Technical Field
[0001] The present invention relates to an air-conditioner, and more particularly to an
air-conditioner for displaying a variety of avatars (i.e., avatar images).
Background Art
[0002] Generally, an air-conditioner is arranged at any indoor space or wall of an office
or household, and acts as a heating/cooling device for heating/cooling room air. The
air-conditioner includes a compressor, a condenser, an expansion valve, and an evaporator,
such that it configures a cooling cycle. In this case, the compressor, the condenser,
the expansion valve, and the evaporator are sequentially connected.
[0003] Specifically, the air-conditioner includes an outdoor unit (i.e., an outdoor or heat-radiation
side) arranged outdoors and an indoor unit (i.e., an indoor or heat-absorbing side)
arranged indoors. The outdoor unit includes a condenser (i.e., an outdoor heat-exchanger)
and a compressor. The indoor unit includes an evaporator (i.e., an indoor heat-exchanger).
[0004] As well known to those skilled in the art, the air-conditioner is generally classified
into a separation-type air-conditioner wherein an indoor unit and an outdoor unit
are installed separately from each other, and an integration-type air-conditioner
wherein an indoor unit and an outdoor unit are integrated in one unit.
[0005] FIG. 1 shows the appearance of an indoor unit for use in a conventional separation-type
air-conditioner.
[0006] Referring to FIG. 1, the separation-type air-conditioner is divided into an indoor
unit 10 and an outdoor unit (not shown), and includes a refrigerant pipe (not shown)
located between the indoor unit 10 and the outdoor unit.
[0007] Lateral- and back- appearances of the indoor unit 10 are formed by a cabinet 20 configured
in the form of a vertically-elongated shape. A base 22 is located under the cabinet
20, and a front panel 24 forming a front frame of the indoor unit 10 is located on
the top of the base 22.
[0008] A display 30 for displaying operation states of the air-conditioner is located at
the center part of the front panel 24. A button unit 32 composed of a variety of buttons
for operating the air-conditioner is located at a lateral surface of the display 30.
[0009] The display 30 is generally comprised of Light Emitting Diodes (LEDs). Therefore,
the display 30 is switched on when the air-conditioner is powered on, such that it
displays operation states of the air-conditioner. If the air-conditioner is powered
off, the display 30 is switched off.
[0010] In more detail, the display 30 displays the direction of the wind and strength/ weakness
degrees of the wind as shown in FIG. 1. In addition, the display 30 displays a room
temperature and a desired temperature. In other words, the display 30 externally displays
air-conditioner state information established by a user using the LEDs.
Disclosure of Invention
Technical Problem
[0011] However, the above-mentioned conventional air-conditioner has the following problems.
[0012] The display 30 switches on or off a screen image composed of LEDs, such that it can
statically display a current temperature or operation state. Therefore, a user has
difficulty in recognizing an air-conditioning state or air-cleaning state of the air-
conditioner, such that the conventional air-conditioner is unable to provide the user
with information other than the air-conditioner state information or additional functions.
Technical Solution
[0013] Accordingly, the present invention is directed to an air-conditioner that addresses
one or more problems due to limitations and disadvantages of the related art.
[0014] It would be desirable to provide an air- conditioner for implementing a variety of
avatars.
[0015] It would also be desirable to provide an air- conditioner for displaying a variety
of images (i.e., avatars) according to operation states (i.e., operation modes) of
the air-conditioner.
[0016] It would also be desirable to provide an air- conditioner equipped with a variety
of additional functions.
[0017] The present invention provides an air-conditioner as set out in claim 1. Preferably,
the air-conditioner comprises: a standby mode performed before an air-conditioning
function begins; an operation mode for indicating that the air-conditioning function
is in progress; and a function selection mode for allowing a user to select a variety
of functions.
[0018] Preferably, the air-conditioner further comprises: a mode conversion stage for controlling
any one of the standby mode and the operation mode to be displayed.
[0019] Preferably, the mode conversion stage is executed between the standby mode and the
operation mode which are sequentially performed by a power-on signal and a power-off
signal of the air-conditioner.
[0020] Preferably, the air-conditioner further comprises: a screen-saving mode for executing
a screen-saver program according to a user selection signal.
[0021] Preferably, the air-conditioner further comprises: a pop-up function for indicating
the occurrence of new information or an input state of a user selection signal.
[0022] Preferably, the user writes a desired memo, such the content data of the memo is
displayed on a screen.
[0023] Preferably, the standby mode includes: a screen-off mode for displaying no image
on a screen; a clock mode for displaying a current time; a screen-saving mode for
executing a screen-saver program; and a user setup mode for displaying an image established
by a user.
[0024] Preferably, the operation mode includes: a real-operation mode for displaying an
actual-object image (i.e., a real photo); a user operation mode for displaying a user-
selected image or a user-selected moving image; and a character operation mode for
displaying a character.
[0025] Preferably, the function selection mode includes: an operation/additional function
for establishing an operation state and additional functions of the air-conditioner;
an album function for storing/editing a variety of photo-images; and a manual function
for displaying a manual in which usages of the air-conditioner or individual additional
functions are recorded.
[0026] In an embodiment of the present invention, there is provided an air-conditioner comprising:
a display for displaying an avatar image; and a display controller for controlling
the display controller, wherein the display sequentially implements a standby mode
for waiting for an input of a power-on signal executing an air- conditioning function
and an operation mode for displaying a pre-established image when the air-conditioning
function is in progress, and further includes a mode conversion step located between
the standby mode and the operation mode so as to display any one of the standby mode
and the operation mode according to a power-on signal and a power-off signal.
[0027] Preferably, the standby mode includes: a screen-off mode for displaying no image
on a screen; a clock mode for displaying a current time; a screen-saving mode for
executing a screen-saver program; and a user setup mode for displaying an image established
by a user.
[0028] Preferably, the operation mode includes: a real-operation mode for displaying an
actual-object image (i.e., a real photo); a user operation mode for displaying a user-
selected image or a user-selected moving image; and a character operation mode for
displaying a character.
[0029] In a further embodiment of the present invention, there is provided an air-conditioner
comprising: a standby mode for waiting for an input of a power-on signal executing
an air-conditioning function; an operation mode for displaying a pre-established image
when the air-conditioning function is in progress; and a function selection mode for
allowing a user to select/establish a variety of functions, wherein the standby mode
and the operation mode are sequentially executed, and a mode conversion step is arranged
between the standby mode and the operation mode so as to display any one of the standby
mode and the operation mode according to a power-on signal and a power-off signal
of the air-conditioner.
[0030] Preferably, the standby mode includes: a screen-off mode for displaying no image
on a screen; a clock mode for displaying a current time; a screen-saving mode for
executing a screen-saver program; and a user setup mode for displaying an image established
by a user.
[0031] Preferably, the operation mode includes: a real-operation mode for displaying an
actual-object image (i.e., a real photo); a user operation mode for displaying a user-
selected image or a user-selected moving image; and a character operation mode for
displaying a character.
[0032] Preferably, the function selection mode includes: an operation/additional function
for establishing an operation state and additional functions of the air-conditioner;
an album function for storing/editing a variety of photo-images; and a manual function
for displaying a manual in which usages of the air-conditioner or individual additional
functions are recorded.
[0033] In a further embodiment of the present invention, there is provided an air-conditioner
comprising: a standby mode for displaying a standby state before an air-conditioning
function begins; an operation mode for indicating that the air-conditioning function
is in progress; a function selection mode for allowing a user to select a variety
of functions; and a screen-saving mode for executing a screen-saver program on a display
capable of executing the standby mode, the operation mode, and the function selection
mode.
[0034] Preferably, the screen-saving mode is established/executed by a user.
[0035] Preferably, the screen-saving mode is established by a screen-saver setup process.
[0036] Preferably, the screen-saver setup process includes: an image setup process for selecting
an image to be displayed; and a time setup process for selecting a specific time at
which the execution of a screen-saver begins.
[0037] Preferably, the image setup process selects at least one image from among a plurality
of images which have been stored in a memory or downloaded from an external part.
[0038] Preferably, the screen-saver setup process includes a "Preview" function for allowing
the user to preview an execution state of the established screen-saver.
[0039] Preferably, the time setup process establishes a time interval from a start time
at which the last external signal (key) is received to an end time at which the screen-saver
starts operation.
[0040] Preferably, the screen-saving mode is operated when no signal (key) is received from
an external part during a predetermined time while the operation mode or the function
selection mode is executed, or stops operation when a signal (or key) is received
from the external part during the predetermined time.
[0041] Preferably, the screen-saving mode continuously displays a single image, displays
a plurality of images in the form of a slideshow, sequentially or randomly displaying
a plurality of images at intervals of a predetermined time, displays a moving image,
or maintains a power-off state of the display such that no data is displayed on the
display.
[0042] In a further embodiment of the present invention, there is provided an air-conditioner
comprising: a controller for operating overall operations and individual functions
of the air-conditioner; a display for displaying a variety of images according to
a command of the controller; and an input unit for receiving an external signal, wherein
the display executes a screen-saving mode equipped with a screen-saving function thereon.
[0043] Preferably, the input unit is indicative of a button unit via which a user enters
a key input signal or a remote-controller for receiving a remote-control signal from
a user.
[0044] Preferably, if no external signal(key) is received during a predetermined time established
by the input unit, the screen-saving mode begins.
[0045] Preferably, if the external signal(key) is received via the input unit, the screen-
saving mode stops operation.
[0046] In a further embodiment of the present invention, there is provided an air-conditioner
comprising: a controller for operating overall operations and individual functions
of the air-conditioner; an input unit for receiving an external signal; a display
for displaying a variety of images according to a command of the controller, and implementing
a pop-up function displaying state information of the air-conditioner.
[0047] Preferably, the pop-up function selectively displays individual pop-up windows on
the display, wherein the pop-up windows display operation states of the air-conditioner
or signal input states via the input unit.
[0048] Preferably, the input unit is indicative of a button unit via which a user enters
a key input signal or a remote-controller for receiving a remote-control signal from
a user.
[0049] Preferably, the pop-up windows includes: an error pop-up window for indicating an
erroneous state while the air-conditioner is operated; a wind-direction control pop-up
window displayed when a wind-direction control signal for adjusting a wind direction
is received; a volume control pop-up window displayed when a signal for adjusting
the volume of sound is received; a temperature control pop-up window displayed when
a signal for adjusting a desired temperature is received; a wind- volume control pop-up
window displayed when a signal for adjusting the volume of wind is received; and a
hard-lock pop-up window displayed when a key locking/releasing function is established
or a key locking function is displayed.
[0050] Preferably, the error pop-up window displays a corresponding indication number corresponding
to a predetermined error item when a specific condition matched with the predetermined
error item occurs.
[0051] Preferably, the wind-direction control pop-up window includes: an up/down control
pop-up window displayed when a signal for controlling up/down directions of the wind
vertically is received; and a left/right control pop-up window displayed when a signal
for controlling left/right directions of the wind is received.
[0052] Preferably, the up/down control pop-up window is displayed when an upper vane contained
in the indoor unit to adjust a direction of the air generated from the indoor unit
is vertically rotated.
[0053] Preferably, the left/right control pop-up window is displayed when a lateral vane
contained in the indoor unit to adjust a direction of the air generated from the indoor
unit is horizontally rotated.
[0054] Preferably, the pop-up window closes a previous pop-up window when a plurality of
signals are repeatedly received, and displays a final pop-up window.
[0055] Preferably, if the previous pop-up window is the error pop-up window indicating an
error state, other pop-up window (i.e., the last pop-up window) is displayed, and
then returns to the error pop-up window after the lapse of a predetermined time.
[0056] In a further embodiment of the present invention, provided herein is an air-conditioner
comprising: a main body of the air-conditioner; an input unit for allowing a user
to enter memo content in a memo- writing mode according to an operation control command
of the air-conditioner or a user selection signal; and a display unit for displaying
operation states of the air-conditioner, and displaying memo content entered by a
user.
[0057] Preferably, the input unit is a remote-controller which includes at least one button
and wirelessly transmits/receives signals to/from the air-conditioner.
[0058] Preferably, the input unit is a touch-screen which is contained in the display unit
and receives a control command or memo from the user brought in contact with the touch-screen.
[0059] Preferably, the main body of the air-conditioner further includes a sound output
unit for outputting different sounds according to operation state or memo content
data.
[0060] Preferably, the display unit includes: a display input unit for receiving the control
command or memo from the user; a display for displaying the operation state or memo
content of the air-conditioner; and a display controller for communicating with a
main microprocessor contained in the main body, and controlling the operation state
or memo content to be selectively displayed according to a selected mode.
[0061] Preferably, the display further includes an avatar image unit for displaying an avatar
or moving image stored in a memory.
[0062] Preferably, the display input unit is configured in the form of a touch-screen via
which the user can enter a desired control command or memo, and is integrated with
the display as one unit.
[0063] Preferably, the memo content is checked by a first process wherein a password is
entered, and a second process wherein corresponding memo content is displayed only
when the password is authenticated.
[0064] Preferably, if the password authentication is completed, a memo deletion process
in which the checked memo content can be deleted is executed.
[0065] Preferably, the display unit recognizes memo content entered by a touch-screen as
an image and stores the recognized image, or converts the image indicating the entered
memo content into text data and stores the text data.
