EP2731206B1 - Connecteur et procédé de montage - Google Patents

Connecteur et procédé de montage Download PDF

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Publication number
EP2731206B1
EP2731206B1 EP13005316.8A EP13005316A EP2731206B1 EP 2731206 B1 EP2731206 B1 EP 2731206B1 EP 13005316 A EP13005316 A EP 13005316A EP 2731206 B1 EP2731206 B1 EP 2731206B1
Authority
EP
European Patent Office
Prior art keywords
cable end
line
end device
cable
insertion direction
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP13005316.8A
Other languages
German (de)
English (en)
Other versions
EP2731206A1 (fr
Inventor
Quiter Michael
GÖRLICH Andreas
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.)
Yamaichi Electronics Deutschland GmbH
Original Assignee
Yamaichi Electronics Deutschland 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.)
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Publication date
Application filed by Yamaichi Electronics Deutschland GmbH filed Critical Yamaichi Electronics Deutschland GmbH
Publication of EP2731206A1 publication Critical patent/EP2731206A1/fr
Application granted granted Critical
Publication of EP2731206B1 publication Critical patent/EP2731206B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

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

Definitions

  • the invention relates to a connector, in particular an RJ45 plug, and a mounting method for mounting the connector.
  • the publication WO 97/44862 A1 discloses an electrical connector comprising a device for use in reducing crosstalk in transmission lines.
  • the device comprises a plurality of contacts having a plurality of input terminals and a plurality of output terminals electrically connected to the input terminals, and at least four plates, each of the four plates electrically connecting an input terminal and an output terminal, thereby providing an electrical connection Current flowing through the input terminal and an output terminal flowing through the plate.
  • the at least four plates are arranged in three layers with an insulating element between each layer.
  • the publication DE 10 2006 010279 A1 discloses a connector for shielded data cables.
  • the plug has an electrically conductive housing, which can be joined together from a first shell and a second shell.
  • An electrically insulating plug body accommodates plug contacts.
  • An insertable into the housing circuit board carries the plug contacts and insulation displacement contacts and connects these conductively with each other.
  • the printed circuit board is insulated from the housing by a non-conductive foil.
  • the wires of the data cable to be connected can be inserted into a charging piece, the wires being received in two superimposed planes in the charging piece.
  • the data cable is mountable in the charging piece and the second shell. When assembling the shells, the insulation displacement contacts contact the wires of the data cable received in the charging piece.
  • the publication US Pat. No. 7,871,285 B1 discloses an electrical connector having a front housing having a plurality of contacts and a cutting blade proximate a rear of the front housing.
  • the electrical connector also has a rear housing with a wire organizer on a front side of the rear housing.
  • the wire organizer has a plurality of wire channels adapted to receive associated wires.
  • the cutting blade is disposed between an outer support wall and the wire organizer and is configured to cut wires protruding from the wire organizer during assembly of the rear housing with the front housing.
  • the publication US Pat. No. 7,540,760 B1 discloses a communication jack for the configuration of a plurality of wires.
  • the communication socket has a base and a terminal push member.
  • the base has two rows of insulation displacement terminals and the terminal push member has a plurality of rows of press slots.
  • Each press slot has a sloped wire guide section in the opening.
  • the wire guide portion serves to guide the wire from the opening to the bottom of the press slot so as to improve the efficiency in mounting the wire and the terminal pressing member.
  • the publication DE 100 57 833 A1 discloses a connector for multi-core data and / or communication cables.
  • the cable termination device is merely displaced linearly to be mounted in the cable end receptacle receptacle of the housing device.
  • a pivoting and rotational movement is inhibited. Due to the linear displacement of the cable termination device, each line contact is acted upon by the frictional connection with the associated line which is accommodated in the cable termination device only along the insertion direction E, the longitudinal extension of the at least one line contact being oriented substantially parallel to the insertion direction E.
  • the connector includes a cable termination device locatable at one end of the cable.
  • the cable termination device has at least one cable receptacle. It is understood that the cable termination device may also have a plurality of two, three, four, or more cable receptacles.
  • the electrical line can be inserted with or without insulating jacket in the line recording.
  • the inner diameter of the cable receptacle is dimensioned such that the electrical line is inserted into the line receiving friction, so that the cable of the cable is advantageously not bent or kinked during or through the insertion into the cable receptacle.
