EP4025836A1 - Gargerätesystem - Google Patents
GargerätesystemInfo
- Publication number
- EP4025836A1 EP4025836A1 EP20757927.7A EP20757927A EP4025836A1 EP 4025836 A1 EP4025836 A1 EP 4025836A1 EP 20757927 A EP20757927 A EP 20757927A EP 4025836 A1 EP4025836 A1 EP 4025836A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- hob
- advantageously
- oven
- unit
- cooking device
- 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.)
- Pending
Links
- 238000000605 extraction Methods 0.000 claims abstract description 70
- 238000009434 installation Methods 0.000 claims abstract description 38
- 238000010411 cooking Methods 0.000 claims description 92
- 230000006698 induction Effects 0.000 claims description 9
- 238000000034 method Methods 0.000 claims description 7
- 238000007599 discharging Methods 0.000 claims description 5
- 238000013461 design Methods 0.000 abstract description 9
- 238000010438 heat treatment Methods 0.000 description 65
- 230000006870 function Effects 0.000 description 8
- 230000010354 integration Effects 0.000 description 7
- 238000010276 construction Methods 0.000 description 5
- 230000015572 biosynthetic process Effects 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 239000012530 fluid Substances 0.000 description 2
- 239000007789 gas Substances 0.000 description 2
- 239000004519 grease Substances 0.000 description 2
- 230000001939 inductive effect Effects 0.000 description 2
- 239000011159 matrix material Substances 0.000 description 2
- 230000008569 process Effects 0.000 description 2
- 230000001105 regulatory effect Effects 0.000 description 2
- 239000004575 stone Substances 0.000 description 2
- 230000033228 biological regulation Effects 0.000 description 1
- 239000000919 ceramic Substances 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
- 239000011248 coating agent Substances 0.000 description 1
- 238000000576 coating method Methods 0.000 description 1
- 238000004891 communication Methods 0.000 description 1
- 230000001276 controlling effect Effects 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000018109 developmental process Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000005670 electromagnetic radiation Effects 0.000 description 1
- 239000003517 fume Substances 0.000 description 1
- 239000011521 glass Substances 0.000 description 1
- 239000002241 glass-ceramic Substances 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 239000004579 marble Substances 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 239000000758 substrate Substances 0.000 description 1
- 238000009423 ventilation Methods 0.000 description 1
- 239000002023 wood Substances 0.000 description 1
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/20—Removing cooking fumes
- F24C15/2042—Devices for removing cooking fumes structurally associated with a cooking range e.g. downdraft
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/10—Induction heating apparatus, other than furnaces, for specific applications
- H05B6/12—Cooking devices
Definitions
- the invention relates to a cooking device system according to the preamble of claim 1 and a method for assembling a cooking device system according to the preamble of claim 13.
- a cooking device system designed as an induction cooking device system is already known from the prior art, which has a hob and an oven.
- the hob has a hob plate with an extraction recess for the extraction of vapors that arise in an operating state.
- An extractor unit of the hob is arranged below the hob plate, which sucks the vapors through the extractor recess in an operating state.
- the oven is spatially separated from the hob.
- An area below the hob is free from the oven in order to avoid interference between the oven and the extractor unit and since the area below the hob is too small for conventional ovens.
- the object of the invention is in particular, but not limited to, to provide a generic system with improved properties in terms of construction.
- the object is achieved according to the invention by the features of claims 1 and 13, while advantageous configurations and developments of the invention can be found in the subclaims.
- the invention is based on a cooking device system, advantageously an induction cooking device system, with at least one hob, which has at least one hob plate with at least one extraction recess for extracting vapors generated in an operating state, with at least one extraction unit, which is used to extract the vapors through the Extraction recess is provided, and with at least one oven.
- the oven be arranged in an installation position below the hob, namely advantageously in the horizontal direction and / or in the vertical direction, preferably both in the horizontal direction and in the vertical direction.
- Such a configuration can advantageously achieve an optimized construction.
- a compact design can advantageously be achieved in which three functions, for example the hob and the extractor unit and the oven, can advantageously be integrated in one device.
- a large number of functions can advantageously be made available to an operator for operating the hob and oven in a very small space and / or long distances can be saved.
- An embodiment can advantageously be provided which can also be used specifically in small kitchens and / or in kitchens with an exhaust air duct that is difficult to access.
- a “cooking device system” should advantageously be understood to mean a system which has at least one cooking device object and / or at least one cooking device and / or at least one cooking device accessory object, and which, for example, could additionally have at least one kitchen object and / or at least one further structural unit that is advantageously designed differently from a cooking device object and / or from a cooking device and / or from a cooking device accessory object.
- a “cooking device object” should advantageously be understood to mean at least a part, in particular a subassembly, of a cooking device, advantageously an induction cooking device.
- a “cooking appliance accessory object” should advantageously be understood to mean an object which is intended for use and / or for use with a cooking appliance and / or which is designed as an accessory for a cooking appliance.
- a “kitchen object” should advantageously be understood to mean an object which is intended for use and / or for use and / or for arrangement in a kitchen, specifically for example for processing and / or treatment and / or storage of at least one Food.
- At least one cooking device could, for example, be an oven and / or a hob and / or a microwave and / or a grill device.
- the hob advantageously has at least one hob heating unit, which is advantageously provided for heating at least one cookware and / or at least one item to be cooked.
- the hob could have at least two, in particular at least three, advantageously at least four, particularly advantageously at least six, preferably at least eight and particularly preferably a plurality of hob heating units.
- At least some of the hob heating units and advantageously the hob heating units could, for example, be in the form of a classic Be arranged hob, in which individual heating zones are fixed and, for example, by lighting and / or by coating and / or by serigraphy, could be identified.
- At least some of the hob heating units and particularly advantageously the hob heating units could advantageously be arranged in the form of a matrix and provided for flexible formation of heating zones.
