TECHNICAL FIELD
[0001] The present invention is related to a holding configuration of an operation board
of an induction-heating cooker.
BACKGROUND ART
[0002] Conventionally, in this type of induction-heating cooker, an operation board is housed
inside a bottomed, substantially box-shaped holder and this holder is fixed to an
outer frame (see, e.g., Patent Document 1).
[0003] Fig. 12 depicts an operation board holding configuration of a conventional induction-heating
cooker described in Patent Document 1. As shown in Fig. 12, an operation board 113
arranged below a top plate 111 is housed inside a bottomed, substantially box-shaped
operation board holder 117. This operation board holder 117 is formed, for example,
of resin and is fixed to an outer frame 118. By this, the operation board 113, with
its entire circumference surrounded by the operation board holder 117 in the horizontal
direction, is fixed to the outer frame 118.
PATENT DOCUMENT
SUMMARY OF THE INVENTION
PROBLEM TO BE SOLVED BY THE INVENTION
[0005] Recently, a smaller size and a thinner size of this type of induction-heating cooker
have become one of requirements from the market. According to the conventional configuration
described above, however, since the operation board 113 is housed inside the bottomed,
substantially box-shaped operation board holder 117, the operation board holder 117
is required to have a configuration of a larger box shape than the external shape
of the operation board 113. For this reason, the conventional operation board holder
117 becomes a factor inhibiting the realization of the smaller size and the thinner
size of the induction-heating cooker.
[0006] The operation board holder 117 is formed to correspond to a certain particular operation
board 113 and to achieve higher density of internal components packaging, generally,
when the shape of the operation board 113 is changed, the shape of the operation board
holder 117 is also changed. When the induction-heating cooker comes to have a wide
variety of operation part layout variations, there are many variations in the shape
of the operation board 113. Accordingly, there is a problem that many shapes are required
for the operation board holder 117, resulting in a great burden in terms of costs
such as development man-hour and investment for molds and dies.
[0007] The present invention is intended to solve the conventional problems described above
and the object thereof is to provide an induction-heating cooker capable of holding
an operation board with a simple configuration and utilizing a space effectively.
MEANS FOR SOLVING PROBLEM
[0008] In order to solve the problems inherent in the conventional art, an induction-heating
cooker according to the present invention comprises: an outer frame having an opening
in its upper part and formed in a bottomed box shape; a top plate that covers the
opening of the outer frame and on which an object to be heated is placed; a coil unit
that is arranged below the top plate and that induction-heats the object to be heated;
and an operation board that is located below the top plate and that accepts an operation
from a user, wherein an operation board holding part that supports and holds the operation
board from the lower surface side is disposed on an outer frame side surface of the
outer frame, and at least a part of a space surrounding the operation board is opened
in the horizontal direction inside the outer frame.
EFFECT OF THE INVENTION
[0009] The induction-heating cooker of the present invention, capable of fixing an operation
board to an outer frame side surface with a simple configuration, can realize a lower
cost and a thinner size of a main body by making a space occupied by an operation
board holding part within the main body small.
BRIEF DESCRIPTION OF DRAWINGS
[0010]
Fig. 1 is a principal part cross-sectional view of an induction-heating cooker in
a first embodiment of the present invention.
Fig. 2 is a principal part cross-sectional view of an operation board attached by
a locking mechanism to an operation board holding member of the induction-heating
cooker of the first embodiment.
Fig. 3 is a principal part cross-sectional view of the operation board attached by
a screw to the operation board holding member of the induction-heating cooker of the
first embodiment.
Fig. 4 is a perspective view of the operation board holding member of the induction-heating
cooker of the first embodiment.
Fig. 5 is a perspective view of the induction-heating cooker of a second embodiment
of the present invention, with its top plate unit removed.
Fig. 6 is a partial exploded perspective view of the induction-heating cooker of the
second embodiment, with its top plate unit and coil unit removed.
Fig. 7 is a partial exploded perspective view of the induction-heating cooker of the
second embodiment, with its top plate unit removed, as viewed from the rear side of
a main body.
Fig. 8 is a principal part cross-sectional view of the induction-heating cooker of
the second embodiment.
Fig. 9 is a perspective view of the induction-heating cooker of the second embodiment
(variation example), with its top plate unit removed, in the case of arranging the
operation board on the outer side (corner part).
Fig. 10 is a principal part cross-sectional view of a convex part for attaching the
operation board of the induction-heating cooker of the second embodiment (variation
example).
Fig. 11 is a top view indicative of a positional relationship between the operation
board and an outer frame of the induction-heating cooker of the second embodiment,
with its top plate unit removed.
Fig. 12 is a principal part cross-sectional view of the operation board and its surroundings
of a conventional induction-heating cooker.
