Incense cooling instrument convenient for switching atmosphere forms
By adopting wireless transmission technology and adapter design in the fragrance cooler, the problem of cumbersome replacement of ends and ambient lights in the existing technology is solved, and the function of quickly switching the atmosphere mode of the fragrance cooler is realized, improving efficiency and user experience.
Patent Information
- Application Number
- CN202510261277.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-05-30
AI Technical Summary
When switching different atmosphere modes, the existing fragrance cooler is cumbersome to replace ends with different fragrance holes and atmosphere lamps with different fragrance holes, which are inefficient and cannot achieve convenient and fast conversion.
Through wireless power transmission technology, the output mechanism with ambient lamp and fragrance outlet can be quickly replaced. The design of the adapter and storage mechanism can be used to realize the rapid loading and unloading of the output mechanism and simplify the replacement operation.
It improves the efficiency of the cold fragrance instrument to switch different atmosphere modes, simplifies the replacement operation, improves the user experience, and expands the application potential of the cold fragrance instrument in dynamic scenarios.
Smart Images

Figure CN120053725A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of aromatherapy, and particularly to a cold diffuser that facilitates switching of atmosphere forms. Background Art
[0002] As a new type of aroma release device, cold diffusers are mainly used in homes, offices or various commercial places, aiming to enhance the comfort and quality of the environment by emitting fresh and unique scents. Their application scenarios are extensive. Whether it is for a home SPA to relax the body and mind, a dinner date to create a romantic atmosphere, or to provide a wisp of peaceful fragrance experience for employees in a tense working environment, cold diffusers can meet the needs of users with their delicate designs and excellent effects. Through advanced cold air diffusion technology, it can make spices such as essential oils emit natural and pure scents without heating, giving people a healthier and more comfortable use experience.
[0003] With the growing market demand for personalized and multi-functional products, the existing cold diffuser technology is no longer limited to a single aroma release function. To further enhance the atmosphere, many cold diffusers are designed with various output forms that can enhance the atmosphere. For example, in addition to the basic aroma release, different aroma output forms are designed, such as fine mist, jet spray, etc., to meet the needs of different scenarios. In addition, some high-end cold diffusers integrate ambient light functions. These ambient lights can adjust the indoor atmosphere according to the user's preferences or the needs of specific occasions by changing colors (such as warm orange light, calm blue light) or the form of light (such as soft diffused light, twinkling starlight effect), greatly enriching the user experience.
[0004] However, despite the many advantages of existing cold diffusers, there are still certain limitations in actual use. A significant problem is that the operation of replacing the end heads with different aroma holes and the ambient lights is extremely cumbersome, which results in low efficiency when the cold diffuser needs to switch different atmosphere modes. Since such devices usually require disassembling multiple components to complete the replacement, it is time-consuming and laborious, and cannot achieve convenient and rapid conversion. This inconvenience is especially evident in occasions where the atmosphere settings need to be frequently changed. The long interruption not only affects the user experience but also limits the application potential of cold diffusers in more dynamic scenarios. Therefore, how to simplify this process has become the key to improving the existing technology. Summary of the Invention
[0005] An embodiment of this application provides a cold diffuser that facilitates switching of atmosphere forms. Through wireless power transmission technology, the output mechanism with ambient lights and aroma holes can be quickly replaced to solve the technical problem that existing cold diffusers cannot switch atmosphere forms by quickly replacing the aroma heads and ambient lights. The technical solution is as follows:
[0006] The embodiment of the present application provides a cold fragrance instrument that is convenient for switching atmosphere forms, comprising: a base with a built-in accommodating space, the base being provided with a mounting hole connected to the accommodating space; a fixing member installed on the inner wall of the base, the fixing member being provided with an adapter corresponding to the mounting hole; a storage mechanism, arranged in the accommodating space of the base, for loading a fragrance medium, the storage mechanism being connected to the adapter; and an output mechanism, having a light source component and a fragrance outlet, the output mechanism being placed on the adapter through the mounting hole, and the fragrance outlet is connected to the storage mechanism through the adapter;
[0007] A first coil is arranged on the adapter, a second coil electrically connected to the light source component is arranged in the output mechanism, and the first coil and the second coil transmit electric energy in a wireless transmission manner.
[0008] In one embodiment, it also includes: a mounting bracket, which is installed in the accommodating space of the base, and the storage mechanism is installed on the mounting bracket; a power mechanism, which is installed on the mounting bracket, the power mechanism is electrically connected to the first coil to supply electrical energy to the light source component through the power mechanism, and the power mechanism is connected to the storage mechanism to output positive pressure force to the storage mechanism through the power mechanism.
[0009] In one embodiment, the output mechanism includes: a first incense outlet mounting seat, which is used to dock with an adapter seat; the first incense outlet mounting seat has a second mounting portion and an incense outlet end connected to the second mounting portion, the second mounting portion is provided with a receiving hole on the side away from the incense outlet end, the receiving hole is connected to the storage mechanism through the adapter seat, and a guide hole connected to the receiving hole is circumferentially arranged on the incense outlet end, and the second coil is installed on the second mounting portion; the second incense outlet mounting seat is sleeved on the first incense outlet mounting seat; the second incense outlet mounting seat has a third mounting portion, the light source component is installed on the third mounting portion, and the second incense outlet mounting seat has a fragrance outlet hole circumferentially arranged on the second incense outlet mounting seat, and the fragrance outlet hole is connected to the guide hole.
[0010] In one embodiment, a wiring channel is provided between the first incense outlet mounting seat and the second incense outlet mounting seat, and the cable on the second coil passes through the wiring channel and is electrically connected to the light source component.
[0011] In one embodiment, the adapter is provided with a first mounting portion and a clearance channel, the first coil is mounted on the first mounting portion, the clearance channel is located in the middle of the first mounting portion, and the storage mechanism and the output mechanism are connected through the clearance channel.
