ELECTRONIC DEVICE HAVING A HOUSING WITH A CIRCUIT BOARD PROVIDED THEREIN
20180255659 ยท 2018-09-06
Assignee
Inventors
Cpc classification
H05K5/0039
ELECTRICITY
H05K1/028
ELECTRICITY
H05K1/0204
ELECTRICITY
International classification
Abstract
The invention relates to an electronic device having a multi-part printed circuit board, the printed circuit board parts of which are connected to one another by current-carrying, flexible regions, having a support, around which the printed circuit board bent around the flexible regions of the printed circuit board is arranged and fixed, and having a housing in which the printed circuit board mounted on the support is fixed.
Claims
1. An electronic device, comprising: a multi-part printed circuit board, including current-carrying, flexible regions and printed circuit board parts which are connected to one another by the current-carrying, flexible regions, a support around which the printed circuit board, bent around the flexible regions of the printed circuit board, is arranged and fixed, and a housing in which the printed circuit board mounted on the support is fixed.
2. The electronic device as claimed in claim 1, wherein the support includes latching lugs for fixing the printed circuit board, corresponding printed circuit board parts are latched in the latching lugs.
3. The electronic device as claimed in claim 1, wherein the printed circuit board has at least five printed circuit board parts, which are arranged in a row, wherein in the printed circuit board mounted on the support, the printed circuit board parts at row ends have a smaller width than a width of the entire printed circuit board, wherein a sum of widths of the printed circuit board parts at the row ends is not greater than the width of the entire printed circuit board, and the printed circuit board parts at the row end lie next to one another on the same side of the support.
4. The electronic device as claimed in claim 3, wherein the printed circuit board parts at the row ends are fitted with contact plugs.
5. The electronic device as claimed in claim 1, wherein the support and an interior of the housing taper in at least a cross-sectional plane in a direction of the housing interior.
6. The electronic device as claimed in claim 1, wherein the housing is configured has a cup shape.
7. The electronic device as claimed in claim 1, wherein the housing comprises a housing wall and the electronic device further comprises a thermally conductive compound arranged between the housing wall and a surface of a printed circuit board part of the printed circuit board parts that faces the housing wall.
8. The electronic device as claimed in claim 1, wherein opposed sides of the printed circuit board are populated with components.
9. The electronic device as claimed in claim 1, wherein the housing comprises a housing opening and a housing wall opposite the housing opening, the housing defines at least one cavity in which a component, arranged on the printed circuit board part facing the housing wall, is positioned.
10. The electronic device as claimed in claim 1, wherein the support is formed with bars which are connected to one another by respective corner connectors.
11. An electronic device, comprising: a printed circuit board, including current-carrying, flexible regions and printed circuit board parts which are connected to one another by the current-carrying, flexible regions, a support around which the printed circuit board is arranged and fixed, the printed circuit board parts being bent around the support via the flexible regions of the printed circuit board, and a housing in which the printed circuit board, mounted on the support, is fixed.
12. The electronic device as claimed in claim 11, wherein the support includes latching lugs fixing the printed circuit board to the support, and wherein corresponding printed circuit board parts are latched in the latching lugs.
13. The electronic device as claimed in claim 11, wherein the printed circuit board has at least five printed circuit board parts arranged in a row, and with the printed circuit board mounted on the support, the printed circuit board parts at ends of the row have a smaller width than a width of the printed circuit board other than at the row ends, wherein a sum of widths of the printed circuit board parts at the row ends is not greater than the width of the printed circuit board other than at the row ends, and the printed circuit board parts at the row end are disposed next to each other on the same side of the support.
14. The electronic device as claimed in claim 13, wherein the printed circuit board parts at the row ends include contact plugs.
15. The electronic device as claimed in claim 11, wherein the support and an interior of the housing each taper in at least a cross-sectional plane in a direction of the housing interior from an opening of the housing.
16. The electronic device as claimed in claim 11, wherein the housing comprises a housing wall and the electronic device further comprises a thermally conductive compound arranged between the housing wall and a surface of a printed circuit board part of the printed circuit board parts that faces the housing wall.
17. The electronic device as claimed in claim 11, wherein opposed sides of the printed circuit board are populated with components.
18. The electronic device as claimed in claim 17, wherein the housing defines a cavity in which the printed circuit board and the support are disposed, and at least one of the components disposed along a side of the printed circuit board facing a center of the cavity has a size which is greater than a space between an outer surface of the printed circuit board and an inner surface of the housing.
19. The electronic device as claimed in claim 11, wherein the housing comprises a housing opening and a housing wall opposite the housing opening, and the housing defines at least one cavity in which a component, arranged on the printed circuit board part facing the housing wall, is positioned.
Description
[0019] The invention is intended to be described in more detail below with reference to an exemplary embodiment with the aid of figures. In the figures:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025] In the illustrated exemplary embodiment, the multi-part printed circuit board 3 is folded with the printed circuit board parts 4-9 thereof around the support 19 in such a way that two opposite sides of the support 19 are not covered with printed circuit board parts. The edge elements of the multi-part printed circuit board 3 are designed as smaller printed circuit board parts 4, 5 and 9, wherein the two printed circuit board parts 4 and 5 on one edge of the multi-part printed circuit board 3 and the printed circuit board part 9 on the other edge of the multi-part printed circuit board 3 are connected by means of a respective flexible region. By folding around the support 19, the small printed circuit board parts 4, 5 and 9 come to lie on the same side of the support 19 and substantially cover said side by interlocking. After the insertion of the support 19 provided with the printed circuit board 3 into the housing 2, they are arranged in the opening of the housing 2 and can advantageously be provided with plugs, which are provided for input and output signals where necessary or are designed for high currents.
[0026] In the illustrated exemplary embodiment of
[0027] The surfaces of the corresponding printed circuit board parts 6 and 7 and possibly also the printed circuit board part 8 facing the housing walls can advantageously be provided with a highly thermally conductive compound, with the result that the heat generated by the power components can be properly dissipated to the metallic housing 2.
[0028] In an advantageous embodiment of the electronic device 1 according to the invention, at least one component 17 of higher design is provided at the printed circuit board part 8, which faces the base of the housing 2, said component of higher design being inserted into a cavity of the housing in order to be able to be cooled particularly well there. The individual printed circuit board parts 4-9 are connected to one another by means of flexible regions 10-13, wherein the flexible regions 10-13 can be produced, for example, by means of deep milling from a previously continuous printed circuit board. The flexible regions 10-13, which, on the one hand, serve for signal transmission between the individual printed circuit board parts 4-9, can, on the other hand, however, also be designed for carrying relatively high currents.
[0029] Both sides of the multi-part printed circuit board 3 can be populated with electrical and/or electronic components, wherein flat components 16, which possibly have to be properly cooled, are arranged on the surfaces of the printed circuit board parts 4-9 facing the housing walls, whereas larger components 18, such as electrolytic capacitors or even coils, for example, are arranged on the surface of a printed circuit board part 4-9 facing the housing interior.
[0030]
[0031]
[0032] So that the printed circuit board 3 does not become detached again from the support 19 on account of the restoring forces of the flexible regions 10-13, holding elements, for example in the form of latching lugs 20, as are indicated in