WO2023236321A1 - 空气调节设备的显示装置、空气调节设备及其控制方法 - Google Patents

空气调节设备的显示装置、空气调节设备及其控制方法 Download PDF

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Publication number
WO2023236321A1
WO2023236321A1 PCT/CN2022/106852 CN2022106852W WO2023236321A1 WO 2023236321 A1 WO2023236321 A1 WO 2023236321A1 CN 2022106852 W CN2022106852 W CN 2022106852W WO 2023236321 A1 WO2023236321 A1 WO 2023236321A1
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WO
WIPO (PCT)
Prior art keywords
adjustment
display
light
air conditioning
conditioning equipment
Prior art date
Application number
PCT/CN2022/106852
Other languages
English (en)
French (fr)
Inventor
林东明
张卫东
李宝华
张帆
Original Assignee
广东美的制冷设备有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202210657565.1A external-priority patent/CN117253428A/zh
Priority claimed from CN202221462071.XU external-priority patent/CN217467952U/zh
Application filed by 广东美的制冷设备有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2023236321A1 publication Critical patent/WO2023236321A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F13/00Illuminated signs; Luminous advertising
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F13/00Illuminated signs; Luminous advertising
    • G09F13/04Signs, boards or panels, illuminated from behind the insignia
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/50Air quality properties
    • F24F2110/52Air quality properties of the outside air

Definitions

  • the present application relates to the technical field of air conditioning equipment. Specifically, it relates to a display device for air conditioning equipment, an air conditioning equipment and a control method thereof.
  • the display device of the air-conditioning equipment can clearly reflect the current working status of the air-conditioning equipment, allowing the user to clearly perceive the functional operation of the air-conditioning equipment, and improving the user experience.
  • a plurality of the indicator lights and a plurality of the light cavities are respectively arranged along a preset direction.
  • the row spacing of the plurality of light-emitting parts is less than or equal to 9 mm; and/or the row spacing of the plurality of light-emitting parts is less than or equal to 8 mm.
  • the lamp cavity forms a lamp cavity having a light entrance and a light exit
  • the indicator light is located at the light entrance
  • the display portion is located at the light exit
  • the installation component includes: an installation shell; a plurality of partitions, the plurality of partitions are provided in the installation shell and are spaced apart along its extension direction to separate the inner parts of the installation shell.
  • the cavity is divided into a plurality of said lamp cavities.
  • the light-transmitting display part is formed using an in-mold injection molding process.
  • the light-emitting component further includes a circuit board, and a plurality of the indicator lights are provided on the circuit board; wherein the circuit board is sandwiched between the mounting piece and the bottom of the mounting box. Between the walls, the bottom wall of the installation box is provided with a plurality of elastic support arms. One end of the elastic support arms is connected to the bottom wall of the installation box and the other end stops against the circuit board.
  • some of the plurality of elastic support arms are arranged at intervals in the length direction of the circuit board, and at least two of the elastic support arms are arranged at intervals in the width direction of the circuit board and face away from each other. extending in each other's direction.
  • the inner wall of the installation box is provided with a first fixing part and a second fixing part arranged oppositely, and the first fixing part and the second fixing part are respectively connected to two sides of the light-emitting component. Side edge fits.
  • the first fixing part includes a plurality of first fixing parts and is spaced apart along the extension direction of the mounting member; and/or the second fixing part includes a plurality of first fixing parts. And the plurality of second fixing parts are arranged at intervals along the extension direction of the mounting member.
  • the display device of the air conditioning equipment further includes: a mounting plate, the mounting plate has a first display area, the mounting box is connected to one side of the mounting plate and the mounting box Corresponding to the position of the first display area, the light-transmitting display member is provided on a side of the installation plate facing away from the installation box and covers the first display area.
  • the mounting plate further has a second display area
  • the display device further includes a display panel assembly
  • the display panel assembly is provided on the mounting plate
  • the display panel assembly is connected to the third display area.
  • the positions of the two display areas correspond to each other, and the light-transmitting display member also covers the second display area.
  • a method for controlling an air conditioning device includes: turning on a linkage mode of the air conditioning device and pushing a first prompt message to prompt the user that the air conditioning device has entered the linkage mode; In the linkage mode, in response to the control instruction for the first adjustment dimension among the plurality of adjustment dimensions of the air conditioning equipment, controlling the first adjustment dimension except the first adjustment dimension among the plurality of adjustment dimensions.
  • An adjustment dimension other than an adjustment dimension has been turned on; wherein a plurality of the display portions are used to display the adjustment status of a plurality of the adjustment dimensions in one-to-one correspondence, and the adjustment status includes an open/closed state and/or the current progress.
  • the first prompt information is any one of the following: the indicator light corresponding to the linkage mode lights up; the indicator light corresponding to the linkage mode stays on for a preset duration; the linkage mode The indicator light corresponding to the mode presents a first preset color; the indicator light corresponding to the linkage mode presents the first preset color and is always on for the first preset duration; the indicator light corresponding to the linkage mode follows the first preset color.
  • the preset mode flashes.
  • the method further includes: in response to the control instruction, pushing second prompt information corresponding to the first adjustment dimension to prompt the user that the first adjustment dimension is the main adjustment dimension.
  • the second prompt information is any one of the following: the indicator light corresponding to the first adjustment dimension presents a second preset color; the indicator light corresponding to the first adjustment dimension presents a second preset color. The color is preset and stays on for a second preset duration; the indicator light corresponding to the first adjustment dimension flashes according to the second preset mode.
  • the method further includes: for any one of the plurality of adjustment dimensions, when any one of the adjustment dimensions is in an open state, push the third adjustment dimension corresponding to the one of the adjustment dimensions.
  • Three prompt messages are provided to prompt the user that any one of the adjustment dimensions is turned on.
  • the third prompt information is any one of the following: the indicator light corresponding to any adjustment dimension presents a third preset color; the indicator light corresponding to any adjustment dimension presents a third preset color.
  • the color is preset and stays on for a third preset duration; the indicator light corresponding to any of the adjustment dimensions flashes according to the third preset mode.
  • the method further includes: for any one of the plurality of adjustment dimensions, when any one of the adjustment dimensions enters a closed state, pushing fourth prompt information to prompt the user Any of the adjustment dimensions has entered a closed state.
  • the fourth prompt information is any one of the following: the indicator light corresponding to any adjustment dimension goes out; the indicator light corresponding to any adjustment dimension presents a fourth preset color.
  • Figure 1 is a schematic structural diagram of an air conditioning device according to an embodiment of the present application.
  • Figure 2 is a partial structural schematic diagram of an air conditioning device according to an embodiment of the present application.
  • Figure 3 is a partial structural schematic diagram of an indicator light according to an embodiment of the present application.
  • Figure 4 is a partial cross-sectional view of an air conditioning device according to an embodiment of the present application.
  • Figure 5 is a partial structural schematic diagram of a display device according to an embodiment of the present application.
  • Figure 6 is a partial structural schematic diagram of a display device according to an embodiment of the present application.
  • Figure 7 is a partial structural schematic diagram of a display device according to an embodiment of the present application.
  • Figure 8 is an exploded view of a display device according to an embodiment of the present application.
  • Figure 9 is a schematic diagram of an application scenario provided by the embodiment of the present application.
  • Figure 11 is a schematic diagram of yet another application scenario provided by the embodiment of the present application.
  • Figure 12 is a flow chart of a control method for air conditioning equipment provided by an embodiment of the present application.
  • Figure 13 is a schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 14 is another schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 15 is another schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 16 is another schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 17 is a schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 18 is another schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 19 is another schematic diagram of an interface provided by an embodiment of the present application.
  • Figure 20 is a flow chart of another control method of air conditioning equipment provided by an embodiment of the present application.
  • the display device 100 according to the embodiment of the present application is described below with reference to FIGS. 1-8 .
  • the display device 100 may include: a light-emitting component 1, a light-transmitting display component 2, and a mounting component 3.
  • the display device 100 is a device on the air-conditioning equipment 1000 that can display the current operating status of the air-conditioning equipment 1000.
  • the display device of the air-conditioning equipment has a monotonous display mode and cannot highlight some functions of the air-conditioning equipment. For example, users cannot reflect the effect of multi-dimensional functional linkage of air-conditioning equipment, resulting in poor user experience and poor technological sense and aesthetics of air-conditioning equipment.
  • the light-emitting component 1 includes a plurality of indicator lights 11.
  • the plurality of indicator lights 11 respectively correspond to one of the multiple dimensional functions of the air-conditioning device 1000.
  • Each indicator light 11 includes a plurality of light-emitting parts 111, thereby indicating The lamp 11 can form an effect similar to a progress bar by using different lighting numbers of the plurality of light-emitting parts 111 to intuitively display the operating status of the current function of the air conditioning device 1000 .
  • the plurality of light-emitting parts 111 in each indicator light 11 are arranged in multiple rows and columns. Therefore, the current operation status of the function can be intuitively expressed by the number of light-emitting rows and the number of light-emitting columns of the light-emitting parts 111 .
  • the light-transmitting display part 2 has a plurality of display parts 21.
  • the plurality of display parts 21 respectively correspond to displaying one of the multiple dimensional functions of the air-conditioning equipment 1000.
  • the positions of the plurality of display parts 21 correspond to the positions of the plurality of lamp cavities 33 one by one. , so that the lamp cavity 33 can guide the light emitted by the indicator light 11 corresponding to one of the multiple dimensional functions to the corresponding display part 21 .
  • the air-conditioning equipment 1000 can respectively control the luminous effects of multiple indicator lights 11 through the control device.
  • the light emitted by the indicator lights 11 is projected to its corresponding display part 21 through the guidance of the mounting part 3, and is displayed on the display part 21.
  • An image capable of displaying the functional operating status of the air-conditioning equipment 1000 corresponding to the current indicator light 11 is projected on the top.
  • the light passes through the translucent display part 2 so that the user can observe it.
  • the user can clearly perceive the air-conditioning equipment through the display device 100
  • the functional operation status of 1000 and the current working status of the air-conditioning equipment 1000 improve the user's experience and improve the technological sense and aesthetics of the air-conditioning equipment 1000.
  • multiple display portions 21 are used to display the adjustment status of multiple adjustment dimensions of the air conditioning device 1000 .
  • the adjustment status includes the opening and closing status and/or the current progress, thereby enabling the user to feel the air more clearly.
  • the adjustment effect of the adjustment device 1000 on multiple adjustment dimensions prompts the user that the air conditioning device 1000 has entered the linkage mode, and clearly feeds back the effect produced by the linkage to the user to improve the user experience.
  • the air-conditioning equipment 1000 has the function of five-dimensional functional linkage.
  • the air-conditioning equipment 1000 transparently
  • the plurality of display parts 21 on the light display part 2 can be used to display the ambient temperature status, ambient humidity status, air outlet status, purification status and fresh air status of the air conditioner respectively.
  • the display device 100 can be used to embody the air conditioning equipment 1000 The purpose of the linkage effect in the five dimensions of temperature, humidity, wind feeling, purification and fresh air.
  • the light-emitting component 1 has five indicator lights 11, and the five indicator lights 11 respectively correspond to one of the five dimensional functions of the air-conditioning device 1000.
  • the light-transmitting display part 2 of the air-conditioning device 1000 can have five functions.
  • the display parts 21 are respectively the ambient temperature status display part 10, the ambient humidity status display part 20, the air outlet status display part 30, the purification status display part 40 and the fresh air status display part 50.
  • the mounting member 3 has five lamp cavities 33. The lamp cavity 33 can guide the light emitted by the indicator lamp 11 to the display portion 21 corresponding to the corresponding function.
  • the display part 21 is configured to emit light according to at least one row and/or at least one column of the light emitting parts 111 in the indicator lights 11 to represent the current display gear. For example, when the temperature is 17 degrees, that is, when the ambient temperature display part 21 is in the first gear, the ambient temperature status display part 10 may have only one row or row of light-emitting parts 111 emitting light. Further, as shown in FIG.
  • the row pitch of the plurality of light-emitting parts 111 is less than or equal to 9 mm, and the row pitch of the plurality of light-emitting parts 111 is less than or equal to 8 mm, so as to avoid the distance between the light-emitting parts 111 being too large and causing the light-emitting parts 111 to Black shadows appear between them, causing uneven lighting of the indicator light 11 and affecting the visual effect.
  • the lamp cavity 33 forms a lamp cavity 33 having a light entrance and a light exit.
  • the indicator light 11 is located at the light entrance, and the display portion 21 is located at the light exit.
  • the lamp cavity 33 gradually expands from the light entrance to the light outlet. Therefore, the lamp cavity 33 can make the projection range of the light-emitting component 1 wider and at the same time make the light projection effect clearer, thereby allowing the user to The luminous effect displayed by the display part 21 can be observed more clearly in a wider direction, which improves the display effect of the display device 100 and improves the user's experience.
  • the mounting component 3 includes: a mounting shell 32 and a plurality of partitions 31 .
  • the multiple partitions 31 are provided in the mounting shell 32 and are spaced apart along its extension direction to separate the inner cavity of the mounting shell 32 into multiple partitions.
  • the design of the mounting shell 32 and the dividing piece 31 enables the mounting piece 3 to form a whole body, which facilitates the processing and manufacturing of the display device 100 and makes the overall structure of the display device 100 more compact and easier to display. Arrangement of device 100.
  • the light-transmitting display part 2 includes: a light-transmitting plate 22 and a display film 23.
  • the light-transmitting plate 22 covers the mounting part 3.
  • the display film 23 is located between the light-transmitting plate 22 and the mounting part 3.
  • the light-transmitting plate 22 covers the mounting part 3. 22 can provide protection on the outside of the lamp cavity 33 and the display diaphragm 23 to prevent the display diaphragm 23 from deforming, and can play a certain decorative role.
  • the light-transmitting display part 2 is formed using an in-mold injection molding process, which can prevent the glue or double-sided tape attached to the light-transmitting display part 2 from degumming, allowing the indicator light 11 to glow and then display.
  • the pattern is clear, and the pattern will not be displayed on the outside after the indicator light 11 does not emit light.
  • the distance between the indicator light 11 and the display film 23 is greater than 9 mm, so as to prevent the distance between the indicator light 11 and the display film 23 from being too small and causing the light to be unable to be fully diffused, thereby causing Black shadows appear between the light-emitting parts 111, causing the indicator light 11 to emit uneven light and affecting the visual effect.
