EP3084896A1 - Plug connector assembly - Google Patents
Plug connector assemblyInfo
- Publication number
- EP3084896A1 EP3084896A1 EP14818969.9A EP14818969A EP3084896A1 EP 3084896 A1 EP3084896 A1 EP 3084896A1 EP 14818969 A EP14818969 A EP 14818969A EP 3084896 A1 EP3084896 A1 EP 3084896A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- housing
- connector
- connector housing
- carrier insert
- contact carrier
- 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.)
- Granted
Links
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/629—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
- H01R13/62933—Comprising exclusively pivoting lever
- H01R13/62938—Pivoting lever comprising own camming means
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
- H01R13/502—Bases; Cases composed of different pieces
- H01R13/506—Bases; Cases composed of different pieces assembled by snap action of the parts
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
- H01R13/52—Dustproof, splashproof, drip-proof, waterproof, or flameproof cases
- H01R13/5219—Sealing means between coupling parts, e.g. interfacial seal
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/629—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
Definitions
- the invention relates to an electrical connector assembly consisting of a first connector housing, are arranged in the first plug contact elements, and a second connector housing in which second plug contact elements are arranged, wherein the second
- Contact support insert is, which are mutually displaceable by a force-enhancing agent, wherein the contact carrier insert
- first and the second connector housing each have at least one housing wall, which in interconnected
- Connector housings rests against at least one housing wall of the first and second connector housing.
- a joining force is applied, which consists of several parts
- Connector housing compress the seal and only then to actuate the clamping sleeves of the zero force connector in a second joining phase.
- the force is applied to the seal and the contact forces of the electrical contact elements successively and thus decoupled from each other.
- German patent DE10 2008 012 925 B4 such a connector is described in which a clamping sleeve mechanism via a force-enhancing slide is actuated.
- Connector housing can be latched, and that the surrounding housing is displaceable by a rotary or sliding operation of the force-enhancing means against the contact carrier insert.
- the compression of the seal takes place only after the complete assembly of the electrical plug-in contact elements, which advantageously need not form zero-force connectors here and therefore are particularly inexpensive to produce.
- the inventive design of a connector assembly is therefore advantageously used for connectors with a not too high number of electrical plug contact elements to be connected.
- the seal by a, based on the
- Plug-in direction of the connector housing axial compression radially expanded and pressed against walls of the connector housing, whereby a moisture-tight seal of the connector assembly is achieved.
- the force-enhancing means which may be preferably designed as a rotary lever.
- the force-enhancing means may also be considered perpendicular to the
- Plug-in direction linearly displaceable slider be designed with a guide slope, as it is known from DE 10 2008 012 925 B4. In this, not described here, execution is by the
- Slider actuation moves a coupled with the surrounding housing guide pin in the guide slope.
- Figure 2 is an exploded view of the connector assembly
- Figures 3 to 9 are respectively sectional views of the connector assembly in different assembly phases.
- 1 shows two interconnected connector housing 1, 2 of a connector assembly according to the invention, although the first connector housing 1 is largely hidden by the second connector housing 2 and only by individual elements such as a locking lug 13 and a locking hook 18 can be seen.
- the connector assembly consists of a first and a second connector housing 1, 2 and a seal 1 1, which is arranged after the connection of the connector housings 1, 2 between the connector housings 1, 2 and the penetration of
- Allocation is purely exemplary and can be reversed without further notice.
- the first connector housing 1 has a circumferentially closed lateral surface 25, on the outside of a locking lug 13 is formed.
- An end face of the first connector housing 1 has an insertion opening 24.
- the circumferential housing edge 21 of the front side is after the connection of the connector housing 1, 2, the annular seal 1 1 at.
- the second connector housing 2 is made of three housing parts
- a contact carrier insert 6 composed and consists of a contact carrier insert 6, a Enclosure 5 and a rotary lever 7. On the contact support insert 6 receiving openings 8 can be seen, in which - not shown - socket contacts are inserted.
- a latching lever 12 is integrally formed on the contact carrier insert 6, which after connecting the connector housing 1, 2 with the locking lug 13 on the first connector housing 1 a
- the surrounding housing 5 is pushed over the contact carrier insert 6, after which the bearing pins 16 of the contact carrier insert 6 protrude from a recess 22 of the surrounding housing 5.
- the bearing pins 16 of the bow-shaped rotary lever 7 is then pivotally connected.
- guideways 17 are formed, are used in the integrally formed on the housing 5 guide pins 15.
- Insertion opening 24 of the first connector housing 1 is inserted.
- An instantaneous state of this assembly phase is shown in FIG. In the sectional view can be seen that the contact carrier insert 6 is inserted into the first connector housing 1, but not yet
- Connector housing 1, 2 finally reaches the lower end face of the contact carrier insert 6, the bottom surface 27 of the first
- FIG. 3 shows the same mounting state as FIG. 6 in a further sectional view.
- the plug-in contact elements 3 belonging to the first connector housing 1 are shown in FIG. 3 as contact pins, while the plug-in contact elements 4 belonging to the second connector housing 2
- Form socket contacts which are each connected to a connecting line 19. To the connecting lines 19 around is in the
- Receiving openings 8 each arranged a sealing rubber 20, which is the penetration of moisture into the connector assembly on the
- Contact carrier insert 6 prevents. During the insertion of the contact carrier insert 6 in the first
- Connector housing 1 causes the seal 1 1 no contribution to the applied joining force, as shown in Figures 5, 6 and particularly clearly in Figure 3, the seal 1 1 in this joining phase not by the
- Connector housing 1, 2 is compressed. Although the seal 1 1 is located both on surface portions of the outer housing 5 and the
- At least one outer housing wall 10 of the contact carrier insert 6 is pressed.
