EP1753089A2 - Ensemble de connecteurs pour construire et séparer au moins une liaison électrique avec un autre ensemble de connecteurs complémentaires - Google Patents

Ensemble de connecteurs pour construire et séparer au moins une liaison électrique avec un autre ensemble de connecteurs complémentaires Download PDF

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Publication number
EP1753089A2
EP1753089A2 EP20060118705 EP06118705A EP1753089A2 EP 1753089 A2 EP1753089 A2 EP 1753089A2 EP 20060118705 EP20060118705 EP 20060118705 EP 06118705 A EP06118705 A EP 06118705A EP 1753089 A2 EP1753089 A2 EP 1753089A2
Authority
EP
European Patent Office
Prior art keywords
contact
region
connection
latching
opening
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
Application number
EP20060118705
Other languages
German (de)
English (en)
Other versions
EP1753089A3 (fr
EP1753089B1 (fr
Inventor
Jürgen Veit
Andreas Kainz
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.)
Era Contact GmbH
Original Assignee
Era Contact GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Era Contact GmbH filed Critical Era Contact GmbH
Priority to PL06118705T priority Critical patent/PL1753089T3/pl
Publication of EP1753089A2 publication Critical patent/EP1753089A2/fr
Publication of EP1753089A3 publication Critical patent/EP1753089A3/fr
Application granted granted Critical
Publication of EP1753089B1 publication Critical patent/EP1753089B1/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
    • H01R4/247Connections using contact members penetrating or cutting insulation or cable strands the contact members penetrating the insulation being actuated by springs
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/40Securing contact members in or to a base or case; Insulating of contact members
    • H01R13/42Securing in a demountable manner
    • H01R13/428Securing in a demountable manner by resilient locking means on the contact members; by locking means on resilient contact members

