Electrical connection device

The electrical connection device with a U-shaped section and retaining/punching means provides a quick and reliable solution for grounding conductive parts, addressing the limitations of existing devices by ensuring secure electrical and mechanical connections with reduced material use.

FR3162935A1Pending Publication Date: 2025-12-05MOBASOLAR
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Patent Information

Application Number
FR2024005611
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-05-30
Publication Date
2025-12-05

AI Technical Summary

Technical Problem

Existing grounding connection devices are not suitable for situations where only photovoltaic panel frames need to be grounded, and they do not facilitate quick and reliable electrical connections and mechanical fixings.

Method used

An electrical connection device with a U-shaped section, retaining means, and punching means that allows for a flexible and reliable electrical and mechanical connection between a conductive part and a cable, featuring a U-shaped section with flexible legs, retaining elements, and punching teeth for secure engagement and electrical contact.

Benefits of technology

Enables quick and reliable electrical and mechanical assembly between a conductive part and a cable section, reducing material usage and facilitating easy manufacturing, with enhanced reliability and adaptability to various applications.

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Abstract

The invention relates to an electrical connection device (1) between a part (2) and a cable section (3). The electrical connection device (1) is particular in that it comprises: - a section (4), configured to receive said part (2) and ensure a connection between said device (1) and said part (2), said section (4) comprising two electrical connection means (5) between said part (2) and said device (1), - a retaining means (6) for said cable section (3), and - a punching means (7) configured to be able to be placed in a connection position, in which it penetrates the core of the cable section (3). The invention also relates to an assembly comprising a device (1), a part (2), and a cable section (3), and a method for connecting a part (2) and a cable section (3) by means of a device (1). Figure for the abstract: Fig 5
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Description

Title of the invention: Electrical connection device technical field

[0001] The present invention relates to an electrical connection device for electrically connecting and mechanically fixing a part made at least partially of an electrically conductive material and a section of cable, the core of which is conductive. The invention allows, for example, the part to be grounded via a grounding cable.

[0002] The invention finds a particularly advantageous application for the grounding of photovoltaic panel frames or any other system requiring an electrical connection. Previous technique

[0003] The Applicant develops particularly relevant solutions for grounding electrical equipment.

[0004] He is notably the holder of patent EP3997759, which proposes a grounding connection device for an electrical installation. This device includes self-connection means enabling the automatic creation of an electrical connection during the mounting of electrical equipment, such as photovoltaic panel frames, on their supports.

[0005] However, this device is not suitable for all situations. In particular, this device is not suitable when only photovoltaic panel frames need to be grounded. Description of the invention

[0006] The present invention aims to overcome these drawbacks by proposing an electrical connection device between at least one part made at least partially of an electrically conductive material and a section of cable comprising at least one electrically conductive core.

[0007] This electrical connection device is special in that it comprises: - a U-shaped section, comprising two legs connected to a base, configured to partially receive said at least one part between the two legs of the U, said section having a certain degree of flexibility and being dimensioned to be able to exert pressure on said at least one part in order to form a clamp and ensure a mechanical fastening between said electrical connection device and said at least one part, said section comprising two electrical connection means, each disposed on one of the legs of the U, enabling an electrical connection to be generated between said at least one part and said electrical connection device when said at least one part is partially disposed between the legs of the U, - a retaining means, capable of retaining said cable section in position relative to the electrical connection device, the retaining means comprising at least one active mode, in which it is capable of retaining the cable section, and one inactive mode, in which the cable section can be moved from a position in which it is not retained by the retaining means, to a position in which it is retained by the retaining means, and vice versa, and - a punching means configured to be able to be placed in a standby position, in which it is not in electrical contact with the core of the cable section when a section of said cable section is held in position by said holding means, or in a connection position, in which it penetrates at least partially the core of the cable section, in order to generate an electrical connection between the core of the cable section and said at least one part partially inserted between the legs of the U, and a mechanical fixing between the cable section and the electrical connection device.

