Electronic atomization system

By introducing wireless charging technology into the electronic atomization system, the problems of limited lifespan of conductive components and charging directionality are solved, enabling multi-directional charging and structural simplification, thus improving the user experience.

CN223583817UActive Publication Date: 2025-11-21SHENZHEN MERIT TECH CO LTD
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Patent Information

Application Number
CN202422795911.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-11-21
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

In existing electronic atomization systems, the conductive components have a limited lifespan and require a specific orientation for charging, resulting in inconvenient charging and complex structures.

Method used

By employing wireless charging technology, wireless charging receivers and transmitters are set up in the electronic atomizing device and the charging device respectively, enabling a charging method that does not require direct contact with conductive parts, and allowing the electronic atomizing device to be charged when placed in multiple directions.

Benefits of technology

It simplifies the structure of the electronic atomization system, extends its service life, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an electronic atomization system which comprises an electronic atomization device and a charging device. The electronic atomization device comprises a first shell, a first battery and a wireless charging receiving unit, wherein the first battery and the wireless charging receiving unit are arranged in the first shell. The wireless charging receiving unit is connected with the first battery; the charging device comprises a second shell, a second battery arranged in the second shell and a wireless charging transmitting unit connected with the second battery; a placing area for placing the electronic atomization device is arranged on the second shell; the wireless charging transmitting unit is arranged corresponding to the placement area; when the electronic atomization device is placed in the placing area in the first direction and the second direction, the wireless charging transmitting unit and the wireless charging receiving unit are matched. The electronic atomization system can be charged when the electronic atomization device is placed in the placing area of the charging device in the first direction or the second direction, the overall structure of the electronic atomization system is simplified, and the user experience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to atomization field especially electronic atomization system. BACKGROUND

[0002] In the related art, the electronic atomization system, the electronic atomization device and the charging device are usually connected by a conductive part, which can be a needle or a sheet. Since the conductive part has a service life, if the conductive part is damaged, the electronic atomization device and the charging device cannot be charged. In addition, the electronic atomization device usually needs to be placed in a fixed direction to connect the charging device, which causes inconvenience to the user. SUMMARY

[0003] The utility model provides an improved electronic atomization system to solve the technical problems.

[0004] The utility model adopts the technical scheme to solve the technical problems: an electronic atomization system is constructed, which includes an electronic atomization device and a charging device.

[0005] The electronic atomization device includes a first shell, a first battery and a wireless charging receiving unit arranged in the first shell. The wireless charging receiving unit is connected to the first battery.

[0006] The charging device includes a second shell, a second battery arranged in the second shell and a wireless charging transmitting unit connected to the second battery. The second shell is provided with a placement area for placing the electronic atomization device. The wireless charging transmitting unit is arranged correspondingly to the placement area.

[0007] When the electronic atomization device is placed in the placement area along the first direction and the second direction, the wireless charging transmitting unit and the wireless charging receiving unit of the electronic atomization device are matched.

[0008] In some embodiments, the electronic atomization device includes a distal end. The wireless charging receiving unit is located at or near the distal end.

[0009] The placement area includes a first end and a second end arranged opposite to the first end. When the electronic atomization device is placed in the placement area, the distal end is arranged towards the first end or the second end.

[0010] The wireless charging transmitting unit is at least two. At least one wireless charging transmitting unit is arranged at the first end. At least one wireless charging transmitting unit is arranged at the second end.

[0011] In some embodiments, the electronic atomization device comprises a suction end and a distal end opposite to the suction end; the wireless charging receiving unit is arranged between the suction end and the distal end.

[0012] The placement area comprises a first end and a second end opposite to the first end.

[0013] The wireless charging transmitting unit is arranged between the first end and the second end.

[0014] When the electronic atomization device is placed in the placement area, the distal end is arranged towards the first end or the second end; the projection of the charging receiving unit along the direction perpendicular to the placement area is at least partially located on the wireless charging transmitting unit.

[0015] In some embodiments, the wireless charging receiving unit comprises a wireless charging receiving coil; a first magnetic shielding sheet is arranged in the first shell, the first magnetic shielding sheet is arranged on one side of the first battery, and the wireless charging receiving coil is arranged on the side of the first magnetic shielding sheet opposite to the first battery.

[0016] And / or, the wireless charging transmitting unit comprises a wireless charging transmitting coil, a second magnetic shielding sheet is arranged in the second shell, the second magnetic shielding sheet is arranged on the side of the second battery facing the placement area, and the wireless charging transmitting coil is arranged on the side of the second magnetic shielding sheet opposite to the second battery.