- the hob heating unit could, for example, be designed as a heating unit which could be provided, for example, for heating by means of gas and / or for inductive heating and / or for resistive heating.
- a “heating unit” should advantageously be understood to mean a unit which is provided in at least one operating state to supply energy to at least one object to be heated, advantageously for the purpose of heating the object to be heated.
- the object to be heated could, for example, have at least one cookware and / or at least one cooked item and / or be designed as such.
- the heating unit could be designed as a resistance heating unit and, for example, be provided to convert energy into heat and supply this to the object to be heated for the purpose of heating the object to be heated.
- the heating unit could for example be designed as an induction heating unit and, for example, be provided to supply energy in the form of an electromagnetic alternating field to the object to be heated, which could advantageously be configured as cooking utensils, the energy supplied to the object to be heated, for example, in the object to be heated could be converted into heat.
- the hob advantageously has at least one hob control unit, which is advantageously provided at least for controlling and / or regulating the hob heating unit.
- the hob control unit could have at least one arithmetic unit and, for example, in addition to the arithmetic unit, at least one memory unit with a control and / or regulating program stored therein, which could be provided, for example, to be executed by the arithmetic unit.
- a “hob plate” should advantageously be understood to mean a unit which, in at least one operating state, is provided for setting up cooking utensils and / or for placing at least one item to be cooked for the purpose of heating.
- the hob plate could be provided to form part of a hob outer housing, advantageously the hob. In an installed position, the hob plate advantageously forms a part of the hob outer housing facing an operator.
- the hob plate could, for example, at least largely consist of glass and / or glass ceramic and / or neolith and / or Dekton and / or wood and / or marble and / or stone, for example natural stone, and / or laminate and / or made of metal and / or made of plastic and / or made of ceramic.
- the hob could, for example, have at least one hob housing unit, which could be provided, for example, to form part of a hob outer housing, advantageously the hob.
- the hob housing unit could form a part of the hob outer housing facing away from an operator.
- the hob housing unit and the hob plate could, for example, jointly form the hob outer housing, advantageously the hob.
- the extraction recess could, for example, be designed as a recess arranged at least partially in the hob plate and, for example, be surrounded and / or defined and / or delimited by the hob plate.
- the extraction recess could for example over an angular range of at least 90 °, in particular of at least 180 °, advantageously of at least 270 °, particularly advantageously of at least 300 °, preferably of at least 330 ° and particularly preferably of at least 350 ° be surrounded and / or defined and / or limited by the hob plate.
- the extraction recess could, for example, be arranged on the edge of the hob plate.
- the extraction recess is advantageously arranged in the center of the hob plate, specifically advantageously in relation to the width of the hob plate and / or in relation to the depth of the hob plate.
- at least a large part should advantageously be a proportion, in particular a mass proportion and / or a volume proportion and / or a proportion of a number, of at least 70%, in particular of at least 80%, advantageously of at least 90% and preferably of at least 95 % can be understood.
- a “main extension plane” of a structural unit should advantageously be understood to mean a plane which is parallel to a largest side surface of a smallest imaginary cuboid, which just completely surrounds the structural unit, and advantageously runs through the center point of the cuboid.
- An “extension” of an object should advantageously be understood to mean a maximum distance between two points of a perpendicular projection of the object onto a plane.
- a “depth extension” of an object should advantageously be understood to mean an extension of the object in a depth direction.
- the depth direction could, for example, be aligned at least substantially parallel to a main plane of extent of the hob plate. In an installation position, the depth direction could be aligned, for example, from an area of the hob facing an operator into an area of the hob facing away from an operator.
- a “width extension” of an object should advantageously be understood to mean an extension of the object in a width direction.
- the width direction could, for example, be oriented at least substantially parallel to a main plane of extent of the hob plate. In an installation position, the width direction could, for example, be oriented at least substantially perpendicular to a depth direction of the object.
- Essentially parallel should be understood here to mean in particular an alignment of a direction relative to a reference direction, in particular in a plane, the direction having a deviation from the reference direction, in particular a maximum of 8 °, advantageously a maximum of 5 ° and particularly advantageously a maximum of 2 ° .
- the expression "essentially perpendicular” is intended here to advantageously define an alignment of a direction relative to a reference direction, the direction and the reference direction, particularly viewed in a projection plane, enclosing an angle of 90 ° and the angle including a maximum deviation of, in particular, a maximum of 8 ° , advantageously a maximum of 5 ° and particularly advantageously a maximum of 2 °.
- extraction unit should advantageously be understood to mean a unit which is provided to extract and / or filter vapors that arise in at least one operating state, and which is advantageously provided to at least transport these vapors away from a cooking area.
- the extraction unit advantageously has at least one grease filter, which is provided to at least substantially take up grease particles dissolved in the vapors produced in at least one operating state and / or at least substantially remove them from the vapors.
- the extraction unit advantageously has at least one ventilation element, which is provided to provide at least one suction flow for vapors produced in the operating state in at least one operating state and advantageously to at least transport the extracted vapors away from the cooking area.
- the extraction unit could be provided to divert the vapors that arise in the operating state from the cooking area and additionally from a cooking space and, for example, to feed them to at least one exhaust air line.
- the extraction unit could be provided, for example, to transport the vapors produced in the operating state from the cooking area into at least one further sub-area of the cooking space.
- a “cooking area” should advantageously be understood to mean a sub-area of a cooking space in which a cooking process takes place in at least one operating state and in which vapors that arise during the cooking process advantageously escape from heated cooking utensils and which are advantageously at least for the most part above the Hob plate extends.
- a “cooking space” should advantageously be understood to mean a space, particularly advantageously a room, in which a hob comprising the hob device is set up and / or arranged.
- the cooking space could be a kitchen.
