CN113475868A - Control method of intelligent mirror cabinet and intelligent mirror cabinet - Google Patents

Control method of intelligent mirror cabinet and intelligent mirror cabinet Download PDF

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Publication number
CN113475868A
CN113475868A CN202110896297.4A CN202110896297A CN113475868A CN 113475868 A CN113475868 A CN 113475868A CN 202110896297 A CN202110896297 A CN 202110896297A CN 113475868 A CN113475868 A CN 113475868A
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CN
China
Prior art keywords
cabinet
sensing device
door
knocking
functional component
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Granted
Application number
CN202110896297.4A
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Chinese (zh)
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CN113475868B (en
Inventor
林孝发
林孝山
黄东波
刘名林
柯学标
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Jomoo Kitchen and Bath Co Ltd
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Jomoo Kitchen and Bath Co Ltd
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Priority to CN202110896297.4A priority Critical patent/CN113475868B/en
Priority to PCT/CN2021/120727 priority patent/WO2023010670A1/en
Publication of CN113475868A publication Critical patent/CN113475868A/en
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Publication of CN113475868B publication Critical patent/CN113475868B/en
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B81/00Cabinets or racks specially adapted for other particular purposes, e.g. for storing guns or skis
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B97/00Furniture or accessories for furniture, not provided for in other groups of this subclass
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0202Switches
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0227Applications
    • H05B1/0252Domestic applications
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/105Controlling the light source in response to determined parameters
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2220/00General furniture construction, e.g. fittings
    • A47B2220/0075Lighting
    • A47B2220/0077Lighting for furniture, e.g. cupboards and racks
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Abstract

An intelligent mirror cabinet control method and an intelligent mirror cabinet are provided, wherein a mirror cabinet body is provided with at least one electric control functional component, a first induction device and a second induction device are arranged on the mirror cabinet body, the state of a cabinet door is detected through the first induction device, and a knocking action is detected through the second induction device; 1) the first sensing device detects the state of the cabinet door in real time and judges whether the cabinet door is opened or closed, if so, the step 2 is carried out after the door is opened or closed, and if not, the step 2 is directly carried out); 2) and detecting the knocking action according to the second sensing device, judging the type of the knocking action, and controlling the switching working state of the corresponding electric control functional component according to different types of the knocking action. According to the intelligent cabinet, the intelligent cabinet body is knocked to realize operation and control, the operation and control area is enlarged, the operation is convenient, the requirements of users with different heights can be met, and the operation experience is good.

