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EP3896793B1 - Connecteur pour câble de données - Google Patents

Connecteur pour câble de données Download PDF

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Publication number
EP3896793B1
EP3896793B1 EP21168123.4A EP21168123A EP3896793B1 EP 3896793 B1 EP3896793 B1 EP 3896793B1 EP 21168123 A EP21168123 A EP 21168123A EP 3896793 B1 EP3896793 B1 EP 3896793B1
Authority
EP
European Patent Office
Prior art keywords
plug
data cable
accordance
housing
contact
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
EP21168123.4A
Other languages
German (de)
English (en)
Other versions
EP3896793A1 (fr
Inventor
Rolf Sticker
Marko Deschle
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.)
Metz Connect Tech GmbH
Original Assignee
Metz Connect Tech GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Metz Connect Tech GmbH filed Critical Metz Connect Tech GmbH
Publication of EP3896793A1 publication Critical patent/EP3896793A1/fr
Application granted granted Critical
Publication of EP3896793B1 publication Critical patent/EP3896793B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • 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
    • H01R4/24Connections using contact members penetrating or cutting insulation or cable strands
    • H01R4/2416Connections using contact members penetrating or cutting insulation or cable strands the contact members having insulation-cutting edges, e.g. of tuning fork type
    • H01R4/242Connections using contact members penetrating or cutting insulation or cable strands the contact members having insulation-cutting edges, e.g. of tuning fork type the contact members being plates having a single slot
    • H01R4/2425Flat plates, e.g. multi-layered flat plates
    • H01R4/2429Flat plates, e.g. multi-layered flat plates mounted in an insulating base
    • H01R4/2433Flat plates, e.g. multi-layered flat plates mounted in an insulating base one part of the base being movable to push the cable into the slot
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/60Contacts spaced along planar side wall transverse to longitudinal axis of engagement
    • H01R24/62Sliding engagements with one side only, e.g. modular jack coupling devices
    • H01R24/64Sliding engagements with one side only, e.g. modular jack coupling devices for high frequency, e.g. RJ 45

