EP0477610B1 - Eléments de couplage enfichables multipolaires pour conducteurs électriques - Google Patents

Eléments de couplage enfichables multipolaires pour conducteurs électriques Download PDF

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Publication number
EP0477610B1
EP0477610B1 EP91114898A EP91114898A EP0477610B1 EP 0477610 B1 EP0477610 B1 EP 0477610B1 EP 91114898 A EP91114898 A EP 91114898A EP 91114898 A EP91114898 A EP 91114898A EP 0477610 B1 EP0477610 B1 EP 0477610B1
Authority
EP
European Patent Office
Prior art keywords
housing
slider
control member
coupling part
part according
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.)
Expired - Lifetime
Application number
EP91114898A
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German (de)
English (en)
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EP0477610A1 (fr
Inventor
Peter Schekalla
Waldemar Jorroch
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.)
Kabelwerke Reinshagen GmbH
Original Assignee
Kabelwerke Reinshagen 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 Kabelwerke Reinshagen GmbH filed Critical Kabelwerke Reinshagen GmbH
Publication of EP0477610A1 publication Critical patent/EP0477610A1/fr
Application granted granted Critical
Publication of EP0477610B1 publication Critical patent/EP0477610B1/fr
Anticipated expiration legal-status Critical
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    • 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
    • H01R13/40Securing contact members in or to a base or case; Insulating of contact members
    • H01R13/42Securing in a demountable manner
    • H01R13/436Securing a plurality of contact members by one locking piece or operation
    • H01R13/4367Insertion of locking piece from the rear