Description

Control method of intelligent mirror cabinet and intelligent mirror cabinet
Technical Field
The invention relates to the field of bathroom products, in particular to a control method of an intelligent mirror cabinet and the intelligent mirror cabinet.
Background
The mirror cabinet is a cabinet which is arranged in a bathroom and is used for placing articles such as bathing, cosmetics and the like. Currently, mirror cabinets are often provided with lighting lamps to assist in making up or lighting. However, during bathing, most people use hot water for bathing, and the hot water generates a large amount of vapor in the bathing process, so that a layer of water mist appears on the surface of the mirror, the mirror loses the imaging function, and normal use is influenced, therefore, the mirror cabinet with the mist removal function appears, and the mist removal film is attached to the back of the mirror to heat the mirror surface, so that the mist removal function is realized.
Referring to fig. 1, a mirror cabinet with a lamp and a defogging function generally comprises a cabinet body and a door panel, wherein a plurality of object placing plates are arranged in the cabinet body and used for placing objects. The front of the door plate is provided with a mirror surface, the door plate or the cabinet body can be internally provided with a lighting lamp and an indicator lamp, and the back of the mirror can be pasted with a defogging film. And, paste on the mirror surface and establish the fretwork icon, inside touch key 1 of placing realizes opening and closing of lamp or defogging membrane through controlling touch key, and operating condition is instructed to the pilot lamp that light and defogging membrane accessible correspond.
By adopting the structure, the touch key is small and difficult to touch, and can be triggered only by accurately touching the corresponding position, otherwise, the touch key is invalid; secondly, the mirror cabinet is installed in the bathroom environment, and the mirror surface suffers water splash easily, when the mirror surface is drenched or the hand is wet, can lead to touch insensitive or mistake and touch. The installation position of the touch key is relatively fixed, so that different requirements of people with different heights on the height of the touch key cannot be met, the operation experience is poor, and the operation is very inconvenient.
Disclosure of Invention
The invention mainly aims to overcome the defects that in the prior art, an intelligent mirror cabinet is touch-controlled, is easy to touch and insensitive or touch by mistake and cannot meet the requirements of people with different heights, and provides a control method of the intelligent mirror cabinet and the intelligent mirror cabinet.
The invention adopts the following technical scheme:
an intelligent mirror cabinet control method is characterized in that a mirror cabinet body is provided with at least one electric control functional component, a first sensing device and a second sensing device are mounted on the mirror cabinet body, the state of a cabinet door is detected through the first sensing device, and knocking action is detected through the second sensing device;
1) the first sensing device detects the state of the cabinet door in real time and judges whether the cabinet door is opened or closed, if so, the step 2 is carried out after the door is opened or closed, and if not, the step 2 is directly carried out);
2) and detecting the knocking action according to the second sensing device, judging the type of the knocking action, and controlling the switching working state of the corresponding electric control functional component according to different types of the knocking action.
Preferably, in step 1), when the first sensing device detects that the cabinet door is being opened, it is determined whether the cabinet door is opened and whether the opening time exceeds a preset first threshold, if so, the cabinet door is opened, and if not, step 1) is repeated.
Preferably, in step 1), when the first sensing device detects that the door of the cabinet is closed, it is determined whether the door of the cabinet is closed and whether the closing time exceeds a preset second threshold, if so, the door of the cabinet is closed, and if not, step 1) is repeated.
Preferably, the knocking action types comprise continuous knocking times or different knocking intensities or different knocking rhythms within a preset time length.
Preferably, the electronic control device comprises a first electronic control functional component and a second electronic control functional component, the knocking action type comprises continuous knocking times within a preset time length, and in step 2), the switching working state of the corresponding electronic control functional component is controlled according to different continuous knocking times, specifically as follows:
2.1) if the continuous knocking times T is T1 and T1 is more than 1, judging whether the first electric control functional component is started, if so, closing the first electric control functional component, and if not, starting the first electric control functional component;
2.2) if the continuous knocking times T is T2, T2 is more than 1 and T2 is not equal to T1, judging whether the second electric control functional component is opened, if so, closing the second electric control functional component, and if not, opening the second electric control functional component.
Preferably, step 2) is repeated if a number of consecutive taps T ≠ T1 and T ≠ T2 is detected.
Preferably, in the step 2), when the second sensing device does not detect the knocking action, the state of the cabinet door is detected in real time through the first sensing device in the step 1).
Preferably, the at least one electrically controlled functional component comprises a mirror lamp and/or a defogging film.
Preferably, the mirror cabinet body comprises a cabinet body and a cabinet door; the first sensing device comprises a Hall sensor and a magnet, the Hall sensor is installed on the cabinet door, and the magnet is installed on the cabinet body.
The utility model provides an intelligence mirror cabinet, includes mirror cabinet body and controller, its characterized in that: the controller is connected with the electric control functional component, the first sensing device and the second sensing device and executes the intelligent mirror cabinet control method.
As can be seen from the above description of the present invention, compared with the prior art, the present invention has the following advantages:
1. according to the mirror cabinet, the first sensing device and the second sensing device are mounted on the mirror cabinet body, the state of the cabinet door is detected through the first sensing device, vibration caused by opening and closing of the cabinet door is filtered, knocking actions are detected through the second sensing device, the switching working state of the corresponding electric control functional component is controlled according to different knocking action types, operation and control can be achieved by knocking the intelligent cabinet body, the operation and control area is increased, operation is convenient, user requirements of different heights can be met, and operation experience is good.