EMBODIMENT(S) FOR CARRYING OUT THE INVENTION
[0011] An induction-heating cooker according to the first invention comprises an outer frame
having an opening in its upper part and formed in a bottomed box shape; a top plate
that covers the opening of the outer frame and on which an object to be heated is
placed; a coil unit that is arranged below the top plate and that induction-heats
the object to be heated; and an operation board that is located below the top plate
and that accepts an operation from a user, wherein an operation board holding part
that supports and holds the operation board from the lower surface side is disposed
on an outer frame side surface of the outer frame, and at least a part of a space
surrounding the operation board is opened in the horizontal direction inside the outer
frame. According to such a configuration, since the operation board can be held by
the outer frame side surface with a simple configuration, it is made possible to effectively
utilize a space in the upper part of the main body as a space for disposing the operation
board and to make a space occupied by the operation board holding part small. Therefore,
since other parts such as a control board to supply a high-frequency current to the
coil unit can be arranged at the open space formed thereby, the space inside the main
body can be utilized effectively and for example, the thinner size of the main body
can be realized.
[0012] In the induction-heating cooker according to the first invention, the second invention
is characterized in that the induction-heating cooker further comprises a holding
member passing through an outer frame throughhole disposed on the outer frame side
surface and fixed to the outer frame side surface, wherein the holding member supports
and holds the operation board from the lower surface side as the operation board holding
part. This makes it possible to support the operation board from the lower surface
side by the holding member going through the outer frame throughhole at the outer
frame side surface and fixed to the outer frame side surface and to make the space
occupied by the operation board holding part inside the main body small.
[0013] In the induction-heating cooker according to the first or second invention, the third
invention is characterized in that the induction-heating cooker comprises a metallic
support member arranged between a left outer frame side surface and a right outer
frame side surface of the outer frame and connecting a front outer frame side surface
and a rear outer frame side surface, wherein a part of the lower surface side of the
operation board is held by the operation board holding part while the other part of
the lower surface side of the operation board is held by the support member by interposing
an electrically insulating material. This makes it possible to support the operation
board by the support member in addition to the operation board holding part and to
cope with the holding of the operation boards having a wide variety of sizes and shapes.
Since the support member connects the front and the rear of the outer frame, resulting
in an increase in the rigidity of the outer frame, the thickness of the outer frame
can be made thinner and an inexpensive induction-heating cooker can be provided.
[0014] In the induction-heating cooker according to the first or second invention, the fourth
invention is characterized in that the induction-heating cooker comprises a support
member made of resin as an electrically insulating material arranged between a left
outer frame side surface and a right outer frame side surface of the outer frame and
connecting a front outer frame side surface and a rear outer frame side surface, wherein
a part of the lower surface side of the operation board is held by the operation board
holding part while the other part of the lower surface side of the operation board
is held by the support member. This makes it possible to support the operation board
by the support member in addition to the operation board holding part and to cope
with the holding of the operation boards having a wide variety of sizes and shapes.
Since the support member connects the front and the rear of the outer frame, resulting
in an increase in the rigidity of the outer frame, the thickness of the outer frame
can be made thinner and an inexpensive induction-heating cooker can be provided. Since
the support member itself is formed of the electrically insulating material, the necessity
of separately disposing an electrically insulating material can be eliminated.
[0015] In the induction-heating cooker according to the third or fourth invention, the fifth
invention is characterized in that the support member supports the coil unit. This
makes it possible to hold the operation board, using the support member that supports
the coil unit and to decrease the parts count as well as achieving the effective utilization
of the space in the induction-heating cooker.
[0016] In the induction-heating cooker according to the third or fourth invention, the sixth
invention is characterized in that the induction-heating cooker further comprises
a fixing member passing through a throughhole disposed on the support member and fixed
to the support member, wherein the fixing member supports and holds the operation
board from the lower surface side. This makes it possible to support and hold the
operation board from the lower surface side by the fixing member passing through the
throughhole of the support member and fixed to the support member, resulting in the
holding of the operation board with a simple configuration.
[0017] In the induction-heating cooker according to the first or second invention, the seventh
invention is characterized in that the outer frame side surface has a horizontal plane
part as a horizontal plane formed substantially horizontally between a lower end of
a first side surface and an upper end of a second side surface formed on the inner
side than the first side surface, and the operation board holding part is disposed
on the horizontal plane part. Since the operation board holding part is disposed on
the horizontal plane part, the operation board can be held reliably though the shape
of the operation board holding part is simply configured. Assembly can be made easy
and an inexpensive induction-heating cooker can be provided.
[0018] In the induction-heating cooker according to the seventh invention, the eighth invention
is characterized in that the outer frame has the horizontal plane part on a front
outer frame side surface, and on a left outer frame side surface or a right outer
frame side surface, and the operation board is held by the operation board holding
part disposed on the horizontal plane part of the front outer frame side surface,
and the operation board holding part disposed on the horizontal plane part of the
left outer frame side surface or the right outer frame side surface. This makes it
possible to arrange the operation board at the right corner or the left corner of
the outer frame or at both of them and for example, it is made possible to enrich
commodity variations by changing of arrangement of an operation part.