Definitions

  • the invention is directed to a multi-pole coupling half of the type specified in the preamble of claim 1. This can be designed as a plug with male contact members or as a socket with female contact members.
  • the housing is equipped with a family of parallel bores for receiving and holding the contact members and has a slot crossing these, in which a plate acting as a slide is movable in a push-like manner.
  • the perforated plate has a hole pattern adapted to the bore profile and, when fully inserted, engages in recesses in the contact members, as a result of which they are secured in the housing.
  • a so-called "comb” could also be used to secure the received contact members, the comb teeth of which interact with the contact members in the housing.
  • Coupling halves are also known (DE-PS 37 35 205), in which the perforations in the slide take over the function of forming the receiving sections of the housing bores which serve to hold the contact members. When moving between its mounting and locking position, the slide is moved together with the contact members.
  • the slide path of the slide between its mounting and locking position is relatively small. Therefore, great care is needed to determine whether the slide is in the correct mounting position or locking position during or after the assembly of the contact members. This is not always easy to recognize in a hectic assembly operation and leads to errors. In use, the slide is difficult to access due to a tight arrangement of the coupling half and therefore the movement of the slide between its two drawers is sometimes difficult to carry out. In addition, it is not only necessary to transfer the slide into its locking position after the coupling members have been installed, but sometimes also to move the slide back into its mounting position when a damaged or incorrectly polarized contact member has to be removed.
  • the invention has for its object to develop an inexpensive, space-saving coupling half of the type specified in the preamble of claim 1, the slide of which makes it smoothly and reliably transferable between its two drawers, it being unmistakably recognizable in which of its two drawers the slide is currently located .
  • This is achieved according to the invention by the measures specified in the characterizing part of claim 1, which have the following special significance.
  • the control element characterizing the invention has a dual function. On the one hand, it serves for a particularly smooth and comfortable movement of the slide in the housing between its two drawers. This is achieved because a control ratio is achieved through the control and counter surfaces, which also allows weighty large slides to be moved with little manual force. In this way, small thrust movement paths can be reliably and conveniently generated by longer movements of the control member. You can now set the control element in the direction that is most favorable for manual handling on the housing and is no longer dependent on the direction of thrust of the Slider set.
  • the guide direction of the control element can in principle point in a different direction than the pushing movement of the slide.
  • control element simultaneously fulfills the function of an optical display which, due to the different height of the control element with respect to the housing, clearly signals whether the slide is in its mounting position or in its final locking position.
  • the long distances in the control element resulting from the translation of the movements between the control element on the one hand and the slide on the other hand are particularly favorable for such a display.
  • Such a control element could be pivotable, but according to claim 2 it is easier to make the control element displaceable parallel to itself in the housing.
  • the cheapest for the power transmission is to let the control member run perpendicular to the direction of thrust of the slide according to claim 3. If one provides a handle according to claim 4, this not only simplifies the actuation of the control element, but at the same time improves the aforementioned signal effect for recognizing the respective slide position.
  • the working positions of the control member should be placed by latching elements according to claim 6, which noticeably and audibly increases the aforementioned signal effect in the handle. It is advisable to use latching elements that are adapted to the respective needs and supply both working positions of the control slide separately according to claim 7.
  • a stop element according to claim 8 for a particularly striking mounting position of the control member, which can be designed most simply in the form of a resilient button according to claim 9. Accordingly, you can set the locking position by a stop lug according to claim 11.
  • a space-saving arrangement of the counter surfaces for the control member can be realized in a breakthrough according to claim 12, wherein the formation of these counter surfaces as a rib and the control surfaces as a groove is most advantageous.
