Beauty equipment with charging control box
By introducing a wirelessly connected charging control box and microcurrent controller into beauty devices, the problems of inconvenience and easy damage to the devices are solved, achieving efficient storage and charging, and improving the user experience.
Patent Information
- Application Number
- CN202422588590.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-10-25
AI Technical Summary
Existing electronic facial mask devices require a bulky main unit and are used via wired connection, making them inconvenient to carry and prone to damage. They also lack storage solutions, which negatively impacts the user experience.
Design a beauty device with a charging control box. It integrates storage, charging and wireless remote control functions through wireless connection with a microcurrent controller. It utilizes the limited space of the charging control box to provide storage and charging for the microcurrent controller, and adopts a T-shaped magnet adsorption structure to ensure connection stability.
It improves the portability and user-friendly design of the device, enhances the user experience, and facilitates product promotion and use.
Smart Images

Figure CN223569859U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of beauty equipment, in particular to a kind of beauty equipment with charging control box. BACKGROUND
[0002] With the development of science and technology and the improvement of living standards, people's demand for beauty and personal care is growing. Among many beauty devices, electronic masks can stimulate the skin through micro-current to promote skin tightening and blood circulation, and are widely welcomed. However, the existing electronic mask usually adopts a wired electrode piece to connect with the host, and the host outputs micro-current to the electronic mask through the wired electrode piece to control its working process. This existing beauty device needs to carry a large host, and also needs to be used and operated through wired connection, which is inconvenient in carrying and using, affecting the user's experience and feeling. Secondly, when not in use, there is usually no special storage device, which not only makes the device prone to damage or loss, but also is not conducive to keeping the product clean. SUMMARY
[0003] The utility model to solve the technical problem needs to provide a kind of beauty equipment with charging control box, to provide the basis for the storage, charging and wireless remote control function of micro-current controller to improve the portable performance and humanized design degree of product, facilitate the promotion and use of product, by fully and reasonably utilizing the limited space of the charging control box.
[0004] To this end, the utility model provides a kind of beauty equipment with charging control box, including: charging control box and micro-current controller, the charging control box is wirelessly connected to the micro-current controller;The charging control box is equipped with the storage part for accommodating the micro-current controller, and the storage part is equipped with the first charging connecting piece, and the micro-current controller is equipped with the second charging connecting piece corresponding to the first charging connecting piece.
[0005] The utility model further improves in that the charging control box includes a control box housing, a main board, a charging adapter plate and a key assembly, the control box housing includes a first housing and a second housing connected together, the main board and the charging adapter plate are arranged between the first housing and the second housing, and the first charging connecting piece is connected to the main board through the charging adapter plate;The key assembly is arranged on the control box housing and connected to the main board;The micro-current controller includes a controller housing, an EMS circuit board and a second battery, the controller housing includes a third housing and a fourth housing connected together, the EMS circuit board and the second battery are arranged between the third housing and the fourth housing, and the second battery and the second charging connecting piece are respectively connected to the EMS circuit board;The EMS circuit board is wirelessly connected to the main board.
[0006] The further improvement of the utility model lies in that the charging control box further includes a charging plate and a first battery, and the charging plate and the first battery are connected with the main plate respectively.
[0007] The further improvement of the utility model lies in that the micro-current controller further includes a mounting frame arranged between the third shell and the fourth shell, the mounting frame is provided with a penetrating hole, and the EMS circuit board and the second battery are arranged on two sides of the mounting frame and connected through the penetrating hole.
[0008] The further improvement of the utility model lies in that the micro-current controller further includes a control switch arranged on the controller shell and connected with the EMS circuit board.
[0009] The further improvement of the utility model lies in that the first charging connecting piece includes a charging electrode, an adsorption structural piece and a waterproof pad, the charging electrode is arranged between the adsorption structural pieces at two ends through the waterproof pad; the second charging connecting piece includes an electrode contact column and an EMS electrode, the electrode contact column is arranged between the EMS electrodes at two ends; the position of the adsorption structural piece corresponds to the position of the EMS electrode.
[0010] The further improvement of the utility model lies in that the adsorption structural piece and the EMS electrode are T-shaped magnets, the adsorption structural piece is embeddedly arranged in the storage part, and the EMS electrode is protrusively arranged on the side of the micro-current controller close to the charging control box.