[0019] In the induction-heating cooker according to the seventh or eighth invention, the
ninth invention is characterized in that the operation board is held by the operation
board holding part on the horizontal plane part so that a wiring pattern of the operation
board is not overlap the horizontal plane part on which the operation board holding
part is disposed, as viewed from above. Since this makes it possible to increase a
space distance between the horizontal plane part and the wiring pattern, enhancing
the insulation performance, the induction-heating cooker with high reliability can
be provided.
[0020] In the induction-heating cooker according to the third or fourth invention, the tenth
invention is characterized in that the front outer frame side surface and the rear
outer frame side surface have a horizontal plane part as a horizontal plane formed
substantially horizontally between a lower end of a first side surface and an upper
end of a second side surface formed on the inner side than the first side surface,
and both ends of the support member are placed on the horizontal plane part of the
front outer frame side surface and the horizontal plane part of the rear outer frame
side surface. Since this causes the support member to be installed on the horizontal
plane part of the front outer frame side surface and on the horizontal plane part
of the rear outer frame side surface, the rigidity of the outer frame can be increased.
Accordingly, the thickness of the outer frame can be made thinner and further, assembly
efficiency is enhanced and an inexpensive induction-heating cooker can be provided.
[0021] In the induction-heating cooker according to the first invention, the eleventh invention
is characterized in that the outer frame side surface has a horizontal plane part
as a horizontal plane formed substantially horizontally between a lower end of a first
side surface and an upper end of a second side surface formed on the inner side than
the first side surface, and an upwardly protruding convex part is formed on the horizontal
plane part, and the convex part supports and holds the operation board from the lower
surface side as the operation board holding part. By this, the convex part formed
on the outer frame side surface can be used as the operation board holding part, without
using a separate member as the operation board holding part, and the parts count can
be decreased.
[0022] In the induction-heating cooker according to any one of the first to eleventh invention,
the twelfth invention is characterized in that the operation board has an attachment
hole, and the operation board is fixed to the operation board holding part by using
the attachment hole.
[0023] Embodiments of the present invention will now be described with reference to drawings.
The present invention is not to be limited by these embodiments.
(First Embodiment)
[0024] Fig. 1 is a principal part cross-sectional view of the induction-heating cooker in
a first embodiment of the present invention and Fig. 2 is a principal part cross-sectional
view of the operation board attached by a locking mechanism to the operation board
holding member of the induction-heating cooker. Fig. 3 is a principal part cross-sectional
view of the operation board attached by a screw to the operation board holding member
of the induction-heating cooker of the first embodiment and Fig. 4 is a perspective
view of the operation board holding member of the induction-heating cooker.
[0025] As shown in Figs. 1 to 4, in an induction-heating cooker 100 of this first embodiment,
a main body (chassis) to house parts includes an outer frame 4 having an opening 4c
in its upper part and formed in a bottomed box shape and a top plate 1 to cover the
opening 4c of the outer frame 4 and on which to place an object P to be heated. A
top plate unit 13 includes the top plate 1 on which the object P to be heated is placed
and a top plate support metal fitting 12 having its upper surface bonded to the lower
surface of the top plate 1 and having a substantially L-letter cross-sectional shape.
The top plate unit 13 is fixed to the side surface of the outer frame 4.
[0026] A coil unit 2 to induction-heat the object P to be heated, an operation board 3 arranged
in front of the coil unit 2, and a control board 5 arranged on an outer frame bottom
surface 4b are arranged below the top plate unit 13. The operation board 3 has a terminal
14 making up a capacitance type touch control that accepts an operation from a user.
The control board 5 supplies the high-frequency current to the coil unit 2. The control
board 5 is held by a control board holding member 11 and the operation board 3 is
supported and held from the lower surface side of the operation board 3 by an operation
board holding member 6. One end of the operation board holding member 6 goes through
an outer frame throughhole 7 disposed on an outer frame side surface 4a (the hole
penetrating, from inside to outside, through the outer frame side surface). The operation
board holding member 6 is thereby attached to the outer frame side surface 4a. In
this first embodiment, the operation board holding member 6 (holding member) becomes
an example of the operation board holding part that supports and holds the operation
board 3 from the lower surface side.
[0027] As shown in Fig. 2, the operation board 3 has an attachment hole 8 disposed that
penetrates in the thickness direction and the other end of the operation board holding
member 6 passes through this attachment hole 8. By this, the operation board holding
member 6 supports the operation board 3 from the lower surface side as well as holding
the operation board 3. At the other end of the operation board holding member 6, a
locking mechanism 6e may be provided at the edge that has passed through the attachment
hole 8 of the operation board 3. The locking mechanism 6e may have a larger diameter
than that of the attachment hole 8 to prevent the operation board 3 from being released
upward. As shown in Fig. 3, the other end of the operation board holding member 6
may be mechanically fixed to the operation board 3 by a screw 9.
