EP3244489B1 - Anschlussleiste mit kennzeichnungsschild zum befestigen in einer shunt-vertiefung - Google Patents

Anschlussleiste mit kennzeichnungsschild zum befestigen in einer shunt-vertiefung Download PDF

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Publication number
EP3244489B1
EP3244489B1 EP16169285.0A EP16169285A EP3244489B1 EP 3244489 B1 EP3244489 B1 EP 3244489B1 EP 16169285 A EP16169285 A EP 16169285A EP 3244489 B1 EP3244489 B1 EP 3244489B1
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EP
European Patent Office
Prior art keywords
identification
terminal block
fastening portion
insulating box
relative
Prior art date
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Application number
EP16169285.0A
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English (en)
French (fr)
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EP3244489A1 (de
Inventor
Alexandre Chaillet
Philippe France
André Imperato
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TE Connectivity Services GmbH
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TE Connectivity Services GmbH
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Priority to EP16169285.0A priority Critical patent/EP3244489B1/de
Publication of EP3244489A1 publication Critical patent/EP3244489A1/de
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Publication of EP3244489B1 publication Critical patent/EP3244489B1/de
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    • 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
    • H01R9/22Bases, e.g. strip, block, panel
    • H01R9/24Terminal blocks
    • H01R9/2475Means facilitating correct wiring, e.g. marking plates, identification tags
    • 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
    • H01R9/22Bases, e.g. strip, block, panel
    • H01R9/24Terminal blocks
    • H01R9/26Clip-on terminal blocks for side-by-side rail- or strip-mounting
    • H01R9/2625Clip-on terminal blocks for side-by-side rail- or strip-mounting with built-in electrical component
    • H01R9/2633Clip-on terminal blocks for side-by-side rail- or strip-mounting with built-in electrical component with built-in switch

Definitions

  • the present invention relates to an individual marker holder for an electrical terminal block, the terminal block comprising an insulating box having a rear face equipped with fixing elements enabling the terminal block to be fixed on a support rail according to an arrangement in in which a plurality of terminal blocks are arranged side by side on a same row oriented along the support rail.
  • the invention also relates to a terminal block as such and to an arrangement comprising at least two terminal blocks arranged side by side in an adjacent manner on a support rail.
  • a junction block is an electrical device comprising at least two connection terminals each making it possible to connect a corresponding electrical conductor, for example in the form of an electrically conductive wire.
  • a terminal block also comprises at least one electrically conductive connecting strip for establishing the electrical connection between the two electrical conductors connected to the two connection terminals.
  • connection terminals and the connecting strip constitutes a stage and it is known practice to design the terminal block so that it comprises one, two or three stage (s).
  • terminal block can be designed so as to allow the installation of a shunt jumper making it possible to establish an electrical contact between two connecting bars respectively implanted in two different terminal blocks.
  • these two terminal blocks can be mounted adjacent to the same support rail.
  • the shunt jumper is put in place by inserting it, at each terminal block, in a shunt well provided in the insulating box.
  • junction block (s) there is a problem of being able to identify the junction block (s) in a simple, efficient, practical and economical way. In fact, it is necessary to be able to locate and identify the function of the terminal block or of each stage, or else the general function sought.
  • each terminal block it is known to equip each terminal block with an individual marker holder.
  • a solution of this nature is described for example in the document DE2020080136609U1 or in the document DE102008058871B3 .
  • the currently known solutions do not give complete satisfaction.
  • the fixing of the marker holder requires the creation of an area dedicated to this function and / or requires fixing means dedicated to mounting the marker holder on the insulating box, which increases the overall bulk and the cost.
  • the known solutions remain complex, expensive and impractical.
  • the document GB1380533A describes a terminal block comprising a case, one main face of which is open to allow the installation of connection terminals and of the conductive strip.
  • the rear face of the box comprises a foot capable of being snapped onto a rail of a cabinet.
  • the front of the box has two holes for handling the clamping screws of the connection terminals. At the front face, between these two openings, the box defines a hollow allowing the installation of a shunt. Provision is also made for the presence of a one-piece separator which snaps into the hollow.
  • the function of this separator is to electrically isolate two adjacent shunts to avoid their electrical connection in case of high voltage. It is expected that the separator can be equipped with an individual marking label, or collective with several adjacent blocks.