Definitions

  • the invention relates to a connector assembly for making and separating at least one electrical connection between this connector assembly and another complementary connector assembly.
  • the connector assembly has a contact carrier that includes at least one opening into which at least a portion of a contact pin is inserted.
  • the contact connection bolt has a first connection region with which an electrical contact element can be electrically connected.
  • the contact connection bolt has a second connection region with which an electrical conductor can be electrically connected.
  • the invention relates to a contact connection pin.
  • connection bolts used in the contact carrier are connected in the prior art by relatively complicated procedures with the contact carrier.
  • the contact connection bolts are provided with a retaining ring or a predetermined area of the connecting bolt is flanged, whereby a positive connection is produced.
  • the connecting bolt in the contact carrier by means of the ring an additional component and a considerable installation effort is required.
  • the disassembly is difficult and can lead to the destruction of the contact carrier.
  • the crimping of the connecting bolt in which a protruding from an opening of the contact carrier tubular end of the connecting bolt is flanged at this opening to the outside, is associated with relatively large manufacturing effort. Dismantling a flanged in the contact carrier connecting bolt is connected to a destruction of at least a portion of the connecting bolt.
  • Conventional contact connection pins of a connector arrangement have an opening directed towards the front of the connector arrangement into which a contact region of a contact element is inserted. By inserting the contact element in this opening, the contact element is held in the contact carrier. Furthermore, an electrical connection between the connecting bolt and contact element is produced by the insertion. This also allows replacement of the contact element at a defined interface, without, for example, lines must be reconnected to the connector assembly.
  • Such contact elements to be used in the connecting bolts are known, for example, from the patent applications DE 101 43 200 A1 and DE 102 30 379 A1 known. The structure and operation of the contact elements disclosed therein are hereby incorporated by reference into the present specification.
  • the object of the invention is to provide a connector assembly for making and separating at least one electrical connection with another complementary connector assembly in which a contact terminal pin in the contact carrier with low installation effort can be securely fixed in a simple manner and the disassembly of the connecting bolt is simplified.
  • the terminal bolt can be easily released from the contact carrier by the locking connection, in particular by means of a suitable tool, is released.
  • the terminal bolt can be easily and safely removed again from the contact carrier without connecting pins and contact carrier are damaged or destroyed.
  • the locking element is secured by the insertion of the contact element in the contact connection pin in the latching area. This prevents inadvertent release of the connecting bolt.
  • the latching element is designed in the manner of a barb, which preferably engages upon insertion of the contact connection pin in the contact carrier by a restoring force of the latching element in a latching region of the contact carrier, a very simple assembly is possible. Due to the barb pulling the contact terminal bolt from the opening in the back of the contact carrier is not possible without the locking element is previously removed from the locking area.
  • the contact connection pin to the front of the contact carrier towards an opening into which the contact element inserted, preferably screwed, is.
  • the contact element is preferably inserted into the opening provided in the front side of the contact carrier, which leads to an introduced into the contact connection pin bore with internal thread, so that the contact element is inserted into the opening of the connecting bolt and screwed into the existing thread there, whereby an electrical connection is generated between the contact element and contact terminal pin.
  • the contact element is fitted into the opening of the contact connection bolt or held in the opening of the contact connection bolt by means of a restoring force caused by elastic deformation of a region of the contact connection bolt.
  • Fig. 1 is a sectional view of a section of a contact carrier 12 of a connector assembly 10 is shown having a plurality of openings has, of which two openings are shown and designated 14a, 14b.
  • the openings 14a, 14b are each formed by a through hole in the contact carrier 12 from the front side 15 to the opposite rear side 13.
  • a contact connection pin 30, 50 is inserted in the two openings 14a, 14b shown in each case.