[0012] In one embodiment, the mounting bracket includes: a mounting plate, a power supply mounting seat and a pump mounting seat are provided on the bottom side; a connecting member connected to the top side of the mounting plate, and a fixing member is fixed to the inner wall of the base with the mounting hole through the connecting member;
[0013] The power mechanism includes: a control circuit board, fixed on the top side of the mounting plate, and a relief hole is provided on the control circuit board; a power storage component, fixed in the power supply mounting seat, and the power storage component is electrically connected to the first coil through the control circuit board; a booster pump, fixed in the pump component mounting seat, the booster pump is electrically connected to the power storage component through the control circuit board, and the storage mechanism is communicated with the output end of the booster pump;
[0014] Wherein, the storage mechanism connects the mounting plate and the adapter seat in the relief hole.
[0015] In an embodiment, the storage mechanism includes: a container mounting seat, passing through the relief hole to connect the mounting plate and the adapter seat, a receiving groove is provided inside the container mounting seat, and a connection hole penetrating the mounting plate is provided at the bottom of the receiving groove; a medium container, arranged in the receiving groove of the container mounting seat for storing the fragrance-emitting medium, the medium container is communicated with the adapter seat, and a connection head is provided at the bottom of the medium container, and the output end of the booster pump is communicated with the medium container through the connection head.
[0016] In an embodiment, the mounting bracket includes: a mounting plate, fixed on one side of the base; a connecting member, connected to the top side of the mounting plate;
[0017] The power mechanism includes: a control circuit board, mounted on the end of the connecting member away from the mounting plate, and a relief hole is provided on the control circuit board; a power storage component, integrated on the control circuit board, the power storage component is electrically connected to the first coil through the control circuit board; a booster pump, integrated on the control circuit board, the booster pump is electrically connected to the power storage component through the control circuit board, and the storage mechanism is communicated with the output end of the booster pump;
[0018] Wherein, the storage mechanism connects the mounting plate and the adapter seat in the relief hole.
[0019] In an embodiment, the storage mechanism includes: a container mounting seat, passing through the relief hole to connect the mounting plate and the adapter seat, a receiving groove is provided inside the container mounting seat; a medium container, arranged in the receiving groove of the container mounting seat for storing the fragrance-emitting medium;
[0020] Wherein, the notch of the receiving groove away from the adapter seat forms an assembly port on the mounting plate, and the assembly port is used for loading and unloading the medium container in the receiving groove.
[0021] In an embodiment, the storage mechanism further includes: a container top cover, mounted on the end of the medium container away from the mounting plate, and a plurality of fragrance-emitting ports are provided on the container top cover, and the medium container is communicated with the adapter seat through the fragrance-emitting ports;
[0022] Wherein, a first magnetic component is mounted on the container top cover, and a second magnetic component is mounted on the side of the adapter seat away from the output mechanism; the second magnetic component is connected to the first magnetic component in an adsorption manner.
[0023] In one embodiment, a transfer tube and a connector are also provided on the adapter seat. The transfer tube is located in the yield channel of the adapter seat, and the connector is located on the outer surface of the adapter seat. The transfer tube extends into the storage mechanism, and the transfer tube is connected to the output end of the boost pump through the connector.
[0024] Compared with the prior art, the cold fragrance instrument that is easy to switch the atmosphere form proposed in the above technical scheme installs the fixing part in the base, and connects the adapter to the mounting hole, while the storage mechanism and the output mechanism are connected through the adapter, and the output mechanism and the adapter transmit electric energy wirelessly through the first coil and the second coil, so that the output mechanism can be quickly loaded and unloaded on the adapter, which effectively simplifies the operating steps of replacing the end and atmosphere lights of different fragrance holes, improves the efficiency of the cold fragrance instrument in switching different atmosphere modes, and realizes rapid conversion; especially in occasions where the atmosphere settings need to be changed frequently, it improves the user experience and brings into play the application potential of the cold fragrance instrument in different occasions.
[0025] The above summary is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features of the present application will be readily apparent by reference to the accompanying drawings and the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In the accompanying drawings, unless otherwise specified, the same reference numerals throughout the multiple drawings represent the same or similar parts or elements. These drawings are not necessarily drawn to scale. It should be understood that these drawings only depict some embodiments disclosed in the present application and should not be regarded as limiting the scope of the present application.
[0027] Figure 1 A schematic diagram of the three-dimensional structure of a cold fragrance instrument for facilitating switching of atmosphere forms proposed in this application;
[0028] Figure 2 An exploded view of the output mechanism in the embodiment of the present application;
[0029] Figure 3 This is a schematic diagram of the three-dimensional structure of the first incense outlet mounting seat in the embodiment of the present application;
[0030] Figure 4 This is a schematic diagram of the three-dimensional structure of the second incense outlet mounting base in the embodiment of the present application;
[0031] Figure 5 This is a schematic diagram of the internal structure of the cold fragrance instrument in the first embodiment of the present application;
[0032] Figure 6 This is a schematic diagram of the three-dimensional structure of the fixing member in the first embodiment of the present application;
[0033] Figure 7 This is a schematic diagram of the assembly of the adapter and the first coil in the first embodiment of the present application;
[0034] Figure 8 This is a schematic diagram of the three-dimensional structure of the mounting bracket and the power mechanism in the first embodiment of the present application;
[0035] Figure 9 This is an assembly diagram of the mounting frame and the power mechanism in the first embodiment of the present application;
[0036] Figure 10 This is a schematic structural diagram of a medium container in the first embodiment of the present application;
[0037] Figure 11 This is a schematic diagram of the internal structure of the cold fragrance instrument in the second embodiment of the present application;
[0038] Figure 12 This is a schematic diagram of the three-dimensional structure of the fixing member in the second embodiment of the present application;
[0039] Figure 13 This is a schematic diagram of the assembly of the second magnetic attraction member on the adapter in the second embodiment of the present application;
[0040] Figure 14 This is a schematic diagram of the structure of the transfer tube in the second embodiment of the present application;
[0041] Figure 15 This is a structural schematic diagram of a mounting bracket and a container mounting seat in the second embodiment of the present application;
[0042] Figure 16 This is a structural schematic diagram of the assembly port in the second embodiment of the present application;
[0043] Figure 17 This is a schematic diagram of the three-dimensional structure of the power mechanism in the second embodiment of the present application;
[0044] Figure 18 This is an exploded view of the medium container and the container top cover in the second embodiment of the present application.