  • the display film 23 also has a gradient texture.
  • the light projected on the gradient pattern of the display film 23 can form a gradient effect from light to dark, making the display effect of the display device 100 more beautiful.
  • the light-transmitting plate 22 in order to enhance the display effect of the display device 100 and make the appearance of the display device 100 more beautiful, can be made of a transparent material, thereby displaying the preset pattern formed on the film 23 Regardless of whether the light-emitting component 1 emits light outward, it can be projected through the light-transmitting plate 22 and observed by the user, so that the user cannot accurately obtain feedback on the operating status of the air-conditioning device 1000 through the preset pattern.
  • the display device 100 also includes: an installation box 4.
  • the installation box 4 can provide an installation position for the light-emitting component 1 and the installation part 3.
  • the light-emitting component 1 and the installation part 3 are arranged inside the installation box 4. This allows the light-emitting component 1 and the mounting member 3 in the display device 100 to be formed together with the mounting box 4 as a whole, which facilitates the processing of the air-conditioning equipment 1000.
  • one side of the installation box 4 has a pick-and-place opening.
  • the mounting piece 3 can be placed at the pick-and-place opening, and the light-emitting component 1 and the mounting piece 3 can be placed at the pick-and-place opening.
  • the installation part 3 is provided at the access opening to guide the light emitted by the light-emitting component 1 to the vicinity of the access opening, and the light-transmitting display part 2 is provided at the access opening to facilitate the display of light projected onto the translucent display part 2 Part 21.
  • the display device 100 in the embodiment of the present application adopts a floating design between the mounting part 3 and the mounting box 4.
  • the mounting box 4 and the mounting part 3 are connected to each other through snaps.
  • Inverted buckle there is a 1-2mm gap in the buckle design between the installation box 4 and the installation piece 3.
  • An elastic support arm 45 is set inside the installation box 4.
  • the mounting part 3 and the circuit board 12 are lifted up, so that the mounting part 3 can overcome problems such as uneven parts or installation gaps, and the diaphragm adhered to the mounting part 3 can be in close contact with the inner surface of the light-transmitting display part 2 at all times.
  • the inner wall of the installation box 4 is provided with a first fixing part 42 and a second fixing part 43 that are arranged oppositely.
  • the first fixing part 42 and the second fixing part 43 are respectively connected to both sides of the installation piece 3. The edges fit together to stably fix the mounting piece 3 in the mounting box 4 .
  • the second fixing part 43 includes a plurality of second fixing parts 43 arranged at intervals along the extension direction of the light-emitting component 1, so that the force of each second fixing part 43 is uniform, and the light-emitting component 1 is prevented from being detached, so that the light-emitting component 1 is Better overall stability.
  • the indicator light 11 receives the instruction and starts to emit light outward.
  • the user can control the operating status of one or more of temperature, humidity, air volume, purification or fresh air.
  • the light-emitting part 111 of the corresponding display part 21 starts to flash and emit light, and the display panel assembly 6 displays the specific setting value of the corresponding function of the currently flashing display part 21.
  • the light of the display part 21 stops.
  • the flashing remains on, and at the same time, the air conditioning equipment 1000 starts other corresponding functions and automatically adjusts the gears of other functions according to the user setting value and the internal preset linkage scheme.
  • other display parts 21 light up and display the current situation through different lighting effects.
  • the specific gears of each function is not limited to the user setting value and the internal preset linkage scheme.
  • An air conditioning device 1000 includes a panel 200 and the display device 100 described in the above embodiment, and the display device 100 is provided on the panel 200 .
  • the light-transmitting display part 2 is fixed on the mounting plate 5 through double-sided tape or glue, the mounting plate 5 and the panel 200 are fixed through buckles, and the mounting box 4 and the mounting plate 5 are fixed through buckles and screws.
  • the display device 100 is disposed above the panel 200 .
  • the display device 100 includes: a mounting box 4 , a light-emitting component 1 , a light-transmitting display component 2 and a mounting component 3 .
  • the light-transmitting display part 2 is disposed above the panel 200
  • the installation box 4 is disposed behind the panel 200 and the light-transmitting display part 2, and is connected to the panel 200 and the light-transmitting display part 2 at the same time, so that the installation box 4 can be placed more conveniently. Stablize.
  • the lighting component 1 and the mounting component 3 are arranged in the mounting box 4.
  • the lighting component 1 has a plurality of indicator lights 11.
  • the multiple indicator lights 11 respectively correspond to one of the more than 1,000 dimensional functions of the air conditioning equipment.
  • the light-transmitting display component 2 has a plurality of display parts 21, and the plurality of display parts 21 respectively display one of the multiple dimensional functions of the air conditioning device 1000.
  • the mounting piece 3 includes a mounting shell 32 and a plurality of dividing pieces.
  • the dividing piece 31 divides the inner cavity of the mounting shell 32 into a plurality of lamp cavities 33.
  • Each lamp cavity 33 is a lamp cavity 33, and the lamp cavity 33 is used to separate the corresponding lamp cavity 33.
  • the light emitted by the indicator lamp 11 is guided to the corresponding display part 21 .
  • the display part 21, the indicator light 11 and the lamp cavity 33 are arranged along the length direction of the display device 100, so that the structure of the display device 100 is compact and the display effect is better.
  • the light-transmitting display part 2 includes: a light-transmitting plate 22 and a display film 23.
  • the light-transmitting plate 22 covers the mounting part 3.
  • the display film 23 is located between the light-transmitting plate 22 and the mounting part 3.
  • the light-transmitting plate 22 can be mounted on the lamp.
  • the cavity 33 and the outside of the display diaphragm 23 provide protection to avoid deformation of the display diaphragm 23 and can play a certain decorative role.
  • the installation box 4 has a pick-and-place opening.
  • the light-emitting component 1 and the mounting piece 3 are placed in the installation box 4 through the pick-and-place opening.
  • the light-emitting component 1 is placed in the installation box 4 through the access opening, and the first fixing part 42 and the second fixing part 43 are used to securely connect the installation part 3 to the installation box 4 to ensure the stability of the installation of the light-emitting component 1 sex.
  • the installation box 4 with the light-emitting component 1 installed is fixedly installed on the panel 200 and the light-transmitting display part 2. During the installation process, it is ensured that the light entrance of the installation part 3 corresponds to the indicator light 11, and there are fixed holes around the installation box 4. By fixing the connection part 44, the installation box 4 can be installed in the air conditioning device 1000 at a temperature-controlled temperature.
  • the display box 300 is fixedly connected to one side of the display device 100 in the length direction, and is used to directly display part of the data during operation of the air conditioning equipment 1000, and plays a supplementary role to the display device 100.
  • embodiments of the present application provide a linkage control solution. Specifically, after entering the linkage mode, in response to the control instruction for the first adjustment dimension among the multiple adjustment dimensions of the air conditioning equipment, the first adjustment is controlled. In the case of dimensions, control the opened adjustment dimensions among multiple adjustment dimensions except the first adjustment dimension.
  • Figure 9 is a schematic diagram of an application scenario provided by the embodiment of the present application.
  • the application scenario may include: an air conditioning device 1000 and a remote control 2000 , where the user can operate the remote control 2000 to realize remote control of the air conditioning device 1000 .
  • the remote control 2000 may be an infrared remote control with an infrared transmitting unit.
  • the air conditioning device 1000 may be provided with an infrared receiving unit.
  • the infrared remote control transmits infrared signals to the air conditioning device 1000 through the infrared transmitting unit.
  • the air conditioning device 1000 receives infrared signals through the infrared receiving unit, thereby realizing remote control of the air conditioning device 1000 .
  • FIG 10 is a schematic diagram of another application scenario provided by the embodiment of the present application.
  • the application scenario may include: an air conditioning device 1000 and a terminal device 220.
  • the terminal device 220 may be installed with an application, APP, for controlling the air conditioning device 1000.
  • the user can operate the APP to implement control. Remote control of air conditioning equipment 1000.
  • the terminal device can be a mobile phone, a computer, etc., but is not limited to this.
  • FIG. 9 and 10 may be a hanging air conditioning equipment or a cabinet type air conditioning equipment.
  • Figure 11 is a schematic diagram of yet another application scenario provided by the embodiment of the present application. As shown in Figure 11, the application scenario may include: air conditioning equipment, the air conditioning equipment is equipped with a touch panel, and the user can control the air conditioning equipment through operations on the touch panel. It should be understood that this application is also applicable to voice or gesture control scenarios for air conditioning equipment.
  • S410 Turn on the linkage mode of the air conditioning equipment, and push the first prompt message to remind the user that the air conditioning equipment has entered the linkage mode;
  • S420 In the linkage mode, in response to the control instruction for the first adjustment dimension among the plurality of adjustment dimensions of the air-conditioning equipment, controlling the first adjustment dimension among the plurality of adjustment dimensions except the first adjustment dimension. Turn on the adjustment dimension.
  • the plurality of display parts 21 are used to display the adjustment status of multiple adjustment dimensions in a one-to-one correspondence, and the adjustment status includes an open and closed state and/or the current progress.
  • the user is prompted that the air-conditioning equipment 1000 has entered the linkage mode, and the effects produced by the linkage are clearly fed back to the user to improve the user's use. experience.
  • the linkage mode means that when the air-conditioning device obtains a control instruction for the first adjustment dimension among multiple adjustment dimensions, the air-conditioning device controls the first adjustment dimension except for the third adjustment dimension.
  • the first adjustment dimension may be any adjustment dimension among multiple adjustment dimensions.
  • the enabled wind speed adjustment dimension can also be automatically adjusted.
  • the turned on humidity adjustment dimension can also be automatically adjusted.
  • the turned on adjustment dimension can remain unchanged.
  • the linkage mode is for multiple adjustment dimensions, and these adjustment dimensions can be system defaults.
  • multiple adjustment dimensions may include: temperature, wind speed, humidity, purification, fresh air, sterilization and other adjustment dimensions, but are not limited to this.
  • the wind speed adjustment dimension here can include situations where there is no wind feeling.
  • Humidity adjustment dimensions can include humidification and dehumidification conditions.
  • turning on the linkage mode of the air conditioning equipment includes the following situations, but is not limited to these:
  • the air-conditioning equipment obtains a power-on command, and in response to the power-on command, turns on the linkage mode of the air-conditioning device. For example, when the user turns on the air-conditioning equipment, the air-conditioning equipment automatically enters the linkage mode.
  • the power-on instruction may be generated based on the user's operation of the power-on button on the remote control or touch panel, or based on the user's operation of the power-on icon on the APP, or the power-on instruction may be a voice command. , gestures or posture commands, etc.
  • the air-conditioning equipment obtains the linkage instruction, responds to the linkage instruction, and turns on the linkage mode of the air-conditioning equipment. For example, after the user turns on the air-conditioning equipment, the user can click the linkage icon or button to cause the air-conditioning equipment to automatically enter the linkage mode.
  • the linkage instruction can be generated based on the user's operation of the linkage button on the remote control or touch panel, or based on the user's operation of the linkage icon on the APP, or the linkage instruction can be a voice instruction. , gestures or posture commands, etc.
  • the air-conditioning equipment obtains a selection instruction and a linkage instruction for at least one adjustment dimension, and in response to the selection instruction and linkage instruction, the linkage mode of the air-conditioning equipment is turned on. For example, when the user turns on the air-conditioning equipment, the user can select five adjustment dimensions: temperature, wind speed, humidity, purification, and fresh air. Then the user clicks on the linkage icon or button to put the air-conditioning equipment into linkage mode.
  • the air conditioning device can determine whether the maximum interval time of the selection instructions among the selection instructions of multiple adjustment dimensions is less than the preset time length. If it is less than the preset time length, In response to the selection command and the linkage command, the linkage mode of the air conditioning equipment is turned on.
  • the preset time period may be 5s or 10s, etc., and this application does not limit this.
  • At least one adjustment dimension turned on by the air conditioning device may be any of the following, but is not limited to This: The adjustment dimensions that need to be turned on by default in the system; the adjustment dimensions that have been turned on historically in linkage mode; the adjustment dimensions that need to be turned on are determined based on the current environment.
  • the system enables the five adjustment dimensions of temperature, humidity, wind speed, purification, and fresh air by default. Based on this, when the air conditioning equipment obtains a power-on command or a linkage command, it can automatically enable these five adjustment dimensions.
  • the air-conditioning equipment can collect current environmental data, such as temperature, humidity, pollution index, etc. Further, the air-conditioning equipment can determine the adjustment dimensions that need to be turned on based on these current environmental data. Based on this, when the air-conditioning equipment obtains the power-on instruction Or after linking instructions, these adjustment dimensions that need to be turned on can be automatically turned on.
  • the air-conditioning equipment when the air-conditioning equipment is not in use, when the air-conditioning equipment obtains a power-on instruction or a linkage instruction, the air-conditioning equipment can turn on the adjustment dimensions that need to be turned on by default by the system or turn on the adjustment dimensions that need to be turned on based on the current environment.
  • the air-conditioning equipment when the air-conditioning equipment has been used, when the air-conditioning equipment obtains a power-on command or a linkage command, the air-conditioning equipment can turn on the adjustment dimension that the system needs to turn on by default, or turn on the adjustment dimension that has been turned on in the linkage mode, or turn on Determine the adjustment dimensions that need to be enabled based on the current environment.
  • At least one adjustment dimension turned on by the air-conditioning equipment can be any of the following, but is not limited to this:
  • the system needs to be turned on by default Adjustment dimension; the adjustment dimension that is turned on historically in linkage mode; the adjustment dimension that is turned on in normal mode; the adjustment dimension that needs to be turned on is determined based on the current environment.
  • the air-conditioning equipment For example, suppose that after the air-conditioning equipment is started, it first enters the normal mode. In the normal mode, it is assumed that the user turns on the two adjustment dimensions of temperature and wind speed. At this time, when the air-conditioning equipment obtains the linkage instruction, it can automatically turn on the temperature and wind speed. Two dimensions of regulation.
  • first prompt information is used to prompt the user that the air conditioning device has entered the linkage mode.