- Rotary lever 7 is implemented by the force-enhancing effect in a relatively large contact pressure on the seal 1 1 to a good
- this process is also decoupled from the operations of assembling the connector housing 1, 2 and the generation of the plug contact forces.
- a collar 29 belonging to the surrounding housing 5 has on its inside an integrally formed projection 30 which, in the end position of the surrounding housing 5 shown in FIG
- the locking hook 18 is first to be released from the actuating portion 14 of the rotary lever 7. Only after a displacement of the surrounding housing 5 by pivoting back of the rotary lever 7, the projection 30 releases the between the locking lever 12 and the locking lug 13 existing latching connection, which then by pressure on the handle portion the locking lever 12 can be solved.
Landscapes
- Connector Housings Or Holding Contact Members (AREA)
- Details Of Connecting Devices For Male And Female Coupling (AREA)
Abstract
Description
Steckverbinderanordnung The connector assembly
Die Erfindung betrifft eine elektrische Steckverbinderanordnung, bestehend aus einem ersten Steckverbindergehäuse, in dem erste Steckkontaktelemente angeordnet sind, und einem zweiten Steckverbindergehäuse, in dem zweite Steckkontaktelemente angeordnet sind, wobei das zweite The invention relates to an electrical connector assembly consisting of a first connector housing, are arranged in the first plug contact elements, and a second connector housing in which second plug contact elements are arranged, wherein the second
Steckverbindergehäuse aus einem Umgehäuse und einem Connector housing of a surrounding housing and a
Kontaktträgereinsatz besteht, die durch ein kraftverstärkendes Mittel gegeneinander verschiebbar sind, wobei der Kontaktträgereinsatz Contact support insert is, which are mutually displaceable by a force-enhancing agent, wherein the contact carrier insert
Ausnehmungen zur Aufnahme der zweiten Steckkontaktelemente aufweist, wobei das erste und das zweite Steckverbindergehäuse jeweils mindestens eine Gehäusewand besitzen, welche bei miteinander verbundenen Having recesses for receiving the second plug contact elements, wherein the first and the second connector housing each have at least one housing wall, which in interconnected
Steckverbindergehäusen, zueinander parallele Abschnitte aufweisen zwischen denen eine Dichtung angeordnet ist, die bei miteinander verbundenen Connector housings, mutually parallel portions between which a seal is arranged, which in interconnected
Steckverbindergehäusen an jeweils mindestens einer Gehäusewand des ersten und des zweiten Steckverbindergehäuses anliegt. Connector housings rests against at least one housing wall of the first and second connector housing.
Eine derartige Steckverbinderanordnung ist aus der deutschen Patentschrift DE 10 2008 012 925 B4 bekannt. Such a connector assembly is known from German patent DE 10 2008 012 925 B4.
Zum Verbinden der Steckverbindergehäuse eines derartigen Steckverbinders ist eine Fügekraft aufzubringen, die sich aus mehreren Anteilen For connecting the connector housing of such a connector, a joining force is applied, which consists of several parts
zusammensetzt. Aufzubringen sind erstens Kontaktkräfte zwischen den ersten und zweiten elektrischen Steckkontaktelementen, wobei zur Herstellung einer sicheren elektrischen Verbindung zumindest die Steckkontaktelemente in einem der Steckverbindergehäuse federnd ausgeführt sind, sowie zweitens die Anpresskraft von Gehäuseteilen auf die Dichtung, welche zur Erzielung einer guten Abdichtwirkung komprimiert werden muss. Darüber hinaus auftretende mechanische Reibungskräfte zwischen den Steckverbindergehäusen können durch eine toleranzarme Ausbildung der Gehäuseteile gering gehalten werden und sollen daher im Folgenden nicht weiter betrachtet werden. composed. First apply contact forces between the first and second electrical plug contact elements, wherein at least the plug contact elements in one of the connector housing are made resilient to produce a secure electrical connection, and secondly the contact pressure of housing parts on the seal, which must be compressed to achieve a good sealing effect. In addition, occurring mechanical frictional forces between the connector housings can be kept low by a low-tolerance design of the housing parts and are therefore not further considered below.
Da bei Steckverbinderanordnungen die Summe der Kontaktkräfte mit der Anzahl der zu verbindenden Steckkontaktelemente ansteigt, werden besonders bei vielpoligen Steckverbindern mechanische Hilfsmittel zur Kraftverstärkung vorgesehen. So zeigt beispielsweise die DE 101 28 183 B4 zur Verbindung von vielpoligen Steckverbinderteilen eine Hebelmechanik. Da das Verbinden der Steckkontaktelemente zugleich mit dem Komprimieren der Dichtung erfolgt, sind die während des Fügevorgangs aufzubringende Kräfte recht groß, so dass für eine komfortable Handhabung eine möglichst große Hebelarmlänge erforderlich ist, was aber zur einer relativ großbauenden und sperrigen Hebelmechanik führt. Alternativ wurden sogenannte Nullkraftsteckverbinder entwickelt, wie sie etwa in der deutschen Offenlegungsschrift DE 10 2005 040 952 A1 beschrieben sind. An diesen werden die elektrischen Kontaktkräfte erst im letzten Teil des Fügewegs durch Verschieben von Spannhülsen an Buchsenkontakten erzeugt, so dass über den größten Teil des Fügewegs keine Kontaktkräfte aufzubringen sind. Eine radiale Kompression der Dichtung erfolgt durch das Zusammenfügen der Steckverbindergehäuse und überschneidet sich mit der Phase des Verschiebens der Spannhülsen, so dass diese letzte Fügephase eine erhebliche Betätigungskraft erfordert, die besonders bei vielpoligen Steckverbindern schwierig aufzubringen ist. Since in connector arrangements, the sum of the contact forces increases with the number of plug-in contact elements to be connected, mechanical aids for power amplification are provided especially in multi-pin connectors. For example, DE 101 28 183 B4 shows a lever mechanism for connecting multipolar connector parts. Since the connection of the plug contact elements takes place at the same time as compressing the seal, the forces to be applied during the joining operation are quite large, so that the largest possible lever arm length is required for comfortable handling, but this leads to a relatively bulky and bulky lever mechanism. Alternatively, so-called zero-force connectors have been developed, as described, for example, in German Offenlegungsschrift DE 10 2005 040 952 A1. At these the electrical contact forces are generated only in the last part of the joining path by moving clamping sleeves to female contacts, so that over the largest part of the joining path no contact forces are applied. A radial compression of the seal is made by the assembly of the connector housing and overlaps with the phase of displacement of the clamping sleeves, so that this last joining phase requires a considerable operating force, which is difficult to apply, especially in multi-pin connectors.