  • the present invention aims to resolve all or part of the drawbacks listed above.
  • the present invention relates to a terminal block according to claim 1.
  • an individual marker holder for an electrical terminal block, the terminal block comprising an insulating box having a rear face equipped with fixing elements making it possible to fix the terminal block on a support rail according to an arrangement in which a plurality of terminal blocks are arranged side by side on a same row oriented along the support rail, the marker holder comprising a first fixing part configured so as to be able to be fixed by insertion in a shunt well formed in a front face of the insulating box of the junction block.
  • the marker holder comprises a second identification part articulated relative to the first fixing part, so as to be able to be movable by pivoting with respect to the insulating box when the first fixing part is fixed in the shunt well, the second identification part comprising at least one identification portion, in particular making it possible to receive an identification mark.
  • the second identification part is provided with a plurality of identification portions aligned with one another, in particular each allowing the reception of an identification mark.
  • the pivot axis of the second identification part relative to the first fixing part is perpendicular to the direction in which the first fixing part is intended to be inserted into the shunt well and perpendicular to the direction in which the identification portions are staggered along the second identification portion.
  • the first fixing part and the second identification part are formed in one and the same single piece, the articulation between the first fixing part and the second identification part being constituted by a zone locally elastically deformable of said one-piece part.
  • first fixing part and the second identification part can be constituted by two distinct parts assembled with one another by pivoting securing elements allowing pivoting of the second identification part with respect to the first fixing part so as to constitute the articulation between the first fixing part and the second identification part.
  • the marker holder comprises elements for angular indexing of the angular position occupied by the second identification part with respect to the first fixing part, in particular according to predetermined angular positions.
  • the pivot axis conferred by the articulation of the second identification part with respect to the first fixing part is located at one end of the second identification part and is substantially aligned with said said part. at least one identification portion.
  • the first fixing part has symmetry along a plane containing both the direction in which the first fixing part is intended to be inserted into the shunt well and the direction corresponding to the axis of pivoting around which the second identification part is articulated relative to the first fixing part, so that the marker holder can occupy two different configurations with respect to the insulating box varying from one another by a rotation of 180 degrees of the first fastening part around the direction of insertion into the shunt well.
  • an electrical terminal block comprising an insulating box having a rear face equipped with fixing elements making it possible to fix the terminal block on a support rail according to an arrangement in which a plurality of terminal blocks are arranged side by side on the same row oriented in the direction of the support rail and a front face comprising at least one shunt well, the junction block comprising such a marker holder, the first fixing part of which is inserted into the well shunt.
  • the marker holder comprising a second identification part having at least one identification portion and articulated relative to the first fixing part so as to be movable by pivoting relative to the insulating housing, the second part of 'identification varies at least between a lowered angular position with respect to the insulating box in which the second identification part is substantially parallel to the front face of the insulating box and an upright angular position in which the second identification part is substantially perpendicular locally on the front face of the insulating case, the first fixing part of the marker holder being stationary with respect to the insulating case during the change of angular position of the second identification part of the marker holder.
  • the shunt well comprises an internal annular rib arranged at the level of its mouth towards the front face and included in a plane perpendicular to the direction in which the first fixing part is inserted into the shunt well and the first fixing part comprises an external annular groove in which the internal annular rib of the shunt well is inserted by elastic interlocking during the insertion of the first fixing part.
  • the shunt well comprises an internal annular shoulder extending by a receiving bore on the side opposite the mouth of the shunt well on the front face of the insulating box and the first fixing part comprises a tenon elastically deformable end which is inserted into the receiving bore during the insertion of the first fixing part by means of an elastic deformation of the end pin.
  • the width of the second fixing part counted along the direction in which the pivot axis of the second fixing part relative to the first fixing part is counted is equal to or less than the thickness of the insulating box of the counted terminal block in the direction in which the support rail is oriented when the terminal block is attached to the support rail.
  • an arrangement comprising a support rail and at least two such junction blocks fixed by their rear faces so as to be arranged side by side in a same row oriented in the direction of the support rail, arrangement in which the door - marker fixed in the shunt well of the insulating box of one of the terminal blocks is independent of the marker holder fixed in the shunt well of the insulating box of the other of the junction blocks.
