Beauty devices and how to use them
By designing a beauty device that includes diastolic components and activation components, and using the host to collect user information to formulate a personalized solution, the problem of low intelligence of existing plasma medical beauty products is solved, and the efficient absorption of beauty liquid and the improvement of beauty effects is achieved.
Patent Information
- Application Number
- CN202510144395.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2045-02-10
AI Technical Summary
The existing plasma medical beauty products are low in intelligence, and cannot customize beauty solutions for different users, and cannot set different usage intensity and time according to the user's skin characteristics, cannot adapt to complex beauty solutions, and the absorption effect of beauty liquid is poor.
Design a beauty instrument, including diastolic components and activation components, collect user information through the host body to develop a personalized beauty plan, use a plasma generator to generate low-temperature plasma to stimulate the skin, and apply activated beauty solution in time after the skin is relaxed, and use an intelligent control module to adjust the working parameters of the plasma generator and activation module.
A customized beauty solution for different users has been realized, which has improved the absorption effect of beauty liquid, fully utilized the role of beauty liquid, and improved the intelligence of beauty instruments.
Smart Images

Figure CN120053886B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of beauty instruments, and in particular to a beauty instrument and a method of using the same. Background Art
[0002] The main issues with related plasma medical aesthetic products are as follows: 1. Low intelligence, making it impossible to tailor customized medical aesthetic plans to different users. 2. Fixed output intensity and single functionality, making it impossible to adjust the intensity and duration of use based on individual skin characteristics. 3. Unsuitable for complex beauty regimens, and when used with beauty serums or other medications, the skin absorbs the serum or medication poorly. 4. Plasma activation solutions are often prepared separately and then applied manually, which takes a long time, reducing the content of short-lived substances in RONS (Reactive Oxygen and Nitrogen Species), preventing the full effectiveness of the beauty serum. Summary of the Invention
[0003] The present invention aims to at least partially address one of the technical problems in the related art. To this end, one object of the present invention is to provide a highly intelligent beauty device that can customize beauty regimens for different users. The device can relax the user's skin according to the customized regimen and, after the skin is relaxed, promptly apply activated beauty serum to the user's skin surface to fully utilize the serum's effects.
[0004] The second object of the present invention is to provide a method for using the beauty instrument.
[0005] To achieve the above objectives, a first embodiment of the present invention provides a beauty instrument, comprising: N relaxation components, each comprising a plasma generator, wherein N ≥ 1 and N is an integer; M activation components, each comprising an application module and an activation module, wherein the activation module is used to activate a beauty serum and the application module is used to draw out the activated beauty serum, wherein M ≥ 1 and M is an integer; a main body, connected to the N relaxation components and the M activation components, respectively, for collecting basic information and skin information of a user and formulating a beauty regimen for the user based on the basic information and skin information, wherein the beauty regimen includes at least one of a relaxation sub-routine and an activation sub-routine, controlling the plasma generator to generate low-temperature plasma according to the relaxation sub-routine to relax the skin, and / or controlling the activation module to activate the beauty serum according to the activation sub-routine when determining that the application module is to apply the beauty serum, so that the application module applies the activated beauty serum to the skin surface to promote the skin to absorb the activated beauty serum.
[0006] According to the embodiment of the present invention, the beauty instrument can customize beauty plans for different users, and control the plasma generator in the relaxation component to relax the user's skin according to the customized relaxation sub-plan. After the user's skin is relaxed, the activation component is controlled according to the customized activation sub-plan to promptly apply the activated beauty liquid to the skin surface, so that the user's skin can better absorb the activated beauty liquid and give full play to the effect of the beauty liquid.
[0007] In addition, the beauty device according to the above embodiment of the present invention may also have the following additional technical features:
[0008] According to one embodiment of the present invention, the main body includes: an information interaction module, which is used to collect the basic information and skin information of the user; a first control module, which is connected to the information interaction module, and is used to obtain the basic information and skin information of the user, establish the user's information file based on the basic information and the skin information, and determine the user's beauty plan based on the information file; an information storage module, which is connected to the first control module, and is used to store at least one of the user's basic information, skin information, information file and beauty plan.
[0009] According to one embodiment of the present invention, the relaxation sub-scheme includes a relaxation time and a relaxation intensity, and the relaxation component includes: a second control module, connected to the first control module, for receiving the relaxation sub-scheme, interpreting the relaxation sub-scheme to obtain a target relaxation time and a target relaxation intensity, and determining the amplitude and frequency of a high-voltage pulse output by a high-voltage generator in the relaxation component based on the target relaxation intensity to obtain a first target amplitude and a first target frequency; and using a timing mechanism to control the plasma generator to stop operating when the time for the plasma generator to generate low-temperature plasma reaches the target relaxation time; a high-voltage modulation module, connected to the second control module, for modulating the high-voltage pulse output by the high-voltage generator based on the first target amplitude and the first target frequency to output a high-voltage control signal; the high-voltage generator, connected to the high-voltage modulation module, for generating a high-voltage pulse having a first target amplitude and a first target frequency based on the high-voltage control signal; and a plasma generator, connected to the high-voltage generator, for generating low-temperature plasma based on the high-voltage pulse having the first target amplitude and the first target frequency.
[0010] According to one embodiment of the present invention, the activation sub-scheme includes a type of beauty liquid, an activation time, and a target application residence time. The activation component includes: a third control module connected to the first control module, configured to receive the activation sub-scheme, interpret the activation sub-scheme, obtain a target type of beauty liquid, a target activation time, and a target application residence time, and determine the amplitude, frequency, and duty cycle of the high-voltage pulse output by the pulse high-voltage source in the activation component according to the target type of beauty liquid to obtain a second target amplitude, a second target frequency, and a target duty cycle; a liquid storage component for storing the beauty liquid of the target type; and an activation module including a liquid pump, an electrode array, and an insulating pipe. The liquid pump is connected to the third control module, and the liquid pump is connected to the liquid storage component via a hose. The liquid pump is provided at one end of the insulating pipe, and an electrode array is provided on the surface of the insulating pipe. The liquid pump is used to transport the beauty liquid in the liquid storage component to the insulating pipe; the application module includes a roller and a displacement sensor, the roller is arranged at one end of the insulating pipe away from the liquid pump, the roller is used to draw the beauty liquid in the insulating pipe for application to the skin surface, and the displacement sensor is used to send a displacement signal when it detects the movement of the roller; the first detection module is connected to the displacement sensor and is used to send a start signal to the pulse high-voltage source when it receives the displacement signal; the pulse high-voltage source is connected to the first detection module, the third control module, and the electrode array, and is used to generate a high-voltage pulse with a second target amplitude, a second target frequency, and a target duty cycle based on the second target amplitude, the second target frequency, and the target duty cycle, so that the electrode array performs low-temperature plasma activation on the beauty liquid in the insulating pipe.
[0011] According to one embodiment of the present invention, the relaxation sub-scheme further includes a plasma generator type, wherein the plasma generator type includes a contact type and a non-contact type, and the plasma generator includes a contact type plasma generator and a non-contact type plasma generator; wherein the second control module is used to obtain a target plasma generator type when interpreting the relaxation sub-scheme to determine the plasma generator to be used.
[0012] According to one embodiment of the present invention, the activation sub-scheme includes an activation temperature, and the activation component includes: a temperature control module, including a temperature sensor and a cooling unit, the temperature sensor is used to collect the current temperature of the beauty liquid in the liquid storage component, and the cooling unit is used to cool the beauty liquid in the liquid storage component; a heating module is used to heat the beauty liquid in the liquid storage component; wherein the third control module is connected to the temperature sensor, the cooling unit and the heating module respectively, and is used to interpret the activation sub-scheme to obtain a target activation temperature, and control the temperature control module to cool the beauty liquid in the liquid storage component and / or control the heating module to heat the beauty liquid in the liquid storage component according to the target activation temperature and the current temperature, so that the current temperature of the beauty liquid in the liquid storage component is maintained at the target activation temperature.
[0013] According to one embodiment of the present invention, the main body further includes a first power supply module and an interface module, the input end of the first power supply module is connected to an external power supply, the output end of the first power supply module is respectively connected to the power supply end of the first control module and the input end of the interface module, and the first power supply module is used to provide the required electrical level to the first control module and the interface module; the first output end of the interface module is connected to the input end of the base in the main body, and the output end of the base is plug-connected to the first interface in the diastolic component, and while the diastolic component is placed on the base, it is connected to the charging module in the diastolic component through the first interface, so as to use the charging module to charge the energy storage module in the diastolic component, and the energy storage module is respectively electrically connected to the second control module, the high-voltage modulation module, the high-voltage generator and the plasma generator, and the energy storage module is used to supply electrical power to the second control module, the high-voltage modulation module, the high-voltage generator and the plasma generator. the second output end of the interface module is connected to the input end of the second interface in the activation component, the first output end of the second interface is connected to the second power supply module in the activation component, for providing the required level to the second power supply module, the second power supply module is respectively connected to the third control module, the temperature control module, the heating module, and the pulse high-voltage source, for providing the required level to the third control module, the temperature control module, the heating module, and the pulse high-voltage source; wherein the second output end of the second interface is connected to the third control module in the activation component to realize the communication connection between the first control module and the third control module, and the first control module is further used to obtain the activation component status fed back by the third control module before controlling the activation module to activate the beauty liquid according to the activation sub-scheme when determining that the application module is applying, and determine that the activation component meets the working conditions.