- the extraction unit sucks the vapors that arise in the operating state, advantageously through the extraction recess, at least to a large extent, and specifically advantageously from the cooking area.
- the baking oven advantageously has at least one muffle, which advantageously at least partially delimits and / or defines at least one cooking space.
- the muffle could share the cooking space with at least one oven appliance door of the oven in an operating state in which the oven appliance door is could for example be in a closed state, at least substantially limit and / or define.
- the oven advantageously has at least one oven heating unit, which is advantageously provided for heating at least one cookware and / or at least one item to be cooked.
- the oven could have at least two, advantageously at least three, preferably at least four and particularly preferably several oven heating units.
- At least some of the oven heating units and advantageously the oven heating units could, for example, be provided for heating in the form of upper heat and / or lower heat and, for example, be arranged in an installation position above and / or below the muffle.
- some of the oven heating units and advantageously the oven heating unit could be arranged in a rear area, for example the muffle and / or the oven, for example in an area of at least one oven fan unit of the oven.
- the oven heating unit could be designed, for example, as a heating unit which could be provided for inductive heating and / or resistive heating, for example.
- the oven is advantageously closer to a surface than the hob.
- the subsurface could for example be a floor, for example a floor, and / or an installation surface on which at least one housing unit could be installed.
- the hob and the oven are advantageously arranged in an installation position so as to overlap at least in sections.
- a surface spanned by the hob and a surface spanned by the oven in an installation position could amount to at least 50%, for example at least 60%, advantageously at least 70%, particularly advantageously from at least 80%, preferably at least 90% and particularly preferably at least 95% of a surface extension of a smaller one of the surfaces can be arranged in an overlapping manner.
- the cooking appliance system particularly advantageously has at least one appliance unit which advantageously has at least the hob.
- the appliance unit advantageously has at least the oven.
- the device unit advantageously has at least the trigger unit.
- Provided is to be understood as specifically programmed, designed and / or equipped.
- the fact that an object is provided for a specific function should be understood to mean that the object fulfills and / or executes this specific function in at least one application and / or operating state.
- the extraction unit for example at least in an assembled state and / or in an installation position, is arranged between the hob plate and the oven, namely advantageously in the horizontal direction and / or in the vertical direction, preferably both in the horizontal direction and in the vertical direction.
- the extraction unit is advantageously arranged in an installation position so as to overlap at least in sections with the hob and / or with the oven.
- a surface spanned by the extraction unit could, for example, be arranged in an installation position overlapping with a surface spanned by the hob and / or with a surface spanned by the oven, for example in a proportion of at least 50 %, for example of at least 60%, advantageously of at least 70%, particularly advantageously of at least 80%, preferably of at least 90% and particularly preferably of at least 95% of a surface extension of a smaller one of the surfaces.
- a particularly compact design and / or an advantageous construction can advantageously be provided.
- the extraction unit could, for example, be arranged in an installation position below the hob and, for example, be arranged and / or fastened to the hob housing unit.
- the extraction unit could be designed separately from the hob and / or independently of the hob.
- the hob preferably has the extraction unit.
- the extraction unit could for example be integrated in the hob and / or in the hob housing unit. In this way, a protected arrangement of the trigger unit and / or a compact design can advantageously be achieved become.
- extraction paths, via which the extraction unit could suck out the vapors that are generated in the operating state can be kept short, which could enable, for example, low energy expenditure and / or low losses and / or low cleaning expenditure.
- the hob has at least one and advantageously at least the hob housing unit which, together with the hob plate, delimits a hob interior in which the extraction unit is arranged at least for the most part.
- the hob interior could, for example, be designed as a cavity and be provided for mounting hob components.
- At least one hob component could be, for example, the hob heating unit and / or the hob control unit and / or at least one hob operator interface and / or at least one hob electronics.
- a particularly advantageous construction can thereby advantageously be achieved.
- the extractor unit can advantageously be stored securely in the interior of the hob, whereby, for example, a low probability of damage to the extractor unit, for example in the course of transport and / or assembly, can be achieved.
- the hob have a maximum height of 300 mm, in particular a maximum of 290 mm, in particular a maximum of 270 mm, advantageously a maximum of 250 mm, particularly advantageously a maximum of 220 mm and preferably a maximum of 210 mm.
- the hob could have a height extension of at least 150 mm, in particular of at least 170 mm, in particular of at least 190 mm, advantageously of 200 mm, particularly advantageously of at least 205 mm and preferably of at least 210 mm.
- a “height extension” of an object should advantageously be understood to mean an extension of the object in a height direction.
- the height direction could, for example, be oriented at least substantially perpendicular to a main plane of extent of the hob plate and / or to a substrate.
- the height direction could be oriented at least substantially perpendicular to the width direction and / or to the depth direction.
- the cooking device system have at least one housing unit which at least partially surrounds the hob and the oven.
- the housing unit is advantageously designed as a device housing unit which is advantageously common to the hob and the oven and advantageously defines at least partially an outer device housing.
- the hob and / or the oven for example each, could at least partially define an outer device housing.
- the hob could, for example, by means of the hob plate, advantageously by means of a side of the hob plate facing the operator, at least partially define an outer device housing.
- the oven could for example define an outer device housing at least partially by means of the appliance door, advantageously by means of a side of the appliance door facing the operator.
- the phrase that the housing unit surrounds the hob and the oven "at least partially", that the housing unit each surrounds at least a part of the hob and at least a part of the oven and, for example, at least a further part of the hob, for example the hob plate, and / or of the oven, for example the appliance door, could be free from an environment through the housing unit.
- a high level of stability and / or an at least partially protected and / or secure arrangement of the hob and / or oven can advantageously be achieved.
- a simple transport of the hob and oven can advantageously be made possible.
- the housing unit could, for example, be provided for installation, for example in at least one piece of furniture, which could be part of the cooking device system and which could for example be arranged in the cooking space and, for example, form a built-in device together with the oven and the hob.
