EP0633628B1 - Verbindergehäuse mit Verrieglungsarm - Google Patents

Verbindergehäuse mit Verrieglungsarm Download PDF

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Publication number
EP0633628B1
EP0633628B1 EP19940110035 EP94110035A EP0633628B1 EP 0633628 B1 EP0633628 B1 EP 0633628B1 EP 19940110035 EP19940110035 EP 19940110035 EP 94110035 A EP94110035 A EP 94110035A EP 0633628 B1 EP0633628 B1 EP 0633628B1
Authority
EP
European Patent Office
Prior art keywords
housing
latching
hood
connector
mating
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
EP19940110035
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English (en)
French (fr)
Other versions
EP0633628A3 (de
EP0633628A2 (de
Inventor
Gheorghe Hotea
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.)
Whitaker LLC
Original Assignee
Whitaker LLC
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 Whitaker LLC filed Critical Whitaker LLC
Priority to EP98123607A priority Critical patent/EP0911911A1/de
Publication of EP0633628A2 publication Critical patent/EP0633628A2/de
Publication of EP0633628A3 publication Critical patent/EP0633628A3/de
Application granted granted Critical
Publication of EP0633628B1 publication Critical patent/EP0633628B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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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
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/627Snap or like fastening
    • H01R13/6271Latching means integral with the housing
    • H01R13/6273Latching means integral with the housing comprising two latching arms