  • a particularly convenient arrangement of the control element on the coupling half results from the arrangement emphasized in claim 10, which is aligned with the mounting direction of the contact members in the region of the housing.
  • the mounting position of the control element can also be achieved, in addition or in addition to the aforementioned locking elements, by regionally engaging the control and counter surfaces.
  • the thrust position of the slide should be secured by holding elements according to claim 16.
  • stops for this purpose which are in particular in the form of end stops between the slide and the housing. The latter provides particularly precise positioning of the components during the assembly process of the coupling elements.
  • the invention is particularly advantageously suitable for slides, the hole pattern of which at the same time forms the receiving sections for holding the contact members.
  • the control element can overcome large weights and large frictional forces.
  • the movement distances of the contact members can be taken into account by corresponding widenings in output sections of the bores in the housing.
  • these can also be used advantageously to secure the contact members in the housing.
  • a coupling half 10 comprises two components in terms of housing, namely a housing 11 and a slide 12.
  • the housing 11 is provided with a housing slot 13 which is open on one side, in which the slide 12 is inserted in the direction of arrow 14 and after being inserted in the interior of the housing 1 and 2 in the sense of arrows 15 and 15 'can be moved back and forth.
  • Both the housing 11 and the slide 12 are provided with mutually coordinated, longitudinally profiled bores which can be divided into three successive sections, namely an input section 21 in the region of the housing base 16, which can be flared outwards.
  • this includes a receiving section 22 located exclusively in the area of the slide 12, which is provided with inner holding surfaces 17 for the individual receiving and exact positioning of contact members 20.
  • the bore also comprises output sections 23 which are located in the housing cover 18 and there to the outside Form open chambers for inserting the contact members 20.
  • output sections 23 which are located in the housing cover 18 and there to the outside Form open chambers for inserting the contact members 20.
  • shoulder surfaces 19 which lie in the sectional plane 29 indicated by dash-dotted lines in FIG. 3 between the slide 12 and the housing 11 and cooperate with corresponding shoulders 24 of the inserted contact member 20.
  • the contact member is divided into several parts, namely a functional part 25 comprising the actual contact springs, a central part 26 possibly equipped with locking tongues and an end part 27 serving to connect a line 40. Between the end and central part 26 is the shoulder already mentioned 24.
  • These contact members 20 are mounted in the two housing components 11, 12 in the following manner.
  • the two components 11, 12 are made of plastic, separated from one another. Due to the receiving sections 22, the slide 12 has a hole pattern coordinated with the adjacent bore sections 21, 23 of the housing 11. A large number of such holes 22 are provided in order to receive and hold a set of matching contact members 20.
  • the slide 12 is first inserted into the housing slot 13 in the direction of the arrow 14 already mentioned until the inner slide end 41 abuts an end stop 42 of the housing 11 which serves as a housing end. There is then a defined thrust position shown in FIG. 1, in which the hole patterns 22 of the slide 12 are aligned with the output sections 23 of the housing 11.
  • the contact members can be inserted into the housing 11 and into the slide 12 in the sense of the assembly arrow 45 indicated in FIG. 1 insert until they come to rest properly with their functional parts 25 in the inner holding surfaces 17 and thereby snap with their spring tongues or the like mentioned in the area of their central part 26 in the housing 11. Because of the assembly to be carried out, the thrust position 12 of the slide shown in FIG. 1 will therefore be briefly referred to below as the "assembly position".
  • the control member 30 comprises a guide area 31 with an adjoining handle 32.
  • This guide area 31 is assigned a guide 46 in the height area of the housing cover 18, which guides the control member 30 in parallel in the sense of the guide arrow 47 from FIG. 1 and 57 from FIG. 3 allowed.
  • This guide direction 47, 57 of the control member 30 is oriented perpendicular to the aforementioned thrust movement 15, 15 'of the slider 12 in the housing 11 and thus runs parallel to the aforementioned mounting direction 45 of the contact members 20, from the same side of the housing.
  • the control member 30 is therefore just as easily accessible with its handle 32 as the bore sections 23, 22 for the assembly 45 of the contact members 20.
  • the control member 30 has in its guide region 31 an integrally formed bar 33 which carries two halves of the locking element 34, 35 offset in relation to one another in the form of locking lugs.
