External equipment, electronic atomization assembly and electronic atomization system

By providing an external device that includes reading, storage and control modules, the problem of cumbersome parameter adjustment when replacing the electronic atomizer is solved, and the user instructions are transferred between multiple atomization hosts are realized, ensuring that each atomization host works in the same state, improving the user experience.

CN120203306APending Publication Date: 2025-06-27QINGDAO MEIZHONG LIANCHUANG NEW TECH CO LTD
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Patent Information

Application Number
CN202510388154.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

In the prior art, parameters need to be adjusted when replacing electronic atomizers, resulting in cumbersome and complex problems and differences.

Method used

An external device is provided, including a reading module, a storage module and a control module, which can electrically connect with the atomizing host, read and store user instructions, and transfer user instructions between different atomizing hosts, so that multiple atomizing hosts can work according to the same user instructions.

Benefits of technology

It solves the problem of complicated and complicated parameter adjustment when replacing the electronic atomizer, realizes the transfer of user instructions between multiple atomization hosts, ensures that each atomization host works in the same state, and improves the user experience.

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Abstract

The invention provides an external device, an electronic atomization assembly and an electronic atomization system.The external device comprises a reading module, a storage module and a control module, is electrically connected with an atomization host and is used for reading a user instruction recorded by the atomization host; the storage module is electrically connected with the reading module and is used for storing the user instruction recorded by the reading module; the control module is electrically connected with the storage module, and the control module writes the user instruction stored in the storage module into the atomization host according to the user instruction; the external equipment can be installed on a plurality of atomization main machines, so that the atomization main machines work according to the same user instruction. The external equipment provided by the invention has the advantage that the user instruction can be conveniently transmitted among a plurality of atomization hosts.
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Description

Technical Field

[0001] This application belongs to the technical field of atomization devices. More specifically, it relates to an external device, an electronic atomization component, and an electronic atomization system. Background Art

[0002] An electronic atomizer can heat an aerosol matrix through an atomization core to evaporate it and generate an aerosol, which can be discharged outside the external device for users to inhale. With the continuous development of atomization technology, electronic atomization systems have evolved into intelligent devices with more additional functions, such as temperature control, power adjustment, screen display, etc. according to user instructions.

[0003] However, each user has different habits, and some users will customize the parameters of the electronic atomizer (such as outlet temperature, heating power, aerosol concentration, etc.) according to their usage habits. However, each time the electronic atomizer is replaced, the parameters need to be adjusted, which is not only cumbersome and complex but also there are always differences each time. Summary of the Invention

[0004] The purpose of the embodiments of this application is to provide an external device, an electronic atomization component, and an electronic atomization system to solve the problems of cumbersome and complex parameter adjustment and differences when replacing the electronic atomizer in the prior art.

[0005] In a first aspect, this application provides an external device.

[0006] The external device provided by this application can be detachably and electrically connected to an atomization host to form an electronic atomization system. The external device includes a reading module, electrically connected to the atomization host, for reading user instructions recorded by the atomization host; a storage module, electrically connected to the reading module, for storing the user instructions recorded by the reading module; and a control module, electrically connected to the storage module. The control module writes the user instructions stored in the storage module into the atomization host according to the user instructions. Among them, the external device can be installed on multiple atomization hosts, enabling multiple atomization hosts to work according to the same user instructions.

[0007] The beneficial effect of the external device provided by this application is that, compared with the prior art, when the external device provided by this application is installed on a first atomization host, the user instructions in the first atomization host are stored in the storage module through the reading module. When the external device is installed on a second atomization host, the control module of the external device controls the storage module to transfer the user instructions stored in the storage module to the second atomization host through the reading module, so that the second atomization host works in the same state as the first atomization host according to the user instructions in the external device, making the external device provided by this application have the advantage of being able to transfer user instructions between multiple atomization hosts.

[0008] Optionally, the external device may further include a linking module, which is electrically connected to the reading module, the storage module, and the control module respectively. The linking module includes:

[0009] A conductive contact for receiving electrical energy from the atomizing main unit or transmitting electrical energy to the atomizing main unit; and

[0010] A signal contact for signal transmission with the atomizing main unit.

[0011] Optionally, the external device further includes:

[0012] A display module, which is electrically connected to the control module, and the display module displays the output signal of the control module.

[0013] Optionally, obtaining the output signal of the control module includes the following steps:

[0014] The reading module is used to read the working information recorded by the atomizing main unit;

[0015] The storage module is used to store the working information recorded by the reading module;

[0016] The control module judges the remaining power and remaining oil amount information of the atomizing main unit according to the working information recorded by the storage module, and converts it into an output signal;

[0017] Wherein, the working information includes at least one of the working duration of the atomizing main unit and the number of puffing times of the atomizing main unit.

[0018] In a second aspect, the present application also proposes an electronic atomization assembly.