  • the cable end device has an Anordenseite, which faces the housing device or the Jardinendvorschettifacta when the Jardinendvortechnisch along the insertion direction E is at least partially introduced into the Jardinendvoriquesstruction. After arranging the cable end device to the housing device, the Anordenseite can contact mechanically at least partially with the housing device.
  • the Anordenseite comprises at least one line contact opening, which is connected to an associated line receptacle.
  • the line contact opening is a continuous opening in the cable end device, which extends from the Anordenseite to the cable receptacle.
  • the line contact opening is particularly rectilinear and may extend along the insertion direction E.
  • the at least one line contact is insertable into an associated line contact opening when the cable termination device is inserted along the insertion direction E into the cable end device receptacle. By inserting the line contact into the line contact opening, the line contact can electrically contact an associated electrical line received in the line receptacle. Corresponding may contact a plurality of line contacts with a plurality of electrical leads of a cable received in the cable termination device.
  • the housing device has a cable end device receptacle.
  • the cable termination is at least partially, and in particular completely along the insertion direction E inserted.
  • the insertion of the cable termination device into the cable end device receptacle may be accompanied by the attachment of the cable termination device to the housing device.
  • the cable end device receptacle has at least one guide element with which an associated complementary guide element of the cable end device can be contacted, as a result of which the cable end device can only be displaced linearly along the insertion direction E in the cable end device receptacle.
  • the cable end device is only linearly displaceable relative to the cable end device receptacle. It is understood that two, three, four or more guide elements and associated complementary guide elements can be provided.
  • the at least one line contact in the Jardinendvoriquessbefore extends for a length along the insertion direction E, which is dimensioned such that the Jardinendvortechnisch is already partially received in the Lucasendvorungsarea, before the at least one line contact is partially inserted in the associated line contact opening.
  • an edge or an opening region of the cable end device receptacle can protrude further counter to the insertion direction E than the at least one line contact.
  • the at least one guide element further projecting against the insertion direction E than the at least one line contact.
  • the at least one line contact is formed as insulation displacement contact.
  • the electrical conduction of the cable including the associated to the electrical line insulating jacket are introduced into the line receptacle and the penetration of the insulating jacket for electrically contacting the electrical line with the line contact is then carried out by inserting the line contact in the line contact opening or by arranging the cable termination device into the cable end device receptacle along the insertion direction E.
  • the connector comprises a cover device, which can be arranged along the insertion direction E to the housing device and can be fastened to the housing device.
  • the cable end device receptacle can be closed by the cover device, so that a cable end device accommodated in the cable end device receptacle can not be displaced counter to the insertion direction E.
  • access to the cable termination device is prevented by arranging the cover device.
  • the cover device can seal the connector moisture-tight.
  • the housing device has at least one cover guide element with which an associated complementary cover guide element of the cover device can be contacted, as a result of which the cover device can only be displaced linearly along the insertion direction E relative to the housing device.
  • this prevents that when arranging the lid device to the housing device by means of the lid device a Force is applied to the cable end device, which acts perpendicular to the insertion direction E. Rather, the cover device is displaceable only along or counter to the insertion direction. As a result, further advantageously bending of the line contacts can be avoided.
  • the cover device has at least one latching device which can be latched with a complementary latching device of the housing device.
  • the latching device may be formed as an opening or recess in the cover device, in which the complementary latching device can engage in order to lock the cover device to the housing device.
  • the latching device and / or the complementary latching device can in particular be formed from a resilient material.
  • resilient means a material property that causes the latch and / or the complementary latch to resiliently deform along a displacement direction V by the application of an external force. Due to the resilience of the material, the latching device and / or the complementary latching device return to their original position or shape when the applied force no longer acts on the latching device and / or the complementary latching device.
  • the term resilient deformability includes elastic deformability.
  • latching device and / or the complementary latching device By arranging the cover device on the housing device, for example, the latching device and / or the complementary latching device can be deformed, whereby the latching device and the complementary latching device lock together when the cover device is completely arranged on the housing device.
