BACKGROUND
[0001] The present embodiment relates to an indoor unit of an air conditioner.
[0002] In general, an air conditioner is an apparatus that cools or heats an internal space
such as a building, etc.
[0003] The air conditioner includes an indoor unit in which a compressor is received and
an outdoor unit that is mounted indoors to allow refrigerant to perform a heat exchange
with indoor air, wherein the indoor unit may be integrated with the outdoor unit according
to products.
[0004] The indoor unit includes an indoor heat exchanger, a main body with a built-in fan
assembly, and a panel that opens a portion of the main body in order to repair the
inside of the main body or to replace components thereof, etc. And, one or more inlets
are formed in the main body and a filter that filters air passing through the one
or more inlets is included in the inside of the main body. The indoor heat exchanger
is connected to the outdoor unit through a pipe unit, and the pipe unit is drawn out
to the outside of the indoor unit from the inside of the indoor unit.
[0005] EP0769660A1 discloses a motor fixing device for use in an air conditioner that has a removable
motor receiving portion.
EP0769660A1 discloses the features of the preamble of claim 1.
SUMMARY
[0006] According to the present invention, there is provided an air conditioner as set forth
in claim 1.
[0007] In one embodiment, an indoor unit of an air conditioner including a main body that
includes a chassis and a front frame coupled to the chassis; a fan that is provided
inside the main body to compulsorily flow air; a fan motor that rotates the fan; a
fan receiving part that receives a portion of the fan, the fan receiving part being
formed at the chassis; and a fan motor seating part on which the fan motor is seated,
the fan motor being formed at the chassis; wherein a receiving groove that receives
the portion of the fan is formed on one side of the fan receiving part and the fan
motor seating part is formed on the other side of the fan receiving part.
[0008] The details of one or more embodiments are set forth in the accompanying drawings
and the description below. Other features will be apparent from the description and
drawings, and from the claims.
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
FIG. 1 is a perspective view of an indoor unit of an air conditioner according to
the present embodiment;
FIG. 2 is an exploded perspective view of the air conditioner according to the present
embodiment;
FIG. 3 is a vertical cross-sectional view of the air conditioner according to the
present embodiment;
FIGS. 4 and 5 are partially exploded perspective views showing the internal constitution
of the air conditioner according to the present embodiment;
FIG. 6 is a perspective view of the chassis according to the present embodiment;
FIG. 7 is a diagram showing the position relation between the pipe unit and the chassis
according to the present embodiment;
FIG. 8 is a perspective view of the fan motor cover according to the present embodiment;
FIG. 9 is a perspective view of the fan according to the present embodiment;
FIG. 10 is a diagram showing a state where the fan motor cover is coupled to the chassis;
FIG. 11 is a perspective view of the box body according to the present embodiment;
FIG. 12 is a perspective view showing a state where the box body according to the
present embodiment is seated on the control box seating part;
FIG. 13 is a perspective view showing a state where the fan motor is coupled to the
fan; and
FIG. 14 is a cross-sectional view showing the relation between the switch and the
front panel in a state where the front panel is closed.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0010] Reference will now be made in detail to the embodiments of the present disclosure,
examples of which are illustrated in the accompanying drawings.
[0011] In the following detailed description of the preferred embodiments, reference is
made to the accompanying drawings that form a part hereof, and in which is shown by
way of illustration specific preferred embodiments in which the invention may be practiced.
These embodiments are described in sufficient detail to enable those skilled in the
art to practice the invention, and it is understood that other embodiments may be
utilized and that logical structural, mechanical, electrical, and chemical changes
may be made without departing from the spirit or scope of the invention. To avoid
detail not necessary to enable those skilled in the art to practice the invention,
the description may omit certain information known to those skilled in the art. The
following detailed description is, therefore, not to be taken in a limiting sense,
and the scope of the present invention is defined only by the appended claims.
[0012] FIG. 1 is a perspective view of an indoor unit of an air conditioner according to
the present embodiment, FIG. 2 is an exploded perspective view of the air conditioner
according to the present embodiment, and FIG. 3 is a vertical cross-sectional view
of the air conditioner according to the present embodiment.
[0013] In FIG. 1, a wall type indoor unit is shown by way of example.
[0014] Referring to FIGS. 1 to 3, the indoor unit 1 according to the present embodiment
includes a main body 10 in which various components are provided, and a front panel
30 that is coupled rotatably to the main body 10 to selectively open the main body
10.
[0015] The main body 10 includes a chassis 11, a front frame 14 that is coupled to the front
surface of the chassis 11 and is formed with a suction grill 141, a pre-filter 15
that purifies air sucked through the suction grill 141, a heat-exchanger 16 that performs
heat exchange between the air passing through the pre-filter 15 and internal refrigerant,
a fan 17 that compulsorily flows the air, a fan motor 18 that rotates the fan 17,
a control box 20 that is configured of components for controlling the operation of
the indoor unit 1, a discharge assembly 23 that guides the discharge of the air passing
through the heat-exchanger 16, a louver unit 24 that controls the direction of the
discharged air, and a dust collector 25 that is coupled to the heat-exchanger 16.
[0016] And, the front panel 30 is disposed in front of the front frame 14 and an install
panel 40 that allows the indoor unit 1 to be installed on a wall is coupled to the
rear side of the chassis 11.
