Ultraradio frequency anti-aging transdermal collagen light beauty instrument

By optimizing the layout and settings of optical components in beauty instruments, the problem of incomplete light filtering has been solved, achieving efficient transmission and safe use of near-infrared light, promoting collagen production, and significantly improving skin firmness and anti-aging effects.

CN224070972UActive Publication Date: 2026-04-03ULIKE (SHENZHEN) SMART ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The unreasonable layout of optical components in existing beauty devices leads to incomplete light filtering, increasing the risk of skin damage and affecting safety and beauty effects.

Method used

Design an ultra-radio frequency anti-aging transdermal collagen light beauty device, in which halogen lamp tubes and light filters are arranged in parallel with a distance of not less than 2mm. The light-transmitting components are exposed in the skin contact area. The controller controls the operation of the halogen lamp tubes and is equipped with heat dissipation holes and a detachable structure.

Benefits of technology

Optimize the light transmission path, improve the transmission efficiency and purity of near-infrared light, enhance the safety and stability of the device, promote collagen production, and significantly improve skin firmness and elasticity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ultra-radio frequency anti-aging transdermal collagen light beauty instrument. The ultra-radio-frequency anti-aging transdermal collagen light beauty instrument comprises a shell, and a skin contact area is formed at one end of the shell; the optical assembly comprises a halogen lamp tube, a light filtering part and a light transmitting part which are sequentially arranged at intervals, the halogen lamp tube and the light filtering part are arranged in the shell, at least part of the light transmitting part is exposed out of the skin contact area, and the light filtering part allows near-infrared light emitted by the halogen lamp tube to pass through and prevents non-near-infrared light emitted by the halogen lamp tube from passing through; the light transmitting piece is used for enabling near-infrared light formed after filtering of the light filtering piece to irradiate out of the shell, the halogen lamp tube and the light filtering piece are arranged in parallel, and the distance between the halogen lamp tube and the light filtering piece is not smaller than 2 mm; the controller is arranged in the shell, and the halogen lamp tube is electrically connected with the controller so as to control the halogen lamp tube to work. According to the technical scheme, the problems that in the prior art, a beautifying instrument is low in use safety and poor in beautifying effect are solved.
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Description

Technical Field

[0001] This utility model relates to the field of beauty device technology, specifically to an ultra-radio frequency anti-aging transdermal collagen light beauty device. Background Technology

[0002] In the field of beauty technology, optical components have become a core part of many beauty devices, especially those designed to treat and care for the skin using light of specific wavelengths.

[0003] Optical components in beauty devices are typically housed inside the casing, such as halogen lamps, filters, and light-transmitting elements. The halogen lamp, acting as the light source, emits light that needs to be filtered to ensure that only light of the target wavelength (such as near-infrared light) can pass through and act on the skin. However, in existing technologies, beauty devices are prone to problems with unreasonable optical component layouts. This not only makes it difficult to ensure correct light output, but also results in incomplete light filtering, allowing non-target wavelengths (such as visible light and ultraviolet light) to reach the skin, increasing the risk of skin damage. Furthermore, it compromises the safety of the optical components, leading to lower safety and poorer beauty effects when using the device. Utility Model Content

[0004] The main purpose of this invention is to provide an ultra-radio frequency anti-aging transdermal collagen light beauty device to solve the problems of low safety and poor beauty effect of existing beauty devices.

[0005] To achieve the above objectives, this utility model provides an ultra-radio frequency anti-aging transdermal collagen light beauty device, comprising: a shell, one end of which forms a skin contact area; an optical component, including a halogen lamp, a filter, and a light-transmitting component arranged sequentially at intervals, wherein the halogen lamp and the filter are disposed within the shell, and at least a portion of the light-transmitting component is exposed outside the skin contact area; the filter is used to filter the light emitted by the halogen lamp to allow near-infrared light emitted by the halogen lamp to pass through while blocking non-near-infrared light emitted by the halogen lamp to pass through; the light-transmitting component is used to allow the near-infrared light formed after being filtered by the filter to irradiate out of the shell; wherein the halogen lamp and the filter are arranged in parallel, and the distance between the halogen lamp and the filter is not less than 2 mm; and a controller disposed within the shell, wherein the halogen lamp is electrically connected to the controller to control the operation of the halogen lamp.