[0045] Reference numerals:
[0046] 1. Base;
[0047] 11. Mounting holes;
[0048] 2. Fixing parts;
[0049] 21. adapter; 22. first coil;
[0050] 211, first mounting portion; 212, clearance channel; 213, second connector; 214, adapter tube; 215, card slot; 216, first notch; 217, second magnetic attraction member;
[0051] 3. Mounting bracket
[0052] 31. Mounting plate; 32. Connecting piece
[0053] 311. Power supply mounting seat; 312. Pump component mounting seat
[0054] 4. Storage mechanism
[0055] 41. Container mounting seat; 42. Medium container; 43. Container top cover
[0056] 410. Assembly port; 411. Hook; 421. First connector; 431. Incense outlet; 432. First magnetic component
[0057] 5. Output mechanism
[0058] 51. First incense output mounting seat; 52. Second incense output mounting seat; 53. Light source component; 54. Second coil
[0059] 511. Second mounting part; 512. Incense output end; 513. Receiving hole; 514. Guide hole; 515. Second notch; 521. Third mounting part; 522. Incense outlet hole; 523. Channel wall
[0060] 6. Power mechanism
[0061] 61. Control circuit board; 62. Power storage component; 63. Booster pump; 64. Rotary switch; 65. Charging female head
[0062] 610. Relief hole; 631. Output end Detailed implementation manners
[0063] In the following text, only some exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than restrictive.
[0064] Refer to Figures 1 to 18As shown in the figure, in the embodiment of the present application, an aroma diffuser facilitating the switching of atmosphere forms is proposed. The aroma diffuser facilitating the switching of atmosphere forms may include: a base 1 with an internal accommodation space, and an installation hole 11 communicating with the accommodation space is provided on the base 1; a fixing member 2 installed on the inner wall of the base 1, and a transfer seat 21 corresponding to the installation hole 11 is provided on the fixing member 2; a storage mechanism 4 disposed in the accommodation space of the base 1 for loading aroma-emitting medium, and the storage mechanism 4 is connected to the transfer seat 21; and an output mechanism 5 having a light source component 53 and an aroma outlet hole 522. The output mechanism 5 is placed on the transfer seat 21 through the installation hole 11, and the aroma outlet hole 522 is communicated with the storage mechanism 4 through the transfer seat 21.
[0065] Wherein, a first coil 22 is disposed on the transfer seat 21, a second coil 54 electrically connected to the light source component 53 is disposed in the output mechanism 5, and the first coil 22 and the second coil 54 transmit electric energy in a wireless transmission manner.
[0066] Specifically, in the technical solution adopted in the present application, the base 1 can be a box structure with a built-in storage space. The base 1 can be a rectangular structure, a semicircular structure or other irregular structures. It should be noted that the bottom surface of the base 1 is a flat surface so that the cold fragrance instrument can be stably placed in a placement position, such as: a desktop, a windowsill or a shelf; the top of the base 1 is provided with a mounting hole 11 connected to its storage space, so as to facilitate the transmission of the fragrance medium and the output of electrical energy. A fixing part 2 is installed on the inner side wall of the base 1, and an adapter seat 21 is provided on the fixing part 2, and the adapter seat 21 corresponds to the mounting hole 11, and one end of the adapter seat 21 extends into the mounting hole 11, which is used to transfer functional mechanisms with different functions; since the mounting hole 11 is opened at the top of the base 1, it is preferred to install the fixing part 2 on the inner top of the base 1 so that the adapter seat 21 can be docked with the mounting hole 11. In order to realize the fragrance-discharging function of the cold fragrance instrument, a storage mechanism 4 is arranged in the internal accommodation space of the base 1 for loading the fragrance-discharging medium, which can be a liquid essential oil with fragrance. The storage mechanism 4 can be connected to the adapter 21 through a connecting pipe; in this embodiment, in order to save the accommodation space inside the base 1, it is preferred to directly connect the storage mechanism 4 to the adapter 21. The cold fragrance instrument of the present application also includes: an output mechanism 5 provided with a light source component 53 and a fragrance-discharging hole 522. The light source component 53 is used to output ambient light to the target area, and the fragrance-discharging hole 522 can be used to output tiny particles of liquid essential oil to the target area. The shape of the fragrance-discharging hole 522 can be adjusted on the cold fragrance instrument to determine the state formed by the output liquid tiny particles, so as to enhance the atmosphere and sense of luxury. In the present application, in order to facilitate the switching of the output form of the cold fragrance instrument, the output mechanism 5 can be detachably installed on the adapter 21 through the mounting hole 11; in some embodiments, threaded matching, snap-on quick plug-in and other methods can be adopted, for example: matching threaded structures are provided on the adapter 21 and the output mechanism 5, and the output mechanism 5 is screwed into the adapter 21 for fixing during installation. Alternatively, matching clamping holes and clamping hooks 411 are provided on the adapter 21 and the output structure, and the output mechanism 5 is inserted into the adapter 21 during installation, and the clamping holes and clamping hooks 411 cooperate with each other to connect them, and when the output mechanism 5 needs to be replaced, the clamping hook 411 can be manually driven out of the clamping hole to release the connection.
[0067] In one embodiment, the present application preferably places the output mechanism 5 on the adapter base 21 so that the fragrance outlet holes 522 communicate with the storage mechanism 4 through the adapter base 21, achieving the purpose that the liquid essential oil in the storage mechanism 4 can be transported to the output structure and discharged through the fragrance outlet holes 522. Thus, it is more convenient to adjust the atmosphere mode by replacing different output mechanisms 5. Specifically, it is considered that the cold fragrance diffuser is generally not frequently moved, and there is generally no violent shaking or vibration in the installation area. In order to ensure the stability of the output mechanism 5 under slight vibration, a certain depth can be set in the mounting hole 11. Thus, when the output mechanism 5 is placed on the adapter base 21 through the mounting hole 11, the hole wall of the mounting hole 11 can support on the outer wall of the output mechanism 5, so that the output mechanism 5 is not easily dropped.