[0017] More specifically, the suction grill 141 is formed on the top surface of the front
frame 14 by way of example. The suction grill 141 forms inlet holes through which
air is sucked and serves to protect the heat-exchanger 16 from the outside.
[0018] One or more opening parts 142 that allow the pre-filter 15 to come and go are formed
on the front surface of the front frame 14. In FIG. 2, two opening parts 142 are shown
by way of example but there is no limitation in the number of the opening part 142.
And, the opening part 142 and the pre-filter 15 are provided in the same number.
[0019] The opening part 142 is opened and closed by the front panel 30 that is coupled rotatably
to the front frame 14. The lower end of the front panel 30 may be rotated centering
on the upper end thereof by way of example.
[0020] Therefore, after rotating the front panel 30, the pre-filter 15 can be mounted or
the pre-filter 15 can be drawn out through the opening part 142. Also, a filter supporting
part 144 that supports the pre-filter 15 is formed at the front frame 14. Herein,
although not shown, a plasma filter can be coupled to the front of the filter supporting
part 144.
[0021] A service hole 143 for the replacement or repair, etc. of the control box 20 is formed
at the front surface of the front frame 14. The service hole 143 may be opened and
closed by a service cover 145 coupled to the front frame 14.
[0022] And, in a state where the service cover 145 covers the service hole 143, the service
cover 145 is covered by the front panel 30. Therefore, in order to replace or repair
the control box 20, the service cover 145 is separated after the front panel 30 is
rotated.
[0023] One or more air flowing holes 149 that flow air are formed at one side surface (for
example, right side surface in FIG. 2) of the front frame 14.
[0024] The heat-exchanger 16 is bent one times or more so that it may be divided into a
plurality of portions. In the present embodiment, the heat-exchanger 16 is shown to
be divided into three portions by way of example. And, the pre-filter 15 is positioned
at the upper stream side of the heat-exchanger 16.
[0025] A heat-exchanger holder 161 is coupled to one side of the heat-exchanger 16 and a
plurality of fixing plates 163 and 164 are coupled to the other side of the heat-exchanger
16. And, as the heat-exchanger holder 161 and the plurality of fixing plates 163 and
164 are fixed to the chassis 11, the position of the heat-exchanger 16 is fixed. The
heat-exchanger 16 is connected to an outdoor unit that is not shown by a pipe unit
165.
[0026] As the fan 17, a cross flow fan may be applied. And, the fan motor 18 is coupled
to the fan 17 in one side direction of the fan 17. And, the control box 20 is disposed
in the side direction of the fan motor 18.
[0027] In other words, in the present embodiment, the fan motor is positioned between the
fan 17 and the control box 20.
[0028] The control box 20 includes a box body 21 in which various components such as a PCB,etc.
are installed, and a box cover 22 that covers the box body 21.
[0029] In order to guide the flow of the fan 17, a flow guide 111 is formed at the chassis
11, and a stabilizer 232 is formed in the discharge assembly 23. And, an outlet 231
through which the heat-exchanged air is discharged to the indoor is formed in the
discharge assembly 23.
[0030] In other words, the discharge channel of the heat-exchanged air is defined by the
flow guide 111 and the discharge assembly 23.
[0031] Meanwhile, a temperature sensor 219 that senses the temperature of indoor air sucked
through the air flow hole 149 is provided at one side of the box body 21, that is,
at a surface facing a surface on which the air flow hole 149 of the front frame 14
is formed.
[0032] The temperature sensed by the temperature sensor 219 is transmitted to a controller
not shown (it may be an element that constitutes the control box), and the controller
compares a set temperature (desire temperature) with the temperature sensed by the
temperature sensor 219 to control the operation of the indoor unit or the outdoor
unit.
[0033] According to the present embodiment, the air flow hole 149 is formed at the side
surface of the front frame 14 so that the temperature of the air sucked through the
air flow hole 149 is sensed by the temperature sensor 219, making it possible to exactly
sense the current indoor temperature.
[0034] In other words, the air flow hole 149 is positioned to be spaced from the outlet
231 so that it is difficult for the discharge air to be flowed into through the air
flow hole 149. Therefore, the indoor air is flowed into through the air flow hole
149, making it possible to exactly sense the current indoor temperature.
[0035] FIGS. 4 and 5 are partially exploded perspective views showing the internal constitution
of the air conditioner according to the present embodiment, FIG. 6 is a perspective
view of the chassis according to the present embodiment, and FIG. 7 is a diagram showing
the position relation between the pipe unit and the chassis according to the present
embodiment.
[0036] Referring to FIGS. 1 to 7, a fan receiving part in which both sides of the fan 17
are received is included in the chassis 11 according to the present embodiment. The
fan receiving part includes a first fan receiving part 112 and a second fan receiving
part 113. And, the channel guide 111 is positioned between the first receiving part
112 and the second receiving part 113.
[0037] A first receiving groove 112a that receives a portion of the left side of the fan
17 and has a vertical cross-section in an approximately semicircular shape is formed
in the first receiving part 112. Also, although not shown in the first receiving part
112, a bearing seating part 112b on which a bearing that is coupled to the left side
of the fan 17 to guide the rotation of the fan 17 is seated is formed.