Definitions

  • the invention relates to a connector for data cables according to the preamble of patent claim 1.
  • FIG. 9 a perspective view and figure 10 represents a section along the longitudinal axis.
  • the connector 1 shown for a shielded data cable 2 has an electrically conductive housing 3 .
  • a contact carrier 4 is arranged in the housing 3, on which contact elements 5 for connecting cores 2a of the data cable 2 and plug contacts 6 are arranged, one contact element 5 each having a plug contact 6 being electrically conductively connected to one another.
  • the plug 1 has a loading piece 7 with receiving channels 8 for the cores 2a of the data cable 2, each receiving channel 8 having a receiving opening 9 passing through it, and the loading piece 7 being able to be placed on the contact carrier 4 in such a way that the contact elements 5 in the Receiving openings 9 come to rest in order to electrically conductively contact the wires 2a received in the receiving channels 8 .
  • the plug 1 has a longitudinal axis 1, with the plug 1 being designed in such a way that in the direction of the longitudinal axis 1 a separating section 2c of the data cable 2, in which the cores 2a of the data cable 2 are separated, is arranged behind the contact elements 5, with in particular Both a shield removal spring 3b and a strain relief device 3c are generally arranged behind the contact elements 5 and the separating section 2c.
  • the connector 1 is comparatively long in the direction of the longitudinal axis.
  • Such a connector is for example in DE 10 2006 010 279 A1 disclosed.
  • the object of the invention is therefore to provide a connector for data cables whose length is reduced.
  • the plug for data cables with a housing, with plug contacts and with a contact carrier, on which contact elements for connecting wires of the data cable are arranged, with one contact element each having a plug contact being electrically conductively connected to one another, with a charging piece with receiving channels for the wires of the data cable, with each receiving channel being penetrated by a receiving opening, and with the charging piece being able to be placed on the contact carrier in such a way that the contact elements come to rest in the receiving openings, and having a longitudinal axis, is characterized in that the contact elements and the receiving openings in at least two mutually spaced planes, which preferably intersect the longitudinal axis essentially perpendicularly, are arranged, that the loading piece has a first side and a second side, the receiving channels being arranged on the second side and wherein a support surface for the data cable is arranged on the first side, and that seen in the loading piece in the direction of the longitudinal axis between the two planes an opening is arranged to lead through the cores of
  • the first side is in particular arranged opposite the second side and facing away from one another.
  • the first and the second side are arranged facing in two different spatial directions.
  • the first side and the second side are arranged essentially parallel to the longitudinal axis.
  • the opening according to the invention makes it possible to guide the data cable next to part of the contact elements, viewed in the direction of the longitudinal axis, and to lay it on the charging piece, to guide the wires angled by about 90° through the opening into the area between the two planes and between the receiving openings and there lead a part of the cores again angled by about 90° in the direction away from the data cable and to arrange them in the receiving channels and another part of the cores also angled again by about 90°, but in the direction of the data cable, to lead and into the arrange recording channels.
  • the data cable is arranged in sections next to the contact elements, which increases the height of the plug in the direction transverse to the longitudinal axis, but reduces the length of the plug in the direction of the longitudinal axis.
  • the connector is in particular an RJ45 connector.
  • the contact elements and the receiving openings are preferably arranged in four planes which are spaced apart from one another and are arranged essentially perpendicular to the longitudinal axis, with the opening being arranged in particular between the two middle planes when viewed in the direction of the longitudinal axis.
  • the arrangement of the contact elements and the receiving openings in four levels arranged at a distance from one another enables a more compact design.
  • the data cable is, in particular, a shielded data cable which has a number of wires, for example eight wires.
  • the cores of the data cable are surrounded by a shield, which in turn is surrounded by an insulating sheath.
  • a so-called pair screen can be arranged around each twisted pair of wires.
  • the individual cores of the data cable are exposed in this section and can be separated in a separation section up to a point at which they are surrounded by the sheath and the shield and, if necessary, the pair shield. If the data cable is an unshielded data cable, the cores of the data cable are exposed after the insulating sheath has been removed and can be isolated in a separation section up to a point at which they are surrounded by the sheath.
  • a separating section of the data cable in which the wires of the data cable are separated, is arranged in the area of the opening.
  • the data cable is thus arranged in sections next to the contact elements, which increases the height of the plug in the direction transverse to the longitudinal axis, but reduces the length of the plug in the direction of the longitudinal axis.
