EP2645002B1 - Plaque de cuisson - Google Patents

Plaque de cuisson Download PDF

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Publication number
EP2645002B1
EP2645002B1 EP13159854.2A EP13159854A EP2645002B1 EP 2645002 B1 EP2645002 B1 EP 2645002B1 EP 13159854 A EP13159854 A EP 13159854A EP 2645002 B1 EP2645002 B1 EP 2645002B1
Authority
EP
European Patent Office
Prior art keywords
control electronics
hob
unit
electronics board
control
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP13159854.2A
Other languages
German (de)
English (en)
Other versions
EP2645002A2 (fr
EP2645002A3 (fr
Inventor
Manuel Almolda Fandos
Daniel Anton Falcon
Jesús CEAMANOS GAYA
David Ortiz Sainz
Carmelo Pina Gadea
Diego Puyal Puente
María Valencia Betran
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BSH Hausgeraete GmbH
Original Assignee
BSH Hausgeraete GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by BSH Hausgeraete GmbH filed Critical BSH Hausgeraete GmbH
Publication of EP2645002A2 publication Critical patent/EP2645002A2/fr
Publication of EP2645002A3 publication Critical patent/EP2645002A3/fr
Application granted granted Critical
Publication of EP2645002B1 publication Critical patent/EP2645002B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C7/00Stoves or ranges heated by electric energy
    • F24C7/08Arrangement or mounting of control or safety devices

