EP1780843B1 - Douille de connexion électrique pour télécommunication et la transmission de données - Google Patents

Douille de connexion électrique pour télécommunication et la transmission de données Download PDF

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Publication number
EP1780843B1
EP1780843B1 EP06015854A EP06015854A EP1780843B1 EP 1780843 B1 EP1780843 B1 EP 1780843B1 EP 06015854 A EP06015854 A EP 06015854A EP 06015854 A EP06015854 A EP 06015854A EP 1780843 B1 EP1780843 B1 EP 1780843B1
Authority
EP
European Patent Office
Prior art keywords
circuit board
cable
housing
printed circuit
socket
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
EP06015854A
Other languages
German (de)
English (en)
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EP1780843A1 (fr
Inventor
Oliver Riccardi
Matthias Schubert
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.)
Wilhelm Rutenbeck & Co KG GmbH
Original Assignee
Wilhelm Rutenbeck & Co KG 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 Wilhelm Rutenbeck & Co KG GmbH filed Critical Wilhelm Rutenbeck & Co KG GmbH
Publication of EP1780843A1 publication Critical patent/EP1780843A1/fr
Application granted granted Critical
Publication of EP1780843B1 publication Critical patent/EP1780843B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/665Structural association with built-in electrical component with built-in electronic circuit
    • H01R13/6658Structural association with built-in electrical component with built-in electronic circuit on printed circuit board
    • 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 socket for telecommunications and data transmission systems with a housing having a plug-in opening for a plug, with a plurality of resilient contact wires which protrude into the insertion opening and which are connectable to a connecting line.
  • sockets are widely known in the art. Usually, such sockets consist of several individual elements, which must be partially soldered together or otherwise firmly connected together.
  • the present invention seeks to provide a socket generic type, which is constructed in a modular manner and can be assembled functionally without tools and in particular without soldering.
  • the housing, the auxiliary tool and the cover part in an unshielded version of electrically non-conductive material, such as plastic, consist, or the parts are in a shielded embodiment of electrically conductive material, for example metal.
  • This socket consists of several modular components, which are practically without tools and especially without soldering to connect functionally.
  • the PCB holder is a plastic molded part, on which a foil-like printed circuit board is placed.
  • This sheet-like printed circuit board preferably has areas which have been exposed in an end region and form corresponding contact springs.
  • contact ears are exposed, which serve for the indirect connection of leads of a supply cable.
  • the contact ears are connected by corresponding conductor tracks of the printed circuit board with the corresponding contact springs, so that in each case a contact spring is associated with a contact ear.
  • eight such contact springs and eight corresponding contact ears are provided.
  • the circuit board holder is a substantially flat element, which accommodates the foil-like printed circuit board in its rear region in the installation position and has regions in which the contact holes of the printed circuit board are inserted.
  • circuit board holder Starting from this rear portion of the circuit board holder has this approximately centrally of its longitudinal extension to a support bracket to which the film circuit board is placed, which adjoins this support bracket, a free space in which the contact spring fingers are arranged. At the rear end facing away from the front edge of the circuit board holder attachment points for the end of the sheet-like circuit board are provided. From this front end of the circuit board holder project obliquely upward directed resilient retaining fingers, which serve as a support for the contact springs.
  • Another component of the socket is a cutting fork holder made of plastic, are arranged on the corresponding cutting forks of electrically conductive material, which serve to contact the connecting wires of the connecting cable.
  • the cutting forks are fixed with their foot ends on the cutting fork holder and protrude on the underside of the cutting fork holder, so that they are connectable to the contact holes of the circuit board, when the cutting fork holder is placed on the circuit board holder and pressed.
  • This preassembled unit can be used in the corresponding housing preferably made of electrically conductive material, for example, zinc die casting.
  • the housing has a rear opening into which the parts can be inserted, wherein the housing has a front plug-in opening, behind which the contact springs of the preassembled element are arranged so that a corresponding plug can be inserted into the plug-in opening and contacted with the contact springs ,
  • a plastic core distributor for contacting and placing the wires, in which a connecting cable can be inserted, the insulating jacket is removed at the end, so that the shield of the connecting cable is exposed and the leads of the connecting cable protrude beyond the shield.
  • the connection cable is plugged into the cable distributor, the wires of the cable are positioned on bearing blocks of the cable distributor.
  • This element can be additionally inserted together with cable into the rear opening of the housing and positioned in the correct position over the cutting fork holder.
  • an auxiliary tool which preferably consists of electrically conductive material, closes a part of the rear opening of the housing and is preferably in electrically conductive connection with the housing.
  • a further cover part is preferably provided of electrically conductive material, for example zinc die casting, which covers the remaining free space of the rear opening.
  • the auxiliary tool and the additional cover part each have lug-like half-parts (half-shells), which are complementary to each other in mounting target position to a connecting cable with a different diameter surrounding neck.
  • lug-like half-parts half-shells
  • a holding means is provided, by means of which the neck-like half-parts are held in desired position.
  • the socket consists of a few functionally designed individual elements.
  • the modular design allows easy production of the individual parts and a quick and easy installation of the items to complete the socket and to connect the socket to a corresponding connection cable.
  • the circuit board holder has a rear in assembly target position planar first portion on which the film-like circuit board is placed, protrude from the first portion holding mandrels, which pass through the circuit board, and provided at the side edge edges perforations in the first portion are, in which engage the angled down from the PCB contact ears.