2. According to the invention, when the first sensing device detects that the door of the cabinet is opening or closing, a time delay is carried out to ensure that the door of the cabinet is opening or closing, and then the second sensing device detects the knocking action, so that the second sensing device is prevented from being misjudged due to the vibration generated at the moment of opening or closing the door of the cabinet.
3. In the invention, the knocking action type can comprise continuous knocking times within a preset time length or different knocking intensities or different knocking rhythms, the electric control functional parts can comprise mirror lamps, defogging films and the like, and the electric control functional parts are combined and set according to requirements so as to meet the use habits and preferences of different users.
4. In the invention, the first sensing device can be realized by adopting a Hall sensor and the like, the second sensing device can be realized by adopting a vibration sensor and the like, the number of the second sensing devices can be one, two or more, the mounting positions can be on the inner wall of the cabinet door or at the bottom, the left side, the right side or the top of the inner wall of the cabinet body, and the like, the operation and the control are not influenced by water splashing from the mirror surface and hand wetting, the cost is low, and the installation is convenient.
Drawings
FIG. 1 is a diagram of a prior art mirror cabinet;
FIG. 2 is a flow chart of the present invention;
FIG. 3 is a flow chart of the present invention for controlling the corresponding electrical control function component according to the type of the knocking operation;
FIG. 4 is a diagram of a mirror cabinet according to the present invention;
FIG. 5 is a schematic view of a first sensing device of the present invention;
wherein:
10. mirror cabinet body, 11, the cabinet body, 12, cabinet door, 20, first induction system, 21, hall sensor, 22, magnet, 30, second induction system, 40, pilot lamp.
The invention is described in further detail below with reference to the figures and specific examples.
Detailed Description
The invention is further described below by means of specific embodiments.
The terms "first," "second," "third," and the like in this disclosure are used solely to distinguish between similar items and not necessarily to describe a particular order or sequence, nor are they to be construed as indicating or implying relative importance. In the description, the directions or positional relationships indicated by "up", "down", "left", "right", "front" and "rear" are used based on the directions or positional relationships shown in the drawings, and are only for convenience of describing the present invention, and do not indicate or imply that the device referred to must have a specific direction, be constructed and operated in a specific direction, and thus, should not be construed as limiting the scope of the present invention. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as appropriate.
In addition, in the description of the present application, "at least one" means more than one and includes one unless otherwise specified. "or" means that there may be two cases, e.g., a or B, which may mean: a is present alone, and B is present alone.
Referring to fig. 2, in the intelligent mirror cabinet control method, at least one electronic control functional component is arranged on the mirror cabinet body 10, and the electronic control functional component is a functional component added to the original function of the mirror cabinet body 10, such as a mirror lamp, a defogging film, and the like.
Specifically, the mirror cabinet body 10 can include the cabinet body 11 and the cabinet door 12, and the cabinet door 12 is articulated with the cabinet body 11, and the cabinet door 12 openly can be equipped with the mirror, and the cabinet is equipped with at least one in the cabinet body 11 and puts the thing board. The electronic control functional components may be mounted on the cabinet body 11 or the cabinet door 12, or may also be mounted outside the mirror cabinet body 10, for example: the mirror lamps can be arranged outside the cabinet body 11 or the cabinet door 12 or the mirror cabinet body 10, the number and the installation positions of the mirror lamps are not unique, and the mirror lamps can be set as required; the defogging film can be arranged on the back of the mirror, and the defogging film can be used for heating the mirror surface by adopting an electric heating wire or an electric heating film to realize a defogging function.
In the invention, a first induction device 20 and a second induction device 30 are added on the mirror cabinet body 10, the state of the cabinet door 12 is detected through the first induction device 20, and the knocking action is detected through the second induction device 30. Specifically, the first sensing device 20 includes a hall sensor 21 and a magnet 22, the hall sensor 21 is installed inside the cabinet door 12, the magnet 22 is installed on the cabinet body 11, and when the door is closed, the hall sensor 21 can be close to or contact with the magnet 22. Therefore, the hall sensor 21 detects a change in the magnetic field between the two when the door is opened and closed, and determines the door opening and closing operation. When the intensity of the surrounding magnetic field is detected to change, the Hall voltage of the Hall sensor 21 changes along with the change of the intensity of the surrounding magnetic field, and the current door opening and closing state can be obtained by collecting the change of the voltage value.
The second sensing device 30 may be a vibration sensor, which can detect a tapping signal within a predetermined frequency range, and set different types of tapping actions according to the tapping signal, including a tapping frequency or a tapping intensity or a tapping rhythm within a predetermined time, wherein the tapping frequency includes one tapping, two taps, three taps, and the like, the tapping intensity includes tapping or heavy tapping, and the tapping rhythm is a combination of the tapping frequency and the tapping intensity.
In practical applications, the first sensing device 20 may also be other sensors, such as a reed pipe, and the second sensing device 30 may also be a pressure sensor or an acceleration sensor.
The control method comprises the following specific steps:
1) the first sensing device 20 detects the state of the cabinet door 12 in real time, and determines whether the cabinet door 12 is being opened or opened, if yes, the step 2) is performed after the door is opened or closed, and if not, the step 2) is performed directly.
At the moment of opening or closing the cabinet door 12, the cabinet door 12 will vibrate due to the opening or closing action, and at this time, the knocking signal detected by the second sensing device 20 is not determined. Specifically, the method comprises the following steps:
when the first sensing device 20 detects that the cabinet door 12 is being opened, it is determined whether the cabinet door 12 is opened and whether the opening time exceeds a preset first threshold, if so, the cabinet door 12 completes opening the door, step 2) is performed, and if not, step 1) is repeated.