Definitions

  • control electronics board units are arranged in a row next to one another on a common control electronics support unit or also on different control electronics support units.
  • the pamphlets KR 100 672 575 B1 and KR 2006 0033398 A disclose a control arrangement intended for an electrical area.
  • the control assembly includes a housing attached to a main body of an electric range; a relay substrate attached to the housing; and a main substrate mounted on the relay substrate.
  • the case has a bottom surface on which a plurality of first hooks are arranged so that the first hooks are connected to a front end of the relay substrate.
  • the housing has a side wall on which a plurality of second hooks and a plurality of support pieces are arranged. The second hooks are connected to a front end of the main substrate, and the support members support the front end of the main substrate.
  • the pamphlet EP 1 437 919 A2 discloses a microwave oven incorporating a widely applicable and expandable RISC (Reduced Instruction Set Computer) microprocessor.
  • the microwave oven also includes a control panel in which the membrane switches are replaced with soft-touch switches with electrostatic capacity.
  • the furnace has a control unit which is provided with a computer microprocessor with a reduced instruction set to control an overall operation of the furnace.
  • the control unit has a soft touch panel in which the electrostatic capacity varies depending on the touched positions.
  • a soft touch panel drive circuit generates an electrical signal in response to a change in capacitance and supplies the signal to the microprocessor.
  • the microprocessor performs digital signal processing functions including a speech recognition function, a playback function of a compressed audio file, and an image compression function.
  • EP 0 687 131 A2 is an electronic control arrangement for an electrical heating device with several, separately heatable electrical consumers, in particular Cooking areas, known, which contains an electronic main switch which has its own power supply. Downstream of the main switch is a control unit which has a control subunit for each electrical consumer.
  • the pamphlet JP 3 311608 B2 discloses an induction hob device, wherein a plurality of water sensors are arranged on a circuit board which is installed below a hob.
  • the pamphlet KR 2010 0010399 A discloses a control assembly for a hob which is installed in a base plate of the hob, the control assembly comprising a plurality of touch controls.
  • the object of the invention is in particular to advantageously further develop a domestic appliance control device.
  • the object is achieved according to the invention by the features of claim 1, while advantageous configurations and developments of the invention can be found in the subclaims.
  • a hob is proposed with a hob control device, with at least one control electronics support unit and at least two control electronics board units which, in an assembled state, are mounted in rows on the control electronics support unit.
  • a "control electronics board unit” is to be understood in this context in particular as an electronic unit which has at least one board, preferably exactly one board, and electronic components arranged on the board and which is in particular part of a control unit of a domestic appliance having the domestic appliance control device.
  • a “circuit board” is to be understood in particular as a unit which has a carrier body, in particular a plate-like carrier body, made of an electrically insulating material, on which conductor tracks made of an electrically conductive material are arranged and preferably fastened are.
  • An electrically insulating material is to be understood as meaning, in particular, a material which, at 20 ° C., has a specific electrical resistance of at least 10 9 ⁇ m, in particular of at least 10 10 ⁇ m, preferably of at least 10 11 ⁇ m and particularly advantageously of at least 10 12 ⁇ m.
  • an "electrically conductive material” is to be understood in particular as a material which, at 20 ° C., has a specific electrical conductivity of at least 10 3 S / m, in particular of at least 10 4 S / m, preferably of at least 10 5 S / m and particularly advantageously of at least 10 6 S / m.
  • control electronics carrier unit is to be understood in particular as a unit which is provided for at least one control electronics board unit to wear.
  • the control electronics carrier unit is preferably designed differently from a part of a housing unit, in particular a part of an external housing unit. “Provided” is to be understood in particular as specifically designed and / or equipped.
  • control electronics board units are mounted "in rows on top of each other" in a mounted state is to be understood in particular to mean that when viewing the two control electronics board units from one control area, the two control electronics board units are arranged one above the other in a plane parallel to a main plane of extent at least one of the two control electronics board units are.
  • a "main extension plane" of a structural unit in particular a plane can be understood which is parallel to a largest side surface of a smallest geometric cuboid, which just completely encloses the structural unit, and in particular runs through the center of this cuboid.
  • an “operating area” is to be understood as meaning, in particular, a spatial area in which an operator is present when operating the hob in accordance with regulations and / or as intended.
  • the operating area is characterized by a spatial arrangement of at least one operating unit, in particular one operating surface, and / or by at least one lettering and / or marking of at least one operating unit.
  • a “user interface” should be understood to mean a surface which can be touched by an operator in a mounted state and which is provided for operation by means of touch and / or approach.
  • the longitudinal directions of the control electronics board units are preferably arranged at least substantially parallel to one another and preferably aligned at least substantially parallel to a row direction.
  • a “longitudinal direction” of a structural unit is to be understood in this context, in particular, as a direction which is arranged parallel to a longest edge of a smallest geometric cuboid which just completely encloses the structural unit.
