[0001] The present invention relates to a cooking hob, in particular an induction cooking
hob, including a housing.
[0002] Cooking hobs and specifically induction cooking hobs require a cooling arrangement
for cooling temperature sensitive electronic components arranged below the cooking
hob plate within a space formed by the cooking hob plate and a housing attached to
the cooking hob plate.
[0003] DE 10 2018 216 465 A1 discloses a cooking hob having a specific air suction arrangement. The cooking hob
has a cooking hob plate, a housing which is arranged below the cooking hob plate,
delimiting an accommodation space for functional units of the cooking hob. Within
the accommodation space there is an air suction arrangement provided. The fan of the
air suction arrangement is provided to generate an air flow flowing towards functional
units within the accommodation space, wherein the air flow can leave the accommodation
space via air outlets arranged in side walls of the cooking hob housing.
[0004] The object of the present invention is to provide a cooking hob with a housing defining
a space for the accommodation of functional units within the space, wherein the cooling
capabilities with respect to cooling the functional units shall be improved.
[0005] This object is solved by a cooking hob, in particular an induction cooking hob, including
a housing and a cooking hob plate attached to the housing, wherein the housing and
the cooking hob plate enclose at least one interior space in which electric and/or
electronic components of the cooking hob are arrangeable or arranged, wherein the
housing comprises at least one or two or more bottom walls and at least one or two
or more side walls, wherein at least one or two or more side walls are housing side
walls that form the outermost side walls of the housing and that extend upwards from
at least one or two or more of the bottom walls and which are provided to be attached
to the cooking hob plate, and wherein at least one or two or more side walls are interior
side walls being distanced from the outermost side walls that extend upwards from
at least one or two or more of the bottom walls towards another of the at least one
or two or more bottom walls, wherein the interior side walls are positioned inside
from the at least one or two or more housing side walls, wherein at least one of the
interior side walls comprises at least one or two or a plurality of air outlets.
[0006] It shall be understood that side walls are those walls of the housing forming the
sides of the housing. In particular, it shall be understood that the side walls can
be the lateral side walls, but also can be the rear side wall or the front side wall.
It is particular advantageous, if the outermost side walls are the lateral outermost
side walls of the housing and/or if the interior side walls are lateral interior side
walls, seen from a user's perspective who stands in front of the cooking hob. It shall
further be understood that the interior side walls are side walls that are arranged
closer to a center of the housing or a center of a space defined by the housing than
the outermost side wall(s). Interior side walls are not mandatorily side walls being
arranged within the interior of the housing. At least, the interior side walls can
partially form a side wall inside of the interior space defined by the housing, but
in any case also define a wall separating the interior space from the exterior of
the housing. The cooking hob according to the invention enables two mounting planes
arranged above one another, wherein the lower mounting plane can be made subject to
a dedicated cooling air flow for which the air outlets in the interior side wall are
provided.
[0007] According to an advantageous embodiment the air outlets are formed by a plurality
of, in particular rectangular or rounded or elliptical or circular, openings separated
by lattice bars or grid bars.
[0008] It has been found that a plurality of air outlets formed to an interior side wall
improves the cooling within the housing, since the amount of air able to pass through
the air outlets is increased. The lattice bars or the grid bars may be provided as
vertical bars or, alternatively, may be provided as cross-wise arranged bars.
[0009] In a advantageous embodiment, the openings are configured such that an object having
a diameter of at least 18mm, in particular of at least 14mm, preferably of at least
12mm, more preferably of at least 10mm, cannot pass through the openings, in particular
wherein the lattice bars have a distance to each other of less than 18mm, in particular
of less than 14mm, preferably of less than 12mm, more preferably of less than 10mm
or less than 4mm or ca. 3mm.
[0010] By dimensioning the openings accordingly, it is ensured that objects, e.g. cutlery,
are prevented from entering the opening and cause electric shock to the person holding
the object. Also a user's finger is, thus, not allowed to pass through the air outlets
and is prevented from touching live parts and, thus, from electric shock.
[0011] According to a further advantageous embodiment, at least one of the housing side
walls comprises at least one or two or a plurality of air outlets (24).
[0012] Thus, two mounting planes arranged above one another are enabled be made subject
to a cooling air flow. In particular, it is enabled that the two mounting planes become
flow-coupled and dedicated to two separate cooling air flows having separate air outlets.