[0038] A second receiving groove 113a that receives the right entirety of the fan 17 is
formed in the left side of the second receiving part 113. And, a fan motor seating
part 120 on which the fan motor 18 is seated is formed on the right side of the second
receiving part 113, and a control box seating part 130 on which the control box 20
is seated is formed at one side of the fan motor seating part 120.
[0039] And, a shaft penetration hole 115 through which a motor shaft 181 of the fan motor
18 penetrates is formed in the second receiving part 113. The motor shaft 181 penetrates
through the shaft penetration hole 115 in right and left directions.
[0040] The shaft penetration hole 115 includes a first hole 115a formed in the central portion
of the second receiving part 113 and a second hole 115b that is extended forward from
the first hole 115a. The first hole 115a has a vertical cross-section formed in a
circular shape.
[0041] Therefore, the shaft penetration hole 115 is formed entirely in a non circular shape,
wherein the front and rear length is formed to be longer than the top and bottom width.
This is to allow the motor shaft 181 to be easily coupled to the fan 17. The detailed
reasons thereof will be described later.
[0042] The fan motor seating part 120 includes a first supporting part 122 and a second
supporting part that support both sides of the fan motor 18, and a motor receiving
space 121 that is formed between the first supporting part 122 and the second supporting
part 123 to receive the fan motor 18 therein.
[0043] The first supporting part 122 is integrally formed at the right side surface of the
second receiving part 113, and the second supporting part 123 is integrally formed
at the front surface of the control box seating part 130. The second supporting part
123 is projected forward from the front surface of the control box seating part 130.
[0044] That is, the first supporting part 122 is not spaced from the second receiving part
113 but is integrally formed at the right side surface of the second receiving part
113. In other words, no gap is formed between the first supporting part 122 and the
second receiving part 113.
[0045] Therefore, according to the present embodiment, since the fan motor 18 is positioned
directly at the right side of the second receiving part 113, the length of the motor
shaft 181 of the fan motor 18 can be minimized so that the horizontal size of the
indoor unit 1 becomes small, making it possible to make the indoor unit compact.
[0046] And, if the fan motor 18 is seated on the fan motor seating part 120, an end portion
181a adjacent to a first reduction part 182 of the motor shaft 181 is seated on the
shaft penetration hole 115, specifically, on the first hole 115a. From a different
point of view, the most inner portion from the motor shaft 181 projected from the
fan motor 18 may be explained to be positioned on the first hole 115a.
[0047] In the present embodiment, as the fan motor 18, an AC motor or a BLDC motor may be
used by way of example.
[0048] And, the cross-section of a portion at least coupled to the fan 17, of the motor
shaft 181 of the fan motor 18, is formed in a non-circular shape. For example, the
cross-section of the motor shaft 181 may be formed in a

?shape.
[0049] Seating grooves 122a and 123a each in a semicircular shape are formed in the first
supporting part 122 and the second supporting part 123. And, one or more cooling holes
124 through which air for cooling the fan motor 18 is flowed are formed in the fan
motor seating part 120.
[0050] A vibration reduction part formed of elastic material that minimizes vibration in
a state the fan motor 18 is seated on the fan motor seating part 120 is coupled to
both sides of the fan motor 18. In the present embodiment, it will be explained that
the vibration reduction part constitutes a portion of the fan motor 18.
[0051] The vibration reduction part includes a first reduction part 182 that is coupled
to the left side of the fan motor 18, and a second reduction part 184 (shown in FIG.
2) that is coupled to the right side of the fan motor 18.
[0052] Substantially, the first reduction part 182 is seated on the first supporting part
122 and the second reduction part 184 is seated on the second supporting part 123.
[0053] And, one or more supporting ribs 126 that support the fan motor cover 19 are formed
on the inner circumferential surface of the fan motor seating part 120.
[0054] Meanwhile, the control box seating part 130 is projected forward from the back surface
part 110 of the chassis 11.
[0055] In other words, the control box seating part 130 includes a plurality of extending
parts 130a that are substantially vertically extended forward based on the back surface
part 110 and a connecting part 130b that connects the front ends of the plurality
of extending parts 130a.
[0056] Therefore, the horizontal cross-section of the control box seating part 130 is formed
in a

shape, having a rear surface that is opened, and a space part 131 is defined by the
plurality of extending part 130a and the connecting part 130b. The space part 131
is formed to be vertically long.
[0057] From a different point of view, the space part 131 may be understood to be formed
as the back surface part of the chassis 110 is collapsed forward.
[0058] And, the pipe unit 165 positioned in the space part 13 and the space part 131 are
covered by the install panel 40.
[0059] And, a side surface opening part 132 through which the pipe unit 165 passes is formed
at the extending part 130a adjacent to the fan motor seating part 120, of the plurality
of extending parts 130a.
[0060] One or more reinforcing ribs 133 that improve the strength of the control box seating
part 130 are formed at the control box seating part 130. In FIG. 7, a plurality of
reinforcing ribs 133 are formed at the back surface of the control box seating part
130 by way of example, wherein the plurality of reinforcing ribs 133 are spaced vertically
from each other.