[0014] According to one embodiment of the present invention, the relaxation component also includes a second detection module, one end of the second detection module is connected to the first interface, and the other end of the second detection module is connected to the second control module, for detecting the contact status between the first interface and the base, and sending a charging signal when it is determined that the contact status is a safe state; wherein, the second control module is used to control the charging module to charge the energy storage module when receiving the charging signal.
[0015] According to one embodiment of the present invention, the main body further includes a first communication module connected to the first control module; the diastolic component includes a second communication module connected to the second control module; the first communication module and the second communication module are communicatively connected to realize the communication connection between the first control module and the second control module; wherein, the first control module is further used to obtain the diastolic component status fed back by the second control module before controlling the plasma generator to generate low-temperature plasma according to the diastolic sub-scheme, and determine that the diastolic component meets the working conditions.
[0016] To achieve the above-mentioned purpose, a second embodiment of the present invention proposes a method for using a beauty instrument, which is used for the beauty instrument as described in any one of claims 1 to 9, and the method includes: collecting basic information and skin information of the user, and formulating a beauty plan for the user based on the basic information and skin information, wherein the beauty plan includes at least one of a relaxation sub-plan and an activation sub-plan; controlling a plasma generator to generate low-temperature plasma according to the relaxation sub-plan to relax the skin, and / or controlling an activation module to activate the beauty liquid according to the activation sub-plan when determining that the application module is to apply, so that the application module applies the activated beauty liquid to the skin surface to promote the skin to absorb the activated beauty liquid.
[0017] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic diagram of a beauty instrument according to an embodiment of the present invention;
[0019] Figure 2 is a schematic diagram of a beauty instrument according to a specific embodiment of the present invention;
[0020] Figure 3 is a schematic diagram of an activation module according to a specific embodiment of the present invention;
[0021] Figure 4 This is a flow chart of a method for using a beauty instrument according to an embodiment of the present invention.
[0022] Description of labels:
[0023] 100. Main body; 200. Relaxation component; 300. Activation component; 10. First control module; 11. Information interaction module; 12. Information storage module; 13. First communication module; 14. First power supply module; 15. Interface module; 16. Base; 20. Second control module; 21. High-voltage modulation module; 22. High-voltage generator; 23. Plasma generator; 24. First interface; 25. Charging module; 26. Energy storage module; 27. Second detection module; 28. Second communication module; 30. Third control module; 31. Liquid storage component; 32. Activation module; 33. Coating module; 34. First detection module; 35. Pulse high-voltage source; 36. Temperature control module; 37. Heating module; 38. Second interface; 39. Second power supply module. DETAILED DESCRIPTION
[0024] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and are not to be construed as limiting the present invention.
[0025] The beauty instrument and the method of using the embodiment of the present invention are described in detail below with reference to the accompanying drawings and specific implementation methods.
[0026] Figure 1 FIG is a schematic diagram of a beauty instrument according to an embodiment of the present invention. Figure 1 As shown, the beauty instrument may include:
[0027] N diastolic assemblies 200 , each diastolic assembly 200 including a plasma generator 23 , wherein N ≥ 1, and N is an integer;
[0028] M activation components 300, each including an application module 33 and an activation module 32, wherein the activation module is used to activate the beauty liquid, and the application module is used to draw out the activated beauty liquid, where M ≥ 1, where M is an integer;
[0029] The main body 100 is connected to N relaxation components 200 and M activation components 300, respectively, and is used to collect basic information and skin information of the user and formulate a beauty plan for the user based on the basic information and skin information, wherein the beauty plan includes at least one of a relaxation sub-plan and an activation sub-plan. According to the relaxation sub-plan, the plasma generator is controlled to generate low-temperature plasma to relax the skin, and / or when it is determined that the application module 33 is to apply the beauty liquid, the activation module 32 is controlled according to the activation sub-plan to activate the beauty liquid, so that the application module 33 applies the activated beauty liquid to the skin surface to promote the skin to absorb the activated beauty liquid.
[0030] The main body 100 in the beauty instrument of the embodiment of the present invention is respectively connected to N relaxation components 200 and M activation components 300, and can customize beauty plans for different users. According to the beauty plans customized for each user, customized skin relaxation is performed on the skin of multiple users at the same time, and / or the required activated beauty serum is applied to multiple users.
[0031] In order to improve the intelligence of the beauty instrument, the main body 100 in the beauty instrument of the embodiment of the present invention can collect the user's basic information and skin information, and customize a beauty plan for the user based on the user's basic information and skin information.
[0032] The customized beauty regimen includes at least one of a relaxation sub-routine and an activation sub-routine. The relaxation sub-routine includes at least one of a target relaxation time, a target relaxation intensity, and a target plasma generator type. The activation sub-routine includes at least one of a target beauty serum type, a target activation time, a target application dwell time, and a target activation temperature.
[0033] The main body 100 in the embodiment of the present invention is respectively connected to the relaxation component 200 and the activation component 300 for communication, and is used to send its customized relaxation sub-scheme and activation sub-scheme to the relaxation component 200 and the activation component 300 respectively, and the relaxation component 200 and the activation component 300 execute the corresponding sub-schemes.
[0034] Specifically, the main body 100 transmits the relaxation sub-protocol to the corresponding relaxation component 200, which then controls the plasma generator 23 to generate low-temperature plasma with the target relaxation time and intensity. The relaxation component 200 in this embodiment of the present invention utilizes the sterilizing and cell proliferation-promoting properties of low-temperature plasma to regulate skin mechanisms. It also utilizes the modification properties of low-temperature plasma to expand the distance between surface skin cells, increasing drug and moisture absorption and enhancing cosmetic effects.
[0035] Specifically, the main body 100 transmits the activation sub-scheme to the corresponding activation component 300, which then controls the application module 33 to promptly apply the beauty serum activated by the activation module 32 to the skin surface. In this embodiment of the present invention, the activation component 300 utilizes a roller-linked trigger mechanism. Specifically, upon determining that the application module 33 in the activation component 300 has begun application, the activation module 32 in the activation component 300 activates the beauty serum according to the activation sub-scheme. This ensures that the application module 33 promptly applies the activated beauty serum to the skin surface, preventing the depletion of short-lived substances in the beauty serum RONS over time and ensuring that the beauty serum is fully effective.
[0036] The beauty device of the embodiment of the present invention can customize beauty plans for different users, and control the plasma generator in the corresponding relaxation component 200 to relax the user's skin according to the customized relaxation sub-plan. After the user's skin is relaxed, the corresponding activation component 300 is controlled according to the customized activation sub-plan to promptly apply the activated beauty liquid to the skin surface, so that the user's skin can better absorb the activated beauty liquid and give full play to the effect of the beauty liquid.
[0037] In one embodiment of the present invention, Figure 2 As shown, the main body 100 includes:
[0038] Information interaction module 11, used to collect basic information and skin information of the user;
[0039] The first control module 10 is connected to the information interaction module 11 and is used to obtain the user's basic information and skin information, establish the user's information profile based on the basic information and skin information, and determine the user's beauty plan based on the information profile;
[0040] The information storage module 12 is connected to the first control module 10 and is used to store at least one of the user's basic information, skin information, information files and beauty plans.
[0041] Specifically, the information interaction module 11 can guide the user through images, text, sound, and light information to collect the user's basic information and skin information. In practice, the information interaction module 11 can include a touch screen display, a camera, etc., and can use the touch screen display to collect the user's basic information, such as gender, age, etc. The camera can also be used to collect the user's skin information.
[0042] The first control module 10 obtains the basic information and skin information of the user collected by the information interaction module 11, establishes an information profile of the user based on the basic information and skin information, and classifies the user's skin type and health status based on the basic information and skin information of the user in the information profile, and customizes a beauty plan for the user.
[0043] In this embodiment of the present invention, the first control module 10 is in communication with the second control module 20 in the relaxation component 200 and the third control module 30 in the activation component 300. The module transmits the customized relaxation and activation sub-protocols to the second and third control modules 20 and 30, respectively. The second control module 20 interprets the relaxation sub-protocol to determine the target relaxation time, target relaxation intensity, and target plasma generator type, enabling the relaxation component 200 to relax the user's skin. The third control module 30 interprets the activation sub-protocol to determine the target beauty serum type, target activation time, target application dwell time, and target activation temperature, enabling the activation component 300 to activate the target beauty serum and promptly apply the activated beauty serum to the user's skin.