[0017] In some embodiments, the second shell comprises a shell and a cover; an accommodation cavity is formed on the inner side of the shell for accommodating the second battery, an opening is formed on one side of the shell; the cover covers the opening; the placement area is formed on the cover; the wireless charging transmitting unit is arranged in the shell and located on the side of the cover opposite to the placement area.

[0018] In some embodiments, the electronic atomization device further comprises a first master control module; the first master control module is arranged in the first shell and electrically connected with the wireless charging receiving unit.

[0019] In some embodiments, the electronic atomization device further comprises a first wireless transmission module for transmitting data signals with an external device, the first wireless transmission module is arranged in the first shell and electrically connected with the first master control module.

[0020] In some embodiments, the charging device further comprises a second master control module, the second master control module is arranged in the second shell and electrically connected with the wireless charging transmitting unit.

[0021] In some embodiments, the charging device further comprises a second wireless transmission module for data signal transmission with external devices, the second wireless transmission module is arranged in the second shell and electrically connected with the second master control module.

[0022] In some embodiments, the charging device further comprises a display unit arranged on the second shell.

[0023] And / or, the electronic atomization device further comprises a first wireless transmission module for data signal transmission with external devices, the first wireless transmission module is arranged in the first shell and connected with the wireless charging receiving unit.

[0024] And / or, the charging device further comprises a second wireless transmission module for data signal transmission with external devices, the second wireless transmission module is arranged in the second shell and connected with the wireless charging transmitting unit.

[0025] And / or, the charging device further comprises an infrared transmitting module arranged in the second shell; the electronic atomization device further comprises an infrared receiving module arranged in the first shell and matched with the infrared transmitting module.

[0026] And / or, the charging device further comprises a distance detection module for detecting the electronic atomization device and an alarm module, the distance detection module is arranged in the second shell; the alarm module is arranged on the second shell and electrically connected with the distance detection module, and an alarm signal is sent when the distance between the electronic atomization device and the charging device detected by the distance detection module exceeds a set distance.

[0027] The electronic atomization system has the following beneficial effects: the electronic atomization system is arranged with the wireless charging receiving unit connected with the first battery in the first shell of the electronic atomization device, and the wireless charging transmitting unit in the second shell of the charging device, the wireless charging transmitting unit is connected with the second battery and arranged corresponding to the placement area, when the electronic atomization device is placed in the placement area of the charging device in the first direction or the second direction, the wireless charging transmitting unit and the wireless charging receiving unit are matched, that is, both can realize charging, and do not need direct contact connection between the conductive parts, meet the charging, simplify the overall structure of the electronic atomization system, increase the service life of the electronic atomization system, and improve the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0028] The utility model will be further described below in combination with the drawings and examples, and the drawings are as follows:

[0029] Figure 1is the structural schematic diagram of the electronic atomization system in the first embodiment of the utility model;

[0030] Figure 2 is Figure 1 the sectional view of the electronic atomization system shown in the figure;

[0031] Figure 3 is Figure 2 the structural exploded schematic diagram of the electronic atomization device of the electronic atomization system shown in the figure;

[0032] Figure 4 is Figure 3 the atomizer sectional view of the electronic atomization device shown in the figure;

[0033] Figure 5 is Figure 3 the power supply structure sectional view of the electronic atomization device shown in the figure;

[0034] Figure 6 is Figure 5 the first magnetic separation sheet and wireless charging receiving module assembly structure schematic diagram in the power supply structure shown in the figure;

[0035] Figure 7 is Figure 2 the charging device structure schematic diagram of the electronic atomization system shown in the figure;

[0036] Figure 8 is Figure 7 the sectional view of the charging device shown in the figure;

[0037] Figure 9 is Figure 8 the second magnetic separation sheet and wireless charging transmitting module assembly structure schematic diagram in the charging device shown in the figure;

[0038] Figure 10 is Figure 1 the state schematic diagram of the electronic atomization device along the first direction in the electronic atomization system shown in the figure;

[0039] Figure 11 is Figure 1 the state schematic diagram of the electronic atomization device along the second direction in the electronic atomization system shown in the figure;

[0040] Figure 12 is Figure 1 the circuit principle diagram of the electronic atomization system shown in the figure;

[0041] Figure 13 is the state schematic diagram of the electronic atomization device along the first direction in the electronic atomization system in the second embodiment of the utility model;

[0042] Figure 14 is the state schematic diagram of the electronic atomization device along the second direction in the electronic atomization system shown in the figure in the second embodiment of the utility model;

