Multifunctional atmosphere lamp

By integrating multi-functional modules and intelligent control, the diversified function switching and environmental monitoring of the atmosphere light are realized, which solves the problems of single function and inconvenient operation of existing atmosphere lights and improves the decorativeness and user experience.

CN120799409APending Publication Date: 2025-10-17BEIJING YUEME TECH CO LTD
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Patent Information

Application Number
CN202511225227.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

Existing ambient lights have single functions, are difficult to adjust, and lack functional prompts such as timing and environmental monitoring.

Method used

A multifunctional atmosphere lamp is designed, which integrates functions such as clock, timer, thermometer and hygrometer, and air quality monitor. It is controlled by a mode switching knob and a mainboard, combined with the moving mechanism and sensors of the mover bracket and stator bracket to achieve switching and prompting of multiple functional modes.

Benefits of technology

It provides diversified functions, is easy to operate, conforms to user habits, enhances decorative and emotional value, and meets lighting and environmental monitoring needs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention belongs to the technical field of lamps, and relates to a multifunctional atmosphere lamp which comprises a lampshade shell (10), a mode switching knob (01) and an encoder plate (02) are arranged at the upper end of the lampshade shell (10), a mainboard (11) is arranged at the lower end of the lampshade shell (10), a stator support (08) and a plurality of lamp strip plates (03, 04 and 05) are arranged in the lampshade shell (10), a rotor support (19) is arranged outside the lampshade shell (10) in a sleeving mode, and a plurality of display screens (16, 17 and 18) are arranged in the rotor support (19). The main board (11) can achieve selection of function modes of the atmosphere lamp based on the mode switching knob (01), and the prompting effect of the multiple lamp strip plates (03, 04 and 05) and the multiple display screens (16, 17 and 18) in different function modes is achieved through vertical movement of the mover support (19) on the stator support (08). The multifunctional LED lamp can provide various functional prompts for people while meeting the requirements of illumination and improvement of the decoration atmosphere.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of lamps, and relates to an atmosphere lamp, in particular a multifunctional sound-picking atmosphere lamp with functions of a clock, a timer, a hygrometer, an air quality monitor and the like. BACKGROUND

[0002] With the rapid development of electronic technology, the living standards of the public are improving day by day, and more and more scenarios are applied to atmosphere lamps. Various commercial atmosphere lamps, in-vehicle atmosphere lamps, outdoor atmosphere lamps, indoor atmosphere lamps and the like are emerging in an endless stream, and indoor atmosphere lamps include wall-mounted atmosphere lamps, floor-standing atmosphere lamps and desktop atmosphere lamps.

[0003] For example, a Chinese invention patent with the publication number CN117336928A discloses a floor-standing atmosphere lamp and a control method thereof, which includes a base, a lamp tube assembly, a driving source and a control module. The lamp tube assembly includes a first lamp section module, a second lamp section module, a third lamp section module and a light-emitting plate. The first lamp section module, the second lamp section module and the third lamp section module are sequentially connected to each other, and the light-emitting plate is respectively clamped to the first lamp section module, the second lamp section module and the third lamp section module. The lamp tube assembly is rotatable relative to the base. The control module includes a controller, a first sensor and a second sensor. The first sensor is used for sensing user position information and sending the user position information to the controller, so that the controller controls the driving source to drive the lamp tube assembly to rotate following the user position. The second sensor is used for sensing user height information and sending the height information to the controller, so that the controller controls the working states of the first lamp section module, the second lamp section module and the third lamp section module, thereby avoiding the problems of single illumination position and inability to follow the lighting of the atmosphere lamp. It aims to follow the high lighting according to the detection of the position and height of the user, to meet the needs of different user groups and optimize the display effect of the atmosphere lamp, and to improve the stage experience effect. However, its function is limited to lightening to enhance the atmosphere, and the function is relatively single.

[0004] The Chinese invention patent with the publication number CN110719666A discloses a signal plate with multi-color atmosphere lights and a control method thereof. The signal plate includes a concave shell, a reflective paper, a light guide plate and a light-transmitting backboard arranged from inside to outside in the concave shell. The light-transmitting backboard is detachably connected with the concave shell. The light guide plate is provided with a plurality of atmosphere light strips on one side. The plurality of atmosphere light strips are different in color. The plurality of atmosphere light strips are connected with a same controller. The controller includes a main control module, a signal receiving module and a power module. The signal receiving module is electrically connected with the main control module to provide signal excitation for the main control module. The power module is electrically connected with the main control module to provide power supply for the main control module. The main control module is respectively connected with an illumination driving module and an atmosphere light driving module through electrical connection. The illumination driving module is electrically connected with the illumination light strip. The atmosphere light driving module is respectively and individually electrically connected with the plurality of atmosphere light strips to control the on-off of the atmosphere light strips. The signal plate can be installed on an electric appliance, such as an air conditioner or a cooling bar, to prompt the current function running environment of the electric appliance. The signal plate can be installed on an electric appliance with multiple functions, such as an air conditioner or a cooling bar, to prompt the current function running environment of the electric appliance. Different functions are individually connected with atmosphere light strips of different colors. When a function is started, the corresponding atmosphere light strip emits light to prompt that the function has been started. The user can clearly know which function the electric appliance is running in. Meanwhile, the atmosphere light can decorate the indoor environment and make the indoor environment more dazzling. However, the signal plate needs to rely on other household appliances, and the function is relatively single.