  • An umbrella removal spring is preferably arranged on the loading piece on the contact surface.
  • the shielding of the data cable can thus almost inevitably be brought into contact with the shielding spring during assembly.
  • a strain relief device can advantageously be attached to the loading piece, in particular by means of latching elements.
  • the housing preferably has a first housing part and a second housing part, the contact carrier being arranged at least in sections in the second housing part. This allows for easy assembly.
  • the first housing part and/or the second housing part are designed to be electrically conductive.
  • An electrically conductive housing part can enable shielding in a simple manner.
  • a particularly advantageous development of the invention provides that a guide element is arranged on the contact carrier or a carrier element connected to the contact carrier or the second housing part and a complementary guide element for the relative positioning of the charging piece and contact carrier is arranged on the charging piece, which in particular allows a guided movement parallel to define the levels. This can facilitate assembly, since the correct relative positioning of the charging piece and the contact carrier can be achieved almost inevitably.
  • the guide element and the complementary guide element locking elements for fixing in a End position, whereby the assembly can be further simplified.
  • a housing guide element is provided in particular on the first housing and a complementary housing guide element is provided in particular on the second housing part for the relative positioning of the two housing parts and the components arranged in and on them, i. H. for the relative positioning of the two connector assemblies, which in particular define a guided movement parallel to the longitudinal axis.
  • the housing guide element and the complementary housing guide element have latching elements for fixing in an end position, which can further facilitate assembly.
  • the contact carrier is preferably designed as a printed circuit board, with the contact elements and the plug contacts being arranged on the printed circuit board and being electrically conductively connected to one another in the printed circuit board. This can simplify the manufacture of the contact carrier.
  • the contact carrier is designed as a printed circuit board, the contact elements and contact surfaces for electrically conductive contacting of the plug contacts being arranged on the printed circuit board and being electrically conductively connected to one another in the printed circuit board.
  • the electrically conductive connection between the plug contacts and the contact elements takes place by planting the plug contacts on the contact surfaces, for example when assembling the two housing parts including the corresponding components arranged in the housing parts, ie when assembling the two plug assemblies.
  • the contact elements are designed as insulation displacement contacts or piercing contacts, which enable reliable electrical contacting.
  • a locking lever is particularly preferably arranged on the housing, which in particular has a stepped contour.
  • the locking lever enables the plug to be locked in a socket, for example by latching.
  • the locking can preferably also be released again by actuating the locking lever.
  • the stepped contour enables the locking lever to be arranged on the housing in a space-saving manner.
  • FIGS. 1 to 4 show different views of a first embodiment
  • FIG. 5 to 8 different views of a second exemplary embodiment of a plug 10 according to the invention for a data cable 80.
  • the following explanations apply to both exemplary embodiments. Parts that are the same or have the same function are denoted by the same reference numerals, not all of the reference numerals being given in all of the figures for the sake of clarity.
  • the data cable 80 can be a shielded data cable 80 which has a plurality of wires 82, for example eight.
  • the cores 82 of the data cable 80 are surrounded by a shield, which in turn is surrounded by an insulating sheath 84 .
  • a so-called pair screen can be arranged around each twisted pair of wires.
  • the individual cores 82 of the data cable 80 are exposed and can be separated in a separating section 86 up to a point at which they are surrounded by the sheath 80 and the shield and, if necessary, the pair shield.
  • the data cable 80 is an unshielded data cable
  • the cores 82 of the data cable 80 are exposed after the insulating sheath 84 has been removed and can be separated in a separation section 86 up to a point at which they are surrounded by the sheath 84 .
  • the plug 10 has a housing 20 which can include a first housing part 21 and a second housing part 22 .
  • the first housing part 21 and/or the second housing part preferably only the first housing part 21, can, in particular if the data cable 80 is a shielded data cable, be designed to be electrically conductive and to be designed, for example, as a metal die-cast part, in particular as a zinc die-cast part.
  • the plug 10 has plug contacts 34 which are designed in particular for contacting contacts arranged in a socket into which the plug 10 can be inserted in a plugging direction x. Furthermore, the plug 10 has a contact carrier 30 on which contact elements 33 for connecting the wires 82 of the data cable 80 are arranged. In each case one contact element 33 is electrically conductively connected to one plug contact 34 in each case.