  • a notch 36 is provided to increase the elasticity of the form of the lower latching lug 34 of the control member 30, which is also made of plastic.
  • the bar 33 is equipped with a cutout 37 in the height region of the upper latch 35.
  • a stop element 38 which here consists of an elastically molded button which, as illustrated in FIG. 4, produces an edge 39 which projects from the flat profile 48.
  • control member 30 is pushed in by means of its handle 32 as far as the arrow 47, until, according to FIG. 4, the button 38 with its free button edge 39 abuts the upper end face 49 of the housing guide 46, which thus forms a counter shoulder for the button 38. 4, the key edge 39 can already engage with a tooth 59 in the guide 46 in order to ensure this stop action.
  • control member 30 is provided with special control surfaces 50, which in the present case consist of a longitudinal groove which is inclined to the direction of movement 47, 47 'of the slide 30. These are assigned complementary counter surfaces 51 in the slide 12, which here consist of a longitudinal rib 51, which can be seen best from FIG.
  • the complementary longitudinal ribs 51 are also arranged opposite one another in an opening 52 in the slide 12.
  • This opening 52 is arranged in a continuation of the guide 46 located in the housing 11 and, although it has an opening width 53 which is adapted to the control member flat profile 48 and can be seen in FIG. 2, but an opening length 54 which exceeds the flat profile 48 1, the immersion depth 55 of the control member 30 in the housing 11, which can be seen in FIG. 1, the control surface 50 on the member 30 with the engagement area 56 shown in FIG. 1 already partially engages the counter surface 51 on the slide 12. This is one in the sense of the opposite arrow 14 'of Fig. 1 illustrated pull-out movement of the slider 12 from the housing 11 is no longer possible.
  • the fitter can only move the control member 30 in the sense of the further push-in arrow 57 in FIG. 3 if the stop action 39, 49 of the button 38 is eliminated. This is done, as can be seen from FIG. 4, by pressing the key 38 in the direction of the pivoting arrow 65 and pressing the key edge 39 which until then has been locking into the flat profile 48 of the control member, so that the entire key 38 with the inside width 66 of the key Housing guide 46 is aligned. Then the control member 30 can be pressed to the full immersion depth 55 'in the assembly of the housing 11 and slide 12. This immersion depth 55 'is limited in the insertion sense 57 in that the stop lugs 61 which can be seen in FIG.
  • this working position of the control member 30 is hereinafter referred to as the "locking position”.
  • the locking position of the control member 30 shown in FIG. 3 is also secured against an unintentional pull-out movement in the direction of the arrow 57 ', because now the already mentioned upper latch 35 interacts with a projection 63 provided in the guide 46 of the control member 30.
  • the immersion depth 55 ' is thus fixed in both directions of movement 57, 57'.
  • the locking position of the slider 12 is of course also precisely defined via the surfaces 50, 51 that have moved into one another. In this locking position, the previously mounted contact members 20 are captively fixed in the housing 11 and in the slide 12, which is accomplished in the following way.
  • the position of the contact members 20 in the coupling half 10 is thus fixed; the contact members can no longer be dismantled in the direction of the arrow 45 'of FIG. 3.
  • This secured position of the contact members 20 in the coupling half 10 is signaled by the small projecting portion 60 'of the control member 30. The fitter can be confident that the coupling half 10 is completed.
  • the control member 30 In order to carry out the disassembly 45 ', the control member 30 must first be pulled out of its housing guide 46 in the direction of the exit arrow 57'. For this purpose, a certain amount of force is deliberately required in order to overcome the above-mentioned, engaged two locking element halves 35, 63. This extension movement 57 'is then determined again by the further locking element pair 34, 58 described in connection with FIG. 1. This is also audible to the fitter, because at the same time the elastic button 38 snaps out of the housing guide 46, which is pushed back into the flat profile 48 of the control member 30, into the position shown in FIG. 4.
  • the mounting position of the slider 12 shown in FIG. 1 could be secured instead of the stops 41, 42 there by holding elements (not shown) between the slider 12 and the housing 11, which are arranged in the region of the housing slot 13 and z . B. interact like a snap.
  • the thrust direction 15 'of FIG. 3 could also be oriented in the same direction to the previous insertion movement 14 instead of in the opposite direction. After the insertion movement 14, the slide 12 would then in the same direction in its locking position 15 'to be moved further.

