EP3477777B1 - Electrical conductor with screen conductor - Google Patents

Electrical conductor with screen conductor Download PDF

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Publication number
EP3477777B1
EP3477777B1 EP17306485.8A EP17306485A EP3477777B1 EP 3477777 B1 EP3477777 B1 EP 3477777B1 EP 17306485 A EP17306485 A EP 17306485A EP 3477777 B1 EP3477777 B1 EP 3477777B1
Authority
EP
European Patent Office
Prior art keywords
electrical
housing
line
seal
conductor
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.)
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Application number
EP17306485.8A
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German (de)
French (fr)
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EP3477777A1 (en
Inventor
Erhard WALTER
Michael Helgert
Ulrich DÖLLINGER
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Nexans SA
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Nexans SA
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Publication date
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Priority to EP17306485.8A priority Critical patent/EP3477777B1/en
Publication of EP3477777A1 publication Critical patent/EP3477777A1/en
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Publication of EP3477777B1 publication Critical patent/EP3477777B1/en
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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
    • H01R13/46Bases; 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
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/648Protective earth or shield arrangements on coupling devices, e.g. anti-static shielding  
    • H01R13/658High frequency shielding arrangements, e.g. against EMI [Electro-Magnetic Interference] or EMP [Electro-Magnetic Pulse]
    • H01R13/6591Specific features or arrangements of connection of shield to conductive members
    • H01R13/65912Specific features or arrangements of connection of shield to conductive members for shielded multiconductor cable
    • H01R13/65914Connection of shield to additional grounding conductors
    • 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
    • H01R13/52Dustproof, splashproof, drip-proof, waterproof, or flameproof cases
    • H01R13/5205Sealing means between cable and housing, e.g. grommet
    • H01R13/5208Sealing means between cable and housing, e.g. grommet having at least two cable receiving openings
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/03Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections
    • H01R9/05Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections for coaxial cables
    • H01R9/0512Connections to an additional grounding conductor