[0044] After the user has undergone beauty treatment, the first control module 10 receives the beauty records fed back by the second control module 20 and the third control module 30, and stores the beauty records in the user's information file so that when a beauty plan is subsequently customized for the user, the beauty plan can be re-customized based on the user's basic information, skin information and beauty records in the information file.
[0045] In this embodiment of the present invention, the first control module 10 not only stores basic information, skin information, and beauty regimens corresponding to different users in the information storage module 12, but also enables overall control and information aggregation of the main body 100, the relaxation component 200, and the activation component 300. Specifically, the information storage module 12 can store various data related to the relaxation component 200 and the activation component 300, including component status information, beauty records, fault status information, maintenance information, and consumables.
[0046] In one embodiment of the present invention, the relaxation sub-protocol includes relaxation time and relaxation intensity, such as Figure 2 As shown, the diastolic assembly 200 may include:
[0047] The second control module 20 is connected to the first control module 10 and is configured to receive the relaxation sub-scheme, interpret the relaxation sub-scheme, obtain a target relaxation time and a target relaxation intensity, determine the amplitude and frequency of the high-voltage pulse output by the high-voltage generator 22 in the relaxation component 200 based on the target relaxation intensity, obtain a first target amplitude and a first target frequency, and use a timing mechanism to control the plasma generator 23 to stop operating when the time for the plasma generator 23 to generate low-temperature plasma reaches the target relaxation time;
[0048] The high-voltage modulation module 21 is connected to the second control module 20 and is used to modulate the high-voltage pulse output by the high-voltage generator 22 according to the first target amplitude and the first target frequency, and output a high-voltage control signal;
[0049] a high voltage generator 22 connected to the high voltage modulation module 21 and configured to generate a high voltage pulse of a first target amplitude and a first target frequency according to the high voltage control signal;
[0050] The plasma generator 23 is connected to the high voltage generator 22 and is used to generate low-temperature plasma according to a high voltage pulse with a first target amplitude and a first target frequency.
[0051] The second control module 20 in the embodiment of the present invention is the core control module of the diastolic component 200 .
[0052] Specifically, the second control module 20 interprets the relaxation sub-scheme from the first control module 10 to obtain a target relaxation time and target relaxation intensity. Based on the target relaxation intensity, the second control module 20 determines the amplitude and frequency (first target amplitude and first target frequency) of the high-voltage pulse output by the high-voltage generator 22 in the relaxation component 200. The second control module 20 then controls the high-voltage modulation module 21 to modulate the high-voltage pulse output by the high-voltage generator 22, causing the plasma generator 23 to generate low-temperature plasma with the target relaxation intensity. A timing mechanism is also used to control the relaxation duration of the plasma generator 23.
[0053] In one embodiment of the present invention, the target diastolic intensity is within a range of 1 to 10. The corresponding high-voltage modulation module 21 has an adjustable output intensity of 1 to 10 levels, corresponding to an amplitude range of 1 to 5 kV (kilovolts) and a frequency range of 50 Hz to 200 kHz (kilohertz), which can be flexibly adjusted according to different skin types.
[0054] In a specific embodiment, the high-voltage generator 22 adopts the charge accumulation charging and discharging principle, and controls the charging rate of the high-voltage capacitor in the high-voltage generator 22 and the switching frequency of the discharge according to the high-voltage pulse frequency and amplitude output by the high-voltage modulation module 21, thereby completing the generation of pulsed high voltage of a specific frequency and amplitude, which acts on the plasma generator 23.
[0055] In one specific embodiment, the high-voltage modulation module 21 adopts a V / F (Voltage / Frequency) control architecture, a full-bridge push-pull drive circuit composed of MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) and a drive network composed of a high-frequency transformer to complete the control of the diastolic frequency and diastolic amplitude of the high-voltage pulse output by the high-voltage generator 22. The high-voltage modulation module 21 in this embodiment, on the one hand, completes the conversion of DC and AC energy types, and on the other hand, regulates the real-time state of the high-voltage signal output by the high-voltage generator 22, so that the control parameters of the high-voltage signal output by the high-voltage generator 22 meet the design indicators.
[0056] In one embodiment of the present invention, the relaxation sub-scheme may further include a plasma generator type, wherein the plasma generator type may include a contact type and a non-contact type, and the plasma generator may include a contact type plasma generator and a non-contact type plasma generator;
[0057] The second control module 20 is used to interpret the relaxation sub-scheme to obtain the target plasma generator type to determine the plasma generator to be used.
[0058] Because the plasma generator of conventional plasma beauty devices needs to be in close contact with the skin, it is difficult to use on skin with acne or other wounds due to pain. The plasma generator of the embodiment of the present invention has two structural shapes: contact plasma generator and non-contact plasma generator. It adopts a detachable design and can determine the type of plasma generator based on the user's skin information.
[0059] Specifically, the second control module 20 interprets the relaxation sub-scheme to obtain the target relaxation time and target relaxation intensity, and also obtains the target plasma generator type.
[0060] In an embodiment of the present invention, Figure 2 As shown, the diastolic component 200 may include: a first information display module, and the first information display module is connected to the second control module 20.
[0061] Specifically, the target relaxation time, target relaxation intensity, and target plasma generator type interpreted by the second control module 20 can be displayed on the first information display module so that the user can select a plasma generator of the target plasma generator type, that is, a contact plasma generator or a non-contact plasma generator.
[0062] In a specific embodiment, the first information display module uses a TFT liquid crystal display to display information such as the power level of the energy storage module 26, the key status of the key control module, the action time, and the connection status with the main body 100.
[0063] In one embodiment, the contact plasma generator utilizes a plasma-generating surface made of ceramic insulating material with excellent curvature and skin-friendliness. It also utilizes the DBD (Dielectric Barrier Discharge) plasma generation principle. When placed against the skin, the contact plasma generator ionizes the air between the ceramic surface and the user's skin to generate low-temperature plasma.
[0064] It should be noted that the surface contact material of the contact type plasma generator is not limited to ceramics, alumina, mullite, heat-resistant glass, quartz and other materials.
[0065] In a specific embodiment, the non-contact plasma generator is composed of a power shunt unit and an electrode array unit. In this embodiment, the power shunt unit is divided into a main circuit buried resistance type, a branch circuit buried resistance type, and a straight-through type. The main circuit buried resistance type refers to a 100Ω-10kΩ resistor connected in series on the main circuit of the input pulse high voltage power, and the rear end of the resistor is connected to each output electrode. The branch circuit buried resistance type refers to a 100Ω-10kΩ resistor connected in series at the front end of each electrode. The straight-through type means that the pulse high voltage acts directly on the electrode without attenuation. In this embodiment, the carriers of the electrode needles in the electrode array unit include a 6-30-needle circular array, a 40-120-needle square array, and a 20-120-needle rectangular array. The electrode needles have a diameter of 0.8-1.5mm and are made of gold-plated metal. The metal includes but is not limited to copper, iron, and aluminum. It generates low-temperature plasma and acts directly on the user's skin surface.
[0066] In one embodiment of the present invention, Figure 2 As shown, the diastolic component 200 may include: a button control module, which is connected to the second control module 20.
[0067] Specifically, when the second control module 20 interprets the target diastolic time, target diastolic intensity and target plasma generator type, the target diastolic time, target diastolic intensity and target plasma generator type can be adjusted through the key control module according to user needs.
[0068] In a specific embodiment, the key control module has the functions of start, pause, and stop, and adopts a light-touch low-key travel design. At the same time, it adopts a design mechanism of long pressing for 2 seconds to start and short pressing to stop to prevent accidental start; it is convenient for users to flexibly control the rhythm during the skin relaxation process.
[0069] In one embodiment of the present invention, Figure 2 As shown, the main body 100 also includes a first communication module 13, which is connected to the first control module 10; the diastolic component 200 includes a second communication module 28, which is connected to the second control module 20; the first communication module 13 is communicatively connected to the second communication module 28 to realize the communication connection between the first control module 10 and the second control module 20; wherein, the first control module 10 is also used to obtain the diastolic component status fed back by the second control module 20 before controlling the plasma generator 23 to generate low-temperature plasma according to the diastolic sub-scheme, and determine that the diastolic component meets the working conditions.
[0070] Specifically, the first communication module 13 in the main body 100 wirelessly connects to the second communication module 28 in the relaxation component 200, enabling communication between the first control module 10 and the second control module 20. The second control module 20 is connected to the energy storage module 26, the key control module, and the plasma generator 23 in the relaxation component 200, and feeds back information about the energy storage module 26's power level, the key control module's key control information, and the duration of the plasma generator 23's application to the skin to the first control module 10. The first control module 10 stores the relaxation recording information generated by the relaxation component 200 in the information storage module 12.
