Ion current skin repair instrument control system
The ion flow skin repair instrument control system solves the problems of inaccurate timing, inflexible parameter adjustment, and imprecise current and voltage control in existing technologies. It achieves precise control of beauty time, flexible parameter adjustment, and ease of use of the equipment, thereby improving beauty effects and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHENGZHOU PINZHENG FUTURE MEDICAL TECH CO LTD
- Filing Date
- 2024-11-11
- Publication Date
- 2026-05-15
AI Technical Summary
Existing ion flow skin repair devices lack precise timing and billing systems, and the adjustment of cosmetic parameters is not flexible enough to meet the personalized needs of different patients. They also lack precise control over current and voltage, which affects cosmetic effects and safety. Furthermore, the devices are complex to operate, not user-friendly, and increase the burden on medical staff.
An ion flow skin repair instrument control system was designed, including a central control module, a display module, a timing module, a billing module, and an adjustment module. The timing module precisely controls the beauty treatment time, the adjustment module flexibly adjusts the beauty treatment parameters, the billing module manages the fees, the display module simplifies operation, the control circuit precisely controls the voltage and current of the high-voltage power supply, and provides a human-computer interaction display screen.
It enables precise control of beauty treatment time and intensity, provides flexible beauty options, improves beauty effects and safety, simplifies equipment operation, and reduces the burden on medical staff.
Smart Images

Figure CN224235912U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the medical field, and in particular to a control system for an ion flow skin repair device. Background Technology
[0002] With an aging population and the rapid development of the cosmetic medicine industry, the demand for skin damage repair is constantly increasing. Globally, approximately 2% of the population suffers from various skin wounds, and 300,000 people die each year due to skin injuries. These wounds include trauma, burns, and cosmetic surgeries.
[0003] The ion stream circulates and heats the skin surface, causing fibroblasts to contract. This process conditions the skin and firms muscles. By stimulating fibroblasts, ions enhance cell metabolism, increasing the synthesis of reticular collagen and elastin, thereby smoothing wrinkles, minimizing pores, and improving overall skin texture. The cyclical ion stream also increases skin absorption, allowing for more effective penetration of active ingredients. This ensures that active ingredient molecules enter cells intact, maximizing their bioactivity. During the ion emission process, ozone is generated. Ozone is one of nature's most powerful antibacterial and antiseptic agents, effectively treating acne and post-cold sores, promoting skin recovery, and enhancing cleansing and antibacterial effects to prevent acne growth.
[0004] Problems existing in the prior art:
[0005] 1. The lack of an accurate time and billing system leads to inaccurate beauty treatment time and costs.
[0006] 2. The adjustment of cosmetic parameters is not flexible enough and cannot meet the personalized needs of different patients.
[0007] 3. Lack of precise control over current and voltage during the beauty process affects the beauty effect and safety.
[0008] 4. The operation of beauty equipment is complicated and not user-friendly, which increases the burden on medical staff. Utility Model Content
[0009] The technical problem this utility model aims to solve is that the existing lack of precise timing and billing systems leads to inaccurate beauty treatment time and costs, insufficient flexibility in adjusting beauty parameters to meet the personalized needs of different patients, lack of precise control over current and voltage during the beauty treatment process, affecting the beauty effect and safety, and the complex operation of beauty equipment, which is not user-friendly and increases the burden on medical staff.
[0010] To solve the above-mentioned technical problems, this utility model provides an ion flow skin repair instrument control system, including a central control module, which is electrically connected to a display module. The central control module is characterized by: an ion emitter electrically connected to the central control module, a beauty control handle electrically connected to the ion emitter, a controller within the central control module, and a timing module, a billing module, and an adjustment module also installed on the central control module. The controller is electrically connected to the timing module, the billing module, and the adjustment module respectively. The timing module is used to measure the time interval during the beauty treatment process; the billing module is used to manage and record the cost of the beauty treatment; and the adjustment module is used to adjust the operating parameters of the ion emitter according to different beauty needs.