[0019] The electronic atomization assembly provided by the present application includes an atomizing main unit, and the atomizing main unit includes:

[0020] An atomizing module for heating an aerosol-forming substrate to generate an aerosol;

[0021] A central control module, which is electrically connected to the atomization assembly, and the central control module controls the operation of the atomizing module according to a user instruction; and

[0022] A power supply module, which is electrically connected to the central control module, to supply power to the atomizing module and the central control module; and

[0023] An external device, which is electrically connected to the atomizing main unit, and the external device includes:

[0024] A reading module, which is electrically connected to the central control module, and is used to read the user instruction recorded by the atomizing main unit;

[0025] A storage module, electrically connected to the reading module, for storing the user instructions recorded by the reading module; and

[0026] A control module, electrically connected to the storage module, which writes the user instructions stored in the storage module into the atomization host according to the user instructions;

[0027] Wherein, the external device can be installed on multiple atomization hosts, so that multiple atomization hosts work according to the same user instructions.

[0028] It can be understood that the beneficial effects of the second aspect above can be referred to the relevant descriptions in the first aspect above, and will not be elaborated here.

[0029] In a third aspect, the present application also provides an electronic atomization system.

[0030] The electronic atomization system provided by the present application includes the electronic atomization component described in the above embodiment, and is characterized in that the electronic atomization system further includes:

[0031] A first housing, which houses the atomization host, and a first connection module and a first docking module are provided on the first housing, and the first docking module is electrically connected to the central control component;

[0032] A second housing, which houses the external device, and a second connection module and a second docking module are provided on the second housing, and the second docking module is electrically connected to the control component;

[0033] Wherein, the first connection module cooperates with the second connection module to detachably connect the first housing and the second housing; the first docking module cooperates with the second docking module to electrically connect the atomization host and the external device.

[0034] It can be understood that the beneficial effects of the third aspect above can be referred to the relevant descriptions in the first aspect above, and will not be elaborated here.

[0035] Optionally, the first connection module includes at least one of a magnetic member and a magnetic attraction member, the second connection module includes at least one of the magnetic member and the magnetic attraction member, and the magnetic member and the magnetic attraction member are magnetically connected to detachably connect the first connection module and the second connection module.

[0036] Optionally, the first connection module includes one of a card slot and a card post, the second connection module includes the other of the card slot and the card post, and the card slot and the card post are clamped to detachably connect the first connection module and the second connection module.

[0037] Optionally, the first docking module includes a plurality of first contacts, and the plurality of first contacts are embedded in the first housing and protrude from the first housing; the second docking module includes a plurality of second contacts, and the plurality of second contacts are embedded in the second housing and protrude from the second housing; wherein, the plurality of second contacts are in one-to-one correspondence and electrically connected with the plurality of first contacts, so that the atomization host is electrically connected to the external device.

[0038] Optionally, the first docking module includes one of a TYPE-C male head and a TYPE-C female socket, and the second docking module includes the other of the TYPE-C male head and the TYPE-C female socket; the TYPE-C male head and the TYPE-C female socket are plugged and matched to electrically connect the atomization host to the external device. Description of the Drawings

[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0040] Figure 1 It is a schematic diagram of the module of the electronic atomization component provided by the embodiment of the present application;

[0041] Figure 2 It is a schematic diagram of the module of the electronic atomization system provided by the embodiment of the present application;

[0042] Figure 3 It is a schematic diagram of the structure of the electronic atomization system provided by the embodiment of the present application;

[0043] Figure 4 It is a schematic diagram of the structure of the first housing of the electronic atomization system provided by the embodiment of the present application;

[0044] Figure 5 It is a schematic diagram of the structure of the second housing of the electronic atomization system provided by the embodiment of the present application.

[0045] Among them, the reference numerals in the drawings are as follows:

[0046] 100, electronic atomization system;

[0047] 10, external device; 11, reading module; 12, control module; 13, storage module; 14, display module; 15, link module; 151, signal contact; 152, power supply contact;

[0048] 20. Atomizing host; 21. Central control module; 22. Atomizing module; 23. Power module; 24. First button

[0049] 30. First housing; 31. Magnetic part; 32. First contact; 33. Assembly groove

[0050] 40. Second housing; 41. Magnetic attracting part; 42. Second contact Detailed implementation manner

[0051] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0052] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0053] It should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present application.

[0054] 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 one or more of such features. In the description of the present application, "a plurality of" means two or more unless otherwise specifically defined.

[0055] The present application provides an external device, an electronic atomization component using the above external device, and an electronic atomization system using the above electronic atomization component.

[0056] The following combines the attached Figure 1 Describe the electronic atomization component proposed by the present application.