  • the fact that two directions are “at least substantially parallel to one another” should be understood in particular to mean that the directions enclose a smallest angle which is a maximum of 15 °, in particular a maximum of 10 °, preferably a maximum of 5 ° and particularly advantageously a maximum of 1 °.
  • a "line direction” is to be understood in particular as a direction parallel to a main plane of extent of at least one control electronics board unit, which is perpendicular to at least one shortest connecting line of the two control electronics board units with a perpendicular projection of the control electronics board units onto the main extent plane.
  • the control electronics board units can be mounted on the control electronics carrier unit in any manner that appears sensible to a person skilled in the art, in particular by means of a screw connection and preferably by means of a latching connection.
  • Such a configuration can advantageously be used to further develop a hob with a hob control device.
  • assembly can advantageously be optimized, since pre-assembly of the two control electronics board units on the control electronics carrier unit can be made possible.
  • an advantageous use of an available Space can be achieved with a hob.
  • a number of control electronics board units can be increased.
  • a plurality of touch sliders in particular at least four and preferably at least five touch sliders, can be used.
  • a "touch slider” is to be understood in particular as an operating unit which can be operated by sliding a finger of an operator on a preferably appropriately labeled operating surface, with in particular incrementing in at least one operating state by sliding the finger on the operating surface or a manipulated variable, in particular a heating level, is decremented.
  • the user interface can in particular be curved, for example at least partially circular. Preferably, however, the user interface is at least for the most part rectilinear.
  • the user interface is "at least largely straight” should be understood in particular to mean that an edge line of the user interface taken together over a length of at least 60%, in particular of at least 70%, preferably of at least 80% and particularly advantageously of at least 90% of a total length of the edge line is straight.
  • flexibility in the placement of the operating electronics board units can advantageously be increased, with in particular different layouts being able to be implemented thanks to the flexibility.
  • the control electronics board units can, despite the limited installation space, be placed at an ergonomic location on the hob that is intuitively visible to an operator.
  • both control electronics board units each have at least one touch and / or proximity sensor.
  • a “touch and / or proximity sensor” is to be understood in particular as a sensor unit which is provided to allow an element of the sensor unit to be touched and / or an element of the sensor unit to be approached, in particular by a finger of an operator detect.
  • the sensor unit preferably comprises a sensor element made of an electrically conductive material and is provided to detect contact with the sensor element and / or an approach to the sensor element, preferably by measuring a change in an electrical capacitance of the sensor element. In this way, ease of use can advantageously be increased.
  • At least one of the control electronics board units comprises at least a plurality of touch and / or proximity sensors arranged next to one another in at least one row.
  • a “plurality” of touch and / or proximity sensors is to be understood as meaning, in particular, at least two touch and / or proximity sensors.
  • the fact that the touch and / or proximity sensors are arranged “next to one another in at least one row” is to be understood in particular to mean that at least a straight line parallel to the row direction exists which intersects the plurality of touch and / or proximity sensors when the touch and / or proximity sensors are projected perpendicularly onto a main extension plane of at least one of the control electronics board units. In this way, a clear arrangement of the touch and / or proximity sensors can be achieved. Further operating functions can also be opened.
  • At least two of the touch and / or proximity sensors are part of a touch slider in an assembled state.
  • a minimum horizontal distance between the two touch and / or proximity sensors is preferably at most 10 mm, in particular at most 7.5 mm, preferably at most 5 mm and particularly advantageously at most 2.5 mm.
  • at least one of the control electronics board units comprises at least a plurality of touch and / or proximity sensors arranged next to one another in at least one row.
  • a “plurality” of touch and / or proximity sensors is to be understood as meaning, in particular, at least two touch and / or proximity sensors.
  • touch and / or proximity sensors are arranged "in at least one row next to one another" is to be understood in particular as meaning that there is at least one straight line parallel to the direction of the row, which in the case of a perpendicular projection of the touch and / or proximity sensors onto at least one main extension plane one of the control electronics board units intersects the plurality of touch and / or proximity sensors. In this way, a clear arrangement of the touch and / or proximity sensors can be achieved. Further operating functions can also be opened.
  • At least two of the touch and / or proximity sensors are part of a touch slider in an assembled state.
  • a minimum horizontal distance between the two contact and / or proximity sensors is preferably at most 10 mm, in particular at most 7.5 mm, preferably at most 5 mm and particularly advantageously at most 2.5 mm. In this way, ease of use can be increased in a particularly advantageous manner. Furthermore, a particularly advantageous operating functionality can be developed.
  • the control electronics carrier unit is advantageously designed in one piece. "In one piece” is to be understood in particular to be at least cohesively connected, for example by a welding process, an adhesive process, an injection molding process and / or another process that appears sensible to the person skilled in the art, and / or advantageously formed in one piece, such as by manufacturing from one casting and / or by production in a single or multi-component injection molding process and advantageously from a single blank.