[0005] Therefore, it can be seen that the current atmosphere light function is single, and the adjustment of the atmosphere light is mostly adjusted through the form of a key or a mobile phone APP. It is not only monotonous and boring, but also troublesome to operate.

[0006] Therefore, in view of the defects in the prior art, there is an urgent need for a new multifunctional atmosphere light to meet the lighting and decoration atmosphere while providing functional prompts such as timing and environmental monitoring. SUMMARY

[0007] In view of the defects in the prior art, the present application provides a multifunctional atmosphere light which is a multifunctional pickup atmosphere light with functions of a clock, a timer, a hygrometer, an air quality monitor and the like. The multifunctional atmosphere light meets the lighting and decoration atmosphere while providing functional prompts such as timing and environmental monitoring, thereby solving the important problem that needs to be solved by the person skilled in the art.

[0008] In order to achieve the above-mentioned purpose, the present application provides the following technical solutions:

[0009] The utility model provides a kind of multifunctional atmosphere lamp, it includes lampshade shell, it is characterized in that, the upper end of the lampshade shell is equipped with mode switching knob and encoder board connected with the mode switching knob, the lower end is equipped with mainboard, the inside of the lampshade shell is equipped with stator support and multiple lamp strip boards installed on the stator support, outside is equipped with rotor support, mobile mechanism and displacement sensor are equipped between the rotor support and stator support, the mobile mechanism is used to drive the rotor support to move up and down along the stator support, the displacement sensor is used to measure the height of the rotor support, multiple display screens are equipped in the rotor support, the encoder board, lamp strip board, mobile mechanism, displacement sensor and multiple display screens are all with the mainboard signal connection, so that the mainboard can be based on the mode switching knob Realize the selection of the function mode of the atmosphere lamp, and the prompting effect of multiple lamp strip boards and multiple display screens in different function modes is realized by the up and down movement of the rotor support on the stator support.

[0010] Preferably, when the function mode of the atmosphere lamp is brightness level adjusting mode, manually adjust the height of the rotor support and the mainboard determines the brightness level of the atmosphere lamp based on the height of the rotor support, or manually set the brightness level of the atmosphere lamp and the mainboard determines the height of the rotor support based on the brightness level of the atmosphere lamp, and during the brightness level adjusting process of the atmosphere lamp, the multiple display screens display the brightness level of the atmosphere lamp in part or as a whole in real time, and the lamp beads of the multiple lamp strip boards below the horizontal height of the rotor support are lit in part or as a whole according to the brightness level of the atmosphere lamp.

[0011] Preferably, when the function mode of the atmosphere lamp is alarm clock mode, manually adjust the height of the rotor support and the mainboard sets the alarm time based on the height of the rotor support, or manually set the alarm time and the mainboard determines the height of the rotor support based on the alarm time, and after setting the alarm time, the multiple display screens display the alarm time in part or as a whole in real time and the lamp beads of the multiple lamp strip boards are all turned off, when a certain time from the set alarm time, the mainboard controls the rotor support to automatically move to the bottom of the stator support and slowly move up with time, during the slow upward movement of the rotor support, the lamp beads of the multiple lamp strip boards below the horizontal height of the rotor support are lit in part or as a whole, and when the rotor support moves to the top end of the stator support, the set alarm time is reached, at this time, the lamp beads of the multiple lamp strip boards are all lit for alarm reminding, and during the slow upward movement of the rotor support, the multiple display screens display the current time in part or as a whole in real time.

[0012] Preferably, when the function mode of the atmosphere lamp is the timer mode, the height of the mover support is manually adjusted and the mainboard determines the timer based on the height of the mover support, or the timer is manually set and the mainboard determines the height of the mover support based on the timer, during the setting of the timer, the plurality of display screens display the timer in real time in part or as a whole, the plurality of lamp strip boards are lit in part or as a whole below the height of the mover support, and over time, the mainboard controls the mover support to gradually slide down and the plurality of display screens display the remaining time in real time, and when the timer becomes 0, slide to the bottom of the stator support, at which time the lamp beads of the plurality of lamp strip boards are all turned off to proceed to the time reminder.

[0013] Preferably, when the function mode of the atmosphere lamp is the sensor mode, the current environmental data is monitored in real time by the environmental sensor provided on the mainboard, the mainboard automatically moves the mover support to the height corresponding to the environmental data based on the environmental data, and the plurality of display screens display the environmental data in real time in part or as a whole, and the plurality of lamp strip boards are lit in part or as a whole below the height of the mover support.