[0071] In a specific embodiment, the communication protocol between the first communication module 13 and the second communication module 28 can adopt Wi-Fi, Zigbee, or Bluetooth transmission protocols.
[0072] In a specific embodiment, when the first communication module 13 and the second communication module 28 communicate wirelessly, a pairing mode is applied, and a data frame data verification and communication response mechanism are adopted to ensure data accuracy. Specifically, the first communication module 13 and the second communication module 28 respectively parse and verify the transmitted data packets and reply with response information. The downlink information transmitted by the first communication module 13 to the second communication module 28 is mainly the skin relaxation sub-scheme generated by the first control module 10 for the user, covering the relaxation amplitude, relaxation frequency, and relaxation time. The uplink information transmitted by the second communication module 28 to the first communication module 13 is mainly the power information of the energy storage module 26 in the relaxation component 200, the button status information of the button control component, and the parameter information and action time information of the plasma generated by the high-voltage modulation module 21, the high-voltage generator 22, and the plasma generator 23.
[0073] The relaxation component 200 in the beauty instrument according to the embodiment of the present invention utilizes the second control module 20 to execute different activation sub-schemes to automatically control the intensity and duration of the low-temperature plasma generated by the plasma generator 23 .
[0074] In one embodiment of the present invention, the activation sub-scheme may include the type of beauty serum, activation time and application dwell time, such as Figure 2As shown, the activation component 300 may include: a third control module 30, which is connected to the first control module 10, and is used to receive the activation sub-scheme, interpret the activation sub-scheme, obtain the target type of beauty liquid, the target activation time and the target application residence time, and determine the amplitude, frequency and duty cycle of the high-voltage pulse output by the pulse high-voltage source 35 in the activation component 300 according to the target type of beauty liquid, and obtain the second target amplitude, second target frequency and target duty cycle; a liquid storage component 31, which is used to store the beauty liquid of the target type of beauty liquid; the activation module 32 may include a liquid pump, an electrode array and an insulating pipe, the liquid pump is connected to the third control module 30, the liquid pump is connected to the liquid storage component 31 through a hose, the liquid pump is provided at one end of the insulating pipe, the surface of the insulating pipe is provided with an electrode array, and the liquid pump is used to The beauty liquid in the liquid storage component 31 is transported to the insulating pipe; the application module 33 may include a roller and a displacement sensor. The roller is arranged at the end of the insulating pipe away from the liquid pump. The roller is used to draw the beauty liquid in the insulating pipe out for application to the skin surface. The displacement sensor is used to send a displacement signal when the movement of the roller is detected; the first detection module 34 is connected to the displacement sensor and is used to send a start signal to the pulse high-voltage source 35 when the displacement signal is received; the pulse high-voltage source 35 is connected to the first detection module 34, the third control module 30, and the electrode array and is used to generate a high-voltage pulse with a second target amplitude, a second target frequency, and a target duty cycle according to the second target amplitude, the second target frequency, and the target duty cycle, so that the electrode array performs low-temperature plasma activation on the beauty liquid in the insulating pipe.
[0075] The third control module 30 in the embodiment of the present invention is the core control module of the activation component 300 .
[0076] Specifically, the third control module 30 interprets the activation sub-scheme from the first control module 10 to obtain the target type of beauty liquid, the target activation time, and the target application residence time. Based on the target type of beauty liquid, the third control module 30 determines the amplitude, frequency, and duty cycle (second target amplitude, second target frequency, and target duty cycle) of the high-voltage pulse output by the pulsed high-voltage source 35 in the activation component 300, and activates the pulsed high-voltage source 35 to perform low-temperature plasma activation on the beauty liquid in the liquid storage component 31.
[0077] In one embodiment of the present invention, Figure 2 As shown, the activation component 300 also includes a second information display module, which is connected to the third control module 30 and is used to display the target beauty liquid type, target activation time and target application residence time interpreted by the third control module 30, so that the user can select the beauty liquid of the target type and place the beauty liquid of the target type in the liquid storage component 31.
[0078] In this embodiment of the present invention, liquid storage component 31 is used to store beauty serum. Based on the target type of beauty serum, the target type of beauty serum is poured into liquid storage component 31. In this embodiment of the present invention, the target types of beauty serum may include hydrating, anti-freckle, whitening, and anti-wrinkle.
[0079] In a specific embodiment, the liquid storage component 31 is designed to be detachable and reusable, and can have a volume range of 3 to 15 ml.
[0080] In one embodiment, the activation module 32 is a plasma activation module. Figure 3 As shown, the liquid pump pumps the beauty liquid in the liquid storage component 31 into the insulating pipe covered by the electrode array. The insulating pipe can be made of insulating materials such as quartz glass. It should be noted that Figure 3 Only one pair of electrodes (electrode HV+ and electrode HV-) is shown. The electrode array in the embodiment of the present invention includes multiple pairs of electrodes, and the embodiment of the present invention does not limit the number of pairs of electrodes in the electrode array.
[0081] In one specific embodiment, the insulating tube can have a diameter ranging from 3mm to 10mm (millimeter); a pair of ring-shaped electrodes is nested on the surface of the insulating tube, with the number of electrodes not limited to one pair (or two). The electrodes are made of gold-plated metal, including but not limited to copper, iron, and aluminum; the outer metal ring is perforated with holes ranging from 1mm to 5mm. The hole diameter can be flexibly adjusted based on the diameter of the insulating tube to optimize the distribution of the pulsed high voltage within the spatial electric field range, thereby optimizing the generation of low-temperature plasma. The electrode pairs can be arranged in an array to increase the liquid activation time, thereby increasing the RONS content in the activation solution, facilitating skin absorption and enhancing the cosmetic effect.
[0082] The electrode array of the embodiment of the present invention is connected to a pulsed high-voltage source 35. The high-voltage pulses of different frequencies, amplitudes, and duty cycles generated by the pulsed high-voltage source 35 activate the beauty liquid in the insulated pipe using DBD low-temperature plasma, making the activated beauty liquid more easily absorbed by the skin.
[0083] The roller in this embodiment of the present invention is used to draw freshly activated beauty serum from an insulated tube and apply it to the skin. A displacement sensor is installed on the corresponding roller to detect whether the roller is moving. When the roller moves, it generates a displacement signal. This displacement signal is directly transmitted to the pulsed high-voltage source 35 via a first detection module 34, causing the pulsed high-voltage source 35 to generate pulsed high-voltage activated beauty serum, achieving timely activation and application, thereby enhancing the beauty effect.
[0084] In a specific embodiment, the shape of the roller is not limited to circular, cylindrical, or elliptical, and the material includes but is not limited to silicone, resin, polyethylene, polypropylene, polyvinyl chloride, alumina ceramic, and zirconia ceramic.
[0085] In a specific embodiment, the displacement sensor includes but is not limited to an encoder, a displacement sensor, an acceleration sensor, and an infrared sensor.
[0086] In one embodiment, the first detection module 34 utilizes a TTL-to-optical-to-TTL conversion design. This allows the pulsed high-voltage source to activate immediately upon application of the beauty serum by the roller, performing low-temperature plasma activation on the beauty serum flowing through the activation module 32. Fiber optic isolation is used in the first detection module 34 to prevent signal interference from the random nature of the roller's movement, which could affect the operation of the pulsed high-voltage source 35.
[0087] In one embodiment, the first detection module 34 may include a motion detection unit, a signal conversion unit, and a signal output control unit. The motion detection unit is composed of a motion sensor and a signal processing circuit, wherein the motion sensor is not limited to a displacement sensor, an acceleration sensor, or an encoder. The signal processing circuit filters and performs anti-interference on the motion sensor signal and converts the analog quantity into a TTL level signal, including but not limited to an RLC circuit and an optocoupler conversion circuit. The signal conversion unit converts the TTL signal into an optical signal to increase the signal's anti-interference capability. The signal output control unit uses an isolated push-pull circuit to output the signal, enhancing driving capability and isolation, including but not limited to a push-pull circuit composed of a transistor or a MOSFET.
[0088] In a specific embodiment, the pulse high-voltage source 35 is a small pulse high-voltage source. The pulse generator in the small pulse high-voltage source adopts a V / F control architecture, a full-bridge push-pull drive circuit composed of MOSFET and a drive network composed of a high-frequency transformer to achieve the function of frequency, amplitude and duty cycle regulation. The high-frequency transformer adopts a high-frequency horizontal transformer to realize the conversion of low-voltage pulses into high-voltage pulses. By adjusting the frequency and amplitude of the input primary side, the voltage of the secondary side output high voltage and the power transmitted are adjusted. The primary skeleton of the high-frequency transformer is made of epoxy tube material, and the winding is made of copper strip material. The secondary two-way output adopts a polycarbonate rod multi-slot skeleton, and the winding is made of QA-1 / F material. The operating frequency covers 30Khz-200Khz, and the input and output stage isolation is DC15Kv.