[0043] Figure 15 is a state schematic view of the electronic atomization device in the electronic atomization system in the third embodiment of the utility model along the first direction;

[0044] Figure 16 is a state schematic view of the electronic atomization device in the electronic atomization system in the third embodiment of the utility model along the second direction;

[0045] Figure 17 is a circuit principle view of the electronic atomization system in the fourth embodiment of the utility model;

[0046] Figure 18 is a circuit principle view of the electronic atomization system in the fifth embodiment of the utility model;

[0047] Figure 19 is a circuit principle view of the electronic atomization system in the sixth embodiment of the utility model. DETAILED DESCRIPTION

[0048] In order to have a more clear understanding of the technical features, purposes and effects of the utility model, the specific embodiments of the utility model will be described in detail with reference to the drawings. In the following description, it should be understood that the positions or relationships indicated by "upper", "lower", "inner", "outer", etc. are based on the positions or relationships shown in the drawings, and are constructed and operated in a particular position, and are only for the convenience of describing the technical scheme, and do not indicate that the indicated device or element must have a particular position, so it cannot be understood as a limitation of the utility model.

[0049] It should also be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "fixing", "setting", etc. should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. When an element is referred to as "on" or "under" another element, the element can be "directly" or "indirectly" located on the other element, or there can be one or more intermediate elements. The terms "first", "second", etc. are only for the convenience of describing the technical scheme, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features, therefore, the features with "first", "second", etc. can explicitly or implicitly include one or more of the features. For ordinary skilled persons in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0050] In the following description, for the purposes of explanation and not limitation, specific details are set forth, such as particular sequences of acts, in order to thoroughly describe the embodiments of the present application. However, it will be apparent to those skilled in the art that the present application can be practiced in other embodiments that depart from these specific details. In other instances, detailed descriptions of well-known methods, devices, and apparatuses are omitted so as not to obscure the description of the present application with unnecessary detail.

[0051] Figures 1 to 2 The first embodiment of the electronic atomization system of the present application is shown, which has the advantages of simple operation and long service life.

[0052] As shown in Figure 1 and Figure 2 In this embodiment, the electronic atomization system can include an electronic atomization device 10 and a charging device 20. The electronic atomization device 10 can generate aerosol by heating the atomization substrate for the user to inhale. The charging device 20 can be used for charging the electronic atomization device 10. In this embodiment, the charging device 20 and the electronic atomization device 10 can use wireless charging method for charging, thereby eliminating the direct contact connection between the conductive parts, satisfying the charging while simplifying the overall structure of the electronic atomization system, increasing the service life of the electronic atomization system, and improving the user experience.

[0053] In this embodiment, the electronic atomization device 10 can be in a columnar shape, which can include an axial suction end 10a and a distal end 10b. The suction end 10a can be used for the user to inhale aerosol. The closed end 10b can be arranged opposite to the suction end 10a. It can include an atomizer 11 and a power supply structure 12, the atomizer 11 can generate aerosol by heating the atomization substrate in the energized state. The power supply structure 12 can be sleeved on the outer periphery of part of the atomizer 11, which is used to supply power to the atomizer 11.

[0054] As shown in Figure 3 and Figure 4As shown, in the present embodiment, the atomizer 11 can include an atomizer shell 111, an atomizer base 112, a heating assembly 113, and a magnetic attraction member 114. The atomizer shell 111 is sleeved on the outer periphery of the atomizer base 112, and an inner side of the atomizer shell 111 is formed with a liquid storage cavity 1111, which can be used to store liquid atomization substrate. The suction end 10a can be formed at one end of the atomizer shell 111. The atomizer base 112 is used for mounting the heating assembly 113, and can include a first base body 1121 and a second base body 1122 sleeved on the first base body 1121. The first base body 1121 and the second base body 1122 are detachably assembled, wherein the first base body 1121 can be located on a side of the second base body 1122 away from the suction end 10a, and is mounted at an end of the atomizer shell 111 away from the suction end 10a. The second base body 1122 can be used for mounting the heating assembly 113. In the present embodiment, the heating assembly 113 is arranged at a central axis of the atomizer shell 111, which can be in a columnar shape and has a through structure at both ends, and an inner side of the heating assembly 113 can be formed with an airflow passage. The heating assembly 113 can include a columnar porous body and a heating body arranged on the porous body. The heating assembly 113 can be in liquid communication with the liquid storage cavity 1111, and can be used to heat the atomization substrate delivered from the liquid storage cavity 1111. The magnetic attraction member 114 is arranged on the first base body 1121, and is used to be attracted to the power supply structure 12.