  • latching means and the complementary latching means are conformal to each other, so that the latching means and / or the complementary latching means can return to their original condition due to the resilience, which in particular ensures a permanent latching.
  • the cable termination device has at least one engagement device, which can be brought into engagement with an associated complementary engagement device of the cover device.
  • the at least one engagement device of the cable end device can additionally be brought into engagement with an associated complementary engagement device of the housing device.
  • the attachment of the cable termination device in the cable end device receptacle can be carried out independently of the attachment of the cover device to the housing device.
  • the attachment of the cable termination device in the cable end device receptacle can be carried out independently of the attachment of the cover device to the housing device.
  • the engagement means may be formed as a projection in the cable termination device, which projection may engage the complementary engagement means to lock the cable termination device to the housing device.
  • the engagement device and / or the complementary engagement device can in particular be formed from a resilient material.
  • the engagement means and the complementary engagement means are conformal to each other so that the engagement means and / or the complementary engagement means can return to their original condition due to the resilience when the cable termination and housing apparatus are arranged as intended, which in particular ensures a permanent engagement.
  • the method includes the step of latching the cable termination in the cable end receptacle.
  • FIG. 1 shows an exploded perspective view of a connector 1, which is formed in the illustrated preferred embodiment as a standard RJ45 compatible connector.
  • the connector 1 comprises a contact device 3, which in turn has a housing device 5, a cable end device 7 and a cover device 9, and a strain relief device 11 with a sleeve 13 and a sleeve fastening device 15.
  • FIG. 2 shows the contact device of in FIG. 1 shown connector in a sectional view. Because the FIG. 2 and the further figures each show different views of the same connector, the elements provided with the same reference numerals in the figures are identical.
  • a cable 31 may be guided along a cable feed-through direction D through a cable feed-through opening 17 of the contact device 3 into the interior of the contact device 3 in order to contact the cable end device 7 there.
  • the cable termination device 7 is designed to cover the end portion of a cable 31 (in FIG FIG. 2 shown) at least partially record.
  • the cable 31 can be mechanically fastened thereto and contacted electrically with cable contacts 19 of the housing device 5.
  • the contact device 3 is formed.
  • the contact device 3 is preferably at least partially formed from a material which can shield stray electromagnetic radiation, for example from a metal.
  • the housing device 5 and / or the cover device 9 may be formed at least partially or partially from one or more pieces of sheet metal.
  • the cable 31 may, as in FIG. 2 shown, having an insulation jacket 31 a, which comprises a shielding conductor 31 b and at least one electrical line 31 c of the cable 31. It is understood that the cable 31 may have two, three, four or more electrical lines 31 c. Each of the electrical wires 31 c may be surrounded by a cable jacket, which is formed of an electrically insulating material to electrically isolate the individual lines 31 c of the cable 31 from each other.
  • the cable termination device 7 has at least one line receptacle 21, into which an associated electrical line 31c of the cable 31 can be inserted at least in regions along a line insertion direction L. It is understood that the Jardinendvoriques 7 may also have a plurality of two, three, four, five or more line receptacles 21, wherein in each of the line receptacles exactly one associated electrical line 31 c of the cable 31 is inserted. In this case, the electrical line 31c may be insertable into the line receptacle 21 with or without the insulating line jacket 31d. For example, the inner diameter of the line receptacle 21 may be dimensioned such that a single electrical line 31 c can be inserted into the line receptacle 21 without friction.
  • the term “frictionless” means that the line 31 c is inserted into the cable receptacle 21 in such a way that the line 31 c of the cable 31 is not bent or kinked while or in the insertion into the cable receptacle 21 when the electrical line 31 c rubs against the wall of the line receptacle 21. In other words, there is a slight clearance between the wall of the line receptacle 21 and the insertable therein associated electrical line 31 c.
  • the cable end device 7 can be accommodated by a cable end device receptacle 23 of the housing device 5 at least in certain areas.
  • the cable end device 7 with an Anordenseite 7a along along an insertion direction E at least partially introduced into the Jardinendvoriquessbased 23.
  • the cable end device 7 must be oriented such that the Anordenseite 7a of the housing device 5 and the Jardinendvoriquesssuit 23 faces before the Jardinendvortechnisch 7 along the insertion direction E in the Jardinendvoriquess method 23 can be introduced.
