The present invention relates to induction module for an induction cooking hob. Further, the present invention relates to an induction cooking hob comprising at least one induction module.
An induction cooking hob includes usually an induction coil carrier made of steel and a housing made of plastics. The induction coil carrier is provided for supporting one or more induction coils. The housing covers or encloses said induction coil or induction coils, respectively. The housing is usually fixed to the induction coil carrier by a plurality of screws.
However, the fixation of the housing to the induction coil carrier by the screws means a big expenditure and labour. This results in high costs for assembling the induction module and the associated induction cooking hob.
It is an object of the present invention to provide an induction module for an induction cooking hob, which allows an assembling of said induction module by low expenditure.
The object of the present invention is achieved by the induction module according to claim 1.
According to the present invention the induction module for an induction cooking hob comprises an induction coil carrier made of metal and a housing made of plastics, wherein:
The induction module according to the present invention can be assembled by low expenditure. The housing with the side walls allows a protection of the induction coils at the side. The induction module can be assembled without any tools and screws.
According to a preferred embodiment of the present invention the induction coil carrier includes at least one protruding element extending downwards from the horizontal main panel of the induction coil carrier, wherein the protruding element is provided for supporting the side wall of the housing.
Preferably, the protruding element is made by a U-shaped die-cut in the horizontal main panel of the induction coil carrier and by subsequent bending up a tongue-shaped element resulting from said U-shaped die-cut.
Alternatively, the protruding element is formed as a separate part fixed to the horizontal main panel of the induction coil carrier. In this case, the protruding element may be fixed to the induction coil carrier by rivets, welding, gluing or the like.
Further, the protruding elements may be provided for supporting two or more side walls of the housing.
Moreover, the housing may be additionally fixed to the induction coil carrier by at least one screw. This is advantageous for service reasons.
For example, the housing is fixable to the induction coil carrier by hanging up said housing at one side and clipping at one or more other sides.
Alternatively, the housing may be fixable to the induction coil carrier by clipping at all four sides.
In particular, at least one chamfer is formed at a lower edge of the vertical sheet element, so that the hook element can pass the lower edge of the vertical sheet element, when the housing is moved toward the induction coil carrier.
Furthermore, the open top side of the housing is covered by the horizontal main panel of the induction coil carrier.
Further, the present invention relates to an induction cooking hob comprising at least one induction module mentioned above.
Novel and inventive features of the present invention are set forth in the appended claims.
The present invention will be described in further detail with reference to the drawings, in which
The induction module comprises an induction coil carrier 10 and a housing 12. The housing 12 is fixed to the induction coil carrier 10. The induction coil carrier 10 is preferably made of steel, e.g. folded of a steel sheet. The housing 12 is preferably made of plastics. The induction coil carrier 10 is provided for supporting one or more induction coils. The housing 12 covers or encloses said induction coil or induction coils, respectively.
In particular, the induction coil carrier 10 includes one or more protruding elements 14. The protruding elements 14 extend downwards from a horizontal main panel of the induction coil carrier 10. The protruding elements 14 are provided for supporting the side walls of the housing 12.
In this example, the protruding element 14 is a bending up. The protruding element 14 is made by a U-shaped die-cut in the horizontal main panel of the induction coil carrier 10. Then the resulting tongue-shaped element is bended up and forms the protruding element 14. Alternatively, the protruding elements 14 may be separate parts fixed to the induction coil carrier 10. In the latter case, the protruding elements 14 may be fixed to the induction coil carrier 10 by rivets, welding, gluing or the like.
The housing 12 is fixed at the bottom side of the induction coil carrier 10. The housing 12 is flat and has a rectangular base area. The housing 12 includes a bottom wall and four side walls. The open top side of the housing 12 is covered by the horizontal main panel of the induction coil carrier 10. The area of said horizontal main panel of the induction coil carrier 10 is bigger than the base area of the housing 12.
The housing 12 is fixed to the induction coil carrier 10. The side wall of the housing 12 includes a hook element 16. The induction coil carrier 10 includes a vertical sheet element 20 adjacent to said side wall of the housing 12. The vertical sheet element 20 includes a cut-out 18 for receiving the hook element 16 of the housing 12. In
The induction module according to the present invention includes at least one hook element 16 and at least one corresponding cut-out 18. One or more side walls of the housing 12 include one or more hook elements 16. When assembling the induction module, the housing 12 can be hung-up at one side and clipped to the induction coil carrier 10 at one or more of the other sides. Alternatively, the housing 12 can be clipped to the induction coil carrier 10 at all four sides.
Further, the induction module according to the present invention includes one or more protruding elements 14 at two or more sides. The at least one hook element 16 and corresponding cut-out 18 as well as the protruding elements 14 allow the fixation of the housing 12 to the induction coil carrier 10 without any tools and screws.
In this example, a chamfer 22 is provided at the lower edge of the vertical sheet element 20. The chamfer 22 allows that the hook element 16 can easily pass the lower edge of the vertical sheet element 20, when the housing 12 is pushed towards the induction coil carrier 10.
The section shown in
Although an illustrative embodiment of the present invention has been described herein with reference to the accompanying drawings, it is to be understood that the present invention is not limited to that precise embodiment, 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.
Number | Date | Country | Kind |
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13152620.4 | Jan 2013 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/050275 | 1/9/2014 | WO | 00 |