[0055] In some embodiments, the power supply structure 12 can include a first housing 121. That is, the electronic atomization device 10 can include the first housing 121. In some embodiments, the first housing 121 can be in an integrated structure with the atomizer shell 111. In some embodiments, the first housing 121 can be in a columnar shape, and one end of the first housing 121 is provided with a mounting opening 1211, which can be used to mount the atomizer 11. In some embodiments, an end of the first housing 121 away from the mounting opening 1211 is the distal end 10b.

[0056] As Figures 3 to 6As shown, in some embodiments, the power supply structure 12 further includes a bracket 122, a wireless charging receiver 124 for the first battery 123, a first magnetic shielding sheet 125, and a first circuit board 126. The bracket 122 is disposed within the first housing 121 and is used to support and fix the first battery 123. The first battery 123 can be connected to the heating assembly 113 of the atomizer 11 to supply power to the heating assembly 113 of the atomizer 11. The wireless charging receiver 124 is disposed within the first housing 121 and connected to the first battery 123. The first magnetic shielding sheet 125 is disposed on one side of the first battery 123, specifically on the side of the bracket 122 opposite to the first battery 123, to prevent magnetic interference with the first battery 123. The first magnetic shielding sheet 125 may be generally arc-shaped. In some embodiments, the first circuit board 126 is disposed in the first housing 121 and mounted on the end of the first battery 123 facing the mounting port 1211, and is connected to the first battery 123. The first circuit board 126 is provided with a wireless charging receiving circuit connected to the wireless charging receiving unit 124, and the wireless charging receiving circuit is a conventional circuit.

[0057] In some embodiments, the wireless charging receiver unit 124 is disposed near the distal end 10b and located on one side of the first battery 123, for receiving wireless charging electromagnetic signals. In some embodiments, the wireless charging receiver unit 124 may include a wireless charging receiver coil; the wireless charging receiver coil is electrically connected to the wireless charging receiver circuit, and the wireless charging receiver coil is disposed on the side of the first magnetic shielding sheet 125 opposite to the first battery 123.

[0058] like Figure 12 As shown, in this embodiment, the electronic atomizing device 10 further includes a first main control module 127 disposed in the first housing 121. The first main control module 127 is disposed on the first circuit board 126 and can be connected to the wireless charging receiver unit 124. Specifically, it can be connected to the wireless charging receiver circuit, and then electrically connected to the wireless charging receiver unit 124, thereby enabling signal transmission with the wireless charging receiver unit 124 to achieve charging. In some embodiments, the first main control module 127 can be a conventional MCU. In other embodiments, the first main control module 127 can be omitted.

[0059] In the present embodiment, the electronic atomization device 10 further comprises a first wireless transmission module, which is arranged in the first housing 121, and specifically, at least partially arranged on the first circuit board 126. In the present embodiment, the first wireless transmission module can be connected with the first main control module 127. The first wireless transmission module can be used for data signal transmission with an external device. The external device can be an external mobile device, such as a mobile phone or a tablet computer. The first wireless transmission module can be a conventional Bluetooth module, a WIFI module, etc. In the present embodiment, the first wireless transmission module is further selected as a first Bluetooth module 128, which can include a first Bluetooth chip 1281 and a first Bluetooth antenna 1282, both of which are of a conventional structure.

[0060] As shown in Figures 7 to 9 In the present embodiment, the charging device 20 can include a second housing 21, a second battery 22, a wireless charging transmission unit 23, a second circuit board 24, and a second magnetic isolation sheet 25. The second housing 21 can be used to accommodate the second battery 22, the wireless charging transmission unit 23, the second circuit board 24, and the second magnetic isolation sheet 25, etc. The second battery 22 can be used to power the electronic atomization device 10. The wireless charging transmission unit 23 can be connected with the second battery 22, and can be paired with the wireless charging receiving unit 124 in the electronic atomization device 10, both of which form wireless charging through electromagnetic induction, and then the electric energy of the second battery 22 can be output to the first battery 123 to charge the first battery 123. The second circuit board 24 is arranged in the second housing 21 and located at one side of the second battery 22, and can be connected with the second battery 22. The second circuit board 24 can be provided with a wireless charging transmission circuit, which can be selected as an existing conventional wireless charging transmission circuit. The wireless charging transmission unit 23 can be electrically connected with the wireless charging transmission circuit. The second magnetic isolation sheet 25 is arranged at one side of the second battery 22, and specifically, it can be arranged at the side of the second circuit board 24 opposite to the second battery 22, for preventing the wireless charging transmission unit 23 from heating the second battery 22.

