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EP4270675B1 - Insert de contact monopolaire et ensemble insert de contact - Google Patents

Insert de contact monopolaire et ensemble insert de contact

Info

Publication number
EP4270675B1
EP4270675B1 EP23169437.3A EP23169437A EP4270675B1 EP 4270675 B1 EP4270675 B1 EP 4270675B1 EP 23169437 A EP23169437 A EP 23169437A EP 4270675 B1 EP4270675 B1 EP 4270675B1
Authority
EP
European Patent Office
Prior art keywords
contact insert
contact
receptacle space
longitudinal axis
modular
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
EP23169437.3A
Other languages
German (de)
English (en)
Other versions
EP4270675A1 (fr
Inventor
Detlef Nehm
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
Publication of EP4270675A1 publication Critical patent/EP4270675A1/fr
Application granted granted Critical
Publication of EP4270675B1 publication Critical patent/EP4270675B1/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
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/516Means for holding or embracing insulating body, e.g. casing, hoods
    • H01R13/518Means for holding or embracing insulating body, e.g. casing, hoods for holding or embracing several coupling parts, e.g. frames

Definitions

  • the invention relates to a fixed-pole contact insert for a connector, comprising a contact insert body and a plurality of contact elements arranged in the contact insert body. Furthermore, the invention relates to a contact insert arrangement for a connector, comprising a fixed-pole contact insert, wherein the fixed-pole contact insert has a contact insert body and a plurality of contact elements arranged in the contact insert body.
  • the contact inserts are generally arranged in a housing part of a connector that is designed to accommodate the contact insert.
  • the contact insert body is usually connected to the housing part of the connector.
  • the contact inserts are each used to connect to a corresponding mating contact insert, which is arranged in a housing of a mating connector.
  • the contact elements arranged in the contact insert body can be designed, for example, as contact pins or contact sockets, which are connected to corresponding contact elements of the mating contact insert when the contact insert is mated with a corresponding mating contact insert or the connector is mated with the corresponding mating connector. By mating, the contact elements are collectively contacted.
  • the contact elements arranged in the contact insert body are designed similarly with regard to the contacting and connection zones to ensure uniform contact.
  • Contact inserts can generally be divided into modular contact inserts and fixed-pole contact inserts. Modular contact inserts are typically first inserted into a retaining frame, which is then inserted into a connector housing and secured there. Because the contact inserts can be inserted individually into the retaining frame, it is possible to equip a retaining frame with different contact inserts depending on the application.
  • Fixed-pole contact inserts are inserted directly into a housing part of a connector without the use of a holding frame and secured therein.
  • a contact insert has a contact insert body in which several contact elements are arranged.
  • the number of contact elements arranged in the contact insert body cannot be changed.
  • the present invention relates to fixed-pole contact inserts that are intended to be inserted and secured directly into a housing part of a connector without the use of a retaining frame.
  • the contact inserts and in particular the fixed-pole contact inserts in question, usually have at least one protective conductor and/or grounding connection in addition to the contact elements arranged in the contact insert body. Therefore, if the fixed-pole contact insert according to the invention is said to have contact elements arranged in the contact insert body, then the at least one protective conductor and/or grounding connection does not fall under these contact elements but must be considered separately from these contact elements.
  • the holding frames of the modular contact inserts listed above also generally have at least one protective conductor and/or grounding connection. Such a holding frame for a modular contact insert must be clearly distinguished from the fixed-pole contact insert in question, which, in addition to at least one protective conductor and/or grounding connection, has further contact elements arranged in the contact insert body.
  • the document US5913703A discloses a split connector designed to reduce engagement forces and facilitate engagement detection.
  • the document EP0590496A1 discloses a connector device for a wiring harness of a vehicle, comprising a fixed terminal holder on an outer housing and a movable terminal holder, which is held with a front end in the insertion direction in front of the fixed terminal holder.
  • the document EP1560298A1 discloses a split connector having a locking arm formed integrally in the main housing for holding a mating connector.
  • the present invention is therefore based on the object of providing a fixed-pole contact insert that can be used for a wider range of applications than conventional fixed-pole contact inserts. Furthermore, the invention is based on the object of providing a contact insert arrangement that can be flexibly configured for different areas of application.
  • the fixed-pole contact insert according to the invention can thus be equipped with at least one, in particular with several, modular contact inserts.
  • the fixed-pole contact insert can be expanded in a particularly elegant manner with additional contact elements, namely the contact elements of the modular contact insert.
  • the fixed-pole contact insert according to the invention enables easy adaptation to various applications and can thus be used in a variety of ways and designed flexibly.