When the first sensing device 20 detects that the door 12 is closing, it is determined whether the door 12 is closed and whether the closing time exceeds a preset second threshold, if yes, the door 12 is closed, and if no, the step 2) is performed, and the step 1) is repeated.
In the step, when the door is opened or closed, the time is delayed for a period of time to ensure that the door 12 is opened or closed, and then the step 2) is carried out for further judgment. The first threshold and the second threshold may be the same or different, and may take values of 1s, 2s, and the like, which is not limited herein.
2) And detecting the knocking action according to the second sensing device 30, judging the type of the knocking action, and controlling the switching working state of the corresponding electric control functional component according to different types of the knocking action.
In this step, different tapping motion types correspond to corresponding electronic control functional components, for example, referring to fig. 3, assuming that there are a first electronic control functional component and a second electronic control functional component, and the tapping motion types take the continuous tapping times T1 and T2 within a preset time length as an example, the specific determination is as follows:
2.1) if the continuous knocking times T is T1 and T1 is more than 1, judging whether the first electric control functional component is opened, if so, closing the first electric control functional component, and if not, opening the first electric control functional component. That is, when the number of consecutive taps is T1, the first electrically controlled functional unit is controlled to switch states, including on to off or off to on.
2.2) if the continuous knocking times T is T2, T2 is more than 1 and T2 is not equal to T1, judging whether the second electric control functional component is opened, if so, closing the second electric control functional component, and if not, opening the second electric control functional component. That is, when the number of consecutive taps is T1, the second electrically controlled functional unit is controlled to switch states, including on to off or off to on.
Among them, T1 and T2 are set to be larger than 1, that is, to reduce malfunction in the case of one filter tap. If the continuous tapping times T is not equal to T1 and T is not equal to T2, which represents that the matched tapping action type is not identified or the false action is detected, the step 2) is repeated.
Further, in this step, when the second sensing device 30 does not detect the knocking motion, the method returns to step 1) to detect the state of the cabinet door 12 in real time through the first sensing device 20.
In the invention, the knocking action types can also be set to different knocking intensities, including tapping or knocking again, the first electric control functional component can correspond to tapping, the second electric control functional component can correspond to knocking again, and in practical application, specific setting can be carried out according to the number of the electric control functional components, different users and the like, but not limited to the above.
Referring to fig. 4 and 5, the invention further provides an intelligent mirror cabinet, which includes a mirror cabinet body 10 and a controller, wherein the mirror cabinet body 10 is provided with a first sensing device 20 and a second sensing device 30, and the controller is connected with the electric control functional component, the first sensing device 20 and the second sensing device 30 and executes the above-mentioned intelligent mirror cabinet control method.
Wherein, in order to ensure the detection accuracy, the quantity and the mounted position of second induction system 30 can be set for as required, and the quantity can be one, two or more, and the mounted position can be on cabinet door 12 inner wall, or bottom, left side, right side or top etc. of cabinet 11 inner wall, and preferred, second induction system 30 is one, installs in the inboard middle part position of cabinet door 12 under.
According to the needs, a plurality of indicator lamps 40 are also arranged for indicating the working state of the corresponding electric control functional components. The position of the indicator light can be set according to needs and is not limited.
The intelligent mirror cabinet takes the type of knocking action as the continuous knocking times within the preset time length, and the electric control functional parts comprise a mirror lamp and a defogging film for example, and the working principle is as follows:
under the conventional state, cabinet door 12 closes completely, and mirror lamp and defogging membrane are in the closed condition, and the controller detects cabinet door 12 through first induction system 20 and closes completely, then detects the action of strikeing through second induction system 30.
If the user taps the cabinet door T1 times (for example, T1 is 2), the controller detects that the number of taps is T1 through the second sensing device 30, and then controls the mirror lamp to turn on, and the corresponding indicator lamp 40 to turn on, and then, when the controller detects that the number of taps is T1 again through the second sensing device 30, the controller controls the mirror lamp to turn off, and the corresponding indicator lamp 40 to turn dark.
If the user continuously taps the cabinet door T2 times (for example, T2 equals 3), the controller detects that the continuous tapping frequency is T2 through the second sensing device 30, and controls the defogging film to be opened and the corresponding indicator light 40 to be turned on; then, when the controller detects that the number of continuous taps is again T2 through the detection of the second sensing device 30, the defogging films are controlled to be turned off and the corresponding indicator lights 40 are darkened.
If the user opens the cabinet door 12, the controller detects that the door is being opened through the first sensing device 20, and then detects the knocking action through the second sensing device 30 after the door is opened.
If the user closes the cabinet door 12, the controller detects that the door is being closed through the first sensing device 20, and then detects the knocking motion through the second sensing device 30 after the door is closed.
According to the invention, whether the door 12 is opened or closed is checked through the first sensing device 20, and vibration caused by opening or closing the door 12 is filtered out, so that the phenomenon that the second sensing device 30 judges by mistake and acts on a mirror lamp, defogging or other electric control functional components which are not intended by a user are avoided. And the second sensing device 30 is matched to detect the knocking action on the cabinet door 12 or the cabinet body 11, so as to control the mirror lamp, the defogging film or other electric control functional components.
The above description is only an embodiment of the present invention, but the design concept of the present invention is not limited thereto, and any insubstantial modifications made by using the design concept should fall within the scope of infringing the present invention.

