) est réalisé par un élément de levier qui peut pivoter vers l'élément de contact (11).
- Raccord à force élastique (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément de contact (11) forme un élément de support (112) sur lequel l'élément d'actionnement (13) est supporté de manière pivotante.
- Raccord à force élastique (1) selon la revendication 4, caractérisé en ce que l'élément de support (112) est formé par un élément de tourillon formé sur l'élément de contact (11), qui est en prise avec une ouverture de support (131) de l'élément d'actionnement (13).
- Raccord à force élastique (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément d'actionnement (13) présente au moins un élément de limitation de course (133) pour limiter une course d'actionnement par rapport à l'élément de contact (11) .
- Raccord à force élastique (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément d'actionnement (13) est mobile entre une position non actionnée et une position actionnée par rapport à l'élément de contact (11), la branche de serrage (120) pouvant être éloignée d'une section de contact (10) de l'élément de contact (11) par transfert de l'élément d'actionnement (13) de la position non actionnée à la position actionnée.
- Raccord à force élastique (1) selon la revendication 7, caractérisé en ce que l'élément d'actionnement (13) présente un état stable par rapport à l'élément de contact (11) dans la position actionnée.
- Raccord à force élastique (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément élastique (12) présente une branche de retenue (121) par l'intermédiaire de laquelle l'élément élastique (12) est soutenu sur l'élément de contact (11).
- Raccord à force élastique (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la partie de boîtier (10) présente une ouverture d'enfichage (100) pour l'enfichage d'un conducteur électrique (2) le long d'une direction d'enfichage (E).
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102017108171.2A DE102017108171A1 (de) | 2017-04-18 | 2017-04-18 | Federkraftanschluss |
| PCT/EP2018/057723 WO2018192752A1 (fr) | 2017-04-18 | 2018-03-27 | Raccordement à ressort |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3613103A1 EP3613103A1 (fr) | 2020-02-26 |
| EP3613103B1 true EP3613103B1 (fr) | 2022-10-19 |
Family
ID=61868509
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP18715002.4A Active EP3613103B1 (fr) | 2017-04-18 | 2018-03-27 | Raccordement à ressort |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP3613103B1 (fr) |
| CN (1) | CN110546816B (fr) |
| DE (1) | DE102017108171A1 (fr) |
| ES (1) | ES2933899T3 (fr) |
| WO (1) | WO2018192752A1 (fr) |
Families Citing this family (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE202018106896U1 (de) | 2018-12-04 | 2020-03-05 | WAGO Verwaltungsgesellschaft mit beschränkter Haftung | Federanschlussklemme |
| DE102019109467B4 (de) * | 2019-04-10 | 2023-08-31 | Wago Verwaltungsgesellschaft Mbh | Leiteranschlussklemme |
| DE202019006022U1 (de) | 2019-06-24 | 2024-02-15 | WAGO Verwaltungsgesellschaft mit beschränkter Haftung | Elektrische Anschlussklemme |
| DE102019116930B4 (de) * | 2019-06-24 | 2023-11-16 | WAGO Verwaltungsgesellschaft mit beschränkter Haftung | Elektrische Anschlussklemme |
| DE102019123863B4 (de) * | 2019-09-05 | 2025-01-30 | Wago Verwaltungsgesellschaft Mbh | Leiteranschlussklemme |
| DE102019125410B3 (de) | 2019-09-20 | 2020-12-10 | Wago Verwaltungsgesellschaft Mbh | Leiteranschlussklemme und Verfahren zur Montage einer Leiteranschlussklemme |