  • the contact connection bolts 30, 50 are also generally referred to as connection bolts and have a front first connection region 32, 52, in each of which one of the openings 14a, 14b provided in the back 13 of the contact carrier 12 is inserted until the front edge of the central region 40, 56 of the connecting bolt 30, 50 abuts against the back 13 of the contact carrier 12.
  • the first connecting regions 32, 52 introduced into the openings 14a, 14b and the openings 14a, 14b have a round cross-section at least on the rear side 13 of the contact carrier 12, the central regions 40, 56 having a rectangular, preferably square, cross-section.
  • the first connection regions 32, 52 adjoin the central region 40, 56 at the front thereof.
  • a second connecting region 48, 58 is provided in each case, which can be formed as a solder connection, screw connection, terminal connection or crimp connection, as will be explained in more detail later.
  • each of these connection regions 48, 58 is designed to be connected to at least one connection wire.
  • the second connection regions 48, 58 each have a round cross section in the exemplary embodiment according to FIG.
  • a base hole is provided from the rear side of the second connection region along the center axis of the connection bolt 30, 50, into which a connection wire can be inserted and soldered.
  • a further bore connected to the base bore and oriented perpendicular to the base bore is provided in such a solder connection through which solder can be supplied and / or air and solder can escape.
  • the connecting bolt 30 inserted into the opening 14a is inserted with an annular groove provided in the front connecting region 32 of the connecting bolt 30.
  • the opening 14a is widened stepwise towards the front side 15 of the contact carrier 12 at a predetermined point, so that the front connecting region 32 of the connecting bolt 30 protruding into this widened region is inserted by means of a ring 34 inserted into an annular groove 38 provided in the front connecting region 32 , is secured before retraction of the connecting bolt 30.
  • the ring 34 is inserted from the front side 15 of the contact carrier 12 into the contact opening 14a, 14b and pushed over the front side of the connecting portion 32 into the annular groove 38.
  • the contact element 84 shown in the inserted state in FIG. 1 is not yet inserted into the first connection region 32 of the contact connection bolt 30.
  • a second projection is provided on which a sealing ring 26 is arranged.
  • the opening 14b like the opening 14a, has a second projection, on which a seal 27 is arranged.
  • the seals 26, 27 are used both for sealing the connection region between the contact element 84, 85 and connecting bolts 30, 50 and for mechanically fixing the contact element 84, 85, wherein the seals 26, 27 are preferably elastically deformable, so that they have a limited movement Allow contact elements 84, 85 transverse to their longitudinal axis.
  • the contact element 85 further has a portion 28 which substantially fills the opening 14b at this location and thereby both mechanically fixes the contact element 85 and has an additional sealing function.
  • the portion 28 comprises a compressible rubber ring which is compressed by means of a screw connection in the axial direction of the contact element 85 and thereby extends transversely to the axis of the contact element 85, whereby a part of the rubber ring is pressed against the inner wall of the opening 14b.
  • FIG. 2 the connecting bolt 30 is shown in FIG. 1.
  • Like elements have the same reference numerals.
  • an annular groove 38 is provided at the front end 36 of the connecting region 32, over which a ring 34 is pushed.
  • the annular groove 38 is circumferentially formed on the lateral surface of the first connecting portion 32, whereby the round cross-section of the connecting portion 32 is reduced in the region of the groove 38 by the groove depth.
  • the ring 34 has a circular opening in the middle, which is slightly smaller than the front portion 36 of the connecting portion 32, so that the ring 34 must be pushed with a force over this front portion 36 away in the groove 38.
  • the front portion 36 of the first connecting portion 32 is externally provided with a chamfer, through which the ring 34 is also positioned.
  • the ring 34 can be heated so that the inner diameter the opening in the ring 34 is enlarged before the ring 34 is pushed over the front portion 36 in the groove 38, whereby the ring 34 can be easily pushed over the front portion 36 of the contact portion 32.
  • the contact region 32 of the connecting bolt 30 is pushed into the opening 14 of the contact carrier 12 until the front side 42 of the central region 40 abuts against the rear side 13 of the contact carrier 12. In this position, the front region 36 and at least the annular groove 38 of the contact region 32 in the direction of the front side 15 of the contact carrier 12 over the widened region in the opening 14 a, so that the ring 34 from the front side 15 of the contact carrier 12 in the opening 14 a can be inserted and pushed over the front portion 36 in the annular groove 38 and pressed.