[0061] The reinforcing ribs 133 are formed over the plurality of extending parts 130a and
the connecting part 130b.
[0062] Although the pipe unit 165 positioned in the space part 131 is bumped into the control
box seating part 130 at the time of installation of the pipe unit 165, the breakage
of the control box seating part 130 can be prevented by the reinforcing ribs 133.
[0063] And, a guide rib 135 that guides the seating of the control box 20 is formed at the
front surface part of the control box seating part 130.
[0064] Referring to FIG. 7, the pipe unit 165 connected to the heat-exchanger 16 is extended
backward to the back surface part 110 of the chassis 11 and is bent on the upper of
the fan motor seating part 120, thereby being extended in right and left directions
through the side surface opening part 132.
[0065] And, the pipe unit 165 passing through the side surface opening part 132 is bent
downward from the space part 131. And, the pipe unit 165 is extended downward along
the space part 131, thereby being drawn out to the outside of the main body 10.
[0066] According to the present embodiment as described above, the pipe unit 165 connected
to the heat-exchanger 16 is vertically extended from the rear of the control box seating
part 130 so that the main body 10 does not require a space for avoiding the pipe unit
165, having advantages that product size becomes small and the fan motor 18 and the
control box 20 are easily installed.
[0067] In other words, since the pipe unit 165 is positioned in the rear of the control
box 20 by passing through the upper of the fan motor 18, interference with the fan
motor 18 disappears so that the fan motor 18 and the fan 17 can be positioned to be
adjacent to each other at maximum, making it possible to reduce the entire size of
the product.
[0068] Compared with the related art, when the pipe unit 165 is positioned in front of the
fan motor 18 or in front of the control box 20, the fan motor 18 and the control box
20 should be installed by avoiding the pipe unit 165 so that the entire size of the
main body 10 becomes large and it is difficult to install the fan motor 18 and the
control box 20. However, with the present embodiment, these problems can be solved.
[0069] FIG. 8 is a perspective view of the fan motor cover according to the present embodiment,
FIG. 9 is a perspective view of the fan according to the present embodiment, and FIG.
10 is a diagram showing a state where the fan motor cover is coupled to the chassis.
[0070] Referring to FIGS. 1 to 10, the fan motor cover 19 has a vertical cross-section formed
in an approximately C shape. The fan motor cover 19 covers a portion of the fan motor
18 that is projected to the external side of the motor receiving space 121 in a state
where the fan motor 18 is received in the motor receiving space 121. In other words,
the portion of the fan motor 18 is received in the motor receiving space 121 and the
rest of the fan motor 18 are covered by the fan motor cover 19.
[0071] A first covering part 192 that covers the first reduction part 182 seated on the
first supporting part 122 and an attaching/detaching hook 193 that is hung by a hanging
end 114 formed at the side surface of the right-side receiving part 113 are formed
at the left side of the fan motor cover 19.
[0072] A first engagement end 194 that is engaged with the second supporting part 123 by
an engagement member (not shown) is formed at the right side of the fan motor cover
19. A first engagement hole 194a through which the engagement member penetrates is
formed in the first engagement end 194.
[0073] And, an engagement hook 196 that is engaged with the box body 21 is formed at the
top surface (or front surface) of the fan motor cover 19.
[0074] Therefore, in a state where the fan motor 18 is received in the motor receiving space
121, the attaching/detaching hook 193 is primarily hanged by the hanging end 114 so
that the position of the fan motor cover 19 can be fixed. And, the first engagement
end 194 of the fan motor cover 19 is put on the top surface of an engagement part
125 formed at the second supporting part 123 and the fan motor cover 19, specifically,
the first covering part 192, covers the top side of the first reduction part 182.
[0075] If the first covering part 192 covers the first reduction part 182 in a state where
the first reduction part 182 is seated on the first supporting part 122, the moving
of the first reduction part 182 can be prevented.
[0076] In other words, in the present embodiment, the fan motor cover 19 allows one side
of the fan motor 18, that is, the position of the first reduction part 182, to be
fixed.
[0077] Meanwhile, the fan 17 includes a plurality of blades 172 that are spaced from each
other and a connecting part 174 that connects the blades 172. The basic structure
of the fan is the same as the structure of the publicly known cross flow fan so that
the detailed description thereof will be omitted.
[0078] A shaft coupling part 175 that couples a motor shaft 181 of the fan motor 18 is formed
at the connection part positioned on the outermost outside, of the connecting part
174. And, a shaft coupling hole 176 is formed in the shaft coupling part 175. The
shaft coupling hole 176 is formed in the shape corresponding to the motor shaft 181.
In other words, the shaft coupling hole 176 and the motor shaft 181 are formed in
a non-circular shape, making it possible to prevent the motor shaft 181 from idling
as to the fan 17.
[0079] FIG. 11 is a perspective view of the box body according to the present embodiment,
and FIG. 12 is a perspective view showing a state where the box body according to
the present embodiment is seated on the control box seating part.
[0080] Referring to FIGS. 1 to 12, the box body 21 includes a frame 210 whose vertical cross-section
is formed in an approximately "

" shape and front surface is opened. And, various components such as a PCB, etc. may
be installed through the opened front surface of the frame 210. At least a portion
of the opened front surface of the frame 210 may be covered by the box cover 22.