  • the circuit board holder is approximately rectangular in plan view. In the rear planar area, on which the film-like printed circuit board is placed, holding mandrels are provided, which pass through the circuit board, so that a positioning aid and a fixation is achieved.
  • the circuit board holder has box-like perforations in the area of the contact ears into which the contact ears, which are angled downwards from the printed circuit board, engage, so that they are spaced from each other and held in the correct position.
  • the circuit board holder has a front in assembly target position, upwardly projecting second portion on which the circuit board rests, which supports the separated contact springs of the circuit board with a resilient comb-like structure and at least one retaining pin is provided at the end face, which is the end the circuit board passes through and fixed.
  • the at least one end-side retaining pin serves as a positioning aid and as a position assurance for the circuit board.
  • the resilient comb-like structure serves to support the mutually separated contact springs, which are exposed from the circuit board.
  • a support spring with a number corresponding to the number of individual contact springs provided number of Federfingern is arranged, which serve as a support for the comb-like structure.
  • the support spring may be made of suitable material, such as plastic or metal. It is based on the comb-like structures of the PCB holder, which in turn form the support for the isolated contact springs.
  • the cutting fork holder consists of a cuboid housing part open on one side and a frame-like cover part molded onto the housing part, wherein the housing part has a bottom plate, which can be placed on the circuit board holder and penetrated by the retaining pins of the circuit board holder, in parallel Side edge portions of the bottom plate cutting forks are projected, which protrude toward the open mouth of the housing part and underside of the bottom plate U-shaped bent contact portions which are resiliently applied to the contact holes of the circuit board, and wherein the frame-like cover member surrounds the contact springs of the circuit board window-like, wherein in assembly target position of the cutting fork holder is firmly connected to the circuit board holder.
  • the cutting fork holder can be placed in a corresponding manner on the circuit board holder and connected thereto, wherein the retaining pins can serve as plug-in fuse elements or can be deformed after the assembly of the parts together to ensure a permanent cohesion of the parts.
  • the U-shaped bent end portions of the Cutting forks engage in the box-shaped holes of the circuit board holder, in which the contact ears of the circuit board are arranged, so that a secure, resilient contact is achieved.
  • the frame-like cover part of the cutting fork holder covers the end portions of the contact springs and protects them laterally and also on the front side, wherein the window-like cutout forms the insertion opening for a corresponding plug.
  • the wire distributor has a plug-in opening for the connection cable, wherein in addition to the insertion opening a finger is pivotally formed, on which the cable with its end from which the cable cores emerge, can be plugged, so that the finger between the insulating sheath and the braided shield of the connecting cable engages, wherein the side facing away from the insertion opening of the wire distributor has two parallel longitudinal portions of the bearing blocks for the cable cores, and that on the opposite side of the finger of the wire distributor, a lid is hinged, the free space between the cable and insertion covers.
  • connection cable With this design, it is possible to attach the stripped end portion of the connection cable to the finger of the wire distributor, whereby a positioning aid for the cable is formed.
  • the finger engages in the space between the remaining insulating jacket and the braided shield of the connection cable.
  • the cable cores protrude far beyond the braided shield. In this position, so can the Cables are plugged and folded around the bending edge of the finger and be moved to a corresponding position.
  • the cable cores are placed on the appropriate Lagerböckchen, with protruding areas can be separated.
  • the lid By closing the lid, the position of the connecting cable is fixed, wherein the lid is preferably lockable in different positions, so that cables of different diameters can be detected and covered.
  • the auxiliary tool is tapered wedge-shaped to the free end and the top of the wire distributor is chamfered accordingly.
  • the nozzle-like half-parts of the auxiliary tool and the cover part on the inner circumference contact surfaces which form the Schirmabgriff the shield of the cable and contours, which rest on the insulating jacket of the cable and form a strain relief.
  • the holding means for the cohesion of the neck-like half-parts is formed by a surrounding cable tie.
  • snap hooks for fastening the socket in a window of a component are releasably secured to the housing.
  • Such snap hooks can be arranged interchangeable and are used for fastening in windows of corresponding components.
  • the snap hooks are adapted to the corresponding geometry of the corresponding window.
  • the front plug-in opening of the housing is associated with a lid.
  • Such a lid is a dust cap, which may for example be releasably attached to the housing and is used to seal the plug-in opening, if it is not needed.
  • a vinerdanInstitut for example, a Anschlußsteckschuh is provided.
  • Such an additional ground connection may be required to ground the housing.
  • a socket 1 and their individual elements is shown.
  • the socket has a housing 2, which has on the front side a plug-in opening 3 for a corresponding plug, wherein in this recess, which forms the plug-in opening 3, a plurality of resilient contacts 4 are provided. These resilient contacts 4 are in a suitable manner, as will be described later, electrically connected to a connecting line 5.
  • the socket 1 is modularly composed of several parts.
  • the socket 1 has a printed circuit board holder 6 made of plastic, on which a film-like printed circuit board 7 is attached.
  • This printed circuit board 7 has exposed areas, which form the contact springs 4 and exposed contact ears 8, which are indirectly connected in later-described manner with connecting wires of the supply cable 5.
  • a cutting fork holder 9 made of plastic is provided, the cutting forks 10 for contacting the connecting wires of the connecting line 5 has. These cutting forks 10 are fixed with their end portion 11 on the cutting fork holder 9 and with the contact holes 8 of the circuit board 7 connectable.
  • a wire distributor 15 is provided made of plastic, in which the end of the connecting cable 5 can be inserted.