  • the ring 34 prevents retraction of the connecting bolt 30 from the opening 14a, 14b.
  • the contact region 32 and an opening 44 along the longitudinal axis 46 of the connecting bolt 30 each have a round cross section, wherein in the opening 44, an internal thread is provided.
  • a connection region of the contact element 84 with a round cross-section is screwed into this opening 44, so that an electrical connection is established between the connection region of the contact element 84 and the first connection region 32 of the connection bolt 30.
  • no thread is present in the opening 44 and the outer diameter of the connecting region of the contact element 84 and the inner diameter of the opening 44 of the connecting bolt 30 have complementary fitting dimensions, so that a frictional connection between the contact element and terminal bolt 30 after pressing the contact element 84 in the connecting bolt 30 is generated.
  • the outer diameter of the contact element 84 is slightly larger than the inner diameter of the opening 44.
  • a second contact region 48 is arranged, which is designed as a solder connection for a connecting wire.
  • FIG. 3 the connecting bolt 50 is shown in FIG. 1.
  • the terminal bolt 50 has a front contact portion 52 which is inserted in the same manner as the contact portion 32 in the opening 14 b of the contact carrier 12.
  • an opening 54 is introduced similar to the opening 44 of FIG. 2, in which a contact element in the same manner as described in connection with FIG. 2 and shown in Fig. 1 can be used.
  • a second contact region 58 which protrudes from the rear side of the contact carrier 12, adjoins a central region 56 of the connecting bolt 50 to the rear. This second contact region 58 is designed as a screw connection and provided with an external thread.
  • the connecting bolts 30 and 50 according to FIGS. 2 and 3 have the disadvantage that the assembly of these connecting bolts 30, 50 is expensive and removal of the connecting bolts 30, 50 is possible only with great effort or with a destruction of the connecting bolt 30, 50.
  • the fixation of the contact elements 84, 85 used in the connecting pins 30, 50 takes place in the prior art by directly screwing the contact elements 84, 85 with retaining nuts in the contact carrier 12. Thereby are a simple removal and a simple replacement of these contact elements of the front of the contact carrier 12th not possible.
  • FIG. 4 is a sectional view of a connecting bolt 16 according to the invention is shown.
  • the terminal bolt 16 similar to the terminal bolts 30 and 50, has a central area 18 from which a first connection area 60 extends forwardly.
  • This connection region 60 is inserted into an opening 14 a, 14 b in the back 13 of the contact carrier 12.
  • a blind bore 62 is introduced along the longitudinal axis of the connecting bolt 16 into the central region 18.
  • the bore 62 has a larger diameter, whereby the insertion of a contact element 84, 85 in the opening 68 produced by the bore 62 in the end face 66 of the first connecting portion 60 opening 68, a contact element 84, 85 can be easily inserted, the one at least has slightly smaller diameter than the opening 68.
  • a thread is introduced into the bore 62 into which the external thread of a contact element 84, 85 is screwed.
  • the first connection area 60 has a circular cross-section, the outer diameter of which increases continuously from the front side 66 ago in the front region 64 and gradually reduced after a short section with a constant outer diameter. By this step-like reduction of the outer diameter, a kind of barbs is formed, which can engage in a projection provided in the contact carrier when the terminal bolt 16 is inserted into the opening 14a, 14b of the contact carrier 12.
  • the first connection region 60 is elastically deformed between the barb-shaped portion 64 and the central portion 18 upon insertion of the first connection portion 60 into the contact carrier 12.
  • the barb-shaped locking elements are bent inwardly toward the bore 62.
  • the elastic deformation causes a restoring force by which engage the barb-shaped front portion 64 of each of the four locking elements in an edge created by a step-like increase in the inner diameter in the opening 14a, 14b.
  • the central region 18 of the connecting bolt 16 has a rectangular, preferably a square cross-section.
  • the mounting of the connecting bolt 16 in the contact carrier 12 is carried out such that the first connecting portion 60 is inserted into the opening 14a, 14b of the contact carrier 12 from the rear side 13 ago, wherein the four locking elements by the provided in the front portion 64 bevels during insertion after be compressed inside the opening 68 and deformed.
  • the slots 72 and the first connection region 60 are dimensioned such that the latching elements are deformable so far that the widest point of the first connection region 60 in the elastically deformed state can be introduced into the opening 14a, 14b.