[0013] Further advantageously, the housing has a front side configured to be arranged in
front of a user of the cooking hob, wherein a housing side wall on the left hand side
of the housing and an interior side wall on the left hand side of the housing comprise
the air outlets or
wherein a housing side wall on the right hand side of the housing and an interior
side wall on the right hand side of the housing comprise the air outlets.
[0014] Thus, it is ensured that the heated cooling air leaves the cooking hob housing in
a region where an adjacent kitchen cabinet is disposed. Consequently, no heated cooling
air leaves the cooking hob directed towards a user's position or towards a region
behind the rear of the cooking hob. Thus, providing the kitchen cabinet with the necessary
outlets for forwarding the cooling air is simplified. Additionally, it is possible
to provide one or more cooling air flows inside the housing which flow substantially
from lateral side to lateral side, which has been found as advantageously with respect
to cooling efficiency.
[0015] According to a further advantageous embodiment, at least a first bottom wall of the
at least one or two or more bottom walls extends in a different plane than at least
a second bottom wall of the at least one or two or more bottom walls, in particular
wherein the first bottom wall and/or the second bottom wall extend horizontally and
/or wherein the first bottom wall extends parallel to the second bottom wall and/or
wherein the first bottom wall extends in a plane below the plane of the second bottom
wall.
[0016] Thus, clearly defined mounting planes are created onto which electric and/ or electronic
components of the cooking hob can be mounted. Accordingly, each of the two different
mounting planes can be cooled by means of a dedicated cooling air flow enabled by
corresponding air outlets. Further advantageously, such a design of a housing allows
to have different depth of the housing extending vertically into a kitchen cabinet
or a kitchen range. In particular, it is possible to have a center of the housing,
e.g. defined by the first bottom wall, to extend more vertically downwards compared
to peripheral sections of the housing, e.g. defined by the second bottom wall.
[0017] Furthermore advantageously, the housing includes at least one or two or more fans
for providing at least one air flow within the interior space, in particular wherein
the at least one or two or more fans are flow coupled to at least one or two or more
air inlets arranged in the at least one or two or more bottom walls, preferably arranged
in the first bottom wall below the second bottom wall.
[0018] Thus, a specific cooling air flow can be provided, wherein cooling air is sucked
in through a bottom wall, wherein the cooling air flow flows through the interior
space of the housing and leaves through the air outlets in the side walls.
[0019] It is additionally advantageous, if the at least one or two or more fans are placed
in a position opposite to the air outlets, in particular adjacent to the housing side
wall opposite to the side walls comprising the air outlets, such that an air flow
generated by the fan flows through the interior space to the air outlets and leaves
at least partially the housing through the air outlets, in particular wherein at least
one heat sink is arranged in the interior space, wherein the air flow is directed
towards the heat sink to flow along the heat sink towards to the air outlets.
[0020] Thus, it has been found that the resulting cooling air flow cools the interior space
and the electric and electronic disposed therein more efficiently, specifically in
an embodiment with two different bottom walls one arranged below the other.
[0021] According to an additionally advantageous embodiment, a heat sink is directly or
indirectly mounted above or to the first bottom wall, preferably mounted to a printed
circuit board that is mounted above or to the first bottom wall, wherein at least
one air flow generated by the at least one or two or more fans flows along surfaces
of the heat sink, in particular along surfaces of cooling ribs formed by the heat
sink, preferably wherein the cooling ribs are separated by air channels and wherein
the air channels extend in a direction from the at least one or two or more fans to
the air outlets provided in the interior side wall.
[0022] Thus, the heat sink is arranged to be subject to the cooling air flow for highly
efficient cooling, wherein heat from the heat sink is efficiently and rapidly transferred
towards the air outlets. This enables to cool electric and/or electronic components
that are arranged on a printed circuit board adjacent to or close to the heat sink
in a very efficient way.
[0023] Furthermore, it is additionally advantageous that at least one air inlet and/or at
least one fan outlet, in particular flow-coupled to the air inlet via the fan, is
positioned adjacent to a housing side wall on the left hand side of the housing or
to a housing side wall on the right hand side of the housing, in particular adjacent
to a middle portion of the housing side wall and/or wherein at least one fan is positioned
within a recess at least partially formed by an interior housing side wall, preferably
wherein the interior housing side wall is arranged partially circumferentially around
the fan.
[0024] Thus, the fan can be arranged to form a compact unit with the cooking hob housing,
wherein the air flow generated by the fan can be guided towards the elements to be
cooled without any restrictions.