- the housing unit is preferably intended to be set up on a floor.
- the housing unit could, for example, be designed as an outer housing unit, advantageously the device unit, and advantageously at least partially form an outer housing of the device unit.
- the housing unit could form the outer housing of the appliance unit together with the oven and the hob.
- the device unit could, for example, be designed as a built-in device.
- the device unit could advantageously be designed as a stand-alone device.
- the housing unit advantageously has at least one support unit which is provided for support on the floor and which has at least four support elements for support on the floor, for example.
- the support elements could be designed for example as feet. In this way, a high degree of flexibility can advantageously be achieved, specifically for example with regard to positioning the housing unit in the cooking space.
- the housing unit have a maximum height of 1000 mm, in particular a maximum of 980 mm, in particular a maximum of 960 mm, advantageously a maximum of 940 mm, particularly advantageously a maximum of 920 mm, preferably a maximum of 910 mm and particularly preferably a maximum of 900 mm.
- the housing unit could have a height extension of at least 550 mm, in particular of at least 600 mm, in particular of at least 650 mm, advantageously of at least 700 mm, particularly advantageously of at least 750 mm, preferably of at least 780 mm and particularly preferably of at least 800 mm.
- a compact design and / or a small space requirement can advantageously be achieved, whereby an arrangement can advantageously be made possible even in small rooms and / or rooms.
- the oven have a height extension of a maximum of 550 mm, in particular of a maximum of 525 mm, in particular of a maximum of 500 mm, advantageously of a maximum of 480 mm, particularly advantageous of a maximum of 470 mm, preferably of a maximum of 460 mm and particularly preferably of a maximum of 455 mm mm.
- the oven could have a height extension of at least 350 mm, in particular of at least 360 mm, in particular of at least 380 mm, advantageously of at least 400 mm, particularly advantageously of at least 420 mm, preferably of at least 440 mm and particularly preferably of at least 445 mm.
- an optimized compactness can advantageously be provided.
- an optimal compromise between compactness and sufficient oven size could be achieved, in which advantageously size-related restrictions could be avoided.
- the oven preferably has at least one oven operator interface.
- the oven operator interface could be arranged in an installation position below the oven, for example with respect to a height direction.
- the oven operator interface could for example be integrated at least to a large extent in at least one oven housing unit of the oven.
- the oven preferably has at least one oven operator interface which, in a viewing direction that is aligned parallel to a main extension plane of the hob plate, is arranged so as to overlap at least in sections with the hob.
- the oven advantageously has at least one oven control unit which is provided for at least one control and / or regulation of at least one and advantageously at least the oven heating unit.
- the oven operator interface is advantageously provided for communication, for example the oven control unit, with an operator.
- the oven operator interface could be provided for inputting and / or outputting at least one oven operating parameter.
- the oven operating parameter could for example include at least one heating level and / or at least one heating power and / or at least one type of cooking and / or at least one cooking program.
- the phrase that the oven operator interface is arranged in a viewing direction that is aligned parallel to a main extension plane of the hob plate, overlapping "at least in sections" with the hob, should advantageously be understood to mean that the oven operator interface has at least one section which overlaps in the viewing direction is arranged with the hob, and could, for example, have at least one further section, which in the viewing direction could be arranged free of an overlap with the hob.
- the oven operator interface is advantageously arranged above the muffle with respect to a height direction.
- simple operability of the oven can advantageously be provided, in which the oven operator interface can be arranged relatively high up in relation to the height direction and thus an operator can advantageously be saved from having to stoop. It can advantageously be made possible for an operator to keep the oven operator interface constantly in view and thus to achieve simple operation of the oven, for example.
- the oven has at least one muffle and at least one oven electronics, which in an installation position is advantageously arranged below the muffle with respect to a height direction.
- the oven electronics could be provided, for example, to control and / or regulate at least one oven function and / or particularly advantageously at least one oven main function.
- the oven control unit is advantageously part of the oven electronics.
- the Oven electronics could, for example, have at least one drive motor, which could be provided, for example, to drive at least one oven fan unit.
- the oven electronics could, for example, be arranged at a distance from the hob in an installation position.
- the muffle could be arranged with respect to the vertical direction in an installation position between the hob and the oven electronics.
- the oven electronics could, for example, alternatively or additionally, for example, be arranged in the vicinity of the oven operator interface and advantageously on a side of the oven operator interface facing away from the operator and / or on a side of the oven operator interface facing the hob.
- the oven electronics could be arranged so as to overlap with the hob at least in sections. This advantageously enables a secure and / or protected arrangement of the oven electronics, specifically advantageously in an otherwise unused area.
- optimal shielding of the oven electronics from electromagnetic radiation which could be provided by at least one induction heating unit of the hob, could be achieved.
- the oven is in a higher position, simple operation of the oven can advantageously be achieved, for example while avoiding the operator having to bend over unnecessarily.
- the hob and the oven can be arranged close to one another, for example with respect to a vertical direction, whereby a compact design can advantageously be achieved, which could look compact for an operator, for example.
- sufficient space can advantageously be created above the muffle for the hob and / or for the extractor unit, for example even if the oven is arranged high enough.
- the hob plate could, for example, when viewed perpendicularly on a main plane of extent of the hob plate, a width of a maximum of 110 cm, in particular a maximum of 105 cm, in particular a maximum of 100 cm, advantageously a maximum of 95 cm, particularly advantageously a maximum of 90 cm, preferably a maximum of 85 cm and particularly preferably of a maximum of 80 cm.
- the hob plate When viewed perpendicularly on a main plane of extension of the hob plate, the hob plate preferably has a width of a maximum of 75 cm, in particular a maximum of 72 cm, in particular a maximum of 70 cm, advantageously a maximum of 67 cm, particularly advantageously a maximum of 65 cm, preferably a maximum of 62 cm and particularly preferably of a maximum of 60 cm.