Claims (10)

1. An intelligent mirror cabinet control method is characterized in that a mirror cabinet body is provided with at least one electric control functional component, a first sensing device and a second sensing device are mounted on the mirror cabinet body, the state of a cabinet door is detected through the first sensing device, and knocking action is detected through the second sensing device;
1) the first sensing device detects the state of the cabinet door in real time and judges whether the cabinet door is opened or closed, if so, the step 2 is carried out after the door is opened or closed, and if not, the step 2 is directly carried out);
2) and detecting the knocking action according to the second sensing device, judging the type of the knocking action, and controlling the switching working state of the corresponding electric control functional component according to different types of the knocking action.
2. The intelligent mirror cabinet control method as claimed in claim 1, wherein: in the step 1), when the first sensing device detects that the cabinet door is opened, whether the cabinet door is opened or not and whether the opening time exceeds a preset first threshold value or not is judged, if so, the cabinet door is opened, and if not, the step 1) is repeated.
3. The intelligent mirror cabinet control method as claimed in claim 1, wherein: in the step 1), when the first sensing device detects that the door of the cabinet is closed, whether the door of the cabinet is closed and whether the closing time exceeds a preset second threshold value is judged, if yes, the door of the cabinet is closed, and if not, the step 1) is repeated.
4. The intelligent mirror cabinet control method as claimed in claim 1, wherein: the knocking action types comprise continuous knocking times within a preset time length, different knocking intensities or different knocking rhythms.
5. The intelligent mirror cabinet control method as claimed in claim 4, wherein: including first automatically controlled functional unit and second automatically controlled functional unit, strike the action type and include the number of times of knocking in succession in the preset time length, then in step 2), according to the number of times of knocking in succession of difference control corresponds the switching operating condition of automatically controlled functional unit, specifically as follows:
2.1) if the continuous knocking times T is T1 and T1 is more than 1, judging whether the first electric control functional component is started, if so, closing the first electric control functional component, and if not, starting the first electric control functional component;
2.2) if the continuous knocking times T is T2, T2 is more than 1 and T2 is not equal to T1, judging whether the second electric control functional component is opened, if so, closing the second electric control functional component, and if not, opening the second electric control functional component.
6. The intelligent mirror cabinet control method as claimed in claim 5, wherein: if the number of consecutive taps T ≠ T1 and T ≠ T2 is detected, then step 2) is repeated.
7. The intelligent mirror cabinet control method as claimed in claim 1, wherein: in the step 2), when the second sensing device does not detect the knocking action, the state of the cabinet door is detected in real time through the first sensing device in the step 1).
8. The intelligent mirror cabinet control method as claimed in claim 1, wherein: the at least one electric control functional component comprises a mirror lamp and/or a defogging film.
9. The intelligent mirror cabinet control method as claimed in claim 1, wherein: the mirror cabinet body comprises a cabinet body and a cabinet door; the first sensing device comprises a Hall sensor and a magnet, the Hall sensor is installed on the cabinet door, and the magnet is installed on the cabinet body.
10. The utility model provides an intelligence mirror cabinet, includes mirror cabinet body and controller, its characterized in that: the controller is connected with the electric control functional component, the first sensing device and the second sensing device and executes the intelligent mirror cabinet control method of any one of claims 1 to 9.
CN202110896297.4A 2021-08-05 2021-08-05 Control method of intelligent mirror cabinet and intelligent mirror cabinet Active CN113475868B (en)

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CN202110896297.4A CN113475868B (en) 2021-08-05 2021-08-05 Control method of intelligent mirror cabinet and intelligent mirror cabinet
PCT/CN2021/120727 WO2023010670A1 (en) 2021-08-05 2021-09-26 Method for controlling intelligent mirror cabinet, and intelligent mirror cabinet

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