[0014] Preferably, the environmental sensor includes an air quality sensor, a CO2 sensor, a PM2.5 sensor, and a temperature and humidity sensor, and the sensor mode includes an air quality mode, a CO2 mode, a PM2.5 mode, a temperature mode, and a humidity mode.

[0015] Preferably, a millimeter wave radar module is provided on the mainboard, which is used to sense the position of a person, and the mainboard controls the corresponding display screen and lamp strip board as the main display based on the position of the person, and the other display screens and lamp strip boards as the auxiliary display.

[0016] Preferably, the plurality of display screens include a No. 1 display screen, a No. 2 display screen, and a No. 3 display screen uniformly arranged around the circumference, and the No. 1 display screen, the No. 2 display screen, and the No. 3 display screen are all arc-shaped display screens with an arc of 115°.

[0017] Preferably, the plurality of lamp strip boards include a No. 1 RGB lamp strip board, a No. 2 RGB lamp strip board, and a No. 3 RGB lamp strip board, which are respectively arranged on the three sides of the stator support that are not opposite to the mover support.

[0018] Preferably, a pickup microphone is provided on the mainboard, which realizes the monitoring of environmental sound, and the mainboard controls the plurality of lamp strip boards and the plurality of display screens based on the environmental sound.

[0019] Compared with the prior art, the multifunctional atmosphere lamp has one or more of the following beneficial technical effects:

[0020] 1、 The multifunctional atmosphere lamp has various functions, such as an alarm clock, a timer, a hygrometer, an air quality monitor and the like, and can provide functional prompts such as timing and environment monitoring while meeting the illumination and improving the decorative atmosphere.

[0021] 2、 The multifunctional atmosphere lamp is convenient to adjust, and can be manually adjusted or adjusted through an APP.

[0022] 3、 The multifunctional atmosphere lamp is in line with people's daily use and thinking habits, and is full of interest, and not only enhances the functionality of the atmosphere lamp, but also greatly improves the decorative property of the atmosphere lamp, and provides emotional value for users. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 is a perspective view of the multifunctional atmosphere lamp;

[0024] Figure 2 is an exploded view of the multifunctional atmosphere lamp;

[0025] Figure 3 is a top view of the mainboard of the multifunctional atmosphere lamp;

[0026] Figure 4 is a schematic view of the control circuit of the multifunctional atmosphere lamp;

[0027] Figure 5 is a schematic view of the multifunctional atmosphere lamp in the brightness adjustment mode;

[0028] Figure 6 is a schematic view of the multifunctional atmosphere lamp in the alarm clock mode;

[0029] Figure 7 is a schematic view of the multifunctional atmosphere lamp in the timer mode;

[0030] Figure 8 is a schematic view of the multifunctional atmosphere lamp in the PM2.5 mode;

[0031] Figure 9 is a schematic view of the multifunctional atmosphere lamp in the air quality mode;

[0032] Figure 10 is a schematic view of the multifunctional atmosphere lamp in the temperature mode;

[0033] Figure 11 is a schematic view of the multifunctional atmosphere lamp in the temperature mode;

[0034] Figure 12 is a schematic diagram of the multifunctional atmosphere lamp of the present application in a humidity mode;

[0035] Figure 13 is a schematic diagram of the multifunctional atmosphere lamp of the present application in a CO2 mode. DETAILED DESCRIPTION

[0036] Before any embodiments of the application are explained in detail, it is to be understood that the application is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The application is capable of other embodiments and of being practiced or being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. The use of "including," "comprising," or "having" and variations thereof herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items. Unless specified or limited otherwise, the terms "mounted," "connected," "supported," and "coupled" and variations thereof are used broadly and encompass both direct and indirect mountings, connections, supports, and couplings. Further, "connected" and "coupled" are not restricted to physical or mechanical connections or couplings.

[0037] Also, in the disclosure of the present application, the terms "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore the above terms cannot be understood as limiting the present application. In the second aspect, the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" cannot be understood as limiting the number.

[0038] In view of the defects of the prior art, the present application provides a multifunctional atmosphere lamp which is a multifunctional pickup atmosphere lamp with functions of clock, timer, hygrometer, air quality monitor, etc., which meets the lighting and improves the decorative atmosphere, and provides people with functional prompts such as timing, environmental monitoring, etc., solving the important problems that technicians in the field urgently need to solve.

[0039] As shown in Figure 1 and Figure 2 The multifunctional atmosphere lamp of the present application comprises a lampshade shell 10. The lampshade shell 10 is made of transparent material to facilitate light transmission.