Landscapes

  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connections By Means Of Piercing Elements, Nuts, Or Screws (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)
  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)

Claims (23)

  1. Elément de connexion (10) multipolaire et enfichable, tel qu'une fiche ou une prise, comprenant plusieurs organes de contact (20) raccordés à des conducteurs électriques, élément dans lequel
    les organes de contact (20) sont respectivement logés, de manière individuelle, dans des trous traversants profilés longitudinalement dans un boîtier d'isolation (11)
    et y sont arrêtés, après leur montage, par l'intermédiaire d'une pièce coulissante perforée (12) qui franchit transversalement les trous pratiqués dans le boîtier (11), et présente un agencement de perforations (22) adapté au profil des trous dans la zone d'intersection (29),
    la pièce coulissante (12) étant mobile, dans le boîtier (11), entre deux positions de poussée bien définies, c'est-à-dire une première position de poussée de la pièce coulissante (12), qui caractérise une position de montage et dans laquelle son agencement de perforations (22) est aligné avec les trous (23) du boîtier, et permet respectivement d'enficher (45) les organes de contact (20) dans les trous, ou de les en extraire de nouveau (45′),
    et une seconde position de poussée de la pièce coulissante (12), qui détermine une position de verrouillage et dans laquelle son agencement de perforations (22) est décalé (44) par rapport aux trous du boîtier, et arrête dans lesdits trous les organes de contact (20) montés,
    caractérisé par
    un organe supplémentaire de commande (30) qui est guidé (46) dans le boîtier (11), l'organe de commande (30) et la pièce coulissante (12) présentant, respectivement, des surfaces de commande (50) et des surfaces complémentaires (51) telles que la position de montage de la pièce coulissante (12) dans le boîtier (11) soit établie dans une première position efficace de l'organe de commande (30) (position de montage),
    tandis que, dans une seconde position efficace (position de verrouillage), la pièce coulissante (12) est amenée, par l'organe de commande (30), à la position de verrouillage dans, le boîtier (11) (cf. figures 1, 3).
  2. Elément de connexion selon la revendication 1, caractérisé par le fait que l'organe de commande (30) est guidé (46) parallèlement à lui-même, dans le boîtier, jusqu'à sa première position efficace (47) ainsi qu'entre ses première et seconde (57) positions efficaces.
  3. Elément de connexion selon la revendication 2, caractérisé par le fait que le guidage parallèle (46) de l'organe de commande (30), dans le boîtier (11), est orienté pour l'essentiel perpendiculairement (47, 57) à la direction de poussée (15, 15′) de la pièce coulissante (12).
  4. Elément de connexion selon l'une ou plusieurs des revendications 1 à 3, caractérisé par le fait que l'organe de commande (12) présente un élément de préhension (32) visible qui, dans au moins l'une des deux positions efficaces de l'organe de commande (30), dépasse au-delà du boîtier (11) et sert de signal pour indiquer la présence respective de la première et/ou seconde position de poussée de la pièce coulissante (12) (cf. figures 1, 3).
  5. Elément de connexion selon la revendication 4, caractérisé par le fait que, lors de la transition entre les deux positions efficaces, le trajet (62) parcouru par l'élément de préhension (32) de l'organe de commande (30) représente un multiple de la course de poussée (44) de la pièce coulissante (12) entre les deux positions de poussée de cette dernière.
  6. Elément de connexion selon l'une ou plusieurs des revendications 1 à 5, caractérisé par le fait que des éléments: d'encrantage (34, 58 ; 35, 63) interposés entre l'organe de commande (30) et le boîtier (11), de préférence dans la zone (31) de guidage de l'organe de commande (30), arrêtent au moins l'une des positions efficaces dudit organe de commande (30).
  7. Elément de connexion selon la revendication 6, caractérisé par la présence, entre l'organe de commande et le boîtier (11), de deux paires d'éléments complémentaires d'encrantage (34, 58 ; 35, 63) dont l'une (34, 58) des paires et l'autre paire (35, 63) excluent respectivement, dans la position de montage et dans la position de verrouillage, un mouvement rétrograde (47′, 57′) de l'organe de commande (30) dans son guidage (46) dans le boîtier.
  8. Elément de connexion selon l'une ou plusieurs des revendications 1 à 7, caractérisé par le fait que l'organe de commande (30) porte un élément mobile de butée (38) qui est actionnable manuellement et qui, dans au moins l'une des deux positions efficaces, de préférence dans la position demontage, est normalement appliqué contre un épaulement complémentaire (49) ménagé sur le boîtier (11) et interdit le transfert (57) de l'organe de commande (30) à l'autre position efficace, c'est-à-dire à la position de verrouillage, mais qui, lorsqu'il est actionné (65), se libère de l'épaulement complémentaire (49) du boîtier (11) et autorise le transfert (57) de l'organe de commande (30) (cf. figures 1, 4).
  9. Elément de connexion selon la revendication 8, caractérisé par le fait que l'élément de butée consiste en un taquet (38) à élasticité de forme, ménagé solidairement dans la région de l'élément de préhension (32) de l'organe de commande, et l'épaulement complémentaire est formé par la face extrême (49) du guidage (46) de l'organe de commande (-30) dans le boîtier (11), le taquet (38) faisant normalement saillie par son arête libre (39), avec effet de blocage, au-delà du prolongement du profil d'ouverture (66) du guidage (46) dans le boîtier, mais pouvant être enfoncé manuellement (65), avec souplesse élastique, dans le profil de la pièce coulissante.
  10. Elément de connexion selon l'une ou plusieurs des revendications 1 à 9, caractérisé par le fait que l'organe de commande (30) peut être inséré, dans son guidage (46) dans le boîtier (11), à partir du même côté que celui à partir duquel - dans la position de montage de la pièce coulissante (12) - les organes de contact (20) peuvent également être enfichés (45) dans les trous (22, 23), ou peuvent en être respectivement de nouveau extraits (45′).