[0089] In a specific embodiment, the pulse high voltage source 35 adopts a two-stage starting mode design. The third control module 30 must be pre-loaded with high voltage parameters (amplitude, frequency, and frequency) before the switching signal of the first detection module 34 can start the power supply, thereby increasing safety and energy saving.
[0090] In this embodiment, the pulse high voltage output range is: amplitude: 3kV to 15kV, frequency: 1Khz to 200Khz, and duty cycle: 10% to 85%.
[0091] In one embodiment of the present invention, the activation sub-scheme includes an activation temperature, and the activation component 300 may include: a temperature control module 36, including a temperature sensor and a cooling unit, the temperature sensor being used to collect the current temperature of the beauty liquid in the liquid storage component 31, and the cooling unit being used to cool the beauty liquid in the liquid storage component 31; a heating module 37 being used to heat the beauty liquid in the liquid storage component 31; wherein the third control module 30 is connected to the temperature sensor, the cooling unit, and the heating module 37, respectively, and is used to interpret the activation sub-scheme, obtain a target activation temperature, and control the cooling unit to cool the beauty liquid in the liquid storage component 31 and / or control the heating module 37 to heat the beauty liquid in the liquid storage component 31 based on the target activation temperature and the current temperature, so that the current temperature of the beauty liquid in the liquid storage component 31 is maintained at the target activation temperature.
[0092] Specifically, the third control module 30 interprets the activation sub-plan issued by the first control module 10 to determine the target beauty serum type, the amplitude, frequency, and duty cycle parameters of the high-voltage pulses for plasma activation, and the required temperature of the beauty serum. The third control module 30 activates the temperature control module 36, the heating module 37, and the pulsed high-voltage source 35 to perform low-temperature plasma activation on the beauty serum in the liquid storage component 31. The second information display module displays the target beauty serum type, target activation time, target application dwell time, and required beauty serum temperature as interpreted by the third control module 30.
[0093] In a specific embodiment, the second information display module adopts a TFT liquid crystal display, and the displayed information includes the real-time liquid level and real-time temperature of the liquid storage component 31, the cooling working status of the temperature control module 36, the heating working status of the heating module 37, and the working status of the beauty liquid activation module 32 composed of the activation module 32, the application module 33, the pulse high voltage source 35, and the first detection module 34.
[0094] In one specific embodiment, the temperature control module 36 may include a temperature sensor and a cooling unit comprising a fan array. The temperature sensor monitors the real-time temperature of the cosmetic liquid in the liquid storage component 31. The third control module 30 determines whether the current temperature is above or below the target activation temperature based on the target activation temperature and the current temperature. If the current temperature is above the target activation temperature, the cooling unit comprising the fan array is activated to cool the liquid storage component 31 to maintain it at the target activation temperature. If the current temperature is below the target activation temperature, the heating module 37 is activated to heat the liquid storage component 31 to maintain it at the target activation temperature.
[0095] It should be noted that the target activation temperature in the embodiments of the present invention can be a specific temperature value or a specific temperature range. When the target activation temperature is a temperature range, if the current temperature is higher than the upper limit of the target activation temperature, the liquid storage component 31 is cooled. If the current temperature is lower than the lower limit of the target activation temperature, the liquid storage component 31 is heated.
[0096] In one embodiment, the heating module 37 is composed of an array of heating wires and flame-resistant, thermally conductive material. The heating module 37 heats the liquid storage component 31 according to the PID control algorithm of the third control module 30 and simultaneously transmits real-time heating power data back to the third control module 30. The heating module 37 is connected to the second power supply module 39 in the activation assembly 300, converting the electrical energy provided by the second power supply module 39 into thermal energy to maintain the beauty liquid in the liquid storage component 31 within a stable temperature range.
[0097] In one specific embodiment, the temperature control module 36 may include a liquid level sensor connected to the third control module 30. The liquid level sensor is used to monitor the real-time liquid level of the cosmetic liquid in the liquid storage component 31 and transmit the real-time liquid level information to the third control module 30. Based on the real-time liquid level and a preset safety threshold, the third control module 30 determines whether the real-time liquid level is below the preset safety threshold. If the real-time liquid level is below the preset safety threshold, a liquid level alarm and real-time liquid level data are displayed on the second information display module and / or the information interaction module 11.
[0098] The relaxation component 200 in the beauty instrument of the embodiment of the present invention utilizes the third control module 30 to execute different activation sub-schemes, automatically controls the temperature of the beauty liquid, and executes different activation parameters of amplitude, frequency, and duty cycle for different beauty liquids.
[0099] In one embodiment of the present invention, the main body 100 further includes a first power supply module 14 and an interface module 15. The input end of the first power supply module 14 is connected to an external power source, and the output end of the first power supply module 14 is connected to the power supply end of the first control module 10 and the input end of the interface module 15, respectively. The first power supply module 14 is used to provide the required voltage level to the first control module 10 and the interface module 15.
[0100] The first output end of the interface module 15 is connected to the input end of the base 16 in the main body 100, and the output end of the base 16 is plugged into and connected to the first interface 24 in the diastolic component 200. While the diastolic component 200 is placed on the base 16, the first interface 24 is connected to the charging module 25 in the diastolic component 200 so that the charging module 25 can charge the energy storage module 26 in the diastolic component 200. The energy storage module 26 is respectively connected to the second control module 20, the high-voltage modulation module 21, the high-voltage generator 22, and the plasma generator 23. The energy storage module 26 is used to provide the required voltage levels to the second control module 20, the high-voltage modulation module 21, the high-voltage generator 22, and the plasma generator 23.
[0101] The second output end of the interface module 15 is connected to the input end of the second interface 38 in the activation component 300, and the first output end of the second interface 38 is connected to the second power supply module 39 in the activation component 300, for providing the required voltage level to the second power supply module 39. The second power supply module 39 is respectively connected to the third control module 30, the temperature control module 36, the heating module 37, and the pulse high-voltage source 35, for providing the required voltage level to the third control module 30, the temperature control module 36, the heating module 37, and the pulse high-voltage source 35;
[0102] Among them, the second output end of the second interface 38 is connected to the third control module 30 in the activation component 300 to realize the communication connection between the first control module 10 and the third control module 30. The first control module 10 is also used to obtain the activation component status feedback by the third control module 30 before determining that the application module 33 controls the activation module 32 to activate the beauty liquid according to the activation sub-scheme when applying, and determine whether the activation component 300 meets the working conditions.
[0103] Specifically, the first power supply module 14 is connected to an external energy source (battery, mains power) to generate multiple power supply levels internally, providing the modules in the first control module 10, interface module 15, relaxation component 200 and activation component 300 with their respective required levels.
[0104] In one specific embodiment, the first power supply module 14 includes both battery and mains power, offering a wide voltage input to isolate and mitigate interference, noise, and surges from the external mains power supply. Internally, it generates multiple power levels to provide the required power to the first control module 10 and the interface module 15. It consists of a mains power anti-interference module and a low-voltage power design module. The mains power anti-interference module comprises fuses, filters, and active noise reduction analog circuitry, effectively isolating mains power interference, surges, and EFT. Batteries include, but are not limited to, lead-acid batteries, lithium-ion batteries, and sodium-ion batteries. The low-voltage power supply design adopts a wide input voltage of 110VAC-240VAC, 12VDC-36VDC. The main power conversion circuit adopts an active PFC design, which can independently adjust the power distribution of the entire power supply network. The subsystem power supply module adopts a plug-in interface design. When adding a new subsystem power supply, the low-voltage power conversion module can be directly added without adjusting the hardware parameters of the main power conversion circuit. The output range of the main power conversion circuit is 50VA-200VA. The low-voltage power conversion module includes but is not limited to 3.3V, 5V, 12V, and 24V DC-DC modules.
[0105] The interface module 15 isolates the primary power supply network of the first power supply module 14 while also providing communication isolation protection between the first control module 10 and the third control module 30. Isolating the primary power supply network of the first power supply module 14 effectively prevents interference with the first power supply module 14 when the relaxation component 200 is charging via the base 16, and interference with the first power supply module 14 from the second power supply module 39 via the second interface 38 when the activation component 300 is operating.
[0106] The base 16 enables charging, placement, fixing, and status indication of the diastolic component 200. The base 16 in the embodiment of the present invention has a physical structure designed to prevent reverse insertion and falling. It also has a light information prompt function. For example, a green light indicates normal contact, a yellow light indicates abnormal contact, and a red light indicates port damage. The first interface 24 realizes the contact charging function with the base 16, adopts a female anti-reverse insertion design, and is fixed with a hardware clip to prevent falling off.