[0061] In the present embodiment, the second housing 21 can include a shell 211 and a cover 212. The shell 211 can be internally formed with a receiving cavity 2111, which can be used to accommodate components such as the second battery 22, the wireless charging transmitting unit 23, and the like. The shell 211 can be provided with an opening 2112 on one side, which can be in communication with the receiving cavity 2111, and used to mount components such as the second battery 22, the wireless charging transmitting unit 23, and the like into the receiving cavity 2111. The cover 212 can be provided to cover the opening 2112, and can be partially embedded into the receiving cavity 2111 from the opening 2112. The cover 212 can be fixed to the shell 211 by interference fit. In some embodiments, the second housing 21 can be provided with a placement area 2121 for placing the electronic atomization device 10. Specifically, the placement area 2121 can be formed on the cover 212, and can be provided on the side of the cover 212 opposite to the shell 211. Specifically, the placement area 2121 can be formed by providing a placement groove or a placement flat surface on the cover 212. In the present embodiment, the placement area 2121 can include a first end 212a and a second end 212b, which are oppositely arranged. When the electronic atomization device 10 is placed in the placement area 2121, the first end 212a and the second end 212b can be arranged along the axial direction of the electronic atomization device 10, and the distal end 10b of the electronic atomization device 10 can be arranged towards the first end 212a or the second end 212b. When the distal end 10b of the electronic atomization device 10 is placed towards the second end 212b, the electronic atomization device 10 is placed in the placement area 2121 in a first direction. When the distal end of the electronic atomization device 10 is placed towards the first end 212a, the electronic atomization device is placed in the placement area 2121 in a second direction.

[0062] As Figure 2 , Figure 10 and Figure 11As shown, in the embodiment, the wireless charging transmitting unit 23 can be arranged corresponding to the placement area 2121, specifically, it can be installed in the shell 211 and located on the side of the cover 212 opposite to the placement area 2121, thereby facilitating the induction with the wireless charging receiving unit 124 of the electronic atomization device 10 placed in the placement area 2121. In the embodiment, when the electronic atomization device 10 is placed in the placement area 2121 along the first direction and the second direction, the wireless charging transmitting unit 23 and the wireless charging receiving unit 124 are paired to form electromagnetic induction. That is, whether the electronic atomization device is placed in the placement area 2121 along the first direction or placed in the placement area 2121 along the second direction, the wireless charging receiving unit 124 in the electronic atomization device 10 can induce the wireless charging transmitting unit 23 in the charging device 20 to achieve wireless charging, that is, the user does not need to distinguish the first direction and the second direction when placing, thereby making the charging operation more convenient and improving the user experience. In addition, by adopting the wireless charging mode, the direct connection between the conductive parts is not required, which satisfies the charging while simplifying the overall structure of the electronic atomization system and increasing the service life of the electronic atomization system.

[0063] Specifically, in the embodiment, the wireless charging transmitting unit 23 can be at least two, specifically, the wireless charging transmitting unit 23 can be two, one of which can be arranged at the first end 212a and the other at the second end 212b. It can be understood that in some other embodiments, when the wireless charging transmitting unit 23 is more than two, the first end 212a and / or the second end 212b can be arranged with multiple wireless charging transmitting units 23. By arranging the wireless charging transmitting unit 23 at the first end 212a and the second end 212b, the wireless charging receiving unit 124 in the electronic atomization device 10 can induce the wireless charging transmitting unit 23 in the charging device 20 to form electromagnetic induction, regardless of whether the electronic atomization device 10 is placed in the placement area 2121 along the first direction or along the second direction. In some other embodiments, the wireless charging transmitting unit 23 is not limited to two, but can also be one, and the wireless charging transmitting unit 23 is not limited to being installed at the first end 212a and the second end 212b.

[0064] In this embodiment, the wireless charging transmitting unit 23 may include a wireless charging transmitting coil, which can be installed on the side of the second magnetic shielding sheet 25 opposite to the second battery 22. The wireless charging transmitting coil can be electrically connected to the wireless charging transmitting circuit on the second circuit board 24. When the electronic atomizing device 10 is placed in the placement area 2121, the wireless charging transmitting coil and the wireless charging receiving coil in the electronic atomizing device 10 generate electromagnetic induction. The wireless charging transmitting coil emits an electromagnetic signal, which is then received by the wireless charging receiving coil and transmitted to the wireless charging receiving circuit, where it is converted into a circuit to charge the first battery 123, thus achieving wireless charging. It should be noted that the technology of wireless charging achieved through induction between the wireless charging transmitting unit 23 and the wireless charging receiving unit 124 is a conventional wireless charging technology.