Eine weitere Möglichkeit besteht darin, in einer ersten Fügephase der Another possibility is, in an initial joining phase of
Steckverbindergehäuse die Dichtung zusammenzudrücken und erst danach in einer zweiten Fügephase die Spannhülsen der Nullkraftsteckverbinder zu betätigen. Hierdurch werden die Kraft auf die Dichtung und die Kontaktkräfte der elektrischen Kontaktelemente nacheinander aufgebracht und damit voneinander entkoppelt. In der bereits erwähnten deutschen Patentschrift DE10 2008 012 925 B4 ist ein solcher Steckverbinder beschrieben, bei dem eine Spannhülsenmechanik über einen kraftverstärkenden Schieber betätigbar ist. Connector housing compress the seal and only then to actuate the clamping sleeves of the zero force connector in a second joining phase. As a result, the force is applied to the seal and the contact forces of the electrical contact elements successively and thus decoupled from each other. In the already mentioned German patent DE10 2008 012 925 B4 such a connector is described in which a clamping sleeve mechanism via a force-enhancing slide is actuated.
Bei den Steckverbinderanordnungen sowohl der DE 10 2005 040 952 A1 als auch der DE10 2008 012 925 B4 ist die Verwendung von sogenannten In the connector assemblies of both DE 10 2005 040 952 A1 and DE10 2008 012 925 B4, the use of so-called
Nullkraftsteckverbindern erforderlich und vorgesehen. Nullkraftsteckverbinder sind jedoch aufgrund ihrer relativ komplex aufgebauten Spannhülsenmechanik recht kostenaufwendig. Es stellte sich die Aufgabe, eine besonders einfache und kostengünstige Steckverbinderanordnung zu schaffen, bei der die Erzeugung von Dichtungsund Kontaktkräften entkoppelt ist. Zero force connectors required and provided. Nullkraftsteckverbinder are quite expensive due to their relatively complex design clamping sleeve mechanism. The object was to provide a particularly simple and inexpensive connector assembly in which the generation of sealing and contact forces is decoupled.
Diese Aufgabe wird erfindungsgemäß dadurch gelöst, dass die zweiten Steckkontaktelemente gegen den Kontaktträgereinsatz unbeweglich This object is achieved in that the second plug contact elements immovable against the contact carrier insert
angeordnet sind, dass der Kontaktträgereinsatz mit dem ersten are arranged, that the contact carrier insert with the first
Steckverbindergehäuse verrastbar ist, und dass das Umgehäuse durch eine Dreh- oder Schiebebetätigung des kraftverstärkenden Mittels gegen den Kontaktträgereinsatz verschiebbar ist. Connector housing can be latched, and that the surrounding housing is displaceable by a rotary or sliding operation of the force-enhancing means against the contact carrier insert.
Das Komprimieren der Dichtung erfolgt dabei erst nach dem vollständigen Zusammenfügen der elektrischen Steckkontaktelemente, die vorteilhafterweise hier keine Nullkraftsteckverbinder auszubilden brauchen und daher besonders kostengünstig herstellbar sind. Die erfindungsgemäße Ausführung einer Steckverbinderanordnung ist daher für Steckverbinder mit einer nicht allzu hohen Anzahl von zu verbindenden elektrischen Steckkontaktelementen vorteilhaft einsetzbar. The compression of the seal takes place only after the complete assembly of the electrical plug-in contact elements, which advantageously need not form zero-force connectors here and therefore are particularly inexpensive to produce. The inventive design of a connector assembly is therefore advantageously used for connectors with a not too high number of electrical plug contact elements to be connected.
Im Unterschied zu der aus der deutschen Patentschrift In contrast to that from the German patent
DE 10 2008 012 925 B4 bekannten Steckverbinderanordnung ist hier nach dem Zusammenfügen der Steckverbindergehäuse der Kontaktträgereinsatz feststehend mit dem ersten Steckverbindergehäuse verbunden und das Umgehäuse gegen die übrige Anordnung beweglich. Das Umgehäuse kann so durch eine Verlagerung des kraftverstärkenden Mittels in Richtung auf das erste Steckverbindergehäuse verschoben werden, wodurch die zwischen dem Umgehäuse und dem ersten Steckverbindergehäuse angeordnete Dichtung zusammengedrückt wird. DE 10 2008 012 925 B4 known connector assembly is here after assembly of the connector housing the contact carrier insert fixedly connected to the first connector housing and the surrounding housing movable against the rest of the arrangement. The surrounding housing can thus be displaced by a displacement of the force-amplifying means in the direction of the first connector housing, whereby the seal arranged between the surrounding housing and the first connector housing is compressed.