[0057] The electronic atomization component provided by the present application includes an atomization host 20 and an external device 10. The atomization host 20 includes an atomization module 22 for heating an aerosol generating substrate to generate an aerosol; a central control module 21 electrically connected to the atomization component. The central control module 21 controls the operation of the atomization module 22 according to a user instruction; and a power module 23 electrically connected to the central control module 21 to supply power to the atomization module 22 and the central control module 21. The external device 10 is electrically connected to the atomization host 20. The external device 10 includes: a reading module 11 electrically connected to the central control module 21 for reading the user instruction recorded by the atomization host 20; a storage module 13 electrically connected to the reading module 11 for storing the user instruction recorded by the reading module 11; and a control module 12 electrically connected to the storage module 13. The control module 12 writes the user instruction stored in the storage module 13 into the atomization host 20 according to the user instruction.

[0058] Wherein, the external device 10 can be installed on multiple atomization hosts 20, so that the multiple atomization hosts 20 work according to the same user instruction.

[0059] As Figure 1 shown, the external device 10 can be installed in any one of the multiple atomization hosts 20. The reading module 11 of the external device 10 can be electrically connected to the central control module 21 of the atomization host 20 corresponding thereto, so that the external device 10 can input a user instruction into the central control module 21 of the atomization host 20 corresponding to it. The central control module 21 of the atomization host 20 can input a working instruction into the atomization module 22 according to the user instruction received by it.

[0060] As Figure 1 shown, the central control module 21 of the atomization host 20 is electrically connected between the power module 23 of the atomization host 20 and the atomization module 22 of the atomization host 20, and the central control module 21 can be electrically connected to the reading module 11 of the external device 10 installed on the atomization host 20.

[0061] The central control module 21 is electrically connected to the atomization module 22. On the one hand, the working state of the atomization module 22 is controlled through the central control module 21. On the other hand, the working information of the atomization module 22 can be recorded through the central control module 21.

[0062] In some embodiments, the central control module 21 is electrically connected between the atomization module 22 and the power supply module to supply the electric energy stored in the power module 23 to the atomization module 22 through the central control module 21.

[0063] In other embodiments, the power module 23 is electrically connected to the central control module 21, and the power module 23 is also electrically connected to the atomization module 22, so that the power module 23 directly supplies power to the atomization module 22, and the central control module 21 is electrically connected to the atomization module 22 to control the power of the atomization module 22.

[0064] In some embodiments, the user instruction may include an instruction for the temperature of the aerosol. The central control module 21 of the atomization host 20 obtains the power instruction for the atomization module 22 according to the user instruction it receives. The central control module 21 is electrically connected to the atomization module 22 to input the power instruction of the atomization module 22 into the atomization module 22. Thus, by adjusting the power of the atomization module 22 through the central control module 21, the temperature of the aerosol generated by the atomization module 22 is adjusted, so that the atomization host 20 operates according to the user instruction stored in the external device 10.

[0065] In some embodiments, the atomization host 20 further includes a liquid storage module. The liquid storage module is communicated with the atomization module 22. The liquid storage module is adapted to store the aerosol generation matrix. The aerosol generation matrix can penetrate into the atomization module 22, and the aerosol is generated by the heating of the atomization module 22.

[0066] It can be understood that the atomization host 20 includes a power supply module 23, a central control module 21 and an atomization module 22, so that the atomization host 20 can not only read the user instruction and operate when connected to the external device 10, but also the atomization host 20 can be independently controlled by the central control module 21 to work when detached from the external device 10.

[0067] Please refer to Figure 1 , and now the external device 10 provided by the embodiments of the present application will be described.

[0068] The present application provides an external device 10, which can be detachably and electrically connected to the atomization host 20 to form an electronic atomization system 100.

[0069] The external device 10 includes a reading module 11, a storage module 13 and a control module 12. The reading module 11 can be electrically connected to the atomization host 20 for reading the user instruction recorded by the atomization host 20; the storage module 13 can be electrically connected to the reading module 11 for storing the user instruction recorded by the reading module 11; the control module 12 can be electrically connected to the storage module 13, and the control module 12 writes the user instruction stored in the storage module 13 into the atomization host 20 according to the user instruction; the external device 10 can be installed on multiple atomization hosts 20, so that multiple atomization hosts 20 operate according to the same user instruction.

[0070] As Figure 1 shown, the external device 10 is detachably connected to the atomization host 20. When the external device 10 is connected to the atomization host 20, the reading module 11 is electrically connected to the atomization host 20 to realize the transfer of the user instruction between the external device 10 and the atomization host 20 through the reading module 11.

[0071] The control module 12 is electrically connected to the storage module 13 and the reading module 11 respectively, so that the control module 12 can control the reading module 11 to transmit the user instructions read from the atomization host 20 to the storage module 13, and the control module 12 can control the storage module 13 to transmit the user instructions stored therein to the reading module 11, and transmit the user instructions to the atomization host 20 through the reading module 11.

[0072] In some embodiments, as Figure 1 shown, the control module 12 is electrically connected between the storage module 13 and the reading module 11.

