EP3139450B1 - Boitier pour un connecteur a fiche - Google Patents

Boitier pour un connecteur a fiche Download PDF

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Publication number
EP3139450B1
EP3139450B1 EP16001765.3A EP16001765A EP3139450B1 EP 3139450 B1 EP3139450 B1 EP 3139450B1 EP 16001765 A EP16001765 A EP 16001765A EP 3139450 B1 EP3139450 B1 EP 3139450B1
Authority
EP
European Patent Office
Prior art keywords
housing part
interior
connector
exterior housing
exterior
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
EP16001765.3A
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German (de)
English (en)
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EP3139450A1 (fr
Inventor
Markus Naujoks
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.)
Lapp Engineering AG
Original Assignee
Lapp Engineering AG
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 Lapp Engineering AG filed Critical Lapp Engineering AG
Publication of EP3139450A1 publication Critical patent/EP3139450A1/fr
Application granted granted Critical
Publication of EP3139450B1 publication Critical patent/EP3139450B1/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
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/64Means for preventing incorrect coupling
    • 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
    • H01R13/46Bases; Cases
    • H01R13/502Bases; Cases composed of different pieces
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R43/00Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
    • H01R43/18Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for manufacturing bases or cases for contact members

Definitions

  • the following is a housing of a connector for energy or signal-carrying conductors presented.
  • the connector is advantageously used to transmit electrical signals.
  • Such connectors are for example from the EP 2 736 124 A1 , the DE 10 2011 076 881 A1 , the DE 20 2011 101 574 U1 and the DE 20 2011 103 702 U1 known.
  • document DE 10 2011 076 881 A1 discloses an electrical connector, preferably for the automotive sector, with inner and outer housing parts, as well as each Opposite shells or half-shell elements which are positioned by coding.
  • document DE 20 2011 101 574 U1 discloses a connector consisting of two housing parts which are screwed together. The insulating body, which also serves as a contact body, and the contacts are seated in the second housing part, wherein the contact body is introduced into an insulating sleeve.
  • the US 4,687,279 A relates to a microwave coaxial connector assembly to be used in the range of 18 GHz and to be compatible with different connectors.
  • Connectors can be configured both in round design and in rectangular design.
  • a housing made of metal or plastic.
  • the insulating body serves to receive at least one electrical contact element.
  • Contact elements can be made by die-casting or machining z. B. made of brass, in some variants, an additional gold coating protects them from corrosion.
  • the contact elements are designed as contact pins or as contact sockets. If such a connector is connected to a corresponding mating connector, then there is an electrical connection via the contact pins or contact sockets.
  • the connectors presented here can be mounted both on the loose end of a signal cable as well as for fixed mounting on a parent construction, for example in a housing wall, be provided.
  • the housing is made by a die-casting process of zinc or aluminum.
  • the method produces delicate surfaces with coding formations and geometries.
  • no further manufacturing process possibly with the exception of a deburring step, is necessary for this purpose.
  • Another positive aspect is the high possible number of castings per mold.
  • the connectors are exposed to harmful environmental influences, such as moisture and / or corrosive substances.
  • the life of a housing drops significantly due to corrosion, exposure to chemicals and / or mechanical wear.
  • Surface nickel plating achieves greater resistance to corrosion and mechanical wear, with a completely closed nickel coating necessary to protect the underlying layer from corrosion.
  • the use of stainless steel (eg, 1.4440) or a superalloy (eg, a Ni-Mo-Cr based alloy) as the package material alleviates this problem. These materials have higher resistance to corrosion and corrosive substances as well as advantageous mechanical properties in terms of hardness and strength.
  • a disadvantage of the known solution of a stainless steel housing is the complex production.
  • the production of delicate coded formations and geometries for fixing the insulator requires a step-by-step manufacturing process.
  • an original manufacturing process produces the basic form.
  • the coding formations and geometries by a variety of separating processes, such as drilling or milling, incorporated into the housing of the connector. For this reason, typical cast geometries made of stainless steel are not economical to make.
  • Connectors of the type presented here for energy and / or signal-carrying conductors comprise a housing, which has an inner and an outer housing part which can be separated from each other, and an insulating body inserted into the inner housing part for receiving at least one contact element.
  • the outer housing part is made of a material adapted to the environmental influences.
  • the inner housing part has at least one coding formation and geometry for receiving the insulating body. Only the outer housing part is exposed after the joining of a connector with a mating connector environmental influences.
  • the inner housing part is cylindrical and has a material which accommodates at least one Codierformation and geometry, which serves to receive the insulator, by a one-stage manufacturing process.
  • the latter is, for example, a die-casting method, wherein additional production steps (eg deburring) are not excluded.
  • the inner housing part and the at least one Codierformation and geometry by a separating manufacturing process, such as milling, created.