[0068] In the present application, in order to enable the output mechanism 5 to obtain electric energy by placing it on the base 1, a wireless power transmission method is adopted between the output mechanism 5 and the base 1. Specifically, a first coil 22 is configured on the adapter base 21, and a second coil 54 is configured on the output mechanism 5. When the first coil 22 and the second coil 54 are at a preset distance, wireless power transmission can be carried out. The second coil 54 is electrically connected to the light source component 53, while the first coil 22 is electrically connected to the power supply device. The power supply device can be an external power source of the cold fragrance diffuser or a built-in power storage component 62 in the base 1, such as a rechargeable battery or a disposable battery, etc. During use, the output mechanism 5 is placed on the adapter base 21 through the mounting hole 11. At this time, the first coil 22 and the second coil 54 are at a predetermined distance capable of transmitting electric energy, so that a circuit loop is formed between the power supply device and the light source component 53, enabling the light source component 53 to emit light to enhance the atmosphere. The light source component 53 is an atmosphere lamp capable of emitting different colors or specific colors. When selecting the atmosphere mode, the required output mechanism 5 can be selected according to the emission color and the irradiation form of the light source.
[0069] In this application, a transmission circuit is configured in the base 1 or a power storage component 62 is configured in the base 1, so that the output mechanism 5 does not need to separately set a control switch to control the opening and closing of the light source component 53, nor does it need to configure a power storage component 62 in the output mechanism 5 to supply power to the light source component 53. Specifically, considering that during use, personal needs and the actual required atmosphere are different, it is necessary to reserve output components in various atmosphere forms, and there may also be a situation of frequently switching output components. Economically, when a control switch and / or an internal power storage component 62 are provided on the output mechanism 5, the cost of the output mechanism 5 is increased, and the idle output mechanism 5 during use further increases the cost. Moreover, if the output mechanism 5 is connected to an external power source, it is necessary to frequently connect and disconnect the connection to the power source during replacement, increasing the complexity and operation time of replacing the output mechanism 5, and the frequent connection and disconnection actions also accelerate the service life of the charging head and the charging port. In this application, by configuring the power storage component 62 in the accommodation space of the base 1, or connecting an external power source through the base 1 and then connecting the first coil 22 through the transmission circuit in the accommodation space of the base 1, the above-mentioned defects and problems can be solved, effectively reducing the manufacturing cost and selling price of the output mechanism 5, saving the operation steps of replacing the output mechanism 5, and also extending the service life of the charging port on the cold fragrance device and the charging head on the charging cable.
[0070] Further, referring to Figure 5 and Figure 11 As shown, in some embodiments, it further includes: a mounting bracket 3, installed in the accommodation space of the base 1, and a storage mechanism 4 is installed on the mounting bracket 3; a power mechanism 6, installed on the mounting bracket 3, the power mechanism 6 is electrically connected to the first coil 22 to supply power to the light source component 53 through the power mechanism 6, and the power mechanism 6 communicates with the storage mechanism 4 to output a positive pressure force to the storage mechanism 4 through the power mechanism 6.
[0071] Specifically, in the technical solution adopted in this application, the mounting bracket 3 can be fixedly installed in the accommodation space of the base 1 through fasteners to arrange the storage mechanism 4 on the mounting bracket 3, so as to assist the connection between the storage mechanism 4 and the adapter base 21. The power mechanism 6 is used to supply power to the light source component 53 and output a positive pressure force to the storage mechanism 4. When a positive pressure environment is formed in the storage mechanism 4 through the power mechanism 6, it can drive the fragrance-emitting medium in the storage mechanism 4 to pass through the adapter base 21 and be discharged into the output mechanism 5 until it is discharged from the fragrance outlet 522. The mounting bracket 3 mainly fixes the positions of the storage mechanism 4 and the power mechanism 6 in the accommodation space to prevent the storage mechanism 4 and the power mechanism 6 from moving randomly in the base 1, which may cause equipment damage or unstable connection.
[0072] Further, referring to Figures 2 to 4As shown, in some embodiments, the output mechanism 5 includes: a first fragrance outlet mounting base 51 for docking with the adapter base 21; the first fragrance outlet mounting base 51 has a second mounting portion 511 and a fragrance outlet end 512 connecting the second mounting portion 511. On one side of the second mounting portion 511 facing away from the fragrance outlet end 512, there is a receiving hole 513. The receiving hole 513 communicates with the storage mechanism 4 through the adapter base 21. Circumferentially arranged on the fragrance outlet end 512 are guiding holes 514 communicating with the receiving hole 513. The second coil 54 is installed on the second mounting portion 511; a second fragrance outlet mounting base 52 sleeved on the first fragrance outlet mounting base 51; the second fragrance outlet mounting base 52 has a third mounting portion 521, and the light source component 53 is installed on the third mounting portion 521. Circumferentially arranged on the second fragrance outlet mounting base 52 are fragrance outlet holes 522, and the fragrance outlet holes 522 communicate with the guiding holes 514.