- the hob plate could, for example, when viewed perpendicularly on a main plane of extent of the hob plate, a width of at least 30 cm, in particular of at least 35 cm, in particular of at least 40 cm, advantageously of at least 45 cm, particularly advantageously of at least 50 cm, preferably of at least 55 cm and particularly preferably of at least 60 cm.
- the hob plate could, for example, have a maximum depth of 75 cm, in particular a maximum of 72 cm, in particular a maximum of 70 cm, advantageously a maximum of 67 cm, particularly advantageously a maximum of 65 cm, preferably a maximum of 62 cm and particularly preferably of a maximum of 60 cm.
- the hob plate could, for example, when viewed perpendicularly on a main plane of extent of the hob plate, a depth of at least 30 cm, in particular of at least 35 cm, in particular of at least 40 cm, advantageously of at least 45 cm, particularly advantageously of at least 50 cm, preferably of at least 55 cm and particularly preferably of at least 60 cm.
- a high level of operating convenience can advantageously be provided even in the case of a hob with small dimensions, for example by means of the extraction unit arranged below the hob, whereby, for example, a high level of customer satisfaction could be achieved for an operator.
- the cooking device system has at least one exhaust air duct which is fluidly arranged behind the extraction unit and is provided for discharging the vapors.
- the exhaust air duct could, for example, be provided for a connection to at least one exhaust air line and particularly advantageously to variously configured exhaust air lines, whereby a high degree of flexibility could advantageously be achieved during assembly.
- the exhaust air line could, for example, be a household exhaust air line.
- the household exhaust air line could be provided, for example, to divert and / or remove the vapors from the cooking space.
- the exhaust air duct could be a fluid-technical one Establish a connection between the fume cupboard and the exhaust duct.
- the exhaust air duct could, for example, have at least one exhaust air interface, which could be provided for connection to at least one corresponding exhaust air interface of the exhaust air line.
- the exhaust air duct could be integrated at least partially in the housing unit and advantageously at least partially in the device unit.
- the exhaust air duct could, for example, alternatively or advantageously additionally, for example at least partially be arranged outside the housing unit and advantageously connect at least a portion of the exhaust air duct, which could be arranged at least partially inside the housing unit, to the exhaust air line by fluid technology.
- a connection option to an exhaust air line can advantageously be integrated.
- a simple assembly and / or commissioning can advantageously be achieved, to be precise, inter alia, by a simple connection to an exhaust air line.
- the appliance unit could be arranged in an installation position, for example in the form of a kitchen island, in which a conventional extractor unit could advantageously be dispensed with, advantageously due to the extractor unit integrated in the appliance unit and advantageously in the hob.
- a conventional extractor unit could advantageously be dispensed with, advantageously due to the extractor unit integrated in the appliance unit and advantageously in the hob.
- the device unit could even be installed in small kitchens and / or in small attic apartments in which, for example, any available space is used got to.
- a particularly optimized construction can advantageously be achieved by a method for assembling a cooking device system according to the invention with at least one hob, which has at least one hob plate with at least one extraction recess for extracting vapors that arise in an operating state, with at least one extraction unit, which is used for extraction of the vapors is provided through the exhaust recess, and with at least one oven, the oven being arranged below the hob.
- the cooking appliance system should not be restricted to the application and embodiment described above.
- the cooking device system can be a Fulfillment of a mode of operation described herein have a number of individual elements, components and units that differs from a number mentioned herein.
- FIG. 1 shows a cooking device system with a hob and with an extraction unit in a schematic plan view
- FIG. 2 shows the cooking device system with the hob, with an oven and with a housing unit in a schematic perspective illustration
- FIG. 3 shows the cooking appliance system from FIG. 2, in which the housing unit has not been shown
- Cooking device system is shown in a schematic representation
- FIG. 8 shows an alternative cooking device system with a hob and with an oven in a schematic perspective illustration, with a display of a housing unit being dispensed with.
- FIG 1 shows an example of a cooking device system 10a, which is advantageously designed as an induction cooking device system.
- the cooking appliance system 10a for example, alternatively or additionally, be designed as a gas cooking device system and / or as a resistance heating device system.
- the cooking appliance system 10a advantageously has at least one and, for example, exactly one hob 12a.
- the hob 12a is advantageously provided for heating cookware that has been set up, for example (not shown).
- the hob 12a has, for example, at least one hob heating unit (not shown).
- the hob heating unit is advantageously provided for heating cookware and / or food.
- the hob 12a could have at least two, in particular at least three, advantageously at least four, particularly advantageously at least six, preferably at least eight and particularly preferably a plurality of hob heating units.
- the hob 12a has, for example, a multiplicity of hob heating units which, for example, could be arranged in the form of a matrix and provided for flexible formation of heating zones. In the following, only one of the hob heating units is described as an example.
- the hob 12a advantageously has at least one and, for example, exactly one hob plate 14a.
- the hob plate 14a is advantageously provided for setting up cooking utensils and / or for placing items to be cooked.
- the hob plate 14a forms, for example, part of a hob outer housing, specifically, for example, a hob outer housing of the hob 12a.
- the hob heating unit is advantageously arranged in an installation position below the hob plate 14a.
- the hob heating unit is advantageously provided to heat cookware placed on the hob plate 14a above the hob heating unit.
- the hob heating unit could, for example, be designed as an induction heating unit.
- the hob plate 14a advantageously has at least one, for example and precisely one, extraction recess 16a.
- the trigger recess 16a is at least in the present embodiment Arranged essentially in the middle.
- the extraction recess 16a could be arranged at least essentially centrally with respect to a depth direction 50a.
- the extraction recess 16a extends with respect to the depth direction 50a over a large part of a depth extension 46a of the hob plate 14a.