  • the cable termination device 7 comprises at least one line contact opening 25, which is formed on the Anordenseite 7 a and with an associated Line receptacle 21 is connected. It is understood that the cable termination device 7 may also have a plurality of two, three, four, five or more line contact openings which are each connected to a single associated line receptacle 21.
  • the line contact opening 25 is a continuous opening in the cable end device 7, which extends from the Anordenseite 7 a to the line receptacle 21.
  • the line contact opening 25 may be formed in particular straight, for example through a bore. More preferably, the line contact opening 25 may extend linearly along the insertion direction E.
  • the line contacts 19 shown in the figures can each be inserted into an associated line contact opening 25, for example when the cable termination device 7 is inserted along the insertion direction E into the cable end device receptacle 23 of the housing device 5. Conveniently, the line contact openings 25 are then oriented parallel to each other.
  • the line contacts 19 can each electrically contact 31 c with an associated electrical line, when the electrical lines 31 c are received in the associated line receptacles 21.
  • the lines 31c of the cable 31 may already be stripped at their ends, that is, the cable sheath 31 d is partially removed at the ends, so that the line contacts 19, the respectively associated electrical line 31c after insertion of the cable end device 7 in the Lucasendvoriquesssuit 23 can contact directly electrical.
  • the line contacts 19 may also be formed as insulation displacement terminals, so that the electrical leads 31c can be electrically contacted even when the end portions of the electrical leads 31c are not stripped.
  • the insulation displacement terminals 19 make it possible to sever the conductor sheaths 31 d by means of sharp areas and to establish an electrical connection between the line contacts designed as insulation displacement terminals 19 and the respective associated electrical line 31 c by inserting or pressing in the cable termination device 7 into the cable end device receptacle 23.
  • This connection technique for producing an electrical Connection works without soldering, screwing and stripping and is therefore also known as soldering, screwing and stripping-free technology (LSA technology).
  • the insertion of the cable end device 7 into the cable end device receptacle 23 of the housing device 5 may be accompanied by the attachment of the cable end device 7 to the housing device 5.
  • the cable termination device 7 may have at least one engagement device 27, which can be brought into engagement with an associated complementary engagement device 29.
  • the complementary engagement device 29 may be formed in the housing device 5 or in the cover device 9 (as shown in the figures).
  • the embodiment shown in the figures comprises four engaging devices, which are formed as a projection or nose on the cable end device 7, wherein these projections can each engage in an associated recess or recess formed as a complementary engagement means 27 to lock it.
  • the engagement device 27 is preferably formed from a resilient material. In other words, the material or engaging means 27 can be displaced by applying an external force along a displacement direction V, with the engaging means 27 returning to its original shape or position when the applied force is no longer effective.
  • the complementary engaging means 29 are formed in the lid device 9.
  • the cover device 9 can be arranged along the insertion direction E to the housing device 5 such that the engagement device 27 engages with the complementary engagement devices 29 of the cover device 9, around the cable end device 7 to connect with the lid device 9.
  • the cover device 9 also has two locking devices 33, which engage in complementary locking devices 35 of the housing device 5 and can lock it.
  • the locking device 33 shown in the figures is formed as an opening or recess in the cover device 9, in which the complementary latching device 35, which is designed as a projection or nose 35 on the housing device 5, can engage in order to lock the cover device 9 to the housing device 5.
  • the detents 33 and / or the complementary detents 35 may be formed of a resilient material.
  • the latching devices 33 and / or the complementary latching devices 35 can be deformed, the latching devices 33 latching with the complementary latching devices 35 when the cover device is completely fastened to the Housing device 5 is arranged, whereby in particular the contact device 3 is closed.
  • the latching of the latching devices 33 with the associated complementary latching devices 35 can take place simultaneously with the engagement of the engagement devices 27 with the associated complementary engagement devices 29.
  • the Jardinendvoriquessmethod 23 of the housing device 5 preferably comprises a guide member 37 which is mechanically contacted with an associated complementary guide member 39 of the cable termination 7 during insertion of the cable termination 7 along the insertion direction E in the Lucasendvoriquess technique 23, whereby the Jardinendvoruze 7 only linear along the insertion direction e in the Jardinendvoriquesseffective 23 is displaced. It is understood that two, three, four or more guide elements 37 may be provided which each contact an associated complementary guide member 39. In the preferred embodiment of the connector 1 shown in the figures, the guide elements 37 are formed by the wall of the cable end device receptacle 23.