  • the marker holder 10 is such that it individually equips a single terminal block 11 and makes it possible to identify at least one function intended to be fulfilled by the terminal block 11 on which it is. fixed. In other words, the marker holder 10 only identifies the functions performed by this terminal block 11.
  • FIGS. 7 and 8 appended also show an example of an electrical terminal block 11 according to another aspect of the invention, the marker holder 10 of the Figures 1 to 6 being fixed to the insulating box 12 in a particular way which will be described later.
  • the terminal block 11 is an electrical device comprising at least two connection terminals 13 each allowing to connect a corresponding electrical conductor (not shown), for example in the form of an electrically conductive wire.
  • the terminal block 11 also comprises at least one electrically conductive connecting strip 14 to establish the electrical connection between the two electrical conductors connected to the two connection terminals 13.
  • connection terminals 13 and the connecting strip 14 constitutes a stage.
  • the variant illustrated on Figures 7 and 8 is a single-stage terminal block 11, but the terminal block 11 could either have two or three stages, depending on the applications associated with the terminal block 11 and depending on the needs of the users.
  • the junction block 11 therefore comprises the insulating box 12 mentioned above, in which are mounted the two connection terminals 13 and the electrically conductive connecting strip (s) 14.
  • Each connection terminal 13 may be of any nature, for example using fixing by screw or by contact spring, or else of the self-stripping type.
  • the insulating box 12 has a rear face 15 equipped with fixing elements 16 making it possible to fix the terminal block 11 on a support rail (not shown) according to an arrangement in which a plurality of terminal blocks 11 are arranged side by side. on the same row oriented along the support rail.
  • the fixing elements 16 can cooperate with the support rail according to a principle of snap-fastening or elastic interlocking.
  • another aspect of the invention relates to an arrangement comprising the support rail and at least two terminal blocks 11 as described here, in other words a plurality of such terminal blocks 11, fixed by their rear faces so to be arranged side by side on the same row oriented in the direction of the support rail. It is understood that the number of terminal blocks 11 can be greater than or equal to 2.
  • the direction X corresponds to the direction of the insulating box 12 which is oriented in the direction of the length of the support rail when the junction block 11 is fixed on the support rail.
  • the dimension of the insulating box 12 in the direction X corresponds to its thickness.
  • the Y direction corresponds to the direction of the insulating box 12 which is oriented in the width direction of the support rail when the junction block 11 is fixed to the support rail.
  • the dimension of the insulating box 12 in the Y direction corresponds to its length.
  • the Z direction corresponds to the direction of the insulating box 12 which is locally perpendicular to the wall where the support rail is fixed when the junction block 11 is fixed on the support rail.
  • the dimension of the insulating box 12 in the Z direction corresponds to its height.
  • the height and the length of the insulating box 12 are substantially equal to each other while the thickness is significantly less than the height and the length.
  • the insulating box 12 also comprises a front face 17 comprising at least one shunt well 18.
  • the number of shunt wells 18 can be greater than or equal to 1, depending on the applications and the needs of the users of the terminal block 11.
  • a By way of nonlimiting example, the illustrated variant comprises two shunt wells 18.
  • the two shunt wells 18 are offset with respect to each other along the length of the insulating box 11 which is counted in the direction Y.
  • Each shunt well 18 extends in the Z direction.
  • the rear and front faces 15, 17 are opposite in the Z direction.
  • the marker holder 10 comprises a first fixing part 19 configured so as to be able to be fixed in the front face 17 of the insulating box 12 of the terminal block 11.
  • the first fixing part 19 is configured so that its fixing on the front face 17 of the insulating box 12 is carried out by inserting it into one of the shunt wells 18 provided in the front face 17 of the insulating box 12 of the junction block 11.
  • the junction block 11 therefore comprises such a marker holder 10, the first fixing part 19 of which is fixed in the front face 17 of the insulating box 12.
  • the first fixing part 19 is inserted into one of the shunt wells. 18 provided in the front face 17 of the insulating box 12.
  • shunt well is meant an opening made in the insulating box 12 so as to allow communication between the inside and the outside of the insulating box 12 and configured to allow the installation in this opening of a shunt element (not shown), otherwise known as a shunt jumper.