[0008] Thanks to these provisions, a reliable electrical connection, as well as a mechanical assembly, can be established between the cable section and said at least one part in a simple and quick manner.

[0009] Said electrical connection device may comprise an electrically conductive blade, said electrical connection device being at least partially formed in said blade by cutting and / or bending, which is a particularly efficient embodiment and easy to manufacture. The amount of material required to manufacture an electrical connection device according to the invention is also reduced.

[0010] At least one of said two means of electrical connection may include at least one pointed tooth, the tip of said at least one pointed tooth being able to be configured to enter into the material of said at least one part, when said at least one part is partially inserted between the legs of the U, which is a simple and robust embodiment of the invention, particularly suitable for manufacturing by cutting and / or bending an electrically conductive blade.

[0011] The tip of said at least one sharp tooth can be oriented so as to oppose a withdrawal of said at least one part from between the legs of the U, which strengthens the reliability of the mechanical fixing of the connection device to said at least one part.

[0012] The punching means may include at least one sharp tooth, the sharp tooth being able to be configured so that when the punching means is in the standby position, the point presents with the plane tangent to the surface of the cable section a angle between 70 and 90°, which allows a reliable and easy-to-obtain electrical connection between the punching means and the core of the cable section.

[0013] The punching means may include at least two pointed teeth, said pointed teeth being able to be configured to penetrate the cable section at two distinct locations on its circumference, these two locations being separated by a distance at least equal to one-quarter of the circumference of the section of said cable section, which strengthens the reliability of the electrical connection between the punching means and the core of the cable section, and facilitates the connection positioning of the punching means, which can be obtained by bringing said pointed teeth closer together.

[0014] The retaining means can be configured to keep the cable section out of the space between the legs of the U, which is an embodiment giving greater flexibility to the invention, and therefore allows it to be adapted to many different applications.

[0015] The retaining means may comprise two retaining elements, and in the active mode of the retaining means, the distance between the two retaining elements is less than the cross-section of the cable section, and in the inactive mode of the retaining means, the distance between the two retaining elements is greater than or equal to the cross-section of the cable section, in order to be able to insert the cable section between said retaining elements, which is a simple and effective embodiment of the invention.

[0016] The retaining means can be configured to undergo elastic deformation to switch from its active mode to its passive mode, and vice versa, which allows these operations to be carried out manually, without the use of special tools.

[0017] The retaining means can be configured to undergo plastic deformation to switch from its active mode to its passive mode, and vice versa, which makes it possible to make the retaining of the cable section by the retaining means more reliable.

[0018] The punching means can be configured to undergo plastic deformation to move from the standby position to the connection position, which makes it possible to maintain the electrical connection between the punching means and the core of the cable section more reliable.

[0019] The two legs of the U may have two different lengths, which facilitates the partial insertion of said at least one piece into the U-shaped section, the U-shaped section being able in particular to have a certain angle of the legs with respect to said at least one piece, and to have for the insertion of said at least one piece a larger opening than the spacing between the legs of the U.

[0020] The present invention also relates to an assembly comprising an electrical connection device according to the invention, a cable section comprising a core electrically conductive, and at least one part made at least partially of an electrically conductive material, said cable section being held in position by the holding means of said electrical connection device, the punching means of said electrical connection device being in the connection position, and said at least one part being partially inserted into the U-section, said at least one part and the cable section being mechanically and electrically connected to each other via the electrical connection device.

[0021] Thanks to these provisions, a reliable electrical connection, as well as a mechanical assembly, can be established between the cable section and said at least one part in a simple and quick manner.