Definitions

  • This invention relates to a connector housing according to the preamble of claim 1 and to a method for forming a connector housing.
  • a one piece moulded electrical connector housing for mating with a mating electrical connector, the housing comprising a body having a forward mating face, a rear face, at least one terminal receiving passage opening into said faces and a forwardly directed hood for receiving a mating portion of the mating connector, coplanar latch arms extending from the housing in the forward direction thereof each terminating in a latching head with a rearwardly facing latching shoulder for engaging a corresponding latching shoulder of the mating connector, the latch arms being resiliently deflectable between a normal position and a latching position.
  • the latch arms are connected to opposite sides of the housing in offset relationship thereto, and are unprotected so that a lead extending from a terminal in the, or each, passage in the housing may, when the housing has been loaded with terminals connected to leads, tangle with the latch arms when the loaded connector housing is being handled, and the latch arms are susceptible to damage during handling of the housing.
  • FR-A-1 455 830 discloses a connector housing having a hood for receiving a mating connector housing therein, with a resilient cantilever latching arm being formed within and surrounded by the hood.
  • a tubular member of the mating connector housing insertable into the hood comprises a recess latchingly cooperating with a latching projection on the latching arm.
  • the latching arm is not accessable from outside of the hood. Therefore, the latching projection and the latching recess have to be shaped so that the latching engagement therebetween can be released by pulling both connector housings away from each other with relatively low pulling forces. For many applications, such a latching structure is not sufficiently safe against unintentional release of the latching engagement.
  • the present invention provides a connector housing as defined in claim 1 and a method for making a connector housing as defined in claim 11. Embodiments of the invention are defined in the dependent claims.
  • an electrical connector housing as defined in the second paragraph of this specification, is characterized in that the latch arms comprise at least one pair of latch arms joined together towards the rear face of the housing by a resilient strap connected to the housing body to provide a pivot point about which the latch arms are deflectable between said normal and latching positions, the latching heads projecting beneath a side wall of the hood and the remainder of the latch arms being substantially coplanar with said side wall, whereby the latch arms are in line with the housing.
  • the resilient strap is preferably substantially U-shaped and thus comprises a pair of legs connected by a bight, each leg being connected at its end remote from the bight to the rear end portion of a respective latch arm and the centre of the bight being connected to the housing body to provide the pivot point.
  • the U-shaped strap may be conveniently accommodated between the rear portions of the latch arms in coplanar relationship therewith.
  • the rear ends of the latch arms may be protected by means of a frame connected to the housing body.
  • the latching heads are preferably proximate to each other, each latch head terminating in an inclined ramp surface, these ramp surfaces being oppositely inclined.
  • the mating electrical connector may be provided with a single latching member for engaging the ramp surfaces to cam the latch arms apart to enable the latch arms to resile so that the latching shoulders of the latching heads of the latch arms engage behind a latching shoulder of the latching member.
  • the hood may be provided with a recess allowing access to a core pin for forming the latching heads of the latch arms.
  • the recess in the hood may also serve to provide access to the core pin for forming a notch in a part of the housing underlying the hood, for engagement by a latch member on a retaining ring for retaining a sealing grommet on said underlying part of the housing.
  • a sealed, vibration proof electrical connector assembly 2 comprises an electrical receptacle connector 4 and an electrical pin connector 6.
  • the assembly 2 may, when in use, serve to connect a pair of insulated electrical leads L (only one of which is shown) to sensors (not shown) incorporated in the pin connector 6, in the engine compartment of an automotive vehicle and thus in a vibratory and temperature cycling environment.
  • the receptacle connector 4 comprises an insulating housing 8, a pair of electrical receptacle terminals 10 (only one of which is shown), an elastomeric grommet 9 and a grommet retaining ring 11.
  • Each terminal 10 comprises an inner spring member 12 and an outer spring member 14.