Definitions

  • the invention relates to an electrical line which has an electrical shield which is in contact with an additional line and which forms a shield outlet.
  • Electrical lines of the type mentioned at the beginning are used, for example, in the automotive sector to connect electrical units and components to one another.
  • a general tendency towards ever higher operating voltages can be observed, which allow smaller cable cross-sections.
  • devices and consumers are therefore increasingly being supplied with increased voltage from power sources.
  • the power sources used can be designed for voltages of up to 1000 V.
  • Consumers are, for example, air conditioning compressors and, particularly in the case of electric vehicles, a drive motor and existing heating devices.
  • An active device is, for example, the charger for charging a battery.
  • a coaxial cable connector which is designed to connect a ground line to the shield of a coaxial line to connect.
  • the shield of the coaxial line is connected to a ground line and then plugged into a connector housing.
  • the connector housing has a cavity which allows the cavity and in particular the connection area where the ground line is connected to the screen to be closed with a potting compound.
  • This type of sealing is complex and, in the case of silicone sheathed cables, is only suitable for temperature ranges of a maximum of 90-100 ° C.
  • a device for connecting two shielded insulated electrical conductors is described according to the preamble of claim 1.
  • the inner core of the first conductor is connected to the inner core of the second conductor and the screen of the first conductor is connected to the screen of the second conductor.
  • an insulated sleeve unit is provided that surrounds the connection point.
  • the present invention has the object of creating an electrical line with a shield exit that is easier to manufacture.
  • the invention proposes an electrical line with at least one insulated conductor which is surrounded by an electrical screen which is contacted at a contact point with an additional conductor which forms a screen exit.
  • a tightly sealing housing is mounted on the electrical line around the contact point.
  • the electrical lead can include multiple insulated conductors.
  • the proposed solution is designed in such a way that single-core and multi-core cables, for example HV silicone sheathed cables, can be used in temperature ranges up to 180 ° C.
  • the contact area between the electrical shield of the line and the shield outlet is reliably protected from environmental influences and, in particular, from corrosion by the housing.
  • the assembled housing is also with Cables can be used whose outer jacket material, such as silicone, for example, a waterproof encapsulation solution, as is known from the prior art, cannot be implemented.
  • a first seal and a second seal are inserted into the housing, which seal the housing to the outside.
  • Each of the seals in addition still be profiled on their outer circumference, in particular have circumferential beads in order to improve the sealing effect even further.
  • the second seal has several through openings for the at least one insulated conductor and the additional conductor.
  • Each seal is advantageously held in the housing by means of a retaining cap fastened on the housing.
  • the retaining cap also has the advantage that the seal is protected from mechanical influences that could impair the sealing effect.
  • Latching means can be provided on the housing and the retaining cap, which ensure simple assembly and, at the same time, a secure fit of the retaining cap.
  • a holding element which fixes the contact point in the housing. This prevents the contact point from moving back and forth in the housing, which in the worst case could damage the contact point or even break a line.
  • a contact element establishes electrical contact between the electrical shield and the further conductor.
  • the contact element enables the contact between the additional line and the electrical shield to be established quickly and easily.
  • the contact element can in particular be a cable lug.
  • a support sleeve is advantageously provided, which is arranged under the electrical screen.
  • the support sleeve protects the underlying inner sheath of the cable and the wires embedded in the inner sheath from mechanical damage caused by a subsequent crimping process.
  • a crimp sleeve tightly encloses the contact element, as a result of which the electrical shield is clamped between the support sleeve and the annular cable lug.
  • the contact to the electrical Shield is thus achieved through a simple standard crimping process.
  • the retaining cap through which one or more insulated lines and the additional conductor pass, has markings that visibly identify the individual conductors. For example, when assembling the lines in an automobile, the simple identification of the wires in the line can bring advantages in production.
  • FIG 1A shows a line according to the invention, which is designated as a whole by the reference numeral 100.
  • the line 100 comprises a shielded line 101 and a cylindrical housing 102 for a shield exit.
  • the shielded line 101 enters the housing 102 at a first end face 103.
  • Two wires 106, 107 of the line 101 and an additional line 108 emerge from the housing 102 on an opposite, second end face 104.
  • the additional line 108 is provided with an electrical shield 109 ( Figure 1B ) of the line 101 and forms the shield exit.
  • the electrical shield is formed in particular from a wire mesh made of copper wires.
  • Figure 1B shows a cross section through the line 101, which has two wires 106, 107.
  • the wires 106, 107 each include an electrical conductor 111 which is surrounded by insulation 112.
  • the two wires 106, 107 are enclosed by an inner jacket 113 which is surrounded by the electrical screen 109.
  • the line 101 has an insulating outer jacket 116.
  • the outer jacket is made of silicone, for example.
  • a distance 114 is shown between the outer jacket 116 and the screen 109, which in reality is not present.
  • FIG 1C the structure of the lines 100 is shown in an exploded view in greater detail.
  • further components the function of which will be described in more detail below.
  • These further components include a support sleeve 117 and a cable lug 118.
  • Reference number 119 shows the electrical shield 109 in an expanded state because, in the assembled state of the line 100, the support sleeve 117 is arranged under the electrical shield 109 at this point.
  • a crimp barrel 121 is also shown.
  • a first seal 122 and a first retaining cap 123 are attached to the first end face 103 of the housing 102 is provided.
  • the seal 122 has a central through opening 124 which lies tightly against the outer jacket of the line 101.
  • the first retaining cap 123 has a through opening 126 which enables the line 101 to pass through the retaining cap 123.
  • a hold-down device 127, a second seal 128 and a second retaining cap 129 are provided on the opposite second end face 104, where the wires 106, 107 and the line 108 exit from the housing 102.
  • the second seal 128 has three through openings 131 for the wires 106, 107 and the additional line 108.
  • the through openings 131 close off tightly with the respective insulation of the wires or the additional line.
  • Corresponding passages are provided in the second retaining cap 129, which allow the wires 106, 107 and the additional line 108 to pass through, as shown in FIG Figure 1A can be seen.
  • the seals 123 and 128 have a profiled circumferential surface in order to improve the sealing effect with respect to the housing 102.
  • the seals 123 and 128 are thus set up and suitable for sealing off the interior of the housing 102 against environmental influences, in particular against moisture and dirt
  • the cable lug 118 is shown in an enlarged perspective view.
  • the cable lug 118 has a cylindrical connection area 201 which encloses the support sleeve 117 in the assembled position.
  • the cylindrical connection area 201 is provided with a longitudinal slot 202.
  • the inner diameter of the connection area 201 is selected to be slightly smaller than the outer diameter of the support sleeve 117, so that the cable lug has a resilient seat on the support sleeve 117. This is advantageous when assembling the line 100 because the cable lug 118 can be placed on the support sleeve 117, but does not simply fall off the support sleeve 117 again.
  • connection area 201 merges into an elongated assembly section 203 which is provided with two pairs of clamping tabs 204 and 206.
  • clamping tabs 204 are pressed onto a conductor of the line 108 in order to produce an electrical contact.
  • the Clamping flaps 206 are pressed onto the insulation of the line 108 and thus hold the line 108 firmly and form a strain relief.
  • Figure 2B shows the cable lug 118 with the additional line 108 mounted.
  • the line 100 described so far is produced as follows: As in Figure 3A is shown, in a first step the outer sheath 116, the electrical shield 109 and the inner sheath 113 are removed from a line 101 in a first section 301 in order to expose the wires 106, 107. In a second section 302, the wire mesh forming the electrical shield 109 is expanded, so that a collar 303 protruding from the line 101 in the radial direction is formed. Then the support sleeve 117 is placed on the inner casing 113 exposed in the second section 302.
  • Figure 4A shows how the prepared line 101 is inserted into the housing 102.
  • the first seal 122 on the line 101 pushed on and inserted into the housing 102, where the seal seals the line 101 on one side and the housing 102 on the other.
  • the seal 121 is fixed in the housing 102 with the first retaining cap 123.
  • the retaining cap 123 is latched onto the housing 102, with latching lugs 401 requested on the housing engaging in corresponding latching openings 402 in the covering cap 123.
  • the hold-down device 127 is then pushed into the side of the housing 102 that is still open.
  • the hold-down device 127 has a cylindrical jacket 403 which, however, extends only over part of an imaginary circumferential line, as a result of which a recess 404 is created in the jacket 403.
  • the jacket 403 On one end face, the jacket 403 is provided with a flange 406 which has rectangular grooves 407.
  • the hold-down device 127 is inserted into the housing 102 in such a way that the assembly section 203 of the cable lug 118 comes to lie in the recess 404, while the grooves 407 engage in corresponding guide ribs 408 which are formed on the inside of the housing 102.
  • the guide ribs 408 end in front of the front edge 409 of the housing 102 so that the second seal 128 has a smooth, circular bearing surface.
  • Figure 4B shows the housing 102 with the inserted hold-down device in a side view, still without the second seal 128, which is only then inserted into the housing 102.
  • the through opening in 131 in the second seal 128 can be seen.
  • the second seal 128 seals the wires 106, 107 and the additional line 108 and the housing 102.
  • the second seal 128 rests on the hold-down device 127.
  • the second retaining cap 129 is placed and latched onto the housing 102, resulting in the fully assembled line 100, which is shown in FIG Figure 1A is shown.
  • the hold-down device 127 presses on the connection area 201 of the cable lug 118, as a result of which the line 101 is fixed in the housing.
  • identifications visible to the outside are provided on the second retaining cap 129, with which the two wires 106, 107 or the additional line 108 can be easily identified.
  • a single unit or device can perform the functions of several elements set out in the claims.
  • ⁇ u> List of reference symbols ⁇ /u> 100 management 201 Connection area 101 shielded cable 202 Longitudinal slot 102 casing 203 Assembly section 103.104 Front sides of the housing 204 Clamp flaps 206 Clamp flaps 106.107 Cores of line 101 108 additional line 301 first section 109 electric screen 302 Second part.

Description

Gebietarea

Die Erfindung betrifft eine elektrische Leitung, die einen elektrischen Schirm aufweist, der mit einer zusätzlichen Leitung kontaktiert ist und eine Schirmausleitung bildet.The invention relates to an electrical line which has an electrical shield which is in contact with an additional line and which forms a shield outlet.