  • the first prompt information is any of the following, but is not limited to: the indicator light corresponding to the linkage mode lights up; the indicator light corresponding to the linkage mode stays on for the first preset duration; the indicator light corresponding to the linkage mode displays the first A preset color; the indicator light corresponding to the linkage mode presents the first preset color and is always on for the first preset duration; the indicator light corresponding to the linkage mode flashes according to the first preset mode.
  • the indicator light 11 corresponding to the linkage mode can be set in the cabinet touch panel or the on-hook display panel.
  • the first preset time length may be 10 minutes, 30 minutes, etc.
  • the first preset color may be blue, green, red, etc.
  • the first preset mode of flashing may flash once every N seconds, where N is a positive integer, or the intervals between two adjacent flashes may be 1s, 2s, 1s, 2s, etc. in sequence.
  • the icon corresponding to the linkage mode is displayed in the interface.
  • This icon indicates that the indicator light 11 corresponding to the linkage mode is lit, indicating that the linkage mode has been turned on.
  • these two icons can also only exist Just one is enough.
  • the icon corresponding to the linkage mode is not displayed in the interface, which means that the linkage mode has been turned off.
  • the indicator light 11 corresponding to the linkage mode is always on for 10 minutes, it can mean that the linkage mode has been turned on, and if the indicator light 11 corresponding to the linkage mode goes out, it can mean that the linkage mode has been turned off.
  • the indicator light 11 corresponding to the linkage mode turns green and lasts for 10 minutes, it means that the linkage mode is turned on. If the indicator light 11 corresponding to the linkage mode goes out or turns red, it means that the linkage mode has been turned off.
  • the indicator light 11 corresponding to the linkage mode flashes once every 2 seconds, it means that the linkage mode is turned on. If the indicator light 11 corresponding to the linkage mode goes out or turns red, it means that the linkage mode has been turned off.
  • the air-conditioning equipment can also use voice broadcasting to report to the user: "The linkage mode is on” means that the linkage mode is on.
  • the air conditioning device can push the third prompt information or the fourth prompt information respectively for multiple adjustment dimensions.
  • the third prompt information The fourth prompt information is used to prompt the user that the corresponding adjustment dimension is in an open state, and the fourth prompt information is used to prompt the user that the corresponding adjustment dimension is in a closed state.
  • its corresponding third prompt information may be any of the following, but is not limited to: the indicator light corresponding to any one adjustment dimension presents a third preset color; The indicator light corresponding to any adjustment dimension displays a third preset color and remains on for a third preset duration; the indicator light corresponding to any adjustment dimension flashes according to the third preset mode.
  • the corresponding fourth prompt information is any of the following, but is not limited to: the indicator light corresponding to any one adjustment dimension goes out; The indicator light takes on the fourth preset color.
  • the fourth preset color may be red, purple, etc.
  • the striped box indicates that the indicator light 11 is white, indicating that the corresponding adjustment dimension is on, and the length of the striped box indicates the current progress of the adjustment dimension.
  • the indicator light 11 represented by the striped box in Figure 16 indicates the on/off state of the adjustment dimension
  • the indicator light 11 represented by the shaded portion indicates the current progress of the adjustment dimension
  • the indicator light 11 represented by the shaded part can also be used to indicate the on/off state of the adjustment dimension
  • the indicator light 11 represented by the striped frame can be used to indicate the current progress of the adjustment dimension.
  • both indicator lights 11 can simultaneously indicate the on/off status of the adjustment dimension and the current progress.
  • the above-mentioned first adjustment dimension can be called the main adjustment dimension.
  • the multiple adjustment dimensions except the first adjustment dimension will be controlled.
  • Any adjustment dimension among the opened adjustment dimensions other than the adjustment dimension is called the second adjustment dimension.
  • the temperature adjustment dimension can be called the main adjustment dimension.
  • the turned-on wind speed, humidity, fresh air, and purification adjustment dimensions controlled by the air conditioning equipment can be called the second adjustment dimension.
  • the air conditioning device can push second prompt information for the first adjustment dimension to prompt the user that the first adjustment dimension is the main adjustment dimension.
  • the second prompt information is any of the following, but is not limited thereto: the indicator light corresponding to the first adjustment dimension presents a second preset color; the indicator light corresponding to the first adjustment dimension presents a second preset color and is often The indicator light corresponding to the first adjustment dimension flashes according to the second preset mode.
  • the indicator light 11 corresponding to the first adjustment dimension can be provided in the cabinet touch panel or the on-hook display panel.
  • the second preset time length may be 3s or 5s, etc.
  • the second preset color may be blue, green, red, etc.
  • the second preset mode of flashing may flash once every M seconds, where M is a positive integer, or the intervals between two adjacent flashes may be 1s, 3s, 1s, 3s, etc. in sequence.
  • the temperature adjustment dimension is the main adjustment dimension
  • its corresponding indicator light 11 can appear blue and last for 1s.
  • the indication is represented by a black dot box in Figure 18 Lamp 11 appears blue.
  • the air conditioning device may also display the control progress of the first adjustment dimension in response to the control instruction.
  • the temperature adjustment dimension is the main adjustment dimension
  • its corresponding indicator light 11 can appear blue and last for 1s.
  • the indication is represented by a black dot box in Figure 18
  • the lamp 11 appears blue, and the length change of the black dot box represents the control progress of the temperature adjustment dimension.
  • the temperature adjustment dimension is the main adjustment dimension
  • its corresponding indicator light 11 can appear blue and last for 1s.
  • the indication is represented by a black dot box in Figure 19
  • the lamp 11 appears blue, and the height change of the shaded portion represents the control progress of the temperature adjustment dimension.
  • the black dot box in Figure 19 indicates that the temperature adjustment dimension is the main adjustment dimension, and the shaded area indicates the control progress of the temperature adjustment dimension.
  • the shaded part can also be used to indicate that the temperature adjustment dimension is the main adjustment dimension, and the length change of the stripe frame can be used to indicate the control progress of the temperature adjustment dimension.
  • both parts can simultaneously indicate the control progress of the temperature adjustment dimension as the main adjustment dimension and the temperature adjustment dimension.
  • the air-conditioning equipment can turn on the linkage mode of the air-conditioning equipment; in the linkage mode, in response to the control instruction for the first adjustment dimension among the multiple adjustment dimensions of the air-conditioning equipment, in controlling the first adjustment dimension In the case of controlling the opened adjustment dimensions among multiple adjustment dimensions except the first adjustment dimension.
  • This linkage control method can improve control efficiency and thus improve user experience.
  • the air-conditioning equipment can also push the first prompt information to remind the user that the air-conditioning equipment has entered the linkage mode, which can also improve the user experience.
  • the air conditioning device can also push third prompt information or fourth prompt information respectively for multiple adjustment dimensions, so that users can distinguish which adjustment dimensions are on and which are off, thereby improving user experience.
  • Air conditioning equipment can also display the current progress of each adjustment dimension, which can also improve user experience.
  • the air conditioning device can also push second prompt information for the main adjustment dimension so that the user knows which main adjustment dimension is, thereby further improving the user experience.
  • the above S420 may include:
  • S1210 In the linkage mode, in response to the control instruction for the first adjustment dimension, for the second adjustment dimension in the opened adjustment dimension, control the second adjustment dimension to change while controlling the first adjustment dimension; or, When the priority of the second adjustment dimension is lower than the priority of the first adjustment dimension, control the second adjustment dimension to change while controlling the first adjustment dimension; or, control the second adjustment while controlling the first adjustment dimension. Dimensions remain the same.
  • the second adjustment dimension may be any one of the opened adjustment dimensions among the plurality of adjustment dimensions except the first adjustment dimension.
  • the priorities of multiple adjustment dimensions can be set when the air conditioning equipment leaves the factory, or the user can set the priorities of these adjustment dimensions through the remote control, APP or touch panel. This application does not limit this. .
  • the linkage control of the second adjustment dimension includes the following situations: controlling the second adjustment dimension to remain unchanged or change.
  • the air conditioning equipment controls the second adjustment dimension to change, it can adjust the second adjustment dimension in the following implementable ways, but is not limited to this:
  • Implementation method 1 The air conditioning equipment determines the adjustment amount of the first adjustment dimension; determines the mapping relationship between the adjustment amount of the first adjustment dimension and the adjustment amount of the second adjustment dimension; determines the third adjustment amount based on the adjustment amount of the first adjustment dimension and the mapping relationship.
  • the adjustment amount of the second adjustment dimension adjust the second adjustment dimension according to the adjustment amount of the second adjustment dimension.
  • the air conditioning equipment determines that the temperature adjustment amount is -3 degrees. Assume -3 The corresponding wind speed adjustment amount is to increase the wind speed by 1 gear. Based on this, the air conditioning equipment can automatically control the wind speed to increase by 1 gear.
  • the adjustment granularity is different for different adjustment dimensions.
  • the temperature can be adjusted in degrees Celsius, or even the adjustment granularity can be 0.5 degrees, but the wind speed, humidity, fresh air and purification can all be adjusted according to the gears.
  • the mapping relationship between the adjustment amount in the first adjustment dimension and the adjustment amount in the second adjustment dimension can be the corresponding relationship between the temperature adjustment amount interval and the gear adjustment amount. For example, when the temperature When the adjustment amount is below -10 degrees, the wind speed adjustment amount is increased by 3 gears. When the temperature adjustment amount is between -10 degrees and -5 degrees, the wind speed adjustment amount is increased by 2 gears.
  • the air conditioning device determines the adjustment amount of the second adjustment dimension based on the adjustment amount of the first adjustment dimension and the mapping relationship, it can determine whether the adjustment amount of the second adjustment dimension determined based on the mapping relationship is less than or equal to the second adjustment.
  • the maximum adjustable amount of the dimension If the adjustment amount of the second adjustment dimension determined based on the mapping relationship is less than or equal to the maximum adjustable amount of the second adjustment dimension, then the adjustment will be based on the adjustment amount of the second adjustment dimension determined based on the mapping relationship.
  • the second adjustment dimension is the adjustment amount of the second adjustment dimension determined based on the mapping relationship.
  • the air conditioning equipment can determine the target value of the first adjustment dimension; determine the adjusted value corresponding to the second adjustment dimension according to the target value of the first adjustment dimension; adjust the second adjustment value according to the adjusted value corresponding to the second adjustment dimension. Adjustment dimensions.
  • the target value can be the current opening value of the first adjustment dimension. If the control instruction for the first adjustment dimension is an adjustment instruction, then the target value can be is the adjusted value of the first adjustment dimension. For example, assume that the first adjustment dimension is the temperature adjustment dimension, and the second adjustment dimension is the wind speed adjustment dimension. The adjusted temperature is 25 degrees, and the wind speed corresponding to 25 degrees should be 1st gear. If the current wind speed of the air conditioning equipment is 2nd gear , then the air conditioning equipment can reduce the wind speed by 1 gear.
  • the air conditioning device can determine the amount to be adjusted in the second adjustment dimension based on the current value of the second adjustment dimension and the adjusted value corresponding to the second adjustment dimension; determine the maximum adjustable amount of the second adjustment dimension; if the second If the amount to be adjusted in the adjustment dimension is less than or equal to the maximum adjustable amount of the second adjustment dimension, the second adjustment dimension will be adjusted according to the adjusted value corresponding to the second adjustment dimension.
  • the second adjustment dimension If the amount to be adjusted in the second adjustment dimension is greater than the second adjustment dimension the maximum adjustable amount, then adjust the second adjustment dimension according to the maximum adjustable amount of the second adjustment dimension, or if the adjustment amount of the second adjustment dimension determined based on the mapping relationship is greater than the maximum adjustable amount of the second adjustment dimension, Then adjust the second adjustment dimension according to the maximum adjustable amount of the second adjustment dimension, and continue to cycle to the minimum value of the second adjustment dimension to start adjusting until the adjustment amount reaches the adjustment amount of the second adjustment dimension determined based on the mapping relationship.
  • the air conditioning device can, in the linkage mode, respond to the control instruction for the first adjustment dimension and control all second adjustment dimensions to change while controlling the first adjustment dimension.
  • the air conditioning equipment can jointly control the wind speed to increase by 1 level, the humidity to increase by 1 level, and the purification level to increase by 2 level, the fresh air is increased by 2 levels.
  • the air conditioning device can respond to the control instruction for the first adjustment dimension in the linkage mode and control all the second adjustment dimensions to remain unchanged while controlling the first adjustment dimension.
  • control instruction may be an opening instruction, a closing instruction or an adjustment instruction.
  • the adjustment instruction is used to adjust the size of the corresponding adjustment dimension, for example, used to adjust the temperature, wind speed, humidity, fresh air, purification size, etc.
  • the air conditioning device may, in the linkage mode, respond to the closing instruction for the first adjustment dimension, and the linkage control of the second adjustment dimension remains unchanged.
  • the multiple adjustment dimensions are temperature, wind speed, humidity, purification, and fresh air. These adjustment dimensions are all turned on. When the user turns off the temperature adjustment dimension, the air conditioning equipment can maintain the wind speed, humidity, purification, and fresh air. These four adjustment dimensions remain unchanged.
  • the air conditioning device may linkage control the second adjustment dimension to change in response to an adjustment instruction for the first adjustment dimension.
  • the multiple adjustment dimensions are temperature, wind speed, humidity, purification, and fresh air. These adjustment dimensions are all turned on.
  • the air conditioning equipment can linkage to adjust wind speed, humidity, purification, The size of these four adjustment dimensions of fresh air.
  • the air-conditioning equipment can respond to the control instruction and linkage control the second linkage control adjustment dimension to change; or, the priority of the second adjustment dimension is lower than that of the first
  • the second adjustment dimension of the linkage control changes in response to the control instruction; or, in response to the control instruction, the second adjustment dimension of the linkage control remains unchanged.
  • This control method can improve control efficiency and flexibility, thus improving the user experience.
  • Figure 21 is a flow chart of yet another control method for air conditioning equipment provided by an embodiment of the present application. As shown in Figure 21, on the basis of Figure 12, after S420, it may also include:
  • the mode switching instruction may be generated based on the closing operation of the linkage mode, or the mode switching instruction may be generated based on the opening instruction of the normal mode, or the mode switching instruction may be generated based on the mode switching identification or key press. Generated by a click or touch operation, the mode switching logo or button can be set on the remote control or APP or touch panel.
  • Example 1 The user turns on the air-conditioning equipment.
  • the air-conditioning equipment automatically turns on the linkage mode and turns on the two adjustment dimensions of temperature and wind speed by default.
