专利摘要:
The invention relates to a cooking field device (10a-c) with at least one cooking field plate (12a-c) and with at least one integrated extractor unit (14a-c), which has at least one fan unit (16a-c) which in at least one operating state generates at least a first air stream (18a-c) and, by means of the first air stream (18a-c), evacuates the vapors that are produced in the operating status. In order to provide a generic cooking field device with better properties in terms of a low complexity, it is proposed that the fan unit (16a-c) generates at least a second air stream in the operating state (20a- c) and is provided to at least partially cool by the second air stream (20a-c) at least one cooking field unit (22a-c). (Machine-translation by Google Translate, not legally binding)
公开号:ES2648673A1
申请号:ES201630910
申请日:2016-07-04
公开日:2018-01-05
发明作者:José Andrés GARCÍA MARTÍNEZ;Sergio Llorente Gil;Carmelo Pina Gadea;Julio Rivera Peman
申请人:BSH Hausgeraete GmbH;BSH Electrodomesticos Espana SA;
IPC主号:
专利说明:

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Other advantages are taken from the following description of the drawing. Three embodiments of the invention are represented in the drawing. The drawing, description and claims contain numerous features in combination. The person skilled in the art will consider the characteristics advantageously also separately, and will gather them in other reasonable combinations.
They show:
Fig. 1 a cooking field with a cooking field device, in view
schematic superior,
Fig 2 an extractor unit, a lower housing unit, a unit of
cooling, a cooking field unit, and a fan of
additional cooling of the cooking field device, in view
schematic superior,
Fig. 3 the cooking field device, in a section representation
schematic,
Fig. 4 an extractor unit, a lower housing unit, a unit of
cooling, and a cooking field unit of a device
alternative cooking field, in schematic top view,
Fig. 5 the cooking field device, in a section representation
schematic,
Fig. 6 a cooking field with a cooking field device
alternative, in schematic top view, and
Fig. 7 the cooking field device, in a section representation
schematic
Figure 1 shows a cooking field 40a, which is realized as an induction cooking field, with a cooking field device 10a, which is realized as an induction cooking device.
The cooking field device 10a has an interface of 42a for the introduction and / or selection of operating parameters, for example, the heating power and / or the density of the heating power and / or the heating zone. Also, the user interface 42a is intended to give the user the value of an operating parameter.
In addition, the cooking field device 10a has a control unit 44a, which is intended to execute actions and / or modify settings depending on the operating parameters entered through the user interface 42a. In
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The additional cooling fan 50a generates a third air stream for the cooling unit 36a. The first air stream 18a and the third air stream are different air currents. The second air stream 20a and the third air stream are different air currents. In the operating state, the third air stream flows through the cooling unit 36a. The additional cooling fan 50a cools the cooking field unit 22a by the third air flow. In the operating state, the additional cooling fan 50a is driven with reduced power.
Alternatively, an embodiment is conceived in which the additional cooling fan 50a and the cooling unit 36a are dispensed with. In particular, an embodiment is conceived in which the cooking field device 10a does not have an additional cooling fan 50a or a cooling unit 36a. The cooling of the cooking field unit 22a is carried out exclusively by the second air stream 20a, dispensing with an air stream through the cooling unit 36a.
In a procedure for putting into operation of a cooking field device 10a, the vapors produced in the operating state are evacuated by means of the first air stream 18a. The cooking field unit 22a is cooled in the operating state by the second air stream 20a.
In Figures 4 to 7, other embodiments of the invention are shown. The following descriptions are essentially limited to the differences between the examples of embodiment, where, in relation to components, characteristics and functions that remain the same, reference can be made to the description of the example of embodiment of Figures 1 to 3. For the differentiation of In the examples of embodiment, the letter "a" of the reference symbols of the embodiment example of Figures 1 to 3 has been replaced by the letters "b" and "c" in the reference symbols of the examples of embodiment of the Figures 4 to 7. In relation to components indicated in the same way, in particular, as regards components with the same reference symbols, it is also possible to refer basically to the drawings and / or to the description of the embodiment example of Figures 1 to 3.