[0066] Preferably, the memo-writing mode assigns a password to the memo content, and stores
the memo content equipped with the password.
[0067] Preferably, the memo-writing mode displays new memo content during a predetermined
time.
Advantageous Effects
[0068] The air-conditioner according to the present invention can allow a user to easily
recognize air-conditioning state information, indoor environment information, and
other information, and can also allow the user to use a variety of additional functions
as well as the principal functions such as the air-conditioning function.
[0069] The air-conditioner according to the present invention allows a display window to
selectively display individual display modes according to states of the air-conditioner.
[0070] Therefore, the user can feel close to the above-mentioned air-conditioner, and can
visually and audibly recognize a current operation state of the air-conditioner or
a current indoor air state at the same time.
[0071] If the air-conditioner does not receive an external input signal during a predetermined
period of time, the display is switched to a screen-saving mode. Therefore, the display
is protected from danger and harm, resulting in an increased lifetime of the display
and reduction of power consumption.
[0072] In addition, the user can freely determine whether to execute the screen-saving mode,
and can also determine an execution image, and an execution time, resulting in greater
convenience of the user.
[0073] Further, the air-conditioner according to the present invention includes a pop-up
function for indicating an operation state of the air-conditioner and an external
signal input state, such that the user can easily recognize whether an unexpected
error occurs in the air-conditioner, and can also recognize the external signal input
state using the pop-up function.
[0074] The air-conditioner according to the present invention further includes a memorandum
function (i.e., a memo function) in the display, such that the user can easily recognize
the presence or absence of a new memo message via a pop-up window indicating the presence
or absence of memo data.
[0075] Moreover, the air-conditioner can allow the user to easily enter/delete/edit the
memo data, and the user can establish a desired password required for confirming the
memo data, resulting in the implementation of the memo data security.
Brief Description of the Drawings
[0076] The accompanying drawings, which are included to provide a further understanding
of the invention, illustrate embodiments of the invention and together with the description
serve to explain the principle of the invention.
[0077] In the drawings:
FIG. 1 is a perspective view illustrating an indoor unit of a conventional separation-type
air-conditioner;
FIG. 2 shows the appearance of an indoor unit of an air-conditioner according to the
present invention;
FIG. 3 is a perspective view illustrating an open state of a front panel of an indoor
unit of the air-conditioner according to the present invention;
FIG. 4 is a front view illustrating a detailed configuration of a button unit mounted
to a front panel of an indoor unit of the air-conditioner according to the present
invention;
FIG. 5 is a block diagram illustrating a control system of the air-conditioner according
to the present invention;
FIG. 6 shows a variety of display modes displayed on a display window in accordance
with a preferred embodiment of the present invention;
FIG. 7 shows a display state of a clock mode implemented on a display window of the
air-conditioner according to the present invention;
FIG. 8 shows a display state of a single still image displayed on a display of the
air-conditioner according to the present invention;
FIG. 9 shows a display state of slideshows displayed on a display of the air-conditioner
according to the present invention;
FIG. 10 shows a display state of moving-images displayed on a display of the air-conditioner
according to the present invention;
FIG. 11 shows an image-setup process of a screen-saving mode displayed on a display
of the air-conditioner according to the present invention;
FIG. 12 shows operation states illustrating the setup images of FIG. 11 displayed
by a preview mode according to the present invention;
FIG. 13 shows operation states of a time-setup process of a screen-saving mode displayed
on a display of the air-conditioner according to the present invention;
FIG. 14 shows operation states of a character operation mode displayed on a display
of the air-conditioner according to the present invention;
FIG. 15 shows operations of an operation function from among a variety of function
selection modes of the air-conditioner according to the present invention;
FIG. 16 shows a setup state of an additional function from among a variety of function
selection modes of the air-conditioner according to the present invention;
FIG. 17 shows a reservation setup state of the air-conditioner according to the present
invention;
FIG. 18 shows an information-window display state during a reservation setup mode
of the air-conditioner according to the present invention;
FIG. 19 shows operation states of an album function from among a variety of function
selection modes of the air-conditioner according to the present invention;
FIG. 20 shows a variety of display menus during an environment setup mode of the air-conditioner
according to the present invention;
FIG. 21 shows an environment setup execution process of an album function of the air-conditioner
according to the present invention;
FIG. 22 shows an error pop-up window displayed on a display window of the air-conditioner
in accordance with a preferred embodiment of the present invention;
FIG. 23 shows error items and display numbers acquired when an error pop-up window
is displayed on a display window of the air-conditioner in accordance with a preferred
embodiment of the present invention;
FIG. 24 shows an up/down control pop-up window displayed on a display window of the
air-conditioner to control a window direction in accordance with a preferred embodiment
of the present invention;
FIG. 25 shows a left/right control pop-up window displayed on a display window of
the air-conditioner to control a window direction in accordance with a preferred embodiment
of the present invention;
FIG. 26 shows a volume control pop-up window displayed on a display window of the
air-conditioner in accordance with a preferred embodiment of the present invention;
FIG. 27 shows a temperature control pop-up window displayed on a display window of
the air-conditioner in accordance with a preferred embodiment of the present invention;
FIG. 28 shows a wind-volume control pop-up window displayed on a display window in
accordance with a preferred embodiment of the present invention;
FIG. 29 is a block diagram illustrating a remote-controller of the air-conditioner
according to the present invention;
FIG. 30 shows operation states of a display for displaying a new memo notification
state of the air-conditioner according to the present invention;
FIG. 31 shows an exemplary screen image for allowing a user to select an additional
function to execute a memo function of the air-conditioner according to the present
invention;
FIG. 32 shows operation states of a memo window displayed when text conversion for
entering a new memo message in the air-conditioner is executed according to the present
invention;
FIG. 33 shows operation states of an image recognition process when a new memo message
is received in the air-conditioner according to the present invention;
FIG. 34 shows an exemplary image formed when a memo list of the air-conditioner is
displayed according to the present invention;
FIGS. 35~36 are a flow chart illustrating a method for controlling a display of the
air-conditioner according to the present invention;
FIG. 37 is a flow chart illustrating a detailed execution process of a standby mode
shown in FIG. 35 according to the present invention;
FIG. 38 is a flow chart illustrating a detailed execution process of an operation
mode shown in FIG. 35 according to the present invention;
FIG. 39 is a flow chart illustrating a method for establishing a function selection
mode shown in FIG. 36 according to the present invention;
FIG. 40 is a flow chart illustrating a detailed setup process of an album function
shown in FIG. 39 according to the present invention;
FIG. 41 is a flow chart illustrating a method for executing a screen-saving mode of
the air-conditioner according to the present invention; and
FIG. 42 is a flow chart illustrating a method for executing a memo-writing mode or
a memo-check mode of the air-conditioner according to the present invention.
Best Mode for Carrying Out the Invention
[0078] Reference will now be made in detail to the preferred embodiments of the present
invention, examples of which are illustrated in the accompanying drawings.
[0079] FIG. 2 shows the appearance of an indoor unit of an air-conditioner according to
the present invention.
[0080] Referring to FIG. 2, the air-conditioner includes an indoor unit 100 and an outdoor
unit (not shown). A front panel 110 is located at the front of the indoor unit 100.
The front panel 110 is configured in the form of a vertically-elongated shape, such
that it acts as a front frame of the indoor unit 100.
[0081] A hinge 112 is located at right upper/lower ends of the front panel 110, such that
it serves as a rotation center of the front panel 110. Therefore, the front panel
110 rotates in a counterclockwise direction on the basis of a right end of the front
panel 110, such that it can be opened from the indoor unit 100.
[0082] A display window 120 is located at the center of an upper part of the front panel
110. The display window 120 displays at least one avatar. Preferably, the display
window 120 may be implemented with a Liquid Crystal Display (LCD), etc.
[0083] A button unit 130 is located under the display window 120. The button unit 130 includes
a plurality of operation buttons such as a power-supply button, such that a user can
easily adjust a variety of operations of the air-conditioner.
[0084] A remote-controller receiver 140 is located under the button unit 130. The remote-controller
receiver 140 receives signals from the remote-controller.
[0085] FIG. 3 is a perspective view illustrating an open state of the front panel 110 of
the indoor unit 100 of the air-conditioner. As can be seen from FIG. 3, the front
panel 110 rotates around an axis of the hinge 112, such that it is opened from the
indoor unit.
[0086] A display unit 150 is located at a back surface of the front panel 110. The display
unit 150 includes a display controller for controlling display states of a variety
of avatars displayed on the display window 120, etc.
[0087] The display unit 150 further includes a Universal Serial Bus (USB) mounting unit
152. A USB memory 160 is selectively mounted to the USB mounting unit 152. Therefore,
the display unit 150 can easily receive external data via the USB memory 160.
[0088] Needless to say, data can be downloaded from the USB memory 160 or a variety of mobile
recording mediums, or can also be transmitted to a destination via the USB memory
160 or the mobile recording mediums. Likewise, the display unit 150 may download data
via the Internet if required.
[0089] In the meantime, an air-cleaning unit 170 for filtering impurities or alien substances
from the air so as to clean the air is located at an inner lower part of the indoor
unit 100. A plurality of filters are located at the air-cleaning unit 170, such that
a variety of impurities (e.g., dust or unpleasant odorous particles, etc.) are filtered
by the filters of the air-cleaning unit 170.
[0090] A plurality of components (e.g., a heat-exchanger) (not shown) for air-conditioning
functions (e.g., a cooling function and a heating function) are contained in the indoor
unit 100. Functions and configurations of the above-mentioned components are well
known to those skilled in the art, such that it will herein be omitted for the convenience
of description.
[0091] FIG. 4 is a front view illustrating a detailed configuration of a button unit mounted
to a front panel of an indoor unit of the air-conditioner according to the present
invention.
[0092] A detailed configuration of the button unit 130 is depicted in FIG. 4. Individual
keys contained in the button unit 130 may be implemented in various ways, for example,
a press-button scheme or a touch-screen scheme, etc.
[0093] An operation/stop button 132 is located at the center of the button unit 130.
[0094] The operation/stop key 132 is adapted to perform or stop an air-conditioning function
of the air-conditioner. In more detail, the operation/stop key 132 is used as a key
for powering on the air-conditioner when the air-conditioning function of the air-conditioner
has stopped its operation. The operation/stop key 132 is used as a key for powering
off the air-conditioner when the air-conditioning function of the air-conditioner
is being performed.
[0095] The air-conditioner according to the present invention further includes an additional
function such as an air-conditioning function. Generally, the air-conditioner mainly
performs the air-conditioning function to cool/heat room air via a heat-exchanging
operation. A first case in which the air-conditioning function of the air-conditioner
is executed is called an "Operation". A second case in which the air-conditioning
function of the air-conditioner is not executed is called a "Stop".
[0096] Two temperature keys 134 are located above or below the operation/stop key 132.
[0097] Each temperature key 134 acts as a button for setting a temperature state. The upper
temperature button acts as a button for increasing a temperature, and the lower temperature
button acts as a button for reducing the temperature.
[0098] The temperature key 134 is not operated while the air-conditioner has stopped its
operation. Specifically, the temperature key 134 is used as a key for increasing/
reducing the temperature during an operation mode (e.g., a character operation mode),
but it should be noted that the temperature key 134 is used as an up/down movement
key during a specific function selection mode (e.g., an album function).
[0099] In the meantime, two volume keys 135 are located at right and left sides of the operation/stop
key 132, respectively, and adjust the volume of sound. In other words, the volume
keys 135 adjust the volume of sound outputted via a speaker (not shown) contained
in the indoor unit 100 of the air-conditioner. The left volume key 135 acts as a button
for reducing the volume of sound, and the right volume key 135 acts as a button for
increasing the volume of sound. The volume key 135 also acts as a right/left movement
key such as the temperature key 134.
[0100] A wind-volume key 136 is located at a left lower end of the button unit 130. The
wind-volume key 136 is used as a key for setting the volume of wind generated from
the air-conditioner. The wind-volume key 136 is operated only when the air-conditioner
is operated, and is not operated when the air-conditioner has stopped its operation.
[0101] A plasma key 137 is located at a right lower end of the button unit 130. The plasma
key 137 is used as a key for operating the air-cleaning unit 170 contained in the
air-conditioner. The plasma key 137 is designed to be operated during an operation
mode or stop mode of the air-conditioner.
[0102] Therefore, the air-cleaning unit 170 performs the air-conditioning function of the
air-conditioner, and at the same time cleans air. Also, the air-cleaning unit 170
can operate alone even though the air-conditioner is in the stop mode, such that it
cleans room air.
[0103] A left key 138 is located at a left upper end of the button unit 130, and a right
key 139 is located at a right upper end of the button unit 130.
[0104] If the air-conditioner is in the stop mode, the left key 138 and the right key 139
are not operated. If the air-conditioner is in the operation mode, the left key 138
and the right key 139 are adapted to select a variety of menus from among the following
function selection modes.
[0105] FIG. 5 is a block diagram illustrating a control system of the air-conditioner according
to the present invention.
[0106] Referring to FIG. 5, the control system includes a main microprocessor 200 and a
display controller 250, such that it controls the main microprocessor 200 to communicate
with the display controller 250. The above-mentioned control system shown in FIG.
5 is disclosed for only illustrative purposes, and it may not include the display
controller if required.
