Switch cabinet with a side panel, a related method and a related bay of switch cabinets
10714912 ยท 2020-07-14
Assignee
Inventors
Cpc classification
H05K9/0062
ELECTRICITY
H02B1/301
ELECTRICITY
H02B1/30
ELECTRICITY
International classification
Abstract
A switch cabinet which has a plurality of vertical frame profiles, whereby outer vertical planes (V) are defined, wherein at least one side panel of the switch cabinet is arranged in at least one of the vertical planes (V), characterized in that the side panel consists at least partially of a fabric with metallic or metallically coated threads or fibers. Furthermore, a related method and a related bay of cabinets are described.
Claims
1. A switch cabinet comprising a plurality of vertical frame profiles, whereby outer vertical planes (V) are defined, wherein at least one side panel of the switch cabinet is arranged in at least one of the vertical planes (V), wherein the side panel is at least partially made of a fabric with metallic or metallically coated threads or fibers; and wherein the fabric is continued on one piece from a first of the outer vertical planes (v) via a horizontal plane (H) of the switch cabinet into a second of the outer vertical planes (V) lying opposite the first.
2. The switch cabinet according to claim 1, in which the threads or fibers of the fabric have a polyester core with a metallic sheathing, in particular a copper-nickel sheathing.
3. The switch cabinet according to claim 1, in which two opposite side panels of the switch cabinet, which are arranged in opposite outer vertical planes (V) and opposite one another, are formed at least partially with the same fabric web.
4. The switch cabinet according to claim 1, which has a roof element on the upper side of which the side panel is secured by means of an upper bracket.
5. The switch cabinet according to claim 4, in which the upper retaining clip is bolted to the roof element and the side panel is clamped between the upper side of the roof element and the bracket.
6. The switch cabinet according to claim 4, in which the upper bracket has an L-shaped web with an exposed end projecting from the roof element.
7. The switch cabinet according to claim 1, wherein an EMI-shielding gasket is arranged along an outer edge of the roof element, preferably on the upper side of the roof element, between fabric and roof element, and the fabric is prestressed under compression of the EMI-shielding gasket.
8. The switch cabinet according to claim 7, wherein the lower bracket embraces a lower edge of the base assembly projecting from the inner circumference of the base assembly.
9. The switch cabinet according to claim 7, wherein the lower bracket has an L-shaped web with an exposed end projecting from the base assembly.
10. The switch cabinet according to claim 7, wherein a further EMI shielding gasket is arranged along an outer edge of the base assembly, preferably on the underside of the base assembly, between the fabric and the base assembly, and the fabric is prestressed under compression of the EMI-shielding gasket.
11. The switch cabinet according to claim 1, which has a base assembly, and the side panel is secured to the underside of the base assembly via a lower bracket.
12. The switch cabinet according to claim 11, wherein the lower retaining clip is bolted to the base assembly.
13. The switch cabinet bay comprising at least two adjoining switch cabinets according to claim 1, wherein at least one side panel located between the switch cabinets is made at least partly of a fabric with metallic or metallically coated threads or fibers.
14. A method of mounting a side panel to a switch cabinet according to claim 1, wherein the switch cabinet has a roof element and a base assembly interconnected via vertical frame profiles, and wherein the method comprises: arranging a first EMI-shielding gasket along an upper outer edge of the roof element associated with a side panel to be mounted; arranging a second EMI-shielding gasket along a lower outer edge of the base frame associated with the side panel to be mounted; attaching an upper bracket to the roof element and clamping the fabric along a first edge of the fabric between the upper bracket and the roof element; attaching a lower bracket to the base assembly and clamping the fabric along a second edge of the fabric opposite the first edge between the lower bracket and the base assembly; and tightening the fabric by locking one of the two brackets, then displacing the other bracket and then locking the other bracket, as well.
Description
DRAWINGS
(1) The drawings escribed herein are for illustrative purposes only of selected embodiments and not all possible implementations, and are not intended to limit the scope of the present disclosure.
(2) Further details of the invention will be explained with reference to the following figures. In the drawings:
(3)
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DETAILED DESCRIPTION
(8) Example embodiments will now be described more fully with reference to the accompanying drawings.
(9)
(10) The side panel 3 is secured in the vertical plane V to two vertical frame profiles 2, as well as the base assembly 12 and the roof element 7. If the side panel 3 of the cabinet 1 is formed as a molded sheet metal part, then it has excellent EMV-shielding. On the other hand, with a material thickness of, say, 1.5 mm, its installation height becomes substantial, which complicates the baying of identical switch cabinets, as shown in
(11) This problem can be solved by the exemplary embodiment shown in
(12) This is achieved by continuing the fabric 4 arranged in the vertical plane V in an upper edge area around an outer edge 11, along which the roof element 7 changes into the side panel 3 on a top of the roof element 7, such that it may be clamped to the top of the roof element 7 by means of an upper bracket 8. In order to achieve effective sealing against electromagnetic radiation, an EMI-shielding gasket 10 is formed on top of the roof element 7, which shielding gasket is arranged between the fabric 4 and the top of the roof element 7, such that the fabric 4 spans the EMI-shielding gasket 10, while seated sealingly against the EMI-shielding gasket 10.
(13) The upper bracket 8 has an L-shaped web 13 with an exposed end 9, with which the bracket 8 can be displaced parallel to the top of the roof element 7 in order to stress the fabric 4. The EMI-shielding gasket is arranged between the outer edge 11 of the roof element 7 and the bracket 8 on top of the roof element 7, such that by stressing the fabric 4, the contact pressure of the fabric 4 on the EMI-shielding gasket 10 varies, as well, whereby the compression of the gasket 10 and hence the sealing effect can be varied The sealing of the fabric 4 against the roof element 7 is further facilitated in that the fabric, which may be, e.g., a woven fabric, can have a natural inherent elasticity, such that effective stretching of the fabric 4 over the edge 11 and the sealing element 10 is possible by displacing the upper bracket 8.
(14) Further details on the attachment of the fabric 4 on the roof element 7 or base assembly 12 will be explained with reference to the embodiment according to
(15) As shown in
(16) The lower bracket 8, according to
(17) By comparing
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(19) The features of the invention disclosed in the above description, in the drawings and the claims may be essential to the realization of the invention either separately or in any combination.
(20) The foregoing description of the embodiments has been provided for purposes of illustration and description. It is not intended to be exhaustive or to limit the disclosure. Individual elements or features of a particular embodiment are generally not limited to that particular embodiment, but, where applicable, are interchangeable and can be used in a selected embodiment, even if not specifically shown or described. The same may also be varied in many ways. Such variations are not to be regarded as a departure from the disclosure, and all such modifications are intended to be included within the scope of the disclosure.