[0040] The upper end of the lampshade shell 10 is provided with a mode switching knob 01 and an encoder board 02 connected with the mode switching knob 01, and the lower end is provided with a mainboard 11. The mainboard 11 can be an existing master control chip (microprocessor unit MCU), and the lower end of the lampshade shell 10 can be provided with a lower shell 12 to enclose the mainboard 11 inside the lampshade shell 10 and the lower shell 12. As shown in Figure 4 The encoder board 02 is signal connected with the mainboard 11. Through the rotation adjustment and single click confirmation of the mode switching knob 01, the selection of the function mode of the atmosphere lamp can be realized.

[0041] The inside of the lampshade shell 10 is provided with a stator support 08 and a plurality of lamp strip boards installed on the stator support 08, and the outside is provided with a mover support 19. The side of the lampshade shell 10 is provided with a vertical opening to facilitate the cooperation of the mover support 19 with the stator support 08 located inside the lampshade shell 10.

[0042] Preferably, the plurality of lamp strip boards include a No. 1 RGB lamp strip board 05, a No. 2 RGB lamp strip board 04 and a No. 3 RGB lamp strip board 03. And the No. 1 RGB lamp strip board 05, the No. 2 RGB lamp strip board 04 and the No. 3 RGB lamp strip board 03 are respectively arranged on the three sides of the stator support 08 which are not opposite to the mover support 19, so as to realize the regional lighting. Each of the lamp strip boards is provided with a plurality of lamp beads, and each of the lamp beads can be individually lighted.

[0043] The mover support 19 and the stator support 08 are provided with a moving mechanism and a displacement sensor. The moving mechanism is used to drive the mover support 19 to move up and down along the stator support 08. The displacement sensor is used to measure the displacement of the mover support 19 moving up and down along the stator support 08, that is, to measure the height of the mover support 19.

[0044] In the present application, the moving mechanism is made by using the working principle of U-shaped linear motor to realize the automatic sliding of the mover support 19 relative to the stator support 08. Specifically, the stator support 08 is uniformly and crossly provided with multiple pairs of vertically arranged N-pole magnets 06 and S-pole magnets 07. The mover support 19 is internally provided with multiple mover coils, for example, No. 1 mover coil 13, No. 2 mover coil 14 and No. 3 mover coil 15. The No. 1 mover coil 13, No. 2 mover coil 14 and No. 3 mover coil 15 are located between the multiple pairs of N-pole magnets 06 and S-pole magnets 07 and the mover support 19 is provided with a mover plate 20. The No. 1 mover coil 13, No. 2 mover coil 14 and No. 3 mover coil 15 are all electrically connected with the mover plate 20. The mover plate 20 is electrically connected with the main plate 11. Thus, the No. 1 mover coil 13, No. 2 mover coil 14 and No. 3 mover coil 15 can be electrically controlled through the main plate 11, and the automatic sliding of the mover support 19 relative to the stator support 08 can be realized through the electrical control of the No. 1 mover coil 13, No. 2 mover coil 14 and No. 3 mover coil 15.

[0045] Meanwhile, in the present application, a reading head 21 is arranged on the mover plate 20 and the mover plate 20 is electrically connected with the reading head 21. The stator support 08 is also provided with a conversion plate 09. The displacement sensor adopts a capacitive grating sensor, which includes a moving grating arranged on the reading head 21 and a static grating arranged on the conversion plate 09, and the static grating is connected with the main plate 11 through a signal line. Thus, the relative position of the moving grating and the static grating can determine the position of the mover support 19 relative to the stator support 08, i.e. the height of the mover support 19. Meanwhile, similar to the principle of electronic vernier caliper, the reading head 21 can also display the height of the mover support 19 in real time to facilitate manual adjustment of the height of the mover support 19.

[0046] Furthermore, in the present application, the mover support 19 is provided with a reed 22 which constantly presses on the conversion plate 09. Thus, when the No. 1 mover coil 13, No. 2 mover coil 14 and No. 3 mover coil 15 are not powered, i.e. the mover support 19 does not move, under the elastic force of the reed 22, the mover support 19 can be ensured to hover at any position on the stator support 08.

[0047] Therefore, in the present application, through the above moving mechanism, displacement sensor and reed 22, the mover support 19 can be manually or automatically precisely slid and positioned in height on the stator support 08.

[0048] The mover support 19 is internally provided with a plurality of display screens. The mover support 19 is also made of transparent material. Preferably, the plurality of display screens includes a No. 1 display screen 16, a No. 2 display screen 17 and a No. 3 display screen 18 which are uniformly arranged around the circumference. As shown in the drawings, the No. 1 display screen 16, the No. 2 display screen 17 and the No. 3 display screen 18 are all arc-shaped display screens with an arc of 115°, so that the display can be realized in different regions. Figure 5 As shown in the drawings, the No. 1 display screen 16, the No. 2 display screen 17 and the No. 3 display screen 18 are all arc-shaped display screens with an arc of 115°, so that the display can be realized in different regions.