[0028] One example will be described of the configuration of fixing the operation board
holding member 6 to the outer frame 4 with reference to Fig. 4. As shown in Fig. 4,
the operation board holding member 6 has a horizontal holding part 6a, a fixing part
6b formed at one end of the horizontal holding part 6a, and a vertical holding part
6c extended vertically from the other end of the horizontal holding part 6a. The fixing
part 6b has an external shape larger than the diameter of the outer frame throughhole
7 and has an attachment hole 6bb disposed that penetrates in the thickness direction.
At the upper end of the vertical holding part 6c, a protruding part 6d is disposed
that has the external shape smaller than the diameter of the vertical holding part
6c and that extrudes upward and at the upper end of the protruding part 6d, the locking
mechanism 6e is disposed. On the side surface of the horizontal holding part 6a in
the vicinity of the fixing part 6b, a rotation preventing part 6f is disposed that
protrudes outwardly from the side surface in the radial direction. The outer frame
throughhole 7 and a screw hole 4d are formed on the outer frame side surface 4a. The
locking mechanism 6e, the protruding part 6d, the vertical holding part 6c, and the
horizontal holding part 6a, in that order, are caused to pass through the outer frame
throughhole 7. Thereafter, by tightening the screw 9 that has passed through the attachment
hole 6bb into the screw hole 4d of the outer frame side surface 4a and fastening it
to the outer frame side surface 4a, the operation board holding member 6 can be fixed
to the outer frame side surface 4a. In this case, because of the disposition of the
rotation preventing part 6f, positioning of the screw hole 4d of the outer frame 4
and the attachment hole 6bb of the fixing part 6b is made easy. Such a rotation preventing
part 6f may be omitted. The operation board holding member 6 may be fixed to the outer
frame 4 by shaping the operation board holding member 6 so that it will not rotate
with respect to the outer frame throughhole 7 and by further disposing a locking mechanism
(not shown) to prevent the operation board holding member 6 from coming off.
[0029] With respect to the induction-heating cooker 100 of this first embodiment configured
as above, the operation and the action thereof will be described.
[0030] At the time of assembling the induction-heating cooker 100 of this first embodiment,
the control board holding member 11 is fixed to the outer frame bottom surface 4b
and the control board 5 is placed on the upper surface of the control board holding
member 11 and is held thereby. Then, the operation board holding member 6 is inserted
into the outer frame throughhole 7 disposed on the outer frame side surface 4a and
the operation board holding member 6 is fixed to the outer frame side surface 4a so
that the operation board holding member 6 does not rotate. Thereafter, the operation
board 3 is placed on the operation board holding member 6 and is fixed thereto. Then,
the coil unit is attached, the top plate unit 13 and the outer frame 4 are fixed,
and the induction-heating cooker 100 is completed.
[0031] Fixing of the operation board holding member 6 of such a simple configuration to
the outer frame side surface 4a makes it possible to reduce the space occupied by
the member to hold the operation board 3 inside the outer frame 4 and to arrange the
control board 5 and other parts around and below the space occupied by the member.
For this reason, in the induction-heating cooker 100, parts can be arranged efficiently
within a limited space of the main body. Therefore, the configuration to hold the
operation board can be made compact, as compared with the conventional one, for example,
the resin case, etc., holding the operation board (e.g., the operation board holder
117 of Fig. 12). Consequently, the height of the main body can be further reduced
and the operation board holding configuration can be realized with an inexpensive
configuration.
[0032] The operation board holding member 6 holds the operation board 3, with the space
surrounding the operation board 3 opened in the horizontal direction inside the outer
frame 4. Namely, the operation board holding member 6 holds the operation board 3,
opening the space in the horizontal direction, without surrounding the operation board
3 by the box-shaped member, etc. Accordingly, the operation board holding member 6
can hold the operation boards of various forms irrespective of the external shape
of the operation board. Therefore, the operation board holding member 6 can be used
commonly irrespective of the form of the operation board and the burden in respect
of costs such as development man-hour and investment for molds and dies can be reduced.
Since the space surrounding the operation board 3 is opened in the horizontal direction
inside the outer frame 4, the cooling effect can be heightened, as compared with the
conventional state of being enclosed.
[0033] While the control board 5 is arranged below the operation board 3, insulation performance
can be secured by designing the operation board holding member 6 so as to secure the
space distance with the control board 5. Since the operation board holding member
6 has a simple configuration, as compared with the resin case (e.g., the operation
board holder 117, etc.) that conventionally held the operation board, the operation
board holding member 6 can be made inexpensively.
[0034] As above, in the induction-heating cooker 100 of this first embodiment, by adopting
the above configuration, the induction-heating cooker capable of making the main body
thinner and achieving a lower cost can be realized while recently there is a demand
in the market for the thinner size and the lower cost of the induction-heating cooker.