[0081] A second covering part 212 that covers the second reduction part 184, a second engagement
end 215 that is engaged with the first engagement end 194 by the engagement member,
and a hook hanger 214 by which the engagement hook 196 is hanged and formed at one
side surface of the frame 210 (left-side surface in FIG. 11). And, a second engagement
hole 215a with which the engagement member is engaged is formed in the second engagement
end 215.
[0082] In the present embodiment, the engagement hook 196 is described to be formed at the
fan motor cover 19 and the hook hanger 214 is described to be formed at the frame
210, that is, at the control box. However, differently therefrom, the engagement hook
may also be formed at the frame and the hook hanger may also be formed at the fan
motor cover.
[0083] A switch seating part 216 on which a switch 218 (see FIG. 4) that senses the closing
of the front panel 30 is seated is formed at the front surface side of the frame 210.
[0084] And, if the box body 21 is seated on the control box seating part 130, the second
supporting part 123 and the second covering part 212 are aligned. And, the second
reduction part 184 is positioned between the second supporting part 123 and the second
covering part 212.
[0085] In other words, in the present embodiment, the box body 21 allows the other side
of the fan motor 18, that is, the position of the second reduction part 184, to be
fixed.
[0086] Hereinafter, the assembling order of the main body in connection with the fan motor
and the control box will be described.
[0087] FIG. 13 is a perspective view showing a state where the fan motor is coupled to the
fan.
[0088] Referring to FIGS. 1 to 13, the right side of the fan 17 is received in the second
receiving part 113 and the left side of the fan 17 is received in the first receiving
part 112. Then, the motor shaft 181 of the fan motor 18 penetrates through the shaft
penetration hole 115 to allow the motor shaft 181 to be coupled to the right side
of the fan 17.
[0089] More specifically, the motor shaft 181 first penetrates through the second hole 115b
and then the motor shaft 181 moves to the first hole 115a. And, the fan motor 18 is
seated on the fan motor seating part 120, while the motor shaft 181 moved to the first
hole 115a being coupled to the shaft coupling part 175.
[0090] Since the first supporting part 122 is formed at the right side of the second receiving
part 113, the motor shaft 181 becomes short compared to that in the related art so
that the motor shaft 181 straightly passes through the first hole 115a, being difficult
to be coupled to the shaft coupling part 175. However, in the present embodiment,
a second hole 115b extended from the first hole 115a is additionally formed. Therefore,
while the motor shaft 181 being moved to the first hole 115a after the motor shaft
181 first passes through the second hole 115b, if the coupling and of the motor shaft
181 and the seating of the fan motor 18 are performed, the motor shaft 181 can be
coupled to the shaft coupling part 175.
[0091] If the motor shaft 181 is coupled to the fan 17, the first reduction part 182 is
seated on the first supporting part 122, the second reduction part 184 is seated on
the second supporting part 123, and a portion of the fan motor 18 is received nit
eh motor receiving space 121. Thereafter, the fan motor cover 19 covers the fan motor
18. Then, the attaching/detaching hook 193 is hanged by the hanging end 114 and the
first covering part 192 covers the first reduction part 182.
[0092] Thereafter, the control box 20 is seated on the control box seating part 130. Then,
the second covering part 212 covers the second reduction part 184, the engagement
hook 196 is hanged by the hook hanger 214, and the second engagement end 215 is put
on the top surface of the first engagement end 194.
[0093] And, the engagement member allows the second engagement end 214, the first engagement
end 195, and the engagement part 125 to be simultaneously engaged.
[0094] Therefore, according to the present embodiment, since the fan motor is positioned
directly at the right side of the second receiving part, the length of the motor shaft
of the fan motor can be minimized so that the horizontal size of the indoor unit becomes
small, making it possible to make the indoor unit compact.
[0095] Moreover, since the fan motor cover covers one side of the fan motor and the control
box controls the other side of the fan motor, the fan motor and the control box are
positioned to be adjacent to each other, making it possible to reduce the horizontal
width of the main body.
[0096] Furthermore, since the pipe unit passes through the rear of the control box, an additional
space for avoiding the pipe unit is not required, making it possible to increase space
utilization.
[0097] FIG. 14 is a cross-sectional view showing the relation between the switch and the
front panel in a state where the front panel is closed.
[0098] Referring to FIGS. 2, 5, and 14, the switch 218 is seated at a front portion of the
box body 21 (portion facing the front panel) and the switch 218 faces the front in
a state where the box body 21 is seated on the control box seating part 130.
[0099] Meanwhile, a pressing part 302 that selectively presses the switch 218 is projected
backward from the back surface of the front panel 30, and a penetration hole 148 through
which the pressing part 302 is selectively penetrated is formed in the front frame
14. The penetration hole 148 is positioned downward the service hole 143.
[0100] Referring to FIG. 10, the pressing part 302 presses the switch 218 by penetrating
through the penetration hole 148 in a state where the front panel 30 is closed. The
switch 218 is for sensing the state where the front panel 30 is closed. If the switch
218 is pressed, the switch 218 is turned on and the turn-on signal of the switch 218
is transmitted to the controller not shown. Then, the controller operates the dust
collector and/or the plasma filter.
