SWITCH CABINET HAVING A FRAME AND AN INTERIOR FITTING COMPONENT, CORRESPONDING SWITCH CABINET ASSEMBLY, AND CORRESPONDING INTERIOR FITTING COMPONENT
20190214798 · 2019-07-11
Inventors
Cpc classification
H02B1/301
ELECTRICITY
International classification
Abstract
The invention relates to a switch cabinet comprising a square rack consisting of four vertical profiles and eight horizontal profiles, wherein four of the profiles form the rectangular profile frame and two of the four profiles forming the profile frame and extending in parallel to one another each include a first fastening profile side having a first row of fastening mounts spaced apart from one another while maintaining a constant grid dimension, wherein the first fastening profile sides are situated in a common plane and mounted on these two first fastening profile sides is a first interior structural component extending between the parallel profiles, which includes a mounting side having a second row of fastening mounts, which extend perpendicularly to the first row, wherein the second row of fastening mounts is arranged in the direction of extension of the first row of fastening mounts while maintaining the grid dimension of the first row of fastening mounts.
Claims
1-19. (canceled)
20. A switch cabinet, comprising a square rack consisting of four vertical profiles and eight horizontal profiles, wherein four of the profiles form a rectangular profile frame and two of the four profiles forming the profile frame and extending in parallel to one another each include a first fastening profile side having a first row of fastening mounts spaced apart from one another while maintaining constant grid dimension, wherein the first fastening profile sides are situated in a common plane and mounted on these two first fastening profile sides is a first interior structural component extending between the parallel profiles, which includes a mounting side having a second row of fastening mounts, which extend perpendicularly to the first row, wherein the second row of fastening mounts is arranged in the direction of extension of the first row of fastening mounts while maintaining the grid dimension of the first row of fastening mounts, by situating both the first row of fastening mounts in the first fastening profile side, as well as the second row of fastening mounts in the mounting side of the interior structural component in a two-dimensional hole grid, wherein the grid spacing in both dimensions has in each case the grid dimension, wherein the interior structural component is an interior structural rail, which includes the mounting side having the second row of fastening mounts extending in the longitudinal direction of the interior structural rail and fastening means formed on its opposite ends for mounting the interior structural rail in the interior of the switch cabinet, wherein the fastening means are matched to the grid dimension of the first row of fastening mounts of the first and/or of the second fastening profile sides in such a way that the midpoint of one each of the fastening mounts of the fastening profile sides situated in a common plane is situated on a straight line, on which the midpoints of the second row of fastening mounts of the mounting side are situated, when the interior structural rail is mounted in the switch cabinet via one of the fastening profile sides.
21. The switch cabinet according to claim 20, in which the two of the four profiles forming the profile frames and extending in parallel to one another, each includes a first and a second fastening profile side, each having a first row of fastening mounts spaced apart from one another while maintaining the same constant grid dimension, wherein the first fastening profile sides are arranged on an outer side of the profile frame, and the second of the two fastening profile sides is arranged spaced parallel apart relative to the first fastening profile side on an inner side of the profile frame situated opposite the outer side, and wherein the first fastening profile sides situated on the outer side are situated in a first common plane and the fastening profile sides situated on the inner side are situated in a second common plane.
22. The switch cabinet according to claim 21, in which the first common plane is a mounting plane for securing the interior structural component accessible from the outer side of the rack, and the mounting plane is set back in relation to an outer sealing edge of the rack.
23. The switch cabinet according to claim 20, in which the first interior structural component mounted on the profiles above the first or the second plane is situated with its mounting side in the respective plane via which it is mounted.
24. The switch cabinet according to claim 20, in which at least one of the fastening profile sides includes per plane a positioning aid for mounting the first interior structural component in the plane, wherein the positioning aid comprises markings that are arranged in the longitudinal direction of the respective first or second fastening profile sides at a spacing relative to one another, which corresponds to the grid dimension or to a multiple thereof.
25. The switch cabinet according to claim 20, in which a second interior structural component is secured to the first interior structural component, wherein an additional second row of fastening mounts of an additional mounting side of the second interior structural component parallel to the first row of fastening mounts of the first fastening profile side extends perpendicularly to the second row of fastening mounts of the mounting side of the first interior structural component.
26. The switch cabinet according to claim 25, in which the second row of fastening mounts of the additional mounting side of the second interior structural component is arranged while maintaining the grid dimension of the first row of fastening mounts.
27. The switch cabinet according to claim 26, in which the fastening mounts of the second row of fastening mounts of the first interior structural component are arranged in the grid dimension of the first row of fastening mounts, both between each other, as well as in relation to the first row of fastening mounts of the first fastening profile side, so that the fastening mounts of the first fastening profile side, as well as the fastening mounts of the first and of the second interior structural component are arranged in a two-dimensional hole grid with the grid dimensions constant in two dimensions, for example, in a 25 mm25 mm hole grid.
28. The switch cabinet assembly, comprising at least two switch cabinets according to claim 20, the racks of which adjoin one another via their rectangular profile frames and are connected to one another along two adjacent profiles of the profile frames via at least one stack connector, wherein the stack connector includes an additional mounting side, and wherein the additional mounting side rests flush with a third fastening profile side of each of the adjacent profiles, wherein the third fastening profile side include a third row of fastening mounts and extend perpendicularly to the first and to the second fastening profile sides.