[0022] The present invention further relates to a method of electrical connection between at least one part made at least partially of an electrically conductive material and a section of cable having an electrically conductive core, comprising the following steps: - assembly of the cable section and an electrical connection device according to the invention, by means of the means for retaining the electrical connection device, the means for punching said electrical connection device being in a standby position, - partial insertion of said at least one part into the U-shaped section of the electrical connection device, generating mechanical fastening and electrical connection between said at least one part and the electrical connection device, - putting the punching means into the connection position, generating the mechanical fixing and the electrical connection between the cable section and said at least one part, via the mechanical fixing and the electrical connection between the cable section and the electrical connection device.

[0023] Thanks to these provisions, a reliable electrical connection, as well as a mechanical assembly, can be established between the cable section and said at least one part in a simple and quick manner. Brief description of the drawings

[0024] The present invention and its advantages will become more apparent from the following description of several embodiments given by way of non-limiting examples, with reference to the accompanying drawings, in which:

[0025] [Fig-1] [Fig.1] is a perspective view of a connection device according to a first embodiment of the invention,

[0026] [Fig.2] [Fig.2] is a side view of the connection device of [Fig.1],

[0027] [Fig.3] [Fig.3] is a perspective view of the connection device of [Fig.1], a section of cable being held in place by the retaining device,

[0028] [Fig.4] [Fig.4] is a side view of the connection device and the section of cable of the [Fig.3],

[0029] [Fig.5] [Fig.5] is a cross-sectional view of the connection device and the section of cable of [Fig.3], fixed to a part,

[0030] [Fig.6] [Fig.6] is a perspective view of a connection device according to a second embodiment of the invention,

[0031] [Fig.7] [Fig.7] is a side view of the connection device of [Fig.6],

[0032] [Fig.8] [Fig.8] is a perspective view of a connection device according to a third embodiment of the invention,

[0033] [Fig.9] [Fig.9] is a side view of the connection device of [Fig.8].

[0034] [Fig. 10] [Fig. 10] is a perspective view of a connection device according to a third embodiment of the invention,

[0035] [Fig.11] [Fig.11] is a side view of the connection device of [Fig.10], a section of cable being held by the retaining device. Description of the implementation methods

[0036] In the illustrated embodiments, identical elements or parts bear the same reference numbers. Furthermore, terms with a relative meaning, such as vertical, horizontal, right, left, front, back, above, below, etc., should be interpreted under normal conditions of use of the invention, and as shown in the figures. Moreover, the geometric positions indicated in the description and the claims, such as "perpendicular," "parallel," and "symmetrical," are not limited to the strict sense defined in geometry, but extend to geometric positions that are close, that is, that allow a certain tolerance within the technical field considered, without affecting the result obtained. This tolerance is notably introduced by the adverb "substantially," without this term necessarily being repeated before each adjective.

[0037] With reference to the figures, the electrical connection device 1 according to the invention makes it possible to establish the electrical connection between at least one part 2 and a section of cable 3. The part 2 is made at least partially of an electrically conductive material. The cable 3 comprises an electrically conductive core.

[0038] In the following description, when reference is made to a single part 2, and unless otherwise stated, the provisions applicable to part 2 may also apply in the case of several parts 2.

[0039] Part 2 is generally made of a metallic material, for example aluminium. Part 2 is sometimes anodized, that is to say, coated on the surface with an insulating layer.

[0040] Cable 3 is, for example, an earthing cable, typically comprising a yellow and green sheath. However, it may be another type of cable used for earthing or equipotential bonding of part 2 with other elements of an installation. Cable 3 may have an insulating sheath, inside which are one or more electrically conductive cores. In some embodiments, cable 3 does not have an insulating sheath, the electrically conductive core(s) being exposed.

[0041] In this description, the expression "to connect" or "to electrically connect" parts together means to establish an electrical connection between the conductive parts of the parts.

[0042] Figure 5 illustrates examples of the application of the invention in the context of a photovoltaic panel installation, part 2 being a photovoltaic panel frame. However, the invention is not limited to photovoltaic panel installations but extends to any application using at least partially conductive parts requiring grounding or equipotential bonding, such as thermal panels, hybrid thermal / photovoltaic panels or the like, inverters or micro-inverters, metal structures of all kinds, cable trays, Faraday cages, machine frames, technical work booths (e.g., paint booths), suspended ceiling elements, etc. These examples are not exhaustive.