[0073] Specifically, in the technical solution adopted in the present application, the bottom of the first fragrance outlet mounting base 51 has a boss structure. On one side surface of the boss structure, the second coil 54 is fixed, that is: the second mounting portion 511. On the side of the boss structure facing away from the second coil 54, there is a leveling surface that can be located on the adapter base 21; on the side surface of the boss structure where the second coil 54 is fixed, a hollow fragrance outlet end 512 is formed by protruding. Circumferentially arranged on the fragrance outlet end 512 are guiding holes 514. On the side surface of the boss structure facing away from the second coil 54, a receiving hole 513 communicating with the guiding holes 514 is opened. When the first fragrance outlet mounting base 51 is located on the adapter base 21, the receiving hole 513 can communicate with the adapter base 21, so that the fragrance medium in the storage mechanism 4 can be transported to the output mechanism 5 through the adapter base 21, and then pass through the receiving hole 513 and the guiding holes 514 in sequence. The second fragrance outlet mounting base 52 is fixedly sleeved on the first fragrance outlet mounting base 51. The outer edge of the bottom of the second fragrance outlet mounting base 52 can be connected to the boss structure of the first fragrance outlet mounting base 51 by bonding or welding. And the second fragrance outlet mounting base 52 can be formed with a third mounting portion 521 at the top end facing away from the boss structure. The light source component 53 can be installed on the third mounting portion 521 in a detachable manner; for example: the third mounting portion 521 and the light source component 53 are installed by screw fit. The third mounting portion 521 is provided with an internal thread structure, and the bottom of the light source component 53 is provided with an external thread structure. Screwing the light source component 53 into or out of the third mounting portion 521 can complete the loading and unloading. Circumferentially arranged on the second fragrance outlet mounting base 52 are the above-mentioned fragrance outlet holes 522, and several fragrance outlet holes 522 communicate with the corresponding guiding holes 514 on the first fragrance outlet mounting base 51 to determine the form of the discharged fragrance medium through the shape of the fragrance outlet holes 522; during use, the shapes of the fragrance outlet holes 522 of the second fragrance outlet mounting bases 52 on several output mechanisms 5 for switching the atmosphere form are different.
[0074] Further, referring to Figure 3 andFigure 4 As shown, in some embodiments, a wiring channel is provided between the first incense outlet mounting seat 51 and the second incense outlet mounting seat 52 , and the cable on the second coil 54 passes through the wiring channel and is electrically connected to the light source component 53 .
[0075] Specifically, in the technical solution adopted in the present application, the wiring channel can be set in the gap between the first incense outlet mounting seat 51 and the second incense outlet mounting seat 52; specifically, two spaced-apart channel walls 523 are formed on the inner wall of the second incense outlet mounting seat 52, and the end faces of the two channel walls 523 facing away from the inner wall of the second incense outlet mounting seat 52 abut against the outer surface of the first incense outlet mounting seat 51, and a second notch 515 for docking the two channel walls 523 is provided on the first incense outlet mounting seat 51, so that the wiring channel is formed by enclosing the two channel walls 523 and the outer wall of the first incense outlet mounting seat 51, and after the cable on the second coil 54 passes through the wiring channel, it can pass through the second notch 515 on the first incense outlet mounting seat 51 to be electrically connected to the light source component 53. In this embodiment, the two channel walls 523 can effectively prevent the incense outlet medium from contacting the cable of the second coil 54, and avoid serious corrosion or short circuit accidents of the cable of the second coil 54.
[0076] Further, see Figure 6 and Figure 12 As shown, in some embodiments, the adapter 21 is provided with a first mounting portion 211 and a clearance channel 212, the first coil 22 is mounted on the first mounting portion 211, the clearance channel 212 is located in the middle position of the first mounting portion 211, and the storage mechanism 4 is connected with the output mechanism 5 through the clearance channel 212.
[0077] Specifically, in the technical solution adopted in the present application, the fixing member 2 can be set as a plate-like structure, so that when the fixing member 2 is installed on the inner wall of the base 1, the fixing member 2 and the inner wall of the base 1 can be well fitted; and the adapter 21 is set as a cylindrical structure with openings running through the fixing member 2 from top to bottom, so as to facilitate the docking of the output mechanism 5 and the storage mechanism 4. A boss structure is also provided on the inner wall of the adapter 21 to serve as a first mounting portion 211 for fixing the first coil 22. A hole is reserved in the middle of the boss structure in the adapter 21 to form a clearance channel 212 through the hollow structure inside the adapter 21 and the hole of the boss structure; when the output mechanism 5 and the storage mechanism 4 are docked with the adapter 21 from top to bottom, they can be connected to each other through the hole in the adapter 21. A first notch 216 is also provided on the fixing member 2 and the adapter 21. The first notch 216 runs through the outer wall of the adapter 21 and is used to pass through the cable on the first coil 22, so that the cable of the first coil 22 can be connected to the power mechanism 6.
[0078] First embodiment
[0079] Further, see Figures 5 to 10As shown, in some embodiments, the mounting bracket 3 includes: a mounting plate 31, with a power supply mounting seat 311 and a pump component mounting seat 312 provided on the bottom side; a connecting member 32, connected to the top side of the mounting plate 31, and the fixing member 2 is fixed to the inner wall of the base 1 having a mounting hole 11 through the connecting member 32;
[0080] The power mechanism 6 includes: a control circuit board 61, fixed to the top side of the mounting plate 31, and a relief hole 610 is provided on the control circuit board 61; a power storage component 62, fixed in the power supply mounting seat 311, and the power storage component 62 is electrically connected to the first coil 22 through the control circuit board 61; a booster pump, fixed in the pump component mounting seat 312, the booster pump is electrically connected to the power storage component 62 through the control circuit board 61, and the storage mechanism 4 is communicated with the output end 631 of the booster pump;
[0081] Wherein, the storage mechanism 4 connects the mounting plate 31 and the adapter seat 21 in the relief hole 610.
[0082] Specifically, in the technical solution adopted in the present application, the mounting plate 31 is used to fix the power mechanism 6. Two clamping seats can be provided on the bottom side of the mounting plate 31, and the two clamping seats can be the power supply mounting seat 311 and the pump component mounting seat 312. Four rod-shaped connecting members 32 can be connected to the edge of the top side of the mounting plate 31. Each connecting member 32 extends towards the inner top wall of the base 1, and each connecting member 32 is detachably mounted on the inner top wall of the base 1; through holes corresponding to the four connecting members 32 are provided on the fixing member 2, and the fixing member 2 can be fixed to the inner top wall of the base 1 through the four connecting members 32. Specifically, the four connecting members 32 respectively pass through the corresponding through holes on the fixing member 2 and then are connected to the inner top wall of the base 1, and the fixing member 2 is fixed by the support of the four connecting members 32. The power mechanism 6 can include a control circuit board 61, a power storage component 62 and a booster pump; the control circuit board 61 is a PCB circuit board and can be fixed to the top side of the mounting plate 31 by bonding or clamping. The control circuit board 61 has a relief hole 610 adapted to the storage mechanism 4; the power storage component 62 is fixed in the power supply mounting seat 311 by clamping, and the booster pump is fixed in the pump component mounting seat 312 by clamping. The power storage component 62 is electrically connected to the first coil 22 through the control circuit board 61 to be able to control the on-off of the circuit between the power storage component 62 and the first coil 22 through the control circuit board 61, and the booster pump is electrically connected to the power storage component 62 through the control circuit board 61, and the output end 631 of the booster pump is communicated with the storage mechanism 4 to be able to control the on-off of the circuit between the power storage component 62 and the booster pump through the control circuit board 61, so as to be able to control whether the booster pump outputs positive pressure gas to the storage mechanism 4 according to requirements.