[0011] The further improvement of the utility model lies in that the adsorption structural pieces at two ends in the same first charging connecting piece are T-shaped magnets with different polarities at the top respectively; and the polarities at the bottom of the EMS electrodes are opposite to the polarities at the top of the corresponding adsorption structural pieces.
[0012] The further improvement of the utility model lies in that the micro-current controller further includes conductive cotton, battery back glue and a second battery foam, the conductive cotton is arranged between the EMS electrode and the EMS circuit board, and the battery back glue and the second battery foam are arranged on two sides of the second battery respectively.
[0013] The further improvement of the utility model lies in that the storage part is a recessed storage groove, and one or more first charging connecting pieces are arranged in the storage groove.
[0014] Compared with the prior art, the beneficial effects of the utility model lie in that the charging control box is wirelessly connected to the micro-current controller, and a receiving part for accommodating the micro-current controller is arranged on the charging control box, and the receiving part and the micro-current controller are respectively provided with matched first charging connecting piece and second charging connecting piece, so that when the micro-current controller is accommodated in the receiving part, the charging control box can charge the micro-current controller through the connected first charging connecting piece and second charging connecting piece. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a structural schematic diagram of an embodiment of the utility model;
[0016] Figure 2 is an assembly structural schematic diagram of an embodiment of the utility model;
[0017] Figure 3 is an assembly structural schematic diagram of an embodiment of the utility model from another angle;
[0018] Figure 4 is an assembly structural schematic diagram of the charging control box of an embodiment of the utility model;
[0019] Figure 5 is an assembly structural schematic diagram of the charging control box of an embodiment of the utility model from another angle;
[0020] Figure 6 is an exploded structural schematic diagram of the charging control box of an embodiment of the utility model;
[0021] Figure 7 is an exploded structural schematic diagram of the micro-current controller of an embodiment of the utility model;
[0022] Figure 8 is an assembly structural schematic diagram of the micro-current controller of an embodiment of the utility model;
[0023] Figure 9 is an assembly structural schematic diagram of the micro-current controller of an embodiment of the utility model from another angle;
[0024] Figure 10 is a cross-sectional schematic diagram of the micro-current controller of an embodiment of the utility model.
[0025] IDENTIFICATION OF DRAWINGS:
[0026] 1-Charging control box; 101-Storage part; 102-First charging connector; 103-Mainboard; 104-Charging adapter plate; 105-Button assembly; 106-First shell; 107-Second shell; 108-Charging plate; 109-First battery; 110-Charging electrode; 111-Suction structure; 112-Waterproof pad; 113-Charging interface; 114-First battery foam;
[0027] 2-Micro-current controller; 201-Second charging connector; 202-EMS circuit board; 203-Second battery; 204-Third shell; 205-Fourth shell; 206-Mounting bracket; 207-Penetration hole; 208-Control switch; 209-Electrode contact column; 210-EMS electrode; 211-Conductive cotton; 212-Battery adhesive; 213-Second battery foam. DETAILED DESCRIPTION
[0028] In the description of the utility model, if the orientation description such as "up", "down", "front", "back", "left", "right" and so on is indicated the orientation or positional relationship based on the orientation or positional relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and not indicating or implying that the device or element indicated must have a particular orientation, configuration and operation, therefore, it can not be understood as the limitation of the utility model. If a technical feature is referred to as "set", "fixed", "connected", "installed" in another technical feature, it can be directly set, fixed, connected in another technical feature, and it can be indirectly set, fixed, connected, installed in another technical feature.
[0029] In the description of the utility model, if "several" is referred to, its meaning is more than one;If "multiple" is referred to, its meaning is more than two;If "greater than", "less than", "exceed" are referred to, they should be understood as not including the number;If "above", "below", "within" are referred to, they should be understood as including the number. If "first", "second" and the like are referred to, they should be understood as only used for distinguishing the same or similar technical feature names, and can not be understood as indicating / indicating the relative importance of the technical feature, can not be understood as indicating / indicating the number of technical features, and can not be understood as indicating / indicating the sequence of technical features.
[0030] The preferred embodiments of the utility model will be further described in detail below with reference to the drawings.
