COOKING APPLIANCE
20200080783 · 2020-03-12
Inventors
Cpc classification
F24C7/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D2021/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D2019/0056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C15/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47J27/14
HUMAN NECESSITIES
A47J36/32
HUMAN NECESSITIES
International classification
F27D21/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47J27/14
HUMAN NECESSITIES
A47J36/32
HUMAN NECESSITIES
Abstract
Cooking appliance, especially a commercial cooking appliance, comprising a housing in which a cooking chamber is arranged; at least one sensor device; and a cooling device for the sensor device, which sensor device comprises the following components: a cooling housing, in which the sensor device is arranged, a heat-conducting bridge, and at least one heat-dissipating member, which is arranged on a support, wherein the cooling housing is made of heat-conducting, preferably highly thermally conductive material, and in that the heat-conducting bridge is made of thermally conductive, preferably highly thermally conductive material which connects the cooling housing to the support made of thermally conductive, preferably highly thermally conductive material.
Claims
1. A cooking appliance, especially a commercial cooking appliance, comprising: a housing in which a cooking chamber is arranged; at least one sensor device; and a cooling device for said sensor device, said cooling device comprising: a cooling housing in which the sensor device is arranged, a heat-conducting bridge, and at least one heat-dissipating member which is arranged on a support, wherein in that the cooling housing is made of thermally conductive material, and in that the heat-conducting bridge made of thermally conductive material connects the cooling housing to the support made of thermally conductive material.
2. The cooking appliance according to claim 1, wherein the support bears at least one cooling member, the at least one heat-dissipating member being arranged on the at least one cooling member.
3. The cooking appliance according to claim 1, wherein the cooling housing, the heat-conducting bridge and the support are integrally formed or in that the cooling housing, the heat-conducting bridge and the support are separate components which are connected to each another.
4. The cooking appliance according to claim 1, wherein the cooling housing is arranged in a mounting box made of poorly thermally conductive material, wherein additional heat-insulating members are preferably provided in or around the cooling housing.
5. The cooking appliance according to claim 1, further comprising two cooling members are provided which are arranged at a distance from each another or which are arranged adjacent to each another.
6. The cooking appliance according to claim 1, further comprising a layer of conductive paste, thermal foil or heat-conducting adhesive is provided between the at least one cooling member and the support.
7. The cooking appliance according to claim 1, further comprising a layer of conductive paste, thermal foil or heat-conducting adhesive is provided between the at least one cooling member and the heat-dissipating member.
8. The cooking appliance according to claim 1, wherein the cooling device comprises a fan which is directed towards the heat-dissipating member and which is preferably arranged on an air channel or cooling channel in which the heat-dissipating member is placeable.
9. The cooking appliance according to claim 1, wherein the thermally conductive material is aluminum.
10. The cooking appliance according to claim 1, wherein the heat-dissipating member has a plurality of cooling fins.
11. The cooking appliance according to claim 10, wherein the cooling fins are divided into two cooling fin blocks.
12. The cooking appliance according to claim 10, wherein the cooling fins are arranged on a support plate.
13. The cooking appliance according to claim 1, wherein the heat-dissipating member is arranged symmetrically or asymmetrically with respect to the at least one cooling member.
14. The cooking appliance according to claim 1, wherein the at least one cooling member is formed as a Peltier member.
15. The cooking appliance according to claim 1, wherein the at least one cooling member is formed as a heat exchanger.
16. A cooling device for a cooking appliance comprising: a cooling housing made of thermally conductive material, in which a sensor device is arranged; a heat-conducting bridge of thermally conductive material, which connects the cooling housing to a support of thermally conductive material, which bears at least one cooling member; and comprising at least one heat-dissipating member arranged on said at least one cooling member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Further details, advantages and features of the disclosure will arise from the following description of example embodiments while reference will be made to the drawing, wherein:
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0037]
[0038] The cooking appliance 1 also comprises a control device 5, a display device 6 and an input device 7.