29. The switch cabinet assembly according to claim 28, in which the profile frames adjoin each other via sealing ridges extending above the profile frames perpendicularly to the fastening profile sides of the profile frame, as a result of which a spacing is formed between the first fastening profile sides, which is bridged by the mounting side of the stack connector, so that a continuous mounting plane is formed between the profile frames of the adjacent switch cabinets.
30. The switch cabinet assembly according to claim 28, in which the third fastening profile sides and the mounting side each includes fastening mounts spaced apart from one another along their longitudinal direction while maintaining a constant grid dimension, wherein the fastening mounts of the third fastening profile sides and the mounting side are spaced apart relative to one another in a direction perpendicular to their longitudinal direction while also maintaining the grid dimension.
31. The switch cabinet assembly according to one of claim 28, in which the interior structural component is guided from the interior of a first of the switch cabinets through the adjacent profile frames into the interior of a second of the two switch cabinets.
32. The switch cabinet assembly according to claim 20, wherein opposite longitudinal sides of the stack connector each include a fastening flange, which extend perpendicularly to its mounting side, wherein the stack connector is secured, in particular, screw-connected on the opposite outer sides of the adjoining profile frames via the fastening flanges on opposite fastening profile sides.
33. The switch cabinet assembly according to claim 20, wherein all vertical profiles and horizontal profiles are designed as hollow chamber profiles, which include a first and a second fastening profile side, which are connected spaced apart in parallel to one another via a third fastening profile side extending perpendicularly to the first and second fastening profile sides, wherein the first of the two fastening profile sides is arranged on an outer side of the switch cabinet and extending perpendicularly to this is a sealing ridge of the profile, and wherein the second of the two fastening profile sides is arranged on an inner side of the switch cabinet.
34. The switch cabinet assembly according to claim 32, in which a rectangular base frame is formed from four horizontal profiles connected at right angles to one another, wherein the profiles of the base frame include a circumferential support flange extending perpendicularly to the second fastening profile sides, which has a circumferential row of fastening mounts.
35. The interior structural component according to claim 20, which includes multiple parallel second rows of fastening mounts, wherein the second rows maintain the grid dimension both in their longitudinal direction as well as in the direction perpendicular thereto.
36. The interior structural component according to claim 20, the fastening means, the ends of which are designed as mounting flanges, which include a section for accommodating a flat section holder and/or crops in the form of round-offs on at least one of two opposite outer edges of at least one of the mounting flanges.
Description
DRAWINGS
[0035] The drawings described 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.
[0036] Further details of the invention are explained below with reference to the figure, in which:
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DETAILED DESCRIPTION
[0045] Example embodiments will now be described more fully with reference to the accompanying drawings.
[0046]
[0047] The interior structural component 7 includes a mounting side 8, which extends essentially over the entire spacing between the vertical profiles 3. The ends of the mounting side 8 each join a fastening flange 21, via which the interior structural component 7 may be secured to the fastening profile sides 5, 11 and to the fastening mounts formed therein (not depicted). The interior structural component 7 may be designed for this purpose in the manner of a mounting chassis, as is known from DE 196 47 802 C1. The opposite ends of the mounting chassis 7 include fastening flanges 21, which comprise hook elements (cf.
[0048]
[0049] It is also apparent in
[0050] To align the interior structural component 7 precisely in relation to the vertical profile 3, it is provided that the interior structural component 7 includes a mounting flange 21 having a hook element (cf.
[0051] Exemplary embodiments of an internal structural component 7 are shown with reference to the
[0052] As shown in the
[0053] For example, once again in reference to
[0054] The opposite outer edges of the mounting flanges 2 each include a crop 27, which is intended to allow the mounting chassis 7 to swivel, even when the mounting chassis 7 is to be mounted via the outer side on a mounting plane E that faces the outer side A of the switch cabinet 1 (compare
[0055] To simplify the mounting of the mounting chassis 7, the mounting flanges 21 of the chassis 7 each include a marking 14, wherein the sealing ridges 20 of the vertical profiles 3 include corresponding markings (not depicted).
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[0059] The profile frames adjoin one another via sealing ridges 20 extending perpendicularly to the first fastening profile sides 5 of the profile frame, and thus include a spacing between the two fastening profile sides 5. This spacing is bridged specifically by the mounting side 16 of the stack connector 15, so that a continuous mounting plane is formed between the profile frames 3, 4 of the adjacent switch cabinets 1.
[0060] The third fastening profile sides 18 and the mounting side 16 each include fastening mounts 17, 19 spaced apart from one another along their longitudinal direction while maintaining the constant grid dimension, wherein the fastening mounts 17, 19 of the third fastening profile sides 18 and of the mounting side 16 are spaced apart from one another in a direction perpendicular to the longitudinal direction while also maintaining the grid dimension. The result of this is that an interior structural component may be guided from the interior of a first of the switch cabinets 1 through the adjacent profile frames into the interior of one of the second switch cabinets 1, wherein the interior structural component 7 may be a mounting chassis, for example, which is secured to another mounting chassis also arranged in the grid dimension via its opposite fastening flanges.
[0061] The features of the invention disclosed in the preceding description, in the drawings as well as in the claims may be essential for implementing the invention, both alone and also in arbitrary combination.
[0062] 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.