  • the shunt element is inserted into two shunt wells 18 belonging to two adjacent terminal blocks 11 within the row of blocks 11 mounted on the support rail. The placement of the shunt element in the shunt wells 18 of the two adjacent terminal blocks 11 makes it possible to establish an electrical contact between two connecting bars 14 respectively located inside the insulating boxes 12 of the two terminal blocks. junction 11 adjacent.
  • the marker holder 10 comprises a second identification part 20 articulated relative to the first fixing part 19.
  • the second identification part 20 can therefore be movable by pivoting relative to the housing. insulator 12 when the first fixing part 19 is fixed in the shunt well 18 of the insulating box 12.
  • the second identification part 20 comprises at least one identification portion 21.
  • the pivot axis D1 conferred by the articulation of the second identification part 20 with respect to the first fixing part 19 is located at one end. of the second identification portion 20 and is substantially aligned with said at least one identification portion 21.
  • said at least one identification portion 21 is offset with respect to the pivot axis D1 in a perpendicular direction to the direction of the pivot axis D1.
  • substantially aligned is meant “exactly aligned” or “aligned within a given tolerance”, this given tolerance possibly being an angular tolerance or a dimensional tolerance counted in the plane perpendicular to the pivot axis D1.
  • the angle formed, in the plane perpendicular to the pivot axis D1, between the identification portion 21 and the line joining the axis D1 and the identification portion 21 admits an angular tolerance of 20 °, in this sense that this angle is equal to 180 ° to within 20 °, therefore remaining included in a range varying between 160 ° and 200 °.
  • the position of the axis D1 relative to the general orientation of the identification portion 21 admits a dimensional tolerance of 5 mm, in that the position of the axis D1 may be located exactly along the general orientation of the identification portion 21 or present an upward or downward shift from the general orientation of the portion identification having a value included in a range varying between 0 and 5 mm.
  • the identification portion 21 may have a substantially flat part and the pivot axis D1 is arranged substantially in the extension of this flat part.
  • the pivot axis D1 is substantially contained in a plane extending the flat part of the identification portion 21 and is offset with respect to the identification portion 21 in said plane.
  • substantially contained is meant the same tolerances as those described in the previous paragraph: in particular, the pivot axis D1 can be located exactly in the plane extending the flat part of the identification portion 21 or be offset towards upwards or downwards, relative to the plane extending the flat part of the identification portion 21, according to a value included between 0 and 5 mm.
  • the second identification part 20 comprises an elongate lever extending in a main direction of extension, corresponding to its direction of greatest length.
  • the pivot axis D1 and said at least one identification portion 21 are offset relative to one another in the main direction of extension of the elongated lever.
  • the pivot axis D1 is arranged at one end of the elongated lever, this end being considered in the main direction.
  • Each identification portion 21 is for example provided in an upper face 22 of the elongated lever.
  • the articulation movement of the second identification part 20 corresponds to a pivoting of the elongated lever around the pivot axis D1, the main direction of extension of the elongated lever therefore having a variable orientation around the pivot axis. D1 at the same time as the pivoting of the extended lever.
  • the second identification part 20 is provided with a plurality of identification portions 21 aligned with one another, that is to say offset two by two along the same and single direction D2.
  • the articulation of the second identification part 20 with respect to the first fixing part 19 is situated substantially in the extension, in direction D2, of the alignment of the identification portions 21 with one another.
  • substantially located in the extension is meant the same tolerances as those described above in connection with the terms “substantially aligned” and “substantially contained”.
  • the different identification portions 21 are offset from one another in the same direction D2 as the direction in which each identification portion 21 is offset with respect to the pivot axis D1.
  • the second identification part 20 comprises for example two identification portions 21, offset from one another along the main direction of extension of the elongated lever.
  • the main direction of extension of the elongated lever corresponds to the direction D2 along which the identification portions 21 are staggered.
  • Each of these two identification portions 21 is offset relative to the pivot axis D1 in the main direction of extension of the elongated lever, that is to say also in the direction D2.
  • each identification portion 21 is for example configured to receive an identification mark (not shown).
  • each identification portion 21 is in the form of an identification mark insertion slot in which the identification mark is inserted by a sliding movement perpendicular to the direction D2.
  • the pivot axis D1 of the second identification part 20 relative to the first fixing part 19 is perpendicular to the direction D3 according to which the first fixing part 19 is intended to be inserted into the shunt well 18.
  • the direction D3 is oriented parallel to the direction Z.