  • the connection cable is freed in this area from its Isolierummantelung, so that in a partial area, the shield 16 is exposed and protrude in the overlying area, the wires 17.
  • the wires 17 are inserted into bearing blocks 18 and held and positioned. If the wire distributor 15 together with cable 5 and positioned wires 17 is inserted into the rear opening 12 of the housing 2 and is positioned in the correct position over the cutting fork holder 10, as shown in FIG FIG. 20 is illustrated, the contacting of the wires 17 can be done with the cutting forks 10 and the correct position arrangement.
  • an auxiliary tool 19 provided, which consists of electrically conductive material, for example, as zinc die casting, such as the housing 2, wherein the auxiliary tool on the one hand in the rear housing opening 12 insertable mounting fingers 20 and on the other hand, a kind of cover part 21 which in the assembly target position a part of the rear opening 12 of the housing 2 closes.
  • the assembly target situation for example, in FIG. 24 is illustrated, are pressed by the mounting fingers 20 of the auxiliary tool 19 of the wire distributor 15 with the applied wires 17 in the cutting forks 10 of the cutting fork holder 9 and held in this position.
  • a cover part 22 is preferably also made of electrically conductive material, pivotally supported on the housing 2, which closes the remaining space of the rear opening 12.
  • Both the auxiliary tool 19 and the cover part 22 have lug-like half parts 23,24, which are arranged in assembly target position to a connecting cable 5 surrounding the nozzle, wherein the desired position is fixed, for example, with a holding means 25.
  • the circuit board holder 6 has a rear planar first portion, which in FIGS. 1 and 2 is visible on the right, on which the film-like printed circuit board 7 is placed. At this first portion protrude from holding mandrels 26, which pass through the circuit board 7. At the side edge edges perforations 27 are formed, in which the angled from the circuit board 7 in the desired position downwards Contact ears 8 intervene. In the illustration according to Figure 1 to 3 these contact ears 8 are not yet angled down. The later target position is for example in FIG. 11 seen.
  • the perforations 27 form box-like receptacles that not only hold the contact ears 8, but also later record the corresponding ends 11 of the cutting forks 10.
  • the circuit board holder 6 also has a front in assembly target position, upwardly projecting second portion on which the circuit board 7 rests.
  • a resilient comb-like structure 28 is integrally formed on the circuit board holder 6, by means of which the separated from the circuit board 7 contact springs 4 are resiliently supported.
  • at least one retaining pin 29 is provided on the front side of the circuit board holder 6, which passes through the local end of the circuit board 7 and fixed.
  • a support spring 30 is disposed between the comb-like structure 28 and a bottom portion of the circuit board holder 6, which forms a number corresponding to the number of individual contact springs 4 number of spring fingers, each of which supports the individual tooth of the comb-like structure 28 resiliently.
  • the cutting fork holder 9 consists of an approximately cuboid on one side, in FIG. 4 upwardly open housing part 31 and a frame-like, on the housing part 31 front-molded cover member 32.
  • the housing part 31 has a Base plate, which is placed in mounting target position on the circuit board holder 6 and is penetrated by the retaining pins 26.
  • the holding mandrels can be inserted into the perforations in a latching manner or be pressed after the cutting fork holder 9 has been placed on, so that a permanent connection between the parts is produced.
  • the cutting forks 10 are held in the corresponding recesses and protrude in the direction of the open mouth of the housing part 31.
  • they On the underside of the bottom plate, they have U-shaped bent contact areas 11, as in particular FIG. 5 is apparent.
  • the frame-like cover member 32 surrounds the contact springs 4 like a window and covers the corresponding edge of the circuit board holder 6. This is for example in FIG. 12 illustrated.
  • the wire distributor 15 has a plug-in opening for the connecting cable 5, wherein next to the plug opening a finger 33 is pivotally formed, which protrudes counter to the insertion direction of the cable 5.
  • the cable 5 can be plugged with its end from which the cable cores 17, on the finger 33, so that the finger 33 between the insulating sheath and the braid 16 of the connecting cable 5 engages.
  • the cable can be on this First, be fed axially, as in FIG. 14 illustrated and then in the position according to FIG. 16 be bent, wherein the predetermined bending by the articulation of the finger 33 on the wire distributor 15 is mandatory.
  • a hinged at the wire distributor 15 cover 34 can be spent in the closed position, depending on the diameter of the cable 5 is a locking in different positions.
  • corresponding catch contours 35 are provided on fork-like supports of the wire distributor 15. In this engage locking fingers 36 of the lid 34 a.
  • the side facing away from the plug opening of the wire distributor 15 (in FIG. 14 lying down) has at two parallel longitudinal portions of the bearing blocks 18 for the cable cores 17. In the final position results in a situation as in FIG. 18 is shown.
  • FIGS. 19 to 24 can be seen, the auxiliary tool 19 mounting fingers 20 which taper to the free end wedge-shaped, while the top of the wire distributor 15 has a corresponding slope 37, so that upon insertion of the mounting fingers 20, a downward movement of the wire distributor 15 and a contacting of the wires 17 with the Cutting forks 10 takes place.
  • the nozzle-like half parts 23 and 24 of the cover part 22 and the auxiliary tool 19 have on their inner circumference contact surfaces 38 which are in contact with the shield 16 of the cable 5, and they have contours 39 which are located on the Support insulating jacket of the cable 5 to form a strain relief.
  • snap hooks 40 can be exchangeably secured to the housing 2 in order to enable mounting on different mounting openings.
  • the front plug opening of the housing 2 is associated with a lid 41, which serves as a dust cover.
  • an additional ground connection 42 may preferably be provided on the underside, as in FIG FIG. 26 illustrated.
  • the flexible printed circuit board 7 can be applied to the printed circuit board holder 6 in the correct position and temporarily fixed by the specified means. Subsequently, the ears 8 are bent down so that they eino in the box-like openings 27. On the thus prepared part of the cutting fork holder 9 can then be placed and connected to the PCB holder 6 to a unit. The assembly process is based on the FIGS. 9 to 12 illustrated. Subsequently, the cable 5 can be connected in a corresponding manner with the wire distributor 15, as in FIGS. 14 to 18 is illustrated.