  • the air-conditioning equipment can prompt the user that the two adjustment dimensions of temperature and wind speed are on, and notify the user that the two adjustment dimensions of temperature and wind speed are on.
  • the user is prompted that humidity, purification and fresh air are turned off, and the current progress of the two adjustment dimensions of temperature and wind speed can also be displayed.
  • the air conditioning equipment can adjust the wind speed according to the temperature change, and can display the progress of temperature and wind speed changes, and can also prompt that the temperature adjustment dimension is the main adjustment dimension.
  • the air conditioning device can adjust the wind speed change and display the progress change of the wind speed. Furthermore, when the user turns off the humidity, the air conditioning device can control the temperature and wind speed to remain constant.
  • Example 3 The user turns on the air-conditioning equipment. At this time, the air-conditioning equipment first enters the normal mode. Assume that in the normal mode, the user turns on the temperature, fresh air and wind speed, and then the user turns on the linkage mode. The air-conditioning equipment determines to change all the parameters in the normal mode. The turned-on temperature, fresh air and wind speed are used as the turned-on adjustment mode. The air-conditioning equipment can prompt the user that these three adjustment dimensions are on and purification and humidity are off. It can also display the current progress of these three adjustment dimensions.
  • the air conditioning equipment can adjust the three adjustment dimensions of wind speed and fresh air based on changes in temperature, and can display the progress changes in the temperature, wind speed, and fresh air adjustment dimensions, and can also prompt that the temperature adjustment dimension is the main adjustment dimension. . Furthermore, when the user turns on purification, it is assumed that the priority of purification is lower than all other adjustment dimensions. At this time, the air conditioning equipment controls other adjustment dimensions to remain unchanged. Furthermore, when the user turns off the temperature, the air conditioning equipment can control the wind speed, humidity, fresh air, and purification to remain unchanged.
  • Example 4 The user turns on the air-conditioning equipment. At this time, the user selects the five adjustment dimensions of temperature, wind speed, humidity, purification, and fresh air. Then the user clicks the linkage icon or button to put the air-conditioning equipment into linkage mode.
  • the air conditioning equipment can prompt the user that these five adjustment dimensions are on, and can also display the current progress of these five adjustment dimensions.
  • the air conditioning equipment can adjust the other four adjustment dimensions based on changes in temperature, and can display the progress changes of these five adjustment dimensions, and can also prompt that the temperature adjustment dimension is the main adjustment dimension. Furthermore, when the user turns off the temperature, the air conditioning equipment can control the wind speed, humidity, fresh air, and purification to remain unchanged.

Abstract

一种空气调节设备的显示装置(100)、空气调节设备(1000)及其控制方法,空气调节设备的显示装置(100)包括:发光组件(1)、透光显示件(2)和安装件(3),发光组件(1)包括多个指示灯(11),每个指示灯(11)包括多个发光部(111),多个发光部(111)呈多排多列排布;安装件(3)设于发光组件(1)与透光显示件(2)之间,安装件(3)具有多个灯腔(33)且多个灯腔(33)与多个指示灯(11)位置一一对应,透光显示件(2)具有多个显示部(21)且多个显示部(21)与多个灯腔(33)位置一一对应。

Description

空气调节设备的显示装置、空气调节设备及其控制方法
相关申请的交叉引用
本申请基于申请号为202210657565.1、202221462071.X,申请日为2022年06月10日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及空气调节设备技术领域,具体而言,涉及一种空气调节设备的显示装置、空气调节设备及其控制方法。
背景技术
相关技术公开的空气调节设备的显示装置具有的显示方式单调,无法将空气调节设备的一些功能凸出显示给使用者,例如无法体现空气调节设备的多个维度的功能联动的效果,导致使用者的使用体验差,空气调节设备的科技感以及美观性差,存在改进空间。
申请内容
本申请旨在至少在一定程度上解决现有技术中的上述技术问题之一。为此,本申请提出一种空气调节设备的显示装置,该显示装置能够清晰的反映出空气调节设备当前的工作状态,使得使用者能够清晰的感知空气调节设备的功能运行情况,提高了使用者的使用体验。
本申请还提出了一种具有上述显示装置的空气调节设备、空气调节设备的控制方法。
根据本申请的实施例的空气调节设备的显示装置,包括:发光组件,所述发光组件包括多个指示灯,每个所述指示灯包括多个发光部,每个所述指示灯中的多个所述发光部呈多排多列排布;透光显示件,所述透光显示件设于所述发光组件的一侧;安装件,所述安装件设于所述发光组件与所述透光显示件之间,所述安装件具有多个灯腔且多个所述灯腔与多个所述指示灯位置一一对应,所述透光显示件具有多个显示部且多个所述显示部与多个所述灯腔位置一一对应。
根据本申请的实施例的空气调节设备的显示装置,能够清晰的反映出空气调节设备当前的工作状态,使得使用者能够清晰的感知空气调节设备的功能运行情况,提高了使用者的使用体验。
另外,根据申请实施例的显示装置,还可以具有如下附加技术特征:
根据本申请的一些实施例,多个所述显示部用于显示空气调节设备的多个调节维度的调节状态,所述调节状态包括开闭状态和/或当前进度;所述多个调节维度为温度、湿度、出风、净化、新风或除菌中任选四个或四个以上。
根据本申请的一些实施例,多个所述显示部还用于显示空调的联动模式开启状态,在所述联动模式下,响应于针对所述空气调节设备的多个调节维度中第一调节维度的控制指令,在控制所述第一调节维度的情况下控制所述多个调节维度中除所述第一调节维度以外的已开启调节维度。
根据本申请的一些实施例,多个所述指示灯和多个所述灯腔分别沿预设方向排布。
根据本申请的一些实施例,至少一个所述显示部具有多个显示档位,所述显示部被构造为根据所述指示灯中的至少一排和/或至少一列所述发光部发光以表示当前显示档位。
根据本申请的一些实施例,多个所述发光部的排距小于或者等于9mm;和/或,多个所述发光部的列距小于或者等于8mm。
根据本申请的一些实施例,所述灯腔形成具有入光口和出光口的灯腔,所述指示灯位于所述入光口处,所述显示部位于所述出光口处。
根据本申请的一些实施例,所述安装件包括:安装壳;多个分隔件,多个所述分隔件设于所述安装壳内且沿其延伸方向间隔布置以将所述安装壳的内腔分隔成多个所述灯腔。
根据本申请的一些实施例,所述透光显示件包括透光板,所述透光板覆盖所述安装件;显示膜片,所述显示膜片设在所述透光板与所述安装件之间,所述显示部设于所述显示膜片且包括预设图案。
根据本申请的一些实施例,所述透光显示件采用模内覆膜注塑成型工艺成型。
根据本申请的一些实施例,所述指示灯与所述显示膜片之间的距离大于9mm。
根据本申请的一些实施例,所述显示膜片的背向所述透光板的一侧设有扩散膜;和/或,所述显示膜片还具有渐变纹路。
根据本申请的一些实施例,所述空气调节设备的显示装置还包括:安装盒,所述发光组件与所述安装件设置在所述安装盒的内部;所述安装盒的一侧具有取放口,所述安装件设于所述取放口处。
根据本申请的一些实施例,所述发光组件还包括电路板,多个所述指示灯设于所述电路板;其 中,所述电路板夹设在所述安装件与所述安装盒的底壁之间,所述安装盒的底壁设有多个弹性支撑臂,所述弹性支撑臂的一端与所述安装盒的底壁连接且另一端止抵所述电路板。
根据本申请的一些实施例,多个所述弹性支撑臂中的一部分在所述电路板的长度方向间隔布置,至少两个所述弹性支撑臂在所述电路板的宽度方向间隔布置且朝远离彼此的方向延伸。
根据本申请的一些实施例,所述安装盒的内壁设有相对布置的第一固定部和第二固定部,所述第一固定部和所述第二固定部分别与所述发光组件的两侧边缘配合。
根据本申请的一些实施例,所述第一固定部包括多个且多个所述第一固定部沿所述安装件的延伸方向间隔布置;和/或,所述第二固定部包括多个且多个所述第二固定部沿所述安装件的延伸方向间隔布置。
根据本申请的一些实施例,所述空气调节设备的显示装置还包括:安装板,所述安装板具有第一显示区,所述安装盒连接在所述安装板的一侧且所述安装盒与所述第一显示区的位置对应,所述透光显示件设于所述安装板的背向所述安装盒的一侧且覆盖所述第一显示区。
根据本申请的一些实施例,所述安装板还具有第二显示区,所述显示装置还包括显示板组件,所述显示板组件设于所述安装板且所述显示板组件与所述第二显示区的位置对应,所述透光显示件还覆盖所述第二显示区。
根据本申请另一方面的空气调节设备包括面板和上述的显示装置,所述显示装置设于所述面板。
根据本申请再一方面的空气调节设备的控制方法包括:开启所述空气调节设备的联动模式,并推送第一提示信息,以向用户提示所述空气调节设备已进入所述联动模式;在所述联动模式下,响应于针对所述空气调节设备的多个调节维度中第一调节维度的控制指令,在控制所述第一调节维度的情况下控制所述多个调节维度中除所述第一调节维度以外的已开启调节维度;其中,多个所述显示部用于一一对应地显示多个所述调节维度的调节状态,所述调节状态包括开闭状态和/或当前进度。
根据本申请的一些实施例,所述第一提示信息为以下任一项:所述联动模式对应的指示灯点亮;所述联动模式对应的指示灯常亮第一预设时长;所述联动模式对应的指示灯呈现第一预设颜色;所述联动模式对应的指示灯呈现所述第一预设颜色且常亮所述第一预设时长;所述联动模式对应的指示灯按照第一预设模式闪烁。
根据本申请的一些实施例,所述方法还包括:响应于所述控制指令,推送所述第一调节维度对应的第二提示信息,以向用户提示所述第一调节维度为主调节维度。
根据本申请的一些实施例,所述第二提示信息为以下任一项:所述第一调节维度对应的指示灯呈现第二预设颜色;所述第一调节维度对应的指示灯呈现第二预设颜色且常亮第二预设时长;所述第一调节维度对应的指示灯按照第二预设模式闪烁。
