HEATING ZONE WITH AN ILLUMINATION DEVICE FOR A COOKING HOB
20210251052 ยท 2021-08-12
Inventors
- Peter NEGRETTI (Forli, IT)
- Gabriel Papp (Rothenburg ob der Tauber, DE)
- Jochen Holzinger (Rothenburg ob der Tauber, DE)
Cpc classification
H05B2213/03
ELECTRICITY
International classification
Abstract
The present invention relates to an illumination device (12) for a heating zone (10) of a cooking hob, in particular of an induction cooking hob. The illumination device (12) comprises at least one light source element (14) and at least one reflecting element (18). Further, the illumination device (12) comprises at least one insulating layer (18) horizontally arrangeable or arranged on the heating zone (10). Said insulating layer (18) includes at least one light channel (20) formed as a cut-out. The illumination device (12) comprises at least one reflecting, diffusing and/or refracting layer covering at least the light channel (20). The light source element (14) and the reflecting element (16) are arranged that a light beam from said light source element (14) is redirected by the reflecting element (16) into the light channel (20).
Claims
1. A heating zone for a cooking hob, in particular for an induction cooking hob, wherein: the heating zone comprises an illumination device, the illumination device comprises at least one light source element, the illumination device comprises at least one reflecting element, and the illumination device comprises at least one reflecting, diffusing and/or refracting layer, wherein the illumination device comprises at least one insulating layer horizontally arranged within the heating zone, includes at least one light channel formed as a cut-out, the reflecting, diffusing and/or refracting layer covers at least the light channel, and the light source element and the reflecting element are arranged that a light beam from said light source element is redirected by the reflecting element into the light channel.
2. The heating zone according to claim 1, wherein the light channel is elongated.
3. The heating zone according to claim 1, wherein the reflecting, diffusing and/or refracting layer is made of mica.
4. The heating zone according to claim 1, wherein the reflecting, diffusing and/or refracting layer is arranged above the insulating layer.
5. The heating zone according to claim 1, wherein the insulating layer is made of glass fibre.
6. The heating zone according to claim 1, wherein the illumination device comprises at least one further reflecting, diffusing and/or refracting layer arranged beneath the insulating layer and arranged above the heating zone, wherein said further reflecting, diffusing and/or refracting layer forms a bottom of the light channel, and wherein preferably the further reflecting, diffusing and/or refracting layer is made of mica.
7. The heating zone according to claim 1, wherein the reflecting, diffusing and/or refracting layer and the further reflecting, diffusing and/or refracting layer are coloured or painted white.
8. The heating zone according to claim 1, wherein the reflecting, diffusing and/or refracting layer and the further reflecting, diffusing and/or refracting layer have a thickness less than 1 mm, preferably between 0.1 mm and 0.5 mm.
9. The heating zone according to claim 1, wherein at least one reflecting element is a beam splitter, wherein said beam splitter includes a plurality of mirror elements, and wherein preferably the beam splitter is made of plastics, glass, borosilicate or metal, e.g. aluminum or steel.
10. The heating zone according to claim 1, wherein the light source element and the reflecting elements are arranged in the centre of the heating zone, while a plurality of light channels extend radially, wherein preferably said reflecting elements are arrangeable or arranged opposite to the light channels.
11. The heating zone according to claim 1, wherein at least one reflecting element is a prism, wherein preferably said prism includes a concave surface section.
12. The heating zone according to claim 1, wherein the illumination device comprises at least one support device for supporting the at least one light source element and the at least one reflecting element.
13. The heating zone according to claim 1, wherein the illumination device comprises at least one light mask arranged above the reflecting, diffusing and/or refracting layer.
14. The heating zone according to claim 1, wherein the illumination device comprises a plurality of light source elements, wherein preferably said light source elements are separated by light screen elements.
15. A cooking hob, in particular of an induction cooking hob, wherein the cooking hob comprises at least one heating zone according to claim 1.
Description
[0034] The present invention will be described in further detail with reference to the drawings, in which
[0035]
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[0037]
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[0040]
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[0042]
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[0044]
[0045] The illumination device 12 comprises a support device 22. Said support device 22 is arranged in the centre of the heating zone 10. One light source element 14 and three reflecting elements 16 are attached at said support device 22. The heating zone 10 is covered by an insulating layer 18. In this example, the insulating layer 18 is a circular disk. Three light channels 20 are formed as cut-outs in said insulating layer 18. In general, an arbitrary number of light channels 20 may be formed as cut-outs in the insulating layer 18. The light channels 20 extend into radial directions. A further cut-out is formed in the centre of the insulating layer 18 and above the support device 22 for the light source element 14 and the reflecting elements 16. Preferably, the insulating layer 18 is made of glass fibres. In this example, the insulating layer 18 has a thickness of 2.0 mm. In general, the thickness of the insulating layer is within the range between 0.5 mm and 3.0 mm.
[0046] In this example, the light source element 14 and the reflecting elements 16 are arranged in the centre of the heating zone 12 or induction coil, respectively. In general, the light source element 14 and the reflecting elements 16 are arranged in a relative cold area of the heating zone 12, e.g. beside or close to said heating zone 12. Moreover, the light source element 14 and the reflecting elements 16 may be arranged in an area, which is cooled down, e.g. in a cooling channel.