[0006] Furthermore, the housing includes: a grip portion; a mounting portion; and a skin contact portion, one end of the mounting portion being detachably connected to the grip portion, the other end of the mounting portion being detachably connected to the skin contact portion, and a skin contact area being formed on the side of the skin contact portion opposite to the mounting portion.

[0007] Furthermore, at least part of the halogen lamp tube is installed inside the mounting section, and the mounting section is provided with multiple heat dissipation holes that communicate with the interior of the mounting section.

[0008] Furthermore, the inner wall of the skin contact part is provided with a plurality of first snap-fit ​​members, which are spaced apart along the circumference of the skin contact part. Each first snap-fit ​​member is provided with a first slot. The side of the mounting part facing the skin contact part is provided with a plurality of first buckles, which are respectively engaged with the plurality of first slots.

[0009] Furthermore, the inner wall of the skin contact portion is provided with at least two first connectors, the inner wall of the mounting portion is provided with at least two first mounting members corresponding to the at least two first connectors, and the housing also includes at least two first locking members, which pass through the at least two first mounting members and are threadedly connected to the at least two first connectors respectively; wherein, at least one first snap-fit ​​member is provided between two adjacent first connectors.

[0010] Furthermore, the gripping part includes a first housing and a second housing detachably connected to the first housing. The first housing and the second housing are used to form a receiving cavity and an opening communicating with the receiving cavity. A portion of the mounting part extends into the receiving cavity through the opening. The first housing and the second housing are located on both sides of the mounting part and are both connected to the mounting part.

[0011] Furthermore, the inner wall of the first housing is provided with a plurality of second connectors, which are located at one end of the first housing near the mounting portion. The inner wall of the mounting portion is provided with a plurality of second mounting parts corresponding to the plurality of second connectors. The housing also includes a plurality of second locking parts, which pass through the plurality of second mounting parts and are threadedly connected to the plurality of second connectors respectively.

[0012] Furthermore, the inner wall of the second housing is provided with a plurality of second buckles, which are located at one end of the second housing near the mounting part. The mounting part is provided with a plurality of second slots, and the plurality of second buckles are respectively engaged with the plurality of second slots.

[0013] Furthermore, the inner wall of the first housing is provided with a plurality of second snap-fit ​​members at intervals, each of the second snap-fit ​​members being provided with a third snap-fit ​​groove, and the inner wall of the second housing is provided with a plurality of third buckles at intervals, the plurality of third buckles respectively engaging with the plurality of third snap-fit ​​grooves.

[0014] Furthermore, the ultra-radio frequency anti-aging transdermal collagen light beauty device also includes an electrode assembly, which includes multiple electrode heads for outputting microcurrents to the skin. At least some of the electrode heads are exposed outside the skin contact area. The multiple electrode heads are spaced apart on the outer periphery of the light-transmitting element, and there is a gap between each electrode head and the light-transmitting element. The electrode assembly is electrically connected to the controller to control the operation of the electrode assembly.

[0015] By applying the technical solution of this utility model, on the one hand, the parallel arrangement of the halogen lamp and the filter optimizes the light transmission path, ensuring the straight-line transmission of light to the greatest extent possible. This reduces scattering and loss of light during transmission, allowing the light to be transmitted more directly to the light-transmitting component and irradiate the skin, thus improving the transmission efficiency of near-infrared light and enhancing the cosmetic effect of the device. On the other hand, the minimum distance between the halogen lamp and the filter is set to 2mm to ensure sufficient filtration of light during transmission. This avoids the problem of insufficient light filtration caused by the halogen lamp and the filter being too close, and also prevents the problem of light intensity attenuation caused by excessive distance. This ensures the purity and intensity of near-infrared light, thereby improving the safety and stability of phototherapy. Furthermore, since the halogen lamp generates high temperatures when emitting light, setting the minimum distance between the halogen lamp and the filter to 2mm effectively avoids the impact of high temperatures on the filter, ensuring the stability and long-term reliability of the filter, and thus ensuring the safe and stable operation of the device. Attached Figure Description

[0016] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:

[0017] Figure 1 A schematic diagram of an embodiment of the ultra-radio frequency anti-aging transdermal collagen light beauty device of this utility model is shown; and

[0018] Figure 2 It shows Figure 1 A cross-sectional view of the ultra-radio frequency anti-aging transdermal collagen light beauty device (AA direction);

[0019] Figure 3 It shows Figure 1 A schematic diagram of the outer shell of the ultra-radio frequency anti-aging transdermal collagen light beauty device;