[0049] As shown in the drawings, the No. 1 display screen 16, the No. 2 display screen 17 and the No. 3 display screen 18 are all arc-shaped display screens with an arc of 115°, so that the display can be realized in different regions. Figure 4 As shown in the drawings, the No. 1 display screen 16, the No. 2 display screen 17 and the No. 3 display screen 18 are all arc-shaped display screens with an arc of 115°, so that the display can be realized in different regions.

[0050] The mainboard 11 can be connected with a π-type matching network through a Bluetooth signal, so that the mainboard 11 can receive the control signal sent by the mobile phone APP in a wireless manner. At the same time, the mainboard 11 can be connected with a clock module to provide functions such as alarm clock and timer.

[0051] The multifunctional atmosphere lamp of the present application can have a plurality of function modes, and the function mode of the atmosphere lamp can be selected by rotating the mode switching knob 01 and single-clicking to confirm. In the present application, the multifunctional atmosphere lamp can provide the following function modes:

[0052] I. Brightness level adjustment mode.

[0053] When the function mode of the atmosphere lamp is the brightness level adjustment mode, the user can manually adjust the height of the mover support 19, and the mainboard 11 determines the brightness level of the atmosphere lamp based on the height of the mover support 19. Alternatively, the brightness level of the atmosphere lamp is set by the user through the mobile phone APP and sent to the mainboard 11 through the wireless network, so that the mainboard 11 determines the height of the mover support 19 based on the brightness level of the atmosphere lamp. For example, as shown in the drawings, the user can manually adjust the height of the mover support 19, and the mainboard 11 determines the brightness level of the atmosphere lamp based on the height of the mover support 19. Figure 6As shown, brightness adjustment of 0-100 levels can be achieved. When the mover bracket 19 moves to the top of the stator bracket 08, the brightness level is 100, when it moves to the bottom of the stator bracket 08, the brightness level is 0, and when it moves to the middle position of the stator bracket 08, the brightness level is 50.

[0054] Furthermore, during the adjustment of the brightness level of the ambient light, the plurality of display screens partially (e.g., only the No. 3 display screen 18 facing the user) or as a whole (the No. 1 display screen 16, the No. 2 display screen 17, and the No. 3 display screen 18) display the brightness level of the ambient light in real time, for example, Figure 6 In the example, the brightness level of the ambient light displayed on the display screen is 55. The lamp beads of the multiple light strip boards located below the horizontal height of the mover bracket 19 are partially lit (for example, only the RGB light strip board 03 No. 3 facing the user) or the entire board (RGB light strip board No. 1 05, RGB light strip board No. 2 04, and RGB light strip board No. 3 03) according to the brightness level of the ambient light.

[0055] 2. Alarm clock mode.

[0056] When the function mode of the atmosphere light is the alarm mode, the user can manually adjust the height of the mover bracket 19 and the main board 11 sets the alarm time based on the height of the mover bracket 19. Alternatively, the user can manually set the alarm time through a mobile phone APP and send it to the main board 11 via a wireless network, so that the main board 11 can determine the height of the mover bracket 19 based on the alarm time. For example, Figure 7 As shown, setting the alarm time to 7:00 can achieve light wake-up 30 minutes in advance.

[0057] After setting the alarm time, the multiple display screen parts (for example, only display screen 18 No. 3 facing the user) or the entire display screen (display screen No. 16, display screen No. 2 17 and display screen No. 3 18) display the set alarm time in real time and all the lamp beads of the multiple light strip panels are turned off.

[0058] At a certain time before the set alarm time, for example, 30 minutes, the mainboard 11 controls the mover support 19 to automatically move to the bottom of the stator support 08 and slowly move up over time. During the slow upward movement of the mover support 19, the light-emitting diode part (for example, only the 3rd RGB light strip plate 03 opposite to the user) or the whole (1st RGB light strip plate 05, 2nd RGB light strip plate 04, and 3rd RGB light strip plate 03) of the plurality of light strip plates below the horizontal height of the mover support 19 is lit. And during the slow upward movement of the mover support 19, the display screen part (for example, only the 3rd display screen 18 opposite to the user) or the whole (1st display screen 16, 2nd display screen 17, and 3rd display screen 18) of the plurality of display screens displays the current time in real time. For example, as shown in Figure 7 at 6:30, the mainboard 11 controls the mover support 19 to automatically move to the bottom of the stator support 08. And the display at Figure 7 is the situation at 6:45.

[0059] When the mover support 19 moves to the top end of the stator support 08, the set alarm time is reached, that is, Figure 7 7:00 as shown in

[0060] III. Timer mode.

[0061] When the function mode of the atmosphere lamp is the timer mode, the user can manually adjust the height of the mover support 19 and the mainboard 11 can determine the timer based on the height of the mover support 19. Or manually set the timer through the mobile phone APP and send it to the mainboard 11 through the wireless network, so that the mainboard 11 can determine the height of the mover support 19 based on the timer. For example, as shown in Figure 8 the timer can be set to 120 minutes, realizing 0-120 minutes of timing.