根据本申请的一些实施例,所述方法还包括:针对所述多个调节维度中的任一个调节维度,在所述任一个调节维度处于开启状态时,推送所述任一个调节维度对应的第三提示信息,以向用户提示所述任一个调节维度处于开启状态。
根据本申请的一些实施例,所述第三提示信息为以下任一项:所述任一个调节维度对应的指示灯呈现第三预设颜色;所述任一个调节维度对应的指示灯呈现第三预设颜色且常亮第三预设时长;所述任一个调节维度对应的指示灯按照第三预设模式闪烁。
根据本申请的一些实施例,所述方法还包括:针对所述多个调节维度中的任一个调节维度,在所述任一个调节维度进入关闭状态时,推送第四提示信息,以向用户提示所述任一个调节维度已进入关闭状态。
根据本申请的一些实施例,所述第四提示信息为以下任一项:所述任一个调节维度对应的指示灯熄灭;所述任一个调节维度对应的指示灯呈现第四预设颜色。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本申请实施例的空气调节设备的结构示意图;
图2是根据本申请实施例的空气调节设备的局部结构示意图;
图3是根据本申请实施例的指示灯的局部结构示意图;
图4是根据本申请实施例的空气调节设备的局部剖视图;
图5是根据本申请实施例的显示装置的局部结构示意图;
图6是根据本申请实施例的显示装置的局部结构示意图;
图7是根据本申请实施例的显示装置的局部结构示意图;
图8是根据本申请实施例的显示装置的爆炸图;
图9为本申请实施例提供的一种应用场景示意图;
图10为本申请实施例提供的另一种应用场景示意图;
图11为本申请实施例提供的再一种应用场景示意图;
图12为本申请实施例提供的一种空气调节设备的控制方法的流程图;
图13为本申请实施例提供的一种界面示意图;
图14为本申请实施例提供的另一种界面示意图;
图15为本申请实施例提供的再一种界面示意图;
图16为本申请实施例提供的又一种界面示意图;
图17为本申请实施例提供的一种界面示意图;
图18为本申请实施例提供的再一种界面示意图;
图19为本申请实施例提供的又一种界面示意图;
图20为本申请实施例提供的另一种空气调节设备的控制方法的流程图;
图21为本申请实施例提供的再一种空气调节设备的控制方法的流程图。
附图标记:空气调节设备1000,显示装置100,发光组件1,指示灯11,发光部111,电路板12,透光显示件2,显示部21,环境温度状态显示部10,环境湿度状态显示部20,出风状态显示部30,净化状态显示部40,新风状态显示部50,透光板22,显示膜片23,安装件3,分隔件31,安装壳32,灯腔33,安装盒4,第一固定部42,第二固定部43,固定连接部44,弹性支撑臂45,安装板5,第一显示区51,第二显示区52,显示板组件6,面板200,显示盒300,遥控器2000,终端设备220。
具体实施方式
下面详细描述本申请的实施例,实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。
在本申请的描述中,需要理解的是,术语“中心”、“宽度”、“厚度”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体地限定。
在本申请中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接或可以互相通讯;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
下面参考图1-图8描述根据本申请实施例的显示装置100。
根据本申请实施例的显示装置100可以包括:发光组件1、透光显示件2和安装件3。
显示装置100为空气调节设备1000上能够显示空气调节设备1000当前运行状态的装置,现有技术中,空气调节设备的显示装置具有的显示方式单调,无法将空气调节设备的一些功能凸出显示给使用者,例如无法体现空气调节设备的多个维度的功能联动的效果,导致使用者的使用体验差,空气调节设备的科技感以及美观性差。
为此,本申请实施例设计了一种具有新型显示方法的显示装置100,显示装置100通过多个指示灯11分别控制多个显示部21来分别对应显示多个维度的功能,以使使用者能够通过显示装置100清晰的感知空气调节设备1000的功能运行情况以及空气调节设备1000当前的工作状态,提高使用者的使用体验,提高了空气调节设备1000的科技感以及美观性。
其中,发光组件1为显示装置100的光源,能够向外发射光线,透光显示件2设于发光组件1的一侧,发光组件1发射的光线能够通过透光显示件2从显示装置100向外投射,以使使用者能够根据透光显示件2投射出的光线获取空气调节设备1000当前运行状况的信息。
其中,发光组件1包括多个指示灯11,多个指示灯11分别对应空气调节设备1000多个维度功 能中的其中一种功能,每个指示灯11包括多个发光部111,由此,指示灯11可以由多个发光部111的不同的发光数量来形成类似于进度条的效果,以直观的表现出空气调节设备1000当前功能的运行状况。其中,每个指示灯11中的多个发光部111呈多排多列排布,由此,通过发光部111的发光排数以及发光列数可以直观的表示出当前该功能的运行情况。
安装件3设于发光组件1与透光显示件2之间,以对发光组件1发射出的光进行导向,使得光能够投射到透光显示件2处,并在穿过透光显示件2后被使用者观测到。并且,安装件3的设置还能够控制发光组件1发出的光线投射到透光显示件2上的范围以及发光效果,使得显示装置100的发光效果更美观。安装件3具有多个灯腔33且多个灯腔33与多个指示灯11位置一一对应,以使灯腔33能够将指示灯11发出的光线导引至对应的位置。
透光显示件2具有多个显示部21,多个显示部21分别对应显示空气调节设备1000多个维度功能中的其中一种功能,多个显示部21与多个灯腔33位置一一对应,,以使灯腔33能够将多个维度功能中的其中一种功能对应的指示灯11发出的光引导至对应的显示部21。
也就是说,空气调节设备1000能够通过控制装置分别对应控制多个指示灯11的发光效果,指示灯11发出的光通过安装件3的导向投射到其对应的显示部21,并在显示部21上投射出能够显示当前指示灯11对应的空气调节设备1000的功能运行状态的图像,光线透过透光显示件2使使用者能够观测到,使用者能够通过显示装置100清晰的感知空气调节设备1000的功能运行情况以及空气调节设备1000当前的工作状态,提高使用者的使用体验,提高了空气调节设备1000的科技感以及美观性。
根据本申请实施例的显示装置100,该显示装置100能够清晰的反映出空气调节设备1000当前的工作状态,使得使用者能够清晰的感知空气调节设备1000的功能运行情况,提高了使用者的使用体验,提高了空气调节设备1000的科技感以及美观性。
如图1所示,多个显示部21用于显示空气调节设备1000的多个调节维度的调节状态,调节状态包括开闭状态和/或当前进度,由此能够使用户能够更清晰的感受空气调节设备1000对多个调节维度的调节效果,向用户提示空气调节设备1000已进入联动模式,并将联动后产生的效果清晰的反馈给用户,提高用户的使用体验。
其中,多个调节维度为温度、湿度、出风、净化、新风或除菌中任选四个或四个以上。
根据本申请的一些实施例,多个所述显示部21还用于显示空气调节设备1000的联动模式开启状态,在所述联动模式下,响应于针对所述空气调节设备的多个调节维度中第一调节维度的控制指令,在控制所述第一调节维度的情况下控制所述多个调节维度中除所述第一调节维度以外的已开启调节维度。由此,显示装置100能够体现空气调节设备1000的多个维度的功能联动的效果,使得使用者对空气调节装置1000的功能具有更好的感知,提高用户的使用体验。
如图1所示,在一些实施例中,空气调节设备1000具有五维功能联动的功能,在此基础上,空气调节设备1000为了通过显示装置100体现空气调节设备1000的五维联动功能,透光显示件2上的多个显示部21可以分别用于显示空调的环境温度状态、环境湿度状态、出风状态、净化状态和新风状态,由此,能够实现利用显示装置100体现空气调节设备1000在温度、湿度、风感、净化以及新风五个维度功能的联动效果的目的。
具体地,发光组件1具有五个指示灯11,五个指示灯11分别对应空气调节设备1000五个维度功能中的其中一种功能,在空气调节设备1000的透光显示件2上可以具有五个显示部21,分别为环境温度状态显示部10、环境湿度状态显示部20、出风状态显示部30、净化状态显示部40和新风状态显示部50,安装件3具有五个灯腔33,灯腔33能够将指示灯11发出的光线导引至对应功能对应的显示部21。
参照图1-图8,多个指示灯11和多个灯腔33分别沿预设方向排布。通过将多个指示灯11和多个灯腔33沿预设方向排布,不仅能够便于使用者的观测,还能够使得空气调节设备1000的显示装置100的显示效果更美观。并且,通过将多个指示灯11和多个灯腔33沿预设方向排布,还能够使得显示装置100的整体结构更紧凑,避免显示装置100的体积过大,在空气调节设备1000内占用过多的空间,进而减小了空气调节设备1000的整体体积。
如图3所示,至少一个显示部21具有多个显示档位,通过不同的显示档位能够显示出该显示部21显示的功能的不同的运行情况。具体地,在一些实施例中,环境温度状态显示部10可以具有从17℃至30℃均分的5个档位,环境湿度状态显示部20可以从40%至80%均分为4个档位,出风状态显示部30从静音档至超强档分为5个档位,净化状态显示部40由于仅需要表示开启与关闭两种状态,因此,净化状态显示部40仅具有一个档位,新风状态显示部50根据新风风量分为4个档位。
显示部21被构造为根据指示灯11中的至少一排和/或至少一列发光部111发光以表示当前显示档位。例如,当温度为17度时,即环境温度显示部21处于第一档位时,环境温度状态显示部10 可以仅有一列或一排发光部111发光。进一步,如图3所示,多个发光部111的排距小于或者等于9mm,多个发光部111的列距小于或者等于8mm,以避免发光部111之间的距离过大而导致发光部111之间出现黑影,导致指示灯11的发光不均匀,影响视觉效果。
参照图4,灯腔33形成具有入光口和出光口的灯腔33,指示灯11位于入光口处,显示部21位于出光口处。
换言之,指示灯11在灯腔33的入光口处向灯腔33内发射光线,以使光线在经过灯腔33的导向后从灯腔33的出光口处射出,并投射在显示部21上,并在透过显示部21,以使使用者能够观测到。由此,指示灯11发射的光线不会从显示装置100中与该指示灯11对应的显示部21以外的其他部分投射出来,还避免了显示部21的边缘发光效果模糊,确保了显示装置100的显示效果。
如图4所示,灯腔33从入光口至出光口渐扩,由此,灯腔33能够在使发光组件1投射范围更宽的同时使得光线的投射效果更清晰,从而使得使用者能够在更广的方向上更清晰的观测到显示部21显示出的发光效果,提高了显示装置100的显示效果,提高了使用者的使用体验。
如图5所示,安装件3包括:安装壳32和多个分隔件31,多个分隔件31设于安装壳32内且沿其延伸方向间隔布置以将安装壳32的内腔分隔成多个灯腔33,通过安装壳32和分割件31的设计使得安装件3能够形成一个整体,由此能够便于显示装置100的加工与制造,并且使得显示装置100的整体结构更紧凑,更便于显示装置100的布置。
进一步,安装件3的材料可以为由聚碳酸酯和丙烯腈-丁二烯-苯乙烯共聚物合并而成的热可塑性塑胶材料,以达到提高反光效果,确保安装件3的导光效果的目的。
参照图4,透光显示件2包括:透光板22和显示膜片23,透光板22覆盖安装件3,显示膜片23设在透光板22与安装件3之间,透光板22能够在灯腔33与显示膜片23外侧给予其保护,避免显示膜片23出现变形,并且能够起到一定的装饰作用。
并且,光线能够通过透光板22,以使使用者能够根据透射出的光线获取空气调节设备1000反馈的信息。进一步,显示部21设于显示膜片23且包括预设图案,显示膜片23上的预设图案能够在光线的投射下在显示部21上显示出来,使用者根据显示部21上显示出的预设图案能够获得该显示部21所显示的对应功能信息,使得显示装置100显示效果更佳。
进一步,显示膜片23可以为耐高温聚酯薄膜,耐高温聚酯薄膜的尺寸稳定,适于进行印刷加工,具有较好的强韧性,透明性好。
在一些实施例中,透光显示件2采用模内覆膜注塑成型工艺成型,由此能够避免透光显示件2上粘贴的胶水或双面胶发生脱胶的现象,使指示灯11发光后显示的图案清晰,并且在指示灯11不发光后使得图案不会显示在外侧。
根据本申请的一些实施例,指示灯11与显示膜片23之间的距离大于9mm,以避免指示灯11与显示膜片23之间的距离距离过小而导致光线无法得到充分扩散,进而导致发光部111之间出现黑影,导致指示灯11的发光不均匀,影响视觉效果。
进一步,显示膜片23的背向透光板22的一侧设有扩散膜,以使光线能够得到充分的扩散,避免发光部111之间出现黑影,确保指示灯11的发光均匀,提高视觉效果。其中,扩散膜的透光滤不大于3%,以进一步确保发光效果。
根据本申请的一些实施例,显示膜片23还具有渐变纹路。光线投射在显示膜片23的渐变纹路上,能够形成由明至暗的渐变效果,使得显示装置100的显示效果更美观。
在一些实施例中,为了增强显示装置100的显示效果,并且使得显示装置100的外观更佳美观,透光板22可以为透明材料制成,由此,显示膜片23上形成的预设图案无论发光组件1是否向外发射光线都能够透过透光板22投射出来,被使用者观测到,致使使用者无法通过预设图案准确获取空气调节设备1000运行状态的反馈。
如图2-图8所示,显示装置100还包括:安装盒4,安装盒4能够为发光组件1与安装件3提供安装位置,发光组件1与安装件3设置在安装盒4的内部,使得显示装置100中的发光组件1与安装件3能够与安装盒4一起共同形成为一个整体,便于空气调节设备1000的加工。
如图4和图5所示,安装盒4的一侧具有取放口,生产过程中可以通过取放口将安装件3设于取放口处,并将发光组件1与安装件3设置在安装盒4内。安装件3设于取放口处,以将发光组件1发射的光线导向到取放口附近,透光显示件2设置在取放口处,以便于光线投射到透光显示件2上的显示部21上。
如图4所示,发光组件1还包括电路板12,多个指示灯11设于电路板12,其中,电路板12夹设在安装件3与安装盒4的底壁之间,以使发光组件1整体结构更紧凑,使电路板12能够设置的更稳定,确保电路板12上设置的指示灯11的位置稳定。安装盒4的底壁设有多个弹性支撑臂45,弹性支撑臂45的一端与安装盒4的底壁连接且另一端止抵电路板12,由此,电路板12能够被弹性 支撑臂45稳定的限位在安装件3与安装盒4的底壁之间。
安装件3与透光显示件2非直接安装固定,为了满足显示效果,显示膜片23必须紧贴在透光显示件2背面,若显示膜片23长度方向变形较大或透光显示件2不平整,显示膜片23与透光显示件2之间有间隙则会导致投射的图案有光晕、虚化、显示不清晰等问题。