  • the connecting bolt 16 is pushed so far into the opening 14a, 14b until the front barb-shaped region 64 of the locking elements reaches into the region of the opening 14a, 14b with the stepwise enlarged inner diameter.
  • the barb-shaped regions of the latching elements are pressed into the region with increased inner diameter by the restoring force already mentioned, so that the first connection region 60 then substantially has the shape and position shown in FIG. 4 again in the inserted state.
  • the connecting bolt 16 can not be easily pulled out of the contact carrier 12 to the rear.
  • the connecting bolt 16 can only be removed when the locking elements using a introduced through the opening 14a, 14b in the front 15 of the contact carrier 12 tool pushed out of the detent area and the connecting pin 16 to the rear of the Rear 13 of the contact carrier 12 is pulled or with the help of the tool at least a piece of the back 13 of the contact carrier 12 is pushed out.
  • the latching region has preferably been produced by the step-like enlargement of the diameter of the opening 14a, 14b into which the latching elements of the inserted connecting bolt 16 can engage.
  • Fig. 5 is a plan view of the connecting bolt 16 of FIG. 4 is shown in a non-sectional view. Invisible body edges are represented by dashed lines.
  • Fig. 6 is a view of the end face 66 of the connecting bolt 16 is shown.
  • the slots indicated generally at 72 in Figs. 4 and 5 are designated by the reference numerals 72a to 72d.
  • FIG. 6 this also clearly shows that four substantially similar locking elements 73a to 73d are formed by the slots 72a to 72d.
  • the locking elements 73a to 73d are pressed inward in the direction of the arrows P1 to P4 in the bore 62, so that the opening 68 during insertion of the connecting bolt 16 into the opening 14 is smaller.
  • the original size of the opening 68 is restored.
  • a section of the contact carrier 12 is shown in a sectional view.
  • groove-shaped slots 80 are introduced, which have a height such that a portion of the central portion 18 of the connecting bolt 16 can be inserted into one of the slots 80.
  • Two side surfaces of the central portion 18 are aligned parallel to the side surfaces of the slot 80.
  • connection between the contact element 84 and the connecting bolt 16 can be released or impaired by a rotation of the connecting bolt 16.
  • the terminal bolt 16 is also held against rotation to prevent inadvertent rotation of the connecting bolt 16 when screwing and unscrewing the contact element 84 into or out of the provided in the bore 62 thread.
  • a hexagonal peripheral region is formed in a region of the contact element 84 into which a suitable tool for rotating the contact element 84 can engage.
  • the first connection region 60 and / or the central region 18 may also have a non-circular cross-sectional shape, in particular a rectangular outer cross-sectional shape or a triangular outer cross-sectional shape.
  • the cross-sectional shapes of the outer cross section of the first connecting portion 60 and the inner cross section of the opening 14a, 14b substantially coincide.
  • slots 80 may be provided in other embodiments as a stop serving projections or the outer cross-section adapted recess on or in the back 13 of the contact carrier 12.
  • the section of the contact carrier 12 shown in FIG. 7 comprises three openings 14a, 14b, 14c, each having a stepped circular cross-section, which has two step-like widenings from the rear side 13 of the contact carrier 12.
  • the terminal bolt 16 is inserted, with the first connection portion 60 inserted into the opening 14b, so that the latch members 73a to 73d engage with the projection formed at the transition 82 at the first stage.
  • This projection serves as a rest area.
  • the contact element 84 is inserted from the front side 15 of the contact carrier 12 ago in the opening 14b.
  • the rear contact region of the contact element 84 is inserted into the opening 68 of the connecting bolt 16 and screwed into the existing in the bore 62 of the connecting bolt 16 thread.
  • the locking elements 73a to 73d are prevented from being deformed again so far elastically to the longitudinal axis of the connecting bolt 16, that the terminal bolt 16 can be pulled backwards out of the contact carrier 12.
  • the connecting bolt 16 is secured by inserting the contact element 84 in the contact carrier 12.
  • the contact element 84 at least one spring element is present, which exerts a contact pressure force on a contact region 86 of the contact element 84, is pressed by the contact region 86 on a contact surface of a complementary connector arrangement.
  • a contact element 84 is for example in the patent applications DE 101 43 200 A1 and DE 102 30 379 A1 known. The disclosure and detailed description of the contact elements in these patent applications are hereby incorporated by reference into the present specification.
  • Fig. 8 is a view of the back 13 of the contact carrier 12 is shown, in which the arrangement of the slots 80 are shown clearly.