[0011] Furthermore, the ion emitter includes at least one high-voltage power supply and a control circuit for controlling the high-voltage power supply. The control circuit is electrically connected to the high-voltage power supply, and the controller in the central control module is electrically connected to the control circuit, and the controller adjusts the high-voltage power supply through the control circuit.
[0012] Furthermore, the beauty control handle connected to the ion emitter includes a first handle and a second handle. The second handle has a built-in capacitor that is electrically connected to the output terminal of the ion emitter to control the flow of current, thereby adjusting the electric field strength generated by the ion emitter.
[0013] Furthermore, the timing module includes a timer and a software timer.
[0014] Furthermore, the timer is installed on the central control module and uses clock signals and counters to achieve accurate time measurement, while the software timer is based on software clock ticks to achieve timing.
[0015] Furthermore, the billing module includes offline billing mode and online billing mode. The offline billing mode includes a card reader and an IC card used in conjunction with the card reader. The online billing mode includes a communication module for connecting to the Internet. The communication module connects to the Internet via a server on either a mobile client or a computer client.
[0016] Furthermore, the communication module is a 4G module, a 3G module, a 5G module, an Ethernet module, a serial communication module, a CAN bus module, a Profibus module, or a Profinet module.
[0017] Furthermore, the adjustment module includes: a pulse width adjustment module, an energy adjustment module, and a beauty treatment time adjustment module. The pulse width adjustment module, the energy adjustment module, and the beauty treatment time adjustment module are all installed on the main control module and electrically connected to the main control module.
[0018] Furthermore, the pulse width adjustment module, energy adjustment module, and beauty treatment time adjustment module all include a micro CPU and a ROM. The ROM is used to store programs, and the micro CPU is used to process programs and data generated by human-computer interaction. The micro CPU is electrically connected to the ROM and the central control module, respectively.
[0019] Furthermore, the pulse width adjustment module changes the pulse width by adjusting the voltage, current, or magnetic field strength of the ion emitter; the energy adjustment module adjusts the acceleration voltage or controls the current; and the beauty dwell time adjustment module controls the opening and closing of the ion beam through a timer, thereby controlling the dwell time.
[0020] Advantages of this utility model:
[0021] 1. Through the timing module and adjustment module, this system can accurately control the beauty treatment time and intensity, thereby improving the beauty effect.
[0022] 2. The online and offline modes provide users with flexible beauty options, allowing them to adjust their beauty plans according to their individual needs.
[0023] 3. The billing module can help medical institutions and patients better manage cosmetic expenses and improve the cost-effectiveness of cosmetic procedures.
[0024] 4. The adjustment module provides flexible adjustment of pulse width, energy, and beauty treatment duration to meet the beauty needs of different patients.
[0025] 5. By precisely controlling the voltage and current of the high-voltage power supply through the control circuit, the cosmetic effect and safety are improved.
[0026] 6. The human-computer interaction display screen simplifies equipment operation and reduces the burden on medical staff. Attached Figure Description
[0027] Figure 1 It is a control system for an ion flow skin repair device. Figure 1 .
[0028] Figure 2 It is a control system for an ion flow skin repair device. Figure 2 .
[0029] Figure 3 This refers to the control principle of the adjustment module in the control system of an ion flow skin repair device. Figure 1 .
[0030] Figure 4 This refers to the control principle of the adjustment module in the control system of an ion flow skin repair device. Figure 2 .
[0031] As shown in the figure:
[0032] 1. Central control module; 101. Controller; 2. Display module; 3. Ion emitter; 301. High voltage power supply; 302. Control circuit; 4. Billing module; 41. Card reader; 411. IC card; 42. Communication module; 421. Server; 422. Webpage; 423. APP; 5. Timing module; 51. Timer; 52. Software timer; 6. Adjustment module; 61. Pulse width adjustment module; 611. First micro CPU; 612. First ROM; 62. Energy intensity adjustment module; 621. Second micro CPU; 622. Second ROM; 631. Third micro CPU; 632. Third ROM; 63. Beauty treatment time adjustment module; 7. Beauty treatment control handle; 71. Second handle; 711. Capacitor; 72. First handle. Detailed Implementation
[0033] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. Identical components are indicated by the same reference numerals.