  • the contact insert according to the invention also enables the flexible combination of different contact inserts in a particularly elegant manner, namely by allowing a modular contact insert with a different design—with regard to the type and/or arrangement of the contact elements—to be inserted into the at least one first receiving location.
  • a preferred embodiment of the contact insert according to the invention is characterized in that the at least one receiving location has a holding frame for receiving the at least one modular contact insert.
  • the holding frame is designed as a separate component.
  • the retaining frame is then positioned in the receiving location and connected to the contact insert body.
  • the connection between the retaining frame and the contact insert body can be realized, for example, by a screw connection or a snap-in connection.
  • the holding frame in order to fix the at least one modular contact insert in the holding frame, has at least one spring element which is designed to fix the modular contact insert.
  • the spring element preferably transitions to a pre-tensioned state, at least briefly, upon insertion of the modular contact insert. If the modular contact insert is arranged in its final position in the receiving space, the at least one spring element is preferably in a A state with at least a reduced preload compared to the state of maximum preload. Particularly preferably, the at least one spring element is then in a relaxed state.
  • the spring element preferably has at least one locking element.
  • the locking element is preferably designed as a locking lug or a locking projection.
  • a modular contact insert intended for insertion into the receiving space then preferably has a locking recess into which the at least one locking element engages when the modular contact insert is inserted.
  • the holding frame has at least one second spring element for securing a modular contact insert.
  • the holding frame has at least a first end face and a second end face opposite the first end face, as well as a first longitudinal side and a second longitudinal side opposite the first longitudinal side.
  • the two spring elements are arranged on opposite sides of the holding frame, i.e., on the opposite end faces or on the opposite longitudinal sides.
  • the design with a retaining frame formed as a separate component, which is connected to the contact insert body, offers the advantage that various types of retaining frames can be incorporated into the contact insert body. Furthermore, the retaining frame is replaceable, so that, for example, in the event of damage to the retaining frame, only the retaining frame itself can be replaced.
  • the retaining frame is at least partially formed in the contact insert body.
  • the retaining frame is thus at least partially formed integrally with the contact insert body, i.e., formed in the contact insert body in the region of the receiving location.
  • the holding frame formed in the receiving space has at least one spring element for securing the at least one modular contact insert in the receiving space.
  • the at least one spring element is formed integrally with the contact insert body. The spring element preferably transitions to a preloaded state, at least briefly, upon insertion of the modular contact insert.
  • the at least one spring element is preferably in a state with at least a reduced preload compared to the state in which the maximum preload is reached. Particularly preferably, the at least one spring element is then in a relaxed state.
  • the spring element preferably has at least one locking element, particularly preferably a locking lug or a locking projection.
  • a modular contact insert then preferably has a locking recess into which the at least one locking element engages when the modular contact insert is inserted.
  • the retaining frame is completely formed within the contact insert body. Therefore, no additional, separate fixing means are required to secure the modular contact insert.
  • the holding frame formed in the contact insert body in the region of the receiving location has at least one second spring element for securing a modular contact insert.
  • the holding frame has at least a first end face and a second end face opposite the first end face, as well as a first longitudinal side and a second longitudinal side opposite the first longitudinal side.
  • the two spring elements are formed on opposite sides of the holding frame, i.e., on the opposite end faces or on the opposite longitudinal sides.
  • the contact insert body of the fixed-pole contact insert can be realized in different ways according to the invention.
  • the contact insert body is made of an electrically insulating material.
  • the contact insert body is particularly preferably made of a plastic. This enables, for example, the production of the contact insert body by means of an injection molding process.
  • the use of an electrically insulating material for the contact insert body has the advantage that the contact elements of the contact insert body are electrically insulated from one another and that electrical insulation from a modular contact insert that can be accommodated in the receiving space is also ensured.
  • the contact insert has a protective conductor connection and/or an earth connection
  • at least one electrical contacting element for electrically contacting a A modular contact insert that can be inserted into the receiving space is arranged between the protective conductor connection and/or grounding connection and the receiving space. If a modular contact insert is arranged in the receiving space, it is contacted by the electrical contacting element.
  • the contact insert body is made of an electrically conductive material.
  • the contact insert body is made of a metal.
  • the contact insert body is made at least partially from an electrically insulating material, for example a plastic, and from an electrically conductive material, for example a metal.
  • the contact elements of the fixed-pole contact insert are arranged at least partially in a contact element region.