  • the slots are formed as transverse grooves on the back 13 of the contact carrier 12.
  • the connecting bolt 16 is preferably made of a suitable electrically conductive material, such as brass, copper or iron and, if necessary, protected by a suitable coating, in particular by tinning or galvanizing, from corrosion.
  • the second connection region 20 of the connecting bolt 16 can also be designed as a screw connection, as a clamping connection, in particular as a spring clamp. Furthermore, the second connection region 20 may alternatively be formed as a crimp or plug connection.
  • the first front connection region 60 is mushroom-shaped in the front region 64.
  • a suitable tool is preferably inserted into the opening 14b from the front side 15 of the contact carrier 12, which engages the oblique surfaces of the barb-like mushroom-shaped portion and pushes the individual locking elements 63a to 63d inwards that the barb-shaped latching elements no longer engage in the projections of the stepped widening of the opening 14a, 14b, 14c in the contact carrier 12.
  • all terminal pins 16 which are connected to the contact carrier 12, similar and have an identical structure.
  • the connection of cables to electrical contacts 84 is considerably simplified, wherein the electrical contact 84 is fixed in the contact carrier 12 by means of the connecting bolt 16.
  • Such contact arrangements by means of a connecting bolt 16 are suitable for the transmission of signals and currents between cables and electrical contacts, as e.g. can be used advantageously in electrical connectors in the field of rail vehicle technology.
  • the contact 84 can be easily replaced from the front of the connector assembly by the contact element 84 is unscrewed from the front of the connector assembly by means of a tool and is replaced by a further contact element 84, from the front of the contact carrier 12 is inserted into the opening 14a, 14b, 14c and screwed with the aid of the tool in the connecting bolt 16.
  • the connecting bolt 16 By screwing in the contact element 84, the mushroom head, i. the locking elements, the connecting bolt 16 is fixed in position, so that an axial displacement only at a small tolerance range is possible and a release or slipping out of the connecting bolt 16 is prevented from the opening 14.
  • no internal thread can be provided in the connecting bolt 16, in which case the inner diameter of the bore 62 is at least in a range smaller than the outer diameter of the introduced into the bore 62 connecting portion of the contact element 84, whereby the locking elements 73a to 73d are elastically deformed and by the Restoring force of the elastically deformed locking elements 73a to 73d a non-positive connection between the connecting pin 16 and contact element 84 is generated.
  • this non-positive connection is achieved that the contact is not under vibration effects can solve the connection pin 16. Even with a screwed into the terminal bolt 16 contact element 84 is prevented by the slotted locking elements, between which the contact region of the contact element 84 is received, that the contact element 84 can be released from the terminal bolt 16 upon vibration influences.
  • the connecting bolt 16 By the connecting bolt 16 according to the invention a simple and quick installation of the connecting bolt 16 in the contact carrier 12 and a quick and easy installation of the contact element 84 in the connecting bolt 16 is achieved. Furthermore, a secure contact between terminal pin 16 and contact element 84 is achieved with minimum contact resistance and permanently ensured. By the connecting bolt 16 according to the invention also a secure fixation of the contact elements 84 in the contact carrier 12 is achieved, which is maintained even with vibration influences. Further, a simple disassembly of the connecting bolt 16, in particular by means of a disassembly tool, possible, whereby damage or destruction of the contact carrier 12 and the connecting bolt 16 is prevented. The terminal bolt 16 can thus be used again after removal from the contact carrier 12, in particular, used again in the same contact carrier are. It is particularly advantageous if a connecting wire is already connected to the connecting bolt 16 and the connecting bolt 16 is to be inserted into another opening 14a, 14b, 14c of the contact carrier 12.
  • the contact carrier 12 and projecting from the back 13 terminal pins 16 are surrounded by a housing of the connector assembly for mechanical protection and protection from environmental influences.
  • the front portion of the contact elements 84 remains for complementary contact elements of a complementary connector assembly accessible.
  • connection bolt 16 which contains at least one latching element which can latch into a latching region of the contact carrier 12. It is advantageous if the connecting bolt 16 has two, three or four locking elements 73a to 73d, which are arranged and designed so that they can be solved with the aid of a tool in only one operation from the locking area / the locking areas.