[0101] In other words, if the turn-on signal of the indoor unit is input in a state where
the front panel 30 is not closed, the controller does not operate the dust collector
and/or the plasma filter and when the closing of the front panel 30 is sensed, the
controller operates the dust collector and/or the plasma filter.
[0102] With the present embodiment, as the control box seating part is projected forward
from the chassis, the switch can be positioned to be adjacent to the penetration hole
in a state where the box body is seated on the control box seating part.
[0103] Therefore, the pressing part formed at the back surface of the front panel can press
directly the switch seated on the box body, making it possible to smoothly arrange
electrical wires connected to the switch.
[0104] While the present disclose has been particularly shown and described with reference
to exemplary embodiments thereof, it will be understood by those of ordinary skill
in the art that various changes in form and details may be made therein without departing
from the scope of the present disclose as defined by the following claims.
1. An indoor unit of an air conditioner, comprising: a main body (10) that includes a
chassis (11) and a front frame (14) coupled to the chassis (11); a fan (17) that is
provided inside the main body (10) to compulsorily flow air; a fan motor (18) that
rotates the fan (17); a fan receiving part that receives a portion of the fan, the
fan receiving part being formed at the chassis (11); and a fan motor seating part
(120) on which the fan motor (18) is seated, the fan motor (17) being formed at the
chassis (11); a receiving groove (112a) that receives the portion of the fan is formed
on one side of the fan receiving part and the fan motor seating part (120) is formed
on the other side of the fan receiving part,
wherein the fan motor seating part (120) includes a first supporting part (122) that
supports one side of the fan motor (18), a second supporting part (123) that supports
the other side of the fan motor (18), and a motor receiving space (121) formed between
the first supporting part (122) and the second supporting part (123),
Characterised in that:
the first supporting part (122) is integrally formed with the other side of the fan
receiving part,
wherein a shaft penetration hole (115) through which a motor shaft (181) of the fan
motor (18) penetrates is formed at the fan receiving part, the shaft penetration hole
(115) having a vertical cross-section formed in a non-circular shape, and
wherein the shaft penetration hole (115) includes a first hole (115a) formed in the
central portion of the fan receiving part and a second hole (115b) that is extended
outward from the first hole (115a).
2. The indoor unit of the air conditioner according to claim 31 wherein when the fan
motor (18) is seated on the fan motor seating part (120), an inner portion of the
motor shaft (181) projected from the fan motor (18) is positioned at the shaft penetration
hole (115).
3. The indoor unit of the air conditioner according to claim 1, wherein a portion coupled
to the fan (17), of the motor shaft (181), has a cross-section formed in a non-circular
shape, and a shaft coupling hole (176) coupled to the motor shaft and having a cross-section
in a shape corresponding to the motor shaft (181_is formed in the fan (17).
4. The indoor unit of the air conditioner according to claim 1, further comprising a
fan motor cover (19) that covers the fan motor (18),
wherein an engagement hook (196) is formed at the fan motor cover (19) and a hanging
part by which the engagement hook (196) is hanged is formed at the other side of the
fan receiving part.
5. The indoor unit of the air conditioner according to claim 1, further comprising a
control box (20) in which control components for operating the main body (10) are
included, and a fan motor cover (19) that covers the fan motor (8),
wherein in a state where the fan motor (18) is seated on the fan motor seating part
(120), the fan motor cover (19) fixes the position of one side of the fan motor (18)
and the control box (20) fixes the position of the other side of the fan motor (18).
6. The indoor unit of the air conditioner according to claim 5, wherein a first covering
part (192) that covers one side of the fan motor (18) seated on the first supporting
part (122) is included in the fan motor cover (19), and a second covering part (212)
that covers the other side of the fan motor seated on the second supporting part (123)
is included in the control box (20).
7. The indoor unit of the air conditioner according to claim 5, wherein the chassis (11)
includes a control box seating part (130), and the second supporting part (123) is
projected forward from the control box seating part (13).
8. The indoor unit of the air conditioner according to claim 5, wherein after the fan
motor cover (19) first covers the fan motor (18), the control box (20) covers the
fan motor (19), and the fan motor cover (19) and the control box (20) are engaged
with the chassis (11) by a single engagement member.
9. The indoor unit of the air conditioner according to claim 5, wherein an engagement
hook (196) is formed at any one of the fan motor cover (19) and the control box (20)
and a hook hanger to which the engagement hook (196) is coupled is formed at the other
one.