Hintergrundbackground

Elektrische Leitungen der eingangs genannten Art werden beispielsweise im Automobilbereich dazu verwendet, um elektrische Aggregate und Komponenten miteinander zu verbinden. Um Material und Gewicht zu sparen, ist dabei eine generelle Tendenz zu immer höheren Betriebsspannungen zu beobachten, die geringere Leitungsquerschnitte gestatten. Das gilt insbesondere für Fahrzeuge mit einem rein elektrischen Antrieb oder mit einem Hybridantrieb. In solchen Fahrzeugen werden Geräte und Verbraucher in zunehmendem Maße daher aus Stromquellen mit erhöhter Spannung versorgt. Die dabei eingesetzten Stromquellen können für Spannungen von bis zu 1000 V ausgelegt sein. Verbraucher sind beispielsweise Klimakompressoren und insbesondere bei Elektrofahrzeugen ein Antriebsmotor sowie vorhandene Heizgeräte. Ein aktives Gerät ist beispielsweise das Ladegerät zum Aufladen einer Batterie. Für die Verbindung von Verbrauchern und Geräten mit einer entsprechenden Batterie bzw. mit einer an dieselbe angeschlossenen Steuerelektronik werden mit einem elektrisch wirksamen Schirm versehene elektrische Leitungen eingesetzt. Vielfach ist es bei solchen Leitungen erforderlich, den Schirm der elektrischen Leitungen mit Masse zu verbinden. Bei der Verwendung der Leitungen in Fahrzeugen sind sie rauen Einsatzbedingungen ausgesetzt, insbesondere mechanischen Erschütterungen, Schmutz, und Spritzwasser. Trotzdem wird verlangt, dass die betreffenden elektrischen Leitungen und deren Anschlüsse über eine lange Einsatzdauer zuverlässig funktionieren.Electrical lines of the type mentioned at the beginning are used, for example, in the automotive sector to connect electrical units and components to one another. In order to save material and weight, a general tendency towards ever higher operating voltages can be observed, which allow smaller cable cross-sections. This applies in particular to vehicles with a purely electric drive or with a hybrid drive. In such vehicles, devices and consumers are therefore increasingly being supplied with increased voltage from power sources. The power sources used can be designed for voltages of up to 1000 V. Consumers are, for example, air conditioning compressors and, particularly in the case of electric vehicles, a drive motor and existing heating devices. An active device is, for example, the charger for charging a battery. For the connection of consumers and devices with a corresponding battery or with control electronics connected to the same, electrical lines provided with an electrically effective shield are used. In many cases, it is necessary with such lines to connect the shield of the electrical lines to ground. When the cables are used in vehicles, they are exposed to harsh operating conditions, in particular mechanical vibrations, dirt and splash water. Nevertheless, it is required that the relevant electrical lines and their connections function reliably over a long period of use.

Aus der DE 33 21 936 A1 ist ein koaxialer Kabelstecker bekannt, der dazu eingerichtet ist, um an den Schirm einer koaxialen Leitung eine Masseleitung anzuschließen. Dazu wird der Schirm der koaxialen Leitung mit einer Masseleitung verbunden und dann in ein Steckergehäuse eingesteckt. Das Steckergehäuse weist einen Hohlraum auf, der es gestattet, den Hohlraum und insbesondere den Anschlussbereich, wo die Masseleitung an den Schirm angeschlossen ist, mit einer Vergussmasse zu verschließen. Nachteilig ist, dass diese Art der Abdichtung aufwändig ist und bei Silikonmantelleitungen nur für Temperaturbereiche von maximal 90-100 °C geeignet ist.From the DE 33 21 936 A1 a coaxial cable connector is known which is designed to connect a ground line to the shield of a coaxial line to connect. To do this, the shield of the coaxial line is connected to a ground line and then plugged into a connector housing. The connector housing has a cavity which allows the cavity and in particular the connection area where the ground line is connected to the screen to be closed with a potting compound. The disadvantage is that this type of sealing is complex and, in the case of silicone sheathed cables, is only suitable for temperature ranges of a maximum of 90-100 ° C.

In dem Dokument DE 197 41 572 A1 wird eine Vorrichtung zum Verbinden zweier geschirmter isolierter elektrischer Leiter beschrieben, gemäß dem Oberbegriff von Anspruch 1. Dabei wird die Innenseele des ersten Leiters mit der Innenseele des zweiten Leiters und der Schirm des ersten Leiters mit dem Schirm des zweiten Leiters verbunden. Zur Verwendung in einer explosionsgefährdeten Umgebung ist eine isolierte Muffeneinheit vorgesehen, die die Verbindungsstelle umgibt.In the document DE 197 41 572 A1 a device for connecting two shielded insulated electrical conductors is described according to the preamble of claim 1. The inner core of the first conductor is connected to the inner core of the second conductor and the screen of the first conductor is connected to the screen of the second conductor. For use in an explosive environment, an insulated sleeve unit is provided that surrounds the connection point.

Hiervon ausgehend hat die vorliegende Erfindung die Aufgabe, elektrische Leitung mit einer Schirmausleitung zu schaffen, die einfacher herzustellen ist.Proceeding from this, the present invention has the object of creating an electrical line with a shield exit that is easier to manufacture.

Zusammenfassung der ErfindungSummary of the invention

Zur Lösung dieser Aufgabe schlägt die Erfindung eine elektrische Leitung mit mindestens einem isolierten Leiter vor, der von einem elektrischen Schirm umgeben ist, der an einer Kontaktstelle mit einem zusätzlichen Leiter kontaktiert ist, der eine Schirmausleitung bildet. Um die Kontaktstelle ist ein dicht abschließendes Gehäuse auf der elektrischen Leitung montiert.To solve this problem, the invention proposes an electrical line with at least one insulated conductor which is surrounded by an electrical screen which is contacted at a contact point with an additional conductor which forms a screen exit. A tightly sealing housing is mounted on the electrical line around the contact point.

Bei einem Ausführungsbeispiel kann die elektrische Leitung mehrere isolierte Leiter aufweisen.In one embodiment, the electrical lead can include multiple insulated conductors.