[0107] As can be seen from FIG. 5, the control system for use in the air-conditioner includes
the main microprocessor 200 for controlling overall operations of the air-conditioner.
A variety of electronic components are connected to the main microprocessor 200, such
that the main microprocessor 200 can receive/transmit variety of data from/to the
electronic components.
[0108] In more detail, the main microprocessor 200 includes a main memory 202. The main
memory 202 is used as a storage medium basically mounted to the air-conditioner, such
that it stores variety of data.
[0109] The main microprocessor 200 is connected to a main input unit 210, a sensor unit
212, a receiver 214, an indoor-unit motor 216, an outdoor-unit motor 218, and a compressor
220, etc.
[0110] The main input unit 210 allows a user to enter an operation signal of the air-conditioner
via the button unit 130. The input signal received via the main input unit 210 is
transmitted to the main microprocessor 200.
[0111] The sensor unit 212 includes a plurality of sensors mounted to the air-conditioner,
for example, a temperature sensor, a moisture sensor, a dust sensor, and a gas sensor,
etc. Accordingly, the sensor unit 212 measures an air state and an air-pollution level,
such that the measurement values detected by the sensor unit 212 are transmitted to
the main microprocessor 200.
[0112] The receiver 214 receives an external signal in the same manner as in the remote-controller
receiver 140. A signal received in the receiver 214 is also transmitted to the main
microprocessor 200. Needless to say, the receiver 214 may also be designed to receive
wireless communication data (or signal) from a computer (or the Internet).
[0113] The indoor-unit motor 216 is contained in the indoor unit 100 of the air-conditioner,
and rotates a fan. The indoor-unit motor 216 is operated by a signal received from
the main microprocessor 200. For example, if the main input unit 210 transmits an
input signal of the operation/stop key 132 to the main microprocessor 200, the main
microprocessor 200 operates the indoor-unit motor 216.
[0114] The main microprocessor 200 controls a rotation speed of the indoor-unit motor 216
on the basis of an air-pollution level received from the sensor unit 212.
[0115] The compressor 220 and the outdoor-unit motor 218 are operated by the main microprocessor
200. In more detail, if a user enters the operation/stop key 132 via the main input
unit 210 in the same manner as in the indoor-unit motor 216, or if the user enters
an operation command via the remote-controller receiver 140, the main microprocessor
200 operates the compressor 220 and the outdoor-unit motor 218, etc., such that the
air-conditioner is switched from the stop mode to the operation mode.
[0116] The main microprocessor 200 is also connected to additional devices (e.g., an air-cleaning
unit 170 and a sound output unit 222, etc.).
[0117] As previously stated above, the air-cleaning unit 150 filters impurities from the
air to clean the air. The main microprocessor 200 controls operations of the air-cleaning
unit 170 upon receiving a signal from the main input unit 210. In more detail, as
described above, the air-cleaning unit 170 is operated by an input signal of the plasma
key 137 contained in the button unit 130.
[0118] The main microprocessor 200 automatically controls the degree of an air-cleaning
operation (i.e., strength or weakness of the air-cleaning function) of the air-cleaning
unit 170. In more detail, the main microprocessor 200 detects an air-pollution level
(e.g., dust or gas, etc.) measured by the sensor unit 212, and automatically adjusts
the strength or weakness of the air-cleaning function of the air-cleaning unit 170
on the basis of the detected air-pollution level.
[0119] A sound output unit 222 outputs sound or audio data, and is composed of a speaker,
etc., such that it can output variety of sounds (e.g., buzzer sound, melody sound,
or music sound, etc.) For example, if an unexpected error occurs in any components
of the air-conditioner, the sound output unit 222 outputs buzzer sound or various
melody sounds based on individual avatar images. In addition, if a music file is executed,
the sound output unit 222 may output music sounds.
[0120] The main microprocessor 200 communicates with the display controller 250 contained
in the display unit 150. Air-conditioner operation signals such as an input signal
of the operation/stop key 132 contained in the main input unit 210 are transmitted
to the main microprocessor 200, and are also transmitted to the display controller
250, such that the display controller 250 forms a display screen image suitable for
operating the air-conditioner.
[0121] Data received in the display controller 250 via a data input unit 258 may also be
transmitted to the main microprocessor 200. A signal received via a display input
unit 254 is transmitted to the main microprocessor 200, such that it outputs sound
via the sound output unit 222.
[0122] The display controller 250 is connected to a display memory 252, a display input
unit 254, a display 256, and a data input unit 258, etc.
[0123] The display memory 252 is contained in the display unit 150, and stores various data
(e.g., a photo-avatar or a character-avatar, etc.) for the display unit 150.
[0124] The display input unit 254 allows a user to enter an operation signal of the display
unit 150 via the button unit 130 or the remote-controller, etc. The display window
120 of the front panel 110 is comprised of a touch-screen, such that the user may
enter a control command by touching the display window 120.
[0125] The display 256 displays photo images, moving images, or character images according
to commands of the display controller 250.
[0126] The data input unit 258 receives data (or signals) from an external part via a mobile
storage medium such as the USB memory 160. The data input unit 258 allows the user
to enter a photo or image to be displayed on the display window 120 or a music file
(including an MP3 file) to be outputted via the sound output unit 222.
[0127] FIG. 6 shows a variety of display modes displayed on a display window in accordance
with a preferred embodiment of the present invention. In more detail, a variety of
display modes displayed on the display window 120 by the display controller 250 are
exemplarily shown in FIG. 6.
[0128] Referring to FIG. 6, the display modes implemented by the display 256 include a standby
mode 300 for indicating a standby state before an air-conditioning function is executed;
an operation mode 320 for indicating current execution of the air-conditioning function;
and a function selection mode 340 for allowing a user to select a variety of functions,
etc.
[0129] Generally, the standby mode 300 includes a screen-off mode 302 for displaying no
image on a screen; a clock mode 304 for displaying a current time; a screen-saving
mode 306 for executing a screen-saver program; and a user setup mode 308 for displaying
an image established by a user. Accordingly, the standby mode 300 is designed to display
at least one of the above-mentioned modes 302, 304, 306, and 308.
[0130] In more detail, at least one of the screen-off mode 302, the clock mode 304, the
screen-saving mode 306, and the user setup mode 308 has been generally set in the
air-conditioner during a manufacturing process of the air-conditioner. However, if
the user transmits a power-supply signal to the air-conditioner, the booting of the
standby mode 300 is initially executed, such that the standby mode 300 is displayed
on the display window 120.
[0131] Needless to say, the setting information of the above-mentioned standby mode 300
may be changed to other information. In more detail, provided that the user may select
a desired mode from among the screen-off mode 302, and the clock mode 304, the screen-saving
mode 306, and the user setup mode 308, and the booting of the selected mode is executed,
the selected mode may also be displayed on the display window 120 via the display
256.
[0132] The screen-off mode 302 indicates that the display window 120 is powered off, such
that the powered-off state of the display window 120 is maintained during the screen-off
mode 302.
[0133] The clock mode 304 indicates that a current time is displayed on the display window
120 as shown in FIG. 7. Besides the current time information, the clock mode 304 further
indicates month/year information, and at the same time may indicate a measurement
value of the temperature sensor or the moisture sensor.
[0134] The screen-saving mode 306 executes a predetermined screen-saver program. In more
detail, the screen-saving mode 306 indicates that a screen saver is operated, and
is indicative of an execution mode of the screen-saver program having a screen-saving
function.
[0135] The above-mentioned screen-saving mode 306 will hereinafter be described with reference
to the annexed drawings.
[0136] FIG. 8 shows a display state of a single still image displayed on a display of the
air-conditioner according to the present invention. FIG. 9 shows a display state of
slideshows displayed on a display of the air-conditioner according to the present
invention.
[0137] FIG. 10 shows a display state of moving-images displayed on a display of the air-conditioner
according to the present invention.
[0138] The screen-saving mode 306 indicates that a variety of images are displayed on the
display 256.
[0139] For example, during the screen-saving mode 306, a single image (e.g., a photo-image
or a character (avatar) image) may also be continuously displayed on the display 256.
In other words, only a single still image shown in FIG. 8 is displayed on the display
256 during the screen-saving mode 306.
[0140] A plurality of images may be displayed on the display 256 in the form of a slideshow.
In other words, a plurality of images are sequentially displayed on the display 256,
are displayed on the display 256 at random, or are displayed on the display 256 at
intervals of a predetermined time, resulting in the implementation of a screen-saving
function.
[0141] The screen-saving mode 306 displays the moving images on the display 256 to implement
a screen-saving function. The screen-saving mode 306 may switch off the screen of
the display 256 if required. In more detail, moving images showing the flow of water
may also be displayed on the display 256, as shown in FIG. 10.
[0142] In the meantime, the user is able to select any one of the still image, the slideshow,
the moving images, and the screen-off state for the screen-saving mode 306. When the
air-conditioner is manufactured and comes into the market, it is preferable for any
one of the still image, the slideshow, the moving images, and the screen-off state
to be set by a manufacturer of the air-conditioner.
[0143] A method for establishing a screen-saver program by a user to operate the scree n-saving
mode 306 is shown in FIGS. 11~13.
[0144] FIG. 11 shows an image-setup process of a screen-saving mode displayed on a display
of the air-conditioner according to the present invention. FIG. 12 shows operation
states illustrating the setup images of FIG. 11 displayed by a preview mode according
to the present invention. FIG. 13 shows operation states of a time-setup process of
a screen-saving mode displayed on a display of the air-conditioner according to the
present invention.
[0145] The screen-saving mode 306 is established by a screen-saver setup process. The screen-saver
setup process includes an image setup process for selecting a displayed image, and
a time setup process for establishing a start time of the screen saver.
[0146] The image setup process allows the user to select at least one of several images
which are stored in a memory or downloaded from an external part.
[0147] In more detail, during the image setup process, the user selects a photo-image stored
in the display memory 252 or an image downloaded from the USB memory 160, and sets
the selected image to a screen-saving image.
[0148] Operations of the above-mentioned image setup process will hereinafter be described
with reference to FIGS. 11~12.
[0149] The user presses the right key 139 under the condition that the operation mode 320
is executed as shown in FIG. 11(a), and selects a specific function "Album". Accordingly,
a variety of menus associated with the album function are displayed as shown in FIG.
11(b), the user selects an "Album view" menu using left/right shift keys (??) as shown
in FIG. 11(c).
[0150] As a result, the image stored in the display memory 252 or the image downloaded from
the USB memory 160 is displayed as shown in FIG. 11(d).
[0151] If the user presses the left key 138 as shown in FIG. 11(e), the list of user-selectable
menus is displayed. In this case, the user selects a "Screen-Saver Setup" menu using
the up/down movement keys (▲▼).
[0152] Thereafter, if the "Screen-Saver Setup" image is displayed as shown in FIG. 11(f),
the user selects a desired photo-image using the above-mentioned movement keys (◄►▲▼).
[0153] The user selects a "Preview" menu by pressing the left key 138 as shown in FIG. 11(g),
such that the selected photo-image is set to a screen-saving image.
[0154] FIG. 12 shows a slideshow displayed when the user selects the "Preview" function.
If the user selects the "Preview" function in the above-mentioned image setup process,
[0155] FIG. 12 previews the user-established image used as a screen-saver image.
[0156] In other words, as can be seen from FIG. 12, a plurality of different photo-images
are displayed in the order of (a) (b) (c) at intervals of a predetermined time. Needless
to say, a still image or moving images may also be displayed on the display according
to a user command, instead of the above-mentioned slideshow.
[0157] FIG. 13 exemplarily shows the time setup process.
[0158] As shown in FIG. 13 (a), the user presses an "Environment Setup" menu using the four
movement keys (◄►▲▼) on the "Album" menu image, such that the "Environment Setup"
menu is selected as shown in FIG. 13 (b).
[0159] Therefore, the "Environment Setup" image is displayed as shown in FIG. 13 (c), and
the user selects the "Screen Saver" menu using the above-mentioned movement keys (◄►▲▼).
[0160] If the "Screen Saver" menu is selected, the "Screen-Saver Setup" image is displayed
as shown in FIG. 13 (d). In this case, the "Screen-Saver Setup" menu includes a plurality
of sub-menus, i.e., a "Theme Selection" menu for selecting an "Album" function and
a "Background" function, a "Size Selection" menu for selecting the size of a screen
image, a "Picture-frame selection" menu, and a "Time Setup" menu, etc.
[0161] The "Size Selection" menu includes a first menu for increasing the size of a screen
image, a second menu for controlling locating the screen image to be located at the
center part, and a third menu for cutting the screen image.
[0162] The "Picture-Frame Selection" menu can allow the user to select a variety of picture-frames
(e.g., a steel frame, a wood frame, and a butterfly-shaped frame, etc.)
[0163] The "Time Setup" menu may include a variety of time menus (i.e., an "After 1 minute"
menu, an "After 5 minutes" menu, an "After 10 minutes" menu, and an "Unused" menu,
etc.). If a predetermined time elapses at the "Time Setup" menu, the "Time Setup"
menu is switched to the "Screen Saver" mode.
[0164] Under the condition that the user selects desired menus from among the above-mentioned
menus, the user continuously presses the right key 139 as shown in FIGS. 11(e) and
11(f), such that the "Environment Setup" menu and the "Album" menu are sequentially
closed. As a result, the mode of FIG. 11(f) returns to the operation mode 320 as shown
in FIG. 11(g).