(Second Embodiment)
[0035] Fig. 5 is a perspective view of an induction-heating cooker 200 of a second embodiment
of the present invention, with its top plate unit removed and Fig. 6 is a partial
exploded perspective view of the induction-heating cooker, with its top plate unit
and coil unit removed. Fig. 7 is a partial exploded perspective view of the induction-heating
cooker of this second embodiment, with its top plate unit removed, as viewed from
the rear side of the main body and Fig. 8 is a principal part cross-sectional view
of the induction-heating cooker. Fig. 9 is a perspective view of the induction-heating
cooker in a variation example of this second embodiment, with its top plate unit removed,
in the case of arranging the operation board on the outer side (corner part). Fig.
10 is a principal part cross-sectional view of a convex part for attaching the operation
board of the induction-heating cooker in another variation example and Fig. 11 is
a top view indicative of a positional relationship between the operation board and
the outer frame of the induction-heating cooker of this second embodiment, with its
top plate unit removed.
[0036] In Figs. 5 to 11, an outer frame 15 constitutes a chassis as an exterior part of
the main body, has an opening 15c in its upper part, and is formed in a bottomed,
box-shape. As shown in Fig. 8, the opening 15c of the outer frame 15 is covered by
a top plate unit 13. An outer frame side surface 15a has a stepped shape with a horizontal
plane part 15ac formed halfway (see, in particular, Fig. 8). This stepped shape includes
a first side surface 15aa formed by being bent upward outside the horizontal plane
part 15ac and a second side surface 15ab formed by being bent downward inside the
horizontal plane part 15ac. Namely, the outer frame side surface 15a has the stepped
shape, with the horizontal plane part 15ac formed as a horizontal plane formed substantially
horizontally between the lower end of the first side surface 15aa and the upper end
of the second side surface ab formed inner than the first side surface 15aa. The outer
frame 15 has a flange 15d extending substantially horizontally by being bent outwardly
at the upper end of the first side surface 15aa. The second side surface 15ab is formed
by being bent upward at the end of an outer frame bottom surface 15b. "Substantially
horizontally" means the direction crossing the vertical direction and includes the
direction slightly slanted with respect to the horizontal direction if it is roughly
a lateral direction.
[0037] As shown in Figs. 5 to 7, a metallic support member 18 is arranged in an anteroposterior
direction between the left-side outer frame side surface 15a (also called a left outer
frame side surface) and the right-side outer frame side surface 15a (also called a
right outer frame side surface) of the outer frame 15 (namely, substantially center
in lateral direction). The support member 18 is fixed to the horizontal plane part
15ac formed on the front-side outer frame side surface 15a (also called a front outer
frame side surface) and the rear-side outer frame side surface 15a (also called a
rear outer frame side surface) of the outer frame 15. Namely, the support member 18
connects the front outer frame side surface 15a and the rear outer frame side surface
15a so as to bridge these two surfaces. Figs. 6 and 7 depict an operation board 16
and an insulation plate 19 in a disassembled state.
[0038] As shown in Fig. 8, below the operation board 16, the insulation plate 19 (an example
of electrically insulating member) is placed on the upper surface of the support member
18. An outer frame throughhole 15e is disposed on the horizontal plane part 15ac of
the outer frame side surface 15a (e.g., front outer frame side surface) and plural
operation board holding members 17 pass through their respective outer frame throughholes
15e and are fixed to the horizontal plane part 15ac, namely, the outer frame 15. Likewise,
the support member 18 has a support member throughhole 18a disposed and plural fixing
members 17a pass through their respective support member throughholes 18a and are
fixed to the support member 18. The insulation plate 19 has an insulation plate throughhole
19a disposed and the fixing member 17a passes through the insulation plate throughhole
19a. Thus, the insulation plate 19 has its horizontal movement regulated by the fixing
member 17a. The operation board 16 has attachment holes 16a formed so as to correspond
to each of the operation board holding members 17 and the fixing members 17a.
[0039] As shown in Fig. 11, the operation board 16 has no wiring pattern 26 arranged on
such part of its back surface at which the operation board 16 and the horizontal plane
part 15ac overlap as seen from the above. Namely, the operation board 16 is held by
the operation board holding member 17 fixed to the horizontal plane part 15ac so that
the wiring pattern 26 of the operation board 16 will not overlap the horizontal plane
part 15ac as seen from the above.
[0040] As shown in Fig. 5, in the induction-heating cooker 200, a coil unit 2a, a coil unit
2b, a coil unit 2c, and a coil unit 2d differ in arrangement location and some of
them differ in size or shape from others but all of them are of almost same configuration.
Therefore, the configuration will be described of the coil unit 2a and its surroundings
as their representative. As shown in Fig. 8, projections 20 are formed on the horizontal
plane part 15ac of the left outer frame side surface 15a and the right outer frame
side surface 15a and on the support member 18, a spring 25 is inserted into each projection
20, and the coil unit 2a is placed on the springs 25. Positioning of the coil unit
2a is performed by having a positioning projection 21 formed on a shield plate 24
inserted into the spring 25. The shield plate 24 has a flange 22 formed by being bent
upward at its outer circumferential part and the end surface of the flange 22 abuts
against a metallic frame 23c that makes up a top plate unit 23 and that is bonded
and fixed to the back surface of a top plate 23a. With respect to the configuration
of supporting the coil unit 2a, many other configurations may be adopted and for example,
the configuration of supporting the coil unit 2a without using the spring 25 may be
adopted.