[0062] During the setting of the timer, the display screen part (for example, only the 3rd display screen 18 opposite to the user) or the whole (1st display screen 16, 2nd display screen 17, and 3rd display screen 18) of the plurality of display screens displays the timer in real time. The light-emitting diode part (for example, only the 3rd RGB light strip plate 03 opposite to the user) or the whole (1st RGB light strip plate 05, 2nd RGB light strip plate 04, and 3rd RGB light strip plate 03) of the plurality of light strip plates below the horizontal height of the mover support 19 is lit. For example, as shown in Figure 8As shown, the timer is set to 120 min, at the beginning of the timer, the mover support 19 moves to the top of the stator support 08 and the multiple display screen parts (for example, only the 3rd display screen 18 opposite to the user) or the whole (1st display screen 16, 2nd display screen 17 and 3rd display screen 18) display the timer as 120 min in real time. At this time, the light beads of the multiple light belt boards below the horizontal height of the mover support 19 (for example, only the 3rd RGB light belt board 03 opposite to the user) or the whole (1st RGB light belt board 05, 2nd RGB light belt board 04 and 3rd RGB light belt board 03) are turned on. Figure 8 As shown, the timer is set to 120 min, at the beginning of the timer, the mover support 19 moves to the top of the stator support 08 and the multiple display screen parts (for example, only the 3rd display screen 18 opposite to the user) or the whole (1st display screen 16, 2nd display screen 17 and 3rd display screen 18) display the timer as 120 min in real time. At this time, the light beads of the multiple light belt boards below the horizontal height of the mover support 19 (for example, only the 3rd RGB light belt board 03 opposite to the user) or the whole (1st RGB light belt board 05, 2nd RGB light belt board 04 and 3rd RGB light belt board 03) are turned on.

[0063] And, over time, the main board 11 controls the mover support 19 to gradually slide down and the multiple display screen parts or the whole display the remaining time in real time. When the timer becomes 0, the mover support 19 slides to the bottom of the stator support 08. At this time, the light beads of the multiple light belt boards are all turned off to remind the time.

[0064] Four, sensor mode.

[0065] As shown, the main board 11 can be provided with multiple environment sensors to monitor the current environment data in real time. When the function mode of the atmosphere lamp is the sensor mode, the main board 11 automatically moves the mover support 10 to the height corresponding to the environment data based on the environment data. The multiple display screen parts or the whole display the environment data in real time. The light beads of the multiple light belt boards below the horizontal height of the mover support 19 or the whole are turned on. Thus, the environment data is prompted. Figure 3 In the present application, the environment sensors include air quality sensors (TVOC sensors)

[0066]

[0067] 111, CO2 sensor 114, PM2.5 sensor 115 and temperature and humidity sensor 116. Thus, the sensor mode can include air quality mode, CO2 mode, PM2.5 mode, temperature mode and humidity mode.

[0068] 1, PM2.5 mode.

[0069] When the function mode of the atmosphere lamp is the PM2.5 mode, as shown, Figure 9 ​As shown, the mainboard 11 automatically moves the mover support 10 to the height corresponding to the PM2.5 value measured by the PM2.5 sensor 115 based on the PM2.5 value. The display screen displays the PM2.5 value in real time, for example, 350ug / m 3 The lamp beads of the lamp strip board below the height of the mover support 19 are lit. Thus, the PM2.5 in the air is prompted. In the present application, the PM2.5 in the range of 0-500ug / m 3 is prompted.

[0070] 2. Air quality mode, i.e., TVOC mode.

[0071] When the function mode of the atmosphere lamp is the air quality mode, as shown in Figure 10 , the mainboard 11 automatically moves the mover support 10 to the height corresponding to the TVOC value measured by the TVOC sensor 111 based on the TVOC value. The display screen displays the TVOC value in real time, for example, 6.66mg / m 3 The lamp beads of the lamp strip board below the height of the mover support 19 are lit. Thus, the TVOC in the air is prompted. In the present application, the TVOC in the range of 0.01-9.99mg / m 3 is prompted.

[0072] 3. Temperature mode.

[0073] When the function mode of the atmosphere lamp is the temperature mode, as shown in Figure 11 , the mainboard 11 automatically moves the mover support 10 to the height corresponding to the temperature value measured by the temperature and humidity sensor 116 based on the temperature value. The display screen displays the temperature value in real time, for example, 32℃. The lamp beads of the lamp strip board below the height of the mover support 19 are lit. Thus, the temperature is prompted. In the present application, the temperature in the range of -10-60℃ is prompted.

[0074] 4. Humidity mode.