[0065] For example Figure 12 As shown, in this embodiment, the charging device further includes a second main control module 26, which is disposed in the second housing 21 and electrically connected to the wireless charging transmitter unit 23. Specifically, in this embodiment, the second main control module 26 can be disposed on the second circuit board 24 and is electrically connected to the wireless charging transmitter unit 23 through connection to the wireless charging transmitter circuit, thereby enabling signal transmission with the wireless charging transmitter unit 23 to achieve wireless charging. In some embodiments, the second main control module 26 can be a conventional MCU. In other embodiments, the second main control module 26 can be omitted.

[0066] In this embodiment, the charging device 20 may further include a second wireless transmission module, which is disposed in the second housing 21 and electrically connected to the second main control module 26. Specifically, the second wireless transmission module is at least partially disposed on the second circuit board 24. The second wireless transmission module can be used to transmit data signals with an external device. The external device can be an external mobile device, such as a mobile phone or a tablet computer. The second wireless transmission module can be a conventional Bluetooth module, WIFI module, etc. In this embodiment, the second wireless transmission module is further selected as a second Bluetooth module 27, which may include a second Bluetooth chip 271 and a second Bluetooth antenna 272; both the second Bluetooth chip 271 and the second Bluetooth antenna 272 are conventional structures.

[0067] Figure 13 and Figure 14 A second embodiment of the electronic atomization system of this utility model is shown, which differs from the first embodiment in that the placement area 2121 has a groove structure, with end walls at both the first end 212a and the second end 212b. The wireless charging transmitter unit 23 can be disposed inside the two end walls of the placement area 2121.

[0068] Figure 15 and Figure 16The third embodiment of the electronic atomization system is shown, which is different from the first embodiment in that the wireless charging receiving unit 124 is arranged between the suction end 10a and the distal end 10b. Specifically, the wireless charging receiving unit 124 can be arranged centrally between the suction end 10a and the distal end 10b. The wireless charging transmitting unit 23 is arranged between the first end 212a and the second end 212b, and specifically, the wireless charging transmitting unit 23 can be arranged centrally between the first end 212a and the second end 212b. When the electronic atomization device 10 is placed in the placement area 2121, the distal end 10b can be detachably arranged with the first end 212a or the second end 212b, and the projection of the wireless charging receiving unit 124 along the direction perpendicular to the placement area 2121 is at least partially located on the wireless charging transmitting unit 23, that is, whether the electronic atomization device 10 is placed in the first direction or placed in the second direction, wireless charging can be achieved. That is, the midpoint of the electronic atomization device 10 can be located on a straight line with the midpoint of the charging device 20, so that the centrally arranged wireless charging receiving unit 124 and the wireless charging transmitting unit 23 can generate electromagnetic induction.

[0069] Figure 17 The fourth embodiment of the electronic atomization system is shown, which is different from the first embodiment in that the first main control module 127 and the second main control module 26 can be omitted. The first wireless transmission module can be directly connected with the wireless charging receiving unit 124; the second wireless transmission module can be directly connected with the wireless charging transmitting unit 23. The first wireless transmission module can select a conventional first Bluetooth module 128, and the first Bluetooth chip 1281 of the first Bluetooth module 128 can be directly used as a main control chip and connected with the wireless charging receiving unit 124 for signal transmission to realize the wireless charging function, thereby simplifying components and saving space. The second wireless transmission module can select a conventional second Bluetooth module 27, and the second Bluetooth chip 271 of the second Bluetooth module 27 can be directly used as a main control chip and connected with the wireless charging transmitting unit 23 for signal transmission to realize the wireless charging function, thereby simplifying components and saving space.

[0070] Figure 18The fifth embodiment of the electronic atomization system is shown, which is different from the first embodiment in that the charging device 20 can remotely control the electronic atomization device 10, that is, the charging device 20 can act as a remote controller of the electronic atomization device 10, and the heating gear of the electronic atomization device 10 can be switched and the light color of the indicator light on the electronic atomization device 10 can be changed by operating the charging device. In the embodiment, the charging device 20 can include an infrared emission module 28, which can be arranged in the second shell 21 and specifically arranged on the second circuit board 24 and connected with the second main control module 26. The electronic atomization device further includes an infrared receiving module 129, which is arranged in the first shell 121 and specifically arranged on the first circuit board 126 and connected with the first main control module 127 and paired with the infrared emission module 28. The infrared emission module 28 and the infrared receiving module 129 are both of a conventional structure, and the communication mode between them both adopts the existing conventional technology. The infrared emission module 28 can include an infrared light-emitting diode; and the infrared receiving module 129 can include an infrared receiving diode or a photodiode.

