Onychomycosis treatment equipment with disinfection function
By introducing ultraviolet disinfection function and portable charging design into the onychomycosis treatment device, cross-infection and portability problems are solved, and efficient onychomycosis treatment and multi-scene use are achieved.
Patent Information
- Application Number
- CN202422041889.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-22
AI Technical Summary
Existing onychomycosis treatment instruments are prone to cross infection when used frequently, and it is inconvenient to carry a charger when using it when using it, and the use scenarios are limited.
Design a onychomycosis treatment device with disinfection function. The host can be placed in the charging box, disinfected with ultraviolet disinfection lamps, and charged the host with the battery in the charging box, combined with LED light therapy to treat onychomycosis.
It has achieved the reduction of the risk of cross-infection, improved the portability of the equipment and the diversity of use scenarios, and provided efficient disinfection and treatment effects.
Smart Images

Figure CN223127098U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of medical devices, and particularly relates to a onychomycosis treatment device with a disinfection function. Background Art
[0002] Onychomycosis, commonly known as "nail fungus", refers to a disease caused by dermatophytes invading the nail plate or subungual tissue. Onychomycosis is a nail infection caused by fungi such as dermatophytes, yeasts, and non-dermatophytes. Onychomycosis is one of the most stubborn and difficult-to-treat skin mycosis, which greatly affects the appearance of an individual's hands. It can be treated orally, topically, or by surgical nail removal. The growth rates of fingernails and toenails are different. It takes 100 days to completely replace a new fingernail, while it takes about 300 days for a toenail. Onychomycosis is very easy to relapse and is not easy to cure.
[0003] LED red and blue light therapy works by alternately irradiating with low-intensity red and blue light, which can regulate various functions of the epidermis and dermis layer, and is suitable for improving problems such as inhibiting bacterial growth. Therefore, LED onychomycosis light therapy devices are also widely used in the field of onychomycosis treatment.
[0004] In order to achieve better treatment effects and greater convenience, Application No.: CN202210418585.3 discloses a finger onychomycosis treatment device, which can be portable and used in multiple scenarios on the basis of combining light therapy. However, due to the strong infectivity of onychomycosis, frequent use of the same instrument for treatment is likely to cause cross-infection. Moreover, when this technical solution is used outdoors, a charger needs to be carried, resulting in poor portability and limited usage scenarios. Summary of the Invention
[0005] The purpose of this application is to provide a onychomycosis treatment device with a disinfection function. The main unit is placed in the storage cavity of the charging box, and the ultraviolet disinfection lamp irradiates and disinfects the main unit through the irradiation window provided in the storage cavity. At the same time, a battery provided in the charging box provides a mobile power source for charging the main unit.
[0006] To achieve the above object, the present application provides an onychomycosis treatment device with a disinfection function, including a main unit and a charging case. The charging case includes a bottom cover, a bracket, and an upper cover hinged to the bottom cover. A Hall magnet is provided at the front end of the upper cover. At least one receiving cavity is provided in the middle of the bracket. A front cushion platform and a rear cushion platform are provided at the top of the receiving cavity. The bracket and the bottom cover are connected by a buckle, and a first driving board and a battery are arranged in the enclosed space. The first driving board is electrically connected to the battery. A disinfection lamp is provided on the first driving board. An irradiation window is provided on the inner wall of the receiving cavity. The disinfection lamp corresponds to the irradiation window. A reflector is provided on the inner wall on the other side relative to the irradiation window. The main unit is placed in the receiving cavity. The main unit includes a main body and a finger pressing member. The main body includes an upper shell and a lower shell. The upper shell and the lower shell are connected by threads. A second driving board and a battery are arranged in the space enclosed by the upper shell and the lower shell. The second driving board is electrically connected to the main unit battery. The finger pressing member is connected to one side of the lower shell through a connecting member. An irradiation window is provided on the lower shell.
[0007] Further, pin needles are provided on the pcb board, and one end of each pin needle protrudes out of the front cushion platform.
[0008] Further, magnets are provided at the bottoms of the front cushion platform and the rear cushion platform.
[0009] Further, the disinfection lamp is an ultraviolet lamp.
[0010] Further, pin feet are provided on the pcb board, and one side of each pin foot protrudes out of one side of the lower shell.
[0011] Further, a light emitter is provided on the second driving board. The light emitter is arranged at the irradiation window. The light emitter is a laser lamp head or a red and blue light lamp head.