[0075] When the function mode of the atmosphere lamp is the humidity mode, as shown in Figure 12 , the mainboard 11 automatically moves the mover support 10 to the height corresponding to the humidity value measured by the temperature and humidity sensor 116 based on the humidity value. The display screen displays the humidity value in real time, for example, 65%. The lamp beads of the lamp strip board below the height of the mover support 19 are lit. Thus, the humidity is prompted. In the present application, the humidity in the range of -0%-95%RH is prompted.

[0076] 5. CO2 mode.

[0077] When the function mode of the atmosphere lamp is the CO2 mode, as shown in Figure 13 , the mainboard 11 automatically moves the mover support 10 to the height corresponding to the CO2 value measured by the CO2 sensor 114 based on the CO2 value. The display screen part or the whole displays the CO2 value in real time, for example, 2500 ppm. The lamp bead part or the whole of the lamp strip board below the height of the mover support 19 is lit. Thus, the prompting of CO2 is realized. In the present application, the prompting of CO2 of 400-5000 ppm can be realized.

[0078] In addition, in the present application, as shown in Figure 3 , the mainboard 11 can be provided with a millimeter wave radar module 112. When a person approaches the atmosphere lamp, the millimeter wave radar module 112 can sense the position of the person. The mainboard 11 controls the corresponding display screen and lamp strip board as the main display and the other display screen and lamp strip board as the secondary display based on the position of the person. For example, in the example shown in Figure 5 , if the millimeter wave radar module 112 senses that the position of the person is the No. 1 area, the No. 1 display screen 16 and the No. 3 RGB lamp strip board 03 corresponding to the No. 1 area are taken as the main display, and the No. 2 display screen 17, the No. 3 display screen 18 and the No. 1 RGB lamp strip board 05, the No. 2 RGB lamp strip board 04 are taken as the secondary display. Thus, the intelligent display can be carried out in a targeted manner.

[0079] Moreover, in the present application, the mainboard 11 can be provided with a pickup microphone 113. The pickup microphone 113 can realize the monitoring of the environmental sound (for example, the voice instruction of the user). Thus, the mainboard 11 realizes the control of the plurality of lamp strip boards and the plurality of display screens based on the environmental sound (for example, the voice instruction of the user), or realizes the setting of the function mode of the atmosphere lamp, etc.

[0080] Finally, in the present application, the mainboard 11 can be provided with a TYPE-C power interface. As shown in Figure 4As shown, the TYPE-C power interface can be connected with a computer / power converter to realize the introduction of power. Moreover, the TYPE-C power interface can be connected with an OVP (over-voltage protection chip), and the power supply switch is connected through the OVP to provide power for the plurality of display screens, the plurality of RGB lamp panels and the mover board 20, and to provide power for the plurality of mover coils through the mover board 20. The OVP can also be connected with a DC / DC to provide power for the main board 11 and the environmental sensor. Meanwhile, the OVP can also be connected with a charging IC, and the battery can be charged through the charging IC. The charged battery can provide power for the atmosphere lamp.

[0081] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the scope of protection of the present application. Based on the idea of the present application, those skilled in the art can modify or equivalently replace the technical solutions of the present application without departing from the essence and scope of the technical solutions of the present application.

Claims

1. A multifunctional atmosphere lamp, comprising a lampshade housing (10), characterized in that: The upper end of the lampshade housing (10) is provided with a mode switching knob (01) and an encoder plate (02) connected to the mode switching knob, and the lower end is provided with a main board (11); the interior of the lampshade housing (10) is provided with a stator bracket (08) and a plurality of light strip plates (03, 04, 05) mounted on the stator bracket (08); the exterior is provided with a mover bracket (19); a moving mechanism and a displacement sensor are provided between the mover bracket (19) and the stator bracket (08); the moving mechanism is used to drive the mover bracket (19) to move up and down along the stator bracket (08), and the displacement sensor is used to measure the height of the mover bracket (19). The movable bracket (19) is provided with a plurality of display screens (16, 17, 18), and the encoder board (02), the light strip board (03, 04, 05), the moving mechanism, the displacement sensor and the plurality of display screens (16, 17, 18) are all connected to the main board (11) by signal, so that the main board (11) can realize the selection of the functional mode of the atmosphere light based on the mode switching knob (01), and realize the prompt function of the plurality of light strip boards (03, 04, 05) and the plurality of display screens (16, 17, 18) in different functional modes by moving the movable bracket (19) up and down on the stator bracket (08).

2. The multifunctional atmosphere lamp according to claim 1, characterized in that: When the functional mode of the atmosphere lamp is a brightness adjustment mode, the height of the movable bracket (19) is manually adjusted and the main board (11) determines the brightness level of the atmosphere lamp based on the height of the movable bracket (19), or the brightness level of the atmosphere lamp is manually set and the main board (11) determines the height of the movable bracket (19) based on the brightness level of the atmosphere lamp, and during the brightness level adjustment process of the atmosphere lamp, the multiple display screens (16, 17, 18) partially or entirely display the brightness level of the atmosphere lamp in real time and the lamp beads of the multiple light strip boards (03, 04, 05) located below the horizontal height of the movable bracket (19) are partially or entirely lit according to the brightness level of the atmosphere lamp.