[0071] In other embodiments, the infrared emission module 28 and the infrared receiving module 129 can be omitted. The electronic atomization device can be provided with a button; the button can include a switch button, a heating gear adjustment button, a child lock button, or an indicator light light adjustment button, etc. In other embodiments, the electronic atomization device can also be provided with a conventional gesture switch.

[0072] Figure 19The sixth embodiment of the electronic atomization system is shown, which is different from the first embodiment in that the charging device 20 further comprises a distance detection module and an alarm module 29; the distance detection module can be used to detect the distance between the electronic atomization device and the charging device 20, the distance detection module is arranged in the second shell 21, and is specifically arranged on the second circuit board 24 and connected with the second main control module 26. In some embodiments, the distance detection module can be a conventional Bluetooth module, which can be the same module as the second wireless transmission module. In other embodiments, the distance detection module is not limited to a Bluetooth module, which can be a conventional ranging sensor. In this embodiment, the alarm module 29 is arranged on the second shell 21 and connected with the distance detection module, and can send an alarm signal when the distance detection module detects that the distance between the electronic atomization device and the charging device exceeds the set distance. Specifically, it can be electrically connected with the distance detection module through the second main control module 26, and in other embodiments, it can also be directly connected with the distance detection module. The alarm module 29 can be a conventional alarm device, such as an alarm lamp or an alarm bell. The distance information detected by the distance detection module can be transmitted to the second main control module 26, and if the distance between the electronic atomization device and the charging device exceeds the set distance, the second main control module 26 can notify the alarm module 29 to send an alarm signal according to the distance information detected by the distance detection module. The connection of the distance detection module to the second main control module 26 and the connection of the second main control module 26 to the alarm module 29, as well as the principle of realizing the alarm, all adopt the existing conventional technology.

[0073] In other embodiments, the charging device can also include a display unit arranged on the second shell 21 and connected with the second main control module 26 for displaying the puffing data, power and the like of the electronic atomization device 10, and also can display the power of the second battery 22. In some embodiments, the display unit adopts a conventional display structure, such as a display screen, and the circuit connected with the second main control module 26 also adopts a conventional circuit.

[0074] In other embodiments, the electronic atomization system is also applicable to the field of heat-not-burn technology, that is, the electronic atomization device 10 can be used to produce aerosol for users to inhale by heating solid-state substrates without burning the solid-state substrates, and the electronic atomization device 10 usually comprises a receiving part for receiving solid-state substrates and a heating assembly for heating the solid-state substrates and connected to the first battery 123, and the charging device 20 can be completely the same as the charging device 20 cooperating with the above-mentioned electronic atomization device 10 for atomizing liquid substrates.

[0075] It can be understood that the above embodiment only expresses the preferred embodiment of the utility model, the description is more specific and detailed, but it can not be understood as the limitation of the utility model patent scope; it should be pointed out that for ordinary skilled person in the art, the above technical features can be freely combined without departing from the concept of the utility model, and a number of deformations and improvements can be made, which belong to the protection scope of the utility model; therefore, any equivalent transformation and modification within the scope of the utility model patent claim should belong to the scope of the utility model patent claim.

Claims

1. An electronic atomization system, characterized in that, Includes an electronic atomizing device (10) and a charging device (20); The electronic atomizing device (10) includes a first housing (121), a first battery (123) disposed in the first housing (121), and a wireless charging receiver unit (124); the wireless charging receiver unit (124) is connected to the first battery (123); The charging device (20) includes a second housing (21), a second battery (22) disposed in the second housing (21), and a wireless charging transmitter (23) connected to the second battery (22); the second housing (21) is provided with a placement area (2121) for the electronic atomizing device (10) to be placed; the wireless charging transmitter (23) is correspondingly disposed with respect to the placement area (2121); When the electronic atomizing device (10) is placed in the placement area (2121) along the first direction and the second direction, the wireless charging transmitting unit (23) and the wireless charging receiving unit (124) are both paired.