Die vorgeschlagene Lösung ist so konzipiert, dass einadrige und mehradrige Leitungen zum Beispiel HV-Silikon-Mantelleitungen in Temperaturbereichen bis 180 °C eingesetzt werden können. Der Kontaktbereich zwischen dem elektrischen Schirm der Leitung und der Schirmausleitung ist durch das Gehäuse zuverlässig vor Umwelteinflüssen und insbesondere vor Korrosion geschützt. Das montierte Gehäuse ist auch bei Leitungen einsetzbar, deren Außenmantelmaterial, wie zum Beispiel Silikon, eine wasserdichte Umspritzungslösung, wie sie aus dem Stand der Technik bekannt ist, nicht realisierbar ist.The proposed solution is designed in such a way that single-core and multi-core cables, for example HV silicone sheathed cables, can be used in temperature ranges up to 180 ° C. The contact area between the electrical shield of the line and the shield outlet is reliably protected from environmental influences and, in particular, from corrosion by the housing. The assembled housing is also with Cables can be used whose outer jacket material, such as silicone, for example, a waterproof encapsulation solution, as is known from the prior art, cannot be implemented.

Erfindungsweise sind in das Gehäuse eine erste Dichtung und eine zweite Dichtung eingesetzt, die das Gehäuse nach außen abdichten. Jede der Dichtungen zusätzlich noch auf ihrem Außenumfang profiliert sein, insbesondere umlaufende Wülste aufweisen, um die Dichtwirkung noch weiter zu verbessern.According to the invention, a first seal and a second seal are inserted into the housing, which seal the housing to the outside. Each of the seals in addition still be profiled on their outer circumference, in particular have circumferential beads in order to improve the sealing effect even further.

Erfindungsweise weist die zweite Dichtung mehrere Durchgangsöffnungen für den mindesten einen isolierten Leiter sowie den zusätzlichen Leiter auf.According to the invention, the second seal has several through openings for the at least one insulated conductor and the additional conductor.

Mit Vorteil ist jede Dichtung mittels einer auf dem Gehäuse befestigten Haltekappe in dem Gehäuse gehalten. Die Haltekappe hat darüber hinaus den Vorzug, dass die Dichtung vor mechanischen Einflüssen geschützt wird, die zu einer Beeinträchtigung der Dichtwirkung führen könnten. An dem Gehäuse und der Haltekappe können Rastmittel vorgesehen seien, die eine einfache Montage und gleichzeitig sicheren Sitz der Haltekappe gewährleisten.Each seal is advantageously held in the housing by means of a retaining cap fastened on the housing. The retaining cap also has the advantage that the seal is protected from mechanical influences that could impair the sealing effect. Latching means can be provided on the housing and the retaining cap, which ensure simple assembly and, at the same time, a secure fit of the retaining cap.

Erfindungsweise ist ein Halteelement vorgesehen, das die Kontaktstelle in dem Gehäuse fixiert. Auf diese Weise wird verhindert, dass sich die Kontaktstelle in dem Gehäuse hin und her bewegt, was im schlimmsten Fall zu einer Beschädigung der Kontaktstelle oder sogar zum Bruch einer Leitung führen könnte.According to the invention, a holding element is provided which fixes the contact point in the housing. This prevents the contact point from moving back and forth in the housing, which in the worst case could damage the contact point or even break a line.

In einer zweckmäßigen Weiterbildung stellt ein Kontaktelement einen elektrischen Kontakt zwischen dem elektrischen Schirm und dem weiteren Leiter her. Das Kontaktelement ermöglicht eine schnelle und einfache Herstellung des Kontaktes zwischen der zusätzlichen Leitung und dem elektrischen Schirm. Das Kontaktelement kann insbesondere ein Kabelschuh sein.In an expedient development, a contact element establishes electrical contact between the electrical shield and the further conductor. The contact element enables the contact between the additional line and the electrical shield to be established quickly and easily. The contact element can in particular be a cable lug.

Mit Vorteil ist eine Stützhülse vorgesehen, die unter dem elektrischen Schirm angeordnet ist. Die Stützhülse schützt den darunterliegenden inneren Mantel Leitung sowie die in dem inneren Mantel eingebetteten Adern vor einer mechanischen Beschädigung durch einen nachfolgenden Crimp-Prozess.A support sleeve is advantageously provided, which is arranged under the electrical screen. The support sleeve protects the underlying inner sheath of the cable and the wires embedded in the inner sheath from mechanical damage caused by a subsequent crimping process.

In einer vorteilhaften Weiterbildung umschließt eine Crimphülse das Kontaktelement fest, wodurch der elektrische Schirm zwischen der Stützhülse und dem ringförmigen Kabelschuh festgeklemmt ist. Der Kontakt zu dem elektrischen Schirm wird somit durch einen einfachen standardmäßigen Crimp-Prozess erreicht.In an advantageous development, a crimp sleeve tightly encloses the contact element, as a result of which the electrical shield is clamped between the support sleeve and the annular cable lug. The contact to the electrical Shield is thus achieved through a simple standard crimping process.

In einer vorteilhaften Weiterbildung der Erfindung trägt die Haltekappe, durch die eine oder mehrere isolierte Leitungen sowie der zusätzliche Leiter hindurchtreten, Kennzeichnungen, welche die einzelnen Leiter sichtbar identifizieren. Zum Beispiel bei der Montage der Leitungen in einem Automobil kann die einfache Identifizierung der Adern der Leitung Vorteile in der Fertigung bringen.In an advantageous development of the invention, the retaining cap, through which one or more insulated lines and the additional conductor pass, has markings that visibly identify the individual conductors. For example, when assembling the lines in an automobile, the simple identification of the wires in the line can bring advantages in production.