[0031] As Figures 1 to 10As shown, the embodiment provides a beauty device with a charging control box, which comprises a charging control box 1 and a micro-current controller 2, the charging control box 1 is wirelessly connected to the micro-current controller 2; the charging control box 1 is provided with a receiving part 101 for accommodating the micro-current controller 2, the receiving part 101 is provided with a first charging connecting piece 102, and the micro-current controller 2 is provided with a second charging connecting piece 201 corresponding to the first charging connecting piece 102. That is, the second charging connecting piece 201 of the embodiment is matched with the first charging connecting piece 102, when the micro-current controller 2 is accommodated in the receiving part 101, the charging control box 1 charges the micro-current controller 2 through the connected first and second charging connecting pieces 102 and 201.
[0032] The charging control box 1 of the embodiment refers to a control box for accommodating, charging and wirelessly controlling the micro-current controller 2, wherein the functions of accommodation and charging are integrated in the receiving part 101 and the first charging connecting piece 102 thereof, and the first charging connecting piece 102 is preferably connected to the main board 103 through the charging adapter plate 104, which is also called EMS charging adapter plate, so as to realize the functions of charging control and accommodation. The micro-current controller 2 refers to a controller for being attached to an electronic mask to output micro-current, and the micro-current is also called EMS, i.e. Electrical Muscle Stimulation. EMS micro-current is conducted to the nervous system by using low-frequency bioelectric pulse, stimulates facial muscles by emitting soft electric waves, causes secondary movement of muscles, activates cell and collagen shrinkage remodeling, and makes muscles contract and relax independently. Therefore, the effect of beauty and skin treatment can be achieved by using the micro-current controller 2 in combination with the electronic mask. The charging control box 1 is wirelessly connected to the micro-current controller 2, thereby providing a basis for wirelessly controlling the micro-current controller 2 by the charging control box 1 to discharge micro-current, such as micro-current discharge switch control and plus-minus control of the micro-current controller 2 by the charging control box 1. In this regard, a matching communication module is added to the circuit boards of the charging control box 1 and the micro-current controller 2 respectively to realize wireless connection and control, and therefore, the description is no longer expanded.
[0033] As Figures 1 to 3As shown, in this embodiment, the first charging connector 102 refers to the charging connection structure of the charging control box 1. This charging connection structure is directly integrated into the housing 101 for accommodating the microcurrent controller 2. Therefore, when the microcurrent controller 2 is housed in the housing 101, the charging control box 1 can control the charging of the microcurrent controller 2 through the connected first charging connector 102 and second charging connector 201. The second charging connector 201 refers to the charging connection structure of the microcurrent controller 2. It is worth noting that the second charging connector 201 also integrates an EMS electrode 210 so that the functions of charging and microcurrent discharging can be realized through the same connection structure.
[0034] like Figures 4 to 6 As shown, the charging control box 1 in this embodiment includes a control box housing, a main board 103, a charging adapter board 104, and a button assembly 105. The control box housing includes a first housing 106 and a second housing 107 connected together. The main board 103 and the charging adapter board 104 are disposed between the first housing 106 and the second housing 107. The first charging connector 102 is connected to the main board 103 through the charging adapter board 104. The button assembly 105 is disposed on the control box housing and connected to the main board 103. The microcurrent controller 2 includes a controller housing and an EMS (Electronic Management System)... The controller housing includes a circuit board 202 and a second battery 203. The controller housing includes a third housing 204 and a fourth housing 205 connected to each other. The EMS circuit board 202 and the second battery 203 are disposed between the third housing 204 and the fourth housing 205. The second battery 203 and the second charging connector 201 are respectively connected to the EMS circuit board 202. The EMS circuit board 202 is wirelessly connected to the motherboard 103. The button assembly 105 sends a wireless remote control signal to the EMS circuit board 202 through the motherboard 103 to control the operation of the microcurrent controller 2.
[0035] The control box shell comprises a first shell 106 and a second shell 107 connected together, the first shell 106 is preferably a face shell, the second shell 107 is preferably a bottom shell, and the first charging connector 102 is preferably embedded on the first shell 106 to quickly realize the storage and charging of the micro-current controller 2. In the charging control box 1, the main board 103 refers to the main control circuit board of the control box. In order to minimize the size of the charging control box 1, improve the portability of the product, and facilitate the assembly and connection of the product, a charging adapter board 104 for charging the micro-current controller 2 is separately designed in this embodiment. The charging adapter board 104 refers to an EMS adapter circuit board for realizing charging control, which is plugged into the main board 103 and arranged on the side of the main board 103 close to the storage part 101. In this way, the height space of the charging control box can be more fully utilized to realize the adapter control of the circuit board, and it is also convenient to arrange multiple first charging connectors 102.