2. The electronic atomization system according to claim 1, characterized in that, The electronic atomizing device (10) includes a distal end (10b); the wireless charging receiver (124) is located at or near the distal end (10b); The placement area (2121) includes a first end (212a) and a second end (212b) disposed opposite to the first end (212a); when the electronic atomizing device (10) is placed in the placement area (2121), the distal end (10b) is disposed toward the first end (212a) or the second end (212b); The wireless charging transmitter (23) is at least two; at least one of the wireless charging transmitters (23) is disposed at the first end (212a); at least one of the wireless charging transmitters (23) is disposed at the second end (212b).

3. The electronic atomization system according to claim 1, characterized in that, The electronic atomizing device (10) includes a suction end (10a) and a distal mouthpiece (10b) disposed opposite to the suction end (10a); the wireless charging receiver (124) is disposed between the suction end (10a) and the distal mouthpiece (10b). The placement area (2121) includes a first end (212a) and a second end (212b) disposed opposite to the first end (212a); The wireless charging transmitter (23) is disposed between the first end (212a) and the second end (212b); When the electronic atomizing device (10) is placed in the placement area (2121), the distal end (10b) is positioned toward the first end (212a) or the second end (212b); the projection of the charging receiving unit along the direction perpendicular to the placement area (2121) is at least partially located on the wireless charging transmitting unit (23).

4. The electronic atomization system according to claim 1, characterized in that, The wireless charging receiving unit (124) includes a wireless charging receiving coil; a first magnetic shielding sheet (125) is provided in the first housing (121), the first magnetic shielding sheet (125) is provided on one side of the first battery (123), and the wireless charging receiving coil is provided on the side of the first magnetic shielding sheet (125) opposite to the first battery (123). And / or, the wireless charging transmitting unit (23) includes a wireless charging transmitting coil, a second magnetic shielding sheet (25) is provided in the second housing (21), the second magnetic shielding sheet (25) is provided on the side of the second battery (22) facing the placement area (2121), and the wireless charging transmitting coil is provided on the side of the second magnetic shielding sheet (25) opposite to the second battery (22).

5. The electronic atomization system according to claim 1, characterized in that, The second outer casing (21) includes a housing (211) and a cover (212); the inner side of the housing (211) forms an accommodating cavity (2111) for accommodating the second battery (22), and an opening (2112) is provided on one side of the housing (211); the cover (212) covers the opening (2112); the placement area (2121) is formed on the cover (212); the wireless charging transmitter (23) is disposed in the housing (211) and located on the side of the cover (212) opposite to the placement area (2121).

6. The electronic atomization system according to claim 1, characterized in that, The electronic atomizing device (10) further includes a first main control module (127); the first main control module (127) is disposed in the first housing (121) and is electrically connected to the wireless charging receiving unit (124).

7. The electronic atomization system according to claim 6, characterized in that, The electronic atomizing device (10) further includes a first wireless transmission module for transmitting data signals to an external device. The first wireless transmission module is disposed in the first housing (121) and electrically connected to the first main control module (127).

8. The electronic atomization system according to claim 1, characterized in that, The charging device (20) further includes a second main control module (26), which is disposed in the second housing (21) and electrically connected to the wireless charging transmitter unit (23).

9. The electronic atomization system according to claim 8, characterized in that, The charging device (20) further includes a second wireless transmission module for transmitting data signals to an external device. The second wireless transmission module is disposed in the second housing (21) and is electrically connected to the second main control module (26).

10. The electronic atomization system according to claim 1, characterized in that, The charging device (20) further includes a display unit disposed on the second housing (21); And / or, the electronic atomizing device (10) further includes a first wireless transmission module for transmitting data signals to an external device, the first wireless transmission module being disposed in the first housing (121) and connected to the wireless charging receiving unit (124); And / or, the charging device (20) further includes a second wireless transmission module for transmitting data signals to an external device. The second wireless transmission module is disposed in the second housing (21) and connected to the wireless charging transmitter (23). And / or, the charging device (20) further includes an infrared emitting module (28), which is disposed in the second housing (21); the electronic atomizing device (10) further includes an infrared receiving module (129), which is disposed in the first housing (121) and paired with the infrared emitting module (28); And / or, the charging device (20) further includes a distance detection module for detecting the electronic atomizing device (10) and an alarm module (29), wherein the distance detection module is disposed in the second housing (21); the alarm module (29) is disposed on the second housing (21) and electrically connected to the distance detection module, and issues an alarm signal when the distance detection module detects that the distance between the electronic atomizing device (10) and the charging device (20) exceeds a set distance.