[0025] It may be further advantageous, if there are at least a first air inlet and a second
air inlet or a first fan and a second fan, which are positioned adjacent to a housing
side wall on the left hand side of the housing or to a housing side wall on the right
hand side of the housing, in particular adjacent to a middle portion of the housing
side wall and which are positioned distanced to each other, in particular wherein
the first fan is configured to generate an air flow towards a first heat sink and
the second fan is configured to generate an air flow towards a second heat sink being
different from the first heat sink.
[0026] Thus, a highly efficient cooling is generated within the interior space of the housing.
In particular, dedicated cooling air flows can be generated and directed towards different
and separate components independently.
[0027] According to a further advantageous embodiment of the invention, the front side housing
side wall comprises at least one recess in which an operation panel of an oven to
be built-in or built-in below the cooking hob is arrangeable or arranged.
[0028] In that way, the cooking hob is optimized for being built-in in a kitchen range in
combination with an oven below. E.g. the operation panel of the oven can be advantageously
integrated with the cooking hob, when the operation elements of the cooking hob are
e.g. arranged on the cooking hob plate, or the oven and the cooking hob may have a
common operation panel to be integrated with the cooking hob.
[0029] Furthermore, it may be advantageous, that the air flow generated by the at least
one fan is directed at least partially towards the rear side of the front side housing
side wall and cools electronic parts comprised by the operation panel. This is made
possible by the recess formed to the front side housing side wall and is particularly
advantageous when temperature sensitive elements are used within the operation panel.
[0030] According to a further advantageous embodiment, the housing is made, in particular
exclusively, of a plastics material, in particular made of polycarbonate, and wherein
the housing is formed integrally with the housing side walls and/or the bottom walls
and/or the lattice bars of the air outlets and/or at least one stationary fan housing
part and/or at least one electric terminal and/or reinforcement elements of the interior
side wall.
[0031] Such a fully integral housing can be manufactured by injection moulding in one manufacturing
step. Further, such a housing is operably safe, because it electrically isolates the
exterior from the live electric and electronic parts provided within the housing.
[0032] The invention will be explained in further detail with reference to the accompanying
drawings, in which:
Fig. 1 is a perspective view of an empty housing without any non integral components
according to an exemplary embodiment of the invention;
Fig. 2 is a perspective view of the housing according to Fig. 1, including additional
functional components; and
Fig. 3 is a side view of a schematic drawing of a cooking hob according to an exemplary
embodiment of the invention in combination with an oven adapted for being built-in
a kitchen range.
[0033] Fig. 1 illustrates a housing 10 having a housing bottom wall 12 and four housing
side walls 14a-14d. The housing bottom wall 12 may comprise at least first, second
and third housing bottom walls 30, 32, 36. The housing bottom wall 12 and the housing
side walls 14a-14d define an interior space 16 which is fully enclosed by the housing
10 when being attached to a not illustrated cooking hob plate of the cooking hob.
The housing 10 has a front side 44 for being arranged on that side of the cooking
hob intended to be arranged in front of the user's position when operating the cooking
hob.
[0034] The first, second and third housing bottom walls 30, 32, 36 are oriented substantially
horizontal, but may have at least sections, in which they are oriented non-horizontally.
A first housing bottom wall 30 may be a center housing bottom wall, wherein second
and third housing bottom walls 32, 36 may be peripheral housing bottom walls that
may be arranged adjoining to the outermost housing side walls 14a-14d.
[0035] The housing side walls 14a-14d extend substantially vertically and upwards from the
adjoining housing bottom walls 30, 32, 36 towards the cooking hob plate. Additionally,
the housing 10 comprises interior side walls 34 which are distanced from the outermost
side walls 14a-14d. The interior side walls 34 extend substantially vertically from
the first bottom wall 30 to the second bottom wall 32 and to the third bottom wall
36. Thus, separate mounting planes are created within the housing 10, wherein the
first bottom wall 30 defines a first mounting plane and the second and third bottom
wall 32, 36 define a second mounting plane. It shall be acknowledged that all of a
plurality of bottom walls may be arranged at a different height level, i.e. one vertically
above another, resulting in different mounting planes, each one defined by a respective
bottom wall.
[0036] In the illustrated embodiment, the housing side wall 14a which is the right hand
housing side wall as seen from a user's perspective standing in front of the cooking
hob comprises a plurality of, in the illustrated embodiment, three air outlets 24
for allowing a cooling air flow (indicated by arrows in Fig. 2) to leave the interior
space 16 towards the exterior side of the housing 10.