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)
  • Connections Arranged To Contact A Plurality Of Conductors (AREA)
  • Inspection Of Paper Currency And Valuable Securities (AREA)
  • Radar Systems Or Details Thereof (AREA)
  • Dc Digital Transmission (AREA)

Claims (12)

  1. Fiche femelle (1) pour systèmes de télécommunication et de transmission de données avec un boîtier (2) qui présente une ouverture d'enfichage (3) pour une fiche mâle, avec une pluralité de fils de contact (4) qui font saillie dans l'ouverture d'enfichage et qui peuvent être reliés à une ligne de raccordement,
    caractérisée en ce que la fiche femelle (1) est composée selon le principe modulaire de pièces pouvant être assemblées, à savoir
    - d'un support de carte à circuit imprimé (6) en matériau isolant sur lequel est fixée une carte à circuit imprimé (7) sous forme de film qui présente des zones découvertes qui forment les ressorts de contact (4) et que la carte à circuit imprimé présente des oreilles de contact (8) qui peuvent être reliées indirectement à des fils de raccordement (17) d'un câble d'amenée (5),
    - d'un support de fourches coupantes (9) en matériau isolant avec des fourches coupantes (10) servant à contacter les fils de raccordement (17), dont les extrémités sont fixées au support de fourches coupantes (9) et peuvent être reliées aux oreilles de contact (8) de la carte à circuit imprimé (7),
    - du boîtier (2) dé préférence en matériau conducteur de l'électricité, dans lequel l'élément composé du support de carte à circuit imprimé (6) avec carte à circuit imprimé (7) et du support de fourches coupantes (9) peut être inséré à travers une ouverture arrière (12) de façon que les ressorts de contact (4) soient accessibles à l'ouverture d'enfichage avant (3) du boîtier (2),
    - d'un répartiteur de fils (15) en matériau isolant dans lequel un câble de raccordement (5) peut être enfiché, dont les fils (17) sont positionnés sur des supports (18) du répartiteur de fils (15), le répartiteur de fils (15) avec câble (5) et fils (17) positionnés pouvant être inséré dans l'ouverture arrière (12) du boîtier (2) et correctement positionné au-dessus du support de fourches coupantes (9),
    - d'un outil auxiliaire (19) de préférence en matériau conducteur de l'électricité, lequel ferme une partie de l'ouverture arrière (12) du boîtier (2) et, en position de montage nominale, enfonce le répartiteur de fils (15) avec les fils (17) posés dessus dans les fourches coupantes (10) du support de fourches coupantes (9) et les maintient dans cette position,
    - d'une partie couvercle (21) de préférence en matériau conducteur de l'électricité, laquelle recouvré l'espace libre restant de l'ouverture arrière (12), l'outil auxiliaire (19) et la partie couvercle (21) présentant des demi-pièces (23, 24) en forme de manchon qui, en position de montage nominale, se complètent pour former un manchon entourant le câble de raccordement (5),
    - d'un moyen de maintien (25) au moyen duquel les demi-pièces (23, 24) en forme de manchon sont maintenues en position nominale.
  2. Fiche femelle selon la revendication 1,
    caractérisée en ce que le support de carte à circuit imprimé (6) présente une première partie arrière en position de montage nominale, à surface plane, sur laquelle repose la carte à circuit imprimé (7) sous forme de film, de laquelle première partie font saille des broches de maintien (26) qui traversent la carte à circuit imprimé (7), et que sont prévues sur les bords extérieurs latéraux des perforations (27) dans la première partie dans lesquelles s'engagent les oreilles de contact (8) coudées vers le bas.
  3. Fiche femelle selon la revendication 1 ou 2,
    caractérisée en ce que le support de carte à circuit imprimé (6) présente une deuxième partie avant en position de montage nominale, faisant saillie vers le haut, sur laquelle repose la carte à circuit imprimé (7), qui soutient par une structure en peigne élastique (28) les ressorts de contact (4) séparés de la carte à circuit imprimé (7) et sur la face frontale de laquelle est prévue au moins une broche de maintien (29) qui passe à travers l'extrémité de la carte à circuit imprimé (7) et la fixe.
  4. Fiche femelle selon la revendication 3,