- the hob plate 14a could, for example, have a width extension 44a of at least substantially 60 cm when viewed perpendicularly onto a main plane of extent of the hob plate 14a.
- the hob plate 14a When viewed perpendicularly onto a main plane of extent of the hob plate 14a, the hob plate 14a could for example have a depth 46a of at least substantially 60 cm.
- a cooktop panel 14a with such dimensions could, for example, achieve a compact design.
- the hob 12a could advantageously have at least one and, for example, exactly one operator interface 52a, which could be provided, for example, for inputting and / or selecting operating parameters such as a heating power and / or a heating power density and / or a heating zone.
- the operator interface 52a could for example be provided for outputting a value of an operating parameter to an operator.
- the hob 12a advantageously has at least one and, for example, exactly one hob control unit 54a.
- the hob control unit 54a is provided, for example, to carry out actions and / or to change settings as a function of operating parameters entered by means of the operator interface 52a.
- the hob control unit 54a could, for example, control and / or regulate an energy supply to the hob heating unit in an operating state.
- the extraction recess 16a is advantageously provided for suctioning off vapors that arise in an operating state.
- the vapors produced in the operating state advantageously pass through the extraction recess 16a and thus get into a hob interior 24a, for example.
- the cooking appliance system 10a advantageously has at least one and, for example, exactly one extraction unit 18a.
- the extraction unit 18a is provided for sucking off the vapors through the extraction recess 16a.
- the extraction unit 18a sucks off vapors that arise in the operating state through the extraction recess 16a.
- the extractor unit 18a could be arranged so as to overlap with the extractor recess 16a at least in sections.
- the take-off unit 18a advantageously has at least one and, for example, precisely one fan wheel 60a.
- the fan wheel 60a could for example be arranged at least for the most part below the hob plate 14a.
- the extraction unit 18a at least partially sucks vapors that arise in an operating state from a cooking area, for example by means of the fan wheel 60a.
- the cooking area could, for example, be an area which, in an installed position, could be located above the hob plate 14a.
- the hob 12a could advantageously have at least one and, for example, exactly one cover unit 62a (see FIG. 1).
- the cover unit 62a In an installation position, the cover unit 62a could for example be arranged above the extraction recess 16a.
- the cover unit 62a When viewed perpendicularly onto a main plane of extent of the hob plate 14a, the cover unit 62a could cover the extractor recess 16a, for example, at least in sections and advantageously be arranged at least largely overlapping with the extractor unit 18a.
- the cover unit 62a could, for example, have at least one extension which could be at least as large as an extension of the extraction recess 16a along the depth direction 50a and / or along the width direction 48a.
- the extraction unit 18a could advantageously have at least one and, for example, exactly one air guiding unit 64a.
- the air guiding unit 64a could, for example, in an operating state, keep vapors that arise in the operating state away from at least one hob electronics of the hob 12a.
- the air guiding unit 64a could, for example, the fan wheel 60a with respect to a center point and / or the center of gravity of the fan wheel 60a viewed in a plane which, for example, could be aligned parallel to a main extension plane of the hob plate 14a, essentially completely surrounded.
- the cooking appliance system 10a advantageously has at least one and, for example, exactly one oven 20a (see FIGS. 2 and 3).
- the oven 20a is provided for heating food and / or cooking utensils (not shown).
- the oven 20a could, for example, have at least one oven heating unit (not shown).
- the oven heating unit is advantageously provided for heating cookware and / or food.
- the oven 20a could have at least two, advantageously at least three, preferably at least four and particularly preferably several oven heating units. In the following, only an oven heating unit is described as an example.
- the baking oven 20a advantageously has at least one and, for example, exactly one muffle 40a.
- the muffle 40a is advantageously provided for introducing food and / or cooking utensils.
- the oven 20a advantageously has at least one and, for example, exactly one oven door 74a. In an operating state in which the oven door 74a is advantageously in a closed state, the oven door 74a advantageously closes the muffle 40a.
- the oven 20a advantageously has at least one and, for example, exactly one oven electronics 42a.
- the oven electronics 42a are advantageously arranged in an installation position below the muffle 40a.
- the oven electronics 42a are advantageously arranged in an installation position on a side of the muffle 40a facing away from the hob 12a and / or the extraction unit 18a.
- the oven 20a is advantageously arranged below the hob plate 14a and particularly advantageously below the hob 12a.
- the oven 20a is advantageously arranged in an installation position below the extraction unit 18a.
- the extraction unit 18a is advantageously arranged below the hob plate 14a.
- the extractor unit 18a is particularly advantageously arranged in an installation position between the hob plate 14a and the oven 20a.
- the extraction unit 18a is advantageously part of the hob 12a.
- the hob 12a advantageously has the extraction unit 18a.
- the hob 12a advantageously has at least one hob housing unit 22a (see FIG. 3).
- the cooktop housing unit 22a forms, for example, part of the cooktop outer housing, specifically for example the cooktop outer housing of the cooktop 12a.
- the cooktop housing unit 22a advantageously forms the cooktop outer housing together with the cooktop plate 14a, specifically for example the cooktop outer housing of the cooktop 12a.
- the hob housing unit 22a advantageously delimits the hob interior 24a together with the hob plate 14a.
- the extraction unit 18a is advantageously arranged and / or integrated at least for the most part in the hob interior 24a. In one installation position, the extraction unit 18a is arranged, for example, at least for the most part between a housing base of the hob housing unit 22a and the hob plate 14a.
- the hob 12a advantageously from an upper side of the hob plate 14a to a bottom of the hob housing unit 22a, advantageously has a height extension 26a of at least substantially 210 mm.
- the hob 12a could be designed as a compact hob, in particular due to the small height extension 26a despite the integration of the extractor unit 18a.
- the oven 20a advantageously has a height extension 34a of at least substantially 450 mm.
- the oven 20a could be designed as a compact oven, in particular due to the small height extension 34a.