[0036] The micro-current controller 2 corresponds to a controller shell, an EMS circuit board 202 and a second battery 203. The third shell 204 in the controller shell is preferably a face shell, and the fourth shell 205 is preferably a bottom shell. The EMS circuit board 202 refers to a circuit board for realizing micro-current output, which is wirelessly connected to the main board 103 of the charging control box 1 and receives the wireless remote control signal of the main board 103. The second battery 203 is a rechargeable battery for powering the EMS circuit board 202. When the micro-current controller 2 is stored in the storage part 101, the second battery 203 is charged.
[0037] As shown in Figure 6 The key assembly 105 preferably comprises an on-off key, an increase key and a decrease key, which are preferably used to control the on-off of the micro-current controller 2, the increase and decrease of the micro-current output. Preferably, the key assembly 105 is arranged on the side of the control box shell, the middle key is the on-off control key, the upper key is the increase key, and the lower key is the decrease key, which can better adapt to the user's usage habits.
[0038] Therefore, when the micro-current controller 2 is accommodated in the accommodation portion 101 of the charging control box 1, the charging control box 1 is an accommodation and charging device of the micro-current controller 2. After the micro-current controller 2 is taken out, the charging control box 1 is a wireless remote control device of the micro-current controller 2. Obviously, the embodiment can fully and reasonably utilize the limited space of the charging control box 1, and provide the basis for the micro-current controller 2 to provide the accommodation, charging and wireless remote control functions. In actual use, the micro-current controller 2 is taken out from the accommodation portion 101 and attached to the matched electronic mask; when not in use, the micro-current controller 2 is accommodated in the accommodation portion 101 and charged at the same time. The embodiment effectively improves the portability and humanized design degree of the product, facilitates the promotion and use of the product, and improves the user's experience and feeling.
[0039] More preferably, as shown in Figure 6 The charging control box 1 of the embodiment further comprises a charging board 108 and a first battery 109, and the charging board 108 and the first battery 109 are respectively connected with the main board 103. The charging board 108 is preferably provided with a charging interface 113, which includes but is not limited to a USB interface and the like, so as to charge the first battery 109. The side of the first battery 109 is preferably provided with a first battery foam 114, i.e., a battery EVA, to protect the first battery 109. Therefore, the charging control box 1 of the embodiment is also preferably set as a chargeable control box, so that the entire beauty device with the charging control box is more portable, as shown in Figure 1 The embodiment greatly improves the portability and humanized design degree of the product, and improves the user's experience and feeling.
[0040] More preferably, as shown in Figures 7 to 10As shown, the micro-current controller 2 further comprises a mounting frame 206 arranged between the third housing 204 and the fourth housing 205, the mounting frame 206 is provided with a penetrating hole 207, and the EMS circuit board 202 and the second battery 203 are arranged on two sides of the mounting frame 206 and connected through the penetrating hole 207. Since the micro-current controller 2 is a micro-current output device directly attached to the electronic mask, the volume is very small, therefore, the mounting frame 206, the third housing 204 and the fourth housing 205 are matched to realize the assembly of the EMS circuit board 202 and the second battery 203 and the like structures, so as to ensure the stability and portability of the structure. The EMS circuit board 202 and the second battery 203 are arranged on two sides of the mounting frame 206, thereby effectively supporting and fixing the EMS circuit board 202 and the second battery 203 at the positions on two sides of the mounting frame 206, and the connection between the EMS circuit board 202 and the second battery 203 is realized through the connecting line passing through the penetrating hole 207, so that the micro-current controller 2 can be made smaller and more stable and reliable in structure.
[0041] The micro-current controller 2 further comprises a control switch 208 arranged on the controller housing and connected with the EMS circuit board 202. It should be noted that the control switch 208 is preferably an emergency switch of the micro-current controller 2, for example, if the micro-current controller 2 appears to be dead and the like during use, the control switch 208 can be used for restarting, on the one hand, the restarting speed of the micro-current controller 2 can be faster, on the other hand, the possibility of misoperation can be effectively reduced.