  • the contact carrier 30 can do this as in the Figures 1 to 4 illustrated first embodiment may be designed as a printed circuit board 32, wherein the contact elements 33 and contact surfaces 35 are arranged on the printed circuit board 32 and are electrically conductively connected to one another on this. In this case, the contact surfaces 35 can be arranged in a front area on the printed circuit board 32 .
  • the plug contacts 34 can be fixed in a carrier element 31, which can be arranged in the front housing part 21, for example.
  • the plug contacts 34 can be designed in such a way that they bear against the contact surfaces 35 in a spring-loaded manner when the second housing part 22 with the contact carrier 30 is pushed into the first housing part 21 (cf. figure 4 ).
  • the carrier element 31 can have slots 31b in a front end face 31a, in which the plug contacts 34 can come to rest in a protected manner.
  • the front face 31a of the carrier element 31 can form part of the plug face of the plug 10 .
  • the contact carrier 30 can alternatively as in the Figures 5 to 8
  • the second exemplary embodiment shown can be designed as a printed circuit board 32 ⁇ , the contact elements 33 and the plug contacts 34 being arranged on the printed circuit board 32 ⁇ and being electrically conductively connected to one another on this (cf. figure 8 ).
  • the plug contacts 34 can be arranged at the front of the printed circuit board 32 ⁇ .
  • the printed circuit board 32' can be arranged on a carrier element 31', which can have slots 31b in a front end face 31a, in which the plug contacts 34 can lie protected.
  • the carrier element 31' essentially serves to protect the plug contacts 34, which are fixed directly to the printed circuit board 32'.
  • the support element 31 ⁇ also serves to insulate the printed circuit board 32', the contact elements 33 and the plug contacts 34 from the housing part 22 and can therefore extend over a large part of the length of the printed circuit board 32 ⁇ of the printed circuit board 32 ⁇ and the second housing part 22 extend.
  • the carrier element 31' can be arranged on the second housing part 22 in one piece. The front face 31a of the carrier element 31' can also form part of the plug-in face of the plug 10 in this embodiment.
  • the contact carrier 30 is arranged in particular at least in sections in the second housing part 22 .
  • the contact elements 33 can be in the form of piercing contacts or, as illustrated in the illustrated exemplary embodiments, in the form of insulation displacement contacts.
  • the contact elements 33 are in at least two levels, present in four levels E1, E2, E3, E4 arranged, wherein the planes E1, E2, E3, E4 intersect a longitudinal axis 1 of the connector 10, in particular substantially perpendicular.
  • the plug 10 also has a loading piece 40 with a first side 40a and a second side 40b, in which receiving channels 41 for the wires 82 of the data cable 80 are arranged.
  • the first side 40a is in particular arranged opposite the second side 40b and facing away from one another.
  • the sides 40a, 40b are arranged facing in two different spatial directions.
  • the first side 40a and the second side 40b are arranged essentially parallel to the longitudinal axis 1 of the plug 10 .
  • Each receiving channel 41 has a receiving opening 42 passing through it.
  • the receiving openings 42 are also arranged in at least two planes, here in four planes E1, E2, E3, E4, with the planes E1, E2, E3, E4 intersecting a longitudinal axis 1 of the plug 10, in particular essentially perpendicularly.
  • the charging piece 40 can be placed on the contact carrier 30 in such a way that the contact elements 33 come to rest in the receiving openings 42 in order to electrically conductively contact the wires 82 arranged in the receiving channels 41 .
  • fixing projections 41a can be arranged on the open side of the receiving channels 41.
  • the receiving channels are arranged on the second side 40b of the loading piece 40 .
  • a support surface 43 for the data cable 80 is arranged on the first side 40a of the loading piece 40 .
  • the bearing surface 43 can have a U-shaped cross section, for example, so that the data cable 80 can also be fixed laterally.
  • a shield removal spring 45 can be arranged, which when the data cable 80 is placed with the Shield of the data cable 80 comes into contact, and which on the other hand can be in electrically conductive contact with the housing to allow shielding of the exposed ends of the wires 82 of the connected data cable 80 in the connector 10. In the case of an unshielded data cable 80, the shield removal spring 45 can be omitted.
  • the loading piece 40 has an opening 44 which, seen in the direction of the longitudinal axis 1, is arranged between two of the four levels E1, E2, E3, E4, in the present exemplary embodiment between the two middle levels E2, E3, and through which the cores 82 of the Data cable 80 can be routed from the first side 40a to the second side 40b.
  • the opening connects in particular to the bearing surface 43 and extends essentially perpendicularly thereto.
  • the data cable 80 is placed in particular on the support surface 43 in such a way that the separating section 86 is arranged in spatial proximity to the opening 44 .
  • a strain relief device 50 can be arranged on the loading piece 40 .
  • the strain relief device 50 can be U-shaped with two legs 50a, 50b, it being possible for locking teeth 51 to be arranged on the inside of the legs 50a, 50b.
  • the locking teeth 51 can engage behind corresponding locking projections arranged on the loading piece 40 .
  • a plurality of latching teeth 51 can be arranged on each of the legs 50a, 50b in order to be able to carry out an adjustable latching and in particular to be able to reliably fix data cables 80 with different cross sections.