  • the contact element region of the fixed-pole contact insert has a contact element region longitudinal axis.
  • the contact element region longitudinal axis is generally parallel to a long side of the contact insert, or the contact element region longitudinal axis is parallel to an end face of the contact insert.
  • the at least one receiving location has a receiving location longitudinal axis.
  • the receiving location is preferably dimensioned such that it has a greater extension in the direction of the receiving location longitudinal axis than in a direction perpendicular to the receiving location longitudinal axis.
  • the extension of the receiving location in the direction of the receiving location longitudinal axis corresponds to the extension of the receiving location in a direction perpendicular to the receiving location longitudinal axis.
  • the receiving location is then essentially square. According to the invention, it is now provided in a variant that the contact element region longitudinal axis and the longitudinal axis of the receiving area run parallel to each other. In an alternative variant, the longitudinal axis of the contact area and the longitudinal axis of the receiving area run perpendicular to each other.
  • the contact insert body has two opposing end faces and two opposing longitudinal sides. Further preferably, the at least one receiving location is formed on an end face of the contact insert body. Particularly preferably, the receiving location longitudinal axis is parallel to an end face plane spanned by the at least one end face. In another embodiment, the receiving location longitudinal axis is perpendicular to the end face plane spanned by the at least one end face.
  • the at least one receiving location is formed on a longitudinal side of the contact insert body.
  • the receiving location longitudinal axis is parallel to a longitudinal side plane spanned by the at least one longitudinal side.
  • the receiving location longitudinal axis is perpendicular to the longitudinal side plane spanned by the at least one longitudinal side.
  • the contact elements of the fixed-pole contact insert are arranged in at least two contact element regions. Further preferably, the contact element regions of the fixed-pole contact insert each have a contact element region longitudinal axis. Further preferably, the first contact element region longitudinal axis is aligned parallel to the second contact element region longitudinal axis or is perpendicular to the second contact element region longitudinal axis. The contact elements in the first contact element region are designed to be similar to or different from the contact elements in the second contact element region.
  • the at least one receiving location for the modular contact insert is formed between the first contact element region and the second contact element region.
  • the receiving space for receiving at least one modular contact insert is formed.
  • the at least one first receiving location is designed to receive a plurality of modular contact inserts.
  • the plurality of modular contact inserts can be arranged directly adjacent to one another in the receiving location.
  • the plurality of modular contact inserts can be fixed independently of one another in the receiving location, for example by means of the previously described spring elements, so that the plurality of modular contact inserts can be individually inserted into or removed from the receiving location.
  • a particularly preferred embodiment of the fixed-pole contact insert according to the invention which further increases the modularity of the contact insert, is characterized in that the contact insert body has at least one second receiving location for receiving at least one further modular contact insert.
  • the contact insert body has at least one second receiving location for receiving at least one further modular contact insert.
  • at least two modular contact inserts can be inserted into different receiving locations in the fixed-pole contact insert.
  • the at least second receiving location is designed according to at least one of the embodiments previously described in connection with the first receiving location.
  • first and second receiving locations are identical. In another embodiment, the first and second receiving locations are designed differently. If the first and second receiving locations are designed differently, in one variant, the two receiving locations are designed to accommodate different types of modular contact inserts.
  • the first receiving location preferably has a first receiving location longitudinal axis
  • the second receiving location preferably has a second receiving location longitudinal axis.
  • the first receiving location longitudinal axis and the second receiving location longitudinal axis run parallel to each other.
  • the first receiving location longitudinal axis and the second receiving location longitudinal axis are identical, so that the first receiving location and the second receiving location are arranged along a common receiving location longitudinal axis.
  • first longitudinal axis of the receiving location and the second longitudinal axis of the receiving location are perpendicular to each other.
  • the contact insert body has a first end face and a second end face opposite the first end face as well as a first longitudinal side and a If the first longitudinal side has a second longitudinal side opposite the first longitudinal side, then in a particularly preferred embodiment, the first receiving location is formed on the first end face and the second receiving location is formed on the second end face. In an alternative variant, both the first receiving location and the second receiving location are formed on the first end face.
  • the receiving location longitudinal axes can then, for example, lie parallel to an end face plane spanned by the first end face or be perpendicular to an end face plane spanned by the first end face.