[0042] It should be noted that, as shown in FIG. 1, Figure 2 and Figures 4 to 6As shown, the first charging connecting piece 102 in the embodiment includes a charging electrode 110, an adsorption structure 111 and a waterproof pad 112, and the charging electrode 110 is arranged between the two adsorption structures 111 through the waterproof pad 112. Each group of the charging electrode 110 preferably adopts two charging spring needles as a charging positive electrode and a charging negative electrode respectively, which are used to realize the charging effect on the micro-current controller 2 when they are pressed against the electrode contact column 209. Of course, other charging electrode structures can also be used in actual application. The charging spring needle has a high use frequency and a small diameter, and may have the problem of liquid penetration in actual application, thereby affecting the service life of internal circuit boards and other devices. In addition, the charging spring needle may also be bent or damaged under external force, and therefore, the charging electrode 110 in the embodiment is sleeved in the waterproof pad 112, thereby not only achieving the waterproof effect, but also protecting the charging spring needle from being bent or damaged, thereby effectively prolonging the service life. The adsorption structure 111 is used to realize the adsorption effect on the micro-current controller 2, so that the charging electrode 110 and the electrode contact column 209 can be quickly aligned and stably connected.
[0043] As shown in Figure 3 and Figure 7 , the second charging connecting piece 201 in the embodiment includes an electrode contact column 209 and an EMS electrode 210, and the electrode contact column 209 is arranged between the two EMS electrodes 210. It is also worth mentioning that, first, the EMS electrode 210 is integrated in the second charging connecting piece 201 in the embodiment, thereby making the second charging connecting piece 201 not only a connecting structure for charging function, but also a micro-current discharge structure for EMS, thereby improving the space utilization and rationality of the product. Secondly, since the electrode contact column 209 is used as a connecting structure for the charging electrode 110, it only needs to be contacted and connected. The two EMS electrodes 210 of the same micro-current controller 2 need to be contacted and connected with the positive silver paste and the negative silver paste of the electronic mask respectively to realize the micro-current discharge, and therefore, the two EMS electrodes 210 arranged at the two ends of the electrode contact column 209 of the same micro-current controller 2 can well ensure that there is a certain distance between the positive silver paste and the negative silver paste of the electronic mask, so as to avoid the problem of short circuit or interference, which is very important.
[0044] When the micro-current controller 2 is received in the receiving portion 101, the charging electrode 110 is connected with the electrode contact column 209 to charge the micro-current controller 2; the position of the adsorption structural member 111 corresponds to the position of the EMS electrode 210, and the adsorption structural member 111 can realize adsorption and positioning of the micro-current controller 2, facilitate quick alignment of the charging electrode 110 and the electrode contact column 209, and keep stable connection relationship.
[0045] As shown in Figure 7 , the micro-current controller 2 of the embodiment preferably further comprises a conductive cotton 211, a battery back adhesive 212 and a second battery foam 213, the conductive cotton 211 is arranged between the EMS electrode 210 and the EMS circuit board 202 to facilitate ensuring the conductive effect; the battery back adhesive 212 and the second battery foam 213 are arranged on both sides of the second battery 203 respectively to ensure the reliable performance of the second battery 203.
[0046] As shown in Figure 6 and Figure 7 , preferably, the adsorption structural member 111 and the EMS electrode 210 of the embodiment both adopt T-shaped magnets, that is, the EMS electrode 210 directly serves as a micro-current discharge electrode through the T-shaped magnet, which can realize the function of EMS micro-current discharge and the adsorption function of the magnet; and the T-shaped magnet is arranged in the accommodating hole of the respective shell through the wider end of the T-shaped magnet, thereby realizing the limiting and fixing effects. The adsorption structural member 111 is embedded in the receiving portion 101, that is, the upper surface of the adsorption structural member 111 is lower than the upper surface of the receiving portion 101 to form a recessed structure, as shown in Figure 2 ; correspondingly, the EMS electrode 210 is protrudingly arranged on the side of the micro-current controller 2 close to the charging control box 1, that is, the EMS electrode 210 protrudes from the bottom of the second charging connecting member 201, as shown in Figure 3 , thereby realizing good matching adsorption effect with the adsorption structural member 111 to prevent the micro-current controller 2 from falling out, and making the EMS electrode 210 more easily contact the positive silver paste and negative silver paste of the electronic mask in the use state, and the overall structure is more reasonable and reliable.