  • the at least one coding formation and geometry are located on the inner wall of the inner housing part.
  • the outer housing part may be formed as a cylindrical shape or as an angle tube, wherein an original forming manufacturing process (eg casting) produces the basic shape of the outer housing part. There is a possibility that other manufacturing processes or combinations of other manufacturing processes may be used.
  • the cylindrical outer housing part is hollow in the interior and has an opening on the base and top surfaces. At least one of these openings is designed to receive the inner housing part.
  • the outer housing part preferably contains on the inner wall only rotationally symmetrical geometries relative to the central longitudinal axis of the outer housing part, which are advantageously produced by a turning process, whereby other separating manufacturing processes (eg drilling) can not be ruled out.
  • the at least one rotationally symmetrical geometry can be introduced after the production of the outer housing part in this, but also after the inner and outer housing part are already connected to each other. This is understood to mean rotationally symmetric, that the outer housing part is mapped after rotation about its central longitudinal axis by an arbitrary angle to itself.
  • This at least one geometry may be a protrusion or recess which is machined along the inner circumference of the outer housing part. Accordingly, at least one complementary counter-geometry is incorporated on the circumference of the inner housing part.
  • the openings can also be created by a separating manufacturing process.
  • the outer housing part has an inner lip. Behind this lip, facing the electrical conductor, sitting in the assembled state, the inner housing part.
  • a joining method connects the inner and outer housing parts with each other. It should be ensured that this connection is electrically conductive and has sufficient contact to ensure the connection of the protective conductor.
  • the electrical conductivity of the inner housing part is greater than that of the outer housing part. Furthermore, the components located inside should be protected against twisting.
  • the outer housing part and the inner housing part of the connector structurally separate from each other and each made of a material adapted to the respective environmental influences. Because of this separation, the production of the connector is simplified because the at least one coding formation and geometry are not associated with the outer housing part. These are produced by a manufacturing process, for. B. a die-casting process with a downstream Entgratungs intimid or a one-stage separating manufacturing process, incorporated into the inner housing part. Furthermore, the application requirements determine the material of the outer housing part, and in response to changing demands, the outer housing part can be replaced.
  • the durability of the connector is increased and the manufacturing process simplified. This increases flexibility and enables a significant reduction in cost-intensive storage options. A large number of applications is given because the outer housing part may have different materials.
  • the inner housing part is advantageously made of zinc or a zinc alloy, in particular by a urformendes manufacturing process such as die casting or a machining process.
  • the outer housing part is preferably made of stainless steel (eg 1.4440) or a superalloy (eg Ni-Mo-Cr based), in particular by the combination of an original forming and a separating manufacturing process, wherein it is not excluded that too other materials and manufacturing processes can be used.
  • stainless steel eg 1.4440
  • superalloy eg Ni-Mo-Cr based
  • An embodiment of the inner housing part is presented in which at least one coding formation and geometry are incorporated in the inner housing part.
  • An electrical connector 0a, 0b comprises an inner housing part 1a, 1b and an outer housing part 2a, 2b having a central longitudinal axis 13a, 13b and an insulating body (not shown here).
  • the inner housing part 1a, 1b is advantageously made of zinc or a zinc alloy, for example by a die-casting process, wherein the outer housing part 2a, 2b is made of a stainless steel and is made by a combination of ur- and forming and separating manufacturing process ,
  • the inner housing part 1a, 1b made of brass, preferably by a machining process, in particular a turning or milling process.
  • the insulating body is made of plastic, preferably by an injection molding process.
  • the different materials of the inner 1a, 1b and outer casing 2a, 2b are based on the different resistance to corrosion, corrosive substances and / or mechanical wear as well as the processability by means of a predetermined manufacturing process.
  • the connector 0a, 0b is equipped with either a socket or a plug.
  • the inner housing part 1a, 1b through the rear housing side 15a, 15b in the outer housing part 2a, 2b to use.
  • the outer housing part 2a, 2b may have on the inner wall at least one rotationally symmetrical geometry to the central longitudinal axis.
  • This at least one geometry may be a raised or indentation, which is incorporated along the inner circumference of the outer housing part 2a, 2b and engages in a complementary counter-geometry on the circumference of the inner housing part 1a, 1b.
  • the inner housing part 1a, 1b has a cylindrical shape and has on the inner wall at least one coding formation and geometry 4a, 4b.
  • the at least one Codierformation is formed so that the connector when mating with a mating connector engages with a complementary Jacobcodierformation.
  • the at least one geometry 4a, 4b serves, inter alia, for fastening and / or alignment of the insulating body. For this purpose, this has a predetermined contour on its outer shell, which engages in the proper insertion of the insulating body in the inner housing part 1a, 1b, in a formed on the inner wall of the inner housing part 1a, 1b geometry.
  • the at least one geometry may also be formed as one or more tabs 9a, 9b or pockets 10.