为此,本申请实施例的显示装置100的安装件3与安装盒4之间采用浮动设计,通过将电路板12固定在安装盒4上,安装盒4与安装件3周圈通过卡扣相互倒扣,安装盒4与安装件3之间卡扣设计上有1-2mm间距,此时安装件3与安装盒4之间有1-2mm的浮动量,安装盒4内设置弹性支撑臂45将安装件3与电路板12顶起,使得安装件3能够克服零件不平整或安装缝隙等问题,粘贴在安装件3上的膜片能够时刻紧贴在透光显示件2内表面。
如图4-图8所示,多个弹性支撑臂45中的一部分在电路板12的长度方向间隔布置,以使电路板12与安装件3之间的贴合更紧密,至少两个弹性支撑臂45在电路板12的宽度方向间隔布置且朝远离彼此的方向延伸,由此,使得电路板12宽度方向两侧的受力均衡,进而确保显示膜片23能够平整的设置在安装件3与透光显示件2之间。
如图5-图7所示,安装盒4的内壁设有相对布置的第一固定部42和第二固定部43,第一固定部42和第二固定部43分别与安装件3的两侧边缘配合,以将安装件3稳定的固定在安装盒4内。
参照图5-图7,第一固定部42包括多个且多个第一固定部42沿安装件3的延伸方向间隔布置,以使各个第一固定部42的受力均匀,避免安装件3脱离,使得安装件3的整体稳定性更好。
第二固定部43包括多个且多个第二固定部43沿发光组件1的延伸方向间隔布置,以使各个第二固定部43的受力均匀,避免发光组件1脱离,使得发光组件1的整体稳定性更好。
如图8所示,空气调节设备1000的显示装置100还包括:安装板5,安装板5具有第一显示区51,安装盒4连接在安装板5的一侧且安装盒4与第一显示区51的位置对应,透光显示件2设于安装板5的背向安装盒4的一侧且覆盖第一显示区51,由此,通过安装板5的设置,便于安装盒4等结构的布置避免了安装盒4等结构的安装影响空气调节设备1000的外观。
如图8所示,安装板5还具有第二显示区52,显示装置100还包括显示板组件6,显示板组件6设于安装板5且显示板组件6与第二显示区52的位置对应,透光显示件2还覆盖第二显示区52,由此,通过显示板组件6,能够使得显示装置100能够显示出更详细的空气调节设备1000的运行信息,使得用户获得更好的信息交互体验。
具体地,在用户向空气调节设备1000发送运行指令后,指示灯11接收到指令开始向外发射光线,用户可以对温度、湿度、风量、净化或新风中的一项或多项的运行状态进行设定,此时对应的显示部21的发光部111开始闪烁发光,显示板组件6显示当前闪烁的显示部21对应功能的具体地设定值,在完成设定后,显示部21的灯光停止闪烁保持常亮,同时空气调节设备1000根据用户设定值以及内部预设联动方案启动其他对应功能并自动调节其他功能的档位,此时其他显示部21发光,并通过不同的发光效果显示当前各个功能的档具体档位。
根据本申请另一方面实施例的空气调节设备1000,包括面板200和上述实施例中描述的显示装置100,显示装置100设于面板200。其中,透光显示件2通过双面胶或胶水粘贴固定在安装板5上,安装板5与面板200通过卡扣固定,安装盒4与安装板5之间通过卡扣和螺钉固定。
下面根据图1-图8描述空气调节设备1000的一个具体实施例。
参照图1-图8,空气调节设备1000包括:面板200、显示盒300和显示装置100。其中,面板200能够在空气调节设备1000的前部起到装饰以及保护的作用。
显示装置100设置在面板200上方,具体地,显示装置100包括:安装盒4、发光组件1、透光显示件2和安装件3。透光显示件2设置在面板200的上方,安装盒4设置在面板200与透光显示件2的后方,且同时与面板200以及透光显示件2连接,以使安装盒4能够设置的更稳定。
发光组件1与安装件3设置在安装盒4内,发光组件1具有多个指示灯11,多个指示灯11分别对应空气调节设备1000多个维度功能中的其中一种功能,透光显示件2具有多个显示部21,多个显示部21分别对应显示空气调节设备1000多个维度功能中的其中一种功能。
安装件3包括安装壳32以及多个分割件,分隔件31将安装壳32的内腔分割为多个灯腔33,每一个灯腔33为一个灯腔33,灯腔33用于将对应的指示灯11发出的光引导至对应的显示部21。
灯腔33具有入光口和出光口,其中,入光口位于显示装置100的后侧,出光口位于显示装置100的前侧,指示灯11设置在入光口处,显示部21位于出光口处。
根据本申请的一些实施例,空气调节设备1000具有五维功能联动的功能,在此基础上,空气调节设备1000为了通过显示装置100体现空气调节设备1000的五维联动功能,透光显示件2上的多个显示部21可以分别用于显示空调的环境温度状态、环境湿度状态、出风状态、净化状态和新风状态,由此,能够实现体现空气调节设备1000在温度、湿度、风感、净化以及新风五个维度功能 的联动效果的目的。具体地,发光组件1具有五个指示灯11,五个指示灯11分别对应空气调节设备1000五个维度功能中的其中一种功能,在空气调节设备1000的透光显示件2上可以具有五个显示部21,分别为环境温度状态显示部10、环境湿度状态显示部20、出风状态显示部30、净化状态显示部40和新风状态显示部50,安装件3具有五个灯腔33,灯腔33能够将指示灯11发出的光线导引至对应功能对应的显示部21。
具体地,指示灯11在灯腔33的入光口处向灯腔33内发射光线,以使光线在经过灯腔33的导向后从灯腔33的出光口处射出,并投射在显示部21上,并在投射过显示部21,以便于使用者观测。
进一步,显示部21、指示灯11和灯腔33沿显示装置100的长度方向排布,以使显示装置100的结构紧凑,显示效果更好。
透光显示件2包括:透光板22和显示膜片23,透光板22覆盖安装件3,显示膜片23设在透光板22与安装件3之间,透光板22能够在灯腔33与显示膜片23外侧给予其保护,避免显示膜片23出现变形,并且能够起到一定的装饰作用。
下面结合附图描述显示装置100的安装过程。
如图4-图7所示,安装盒4具有取放口,生产过程中,通过取放口将发光组件1与安装件3设置在安装盒4内。具体地,首先将发光组件1通过取放口设置在安装盒4内,并利用第一固定部42以及第二固定部43将安装件3与安装盒4固定连接,确保发光组件1设置的稳定性。
进一步,再将安装有发光组件1的安装盒4固定设置在面板200以及透光显示件2上,安装过程中确保安装件3的入光口与指示灯11对应,安装盒4的周围具有固定连接部44,通过固定连接部44能够将安装盒4温度的设置在空气调节设备1000内。
显示盒300固定连接在显示装置100长度方向上的一侧,用于直接显示空气调节设备1000运行中的部分数据,对显示装置100起到补充的作用。
根据本申请实施例的空气调节设备1000,通过采用上述显示装置100,使空气调节设备1000的功能更容易被用户感知,提高了空气调节设备1000的使用体验。该空气调节设备1000可以是挂式空气调节设备、柜式空气调节设备、移动空气调节设备等。对于空气调节设备1000的其它构造均已为现有技术且为本领域的技术人员所熟知,因此这里对于空气调节设备1000的其它构造不做详细说明。
目前针对空气调节设备的多个调节维度只能单独分别进行控制,导致控制效率较低,从而导致用户体验感并不高。为了解决上述技术问题,本申请实施例提供了联动控制方案,具体地,当进入联动模式之后,响应于针对空气调节设备的多个调节维度中第一调节维度的控制指令,在控制第一调节维度的情况下控制多个调节维度中除第一调节维度以外的已开启调节维度。
示例性地,本申请技术方案可以应用于如下场景,但不限于此:
图9为本申请实施例提供的一种应用场景示意图。如图9所示,该应用场景可以包括:空气调节设备1000和遥控器2000,其中,用户可以操作遥控器2000实现对空气调节设备1000的遥控。
可选地,该遥控器2000可以是红外遥控器,该红外遥控器具有红外发射单元,空气调节设备1000上可以具有红外接收单元,红外遥控器通过红外发单元向空气调节设备1000发射红外信号,空气调节设备1000通过红外接收单元接收红外信号,从而实现对空气调节设备1000的遥控。
图10为本申请实施例提供的另一种应用场景示意图。如图10所示,该应用场景可以包括:空气调节设备1000和终端设备220,其中,该终端设备220上可以安装有用于控制空气调节设备1000的应用Application,APP,用户可以操作该APP实现对空气调节设备1000的遥控。
可选地,该终端设备可以是手机、电脑等,但不限于此。
应理解的是,图9和图10中的空气调节设备可以是挂式空气调节设备,也可以是柜式空气调节设备。图11为本申请实施例提供的再一种应用场景示意图。如图11所示,该应用场景可以包括:空气调节设备,该空气调节设备具备触控面板,用户可以通过在触控面板上的操作来实现对空气调节设备的控制。应理解的是,本申请还适用于对空气调节设备的语音或者手势控制场景等。
下面将对本申请技术方案进行详细阐述:
图12为本申请实施例提供的一种空气调节设备的控制方法的流程图,该方法可以由空气调节设备执行,该空气调节设备可以是柜式空气调节设备或者挂式空气调节设备等,如图12所示,该方法可以包括:
S410:开启空气调节设备的联动模式,并推送第一提示信息,以向用户提示空气调节设备已进入联动模式;
S420:在联动模式下,响应于针对空气调节设备的多个调节维度中第一调节维度的控制指令,在控制第一调节维度的情况下控制多个调节维度中除第一调节维度以外的已开启调节维度。
其中,多个显示部21用于一一对应地显示多个调节维度的调节状态,调节状态包括开闭状态和 /或当前进度。以使用户能够更清晰的感受空气调节设备1000对多个调节维度的调节效果,向用户提示空气调节设备1000已进入联动模式,并将联动后产生的效果清晰的反馈给用户,提高用户的使用体验。
应理解的是,联动模式指的当空气调节设备获取到针对多个调节维度中第一调节维度的控制指令时,空气调节设备在控制第一调节维度的情况下控制多个调节维度中除第一调节维度以外的已开启调节维度,该第一调节维度可以是多个调节维度中的任一个调节维度。例如,当用户调节温度维度时,已开启的风速调节维度也可以自动被调节。再例如,当用户开启风速调节维度时,已开启的湿度调节维度也可以自动被调节。又例如,当用户关闭湿度调节维度时,已开启的调节维度可以维持不变。
可选地,联动模式是针对多个调节维度而言的,这些调节维度可以是系统默认的。
可选地,多个调节维度可以包括:温度、风速、湿度、净化、新风、除菌等调节维度,但不限于此。这里的风速调节维度可以包括无风感情况。湿度调节维度可以包括加湿和除湿情况。
可选地,开启空气调节设备的联动模式包括以下若干情况,但不限于此:
情况一,空气调节设备获取开机指令,响应于开机指令,开启空气调节设备的联动模式。例如,当用户开启空气调节设备时,空气调节设备自动进入联动模式。
可选地,该开机指令可以是基于用户对遥控器或者触控面板上的开机按键的操作生成,或者,基于用户对APP上的开机图标的操作生成,又或者,该开机指令可以是语音指令、手势或者姿态指令等。
情况二,空气调节设备获取联动指令,响应于联动指令,开启空气调节设备的联动模式。例如,当用户开启空气调节设备后,用户可以点击联动图标或按键,以使空气调节设备自动进入联动模式。
可选地,该联动指令可以是基于用户对遥控器或者触控面板上的联动按键的操作生成,或者,基于用户对APP上的联动图标的操作生成,又或者,该联动指令可以是语音指令、手势或者姿态指令等。
情况三,空气调节设备获取对至少一个调节维度的选择指令和联动指令,响应于该选择指令和联动指令,开启空气调节设备的联动模式。例如,当用户开启空气调节设备后,用户可以选择温度、风速、湿度、净化、新风五个调节维度,接着用户点击联动图标或按键,以使空气调节设备进入联动模式。
可选地,在情况三中,假设用户选择了多个调节维度,那么空气调节设备可以判断多个调节维度的选择指令中选择指令的最大间隔时间是否小于预设时长,若小于预设时长,则响应于选择指令和联动指令,开启空气调节设备的联动模式。
可选地,预设时长可以是5s或者10s等,本申请对此不做限制。
应理解的是,之所以设置该预设时长,其可以降低空气调节设备的误判。例如,假设不设置预设时长,用户在t时刻选择了新风调节维度,在半小时后,用户又选择了温度、湿度、风速这三维调节维度,接着用户可以点击或者触摸联动按键或者图标等,实际上,用户期望对温度、湿度、风速这三个调节维度进行联动,但是如果不设置预设时长,空气调节设备可能会对新风、温度、湿度、风速这四个调节维度进行联动。
下面对选择指令的最大间隔时间进行示例性说明:假设用户选择了温度、湿度和风速三个调节维度,而它们对应的选择时间分别是:t,t+1s,t+2s,那么针对这三个调节维度,对应的选择指令的最大间隔时间是t+2-t=2s。
应理解的是,在情况二和三中存在两种场景,一种场景是当空气调节设备被开启后,空气调节设备默认先进入普通模式,这时如果空气调节设备获取联动指令,或者获取针对至少一个调节维度的选择指令和联动指令后,空气调节设备可以从普通模式切换至联动模式。另一种场景是当空气调节设备被开启后,空气调节设备不进入任何模式,这种模式可以被称为空闲模式,或者,这种状态可以被称为空闲状态,当空气调节设备获取到联动指令,或者获取到针对至少一个调节维度的选择指令和联动指令后,那么空气调节设备可以进入联动模式。此时空气调节设备响应于开机指令或所述联动指令,开启多个调节维度中的至少一维调节维度。
应理解的是,普通模式也可以被称为非联动模式,指的是多个调节维度被独立控制的模式,即当用户控制任一个调节维度时,其他调节维度不被联动控制。
应理解的是,联动指令用于开启空气调节设备的联动模式。
当空气调节设备进入联动模式之后,空气调节设备将会开启至少一个调节维度,下面分别针对上述开启联动模式的三种情况下所开启的至少一个调节维度进行说明:
可选地,在上述情况一中,或者,在上述情况二中当空气调节设备在开机后直接进入联动模式时,空气调节设备所开启的至少一个调节维度可以是以下任一项,但不限于此:系统默认需要开启 的调节维度;在联动模式下历史开启的调节维度;根据当前环境确定需要开启的调节维度。
例如,系统默认开启温度、湿度、风速、净化、新风这五个调节维度,基于此,当空气调节设备获取到开机指令或者联动指令后,可以自动开启这五个调节维度。
例如,系统默认开启温度和风速这两个调节维度,基于此,当空气调节设备获取到开机指令或者联动指令后,可以自动开启这两个调节维度。
例如,假设用户最近一次在联动模式下开启的调节维度是温度、湿度、风速这三个调节维度,基于此,当空气调节设备获取到开机指令或者联动指令后,可以自动开启这三个调节维度。
例如,空气调节设备可以采集当前环境数据,如温度、湿度、污染指数等,进一步地,空气调节设备可以根据这些当前环境数据确定需要开启的调节维度,基于此,当空气调节设备获取到开机指令或联动指令后,可以自动开启这些需要开启的调节维度。