[0037] Additionally, the interior side wall 34 comprises a plurality of similar air outlets
24. Also the interior side wall 34 is a right hand side wall as seen from a user's
perspective. Different to the air outlets 24 of the housing side wall 14a, the air
outlets 24 of the interior side wall 24 are provided substantially over the full length
of the interior side wall 34.
[0038] An electric terminal for contacting electrical mains to the housing can be formed
integrally to the housing 10. In the illustrated embodiment, the electrical mains
is integrally formed to the interior side wall 34 and separates the air outlets 24
provided in the interior side wall 34.
[0039] In order to structurally reinforce the housing 10, reinforcement elements 26 such
as reinforcement ribs are integrally formed to the interior side wall 34 and to the
first bottom wall 16. The reinforcement ribs may have a triangular form and may be
provided in each corner connection between a bottom wall and a side wall of the housing
where found appropriate by the skilled person.
[0040] The air outlets 24, in general, may be formed as openings in a housing side wall
14a-14d or in an interior side wall 34. The openings may be separated by lattice bars
forming a grid that is dimensioned such that an object like a human finger is not
allowed to pass through an opening. This ensures that electrically live parts inside
the housing 10 cannot be touched by a user or another person.
[0041] Furthermore, air inlets 20 may be provided within a bottom wall, e.g. the first bottom
wall 30, wherein the air inlets 20 may be arranged close to a stationary fan housing
part 22 such that a fan being attached to the stationary fan housing part 22 can suck
air into the housing 10 through the air inlets 20. The stationary fan housing part
22 may be formed integrally to the housing 10, e.g. may be formed integrally to the
housing 10 and/or to an interior side wall 34 or to a housing side wall 14a-14d. A
fan with an attachable fan housing 38 may be attached to the stationary fan housing
part 22, e.g. by screw means or snapping means to form a fixed fan for generating
the cooling air flow within the housing 10.
[0042] The housing 10 is provided as one piece from plastics material. In other words, the
housing 10 may include the bottom walls 30, 32, 34, the housing side walls 14a-14d,
the interior side walls 34, optionally the stationary fan part 22, optionally the
lattice bars and optionally the electric terminal 28 as integrally formed components.
Polycarbonate has been found as specifically advantageous for such a housing 10.
[0043] Fig. 2 illustrates the housing 10 as shown in Fig. 1, wherein additionally a printed
circuit board 40 is attached to the housing 10 which is disposed within the interior
space 16 mounting to or above the first bottom wall 30. The printed circuit board
40 may be fixed to the housing 10 by screw means or by snapping means.
[0044] The printed circuit board 40 comprises a heat sink 42 that is positioned between
a fan outlet of the fan, e.g. formed by the stationary fan housing part 22 and/or
by the attachable fan housing part 38 to direct the cooling air flow be generated
by the fan towards the heat sink 42. The cooling air flow may be generated to stream
along one or more of heat exchange surfaces of the heat sink 42 and towards the air
outlets 24 that are arranged in the interior side wall 34 and/or in the housing side
wall 14a that are arranged opposite to the fan.
[0045] The fan outlet of the fan may be oriented such that the cooling air flow streams
in a direction substantially perpendicular relative to the openings of the air outlets
24 arranged in the interior side wall 34 and/or in the housing side wall 14a. This
may be achieved by orienting an opening of the fan outlet substantially parallel to
the openings of the air outlets 24 arranged in the interior side wall 34 and/or in
the housing side wall 14a.
[0046] The fan outlet may be arranged immediately adjacent or close to the heat sink 42.
The heat sink 42 may have heat exchange surfaces with a longitudinal extension and
may be arranged in a way that the cooling air flow leaving the fan outlet may immediately
touch the heat exchange surfaces and may stream along the longitudinal extension of
the heat exchange surfaces.
[0047] Furthermore, the heat sink 42 may form a plurality of cooling ribs forming cooling
channels of the heat sink 42. Thus, the overall area of the heat exchange surfaces
of the heat sink 42 may be enlarged. The fan outlet may be arranged in a way that
the cooling air flow leaving the fan outlet may enter the cooling channels and pass
through the cooling channels towards the air outlets 24 being arranged on the in the
interior side wall 34 and/or in the housing side wall 14a close to outlets of the
cooling channels of the heat sink 42.
[0048] Additionally, the housing may have a seat structure 18 providing a seat for a control
unit such as a touch sensitive display within the housing 10.
