BATTERY CHARGER FOR VEHICLES

DE602019071282T2Active Publication Date: 2025-06-18META ELECTRONICS SRL
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Patent Information

Application Number
DE602019071282
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-07-20
Filing Date
2019-07-18
Publication Date
2025-06-18
Estimated Expiration
2039-07-18

AI Technical Summary

Technical Problem

Existing battery chargers for vehicles face challenges in minimizing size while maintaining high thermal efficiency and ease of assembly, due to the large size of busbars required to transport high currents.

Method used

The electronic board features a conductive metal bar with a reduced size, positioned directly on the insulated metal substrate (IMS) electronic board and cooled by a liquid cooling circuit, allowing for efficient heat dissipation and compact design.

Benefits of technology

This solution enables a smaller, simpler, and quicker-to-assemble electronic board that maintains an ideal working temperature, addressing the space constraints and thermal efficiency issues of previous designs.

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Description

Technical Field

[0001] The present invention relates to an electronic board, particularly for battery charger for vehicles.Background Art

[0002] With particular reference to the field of electric or hybrid vehicles, it is essential to employ power electronic appliances installed on board of vehicles for the conversion of an input voltage / current into a suitable output voltage / current, such as OBC (On-Board Charger) battery chargers or DC-DC converters.

[0003] Battery chargers for vehicles of known type generally comprise one or more power or control boards, consisting of one or more printed circuit boards.

[0004] The printed circuit boards can be made on a support made of an electrically insulating material such as epoxy-glass or on a metal support of the IMS (Insulated Metal Substrate) type.

[0005] It should be noticed, in particular, that in the field of the realization of battery chargers for vehicles, the use is preferred of printed circuit boards with a metal support because it allows achieving high thermal efficiency, due to the thermal dissipation characteristics of the metal used (generally aluminum).

[0006] The use is also well known of so-called "busbars" on the electronic boards of the battery chargers of known type, these busbars being composed of special metal bars which, connected to different points of the electronic boards and suitably sized, allow transporting and distributing high currents.

[0007] The solutions of known type do however have some drawbacks.

[0008] In fact, the busbars fitted on the battery chargers of known type must be able to transport high currents between different points of the electronic boards and, therefore, they must necessarily have a big size if compared to the rest of the electronics fitted on the boards.

[0009] As a result, this involves a not negligible amount of space of the busbars used which, given the ever-increasing need for small battery chargers, creates several complications in the design and arrangement of the battery charger's internal electronics.

[0010] Document EP 2 328 392 A2 discloses a converter with a power module (3) wherein power electrical connections of the module are formed by a strip shaped conductor line that is fastened to a metal body.

[0011] Document US 2006 / 039127 A1 discloses an electromechanical packaging method for high power, high reliability, high frequency, switch mode power converters where high power density is required.Description of the Invention

[0012] The main aim of the present invention is to devise an electronic board that is small in size and is, at the same time, simple and quick to assemble.

[0013] Another object of the present invention is to devise an electronic board that can be maintained at an ideal working temperature effectively.

[0014] Another object of the present invention is to devise an electronic board that allows overcoming the aforementioned drawbacks of the prior art within a simple, rational, easy, effective to use and low cost solution.

[0015] The aforementioned objects are achieved by the present electronic board according to the characteristics of claim 1.Brief Description of the Drawings

[0016] Other characteristics and advantages of the present invention will be more evident from the description of a preferred, but not exclusive, embodiment of an electronic board for a battery charger for vehicles, illustrated by way of an indicative, but non-limiting example, in the attached tables of drawings in which: Figure 1 is a general view of a possible battery charger comprising an electronic board according to the invention; Figure 2 is an exploded view of the battery charger of Figure 1; Figure 3 is a view of an IMS (Insulated Metal Substrate) electronic board of the battery charger according to the invention; Figure 4 shows a detail of the IMS electronic board of Figure 3. Embodiments the Invention

[0017] With particular reference to these illustrations, reference numeral 1 globally indicates a battery charger for vehicles, in particular of the type that can be installed on board of electric, hybrid or similar vehicles and adapted to recharge the battery of the vehicle.

[0018] The battery charger 1 comprises an outer container 2, adapted to house and protect the entire electronics of the battery charger itself and adapted to allow the installation and fixing thereof inside the vehicle.

[0019] The battery charger 1 comprises an electronic appliance, globally indicated with reference numeral 3 in the figures, housed inside the container 2, operatively connectable to an electric battery of a vehicle and configured for the recharge of the battery itself.

[0020] The battery charger also comprises a cooling circuit 4 to limit the temperature of the electronic appliance 3 during the use of the battery charger 1.

[0021] For example, the cooling circuit 4 can be composed of a conventional liquid cooling circuit.

[0022] According to the particular but not exclusive embodiment illustrated in the figures, the cooling circuit 4 is made directly on the bottom of the container 2.

[0023] The electronic appliance 3 comprises at least one electronic board 5 provided with an insulated metal substrate (IMS) 5a associated with the cooling circuit 4.

[0024] The electronic board 5 also comprises a layer of electrically insulating material 5b made on at least one portion of the insulated metal substrate 5a, and at least one electronic circuit 5c made on the layer of electrically insulating material 5b. The electronic appliance 3 may comprise several electronic boards.