可选地,当空气调节设备未被使用过时,当空气调节设备获取到开机指令或联动指令时,空气调节设备可以开启系统默认需要开启的调节维度或者开启根据当前环境确定需要开启的调节维度。当空气调节设备已被使用过时,当空气调节设备获取到开机指令或联动指令时,空气调节设备可以开启系统默认需要开启的调节维度,或者开启在联动模式下历史开启的调节维度,又或者开启根据当前环境确定需要开启的调节维度。
可选地,在上述情况二中,当空气调节设备从普通模式切换至联动模式时,空气调节设备所开启的至少一个调节维度可以是以下任一项,但不限于此:系统默认需要开启的调节维度;在联动模式下历史开启的调节维度;在普通模式下开启的调节维度;根据当前环境确定需要开启的调节维度。
例如,假设在空气调节设备启动后,其先进入普通模式,在普通模式下假设用户开启了温度和风速两个调节维度,这时当空气调节设备获取到联动指令后,可以自动开启温度和风速两个调节维度。
可选地,在上述情况三中,空气调节设备可以开启基于用户所选择的至少一个调节维度。例如,用户可以通过遥控器、APP或者触控面板选择至少一维调节维度,例如,选择对温度、风速这两维调节维度,接着用户可以点击或者触摸联动按键或者图标等,从而可以开启这两维调节维度。
应理解的是,上述第一提示信息用于向用户提示所述空气调节设备已进入所述联动模式。
可选地,第一提示信息为以下任一项,但不限于此:联动模式对应的指示灯点亮;联动模式对应的指示灯常亮第一预设时长;联动模式对应的指示灯呈现第一预设颜色;联动模式对应的指示灯呈现第一预设颜色且常亮第一预设时长;联动模式对应的指示灯按照第一预设模式闪烁。
可选地,联动模式对应的指示灯11可以设置在柜机触控面板中或者挂机显示面板中。
可选地,联动模式对应的指示灯11可以是一个或多个。
可选地,第一预设时长可以是10分钟、30分钟等。
可选地,第一预设颜色可以是蓝色、绿色或者红色等。
可选地,第一预设模式闪烁可以是每间隔N秒闪烁一次,N为正整数,或者,相邻两次闪烁间隔时间分别是1s,2s,1s,2s依次循环等。
例如,如图13所示,在该界面中显示联动模式对应的图标,该图标表示联动模式对应的指示灯11被点亮,代表联动模式已被开启,当然,这两个图标也可以只存在一个即可。如图15所示,在该界面中未显示联动模式对应的图标,代表联动模式已被关闭。
例如,联动模式对应的指示灯11常亮10分钟,可以表示联动模式已被开启,联动模式对应的指示灯11熄灭可以表示联动模式已被关闭。
例如,联动模式对应的指示灯11如果呈现绿色,表示联动模式已被开启,联动模式对应的指示灯11熄灭或者呈现红色可以表示联动模式已被关闭。
例如,联动模式对应的指示灯11如果呈现绿色并且持续时间为10分钟,表示联动模式已开启,联动模式对应的指示灯11熄灭或者呈现红色可以表示联动模式已被关闭。
例如,联动模式对应的指示灯11每间隔2秒闪烁一次,表示联动模式已开启,联动模式对应的指示灯11熄灭或者呈现红色可以表示联动模式已被关闭。
例如,空气调节设备也可以采用语音播报方式,向用户播报:“联动模式已开启”表示联动模式已开启。
为了便于用户区分哪些调节维度处于开启状态,哪些调节维度处于关闭状态,在本申请实施例中,空气调节设备可以针对多个调节维度分别推送第三提示信息或第四提示信息,第三提示信息用于向用户提示对应的调节维度处于开启状态,第四提示信息用于向用户提示对应的调节维度处于关闭状态。
可选地,对于多个调节维度中的任一个调节维度,它对应的第三提示信息可以为以下任一项,但不限于此:任一个调节维度对应的指示灯呈现第三预设颜色;任一个调节维度对应的指示灯呈现 第三预设颜色且常亮第三预设时长;任一个调节维度对应的指示灯按照第三预设模式闪烁。
可选地,该调节维度对应的指示灯11可以设置在柜机触控面板中或者挂机显示面板中。可选地,该调节维度对应的指示灯11可以是一个或多个。可选地,第三预设时长可以是1s或者2s等。可选地,第三预设颜色可以是白色、蓝色、绿色或者红色等。可选地,第三预设模式闪烁可以是每间隔P秒闪烁一次,P为正整数,或者,相邻两次闪烁间隔时间分别是2s,1s,2s,1s依次循环等。
可选地,对于多个调节维度中的任一个调节维度,它对应的第四提示信息为以下任一项,但不限于此:任一个调节维度对应的指示灯熄灭;任一个调节维度对应的指示灯呈现第四预设颜色。
可选地,第四预设颜色可以是红色、紫色等。
例如,如图13所示,条纹框表示指示灯11呈现白色,代表对应的调节维度处于开启状态,空白框表示指示灯11熄灭,代表对应的调节维度处于关闭状态。由此可知,图14所显示的结果是当前温度和风速调节维度处于开启状态,而湿度、净化和新风调节维度处于关闭状态。
可选地,为了便于用户获知多个调节维度各自的进度,针对多个调节维度中的任一个调节维度,在该调节维度处于开启状态时,空气调节设备还可以显示该调节维度的当前进度。
例如,如图16所示,条纹框表示指示灯11呈现白色,代表对应的调节维度处于开启状态,并且该条纹框的长度表示调节维度的当前进度。
应理解的是,在图16中是通过同一个指示灯11同时指示一个调节维度的开启/关闭状态以及当前进度。实际上,也可以通过不同指示灯11指示一个调节维度的开启/关闭状态以及当前进度。
例如,如图16所示,条纹框表示指示灯11呈现白色,代表对应的调节维度处于开启状态,而阴影高度表示调节维度的当前进度。
应理解的是,图16中用条纹框代表的指示灯11指示调节维度的开启/关闭状态,用阴影部分代表的指示灯11指示调节维度的当前进度。实际上,也可以用阴影部分代表的指示灯11指示调节维度的开启/关闭状态,用条纹框代表的指示灯11指示调节维度的当前进度。或者,这两个指示灯11都可以同时指示调节维度的开启/关闭状态以及当前进度。
应理解的是,在本申请实施例中,针对联动模式,可以将上述第一调节维度称为主调节维度,将在控制第一调节维度的情况下控制多个调节维度中除所述第一调节维度以外的已开启调节维度中的任一个调节维度称为第二调节维度。
例如,假设用户通过遥控器、APP或触控面板控制温度调节维度,那么该温度调节维度可以被称为主调节维度。而基于对温度调节维度的控制,空气调节设备联动控制的已开启的风速、湿度、新风、净化调节维度均可以被称为第二调节维度。
为了使得用户可以直观的感受自己所控制的调节维度,在本申请实施例中,空气调节设备可以针对第一调节维度推送第二提示信息,以向用户提示第一调节维度为主调节维度。
可选地,第二提示信息为以下任一项,但不限于此:第一调节维度对应的指示灯呈现第二预设颜色;第一调节维度对应的指示灯呈现第二预设颜色且常亮第二预设时长;第一调节维度对应的指示灯按照第二预设模式闪烁。
可选地,第一调节维度对应的指示灯11可以设置在柜机触控面板中或者挂机显示面板中。可选地,第一调节维度对应的指示灯11可以是一个或多个。可选地,第二预设时长可以是3s或者5s等。可选地,第二预设颜色可以是蓝色、绿色或者红色等。可选地,第二预设模式闪烁可以是每间隔M秒闪烁一次,M为正整数,或者,相邻两次闪烁间隔时间分别是1s,3s,1s,3s依次循环等。
例如,如图17所示,假设温度调节维度是主调节维度,当用户当前正在控制该调节维度时,它对应的指示灯11可以呈现蓝色并且持续1s,图18中用黑点框表示指示灯11呈现蓝色。
可选地,空气调节设备还可以响应于控制指令,显示第一调节维度的控制进度。
例如,如图18所示,假设温度调节维度是主调节维度,当用户当前正在控制该调节维度时,它对应的指示灯11可以呈现蓝色并且持续1s,图18中用黑点框表示指示灯11呈现蓝色,并且该黑点框的长度变化表示温度调节维度的控制进度。
例如,如图19所示,假设温度调节维度是主调节维度,当用户当前正在控制该调节维度时,它对应的指示灯11可以呈现蓝色并且持续1s,图19中用黑点框表示指示灯11呈现蓝色,并且阴影部分的高度变化表示温度调节维度的控制进度。
应理解的是,图19中用黑点框表示温度调节维度为主调节维度,用阴影部分表示温度调节维度的控制进度。实际上,也可以用阴影部分表示温度调节维度为主调节维度,用条纹框的长度变化表示温度调节维度的控制进度。或者,这两个部分都可以同时指示温度调节维度为主调节维度以及温度调节维度的控制进度。
在本申请实施例中,空气调节设备可以开启空气调节设备的联动模式;在联动模式下,响应于针对空气调节设备的多个调节维度中第一调节维度的控制指令,在控制第一调节维度的情况下控制 多个调节维度中除第一调节维度以外的已开启调节维度。使得用户无需单独再控制其他调节维度,这种联动控制方式可以提高控制效率,从而可以提高用户体验感。此外,空气调节设备还可以推送第一提示信息,以向用户提示空气调节设备已进入联动模式,也可以提高用户体验感。
进一步地,空气调节设备还可以针对多个调节维度分别推送第三提示信息或第四提示信息,以便用户区分哪些调节维度处于开启状态,哪些调节维度处于关闭状态,从而可以提高用户体验感。空气调节设备还可以展示每个调节维度的当前进度,也可以提高用户体验感。空气调节设备还可以针对主调节维度推送第二提示信息,以使用户获知主调节维度是哪个,从而可以进一步地提高用户体验感。
下面将对空气调节设备的控制方法,进行进一步地详细说明:
如图20所示,上述S420可以包括:
S1210:在联动模式下,响应于针对第一调节维度的控制指令,针对已开启调节维度中的第二调节维度,在控制第一维调节维度的情况下控制第二调节维度发生变化;或者,在第二调节维度优先级低于第一调节维度的优先级时,在控制第一调节维度的情况下控制第二调节维度发生变化;或者,在控制第一调节维度的情况下控制第二调节维度保持不变。
应理解的是,第二调节维度可以是多个调节维度中除第一调节维度以外的已开启调节维度中的任一个调节维度。
可选地,多个调节维度的优先级可以是空气调节设备出厂时设置好的,或者,用户可以通过遥控器、APP或者触控面板设置这些调节维度的优先级,本申请对此不做限制。
应理解的是,从S1210可知,对第二调节维度的联动控制包括以下几种情况:控制该第二调节维度不变或者变化。
当空气调节设备控制第二调节维度发生变化时,其可以采用如下可实现方式来调节第二调节维度,但不限于此:
可实现方式一,空气调节设备确定第一调节维度的调节量;确定第一调节维度的调节量与第二调节维度的调节量的映射关系;基于第一调节维度的调节量和映射关系确定第二调节维度的调节量;按照第二调节维度的调节量调节第二调节维度。
例如,假设第一调节维度是温度调节维度,第二调节维度是风速调节维度,当用户将温度从25度调节至22度时,空气调节设备确定温度的调节量是-3度,假设-3度对应的风速调节量是升1档风速,基于此,空气调节设备可以自动控制风速提升1档。
应理解的是,对于不同的调节维度,其调节粒度不尽相同,例如,温度可以按照摄氏度一度一度的调节,甚至调节粒度可以是0.5度,但是风速、湿度、新风和净化均可以按照档位一档一档的调节,因此,第一调节维度的调节量与第二调节维度的调节量的映射关系之间可以是温度调节量区间与档位调节量之间的对应关系,例如,当温度调节量在-10度以下,风速调节量是提升3档,当温度调节量在-10度至-5度之间,风速调节量是提升2档,当温度调节量在-5度至-1度之间,风速调节量是提升1档,当温度调节量在1度至5度之间,风速调节量是降低1档,当温度调节量在5度至10度之间,风速调节量是降低2档,当温度的调节度在10度以上,风速调节量是降低3档。或者,第一调节维度的调节量与第二调节维度的调节量的映射关系之间可以是档位调节量与档位调节量之间的映射关系,例如,当风速提升1档时,湿度也被联动提升1档,当风速提升2档时,湿度也被联动提升2档。
应理解的是,如果第一调节维度是风速、湿度、净化或新风,第二调节维度是温度,由于温度是连续数值,那么当空气调节设备确定了第一调节维度的调节量后,按照第一调节维度的调节量与第二调节维度的温度调节量区间的对应关系,确定出来的是温度调节量区间,这时空气调节设备可以按照一定的预设规则在温度调节量区间中选择一个温度调节量,例如,选择该区间中的最大值、最小值或者中间值等,本申请对此不做限制。
可选地,空气调节设备基于第一调节维度的调节量和映射关系确定第二调节维度的调节量之后,可以判断基于该映射关系确定的第二调节维度的调节量是否小于或等于第二调节维度的最大可调节量,如果基于该映射关系确定的第二调节维度的调节量小于或等于第二调节维度的最大可调节量,则按照基于该映射关系确定的第二调节维度的调节量调节第二调节维度。如果基于该映射关系确定的第二调节维度的调节量大于第二调节维度的最大可调节量,则按照第二调节维度的最大可调节量调节第二调节维度,或者,如果基于该映射关系确定的第二调节维度的调节量大于第二调节维度的最大可调节量,则按照第二调节维度的最大可调节量调节第二调节维度,并继续循环至第二调节维度的最小值开始调节,直到调节量达到基于该映射关系确定的第二调节维度的调节量为止。
例如,由于每个调节维度都有最高和最低数值的限制,例如,假设风速最高5档,并且当前风速处于3档位置,那么如果按照上述映射关系假设需要将风速再提升3档,显然已经超出风速最高 数值,这时可以提升至5档即可,或者,风速调节是一个循环调节过程,当提升至5档后,可以继续再进入1档。
可实现方式二,空气调节设备可以确定第一调节维度的目标数值;根据第一调节维度的目标数值确定第二调节维度对应的调节后数值;按照第二调节维度对应的调节后数值调节第二调节维度。
可选地,如果针对第一调节维度的控制指令是开启指令,那么该目标数值可以是第一调节维度的当前开启数值,如果针对第一调节维度的控制指令是调节指令,那么该目标数值可以是第一调节维度的调节后数值。例如,假设第一调节维度是温度调节维度,第二调节维度是风速调节维度,调节后的温度是25度,而25度对应的风速应该是1档,如果空气调节设备当前的风速就是2档,那么空气调节设备可以将风速降低1档。
可选地,空气调节设备可以根据第二调节维度的当前数值和第二调节维度对应的调节后数值确定第二调节维度的待调节量;确定第二调节维度的最大可调节量;若第二调节维度的待调节量小于或等于第二调节维度的最大可调节量,则按照第二调节维度对应的调节后数值调节第二调节维度,若第二调节维度的待调节量大于第二调节维度的最大可调节量,则按照第二调节维度的最大可调节量调节第二调节维度,或者,如果基于该映射关系确定的第二调节维度的调节量大于第二调节维度的最大可调节量,则按照第二调节维度的最大可调节量调节第二调节维度,并继续循环至第二调节维度的最小值开始调节,直到调节量达到基于该映射关系确定的第二调节维度的调节量为止。
应理解的是,在图20对应的实施例中,针对每个第二调节维度,均可以采用该实施例提供的控制方法,也就是说可以存在如下几种情况:
情况一,空气调节设备可以在联动模式下,响应于针对第一调节维度的控制指令,在控制第一调节维度的情况下控制全部第二调节维度发生变化。例如,针对温度、风速、湿度、净化、新风这五个调节维度,假设用户将温度从20度调节至23度,那么空气调节设备可以联动控制风速提升1档,湿度提升1档,净化提升2档,新风提升2档。