[0047] An upper reflecting, diffusing and/or refracting layer 34 is arranged above the insulating layer 18 as illustrated in
[0048] Preferably, the upper reflecting, diffusing and/or refracting layer 34 is made of mica. In particular, said mica layer is white coloured or painted. The layer made of mica is suitable for reflecting, diffusing and refracting light as well. The thickness of the reflecting, diffusing and/or refracting layer 34 is less than 1 mm, preferably between 0.1 mm and 0.5 mm.
[0049] Further, a lower reflecting, diffusing and/or refracting layer 32 is arranged beneath the insulating layer 18. Preferably, the lower reflecting, diffusing and/or refracting layer 32 is also made of mica. In particular, said mica layer is also white coloured or painted. For example, said lower reflecting, diffusing and/or refracting layer 32 is directly glued on the induction coil. Preferably, the lower reflecting, diffusing and/or refracting layer 32 may be formed as a circular disk.
[0050]
[0051] The support device 22 is arranged in the centre of the heating zone 10. The support device 22 includes a cylindrical circumferential wall. In this example, the bottom side and the top side of the support device 22 are substantially open. The light source element 14 is arranged in the centre of the heating zone and beneath the support device 22. Preferably, the light source element 14 is a light emitting diode (LED).
[0052] The reflecting elements 16 are arranged inside the cylindrical circumferential wall of the support device 22 and attached at a ring. In turn, said ring is attachable or attached at the support device 22. The three reflecting elements 16 are spaced equally from each other. The reflecting surfaces of the reflecting elements are directed inwardly. Each reflecting element 16 is arranged opposite to a corresponding light channel 20. For example, the reflecting elements 16 are made of glass, borosilicate, plastics or metal. Further, the reflecting elements 16 may be coated by a metal layer.
[0053] A light beam from the light source element 14 is reflected by the reflecting elements 16 and redirected into the opposite light channels 20. The reflecting, diffusing and/or refracting layer 34 above said light channels 20 reflects and refract said light beam, so that an area above the heating zone 10 is illuminated.
[0054] Further, the reflecting element 16 may be a beam splitter including several reflecting surfaces, i.e. mirrors. For example, the beam splitter includes three mirrors. The beam splitter may be directly arranged above the light source element 14. The beam splitter may be made of glass, borosilicate, plastic or metal, e.g. aluminium or steel. For example, the beam splitter made of plastic or metal has a circular shape with a hole in its centre, wherein the light is reflected by the plastic or metal. The beam splitter may be coated by a reflective material, e.g. chrome. The beam splitter allows internal total reflections. The beam splitter may be positioned in an area, where no influence of the electromagnetic field of the induction coil occurs.
[0055]
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[0057] The support device 22 includes the cylindrical circumferential wall. In this example, the top side of the support device 22 is substantially open, while the bottom side of the support device 22 is partially or completely closed. The light source element 14 is arranged on the bottom of the support device 22. In this example, the light source element 14 is a light emitting diode (LED). The reflecting elements 16 are attached at a ring. In turn, said ring is clamped within the support device 22.
[0058] Further, three support elements 24 are arranged within the circumferential wall of the support device 22. Each support element 24 corresponds with one reflecting element 16. Said support elements 24 are arranged outside of the reflecting elements 16. The reflecting elements 16 act as beam splitter and effectively as reflecting devices. The support elements 24 support the reflecting elements 16 in redirecting the light beam from the light source element 14 into the light channels 20.
[0059]
[0060]
[0061] The support device 22 includes the cylindrical circumferential wall. In this example, the top side of the support device 22 is substantially open, while the bottom side of the support device 22 is partially or completely closed. The light source element 14 is arranged on the bottom of the support device 22. Preferably, the light source element 14 is a light emitting diode (LED).
[0062] Instead of the three reflecting elements 16, three prism elements 26 are attached at a support plate 28 in the second embodiment. In turn, the support plate 28 is attached within the support device 22. The prism elements 26 are attached at the bottom side of the support plate 28.
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[0065] Three support elements 24 are arranged within the circumferential wall of the support device 22. Each support element 24 includes a concave surface section 30. The support elements 24 act as beam splitter and effectively as reflecting devices. The support elements 24 support the reflections in order to redirect the light beam from the light source element 14 into the light channels 20.
[0066] Optionally, a light mask may be arranged above the upper reflecting, diffusing and/or refracting layer 34. Said light mask allows a specific light filtering.
[0067] The illumination device 12 according to the present invention allows an improved illumination of the heating zone 12. Said illumination device 12 may be realised by simple manufacturing and low complexity. The inventive illumination device 12 does not increase the thickness of the heating zone 12.
[0068] Although illustrative embodiments of the present invention have been described herein with reference to the accompanying drawings, it is to be understood that the present invention is not limited to those precise embodiments, and that various other changes and modifications may be affected therein by one skilled in the art without departing from the scope or spirit of the invention. All such changes and modifications are intended to be included within the scope of the invention as defined by the appended claims.
LIST OF REFERENCE NUMERALS
[0069] 10 heating zone [0070] 12 illumination device [0071] 14 light source element [0072] 16 reflecting element [0073] 18 insulating layer [0074] 20 light channel [0075] 22 support device [0076] 24 support element [0077] 26 prism element [0078] 28 support plate [0079] 30 concave surface section [0080] 32 lower reflecting, diffusing and/or refracting layer [0081] 34 upper reflecting, diffusing and/or refracting layer