  • One or more pressure webs 52 can be arranged on the connecting element between the two legs 50a, 50b, by means of which the data cable 80 can be fixed on the bearing surface 43 in a strain-relieved manner.
  • the strain relief device 50 can by means of a connecting element 53 can be arranged captively on the loading piece 40.
  • a Guide element 25 and on the loading piece 40 a complementary guide element 46 for the relative positioning of the loading piece 40 and the contact carrier 30 may be arranged, which in particular define a guided movement parallel to the planes E1, E2, E3, E4.
  • the guide elements 25, 46 can be designed, for example, as a projection 25 that can be displaced along a guide rail 46.
  • the guide element 25 and the complementary guide element 46 can also have latching elements for fixing in an end position.
  • a housing guide element can be provided in particular on the first housing part 21 and a complementary housing guide element in particular on the second housing part 22 for the relative positioning of the two housing parts 21 , 22 or the corresponding connector assemblies, which in particular define a guided movement parallel to the longitudinal axis 1 .
  • the housing guide elements can be designed, for example, as a projection that can be displaced along a guide rail.
  • the two housing parts 21, 22 or the two connector assemblies, in particular the housing guide element and the complementary housing guide element can also have latching elements for fixing in an end position.
  • the first housing part 21 is designed in particular in the form of a step.
  • the first housing part 21 can have a height which corresponds to the height of a standardized RJ45 plug.
  • the first housing part 21 can have a significantly greater height.
  • the end of the data cable 80 to be connected comes to rest in this area, which is therefore not arranged behind the contact elements 33 as in conventional plugs, but rather over at least part of the contact elements 33 .
  • the housing 20, in particular the first housing part 21, can have a locking lever 60 which comprises a latching element 61 for latching in a socket.
  • the locking lever 60 is arranged in particular with one end on the front face 10a of the plug 10 .
  • the locking lever can be arranged in one piece on the carrier element 31.
  • the locking lever 60 can have an actuating element 63 for releasing the locking, in particular the latching, which has in particular a stepped contour 62 .
  • the locking lever 60 runs in a section 65, in particular starting from the front end face 10a, initially at an acute angle to the longitudinal axis 1 of the plug, is then bent away from the housing 20 by an angle ⁇ between 90° and 120° and after a section 66 around an angle ⁇ between 60° and 90° towards the housing 20, which is followed by the actuating element 63.
  • the section 65 can be pressed onto the actuating element 63 in the direction of the housing 20, as a result of which the latching element 61 can be released from the latching with a latching element, not shown, of a socket.
  • the assembly of the connector 10 can be done as follows, in particular no special tools or special production facilities are required:
  • the free end of the data cable 80 to be connected is stripped and the shield is removed from the cores 82 so that the cores 82 are exposed up to a separation section 86 .
  • the exposed strands 82 are routed from the first side 40a of the loading piece through the aperture 44 to the second side 40b of the loading piece.
  • the data cable 80 can now be fixed to the support surface 43 with the strain relief clamp 50 .
  • the exposed cores 82 can then be inserted into the receiving channels 41.
  • a part of the cores 82 is bent, starting from the opening 44, in the direction of a front end face 40c, and another part of the cores 82, starting from the opening 44, is bent in the direction of a rear rear side 40d.
  • the cores 82 are held in the receiving channels 41 by the fixing projections 41a. Wire ends of the wires 82 protruding at the end face 40c or the rear side 40d can be cut off.
  • the data cable 80 is placed on the support surface 43 of the charging piece. In the process, the shield removal spring 45 comes into contact with the data cable 80 when the shielding braid of the data cable 80 is arranged accordingly.
  • the loading piece 40 can be placed on the contact carrier 30, on which in particular the second housing part 22 is already arranged, with the contact elements 33 penetrating into the receiving openings 42 and thereby the ones in the Contact receiving channels 41 arranged wires 82 and establish an electrically conductive connection to them.
  • the placement is carried out in particular guided by the guide element 25 and the corresponding guide element 46.
  • the loading piece 40 and the contact carrier 30 or the loading piece 40 and the second housing part 22 or the loading piece 40 and the carrier element 31' can lock together.
  • the assembly comprising the charging piece 40 and the contact carrier 30, if present the carrier element 31', and the second housing part 22 can be pushed into the first housing part 21, in particular essentially parallel to the longitudinal axis 1 of the plug 10.
  • the movement can also be guided Management elements take place.
  • the two connector assemblies for example the two housing parts 21, 22, can latch together.
  • the first housing part 21 can be designed in such a way that an opening is formed in the end face 10a of the plug, through which the end face 31a of the carrier element 31, 31' protrudes in order to form part of the plug face of the plug 10.