  • the control electronics carrier unit preferably consists at least partially, preferably to a large extent, and particularly advantageously completely, from a plastic.
  • control electronics carrier unit consists “largely” of a plastic is to be understood in this context in particular as meaning that the control electronics carrier unit has a Mass fraction of at least 60%, in particular of at least 70%, preferably of at least 80% and particularly advantageously of at least 90% consists of a plastic. This allows a variety of components to be reduced. Furthermore, the manufacture of the control electronics carrier unit can advantageously be simplified.
  • the hob with hob control device has at least one further control electronics board unit, which is arranged in a mounted state in at least one row next to at least one of the two control electronics board units.
  • the fact that the further control electronics board unit is arranged in a mounted state "in at least one row next to" at least one of the two control electronics board units should be understood in particular to mean that there is at least one straight line parallel to the row direction which, when the control electronics board units are projected perpendicularly onto a main extension plane of further control electronics board unit which intersects at least one of the two control electronics board units and the further control electronics board unit.
  • the hob with the hob control device advantageously comprises at least one further control electronics carrier unit, on which the further control electronics board unit is mounted in an assembled state.
  • the further control electronics board unit can also be mounted on the further control electronics carrier unit in any manner that appears sensible to a person skilled in the art, in particular by means of a screw connection and preferably also by means of a latching connection. In this way, a modular design can be implemented, whereby flexibility in product development can advantageously be increased.
  • the hob with the hob control device has at least one control panel which, when viewed from an control area, is arranged at least partially in front of the control electronics board units in a mounted state.
  • a “control panel” should be understood to mean, in particular, a unit which, in an assembled state, forms an outer wall of the domestic appliance and provides at least one user interface on the outer wall.
  • the control panel is preferably at least partially, preferably largely and particularly advantageously completely made of an electrically insulating material, in particular a glass ceramic.
  • control panel consists "largely" of an electrically insulating material
  • control panel is arranged "in front of the control electronics board units" when viewed from an control area should be understood in particular to mean that there is at least one beam for each of the two control electronics board units, which starts from at least one point on the surface of the respective control electronics board unit and before penetrating the control area the control panel cuts. In this way, an advantageous protection for the control electronics board units can be created.
  • the domestic appliance control device has a hob plate with which the control panel is formed in one piece, an advantageously simple design of a hob can be achieved. Furthermore, the cleaning effort can be reduced. In particular, an appealing design can also be created in this way.
  • a total width of all control electronics support units mounted in the hob is preferably at most 90 cm, in particular at most 80 cm and preferably at most 70 cm. In this way, an advantageously low space requirement can be achieved.
  • FIG 1 shows a domestic appliance designed as a hob 44 in a top view.
  • the stove top 44 can be designed as any hob 44, but preferably as an induction hob 46, as in the present case.
  • the hob 44 comprises a domestic appliance control device designed as a hob control device 10.
  • the hob control device 10 comprises a hob plate 42.
  • the hob plate 42 comprises a base plate made of a glass ceramic.
  • the hob plate 42 is arranged horizontally in an installation position of the hob 44 and is provided for setting up cooking utensils (not shown) for heating purposes.
  • heating zones 48a-e are marked on the hob plate 42 in a known manner.
  • the hob 44 has five heating zones 48a-e.
  • the hob plate 42 is designed in one piece with an operating panel 40.
  • touch-sensitive control elements 50 are marked in a known manner, of which only one is designated by way of example.
  • a touch slider 30, 32, 34, 52, 54 is marked on the control panel 40 for each heating zone 48a-e.
  • the touch sliders 30, 32, 34, 52, 54 are each provided for setting a power level for heating the respectively assigned heating zone 48a-e.
  • the touch slider 30, 32, 34, 52, 54 are at least substantially rectangular when viewed perpendicularly onto a main plane of extent of the hob plate 42.
  • a longitudinal direction of the touch slider 30, 32, 34, 52, 54 is formed parallel to a longitudinal direction 56 of the hob plate 42.
  • a touch slider 30 is arranged in a line 18 parallel to line 20.
  • the line 18 is arranged in the main plane of extent of the hob plate 42 above the line 20.
  • FIG. 2 shows the hob 44 with the hob plate dismantled in a top view.
  • a heating unit 58a-e of the hob 44 is assigned to each of the heating zones 48a-e below the hob plate 42.
  • the heating units 58a-e can be any heating units 58a-e that appear sensible to a person skilled in the art, but preferably, as in the present case, induction heating units.
  • Each of the heating units 58a-e has at least one heating element and can in particular also have several, preferably concentrically include arranged heating elements (not shown).
  • the heating units 58a-e are attached to plate-like components 60, 62 of the hob 44 in any manner that appears sensible to a person skilled in the art.
  • the components 60, 62 are designed as shielding elements 64, 66.
  • the shielding elements 64, 66 consist of an at least largely non-magnetic metal, preferably aluminum.
  • the components 60, 62 are fastened to an outer housing 68 of the hob 44 in any manner that appears sensible to a person skilled in the art.
  • the outer housing 68 viewed in the longitudinal direction 56, has an extension of less than 80 cm.