[0043] The device 1 comprises a U-shaped section 4. For the purposes of this invention, "U-shaped" means a shape comprising two legs 4a connected by means of a base 4b. The base 4b may be flat, as illustrated in Figures 10 to 11, or rounded, as illustrated in Figures 1 to 9. The angle formed by the legs 4a with the base 4b may be the same for both legs 4a, for example, a right angle, or different for each leg 4a. The legs 4a may be parallel to each other, or form an angle, for example, an angle of less than 20°, preferably less than 10°. This angle may be arranged so as to bring the free ends of the legs 4a closer together, or to move them further apart, with respect to their ends located on the side of the base of the U.

[0044] The U-shaped section 4 can extend over the entire length of the connecting device 1, or only over a part of this length, for example over one or more intervals of its length, as illustrated in Figures 1, 3, 6 and 8.

[0045] The legs 4a may have the same length between the base 4b and their free end. The legs 4a may also have different lengths, as illustrated by way of example in the figures. A different length of legs 4a allows for a larger opening in the U into which part 2 can be inserted, thus facilitating the step of partially inserting part 2 into the U-shaped section 4.

[0046] Part 2 can be partially inserted into the recess formed between the two legs 4a of the U. In the following description, the expression "insertion into the U-shaped section 4" refers to an insertion between the legs 4a of the U. This insertion is preferably made from the side opposite the bottom 4b of the U, that is, from the side of the free ends of the legs 4a of the U. The U-shaped section 4 is dimensioned and made of a material that gives it a certain degree of flexibility, so that it can exert pressure on part 2 and form a clamp. This clamping of part 2 by the U-shaped section 4 generates a mechanical fastening of the device 1 to part 2.

[0047] The U-shaped section 4 includes two electrical connection means 5, each disposed on one of the legs 4a of the U. The electrical connection means 5 make it possible to generate an electrical connection between the part 2 and the device 1 when the part 2 is partially disposed between the legs of the U. This electrical connection is preferably generated automatically, when the part 2 is inserted between the legs 4a of the U-shaped section 4.

[0048] What is described above can be applied with a single part 2, connected therefore to the two electrical connection means 5, or with two parts 2, inserted together in the U-shaped section 4, so that each of them is in contact with one of the electrical connection means 5, and thus an equipotential bond is produced between the device 1 and each of the two parts 2.

[0049] The device 1 also includes a retaining means 6. The retaining means 6 is configured to be able to maintain the section of cable 3 in a certain position relative to the device 1. This retention is understood in the directions transverse to the longitudinal direction of the section of cable 3, that is to say that in certain embodiments the cable 3 held in position by the retaining means 6 can always slide in a direction parallel to its longitudinal direction.

[0050] The device 1 further includes a punching means 7. The punching means 7 is arranged relative to the holding means 6, and therefore relative to any cable section 3 held in position by the holding means 6, so that it can be placed in two distinct positions. In a first position of the punching means 7, called the standby position, if a cable section 3 is held by the holding means 6, the punching means 7 is not in electrical contact with the core of the cable 3. In a second position of the punching means 7, called the connection position, if a cable section 3 is held by the holding means 6, the punching means 7 is in electrical contact with the core of the cable 3. An electrical connection is thus established between the core of the cable section 3 and the connection device 1, and therefore possibly with a part 2 inserted in the U-shaped section 4, the electrical connection means 5 being electrically connected to the punching means 7 within the connection device 1, for example by the fact that the connection device 1 is entirely made of a conductive material.

[0051] In figures 4, 7, 9 and 11, the punching means is illustrated in the standby position.