  • this spring elements 11 for connection of the protective conductor to the electrically conductive inner housing part 1a, 1b, intervene.
  • the inner contour is adapted to the inner life 8 of the connector 0a, 0b.
  • the outer jacket 7a, 7b of the inner housing part 1a, 1b is configured such that the inner housing part 1a, 1b can be inserted into a predetermined area 6a, 6b, in which the inner contour of the outer housing part 2a, 2b is designed to be identical.
  • the cylindrical outer housing part 2a, 2b has on the inner wall only rotationally symmetrical geometries 5a, 5b, which are created by a turning process, although another separating manufacturing process is possible.
  • the inner contour of the outer housing part 2a, 2b is formed in a predetermined area 6a, 6b to receive the inner housing part 1a, 1b.
  • One way to connect the inner housing part 1a, 1b and outer housing part 2a, 2b is by means of pressing or pressing. Furthermore, the inner 1a, 1b and outer housing part 2a, 2b can be connected for example by a bonding adhesive, so that a final assembly at the site is possible. It must be an electrically conductive bonding adhesive, which in turn can be solved by a solvent. The solvent should advantageously not attack the insulator. The replacement of the outer housing part on site opens the possibility to react to changing conditions of use.
  • the at least one coding formation is incorporated in the inner housing part 1a, 1b, the radial orientation of the inner housing part 1a, 1b with respect to the outer housing part 2a, 2b is not a relevant design criterion. Nevertheless, at least one rotationally symmetric geometry can be attached to the inner wall of the outer housing part 2a, 2b, which defines a predetermined orientation of the inner housing part 1a, 1b.
  • a lip 18a, 18b is provided, which is attached to the inner wall of the outer housing part 2a, 2b. After insertion of the inner housing part 1a, 1b in the outer housing part 2a, 2b, the inner housing part 1a, 1b behind the lip 18a, 18b, facing the electrical conductor.
  • the lip 18a, 18b prevents too much insertion of the inner housing part 1a, 1b in the outer housing part 2a, 2b and stabilizes the position of the inner housing part 1a, 1b, in particular during the pressing of the two housing parts.
  • a thread 16a, 16b On the outside of the outer housing part is a thread 16a, 16b, which corresponds to the internal thread of a cap nut 19a, 19b, which serves for fastening the (not shown here) electrical conductor in the form of a cable.
  • the specific design of the cap nut and the attachment of the (not shown here) electrical conductor inside the housing are not important for the present connector.
  • the thread 16a, 16b can also be connected to a wall of an electrical appliance or a control cabinet.
  • Fig. 2 shows a sectional view of the electrical connector Fig. 1 along the points AA.
  • the inner housing part 1a, 1b is inserted through the rear housing side 15a, 15b of the outer housing part 2a, 2b. Thereafter, this sits behind a lip 18a, 18b, facing the electrical conductor.
  • the lip 18a, 18b is embedded in the outer housing part 2a, 2b.
  • the inner contour of the outer housing part 2a, 2b for receiving the inner housing part 1a, 1b is formed.
  • the one or more part insulator (not shown here) can be inserted into the inner housing part 1a, 1b both through the rear housing side 15a, 15b and through the front housing side 14a, 14b.
  • the rear housing side 15a, 15b has an external thread 16a, 16b, which serves to receive a cap nut 19a, 19b or another element with complementary internal thread.
  • the cap nut 19a, 19b fixes the (not shown here) electrical conductor in the form of a cable.
  • the outer shell of the outer housing part 2b comprises a thread 17b on the front housing side 14b, for receiving a mating connector 0a. Any threads were preferably attached by an additional separating manufacturing step.
  • Fig. 3 shows a sectional view taken along the axes AA in Fig. 1 , a connector 0a, 0b in the final assembly state in conjunction with a mating connector in the final assembly state.
  • final assembly state means that the inner housing part 1a, 1b and the outer housing part 2a, 2b are joined together in an electrically conductive manner.
  • the connector 0b is a plug and the mating connector 0a is a socket.
  • To the outer housing part 2a of the mating connector is rotatable about the central longitudinal axis stainless steel sleeve 17a with an internal thread, which is opposite to the external thread on the front side of the housing 14b of the connector 2b attached.
  • this stainless steel sleeve 17a is not important for the present connector 0a, 0b. It should be noted that the sleeve 17a preferably comprises the material of the outer housing part 2a.
  • the electrical connection of the connector 0b with the mating connector 0a is by the mating and the subsequent Screwed together using the stainless steel sleeve 17a achieved. Due to the Codierformationen on the inner wall of the inner housing part 1a, 1b only a predetermined arrangement between the electrical contact pins and contact sockets is possible.
  • the inner housing parts 1a, 1b are behind the plane 3, the respective electrical conductor facing, so that only the outer housing part 2a, 2b harmful environmental influences, such. As moisture or corrosive substances is exposed.
  • the rear housing side 15a, 15b of the connector and the mating connector is provided with a cap nut 19a, 19b made of stainless steel and a seal to prevent the ingress of moisture or corrosive substances.
  • the rear housing side 15a, 15b may also be connected directly to a wall of a cabinet, a housing or a machine.
  • FIG. 3 includes the inner surface 8 of the connector 0a, 0b further elements that serve to secure the electrical conductor in the housing. To ensure this, the inner housing part 1a, 1b matched to the inner life 8 of the connector 0a, 0b.
  • present connector 0a, 0b is not limited to the illustrated round design. Furthermore, different material combinations for different requirement profiles and manufacturing processes can be used.

