EP3132502B1 - Bornier à blocs de jonction - Google Patents

Bornier à blocs de jonction Download PDF

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Publication number
EP3132502B1
EP3132502B1 EP15712603.8A EP15712603A EP3132502B1 EP 3132502 B1 EP3132502 B1 EP 3132502B1 EP 15712603 A EP15712603 A EP 15712603A EP 3132502 B1 EP3132502 B1 EP 3132502B1
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EP
European Patent Office
Prior art keywords
terminal block
terminal
conductor
potential
cross
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
EP15712603.8A
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German (de)
English (en)
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EP3132502A1 (fr
EP3132502B2 (fr
Inventor
Martin Adamczyk
Jörn Buhrke
Genadij Neumann
Andreas Rutz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Weidmueller Interface GmbH and Co KG
Original Assignee
Weidmueller Interface GmbH and Co KG
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Publication of EP3132502A1 publication Critical patent/EP3132502A1/fr
Publication of EP3132502B1 publication Critical patent/EP3132502B1/fr
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Publication of EP3132502B2 publication Critical patent/EP3132502B2/fr
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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
    • 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
    • H01R9/2675Electrical interconnections between two blocks, e.g. by means of busbars
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R11/00Individual connecting elements providing two or more spaced connecting locations for conductive members which are, or may be, thereby interconnected, e.g. end pieces for wires or cables supported by the wire or cable and having means for facilitating electrical connection to some other wire, terminal, or conductive member, blocks of binding posts
    • H01R11/03Individual connecting elements providing two or more spaced connecting locations for conductive members which are, or may be, thereby interconnected, e.g. end pieces for wires or cables supported by the wire or cable and having means for facilitating electrical connection to some other wire, terminal, or conductive member, blocks of binding posts characterised by the relationship between the connecting locations
    • H01R11/07Individual connecting elements providing two or more spaced connecting locations for conductive members which are, or may be, thereby interconnected, e.g. end pieces for wires or cables supported by the wire or cable and having means for facilitating electrical connection to some other wire, terminal, or conductive member, blocks of binding posts characterised by the relationship between the connecting locations the connecting locations being of the same type but different sizes
    • 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
    • H01R9/2683Marking plates or tabs
    • 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
    • H01R9/2691Clip-on terminal blocks for side-by-side rail- or strip-mounting with ground wire connection to the rail