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Claims (15)

  1. Connecteur (10) de câbles de données (80) comprenant un boîtier (20) avec des contacts de connexion (34) et un porte-contacts (30) muni d'éléments de contacts (33) pour brancher les fils (82) du câble de données (80),
    * respectivement un élément de contact (33) étant raccordé électriquement par un contact de connecteur (34), avec une pièce de chargement (40) comprenant des canaux récepteurs (41) pour les fils (82) du câble de données (80),
    * chaque canal récepteur (41) étant traversé par un orifice de réception (42), et
    * la pièce de chargement (40) est appliquée sur le porte-contacts (30) de façon que les éléments de contact (33) se placent dans les orifices de réception (42), et
    un axe longitudinal (1),
    - les éléments de contact (33) et les orifices de réception (42) étant prévus dans au moins deux plans (E1, E2, E3, E4) écartés l'un de l'autre, et coupent l'axe longitudinal (1) de préférence pratiquement perpendiculairement,
    - la pièce de chargement (40) ayant un premier côté (40a) et un second côté (40b),
    connecteur caractérisé en ce que
    - les canaux récepteur (41) sont prévus sur le second côté (40b), et
    * une surface d'appui (43) pour le câble de données (80) étant prévu sur le premier côté (40a), et
    - dans la pièce de chargement (40), vu dans la direction de l'axe longitudinal (1), entre les deux plans (E1, E2, E3, E4) il y a un passage (44) pour le passage des fils (82) du câble de données (80) du premier côté (40a) vers le second côté (40b).
  2. Connecteur selon la revendication 1,
    caractérisé en ce que
    les éléments de contact (33) et les orifices de réception (42) sont prévus dans quatre plans (E1, E2, E3, E4) écartés et qui sont pratiquement perpendiculaires à l'axe longitudinal (1),
    * le passage (44) vu dans la direction de l'axe longitudinal (1), étant entre les deux plans médians (E2, E3).
  3. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    pour le câble de données (80) prévu dans le connecteur (10), on a un segment de séparation (86) du câble de données (80) dans lequel les fils (82) du câble de données (80) sont séparés, dans la zone du passage (44).
  4. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    la pièce de chargement (40) comporte sur la surface d'appui (43) un ressort d'enlèvement de capot (45).
  5. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    la pièce de chargement (40) peut recevoir un dispositif de décharge de traction (50) notamment par des éléments d'accrochage (51).
  6. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    le boîtier (20) a une première partie (21) et une seconde partie (22), le porte-contact (30) étant prévu au moins par segment dans la seconde partie de boîtier (22).
  7. Connecteur selon la revendication 6,
    caractérisé en ce que
    la première partie de boîtier (21) et/ou la seconde partie de boîtier (22) sont électro-conducteurs.
  8. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    le porte-contact (30) ou un élément de support (31, 31') relié au porte-contact (30) ou la seconde partie de boîtier (22) comporte un élément de guidage (25) et la pièce de chargement (40) comporte un élément de guidage complémentaire (46) pour le positionnement relatif de la pièce de chargement (40) et du porte contact (30), qui définissent notamment un mouvement de guidage parallèle aux plans (E1, E2, E3, E4).
  9. Connecteur selon la revendication 8,
    caractérisé en ce que
    l'élément de guidage (25) et l'élément de guidage complémentaire (46) comportent des éléments d'accrochage pour la fixation dans une position finale.
  10. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    notamment le premier boîtier (21) comporte un élément de guidage de boîtier, notamment la seconde partie de boîtier (22) comporte un élément de guidage de boîtier complémentaire pour le positionnement relatif des deux parties de boîtier (21, 22) et/ou des deux composants de connecteur qui définissent notamment un mouvement guidé parallèlement à l'axe longitudinal (1).
  11. Connecteur selon la revendication 10,
    caractérisé en ce que
    l'élément de guidage de boîtier et l'élément de guidage de boîtier complémentaire comportent des éléments d'accrochage pour la fixation dans une position finale.
  12. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    le porte-contact (30) est sous la forme d'une plaque de circuit (32), les éléments de contact (33) et les contacts de connecteur (34) étant prévus sur la plaque de circuit (32) et ils sont branchés électriquement dans la plaque de circuit (32).
  13. Connecteur selon l'une des revendications 1 à 11,
    caractérisé en ce que
    le porte-contact (30) est sous la forme d'une plaque de circuit (32), les éléments de contact (33) et les surfaces de contact (35) étant prévus sur la plaque de circuit (32) pour le branchement électrique des contacts de connecteur (34) à la plaque de circuit (32) et ils sont reliés électriquement dans la plaque de circuit (32).
  14. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    les éléments de contact (33) sont réalisés sous la forme de contacts de coupe ou contacts de percement.
  15. Connecteur selon l'une des revendications précédentes,
    caractérisé en ce que
    le boîtier (20) comporte un levier de verrouillage (60) qui a notamment un contour (62) de forme étagée.
EP21168123.4A 2020-04-17 2021-04-13 Connecteur pour câble de données Active EP3896793B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102020110495.2A DE102020110495A1 (de) 2020-04-17 2020-04-17 Stecker für Datenkabel