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Manufacturing Of Electrical Connectors (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Claims (9)

  1. Connecteur enfichable électrique (0a, 0b) comportant au moins une fiche ou une douille pour un conducteur conduisant des signaux, comprenant un boîtier qui présente une partie intérieure (1a, 1b) et une partie extérieure (2a, 2b) de boîtier qui peuvent être séparées l'une de l'autre, ainsi qu'un corps isolant reçu à l'intérieur de la partie intérieure de boîtier (1a, 1b) pour au moins un élément de contact qui est conçu pour être raccordé à au moins un élément de contact complémentaire d'un connecteur enfichable homologue (0a, 0b), dans lequel
    - la partie extérieure de boîtier (2a, 2b) présente
    ∘ sur la paroi intérieure au moins une géométrie à symétrie de révolution par rapport à son axe longitudinal médian,
    ∘ une lèvre intérieure (18a, 18b) et
    ∘ une zone (6a, 6b) destinée à recevoir la partie intérieure de boîtier (1a, 1b),
    - la partie intérieure de boîtier (1a, 1b)
    ° présente au moins une géométrie (4a, 4b) destinée à recevoir et fixer le corps isolant et une formation de codage qui est conçue et destinée à correspondre à au moins une formation de codage complémentaire d'un connecteur enfichable homologue,
    ∘ est complètement entourée par la partie extérieure de boîtier (2a, 2b) et
    ∘ est insérée dans la partie extérieure de boîtier (2a, 2b) et se trouve derrière sa lèvre intérieure (18a, 18b) en étant tournée vers le conducteur électrique et
    - la partie extérieure de boîtier (2a, 2b) et la partie intérieure de boîtier (1a, 1b) sont électriquement conductrices et assemblées de manière à exclure toute rotation,
    la partie extérieure de boîtier (2a, 2b) est fabriquée en acier inoxydable ou en superalliage,
    ladite au moins une géométrie à symétrie de révolution de la partie extérieure de boîtier (2a, 2b) est une élévation ou une dépression usinée le long de la circonférence intérieure de la partie extérieure de boîtier (2a, 2b) ; et
    après un assemblage du connecteur enfichable avec un connecteur enfichable homologue, la partie intérieure de boîtier (1a, 1b) est protégée derrière un plan (3) d'orientation transversale perpendiculairement à l'axe longitudinal médian à l'intérieur de la partie extérieure de boîtier (2a, 2b) et tournée vers le conducteur électrique respectif, et seule la partie extérieure de boîtier (2a, 2b) est exposée aux influences nuisibles de l'environnement,
    caractérisé en ce que
    la partie intérieure de boîtier (1a, 1b) présente une conductivité électrique plus élevée que la partie extérieure de boîtier (2a, 2b) et
    les géométries de la partie intérieure de boîtier (1a, 1b) présentent des languettes (9a, 9b) et/ou des poches (10) pour la fixation et/ou l'alignement du corps isolant ou d'éléments élastiques (11) pour le raccordement du conducteur de protection à la partie intérieure de boîtier (1a, 1b).
  2. Connecteur enfichable électrique (0a, 0b) selon la revendication 1, dans lequel les parties intérieure (1a, 1b) et extérieure (2a, 2b) de boîtier
    • présentent des matériaux présentant une résistance différente à la corrosion, aux substances corrosives et/ou à l'usure et
    • présentent différents matériaux électroconducteurs.
  3. Connecteur enfichable électrique (0a, 0b) selon la revendication 1, dans lequel la partie intérieure de boîtier (1a, 1b) est en étain ou en aluminium.