  • the inner spring member 12 which has been stamped and formed from a single piece of sheet metal stock, comprises a forward, pin receptacle box portion 16, intermediate box portions 18 and 20, respectively, and a lead connecting rear portion 21.
  • the portion 21 comprises a box portion 23 and a crimping ferrule having a wire barrel 22 crimped about the metal core of the respective lead L, and an insulation barrel 24 crimped about a bung seal B surrounding the insulation of the lead L as shown in Figure 1.
  • the crimping ferrule is shown in its uncrimped condition in Figure 5.
  • the portions 16, 18, 20 and 23 are of substantially rectangular cross section.
  • each of the portions 16 and 18 cooperates to define a peripheral slot 26.
  • three side walls of each of these portions co-operate to define a peripheral slot 28.
  • three side walls of each of the portions 20 and 23 co-operate to define a peripheral slot 30.
  • the remaining side wall 31 of the portion 18 is connected to the remaining side wall 33 of the portion 20 by a first web 32, the remaining side walls 35 and 37 of the portions 16 and 18 being connected by a second and similar web 39 and the remaining side walls 41 and 43 of the portions 20 and 23 being connected by a third and similar web 45.
  • the box portions 16, 18 and 20 are, by virtue of the slots 26, 28 and 30 relatively moveable on the webs 32, 39 and 45, respectively (in relation to the box portion 23 which is fixed, as described below), so that the receptacle portion 16 is displaceable along the longitudinal axis X-X of the inner spring member 12, as well as transversely of the axis X-X, in accordance with the general teaching of EP-A-0492479.
  • Opposite side walls 34 of the box portion 16 have extending from their forward edges, bights 48 from which in turn extend re-enterant contact springs 36 having opposed, inwardly bowed contact surfaces 38 within the receptacle box portion 16.
  • the outer spring member 14 which has been stamped and formed from a single piece of sheet metal stock, is of rectangular cross section corresponding to that of said box portions.
  • the outer spring member 14 encloses the box portions 16, 18, 20 and 23 of the inner spring member 12.
  • the outer spring member 14 has a first pair of opposite side walls 40 and a second pair of opposite side walls 42 (only one of which is shown) which are adjacent to the side wall 40.
  • a resilient, rearwardly directed latching tongue 44 stamped out from each of the side walls 40 extends obliquely away therefrom.
  • arcuate extensions 46 of the side walls 40 overlie the bights 48 of the inner spring member 12, to limit forward movement of the receptacle box portion 16.
  • the outer spring member 14 is fixed to the inner spring member 12 by means of tabs 49 (only one of which is shown, in Figure 1), sheared from the rearward end portions of the side walls 42 and which have been clinched into respective slots 50 ( Figure 5) in the box portion 23 of the spring member 12.
  • the spring member 12 is thus secured in the outer spring member 14 such that the box portions 16, 18 and 20 can move within the spring member 14 in the direction of the axis X-X.
  • Each side wall 40 of the outer spring member 14 has stamped out therefrom, about midway between the respective latching tongue 44 and extension 46, an antifretting detent 52 which is best seen in Figures 2 and 3.
  • Each detent 52 is shaped substantially as an acute angled triangle, as seen in plan view, and comprises a pair of resiliently depressible wings 54 each of which is shaped substantially as a right angle triangle as seen in plan view. The inner edges of the wings 54 are slightly spaced from each other to define a central slot 55. The apex of said acute angled triangle is directed towards the extension 46 and its base is directed towards the latching tongue 44.
  • Each wing 54 has an arcuate free base edge 56 remote from said apex, so that as seen in the direction of the extension 46, the detent 52 has an end view profile which is substantially of half moon shape.
  • the housing 8 of the receptacle connector 4, which has been moulded in one piece, will now be described with particular reference to Figures 4 and 6 to 10.
  • the housing 8 basically comprises a body 58 to which is connected a forward hood 60, into which a forward part 62 of the body 58 projects, a peripherally continuous socket 63 being defined between the hood 60 and the forward part 62.
  • Each passage 64 comprises a rear part 72 in which the bung seal B of the respective terminal 10 is tightly engaged in sealing tight fashion as shown in Figure 1, and a forward rectangular cross section part 74 extending into the hood 60.
  • the forward part 74 of each passage 64 has therein opposed shoulders 76 each of which is engaged by a respective latching lance 44 of the outer spring member 14. The terminals 10 are thereby restrained against withdrawal from the passages 64. Rearwardly of the shoulders 76, the rear part of each outer spring member 14, enclosing the box portion 23 of the spring member 12, is snugly received in the part 74 of each passage 64.