[0047] Preferably, in the first charging connector 102 of the embodiment, the two end adsorption structure 111 respectively adopts a T-shaped magnet with different polarities at the top; that is, in the first charging connector 102 corresponding to the same micro-current controller 2, the two end adsorption structure 111, one adopts a T-shaped magnet with N-pole at the top, and the other adopts a T-shaped magnet with S-pole at the top; At the same time, the bottom polarity of the EMS electrode 210 of the micro-current controller 2 is opposite to the top polarity of the corresponding adsorption structure 111, so as to realize the fool-proof design by the characteristics of same polarity repulsion and different polarity attraction, and avoid the problem of incorrect connection of positive and negative electrodes.
[0048] As shown in Figure 1 , Figure 2 and Figures 4 to 6 , the storage part 101 of the embodiment is a recessed storage groove, and one or more first charging connectors 102 are arranged in the storage groove. In the embodiment, the storage groove preferably has two first charging connectors 102 arranged side by side, so as to be able to simultaneously charge and store two micro-current controllers 2. At this time, the inner wall shape of the storage groove is preferably matched with the outer wall shape of the micro-current controller 2.
[0049] The above-mentioned specific embodiments are the preferred embodiments of the utility model, and are not intended to limit the specific implementation range of the utility model. The scope of the utility model includes but is not limited to the specific embodiments, and equivalent changes made according to the shape and structure of the utility model are within the protection scope of the utility model.
Claims
1. A beauty device with a charging control box, characterized in that, include: A charging control box and a microcurrent controller are provided, wherein the charging control box is wirelessly connected to the microcurrent controller; the charging control box is provided with a storage part for accommodating the microcurrent controller, the storage part is provided with a first charging connector, and the microcurrent controller is provided with a second charging connector corresponding to the first charging connector.
2. The beauty device with a charging control box according to claim 1, characterized in that, The charging control box includes a control box housing, a motherboard, a charging adapter board, and a button assembly. The control box housing includes a first housing and a second housing connected together. The motherboard and the charging adapter board are disposed between the first housing and the second housing. The first charging connector is connected to the motherboard through the charging adapter board. The button assembly is disposed on the control box housing and connected to the motherboard. The microcurrent controller includes a controller housing, an EMS circuit board, and a second battery. The controller housing includes a third housing and a fourth housing connected together. The EMS circuit board and the second battery are disposed between the third housing and the fourth housing. The second battery and the second charging connector are respectively connected to the EMS circuit board. The EMS circuit board is wirelessly connected to the motherboard.
3. The beauty device with a charging control box according to claim 2, characterized in that, The charging control box also includes a charging board and a first battery, which are respectively connected to the motherboard.
4. The beauty device with a charging control box according to claim 2, characterized in that, The microcurrent controller also includes a mounting bracket disposed between the third housing and the fourth housing. The mounting bracket has a through hole. The EMS circuit board and the second battery are respectively disposed on both sides of the mounting bracket and connected through the through hole.
5. The beauty device with a charging control box according to claim 2, characterized in that, The microcurrent controller also includes a control switch, which is disposed on the controller housing and connected to the EMS circuit board.
6. The beauty device with a charging control box according to any one of claims 1 to 5, characterized in that, The first charging connector includes a charging electrode, an adsorption structure, and a waterproof pad. The charging electrode is disposed between the adsorption structures at both ends via the waterproof pad. The second charging connector includes an electrode contact post and an EMS electrode. The electrode contact post is disposed between the EMS electrodes at both ends. The position of the adsorption structure corresponds to the position of the EMS electrode.
7. The beauty device with a charging control box according to claim 6, characterized in that, Both the adsorption structure and the EMS electrode are T-shaped magnets. The adsorption structure is embedded in the storage part, and the EMS electrode is protruding on the side of the microcurrent controller near the charging control box.
8. The beauty device with a charging control box according to claim 7, characterized in that, Within the same first charging connector, the adsorption structures at both ends respectively adopt T-shaped magnets with different polarities at the top; the bottom polarity of the EMS electrode is opposite to the top polarity of the corresponding adsorption structure.
9. The beauty device with a charging control box according to claim 6, characterized in that, The microcurrent controller also includes conductive cotton, battery adhesive, and second battery foam. The conductive cotton is disposed between the EMS electrode and the EMS circuit board, and the battery adhesive and second battery foam are disposed on both sides of the second battery, respectively.
10. The beauty device with a charging control box according to any one of claims 1 to 5, characterized in that, The storage section is a recessed storage groove, and one or more first charging connectors are provided in the storage groove.