[0034] It should be noted that the terms “front,” “back,” “left,” “right,” “up,” and “down” used in the following description refer to the directions shown in the attached diagram, while the terms “inside” and “outside” refer to the directions toward or away from the geometric center of a specific component, respectively.
[0035] To make the content of this utility model easier to understand, the technical solutions in the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0036] Combined with appendix Figure 1-4 As shown, an ion flow skin repair device control system includes a central control module 1, which is electrically connected to a display module 2. The display module 2 is a human-computer interaction display screen, which is used for human-computer interaction and to display the time on the timing module 5, the time and number of times on the billing module 4, and the adjustment range of the adjustment module 6.
[0037] The central control module 1 is electrically connected to an ion emitter 3. The ion emitter 3 includes at least one high-voltage power supply 301 and a control circuit 302 for controlling the high-voltage power supply 301. The control circuit 302 is electrically connected to the high-voltage power supply 301. The controller 101 within the central control module 1 is electrically connected to the control circuit 302, and the controller 101 adjusts the high-voltage power supply 301 through the control circuit 302. The high-voltage power supply 301 provides the necessary high voltage to the emitter, causing ionization around the skin and generating negative oxygen ions through interaction with surrounding oxygen, thus producing a bactericidal effect on the skin. The control circuit 302 is used to control the operating state of the emitter, including parameters such as voltage, current, and emission time.
[0038] The central control module 1 includes a controller 101, and the central control module 1 is also equipped with a timing module 5, a billing module 4, and an adjustment module 6. The controller 101 is electrically connected to the timing module 5, the billing module 4, and the adjustment module 6 respectively. The timing module 5 is used to measure the time interval during the beauty treatment process. The billing module 4 is used to manage and record the cost of the beauty treatment. The adjustment module 6 is used to adjust the working parameters of the ion emitter 3 according to different beauty needs.
[0039] The ion emitter 3 is electrically connected to the beauty control handle 7. The beauty control handle 7 connected to the ion emitter 3 includes a first handle 72 and a second handle 71. The second handle 71 has a built-in capacitor 711. The capacitor 711 is electrically connected to the output terminal of the ion emitter 3 and is used to control the flow of current, thereby adjusting the electric field strength generated by the ion emitter 3.
[0040] The capacitor 711 is used to store and release electrical energy. In the ion emitter 3, capacitor 711 is used to stabilize the voltage, ensuring the stable generation of ions. The size of capacitor 711 affects the stability of the electric field and the ion release rate.
[0041] The use of ion emitter 3 in conjunction with capacitor 711 can effectively regulate the electric field and ion generation to meet different beauty needs, providing a safe and effective physical beauty method.
[0042] The timing module 5 includes a timer 51 and a software timer 52. The timer 51 is installed on the central control module 1 and uses a clock signal and a counter to achieve accurate time measurement. The software timer 52 is based on a software clock tick to achieve timing. The software timer 52 includes an RTOS timing module.
[0043] The timing module 5 utilizes a clock signal and a counter to achieve accurate time measurement, used to measure time intervals during the beauty treatment process, reducing the need for manual timing. Compared to manual timing, the timer 51 is more stable and reliable. The software timer 52, implemented in software, uses the system's clock ticks to achieve timing functionality. The functions of the software timer 52 include: task scheduling: ensuring tasks run according to set times, improving system responsiveness and efficiency; and timeout detection: detecting whether tasks are completed within the predetermined time.