[0165] In brief, the screen-saver setup process includes a "Preview" function capable of
pre-displaying an execution state of an established screen saver. In the time setup
process, the user establishes a time interval from a start time at which the last
signal (or key) is received from an external part to an end time at which the screen
saver operation begins, and establishes the size of a screen image and a location
of the screen image, etc.
[0166] The user-setup mode 308 displays an image pre-established by the user. In other words,
the user freely pre-establishes a desired photo-image (i.e., a user's photo-image
or a user's family photo-image) or his or her character image during the user-setup
mode 308, such that the air-conditioner displays the above pre-established image upon
receiving a power-supply signal.
[0167] The operation mode 320 shows state information of an image implemented by the display
256 when the air-conditioner is operated by the operation/stop key 132 at the standby
mode 300. The operation mode 320 is classified into a real-operation mode 322, a user-operation
mode 324, and a character operation mode 326, etc.
[0168] Therefore, if the air-conditioner is operated, any one of the real-operation mode
322, the user-operation mode 324, and the character operation mode 326 contained in
the operation mode 320 is executed. In other words, any one of the user-established
modes is executed.
[0169] The real-operation mode 322 displays an actual-object image (or a real photo) pre-stored
in the main memory 202 or the display memory 252. The above-mentioned actual-object
image may be comprised of a still image or moving images.
[0170] The user operation mode 324 uploads a user-desired image or user-desired moving images
to the display memory 252. Accordingly, the user selects the uploaded image or moving
images, and the selected image or moving images are displayed on the display window
120.
[0171] The character operation mode 326 displays a pre-stored character on the display window
120. The above-mentioned character may be configured in the form of a still image
or a moving character.
[0172] FIG. 14 shows operation states of the character operation mode 326 displayed on the
display of the air-conditioner according to the present invention. As shown in FIG.
14, a skiing character is displayed on the display window 120, and it is preferable
for the skiing character to be displayed in the form of moving images.
[0173] An information window 328 for indicating states of the air-conditioner and current
indoor states is located at a lower part of the display window 120. Therefore, the
information window 328 indicates whether an air-cleaning function (i.e., a plasma
function) is executed. In this case, the air-cleaning function indicates a room temperature,
a desired temperature, and a current operation state (i.e., artificial intelligence)
of the air-conditioner.
[0174] In the meantime, the above-mentioned operation mode 320 is continuously operated
on the condition that an additional key signal for executing another command is not
applied to the air-conditioner. If the air-conditioner stops operation in the operation
mode 320, the operation mode 320 returns to the standby mode 300. In this case, the
air-conditioner may perform an automatic cleaning function 310 when returning to the
standby mode 300. However, it should be noted that the above-mentioned automatic-cleaning
function 310 can be executed on the condition that it is pre-established in the air-conditioner.
[0175] The above-mentioned operation mode 320 may also be switched to the screen-saving
mode 306 according to a user command. In other words, if the user enters no key until
reaching a predetermined time after the operation mode 320 has been executed, the
operation mode 320 is switched to the screen-saving mode 306.
[0176] If the user enters a predetermined key in the screen-saving mode 306, the screen-saving
mode is automatically terminated, and returns to the operation mode 320.
[0177] The standby mode 300 and the operation mode 320 are sequentially implemented on the
display 256. In other words, if the air-conditioner is powered on, the operation mode
320 is displayed on the display 256 after the standby mode 300 is terminated. Otherwise,
if the air-conditioner is powered off, the standby mode 300 is displayed on the display
256 after the operation mode 320 is terminated.
[0178] A mode conversion step 315 is located between the standby mode 300 and the operation
mode 320. In more detail, if a power-on signal is received from an external part during
the standby mode 300, the mode conversion step 315 controls the operation mode 320
to be displayed. If a power-off signal is received from an external part during the
operation mode 320, the mode conversion step 315 controls the standby mode 300 to
be displayed.
[0179] In other words, the mode conversion step 315 is adapted to determine whether an external
input signal is a power-on signal or power-off signal of the air-conditioner. The
power-on signal is received in the air-conditioner when the air-conditioner is powered
off. The power-off signal is received in the air-conditioner when the air-conditioner
is powered on.
[0180] For example, if the user presses the operation/stop key 132 to enter a desired command,
the air-conditioner must determine whether the desired command is a power-on signal
or a power-off signal of the air-conditioner. The operation/stop key 132 acts as a
key for powering on/off the air-conditioner.
[0181] Therefore, if the operation/stop key is pressed by the user when the air-conditioner
is powered off, the mode conversion step 315 recognizes that the above-mentioned key
signal is the power-on signal of the air-conditioner, such that the air-conditioner
starts operation.
[0182] Otherwise, if the operation/stop key is pressed by the user when the air-conditioner
is powered on, the mode conversion step 315 recognizes that the above-mentioned key
signal is the power-off signal of the air-conditioner, such that the air-conditioner
stops operation.
[0183] The function selection mode 340 allows the user to select/establish a variety of
functions of the air-conditioner.
[0184] The function selection mode 340 includes an operation/additional function 342 and
an album function 344, etc.
[0185] The operation/additional function 342 allows the user to establish an operation state
and additional functions of the air-conditioner. The album function 344 allows the
user to store/edit a variety of photo-images.
[0186] According to the operation function, the user selects state information (e.g., a
cooling or dehumidifying function) of the air-conditioner, and can adjust the volume
of wind of the air-conditioner.
[0187] Referring to FIG. 15, if the character-operation mode 326 is executed as shown in
FIG. 15(a), the user presses the left key 138, such that a current operation state
(i.e., a cooling mode) is displayed.
[0188] In this case, in order to change the operation state of the air-conditioner to a
dehumidifying mode, the user presses the left key (◄) of the volume key 135 as shown
in FIG. 15(b). Therefore, the screen on which the user can select a dehumidifying
function is displayed as shown in FIG. 15(c). In this case, the user presses the operation/stop
key 132, the dehumidifying function is selected (wherein the power-supply key is used
as the dehumidifying function selection key).
[0189] If the dehumidifying function is selected, the wind-volume selection screen is displayed
as shown in FIG. 15(d). If the user presses the operation/stop key 132 at a desired
wind-volume, the wind-volume selection is completed. The user presses the right key
139 on the screen image of FIG. 15(e), and executes a "Close" function, such that
the operation function selection is completed.
[0190] A method for establishing additional functions will hereinafter be described with
reference to FIG. 16.
[0191] Referring to FIG. 16, the user presses the right key 138 on the screen image of FIG.
16(a) illustrating the character-operation mode 326, such that a current operation
state (i.e., a cooling state) is displayed as shown in FIG. 16(b).
[0192] In this case, the user presses the right key (►) of the volume key 135 two times,
such that a screen image on which the user can establish a desired additional function
is displayed as shown in FIG. 16(c). In this case, the user presses the operation/stop
key 132 to select an additional function (wherein the power-supply key is used as
the additional function selection key).
[0193] A variety of menus executed when the additional function is selected by the user
are displayed on the FIG. 16(d). In this case, the user establishes individual menus
using four movement keys (◄►▲▼), and selects desired menus using the operation/stop
key 132 (i.e., the "Selection" key). In this case, individual functions are established
or cancelled according to a toggle scheme whenever the operation/stop key 132 is pressed
by the user.
[0194] A variety of function can be established on the screen image of FIG. 16(d). For example,
if the users presses a "Manual" icon, the screen image is converted into the manual
screen image. In this case, the user may move a desired page to other locations using
the movement keys (◄►). If the user presses the right key 139 (i.e., a "Return" key),
a current screen image returns to a previous additional function selection screen
image.
[0195] If the user presses a power-saving function, the main microprocessor 200 presses
the power-saving function command, and determines whether the power-saving function
is executed or cancelled, such that the determined result is transmitted to the display
controller 250. The display controller 250 receives the determined result, and displays
the determined result on the display window.
[0196] FIG. 17 shows a reservation setup state of the air-conditioner according to the present
invention. Referring to FIG. 17, provided that a reservation state is pre-established
at the screen image shown in FIG. 16(d), the "reservation" menu is colored dark blue.
[0197] Otherwise, if the reservation state is not established at the screen image shown
in FIG. 16(d), the user sets a reservation time on the screen image of FIG. 17, and
presses the operation/stop key 132, such that the reservation time is stored.
[0198] The reservation mode is classified into an "On-time reservation" function and an
"OFF-time reservation" function. The above-mentioned reservation functions may be
established by the button unit 130 or the remote-controller.
[0199] If the reservation function is established, specific icons are displayed on the information
window 328 as shown in FIG. 18. In more detail, a small-sized clock icon is displayed
on a right upper part of the information window 328. If the clock icon is displayed
on the information window 28, this means that the reservation function is in progress.
[0200] In the meantime, an icon 328b located at the left side of the clock icon 328a indicates
whether the outdoor unit is operated or not, such that it is called an outdoor unit
operation icon 328b. An icon 328c located at the right side of the clock icon 328a
is a plasma indication icon 328c, such that it can indicate that the air-cleaning
unit 170 is driven to clean air.
[0201] An automatic cleaning function automatically performs a cleaning operation when the
air-cleaning unit 170 is powered off. If the automatic cleaning function is selected,
an indoor fan (not shown) rotates for 1 minute to dehumidify an indoor heat-exchange
(not shown).
[0202] Besides, a "wind-direction up/down movement" function, a "wind-direction right/ left
movement" function, a "turbo-Z" function, and a "password setting" function, etc.,
are further contained in the air-conditioner. If the above-mentioned functions are
established in the air-conditioner, a corresponding signal is transmitted to the main
microprocessor 200, and is processed by the main microprocessor 200. The display 256
displays the corresponding signal on the display window 120 according to the resultant
value processed by the main microprocessor 200.
[0203] FIG. 19 shows operation states of the album function 344 from among a variety of
function selection modes 340 of the air-conditioner according to the present invention.
In more detail, FIG. 19 shows an exemplary case in which the album function 344 is
selected from among the function selection mode 340.
[0204] Referring to FIG. 19, if the user presses the right key 139 in the function selection
mode 340, the album function is selected, such that the screen image of FIG. 19(b)
is displayed. In this case, the user selects a desired menu using the above-mentioned
movement keys (◄►▲▼), and sets the selected menu by pressing the operation/stop key
132.
[0205] In this case, if an "Album View" menu is selected by the user, the screen image of
FIG. 19(c) is displayed. Therefore, a photo-image stored in the display memory 252
or the USB memory 160 is displayed. In this case, if the user presses the left key
138, the list of a plurality of menus is displayed as shown in FIG. 19(d).
[0206] The above-mentioned menus are comprised of a "Photo Retrieve" menu, a "Photo Rotate"
menu, a "Screen-Saver Setup" menu, a "Selective Deletion", and a "Total Deletion"
menu.
[0207] The "Photo Retrieve" menu is adapted to download a desired photo from an external
storage unit such as the USB memory 160, etc. The "Photo Rotate" menu is adapted to
rotate a selected photo by a predetermined angle. The rotated photo may also be stored
in the storage unit if required.
[0208] The "Screen-Saver Setup" menu is adapted to select a desired photo-image from among
a plurality of photo-images, and uses the selected photo-image as a screen-saving
image.
[0209] The "Total Deletion" menu and the "Selective Deletion" menu are adapted to delete
a desired photo-image from the stored photo-images. If the "Total Deletion" is selected,
all the stored photo-images are deleted at a time. If the "Selective Deletion" is
selected, some of the stored photo-images can be selectively deleted.
[0210] FIG. 20 shows a variety of display menus during an environment setup mode of the
air-conditioner according to the present invention.
[0211] Referring to FIG. 20, the environment setup menu is designed to be selected by the
screen image of the album function 344.
[0212] Referring to FIG. 21 (a), the user presses the right key 139 in the function selection
mode 340, selects the album function 344, and selects the "Environment Setup" menu
using the movement keys (◄,►), such that individual menus for the environment setup
process are displayed.
[0213] As shown in FIG. 20, the above-mentioned "Environment Setup" menu largely includes
a screen saver mode, an operation mode, a date/time setup mode, an alarm setup mode,
a stop mode setup, a sound effect setup/brightness setup menu, etc.
[0214] The "Screen-Saver" menu includes a plurality of sub-menus, i.e., a "Theme Selection"
menu for selecting an "Album" function and a "Background" function, a "Size Selection"
menu for selecting the size of a screen image, a "Picture-frame selection" menu, and
a "Time Setup" menu, etc.
[0215] The "Size Selection" menu includes a first menu for increasing the size of a screen
image, a second menu for controlling locating the screen image to be located at the
center part, and a third menu for cutting the screen image.
[0216] The "Picture-Frame Selection" menu can allow the user to select a variety of picture-frames
(e.g., a steel frame, a wood frame, and a butterfly-shaped frame, etc.)
[0217] The "Time Setup" menu may include a variety of time menus (i.e., an "After 1 minute"
menu, an "After 5 minutes" menu, an "After 10 minutes" menu, and an "Unused" menu,
etc.). If a predetermined time elapses at the "Time Setup" menu, the "Time Setup"
menu is switched to the "Screen Saver" mode.
[0218] The operation mode includes a plurality of sub-menus, i.e., a "Theme Selection" menu,
a "Background Music Setup" menu, and a "Temperature Indication Selection", etc.