Figure 4 shows an extractor unit 14b, a lower housing unit 30b, a cooling unit 36b, and a cooking field unit 22b of an alternative cooking field device 10b. In the installation position, an air duct unit 24b of the extractor unit 14b connects to each other a fan unit 16b of the extractor unit 14b and the upper side of a field plate
12


of cooking 12b of the cooking field device 10b. In an operating state, the fan unit 16b generates a first air stream 18b and evacuates the vapors that are generated in the operating state by the first air stream 18b. The first air stream 18b enters the air channel unit 24b through an extraction duct 48b, and flows through it.
In the operating state, the fan unit 16b generates a second air stream 20b. The first air stream 18b and the second air stream 20b are different air currents from each other. In the operating state, the second air stream 20b enters the air channel unit 24b through drains for the different stream 28b with respect to the extraction drain 48b.
The air channel unit 24b has several drains for the current 28b. Next, only one of the drains for current 28b is described. In the operating state, the second air stream 20b flows through the drain for stream 28b. In the installation position, the drain for the current 28b is arranged laterally in the air channel unit 24b.
The lower housing unit 30b has several air inlet dumps 32b. Next, only one of the air inlet dumps 32b is described. In the operating state, the second air stream 20b flows through the air inlet drain 32b into a hollow space 34b partially delimited by the lower housing unit 30b. The air inlet drain 32b is arranged in a side wall of the lower housing unit 30b. In the assembled state, the air inlet drain 32b and the drain for the stream 28b are correspondingly arranged with one another, namely, on the same sides.
In the assembled state, the cooling unit 36b is disposed between the air inlet drain 32b and the drain for the stream 28b and extends between them. The cooling unit 36b connects to each other the air inlet drain 32b and the drain for the current 28b in the assembled state.
In the operating state, the second air stream 20b flows into the cooling unit 36b through the air inlet drain 32b. The fan unit 16b cools the cooking field unit 22b by the second air stream 20b through the cooling unit 36b in the operating state. In the present exemplary embodiment, the cooking field unit 22b comprises a cooking field electronics 38b.
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In the operating state, the second air stream 20c flows through the air inlet dumps 32c into a hollow space 34c partially delimited by the lower housing unit 30c, in particular, it flows from the inlet dumps of air 32c to the dumps for stream 28c in an area
5 next to the cooking field plate 12c with respect to the vertical direction.
In the operating state, the fan unit 16c cools the cooking field plate 12c by the second air stream 20c. In the present embodiment, the cooking field unit 22c comprises the cooking field plate 12c.
10 In the operating state, the fan unit 16c further cools the heating elements 46c of the cooking field device 10c by the second air stream 20c. In the installation position, the heating elements 46c are arranged with respect to the vertical direction in the area close to the cooking field plate 12c below it. The second stream of
15 air 20c flows in the operating state between the heating elements 46c. In the present embodiment, the cooking field unit 22c comprises the heating elements 46c.
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权利要求:
Claims (1)
[1]
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同族专利:
公开号 | 公开日
EP3267116A1|2018-01-10|
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EP3267116B1|2020-08-05|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
EP1936283A2|2006-12-14|2008-06-25|LG Electronics Inc.|Cooking appliance|
EP2679913A2|2012-06-28|2014-01-01|BSH Bosch und Siemens Hausgeräte GmbH|Domestic appliance|
US20140014649A1|2012-07-11|2014-01-16|Whirlpool Corporation|Ventilation system for induction cooktop|
US20140150771A1|2012-12-05|2014-06-05|Bsh Home Appliances Corporation|Cooktop ventilation and cooling system|ES2768074A1|2018-12-19|2020-06-19|Bsh Electrodomesticos Espana Sa|Cooking system |FR2229929B1|1973-05-18|1976-11-12|Jenn Air Corp|
US4431892A|1981-07-17|1984-02-14|Jenn-Air Corporation|Ventilated modular cooktop cartridge|
US9175861B2|2012-06-25|2015-11-03|Western Industries, Inc.|Cook top with a ventilation system and a blower mount therefor|
法律状态:
2018-10-22| FG2A| Definitive protection|Ref document number: 2648673 Country of ref document: ES Kind code of ref document: B1 Effective date: 20181022 |
优先权:
申请号 | 申请日 | 专利标题
ES201630910A|ES2648673B1|2016-07-04|2016-07-04|COOKING FIELD DEVICE|ES201630910A| ES2648673B1|2016-07-04|2016-07-04|COOKING FIELD DEVICE|
EP17175698.4A| EP3267116B1|2016-07-04|2017-06-13|Hotplate device|
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