Landscapes

  • Connector Housings Or Holding Contact Members (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connections By Means Of Piercing Elements, Nuts, Or Screws (AREA)
EP06118705.0A 2005-08-10 2006-08-10 Ensemble de connecteurs pour construire et séparer au moins une liaison électrique avec un autre ensemble de connecteurs complémentaires Active EP1753089B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL06118705T PL1753089T3 (pl) 2005-08-10 2006-08-10 Wtykowy zespół połączeniowy do wytwarzania i przerywania co najmniej jednego połączenia elektrycznego z innym komplementarnym wtykowym zespołem połączeniowym

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102005037789A DE102005037789A1 (de) 2005-08-10 2005-08-10 Steckverbinderanordnung zum Herstellen und Trennen mindestens einer elektrischen Verbindung mit einer weiteren komplementären Steckverbinderanordnung

Publications (3)

Publication Number Publication Date
EP1753089A2 true EP1753089A2 (fr) 2007-02-14
EP1753089A3 EP1753089A3 (fr) 2007-03-14
EP1753089B1 EP1753089B1 (fr) 2015-10-07

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Family Applications (1)

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EP06118705.0A Active EP1753089B1 (fr) 2005-08-10 2006-08-10 Ensemble de connecteurs pour construire et séparer au moins une liaison électrique avec un autre ensemble de connecteurs complémentaires

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Country Link
EP (1) EP1753089B1 (fr)
DE (1) DE102005037789A1 (fr)
ES (1) ES2552637T3 (fr)
PL (1) PL1753089T3 (fr)

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WO2008100221A1 (fr) * 2007-02-15 2008-08-21 Dellner Couplers Ab Connecteur et bloc de raccordement dans un attelage de train agencé pour raccordement de véhicules ferroviaires
DE102015107230A1 (de) 2015-05-08 2016-11-10 Voith Patent Gmbh Schnittstellenanordnung für eine Daten-, Signal- und/oder Sprachübertragung

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DE202017101060U1 (de) * 2017-02-24 2018-05-25 Fct Electronic Gmbh Steckverbinder, insbesondere für eine Hochstromanwendung

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DE2810740A1 (de) * 1978-03-13 1979-09-20 Fabeg Gmbh Kontaktanordnung fuer fahrzeugkupplungen
EP0193784A2 (fr) * 1985-03-04 1986-09-10 Siemens Aktiengesellschaft Dispositif de raccordement pour une machine à haute tension

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DE10143200A1 (de) * 2001-09-04 2003-04-03 Era Contact Gmbh Elektrischer Druckkontakt
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Publication number Priority date Publication date Assignee Title
US1390607A (en) * 1919-12-10 1921-09-13 Westinghouse Air Brake Co Electric contact device
DE2208956A1 (de) * 1972-02-25 1973-08-30 Fabeg Gmbh Kontaktanordnung fuer fahrzeugkupplungen, klemmleisten und dgl
DE2723731A1 (de) * 1977-05-26 1978-11-30 Bbc Brown Boveri & Cie Federdruckkontakt
DE2810740A1 (de) * 1978-03-13 1979-09-20 Fabeg Gmbh Kontaktanordnung fuer fahrzeugkupplungen
EP0193784A2 (fr) * 1985-03-04 1986-09-10 Siemens Aktiengesellschaft Dispositif de raccordement pour une machine à haute tension

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008100221A1 (fr) * 2007-02-15 2008-08-21 Dellner Couplers Ab Connecteur et bloc de raccordement dans un attelage de train agencé pour raccordement de véhicules ferroviaires
JP2010519100A (ja) * 2007-02-15 2010-06-03 デルネル・クープレル・アクチボラグ 鉄道車両の連結のために構成された列車連結器のコネクタ及び連結ブロック
CN101626936B (zh) * 2007-02-15 2011-12-28 德尔纳车钩公司 用于连接铁路车辆的火车车钩中的连接器和连接模块
RU2464191C2 (ru) * 2007-02-15 2012-10-20 Деллнер Каплерс АБ Соединитель и соединительная панель в автосцепке поезда, обеспечивающие возможность соединения рельсовых транспортных средств
US8348074B2 (en) 2007-02-15 2013-01-08 Dellner Couplers Ab Connector and connection block in a train coupler arranged for connection of a rail vehicles
AU2008216907B2 (en) * 2007-02-15 2013-10-31 Dellner Couplers Ab Connector and connection block in a train coupler arranged for connection of rail vehicles
KR101461249B1 (ko) * 2007-02-15 2014-11-12 델러 커플러스 아베 철도 차량들의 연결을 위해 배치된 열차 커플러 내의 커넥터 및 연결 블록
DE102015107230A1 (de) 2015-05-08 2016-11-10 Voith Patent Gmbh Schnittstellenanordnung für eine Daten-, Signal- und/oder Sprachübertragung

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PL1753089T3 (pl) 2016-04-29
EP1753089B1 (fr) 2015-10-07
ES2552637T3 (es) 2015-12-01
DE102005037789A1 (de) 2007-02-15

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