Hierbei wird vorzugsweise die Dichtung durch eine, bezogen auf der Here, preferably, the seal by a, based on the
Steckrichtung der Steckverbindergehäuse, axiale Kompression radial aufgeweitet und gegen Wände der Steckverbindergehäuse gepresst, wodurch eine feuchtigkeitsdichte Abdichtung der Steckverbinderanordnung erreicht wird. Plug-in direction of the connector housing, axial compression radially expanded and pressed against walls of the connector housing, whereby a moisture-tight seal of the connector assembly is achieved.
Besonders vorteilhaft ist, dass durch das kraftverstärkende Mittel, welches bevorzugt als Drehhebel ausgebildet sein kann, eine erhebliche Kompression der Dichtung mit einem relativ geringen Kraftaufwand erreicht werden kann.It is particularly advantageous that a considerable compression of the seal can be achieved with relatively little effort by the force-enhancing means, which may be preferably designed as a rotary lever.
Alternativ dazu kann das kraftverstärkende Mittel auch als ein senkrecht zurAlternatively, the force-enhancing means may also be considered perpendicular to the
Steckrichtung linear verschiebbarer Schieber mit einer Führungsschräge ausgeführt sein, wie er aus der DE 10 2008 012 925 B4 bekannt ist. Bei dieser, hier nicht näher beschriebenen, Ausführung wird durch die Plug-in direction linearly displaceable slider be designed with a guide slope, as it is known from DE 10 2008 012 925 B4. In this, not described here, execution is by the
Schieberbetätigung ein mit dem Umgehäuse gekoppelter Führungszapfen in der Führungsschräge bewegt. Slider actuation moves a coupled with the surrounding housing guide pin in the guide slope.
Im Folgenden wird ein Ausführungsbeispiel der erfindungsgemäßen In the following, an embodiment of the invention
Steckverbinderanordnung anhand der Zeichnung dargestellt und näher erläutert. Es zeigen Connector assembly illustrated by the drawing and explained in more detail. Show it
Figur 1 eine fertig montierte Steckverbinderanordnung, 1 shows a fully assembled connector assembly,
Figur 2 eine Explosionsansicht der Steckverbinderanordnung, Figuren 3 bis 9 jeweils Schnittansichten der Steckverbinderanordnung in verschiedenen Montagephasen. Die Figur 1 zeigt zwei miteinander verbundene Steckverbindergehäuse 1 , 2 einer erfindungsgemäß ausgeführten Steckverbinderanordnung, wobei allerdings das erste Steckverbindergehäuse 1 weitgehend durch das zweite Steckverbindergehäuse 2 verdeckt ist und nur durch einzelne Elemente wie eine Rastnase 13 und einen Arretierhaken 18 erkennbar ist. Figure 2 is an exploded view of the connector assembly, Figures 3 to 9 are respectively sectional views of the connector assembly in different assembly phases. 1 shows two interconnected connector housing 1, 2 of a connector assembly according to the invention, although the first connector housing 1 is largely hidden by the second connector housing 2 and only by individual elements such as a locking lug 13 and a locking hook 18 can be seen.
Details dieser Steckverbinderanordnung werden durch die Explosionsansicht der Figur 2 verdeutlicht. Die Steckverbinderanordnung besteht aus einem ersten und einem zweiten Steckverbindergehäuse 1 , 2 und einer Dichtung 1 1 , die nach dem Verbinden der Steckverbindergehäusen 1 , 2 zwischen den Steckverbindergehäusen 1 , 2 angeordnet ist und das Eindringen von Details of this connector assembly are illustrated by the exploded view of Figure 2. The connector assembly consists of a first and a second connector housing 1, 2 and a seal 1 1, which is arranged after the connection of the connector housings 1, 2 between the connector housings 1, 2 and the penetration of
Feuchtigkeit in die Steckverbinderanordnung verhindert. In den Figuren 1 und 2 nicht dargestellt sind elektrische Steckkontaktelemente 3, 4, die aber in den Schnittansichten der Figuren 3 und 4 sowie teilweise in der Figur 5 erkennbar sind. Im hier dargestellten Ausführungsbeispiel weist das erste Steckverbindergehäuse 1 elektrische Kontaktstifte 3 und das zweite Steckverbindergehäuse 2 elektrische Buchsenkontakte 4 auf. Diese Moisture in the connector assembly prevents. In the figures 1 and 2 are not shown electrical plug contact elements 3, 4, but in the sectional views of Figures 3 and 4 and partially in the figure 5 can be seen. In the exemplary embodiment illustrated here, the first connector housing 1 has electrical contact pins 3 and the second connector housing 2 has electrical socket contacts 4. These
Zuordnung ist aber rein beispielhaft und kann auch ohne Weiteres umgekehrt werden. Allocation is purely exemplary and can be reversed without further notice.