    caractérisée en ce que qu'un ressort de soutien (30) avec un nombre prévu de doigts de ressort correspondant au nombre des ressorts de contact séparés, servant de soutien pour la structure en peigne (28), est disposé sur la deuxième partie entre la structure en peigne (28) et une partie de fond du support de carte à circuit imprimé (6).
  5. Fiche femelle selon l'une des revendications 1 à 4,
    caractérisée en ce que le support de fourches coupantes (9) est composé d'une partie boîtier (31) parallélépipédique ouverte d'un côté et d'une partie de recouvrement (32) en forme de cadre formée sur la partie boîtier (31), la partie boîtier (31) présentant une plaque de fond qui peut être posée sur le support de carte à circuit imprimé (6) et qui est traversée par les broches de maintien (26) du support de carte à circuit imprimé (6), des fourches coupantes (10) étant maintenues dans des zones marginales latérales parallèles de la plaque de fond, lesquelles fourches coupantes (10) font saillie en direction de l'embouchure ouverte de la partie boîtier (31) et présentent du côté inférieur de la plaque de base des zones de contact (11) recourbées en U qui sont appliquées élastiquement sur les oreilles de contact (8) de la carte à circuit imprimé (7), et la partie de recouvrement (32) en forme de cadre entourant à la manière d'une fenêtre les ressorts de contact (4) de la carte à circuit imprimé (7), le support de fourches coupantes (9) étant relié de manière fixe au support de carte à circuit imprimé (6) en position de montage nominale.
  6. Fiche femelle selon l'une des revendications 1 à 5,
    caractérisée en ce que le répartiteur de fils (15) présente une ouverture d'enfichage pour le câble de raccordement (5), un doigt (33) étant formé avec possibilité de pivotement à côté de l'ouverture d'enfichage, sur lequel le câble (5) peut être enfiché par son extrémité de laquelle sortent les fils de câble (17) de façon que le doigt (33) s'engage entre la gaine isolante et la tresse de blindage (16) du câble de raccordement (5), le côté du répartiteur de fils (15) opposé à l'ouverture d'enfichage présentant dans deux zones longitudinales parallèles les supports (18) pour les fils de câble (17), et qu'un couvercle (34) qui recouvre l'espace libre entre câble (5) et ouverture d'enfichage est articulé dans la zone du répartiteur de fils (15) opposée au doigt (33).
  7. Fiche femelle selon l'une des revendications 1 à 6,
    caractérisée en ce que l'outil auxiliaire (19) est effilé en forme de coin et le côté supérieur du répartiteur de fils (15) biseauté de façon correspondante.
  8. Fiche femelle selon l'une des revendications 1 à 7,
    caractérisée en ce que les demi-pièces (23, 24) en forme de manchon de l'outil auxiliaire (19) et de la partie couvercle (21) présentent sur la circonférence extérieure des surfaces de contact (38) qui forment la prise de blindage du blindage (16) du câble (5) et des contours (39) qui s'appliquent sur la gaine isolante du câble (5) et forment un dispositif de décharge de traction.
  9. Fiche femelle selon l'une des revendications 1 à 8,
    caractérisée en ce que le moyen de maintien (25) servant à maintenir ensemble les demi-pièces (23, 24) en forme de manchon est formé par un serre-câble entourant celles-ci.
  10. Fiche femelle selon l'une des revendications 1 à 9,
    caractérisée en ce que des crochets encliquetables (40) servant à la fixation de la fiche femelle (1) dans une fenêtre d'un composant sont fixées de manière amovible sur le boîtier (2).
  11. Fiche femelle selon l'une des revendications 1 à 10,
    caractérisée en ce qu'un couvercle (41) est associé à l'ouverture d'enfichage avant (3) du boîtier (2).
  12. Fiche femelle selon l'une des revendications 1 à 11,
    caractérisée en ce qu'une prise de terre supplémentaire (42), par exemple une cosse enfichable, est prévue à l'arrière du boîtier, de préférence du côté inférieur.
EP06015854A 2005-10-31 2006-07-29 Douille de connexion électrique pour télécommunication et la transmission de données Active EP1780843B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202005017035U DE202005017035U1 (de) 2005-10-31 2005-10-31 Steckbuchse für Telekommunikations- und Datenübertragungssysteme