  • each passage part 74 Forwardly of the shoulders 76, opposite side walls 77 of each passage part 74 are each formed with a pair of slots 78 ( Figures 7, 8 and 9) so that a section 80 of each wall 77, between the respective pair of slots 78 is resiliently flexible inwardly of the respective passage part 74.
  • the slots 78 have L-cross section, blind portions opening into the mating face 66.
  • Each wall section 80 thereby constitutes a flexible beam supported at both of its ends.
  • Each side wall section 80 has a forwardly tapered recess 82 for receiving a respective antifretting detent 52 and terminating rearwardly in a shoulder 84.
  • each wall section 80 Opposite to each recess 82, the outer surface of each wall section 80 is formed with a ramp surface 86 ( Figures 1 and 6) and is of increased thickness between the surface 86 and an inclined internal surface 88 of the wall section 80.
  • the holder 60 is formed with internal keyways 92.
  • the sealing grommet 9 surrounds the forward part 62 of the body 58 of the housing 8 and is engaged between the rear wall 90 of the hood 60 and the grommet retaining ring 11.
  • the grommet retaining ring 11 ( Figure 1), which is annular and is of substantially rectangular cross section comprises first opposed side walls 94 each having therein slots 96 opening into a forward edge 97 of the wall 94.
  • the ring 11 has second opposed side walls 98 each having an inwardly inclined latching tongue 100, the free end of which latchingly engages a shoulder 102 ( Figure 7) provided by an external notch 104 in a respective side wall 106 of the forward part 62 of the housing body 58.
  • each side wall 94 of the ring 11 is formed with a rectilinear transverse slot 108 to enhance the resilience of the retainer 11 in the direction of its central axis C-C.
  • the body 58 of the housing 8 comprises a rectangular rear portion 110 defining the rear part 72 of each terminal receiving passage 64, and a rectangular rear frame 112 connected to the rear portion 110 by longitudinal struts 114 and surrounding the rear end of the portion 110.
  • a pair of latch arms 116 On each side of the rear portion 110 of the body 58 is a pair of latch arms 116, best seen in Figure 4, which are connected together by means of a resilient, U- shaped spring strap 118 comprising legs 120 connected at their forward ends by a bight 122.
  • the centre of the bight 122 of each strap 118 is connected to the respective strut 114 by way of a lateral stub 124 extending therefrom ( Figure 7).
  • each leg 120 is connected to the rear end of a respective latch arm 116.
  • the stub 124 provides a pivot point P ( Figure 4) about which the legs 120 are pivotable, the stub 124 being the sole connection between the strap 118 and the remainder of the housing 8.
  • the latch arms 116 are not connected to the housing 8 at all, excepting by way of the strap 118.
  • Each latch arm 116 comprises a rear handle 126 from which projects forwardly, a shank 128 into a rearwardly opening recess 130 in a side wall 132 of the hood 60.
  • Each latch arm 116 of each pair of those arms is, as a whole, coplanar with the hood side wall 132 and with the other latch arm of the pair, whereby the latch arms 116 do not project from the housing 8 but are substantially in line therewith.
  • each latch arm shank 128 has a latching head 134 protruding beneath the respective side wall 132 of the hood 60 ( Figures 7 to 9), and projecting inwardly towards the latching head 134 of the other latch arm of the pair.
  • Each latching head 134 has a forwardly inclined ramp surface 135 and a rearwardly facing latching shoulder 136.
  • the latch arms 126 have a normal closed, latching position as shown in Figure 4, in which the latching heads 134 of the latch arms 116 of each pair are proximate to each other.
  • the latch arms 116 can be pivoted to an open position in which the latching heads 134 are more widely spaced from each other, by pressing the handles 126 of the latch arms 126 of the pair towards each other.
  • the latch arms 116 resile to their normal position by virtue of the resilience of the straps 118. Overstress of the latch arms 116 when they are pivoted to their open position is prevented by shoulders 138 ( Figure 8) of the hood 60, bounding the hood side walls 132 to limit outward movement of the latching heads 134.
  • Each side wall 132 of the hood 60 has a rearwardly opening rectangular recess 140 ( Figure 4) to allow access for a core pin (not shown) for moulding the latching shoulders 136 and for providing the notch 104 in the respective side wall 106 in the forward part 62 of the housing 8; as will best be appreciated from Figure 7.
  • the pin connector 6 will now be described with reference to Figures 12 to 15.
  • the connector 6 comprises an insulating housing 142, shown in fragmentary form, which may contain sensors for connection to the leads L of Figure 1.
  • a substantially rectangular cross section hood 144 for mating reception in the socket 63 of the connector 4.