[0044] Both Timer 51 and Software Timer 52 are key components that ensure the system can perform accurate and efficient time management. Timer 51 is more often used for simple time measurement, while Software Timer 52 provides more complex and flexible timing functions, especially in embedded systems that require multitasking and real-time response.
[0045] The billing module 4 includes offline billing mode and online billing mode. The offline billing mode includes a card reader 41 and an IC card 411 used in conjunction with the card reader 41. The IC card 411 has a recharge time and number of recharges. The card reader 41 reads the number of recharges from the IC card 411 and transmits it to the central control module 1 for renewal.
[0046] The network-connected billing mode includes a communication module 42, which is used to connect to the Internet. The communication module 42 connects to the Internet via a server 421 on either a mobile client or a computer client. The communication module 42 can be a 4G module, a 3G module, a 5G module, an Ethernet module, a serial communication module, a CAN bus module, a Profibus module, or a Profinet module.
[0047] The communication module 42 is connected to the Internet and can be recharged through webpage 422 or APP 423. The webpage 422 or APP 423 interacts with the communication module 42 through Internet server 421 for data transmission. The communication module 42 transmits the recharge data to the central control module 1.
[0048] The adjustment module 6 includes: a pulse width adjustment module 6, an energy adjustment module 6, and a beauty treatment time adjustment module 6. The pulse width adjustment module 6, the energy adjustment module 6, and the beauty treatment time adjustment module 6 are all installed on the main control module and electrically connected to the main control module.
[0049] The pulse width adjustment module 6 includes a first micro CPU 611 and a first ROM 612.
[0050] The energy regulation module 6 includes a second micro CPU 621 and a second ROM 622.
[0051] The beauty treatment dwell time adjustment module 6 includes a third micro CPU 631 and a third ROM 632.
[0052] The first ROM 612, the second ROM 622, and the third ROM 632 are all used to store programs. The first micro CPU 611, the second micro CPU 621, and the third micro CPU 631 are all used to process programs and data generated by human-computer interaction. The first micro CPU 611, the second micro CPU 621, and the third micro CPU 631 are all electrically connected to the central control module 1.
[0053] The pulse width adjustment module 6 changes the pulse width by adjusting the voltage, current, or magnetic field strength of the ion emitter 3. Specifically, it changes the pulse width by adjusting the hardware settings of the ion emitter 3, such as voltage, current, or magnetic field strength. The adjustment range is 10-1000ms, with a step size of 1ms. Precise control of the pulse width can reduce damage to surrounding healthy tissues and improve the cosmetic effect.
[0054] The energy regulation module 6 uses either acceleration voltage regulation or current control. Acceleration voltage regulation: the energy of the ion beam is primarily determined by the acceleration voltage. By changing the acceleration voltage, the kinetic energy gained by the ions can be altered, thereby regulating the energy of the ion beam. Current control: the current in the ion beam affects the number of ions emitted per unit time. By adjusting the current, the intensity of the ion beam can be controlled, thus affecting energy transmission. The adjustment range is 0-100%, with increments of 1%. Precise energy control can reduce damage to the patient's healthy tissues and improve the safety of cosmetic procedures.
[0055] The beauty treatment dwell time adjustment module 6 uses a timer to control the on and off of the ion beam, thereby controlling the dwell time. By controlling the irradiation time, damage to healthy tissue can be reduced. The beauty treatment dwell time adjustment module 6 has an adjustment range of 10-1000ms and a step size of 1ms.
[0056] The advantages of this utility model are:
[0057] 1. It improves the precision and personalization of beauty treatments, thus enhancing the beauty results.
[0058] 2. It enhances the safety of cosmetic procedures and reduces damage to healthy tissues.
[0059] 3. The billing process has been simplified, improving the accuracy and convenience of billing.
[0060] 4. Improved ease of use of the equipment and reduced the risk of operational errors.
[0061] The novel working process
[0062] 1. Patients or medical staff can interact with the system through display module 2 (human-computer interaction display screen) to set beauty parameters.