[0219] The "Theme Selection" menu allows the user to select one of a Character" menu and
a "Background" menu as a theme. Needless to say, the theme selection menu allows the
user to select a variety of images (e.g., user's photo-images, etc.) other than the
"Character" and "Background" menu images as such the theme.
[0220] The "Background Music Setup" menu allows the user to select on/off states of the
background music, and also allows the user to adjust the volume of background sound.
[0221] The "Temperature Indication Selection" menu includes a plurality of sub-menus, i.e.,
a "Normal" menu and a "Funny" menu, etc. The "Normal" menu indicates a temperature
using a general indication method. The "Funny" menu funnily indicates a temperature
by changing a character font to another font.
[0222] The "Date/time setup" menu allows the user to select a desired date (date, month,
and year), a desired time (A.M/P.M, hour, and minute). If the user presses the right
key 139 in the "Date/time setup" menu, a close function of the Date/time setup menu
is executed, such that a user-setup value is stored and the "Date/time setup" menu
returns to a previous menu.
[0223] The "Alarm Setup" menu includes a plurality of sub-menus, i.e., an "Alarm on/off
time" menu, an "Alarm time" menu, a "Duration time" menu, a "Repetition time" menu,
and a "Sound setup" menu.
[0224] The "Alarm Time" menu allows the user to a desired time in the form of A.M/P.M-,
hour-, and minute- data. The "Duration time" menu allows the user to select one of
30 seconds, 1 minute, and 3 minutes, etc. The "Repetition time" menu selects one of
"Monday to Friday", "Monday to Saturday", and "every day", etc. The "Sound setup"
menu allows the user to select a desired one from among a variety of bell sounds (ringtones).
[0225] The "Stop mode Setup" menu is adapted to establish an image displayed on the display
window 120 when the air-conditioner stops operation, and is indicative of a screen
setup process in the standby mode 300.
[0226] The above-mentioned "Stop mode Setup" menu includes a "stop mode on/off" menu, an
"indication element selection" menu, and a "background image selection" menu. Therefore,
if the user sets the stop mode to an OFF state, the screen image of the display window
120 is switched off during the standby mode 330.
[0227] The "indication element selection" menu allows the user to select a time, a temperature/humidity,
and a calendar, etc. If the user selects one of the time, the temperature/humidity,
and the calendar, the selected data is displayed on the display window 120 during
the standby mode 300. In other words, if the user selects the time, a current time
is displayed on the display window 120 during the standby mode 300.
[0228] The "background image selection" menu allows the user to determine which one of background
images will be displayed on the display window 120 during the standby mode 300. A
variety of images may be additionally applied to the "Background image selection"
menu.
[0229] The "sound effect setup/brightness setup" menu includes a variety of sub-menus associated
with the sound effect, for example, a "On/Off" menu, a "volume control" menu, a "sound
setup" menu, and a "brightness setup" menu, etc.
[0230] If the "On/Off" menu of the sound effect is set to an "Off" menu, the volume control
menu and the sound setup menu are disabled. In more detail, if the sound effect is
switched off, there is no need to set the volume of sound or the type of sound, such
that the volume control menu and the sound setup menu are disabled.
[0231] The "sound setup" menu is adapted to set a variety of sound types. Preferably, the
sound setup menu may be designed to further include a user-desired sound effect.
[0232] In the meantime, the pop-up function 360 may be further executed during the above-mentioned
individual modes.
[0233] The pop-up function indicates the occurrence of new information or the input state
of new data. The pop-up function displays an additional pop-up window on the display
window 120, such that it displays an operation state of the air-conditioner or signal
input state from an input unit on the pop-up window.
[0234] The pop-up window 360 loads a variety of pop-up windows on the display window 120,
such that the user can visually recognize an error state or input key state of the
air-conditioner while the above-mentioned individual modes are executed.
[0235] In this case, the input unit for allowing the user to enter a variety of signals
corresponds to the button unit 130 pressed by the user or the remote-controller receiver
140 for receiving a remote-controller signal.
[0236] The above-mentioned pop-up window is displayed separately from the above-mentioned
individual modes. In other words, the above-mentioned pop-up window overlaps with
the display window 120 displayed at the above-mentioned modes.
[0237] A variety of pop-up windows will hereinafter be described with reference to FIGS.
22 to 28.
[0238] FIG. 22 shows an error pop-up window displayed on a display window of the air-conditioner
in accordance with a preferred embodiment of the present invention. An error message
is displayed on the display window as shown in FIG. 22. In more detail, if the main
microprocessor 200 transmits an error signal to the display controller 250, the display
window 120 displays the error pop-up window 362 as shown in FIG. 22.
[0239] The error pop-up window 362 displays an indication number corresponding to an error
item table shown in FIG. 23. In more detail, if a current operation state of the air-conditioner
corresponds to a specific condition matched with a predetermined error item, the error
pop-up window 362 displays an indication number corresponding to the aforementioned
erroneous item. Therefore, FIG. 22 shows an exemplary display window indicating that
the erroneous item corresponding to the indication number "56" has occurred.
[0240] Preferably, the error pop-up window 362 should be displayed on the display window
only during the operation mode 320 or the standby mode 300. The error pop-up window
362 instantaneously disappears from the display window while other pop-up windows
are loaded.
[0241] FIG. 24 shows an up/down control pop-up window displayed on the display window of
the air-conditioner to control a window direction in accordance with a preferred embodiment
of the present invention. FIG. 25 shows a left/right control pop-up window displayed
on the display window of the air-conditioner to control a window direction in accordance
with a preferred embodiment of the present invention. Upon receiving a wind-direction
control signal from the controller 200, the wind-direction control pop-up windows
364 and 364' are shown in FIGS. 24~25. The wind-direction control pop-up windows 364
and 364' are adapted to control the direction of the wind generated from the indoor
unit 100. If a specific condition wherein other pop-up windows are loaded is provided,
the above-mentioned wind-direction control pop-up windows 364 and 364' immediately
disappear.
[0242] In more detail, the wind-control pop-up windows 364 and 364' are classified into
the up/down control pop-up window 364 and the left/right control pop-up window 364'.
[0243] The up/down control pop-up window 364 is displayed when a signal for vertically rotating
an upper vane 102 is received from the input unit. In more detail, in the case where
the upper vane 102 is vertically rotated by a key signal received from the button
unit 130 or the remote-controller so as to control an up/down direction of the wind
generated from the indoor unit 100, the up/down control pop-up window 364 indicates
the above-mentioned operation state of the upper vane 102.
[0244] The left/right control pop-up window 364' is displayed when a signal for horizontally
rotating a lateral vane 104 is received from the input unit. In more detail, in the
case where the lateral vane 104 is horizontally rotated by a key signal received from
the button unit 130 or the remote-controller so as to control a left/right direction
of the wind generated from the indoor unit 100, the left/right control pop-up window
364' indicates the above-mentioned operation state of the lateral vane 104.
[0245] FIG. 26 shows a volume control pop-up window 366 displayed on a display window of
the air-conditioner in accordance with a preferred embodiment of the present invention.
Referring to FIG. 26, the volume control pop-up window 366 is displayed when a signal
for adjusting the volume of sound transmitted from the air-conditioner to an external
part.
[0246] In more detail, in the case where the user adjusts the volume of sound generated
from the sound output unit 222 using either the button unit 130 or the remote-controller,
the volume control pop-up window 366 displays the aforementioned volume control state
of the user.
[0247] Similar to the above-mentioned wind-direction pop-up windows 364 and 364', the volume
control pop-up window 366 instantaneously disappears from the display window when
other pop-up windows can be loaded. Preferably, the volume control pop-up window 366
should be controlled to be displayed only under the operation mode 320 or the environment
setup mode.
[0248] FIG. 27 shows a temperature control pop-up window 368 displayed on a display window
of the air-conditioner in accordance with a preferred embodiment of the present invention.
The temperature control pop-up window 368 is displayed when a signal for adjusting
a desired temperature is received from the input unit.
[0249] If the signal for adjusting a desired temperature is received from the input unit,
the controller 200 displays setup temperature data stored in the main memory 202 on
the display window 120.
[0250] Preferably, the temperature control pop-up window 368 may disappear after the lapse
of 5 seconds according to a temperature control pop-up signal.
[0251] The temperature control pop-up window 368 instantaneously disappears from the display
window in the same manner as in the wind-direction control pop-up windows 364 and
364' and the volume control pop-up window 366.
[0252] The error pop-up window 362 instantaneously disappears from the display window while
other pop-up windows are loaded.
[0253] FIG. 28 shows a wind-volume control pop-up window displayed on a display window in
accordance with a preferred embodiment of the present invention.
[0254] The wind-volume control pop-up window is displayed when a signal for adjusting the
volume of wind generated from the indoor unit 100 is received from the input unit.
In more detail, when the volume of wind generated from the indoor unit 100 is adjusted
by a key signal generated from the button unit 130 or the remote-controller, the wind-volume
control pop-up window displays the above-mentioned wind-volume control states. Preferably,
the wind-volume control pop-up window 370 may disappear after the lapse of a predetermined
time (e.g., 5 seconds) according to a wind-volume control signal.
[0255] A hard-lock pop-up window (not shown) may be further displayed on the display window.
The hard-lock pop-up window displays operations executed when a signal for locking/releasing
a key is received. Preferably, the key locking/releasing functions associated with
the hard-lock pop-up window may be set by an external device.
[0256] In more detail, if the key locking function is established, it is impossible for
the air-conditioner to receive a signal from the button unit 130 or the remote-controller.
If a signal is received from the button unit 130 or the remote-controller on the condition
that the above-mentioned key locking function has been established, the hard-lock
pop-up window is displayed for a predetermined time (e.g., 5 seconds), such that it
indicates that a current state is a key locking state.
[0257] A variety of pop-up windows other than the above-mentioned pop-up windows can be
implemented if required. For example, an address pop-up window (not shown) for indicating
a storage location of a control command may be further displayed on the display window
if required.
[0258] If a variety of signals are repeatedly received in the above-mentioned pop-up windows,
a previous pop-up window is closed, and the last pop-up window is displayed. As stated
above, under the condition in which the error pop-up window can be displayed, other
pop-up window is displayed, and returns to the error pop-up window after the lapse
of 5 seconds.
[0259] FIGS. 29∼34 show the memo function of the air-conditioner according to the present
invention.
[0260] The display controller 250 of the air-conditioner displays a pop-up window indicating
that a new memo is received during the operation time of the air-conditioner.
[0261] The display controller 250 recognizes memo content data received via the touch-screen
as an image, and outputs the recognize image on the display 256. Otherwise, the display
controller 250 converts the recognize image into text data, and displays the text
data on the display 256.
[0262] The memo may be entered by the user via a remote-controller shown in FIG. 29. The
display input unit 254 may be integrated with the display 256 configured in the form
of a touch-screen via which the user can enter a control command or a desired memo.
[0263] The remote-controller shown in FIG. 29 includes an input unit 274 including at least
one button via which the user can enter a control command of the air-conditioner;
a controller 270 for generating a control command signal according to a key entry
signal generated by the pressed button, and controlling transmission of the control
command signal; and a transmitter 272 for wirelessly transmitting/receiving signals
to/ from a main body of the air-conditioner according to a control signal of the controller
270.
[0264] The display of the air-conditioner displays a pop-up window indicating the presence
of a new memo when the air-conditioner is operated. The display of the air-conditioner
always displays other pop-up window indicating the presence of a memo although the
air-conditioner is not operated.
[0265] FIG. 30 shows operation states of a display for displaying a new memo notification
state of the air-conditioner according to the present invention.
[0266] As can be seen from FIG. 31, if the air-conditioner enters a memo-composition mode
acting as one of additional functions according to a user command received via the
touch-screen of the display of the air-conditioner, the memo window is displayed on
the display as shown in FIG. 32, such that the user directly writes characters (or
letters) using his or her pen.
[0267] The character data entered by the user is converted into text data by an additional
character recognition program, such that the text data is stored.
[0268] As shown in FIG. 33, the above-mentioned characters may be edited or may be stored
in the memory contained in the display without any change.
[0269] The stored characters are displayed on the display as shown in FIG. 34, such that
memo input date/time information is listed on the display.
[0270] Therefore, the user can recognize content data of the memo displayed on the display.
[0271] If the movement is detected by the movement sensor contained in the main body after
the memo has been stored, the display of the air-conditioner informs the user of the
memo via sound data or a pop-up window. If the presence invention of memo data is
determined, the display displays the memo on the pop-up window although the air-conditioner
is in the operation mode or the standby mode.
[0272] Detailed control contents of the above-mentioned memo function will hereinafter be
described.
[0273] A method for executing the above-mentioned individual modes will hereinafter be described
with reference to FIGS. 35~42.
[0274] FIGS. 35~36 shows detailed operations of the standby mode 300, the operation mode
320, and the function selection mode 340. FIG. 37 is a flow chart illustrating detailed
operations of the standby mode 300 of FIG. 35 according to the present invention.
[0275] FIG. 38 is a flow chart illustrating detailed operations of the operation mode 320
of FIG. 35 according to the present invention. FIGS. 39~40 are flow charts illustrating
operations of the function selection mode of FIG. 36 according to the present invention.