Definitions

  • the invention relates to a terminal block or a terminal block arrangement comprising terminal blocks according to the preamble of claim 1.
  • Terminal blocks have long been known in a wide variety of configurations. They are put together on the assembly basis, usually a mounting rail, by the user into function blocks, for example into a function block for supplying energy to consumers. For this purpose, according to the state of the art, several output terminals are lined up on a terminal block that serves as a feed terminal, the potential distribution within the terminal block taking place by means of busbars or by means of so-called cross jumpers.
  • a feed terminal with a housing with relatively large dimensions in the directions perpendicular to the mounting rail and at least one "larger" conductor connection device or a conductor connection for conductors is relatively large Diameter with several terminal blocks suitable for an outgoing function, for example by means of through terminal blocks each with a housing with smaller dimensions in these directions and with two or more smaller conductor connection devices for smaller diameter conductors with reduced cross-section (relative to the feed conductor (s)).
  • the terminal blocks of the terminal block usually have different dimensions in any case.
  • the selection and assembly of the terminal blocks - including the implementation of a corresponding circuit with the terminal blocks - must be done by the user himself using catalogs and the like, which can be relatively complex.
  • the different dimensions of the housings assembled into a block result in a relatively confusing, often jagged picture on the mounting rail.
  • the generic one shows a further modular terminal block or a further modular terminal arrangement according to the prior art EP 0 222 030 B1 .
  • several terminal blocks of the same dimensions are combined to form an initiator terminal block.
  • the terminal block is only suitable for distributing very small amounts of power. A reduction in cross-section will not be implemented.
  • the terminal blocks of the terminal block have different dimensions.
  • each of the housings 3 of the terminal block 1 has a fastening foot, for example a snap-in foot, for mounting on a carrier rail (not shown here) on its ("lower") side facing a carrier rail (not shown).
  • a fastening foot for example a snap-in foot
  • the housings 3 of the terminal blocks 2a - 2f of the terminal block each point perpendicular to the direction of arrangement (in the directions "y”, ie "transversely to the direction of arrangement x and transversely to the main extension direction of the mounting rail” and "z", ie "perpendicular to the direction of arrangement x or, if necessary," . Relatively upwards to a mounting rail ") have the same dimensions.
  • the first terminal block 2a is only wider than the other terminal blocks 2b, ... in the arrangement direction x.
  • the housings 3 In the arrangement direction x, the housings 3 have their (largest) and (except on the very outside in the block) main outer sides 3a, 3b to be arranged. They have narrow sides 3d, 3e in the z direction or parallel to the x / z plane.
  • the narrow sides 3d, 3e border the upper side 3c of the housing 3 in two corner areas K1 and K2.
  • terminal blocks 2a, 2b, 2c, ... of the terminal block 1 are preferably connected to one another, for example by means of corresponding clamping or locking pins (not shown here) on their outer sides lying against one another and extending perpendicular to the direction of arrangement.
  • each terminal block 2a-f there is at least one or, in this case, preferably two conductor connection devices 7, 8 (see terminal block 2f in FIG Fig. 1 c) intended for connection of electrical conductors.
  • the conductor connection devices 7, 8 are preferably designed as so-called direct plug-in spring terminals (push-in) with a compression spring connection that has a compression spring that is used to conductively press the inserted conductor onto a busbar (not shown here).
  • the use of direct plug-in spring clips is particularly preferred, as their handling is particularly simple, safe and fast.
  • other conductor connection devices such as tension spring connections, IDC connections or screw connections can also be used.
  • a conductor insertion opening 9 and preferably also an actuation opening 10 is formed in the housing, whereby a stripped conductor end or the like in a contact area, in particular a clamping contact area, through the conductor insertion openings 9. can be inserted in the associated conductor connection device 7, 8.
  • the optional actuation opening 10 serves to accommodate an operating element - for example a push-button or a screwdriver to be actuated by a screwdriver - in the housing in order to open the spring or the conductor connection device, so that an inserted conductor can be removed or removed can be introduced.
  • All of the conductor insertion openings 9 and the possibly existing actuation openings 10 are formed on the narrow upper side 3c, i.e. on the side of the housing 3 of the terminal blocks 2 facing away from the fastening foot. This makes the terminal block 1 particularly clear and its handling - especially the wiring with conductors and the integration into a higher-level system - particularly easy.
  • Each of the conductor connection devices 7-8 (in Figure 1b shown as a black point and in Fig. 1 indicated as an arrow) is also via a conductor connection like a (not to be recognized here but in Figure 2b schematically drawn) busbar in the interior of the housing (or another suitable conductor) led into or under the area of at least one cross connector channel 11 in the housings 3.
  • two cross-connector channels 11a, b are provided for each conductor connection device 3.
  • the cross connector channel or channels 11a, b each serve to insert a cross jumper, in particular a cross connector comb 12a, b, for distributing a potential in the row direction x of the terminal block 1 across two or more of the terminal blocks 2a-f.