[0063] 2. The central control module 1 receives input parameters and controls the operation of the ion emitter 3 according to the settings of the timing module 5, the billing module 4 and the adjustment module 6.
[0064] 3. Ion emitter 3 emits ion beams according to the set parameters (pulse width, energy, beauty treatment time) to perform skin repair and beauty treatment.
[0065] 4. The timing module 5 ensures that the beauty treatment runs according to the scheduled time, and the billing module 4 bills according to the beauty treatment time and number of treatments.
[0066] 5. After the beauty treatment is completed, the system automatically shuts down the ion emitter 3, the timing module 5 stops timing, and the billing module 4 records the cost.
[0067] All standard parts used in this utility model can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art. In addition, the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here. The contents not described in detail in this specification belong to the prior art known to those skilled in the art.
[0068] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A control system for an ion flow skin repair device, comprising a central control module, wherein the central control module is electrically connected to a display module, characterized in that: The central control module is electrically connected to an ion emitter, and the ion emitter is electrically connected to a beauty control handle. The central control module includes a controller, and a timing module, a billing module, and an adjustment module are also installed on the central control module. The controller is electrically connected to the timing module, the billing module, and the adjustment module, respectively. The timing module is used to measure time intervals during the beauty treatment process; The billing module is used to: manage and record the cost of beauty treatments; The adjustment module is used to adjust the operating parameters of the ion emitter according to different beauty needs.
2. The ion flow skin repair device control system according to claim 1, characterized in that: The ion emitter includes at least one high-voltage power supply and a control circuit for controlling the high-voltage power supply. The control circuit is electrically connected to the high-voltage power supply. The controller in the central control module is electrically connected to the control circuit, and the controller adjusts the high-voltage power supply through the control circuit.
3. The ion flow skin repair device control system according to claim 1, characterized in that: The beauty control handle connected to the ion emitter includes a first handle and a second handle. The second handle has a built-in capacitor that is electrically connected to the output terminal of the ion emitter to control the flow of current, thereby adjusting the electric field strength generated by the ion emitter.
4. The ion flow skin repair device control system according to claim 1, characterized in that: The timing module includes a timer and a software timer.
5. The ion flow skin repair device control system according to claim 4, characterized in that: The timer is installed on the central control module and uses a clock signal and a counter to achieve accurate time measurement. The software timer is based on the software clock tick to achieve timing.
6. The ion flow skin repair device control system according to claim 1, characterized in that: The billing module includes offline billing mode and online billing mode. The offline billing mode includes a card reader and an IC card used with the card reader. The online billing mode includes a communication module for connecting to the Internet. The communication module connects to the Internet via a server on either a mobile client or a computer client.
7. The ion flow skin repair device control system according to claim 6, characterized in that: The communication module is a 4G module, a 3G module, a 5G module, an Ethernet module, a serial communication module, a CAN bus module, a Profibus module, or a Profinet module.
8. The ion flow skin repair device control system according to claim 1, characterized in that: The adjustment module includes a pulse width adjustment module, an energy adjustment module, and a beauty treatment time adjustment module. The pulse width adjustment module, energy adjustment module, and beauty treatment time adjustment module are all installed on the main control module and electrically connected to the main control module.
9. The ion flow skin repair device control system according to claim 8, characterized in that: The pulse width adjustment module, energy adjustment module, and beauty treatment time adjustment module all include a micro CPU and a ROM. The ROM is used to store programs, and the micro CPU is used to process programs and data generated by human-computer interaction. The micro CPU is electrically connected to the ROM and the central control module, respectively.
10. The ion flow skin repair device control system according to claim 8 or 9, characterized in that: The pulse width adjustment module changes the pulse width by adjusting the voltage, current, or magnetic field strength of the ion emitter. The energy regulation module accelerates voltage regulation or current control; The beauty treatment dwell time adjustment module uses a timer to control the on and off of the ion beam, thereby controlling the dwell time.