  • first receiving location and the second receiving location are formed on a first longitudinal side of the contact insert body.
  • the receiving location longitudinal axes are then parallel to a longitudinal side plane spanned by the first longitudinal side or are parallel to the longitudinal side plane spanned by the first longitudinal side.
  • first receiving location to be formed on the first longitudinal side and the second receiving location to be formed on the second longitudinal side.
  • the first receiving location is formed on a front side and the second receiving location is formed on a long side.
  • the invention also relates to a contact insert assembly for a plug-in connector.
  • the contact insert assembly comprises a fixed-pole contact insert, wherein the fixed-pole contact insert has a contact insert body and a plurality of contact elements arranged in the contact insert body.
  • the object underlying the invention is achieved in that the contact insert body has at least one first receiving location for receiving at least one modular contact insert, and in that at least one modular contact insert is arranged in the receiving location of the contact insert body of the fixed-pole contact insert.
  • Particularly preferred embodiments of the contact insert assembly according to the invention are characterized in that the fixed-pole contact insert is implemented according to at least one of the embodiments previously described in connection with the fixed-pole contact insert according to the invention. Accordingly, all the above statements, with their advantages regarding the implementation of the fixed-pole contact insert according to the invention, are transferable to the contact insert assembly according to the invention and apply accordingly to the contact insert assembly according to the invention.
  • the modular contact insert of the contact insert assembly according to the invention can be designed in a manner known from the prior art. Accordingly, the modular contact insert of the contact insert assembly according to the invention can be implemented, for example, as a single module, double module, or half module, or in another known manner.
  • a particular embodiment of the contact insert assembly according to the invention is characterized in that at least one second modular contact insert is provided.
  • the at least second modular contact insert is also arranged in the at least one first receiving location, and in an alternative variant, in which the contact insert body has at least one second receiving location, it is arranged in the second receiving location.
  • a further development is characterized in that, in one variant, the at least first modular contact insert and the at least second modular contact insert are designed identically. In an alternative variant, the first modular contact insert and the second modular contact insert are designed differently from one another.
  • Fig. 1 shows a representation of a fixed-pole contact insert 1 for a connector (not shown).
  • the fixed-pole contact insert 1 has a contact insert body 2 in which several contact elements 3 are arranged. In this case, the contact elements 3 are designed as contact sockets 4.
  • the fixed-pole contact insert 1 has a receiving location 5 for receiving a modular contact insert 6.
  • the receiving location 5 has a holding frame 7 for receiving the modular contact insert 6.
  • Fig. 2 a variant which is not part of the invention is shown in which the holding frame 7 is designed as a separate component 8.
  • the holding frame 7 designed as a separate component 8 is connected to the contact insert body 2 via additional connecting elements 9 in the receiving space 5.
  • additional connecting elements 9 are provided which fix the holding frame 7.
  • the holding frame 7, 8 has two spring elements 10 for fixing the modular contact insert 6.
  • the spring elements 10 are arranged on opposite end faces 11, 12 of the receiving space 5 and the holding frame 7, 8 respectively.
  • the holding frame 7 is formed in the contact insert body 2, namely formed from the contact insert body 2.
  • the holding frame 7 also has two spring elements 10 for fixing a modular contact insert 6, which are formed integrally with the contact insert body 2.
  • the spring elements 10 have locking elements 13 which engage in corresponding locking recesses formed on the modular contact insert 6.
  • the contact insert body 2 of the Fig. 1 The fixed-pole contact insert 1 shown is made of an electrically insulating material, namely a plastic.
  • the contact insert 1 also has a protective conductor connection 14, which is electrically connected to the receiving location 5 via at least one electrical contacting element, in order to establish an electrical connection to a modular contact insert that can be accommodated in the receiving location 5.
  • the contact insert body 2 of the Fig. 2 The fixed-pole contact insert shown is made of an electrically conductive material, namely, in this case, a metal.
  • the electrical connection between the protective conductor terminal 14 and a modular contact insert 6 arranged in the receiving space 5 is then made via the electrically conductive contact insert body 2.
  • the contact elements 3 are shown in Fig. 2 designed as contact pins 15.
  • the contact elements 3 are arranged in a contact element area 16.
  • the contact element area 16 has a contact element area longitudinal axis 17.
  • the receiving location 5 has a receiving location longitudinal axis 18.
  • the contact element area longitudinal axis 17 and the receiving location longitudinal axis 18 are perpendicular to one another.
  • FIG. 3 An alternative design is extremely schematic in Fig. 3
  • the contact element area longitudinal axis 17 and the receiving location longitudinal axis 18 run parallel to each other.
  • the contact insert bodies 2 shown each have a first end face 19 and a second end face 20 as well as a first longitudinal side 21 and a second longitudinal side 22.