  • Power electronics unit (not shown) of the hob 44 is arranged, which is provided to supply the heating units 58a-e with energy.
  • the power electronics unit comprises at least one inverter for generating a high-frequency alternating current for the heating units 58a-e.
  • control panel 40 is arranged in front of control electronics board units 14, 16, 36, 70 when viewed from the control area 41 (see also FIG Figure 1 ).
  • the control electronics board units 14, 36, 70 are designed to be identical to one another.
  • the control electronics board units 14, 36, 70 are designed to be at least substantially rectangular when viewed perpendicularly on a respective main plane of extent.
  • the control electronics board units 14, 36, 70 each have a plurality of proximity sensors 22a-g arranged next to one another in a row 28, 29, the proximity sensors 22a-g in FIG Figure 2 for the sake of clarity not and in Figure 3 are only shown for the case of the control electronics board unit 14.
  • the proximity sensors 22a-g of the control electronics board unit 14 are part of the touch slider 30.
  • the proximity sensors of the control electronics board unit 36 are part of the touch slider 52.
  • the proximity sensors of the control electronics board unit 70 are part of the touch slider 54 , 36, 70 differently designed.
  • the control electronics board unit 16 When viewed perpendicularly to its main extension plane, the control electronics board unit 16 is at least largely in the form of a rectangle, the rectangle being widened in a central area perpendicular to a long side edge of the rectangle.
  • An extension of the control electronics board unit 16 in the longitudinal direction 56 is significantly larger than and in particular more than twice as large as a corresponding extension of the control electronics board units 14, 36, 70.
  • the control electronics board unit 16 comprises a plurality of proximity sensors 24a-g, 26a-g arranged next to one another in the row 28.
  • the proximity sensors 24a-g are part of the touch slider 32.
  • the proximity sensors 26a-g are part of the touch slider 34.
  • the proximity sensors 22a-g, 24a-g, 26a-g of the control electronics board units 14, 16, 36, 70 each detect in a known manner a touch of the control panel 40 in an area above the respective proximity sensor 22a-g, 24a-g, 26a-g.
  • a control unit not shown
  • a sliding direction of a finger of an operator over the respectively assigned touch slider can be based on a time sequence of activation of the proximity sensors 22a-g, 24a-g, 26a-g 30, 32, 34, 52, 54 can be determined.
  • a sliding speed of the finger can be determined via the respectively assigned touch slider 30, 32, 34, 52, 54. Both the sliding direction and the sliding speed can be taken into account by the respective control unit for triggering a control event, in particular for setting the heating level of the associated heating unit 58a-e.
  • the hob control device 10 comprises control electronics support units 12, 38, 74, which fix the control electronics board units 14, 16, 36, 70 in an assembled state.
  • the control electronics board units 14, 16, 36, 70 can be attached to the control electronics support units 12, 38, 74 in any manner that appears sensible to a person skilled in the art.
  • the control electronics carrier units 12, 38, 74 comprise latching elements 76a-f, which are provided to fix the control electronics board units 14, 16, 36, 70 in each case by means of a latching connection.
  • the latching elements 76a-f are in Figure 2 not and in Figure 3 only shown for the control electronics support unit 12.
  • the control electronics carrier units 12, 38, 74 are each formed in one piece.
  • the control electronics support units 12, 38, 74 each consist of a plastic.
  • the control electronics carrier units 38, 74 are at least substantially rectangular when viewed perpendicularly on a respective main plane of extent. When viewed perpendicularly to its main plane of extent, the operating electronics carrier unit 12 is at least essentially in the form of a trapezoid, with the legs of the trapezoid being stepped are.
  • the control electronics board unit 36 is fixed on the control electronics support unit 38 in a mounted state.
  • the control electronics board unit 70 is fixed on the control electronics support unit 74 in a mounted state.
  • the control electronics board units 14, 16 are mounted together on the control electronics support unit 12 in a mounted state.
  • the control electronics board units 14, 16 are mounted in a mounted state in rows 18, 20 one above the other on the control electronics support unit 12.
  • the operating electronics carrier units 12, 38, 74 are arranged flush with one another in a mounted state on a side facing the operating area 41.
  • the control electronics support unit 12 is arranged between the control electronics support units 38, 74 in a mounted state.
  • the control electronics carrier units 38, 74 are also arranged relative to the control electronics carrier unit 12 in such a way that the proximity sensors 24a-g, 26a-g of the control electronics board units 16, 36, 70 are arranged along the line 28.
  • the control electronics board unit 36 is arranged in a mounted state in the row 20 next to the control electronics board unit 16.
  • more or fewer than five heating zones can also be provided.
  • three fixed heating zones and a variable heating area with heating units arranged in a matrix-like manner can also be provided, for example.
  • only one variable heating area, in particular with heating units arranged like a matrix is provided.
  • alternative configurations of touch sliders are conceivable.
  • touch sliders can have more or fewer than seven proximity sensors.
  • touch sliders with only two proximity sensors are conceivable.
  • Hob control device 58 Heating unit 12th Control electronics support unit 60 Component 14th Control electronics board unit 62 Component 16 Control electronics board unit 64 Shielding element 18th row 66 Shielding element 20th row 68 Outer casing 22nd Proximity sensor 70 Control electronics board unit 24 Proximity sensor 74 Control electronics support unit 26th Proximity sensor 76 Locking element 28 row 29 row 30th Touch slider 32 Touch slider 34 Touch slider 36 Control electronics board unit 38 Control electronics support unit 40 Control panel 41 Operating area 42 Hob plate 44 Hob 46 Induction hob 48 Heating zone 50 Control element 52 Touch slider 54 Touch slider 56 Longitudinal direction