Kurze Beschreibung der ZeichnungBrief description of the drawing

Nachfolgend wird die Erfindung anhand einer Ausführungsform unter Bezugnahme auf die begleitenden Figuren exemplarisch näher erläutert. Alle Figuren sind rein schematisch und nicht maßstäblich. Es zeigen:

Fig. 1A
eine perspektivische Ansicht einer erfindungsgemäßen Leitung im zusammengebauten Zustand;
Fig. 1B
einen Querschnitt einer geschirmten Leitung mit zwei Adern;
Fig. 1C
eine Explosionsdarstellung der Leitung aus Figur 1A;
Fig. 2A
ein Kabelschuh mit einer angeschlossenen zusätzlichen Leitung;
Fig. 2B
einen Kabelschuh in einer vergrößerten perspektivischen Darstellung;
Fig. 3A-3C
Zwischenzustände bei der Herstellung der Leitung aus Figur 1A; und
Fig. 4A-4B
eine teilweise zusammengebaute Leitung in zwei unterschiedlichen perspektivischen Ansichten.
In the following, the invention is explained in more detail using an embodiment example with reference to the accompanying figures. All figures are purely schematic and not to scale. Show it:
Figure 1A
a perspective view of a line according to the invention in the assembled state;
Figure 1B
a cross section of a shielded cable with two wires;
Figure 1C
an exploded view of the line Figure 1A ;
Figure 2A
a cable lug with a connected additional line;
Figure 2B
a cable lug in an enlarged perspective view;
Figures 3A-3C
Intermediate states in the production of the line Figure 1A ; and
Figures 4A-4B
a partially assembled line in two different perspective views.

Gleiche oder ähnliche Elemente sind in den Figuren mit gleichen oder ähnlichen Bezugszeichen versehen.The same or similar elements are provided with the same or similar reference symbols in the figures.

AusführungsbeispielEmbodiment

Fig. 1A zeigt eine erfindungsgemäße Leitung, die als Ganzes mit dem Bezugszeichen 100 bezeichnet ist. Die Leitung 100 umfasst eine geschirmte Leitung 101 und ein zylinderförmiges Gehäuse 102 für eine Schirmausleitung. Die geschirmte Leitung 101 tritt an einer ersten Stirnseite 103 in das Gehäuse 102 ein. Auf einer gegenüberliegenden zweiten Stirnseite 104 treten zwei Adern 106, 107 der Leitung 101 sowie eine zusätzliche Leitung 108 aus dem Gehäuse 102 aus. Die zusätzliche Leitung 108 ist mit elektrischen Schirm 109 (Figur 1B) der Leitung 101 verbunden und bildet die Schirmausleitung. Der elektrische Schirm ist insbesondere aus einem Drahtgeflecht aus Kupferdrähten gebildet. Figure 1A shows a line according to the invention, which is designated as a whole by the reference numeral 100. The line 100 comprises a shielded line 101 and a cylindrical housing 102 for a shield exit. The shielded line 101 enters the housing 102 at a first end face 103. Two wires 106, 107 of the line 101 and an additional line 108 emerge from the housing 102 on an opposite, second end face 104. The additional line 108 is provided with an electrical shield 109 ( Figure 1B ) of the line 101 and forms the shield exit. The electrical shield is formed in particular from a wire mesh made of copper wires.

Fig. 1B zeigt einen Querschnitt durch die Leitung 101, die zwei Adern 106, 107 aufweist. Die Adern 106, 107 umfassen jeweils einen elektrischen Leiter 111, der von einer Isolierung 112 umgeben ist. Die zwei Adern 106, 107 sind von einem inneren Mantel 113 eingeschlossen, der von dem elektrischen Schirm 109 umgeben ist. Schließlich weist die Leitung 101 einen isolierenden Außenmantel 116 auf. Der Außenmantel ist beispielsweise aus Silikon hergestellt. In Fig. 1B ist zwischen dem Außenmantel 116 und dem Schirm 109 der Übersichtlichkeit halber ein Abstand 114 dargestellt, der in Wirklichkeit nicht vorhanden ist. Figure 1B shows a cross section through the line 101, which has two wires 106, 107. The wires 106, 107 each include an electrical conductor 111 which is surrounded by insulation 112. The two wires 106, 107 are enclosed by an inner jacket 113 which is surrounded by the electrical screen 109. Finally, the line 101 has an insulating outer jacket 116. The outer jacket is made of silicone, for example. In Figure 1B For the sake of clarity, a distance 114 is shown between the outer jacket 116 and the screen 109, which in reality is not present.

In Fig. 1C ist der Aufbau der Leitungen 100 in einer Explosionsdarstellung in größerer Einzelheit gezeigt. Neben den bereits in den Figuren 1A und 1B gezeigten Elementen sind weitere Bauteile dargestellt, deren Funktion im Folgenden noch näher beschrieben wird. Zu diesen weiteren Bauteilen gehört eine Stützhülse 117 und ein Kabelschuh 118. Bei dem Bezugszeichen 119 ist der elektrische Schirm 109 in einem aufgeweiteten Zustand dargestellt, weil im zusammengebauten Zustand der Leitung 100 die Stützhülse 117 an dieser Stelle unter dem elektrischen Schirm 109 angeordnet ist. Weiterhin ist eine Crimphülse 121 gezeigt. Eine erste Dichtung 122 sowie eine erste Haltekappe 123 sind an der ersten Stirnseite 103 des Gehäuses 102 vorgesehen. Die Dichtung 122 weist eine zentrale Durchgangsöffnung 124 auf, die dicht an dem Außenmantel der Leitung 101 anliegt. Die erste Haltekappe 123 weist eine Durchgangsöffnung 126 auf, die den Durchtritt der Leitung 101 durch die Haltekappe 123 ermöglicht. An der gegenüberliegenden zweiten Stirnseite 104, wo die Adern 106, 107 sowie die Leitung 108 aus dem Gehäuse 102 austreten, sind ein Niederhalter 127, eine zweite Dichtung 128 und eine zweite Haltekappe 129 vorgesehen. Die zweite Dichtung 128 weist drei Durchgangsöffnungen 131 für die Adern 106, 107 sowie die zusätzliche Leitung 108 auf. Die Durchgangsöffnungen 131 schließen dicht mit der jeweiligen Isolierung der Adern bzw. der zusätzlichen Leitung ab. In der zweiten Haltekappe 129. sind entsprechende Durchlässe vorgesehen, die den Durchritt der Adern 106, 107 sowie der zusätzlichen Leitung 108 gestatten, wie aus Figur 1A ersichtlich ist. Die Dichtungen 123 und 128 weisen eine profilierte Umfangsfläche auf, um die Dichtwirkung gegen über dem Gehäuse 102 zu verbessern. Die Dichtungen 123 und 128 sind somit dazu eingerichtet und geeignet, um den Innenraum des Gehäuses 102 gegenüber Umwelteinflüssen, insbesondere gegenüber Feuchtigkeit und Schmutz, dicht abzuschließenIn Figure 1C the structure of the lines 100 is shown in an exploded view in greater detail. In addition to those already in the Figures 1A and 1B Elements shown are shown further components, the function of which will be described in more detail below. These further components include a support sleeve 117 and a cable lug 118. Reference number 119 shows the electrical shield 109 in an expanded state because, in the assembled state of the line 100, the support sleeve 117 is arranged under the electrical shield 109 at this point. A crimp barrel 121 is also shown. A first seal 122 and a first retaining cap 123 are attached to the first end face 103 of the housing 102 is provided. The seal 122 has a central through opening 124 which lies tightly against the outer jacket of the line 101. The first retaining cap 123 has a through opening 126 which enables the line 101 to pass through the retaining cap 123. On the opposite second end face 104, where the wires 106, 107 and the line 108 exit from the housing 102, a hold-down device 127, a second seal 128 and a second retaining cap 129 are provided. The second seal 128 has three through openings 131 for the wires 106, 107 and the additional line 108. The through openings 131 close off tightly with the respective insulation of the wires or the additional line. Corresponding passages are provided in the second retaining cap 129, which allow the wires 106, 107 and the additional line 108 to pass through, as shown in FIG Figure 1A can be seen. The seals 123 and 128 have a profiled circumferential surface in order to improve the sealing effect with respect to the housing 102. The seals 123 and 128 are thus set up and suitable for sealing off the interior of the housing 102 against environmental influences, in particular against moisture and dirt