Wie die Figur 2 weiter zeigt, besitzt das erste Steckverbindergehäuse 1 eine umlaufend geschlossene Mantelfläche 25, an deren Außenseite eine Rastnase 13 angeformt ist. Eine Stirnseite des ersten Steckverbindergehäuses 1 weist eine Einschuböffnung 24 auf. An der umlaufenden Gehäusekante 21 der Stirnseite liegt nach erfolgtem Verbinden der Steckverbindergehäuse 1 , 2 die ringförmige Dichtung 1 1 an. Das zweite Steckverbindergehäuse 2 ist aus drei Gehäuseteilen As FIG 2 further shows, the first connector housing 1 has a circumferentially closed lateral surface 25, on the outside of a locking lug 13 is formed. An end face of the first connector housing 1 has an insertion opening 24. At the circumferential housing edge 21 of the front side is after the connection of the connector housing 1, 2, the annular seal 1 1 at. The second connector housing 2 is made of three housing parts
zusammengesetzt und besteht aus einem Kontaktträgereinsatz 6, einem Umgehäuse 5 und einem Drehhebel 7. An dem Kontaktträgereinsatz 6 sind Aufnahmeöffnungen 8 erkennbar, in die - hier nicht dargestellte - Buchsenkontakte einfügbar sind. Zudem ist am Kontaktträgereinsatz 6 ein Rasthebel 12 angeformt, der nach dem Verbinden der Steckverbindergehäuse 1 , 2 mit der Rastnase 13 am ersten Steckverbindergehäuse 1 eine composed and consists of a contact carrier insert 6, a Enclosure 5 and a rotary lever 7. On the contact support insert 6 receiving openings 8 can be seen, in which - not shown - socket contacts are inserted. In addition, a latching lever 12 is integrally formed on the contact carrier insert 6, which after connecting the connector housing 1, 2 with the locking lug 13 on the first connector housing 1 a
Rastverbindung herstellt. Des Weiteren sind an den Kontaktträgereinsatz 6 zwei zueinander fluchtend ausgerichtete Lagerstifte 16 angeformt. Locking connection produces. Furthermore, two mutually aligned bearing pins 16 are integrally formed on the contact carrier insert 6.
Zur Vormontage des zweiten Steckverbindergehäuses 2 wird das Umgehäuse 5 über den Kontaktträgereinsatz 6 geschoben, wonach die Lagerstifte 16 des Kontaktträgereinsatzes 6 aus einer Ausnehmung 22 des Umgehäuses 5 herausragen. Mit den Lagerstiften 16 wird danach der bügeiförmige Drehhebel 7 verschwenkbar verbunden. In zueinander parallele Seitenflächen des Drehhebels 7 sind Führungsbahnen 17 eingeformt, in die am Umgehäuse 5 angeformte Führungsstifte 15 eingesetzt werden. Bei einem Verschwenken des Drehhebels 7 um die Lagerstifte 16 bewegen sich die Führungsstifte 15 entlang der Führungsbahnen 17, wodurch sich der Kontaktträgereinsatz 6 und das Umgehäuse 5 relativ zueinander verschieben. Über den Gehäusekörper des Kontaktträgereinsatzes 6 wird die ringförmige Dichtung 1 1 geschoben, die danach an einem taillierten Abschnitt 26 des Kontaktträgereinsatzes 6 anliegt, wobei die Dichtung 1 1 an einer Kante 28 im Übergangsbereich zum Abschnitt 26 abgestützt wird. Zum Verbinden des ersten Steckverbindergehäuse 1 mit dem zweiten For pre-assembly of the second connector housing 2, the surrounding housing 5 is pushed over the contact carrier insert 6, after which the bearing pins 16 of the contact carrier insert 6 protrude from a recess 22 of the surrounding housing 5. With the bearing pins 16 of the bow-shaped rotary lever 7 is then pivotally connected. In mutually parallel side surfaces of the rotary lever 7 guideways 17 are formed, are used in the integrally formed on the housing 5 guide pins 15. Upon pivoting of the rotary lever 7 about the bearing pins 16, the guide pins 15 move along the guideways 17, whereby the contact carrier insert 6 and the surrounding housing 5 move relative to each other. Over the housing body of the contact carrier insert 6, the annular seal 1 1 is pushed, which then bears against a waisted portion 26 of the contact carrier insert 6, wherein the seal 1 1 is supported on an edge 28 in the transition region to the section 26. For connecting the first connector housing 1 with the second
Steckverbindergehäuse 2 wird der Kontaktträgereinsatz 6 in die Connector housing 2, the contact carrier insert 6 in the
Einschuböffnung 24 des ersten Steckverbindergehäuses 1 eingesetzt. Ein momentaner Zustand dieser Montagephase ist in der Figur 5 dargestellt. In der Schnittansicht ist erkennbar, dass der Kontaktträgereinsatz 6 in das erste Steckverbindergehäuse 1 eingeschoben ist, aber noch nicht dessen Insertion opening 24 of the first connector housing 1 is inserted. An instantaneous state of this assembly phase is shown in FIG. In the sectional view can be seen that the contact carrier insert 6 is inserted into the first connector housing 1, but not yet
Bodenfläche 27 erreicht hat, so dass noch ein Teilstück eines zum ersten Steckverbindergehäuse 1 gehörenden Steckkontaktelements 3 erkennbar ist. Das Umgehäuse 5 übergreift mit seiner Innenfläche einen Teil der Floor area 27 has reached, leaving still a portion of one to the first Connector housing 1 belonging plug contact element 3 can be seen. The surrounding housing 5 engages over part of its inner surface
Mantelfläche 25 des ersten Steckverbindergehäuses 1 . An der Innenseite des Umgehäuses 5 ist die Dichtung 1 1 erkennbar. Lateral surface 25 of the first connector housing. 1 On the inside of the outer housing 5, the seal 1 1 can be seen.