  • the receiving location 5 is formed on the first end face 19 of the contact insert body 2.
  • the receiving location 5 is realized in such a way that the receiving location longitudinal axis 18 runs parallel to an end face plane 23 spanned by the first end face 19.
  • the end face plane 23 is in Fig. 2 perpendicular to the plane of the paper.
  • the receiving location 5 is formed on the second longitudinal side 22 of the contact insert body 2.
  • the receiving location 5 is realized in such a way that the receiving location longitudinal axis 18 is parallel to a line spanned by the second longitudinal side 22.
  • Longitudinal side plane 24 runs.
  • the longitudinal side plane 24 is in Fig. 3 perpendicular to the plane of the paper.
  • the receiving location 5 is designed to accommodate two modular contact inserts 6.
  • a holding frame 7 is formed in the contact insert body 2, which holding frame is designed to accommodate two modular contact inserts 6.
  • the holding frame 7 has four spring elements 10, with two spring elements 10 each serving to hold a modular contact insert 6.
  • the two modular contact inserts 6, 6' are designed differently. It is therefore easily possible to arrange various modular contact inserts in the receiving location 5, whereby the contact insert arrangement 27 can be designed flexibly.
  • Fig. 5 shows a representation of a fixed-pole contact insert 1, which, in addition to the first receiving location 5 for receiving a modular contact insert 6, has a second receiving location 25 for receiving a further modular contact insert 6'.
  • the second receiving location 25 has a second receiving location longitudinal axis 26, which runs parallel to the receiving location longitudinal axis 18 of the first receiving location 25.
  • the first receiving location 5 is formed on the first end face 19 of the contact insert body 2, whereas the second receiving location 25 is formed on the second end face 20 of the contact insert body 2.
  • the fixed-pole contact insert 1 shown has two receiving locations 5, 25 for receiving at least two modular contact inserts 6, 6'.
  • the longitudinal axes 18, 26 of the two receiving locations 5, 25 are parallel to each other, namely, they coincide in this embodiment.
  • the two receiving locations 5, 25 are also arranged on the second longitudinal side 22 of the contact insert body 2.
  • Fig. 6 and 7 Contact insert arrangements 27 are shown, which in addition to a fixed-pole contact insert 1 also have at least one modular contact insert 6.
  • the fixed-pole contact insert 1 has a contact insert body 2 and several contact elements 3 arranged in the contact insert body 2.
  • the contact insert body 2 has a first receiving location 5 for receiving the at least one modular contact insert 6, which is arranged in the receiving location 5 of the contact insert body 2.
  • Fig. 7 The embodiment shown is a modular Contact insert 6 is arranged in the receiving location 5, in which Fig. 6 In the embodiment shown, two modular contact inserts 6, 6' are arranged in the receiving space 5.
  • the two modular contact inserts 6, 6' are of identical design.
  • Fig. 8 shows a further embodiment of a fixed-pole contact insert 1.
  • the fixed-pole contact insert 1 has a receiving location 5 which is designed to receive two modular contact inserts 6, 6'.
  • the receiving location 5 has a holding frame 7 formed in the contact insert body 2, which has a total of four spring elements 10.
  • the holding frame 7 is formed rotated by 90° in the receiving location 5.
  • the receiving location longitudinal axis 18 and the contact element area longitudinal axis 19 are parallel to each other in the embodiment shown, namely, they coincide.
  • an electrical contacting element 28 for the electrical connection between the protective conductor connection and the modular contact elements 6, 6' that can be arranged in the receiving space 5 is designed in the form of a contact frame.
  • FIG. 9 An alternative design of a fixed-pole contact insert 1 is shown in Fig. 9 shown.
  • the fixed-pole contact insert 1 shown here has a first receiving location 5 for receiving a first modular contact insert 6 and a second receiving location 25 for receiving a second modular contact insert 6'.
  • the first receiving location 5 and the second receiving location 25 are designed differently from one another and serve to receive different modular contact inserts 6, 6'.
  • a second modular contact insert 6' is arranged in the second receiving location 25, whereas no modular contact insert 6 is arranged in the first receiving location 5.
  • the receiving location 25 has a round cross-section and receives a modular contact insert 6' which also has a round cross-sectional area.
  • the first receiving location 5 has a rectangular cross-section.
  • the first receiving location 5 is formed on the second end face 20 of the fixed-pole contact insert 1
  • the second receiving location 25 is formed on the first end face 19 of the fixed-pole contact insert 1.
  • the contact elements 3 arranged in the contact insert body 2 are arranged in a contact element region 16 formed centrally between the first receiving location 5 and the second receiving location 25.
  • a fixed-pole contact insert 1 which has a receiving location 5 formed centrally in the contact insert body 2.
  • the fixed-pole contact insert 1 has a first contact element area 16 and a second contact element area 29.
  • the contact elements 3 of the fixed-pole contact insert 1 are arranged in both contact element areas 16, 29, and the receiving location 5 is arranged between the first contact element area 16 and the second contact element area 29.
  • the receiving location 5 is designed to accommodate two modular contact inserts.
  • the fixed-pole contact insert 1 has a total of four separately formed spring elements 10, which are attached to the contact insert body 2.
  • the spring elements 10 are made of metal in this case. Two oppositely arranged spring elements 10 each secure a modular contact insert.