  • first fixing part 19 and the second identification part 20 consist of two separate parts assembled with one another by pivoting securing elements allowing pivoting of the second part. 'identification 20 with respect to the first fixing part 19 so as to constitute the articulation between the first fixing part 19 and the second identification part 20.
  • the pivoting securing elements are of any nature as long as they perform the function presented here.
  • the pivoting fastening elements comprise for example a male tubular part 23 integral with one end of the first fastening part 19, this end being considered along the direction D3.
  • the axis of the male tubular part 23 is oriented in the X direction. It is inserted in the Z direction by elastic interlocking in a complementary tubular cavity 24, itself integral with one end of the second identification part 20, this end being considered along the direction D2.
  • the orientation axis of the tubular cavity 24 is also oriented in the X direction.
  • the cooperation between the male tubular part 23 with the tubular cavity 24 constitutes a mechanical connection of the pivot connection type, the pivot axis of which corresponds to the the aforementioned pivot axis D1.
  • the pivot axis D1 is therefore oriented parallel to the direction X.
  • first fixing part 19 and the second identification part 20 are formed in one and the same single piece, the articulation between the first fixing part 19 and the second identification part 20 being in this case constituted by a locally elastically deformable zone of this one-piece part.
  • This locally deformable zone can be obtained by a local modification of the material and / or by a local reduction of a dimension adopted by the material.
  • the elastic deformation capacity will result from a compromise between the ease of pivoting and the mechanical resistance avoiding rupture of this zone under load.
  • the pivot axis D1 of the second identification part 20 with respect to the first fixing part 19 is also perpendicular to the direction D2 along which the identification portions 21 are staggered along the second identification portion 20.
  • the direction D2 is rotatable in the plane (Y, Z).
  • the second identification part 20 advantageously varies at least between a lowered angular position ( Figure 7 ) relative to the insulating box 12 in which the second identification part 20 is substantially parallel to the front face 17 of the insulating box 12 and a straightened angular position ( Figure 8 ) in which the second identification part 20 is substantially perpendicular locally to the front face 17 of the insulating box 12.
  • the first fixing part 19 of the marker holder 10 is stationary relative to the insulating box 12 during the change of angular position of the second identification part 20 of the marker holder 10.
  • the Figures 1 to 3 show the position occupied by the second identification part 20 relative to the first fixing part 19 when the second identification part 20 is able to occupy its lowered angular position.
  • Figures 4 to 6 show the position occupied by the second identification part 20 relative to the first fixing part 19 when the second identification part 20 is able to occupy its upright angular position.
  • the upright angular position is adopted by the second identification part 20 when access to the openings 29 which give access to the connection terminals 13 and into which the electrical conductors are inserted is necessary and / or when access to the other shunt well 18 is required. Otherwise, for ease of reading the data recorded at the level of the identification portions and for a reduction in the bulk, the lowered angular position is normally adopted by the second identification part 20.
  • the marker holder 10 comprises elements for angular indexing of the angular position occupied by the second identification part 20 with respect to the first fixing part 19, in particular according to predetermined angular positions.
  • the angular indexing elements are for example formed to predetermine only the lowered angular position and the raised angular position that the second identification part can selectively occupy.
  • the angular indexing elements can also be designed to optionally predetermine one or more angular position (s) intermediate (s) between the lowered and raised angular positions.
  • the angular indexing elements are for example obtained by angular stops 25, 26 integral with the second identification part, arranged so as to limit and limit the maximum angular travel of the second part. identification 20 around the pivot axis D1. Stop 25 is used ( Figure 8 ) to limit and predetermine the upright angular position of the second identification part 20. The stop 26 is on the contrary used ( Figure 7 ) to limit and predetermine the lowered angular position of the second identification part 20.
  • the angular indexing elements can also comprise a plurality of slots 27 formed on the male tubular part 23 and a fixed lug 28 of the tubular cavity 24 capable of being inserted, in each of the predetermined positions desired for the second identification part 20, in a corresponding one of the slots 27 among the plurality of slots 27.
  • the first fixing part 19 has symmetry along a plane containing both the direction D3 along which the first fixing part 19 is intended to be inserted into the shunt well 18 and the direction corresponding to the pivot axis D1 around which the second identification part 20 is articulated relative to the first fixing part 19.