Beim weiteren Zusammenfügen des ersten und des zweiten Upon further assembly of the first and second
Steckverbindergehäuses 1 , 2 erreicht schließlich die untere Stirnfläche des Kontaktträgereinsatzes 6 die Bodenfläche 27 des ersten Connector housing 1, 2 finally reaches the lower end face of the contact carrier insert 6, the bottom surface 27 of the first
Steckverbindergehäuses 1 , wodurch der in der Figur 6 dargestellte Connector housing 1, whereby the illustrated in the figure 6
Montagezustand hergestellt ist. Dabei verrastet der mit dem Mounting state is made. It locks with the
Kontaktträgereinsatz 6 verbundene federnde Rasthebel 12 an der Rastnase 13 des ersten Steckverbindergehäuses 1 , wodurch der Kontaktträgereinsatz 6 nun am ersten Steckverbindergehäuse 1 fixiert ist. Während dieser Fügephase sind, außer einer geringen Kraft zum Contact carrier insert 6 connected resilient latching lever 12 on the locking lug 13 of the first connector housing 1, whereby the contact carrier insert 6 is now fixed to the first connector housing 1. During this joining phase, except for a small force to
Verschwenken des federnden Rasthebels 12, lediglich die Kontaktkräfte der ersten und zweiten Steckkontaktelemente 3,4 aufzubringen. Die Swiveling the resilient locking lever 12, only apply the contact forces of the first and second plug contact elements 3.4. The
Steckkontaktelemente 3, 4 sind andeutungsweise in den Figuren 3 und 4 erkennbar. Die Figur 3 stellt hierbei in einer weiteren Schnittansicht den gleichen Montagezustand wie die Figur 6 dar. Plug contact elements 3, 4 are hinted in Figures 3 and 4 can be seen. FIG. 3 shows the same mounting state as FIG. 6 in a further sectional view.
Die zum ersten Steckverbindergehäuse 1 gehörenden Steckkontaktelemente 3 sind in der Figur 3 als Kontaktstifte dargestellt, während die zum zweiten Steckverbindergehäuse 2 gehörenden Steckkontaktelemente 4 The plug-in contact elements 3 belonging to the first connector housing 1 are shown in FIG. 3 as contact pins, while the plug-in contact elements 4 belonging to the second connector housing 2
Buchsenkontakte ausbilden, welche jeweils mit einer Anschlussleitung 19 verbunden sind. Um die Anschlussleitungen 19 herum ist in den Form socket contacts, which are each connected to a connecting line 19. To the connecting lines 19 around is in the
Aufnahmeöffnungen 8 jeweils ein Dichtgummi 20 angeordnet, welches das Eindringen von Feuchtigkeit in die Steckverbinderanordnung über den Receiving openings 8 each arranged a sealing rubber 20, which is the penetration of moisture into the connector assembly on the
Kontaktträgereinsatzes 6 verhindert. Während des Einschiebens des Kontaktträgereinsatzes 6 in das erste Contact carrier insert 6 prevents. During the insertion of the contact carrier insert 6 in the first
Steckverbindergehäuse 1 bewirkt die Dichtung 1 1 keinen Beitrag zu der aufzubringenden Fügekraft, da wie die Figuren 5, 6 und besonders deutlich die Figur 3 zeigen, die Dichtung 1 1 in dieser Fügephase nicht durch die Connector housing 1 causes the seal 1 1 no contribution to the applied joining force, as shown in Figures 5, 6 and particularly clearly in Figure 3, the seal 1 1 in this joining phase not by the
Steckverbindergehäuse 1 , 2 komprimiert wird. Die Dichtung 1 1 liegt zwar sowohl an Flächenabschnitten des Umgehäuses 5 als auch des Connector housing 1, 2 is compressed. Although the seal 1 1 is located both on surface portions of the outer housing 5 and the
Kontaktträgereinsatzes 6 an; da in dieser Fügephase aber zwischen diesen Teilen keine Relativbewegung stattfindet, ergibt sich an der Dichtung 1 1 auch keine Reibung, die einen Beitrag zur aufzubringenden Fügekraft liefern könnte. Contact carrier insert 6 on; However, since there is no relative movement between these parts in this joining phase, there is no friction on the seal 11, which could provide a contribution to the joining force to be applied.
Das Belasten der Dichtung 1 1 mit einer Kraft erfolgt erst nach Abschluss des Zusammensteckens der beiden Steckverbindergehäuse 1 , 2 und der damit verbundenen Steckkontaktelemente. Dieses geschieht durch das Umlegen des Drehhebels 7, dessen Ablauf in den Figuren 7 bis 9 an verschiedenen The loading of the seal 1 1 with a force takes place only after completion of the mating of the two connector housing 1, 2 and the associated plug-in contact elements. This is done by the folding of the rotary lever 7, whose sequence in the figures 7 to 9 at various
Zeitpunkten dargestellt ist. Times is shown.
Durch die Bewegung der am Umgehäuse 5 angeformten Führungsstifte 15 in den Führungsbahnen 17 des Drehhebels 7 wird das Umgehäuse 5 gegen den Kontaktträgereinsatz 6 verschoben. Wegen der durch den Rasthebel 12 und die Rastnase 13 erfolgten Fixierung des Kontaktträgereinsatzes 6 am ersten Steckverbindergehäuse 1 verschiebt dabei sich das Umgehäuse 5 gegen das erste Steckverbindergehäuse 1 , wodurch die Dichtung 1 1 axial, das heißt in der Verbindungsrichtung der Steckverbindergehäuse 1 , 2, komprimiert wird. Die axiale Kompression bewirkt zugleich ein radiales Ausweichen der Dichtung 1 1 , wodurch die Dichtung 1 1 fest gegen innere Gehäusewände 9, 10 der beiden Steckverbindergehäuse 1 , 2 gepresst wird. By the movement of the integrally formed on the housing 5 guide pins 15 in the guideways 17 of the rotary lever 7, the surrounding housing 5 is moved against the contact carrier insert 6. Because of the locking lever 12 and the locking lug 13 done fixing the contact support insert 6 on the first connector housing 1 moves the surrounding housing 5 against the first connector housing 1, whereby the seal 1 1 axially, that is in the connecting direction of the connector housing 1, 2, compressed becomes. The axial compression also causes a radial deflection of the seal 1 1, whereby the seal 1 1 is pressed firmly against inner housing walls 9, 10 of the two connector housing 1, 2.