  • the wall of the Jardinendvoriquessam 23 and the guide members 37 of the housing device 5 include partially the Jardinendvorides 7 during insertion along the insertion direction E such that the Jardinendvorides 7 is no longer displaceable or displaceable along a direction which is substantially perpendicular to the insertion direction E. ,
  • the clearance between the cable termination 7 and the inner wall of the cable end receptacle 23 is less than about 0.5 mm, preferably less than about 0.1 mm.
  • the Jardinendvoriques 7 and the inner wall of the Jardinendvoriquessmethod 23 may be in mechanical contact as soon as the Jardinendvorides 7 is at least partially inserted into the Lucasendvorungsungsmethod 23, so that a further displacement of the Jardinendvorides 7 along the insertion direction E only by overcoming friction between the Jardinendvorides 7 and the inner wall of the cable end device receptacle 23 is possible.
  • the line contacts 19, which are arranged in the Jardinendvoriquesssuit 23 extend by a length opposite to the insertion direction E, which is dimensioned such that the line contacts 19 are partially inserted only in the associated line contact openings 25 of the cable end device 7, when the complementary guide elements 39 the Jardinendvortechnik 7 are already contacted by the guide members 37 of the housing device 5, so that advantageously a mechanical contact between the line contacts 19 and the walls of the line contact openings 25 is avoided, whereby the line contacts 19 are protected from mechanical stress.
  • the housing device 5 preferably comprises cover guide elements 41, which contact the housing device 5 with complementary cover guide elements 43 during the arrangement of the cover device 9, so that the cover device 9 can only be displaced linearly along the insertion direction E relative to the housing device 5.
  • This advantageously prevents a force being applied to the cable end device 7 during the arrangement of the cover device 9 on the housing device 5, which force is then applied indirectly acts on the line contacts 19.
  • the complementary cover guide element 43 of the cover device 9 may, for example, be formed by a side or edge of the cover device 9, which engages in a shape-matching exception as the preferred cover guide element 41 of the housing device 5.
  • FIGS. 3 to 11 show different states of the contact device 3 during assembly of the connector 1.
  • cable 31 in the FIGS. 3 to 11 Not shown.
  • a first state which in the Figures 3 and 4 2, the housing device 5 and the cable termination device 7 are separated from each other, so that the electric wires of a cable (not shown) can be inserted along the wire insertion direction L into the cable receptacles 21 of the cable termination device 7.
  • ten line receptacles 21 are shown, in each of which an associated electrical line can be inserted.
  • the Jardinendvoriques 7 may have any number of line receptacles 21.
  • the cable termination device 7 can be displaced along the insertion direction E relative to the housing device 5 so as to be in a further state, as in FIG FIG. 5 shown to be convicted.
  • the cable end device 7 with a complementary guide element 39 has already come into mechanical contact with a guide element 37 of the housing device 5, whereas the line contacts 19 have not yet been inserted into an associated line contact opening 25.
  • the line contact openings 25 are formed in the cable end device 7 such that the line contacts 19 are preferably inserted substantially frictionless in the line contact openings 25, an application prevents a force on the line contacts 19 during insertion of the cable end device 7 in the Jardinendvoriquessmethod 23.
  • FIGS. 6 and 7 show the contact device 3 in a further state in which the Jardinendvoriques 7 is received by the Jardinendvorungsungsmethod 23, wherein the line contacts 19 are performed through the line contact openings 25, at least partially hineingeur in the line receptacle 21, whereby the electrical lines, which in the line receptacles 21 are received, can be contacted electrically.
  • FIGS. 8 and 9 show a further state of the contact device 3, in which the cover device 9 along the insertion direction E to the housing device 5 is arranged.
  • the cover device 9 along the insertion direction E to the housing device 5 is arranged.
  • complementary cover guide elements 43 of the cover device 9 engage with associated cover guide elements 41 of the housing device 5, so that a displacement of the cover device 9, which is different from the insertion direction of E, is inhibited.
  • the contact device 3 After complete arrangement of the cover device 9 to the housing device 5, the contact device 3 enters a further state, which in the Figures 10 and 11 is shown.
  • the cover device 9 is locked by means of the latching device 33 and the complementary latching device 35 with the housing device 5, so that a removal of the cover device 9 is inhibited against the insertion direction E.
  • the engaging means 27 of the cable end device 7 are engaged with the associated complementary engagement means 29 of the lid device 9, so that the position of the cable end device 7 is fixed.
  • the cable end device 7 can first be locked or fastened with the cover device 9, then the cable end device 7 together with the cover device 9 on the housing device 5 by displacing the to arrange both along the insertion direction E and connect to the housing device 5.