  • the respective busbar can be provided with holes in the corresponding areas below or on the bottom of the cross-connector channels 11a, b, into which pins of the cross-connector comb can be inserted (not shown here).
  • Preferably and advantageously even two of the are per conductor connection device and busbar Cross connector combs 12a, b are provided in order to transversely distribute an associated potential “+” or “-” or “FE” or “PE”.
  • each of the series terminals 2a-f thus preferably has four cross connector channels 11a-d and, if necessary, four insertable and preferably also inserted cross jumpers, in particular cross connector combs 12a-d.
  • the first terminal block 2a of the terminal blocks of the terminal block 1 for power distribution in the manner of Fig. 1e - this function was explained at the beginning - is designed as a so-called "feed terminal".
  • the housing 3 of this first terminal block 2a has a greater width in the rowing direction than the other housings 3.
  • This first terminal block 2a preferably forms the end of the terminal block on one side, which makes the terminal block 1 clearly simple. However, it would also be conceivable to arrange this feed terminal 2a at a different location on the terminal block 1.
  • the free outer side 3a of the first series terminal 2a or feed terminal facing away from the next series terminal 2b is designed to be closed.
  • each housing 3 On the side facing away from the fastening foot, each housing 3 has two of the conductor insertion openings 9.
  • One of the conductor insertion openings 9 is arranged relative to one edge K1 on the upper side 3c of the respective terminal block and the other of the conductor insertion openings is, starting from this edge K1, on the route between one edge K1 and the second edge K2 in an area between approx. 60-90% of the length of the route between K1 and K2 on the upper side 3c.
  • one or preferably two of the cross connector channels 11a, b are formed on the upper side here behind the first and second conductor insertion openings 9, which are again preferably in the center end in the direction of assembly x in the housing 3 of the first series terminal 2a designed as a feed terminal, which is advantageous but not mandatory.
  • the other terminals 2b - 2f lined up next to the feed terminal 2a have a somewhat different structure.
  • These further series terminals 2b-2f are used to connect preferably one consumer to each of the further series terminals 2b-2f, also called distribution terminals.
  • the upper sides 3c of these distribution terminals 2b-2f have the following structure.
  • the one edge K1 is followed by the conductor insertion opening 9 of the first conductor connection device, then the actuation opening 10, preferably with a push button, and then the one or two or more cross-connector channels 11a, b assigned to the first conductor connection device, in which in turn can each have a cross connector comb 12a, b inserted.
  • the insertion opening 9 of the respective second conductor connection device then its actuation opening 10, preferably with a push button, then a fuse housing 14b - 14f with fuse and plug contacts for contacting a busbar in the housing 3 and then the or that of the cross connector channels 11a, b of the second conductor connection devices.
  • a contour 13c for attaching a third marker is then preferably arranged between the second cross connector channels 11a, b and the second edge K2.
  • the first conductor connection device or the first conductor connection of the feed terminal 2a lies approximately in alignment with the further first conductor connection devices or conductor connection devices 7 of the juxtaposed distribution or output terminals 2b-2f.
  • the second conductor connection devices of the terminal blocks 2b - 2f (which can also be referred to as distribution or output terminals 2b - 2f) are preferably used to connect conductors with a maximum slightly smaller cross section than the first conductor connection devices of the feed terminal 2a allow. The conductor cross-section is thus reduced from the feed terminal 2a to the distributor terminals 2b-2f.
  • the cross connector channels 11 and the cross connector combs 12 for the cross distribution of the first potential lie to the side of these first conductor connection devices and are conductively connected to them.
  • the functional area for feeding in and for transversely distributing and realizing the first potential (minus) of output connections takes up less than half, preferably approx. 1/3, of the top 3c of the housing 3 of the terminal blocks 2.
  • the remaining part preferably the remaining two thirds of the top 3c of the housing 3 of the terminal blocks, is used to arrange the further conductor insertion openings 9 for the conductor connection devices for connecting conductors to pass on the positive potential, for placing the respective fuse housing 14b, c, d, e, f, for arranging one or two further cross connector channels 11 for cross bridges 12 and for forming the further attachment contour 13c for attaching a third marker.
  • the second potential plus is transversely distributed by the feed terminal 2a, is distributed via busbars and plug-in devices into the fuse housing with the fuses and from there via the fuses and contacts on the fuse housing 14 back into busbar pieces, which are connected to the second conductor connection devices of the lined up terminal blocks 2b, ... are connected. In this way, a fuse is connected between the input for feeding in the second potential and the further outlets (conductor connection devices 8).
  • the terminal block 1 of the Fig. 1 realizes the function "(auxiliary) power distribution with individual protection" of FIG. 1e.
  • the positive and negative potentials are fed in at the feed terminal 2a with a larger cross-section, which is preferably up to 6 mm (which is usually sufficient for a 40 A power supply with regard to the current). This is only possible for a few terminal blocks, as the arrangement of the functional areas on the top of the terminal blocks is clear and particularly functionally optimized.
  • the auxiliary power distribution is thus implemented in a particularly simple and clear manner with protection of the positive potential by a fuse.