[0039] Finally, the cooking appliance 1 is provided with a sensor device 8B, which is shown schematically simplified as a block in
[0040] The cooking appliance 1 according to the disclosure also comprises a cooling device 8A, which is also represented schematically and strongly simplified by a block, and in the embodiment shown in
[0041] The structure of the cooling device 8A will be explained below in detail in the
[0042] The embodiment of the cooling device 8A according to
[0043] The cooling housing 9 is connected to a heat-conducting bridge 10, which is also made of a thermally conductive, especially highly thermally conductive material. The heat-conducting bridges 10 connect the cooling housing 9 to a support 11, which is also made of thermally conductive material, preferably a highly thermally conductive material. The support 11, which is configured as a support plate in the embodiment shown, bears at least one cooling member, but in the embodiment shown, for example, two cooling members 12A and 12B are arranged on the support. These cooling members 12A and 12B may, for example, be designed as Peltier coolers.
[0044] Finally, the cooling device 8A comprises a heat-dissipating member 13, which is arranged on the two cooling members 12A and 12B, for example. Preferably, as explained above, this heat-dissipating member 13 is arranged directly on the cooling members 12A and 12B, and in a particularly preferred embodiment, it is possible to provide a layer of conductive paste, thermal foil or thermal adhesive between the cooling members 12A and 12B and the heat-dissipating member 13, but this layer may not be seen in
[0045] As it is further illustrated in
[0046] Furthermore, the cooling device 8A of the type shown in
[0047] In the embodiment according to
[0048]
[0049]
[0050] In the embodiment of the cooling device 8A as shown in
[0051]
[0052]
[0053] The dashed lines 20 and 21 represent active connections between the controller 18 and the Peltier member(s) 12A or a sensor signal line to a temperature sensor 22, which is connected to the signal line 21 via a cable 23 and is arranged in the cooling housing 9. This temperature sensor 22 measures the internal temperature of the cooling housing 9 to monitor whether the sensor device 8B operates in a tolerable temperature environment or whether cooling activation is required to prevent overheating.
[0054] The Peltier coolers 12A, 12B may be controlled via line 20 if such coolers are provided as cooling members.
[0055] The connection line 39 between the controller 18 and the fan 17 allows switching the fan on or off.
[0056]
[0057] Another feature of this embodiment is a cooling bar 24, for example made of aluminum, which is connected to the cooling housing 9. Light sources, for example in the form of LEDs, may be provided underneath this cooling bar 24. They are symbolized in
[0058] In addition, two height sensors 25 and 26 are arranged at the two end sections of the cooling bar 24, allowing determination of the height at which food trays are introduced into the cooking chamber. The height sensors are of course connected to the controller 18 and controller 19, as explained above in
[0059] Furthermore, in this embodiment, it is possible to set different temperature zones via the geometry of the cooling bar 24, as in this direction, i.e. from the cooling housing 9 to the two height sensors 25 and 26 respectively, the temperature increases.
[0060] Moreover, the embodiment of
[0061] Thus, in this embodiment it is possible to aspirate fresh air via the fan 17, conduct it in the cooling channel 38 via the heat-dissipating member 13 and, at the opposite end, dissipate the heated air in a suitable area inside or outside the cooking appliance 1 according to the disclosure. This further increases the efficiency of the cooling capacity of the cooling device 8A in accordance with the disclosure.
[0062] In this embodiment, it is also possible to omit one or more cooling members while providing the cooling bar 24, which is symbolized by the reference number 12A in brackets in
[0063] In addition to the above-mentioned written disclosure, reference will supplementary be made to the representation of the disclosure in
LIST OF REFERENCE NUMBERS
[0064] 1 cooking appliance [0065] 2 cooking chamber [0066] 3 cooking chamber door [0067] 4 housing/appliance housing [0068] 5 control device [0069] 6 display device/display [0070] 7 input device/keyboard [0071] 8A cooling device [0072] 8B sensor device [0073] E1 to E6 cooking trays [0074] GP1 to GP6 cooking products [0075] 9 cooling housing [0076] 9A lid [0077] 9B housing body [0078] 10 heat-conducting bridge [0079] 11 support/support plate [0080] 12A, 12B cooling member [0081] 13 heat-dissipating member [0082] 13A, 13B cooling fin blocks [0083] 14 mounting box/external housing [0084] 14A recording area [0085] 14B, 14C mounting range [0086] 15, 16 layers [0087] 17 fan/blower [0088] 18 controller [0089] 19 device control [0090] 20, 21 active connection/signal connection [0091] 22 temperature sensor [0092] 23 cable [0093] 24 cooling bar [0094] 25, 26 height sensor [0095] 27-37 light sources/LEDs [0096] 38 cooling channel [0097] 39, 40 active connection/signal connection [0098] K cooling air flow [0099] A distance between cooling fin blocks 13A and 13B