[0049] Fig. 3 illustrates a schematic drawing of a cooking hob in combination with an oven
adapted for being built-in a kitchen range. The cooking and an upper region of the
oven are shown from the left. The front side perspective is indicated by 44. The kitchen
range is not shown, but the positions of the cooking hob and the oven correspond to
the positions in a built-in situation.
[0050] In a built-in situation within a kitchen range, an operation panel 48 of the oven
protrudes vertically upwards beyond an upper side of an oven housing 46 of the oven.
[0051] In order to compensate the different height levels defined by the operation panel
48 and the oven housing 46, the housing 10 of the cooking hob defines two different
planes. The first plane is defined by the first bottom wall 30 in a center region
of the cooking hob. The second plane is defined by the second bottom wall 32 in a
front region. A further plane may be defined by the third bottom wall 36 in a rear
region which is, in this specific embodiment, the same plane as that defined by the
second bottom wall 32. The first bottom wall 30 protrudes vertically further downwards
than the second bottom wall 32. Thus, in a built-in situation, the operation panel
48 of the oven is arranged below the second bottom wall 32 and the oven housing 46
is arranged below the first bottom wall 30. This allows to arrange the operation panel
48 properly in front of the built-in oven and the built-in cooking hob.
[0052] Additionally, the front side housing side wall 14b may comprise one or more recesses
for insertion of parts of the operation panel 48. E.g. the front side housing side
wall 14b may comprise a central recess for insertion of a control unit, in particular
comprising a programmable timer, and/or the front side housing side wall 14b may have
recesses for, in particular touch-sensitive or rotatable, control elements, e.g. two
recesses, one in a left region and one in a right region of the front side housing
side wall 14b. The control unit and/or the control element which are placed in the
operation panel 48 may protrude into the recesses formed in the front side housing
side wall 14b and may connect with connectors inside of the housing 10.
List of reference numerals
[0053]
- 10
- housing
- 12
- housing bottom wall
- 14a-d
- housing side walls
- 16
- interior space
- 18
- seat structure
- 20
- air inlet
- 22
- stationary fan housing part
- 24
- air outlet
- 26
- Reinforcement elements
- 28
- electric terminal
- 30
- first bottom wall
- 32
- second bottom wall
- 34
- interior side wall
- 36
- third bottom wall
- 38
- attachable fan housing part
- 40
- printed circuit board
- 42
- heat sink
- 44
- front side
- 46
- oven housing
- 48
- operation panel
- Arrows
- Cooling air flow
1. Cooking hob, in particular induction cooking hob, including a housing (10) and a cooking
hob plate attached to the housing, wherein the housing (10) and the cooking hob plate
enclose at least one interior space (16) in which electric and/or electronic components
of the cooking hob are arrangeable or arranged, wherein the housing (10) comprises
at least one or two or more bottom walls (30, 32, 36) and at least one or two or more
side walls (14a-d, 34), wherein at least one or two or more side walls are housing
side walls (14a-d) that form the outermost side walls (14a-14d) of the housing and
that extend upwards from at least one or two or more of the bottom walls (30, 32,
36) and which are provided to be attached to the cooking hob plate, and wherein at
least one or two or more side walls are interior side walls (34) being distanced from
the outermost side walls (14a-14d) that extend upwards from at least one or two or
more of the bottom walls (30, 32, 36) towards another of the at least one or two or
more bottom walls (30, 32, 36), wherein the interior side walls (34) are positioned
inside from the at least one or two or more housing side walls (14a-d), wherein at
least one of the interior side walls (34) comprises at least one or two or a plurality
of air outlets (24).
2. Cooking hob according to claim 1, wherein the air outlets (24) are formed by a plurality
of, in particular rectangular or rounded or elliptical, openings separated by lattice
bars or grid bars.
3. Cooking hob according to claim 2, wherein the openings are configured such that an
object having a diameter of at least 18mm, in particular of at least 14mm, preferably
of at least 12mm, more preferably of at least 10mm, cannot pass through the openings,
in particular wherein the lattice bars or grid bars have a distance to each other
of less than 18mm, in particular of less than 14mm, preferably of less than 12mm,
more preferably of less than 10mm or less than 4mm or ca. 3mm.
4. Cooking hob according to any of the preceding claims,
wherein at least one of the housing side walls (14a-d) comprises at least one or two
or a plurality of air outlets (24) .