3. The multifunctional atmosphere lamp according to claim 1, characterized in that: When the functional mode of the atmosphere lamp is the alarm mode, the height of the movable bracket (19) is manually adjusted and the main board (11) sets the alarm time based on the height of the movable bracket (19), or the alarm time is manually set and the main board (11) determines the height of the movable bracket (19) based on the alarm time, and after the alarm time is set, the plurality of display screens (16, 17, 18) partially or entirely display the alarm time in real time and the lamp beads of the plurality of light strip boards (03, 04, 05) are all extinguished, and when a certain time has passed since the set alarm time, the main board (11) controls the movable bracket (19) to turn on. ) automatically moves to the bottom of the stator bracket (08) and slowly moves upward with time. During the process of the movable bracket (19) slowly moving upward, the lamp beads of the multiple light strip plates (03, 04, 05) located below the horizontal height of the movable bracket (19) are partially or entirely lit. When the movable bracket (19) moves to the top of the stator bracket (08), the set alarm time is reached. At this time, the lamp beads of the multiple light strip plates (03, 04, 05) are all lit to serve as an alarm reminder, and during the process of the movable bracket (19) slowly moving upward, the multiple display screens (16, 17, 18) partially or entirely display the current time in real time.

4. The multifunctional atmosphere lamp according to claim 1, characterized in that: When the functional mode of the atmosphere light is the timer mode, the height of the mover bracket (19) is manually adjusted and the main board (11) determines the timer based on the height of the mover bracket (19), or the timer is manually set and the main board (11) determines the height of the mover bracket (19) based on the timer. During the timer setting process, the multiple display screens (16, 17, 18) partially or entirely display the timer in real time, and the lamp beads of the multiple light strip boards (03, 04, 05) located below the horizontal height of the mover bracket (19) are partially or entirely lit. Moreover, as time passes, the main board (11) controls the mover bracket (19) to gradually slide down and the multiple display screens (16, 17, 18) partially or entirely display the remaining time in real time. When the timer becomes 0, it slides to the bottom of the stator bracket (08). At this time, the lamp beads of the multiple light strip boards (03, 04, 05) are all extinguished to remind the time is up.

5. The multifunctional atmosphere lamp according to claim 1, characterized in that: When the functional mode of the atmosphere lamp is the sensor mode, the current environmental data is monitored in real time by the environmental sensors (111, 114, 115, 116) provided on the main board (11), the main board (11) automatically moves the mover bracket (19) to a height corresponding to the environmental data based on the environmental data, the multiple display screens (16, 17, 18) partially or entirely display the environmental data in real time, and the lamp beads of the multiple light strip boards (03, 04, 05) located below the horizontal height of the mover bracket (19) are partially or entirely lit.

6. The multifunctional atmosphere lamp according to claim 5, characterized in that: The environmental sensors (111, 114, 115, 116) include an air quality sensor (111), a CO2 sensor (114), a PM2.5 sensor (115), and a temperature and humidity sensor (116); and the sensor modes include an air quality mode, a CO2 mode, a PM2.5 mode, a temperature mode, and a humidity mode.

7. The multifunctional atmosphere lamp according to claim 1, characterized in that: The main board (11) is provided with a millimeter wave radar module (112), and the millimeter wave radar module (112) is used to sense the location of a person. Based on the location of the person, the main board (11) controls the corresponding display screen and light strip board as a main display, and other display screens and light strip boards as secondary displays.

8. The multifunctional atmosphere lamp according to claim 7, characterized in that: The multiple display screens (16, 17, 18) include a display screen No. 1 (16), a display screen No. 2 (17), and a display screen No. 3 (18) evenly arranged around a circumference, and the display screen No. 1 (16), the display screen No. 2 (17), and the display screen No. 3 (18) are all arc-shaped display screens with an arc of 115°.

9. The multifunctional atmosphere lamp according to claim 1, characterized in that: The plurality of light strip boards (03, 04, 05) include a No. 1 RGB light strip board (05), a No. 2 RGB light strip board (04), and a No. 3 RGB light strip board (03); the No. 1 RGB light strip board (05), the No. 2 RGB light strip board (04), and the No. 3 RGB light strip board (03) are respectively arranged on three side surfaces of the stator bracket (08) that are not opposite to the mover bracket (19).

10. The multifunctional atmosphere lamp according to any one of claims 1 to 9, characterized in that: The main board (11) is provided with a sound pickup microphone (113), and the sound pickup microphone (113) monitors ambient sound. The main board (11) controls the multiple light strip boards (03, 04, 05) and the multiple display screens (16, 17, 18) based on the ambient sound.

Citation Information

Patent Citations

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