[0012] Further, a light-transmitting column is provided at the irradiation window.
[0013] The present application has at least the following beneficial effects:
[0014] 1. The ultraviolet disinfection lamp disinfects the main unit placed in the receiving cavity through the irradiation window provided on the inner wall of the receiving cavity, disinfecting once for each use and reducing the risk of cross-infection caused by repeated use.
[0015] 2. The battery provided in the charging case charges the main unit placed in the charging case, solving the problem of being usable in multiple scenarios.
[0016] 3. The pathogenic fungi on the nails are killed by the light emitter provided in the main unit, thereby treating onychomycosis. Description of the Drawings
[0017] Figure 1 It is a three-dimensional view of the charging case of the present application when opened.
[0018] Figure 2 This is the explosion diagram of the charging case of this application.
[0019] Figure 3 This is the three-dimensional diagram of the main body of this application.
[0020] Figure 4 This is the explosion diagram of the main body of this application. Detailed implementation manners
[0021] To make the above objects, features, and advantages of this application more obvious and understandable, the present invention will be further described in detail below with reference to the accompanying drawings and specific implementation manners.
[0022] As Figures 1-4 shown, a onychomycosis treatment device with a disinfection function includes a main body 2 and a charging case 1. The charging case 1 includes a bottom cover 102, an upper cover 101, and a bracket 104. One side of the bottom cover 102 is hinged to the upper cover 101. A Hall induction magnet 1011 is fixedly connected to the front end of the upper cover 101 by a buckle, used to sense the closing of the upper cover 101 of the charging case 1, so as to start charging and disinfection.
[0023] A charging port 1021 is provided on one side of the bottom cover 102. The bracket 104 is connected to the bottom cover 102 by a buckle or thread. A receiving cavity 1042 matching the shape of the main body is provided on the frame of the bracket 104, used to place the main body, and to receive, charge, and disinfect the main body.
[0024] An irradiation hole 1041 is opened on one side of the inner wall of the receiving cavity 1042. A reflector 1043 is installed on the inner wall on the other side relative to the inner wall where the irradiation hole 1041 is located, used to reflect light, so that the light can be fully utilized and the disinfection effect is better.
[0025] A first driving board 106 and a battery 105 are installed in the space surrounded by the bottom cover 102 and the bracket 104. The first driving board 106 is installed outside the inner wall where the irradiation hole 1041 is located and is connected to the battery 105 by a wire. The battery 105 is installed outside the inner wall where the reflector 1043 is located. A front pad and a rear pad are provided at the top of the receiving cavity 1042. Magnets are fixedly installed inside the front pad and the rear pad by buckles, used to fix the main body and provide a charging position for the main body.
[0026] A pin 1061 and a disinfection lamp 1062 are fixedly connected to the first driving board 106. The disinfection lamp 1062 corresponds to the irradiation hole 1041. The pin 1061 corresponds to the front pad and one end extends out of the front pad, used to be electrically connected to the placed main body and perform a charging operation on the main body.
[0027] The main unit 2 includes a main body 202 and a finger pressing member 201. The main body 202 includes an upper shell 2022 and a lower shell 2030. The upper shell 2022 and the lower shell 2030 are connected by buckles. The finger pressing member 201 is integrally arc-shaped, and the middle of the arc is used to place the diseased fingernail.
[0028] One end of the finger pressing member 201 is connected to one side of the lower shell 2030 through a connecting member 2011. An irradiation window 2029 is provided on the shell of the lower shell 2030, and a light-transmitting pad 2031 is fixedly installed at the irradiation window 2029 to provide better comfort and light transmittance during wearing and treatment.
[0029] A second driving board 2023 and a main unit battery 2026 are arranged in the space surrounded by the upper shell 2022 and the lower shell 2030 when they are buckled. The second driving board 2023 and the main unit battery 2026 are connected by a wire. A light emitter 2027 is fixedly connected to the second driving board 2023. The light emitter 2027 is a laser lamp head or a red and blue light lamp head. The light emitter 2027 corresponds to the irradiation window 2029. The light emitter 2027 performs light treatment on the diseased fingernail placed in the finger pressing member 201 through the irradiation window 2029, so as to achieve the effect of treating onychomycosis.
[0030] A light-transmitting column 2028 is installed between the light emitter 2027 and the irradiation window 2029 to provide better light concentration and improve the treatment effect.