[0107] The charging module 25 isolates the voltage of the first interface 24 from jitter, surge, and impact during contact with the base 16, maintaining stable output. It also connects to the energy storage module 26 to control the charging process and thermally monitor the energy storage module 26 to ensure charging safety.
[0108] Energy storage module 26 can utilize removable lithium or nickel-cadmium rechargeable batteries. Upon expiration of battery life, batteries can be removed and replaced to prevent degradation of battery charging characteristics and impact on performance. Energy storage module 26 can also utilize parallel battery configurations to extend the life of diastolic assembly 200. This also enhances the redundancy of diastolic assembly 200, preventing a single battery failure from causing diastolic assembly 200 to cease operation.
[0109] In one embodiment, energy storage module 26 can utilize reusable nickel-cadmium, nickel-metal hydride, lithium-ion, lead-acid, or iron-lithium rechargeable batteries. Under special circumstances, ordinary dry cell batteries can also be used. Energy storage module 26 utilizes a wide voltage supply range of DC3-15V, with a maximum input power of 5W.
[0110] The second interface 38 is connected to the interface module 15 via a wired connection. Specifically, a rotating snap-on connection can be used, with a detachable cable. The second interface 38 is divided into a power supply and a signal communication section. The power supply input of the second interface 38 is DC24V. The signal communication section connects to the third control module 30 using an interface protocol such as RS232C, RS485, USART, CAN, USB, TCP, or Modbus for information exchange.
[0111] The second power supply module 39 uses a wide voltage input supply of 5-24V DC (direct current) with a maximum input power of 15W. It can generate multiple voltages including DC3.3V, DC5V, DC9V, DC15V, and DC24V. It uses power factor correction (PFC) technology to automatically adjust and distribute power to meet the power requirements of different components. It generates multiple power supply levels to provide the required power for the third control module 30, temperature control module 36, heating module 37, and pulse high-voltage source 35. At the same time, it isolates the main power supply network of the first power supply module 14, preventing interference caused by pulse energy jitter during the operation of the pulse high-voltage source 35, which could affect the normal operation of other systems.
[0112] The third control module 30 transmits information about the liquid level, temperature, heating and cooling status, plasma activation status, and roller status in the activation assembly 300 to the first control module 10. The first control module 10 stores the recorded relaxation information generated by the activation assembly 300 during the activation of the beauty serum in the information storage module 12.
[0113] In one embodiment of the present invention, the diastolic component 200 further includes a second detection module 27, one end of the second detection module 27 is connected to the first interface 24, and the other end of the second detection module 27 is connected to the second control module 20, for detecting the contact state between the first interface 24 and the base 16, and sending a charging signal when it is determined that the contact state is a safe state;
[0114] The second control module 20 is configured to control the charging module 25 to charge the energy storage module 26 upon receiving a charging signal.
[0115] Specifically, the second detection module 27 is connected to the first interface 24 and the charging module 25 to detect the contact status between the first interface 24 and the base 16, thus implementing a closed-loop detection of the charging connection. If the second detection module 27 detects a normal connection, it transmits this information to the second control module 20, which then controls the charging module 25 to initiate charging and replenish the energy storage module 26.
[0116] In a specific embodiment, the first interface 24 adopts the impedance detection principle. When the contact impedance is lower than the safety impedance threshold, the safe startable charging signal will be transmitted to the second control module 20 to prevent the safety hazards of poor contact causing damage to the charging module 25 and excessive impedance causing overheating of the first interface 24.
[0117] The main body 100 in the embodiment of the present invention is used to carry the first control module 10, the information interaction module 11, the information storage module 12, the first power supply module 14, the first communication module 13, the interface module 15, the base 16, the relaxation component 200 and the activation component 300, etc.
[0118] The relaxation component 200 in the embodiment of the present invention is a handheld mounting platform. The low-temperature plasma generated by the user's handheld component is used to relax the facial skin. It is used to install the first interface 24, the charging module 25, the second detection module 27, the second communication module 28, the second control module 20, the button control module, the first information display module, the high-voltage modulation module 21, the high-voltage generator 22, the plasma generator 23 and the energy storage module 26, etc.
[0119] The activation assembly 300 in this embodiment of the present invention is a handheld platform. The user holds the low-temperature plasma-activated beauty serum generated by this assembly and applies it to their facial skin. The low-temperature plasma activation mechanism aids skin absorption, enhancing the beauty effect. The activation assembly 300 is used to mount the second interface 38, second information display module, temperature control module 36, liquid storage component 31, heating module 37, activation module 32, roller, third control module 30, second power supply module 39, pulsed high-voltage source 35, first detection module 34, and other components.
[0120] In one specific embodiment, the beauty instrument can be configured with up to six relaxation components 200 and up to three activation components 300. The beauty instrument's function configuration, component configuration, and interface configuration can be configured using XML or JSON configuration files. The beauty instrument is connected to an information storage module 12, which includes, but is not limited to, NOR Flash, NAND Flash, DRAM, or EEPROM. Its installation platform includes, but is not limited to, embedded all-in-one computers, touch-screen all-in-one computers, general-purpose computer platforms, and standalone computer platforms. Its operating system includes, but is not limited to, Android, Linux, and Unix.
[0121] In an embodiment of the present invention, when a beauty device according to an embodiment of the present invention is used to beautify a user:
[0122] Connecting the first power supply module 14 to an external power source activates the beauty instrument. The module performs a self-test to check whether the outputs of each module meet power requirements. Once the power supply stabilizes, it activates the power supply. The power output of the module 14 passes through the interface module 15 and, via a cable, powers the activation component 300. This power is then charged via the base 16, which then charges the relaxation component 200.
[0123] The first control module 10, the information interaction module 11 and the information storage module 12 in the main body 100 start up, and the first control module 10 retrieves the configuration information, fault information and key component life information of the diastolic component 200 and the activation component 300 in the information storage module 12 to determine whether the diastolic component 200 and the activation component 300 meet the requirements for continuing to work.
[0124] The first control module 10 performs a self-test on the relaxation component 200 and the activation component 300 .
[0125] Specifically, when the first control module 10 performs a self-test on the diastolic component 200, it establishes a wireless connection with the second communication module 28 in the diastolic component 200 via the first communication module 13. The module obtains the battery level of the energy storage module 26, the connection status of the first interface 24, the charging parameters and status of the charging module 25, the key status of the key control module, and the status of the high-voltage modulation module 21. The self-test results are displayed in the information exchange module 11.
[0126] Specifically, when the first control module 10 performs a self-test on the activation assembly 300, it reads the status of each module in the activation assembly 300 in the third control module 30, i.e., the activation assembly status, via the communication cable connected between the interface module 15 and the second interface 38. The activation assembly status includes at least the status parameters (real-time liquid level) of the liquid storage component 31 and the real-time temperature of the beauty liquid, the power supply parameters of the second power supply module 39, and the parameter status of the pulsed high-voltage source 35. The self-test results are displayed in the information exchange module 11.
[0127] The user establishes a beauty plan and creates a personal skin profile through the information interaction module 11. The first control module 10 uses text, audio, and video to help the user accurately identify their skin type and provide a beauty plan. The beauty plan includes relaxation sub-plans (such as skin relaxation time, relaxation intensity (level 1-10), and plasma generator model) and activation sub-plans (such as beauty serum type, activation temperature, activation time, and application dwell time).
[0128] It should be noted that the user can also adjust the details of the beauty plan, and the final beauty plan will be stored in the information storage module 12. The next time the user logs in, the displayed plan can be directly called and can be adjusted again.
[0129] When starting beauty treatment, select the desired beauty treatment plan on the interactive interface of the information interaction module 11 and click the start button. The first control module 10 divides the beauty treatment plan into two parts and sends them to the relaxation component 200 and the activation component 300 respectively.
[0130] The second information display module will prompt the user to put the corresponding beauty liquid into the liquid storage component 31, and then put it into the card slot reserved for placing the liquid storage component in the activation component 300. The third control module 30 will automatically control the temperature control module 36 and the heating module 37 according to the activation sub-scheme issued to ensure that the beauty liquid in the liquid storage component 31 maintains a set temperature range (target activation temperature) and waits for activation and use.
[0131] When a user uses the relaxation component 200 to relax their skin, the first information display module automatically displays the relaxation sub-scheme interpreted by the second control module 20, as well as the recommended plasma generator type and model, and prompts the user to use it. The user operates the key control module to initiate low-temperature plasma skin relaxation. Based on the issued skin relaxation scheme (target relaxation time and target relaxation intensity), the second control module 20 automatically controls the high-voltage modulation module 21 to modulate the amplitude and frequency of the corresponding pulsed high voltage output by the high-voltage generator 22, so that the high-voltage generator 22 outputs high-voltage pulses with a first target amplitude and frequency. When using a contact-type plasma generator, the plasma generator is placed against the facial skin. The generated pulsed high voltage utilizes the DBD principle to ionize the air between the skin and the plasma generator, generating low-temperature plasma that directly acts on the facial skin. When using a non-contact plasma generator, the pulsed high voltage ionizes the air between the electrode and the skin within a range of 5-10 mm from the skin surface to generate low-temperature plasma. The relaxation process automatically stops when the relaxation timer expires.
