Electrical equipment including an insulating film folded on itself
11270818 · 2022-03-08
Assignee
Inventors
- Eloi Mortain (Surenes, FR)
- Alwin Moceri (Conflans Sainte-Honorine, FR)
- Baptiste Parigot (Croissy-sur-Seine, FR)
Cpc classification
H05K7/14329
ELECTRICITY
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H05K5/0247
ELECTRICITY
International classification
H02M7/00
ELECTRICITY
H02J7/00
ELECTRICITY
Abstract
The subject-matter of the invention is an electrical device comprising: a casing comprising a cavity receiving an electrical component, and at least two conductors connected to the electrical component so as to supply it with electric energy, both conductors being superimposed with each other and extending in parallel, said device being characterised in that it comprises an electric insulating film folded on itself around a fold, and a first part of which located on a side of the fold comes against a surface of the first conductor so as to electrically insulate it, and a second part of which located on the other side of the fold is inserted between both conductors so as to electrically insulate them from each other.
Claims
1. An electrical device comprising: a casing comprising a cavity receiving an electrical component, and at least two conductors connected to the electrical component so as to supply it with electric energy, both conductors being superimposed with each other and extending in parallel, wherein said electrical device comprises an electric insulating film folded on itself around a fold, a first part of the electric insulating film being located on a side of the fold and coming against a surface of the first conductor so as to electrically insulate it from a housing, and a second part of the electric insulating film being located on the opposite side of the fold and being inserted between both conductors so as to electrically insulate them from each other, the second part of the electric insulating film coming against another surface of the first conductor opposite to the surface of the first conductor receiving the first part of the electric insulating film.
2. The electrical device according to claim 1, wherein the fold of the electric insulating film comprises at least one aperture adapted to allow free access to the conductors.
3. The electrical device according to claim 1, wherein the first part and the second part of the electric insulating film each have at least one protrusion inserted into the cavity of the casing and embedded in a filling material of the cavity of the casing.
4. The electrical device according to claim 1, forming a capacitive block, and wherein the electrical component is a capacitive element.
5. The electrical device according to claim 1, wherein the first part is held on the surface of the first conductor through an adhesive material.
6. The electrical device according to claim 1, wherein the electric insulating film is made of plastic.
7. An electrical equipment comprising a housing and the electrical device according to claim 1 housed in said housing, the first part of the electric insulating film electrically insulating the first conductor from other components of the electrical equipment located in said housing of the electrical equipment, the second part of the electric insulating film, insulating the conductors from each other.
8. The electrical device according to claim 2, wherein the first part and the second part of the insulating film each have at least one protrusion inserted into the cavity of the casing and embedded in a filling material of the cavity of the casing.
9. The electrical device according to claim 2, forming a capacitive block, and wherein the electrical component is a capacitive element.
10. The electrical device according to claim 3, forming a capacitive block, and wherein the electrical component is a capacitive element.
11. The electrical device according to claim 3, wherein the first part of the electric insulating film is folded so as to fit the surface of the first conductor and is held against said surface of the first conductor only through the at least one protrusion and the fold.
12. The electrical device according to claim 2, wherein the first part is held on the surface of the first conductor through an adhesive material.
13. The electrical device according to claim 3, wherein the first part is held on the surface of the first conductor through an adhesive material.
14. The electrical device according to claim 4, wherein the first part is held on the surface of the first conductor through an adhesive material.
15. The electrical device according to claim 2, wherein the insulating film is made of plastic.
16. The electrical device according to claim 3, wherein the insulating film is made of plastic.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The invention will be better understood upon reading the following description, given only by way of example, and with reference to the appended drawings given by way of non-limiting examples, wherein identical references are given to similar objects and in which:
(2)
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(8) It should be noted that the figures set out the invention in further detail to implement the invention, wherein said figures can of course be used to better define the invention if necessary.
DETAILED DESCRIPTION
(9) In the description which will be made below, the invention will be in particular described in the context of an electrical equipment, such as a power inverter, configured for an electric or hybrid motor vehicle, without this being restrictive of the scope of the present invention.
(10) Indeed, in an electric or hybrid motor vehicle, the high voltage power battery provides the electric energy supply function of the electric motor system, enabling the vehicle to be driven, especially through a power inverter enabling the DC current provided by the high voltage power battery to be converted into one or more alternating, for example sinusoidal, control currents.
(11) With reference to
(12) With reference to
(13) Additionally, conductors C1, C2 are also located in the proximity of a wall P1 of said housing of the electrical equipment or in the proximity of other components that can be located in said housing of the electrical equipment. For example, as illustrated in
(14) With reference to
(15) The connection terminals C10, C20 may for example designate a portion of the conductors C1, C2. In order to feed electric energy to other components, these portions are for example pierced with one or more ports, into which a connector is screwed. These portions can be connected to the connector by other means, for example through welding.
(16) With reference to
(17) According to the form of embodiment set forth with reference to
(18) The first part F1 can be held and attached against the surface of this first conductor C1 in particular using an adhesive material 16 such as glue.
(19) However, an adhesive material to hold the first part F1 of the insulating film against the surface of the first conductor C1 could be dispensed with. This is in particular the case when the insulating film is rigid enough to be folded before being mounted on said first conductor C1 and to preserve its shape once it is mounted on said first conductor C1. Thus, the lifetime of an adhesive material does not affect the service life of the capacitive block 12.
(20) The end of the first part F1 directed towards the cavity 11 of the casing 10 comprises at least one protrusion F10. Said protrusion F10 designates a part projecting from the first part F1. This protrusion F10 is configured to extend into the cavity 11 of the casing 10 in order to be embedded and attached into the filling material 15 of the cavity 11 of the casing 10.
(21) Additionally, given the position of the first part F.sub.1, the second part F.sub.2 is adapted to be inserted between said conductors C1, C2. In other words, the second part F.sub.2 is held by being sandwiched between both conductors C1, C2 of the capacitive block 12. Said second part F.sub.2 is configured to insulate said conductors C1, C2 from each other and avoid any short-circuit between them.
(22) The end of the second part F2 directed towards the cavity 11 of the casing 10 comprises at least one protrusion F20. Said protrusion F20 designates a part projecting from the second part F2. This protrusion F20 is configured to extend into the cavity 11 of the casing 10 in order to be embedded and attached into the filling material 15 of the cavity 11 of the casing 10.
(23) The fold P of the insulating film is configured so as to allow free access to the connection terminals C10, C20, said access enabling the connection terminals C10, C20 to be easily connected to the rest of the system in order in particular to feed electric energy to the electric motor system. For example, with reference to
(24) The insulating film especially consists of a plastic material.
(25) In particular, said filling material is fluid upon filling the cavity 11 of the casing 10, and then becomes solid after a polymerisation step. In particular, the filling material is a polymerisable substance, such as a polymerisable resin for example, especially an epoxy resin.
(26) Thus, attaching and holding of the insulating film are provided on one side by the protrusions F.sub.10, F.sub.20 extending into the filling material and on one side by the fold P.
(27) With reference to
(28) While the present disclosure has been illustrated and described with respect to a particular embodiment thereof, it should be appreciated by those of ordinary skill in the art that various modifications to this disclosure may be made without departing from the spirit and scope of the present disclosure.