[0073] The external device 10 can be connected to any one of multiple atomization hosts 20, so that the external device 10 can switch between multiple atomization hosts 20. When any one of the multiple atomization hosts 20 is connected to the external device 10, it can read user instructions from the external device 10 or transfer the user instructions therein to the storage module 13 of the external device 10.

[0074] Thus, the external device 10 can be connected to different atomization hosts 20, and the user instructions stored in the storage module 13 can be transmitted to different atomization hosts 20, so that different atomization hosts 20 can work according to the same user instructions respectively.

[0075] The beneficial effect of the external device 10 provided in this application is that: when the external device 10 provided in this application is installed on the first atomization host 20, the user instructions in the first atomization host 20 are stored in the storage module 13 through the reading module 11. When the external device 10 is installed on the second atomization host 20, the control module 12 of the external device 10 controls the storage module 13 to transfer the user instructions stored in the storage module 13 to the second atomization host 20 through the reading module 11, so that the second atomization host 20 works in the same state as the first atomization host 20 according to the user instructions in the external device 10. Through the external device 10 provided in this application, user instructions can be transferred between multiple atomization hosts 20, solving the problems of cumbersome and complex parameter adjustment and differences when replacing electronic atomizers in the related art.

[0076] In some embodiments provided in this application, the user instructions may include aerosol temperature adjustment instructions, aerosol concentration adjustment instructions, working mode adjustment instructions, etc., and the atomization host 20 can adjust its working state according to the user instructions.

[0077] In some embodiments, the atomization module 22 of the atomization host 20 includes an atomization core, and the atomization core is adapted to heat the aerosol generating matrix stored in the liquid storage module to generate aerosol. The atomization host 20 can adjust the heating power of the atomization core in its atomization module according to the aerosol temperature adjustment instructions, so as to adjust the temperature of the aerosol generated by the atomization host 20.

[0078] In some embodiments, the liquid supply speed of the aerosol - generating matrix input from the liquid storage module of the atomization main unit 20 to the atomization module 22 is adjustable, and the atomization main unit 20 can adjust the heating power of the atomization core in its atomization module 22 and the liquid supply speed of the aerosol - generating matrix supplied from the liquid storage module to the atomization module 22 according to the aerosol concentration adjustment instruction.

[0079] In some embodiments, there are multiple atomization cores, and multiple atomization cores can all heat the aerosol - generating matrix stored in the liquid storage module. The multiple atomization cores have multiple working modes:

[0080] In the first working mode, only one of the multiple atomization cores works;

[0081] In the second working mode, multiple atomization cores work synchronously to adjust the aerosol concentration;

[0082] In the third working mode, multiple atomization cores work alternately to reduce the concentration and temperature of the aerosol;

[0083] In the fourth working mode, multiple atomization cores or a single atomization core continuously heats;

[0084] In the fifth working mode, multiple atomization cores or a single atomization core periodically heats.

[0085] The atomization main unit 20 can adjust the working mode of multiple atomization cores according to the working mode adjustment instruction,

[0086] In some embodiments provided by the present application, the external device 10 may further include a link module 15. The link module 15 is electrically connected to the reading module 11, the storage module 13, and the control module 12 respectively. The link module 15 includes: conductive contacts for receiving electrical energy from the atomization main unit 20 or transmitting electrical energy to the atomization main unit 20; and signal contacts 151 for signal transmission with the atomization main unit 20.

[0087] As Figure 1 shown, the conductive contacts of the link module 15 are electrically connected to the reading module 11, the storage module 13, and the control module 12 respectively, and the signal contacts 151 of the link module 15 are also electrically connected to the reading module 11, the storage module 13, and the control module 12 respectively.

[0088] Thus, on the one hand, the electric energy obtained by the conductive contact from the atomization host 20 can be respectively transmitted to the reading module 11, the storage module 13, and the control module 12 to supply power for the electrical connection of the reading module 11, the storage module 13, and the control module 12 through the linking module 15. On the other hand, the signal contact 151 is electrically connected to one or more of the reading module 11, the storage module 13, and the control module 12 to transmit user instructions between the inside of the atomization host 20 and the inside of the external device 10 through the linking module 15.

[0089] It is electrically connected to the atomization host 20 through the linking module 15 to supply power to the external device 10 through the linking module 15. On the one hand, this enables the external device 10 to eliminate the need for energy storage components such as a storage battery, reducing the volume and manufacturing cost of the external device 10. On the other hand, when the external device 10 is detached from the atomization host 20, the external device 10 is in a power-off state, protecting the user instruction data stored in the storage module 13 of the external device 10.

[0090] In some embodiments provided by the present application, such as Figure 1 shown, the external device 10 further includes a display module 14, which is electrically connected to the control module 12, and the display module 14 displays the output signal of the control module 12.