[0083] Further, referring to Figures 8 to 10As shown, in some embodiments, the storage mechanism 4 includes: a container mount 41 that connects the mounting plate 31 and the adapter base 21 through the relief hole 610. The container mount 41 has a built-in receiving groove, and a connection hole penetrating the mounting plate 31 is provided at the bottom of the receiving groove; a media container 42 configured in the receiving groove of the container mount 41 for storing the fragrance-emitting medium. The media container 42 communicates with the adapter base 21. A first connector 421 is provided at the bottom of the media container 42, and the output end 631 of the booster pump communicates with the media container 42 through the first connector 421.
[0084] Specifically, in the technical solution adopted in the present application, the container mount 41 can be connected to the mounting plate 31 by bonding or welding. To improve the stability of the container mount 41, it is preferably integrally formed on the mounting plate 31. The container mount 41 is a cylindrical structure located in the relief hole 610 of the control circuit board 61, thereby forming a receiving groove inside the container mount 41, and a connection hole penetrating the mounting plate 31 is provided at the bottom of the container mount 41. The top of the container mount 41 facing away from the mounting plate 31 has an opening and is embedded in the adapter base 21. The media container 42 has a cavity for storing the fragrance-emitting medium and also has an opening at the top. After the media container 42 is configured in the container mount 41, it can communicate with the adapter base 21 through its own top opening, so as to facilitate the fragrance-emitting medium stored in the media container 42 to be transported to the output mechanism 5 through the adapter base 21. A first connector 421 is formed at the bottom of the media container 42, and the first connector 421 communicates with the inside of the media container 42. The output end 631 of the booster pump communicates with the first connector 421, so that the booster pump can output positive pressure gas into the media container 42, prompting the fragrance-emitting medium in the media container 42 to be transported to the output mechanism 5 in the form of fine particles until it is discharged from the fragrance-emitting hole 522.
[0085] Second Embodiment
[0086] Further, referring to Figures 11 to 18 As shown, in some embodiments, the mounting bracket 3 includes: a mounting plate 31 fixed to one side of the base 1; a connecting member 32 connected to the top side of the mounting plate 31;
[0087] The power mechanism 6 includes: a control circuit board 61 mounted on the end of the connecting member 32 facing away from the mounting plate 31, and a relief hole 610 is provided on the control circuit board 61; a power storage component 62 integrated on the control circuit board 61, and the power storage component 62 is electrically connected to the first coil 22 through the control circuit board 61; a booster pump integrated on the control circuit board 61, and the booster pump is electrically connected to the power storage component 62 through the control circuit board 61. The storage mechanism 4 communicates with the output end 631 of the booster pump;
[0088] The storage mechanism 4 connects the mounting plate 31 and the adapter seat 21 in the clearance hole 610 .
[0089] Specifically, in the technical solution adopted by the present application, the output mechanism 5 has the same structure as that of the first embodiment, so it will not be described in detail. The difference in the second embodiment is the layout of the base 1 and the internal functional mechanism of the base 1; specifically, the bottom plate of the mounting plate 31 base 1 can be fixed to the adapter 21, and the four connecting members 32 are connected to the top side of the mounting plate 31 and extend toward the inner top of the base 1. In this embodiment, the fixing member 2 is independently fixed to the inner top wall of the base 1 by fasteners. The power mechanism 6 may include: a control circuit board 61, a power storage component 62 and a booster pump; the control circuit board 61 is supported and fixed at the end away from the mounting plate 31 by four connecting members 32, and a clearance hole 610 is provided on the control circuit board 61, and the storage mechanism 4 is connected to the adapter 21 and the mounting plate 31 through the clearance hole 610; the power storage component 62 and the booster pump are integrated on the control circuit board 61; the cable of the first coil 22 is electrically connected to the power storage component 62 through the control circuit board 61, so that the power storage component 62 supplies power to the light source component 53 on the output mechanism 5, and the booster pump is electrically connected to the power storage component 62 through the control circuit board 61, and the output end 631 of the booster pump is connected to the storage mechanism 4, and when the power storage component 62 supplies power to the booster pump, the booster pump 63 can output positive pressure gas to the storage mechanism 4.
[0090] Further, see Figure 15 and Figure 18 As shown, in some embodiments, the storage mechanism 4 includes: a container mounting seat 41, connected to the mounting plate 31 and the adapter seat 21 through the clearance hole 610, and the container mounting seat 41 has a built-in receiving groove; a medium container 42, arranged in the receiving groove of the container mounting seat 41, for storing the fragrance medium;
[0091] The notch of the receiving groove facing away from the adapter seat 21 forms an assembly opening 410 on the mounting plate 31 , and the assembly opening 410 is used for loading and unloading the medium container 42 in the receiving groove.