[0025] For example, with reference to the particular but not limited embodiment shown in the illustrations, the electronic appliance 3 comprises two electronic boards 5 and 6 wherein, in particular, the electronic board 5 is of the IMS type.

[0026] The electronic board 5 comprises at least one conductive metal bar 7 for the transport and distribution of current, electrically connected to the electronic circuit 5c.

[0027] This conductive metal bar 7 is of the type of a so-called "busbar", used to allow the transport and distribution of high currents to several different points of an electronic board.

[0028] The conductive metal bar 7 is provided with at least one portion arranged in direct contact with at least one surface portion of the electronic board 5.

[0029] In this way, the conductive metal bar 7 can be cooled and, therefore, maintained at a lower working temperature, during the use of the battery charger 1. In fact, the cooling circuit 4 allows cooling the insulated metal substrate 5a of the electronic board 5 and, by heat conduction, allows cooling the conductive metal bar 7.

[0030] The positioning of the conductive metal bar 7 directly onto the electronic board 5, together with the fact that the conductive metal bar 7 is cooled by means of the cooling circuit 4, by heat conduction with the insulated metal substrate 5a of the electronic board itself, allow for the use of a conductive metal bar 7 of reduced size compared to the bars of known type.

[0031] In particular, the conductive metal bar 7 is provided with a lower surface arranged in direct contact with at least one surface portion of the electronic board 5.

[0032] Preferably, the conductive metal bar 7 is substantially plate-shaped and comprises an upper surface opposite the lower surface associated with the electronic board 5.

[0033] In addition, the conductive metal bar 7 preferably has a substantially elongated shape.

[0034] Different shapes of the conductive metal bar 7 cannot however be ruled out.

[0035] With reference to the particular embodiment shown in the illustrations, the electronic board 5 comprises a plurality of conductive metal bars 7, arranged at different portions of the electronic board itself and adapted to connect different points.

[0036] Each conductive metal bar 7 extends over at least one portion of the electronic board 5, on the layer of electrically insulating material 5b.

[0037] Advantageously, each conductive metal bar 7 comprises electric coupling and connection means 8 of at least one electric connecting element. The electric connecting element, not shown in the figures, can be composed e.g. of a special cable adapted to carry a predefined electrical current on the conductive metal bar 7.

[0038] For example, the electric coupling and connection means 8 are composed of an electric terminal made at at least one portion of the conductive metal bar 7.

[0039] As shown in the figures, the terminal extends from the upper surface of the conductive metal bar 7.

[0040] As an example, the electronic board 5 described above is used inside a battery charger 1 for electric vehicles.

[0041] The use cannot however be ruled out in different applications of an electronic board similar to the electronic board 5 described above, provided with at least one conductive metal bar 7.

[0042] It has in practice been ascertained that the described invention achieves the intended objects.

[0043] In particular, the fact is underlined that the electronic board according to the invention is small in size and, at the same time, simple and quick to assemble.

[0044] In fact, the positioning of the conductive metal bar directly on the electronic board, together with the fact that the conductive metal bar is cooled by means of the cooling circuit, by heat conduction with the insulated metal substrate of the electronic board itself, allow the use of a conductive metal bar of reduced size compared to the bars of known type.

[0045] In addition, the conductive metal bar used, precisely because it is cooled down, allows the maintenance of an ideal working temperature in an effective manner.

Claims

1. Electronic board (5) comprising an insulated metal substrate (5a) associable with a cooling circuit (4), a layer of electrically insulating material (5b) made on at least one portion of said insulated metal substrate (5a), at least one electronic circuit (5c) made on said layer of electrically insulating material (5b), and at least one conductive metal bar (7) for the transport and the distribution of current, electrically connected to said electronic circuit (5c) and provided with a lower surface arranged in direct contact with at least one surface portion of said electronic board (5), characterized in that said lower surface extends over at least one portion of said electronic board (5), on said layer of electrically insulating material (5b), for the cooling of said conductive metal bar (7) by means of said cooling circuit (4).

2. Electronic board (5) according to claim 1, characterized by the fact that said conductive metal bar (7) is substantially plate-shaped.

3. Electronic board (5) according to one or more of the preceding claims, characterized by the fact that said conductive metal bar (7) comprises an upper surface opposite said lower surface associated with said electronic board (5).

4. Electronic board (5) according to one or more of the preceding claims, characterized by the fact that said conductive metal bar (7) has a substantially elongated shape.

5. Electronic board (5) according to one or more of the preceding claims, characterized by the fact that said conductive metal bar (7) comprises electric coupling and connection means (8) of at least one electric connecting element.

6. Electronic board (5) according to claim 5, characterized by the fact that said electric coupling and connection means (8) comprise at least one electric terminal (8) made at at least one portion of said conductive metal bar (7).

7. Electronic board (5) according to claim 6, characterized by the fact that said at least one electric terminal (8) extends from said upper surface of the conductive metal bar (7).

8. Battery charger (1) for vehicles, comprising at least one outer container (2), at least one electronic appliance (3) housed inside said container (2), operatively connectable to an electric battery of a vehicle and configured for the recharge of said battery, and at least one cooling circuit (4) of said electronic appliance (3), characterized in that said electronic appliance (3) comprises at least one electronic board (5) according to one or more of the preceding claims.