[0276] Referring to FIGS. 35~36, the display controller 250 determines whether a power-supply
signal is received in the air-conditioner at step S400. If the power-supply signal
is received in the air-conditioner, the air-conditioner executes the standby mode
300 at step S410. Otherwise, if the power-supply signal is not received in the air-conditioner,
the display controller 250 executes no action.
[0277] A method for executing the standby mode is shown in FIG. 37. Referring to FIG. 37,
the display controller 250 reads a predetermined setup value at step S411. Therefore,
it is determined whether the read setup value is set to a clock image at step S412.
[0278] If it is determined that the setup value corresponds to the clock image, the display
controller 250 displays the clock screen on the display window 120 at step S413. Otherwise,
it is determined that the setup value is set to the screen-saving image, the display
controller executes the screen-saving mode. Otherwise, if it is determined that the
setup value is not set to the screen saving image, the display controller turns off
the screen at step S416.
[0279] Referring back to FIG. 35, it is determined whether the operation/stop key 132 is
pressed by the user at step S420. If the user presses the operation/stop key 132 at
step S420, a corresponding signal is transmitted to the main microcomputer 200, such
that the air-conditioner is operated at step S421. In other words, the main microprocessor
200 operates air-conditioner components (e.g., an indoor-unit motor 216 or an outdoor-unit
motor 218), resulting in the implementation of air-conditioning effect of room air
at step S421.
[0280] Otherwise, if the operation/stop key 132 is not pressed by the user at step S420,
it is determined whether the plasma key 137 is pressed at step S430. If the plasma
key 137 is pressed by the user at step S430, a corresponding signal is transmitted
to the main microprocessor 200, and operates the air-cleaning unit 170, resulting
in the implementation of an air-cleaning function at step S432.
[0281] It is determined whether the stop key is pressed at step S434 while the air-cleaning
function is executed by the air-cleaning unit 170. If the stop key is pressed, a corresponding
signal is transmitted to the main microprocessor 200, such that the air-cleaning unit
170 stops operation at step S436. In this case, the stop key indicates the plasma
key 137 pressed by the user. In other words, if the user presses the plasma key 137
once, the air-cleaning unit 170 starts operation. Under this condition, if the plasma
key 137 is re-pressed by the user, the air-cleaning unit 170 stops operation.
[0282] If the air-conditioning function is executed at step 421, the operation mode 320
is executed on the display window 120 at step 440. A detailed operation of the operation
mode 320 is shown in FIG. 38.
[0283] The main microprocessor 200 reads sensor values (e.g., temperature) from the sensor
unit 212 at step S442, and reads setup values for the execution of the operation mode
320 at step S444.
[0284] If the read setup value indicates the user operation mode at step S450, the main
microprocessor 200 reads data entered by the user at step S452, and displays the read
data on the display window 120 at step S454.
[0285] If the read setup value indicates the real-operation mode at step S460, the main
microprocessor 200 reads real- photo data having been pre-stored at step S462, and
displays the real-photo data on the display 120 at step S454.
[0286] If the read setup value does not indicate the user operation mode and the real operation
mode, the main microprocessor reads pre-stored character data at step S464, and displays
the read character data on the display window 120 of the display unit 150.
[0287] Referring back to FIG. 35, if the operation mode is executed at step S440, the display
memory 252 (or the display memory 252) sets a time (T) to zero as denoted by "T=0"
at step 460. It is determined whether a specific function key (e.g., the left key
138 or the right key 139) is pressed via the button unit 130.
[0288] If the function key is pressed at step S462, the function selection mode 340 is executed
at step S480. Otherwise, if the function key is not pressed at step S462, it is determined
whether the operation/stop key 132 is pressed at step S464.
[0289] If the operation/stop key 132 is not pressed, the air-conditioner reads the time
value stored in the display memory 252 at step S466, such that it determines whether
the stored time value T is equal to or higher than the time setup value (e.g., 5 minutes)
established by the environment setup process at step S468.
[0290] If the time value T is equal to or higher than the time setup value at step S468,
the air-conditioner executes the screen-saving mode 306 at step S470. If a specific
key is pressed, the screen-saving mode 306 is closed at step S474.
[0291] FIG. 39 is a flow chart illustrating a method for executing the function selection
mode according to the present invention.
[0292] Referring to FIG. 39, the display controller 250 determines whether a key entry value
indicates an additional operation function at step S481. If the additional operation
function is determined, the display controller determines whether the user selects
the cooling mode at step S482. In this case, if it is determined that the user has
selected the cooling mode at step S482, the display controller 250 determines whether
the volume of wind is set to a weak mode at step S483. If the volume of wind is set
to the weak mode at step S483, the cooling mode is executed at the weak mode (i.e.,
the weak-cooling mode) at step S484.
[0293] The display controller 250 displays a specific image (or avatar) associated with
the weak-cooling mode on the display window 120, and the main microprocessor 200 controls
the sound output unit 222 to output sound or music data associated with the weak-cooling
mode at step S484'.
[0294] If the volume of wind is not set to the weak mode, the display controller 250 determines
whether the volume of wind is set to a strong mode at step 485. If the volume of wind
is set to the strong mode, the display controller 250 performs a power-cooling mode
at step S487.
[0295] In this case, the display controller 250 displays individual images (or avatars)
associated with the strong-cooling mode and the power-cooling mode on the display
window 120, respectively. The main microprocessor 200 controls the sound output unit
222 to output sound or music data associated with the strong-cooling mode at step
486', and controls the sound output unit 222 to output sound or music data associated
with the power-cooling mode at step S487'.
[0296] In the meantime, if the cooling mode is not selected at step S482, a dehumidifying
mode is executed. In this case, the display controller 250 determines whether the
volume of wind is set to a weak mode at step S490. If the volume of wind is set to
the weak mode at step S490, the dehumidifying mode is executed at the weak mode (i.e.,
the weak-dehumidifying mode) at step S491. If the volume of wind is set to a strong
mode at step S492, the dehumidifying mode is executed at the strong mode (i.e., the
strong-dehumidifying mode) at step S493. If the volume of wind does not indicate the
weak mode or the strong mode, a power-dehumidifying mode is executed at step S494.
[0297] As stated above, if the weak-dehumidifying mode is executed at step S491, the display
controller 250 displays a specific image (or avatar) associated with the weak-dehumidifying
mode on the display window 120. The main microprocessor 200 controls the sound output
unit 222 to output sound or music data associated with the weak-dehumidifying mode
at step 491'.
[0298] In this way, if the strong-dehumidifying mode is executed at step S493, the display
controller 250 displays a specific image (or avatar) associated with the strong-dehumidifying
mode, and outputs specific sound data associated with the same via the sound output
unit 222 at step S493'. If the power-dehumidifying mode is executed at step S494,
the display controller 250 displays a specific image (or avatar) associated with the
power-dehumidifying mode, and outputs specific sound data associated with the same
via the sound output unit 222 at step S494'.
[0299] If the key entry value does not indicate the additional operation function at step
S481, the album function is executed at step S500.
[0300] FIG. 40 is a flow chart illustrating a detailed setup process of the album function
according to the present invention.
[0301] Referring to FIG. 40, it is determined whether the key entry value indicates a download
mode at step S502. If the key entry value indicates the download mode at step S502,
photo-images are downloaded from the USB memory 160 at step S504.
[0302] Otherwise, if the key entry value does not indicate the download mode, it is determined
whether the key entry value indicates the album view function at step S510. If the
key entry value indicates the album view function, the album view function is executed
at step s512. If the key entry value does not indicate the album view function, the
environment setup function is executed at step S520.
[0303] The aforementioned album view function and the aforementioned environment setup function
have already been disclosed with reference to FIGS. 19~21.
[0304] Referring back to FIG. 36, if the function selection mode is executed at step S480,
the display memory 252 re-establishes a time. In more detail, the time is set to zero
as denoted by "T=0" at step S530. It is determined whether the right key 139 acting
as a function close key is pressed via the button unit 130 at step S532.
[0305] If the right key 139 acting as the function close key is pressed at step S532, the
current mode returns to the operation mode. Otherwise, if the right key 139 is not
pressed at step S532, it is determined whether the operation/stop key 132 is pressed
at step S534.
[0306] If the operation/stop key 132 is not pressed, the air-conditioner reads the time
value stored in the display memory 252 at step S536, such that it determines whether
the stored time value T is equal to or higher than the time setup value (e.g., 5 minutes)
established by the environment setup process at step S538.
[0307] If the time value T is equal to or higher than the time setup value at step S538,
the air-conditioner executes the screen-saving mode 306 at step S540. If a specific
key is pressed, the screen-saving mode 306 is closed at step S544.
[0308] It is determined whether the operation/stop key 132 is pressed at steps S464 and
S534. If the operation/stop key 132 is pressed, the main microcomputer 200 stops operation
of the air-conditioner, such that the air-conditioning function stops operation at
step S550.
[0309] If the air-conditioner stops operation, an automatic cleaning function is executed
at step S552. Needless to say, the automatic cleaning function can be executed when
it is pre-established in the air-conditioner by the user.
[0310] Thereafter, it is determined whether a power-off state is established at step S560.
If the power-off state is established at step S560, all operations of the display
are closed at step S570. Otherwise, if the power-off state is not established at step
S560, the current mode returns to the standby mode.
[0311] The screen-saving mode 306 will hereinafter be described with reference to FIG. 41.
[0312] FIG. 41 is a flow chart illustrating a method for executing the screen-saving mode
306 of the air-conditioner according to the present invention.
[0313] Referring to FIG. 41, the air-conditioner re-establishes an elapse time T at step
S600, and determines whether there is an external key input signal at step S610.
[0314] If the external key input signal exists at step S610, a current operation state of
the air-conditioner returns to the T-value setting step S600. Otherwise, if there
is no external key input signal at step S610, the air-conditioner reads the elapse
time value (T) and a predetermined setup time value (T') at step 620.
[0315] In more detail, the air-conditioner reads the re-established elapse time (T), and
reads a user-established setup time or a setup time for the beginning of the screen-saving
306.
[0316] The air-conditioner compares the T value with the T' value, and determines whether
the T value is higher than the T' value at step S630. If the T value is higher than
the T' value at step S630, the screen-saving mode 306 is executed at step S640. If
the T value is equal to or less than the T' value at step S630, a current operation
returns to step S610.
[0317] If the screen-saving mode 306 is executed, the air-conditioner continuously determines
the presence or absence of an external key input signal at step S650. If the presence
of the external key input signal is determined, the screen-saving mode 306 is terminated
at step S660.
[0318] Operations of the air-conditioner including the memo function will hereinafter be
described with reference to FIG. 42.
[0319] FIG. 42 is a flow chart illustrating a method for executing a memo-writing mode or
a memo-check mode of the air-conditioner according to the present invention.
[0320] Referring to FIG. 42, the operation of the air-conditioner includes a first step
in which a memo-mode button is pressed, a second step in which a memo is written and
stored in the memo mode, and a third step in which a pop-up window indicating the
stored memo contents.
[0321] If the user contacts the memo-mode button contained in a touch-pad of the display
of the air-conditioner at step S700, the air-conditioner detects the beginning of
the memo mode.
[0322] If the air-conditioner enters the memo mode, it determines whether a current mode
is a memo-writing mode A or a memo-check mode B at step S701.
[0323] If the current mode is the memo-writing mode A, memo data is constructed by the user
at step S702. The air-conditioner recognizes the importance of corresponding memo
data, and determines whether a password is to be established at step S703.
[0324] If the user decides to establish the password setup, the air-conditioner allows the
user to enter a desired password at step S704, and converts the entry password into
a text signal, such that the text signal is stored at step at step S705. Needless
to say, the user-entry password may be configured in the form of an image, such that
the image may also be stored without any change.
[0325] In order to establish the password in the memo by the user, store the established
password, and display the stored memory data, the air-conditioner forms a specific
pop-up window on the operation state indication window during a predetermined period
of time, such that it informs the user of the presence of stored memo data at step
S706.
[0326] In this case, the user may also recognize the presence of memo data via the speaker
sound of the display if required.
[0327] If the user's movement is detected by the movement sensor contained in the air-conditioner,
the air-conditioner informs the user of the presence of memo data via the pop-up window
or sound.
[0328] If the air-conditioner enters the memo-check mode for checking the stored memo data,
it can recognize memo data written by the user or basic information pre-established
by a system manufacturer.
[0329] The memo-check mode determines whether the password has been established to guarantee
the security of the user memo data at step S707. The user enters the password at step
S708, and confirms the entered password at step S709. In this case, the memo content
displayed at step S709 may also be deleted at step S710 as necessary.
[0330] The above-mentioned password setup function guarantees the security of memo data,
effectively employs the display, and informs a user's family of user-desired information
via the memo data.
[0331] Needless to say, the air-conditioner according to the present invention can implement
a variety of photo-images or avatars on the display window according to a variety
of methods other than the above-mentioned methods disclosed in the present invention.
The avatar may have different facial expressions and different sounds according to
room air states or air-conditioner states as necessary.
[0332] For example, if the air-conditioner is powered on, a smiling avatar appears and says
"Hello" to the user. If the air-conditioner is powered off, the avatar says "Good
Bye" to the user and disappears from the display. The air-conditioner displays the
avatar on the display, and allows the user to audibly both recognize current operation
state information of the air-conditioner and room-air state information. In addition,
the user's voice signal may be recorded in a storage unit by the user's request if
required, such that the recorded voice signal may also be used as a voice message
of the air- conditioner.