  11. Elément de connexion selon l'une ou plusieurs des revendications 1 à 10, caractérisé par le fait que l'organe de commande (30) présente, sur son élément de préhension (32), un mentonnet fixe de butée (61) qui vient buter contre le boîtier (11) dans la position intégrale de verrouillage de l'organe de commande (30).
  12. Elément de connexion selon l'une ou plusieurs des revendications 1 à 11, caractérisé par le fait que la pièce coulissante (12) est munie d'un évidement (52) dans le prolongement du guidage (46) de l'organe de commande (30), si tué dans le boîtier (11), et les surfaces complémentaires (51) coopérant avec les surfaces de commande (50) de l'organe de commande (30) sont disposées au voisinage de cet évidement (52) (cf. figures 1, 2).
  13. Elément de connexion selon l'une ou plusieurs des revendications 1 à 12, caractérisé par le fait que les surfaces de commande sont constituées d'au moins une gorge longitudinale (50) s'étendant à l'oblique par rapport à la direction (47, 57) de mouvement de l'organe de commande (30), et les surfaces complémentaires sont constituées d'au moins une nervure longitudinale complémentaire (51) façonnée sur la pièce coulissante (12).
  14. Elément de connexion selon l'une ou plusieurs des revendications 1 à 13, caractérisé par le fait que, dans la position de montage de l'organe de commande (30), les surfaces de commande (50) de ce dernier sont en prise, par zones (56), avec les surfaces complémentaires (51) de la pièce coulissante (12), et empêchent au moins le mouvement de poussée de la pièce coulissante (12) dans une direction (15′) (cf. figure 1).
  15. Elément de connexion selon la revendication 14, caractérisé par le fait que, dans la position de montage de l'organe de commande (30), un mouvement de poussée de la pièce coulissante (12) s'opérant dans la direction opposée (15) est bloqué par l'intermédiaire de butées (41, 42), notamment des butées extrêmes, entre la pièce coulissante (12) et le boîtier (11) (cf. figure 1).
  16. Elément de connexion selon la revendication 14, caractérisé par le fait que, dans la position de montage de l'organe de commande (30), le mouvement de poussée (15, 15′) de la pièce coulissante est arrêté par l'intermédiaire d'éléments de retenue encrantables, entre la pièce coulissante (12) et le boîtier (11).
  17. Elément de connexion selon l'une ou plusieurs des revendications 1 à 16, caractérisé par le fait que le boîtier (11) présente, pour la pièce coulissante (12), une fente d'enfichage (13) qui est alignée (14, 14′) avec la flèche (15, 15′) du mouvement ultérieur de la pièce coulissante (12) entre ses deux positions de poussée dans le boîtier (11).
  18. Elément de connexion selon la revendication 17, caractérisé par le fait que la pièce coulissante (12) peut être animée d'un coulissement rétrograde, de sa position de montage à sa position de verrouillage, dans la direction (15′) opposée à son mouvement précédent (14) d'enfichage dans le boîtier (11) (cf. figures 1, 3).
  19. Elément de connexion selon la revendication 17, caractérisé par le fait que la pièce coulissante (12) peut être animée d'un coulissement ultérieur, de sa position de montage à sa position de verrouillage, dans la même direction que lors de son mouvement précédent d'enfichage dans le boîtier (11).
  20. Elément de connexion selon l'une ou plusieurs des revendications 1 à 19, caractérisé par le fait que les zones réceptrices (22) des trous, servant à retenir les organes de contact (20), sont formées par les perforations pratiquées dans la pièce coulissante (12) proprement dite, et la pièce coulissante (12) peut être animée d'un coulissement de sa position de montage à sa position de verrouillage, conjointement aux organes de contact (20) qui s'y trouvent, par l'intermédiaire de l'organe de commande (30) (cf. figures 1, 3).
  21. Elément de connexion selon la revendication 20, caractérisé par le fait que le boîtier porte des zones d'entrée (21) des trous, qui servent à l'enfichage d'accouplement d'organes complémentaires de contact d'un élément de connexion complémentaire et, dans la position de montage de l'organe de commande (30), ces zones d'entrée (21) sont certes décalées par rapport aux organes de contact (20) logés dans les zones réceptrices (22) de la pièce coulissante (12), et sont alignées avec des régions de paroi (43) de la pièce coulissante (12) qui empêchent le couplage des organes complémentaires de contact, mais elles sont toutefois alignées avec les organes de contact (20) dans la position de verrouillage de l'organe de commande (30).
  22. Elément de connexion selon la revendication 20 ou 21, caractérisé par le fait que le boîtier (11) possède des zones de sortie (23) des trous, qui sont tournées à l'opposé des zones d'entrée (21) et dans lesquelles, lors d'un montage, viennent se nicher les parties d'extrémité (27) des organes de contact (20) destinées au raccordement des conducteurs (40), et les zones de sortie (23) sont dotées d'élargissements latéraux (28) réalisés supérieurs/égaux à la course de poussée (44) de la pièce coulissante (12) entre la position de montage et la position de verrouillage de cette dernière.
  23. Elément de connexion selon la revendication 22, caractérisé par le fait que les élargissements des zones de sortie (23) sont délimités, dans le boîtier (11), par des surfaces détalonnées (19) qui se trouvent dans le plan d'intersection (29) entre la pièce coulissante (12) et le boîtier (11) et sont emprisonnées par-derrière, dans la position de verrouillage de la pièce coulissante (12), par des épaulements (24) des organes de contact (20) enfichés dans la pièce coulissante (12).
EP91114898A 1990-09-15 1991-09-04 Eléments de couplage enfichables multipolaires pour conducteurs électriques Expired - Lifetime EP0477610B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4029300 1990-09-15
DE4029300A DE4029300C1 (en) 1990-09-15 1990-09-15 Multipole electrical connector - has crimped connectors forced against projections on housing to provide secure retention