In Fig. 2A ist der Kabelschuh 118 in einer vergrößerten perspektivischen Darstellung gezeigt. Der Kabelschuh 118 weist einen zylinderförmigen Anschlussbereich 201 auf, der in Montagelage die Stützhülse 117 umschließt. Der zylinderförmige Anschlussbereich 201 ist mit einem Längsschlitz 202 versehen. Bei einem Ausführungsbeispiel ist der Innendurchmesser des Anschlussbereiches 201 geringfügig kleiner als der Außendurchmesser der Stützhülse 117 gewählt, so dass der Kabelschuh auf der Stützhülse 117 einen federnden Sitz hat. Das ist vorteilhaft bei der Montage der Leitung 100, weil der Kabelschuh 118 auf die Stützhülse 117 aufsetzbar ist, aber nicht einfach wieder von der Stützhülse 117 abfällt. Der Anschlussbereich 201 geht in einen länglichen Montageabschnitt 203 über, der mit zwei Paaren von Klemmlappen 204 und 206 versehen ist. Bei der Montage der zusätzlichen Leitung 108 werden auf einen Leiter der Leitung 108 die Klemmlappen 204 gepresst, um einen elektrischen Kontakt herzustellen. Die Klemmlappen 206 werden auf die Isolierung der Leitung 108 gepresst und halten damit die Leitung 108 fest und bilden eine Zugentlastung.In Figure 2A the cable lug 118 is shown in an enlarged perspective view. The cable lug 118 has a cylindrical connection area 201 which encloses the support sleeve 117 in the assembled position. The cylindrical connection area 201 is provided with a longitudinal slot 202. In one embodiment, the inner diameter of the connection area 201 is selected to be slightly smaller than the outer diameter of the support sleeve 117, so that the cable lug has a resilient seat on the support sleeve 117. This is advantageous when assembling the line 100 because the cable lug 118 can be placed on the support sleeve 117, but does not simply fall off the support sleeve 117 again. The connection area 201 merges into an elongated assembly section 203 which is provided with two pairs of clamping tabs 204 and 206. During the assembly of the additional line 108, the clamping tabs 204 are pressed onto a conductor of the line 108 in order to produce an electrical contact. The Clamping flaps 206 are pressed onto the insulation of the line 108 and thus hold the line 108 firmly and form a strain relief.

Figur 2B zeigt den Kabelschuh 118 mit der montierten zusätzlichen Leitung 108. Figure 2B shows the cable lug 118 with the additional line 108 mounted.

Die insoweit beschriebene Leitung 100 wird folgendermaßen hergestellt:
Wie in Fig. 3A dargestellt ist, wird in einem ersten Schritt von einer Leitung 101 in einem ersten Abschnitt 301 der Außenmantel 116, der elektrische Schirm 109 und der innere Mantel 113 entfernt, um die Adern 106, 107 freizulegen. In einem zweiten Abschnitt 302 wird das den elektrischen Schirm 109 bildende Drahtgeflecht aufgeweitet, so dass sich ein von der Leitung 101 in radialer Richtung abstehender Kragen 303 bildet. Dann wird die Stützhülse 117 auf die in dem zweiten Abschnitt 302 freiliegenden Innenmantel 113 aufgesetzt.
The line 100 described so far is produced as follows:
As in Figure 3A is shown, in a first step the outer sheath 116, the electrical shield 109 and the inner sheath 113 are removed from a line 101 in a first section 301 in order to expose the wires 106, 107. In a second section 302, the wire mesh forming the electrical shield 109 is expanded, so that a collar 303 protruding from the line 101 in the radial direction is formed. Then the support sleeve 117 is placed on the inner casing 113 exposed in the second section 302.

Aus Figur 3B ist ersichtlich, dass der Kabelschuh 118, an dem die zusätzliche Leitung 108 angeschlossen ist, auf die Stützhülse 117 aufgesetzt ist. Über den Kabelschuh 118 wird das aufgeweitete Drahtgeflecht des elektrischen Schirmes 109 gelegt.Out Figure 3B it can be seen that the cable lug 118, to which the additional line 108 is connected, is placed on the support sleeve 117. The expanded wire mesh of the electrical shield 109 is placed over the cable lug 118.