[0052] For the purposes of this description, the term "punching" means that the punching means 7 comprises a sharp end, for example a pointed tooth 7a, preferably formed, for example, by cutting and bending an electrically conductive blade as described below. This sharp end is configured so that, when moving from the standby position to the connection position, the sharp end follows a movement, for example, a straight line or a rotation, in order to penetrate the material of the cable 3 to the core of the cable 3 in a direction perpendicular to the plane tangent to the outer sheath of the cable 3, or at an angle close to 90°, for example, greater than 70°. The sharp end of the punching means 7 preferably penetrates the insulating sheath of the cable section 3 to make contact with the conductive core of the cable section 3.

[0053] The pointed tooth 7a preferably has a shape that opposes its extraction from the material of the cable section 3, as illustrated by way of example in figures 6, 8 and 10. This shape includes in particular lateral points extending in a direction transverse to the main point of the pointed tooth.

[0054] In certain embodiments, including for example that illustrated in [Fig. 1] at 7 and 10 to 11, the punching means 7 has at least two pointed teeth 7a. The teeth 7a are arranged so that when a section of cable 3 is held by the holding means 6, and the punching means 7 is moved into the connection position, the teeth 7a penetrate the section of cable 3 at two distinct locations on its circumference, as illustrated in [Fig. 4], 5, 7 and 11. These locations are separated from each other, for example, by a distance at least equal to one-quarter of the circumference of the cross-section of the section of cable 3.

[0055] The device 1 may comprise or be entirely made of a strip of electrically conductive material, said strip being cut and / or bent to form all or part of the device 1. This material is preferably metallic and elastic, for example, a strip of stainless spring steel. This strip of material may have a relatively small thickness, for example, between 0.5 mm and 1 mm, without these values ​​being limiting. Of course, any other technically equivalent material having good electrical conductivity and elasticity properties may be suitable. This material may also have or not have a thermal and / or chemical surface treatment to add properties, for example, protective properties depending on the nature of the part 2 in the presence of the ambient environment.

[0056] The electrical connection means 5 may each include at least one pointed tooth 8, formed, for example, by cutting and bending in an electrically conductive blade as described above. One or two of the electrical connection means 5 may include a plurality of teeth 8 aligned in the same plane. One or two of the electrical connection means 5 may include one or more groups of teeth 8 aligned in the same plane. For example, each electrical connection means 5 may include a group of nine teeth 8. In another embodiment not shown, one electrical connection means 5 may include two groups of two teeth 8, the groups of teeth 8 being separated by gaps, and the other electrical connection means 5 may include a group of five teeth 8. As illustrated in [Fig.[l] One electrical connection means 5 may comprise two groups of three teeth 8, and the other electrical connection means 5 may comprise two teeth 8, separated by a gap. These examples do not, of course, limit the scope of the invention in any way, as the number of teeth 8 and the possible spacings between teeth 8 or groups of teeth 8, for each of the connection means 5, depend on each application.

[0057] For each leg 4a of the U, the tooth or teeth 8 can extend over a relatively small distance compared to the rest of the leg 4a, so that when a part 2 is inserted into the U section 4, not only the tooth 8, but also a part of the face of the leg 4a from which the tooth 8 extends, is in contact with the part 2. This is for example the case of the embodiment illustrated in figures 1 to 5, with regard to the leg 4a located in the lower position in the figures.

[0058] For each leg 4a of the U, the tooth or teeth 8 can extend over a relatively large distance compared to the rest of the leg 4a, so that when a part 2 is inserted into the U section 4, the tooth 8 is the only part of the leg 4a in contact with the part 2. This is for example the case of the embodiment illustrated in figures 1 to 5, with regard to the leg 4a located in the upper position in the figures.

[0059] The teeth 8 are configured to penetrate the conductive material of the part 2, optionally after passing through an anodized layer, in order to produce reliable electrical connections. This penetration, and therefore these reliable connections, preferably occurs automatically at the moment of insertion of the part 2 into the U-shaped section 4.