[0091] In some embodiments, the user instructions stored in the storage module 13 include display data. The control module 12 is electrically connected between the display module 14 and the storage module 13. The control module 12 can transmit the user instructions in the storage module 13 to the display module 14 to display at least part of the user instructions stored in the storage module 13 through the display module 14.

[0092] Thus, by providing the storage module 13 in the external device 10, after the external device 10 is detached from one atomization host 20 and installed on another atomization host 20, the external device 10 can still display the patterns set by the user in the user instructions.

[0093] In other embodiments, such as Figure 1 shown, the display module 14 is electrically connected to the control module 12 so that the display module 14 passes through the control module 12 and the linking module 15 electrically connected to the control module 12.

[0094] In some embodiments provided by the present application, the display module 14 and the linking module 15 are arranged in a staggered manner on the surface of the external device 10. In some of these embodiments, the display module 14 and the linking module 15 are arranged on the surface of the connecting device in a back-to-back manner.

[0095] Thus, when the external device 10 is connected to the atomization host 20, it is avoided that part of the external device 10 blocks the display module 14.

[0096] In some embodiments provided by the present application, the method for obtaining the output signal of the control module 12 includes the following steps:

[0097] The reading module 11 is used to read the working information recorded by the atomizing host 20;

[0098] The storage module 13 is used to store the working information recorded by the reading module 11;

[0099] The control module 12 judges the remaining power and remaining fuel quantity information of the atomizing host 20 according to the working information recorded by the storage module 13, and converts them into output signals;

[0100] Among them, the working information includes at least one of the working duration of the atomizing host 20 and the number of puffing times of the atomizing host 20.

[0101] In some embodiments, the working information only includes the working duration of the atomizing host 20. In some other embodiments, the working information only includes the number of puffing times of the atomizing host 20.

[0102] In some other embodiments, the working information includes the working duration of the atomizing host 20 and the number of puffing times of the atomizing host 20.

[0103] The reading module 11 is electrically connected to the atomizing host 20. The atomizing host 20 generates working information during operation to record its working state. The working information includes the working duration of the atomizing host 20 and the number of puffing times of the atomizing host 20. The reading module 11 can conduct the working information in the atomizing host 20 into the storage module 13, and the control module 12 can read the working information stored in the storage module 13.

[0104] The control module 12 can obtain the remaining power information of the atomizing host 20 according to the working duration of the atomizing host 20 in the working information it reads. The control module 12 can obtain the remaining fuel quantity information of the atomizing host 20 according to the number of puffing times of the atomizing host 20 in the working information it reads. The remaining power information of the atomizing host 20 forms part of the output signal, and the remaining fuel quantity information of the atomizing host 20 forms another part of the output signal.

[0105] The display module 14 can convert the processing signal of the control module 12 into an image signal for output, so that the user can obtain the remaining fuel quantity information and the remaining power information of the atomizing host 20 from the surface of the external device 10 connected to the atomizing host 20.

[0106] In summary, when the external device 10 provided in this application switches between different atomization hosts 20, on the one hand, the external device 10 can make the atomization host 20 work according to the user instructions stored in the storage module 13 in the external device 10. On the other hand, the external device 10 can respectively display the remaining oil quantity information and remaining power quantity information of the atomization host 20 connected thereto. Thus, the user's preference settings can be saved in the user instructions and transmitted with the external device 10 among multiple atomization hosts 20, facilitating the atomization host 20 after replacement to perform atomization work in the same working state as the atomization host 20 before replacement, thereby solving the problems in the related art that the electronic atomizer needs to adjust parameters in a cumbersome and complex manner and there are differences during replacement, and improving the user experience.

[0107] The following will describe the electronic atomization system 100 provided in this application in conjunction with the attached Figures 2 to 5 drawings.

[0108] The electronic atomization system 100 provided in this application includes the electronic atomization component of the above embodiment. The electronic atomization system 100 further includes a first housing 30 and a second housing 40. The first housing 30 houses the atomization host 20. A first connection module 35 and a first docking module 34 are provided on the first housing 30. The first docking module 34 is electrically connected to the central control component. The second housing 40 houses the external device 10. A second connection module 44 and a second docking module 43 are provided on the second housing 40. The second docking module 43 is electrically connected to the control component.

[0109] Wherein, the first connection module 35 cooperates with the second connection module 44 to detachably connect the first housing 30 and the second housing 40. The first docking module 34 cooperates with the second docking module 43 to electrically connect the atomization host 20 and the external device 10.

[0110] As Figure 2 shown, the first housing 30 and the atomization host 20 are provided in one-to-one correspondence. Each first housing 30 correspondingly houses one atomization host 20. The first docking module 34 is provided on the first housing 30, and the first docking module 34 extends to the inside of the first housing 30 and is electrically connected to the central control component of the atomization host 20. The first connection module 35 is provided on the first housing 30, and at least part of the first connection module 35 extends to the outside of the first housing 30.