  4. Procédé de fabrication d'un connecteur enfichable électrique (0a, 0b) selon l'une des revendications 1 à 3, comprenant les étapes consistant à :
    fabriquer la partie extérieure de boîtier (2a, 2b) par une combinaison de procédés de fabrication par formage primaire et secondaire ainsi que de procédés de fabrication par séparation ;
    produire ladite au moins une géométrie à symétrie de révolution sur la paroi intérieure de la partie extérieure de boîtier (2a, 2b) par un procédé de fabrication par séparation ;
    fabriquer la partie intérieure de boîtier (1a, 1b) par un procédé de fabrication par formage primaire ; et
    relier les parties intérieure (1a, 1b) et extérieure (2a, 2b) de boîtier par un procédé d'assemblage ; dans lequel ladite au moins une géométrie à symétrie de révolution est produite après la liaison des parties intérieure (1a, 1b) et extérieure (2a, 2b) de boîtier,
    la partie extérieure de boîtier (2a, 2b) est fabriquée en acier inoxydable ou en superalliage, et
    un matériau de conductivité électrique plus élevée est utilisé pour la partie intérieure de boîtier (1a, 1b) que pour la partie extérieure de boîtier (2a, 2b),
    une élévation ou une dépression est utilisée en tant que ladite au moins une géométrie à symétrie de révolution de la partie extérieure de boîtier (2a, 2b), ladite élévation ou dépression étant usinée le long de la circonférence intérieure de la partie extérieure de boîtier (2a, 2b),
    les géométries de la partie intérieure de boîtier (1a, 1b) sont pourvues de languettes (9a, 9b) et/ou de poches (10) pour la fixation et/ou l'alignement du corps isolant ou d'éléments élastiques (11) pour le raccordement du conducteur de protection à la partie intérieure de boîtier (1a, 1b) et
    la partie intérieure de boîtier (1a, 1b) est conçue de telle sorte que, après que le connecteur enfichable a été assemblé avec un connecteur enfichable homologue, elle est protégée derrière un plan (3) d'orientation transversale perpendiculairement à l'axe longitudinal médian à l'intérieur de la partie extérieure de boîtier (2a, 2b) et tournée vers le conducteur électrique respectif, et seule la partie extérieure de boîtier (2a, 2b) est exposée aux influences nuisibles de l'environnement.
  5. Procédé de fabrication d'un connecteur enfichable électrique (0a, 0b) selon la revendication 4, dans lequel le procédé de fabrication par formage primaire est un procédé de moulage sous pression.
  6. Procédé de fabrication d'un connecteur enfichable électrique (0a, 0b) selon la revendication 4, dans lequel le procédé d'assemblage est un procédé de collage ou un pressage ou un sertissage.
  7. Procédé de fabrication d'un connecteur enfichable électrique (0a, 0b) selon la revendication 4, dans lequel le procédé de fabrication par séparation est un procédé rotatif.
  8. Procédé de fabrication d'un connecteur enfichable électrique (0a, 0b) selon la revendication 4, dans lequel au moins une formation de codage et/ou une géométrie (4a, 4b) est usinée dans la partie intérieure de boîtier (1a, 1b) par un procédé de fabrication par séparation.
  9. Procédé de fabrication d'un connecteur enfichable électrique (0a, 0b) selon la revendication 8, dans lequel le procédé de fabrication par séparation est un procédé de fraisage.
EP16001765.3A 2015-09-03 2016-08-09 Boitier pour un connecteur a fiche Active EP3139450B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102015011528.6A DE102015011528B3 (de) 2015-09-03 2015-09-03 Elektrischer Steckverbinder und Verfahren zur Herstellung desselben