1. Innenraumeinheit einer Klimaanlage, folgendes aufweisend: einen Hauptkörper (10),
der einen Einsetzrahmen (11) und ein mit dem Einsetzrahmen (11) gekoppeltes Frontgehäuse
(14) aufweist; einen Ventilator (17), der im Inneren des Hauptkörpers (10) vorgesehen
ist, um Luft zwangsweise strömen zu lassen; einen Ventilatormotor (18), der den Ventilator
(17) dreht; ein Ventilator-Aufnahmeteil, das einen Teil des Ventilators aufnimmt,
wobei das Ventilator-Aufnahmeteil am Einsetzrahmen (11) ausgebildet ist; und ein Ventilatormotor-Auflagerteil
(120), an das der Ventilatormotor (18) angesetzt ist, wobei der Ventilatormotor (17)
am Einsetzrahmen (11) ausgebildet ist; eine Aufnahmenut (112a), die den Teil des Ventilators
aufnimmt, ist auf einer Seite des Ventilator-Aufnahmeteils ausgebildet, und das Ventilatormotor-Auflagerteil
(120) ist auf der anderen Seite des Ventilator-Aufnahmeteils ausgebildet,
wobei das Ventilatormotor-Auflagerteil (120) ein erstes Trägerteil (122), das eine
Seite des Ventilatormotors (18) trägt, ein zweites Trägerteil (123), das die andere
Seite des Ventilatormotors (18) trägt, und einen zwischen dem ersten Trägerteil (122)
und dem zweiten Trägerteil (123) ausgebildeten Motor-Aufnahmeraum (121) aufweist,
dadurch gekennzeichnet, dass
das erste Trägerteil (122) integral mit der anderen Seite des Ventilator-Aufnahmeteils
ausgebildet ist, wobei ein Wellen-Durchstoßloch (115), durch das eine Motorwelle (181)
des Ventilatormotors (18) hindurchstößt, am Ventilator-Aufnahmeteil ausgebildet ist,
wobei das Wellen-Durchstoßloch (115) einen in einer nicht kreisförmigen Form ausgebildeten
vertikalen Querschnitt aufweist, und
wobei das Wellen-Durchstoßloch (115) ein erstes im mittleren Teil des Ventilator-Aufnahmeteils
ausgebildetes Loch (115a) und ein zweites Loch (115b), das von dem ersten Loch (115a)
nach außen hin verlängert ist, aufweist.
2. Innenraumeinheit der Klimaanlage nach Anspruch 31, wobei, wenn der Ventilatormotor
(18) an das Ventilatormotor-Auflagerteil (120) angesetzt ist, ein innerer Teil der
aus dem Ventilatormotor (18) herausragenden Motorwelle (181) am Wellen-Durchstoßloch
(115) positioniert ist.
3. Innenraumeinheit der Klimaanlage nach Anspruch 1, wobei ein mit dem Ventilator (17)
gekoppelter Teil der Motorwelle (181) einen in einer nicht kreisförmigen Form ausgebildeten
Querschnitt aufweist, und ein Wellen-Kopplungsloch (176), das mit der Motorwelle gekoppelt
ist, und mit einem Querschnitt in einer der Motorwelle (181) entsprechenden Form,
im Ventilator (17) ausgebildet ist.
4. Innenraumeinheit der Klimaanlage nach Anspruch 1, weiterhin aufweisend einen Ventilatormotor-Deckel
(19), der den Ventilatormotor (18) abdeckt,
wobei am Ventilatormotor-Deckel (19) ein Eingriffshaken (196) ausgebildet ist und
ein Einhängeteil, in das der Eingriffshaken (196) eingehängt wird, auf der anderen
Seite des Ventilator-Aufnahmeteils ausgebildet ist.
5. Innenraumeinheit der Klimaanlage nach Anspruch 1, weiterhin aufweisend einen Steuerkasten
(20), in den Steuerkomponenten zum Betrieb des Hauptkörpers (10) eingeschlossen sind,
und einen Ventilatormotor-Deckel (19), der den Ventilatormotor (8) abdeckt,
wobei in einem Zustand, in welchem der Ventilatormotor (18) an das Ventilatormotor-Auflagerteil
(120) angesetzt ist, der Ventilatormotor-Deckel (19) die Position einer Seite des
Ventilatormotors (18) fixiert und der Steuerkasten (20) die Position der anderen Seite
des Ventilatormotors (18) fixiert.
6. Innenraumeinheit der Klimaanlage nach Anspruch 5, wobei ein erstes Abdeckteil (192),
das eine Seite des an das erste Trägerteil (122) angesetzten Ventilatormotors (18)
abdeckt, im Ventilatormotor-Deckel (19) eingeschlossen ist, und ein zweites Abdeckteil
(212), das die andere Seite des an das zweite Trägerteil (123) angesetzten Ventilatormotors
abdeckt, im Steuerkasten (20) eingeschlossen ist.
7. Innenraumeinheit der Klimaanlage nach Anspruch 5, wobei der Einsetzrahmen (11) ein
Steuerkasten-Aufnahmeteil (130) aufweist, und das zweite Trägerteil (123) von dem
Steuerkasten-Aufnahmeteil (13) aus nach vorne ragt.
8. Innenraumeinheit der Klimaanlage nach Anspruch 5, wobei, nachdem der Ventilatormotor-Deckel
(19) zuerst den Ventilatormotor (18) abdeckt, der Steuerkasten (20) den Ventilatormotor
(19) abdeckt, und der Ventilatormotor-Deckel (19) und der Steuerkasten (20) mit dem
Einsetzrahmen (11) über ein einziges Eingriffselement im Eingriff sind.
9. Innenraumeinheit der Klimaanlage nach Anspruch 5, wobei ein Eingriffshaken (196) an
einem des Ventilatormotor-Deckels (19) und des Steuerkastens (20) gebildet ist und
ein Hakenaufhänger, mit dem der Eingriffshaken (196) gekoppelt ist, an dem anderen
gebildet ist.