- the cooking appliance system 10a advantageously has at least one and, for example, exactly one appliance unit 56a (see FIGS. 4 to 6).
- the appliance unit 56a has, for example, the hob 12a and, for example, the oven 20a.
- the Appliance unit 56a has the extraction unit 18a, which is integrated, for example, in the hob 12a.
- the cooking appliance system 10a advantageously has at least one and, for example, exactly one housing unit 28a (see FIG. 2).
- the housing unit 28a is part of the device unit 56a, for example.
- the device unit 56a has the housing unit 28a.
- the housing unit 28a at least partially surrounds the hob 12a and the oven 20a.
- the housing unit 28a is advantageously intended to be set up on a floor 30a. In an operating state, the housing unit 28a is advantageously set up on the floor 30a.
- the device unit 56a is advantageously designed as a floor-standing device.
- the housing unit 28a advantageously has a height extension 32a of at least substantially 850 mm.
- the device unit 56a, the outer housing of which forms the housing unit 28a for example, has, for example, the same height extension 32a, 58a as the housing unit 28a.
- a height extension 32a of the housing unit 28a and a height extension 58a of the device unit 56a could be at least substantially identical and advantageously identical.
- the cooking appliance system 10a advantageously has at least one and, for example, precisely one exhaust air duct 66a (see FIG. 1).
- the exhaust air duct 66a could, for example, be at least partially part of the device unit 56a.
- the device unit 56 could for example have the exhaust air duct 66a at least partially.
- the exhaust air duct 66a is advantageously arranged in terms of fluid technology behind the extraction unit 18a.
- the exhaust air duct 66a is advantageously arranged in an installation position in an area of the hob 12a facing away from an operator and / or in a rear area of the hob 12a with respect to the depth direction 50a.
- the exhaust air duct 66a is advantageously provided for discharging the vapors that arise in the operating state.
- the air guiding unit 64a could, for example, divert vapors that arise in the operating state into an outside area and / or advantageously feed them to at least one exhaust air duct 66a.
- the outer area is a rear area of the hob 12a and / or advantageously of the appliance unit 56a in an installation position.
- the air guide unit 64a and the exhaust air duct 66a could be fluidically connected to one another, for example.
- the exhaust air duct 66a could for example be provided for a connection to at least one exhaust air line 68a and particularly advantageously to variously configured exhaust air lines 68a (cf. FIGS. 4 to 6), whereby a high degree of flexibility could advantageously be achieved during assembly.
- the exhaust air line 68a is advantageously a household exhaust air line.
- the exhaust air line 68a could be provided, for example, for discharging and / or for discharging vapors that arise in the operating state from the cooking space.
- the exhaust air duct 66a advantageously establishes a fluid-technical connection between the exhaust unit 18a, advantageously between the air guiding unit 64a of the exhaust unit 18a, and the exhaust air line 68a.
- the exhaust air duct 66a could for example be arranged at least partially outside the housing unit 28a.
- the exhaust air line 68a could be at least partially integrated and / or arranged in at least one wall 70a, advantageously in at least one house wall (see FIG. 4).
- the exhaust air channel 66a could for example be provided for a connection to the exhaust air line 68a integrated at least partially in the wall 70a.
- the exhaust air line 68a could be at least partially integrated and / or arranged in the floor 30a, which could advantageously be designed as a floor (cf. FIG. 5).
- the exhaust air line 68a for example the at least partially integrated into the floor 30a, could for example be at least partially integrated into at least one piece of furniture (not shown).
- the exhaust air duct 66a could for example be provided for a connection to the exhaust air line 68a which is at least partially integrated in the floor 30a and / or in the piece of furniture.
- the exhaust air line 68a could be arranged in an installation position at least partially above the floor 30a, which could advantageously be designed as a floor, and for example run at least partially below the appliance unit 56a and / or the piece of furniture (see FIG. 6).
- the exhaust air duct 66a could for example be provided for a connection to the exhaust air line 68a arranged at least partially above the base 30a and / or below the device unit 56a.
- FIGS. 4 to 6 embodiments in the case of a device unit 56a designed as a floor-standing device were described and / or shown by way of example. Analogous to this, for example, configurations in the case of a device unit 56a configured as a built-in device could be designed.
- the housing unit 28a of the appliance unit 56a could, for example, be surrounded by the piece of furniture.
- the oven 20a is arranged below the hob 12a (cf. FIG. 7).
- the hob 12a could be integrated in the housing unit 28a.
- the integration step 78a could, for example, be arranged and / or take place before the arrangement step 76a.
- the oven 20a and / or the hob 12a could be integrated in the housing unit 28a.
- the further integration step 80a could for example be arranged and / or take place after the arrangement step 76a.
- the appliance unit 56a could be positioned in the cooking space, specifically for example in the vicinity of the exhaust air line 68a.
- the exhaust air duct 66a could, for example in at least one connecting step 84a, be connected to the exhaust air line 68a and / or connected to the exhaust air line 68a.
- a fluid-technical connection could be established between the exhaust unit 18a and the exhaust air line 68a by means of the exhaust air duct 66a.
- FIG. Another embodiment of the invention is shown in FIG. The following descriptions are essentially limited to the differences between the exemplary embodiments, reference being made to the description of the exemplary embodiment in FIGS. 1 to 7 with regard to components, features and functions that remain the same. To distinguish the exemplary embodiments, the letter a in the reference symbols of the exemplary embodiment in FIGS.
- FIG. 8 shows an example of an alternative cooking device system 10b, which differs from the cooking device system 10a shown in FIGS. 1 to 7, for example, by an arrangement of oven electronics 42b and / or oven operator interface 36b.
- the cooking appliance system 10b advantageously has at least one and, for example, exactly one oven 20b.