[0031] A pin 2024 is fixedly connected to the other side of the second driving board 2023 relative to the light emitter 2027. One end of the pin 2024 protrudes from one side of the lower shell 2030. When the main unit 2 is placed in the receiving cavity 1042, the pin 2024 is electrically connected to the pin 1061, and the main unit can be charged.
[0032] When using this application, take out the main unit 2 from the charging box 2, buckle the finger pressing member 201 on the finger to be treated, make the irradiation window 2029 correspond to the nail to be treated, start the main unit 2, and the second driving board 2023 drives the light emitter 2027 to perform phototherapy on the treatment site through the irradiation window 2029, so as to kill the pathogenic fungi on the nail, and thus treat onychomycosis painlessly;
[0033] After the treatment is completed, put the main unit 2 into the receiving cavity 1042, buckle the upper cover 101. Under the action of the Hall magnet 1011 of the upper cover, the first driving board 106 drives the ultraviolet disinfection lamp 1062 to irradiate the main unit 2 through the irradiation hole 1041. The reflector 1043 reflects the light irradiated into the receiving cavity 1042 to provide a larger range of irradiation and disinfection, and improve the disinfection effect. When the main unit 2 is placed in the receiving cavity 1042, the pin 2024 is electrically connected to the pin 1062, and the battery 105 in the charging box 1 starts to charge the main unit 2, so as to achieve the effect of portable charging in any scenario.
[0034] The above has introduced in detail a onychomycosis treatment device with a disinfection function provided by the present application. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application; at the same time, for those of ordinary skill in the art, according to the idea of the present application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present application.
Claims
1. A onychomycosis treatment device with a disinfection function, comprising a main unit (2) and a charging case (1), characterized in that: The charging case (1) includes a bottom cover (102), a bracket (104), and an upper cover (101) hinged to the bottom cover (102). A Hall induction magnet (1011) is provided at the front end of the upper cover (101). At least one receiving cavity (1042) is provided in the middle of the bracket (104). A front cushion platform and a rear cushion platform are provided at the top of the receiving cavity (1042). The bracket (104) and the bottom cover (102) are connected by a buckle, and a first driving board (106) and a battery (105) are arranged in the space formed by the buckle. The first driving board (106) is electrically connected to the battery (105). A disinfection lamp (1062) is provided on the first driving board (106). An irradiation hole (1041) is provided on the inner wall of the receiving cavity (1042). The disinfection lamp (1062) corresponds to the irradiation hole (1041). A reflector (1043) is provided on the inner wall on the other side of the inner wall where the irradiation hole (1041) is located. The main unit (2) is placed in the receiving cavity (1042). The main unit (2) includes a main body (202) and a finger pressing member (201). The main body (202) includes an upper shell (2022) and a lower shell (2030). The upper shell (2022) and the lower shell (2030) are connected by threads. A second driving board (2023) and a main unit battery (2026) are arranged in the space formed by the upper shell (2022) and the lower shell (2030). The second driving board (2023) is electrically connected to the main unit battery (2026). The finger pressing member (201) is connected to one side of the lower shell (2030) through a connecting member (2011). An irradiation window (2029) is provided on the lower shell (2030).
2. The onychomycosis treatment device with a disinfection function according to claim 1, characterized in that: A pin (1061) is provided on the first driving board (106), and one end of the pin (1061) protrudes out of the front cushion platform.
3. The onychomycosis treatment device with disinfection function according to claim 1, wherein: Magnets are provided at the bottoms of the front cushion platform and the rear cushion platform.
4. The onychomycosis treatment device with a disinfection function according to claim 1, characterized in that: The disinfection lamp (1062) is an ultraviolet lamp.
5. The onychomycosis treatment device with a disinfection function according to claim 1, characterized in that: A pin (2024) is provided on the second driving board (2023), and one side of the pin (2024) protrudes out of one side of the lower shell (2030).
6. The onychomycosis treatment device with a disinfection function according to claim 1, characterized in that: A light emitter (2027) is provided on the second driving board (2023). The light emitter (2027) is arranged at the irradiation window (2029). The light emitter (2027) is a laser lamp head or a red and blue light lamp head.
7. The onychomycosis treatment device with a disinfection function according to claim 6, characterized in that, A light-transmitting column (2028) is provided at the irradiation window (2029).
Citation Information
Patent Citations
Finger onychomycosis therapeutic apparatus
CN114618088A