  • the hood 144 is defined by a first pair of opposed side walls 166 and a second pair of opposed side walls 168.
  • a pair of terminal pins 170 in the housing 142 have mating end portions 172 projecting into the hood 144 for mating with respective receptacle terminals 10 of the connector 4.
  • the terminal pins 170 are connected to the sensors, for example, by means not shown.
  • Each side wall 166 has a pair of spaced camming ribs 174 projecting into the hood 144 and terminating in camming faces 176, as best seen in Figure 15, for cooperation with respective ramp surfaces 86 of the housing 8 ( Figure 14).
  • the ribs 174 have flat free ends 177.
  • Each rib 174 on one wall 166 is opposite to and is aligned with a corresponding rib 174 on the opposite wall 166.
  • Each wall 168 has a central external latch member 178 having a rear latching shoulder 179 and a tapered camming nose 180 for cooperation with respective latching heads 134 of the housing 8.
  • the walls 166 have external keys 182 for reception in respective keyways 92 of the housing 8.
  • Each wall 166 and 168 has a chamfered free edge 184 for guiding it into the socket 63 of the connector 4.
  • the connector 6 is mated with the connector 4 by inserting the hood 144 of the connector 6 into the socket 63 of the connector 4 as shown in Figure 1, each key 182 slidably engaging in a respective keyway 92 of the housing 8.
  • the mating portion 172 of each pin 170 enters the mouth 70 of a respective terminal receiving passage 64 and is received between the contact surfaces 38 of the contact springs 36 of the terminal 10 in the passage 64.
  • the inner surfaces of the side walls 166 and 168 of the connector 6 engage the sealing grommet 9 in sealing tight relationship therewith.
  • each camming rib 174 of the connector 6 engages against the respective ramp surface 86 of the housing 8 thereby camming the underlying wall section 80 resiliently inwardly by virtue of the slots 78, against the respective side wall 40 of the respective spring member 14,and the detent 52 thereon, the detent 52 being received in the respective recess 82 and being resiliently depressed to some extent, by the bottom wall of the recess 82.
  • the free edge 56 of each wing 54 of the detent 52 engages the rear wall of the recess 82. An interference fit is thereby produced between the wall sections (80) and the outer spring member 14.
  • each latch member 178 engages between the latching heads 134 of a respective pair of the latch arms 166 thereby camming them apart against the action of the respective spring strap 118 until, as the connectors 4 and 6 reach their mated position, the arms 116 resile as the shoulders 179 of the latch members 178 pass the latching shoulders 136 of the heads 134 so that the shoulders 136 are carried inwardly to latch against the shoulders 179 thereby securing the connectors 4 and 6 in their mated relationship.
  • the shoulders 179 are drawn tightly against the shoulders 136 because the flat free ends 177 of the camming ribs 174 resiliently and axially compress the sealing grommet retaining ring 11 by virtue of the slots 108 therein, given that the grommet 9 having been compressed between the side walls 116 and 118 of the hood 114 will have little axial resilience.
  • the connector assembly 2 comprising the connectors 4 and 6, is intended for use in a vibratory and temperature cycling environment, for example in the engine compartment of an automotive vehicle. Fretting and consequent frictional corrosion of parts of the connector assembly 2, which are susceptible to a fretting action, must, therefore, be avoided. Fretting between the pins 170 and the contact surfaces 38 of the contact springs 36 is avoided, because the pin receptacle portion 16 of each inner spring member 12 can move both axially and laterally in its outer spring member 14. Fretting between the outer spring member 14 and the housing 8 is prevented by virtue of the interference fit between the wall sections 80 and the spring member 14. Also, relative movement between the connectors 4 and 6 is restrained because the grommet retaining ring 11 urges the latching shoulders 179 firmly against the latching shoulders 136.
  • the latch arms 116 are in line with the housing 4 and so do not project therefrom, the moulding of the housing 4 as a one piece item, is simplified, and the latch arms are not free to tangle with the leads L so as to be damaged, when the terminals 10 are being loaded into the housing 4 or during the assembly of the connectors 4 and 6.
  • the connectors 4 and 6 can be released from each other by pressing the handles 126 of each pair of latch arms towards each other.
  • the connector housing 8 may be produced with a single latching arm 116, a single pair of latching arms, or a plurality of pairs of latching arms. It is further envisioned that in any of the above described possibilities that it may be advantageous to interconnect at least some of the latching arms so that displacement of one arm produces a displacement in the corresponding interconnected arm.