[0333] It will be apparent to those skilled in the art that various modifications and variations
can be made in the present invention without departing from the scope of the claims.
Thus, it is intended that the present invention covers the modifications and variations
of this invention provided they come within the scope of the appended claims.
Industrial Applicability
[0334] The air-conditioner according to the present invention can enable the user to easily
recognize air-conditioning state information, indoor environment information, and
other information, such that the user can effectively employ not only basic functions
of the air-conditioner but also other additional functions.
1. Klimaanlage (100), die aufweist:
einen Hauptkorpus der Klimaanlage, der eine Frontplatte (110) aufweist,
ein Anzeigefenster (120), das in der Frontplatte angeordnet ist,
eine Haupteingabeeinheit (210), um einem Benutzer eine Eingabe eines Bedienungssignals
der Klimaanlage über eine in der Frontplatte angeordnete Tasteneinheit (130) zu ermöglichen,
und
eine Anzeigeeinheit (150), um mittels des Anzeigefensters Betriebszustände der Klimaanlage
und von dem Benutzer eingegebene Nachrichteninhalte an dem Anzeigefenster anzuzeigen,
wobei die Anzeigeeinheit aufweist:
eine Anzeigeeingabeeinheit (254), um dem Benutzer ein Eingeben eines Bedienungssignals
der Anzeigeeinheit zu ermöglichen und
um eine Steuerungsanweisung oder einen von dem Benutzer eingegebenen Nachrichteninhalt
zu empfangen,
eine Anzeige (256), um über das Anzeigefenster die Betriebszustände und den Nachrichteninhalt
der Klimaanlage anzuzeigen,
und
eine Anzeigesteuerung (250) zur Kommunikation mit einem sich im Hauptkorpus befindenden
Hauptmikroprozessor (200) und
zum Steuern des Betriebszustands oder Nachrichteninhalts, der einem gewählten Modus
entsprechenden selektiv angezeigt werden soll,
wobei die Anzeigesteuerung zum Anzeigen eines Pop-up-Fensters ausgebildet ist, um
anzuzeigen, dass während des Betriebs der Klimaanlage eine neue Nachricht eingegeben
wurde,
wobei das Pop-up-Fenster angezeigt wird, wenn ein in dem Hauptkorpus befindlicher
Bewegungssensor eine Bewegung erkennt.
2. Klimaanlage nach Anspruch 1, wobei die Klimaanlage (100) ferner eine Fernsteuerung
umfasst, die zumindest eine Taste zum Eingeben einer Steuerungsanweisung der Klimaanlage
durch einen Benutzer aufweist und die Signale an die Klimaanlage drahtlos sendet und
von dieser empfängt, wobei ein Fernsteuerungsempfänger (140) die Signale von der Fernsteuerung
empfängt.
3. Klimaanlage nach Anspruch 2, wobei die Anzeigeeingabeeinheit (254) es einem Benutzer
ermöglicht, über die Tasteneinheit (130) oder die Fernbedienung ein Bedienungssignal
der Anzeigeeinheit (150) einzugeben.
4. Klimaanlage nach Anspruch 1, wobei der Hauptkorpus der Klimaanlage ferner eine Tonausgabeeinheit
(222) aufweist, um verschiedene, einem Betriebszustand oder Nachrichteninhaltsdaten
entsprechende Töne auszugeben.
5. Klimaanlage nach Anspruch 1, wobei die Anzeige ferner eine Avatardarstellungseinheit
zum Anzeigen eines in einem Speicher (202) gespeicherten Avatars oder bewegten Bildes
aufweist.
6. Klimaanlage nach Anspruch 1, wobei die Anzeigeeingabeeinheit in Form eines berührungsempfindlichen
Bildschirms ausgebildet ist, mittels dessen der Benutzer eine gewünschte Steuerungsanweisung
oder Nachricht eingeben kann, und die in die Anzeige zu einer Einheit integriert ist.
7. Klimaanlage nach Anspruch 1, wobei der Nachrichteninhalt von einem ersten Prozess,
bei dem ein Kennwort eingeben wird, und von einem zweiten Prozess geprüft wird, bei
dem der entsprechende Nachrichteninhalt nur bei verifiziertem Kennwort angezeigt wird.
8. Klimaanlage nach Anspruch 7, wobei nach Abschluss der Kennwortverifizierung ein Nachrichtenlöschungsprozess
ausgeführt wird, bei dem der geprüfte Nachrichteninhalt gelöscht werden kann.
9. Klimaanlage nach Anspruch 1, wobei die Anzeigeeinheit einen über einen berührungsempfindlichen
Bildschirm eingegebenen Nachrichteninhalt als Bild erfasst und das erfasste Bild speichert
oder das den eingegebenen Nachrichteninhalt wiedergebende Bild in Textdaten umwandelt
und die Textdaten speichert.
10. Klimaanlage nach Anspruch 1, wobei der Nachrichtenschreibmodus dem Nachrichteninhalt
ein Kennwort zuweist und den mit dem Kennwort versehenen Nachrichteninhalt speichert.
11. Klimaanlage nach Anspruch 1, wobei der Nachrichtenschreibmodus einen neuen Nachrichteninhalt
für einen vorgegebenen Zeitraum anzeigt.
12. Klimaanlage nach Anspruch 1, wobei die Anzeige turnusmäßig einen Bereitschaftsmodus
(300), um auf eine Eingabe eines Einschaltsignals zum Ausführen einer Klimaanlagenfunktion
zu warten, und einen Betriebsmodus (320) ausführt, um ein vorgegebenes Bild anzuzeigen,
wenn die Klimaanlagenfunktion ausgeführt wird, und ferner einen Modusumstellungsschritt
(315) aufweist, der zwischen dem Bereitschaftsmodus und dem Betriebsmodus eingerichtet
ist, um entsprechend einem Einschaltsignal oder Ausschaltsignal sowohl den Bereitschaftsmodus
als auch den Betriebsmodus anzuzeigen.
13. Klimaanlage nach Anspruch 12, wobei der Bereitschaftsmodus umfasst:
einen Bildschirm-Aus-Modus (302), um auf einem Bildschirm kein Bild anzuzeigen,
einen Zeitanzeigemodus (304) zum Anzeigen einer aktuellen Zeit, einen Bildschirmschonermodus
(306) zur Ausführung eines Bildschirmschoners und
einen Benutzerkonfigurationsmodus (308), um ein vom Benutzer eingerichtetes Bild anzuzeigen.
14. Klimaanlage nach Anspruch 12, wobei der Betriebsmodus umfasst:
einen Realbetriebsmodus (322) zum Anzeigen eines Bildes eines tatsächlichen Objekts
(d. h. ein echtes Foto),
einen Benutzer-Betriebsmodus (324) zum Anzeigen eines von einem Benutzer ausgewählten
Bildes oder eines von einem Benutzer ausgewählten Bewegtbildes, und
einen Zeichen-Betriebsmodus (326) zum Anzeigen eines Zeichens.
15. Klimaanlage nach Anspruch 12, wobei die Anzeige den Bereitschaftsmodus,
einen Funktionsauswahlmodus (340), um einem Benutzer ein Auswählen verschiedener Funktionen
zu ermöglichen, und einen Bildschirmschonermodus implementiert, um ein Bildschirmschonerprogramm
an einer Anzeige auszuführen, die zur Ausführung des Bereitschaftsmodus, des Betriebsmodus
und des Funktionsauswahlmodus ausgebildet ist.
16. Klimaanlage nach Anspruch 15, wobei der Funktionsauswahlmodus umfasst:
eine Betriebs-/Zusatzfunktion (342) zum Einrichten eines Betriebszustands und zusätzlicher
Funktionen der Klimaanlage,
eine Albumsfunktion (344) zum Speichern/Bearbeiten von verschiedenen Fotografien,
und
eine Betriebsanleitungsfunktion zum Anzeigen einer Betriebsanleitung, in der die Verwendung
der Klimaanlage oder einzelner zusätzlicher Funktionen aufgezeichnet sind.
17. Klimaanlage nach Anspruch 15, wobei der Bildschirmschonermodus von einem Benutzer
eingerichtet/ausgeführt wird.
18. Klimaanlage nach Anspruch 15, wobei der Bildschirmschonermodus über einen Bildschirmschonereinrichtungsprozess
eingerichtet wird.
19. Klimaanlage nach Anspruch 18, wobei der Bildschirmschonerinstallationsprozess umfasst:
einen Bildeinrichtungsprozess zum Auswählen eines anzuzeigenden Bildes und
einen Zeiteinstellungsprozess zum Wählen einer bestimmten Zeit für den Beginn der
Ausführung eines Bildschirmschoners.
20. Klimaanlage nach Anspruch 19, wobei der Bildeinrichtungsprozess zumindest ein Bild
unter mehreren Bildern auswählt, die in einem Speicher gespeichert sind oder von einem
externen Teil herunter geladen wurden.
21. Klimaanlage nach Anspruch 18, wobei der Bildschirmschonereinrichtungsprozess eine
"Vorschau"-Funktion umfasst, um einem Benutzer eine Vorschau auf einen Ausführungszustand
des eingerichteten Bildschirmschoners zu ermöglichen.
22. Klimaanlage nach Anspruch 19, wobei der Zeiteinstellungsprozess ein Zeitintervall
einrichtet, das mit dem Empfang des letzten externen Signals (Tasteneingabe) beginnt
und an dessen Ende die Ausführung des Bildschirmschoners beginnt.
23. Klimaanlage nach Anspruch 15, wobei der Bildschirmschonermodus ausgeführt wird, wenn
bei Ausführung des Betriebsmodus oder des Funktionsauswahlmodus während einer vorgegebenen
Zeitspanne kein Signal von einem externen Teil empfangen wird, bzw. die Ausführung
des Bildschirmschonermodus beendet wird, wenn während der vorgegebenen Zeitspanne
ein Signal (bzw. ein Tasteneingabe) von dem externen Teil empfangen wird.
24. Klimaanlage nach Anspruch 15, wobei der Bildschirmschonermodus ein einzelnes Bild
kontinuierlich anzeigt, mehrere Bilder in Form einer Diashow anzeigt, mehrere Bilder
nacheinander oder zufällig mit einem vorgegebenen Zeittakt anzeigt, ein Bewegtbild
anzeigt, oder die Anzeige im ausgeschalteten Zustand hält, sodass an der Anzeige keine
Daten angezeigt werden.
25. Klimaanlage nach Anspruch 1, wobei die Anzeige eine Pop-up-Funktion (360) ausführt,
die eine Information über den Zustand der Klimaanlage anzeigt.
26. Klimaanlage nach Anspruch 25, wobei die Pop-up-Funktion auf der Anzeige einzelne Pop-up-Fenster
selektiv anzeigt und wobei die Pop-up-Fenster Betriebszustände der Klimaanlage oder
Signaleingabezustände über die Eingabeeinheit anzeigen.
27. Klimaanlage nach Anspruch 26, wobei die Eingabeeinheit indikativ für eine Tasteneinheit
(130), über die ein Benutzer Tasteneingabesignale eingibt, oder für eine Fernsteuerung
zum Empfangen eines Fernsteuerungssignals von einem Benutzer ist.
28. Klimaanlage nach Anspruch 26, wobei die Pop-up-Fenster umfassen:
ein Fehler-Pop-up-Fenster (362) zum Anzeigen eines fehlerhaften Zustands während eines
Betriebs der Klimaanlage,
ein Luftströmungssteuerungs-Pop-up-Fenster (364, 364'), das bei Empfang eines Luftströmungssteuerungssignals
zum Einstellen der Luftströmungsrichtung angezeigt wird,
ein Lautstärkensteuerungs-Pop-up-Fenster (366), das bei Empfang eines Signals zum
Einstellen der Lautstärke angezeigt wird,
ein Temperatursteuerungs-Pop-up-Fenster (368), das bei Empfang eines Signals zum Einstellen
einer gewünschten Temperatur angezeigt wird,
ein Luftstromstärkensteuerungs-Pop-up-Fenster (370), das bei Empfang eines Signals
zum Einstellen der Luftstromstärke angezeigt wird, und
ein Sperr-Pop-up-Fenster, das beim Ausführen einer Tastensperr-/-freigabefunktion
oder einer Anzeige einer Tastensperrungsfunktion angezeigt wird.
29. Klimaanlage nach Anspruch 28, wobei das Fehler-Pop-up-Fenster bei einem Auftreten
eines bestimmten Zustands, der einer bestimmten Fehlerart entspricht, eine zugehörige
Hinweisnummer anzeigt, die der vorher bestimmten Fehlerart entspricht.
30. Klimaanlage nach Anspruch 28, wobei das Luftströmungssteuerungs-Pop-up-Fenster umfasst:
ein Aufwärts-/Abwärts-Steuerungs-Pop-up-Fenster (364), das bei Empfang eines Signals
zum Steuern der vertikalen Aufwärts-/Abwärtsrichtung der Luftströmung angezeigt wird,
und
ein Links-/Rechts-Steuerungs-Pop-up-Fenster (364'), das bei Empfang eines Signals
zum Steuern der Links-/Rechtsrichtung der Luftströmung angezeigt wird.