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Claims (6)

  1. Connecteur (1), notamment connecteur RJ45, présentant :
    - un dispositif d'extrémité de câble (7) avec
    -- au moins un logement de ligne (21) dans lequel une ligne électrique associée (31c) d'un câble (31) peut être introduite au moins par région le long d'une direction d'introduction de ligne (L), et
    -- un côté d'agencement (7a) qui présente au moins une ouverture de contact de ligne (25) qui est reliée à un logement de ligne associé (21),
    - un dispositif de boîtier (5) avec
    -- un logement de dispositif d'extrémité de câble (23) dans lequel le dispositif d'extrémité de câble (7) peut être introduit au moins par région linéairement le long d'une direction d'introduction (E) différente de la direction d'introduction de ligne (L), et
    -- au moins un contact de ligne (19) qui peut être introduit par l'introduction du dispositif d'extrémité de câble (7) dans le logement de dispositif d'extrémité de câble (23) au moins par région dans une ouverture de contact de ligne associée (25) et par lequel une ligne électrique associée (31c) peut être contactée électriquement, et
    - un dispositif de couvercle (9) qui peut être agencé le long de la direction d'introduction (E) sur le dispositif de boîtier (5) et peut être fixé au dispositif de boîtier (5),
    caractérisé en ce que
    le dispositif d'extrémité de câble (7) présente au moins un dispositif d'engagement (27) qui peut être amené en engagement avec un dispositif d'engagement complémentaire associé (29) du dispositif de couvercle (9), et
    le logement de dispositif d'extrémité de câble (23) présente au moins un élément de guidage (37) avec lequel un élément de guidage complémentaire associé (39) du dispositif d'extrémité de câble (7) peut être contacté, moyennant quoi le dispositif d'extrémité de câble (7) peut être déplacé uniquement linéairement le long de la direction d'introduction (E) dans le logement de dispositif d'extrémité de câble (23), et
    le dispositif de boîtier (5) présente au moins un élément de guidage de couvercle (41) avec lequel un élément de guidage de couvercle complémentaire associé (43) du dispositif de couvercle (9) peut être contacté, moyennant quoi le dispositif de couvercle (9) peut être déplacé uniquement linéairement le long de la direction d'introduction (E) par rapport au dispositif de boîtier (5).
  2. Connecteur (1) selon la revendication 1, dans lequel l'au moins un contact de ligne (19) s'étend dans le logement de dispositif d'extrémité de câble (23) d'une longueur le long de la direction d'introduction (E) qui est mesurée de telle sorte que le dispositif d'extrémité de câble (7) est déjà reçu par région dans le logement de dispositif d'extrémité de câble (23) avant que l'au moins un contact de ligne (19) ne soit introduit par région dans l'ouverture de contact de ligne associée (25).
  3. Connecteur (1) selon une des revendications précédentes, dans lequel l'au moins un contact de ligne (19) est réalisé comme contact à borne guillotine.
  4. Connecteur (1) selon une des revendications précédentes, dans lequel le dispositif de couvercle (9) présente au moins un dispositif d'encliquetage (33) qui peut être encliqueté avec un dispositif d'encliquetage complémentaire (35) du dispositif de boîtier (5).
  5. Connecteur (1) selon une des revendications précédentes, dans lequel le dispositif d'extrémité de câble (7) présente au moins un dispositif d'engagement (27) qui peut être amené en engagement avec un dispositif d'engagement complémentaire associé du dispositif de boîtier (5).
  6. Procédé de montage d'un connecteur (1) comprenant les étapes de :
    - mise à disposition d'un dispositif d'extrémité de câble (7) avec
    -- au moins un logement de ligne (21) dans lequel une ligne électrique associée (31c) d'un câble (31) peut être introduite au moins par région le long d'une direction d'introduction de ligne (L),
    -- un côté d'agencement (7a) qui présente au moins une ouverture de contact de ligne (25) qui est reliée à un logement de ligne associé (21), et
    -- au moins un dispositif d'engagement (27) ;
    - introduction au moins par région d'au moins une ligne électrique (31c) dans le logement de ligne associé (21) du dispositif d'extrémité de câble (7) ;
    - mise à disposition d'un dispositif de boîtier (5) avec
    -- un logement de dispositif d'extrémité de câble (23) dans lequel le dispositif d'extrémité de câble (7) peut être introduit au moins par région linéairement le long d'une direction d'introduction (E) différente de la direction d'introduction de ligne (L), et
    -- au moins un contact de ligne (19) qui peut être introduit par l'introduction du dispositif d'extrémité de câble (7) dans le logement de dispositif d'extrémité de câble (23) au moins par région dans une ouverture de contact de ligne associée (25) et par lequel une ligne électrique associée (31c) peut être contactée électriquement ;
    - introduction du dispositif d'extrémité de câble (7) le long de la direction d'introduction (E) dans le logement de dispositif d'extrémité de câble (23) du dispositif de boîtier (5) ;
    - mise en contact électrique de l'au moins un contact de ligne (19) avec la ligne électrique associée (31c) du câble (31) ;
    caractérisé en ce que le procédé comprend en outre :
    - mise à disposition d'un dispositif de couvercle (9) avec un dispositif d'engagement complémentaire (29) qui peut être amené en engagement avec un associé de l'au moins un dispositif d'engagement (27) du dispositif d'extrémité de câble (7), et
    - agencement et fixation du dispositif de couvercle (9) sur le dispositif de boîtier (5) de telle sorte qu'un élément de guidage complémentaire associé (39) du dispositif d'extrémité de câble (7) est contacté avec au moins un élément de guidage (37) du logement de dispositif d'extrémité de câble (23), moyennant quoi le dispositif d'extrémité de câble (7) peut être déplacé uniquement linéairement le long de la direction d'introduction (E) dans le logement de dispositif d'extrémité de câble (23), et qu'un élément de guidage de couvercle complémentaire associé (43) du dispositif de couvercle (9) est contacté avec au moins un élément de guidage de couvercle (41) du dispositif de boîtier (5), moyennant quoi le dispositif de couvercle (9) peut être déplacé uniquement linéairement le long de la direction d'introduction (E) par rapport au dispositif de boîtier (5).
EP13005316.8A 2012-11-12 2013-11-11 Connecteur et procédé de montage Active EP2731206B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE201210022166 DE102012022166A1 (de) 2012-11-12 2012-11-12 Verbinder und Verfahren zur Montage