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  • Connector Housings Or Holding Contact Members (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Claims (11)

  1. Verbindergehäuse (8) für ein Eingreifen mit einem Gegensteckverbinder (6), wobei das Gehäuse (8) aufweist: einen Körper (58); eine Kappe (60) für das Aufnehmen eines Eingriffsabschnittes (164) des Gegensteckverbinders (6); und mindestens einen Einklinkarm (116), der in einem Einklinkkopf (134) mit einem Einklinkvorsprung (136) für einen Eingriff mit einem entsprechenden Einklinkvorsprung (179) des Gegensteckverbinders (6) endet, wobei der Einklinkarm (116) zwischen einer normalen Position und einer Einklinkposition verschiebbar ist,
       dadurch gekennzeichnet, daß der Einklinkarm (116) an einem hinteren Abschnitt des Gehäuses (8) befestigt ist und sich in die Kappe (60) durch eine hintere Öffnung (130) darin erstreckt, wo der Einklinkarm (116) von außerhalb der Kappe (60) betätigt werden kann und der Einklinkkopf (134) durch die Kappe (60) geschützt wird.
  2. Gehäuse nach Anspruch 1, dadurch gekennzeichnet, daß mindestens ein Paar Einklinkarme (116) vorhanden ist, die miteinander mittels eines elastischen Bügels (118) verbunden sind, der mit dem Gehäusekörper (58) verbunden ist, um einen Drehpunkt (P) bereitzustellen, um den die Einklinkarme (116) zwischen der normalen und der Einklinkposition ablenkbar sind.
  3. Gehäuse nach Anspruch 2, dadurch gekennzeichnet, daß der elastische Bügel (118) im wesentlichen U-förmig ist, wobei er ein Paar Schenkel (120) aufweist, die mittels einer Krümmung (122) verbunden sind, wobei jeder Schenkel (120) an seinem von der Krümmung (122) abgelegenen Ende mit dem hinteren Endabschnitt eines entsprechenden Einklinkarmes (116) verbunden ist, und wobei die Mitte der Krümmung mit dem Gehäusekörper (58) verbunden ist, um den Drehpunkt (P) zu liefern.
  4. Gehäuse nach Anspruch 2 oder Anspruch 3, dadurch gekennzeichnet, daß jeder Einklinkarm (116) einen vergrößerten hinteren Griffabschnitt (126) entgegengesetzt dem und in unmittelbarer Nähe des entsprechenden Schenkels (120) des Bügels (118) aufweist, wobei sich ein Schaft (128) mit verringertem Querschnitt nach vorn von jedem Griffabschnitt (126) erstreckt und in einem entsprechenden Einklinkkopf (134) endet.
  5. Gehäuse nach Anspruch 4, dadurch gekennzeichnet, daß der Bügel (118) mit den Griffabschnitten (126) koplanar ist.
  6. Gehäuse nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß die hinteren Enden der Einklinkarme (116) durch einen Rahmen (112) bedeckt werden, der mit dem Gehäusekörper (58) verbunden ist.
  7. Gehäuse nach Anspruch 6, dadurch gekennzeichnet, daß der Rahmen (112) mit dem Gehäusekörper (58) durch gegenüberliegende, sich nach vorn erstreckende Streben (114) verbunden ist, wobei jede Strebe (114) mit dem Bügel (118) eines entsprechenden Paares von Einklinkarmen (116) am Drehpunkt (P) verbunden ist.
  8. Gehäuse nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß in der normalen Position der Einklinkarme (116) deren Einklinkköpfe (134) in unmittelbarer Nähe zueinander sind, wobei jeder Einklinkkopf (134) in einer geneigten Abschrägungsfläche (135) endet, wobei die Abschrägungsflächen (135) gegenüberliegend voneinander weg geneigt sind.
  9. Gehäuse nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß die Seitenwand (132) der Kappe (60) eine Aussparung (140) darin für die Aufnahme eines Lochstiftes für das Bilden der Einklinkköpfe (134) während des Formens des Gehäuses (8) aufweist.
  10. Gehäuse nach Anspruch 9, dadurch gekennzeichnet, daß ein vorderer Teil (62) des Gehäusekörpers (58), der den Durchgang (64) begrenzt, in die Kappe (60) hineinragt, wobei die Kappe (60) und der vordere Teil (62) einen nach vorn offenen Schlitz (63) begrenzen, wobei eine abdichtende Durchführungshülse (9), die den vorderen Teil (62) umgibt, darauf mittels eines Halteringes (11) für die Durchführungshülse gehalten wird, der wiederum am vorderen Teil (62) mittels eines Einklinkelementes (100) gehalten wird, das in eine Aussparung (104) im vorderen Teil (62) eingreift, wobei die Aussparung (140) in der Kappenseitenwand (132) mit der Aussparung (104) im vorderen Teil (62) ausgerichtet ist, um zu gestatten, daß die Aussparung (104) durch den Lochstift gebildet wird.
  11. Verfahren zur Herstellung eines einteiligen Verbindergehäuses (8) für einen Eingriff mit einem Gegensteckverbinder (6), wobei es die Schritte des Bildens des Verbindergehäuses (8) aufweist, das einen Körper (58), eine Kappe (60) für das Aufnehmen eines Eingriffsabschnittes (164) des Gegensteckverbinders (6) und mindestens einen Einklinkarm (116) aufweist, der mit dem Verbindergehäuse (8) ein Ganzes bildet und längs dessen angeordnet ist,
    wobei sich der Einklinkarm (116) in die Kappe (60) hinein erstreckt und in einem Einklinkkopf (134) innerhalb der Kappe (60) endet und zwischen einer normalen Position und einer Einklinkposition verschiebbar ist,
    wobei der Einklinkkopf (134) mit einem Einklinkvorsprung (136) für einen Eingriff mit einem entsprechenden Einklinkvorsprung (179) des Gegensteckverbinders (6) gebildet wird, und wobei eine Aussparung (140) in der Kappe (60) und der Einklinkvorsprung (136) auf dem Einklinkkopf (134) gleichzeitig durch einen Lochstift gebildet werden, der sich seitlich in das Gehäuse (8) erstreckt.
EP19940110035 1993-06-29 1994-06-28 Verbindergehäuse mit Verrieglungsarm Expired - Lifetime EP0633628B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP98123607A EP0911911A1 (de) 1993-06-29 1994-06-28 Verbindergehäuse mit verriegelungsarm