[0132] To apply and activate the beauty serum, the user holds the beauty activation assembly 300. The second information display module displays the statuses "Waiting," "Reading," and "Running." When the "Reading" status is displayed, the roller can be rolled across the face. The first detection module 34 then detects the roller's displacement signal and sends a start signal to the pulsed high-voltage source 35 via optical fiber. Once the start signal is transmitted to the pulsed high-voltage source 35, it begins plasma activation of the beauty serum flowing through the insulated pipe based on the pulsed high-voltage amplitude, frequency, and duty cycle parameters analyzed by the activation sub-scheme pre-installed in the third control module 30. The activated beauty serum is evenly applied to the user's skin by the moving roller. The roller's movement activates and applies the beauty serum, while the second information display module displays "Running." Stopping the roller stops the activation process.
[0133] After the skin is relaxed and the beauty liquid is applied, the stop button on the information interaction module 11 is clicked, and the entire beauty process ends, and the device waits for the next user to use it.
[0134] The main body of the beauty instrument in this embodiment of the present invention integrates a host computer, a database, and intelligent auxiliary system software to create a personal skin information profile. It also interacts with the relaxation and activation components for coordinated control, enhancing intelligence and implementing personalized beauty plans for different users.
[0135] The relaxation component in the beauty instrument of the embodiment of the present invention includes a plasma generator. The relaxation intensity and relaxation time output by the plasma generator can be independently set. The relaxation intensity can be adjusted in ten levels to meet the usage needs of users with different skin conditions.
[0136] The plasma generators in the embodiments of the present invention include contact-type plasma generators and non-contact-type plasma generators. The contact-type plasma generator may be a plasma generator using the contact DBD principle, while the non-contact-type plasma generator may be an air discharge plasma generator using a non-contact electrode needle array.
[0137] In this embodiment of the present invention, the relaxation component 200 is wirelessly connected to the main unit 100 and is charged by contact. It can be used in conjunction with the main unit 100 as an integrated beauty device, or independently for skin relaxation. When used independently, the relaxation time and intensity can be set via the key control module, allowing for standalone use.
[0138] The activation component in the beauty instrument of the embodiment of the present invention adopts a roller linkage trigger mechanism. When used in a timely manner, the beauty serum is activated by plasma in a timely manner. The plasma activation mechanism of the beauty serum is utilized to maximize the preservation of short-lived substances in RONS, significantly increasing the content of RONS in the beauty serum. RONS can promote cell proliferation, improve skin condition, and increase the absorption of beauty serum by skin tissue.
[0139] The invention provides a method for using a beauty instrument.
[0140] The method for using the beauty instrument according to the embodiment of the present invention is used for the beauty instrument as described above.
[0141] Figure 4 This is a flow chart of the method of using a beauty instrument according to an embodiment of the present invention. Figure 4 As shown, the method of using the beauty instrument may include:
[0142] S101, collecting basic information and skin information of a user, and formulating a beauty plan for the user based on the basic information and skin information, wherein the beauty plan includes at least one of a relaxation sub-plan and an activation sub-plan;
[0143] S102, controlling the plasma generator to generate low-temperature plasma according to the relaxation sub-scheme to relax the skin, and / or controlling the activation module 32 to activate the beauty liquid according to the activation sub-scheme when determining that the application module is to apply the beauty liquid, so that the application module applies the activated beauty liquid to the skin surface to promote the skin to absorb the activated beauty liquid.
[0144] Connecting the first power supply module 14 to an external power source activates the beauty instrument. The module performs a self-test to check whether the outputs of each module meet power requirements. Once the power supply stabilizes, it activates the power supply. The power output of the module 14 passes through the interface module 15 and, via a cable, powers the activation component 300. This power is then charged via the base 16, which then charges the relaxation component 200.
[0145] The first control module 10, the information interaction module 11 and the information storage module 12 in the main body 100 start up, and the first control module 10 retrieves the configuration information, fault information and key component life information of the diastolic component 200 and the activation component 300 in the information storage module 12 to determine whether the diastolic component 200 and the activation component 300 meet the requirements for continuing to work.
[0146] The first control module 10 performs a self-test on the relaxation component 200 and the activation component 300 .
[0147] Specifically, when the first control module 10 performs a self-test on the diastolic component 200, it establishes a wireless connection with the second communication module 28 in the diastolic component 200 via the first communication module 13. The module obtains the battery level of the energy storage module 26, the connection status of the first interface 24, the charging parameters and status of the charging module 25, the key status of the key control module, and the status of the high-voltage modulation module 21. The self-test results are displayed in the information exchange module 11.
[0148] Specifically, when the first control module 10 performs a self-test on the activation assembly 300, it reads the status of each module in the activation assembly 300 in the third control module 30, i.e., the activation assembly status, via the communication cable connected between the interface module 15 and the second interface 38. The activation assembly status includes at least the status parameters (real-time liquid level) of the liquid storage component 31 and the real-time temperature of the beauty liquid, the power supply parameters of the second power supply module 39, and the parameter status of the pulsed high-voltage source 35. The self-test results are displayed in the information exchange module 11.
[0149] The user establishes a beauty plan and creates a personal skin profile through the information interaction module 11. The first control module 10 uses text, audio, and video to help the user accurately identify their skin type and provide a beauty plan. The beauty plan includes relaxation sub-plans (such as skin relaxation time, relaxation intensity (level 1-10), and plasma generator model) and activation sub-plans (such as beauty serum type, activation temperature, activation time, and application dwell time).
[0150] It should be noted that the user can also adjust the details of the beauty plan, and the final beauty plan will be stored in the information storage module 12. The next time the user logs in, the displayed plan can be directly called and can be adjusted again.
[0151] When starting beauty treatment, select the desired beauty treatment plan on the interactive interface of the information interaction module 11 and click the start button. The first control module 10 divides the beauty treatment plan into two parts and sends them to the relaxation component 200 and the activation component 300 respectively.
[0152] The second information display module will prompt the user to put the corresponding beauty liquid into the liquid storage component 31, and then put it into the card slot reserved for placing the liquid storage component 31 in the activation component 300. The third control module 30 will automatically control the temperature control module 36 and the heating module 37 according to the activation sub-scheme issued to the user so that the beauty liquid in the liquid storage component 31 maintains a set temperature range (target activation temperature) and waits for activation and use.
[0153] When a user uses the relaxation component 200 to relax their skin, the first information display module automatically displays the relaxation sub-scheme interpreted by the second control module 20, as well as the recommended plasma generator type and model, and prompts the user to use it. The user operates the key control module to initiate low-temperature plasma skin relaxation. Based on the issued skin relaxation scheme (target relaxation time and target relaxation intensity), the second control module 20 automatically controls the high-voltage modulation module 21 to modulate the amplitude and frequency of the corresponding pulsed high voltage output by the high-voltage generator 22, so that the high-voltage generator 22 outputs high-voltage pulses with a first target amplitude and frequency. When using a contact-type plasma generator, the plasma generator is placed against the facial skin. The generated pulsed high voltage utilizes the DBD principle to ionize the air between the skin and the plasma generator, generating low-temperature plasma that directly acts on the facial skin. When using a non-contact plasma generator, the pulsed high voltage ionizes the air between the electrode and the skin within a range of 5-10 mm from the skin surface to generate low-temperature plasma. The relaxation process automatically stops when the relaxation timer expires.
[0154] To apply and activate the beauty serum, the user holds the beauty activation assembly. The second information display module displays the following statuses: "Waiting," "Reading," and "Running." When the "Reading" status is displayed, the roller can be rolled across the face. The first detection module 34 then detects the roller's displacement signal and sends a start signal to the pulsed high-voltage source 35 via optical fiber. Once the start signal is transmitted to the pulsed high-voltage source 35, it begins plasma activation of the beauty serum flowing through the insulated pipe based on the pulsed high-voltage amplitude, frequency, and duty cycle parameters analyzed by the activation sub-scheme pre-installed in the third control module 30. The activated beauty serum is then evenly applied to the user's skin by the moving roller. The roller's movement activates and applies the beauty serum, while the second information display module displays "Running." Stopping the roller stops the activation process.
[0155] After the skin is relaxed and the beauty liquid is applied, the stop button on the information interaction module 11 is clicked, and the entire beauty process ends, and the device waits for the next user to use it.
[0156] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0157] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention 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 should not be understood as limiting the present invention.
[0158] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.