Mit der Crimphülse 121, die in Figur 3C von links über den elektrischen Schirm 109, den Kabelschuh und die Stützhülse 117 geschoben ist, wird der elektrische Schirm 109 auf den Kabelschuh 118 gepresst bzw. gecrimpt, wodurch eine elektrische Verbindung zwischen dem Kabelschuh 118 und dem elektrischen Schirm 109 hergestellt ist. Auf diese Weise entsteht eine in Fig. 3C mit einem Kreis gekennzeichnete Kontaktstelle V für die Schirmausleitung 108. Die Stützhülse 117 verhindert bei dem Crimpen, dass mechanischer Druck auf den inneren Mantel 113 sowie die darin eingebetteten Adern 106, 107 ausgeübt wird, um die genannten Elemente wirksam vor einer mechanischen Beschädigung schützt.With the crimp barrel 121, which in Figure 3C is pushed from the left over the electrical shield 109, the cable lug and the support sleeve 117, the electrical shield 109 is pressed or crimped onto the cable lug 118, whereby an electrical connection between the cable lug 118 and the electrical shield 109 is established. This creates an in Figure 3C Contact point V, marked with a circle, for the shield outlet 108. During crimping, the support sleeve 117 prevents mechanical pressure from being exerted on the inner jacket 113 and the wires 106, 107 embedded therein in order to effectively protect the elements mentioned from mechanical damage.

Fig. 4A zeigt wie die insoweit vorbereitete Leitung 101 in das Gehäuse 102 gesteckt wird. In Fig. 4A von links wird die erste Dichtung 122 auf die Leitung 101 aufgeschoben und in das Gehäuse 102 gesteckt, wo die Dichtung auf der einen Seite die Leitung 101 und auf der anderen Seite das Gehäuse 102 abdichtet. Die Dichtung 121 wird in dem Gehäuse 102 mit der ersten Haltekappe 123 fixiert. Zu diesem Zweck wird die Haltekappe 123 auf dem Gehäuse 102 verrastet, wobei an dem Gehäuse angeforderte Rastnasen 401 in entsprechenden Rastöffnungen 402 in der Abdeckkappe 123 eingreifen. Danach wird der Niederhalter 127 in die noch offene Seite des Gehäuses 102 eingeschoben. Der Niederhalter 127 weist einen zylindrischen Mantel 403 auf, der sich jedoch nur über einem Teil einer gedachten Umfangslinie erstreckt, wodurch eine Aussparung 404 in dem Mantel 403 entsteht. An einer Stirnseite ist der Mantel 403 mit einem Flansch 406 versehen, der rechteckige Nuten 407 aufweist. Der Niederhalter 127 wird so in das Gehäuse 102 eingesetzt, dass der Montageabschnitt 203 des Kabelschuhs 118 in der Aussparung 404 zu liegen kommt, während die Nuten 407 in entsprechende Führungsrippen 408 eingreifen, die an dem Gehäuse 102 an dessen Innenseite angeformt sind. Die Führungsrippen 408 enden vor dem stirnseitigen Rand 409 des Gehäuses 102, damit die zweite Dichtung 128 eine glatte kreisrunde Auflagefläche hat. Figure 4A shows how the prepared line 101 is inserted into the housing 102. In Figure 4A from the left is the first seal 122 on the line 101 pushed on and inserted into the housing 102, where the seal seals the line 101 on one side and the housing 102 on the other. The seal 121 is fixed in the housing 102 with the first retaining cap 123. For this purpose, the retaining cap 123 is latched onto the housing 102, with latching lugs 401 requested on the housing engaging in corresponding latching openings 402 in the covering cap 123. The hold-down device 127 is then pushed into the side of the housing 102 that is still open. The hold-down device 127 has a cylindrical jacket 403 which, however, extends only over part of an imaginary circumferential line, as a result of which a recess 404 is created in the jacket 403. On one end face, the jacket 403 is provided with a flange 406 which has rectangular grooves 407. The hold-down device 127 is inserted into the housing 102 in such a way that the assembly section 203 of the cable lug 118 comes to lie in the recess 404, while the grooves 407 engage in corresponding guide ribs 408 which are formed on the inside of the housing 102. The guide ribs 408 end in front of the front edge 409 of the housing 102 so that the second seal 128 has a smooth, circular bearing surface.

Fig. 4B zeigt das Gehäuse 102 mit dem eingesetzten Niederhalter in einer Seitenansicht noch ohne die zweite Dichtung 128, die erst anschließend in das Gehäuse 102 eingesetzt wird. Figure 4B shows the housing 102 with the inserted hold-down device in a side view, still without the second seal 128, which is only then inserted into the housing 102.

Wieder mit Bezug auf Fig. 4A sind die Durchgangsöffnung in 131 in der zweiten Dichtung 128 zu erkennen. Die zweite Dichtung 128 dichtet die Adern 106, 107 und die zusätzliche Leitung 108 und das Gehäuse 102 ab. Im eingebauten Zustand liegt die zweite Dichtung 128 auf dem Niederhalter 127 auf. Schließlich wird die zweite Haltekappe 129 aufgesetzt und auf dem Gehäuse 102 verrastet, wodurch die fertig zusammengebaute Leitung 100 entsteht, die in Figur 1A gezeigt ist. In diesem zusammengebauten Zustand drückt der Niederhalter 127 auf den Anschlussbereich 201 des Kabelschuhs 118, wodurch die Leitung 101 in dem Gehäuse fixiert ist.Again referring to Figure 4A the through opening in 131 in the second seal 128 can be seen. The second seal 128 seals the wires 106, 107 and the additional line 108 and the housing 102. In the installed state, the second seal 128 rests on the hold-down device 127. Finally, the second retaining cap 129 is placed and latched onto the housing 102, resulting in the fully assembled line 100, which is shown in FIG Figure 1A is shown. In this assembled state, the hold-down device 127 presses on the connection area 201 of the cable lug 118, as a result of which the line 101 is fixed in the housing.