  • This symmetry is organized so that the marker holder 10 can occupy two different configurations with respect to the insulating box 12 , these two configurations varying from one another by a rotation of 180 degrees of the first fixing part 19 around the direction D3 of insertion into the shunt well 18.
  • the marker holder 10 can either occupy the position shown on the Figures 7 and 8 , or an inverted configuration in which the frame holder 10 would be turned 180 ° around the direction D3, then taking a position symmetrical with respect to the plane (D1, D3), ie with respect to a plane (X, Z) passing by D3.
  • the junction block 11 is fixed on the support rail, it is then advantageously possible to choose the orientation occupied by the second identification part 20 in the lowered position.
  • the first fixing part 19 can take around the direction D3
  • the second identification part 20 occupying its lowered position extends downward in the direction Y.
  • the second identification part 20 occupying its lowered position extends upwards in the direction Y.
  • the system for inserting the first fixing part 19 into any shunt well 18 of the insulating box can be of any nature and design.
  • the shunt well 18 can comprise an internal annular rib 30 arranged at its mouth towards the front face 17 and included in a plane perpendicular to the direction D3 along which the first fixing part 19 is inserted into this shunt well 18.
  • the first fixing part 19 comprises an external annular groove 31 in which the internal annular rib 30 of the shunt well 18 is inserted by elastic interlocking during the insertion of the first fixing part 19.
  • the shunt well 18 may also include an internal annular shoulder 32 extending through a receiving bore 33 on the side opposite the mouth of the shunt well 18 on the front face 17 of the insulating box 12.
  • the first fixing part 19 comprises an elastically deformable end tenon 34 which is inserted into the receiving bore 33 during the insertion of the first fixing part 19 by means of an elastic deformation of the end tenon 34.
  • the elastic deformation of the end tenon 34 makes it possible to compensate for the variations in diameter of the receiving bore 33 which may appear between two different terminal blocks 11.
  • the elastic deformation of the end tenon 34 eliminates the overhang undergone by the marker holder 10 in the different angular positions of the second identification part 20.
  • the width of the second fixing part 20 counted along the direction in which the pivot axis D1 of the second fixing part 20 relative to the first fixing part 19 is counted is equal to or less than the thickness of the insulating case 12 of the junction block 11 counted along the direction X along which the support rail is oriented when the junction block 11 is fixed on the support rail.
  • the marker holder 10 fixed in the front face 17 of the insulating box 12 of one of the terminal blocks 11 is independent of the holder.
  • the marker holder 11 fixed in the shunt well 18 of the insulating box 12 of one of the terminal blocks 11 is independent of the marker holder 10 fixed in the shunt well 18 of the insulating box 12 of the other of the terminal blocks 11. This independence results in a possibility of angular movement of the second identification part 20 and a possibility of withdrawal of the first fixing part 19 outside the insulating box 12 independent of a marker holder 10 to the other marker holder 10.
  • the marker holder 10, the junction block 11 and the arrangement which have just been described advantageously offer a solution that is simple, economical, practical and safe, efficient and compact.

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  • Connections Arranged To Contact A Plurality Of Conductors (AREA)

Claims (12)

  1. Elektrische Anschlussleiste (11), umfassend ein isolierendes Gehäuse (12), das eine Rückseite (15) aufweist, die mit Befestigungselementen (16) ausgestattet ist, die es erlauben, die Anschlussleiste (11) entsprechend einer Anordnung an einer Stützschiene zu befestigen, bei der eine Vielzahl von Anschlussleisten (11) Seite an Seite in einer selben Reihe disponiert sind, die in der Richtung der Stützschiene orientiert ist, und eine Vorderseite (17), die mindestens einen Shunt-Schacht (18) umfasst, wobei die Anschlussleiste (11) ein Kennzeichnungsschild (10) umfasst, das einen ersten Befestigungsteil (19) umfasst, der in den Shunt-Schacht (18) eingeführt ist, und einen zweiten Identifizierungsteil (20), der mindestens einen Identifizierungsabschnitt (21) aufweist, dadurch gekennzeichnet, dass der zweite Identifizierungsteil (21) in Bezug auf den ersten Befestigungsteil (19) gelenkig ist, um durch Schwenken in Bezug auf das isolierende Gehäuse (12) beweglich zu sein, und mindestens zwischen einer in Bezug auf das isolierende Gehäuse (12) abgesenkten Winkelposition, in der der zweite Identifizierungsteil (20) im Wesentlichen parallel zur Vorderseite (17) des isolierenden Gehäuses (12) ist, und einer aufgerichteten Winkelposition variiert, in der der zweite Identifizierungsteil (20) im Wesentlichen lokal senkrecht zur Vorderseite (17) des isolierenden Gehäuses (12) ist, wobei der erste Befestigungsteil (19) des Kennzeichnungsschilds (10) während der Änderung der Winkelposition des zweiten Identifizierungsteils (20) des Kennzeichnungsschilds (10) in Bezug auf das isolierende Gehäuse (12) unbeweglich ist.