Landscapes

  • Connector Housings Or Holding Contact Members (AREA)

Claims (11)

  1. Insert de contact (1) à pôles fixes pour un connecteur enfichable, comprenant un corps d'insert de contact (2) et plusieurs éléments de contact (3) disposés dans le corps d'insert de contact (2), le corps d'insert de contact (2) possédant au moins un premier emplacement de réception (5) destiné à recevoir au moins un insert de contact modulaire (6), l'au moins un emplacement de réception (5) possédant un cadre de maintien (7) destiné à recevoir l'au moins un insert de contact modulaire (6), le cadre de maintien (7) étant entièrement formé dans le corps d'insert de contact (2), le cadre de maintien (7) possédant au moins un élément ressort (10) destiné au blocage de l'au moins un insert de contact modulaire (6) dans l'emplacement de réception (5), et l'au moins un élément ressort (10) étant réalisé d'un seul tenant avec le corps d'insert de contact (2),
    caractérisé en ce
    que l'élément ressort (10) est formé par des fentes qui délimitent latéralement l'élément ressort (10) et qui sont pratiquées dans une paroi du corps d'insert de contact.
  2. Insert de contact (1) selon la revendication 1, caractérisé en ce que le corps d'insert de contact (2) est fabriqué dans un matériau électriquement isolant, notamment en ce que l'insert de contact (1) possède une borne pour conducteur de protection et/ou de mise à la terre (14) et en ce qu'au moins un élément de mise en contact électrique (28) destiné à la mise en contact électrique de l'insert de contact modulaire (6) est disposé entre la borne pour conducteur de protection et/ou de mise à la terre (14) et l'emplacement de réception (5).
  3. Insert de contact (1) selon l'une des revendications 1 à 2, caractérisé en ce que les éléments de contact (3) de l'insert de contact (1) à pôles fixes sont disposés au moins en partie dans une zone d'éléments de contact (16), en ce que la zone d'éléments de contact (16) présente un axe longitudinal de zone d'éléments de contact (17), en ce que l'au moins un emplacement de réception (5) possède un axe longitudinal d'emplacement de réception (18) et en ce que l'axe longitudinal de zone d'éléments de contact (17) et l'axe longitudinal d'emplacement de réception (18) suivent un tracé parallèle l'un à l'autre ou en ce que l'axe longitudinal de zone de contact (17) et l'axe longitudinal d'emplacement de réception (18) suivent un tracé perpendiculaire l'un à l'autre.
  4. Insert de contact (1) selon l'une des revendications 1 à 3, caractérisé en ce que le corps d'insert de contact (2) possède deux côtés frontaux (19, 20) opposés l'un à l'autre et deux côtés longitudinaux (21, 22) opposés l'un à l'autre et en ce que l'emplacement de réception (5) est formé sur un côté frontal (19, 20) du corps d'insert de contact (2) ou en ce que l'emplacement de réception (5) est formé sur un côté longitudinal (21, 22) du corps d'insert de contact (2).
  5. Insert de contact (1) selon l'une des revendications 1 à 4, caractérisé en ce que l'au moins un premier emplacement de réception (5) est configuré pour recevoir plusieurs inserts de contact modulaires (6, 6').
  6. Insert de contact (1) selon l'une des revendications 1 à 5, caractérisé en ce que le corps d'insert de contact (2) possède au moins un deuxième emplacement de réception (25) destiné à recevoir au moins un insert de contact modulaire (6') supplémentaire.