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Induction Heating Cooking Devices (AREA)
  • Electric Stoves And Ranges (AREA)
  • Cookers (AREA)
  • Electric Ovens (AREA)

Claims (8)

  1. Table de cuisson comprenant un dispositif de commande de table de cuisson (10), comprenant au moins une unité de support à électronique de commande (12) et au moins deux unités de platine à électronique de commande (14, 16), caractérisée en ce que chaque unité de platine à électronique de commande présente exactement une platine, dans laquelle les deux unités de platine à électronique de commande (14, 16) présentent respectivement au moins un capteur de contact et/ou un capteur de proximité (22a - g, 24a - g, 26a - g), dans laquelle les unités de platine à électronique de commande (14, 16), dans un état monté, sont montées sur l'unité de support à électronique de commande (12) en lignes (18, 20) superposées.
  2. Table de cuisson selon la revendication 1, caractérisée en ce qu'au moins une des unités de platine à électronique de commande (14, 16) comprend au moins une pluralité de capteurs de contact et/ou de capteurs de proximité (22a - g, 24a - g, 26a - g) disposés les uns à côté des autres sur au moins une ligne (28, 29).
  3. Table de cuisson selon la revendication 2, caractérisée en ce qu'au moins deux des capteurs de contact et/ou des capteurs de proximité (22a - g, 24a - g, 26a - g), dans un état monté, font partie d'un curseur tactile (30, 32, 34).
  4. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que l'unité de support à électronique de commande (12) est réalisée d'une seule pièce.
  5. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée par au moins une unité de platine à électronique de commande supplémentaire (36) laquelle, dans un état monté, est disposée à côté d'au moins une des deux unités de platine à électronique de commande (16) sur au moins une ligne (20).
  6. Table de cuisson selon la revendication 5, caractérisée par au moins une unité de support à électronique de commande supplémentaire (38) sur laquelle l'unité de platine à électronique de commande supplémentaire (36) est montée dans un état monté.
  7. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée par au moins un bandeau de commande (40), lequel, dans un état monté, est disposé au moins en partie devant les unités de platine à électronique de commande (14, 16) en vue depuis une zone de commande (41).
  8. Table de cuisson selon la revendication 7, caractérisée par une plaque (42) de table de cuisson avec laquelle le bandeau de commande (40) est réalisé d'une seule pièce.
EP13159854.2A 2012-03-30 2013-03-19 Plaque de cuisson Active EP2645002B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
ES201230497 2012-03-30