[0041] With respect to the induction-heating cooker 200 of this second embodiment configured
as above, the operation and the action thereof will be described.
[0042] At the time of assembling the induction-heating cooker 200 in this second embodiment,
in the same manner as in the induction-heating cooker 100 in the first embodiment,
the control board holding member 11 is fixed to the outer frame 15 and the control
board 5 is fixed to the control board holding member 11. This fixing method is the
same as in the first embodiment and the description thereof is omitted.
[0043] The operation board 16 and the horizontal plane part 15ac formed on the outer frame
side surface 15a are in parallel with each other. Therefore, in the fixing of the
operation board to the outer frame 15, by using the horizontal plane part 15ac, the
operation board holding member 17 is not required to have a curved shape and, for
example, can be formed in a vertically linear shape. This makes it possible to further
simplify the shape of the operation board holding member 17 and at the same time,
makes the assembly easy. The operation board holding member 17 may be fixed to the
horizontal plane part 15ac by the screw, etc., or by using the locking mechanism,
in the same configuration as shown in Fig. 4. The operation board 16 may be fixed
to the operation board holding member 17 by the same member as the locking mechanism
6e of Fig. 2 or the screw 9 of Fig. 3.
[0044] Since the insulation plate 19 is placed on the support member 18 and the insulation
plate 19 intervenes between the operation board 16 and the support member 18, necessary
insulation performance can be secured easily between the back surface of the operation
board 16 and the support member 18. Below the operation board 16, at the portion where
the support member 18 is not present, it is unnecessary to dispose the insulation
plate 19 below the operation board 16 when an insulation distance can be secured by
securing a space distance between the operation board 16 and the control board 5.
In this case, insulating parts of the operation board 16 can be configured further
inexpensively by reducing an area of the insulation plate 19 to less than an area
of the operation board 16.
[0045] With the support member 18 erected between, and fixed to, the front outer frame side
surface 15a and the rear outer frame side surface 15a formed at the front part and
the rear part of the outer frame 15, the front outer frame side surface 15a and the
rear outer frame side surface 15a are connected and the rigidity of the outer frame
15 is increased against the load and impact from the front and the rear. At the time
of installation in the kitchen, when the main body is taken out of a package box,
the man carries it, usually holding the right and left outer frame side surfaces 15a.
At this moment, the front and rear outer frame side surfaces 15a can hit the kitchen
or furniture. According to the configuration of this second embodiment, however, since
the rigidity of the front and rear outer frame side surfaces 15a has been increased,
it is made possible to reduce the possibility of deformation of the outer frame 15
even in the case of hitting and to provide the induction-heating cooker of high reliability.
[0046] The operation board 16 has no wiring pattern 26 arranged on such part of its back
surface at which the operation board 16 and the horizontal plane part 15ac overlap
as viewed from straight above. For this reason, a larger insulation distance can be
secured between the horizontal plane part 15ac and a charging part of the operation
board 16 and the induction-heating cooker can be provided with high reliability.
[0047] At least a part of the support member 18 may be composed of an electrically insulating
material such as resin and in this case, since the insulation plate 19 is no longer
necessary, a further inexpensive configuration of holding the operation board 16 can
be realized. A whole of the support member may be composed of the electrically insulating
material such as resin.
[0048] In place of the configuration of holding the operation board 16 by the operation
board holding member 17 inserted into the outer frame throughhole 15e disposed on
the horizontal plane part 15ac, a convex part 27 disposed in the horizontal plane
part 15ac may be used as an example of the operation board holding part, as shown
in the variation example of Fig. 10. Specifically, in the horizontal plane part 15ac,
by deforming it to an upwardly protruding convex shape and disposing a screw hole
27a on the upper surface of the convex shape, the convex part 27 is formed. With a
screw 10 caused to pass through the attachment hole 16a disposed on the operation
board 16 and driven into the screw hole 27a, the operation board 16 is fixed to the
horizontal plane part 15ac. Namely, the operation board holding part may be configured
by inwardly forming the convex shape on the outer frame 15. In this case, as described
above, with no wiring pattern 26 arranged above the horizontal plane part 15ac, the
insulation distance can be secured between the wiring pattern 26 as the charging part
and the outer frame 15 as a non-charging part. Since this configuration can omit the
operation board holding member 17 inserted into the horizontal plane part 15ac, the
induction-heating cooker can be configured inexpensively.