  2. Anschlussleiste (11) nach Anspruch 1, dadurch gekennzeichnet, dass der erste Befestigungsteil (19) entlang einer Ebene eine Symmetrie aufweist, die sowohl die Richtung (D3), in der der erste Befestigungsteil (19) dazu bestimmt ist, in den Shunt-Schacht (18) eingeführt zu werden, und die Richtung enthält, die der Schwenkachse (D1) entspricht, um die der zweite Identifizierungsteil (20) in Bezug auf den ersten Befestigungsteil (19) gelenkig ist, sodass das Kennzeichnungsschild (10) zwei unterschiedliche Konfigurationen in Bezug auf das isolierende Gehäuse (12) einnehmen kann, die durch eine Rotation um 180 Grad des ersten Befestigungsteils (19) um die Richtung (D3) zum Einführen in den Shunt-Schacht (18) zueinander variieren.
  3. Anschlussleiste (11) nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass das Kennzeichnungsschild (10) Winkelindexierungselemente (25, 26, 27, 28) der Winkelposition umfasst, die von dem zweiten Identifizierungsteil (20) in Bezug auf den ersten Befestigungsteil (19), insbesondere entsprechend vorbestimmten Winkelpositionen eingenommen wird.
  4. Anschlussleiste (11) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass der zweite Identifizierungsteil (20) mit einer Vielzahl von Identifizierungsabschnitten (21) versehen ist, die zueinander ausgerichtet sind, die insbesondere jeweils die Aufnahme einer Identifizierungskennzeichnung ermöglichen.
  5. Anschlussleiste (11) nach Anspruch 4, dadurch gekennzeichnet, dass die Schwenkachse (D1) des zweiten Identifizierungsteils (20) in Bezug auf den ersten Befestigungsteil (19) senkrecht zur Richtung (D3) ist, in der der erste Befestigungsteil (19) in den Shunt-Schacht (18) eingeführt wird, und senkrecht zur Richtung (D2), in der die Identifizierungsabschnitte (21) entlang des zweiten Identifizierungsteils (20) gestaffelt sind.
  6. Anschlussleiste (11) nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der erste Befestigungsteil (19) und der zweite Identifizierungsteil (20) aus einem einzigen und selben Einzelstück gebildet sind, wobei das Gelenk zwischen dem ersten Befestigungsteil (19) und dem zweiten Identifizierungsteil (20) durch eine lokal elastisch verformbare Zone des Einzelstücks konstituiert wird.
  7. Anschlussleiste (11) nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der erste Befestigungsteil (19) und der zweite Identifizierungsteil (20) aus zwei verschiedenen Teilen konstituiert sind, die durch Schwenkbefestigungselemente (23, 24) miteinander zusammengesetzt sind, die ein Schwenken des zweiten Identifizierungsteils (20) in Bezug auf den ersten Befestigungsteil (19) derart ermöglichen, um das Gelenk zwischen dem ersten Befestigungsteil (19) und dem zweiten Identifizierungsteil (20) zu konstituieren.
  8. Anschlussleiste (11) nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass sich die Schwenkachse (D1), die durch das Gelenk des zweiten Identifizierungsteils (20) in Bezug auf den ersten Befestigungsteil (19) verliehen wird, an einem Ende des zweiten Identifizierungsteils (20) befindet und im Wesentlichen mit dem mindestens einen Identifizierungsabschnitt (21) ausgerichtet ist.