[0060] The tips of the teeth 8 are preferably oriented so that when the part 2 is partially inserted into the U-shaped section 4, the tips of the teeth 8 prevent the part 2 from being withdrawn from the U-shaped section 4. More precisely, the tips of the teeth 8 extend towards the bottom 4b of the U, or towards a plane perpendicular to the legs 4a and extending from the bottom 4b of the U, and not towards the opening of the U on the side of the free ends of the legs 4a of the U. Thus, the teeth 8, in addition to their electrical connection function, also have a mechanical fastening function.

[0061] The retaining means 6 is preferably configured to hold the cable section 3 out of the U-shaped section 4, i.e., out of the space between the legs 4a of the U. The cable section 3 is then, for example, held in position by the retaining means 6 against the outer wall of one of the legs 4a of the U.

[0062] The retaining means 6 comprises at least one active mode and one inactive mode. In the active position of the retaining means 6, it is capable of retaining the cable section 3. In the inactive position of the retaining means 6, it is not capable of retaining the cable section 3, but in this position, the cable section 3 can be moved from a position in which it is not retained by the retaining means 6, to a position in which it is retained by the retaining means 6, and vice versa.

[0063] The transition from active mode to passive mode of the retaining means 6, and vice versa, can be obtained by an elastic, or plastic, deformation of the moving part or of its attachment to the rest of the device 1.

[0064] When the retaining means 6 is configured to hold the cable section 3 out of the space between the legs 4a of the U, the retaining means 6 may comprise two retaining elements 6a, 6b. At least one of the retaining elements constitutes the movable part described above. The retaining means 6 can then be placed in an active position in which the distance between the two retaining elements 6a, 6b is less than the cross-section of the cable, the two retaining elements 6a, 6b thus forming a barrier to the separation of the cable section 3 from the device 1.The retaining means 6 can also be placed in an inactive position, in which the distance between the two retaining elements 6a, 6b is greater than or equal to the cross-section of the cable, the cable section 3 no longer being held in position relative to the device 1, the space between the two retaining elements 6a, 6b allowing the cable section 3 to be inserted, or removed, from between the retaining elements 6a, 6b.

[0065] These provisions allow the cable section 3 to be assembled with the device 1 according to a process comprising the following steps: - moving the retaining means 6 into the inactive position by separating parts 6a and 6b from each other, - insertion of cable section 3 between parts 6a, 6b, - passage of the holding means 6 into the active position, by bringing the parts 6a, 6b closer together, the section of cable 3 then no longer being able to be separated from the device 1.

[0066] The two parts 6a, 6b can be elements dedicated solely to the retaining means 6, or one of the parts can be formed by a leg 4a of the U-shaped section 4, as illustrated in [Fig.9].

[0067] The transition from an active to an inactive position, and vice versa, of the retaining means 6, i.e. the separation and coming together of the parts 6a, 6b, can be achieved by a deformation of the retaining means 6, for example of one or both of the parts 6a, 6b, or of the connection of the parts 6a, 6b with the rest of the device 1.

[0068] This deformation can be elastic, as in the embodiments illustrated in Figures 6 to 9. Here, elastic deformation is understood to mean a reversible deformation in which the retaining means 6 is deformed under the effect of pressure and returns to its initial shape when this pressure is removed. In this case, the retaining means 6 at rest, i.e., not subjected to pressure, is in the active position. It is when a section of cable 3 needs to be inserted or removed from the retaining means 6 that the necessary pressure is applied to move the retaining means 6 into the inactive position.

[0069] Elastic deformation can be carried out manually. In this case, at least one of the parts 6a, 6b may include, at the location where pressure must be applied to move from one position to the other, a curved sub-part 9. The curved sub-part 9 allows an operator to apply the pressure necessary to deform the holding means 6, for example to separate the parts 6a, 6b to insert the cable section 3 between them, without risk of injury.