[0049] In the case of desiring to arrange the operation board 16 to the right and left sides,
as shown in the variation example of Fig. 9, a reliable holding can be made by fixing
the operation board holding member 17 to the horizontal plane part 15ac disposed on
the front-side outer frame side surface 15a and the right and left outer frame side
surfaces 15a and holding two sides of the operation board 16 by the horizontal plane
part 15ac. This makes it possible to respond flexibly even in the case of desiring
to change the layout of an operation part (not shown) depending on the destination
and to provide the induction-heating cooker excellent in development of variations.
In this case as well, the wiring pattern 26 on the back surface of the operation board
16 is not arranged above the horizontal plane part 15ac. By arranging so as to secure
the insulation distance between the wiring pattern on the back surface of the operation
board 16 and the control board 5, the resin-made case to house the operation board
16 becomes unnecessary that was used in the conventional induction-heating cooker.
Therefore, the inexpensive and thin induction-heating cooker can be provided.
[0050] The coil unit 2a is placed on the spring 25 and the positioning of the coil unit
2a is performed by having the positioning projection 21 formed on the shield plate
24 inserted into the spring 25. This prevents the coil unit 2a from getting out of
alignment at the time of assembly or during transportation. The coil unit 2a is caused
to abut against the frame 23c by a restoring force of the spring 25. For this reason,
the distance between the coil unit 2a and the back surface of the top plate 23a can
be kept constant even when a measurement between the back surface of the top plate
23a and the horizontal plane part 15ac changes due to variations in size of the parts,
when the outer frame 15 or the support member 18 deflects under weight so that the
distance between the support member 18 and the back surface of the top plate 23a is
widened, or when the top plate 23a itself is curved. Accordingly, heating performance
of the induction-heating cooker and the heat generation amount of internal parts can
be stabilized that are heavily dependent on the distance between the coil unit 2a
and the object P to be heated. This makes it possible to provide the induction-heating
cooker with small quality variation and high reliability.
[0051] The coil units 2a to 2d adopt the configuration of being supported by the outer frame
side surface 15a and the support member 18. For this reason, by adjusting the arrangement
of the support member 18 bridging the outer frame side surfaces 15a, it is made possible
to cope with supporting of the coil units of various sizes and shapes. Therefore,
the common use of parts in the induction-heating cooker becomes easy to achieve.
[0052] Usually, the outer frame 15 is formed of metal to secure the rigidity. In this second
embodiment, since the horizontal plane part 15ac is disposed in the outer frame 15a,
the outer frame bottom surface 15b can be configured to have a small area. Further,
since the operation board 16, the coil units 2a to 2d, etc., are supported by the
horizontal plane part 15ac, the load due to heavy objects can be distributed. For
this reason, even if the outer frame side surface 15a extending below the horizontal
plane part 15ac (second side surface 15ab) and the outer frame bottom surface 15b
are formed of, for example, a resin-made member, strength can be kept. In this case,
the weight of the induction-heating cooker as a whole can be reduced and at the same
time, effect can be obtained in respect of enhancement of processability and reduction
of material costs.
[0053] The spring 25 may be substituted by an elastic body such as rubber. If only the elastic
body energizes the coil unit upward and constantly presses it against the top plate
unit, likewise, variations in size of the parts can be absorbed to stabilize the distance
between the coil unit 2a and the object P to be heated.
[0054] With the frame 23c fixed to a top plate support metal fitting 23b, the upward load
created by pressing the flange 22 against the frame 23c is transmitted to the top
plate support metal fitting 23b. For this reason, the upward load does not directly
apply in such a direction that will peel off the top plate 23a from the top plate
support metal fitting 23b. Therefore, even in a long-term usage, there is no separation
between the top plate 23a and the top plate support metal fitting 23b, resulting in
unstable state and the induction-heating cooker with high long-term reliability can
be provided.
[0055] The frame 23c and the top plate support metal fitting 23b may be configured by one
piece of parts. This reduces the parts count and makes it possible to configure the
induction-heating cooker of high productivity.
[0056] The above description was made citing as an example the case of the space surrounding
the operation board being opened in the horizontal direction inside the outer frame
4 but, in the operation board held by the operation board holding member, at least
a part of the space surrounding the operation board may be opened in the horizontal
direction.
[0057] Out of the various embodiments described above, arbitrary embodiments can appropriately
be combined to exhibit their respective effects.
[0058] While the present invention has sufficiently been described in connection with the
preferred embodiments, referring to the attached drawings, various variations and
modifications thereof are obvious to those skilled in the art. Such variations and
modifications shall be construed to be included in the present invention so long as
they do not depart from the scope of the present invention by the scope of claims
attached.
INDUSTRIAL APPLICABILITY
[0059] As described above, the induction-heating cooker according to the present invention,
capable of fixing the operation board to the outer frame side surface with a simple
configuration and therefore, capable of reducing the space occupied by the operation
board holding part within the main body, can be applied to all types of applications
of the induction-heating cooker.