Besonders deutlich in dies in der Figur 4 ersichtlich. Im Vergleich zu seiner Position in der Figur 3 ist das Umgehäuse 5 hier nach unten gegen das erste Steckverbindergehäuse 1 verschoben, wodurch die Dichtung 1 1 auf der Gehäusekante 21 des ersten Steckverbindergehäuses 1 aufliegt und an wenigstens eine innere Gehäusewand 9 des Umgehauses 5 und an This can be seen particularly clearly in FIG. 4. Compared to its position in FIG. 3, the surrounding housing 5 is displaced downwards against the first connector housing 1, whereby the seal 1 1 rests on the housing edge 21 of the first connector housing 1 and on at least one inner housing wall 9 of the Umgehauses 5 and at
wenigstens eine äußere Gehäusewand 10 des Kontaktträgereinsatzes 6 angepresst ist. Eine komfortabel aufzubringende Betätigungskraft zur Bewegung des at least one outer housing wall 10 of the contact carrier insert 6 is pressed. A comfortable applied actuation force to move the
Drehhebels 7 wird durch dessen kraftverstärkende Wirkung in eine relativ große Anpresskraft auf die Dichtung 1 1 umgesetzt, um eine gute Rotary lever 7 is implemented by the force-enhancing effect in a relatively large contact pressure on the seal 1 1 to a good
Abdichtwirkung zu erreichen. Vorteilhafterweise ist dieser Ablauf zudem von den Vorgängen des Zusammenfügens der Steckverbindergehäuse 1 , 2 und der Erzeugung der Steckkontaktkräfte entkoppelt. To achieve sealing effect. Advantageously, this process is also decoupled from the operations of assembling the connector housing 1, 2 and the generation of the plug contact forces.
Nach dem Umlegen des Drehhebels 7 verrastet dessen Betätigungsabschnitt 14 formschlüssig am Arretierhaken 18, wodurch die Krafteinwirkung der Steckverbindergehäuse 1 , 2 auf die Dichtung 1 1 auch über die After moving the rotary lever 7 whose operating portion 14 locked in a form-fitting manner on the locking hook 18, whereby the force of the connector housing 1, 2 on the seal 1 1 also on the
Drehhebelbewegung hinaus erhalten bleibt. Rotary lever movement is retained.
Wie die Figuren 7 bis 9 weiter zeigen, weist ein zum Umgehäuse 5 gehörender Kragen 29 an seiner Innenseite einen angeformten Vorsprung 30 auf, der in der in der Figur 9 dargestellten Endposition des Umgehäuses 5 die As FIGS. 7 to 9 further show, a collar 29 belonging to the surrounding housing 5 has on its inside an integrally formed projection 30 which, in the end position of the surrounding housing 5 shown in FIG
Rastverbindung zwischen dem Rasthebel 12 und der Rastnase 13 Locking connection between the locking lever 12 and the locking lug 13th
(umrandeter Bereich A) gegen ein unbeabsichtigtes Trennen sichert. Zugleich blockiert der am Arretierhaken 18 eingerastete Betätigungsabschnitt 14 des Drehhebels 7 einen Griffabschnitt 31 des Rasthebels 12 (umrandeter Bereich B). Durch diese doppelte Verriegelung des Rasthebels 12 wird ein (bordered area A) against accidental disconnection secures. At the same time blocked on the locking hook 18 operating portion 14 of the rotary lever 7 blocks a handle portion 31 of the locking lever 12 (bordered area B). By this double locking of the locking lever 12 is a
versehentliches Lösen der Steckverbindung sicher unterbunden. accidentally releasing the plug connection safely prevented.
Zum Trennen der Steckverbindergehäuse 1 , 2 ist zunächst der Arretierhaken 18 vom Betätigungsabschnitt 14 des Drehhebels 7 zu lösen. Erst nach einer Verschiebung des Umgehäuses 5 durch Zurückschwenken des Drehhebels 7 gibt der Vorsprung 30 die zwischen dem Rasthebel 12 und der Rastnase 13 bestehende Rastverbindung frei, die dann durch Druck auf den Griffabschnitt des Rasthebels 12 gelöst werden kann. To disconnect the connector housing 1, 2, the locking hook 18 is first to be released from the actuating portion 14 of the rotary lever 7. Only after a displacement of the surrounding housing 5 by pivoting back of the rotary lever 7, the projection 30 releases the between the locking lever 12 and the locking lug 13 existing latching connection, which then by pressure on the handle portion the locking lever 12 can be solved.