  9. Anschlussleiste (11) nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass der Shunt-Schacht (18) eine innere ringförmige Rippe (30) umfasst, die im Bereich seiner Mündung in die Vorderseite (17) vorgesehen, und in einer Ebene senkrecht zur Richtung (D3) enthalten ist, in die der erste Befestigungsteil (19) in den Shunt-Schacht (18) eingeführt wird, und dadurch, dass der erste Befestigungsteil (19) eine äußere ringförmige Nut (31) umfasst, in die die innere ringförmige Rippe (30) des Shunt-Schachts (18) durch elastischen Einklicken während des Einführens des ersten Befestigungsteils (19) eingeführt wird.
  10. Anschlussleiste (11) nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass der Shunt-Schacht (18) einen inneren ringförmigen Ansatz (32) umfasst, der durch eine Aufnahmebohrung (33) auf der entgegengesetzten Seite zur Mündung des Shunt-Schachts (18) in die Vorderseite (17) des isolierenden Gehäuses (12) verlängert wird, und dadurch, dass der erste Befestigungsteil (19) einen elastisch verformbaren Endzapfen (34) umfasst, der während des Einführens des ersten Befestigungsteils (19) durch elastische Verformung des Endzapfens (34) in die Aufnahmebohrung (33) eingeführt wird.
  11. Anschlussleiste (11) nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass die Breite des zweiten Identifizierungsteils (20), entlang der Richtung angenommen, in der die Schwenkachse (D1) des zweiten Befestigungsteils (20) in Bezug auf den ersten Befestigungsteil (19) angenommen wird, kleiner oder gleich der Dicke des isolierenden Gehäuses (12) der Anschlussleiste (11) ist, die entlang der Richtung (X) angenommen wird, in der die Stützschiene orientiert ist, wenn die Anschlussleiste (11) an der Stützschiene befestigt ist.
  12. Anordnung, umfassend eine Stützschiene und mindestens zwei Anschlussleisten (11), wobei jede eine Anschlussleiste (11) nach einem der Ansprüche 1 bis 11 ist, die an ihren Rückseiten (15) derart befestigt sind, um Seite an Seite in einer selben Reihe disponiert zu sein, die in der Richtung der Stützschiene orientiert ist, Anordnung, bei der das Kennzeichnungsschild (10), das in dem Shunt-Schacht (18) des isolierenden Gehäuses (12) einer der Anschlussleisten (11) befestigt ist, unabhängig von dem Kennzeichnungsschild (10) ist, das in dem Shunt-Schacht (18) des isolierenden Gehäuses (12) der anderen der Anschlussleisten (11) befestigt ist.
EP16169285.0A 2016-05-12 2016-05-12 Anschlussleiste mit kennzeichnungsschild zum befestigen in einer shunt-vertiefung Active EP3244489B1 (de)

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DE102021106498A1 (de) 2021-03-17 2022-09-22 Weidmüller Interface GmbH & Co. KG Anordnung eines Reihenklemmblocks mit Zubehörhalter
DE202022100453U1 (de) * 2022-01-26 2023-05-04 WAGO Verwaltungsgesellschaft mit beschränkter Haftung Set aus einer Leiteranschlussklemme und einem Zubehörelement

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GB1380533A (en) * 1973-04-24 1975-01-15 Hego Electric Gmbh Electrical connector with insulating separator
DE2914192C2 (de) * 1979-04-07 1982-04-29 F. Wieland, Elektrische Industrie GmbH, 8600 Bamberg Schaltanlagenreihenklemme mit zugeordneter Isolier-Trennwand
FR2757316B1 (fr) * 1996-12-16 1999-01-22 Entrelec Sa Module de raccordement a bornes de connexion interconnectables par piece(s) conductrice(s) mobile(s)
DE202008013609U1 (de) 2008-06-27 2009-11-19 Weidmüller Interface GmbH & Co. KG Aus mehreren Kennzeichnungsvorrichtungen zusammenstellbare Kennzeichnungs-Reihenanordnung
DE202009003250U1 (de) 2009-03-06 2010-07-22 Weidmüller Interface GmbH & Co. KG Aus mehreren Kennzeichnungsvorrichtungen zusammenstellbare Kennzeichnungs-Reihenanordnung
WO2012041778A1 (de) * 2010-09-30 2012-04-05 Weidmüller Interface GmbH & Co. KG Querverbinder mit markierung

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