[0111] The second housing 40 and the external device 10 are provided in one-to-one correspondence. Each second housing 40 correspondingly houses one external device 10. The second docking module 43 is provided on the second housing 40, and the second docking module 43 extends to the inside of the second housing 40 and is electrically connected to the reading module 11 of the external device 10. The second connection module 44 is provided on the second housing 40, and at least part of the second connection module 44 extends to the outside of the second housing 40.

[0112] The first connection module 35 and the second connection module 44 can be detachably docked and connected, and the second connection module 44 of the second housing 40 can be detachably connected to the first connection modules 35 of a plurality of first housings 30 respectively, so that the second housing 40 can be assembled to a plurality of first housings 30 respectively.

[0113] As Figure 2 shown, when the first housing 30 and the second housing 40 are connected through the first connection module 35 and the second connection module 44, the first docking module 34 of the first housing 30 and the second docking module 43 of the second housing 40 are docked and electrically connected to form an electrical connection path, so as to electrically connect the central control module 21 of the atomization host 20 in the first housing 30 and the reading module 11 of the external device 10 in the second housing 40.

[0114] Thus, through the first housing 30 provided with the first docking module 34 and the first connection module 35 and the second housing 40 provided with the second docking module 43 and the second connection module 44, the electrical connection between the atomization host 20 and the external device 10 is realized, and the external device 10 can be disconnected from the atomization host 20, so as to facilitate the external device 10 to carry the user instructions stored therein and switch between a plurality of atomization hosts 20, and the external device 10 can display the working information of any one of the atomization hosts 20 connected thereto.

[0115] In some embodiments, the second housing 40 is further provided with an opening, and the display module 14 is assembled inside the opening to prevent the second housing 40 from blocking the display module 14.

[0116] In some embodiments provided in the present application, the first connection module 35 includes at least one of a magnetic member 31 and a magnetic attracting member 41, the second connection module 44 includes at least one of a magnetic member 31 and a magnetic attracting member 41, and the magnetic member 31 and the magnetic attracting member 41 are magnetically attracted to each other to detachably connect the first connection module 35 and the second connection module 44. The magnetic member 31 is a magnet, and the magnetic attracting member 41 is a metal sheet.

[0117] In some of the above embodiments, as Figure 4 and Figure 5 shown, the first connection module 35 includes a magnetic member 31, the second connection module 44 includes a magnetic attracting member 41, and the magnetic member 31 can be magnetically attracted to the magnetic attracting member 41.

[0118] In some other embodiments of the above (not shown in the figure), the first connection module 35 includes a magnetic attracting member 41, the second connection module 44 includes a magnetic member 31, and the magnetic member 31 can be magnetically attracted to the magnetic attracting member 41.

[0119] In another part of the above embodiments (not shown in the figures), the first connection module 35 includes a first magnetic member 31 and a first magnetic attraction member 41, the second connection module 44 includes a second magnetic member 31 and a second magnetic attraction member 41, the first magnetic member 31 can be magnetically connected to the second magnetic attraction member 41, and the first magnetic attraction member 41 can be magnetically connected to the second magnetic member 31.

[0120] As Figure 3 shown, when the magnetic member 31 is magnetically connected to the magnetic attraction member 41, the second housing 40 is connected to the first housing 30 along the Figure 3 y direction shown in the figure, the first docking module 34 extends to the side of the first housing 30 facing the second housing 40 along the Figure 3 y direction shown in the figure, and the second docking module 43 extends to the side of the second housing 40 facing the first housing 30 along the Figure 3 y direction shown in the figure, so that the first docking module 34 and the second docking module 43 are correspondingly connected, so that the atomization host 20 in the first housing 30 and the external device 10 in the second housing 40 are electrically connected. The magnetic member 31 and the magnetic attraction member 41 can be separated under the action of an external force so that the first housing 30 and the second housing 40 are separated from each other, so that the external device 10 in the second housing 40 can be switched and connected between the atomization hosts 20 in multiple first housings 30.

[0121] In some other embodiments, one of the first connection module 35 and the second connection module 44 includes an elastic buckle, and the other of the first connection module 35 and the second connection module 44 includes a card slot. The elastic buckle is snap-fitted into the card slot to connect the first housing 30 and the second housing 40, and to correspondingly connect the first docking module 34 and the second docking module 43. The elastic buckle can be disengaged from the card slot to remove the second housing 40 from the first housing 30.

[0122] In some other embodiments provided in the present application (not shown in the figures), the first connection module 35 includes one of a card slot and a card post, and the second connection module 44 includes the other of the card slot and the card post. The card slot and the card post are clamped and connected to make the first connection module 35 and the second connection module 44 detachably connected.

[0123] In some of the above embodiments (not shown in the figures), the first connection module 35 includes a card slot, and the second connection module 44 includes a card post. The card post can be fitted into the card slot to clamp the first housing 30 and the second housing 40.