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EP2731206B1 true EP2731206B1 (fr) 2017-02-22

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DE (1) DE102012022166A1 (fr)

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CN111262105A (zh) * 2020-01-30 2020-06-09 沈鑫光 具有导电接触效果好的网络通讯连接器

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Publication number Priority date Publication date Assignee Title
CN111276826B (zh) * 2020-01-30 2021-05-04 翔耀电子(深圳)有限公司 网络通讯连接器
JP2024006324A (ja) * 2022-07-01 2024-01-17 日本航空電子工業株式会社 コネクタ

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US5681180A (en) * 1994-11-02 1997-10-28 Thomas & Betts Corporation Conductor holding block for an electrical connector
DE10057833A1 (de) * 2000-11-21 2002-06-13 Ria Btr Prod Gmbh Steckverbinder für mehradrige Daten- und/oder Telekommunikations-Kabel

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ATE161663T1 (de) * 1994-09-01 1998-01-15 Bks Kabel Service Ag Stecker für ein kabel mit mehreren adern
US5769647A (en) * 1995-11-22 1998-06-23 The Siemon Company Modular outlet employing a door assembly
DE102006010279A1 (de) * 2006-03-02 2007-09-06 Mc Technology Gmbh Stecker für geschirmte Datenkabel
TWM349123U (en) * 2008-06-18 2009-01-11 Surtec Ind Inc Socket structure for communication cable
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US5681180A (en) * 1994-11-02 1997-10-28 Thomas & Betts Corporation Conductor holding block for an electrical connector
DE10057833A1 (de) * 2000-11-21 2002-06-13 Ria Btr Prod Gmbh Steckverbinder für mehradrige Daten- und/oder Telekommunikations-Kabel

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111262105A (zh) * 2020-01-30 2020-06-09 沈鑫光 具有导电接触效果好的网络通讯连接器

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