5. Cooking hob according to claim 4, wherein the housing (10) has a front side (44) configured
to be arranged in front of a user of the cooking hob,
wherein a housing side wall (14c) on the left hand side of the housing (10) and an
interior side wall (34) on the left hand side of the housing (10) comprise the air
outlets (24) or
wherein a housing side wall (14a) on the right hand side of the housing (10) and an
interior side wall (34) on the right hand side of the housing (10) comprise the air
outlets (24).
6. Cooking hob according to any of the preceding claims,
wherein at least a first bottom wall (30) of the at least one or two or more bottom
walls (30, 32, 36) extends in a different plane than at least a second bottom wall
(32) of the at least one or two or more bottom walls (30, 32, 36), in particular wherein
the first bottom wall (30) and/or the second bottom wall (32) extend horizontally
and /or wherein the first bottom wall (30) extends parallel to the second bottom wall
(32) and/or wherein the first bottom wall (30) extends in a plane below the plane
of the second bottom wall (32) .
7. Cooking hob according to any of the preceding claims,
wherein the housing includes at least one or two or more fans for providing at least
one air flow within the interior space (16), in particular wherein the at least one
or two or more fans are flow coupled to at least one or two or more air inlets (20)
arranged in the at least one or two or more bottom walls (30, 32, 36), preferably
arranged in the first bottom wall (30) below the second bottom wall (32).
8. Cooking hob according to claim 7, wherein the at least one or two or more fans are
placed in a position opposite to the air outlets (24), in particular adjacent to the
housing side wall (14a) opposite to the side walls (14c, 34) comprising the air outlets
(24), such that an air flow generated by the fan flows through the interior space
(16) to the air outlets (14) and leaves at least partially the housing (10) through
the air outlets (14), in particular wherein at least one heat sink (42) is arranged
in the interior space (16), wherein the air flow is directed towards the heat sink
(42) to flow along the heat sink (42) towards to the air outlets (14) .
9. Cooking hob according to any of the claims 7 or 8, wherein a heat sink (42) is directly
or indirectly mounted above or to the first bottom wall (30), preferably mounted to
a printed circuit board that is mounted above or to the first bottom wall (30), wherein
at least one air flow generated by the at least one or two or more fans flows along
surfaces of the heat sink (42), in particular along surfaces of cooling ribs formed
by the heat sink (42), preferably wherein the cooling ribs are separated by air channels
and wherein the air channels extend in a direction from the at least one or two or
more fans to the air outlets (24) provided in the interior side wall (34).
10. Cooking hob according to any of the claims 7 to 9, wherein at least one air inlet
(20) and/or at least one fan outlet, in particular flow-coupled to the air inlet via
a fan, is positioned adjacent to a housing side wall (14c) on the left hand side of
the housing (10) or to a housing side wall (14a) on the right hand side of the housing
(10), in particular adjacent to a middle portion of the housing side wall (14a, 14c)
and/or wherein at least one fan is positioned within a recess at least partially formed
by an interior housing side wall, preferably wherein the interior housing side wall
is arranged partially circumferentially around the fan.
11. Cooking hob according to any of the claims 7 to 10, wherein at least a first air inlet
(20) and a second air inlet (20) or a first fan and a second fan are provided, which
are positioned adjacent to a housing side wall (14c) on the left hand side of the
housing (10) or to a housing side wall (14a) on the right hand side of the housing
(10), in particular adjacent to a middle portion of the housing side wall (14a, 14c)
and which are positioned distanced to each other, in particular wherein the first
fan is configured to generate an air flow towards a first heat sink and the second
fan is configured to generate an air flow towards a second heat sink being different
from the first heat sink.
12. Cooking hob according to any of the preceding claims,
wherein the front side housing side wall (14b) comprises at least one recess in which
an operation panel of an oven to be built-in or built-in below the cooking hob is
arrangeable or arranged.
13. Cooking hob according to claim 12, wherein the air flow generated by the at least
one fan is directed at least partially towards the rear side of the front side housing
side wall (14b) and cools electronic parts comprised by the operation panel.
14. Cooking hob according to any of the preceding claims, characterized in that the housing (10) is made, in particular exclusively, of a plastics material, in particular
made of polycarbonate, and wherein the housing (10) is formed integrally with the
housing side walls (14a-d, 34) and/or the bottom walls (30, 32, 36) and/or the lattice
bars or grid bars of the air outlets (24) and/or at least one stationary fan housing
part (22) and/or at least one electric terminal (28) and/or reinforcement elements
(26) of the interior side wall (34).