[0092] Specifically, in the technical solution adopted in the present application, one end of the container mounting seat 41 is connected to the mounting plate 31, and the other end is connected to the adapter seat 21; the container mounting seat 41 can be connected to the mounting seat by bonding, welding, etc., and in order to improve the stability of the container mounting seat 41, in the present embodiment, it is preferred that the container mounting seat 41 is integrally formed on the mounting plate 31; and the container mounting seat 41 is connected to the adapter seat 21 by a snap-fitting manner after passing through the clearance hole 610. Since the container mounting seat 41 is connected to the mounting plate 31, the mounting plate 31 is fixed to the adapter seat 21 through the container mounting seat 41. Specifically, a snap-fitting groove 215 is provided on the inner wall of the adapter seat 21, and a snap-fitting hook 411 is provided on the outer wall of the container mounting seat 41. When the current container mounting seat 41 is inserted into the adapter seat 21, the snap-fitting hook 411 is embedded in the corresponding snap-fitting groove 215 to achieve snap-fitting fixation. An assembly opening 410 is provided on the bottom side of the mounting plate 31 away from the connecting members 32. The assembly opening 410 is communicated with the notch of the container mounting seat 41. The medium container 42 can enter the receiving groove of the container mounting seat 41 through the assembly opening 410, and the medium container 42 can be detachably mounted on the adapter seat 21, and a threaded fitting method can be adopted; the receiving groove in the container mounting seat 41 is configured to be a closing structure that gradually narrows from the mounting plate 31 toward the adapter seat 21. On the one hand, it is convenient to manually install the medium container 42 in the container mounting seat 41 through the assembly opening 410, and on the other hand, it can also guide the medium container 42 to dock with the adapter seat 21.
[0093] Further, see Figure 13 and Figure 18 As shown, in some embodiments, the storage mechanism 4 further includes: a container top cover 43, which is mounted on the end of the medium container 42 away from the mounting plate 31, and a plurality of fragrance outlets 431 are opened on the container top cover 43, and the medium container 42 is connected to the adapter 21 through the fragrance outlets 431;
[0094] A first magnetic member 432 is installed on the container top cover 43, and a second magnetic member 217 is installed on the side of the adapter 21 away from the output mechanism 5; the second magnetic member 217 is connected to the first magnetic member 432 in an adsorption manner.
[0095] Specifically, in a variation of the second embodiment of the technical solution adopted in the present application, the medium container 42 can be installed on the adapter 21 by magnetic attraction. Specifically, a container top cover 43 is added to the medium container 42, and a plurality of fragrance outlets 431 are opened on the container top cover 43, so that the medium container 42 is connected to the adapter 21 through the fragrance outlets 431; the technical key points of this variation are that a first magnetic attraction component 432 is sleeved on the container top cover 43, and the first magnetic attraction component 432 can be an annular magnet, or made of other metal materials that can be adsorbed on a magnet. The first magnetic attraction component 432 made of metal can avoid the situation where magnets of the same charge repel each other due to installation errors, such as iron or stainless steel, and a second magnetic attraction component 217 is installed on the side of the adapter 21 away from the output mechanism 5, and the second magnetic attraction component 217 is an annular magnet compatible with the first magnetic attraction component 432.
[0096] Further, see Figures 12 to 14 As shown, in some embodiments, a transfer tube 214 and a second connector 213 are also provided on the adapter seat 21, the transfer tube 214 is located in the make way channel 212 of the adapter seat 21, and the second connector 213 is located on the outer surface of the adapter seat 21; the transfer tube 214 extends into the storage mechanism 4, and the transfer tube 214 is connected to the output end 631 of the boost pump through the second connector 213.
[0097] Specifically, in the technical solution adopted in the present application, since the medium container 42 can be replaced through the assembly port 410 after the fragrance medium in the second embodiment is used up, the output end 631 of the booster pump is directly connected to the medium container 42, which will cause inconvenience during the replacement process; therefore, in the present embodiment, a transfer tube 214 located in the make way channel 212 is provided on the inner wall of the adapter seat 21, and the transfer tube 214 extends into the container mounting seat 41. When the medium container 42 is arranged on the container mounting seat 41 through the assembly port 410, the transfer tube 214 extends into the medium container 42 through the opening on the container top cover 43; a second connector 213 connected to the transfer tube 214 is provided on the outer wall of the adapter seat 21, and the output end 631 of the booster pump is connected to the second connector 213, so that the booster pump outputs positive pressure gas to the inside of the medium container 42 through the second connector 213 and the transfer tube 214 in sequence.
[0098] Reference Figure 1 , Figure 9 and Figure 17As described above, the power mechanism 6 in the first embodiment and the second embodiment may further include: a knob switch 64 and a charging female head 65 integrated on the control circuit board 61. The knob switch 64 on the control circuit board 61 is used to control the opening and closing of the circuit between the electricity storage component 62 and the first coil 22, and the opening and closing of the circuit between the electricity storage component 62 and the booster pump. The charging female head 65 is electrically connected to the electricity storage component 62 through the control circuit board 61, and the charging female head 65 is used to externally connect a power source to supplement electric energy to the electricity storage component 62. In this application, the base 1 is provided with assembly holes for exposing the knob switch 64 and the charging female head 65, and the rotary switch and the charging female head 65 can be arranged relatively on the control circuit board 61 so as not to affect the manual rotation of the knob switch 64 to open and close the aroma diffuser during the charging process of the aroma diffuser.
[0099] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0100] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of the features. In the description of this application, "a plurality" means two or more unless otherwise specifically defined.
[0101] Any process or method description in the flowchart or described in other ways herein can be understood as representing a module, segment, or part of code including one or more executable instructions for implementing a specific logical function or process. And the scope of the preferred embodiments of this application includes additional implementations, where the functions can be executed in a substantially simultaneous manner or in a reverse order according to the functions involved, rather than in the order shown or discussed.
[0102] The logic and / or steps represented in the flowchart or otherwise described herein, for example, can be considered as a definite sequence list of executable instructions for implementing logical functions, and can be specifically implemented in any computer-readable medium for use by an instruction execution system, apparatus, or device (such as a computer-based system, a system including a processor, or other systems that can fetch and execute instructions from the instruction execution system, apparatus, or device), or used in conjunction with these instruction execution systems, apparatus, or devices.
[0103] It should be understood that each part of the present application can be implemented by hardware, software, firmware, or a combination thereof. In the above embodiments, multiple steps or methods can be implemented by software or firmware stored in a memory and executed by a suitable instruction execution system. All or part of the steps of the method in the above embodiments can be completed by instructing relevant hardware through a program, and this program can be stored in a computer-readable storage medium. When this program is executed, it includes one or a combination of the steps of the method embodiment.