Bezugszeichenliste LIST OF REFERENCE NUMBERS
1 erstes Steckverbindergehäuse1 first connector housing
2 zweites Steckverbindergehäuse2 second connector housing
3 erste Steckkontaktelemente 3 first plug contact elements
4 zweite Steckkontaktelemente 4 second plug contact elements
5 Umgehäuse 5 surrounding housing
6 Kontaktträgereinsatz 6 contact carrier insert
7 Drehhebel (kraftverstärkendes Mittel) 7 rotary lever (power amplifying means)
8 Aufnahmeöffnungen 8 receiving openings
9 Gehäusewand 9 housing wall
10 Gehäusewand 10 housing wall
1 1 Dichtung 1 1 seal
12 Rasthebel 12 locking lever
13 Rastnase 13 latch
14 Betätigungsabschnitt 14 operating section
15 Führungsstifte 15 guide pins
16 Lagerstifte 16 bearing pins
17 Führungsbahn 17 guideway
18 Arretierhaken 18 locking hooks
19 Anschlussleitung 19 connecting cable
20 Dichtgummi 20 rubber seal
21 Gehäusekante 21 case edge
22 Ausnehmung 22 recess
23 Ausnehmung 23 recess
24 Einschuböffnung 24 insertion opening
25 Mantelfläche 25 lateral surface
26 Abschnitt 26 section
27 Bodenfläche 27 floor area
28 Kante Kragen Vorsprung Griffabschnitt Bereiche 28 edge Collar projection handle section areas
Claims
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102013022011.4A DE102013022011A1 (en) | 2013-12-20 | 2013-12-20 | The connector assembly |
PCT/EP2014/078482 WO2015091809A1 (en) | 2013-12-20 | 2014-12-18 | Plug connector assembly |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3084896A1 true EP3084896A1 (en) | 2016-10-26 |
EP3084896B1 EP3084896B1 (en) | 2018-07-04 |
Family
ID=52146486
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP14818969.9A Active EP3084896B1 (en) | 2013-12-20 | 2014-12-18 | Plug connector assembly |
Country Status (10)
Country | Link |
---|---|
US (1) | US9692179B2 (en) |
EP (1) | EP3084896B1 (en) |
JP (1) | JP6282351B2 (en) |
KR (1) | KR101819845B1 (en) |
CN (1) | CN105830285B (en) |
BR (1) | BR112016014453B1 (en) |
DE (1) | DE102013022011A1 (en) |
ES (1) | ES2688467T3 (en) |
MX (1) | MX361956B (en) |
WO (1) | WO2015091809A1 (en) |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP6545529B2 (en) * | 2015-05-26 | 2019-07-17 | 住友電装株式会社 | Waterproof connector |
DE202017102334U1 (en) * | 2016-08-25 | 2017-11-29 | Alfred Von Schuckmann | Device for inhaling powdery substances |
JP6920164B2 (en) * | 2017-10-05 | 2021-08-18 | タイコエレクトロニクスジャパン合同会社 | Connector and connector assembly |
KR102774530B1 (en) * | 2019-02-01 | 2025-03-05 | 삼성전자주식회사 | Refrigerator |
CN113708153B (en) * | 2021-09-08 | 2024-04-12 | 张贻涛 | High-current plug and socket |
Family Cites Families (14)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CA1196402A (en) * | 1982-04-14 | 1985-11-05 | Amp Incorporated | Sealed electrical connector assembly |
CH667164A5 (en) * | 1985-03-06 | 1988-09-15 | Sulzer Ag | BAYONET-CLUTCH FOR CONNECTING TWO HOLLOW CYLINDRICAL PARTS. |
JPH0326065A (en) * | 1989-06-22 | 1991-02-04 | Toshiba Corp | Picture processing unit |
JPH0326065U (en) * | 1989-07-21 | 1991-03-18 | ||
US4944688A (en) * | 1989-09-25 | 1990-07-31 | Amp Incorporated | Programmable sealed connector |
DE20013285U1 (en) * | 2000-08-02 | 2001-12-13 | Robert Bosch Gmbh, 70469 Stuttgart | Multipole electrical connector |
JP3493628B2 (en) | 2001-01-18 | 2004-02-03 | 日本航空電子工業株式会社 | Connector device |
JP2005222816A (en) * | 2004-02-05 | 2005-08-18 | Jst Mfg Co Ltd | Waterproof connector |
SG127773A1 (en) * | 2005-06-01 | 2006-12-29 | Mea Technologies Pte Ltd | Waterproof connector |
DE102005040970A1 (en) * | 2005-08-30 | 2007-03-08 | Kostal Kontakt Systeme Gmbh | Electrical connector part |
DE102005040952A1 (en) | 2005-08-30 | 2007-03-08 | Kostal Kontakt Systeme Gmbh | Electrical zero force connector |
JP4622930B2 (en) | 2006-04-20 | 2011-02-02 | 住友電装株式会社 | Lever type connector |
DE102006058680A1 (en) * | 2006-12-13 | 2008-06-19 | Kostal Kontakt Systeme Gmbh | Electrical connector |
DE102008012925B4 (en) | 2008-03-06 | 2012-11-29 | Kostal Kontakt Systeme Gmbh | Electrical zero force connector |
-
2013
- 2013-12-20 DE DE102013022011.4A patent/DE102013022011A1/en not_active Withdrawn
-
2014
- 2014-12-18 CN CN201480069611.XA patent/CN105830285B/en active Active
- 2014-12-18 EP EP14818969.9A patent/EP3084896B1/en active Active
- 2014-12-18 JP JP2016541181A patent/JP6282351B2/en active Active
- 2014-12-18 WO PCT/EP2014/078482 patent/WO2015091809A1/en active Application Filing
- 2014-12-18 KR KR1020167019518A patent/KR101819845B1/en active Active
- 2014-12-18 BR BR112016014453-8A patent/BR112016014453B1/en not_active IP Right Cessation
- 2014-12-18 ES ES14818969.9T patent/ES2688467T3/en active Active
- 2014-12-18 MX MX2016008056A patent/MX361956B/en active IP Right Grant
-
2016
- 2016-06-08 US US15/176,880 patent/US9692179B2/en active Active
Also Published As
Publication number | Publication date |
---|---|
US20170025790A1 (en) | 2017-01-26 |
CN105830285B (en) | 2018-06-01 |
ES2688467T3 (en) | 2018-11-02 |
KR20160101116A (en) | 2016-08-24 |
US9692179B2 (en) | 2017-06-27 |
BR112016014453B1 (en) | 2021-12-07 |
KR101819845B1 (en) | 2018-01-17 |
DE102013022011A1 (en) | 2015-06-25 |
JP2017500707A (en) | 2017-01-05 |
MX361956B (en) | 2018-12-19 |
WO2015091809A1 (en) | 2015-06-25 |
MX2016008056A (en) | 2017-02-27 |
EP3084896B1 (en) | 2018-07-04 |
CN105830285A (en) | 2016-08-03 |
BR112016014453A2 (en) | 2017-08-08 |
JP6282351B2 (en) | 2018-02-21 |
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