Publications (2)

Publication Number Publication Date
EP3896793A1 EP3896793A1 (fr) 2021-10-20
EP3896793B1 true EP3896793B1 (fr) 2023-09-06

Family

ID=75529745

Family Applications (1)

Application Number Title Priority Date Filing Date
EP21168123.4A Active EP3896793B1 (fr) 2020-04-17 2021-04-13 Connecteur pour câble de données

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Publication number Priority date Publication date Assignee Title
US5938479A (en) 1997-04-02 1999-08-17 Communications Systems, Inc. Connector for reducing electromagnetic field coupling
US6193526B1 (en) 1999-02-16 2001-02-27 Hubbell Incorporated Wiring unit with angled insulation displacement contacts
FR2815775B1 (fr) 2000-10-20 2003-08-08 Arnould App Electr Prise de courants faibles du type "modular jack" comprenant un peigne amovible de positionnement des fils electriques au-dessus des contacts metalliques autodenudants
DE102006010279A1 (de) 2006-03-02 2007-09-06 Mc Technology Gmbh Stecker für geschirmte Datenkabel
DE102017110544B3 (de) 2017-05-15 2018-07-19 HARTING Electronics GmbH Steckverbinder mit Schneidklemmkontakt

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EP3896793A1 (fr) 2021-10-20

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