情况二,空气调节设备可以在联动模式下,响应于针对第一调节维度的控制指令,在控制第一调节维度的情况下控制全部第二调节维度保持不变。
例如,针对温度、风速、湿度、净化、新风这五个调节维度,假设用户关闭了温度调节维度,那么空气调节设备可以保持风速、湿度、净化、新风四个调节维度不变。
情况三,空气调节设备可以在联动模式下,响应于针对第一调节维度的控制指令,在控制第一调节维度的情况下控制优先级低于第一调节维度的第二调节维度发生变化。
例如,针对温度、风速、湿度、净化、新风这五个调节维度,假设用户调节了风速调节维度,而比风速调节维度优先级低的是湿度、净化和新风这三个调节维度,这时空气调节设备可以调节湿度、净化和新风这三个调节维度发生变化。
情况四,空气调节设备可以在联动模式下,响应于针对第一调节维度的控制指令,在控制第一调节维度的情况下控制部分第二调节维度保持不变、部分第二调节维度发生变化。
其中,情况四与情况三的不同之处在于,情况四中无需考虑多个调节维度的优先级。例如,针对温度、风速、湿度、净化、新风这五个调节维度,假设用户调节了温度调节维度,这时空气调节设备可以调节风速发生变化,其他湿度、净化、新风这三个调节维度保持不变。
可选地,上述控制指令可以为开启指令、关闭指令或者调节指令。
可选地,调节指令用于调节对应的调节维度的大小,例如,用于调节温度、风速、湿度、新风、净化的大小等。
可选地,空气调节设备可以在联动模式下,响应于针对第一调节维度的开启指令,在第二调节维度优先级低于第一调节维度的优先级时,在控制第一调节维度的情况下控制第二调节维度发生变化。例如,假设多个调节维度是温度、风速、湿度、净化、新风五个调节维度,这些维度调节维度均已开启,并且温度调节维度是第一调节维度,它的优先级高于其他维度调节维度,那么当用户调节温度调节维度时,空气调节设备可以联动调节风速、湿度、净化、新风这四个调节维度。
可选地,空气调节设备可以在联动模式下,响应于针对第一调节维度的关闭指令,联动控制第二调节维度保持不变。例如,假设多个调节维度是温度、风速、湿度、净化、新风五个调节维度,这些维度调节维度均已开启,当用户关闭温度调节维度时,空气调节设备可以保持风速、湿度、净化、新风这四个调节维度不变。
可选地,空气调节设备可以在联动模式下,响应于针对第一调节维度的调节指令,联动控制第二调节维度发生变化。例如,假设多个调节维度是温度、风速、湿度、净化、新风五个调节维度,这些维度调节维度均已开启,当用户调节温度调节维度时,空气调节设备可以联动调节风速、湿度、净化、新风这四个调节维度的大小。
在本申请实施例中,当空气调节设备进入联动模式之后,空气调节设备可以响应于控制指令, 联动控制第二联动控制调节维度发生变化;或者,在第二调节维度的优先级低于第一调节维度的优先级时,响应于控制指令,联动控制该第二调节维度发生变化;或者,响应于控制指令,联动控制第二调节维度保持不变。使得用户无需单独再控制其他调节维度,这种控制方式可以提高控制效率以及灵活性,从而可以提高用户体验感。
图21为本申请实施例提供的再一种空气调节设备的控制方法的流程图,如图21所示,在图12的基础上,S420之后还可以包括:
S430:获取模式切换指令;
S440:响应于模式切换指令,从联动模式切换至普通模式。
可选地,模式切换指令可以是基于对联动模式的关闭操作生成的,或者,模式切换指令可以是基于对普通模式的开启指令生成的,又或者,模式切换指令是基于对模式切换标识或按键的点击或触摸操作生成的,该模式切换标识或按键可以设置在遥控器或者APP或者触控面板上。
应理解的是,当空气调节设备切换至普通模式之后,用户只能单独控制每一个调节维度,例如,当用户调节温度时,其他风速、新风和净化调节维度均不会被联动控制。可选地,当空气调节设备切换至普通模式之后,还可以再次切换至联动模式,进入联动模式之后,空气调节设备可以按照本申请提供的控制方法对多个调节维度进行控制。在本申请实施例中,空气调节设备可以灵活地进行联动模式与普通模式之间的切换,从而可以提高用户体验感。
下面可以通过若干示例对本申请提供的控制方法进行示例性阐述:
示例1,用户开启空气调节设备,这时空气调节设备自动开启联动模式,并默认开启温度和风速两个调节维度,空气调节设备可以向用户提示温度和风速两个调节维度处于开启状态,并向用户提示湿度、净化和新风处于关闭状态,还可以显示温度和风速这两个调节维度的当前进度。当用户调节温度时,空气调节设备可以依据于温度的变化来调节风速,并且可以显示温度和风速的进度变化,还可以提示温度调节维度是主调节维度。进一步地,当用户开启湿度时,假设温度优先级高于湿度优先级,湿度优先级高于风速优先级,这时空气调节设备可以调节风速变化,还可以显示风速的进度变化。更进一步地,当用户关闭湿度时,空气调节设备可以控制温度和风速保持不变。
示例2,用户开启空气调节设备,这时空气调节设备自动开启联动模式,并确定最近一次采用联动模式的是温度、风速、湿度、新风这四个调节维度,空气调节设备可以向用户提示这四个调节维度处于开启状态以及净化处于关闭状态,还可以显示这四个调节维度的当前进度。当用户调节温度时,空气调节设备可以依据于温度的变化来调节风速、湿度、新风这三个调节维度,并且可以显示这四个调节维度的进度变化,还可以提示温度调节维度是主调节维度。进一步地,当用户开启净化时,假设净化优先级低于其他所有调节维度,这时空气调节设备控制其他调节维度保持不变。更进一步地,当用户关闭温度时,空气调节设备可以控制风速、湿度、新风、净化保持不变。
示例3,用户开启空气调节设备,这时空气调节设备先进入普通模式,假设在普通模式下,用户开启了温度、新风和风速,接着用户开启联动模式,则空气调节设备确定将普通模式下所开启的温度、新风和风速作为开启调节模式,空气调节设备可以向用户提示这三个调节维度处于开启状态以及净化和湿度处于关闭状态,还可以显示这三个调节维度的当前进度。当用户调节温度时,空气调节设备可以依据于温度的变化来调节风速和新风这三个调节维度,并且可以显示温度、风速和新风调节维度的进度变化,还可以提示温度调节维度是主调节维度。进一步地,当用户开启净化时,假设净化优先级低于其他所有调节维度,这时空气调节设备控制其他调节维度保持不变。更进一步地,当用户关闭温度时,空气调节设备可以控制风速、湿度、新风、净化保持不变。
示例4,用户开启空气调节设备,这时用户选择了温度、风速、湿度、净化、新风五个调节维度,接着用户点击联动图标或按键,以使空气调节设备进入联动模式。空气调节设备可以向用户提示这五个调节维度处于开启状态,还可以显示这五个调节维度的当前进度。当用户调节温度时,空气调节设备可以依据于温度的变化来调节其他四个调节维度,并且可以显示这五个调节维度的进度变化,还可以提示温度调节维度是主调节维度。进一步地,当用户关闭温度时,空气调节设备可以控制风速、湿度、新风、净化保持不变。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。此外,本领域的技术人员可以将本说明书中描述的不同实施例或示例进行接合和组合。尽管上面已经示出和描述了本申请的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本申请的限制,本领域的普通技术人员在本申请的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (28)

  1. 一种空气调节设备的显示装置,其中,包括:
    发光组件,所述发光组件包括多个指示灯,每个所述指示灯包括多个发光部,每个所述指示灯中的多个所
    述发光部呈多排多列排布;
    透光显示件,所述透光显示件设于所述发光组件的一侧;
    安装件,所述安装件设于所述发光组件与所述透光显示件之间,所述安装件具有多个灯腔且多个所述灯腔与多个所述指示灯位置一一对应,所述透光显示件具有多个显示部且多个所述显示部与多个所述灯腔位置一一对应。
  2. 根据权利要求1所述的空气调节设备的显示装置,其中,多个所述显示部用于显示空气调节设备的多个调节维度的调节状态,所述调节状态包括开闭状态和/或当前进度;所述多个调节维度为温度、湿度、出风、净化、新风或除菌中任选四个或四个以上。
  3. 根据权利要求2所述的空气调节设备的显示装置,其中,多个所述显示部还用于显示空调的联动模式开启状态,在所述联动模式下,响应于针对所述空气调节设备的多个调节维度中第一调节维度的控制指令,在控制所述第一调节维度的情况下控制所述多个调节维度中除所述第一调节维度以外的已开启调节维度。
  4. 根据权利要求1所述的空气调节设备的显示装置,其中,多个所述指示灯和多个所述灯腔分别沿预设方向排布。
  5. 根据权利要求1所述的空气调节设备的显示装置,其中,至少一个所述显示部具有多个显示档位,所述显示部被构造为根据所述指示灯中的至少一排和/或至少一列所述发光部发光以表示当前显示档位。
  6. 根据权利要求1所述的空气调节设备的显示装置,其中,多个所述发光部的排距小于或者等于9mm;和/或,多个所述发光部的列距小于或者等于8mm。
  7. 根据权利要求1所述的空气调节设备的显示装置,其中,所述灯腔具有入光口和出光口,所述指示灯位于所述入光口处,所述显示部位于所述出光口处。
  8. 根据权利要求1所述的空气调节设备的显示装置,其中,所述安装件包括:
    安装壳;
    多个分隔件,多个所述分隔件设于所述安装壳内且沿其延伸方向间隔布置以将所述安装壳的内腔分隔成多个所述灯腔。
  9. 根据权利要求1所述的空气调节设备的显示装置,其中,所述透光显示件包括:
    透光板,所述透光板覆盖所述安装件;
    显示膜片,所述显示膜片设在所述透光板与所述安装件之间,所述显示部设于所述显示膜片且包括预设图案。
  10. 根据权利要求9所述的空气调节设备的显示装置,其中,所述透光显示件采用模内覆膜注塑成型工艺成型。
  11. 根据权利要求9所述的空气调节设备的显示装置,其中,所述指示灯与所述显示膜片之间的距离大于9mm。
  12. 根据权利要求9所述的空气调节设备的显示装置,其中,所述显示膜片的背向所述透光板的一侧设有扩散膜;和/或
    所述显示膜片还具有渐变纹路。
  13. 根据权利要求1所述的空气调节设备的显示装置,其中,还包括:
    安装盒,所述发光组件与所述安装件设置在所述安装盒的内部;所述安装盒的一侧具有取放口,所述安装件设于所述取放口处。
  14. 根据权利要求13所述的空气调节设备的显示装置,其中,所述发光组件还包括电路板,多个所述指示灯设于所述电路板;
    其中,所述电路板夹设在所述安装件与所述安装盒的底壁之间,所述安装盒的底壁设有多个弹性支撑臂,所述弹性支撑臂的一端与所述安装盒的底壁连接且另一端止抵所述电路板。
  15. 根据权利要求14所述的空气调节设备的显示装置,其中,多个所述弹性支撑臂中的一部分在所述电路板的长度方向间隔布置,至少两个所述弹性支撑臂在所述电路板的宽度方向间隔布置且朝远离彼此的方向延伸。
  16. 根据权利要求13所述的空气调节设备的显示装置,其中,所述安装盒的内壁设有相对布置的第一固定部和第二固定部,所述第一固定部和所述第二固定部分别与所述安装件的两侧边缘配 合。
  17. 根据权利要求16所述的空气调节设备的显示装置,其中,
    所述第一固定部包括多个且多个所述第一固定部沿所述安装件的延伸方向间隔布置;和/或,
    所述第二固定部包括多个且多个所述第二固定部沿所述安装件的延伸方向间隔布置。
  18. 根据权利要求13所述的空气调节设备的显示装置,其中,还包括:
    安装板,所述安装板具有第一显示区,所述安装盒连接在所述安装板的一侧且所述安装盒与所述第一显示区的位置对应,所述透光显示件设于所述安装板的背向所述安装盒的一侧且覆盖所述第一显示区。
  19. 根据权利要求18所述的空气调节设备的显示装置,其中,所述安装板还具有第二显示区,所述显示装置还包括显示板组件,所述显示板组件设于所述安装板且所述显示板组件与所述第二显示区的位置对应,所述透光显示件还覆盖所述第二显示区。
  20. 一种空气调节设备,其中,包括:面板和根据权利要求1-19中任一项所述的空气调节设备的显示装置,所述显示装置设于所述面板。
  21. 一种根据权利要求20所述的空气调节设备的控制方法,其中,包括:
    开启所述空气调节设备的联动模式,并推送第一提示信息,以向用户提示所述空气调节设备已进入所述联动模式;
    在所述联动模式下,响应于针对所述空气调节设备的多个调节维度中第一调节维度的控制指令,在控制所述第一调节维度的情况下控制所述多个调节维度中除所述第一调节维度以外的已开启调节维度;
    其中,多个所述显示部用于一一对应地显示多个所述调节维度的调节状态,所述调节状态包括开闭状态和/或当前进度。
  22. 根据权利要求21所述的方法,其中,所述第一提示信息为以下任一项:
    所述联动模式对应的指示灯点亮;
    所述联动模式对应的指示灯常亮第一预设时长;
    所述联动模式对应的指示灯呈现第一预设颜色;
    所述联动模式对应的指示灯呈现所述第一预设颜色且常亮所述第一预设时长;
    所述联动模式对应的指示灯按照第一预设模式闪烁。
  23. 根据权利要求21所述的方法,其中,还包括:
    响应于所述控制指令,推送所述第一调节维度对应的第二提示信息,以向用户提示所述第一调节维度为主调节维度。
  24. 根据权利要求23所述的方法,其中,所述第二提示信息为以下任一项:
    所述第一调节维度对应的指示灯呈现第二预设颜色;
    所述第一调节维度对应的指示灯呈现第二预设颜色且常亮第二预设时长;
    所述第一调节维度对应的指示灯按照第二预设模式闪烁。
  25. 根据权利要求21所述的方法,其中,还包括:
    针对所述多个调节维度中的任一个调节维度,在所述任一个调节维度处于开启状态时,推送所述任一个调节维度对应的第三提示信息,以向用户提示所述任一个调节维度处于开启状态。
  26. 根据权利要求25所述的方法,其中,所述第三提示信息为以下任一项:
    所述任一个调节维度对应的指示灯呈现第三预设颜色;
    所述任一个调节维度对应的指示灯呈现第三预设颜色且常亮第三预设时长;
    所述任一个调节维度对应的指示灯按照第三预设模式闪烁。
  27. 根据权利要求21所述的方法,其中,还包括:
    针对所述多个调节维度中的任一个调节维度,在所述任一个调节维度进入关闭状态时,推送第四提示信息,以向用户提示所述任一个调节维度已进入关闭状态。
  28. 根据权利要求27所述的方法,其中,所述第四提示信息为以下任一项:
    所述任一个调节维度对应的指示灯熄灭;
    所述任一个调节维度对应的指示灯呈现第四预设颜色。
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