Publications (3)

Publication Number Publication Date
EP2645002A2 EP2645002A2 (fr) 2013-10-02
EP2645002A3 EP2645002A3 (fr) 2016-06-15
EP2645002B1 true EP2645002B1 (fr) 2021-05-12

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EP13159854.2A Active EP2645002B1 (fr) 2012-03-30 2013-03-19 Plaque de cuisson

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EP (1) EP2645002B1 (fr)
ES (1) ES2884933T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016213004A1 (de) * 2016-07-15 2018-01-18 BSH Hausgeräte GmbH Bedienmodul für ein Kochfeld

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JPS5347572U (fr) * 1976-09-28 1978-04-22
EP0687131A2 (fr) * 1994-06-07 1995-12-13 E.G.O. Elektro-Geräte Blanc u. Fischer Système de commande pour appareil de chauffage électrique
JP3311608B2 (ja) * 1996-10-18 2002-08-05 シャープ株式会社 加熱調理器
EP1437919A2 (fr) * 2003-01-11 2004-07-14 Samsung Electronics Co., Ltd. Four à micro-ondes et son unité de commande
KR20060033398A (ko) * 2004-10-15 2006-04-19 엘지전자 주식회사 전기레인지용 컨트롤 어셈블리
EP1903284A1 (fr) * 2006-08-26 2008-03-26 Electrolux Home Products Corporation N.V. Dispositif pour appareil ménager et son utilisation
KR20100010399A (ko) * 2008-07-22 2010-02-01 엘지전자 주식회사 가열조리기기 및 그의 조립방법

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Publication number Priority date Publication date Assignee Title
DE102006030549A1 (de) * 2006-07-03 2008-01-17 BSH Bosch und Siemens Hausgeräte GmbH Halterung für ein Elektronikmodul
EP2192350A1 (fr) * 2008-11-15 2010-06-02 Electrolux Home Products Corporation N.V. Panneau de commande pour contrôler plusieurs fonctions différentes d'un appareil
EP2527746B1 (fr) * 2010-01-21 2020-06-24 LG Electronics Inc. Panneau de commande pour four à micro-ondes

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5347572U (fr) * 1976-09-28 1978-04-22
EP0687131A2 (fr) * 1994-06-07 1995-12-13 E.G.O. Elektro-Geräte Blanc u. Fischer Système de commande pour appareil de chauffage électrique
JP3311608B2 (ja) * 1996-10-18 2002-08-05 シャープ株式会社 加熱調理器
EP1437919A2 (fr) * 2003-01-11 2004-07-14 Samsung Electronics Co., Ltd. Four à micro-ondes et son unité de commande
KR20060033398A (ko) * 2004-10-15 2006-04-19 엘지전자 주식회사 전기레인지용 컨트롤 어셈블리
KR100672575B1 (ko) * 2004-10-15 2007-01-24 엘지전자 주식회사 전기레인지용 컨트롤 어셈블리
EP1903284A1 (fr) * 2006-08-26 2008-03-26 Electrolux Home Products Corporation N.V. Dispositif pour appareil ménager et son utilisation
KR20100010399A (ko) * 2008-07-22 2010-02-01 엘지전자 주식회사 가열조리기기 및 그의 조립방법

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ES2884933T3 (es) 2021-12-13
EP2645002A3 (fr) 2016-06-15

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