31. Klimaanlage nach Anspruch 30, wobei das Aufwärts-/Abwärts-Steuerungs-Pop-up-Fenster
angezeigt wird, wenn eine in der Innenraumeinheit angeordnete obere Lamelle zum Einstellen
einer Richtung der von der Innenraumeinheit erzeugten Luft vertikal gedreht wird.
32. Klimaanlage nach Anspruch 30, wobei das Links-/Rechts-Steuerungs-Pop-up-Fenster angezeigt
wird, wenn eine in der Innenraumeinheit angeordnete seitliche Lamelle (104) zum Einstellen
einer Richtung der von der Innenraumeinheit erzeugten Luft horizontal gedreht wird.
33. Klimaanlage nach Anspruch 26, wobei das Pop-up-Fenster ein vorhergehendes Pop-up-Fenster
schließt, wenn mehrere Signale wiederholt empfangen werden, wobei ein abschließendes
Pop-up-Fenster angezeigt wird.
34. Klimaanlage nach Anspruch 33, wobei, wenn es sich bei dem vorhergehenden Pop-up-Fenster
um das einen Fehlerzustand anzeigende Fehler-Pop-up-Fenster handelt, das andere Fenster
angezeigt und nach Ablauf einer vorgegebenen Zeitspanne zum Fehler-Pop-up-Fenster
zurückgekehrt wird.
1. Climatiseur (100) comprenant :
un corps principal du climatiseur comportant un panneau avant (110) ;
une fenêtre d'affichage (120) prévue dans le panneau avant ;
une unité d'entrée principale (210) pour permettre à un utilisateur d'entrer un signal
de fonctionnement du climatiseur par l'intermédiaire d'une unité de bouton (130) prévue
dans le panneau avant ; et
une unité d'affichage (150) pour afficher par l'intermédiaire de la fenêtre d'affichage
des états de fonctionnement du climatiseur et un contenu de note entré par un utilisateur
sur la fenêtre d'affichage,
dans lequel l'unité d'affichage comporte :
une unité d'entrée d'affichage (254) pour permettre à l'utilisateur d'entrer un signal
de fonctionnement de l'unité d'affichage, et pour recevoir une instruction de commande
ou un contenu de note entré(e) par l'utilisateur ;
un dispositif affichage (256) pour afficher les états de fonctionnement et le contenu
de note du climatiseur par l'intermédiaire de la fenêtre d'affichage ; et
un dispositif de commande d'affichage (250) pour communiquer avec un microprocesseur
principal (200) contenu dans le corps principal, et pour commander l'état de fonctionnement
ou le contenu de note à afficher de manière sélective selon un mode sélectionné,
dans lequel le dispositif de commande d'affichage est configuré pour afficher une
fenêtre contextuelle pour indiquer qu'une nouvelle note est entrée pendant que le
climatiseur fonctionne,
dans lequel la fenêtre contextuelle est affichée lorsqu'un mouvement est détecté par
un capteur de mouvement contenu dans le corps principal.
2. Climatiseur selon la revendication 1, le climatiseur (100) comporte en outre une télécommande
qui comporte au moins un bouton par l'intermédiaire duquel un utilisateur entre une
instruction de commande du climatiseur et transmet/reçoit sans fil des signaux à/à
partir du climatiseur, et un récepteur de télécommande (140) reçoit des signaux à
partir de la télécommande.
3. Climatiseur selon la revendication 2, dans lequel l'unité d'entrée d'affichage (254)
permet à un utilisateur d'entrer un signal de fonctionnement de l'unité d'affichage
(150) par l'intermédiaire de l'unité de bouton (130) ou de la télécommande.
4. Climatiseur selon la revendication 1, dans lequel le corps principal du climatiseur
comporte en outre une unité de sortie de son (222) pour délivrer en sortie différents
sons selon des données d'état de fonctionnement ou de contenu de note.
5. Climatiseur selon la revendication 1, dans lequel le dispositif d'affichage comporte
en outre une unité d'image avatar pour afficher une image avatar ou animée stockée
dans une mémoire (202).
6. Climatiseur selon la revendication 1, dans lequel l'unité d'entrée d'affichage est
configurée sous la forme d'un écran tactile par l'intermédiaire duquel l'utilisateur
peut entrer une note ou une instruction de commande souhaitée, et est intégrée au
dispositif d'affichage en une seule unité.
7. Climatiseur selon la revendication 1, dans lequel le contenu de note est vérifié par
un premier processus dans lequel un mot de passe est entré, et un deuxième processus
dans lequel le contenu de note correspondant est affiché uniquement lorsque le mot
de passe est authentifié.
8. Climatiseur selon la revendication 7, dans lequel, si l'authentification du mot de
passe est achevée, un processus de suppression de note dans lequel le contenu de note
vérifié peut être supprimé est exécuté.
9. Climatiseur selon la revendication 1, dans lequel l'unité d'affichage reconnaît un
contenu de note entré par un écran tactile comme une image et stocke l'image reconnue,
ou convertit l'image indiquant le contenu de note entré en données textuelles et stocke
les données textuelles.
10. Climatiseur selon la revendication 1, dans lequel le mode d'écriture de note attribue
un mot de passe au contenu de note, et stocke le contenu de note équipé du mot de
passe.
11. Climatiseur selon la revendication 1, dans lequel le mode d'écriture de note affiche
un contenu de nouvelle note au cours d'un temps prédéterminé.
12. Climatiseur selon la revendication 1, dans lequel le dispositif d'affichage met en
oeuvre de manière séquentielle un mode d'attente (300) pour attendre une entrée d'un
signal de mise sous tension exécutant une fonction de climatisation et un mode de
fonctionnement (320) pour afficher une image préétablie lorsque la fonction de climatisation
est en cours, et comporte en outre une étape de conversion de mode (315) située entre
le mode d'attente et le mode de fonctionnement de manière à afficher l'un quelconque
du mode d'attente et du mode de fonctionnement selon un signal de mise sous tension
et un signal de mise hors tension.
13. Climatiseur selon la revendication 12, dans lequel le mode d'attente comporte :
un mode d'écran éteint (302) pour n'afficher aucune image sur un écran ;
un mode d'horloge (304) pour afficher une heure actuelle ;
un mode d'économie d'écran (306) pour exécuter un programme économiseur d'écran ;
et
un mode de configuration utilisateur (308) pour afficher une image établie par un
utilisateur.
14. Climatiseur selon la revendication 12, dans lequel le mode de fonctionnement comporte
:
un mode de fonctionnement réel (322) pour afficher une image d'objet réelle (c'est-à-dire,
une photo réelle) ;
un mode de fonctionnement utilisateur (324) pour afficher une image sélectionnée par
l'utilisateur ou une image animée sélectionnée par l'utilisateur ; et
un mode de fonctionnement caractère (326) pour afficher un caractère.
15. Climatiseur selon la revendication 12, dans lequel le dispositif d'affichage met en
oeuvre le mode d'attente ;
un mode de sélection de fonction (340) pour permettre à un utilisateur de sélectionner
une variété de fonctions, et
un mode d'économie d'écran pour exécuter un programme économiseur d'écran sur un dispositif
d'affichage capable d'exécuter le mode d'attente, le mode de fonctionnement et le
mode de sélection de fonction.
16. Climatiseur selon la revendication 15, dans lequel le mode de sélection de fonction
comporte :
une fonction de fonctionnement/supplémentaire (342) pour établir un état de fonctionnement
et des fonctions supplémentaires du climatiseur ;
une fonction d'album (344) pour stocker/éditer une variété d'images photographiques
; et
une fonction de manuel pour afficher un manuel dans lequel des utilisations du climatiseur
ou des fonctions supplémentaires individuelles sont enregistrées.
17. Climatiseur selon la revendication 15, dans lequel le mode d'économie d'écran est
établi/exécuté par un utilisateur.
18. Climatiseur selon la revendication 15, dans lequel le mode d'économie d'écran est
établi par un processus de configuration d'économiseur d'écran.
19. Climatiseur selon la revendication 18, dans lequel le processus de configuration d'économiseur
d'écran comporte :
un processus de configuration d'image pour sélectionner une image à afficher ; et
un processus de configuration de temps pour sélectionner un temps spécifique au cours
duquel l'exécution d'un économiseur d'écran commence.
20. Climatiseur selon la revendication 19, dans lequel le processus de configuration d'image
sélectionne au moins une image parmi une pluralité d'images qui ont été stockées dans
une mémoire ou téléchargées à partir d'une partie externe.
21. Climatiseur selon la revendication 18, dans lequel le processus de configuration d'économiseur
d'écran comporte une fonction "Prévisualisation" pour permettre à l'utilisateur de
prévisualiser un état d'exécution de l'économiseur d'écran établi.
22. Climatiseur selon la revendication 19, dans lequel le processus de configuration de
temps établit un intervalle de temps depuis une heure de début à laquelle le dernier
signal externe (touche) est reçu jusqu'à une heure de fin à laquelle l'économiseur
d'écran commence à fonctionner.
23. Climatiseur selon la revendication 15, dans lequel le mode d'économie d'écran est
actionné lorsqu'aucun signal n'est reçu depuis une partie externe au cours d'un temps
prédéterminé pendant que le mode de fonctionnement ou le mode de sélection de fonction
est exécuté, ou arrête de fonctionner lorsqu'un signal (ou touche) est reçu depuis
la partie externe au cours du temps prédéterminé.
24. Climatiseur selon la revendication 15, dans lequel le mode d'économie d'écran affiche
en continu une seule image, affiche une pluralité d'images sous la forme d'un diaporama,
affiche de manière séquentielle ou aléatoire une pluralité d'images à intervalles
d'un temps prédéterminé, affiche une image animée, ou maintient un état de mise hors
tension du dispositif d'affichage de sorte qu'aucune donnée ne soit affichée sur le
dispositif d'affichage.
25. Climatiseur selon la revendication 1, le dispositif d'affichage mettant en oeuvre
une fonction contextuelle (360) affichant des informations d'état du climatiseur.
26. Climatiseur selon la revendication 25, dans lequel la fonction contextuelle affiche
de manière sélective des fenêtres contextuelles individuelles sur le dispositif d'affichage,
où les fenêtres contextuelles affichent des états de fonctionnement du climatiseur
ou des états d'entrée de signal par l'intermédiaire de l'unité d'entrée.
27. Climatiseur selon la revendication 26, dans lequel l'unité d'entrée indique une unité
de bouton (130) par l'intermédiaire de laquelle un utilisateur entre un signal d'entrée
de touche ou une télécommande pour recevoir un signal de télécommande à partir d'un
utilisateur.
28. Climatiseur selon la revendication 26, dans lequel les fenêtres contextuelles comportant
:
une fenêtre contextuelle d'erreur (362) pour indiquer un état erroné pendant que le
climatiseur fonctionne ;
une fenêtre contextuelle de commande de direction du vent (364, 364') affichée lorsqu'un
signal de commande de direction du vent destiné à régler une direction du vent est
reçu ;
une fenêtre contextuelle de commande de volume (366) affichée lorsqu'un signal destiné
à régler le volume du son est reçu ;
une fenêtre contextuelle de commande de température (368) affichée lorsqu'un signal
destiné à régler une température souhaitée est reçu ;
une fenêtre contextuelle de commande de volume du vent (370) affichée lorsqu'un signal
destiné à régler le volume du vent est reçu ; et
une fenêtre contextuelle de verrouillage dur affichée lorsqu'une fonction de verrouillage/libération
de touche est établie ou une fonction de verrouillage de touche est affichée.
29. Climatiseur selon la revendication 28, dans lequel la fenêtre contextuelle d'erreur
affiche un chiffre d'indication correspondant qui correspond à un élément d'erreur
prédéterminé lorsqu'une condition spécifique correspondant à l'élément d'erreur prédéterminé
se produit.
30. Climatiseur selon la revendication 28, dans lequel la fenêtre contextuelle de commande
de direction du vent comporte :
une fenêtre contextuelle de commande haut/bas (364) affichée lorsqu'un signal destiné
à commander des directions haut/bas du vent verticalement est reçu ; et
une fenêtre contextuelle de commande gauche/droite (364') affichée lorsqu'un signal
destiné à commander des directions gauche/droite du vent est reçu.
31. Climatiseur selon la revendication 30, dans lequel la fenêtre contextuelle de commande
haut/bas est affichée lorsqu'une ailette supérieure contenue dans l'unité intérieure
destinée à régler une direction de l'air généré par l'unité intérieure est mise en
rotation verticalement.
32. Climatiseur selon la revendication 30, dans lequel la fenêtre contextuelle de commande
gauche/droite est affichée lorsqu'une ailette latérale (104) contenue dans l'unité
intérieure destinée à régler une direction de l'air généré par l'unité intérieure
est mise en rotation horizontalement.
33. Climatiseur selon la revendication 26, dans lequel la fenêtre contextuelle ferme une
fenêtre contextuelle précédente lorsqu'une pluralité de signaux sont reçus plusieurs
fois, et affiche une fenêtre contextuelle finale.
34. Climatiseur selon la revendication 33, dans lequel si la fenêtre contextuelle précédente
est la fenêtre contextuelle d'erreur indiquant un état d'erreur, une autre fenêtre
contextuelle est affichée, et retourne ensuite à la fenêtre contextuelle d'erreur
après l'écoulement d'un laps de temps prédéterminé.