  • the potentials plus and minus are fed in at the feed terminal 2a and transferred to the individual distribution terminals 2b - 2f with reduced cross-section to the equipment or consumers (see Fig. 1a, b , c , d, e ).
  • the plus potential is individually protected on the output side.
  • the negative potential is fed in, reduced in cross-section and transferred directly to the individual equipment. Alternatively, it can also be connected or grounded to the mounting rail via a PE foot, which can be used as a functional earth or as a PE potential.
  • outlets or conductor connection devices of the distribution terminals are on the top 3c with the fuse housing 14 placed on top, since this makes the circuit or the connection situation on the respective housing 3 appear particularly logical and clearly visible.
  • the number of distribution terminals 2b, 2e, ... is only an example. Only one or more of the many more (preferably up to 100) output terminals or distribution terminals can be provided for each feed terminal.
  • the Figures 1f and 1g show a circuit for an analog auxiliary power distribution in which the plus potential is not individually protected by a fuse. Therefore, the second conductor connection devices of the distribution terminals can be connected directly to their cross connector channels without a fuse being connected to the conductor path. In this way, this function can also be performed with a terminal block of the type Fig. 1 just realized without fuse housing and fuse and with a continuous busbar in this area (not shown).
  • the negative potential can be connected to the carrier rail via a conductive contact on the foot to the carrier rail in order to connect the negative potential to a ground potential, for example a functional earth FE or to a potential PE.
  • terminal block 1 in Fig. 1 (and also the terminal block 101, see Fig. 2 ) all conductor insertion openings 9 and their associated actuation openings 10 in the feed terminal and across the distribution terminals 2b - 2f are arranged in the same direction or relative to one of the edges K1 for each of the conductor connection devices in the same order (in the Y direction ) which helps to make the entire terminal block 1 particularly clear.
  • the actuating openings 10 are located with pushers relative to the edge K1 on the side of the conductor insertion openings 9 facing this edge K1, while this is the other way around in the distribution terminals 2b-2f.
  • the conductor insertion openings are usually arranged there in opposite directions on both sides of a central plane perpendicular to the center of the mounting rail (X / Z plane). However, it is more logical and clearer if an arrangement in the same direction is selected for the same function (supply potential, distribute potential).
  • Fig. 2 shows a further terminal block 101. This terminal block is used to distribute auxiliary power without a fuse.
  • a feed terminal 102a serves to apply or feed in the potential. It has a first conductor connection with a larger cross section, which is used to connect the potential to be applied or distributed.
  • the first conductor connection is designed for connecting conductors with a larger cross section (e.g. 6mm).
  • the potential is routed with reduced cross-section to several second conductor connection devices (outlets).
  • the first conductor connection along with two cross connector channels 11a is arranged in a first half of the top 3c, while the second conductor connection devices or their conductor insertion openings 10 are distributed in the second half of the top 3c of the feed terminal 102a.
  • Two rows of one, two or preferably three or even more of the second conductor insertion openings or conductor connection devices are provided in one half of the top 3c in the feed terminal 2a, so that six conductor connection devices are also provided as outlets in the feed terminal 102a together with their openings 9 and 100 are formed on or in the upper side 3c. This turns the pure feeder terminal into a combined feeder and distributor terminal 102a.
  • each terminal block 102a, b, ... of the terminal block 101 On the housing 3 on the top of each terminal block 102a, b, ... of the terminal block 101 is in turn one or two or more of the cross connector channels 12a, b formed.
  • the other series terminals 102b, ... are designed as pure output or distribution terminals.
  • the contours 13 correspond to those of the housing 3 of the housing Fig. 1 .
  • a contour 13c for attaching a marker is also formed between the cross connector channels 12 and the edge K2.
  • the potential fed in is transferred to the further series terminals or the distribution terminals 102b, ..., 102f. cross-distributed.
  • the potential is distributed to at least one row of second conductor connection devices 8 in each case via a conductor such as a busbar in the housing 3.
  • six outgoing conductor connection devices 8 are provided for each distribution terminal 2b, ... by way of example and advantageously.
  • a potential is distributed to many taps in a narrow space, with each of the terminal blocks of the terminal block 101, including the feed terminal 102a, also or only as an output terminal and distribution terminal (also).
  • the number of distribution terminals in a row is purely exemplary. There could well be 100 outflows or more.
  • the potential is fed in at the supply terminal 102a (supply terminal 2a), that it is then reduced in cross-section within the supply and distribution terminal 102a and that it is then in another section of the supply terminal or in a further distribution terminal is passed on to conductor connection devices with a smaller cross-section.
  • the positive potential can be distributed in a terminal block 101 of this type, and the negative potential can be distributed in another (possibly in a different color or with different colored pushers in the actuation openings 10), which in turn can optionally be or be earthed with a contact foot on the mounting rail.
  • Reference signs ⁇ /b> Terminal block 1, 101 Terminal blocks 2a, 2b, 2c, ... 2f; 102a, 102b, 102c, .... casing 3 Main exteriors 3a, 3b Top 3c Narrow sides 3d, 3e L.