1. Unité intérieure d'un climatiseur, comprenant :
un corps principal (10) qui comporte un châssis (11) et un cadre avant (14) couplé
au châssis (11) ; un ventilateur (17) qui est prévu à l'intérieur du corps principal
(10) pour faire circuler l'air de manière forcée ; un moteur de ventilateur (18) qui
fait tourner le ventilateur (17) ; une partie de réception de ventilateur qui reçoit
une partie du ventilateur, la partie de réception de ventilateur étant formée sur
le châssis (11) ; et une partie de siège de moteur de ventilateur (120) sur laquelle
le moteur de ventilateur (18) est placé, le moteur de ventilateur (17) étant formé
sur le châssis (11) ; une rainure de réception (112a) qui reçoit la partie du ventilateur
est formée sur un côté de la partie de réception de ventilateur et la partie de siège
de moteur de ventilateur (120) est formée sur l'autre côté de la partie de réception
de ventilateur,
dans laquelle la partie de siège de moteur de ventilateur (120) comporte une première
partie de support (122) qui supporte un côté du moteur de ventilateur (18), une deuxième
partie de support (123) qui supporte l'autre côté du moteur de ventilateur (18), et
un espace de réception de moteur (121) formé entre la première partie de support (122)
et la deuxième partie de support (123),
caractérisée en ce que :
la première partie de support (122) est formée d'un seul tenant avec l'autre côté
de la partie de réception de ventilateur,
dans laquelle un trou de pénétration d'arbre (115) à travers lequel pénètre un arbre
de moteur (181) du moteur de ventilateur (18) est formé sur la partie de réception
de ventilateur, le trou de pénétration d'arbre (115) ayant une section transversale
verticale se présentant sous forme non circulaire, et
dans laquelle le trou de pénétration d'arbre (115) comporte un premier trou (115a)
formé dans la partie centrale de la partie de réception de ventilateur et un deuxième
trou (115b) qui s'étend vers l'extérieur à partir du premier trou (115a).
2. Unité intérieure du climatiseur selon la revendication 1, dans laquelle, lorsque le
moteur de ventilateur (18) est placé sur la partie de siège de moteur de ventilateur
(120), une partie interne de l'arbre de moteur (181) faisant saillie à partir du moteur
de ventilateur (18) est positionnée au niveau du trou de pénétration d'arbre (115).
3. Unité intérieure du climatiseur selon la revendication 1, dans laquelle une partie
couplée au ventilateur (17), de l'arbre de moteur (181), a une section transversale
se présentant sous forme non circulaire, et un trou de couplage d'arbre (176) couplé
à l'arbre de moteur d'arbre et ayant une section transversale présentant une forme
correspondant à l'arbre de moteur (181) est formé dans le ventilateur (17).
4. Unité intérieure du climatiseur selon la revendication 1, comprenant en outre un capot
de moteur de ventilateur (19) qui couvre le moteur de ventilateur (18),
dans laquelle un crochet d'enclenchement (196) est formé au niveau du capot de moteur
de ventilateur (19) et une partie de suspension par laquelle le crochet d'enclenchement
(196) est suspendu est formée sur l'autre côté de la partie de réception de ventilateur.
5. Unité intérieure du climatiseur selon la revendication 1, comprenant en outre une
boîte de commande (20) dans laquelle sont inclus des composants de commande pour faire
fonctionner le corps principal (10), et un capot de moteur de ventilateur (19) qui
couvre le moteur de ventilateur (8),
dans laquelle, dans un état où le moteur de ventilateur (18) est placé sur la partie
de siège de moteur de ventilateur (120), le capot de moteur de ventilateur (19) fixe
la position d'un côté du moteur de ventilateur (18) et la boîte de commande (20) fixe
la position de l'autre côté du moteur de ventilateur (18).
6. Unité intérieure du climatiseur selon la revendication 5, dans laquelle une première
partie de recouvrement (192) qui couvre un côté du moteur de ventilateur (18) placé
sur la première partie de support (122) est incluse dans le capot de moteur de ventilateur
(19), et une deuxième partie de recouvrement (212) qui couvre l'autre côté du moteur
de ventilateur placé sur la deuxième partie de support (123) est incluse dans la boîte
de commande (20).
7. Unité intérieure du climatiseur selon la revendication 5, dans laquelle le châssis
(11) comporte une partie de siège de boîte de commande (130), et la deuxième partie
de support (123) fait saillie en avant à partir de la partie de siège de boîte de
commande (130).
8. Unité intérieure du climatiseur selon la revendication 5, dans laquelle, après que
le capot de moteur de ventilateur (19) couvre d'abord le moteur de ventilateur (18),
la boîte de commande (20) couvre le moteur de ventilateur (19), et le capot de moteur
de ventilateur (19) et la boîte de commande (20) sont engagés avec le châssis (11)
par un seul élément d'enclenchement.
9. Unité intérieure du climatiseur selon la revendication 5, dans laquelle un crochet
d'enclenchement (196) est formé sur l'un(e) quelconque parmi le capot de moteur de
ventilateur (19) et la boîte de commande (20) et un crochet de suspension auquel le
crochet d'enclenchement (196) est couplé est formé sue l'autre.