Bei einem vorteilhaften Ausführungsbeispiel sind auf der zweiten Haltekappe 129 nach außen sichtbare Kennzeichnungen vorgesehen, mit denen die beiden Adern 106, 107 bzw. die zusätzliche Leitung 108 leicht identifizierbar sind.In an advantageous embodiment, identifications visible to the outside are provided on the second retaining cap 129, with which the two wires 106, 107 or the additional line 108 can be easily identified.

In den Ansprüchen schließen die Wörter "aufweisen" und "umfassen" nicht andere Elemente oder Schritte aus und der unbestimmte Artikel "ein" schließt eine Mehrzahl nicht aus.In the claims, the words "comprising" and "comprising" do not exclude other elements or steps, and the indefinite article "a" does not exclude a plurality.

Eine einzelne Einheit oder Vorrichtung kann die Funktionen mehrere Elemente durchführen, die in den Ansprüchen aufgeführt sind. Die Tatsache, dass einzelne Funktionen und Elemente in unterschiedlichen abhängigen Ansprüchen aufgeführt sind, bedeutet nicht, dass nicht auch eine Kombination dieser Funktionen und Elemente vorteilhaft verwendet werden könnte. Bezugszeichenliste 100 Leitung 201 Anschlussbereich 101 geschirmte Leitung 202 Längsschlitz 102 Gehäuse 203 Montageabschnitt 103,104 Stirnseiten des Gehäuses 204 Klemmlappen 206 Klemmlappen 106,107 Adern der Leitung 101 108 zusätzliche Leitung 301 Erster Abschnitt 109 elektrischer Schirm 302 Zweiter Abschnitt. 303 Kragen (Schirm) 111 elektrischer Leiter 112 Isolierung 401 Rastnasen 113 innerer Mantel 402 Rastöffnungen 114 Abstand 403 404 Mantel Aussparung 116 isolierender Außenmantel 117 Stützhülse 406 Flansch 118 Kabelschuh 407 Nut 119 aufgeweiteter elektrischer Schirm 408 Führungsrippen 409 stirnseitiger Rand 121 Crimphülse 122 erste Dichtung 123 erste Haltekappe 124 Durchgangsöffnung 126 Durchlass 127 Niederhalter 128 zweite Dichtung 129 zweite Haltekappe 131 Durchgangsöffnung A single unit or device can perform the functions of several elements set out in the claims. The fact that individual functions and elements are listed in different dependent claims does not mean that a combination of these functions and elements cannot also be used to advantage. <u> List of reference symbols </u> 100 management 201 Connection area 101 shielded cable 202 Longitudinal slot 102 casing 203 Assembly section 103.104 Front sides of the housing 204 Clamp flaps 206 Clamp flaps 106.107 Cores of line 101 108 additional line 301 first section 109 electric screen 302 Second part. 303 Collar (visor) 111 electrical conductor 112 insulation 401 Locking lugs 113 inner coat 402 Locking openings 114 distance 403 404 Sheath recess 116 insulating outer sheath 117 Support sleeve 406 flange 118 Cable lug 407 Groove 119 flared electrical shield 408 Guide ribs 409 frontal edge 121 Crimp barrel 122 first seal 123 first retaining cap 124 Through opening 126 passage 127 Hold-down 128 second seal 129 second retaining cap 131 Through opening

Claims (8)

  1. An electrical line with at least one insulated conductor (106, 107), which is surrounded by an electrical shield (109), which is contacted at a contact point (V) with an additional conductor (108), and with a housing tightly closing around the contact point (V), which is mounted on the electrical line, wherein a first seal (122) and a second seal (128) are in inserted into the housing (102), which seal the housing to the outside, characterized in that the additional conductor (108) forms a shield discharge line, in that the second seal (128) has several through-openings (131) for the at least one insulated conductor (106, 107) and the additional conductor (108) and in that a retaining element (127) fixes the contact point (V) in the housing (102).
  2. The electrical line according to claim 1, characterized in that the electrical line has several insulated conductors (106, 107).
  3. The electrical line according to claim 1 or 2, characterized in that each seal (122, 128) is held in the housing (102) by means of a retaining cap (123, 129) fastened on the housing.
  4. The electrical line according to any one of the preceding claims, characterized in that a contact element (118) establishes an electrical contact between the electrical shield (109) and the additional conductor (108).
  5. The electrical line according to claim 4, characterized in that the contact element is a cable lug (118).
  6. The electrical line according to any one of the preceding claims, characterized in that a support sleeve (117) is provided, which is arranged under the electrical shield (109).
  7. The electrical line according to claim 6, characterized in that a crimp sleeve (121) firmly encloses the contact element (118), whereby the electrical shield (109) is firmly clamped between the support sleeve (117) and the cable lug.
  8. The electrical line according to any one of claims 3 to 7, characterized in that the retaining cap (123, 129), through which one or several insulated lines (106, 107) and the additional conductor (108) pass, has markings, which visibly identify the individual conductors (106, 107, 108).
EP17306485.8A 2017-10-30 2017-10-30 Electrical conductor with screen conductor Active EP3477777B1 (en)

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CN111009778B (en) * 2019-12-09 2021-06-15 中航光电科技股份有限公司 Connector shielding sealing structure
DE102021107702A1 (en) 2021-03-26 2022-09-29 Lisa Dräxlmaier GmbH contact device
DE102021107700A1 (en) 2021-03-26 2022-09-29 Lisa Dräxlmaier GmbH contact device

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Publication number Priority date Publication date Assignee Title
DE3321936A1 (en) 1983-06-16 1984-12-20 Etablissements De Backer, N.V.-S.A.,, Zaventem COAXIAL CABLE PLUG
US6069320A (en) * 1993-07-30 2000-05-30 Etcon Corporation Cable splice protector
DE19741572A1 (en) * 1997-09-20 1999-03-25 Dieter Hemstedt Connection arrangement for electric wires in explosive environment
JP5557604B2 (en) * 2010-06-04 2014-07-23 矢崎総業株式会社 Braided wire processing method and ring member
JP5688242B2 (en) * 2010-07-14 2015-03-25 矢崎総業株式会社 Shield wire ground wire connection structure
EP2950399B1 (en) * 2014-05-27 2018-02-28 Nexans Sealing of the connection between two conductors

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