Landscapes

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

Claims (18)

  1. Bornier (1,101) avec au moins deux ou plusieurs blocs de jonction (2a, 2b... ; 102a, 102b...) alignés les uns avec les autres, qui peut être posé sur une base de montage, en particulier un rail de support, comportant les caractéristiques suivantes :
    a. les blocs de jonction (2a... ; 102a...) présentent chacun un boîtier (3, 103) sensiblement en forme de galette avec deux grands côtés (3a, 3b), deux petits côtés (3d, 3e), une face supérieure (3c) et une face inférieure ;
    b. au moins un des blocs de jonction (2a, 102a) est conçu comme une borne d'alimentation (2a, 102a) et présente pour cela au moins un ou deux premiers dispositifs de connexion de conducteurs (7, 8) pour la connexion de conducteurs externes destinés à fournir respectivement un des deux potentiels, positif ou négatif, et
    c. l'un ou les plusieurs autres blocs de jonction sont conçus comme des bornes de distribution (2b..., 102b...) destinées à distribuer le ou les potentiels et présentent au moins un ou plusieurs deuxièmes dispositifs de connexion de conducteurs (7, 8) pour la connexion de conducteurs externes destinés à distribuer le potentiel positif ou négatif à des consommateurs ;
    d. la distribution du potentiel passant sur la longueur des plusieurs blocs de jonction du bornier au moyen d'un ou plusieurs dispositifs de connexion transversale, en particulier de peignes de connexion transversale (12), qui est ou sont enfichés dans un ou plusieurs conduits de connexion transversale (11) correspondants,
    e. les premiers dispositifs de connexion de conducteurs de la borne d'alimentation étant conçus pour la connexion de conducteurs d'une première section pour fournir le ou les potentiels d'alimentation, et
    f. les deuxièmes dispositifs de connexion de conducteurs (7, 8) des bornes de distribution étant conçus, en vue du connexion des consommateurs, pour la connexion de conducteurs d'une plus petite section que les conducteurs à brancher sur les premiers dispositifs de connexion de conducteurs, la section maximale des conducteurs qui peuvent être branchés sur les deuxièmes dispositifs de connexion de conducteurs des bornes de distribution étant plus petite que la section maximale des conducteurs qui peuvent être branchés sur les premiers dispositifs de connexion de conducteurs (7, 8) de la borne d'alimentation (2a, 102a),
    caractérisé en ce que
    g. tous les blocs de jonction du bornier ont les mêmes dimensions dans les directions perpendiculaires au sens de juxtaposition (x).
  2. Bornier selon la revendication 1, caractérisé en ce que le bornier peut être fixé sur la base de montage au moyen d'une patte de fixation ou de plusieurs pattes de fixation.
  3. Bornier selon la revendication 1 ou 2, caractérisé en ce que les dispositifs de connexion de conducteurs présentent chacune une ouverture d'insertion de conducteur (9) pour l'insertion des conducteurs dans le dispositif de connexion de conducteurs en question et une ouverture d'actionnement (10), en particulier pour un poussoir d'actionnement ou un outil, les ouvertures (9, 10) associées du point de vue fonctionnel de tous les dispositifs de connexion de conducteurs d'un potentiel commun du bornier étant orientées dans la même direction par rapport à une arête (K1) du boîtier (1).
  4. Bornier selon la revendication 1, 2 ou 3, caractérisé en ce que les dispositifs de connexion de conducteurs (7, 8) sont conçus comme des bornes à ressort à enfichage direct avec une connexion à ressort de compression qui présente un ressort de compression servant à presser le conducteur inséré de façon conductrice sur une barre collectrice, et présentent chacune l'ouverture d'insertion des conducteurs et l'ouverture d'actionnement, de préférence pour un poussoir.
  5. Bornier selon la revendication 3 ou 4, caractérisé en ce que toutes les ouvertures d'insertion de conducteurs (9) et les ouvertures d'actionnement (10) sont formées sur la face supérieure (3c) étroite, c'est-à-dire sur le côté opposé à la patte de fixation (4) du boîtier (3) des blocs de jonction (2).
  6. Bornier selon l'une des revendications précédentes, caractérisé en ce que chacun des dispositifs de connexion de conducteurs (7-8) d'un potentiel commun est relié de façon conductrice à au moins un conduit de connexion transversale (11) dans les boîtiers (3), qui est utilisé pour l'enfichage d'un peigne de connexion transversale (12a, b) en vue de la distribution d'un potentiel dans le sens de juxtaposition (x) du bornier (1) sur deux ou plusieurs des blocs de jonction (2a-f).
  7. Bornier selon l'une des revendications précédentes, caractérisé en ce que sont formés sur un petit côté ou les deux petits côtés (3d, 3e) du boîtier (3) qui s'étendent dans le sens de l'axe Y perpendiculairement au sens de l'étendue (x) des surfaces et/ou des contours (13a, b) pour le marquage ou pour la pose, en particulier l'emboîtement, de marqueurs.
  8. Bornier selon l'une des revendications précédentes, caractérisé en ce que sont formés sur la face supérieure (3c) au moins une autre surface et/ou un contour (13c) pour le marquage ou pour la pose, en particulier l'emboîtement, de marqueurs.
  9. Bornier selon l'une des revendications précédentes, caractérisé en ce que la surface et/ou le contour (13c) disposés sur la face supérieure (3c) pour le marquage ou pour la pose, en particulier l'emboîtement, de marqueurs sont formés directement au voisinage de l'une des deux arêtes (K1, K2) entre la face supérieure (3c) et les petits côtés (3a ou 3b) de chaque boîtier.