[0124] In another part of the above embodiments (not shown in the figures), the first connection module 35 includes a card post, and the second connection module 44 includes a card slot. The card post can be fitted into the card slot to clamp the first housing 30 and the second housing 40.

[0125] In another part of the above embodiments (not shown in the figure), the first connection module 35 includes a first card slot and a first card post, and the second connection module 44 includes a second card slot and a second card post. The first card slot can be fitted into the second card post, and the first card post can be fitted into the second card slot to snap-connect the first housing 30 and the second housing 40.

[0126] In some embodiments provided by the present application, the first docking module 34 includes a plurality of first contacts 32, and the plurality of first contacts 32 are embedded in the first housing 30 and protrude from the first housing 30; the second docking module 43 includes a plurality of second contacts 42, and the plurality of second contacts 42 are embedded in the second housing 40 and protrude from the second housing 40; wherein, the plurality of second contacts 42 correspond to the plurality of first contacts 32 one by one and are electrically connected to electrically connect the atomization host 20 and the external device 10.

[0127] In some embodiments provided by the present application, the first contact 32 includes a first detection contact, and the second contact 42 includes a second detection contact. The first detection contact can be electrically connected to the second detection contact to transmit a detection signal to the hollow module through the first detection contact, so that the central control module 21 detects whether the external device 10 is electrically connected to the atomization host 20, and after detecting that the external device 10 is electrically connected to the atomization host 20, the central control module 21 is electrically connected to the reading module 11 to realize data communication between the external device 10 and the atomization host 20.

[0128] In some embodiments provided by the present application, the electrical connection between the central control module 21 and the reading module 11 to realize data communication between the external device 10 and the atomization host 20 includes the following steps:

[0129] When the central control module 21 receives the detection signal so that the central control module 21 detects that the first detection contact is connected to the second detection contact, the central control module 21 sends a confirmation signal to the first contact 32;

[0130] If the atomization host 20 is connected to the external device 10, the control module 12 of the external device 10 obtains the confirmation signal through the second contact 42 of the reading module 11 and sends a transmission request signal to the central control module 21 through the second contact 42 of the reading module 11 to establish data communication between the atomization host 20 and the external device 10.

[0131] In some other embodiments provided by the present application (not shown in the figure), the first docking module 34 includes one of a TYPE-C male head and a TYPE-C female socket, and the second docking module 43 includes the other of a TYPE-C male head and a TYPE-C female socket; the TYPE-C male head and the TYPE-C female socket are plugged and matched to electrically connect the atomization host 20 and the external device 10.

[0132] In some embodiments provided by the present application, the atomization host 20 further includes an input module, and the input module is electrically connected to the central control module 21 to supply power to the input module through the central control module 21. A user can input a user instruction to the central control module 21 through the input module, and the reading module 11 reads user data from the central control module 21 and stores it in the storage module 13.

[0133] Thus, the user instructions stored in the storage module 13 of the external device 10 connected thereto can be changed through the input module of the atomization host 20.

[0134] In some embodiments, such as Figure 3 and Figure 4 as shown, the input module includes a plurality of first buttons 24, and the plurality of first buttons 24 are provided on the surface of the first housing 30 for a user to manipulate the input module.

[0135] In some other embodiments provided by the present application (not shown in the figure), the external device 10 further includes an input module, and the input module is electrically connected to the control module 12. A user can input a user instruction to the control module 12 through the input module. The user instruction can be transmitted by the control module 12 to the storage module 13 for storage, and the user instruction can also be transmitted by the control module 12 through the reading module 11 to the hollow module of the atomization host 20.

[0136] Thus, the user instructions stored in the external device 10 can be changed through the input module of the external device 10.

[0137] In some embodiments (not shown in the figure), the external device 10 includes a touch screen, and the touch screen includes an input module and a display module 14.

[0138] Thus, a user can use the touch screen to input a user instruction into the storage module 13, improving the manipulation flexibility of the external device.

[0139] In some other embodiments (not shown in the figure), the external device 10 includes a second button, and the second button is provided on the surface of the second housing 40. The second button is electrically connected to the control module 12 of the external device 10 to input a user instruction to the control module 12 through the second button and store it in the storage module 13.

[0140] In some embodiments, such as Figure 4 as shown, an assembly groove 33 is provided on the first housing 30, and the second housing 40 can be assembled into the assembly groove 33. When the second housing 40 is assembled in the assembly groove 33, the second housing 40 is completely located inside the notch of the assembly groove 33.

[0141] Thus, the second housing 40 is positioned and installed on the surface of the first housing 30 through the assembly groove 33. On the one hand, it is convenient to connect the external device 10 to the atomization host 20, improving the convenience of switching the external device 10 among multiple atomization hosts 20. On the other hand, the second housing 40 is completely assembled in the assembly groove 33, which can prevent the accidental detachment of the external device 10 from the atomization host 20 when the user uses the electronic atomization system 100 provided in this application, improving the user experience.