EXPLANATIONS OF LETTERS OR NUMERALS
[0060]
P object to be heated
1 top plate
2 coil unit
2a, 2b, 2c, 2d coil unit
3 operation board
4 outer frame
4a outer frame side surface
4b outer frame bottom surface
4c opening
4d screw hole
5 control board
6 operation board holding member (holding member (operation board holding part))
6a horizontal holding part
6b fixing part
6bb attachment hole
6c vertical holding part
6d protruding part
6e locking mechanism
6f rotation preventing part
7 outer frame throughhole
8 attachment hole
9 screw
10 screw
11 control board holding member
12 top plate support metal fitting
13 top plate unit
14 terminal
15 outer frame
15a outer frame side surface
15aa first side surface
15ab second side surface
15ac horizontal plane part
15b outer frame bottom surface
15c opening
15d flange
15e outer frame throughhole
16 operation board
16a attachment hole
17 operation board holding member (holding member (operation board holding part))
17a fixing member
18 support member
18a support member throughhole
19 insulation plate
19a insulation plate throughhole
20 projection
21 positioning projection
22 flange
23 top plate unit
23 top plate
23b top plate support metal fitting
23c frame
24 shield plate
25 spring
26 wiring pattern
27 convex part
27a screw hole
1. An induction-heating cooker comprising:
an outer frame having an opening in its upper part and formed in a bottomed box shape;
a top plate that covers the opening of the outer frame and on which an object to be
heated is placed;
a coil unit that is arranged below the top plate and that induction-heats the object
to be heated; and
an operation board that is located below the top plate and that accepts an operation
from a user, wherein
an operation board holding part that supports and holds the operation board from the
lower surface side is disposed on an outer frame side surface of the outer frame,
and at least a part of a space surrounding the operation board is opened in the horizontal
direction inside the outer frame.
2. The induction-heating cooker according to claim 1, further comprising a holding member
passing through an outer frame through hose disposed on the outer frame side surface
and fixed to the outer frame side surface, wherein
the holding member supports and holds the operation board from the lower surface side
as the operation board holding part.
3. The induction-heating cooker according to claim 1 or 2, comprising a metallic support
member arranged between a left outer frame side surface and a right outer frame side
surface of the outer frame and connecting a front outer frame side surface and a rear
outer frame side surface, wherein
a part of the lower surface side of the operation board is held by the operation board
holding part while the other part of the lower surface side of the operation board
is held by the support member by interposing an electrically insulating material.
4. The induction-heating cooker according to claim 1 or 2, comprising a support member
made of resin as an electrically insulating material arranged between a left outer
frame side surface and a right outer frame side surface of the outer frame and connecting
a front outer frame side surface and a rear outer frame side surface, wherein
a part of the lower surface side of the operation board is held by the operation board
holding part while the other part of the lower surface side of the operation board
is held by the support member.
5. The induction-heating cooker according to claim 3 or 4, wherein the support member
supports the coil unit.
6. The induction-heating cooker according to claim 3 or 4, further comprising a fixing
member passing through a throughhole disposed on the support member and fixed to the
support member, wherein
the fixing member supports and holds the operation board from the lower surface side.
7. The induction-heating cooker according to claim 1 or 2, wherein the outer frame side
surface has a horizontal plane part as a horizontal plane formed substantially horizontally
between a lower end of a first side surface and an upper end of a second side surface
formed on the inner side than the first side surface, and the operation board holding
part is disposed on the horizontal plane part.
8. The induction-heating cooker according to claim 7, wherein the outer frame has the
horizontal plane part on a front outer frame side surface, and on a left outer frame
side surface or a right outer frame side surface, and
the operation board is held by the operation board holding part disposed on the horizontal
plane part of the front outer frame side surface, and the operation board holding
part disposed on the horizontal plane part of the left outer frame side surface or
the right outer frame side surface.
9. The induction-heating cooker according to claim 7 or 8, wherein the operation board
is held by the operation board holding part on the horizontal plane part so that a
wiring pattern of the operation board is not overlap the horizontal plane part on
which the operation board holding part is disposed, as viewed from above.
10. The induction-heating cooker according to claim 3 or 4, wherein the front outer frame
side surface and the rear outer frame side surface have a horizontal plane part as
a horizontal plane formed substantially horizontally between a lower end of a first
side surface and an upper end of a second side surface formed on the inner side than
the first side surface, and both ends of the support member are placed on the horizontal
plane part of the front outer frame side surface and the horizontal plane part of
the rear outer frame side surface.
11. The induction-heating cooker according to claim 1, wherein the outer frame side surface
has a horizontal plane part as a horizontal plane formed substantially horizontally
between a lower end of a first side surface and an upper end of a second side surface
formed on the inner side than the first side surface, and an upwardly protruding convex
part is formed on the horizontal plane part, and the convex part supports and holds
the operation board from the lower surface side as the operation board holding part.
12. The induction-heating cooker according to any one of claims 1 to 11, wherein the operation
board has an attachment hole, and the operation board is fixed to the operation board
holding part by using the attachment hole.