- the oven 20b advantageously has a muffle 40b and an oven door 74b, which advantageously closes the muffle 40b in an operating state.
- the oven 20b advantageously has at least one and, for example, exactly one oven operator interface 36b.
- the oven operator interface 36b is advantageously provided for inputting and / or outputting at least one oven operating parameter.
- the oven operator interface 36b is advantageously arranged above the muffle 40b.
- the oven operator interface 36b is advantageously arranged on a side of the muffle 40b facing a hob 12b and / or a hob plate 14b of the hob 12b.
- the oven operator interface 36b is advantageously arranged so as to overlap with the hob 12b at least in sections.
- the viewing direction 38b could, for example, be at least substantially parallel to be aligned with a depth direction 50b.
- the viewing direction 38b could be aligned in an installation position from an area of the hob 12b and / or the oven 20b facing an operator into an area of the hob 12b and / or the oven 20b facing away from an operator.
- oven electronics 42b of oven 20b could be arranged in the vicinity of oven operator interface 36b and advantageously on a side of oven operator interface 36b facing away from an operator and / or on a side of oven operator interface 36b facing hob 12b.
- the oven electronics 42b could be arranged at least partially overlapping with the hob 12b.
- the oven electronics 42b could be arranged in an installation position, for example on a side of the muffle 40b facing away from the hob 12b and / or below the muffle 40b, as described, for example, in the exemplary embodiment shown in FIGS. 1 to 7, advantageously regardless of an arrangement of the oven operator interface 36b.
- Width extension 46 Depth extension 48 Width direction 50 Depth direction 52 User interface 54 Hob control unit 56 Device unit 58 Height extension 60 Fan wheel 62 Cover unit Air control unit
Landscapes
- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Electric Stoves And Ranges (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP19382769 | 2019-09-06 | ||
| PCT/EP2020/073698 WO2021043626A1 (de) | 2019-09-06 | 2020-08-25 | Gargerätesystem |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4025836A1 true EP4025836A1 (de) | 2022-07-13 |
Family
ID=67902470
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP20757927.7A Pending EP4025836A1 (de) | 2019-09-06 | 2020-08-25 | Gargerätesystem |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US20220290872A1 (de) |
| EP (1) | EP4025836A1 (de) |
| WO (1) | WO2021043626A1 (de) |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR102908229B1 (ko) * | 2021-05-28 | 2026-01-05 | 엘지전자 주식회사 | 전기 레인지 |
| DE102022200973A1 (de) * | 2022-01-31 | 2023-08-03 | BORA - Vertriebs GmbH & Co KG | Induktionsspule zum Erhitzen von Gargeschirr, Induktionskochfeld und Kochfeldsystem |
| IT202200008951A1 (it) | 2022-05-03 | 2023-11-03 | Bertazzoni Spa | Apparecchio di cottura ad uso domestico del tipo tutto in uno. |
Family Cites Families (18)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2674991A (en) * | 1951-02-08 | 1954-04-13 | Philco Corp | Ventilating means for cooking ranges |
| US2908267A (en) * | 1954-05-11 | 1959-10-13 | Selas Corp Of America | Food cooking apparatus |
| US3587555A (en) * | 1969-05-13 | 1971-06-28 | Jenn Air Corp | Ventilated range |
| US3756217A (en) * | 1971-11-23 | 1973-09-04 | Jenn Air Corp | Damper for ventilating air flow control for indoor open-air cooking device |
| US3926171A (en) * | 1972-03-16 | 1975-12-16 | Jenn Air Corp | Base for a ventilated cooking range |
| US4428357A (en) * | 1981-10-13 | 1984-01-31 | Jenn-Air Corporation | Self-ventilated range and method of installing |
| JPS58178988A (ja) * | 1982-04-14 | 1983-10-20 | 松下電器産業株式会社 | 調理器ユニツト |
| WO1983003736A1 (fr) * | 1982-04-14 | 1983-10-27 | Hirai, Yukio | Dispositif de cuisson |
| US4527542A (en) * | 1984-06-18 | 1985-07-09 | The Maytag Company | Oven ventilating system |
| US5000160A (en) * | 1989-12-07 | 1991-03-19 | Maytag Corporation | Proximity ventilated cooking system |
| US6455818B1 (en) * | 2001-08-23 | 2002-09-24 | Maytag Corporation | Downdraft filter assembly for a cooking appliance |
| US20060289489A1 (en) * | 2005-05-09 | 2006-12-28 | Dongyu Wang | Induction cooktop with remote power electronics |
| US8872077B2 (en) * | 2005-08-01 | 2014-10-28 | Western Industries, Inc. | Low profile induction cook top with heat management system |
| US20140150771A1 (en) * | 2012-12-05 | 2014-06-05 | Bsh Home Appliances Corporation | Cooktop ventilation and cooling system |
| US9746188B2 (en) * | 2013-03-27 | 2017-08-29 | Electrolux Home Products, Inc. | Recirculating downdraft system for a cooking appliance |
| DE102016205911A1 (de) * | 2016-04-08 | 2017-10-12 | Wilhelm Bruckbauer | Steuereinrichtung für ein modulares Kochfeldsystem |
| WO2018036799A1 (de) * | 2016-08-26 | 2018-03-01 | BSH Hausgeräte GmbH | Dunstabzugsvorrichtung und kombinationsgerät |
| CN106724911A (zh) * | 2017-01-20 | 2017-05-31 | 华帝股份有限公司 | 一种灶具电烤箱一体机 |
-
2020
- 2020-08-25 WO PCT/EP2020/073698 patent/WO2021043626A1/de not_active Ceased
- 2020-08-25 US US17/635,393 patent/US20220290872A1/en active Pending
- 2020-08-25 EP EP20757927.7A patent/EP4025836A1/de active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| WO2021043626A1 (de) | 2021-03-11 |
| US20220290872A1 (en) | 2022-09-15 |
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