  7. Insert de contact (1) selon la revendication 6, le premier emplacement de réception (5) possédant un premier axe longitudinal d'emplacement de réception (18) et le deuxième emplacement de réception (25) possédant un deuxième axe longitudinal d'emplacement de réception (26), caractérisé en ce que le premier axe longitudinal d'emplacement de réception (25) et le deuxième axe longitudinal d'emplacement de réception (26) suivent un tracé parallèle l'un à l'autre, notamment en ce que le premier axe longitudinal d'emplacement de réception (25) et le deuxième axe longitudinal d'emplacement de réception (26) sont identiques, de sorte que le premier emplacement de réception (5) et le deuxième emplacement de réception (25) sont disposés le long d'un axe longitudinal d'emplacement de réception commun, ou en ce que le premier axe longitudinal d'emplacement de réception (18) et le deuxième axe longitudinal d'emplacement de réception (26) sont perpendiculaires l'un à l'autre.
  8. Insert de contact (1) selon la revendication 6 ou 7, caractérisé en ce que le corps d'insert de contact (2) possède deux côtés frontaux (19, 20) opposés et deux côtés longitudinaux (21, 22) opposés et en ce que le premier emplacement de réception (5) et le deuxième emplacement de réception (25) sont formés sur le même côté frontal (19, 20) ou sur le même côté longitudinal (21, 22) ou sur des côtés frontaux différents (19, 20) et/ou sur des côtés longitudinaux différents (21, 22).
  9. Arrangement d'insert de contact (27) pour un connecteur enfichable, comprenant un insert de contact (1) à pôles fixes selon la revendication 1,
    au moins un insert de contact modulaire (6) étant disposé dans l'emplacement de réception (5) du corps d'insert de contact (2) de l'insert de contact (1) à pôles fixes.
  10. Arrangement d'insert de contact (27) selon la revendication 9, caractérisé en ce que l'insert de contact (1) à pôles fixes est en outre configuré selon au moins l'une des revendications 2 à 8.
  11. Arrangement d'insert de contact (27) selon la revendication 9 ou 10, caractérisé en ce qu'au moins un deuxième insert de contact modulaire (6') est disposé dans l'au moins un premier emplacement de réception (5) ou, dans la mesure où le corps d'insert de contact (2) possède au moins un deuxième emplacement de réception (25), est disposé dans le deuxième emplacement de réception (25), et en ce que l'au moins deuxième insert de contact modulaire (6') et le premier insert de contact modulaire (6) sont identiques ou différents l'un de l'autre.
EP23169437.3A 2022-04-26 2023-04-24 Insert de contact monopolaire et ensemble insert de contact Active EP4270675B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
BE20225306A BE1030480B1 (de) 2022-04-26 2022-04-26 Festpoliger Kontakteinsatz und Kontakteinsatzanordnung

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EP4270675A1 EP4270675A1 (fr) 2023-11-01
EP4270675B1 true EP4270675B1 (fr) 2025-09-24

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EP23169437.3A Active EP4270675B1 (fr) 2022-04-26 2023-04-24 Insert de contact monopolaire et ensemble insert de contact

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EP (1) EP4270675B1 (fr)
CN (1) CN116960666A (fr)
BE (1) BE1030480B1 (fr)

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2671729B2 (ja) * 1992-09-29 1997-10-29 住友電装株式会社 コネクタ装置
US5913703A (en) * 1996-04-24 1999-06-22 Sumitomo Wiring Systems, Ltd. Connector assembly with sequentially engageable housings
JP4632671B2 (ja) * 2004-02-02 2011-02-16 住友電装株式会社 分割コネクタ

Also Published As

Publication number Publication date
BE1030480A1 (de) 2023-11-23
CN116960666A (zh) 2023-10-27
EP4270675A1 (fr) 2023-11-01
BE1030480B1 (de) 2023-11-28

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