[0104] In addition, each functional unit in various embodiments of the present application can be integrated into one processing module, or each unit can exist physically alone, or two or more units can be integrated into one module. The above integrated module can be implemented in the form of hardware or in the form of a software functional module. When the above integrated module is implemented in the form of a software functional module and sold or used as an independent product, it can also be stored in a computer-readable storage medium. This storage medium can be a read-only memory, a disk, an optical disc, etc.
[0105] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of various changes or substitutions within the technical scope disclosed in the present application, and these should all be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A cold fragrance instrument that is easy to switch the atmosphere, characterized in that: include: A base having a built-in accommodating space, wherein the base is provided with a mounting hole connected to the accommodating space; A fixing member, mounted on the inner wall of the base, wherein the fixing member is provided with an adapter seat corresponding to the mounting hole; A storage mechanism, arranged in the receiving space of the base, for loading the fragrance medium, the storage mechanism being connected to the adapter; as well as, An output mechanism, comprising a light source component and a fragrance outlet hole, wherein the output mechanism is placed on the adapter through the mounting hole, and the fragrance outlet hole is connected to the storage mechanism through the adapter; Wherein, a first coil is arranged on the adapter, a second coil electrically connected to the light source component is arranged in the output mechanism, and the first coil and the second coil transmit electric energy in a wireless transmission manner.
2. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 1, characterized in that: Also includes: A mounting bracket, mounted in the receiving space of the base, and the storage mechanism is mounted on the mounting bracket; A power mechanism is mounted on the mounting bracket, the power mechanism is electrically connected to the first coil so as to supply electric energy to the light source component through the power mechanism, and the power mechanism is connected to the storage mechanism so as to output a positive pressure force to the storage mechanism through the power mechanism.
3. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 1 or 2, characterized in that: The output mechanism comprises: A first incense outlet mounting seat, used for docking with the adapter seat; The first incense outlet mounting seat has a second mounting portion and an incense outlet end connected to the second mounting portion, a receiving hole is provided on a side of the second mounting portion away from the incense outlet end, the receiving hole is connected to the storage mechanism through the adapter, a guide hole connected to the receiving hole is circumferentially arranged on the incense outlet end, and the second coil is mounted on the second mounting portion; A second incense outlet mounting seat, sleeved on the first incense outlet mounting seat; The second incense outlet mounting seat has a third mounting portion, the light source component is mounted on the third mounting portion, and the second incense outlet mounting seat has the incense outlet holes circumferentially arranged thereon, and the incense outlet holes are connected to the guide holes.
4. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 3 is characterized in that: A wiring channel is provided between the first incense outlet mounting seat and the second incense outlet mounting seat, and the cable on the second coil passes through the wiring channel and is electrically connected to the light source component.
5. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 1, characterized in that: The adapter is provided with a first mounting portion and a clearance channel, the first coil is mounted on the first mounting portion, the clearance channel is located in the middle of the first mounting portion, and the storage mechanism is connected with the output mechanism through the clearance channel.
6. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 2, characterized in that: The mounting bracket comprises: The mounting plate has a power supply mounting seat and a pump mounting seat on the bottom side; A connecting member connected to the top side of the mounting plate, wherein the fixing member is fixed to the inner wall of the base having the mounting hole through the connecting member; The power mechanism comprises: A control circuit board is fixed on the top side of the mounting plate, and a clearance hole is provided on the control circuit board; An electric storage component is fixed in the power supply mounting seat, and the electric storage component is electrically connected to the first coil through the control circuit board; A booster pump is fixed in the pump mounting seat, the booster pump is electrically connected to the power storage component through the control circuit board, and the storage mechanism is connected to the output end of the booster pump; Wherein, the storage mechanism connects the mounting plate and the adapter in the clearance hole.
7. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 6, characterized in that: The storage mechanism comprises: A container mounting seat, connected with the mounting plate and the adapter seat through the clearance hole, the container mounting seat has a built-in receiving groove, and a connecting hole penetrating the mounting plate is provided at the bottom of the receiving groove; The medium container is arranged in the receiving groove of the container mounting seat and is used to store the fragrance medium. The medium container is connected with the adapter seat. A connector is provided at the bottom of the medium container. The output end of the booster pump is connected with the medium container through the connector.
8. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 2, characterized in that: The mounting bracket comprises: A mounting plate fixed to one side of the base; A connecting member connected to the top side of the mounting plate; The power mechanism comprises: A control circuit board is mounted on the end of the connecting member away from the mounting plate, and a clearance hole is provided on the control circuit board; An electric storage component is integrated on the control circuit board, and the electric storage component is electrically connected to the first coil through the control circuit board; A booster pump is integrated on the control circuit board, the booster pump is electrically connected to the power storage component through the control circuit board, and the storage mechanism is connected to the output end of the booster pump; Wherein, the storage mechanism connects the mounting plate and the adapter in the clearance hole.
9. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 8, characterized in that: The storage mechanism comprises: A container mounting seat, passing through the clearance hole to connect the mounting plate and the adapter seat, the container mounting seat having a built-in accommodating groove; A medium container, arranged in the receiving groove of the container mounting seat, for storing the fragrance medium; Wherein, a notch of the accommodating groove facing away from the adapter seat forms an assembly opening on the mounting plate, and the assembly opening is used for loading and unloading the medium container in the accommodating groove.
10. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 9, characterized in that: The storage mechanism also includes: A container top cover is installed at the end of the medium container away from the mounting plate, and a plurality of fragrance outlets are provided on the container top cover, and the medium container is connected to the adapter through the fragrance outlets; Wherein, a first magnetic attraction component is installed on the top cover of the container, and a second magnetic attraction component is installed on the side of the adapter away from the output mechanism; the second magnetic attraction component is connected to the first magnetic attraction component in an adsorption manner.
11. The cold fragrance instrument for conveniently switching atmosphere forms according to claim 8, 9 or 10, characterized in that: The adapter seat is also provided with an adapter tube and a connector, wherein the adapter tube is located in the yield channel of the adapter seat, and the connector is located on the outer surface of the adapter seat; The transfer tube extends into the storage mechanism, and the transfer tube is communicated with the output end of the booster pump through the connector.