[0142] In some embodiments, as Figure 4 shown, both the first connection module 35 and the first docking module 34 are located at the bottom of the assembly groove 33.

[0143] The first connection module 35 and the first docking module 36 are located at the bottom of the assembly groove 33. When the first housing 30 and the second housing 40 are spliced to form the electronic atomization system 100, both the second connection module 44 and the second blocking module 43 extend to the bottom of the assembly groove 33.

[0144] Thus, only after the second housing 40 is assembled in the assembly groove 33 can the electrical connection between the external device 10 and the atomization host 20 be realized, improving the connection stability between the external device 10 and the atomization host 20.

[0145] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An external device, which is detachably electrically connected to the atomizing host to form an electronic atomizing system, characterized in that: include: A reading module, electrically connected to the atomizer host, and used for reading user instructions recorded by the atomizer host; a storage module, electrically connected to the reading module, and used to store the user instructions recorded by the reading module; as well as A control module, electrically connected to the storage module, and the control module writes the user instruction stored in the storage module into the atomizer host according to the user instruction; Wherein, the external device can be installed on multiple atomizer hosts, so that the multiple atomizer hosts work according to the same user instructions.

2. The external device according to claim 1, characterized in that: The external device may further include a link module, the link module is electrically connected to the reading module, the storage module and the control module respectively, and the link module includes: Conductive contacts, used to receive electrical energy from the atomizer host or transmit electrical energy to the atomizer host; and The signal contact is used for transmitting signals with the atomizer host.

3. The external device according to claim 1, characterized in that: The external device also includes: The display module is electrically connected to the control module, and the display module displays the output signal of the control module.

4. The external device according to claim 3, characterized in that: Obtaining the output signal of the control module comprises the following steps: The reading module is used to read the working information recorded by the atomization host; The storage module is used to store the working information recorded by the reading module; The control module determines the remaining power and oil information of the atomizer host according to the working information recorded by the storage module, and converts it into an output signal; The working information includes at least one of the working time of the atomizer host and the number of puffs of the atomizer host.

5. An electronic atomization component, characterized in that: include: Atomizing host, the atomizing host comprises: an atomization module, for heating an aerosol-generating substrate to generate an aerosol; A central control module, electrically connected to the atomization assembly, and the central control module controls the operation of the atomization module according to user instructions; and a power module, electrically connected to the central control module to supply power to the atomization module and the central control module; and An external device is electrically connected to the atomizer host, and the external device includes: A reading module, electrically connected to the central control module, for reading user instructions recorded by the atomizer host; a storage module, electrically connected to the reading module, and configured to store the user instructions recorded by the reading module; and A control module, electrically connected to the storage module, and the control module writes the user instruction stored in the storage module into the atomizer host according to the user instruction; Wherein, the external device can be installed on multiple atomizer hosts, so that the multiple atomizer hosts work according to the same user instructions.

6. An electronic atomization system, comprising the electronic atomization assembly according to claim 5, characterized in that: The electronic atomization system also includes: A first shell, the first shell accommodating the atomizer host, the first shell being provided with a first connecting module and a first docking module, the first docking module being electrically connected to the central control component; a second shell, the second shell accommodating the external device, the second shell being provided with a second connection module and a second docking module, the second docking module being electrically connected to the control component; Among them, the first connecting module cooperates with the second connecting module to make the first shell and the second shell detachably connected; the first docking module cooperates with the second docking module to make the atomizer host electrically connected to the external device.

7. The electronic atomization system according to claim 6, characterized in that: The first connection module includes at least one of a magnetic part and a magnetic attraction part, and the second connection module includes at least one of the magnetic part and the magnetic attraction part. The magnetic part and the magnetic attraction part are magnetically connected to each other, so that the first connection module and the second connection module are detachably connected.

8. The electronic atomization system according to claim 6, characterized in that: The first connection module includes one of a slot and a column, and the second connection module includes the other of the slot and the column. The slot and the column are clamped and connected so that the first connection module and the second connection module are detachably connected.

9. The electronic atomization system according to claim 6, characterized in that: The first docking module includes a plurality of first contacts, which are embedded in the first shell and protrude from the first shell; the second docking module includes a plurality of second contacts, which are embedded in the second shell and protrude from the second shell; wherein the plurality of second contacts correspond one-to-one to the plurality of first contacts and are electrically connected to make the atomizer host electrically connected to the external device.

10. The electronic atomization system according to claim 6, characterized in that: The first docking module includes one of a TYPE-C male connector and a TYPE-C female connector, and the second docking module includes the other of the TYPE-C male connector and the TYPE-C female connector; the TYPE-C male connector and the TYPE-C female connector are plugged together to electrically connect the atomizer host to the external device.