Publications (2)

Publication Number Publication Date
EP0477610A1 EP0477610A1 (fr) 1992-04-01
EP0477610B1 true EP0477610B1 (fr) 1994-06-08

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP91114898A Expired - Lifetime EP0477610B1 (fr) 1990-09-15 1991-09-04 Eléments de couplage enfichables multipolaires pour conducteurs électriques

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Country Link
EP (1) EP0477610B1 (fr)
AT (1) ATE107082T1 (fr)
DE (2) DE4029300C1 (fr)
ES (1) ES2057686T3 (fr)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2581477Y2 (ja) * 1993-05-07 1998-09-21 住友電装株式会社 コネクタ
DE4330359C2 (de) * 1993-09-08 1995-06-14 Reinshagen Kabelwerk Gmbh Gedichteter elektrischer Steckverbinder
DE19730979B4 (de) * 1997-07-18 2008-07-10 The Whitaker Corp., Wilmington Elektrischer Steckverbinder und Steckergehäuse dafür
FR2888996B1 (fr) * 2004-04-26 2007-09-28 Valeo Electronique Sys Liaison Element de boitier de connecteur electrique, organe de contact electrique destine a equiper un tel boitier et outil pour l'extraction desdits organes electriques

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE7705029U1 (de) * 1976-02-20 1977-06-02 Japan Aviation Electronics Industry, Ltd., Tokio Ko nta ktverbindu ngsele me nt
DE3023313A1 (de) * 1980-06-21 1982-01-07 Robert Bosch Gmbh, 7000 Stuttgart Vielpolige steckvorrichtung
DE3441559A1 (de) * 1984-11-14 1986-05-22 Adam Opel AG, 6090 Rüsselsheim Steckverbindung
GB8615183D0 (en) * 1986-06-21 1986-07-23 Lucas Ind Plc Electrical connectors
DE3735205A1 (de) * 1987-10-17 1989-04-27 Reinshagen Kabelwerk Gmbh Mehrpolige steckbare kupplungshaelfte fuer elektrische leitungen
DE3736036C1 (en) * 1987-10-24 1989-02-02 Kostal Leopold Gmbh & Co Kg Electrical plug connector part

Also Published As

Publication number Publication date
EP0477610A1 (fr) 1992-04-01
DE59101847D1 (de) 1994-07-14
ES2057686T3 (es) 1994-10-16
DE4029300C1 (en) 1992-03-12
ATE107082T1 (de) 1994-06-15

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