  10. Bornier selon l'une des revendications précédentes, caractérisé en ce que le premier bloc de jonction (2a) parmi les blocs de jonction du bornier (1) est conçu purement comme une « borne d'alimentation » en vue de la distribution d'énergie, le boîtier (3) de ce premier bloc de jonction (2a) présentant dans le sens de juxtaposition (x) des blocs de jonction, et seulement dans ce sens, une plus grande largeur que les autres boîtiers (3).
  11. Bornier selon l'une des revendications précédentes, caractérisé en ce que chaque boîtier de la borne d'alimentation (2a) présente deux des ouvertures d'insertion de conducteurs (9) et en ce que l'une des ouvertures d'insertion de conducteurs (9) est disposée par rapport à l'arête (K1) entre la face supérieure (3) et l'un des petits côtés (3d) sur la face supérieure (3c) du bloc de jonction correspondant et l'autre ouverture d'insertion de conducteurs, sur la distance à partir d'une arête (K1) entre cette arête (K1) et l'autre arête (K2), entre 60 et 90 % environ de la longueur entre une arête (K1) et l'autre arête (K2).
  12. Bornier selon l'une des revendications précédentes, caractérisé en ce que de préférence un ou de préférence deux des conduits de connexion transversale (11a, b) est ou sont formés respectivement derrière la première ouverture d'insertion de conducteur (9) et derrière la deuxième à partir de l'arête (K1) sur la face supérieure et finissent de préférence au milieu dans le sens de juxtaposition dans le boîtier (3) du premier bloc de jonction (2a) conçu comme une borne d'alimentation, ce qui est avantageux mais pas obligatoire.
  13. Bornier selon l'une des revendications précédentes, caractérisé en ce que les bornes de distribution (2b, 2c...) présentent la structure suivante pour la connexion de préférence d'un consommateur sur chacune sur les faces supérieures (3c) : l'ouverture d'insertion de conducteur (9) du premier dispositif de connexion de conducteurs, son ouverture d'actionnement (10) puis le ou les deux conduits de connexion transversale (11a, b), dans chacun desquels un peigne de contact de connexion transversale (12a, b) peut être enfiché, se raccordent sur une arête (K1) en direction d'un petit côté, suivis, en direction de la deuxième arête (K2) d'abord de l'ouverture d'insertion (9) du deuxième dispositif de connexion de connecteurs, puis d'un boîtier de fusible (14b - 14f) et ensuite du ou des conduits de connexion transversale (11a, b) des deuxièmes dispositifs de connexion de conducteurs.
  14. Bornier selon l'une des revendications précédentes, caractérisé en ce que la zone fonctionnelle pour l'alimentation et la distribution transversale et la réalisation du premier potentiel par des connexions de sortie occupe moins de la moitié de la face supérieure (3c) des boîtiers (3) des blocs de jonction (2) et le reste de la surface de la face supérieure des boîtiers (3) des blocs de jonction est utilisé pour disposer les autres ouvertures d'insertion de conducteurs (9) pour les dispositifs de connexion de conducteurs pour la transmission du potentiel positif, pour la pose des boîtiers de fusible (14b, c, d, e, f) correspondants, pour la disposition des un ou deux ou plusieurs autres conduits de connexion transversale et pour former l'autre contour de pose (13c) pour la pose d'un troisième marqueur.
  15. Bornier selon l'une des revendications précédentes, caractérisé en ce que dans un, plusieurs ou chacun des blocs de jonction, le potentiel négatif est relié de façon conductrice par une patte de contact conductrice, en particulier avec le rail de support, afin de relier le potentiel négatif à un potentiel de terre.
  16. Bornier selon l'une des revendications précédentes, caractérisé en ce que la borne d'alimentation (102) comprend aussi bien un des premiers dispositifs de connexion de conducteurs pour l'alimentation avec un potentiel qu'un ou plusieurs dispositifs de connexion de conducteurs (7, 8) de section réduite par rapport aux premiers dispositifs de connexion de conducteurs pour la distribution du potentiel à des consommateurs.
  17. Bornier selon l'une des revendications précédentes, caractérisé en ce que sont prévus dans le bornier (101) pour la distribution de l'énergie sans sécurité sur le potentiel positif, en direction de chaque consommateur muni d'un fusible, une borne combinée d'alimentation et de distribution (102a) à l'intérieur de laquelle la section est réduite, une ou deux ou plusieurs rangées d'une, deux ou de préférence trois ouvertures d'insertion (9) voire plus pour des dispositifs de connexion de conducteurs correspondants étant prévues dans la borne d'alimentation (2a) à côté du dispositif de connexion de connecteurs pour alimenter l'autre moitié de la face supérieure (3c), de sorte qu'un ou plusieurs dispositifs de connexion de conducteurs sont déjà formés aussi comme départs dans la borne d'alimentation (102a).
  18. Bornier selon l'une des revendications précédentes, caractérisé en ce que le potentiel d'alimentation est réparti transversalement dans les autres blocs de jonction ou les bornes de distribution (102b,..., 102f) au moyen d'un ou deux ou plusieurs peignes de connexion transversale (12a, b) et en ce que le potentiel est distribué par un conducteur tel qu'une barre collectrice dans au moins une rangée de deux ou plusieurs deuxièmes dispositifs de connexion de conducteurs.
EP15712603.8A 2014-04-14 2015-03-25 Bornier à blocs de jonction Active EP3132502B2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102014105316.8A DE102014105316A1 (de) 2014-04-14 2014-04-14 Reihenklemmenblock
PCT/EP2015/056323 WO2015158505A1 (fr) 2014-04-14 2015-03-25 Bornier à blocs de jonction