| DE202020100782U1 (de) * | 2020-02-13 | 2021-05-17 | Wago Verwaltungsgesellschaft Mbh | Leiteranschlussklemme |
| EP4027460A1 (fr) * | 2021-01-06 | 2022-07-13 | Dinkle Enterprise Co., Ltd. | Structure de bloc terminal |
| LU502683B1 (de) * | 2022-08-18 | 2024-02-19 | Phoenix Contact Gmbh & Co | Anschlussklemme zum Anschließen einer elektrischen Leitung |
| DE202024101047U1 (de) * | 2024-03-05 | 2025-06-12 | WAGO Verwaltungsgesellschaft mit beschränkter Haftung | Federkraftklemmanschluss und Leiteranschlussklemme |
| DE202024101187U1 (de) * | 2024-03-11 | 2025-06-12 | WAGO Verwaltungsgesellschaft mit beschränkter Haftung | Federkraftklemmanschluss und Leiteranschlussklemme |
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| JP4289230B2 (ja) * | 2004-06-25 | 2009-07-01 | パナソニック電工株式会社 | 速結端子装置 |
| DE102006018157B4 (de) * | 2006-04-19 | 2010-12-02 | Siemens Ag | Klemme für den Anschluss eines elektrischen Leiters |
| DE102007050936B4 (de) * | 2007-10-23 | 2009-07-16 | Wago Verwaltungsgesellschaft Mbh | Anschlussklemme |
| DE202009002324U1 (de) | 2009-02-18 | 2010-07-29 | Weidmüller Interface GmbH & Co. KG | Anschlussklemme zum Anschluss von Leiterenden |
| DE102012110895B4 (de) | 2012-11-13 | 2015-03-26 | Wago Verwaltungsgesellschaft Mbh | Anschlussklemme |
| DE102014114026B4 (de) * | 2014-09-26 | 2023-03-30 | Wago Verwaltungsgesellschaft Mbh | Leiteranschlussklemme und Verfahren zu deren Montage |
| DE102015104625B4 (de) | 2015-03-26 | 2022-11-17 | Phoenix Contact Gmbh & Co. Kg | Leiteranschlussklemme |
| DE102015115612A1 (de) * | 2015-09-16 | 2017-03-16 | Phoenix Contact Gmbh & Co. Kg | Anschlussklemme zum Anschließen eines elektrischen Leiters |
| CN205985374U (zh) * | 2016-08-12 | 2017-02-22 | 国网河南许昌县供电公司 | 接线端快接端子 |
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2017
- 2017-04-18 DE DE102017108171.2A patent/DE102017108171A1/de not_active Ceased
-
2018
- 2018-03-27 CN CN201880026186.4A patent/CN110546816B/zh active Active
- 2018-03-27 EP EP18715002.4A patent/EP3613103B1/fr active Active
- 2018-03-27 ES ES18715002T patent/ES2933899T3/es active Active
- 2018-03-27 WO PCT/EP2018/057723 patent/WO2018192752A1/fr not_active Ceased
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|---|---|---|---|---|
| EP0837526B1 (fr) * | 1996-10-16 | 2001-01-03 | Legrand | Borne de connexion automatique, et appareil électrique équipé d'une telle borne de connexion |
| US20060223342A1 (en) * | 2005-04-04 | 2006-10-05 | Joachim Borst | Carrier element for connection terminal |
| WO2010022955A1 (fr) * | 2008-08-27 | 2010-03-04 | Phoenix Contact Gmbh & Co. Kg | Borne de raccordement électrique |
| DE102011110640A1 (de) * | 2011-08-18 | 2013-02-21 | Wago Verwaltungsgesellschaft Mbh | Leiteranschlussklemme |
| US8113858B1 (en) * | 2011-08-20 | 2012-02-14 | Cheng Uei Precision Industry Co., Ltd. | Cable connector having switching function |
| CN104425907B (zh) * | 2013-08-26 | 2017-03-01 | 进联电子科技(上海)有限公司 | 导线端子座改良结构 |
| WO2018010893A1 (fr) * | 2016-07-13 | 2018-01-18 | Phoenix Contact Gmbh & Co. Kg | Borne de connexion |
Also Published As
| Publication number | Publication date |
|---|---|
| DE102017108171A1 (de) | 2018-10-18 |
| CN110546816B (zh) | 2021-12-31 |
| WO2018192752A1 (fr) | 2018-10-25 |
| CN110546816A (zh) | 2019-12-06 |
| ES2933899T3 (es) | 2023-02-14 |
| EP3613103A1 (fr) | 2020-02-26 |
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