Publications (2)

Publication Number Publication Date
EP3139450A1 EP3139450A1 (fr) 2017-03-08
EP3139450B1 true EP3139450B1 (fr) 2019-03-27

Family

ID=56617975

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16001765.3A Active EP3139450B1 (fr) 2015-09-03 2016-08-09 Boitier pour un connecteur a fiche

Country Status (2)

Country Link
EP (1) EP3139450B1 (fr)
DE (1) DE102015011528B3 (fr)

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3364455A (en) * 1964-10-06 1968-01-16 Ingvar N. Nodfelt Non-interchangeable connector and setting tool therefor
US4687279A (en) * 1985-12-20 1987-08-18 Storm Products Co. High frequency coaxial connector adaptor
EP0818854A1 (fr) * 1996-07-08 1998-01-14 Amphenol Corporation Connecteur électrique avec sytème d'attachement du câble

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1289073B1 (fr) * 2001-08-27 2005-12-07 Compagnie Deutsch GmbH Connecteur électrique
US7892005B2 (en) * 2009-05-19 2011-02-22 John Mezzalingua Associates, Inc. Click-tight coaxial cable continuity connector
DE202011101574U1 (de) * 2011-05-30 2012-09-05 Lumberg Connect Gmbh Steckverbinder
DE102011076881A1 (de) * 2011-06-01 2012-12-06 Tyco Electronics Amp Gmbh Kontaktkammereinsatz, verfahren zum herstellen und/oder bestücken einer elektrischen verbindungseinrichtung, elektrische verbindungseinrichtung und elektrischer verbinder
DE202011103702U1 (de) * 2011-07-26 2012-01-17 Tyco Electronics Amp Italia S.R.L Elektrischer Steckverbinder mit einem Kabelklemmabschnitt
DK2736124T3 (en) * 2012-11-26 2016-04-18 Phoenix Contact Connector Technology Gmbh Electrical connector with latched insulating body som kan detached with a tool and release tool

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3364455A (en) * 1964-10-06 1968-01-16 Ingvar N. Nodfelt Non-interchangeable connector and setting tool therefor
US4687279A (en) * 1985-12-20 1987-08-18 Storm Products Co. High frequency coaxial connector adaptor
EP0818854A1 (fr) * 1996-07-08 1998-01-14 Amphenol Corporation Connecteur électrique avec sytème d'attachement du câble

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Publication number Publication date
DE102015011528B3 (de) 2017-01-12
EP3139450A1 (fr) 2017-03-08

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