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EP3132502A1 EP3132502A1 (fr) 2017-02-22
EP3132502B1 true EP3132502B1 (fr) 2021-05-19
EP3132502B2 EP3132502B2 (fr) 2024-02-14

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US (1) US9812796B2 (fr)
EP (1) EP3132502B2 (fr)
CN (1) CN106170894B (fr)
DE (1) DE102014105316A1 (fr)
ES (1) ES2882121T3 (fr)
WO (1) WO2015158505A1 (fr)

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DE202015106368U1 (de) * 2015-11-23 2017-02-24 Phoenix Contatct GmbH & Co. KG Verteilungssystem mit einer elektronischen Sicherungsklemme und zumindest einer ersten Reihenklemme
DE102015223055A1 (de) * 2015-11-23 2017-05-24 Phoenix Contact Gmbh & Co. Kg Verteilungssystem mit einer elektronischen Sicherungsklemme und zumindest einer ersten Reihenklemme
DE102016122263A1 (de) * 2016-11-18 2018-05-24 Phoenix Contact Gmbh & Co. Kg Rangierverbinder und Verfahren zum Herstellen eines Rangierverbinders
DE102020122136A1 (de) 2020-08-25 2022-03-03 Phoenix Contact Gmbh & Co. Kg Potentialverteileranordnung
LU102017B1 (de) 2020-08-25 2022-02-25 Phoenix Contact Gmbh & Co Potentialverteileranordnung
DE102020131171A1 (de) 2020-11-25 2022-05-25 Phoenix Contact Gmbh & Co. Kg Klemme für elektrische Leiter zur Potentialverteilung

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Also Published As

Publication number Publication date
DE102014105316A1 (de) 2015-10-15
US9812796B2 (en) 2017-11-07
EP3132502A1 (fr) 2017-02-22
US20170025771A1 (en) 2017-01-26
EP3132502B2 (fr) 2024-02-14
CN106170894A (zh) 2016-11-30
ES2882121T3 (es) 2021-12-01
CN106170894B (zh) 2019-08-02
WO2015158505A1 (fr) 2015-10-22

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