[0070] This deformation can also be plastic, as in the embodiments illustrated in Figures 1 to 5 and 10 to 11. Plastic deformation is understood here as a deformation in which the retaining means 6 is deformed under the effect of pressure and does not return to its initial shape when this pressure is removed. Since greater pressure is required to generate plastic deformation, it is preferably applied using a tool, for example, pliers. As illustrated in [Fig. 5], the retaining means 6 can then be manufactured in an inactive position, and during the installation of the device 1 on site, an operator moves it to the active position after inserting a section of cable 3 between parts 6a, 6b.

[0071] The punching means 7 can also be configured to undergo plastic deformation when moving from the standby position to the connection position. This is particularly the case in the embodiments illustrated in Figures 1 to 5, 6 to 7, and 10 to 11, in which a clamp can be used to bring the teeth 7a of the punching means 7 together and move it into the connection position. This is also the case in the embodiment illustrated in Figures 8 and 9, in which the teeth 7a of the punching means 7 must be moved upwards. Plastic deformation offers the advantage of preventing accidental movement from the connection position to the standby position, and thus a loss of the electrical connection between the device 1 and the cable section 3.

[0072] As illustrated by way of example in Figures 10 and 11, the device 1 may include at least one additional electrical connection means 10, configured to electrically connect the device 1 to an additional part (not shown), separate from part 2. In this embodiment, part 2 may be a support part for electrical equipment, of which the additional part is a component, the bottom 4b of the U of the U-shaped section 4 then being configured to be interposed between part 2 and the additional part. The additional electrical connection means 10 may include one or more pointed teeth, as described above for the electrical connection means 5.

[0073] Device 1 can be used to electrically connect a part 2 made at least partially of an electrically conductive material and a section of cable 3 having an electrically conductive core, according to a method comprising the following steps: - assembly of the cable section 3 with a connection device 1, via the retaining means 6 of the connection device, the punching means 7 of said connection device 1 being in the standby position, - partial insertion of the part 2 into the U-shaped section 4 of the connection device 1, generating the mechanical fixing and the electrical connection between the part 2 and the connection device 1, - putting the punching means 7 into connection position, generating the mechanical fixing and electrical connection between the cable section 3 and the part 2, via the mechanical fixing and electrical connection between the cable section 3 and the connection device 1.

[0074] The present invention is not limited to the embodiments described but extends to any modification and variant obvious to a person skilled in the art, within the limits of the appended claims. Furthermore, the technical features of the various embodiments and variants mentioned above may be combined, in whole or in part.

Claims

1. Demands Electrical connection device (1) between at least one part (2) made at least partially of an electrically conductive material and a cable segment (3) comprising at least one electrically conductive core, characterized in that it comprises: - a U-shaped section (4) having two legs (4a) connected to a base (4b), configured to partially receive said at least one part (2) between the two legs of the U, said U-shaped section (4) having a certain flexibility and being dimensioned so as to be able to exert pressure on said at least one part (2), to form a clamp and to ensure mechanical fastening between said electrical connection device (1) and said at least one part (2), said U-shaped section (4) having two electrical connection means (5), each disposed on one of the legs (4a) of the U,enabling the generation of an electrical connection between said at least one part (2) and said electrical connection device (1) when said at least one part (2) is partially disposed between the legs (4a) of the U, - a retaining means (6), capable of retaining said cable section (3) in position relative to the electrical connection device (1), the retaining means (6) comprising at least one active mode, in which it is capable of retaining the cable section (3), and one inactive mode, in which the cable section can be moved from a position in which it is not retained by the retaining means (6), to a position in which it is retained by the retaining means (6), and vice versa, and - a punching means (7) configured to be able to be placed in a standby position, in which it is not in electrical contact with the core of the cable section (3) when said cable section (3) is held in position by said holding means (6), or in a connection position, in which it penetrates at least partially the core of the cable section (3), in order to generate an electrical connection between the core of the cable section (3) and said at least one part (2) partially inserted between the legs (4a) of the U, and a mechanical fixing between the cable section (3) and the electrical connection device (1).