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB939313393A GB9313393D0 (en) 1993-06-29 1993-06-29 Electrical connector housing with in-line latch arms
GB9313393 1993-06-29

Related Child Applications (1)

Application Number Title Priority Date Filing Date
EP98123607A Division EP0911911A1 (de) 1993-06-29 1994-06-28 Verbindergehäuse mit verriegelungsarm

Publications (3)

Publication Number Publication Date
EP0633628A2 EP0633628A2 (de) 1995-01-11
EP0633628A3 EP0633628A3 (de) 1996-05-29
EP0633628B1 true EP0633628B1 (de) 1999-08-18

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ID=10737979

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Application Number Title Priority Date Filing Date
EP98123607A Ceased EP0911911A1 (de) 1993-06-29 1994-06-28 Verbindergehäuse mit verriegelungsarm
EP19940110035 Expired - Lifetime EP0633628B1 (de) 1993-06-29 1994-06-28 Verbindergehäuse mit Verrieglungsarm

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP98123607A Ceased EP0911911A1 (de) 1993-06-29 1994-06-28 Verbindergehäuse mit verriegelungsarm

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EP (2) EP0911911A1 (de)
DE (1) DE69420088T2 (de)
GB (1) GB9313393D0 (de)

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IT237169Y1 (it) * 1995-09-25 2000-08-31 Codognese Meccanotec Portafusibile modulare a prova di spruzzo
GB9902475D0 (en) * 1999-02-05 1999-03-24 Maclaw Limited Electrical connector
JP5741343B2 (ja) * 2011-09-20 2015-07-01 住友電装株式会社 コネクタ

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Publication number Priority date Publication date Assignee Title
FR1455850A (fr) * 1965-04-02 1966-05-20 Moulages Ind Plasto Raccord automatique pour canalisations souples
GB8418330D0 (en) * 1984-07-18 1984-08-22 Amp Great Britain Electrical socket terminal housings
GB2195501A (en) * 1986-09-25 1988-04-07 Electronic Components Ltd Electrical connector
EP0424887B1 (de) * 1989-10-24 1996-04-03 The Whitaker Corporation Elektrischer Steckverbinder mit verbesserten sekundären Festhaltemitteln
IT219176Z2 (it) * 1989-12-19 1992-12-17 Fiat Auto Spa Attrezzo per lo sgancio di un connettore elettrico
DE4205960C2 (de) * 1992-02-27 1993-12-02 Harting Elektronik Gmbh Elektrische Steckverbindung mit verriegelbaren Gehäusehälften

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Publication number Publication date
DE69420088D1 (de) 1999-09-23
DE69420088T2 (de) 2000-03-30
GB9313393D0 (en) 1993-08-11
EP0633628A3 (de) 1996-05-29
EP0633628A2 (de) 1995-01-11
EP0911911A1 (de) 1999-04-28

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