Publications (2)

Publication Number Publication Date
EP1780843A1 EP1780843A1 (fr) 2007-05-02
EP1780843B1 true EP1780843B1 (fr) 2008-02-13

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AT (1) ATE386355T1 (fr)
DE (2) DE202005017035U1 (fr)

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DE202006009504U1 (de) * 2006-06-14 2006-08-24 CCS Technology, Inc., Wilmington Elektrischer Steckverbinder
DE102007005959A1 (de) 2007-02-06 2008-08-14 Adc Gmbh Steckverbinder
DE102007018945B4 (de) 2007-04-21 2014-11-27 Wilhelm Rutenbeck Gmbh & Co. Kg Steckbuchse für Telekommunikations- und Datenübertragungssysteme
DE202007017363U1 (de) * 2007-12-11 2008-03-13 CCS Technology, Inc., Wilmington Elektrischer Steckverbinder

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US6371793B1 (en) * 1998-08-24 2002-04-16 Panduit Corp. Low crosstalk modular communication connector
CA2464834A1 (fr) * 2004-04-19 2005-10-19 Nordx/Cdt Inc. Connecteur

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DE202005017035U1 (de) 2005-12-22
DE502006000343D1 (de) 2008-03-27
EP1780843A1 (fr) 2007-05-02
ATE386355T1 (de) 2008-03-15

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