2. Electrical connection device (1) according to claim 1, characterized in that it comprises an electrically conductive blade, said electrical connection device (1) being at least partly formed in said blade by cutting and / or bending.

3. Electrical connection device (1) according to any one of claims 1 to 2, characterized in that at least one of said two electrical connection means (5) comprises at least one pointed tooth (8), the tip of said at least one pointed tooth (8) being configured to enter into the material of said at least one part (2), when said at least one part (2) is partially inserted between the legs (4a) of the U.

4. Electrical connection device (1) according to claim 3, wherein the tip of said at least one pointed tooth (8) is oriented so as to oppose a withdrawal of said at least one piece (2) from between the legs (4a) of the U.

5. Electrical connection device (1) according to any one of claims 1 to 4, wherein the punching means (7) has at least one pointed tooth (7a), the pointed tooth (7a) being configured so that when the punching means (7) is in standby position, the point has an angle between 70 and 90° with the plane tangent to the surface of the cable section (3).

6. Electrical connection device (1) according to claim 5, wherein the punching means (7) comprises at least two pointed teeth (7a), said pointed teeth (7a) being configured to penetrate the cable section (3) at two distinct locations on its circumference, these two locations being separated by a distance at least equal to one-quarter of the circumference of the section of said cable section (3).

7. Electrical connection device (1) according to any one of claims 1 to 6, wherein the retaining means (6) comprises two retaining elements (6a, 6b), and in the active mode of the retaining means (6), the distance between the two retaining elements (6a, 6b) is less than the cross-section of the cable segment (3), and in the inactive mode of the retaining means (6), the distance between the two retaining elements (6a, 6b) is greater than or equal to the cross-section of the cable segment (3), in order to be able to insert the cable segment (3) between said retaining elements (6a, 6b).

8. Electrical connection device (1) according to any one of claims 1 to 7, wherein the retaining means (6) is configured to undergo elastic deformation to switch from its active mode to its passive mode, and vice versa.

9. Electrical connection device (1) according to any one of claims 1 to 7, wherein the retaining means (6) is configured to undergo plastic deformation to switch from its active mode to its passive mode, and vice versa.

10. Electrical connection device (1) according to any one of claims 1 to 9, wherein the punching means (7) is configured to undergo plastic deformation to move from the standby position to the connection position.

11. Electrical connection device (1) according to any one of claims 1 to 10, wherein the two legs (4a) of the U have two different lengths.

12. Assembly comprising an electrical connection device (1) according to any one of claims 1 to 11, a cable section (3) having an electrically conductive core, and at least one part (2) made at least partially of an electrically conductive material, said cable section (3) being held in position by the holding means (6) of said electrical connection device (1), the punching means (7) of said electrical connection device (1) being in the connection position, and said at least one part (2) being partially inserted into the U-shaped section (4), said at least one part (2) and the cable section (3) being mechanically and electrically connected to each other via the electrical connection device (1).

13. A method for electrically connecting at least one part (2) made at least partially of an electrically conductive material and a cable segment (3) having an electrically conductive core, comprising the following steps: - assembling the cable segment (3) and an electrical connection device (1) according to any one of claims 1 to 11, by means of the retaining means (6) of the electrical connection device (1), the punching means (7) of said electrical connection device (1) being in a standby position, - partially inserting said at least one part (2) into the U-shaped section (4) of the electrical connection device (1), generating the mechanical fixing and electrical connection between said at least one part (2) and the electrical connection device (1), - putting the punching means (7) into connection position, generating the mechanical fixing and electrical connection between the cable section (3) and said at least one part (2), via the mechanical fixing and electrical connection between the cable section (3) and the electrical connection device (1).

Citation Information

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