Domestic cooling device having a wall light
20190339004 ยท 2019-11-07
Assignee
Inventors
Cpc classification
F21V7/0016
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D23/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D27/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25D27/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A domestic cooling device has a cold chamber and a wall light arranged on a delimiting wall of the cold chamber for illuminating the cold chamber. The wall light includes at least one light source and a window region manufactured from a transparent material, through which the light generated by the wall light emerges into the cold chamber. There is a reflection surface, in particular having a diffusely reflecting action, which is arranged in front of the window region in the propagation path of at least a portion of the light radiation coming from the light source. At least a portion of the reflection surface is formed by the delimiting wall, in particular by an inner lining part of the cooling device. The reflection surface can be formed in a hollow in the inner lining part. The window region extends over at least a portion of the hollow.
Claims
1. A domestic cooling device comprising: a cold chamber; and a wall light arranged on a delimiting wall of the cold chamber for illuminating the cold chamber, wherein the wall light comprises at least one light source and a window region manufactured from a transparent material, through which the light generated by the wall light emerges into the cold chamber, wherein there is associated with the wall light a reflection surface, in particular having a diffusely reflecting action, which is arranged in front of the window region in the propagation path of at least a portion of the light radiation coming from the light source, characterised in that at least a portion of the reflection surface is formed by the delimiting wall.
2. The domestic cooling device according to claim 1, wherein at least a portion of the reflection surface is formed in a hollow of the delimiting wall, and the window region extends over at least a portion of the hollow.
3. The domestic cooling device according to claim 2, wherein the hollow is formed in an inner lining part manufactured in particular from a plastics material, behind which there is arranged a heat-insulating material introduced between the inner lining part and an outer lining part.
4. The domestic cooling device according to claim 2, wherein the light source is arranged so that it is recessed in the hollow.
5. The domestic cooling device according to claim 2, wherein the wall light comprises a plurality of light sources arranged in a row spaced apart one behind the other, and a circuit board on which the light sources are mounted, wherein the circuit board is arranged so that it is recessed at least in part in the hollow.
6. The domestic cooling device according to claim 2, wherein the hollow is in the form of a groove and, when viewed in the groove cross-section, has two opposite flank regions of different flank steepness, wherein the light source is arranged closer to the steeper of the two flank regions.
7. The domestic cooling device according to claim 1, wherein the light source and the window region are combined in a preassembled assembly which can be attached as such to the delimiting wall.
8. The domestic cooling device according to claim 7, wherein at least one mounting opening is formed in the delimiting wall and the preassembled assembly has, in association with the at least one mounting opening, at least one mounting member which engages in the at least one mounting opening.
9. The domestic cooling device according to claim 1, wherein the wall light has a frame region which extends all around the window region and has a visible surface, facing towards the cold chamber, which contrasts visually with the window region.
10. The domestic cooling device according to claim 9, wherein the window region and the frame region are formed integrally in one piece, wherein at least one of the following applies: the frame region is formed of a different-coloured material to the window region; and the visible surface has a different surface condition to the window region.
11. The domestic cooling device according to claim 1, wherein the at least one light source is an LED.
12. The domestic cooling device according to claim 3, wherein the heat-insulating material is a foam material.
13. The domestic cooling device according to claim 2, wherein the wall light comprises a plurality of light sources arranged in a row spaced apart one behind the other, and a circuit board on which the light sources are mounted, wherein the circuit board is arranged so that it is recessed substantially completely in the hollow.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE INVENTION
[0015] Reference will first be made to
[0016] When the door 24 is open (shown in
[0017] For further details of the wall lights 26, reference will now additionally be made to
[0018] The module body 34 can be a one-piece component which is permeable in the window region 36 to light in the visible range so that light generated by the light sources 32 can pass through the wall light 26 through the window region 36. In the window region 36, the module body 34 can be in the form of, for example, a transparent body with a transmission of 90% or 95% or more for visible light. Alternatively, the module body 34 can have a milky (opaque) appearance in the window region 36.
[0019] In the frame region 38, the module body 34 can consist of the same material as in the window region 36, whereby, in order to achieve the desired visual contrast between the visible surface 40 and the window region 36, the visible surface 40 can have been subjected to a surface treatment. The surface treatment can comprise, for example, a coating with a coloured lacquer or with a coating having a metallic appearance (galvanisation). Alternatively, the frame region 38 can have been subjected to roughening of its surface in the region of the visible surface 40 so that the transparency in that region is reduced or even eliminated completely as compared with the window region 36.
[0020] Another possibility consists in producing the module body 34 from plastics materials of different kinds in a multi-component injection-moulding process, a transparent plastics material being used for the window region 36 and a non-transparent plastics material being used for the frame region 38 and any other regions of the module body 34.
[0021] As an alternative to a one-piece form of the module body 34 it is additionally possible to design the module body 34 in multi-part form. A first part-body can thereby be formed by a separate window element which forms the window region 36. A second part-body can be formed by a frame element which forms the frame region 38. The frame element can provide a recess having a support surface for the window element, the window element being inserted into the recess and fixedly connected to the frame element by adhesive bonding or welding, for example.
[0022] In the example shown, the module body 34 additionally comprises a plurality of clamping projections 42, for example in tab or tongue form, serving as mounting members, which clamping projections serve for mounting the lighting module 28 on a delimiting wall 44. The delimiting wall 44 is one of the walls which delimit the interior 22 of the cooling device 10 of
[0023] The delimiting wall 44 is of multi-layer construction and comprises an inner lining part 46, an outer lining part 48, and a heat-insulating foam material 50 which fills a cavity between the inner lining part 46 and the outer lining part 48 (
[0024] In the region of the groove bottom 54 and the less steep groove flank 56, the surface of the inner lining part 46 facing towards the interior 22 of the cooling device 10 forms a reflection surface 60 which is situated inside the hollow 52 and at which incident light generated by the light sources 32 undergoes diffuse reflection (scattering). In
[0025] Mounting openings 62 are introduced into the inner lining part 46, in which mounting openings the clamping projections 42 are received when the lighting module 28 is fitted to the inner lining part 46. The clamping projections 42 are resiliently deflectable and brace the lighting module 28 relative to the inner lining part 46.
[0026]
[0027] Because the reflection surface 60 is provided directly on the inner lining part 46, the wall light 26 does not require a separate reflector body, which would have to be produced in addition to the inner lining part 46. This lowers the outlay for the wall light 26 in terms of components and reduces the production costs thereof.
[0028] Although the preferred embodiments of the present invention have been described herein, the above description is merely illustrative. Further modification of the invention herein disclosed will occur to those skilled in the respective arts and all such modifications are deemed to be within the scope of the invention as defined by the appended claims.