[0159] In the present invention, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediate medium; internal communication between two components, or interaction between two components, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0160] In the present invention, unless otherwise expressly specified or limited, when a first feature is "above" or "below" a second feature, it may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediary. Furthermore, when a first feature is "above," "above," or "above" a second feature, it may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is at a higher level than the second feature. When a first feature is "below," "below," or "below" a second feature, it may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is at a lower level than the second feature.
[0161] Although the embodiments of the present invention have been shown and described above, it will be understood that the above embodiments are illustrative and are not to be construed as limitations on the present invention. A person skilled in the art may change, modify, replace and modify the above embodiments within the scope of the present invention.
Claims
1. A beauty instrument, characterized in that: include: N relaxation components, each comprising a plasma generator, wherein N ≥ 1 and N is an integer; M activation components, each including an application module and an activation module, wherein the activation module is used to activate the beauty serum, and the application module is used to draw out the activated beauty serum, where M ≥ 1, and M is an integer; a main body, connected to the N relaxation components and the M activation components, respectively, for collecting basic information and skin information of a user and formulating a beauty regimen for the user based on the basic information and skin information, wherein the beauty regimen includes at least one of a relaxation sub-routine and an activation sub-routine, controlling the plasma generator to generate low-temperature plasma to relax the skin according to the relaxation sub-routine, and / or controlling the activation module to activate the beauty serum according to the activation sub-routine when determining that the application module is to apply the beauty serum, so that the application module applies the activated beauty serum to the skin surface to promote skin absorption of the activated beauty serum; The activation sub-scheme includes the type of beauty serum, activation time and application dwell time, and the activation component includes: a third control module, configured to interpret the activation sub-scheme to obtain a target beauty serum type, a target activation time, and a target application dwell time, and determine, based on the target beauty serum type, the amplitude, frequency, and duty cycle of the high-voltage pulse output by the pulsed high-voltage source in the activation component to obtain a second target amplitude, a second target frequency, and a target duty cycle; a liquid storage component for storing the target type of beauty liquid; an activation module comprising a liquid pump, an electrode array, and an insulating pipe, wherein the liquid pump is connected to the third control module and is connected to the liquid storage component via a hose. The liquid pump is disposed at one end of the insulating pipe, a surface of which is provided with an electrode array. The liquid pump is used to transport the beauty liquid in the liquid storage component to the insulating pipe; an application module, comprising a roller and a displacement sensor, wherein the roller is disposed at an end of the insulating pipe away from the liquid pump, the roller being used to draw the beauty liquid from the insulating pipe for application to the skin surface, and the displacement sensor being used to send a displacement signal when movement of the roller is detected; a first detection module, connected to the displacement sensor, and configured to send a start signal to the pulse high voltage source upon receiving the displacement signal; The pulsed high-voltage source is connected to the first detection module, the third control module, and the electrode array, and is used to generate a high-voltage pulse with a second target amplitude, a second target frequency, and a target duty cycle based on the second target amplitude, the second target frequency, and the target duty cycle, so that the electrode array performs low-temperature plasma activation on the beauty liquid in the insulating pipe.
2. The beauty instrument according to claim 1, characterized in that: The main body comprises: An information interaction module, used to collect basic information and skin information of the user; a first control module, connected to the information interaction module, configured to obtain basic information and skin information of the user, establish an information profile of the user based on the basic information and the skin information, and determine a beauty regimen for the user based on the information profile; The information storage module is connected to the first control module and is used to store at least one of the user's basic information, skin information, information files and beauty plans.
3. The beauty instrument according to claim 2, characterized in that: The relaxation sub-program includes relaxation time and relaxation intensity, and the relaxation component includes: a second control module, connected to the first control module, configured to receive the relaxation sub-scheme, interpret the relaxation sub-scheme, obtain a target relaxation time and a target relaxation intensity, determine the amplitude and frequency of the high-voltage pulse output by the high-voltage generator in the relaxation component according to the target relaxation intensity, obtain a first target amplitude and a first target frequency, and use a timing mechanism to control the plasma generator to stop operating when the time for the plasma generator to generate low-temperature plasma reaches the target relaxation time; a high-voltage modulation module, connected to the second control module, configured to modulate the high-voltage pulse output by the high-voltage generator according to the first target amplitude and the first target frequency, and output a high-voltage control signal; The high voltage generator is connected to the high voltage modulation module and is used to generate a high voltage pulse with a first target amplitude and a first target frequency according to the high voltage control signal; A plasma generator is connected to the high voltage generator and is used to generate low-temperature plasma according to the high voltage pulse of the first target amplitude and the first target frequency.
4. The beauty instrument according to claim 2, characterized in that: The third control module is connected to the first control module and is used to receive the activation sub-scheme.
5. The beauty instrument according to claim 3, characterized in that: The relaxation sub-scheme further includes a plasma generator type, wherein the plasma generator type includes a contact type and a non-contact type, and the plasma generator includes a contact type plasma generator and a non-contact type plasma generator; The second control module is configured to interpret the relaxation sub-scheme to obtain a target plasma generator type to determine the plasma generator to be used.
6. The beauty instrument according to claim 4, characterized in that: The activation sub-scheme includes an activation temperature, and the activation component includes: a temperature control module, comprising a temperature sensor and a cooling unit, wherein the temperature sensor is used to collect the current temperature of the beauty liquid in the liquid storage component, and the cooling unit is used to cool the beauty liquid in the liquid storage component; A heating module, used for heating the beauty liquid in the liquid storage component; The third control module is connected to the temperature sensor, the cooling unit, and the heating module, respectively, and is configured to interpret the activation sub-scheme to obtain a target activation temperature. Based on the target activation temperature and the current temperature, the third control module controls the cooling unit to cool the beauty liquid in the liquid storage component and / or controls the heating module to heat the beauty liquid in the liquid storage component, so that the current temperature of the beauty liquid in the liquid storage component is maintained at the target activation temperature.
7. The beauty instrument according to claim 3, characterized in that: The main body further includes a first power supply module and an interface module, wherein the input end of the first power supply module is connected to an external power supply, and the output end of the first power supply module is connected to the power supply end of the first control module and the input end of the interface module respectively, and the first power supply module is used to provide the required voltage level to the first control module and the interface module; The first output end of the interface module is connected to the input end of the base in the main body, and the output end of the base is plug-connected to the first interface in the diastolic component. While the diastolic component is placed on the base, it is connected to the charging module in the diastolic component through the first interface, so that the charging module can charge the energy storage module in the diastolic component. The energy storage module is electrically connected to the second control module, the high-voltage modulation module, the high-voltage generator, and the plasma generator respectively. The energy storage module is used to provide the required voltage level to the second control module, the high-voltage modulation module, the high-voltage generator, and the plasma generator; The second output end of the interface module is connected to the input end of the second interface in the activation component, the first output end of the second interface is connected to the second power supply module in the activation component, and is used to provide the required voltage level to the second power supply module. The second power supply module is respectively connected to the third control module, the temperature control module, the heating module, and the pulse high-voltage source, and is used to provide the required voltage level to the third control module, the temperature control module, the heating module, and the pulse high-voltage source; Among them, the second output end of the second interface is connected to the third control module in the activation component to realize the communication connection between the first control module and the third control module. The first control module is also used to obtain the activation component status feedback by the third control module before determining that the application module controls the activation module to activate the beauty liquid according to the activation sub-scheme when applying, and determine that the activation component meets the working conditions.
8. The beauty instrument according to claim 7, characterized in that: The expansion component further includes a second detection module, one end of which is connected to the first interface, and the other end of which is connected to the second control module, for detecting the contact state between the first interface and the base, and sending a charging signal when it is determined that the contact state is a safe state; The second control module is configured to control the charging module to charge the energy storage module upon receiving the charging signal.
9. The beauty instrument according to claim 3, characterized in that: The main body further includes a first communication module connected to the first control module; the diastolic component includes a second communication module connected to the second control module; the first communication module is communicatively connected to the second communication module to achieve communication connection between the first control module and the second control module; The first control module is further configured to obtain the state of the relaxation component fed back by the second control module before controlling the plasma generator to generate low-temperature plasma according to the relaxation sub-scheme, and determine whether the relaxation component meets the working conditions.
10. The beauty instrument according to any one of claims 1 to 9, characterized in that: The method of using the beauty instrument includes: collecting basic information and skin information of the user, and formulating a beauty regimen for the user based on the basic information and skin information, wherein the beauty regimen includes at least one of a relaxation sub-routine and an activation sub-routine; According to the relaxation sub-scheme, the plasma generator is controlled to generate low-temperature plasma to relax the skin, and / or when it is determined that the application module is to apply, the activation module is controlled to activate the beauty liquid according to the activation sub-scheme, so that the application module applies the activated beauty liquid to the skin surface to promote the skin to absorb the activated beauty liquid.
Citation Information
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