[0020] Figure 4 It shows Figure 1 Another structural diagram of the outer shell of the ultra-radio frequency anti-aging transdermal collagen light beauty device;

[0021] Figure 5 It shows Figure 3 A schematic diagram of the exploded structure of the outer shell of the ultra-radio frequency anti-aging transdermal collagen light beauty device;

[0022] Figure 6 It shows Figure 4 A schematic diagram of the exploded structure of the outer shell of the ultra-radio frequency anti-aging transdermal collagen light beauty device;

[0023] Figure 7 It shows Figure 1 A schematic diagram of the assembly structure of the mounting part and the skin contact part of the outer shell of the ultra-radio frequency anti-aging transdermal collagen light beauty device.

[0024] The above figures include the following reference numerals:

[0025] 10. Outer shell; 11. Skin contact area; 12. Grip part; 121. First shell; 122. Second shell; 123. Second connector; 124. Second buckle; 125. Second snap-fit; 126. Third slot; 127. Third buckle; 13. Mounting part; 131. First buckle; 132. First mounting part; 133. Second mounting part; 134. Second slot; 14. Skin contact part; 141. First snap-fit; 142. First slot; 143. First connector; 15. Heat dissipation hole; 21. Halogen lamp tube; 22. Light filter; 23. Light transmission element; 24. Electrode head. Detailed Implementation

[0026] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0027] like Figures 1 to 7 As shown, an embodiment of this utility model provides an ultra-radio frequency anti-aging transdermal collagen light beauty device. The ultra-radio frequency anti-aging transdermal collagen light beauty device includes: a housing 10, with a skin contact area 11 formed at one end of the housing 10; an optical component, including a halogen lamp 21, a filter 22, and a light-transmitting element 23 arranged sequentially at intervals, wherein the halogen lamp 21 and the filter 22 are disposed inside the housing 10, and at least part of the light-transmitting element 23 is exposed outside the skin contact area 11; the filter 22 is used to filter the light emitted by the halogen lamp 21 to allow near-infrared light emitted by the halogen lamp 21 to pass through and block non-near-infrared light emitted by the halogen lamp 21 from passing through; the light-transmitting element 23 is used to allow the near-infrared light formed after being filtered by the filter 22 to irradiate outside the housing 10; wherein the halogen lamp 21 and the filter 22 are arranged in parallel, and the distance between the halogen lamp 21 and the filter 22 is not less than 2mm; and a controller disposed inside the housing 10, wherein the halogen lamp 21 is electrically connected to the controller to control the operation of the halogen lamp 21.

[0028] In the above technical solution, on the one hand, the parallel arrangement of the halogen lamp tube 21 and the filter element 22 optimizes the light transmission path, ensuring the straight-line transmission of light to the greatest extent possible. This reduces scattering and loss of light during transmission, allowing the light to be transmitted more directly to the light-transmitting element 23 to irradiate the skin, improving the transmission efficiency of near-infrared light and enhancing the cosmetic effect of the device. On the other hand, the minimum distance between the halogen lamp tube 21 and the filter element 22 is set to 2mm to ensure sufficient filtering of light during transmission. This avoids insufficient light filtering caused by the halogen lamp tube 21 and the filter element 22 being too close, and also prevents light intensity attenuation caused by excessive distance. This ensures the purity and intensity of near-infrared light, thereby improving the safety and stability of phototherapy. Furthermore, since the halogen lamp tube 21 generates high temperatures when emitting light, the minimum distance between the halogen lamp tube 21 and the filter element 22 is set to 2mm to effectively avoid the impact of high temperatures on the filter element 22, ensuring the stability and long-term reliability of the filter element 22, and thus ensuring the safe and stable operation of the device.

[0029] Preferably, in an embodiment of the present invention, the minimum distance between the halogen lamp tube 21 and the filter element 22 is 2.5 mm.

[0030] like Figure 2 As shown in the embodiment of the present invention, the outer shell 10 includes: a grip portion 12; a mounting portion 13; and a skin contact portion 14. One end of the mounting portion 13 is detachably connected to the grip portion 12, and the other end of the mounting portion 13 is detachably connected to the skin contact portion 14. A skin contact area 11 is formed on the side of the skin contact portion 14 opposite to the mounting portion 13.

[0031] In the above technical solution, the mounting part 13 is detachably connected to the gripping part 12 and the skin contact part 14, so that users or professionals can more easily disassemble and replace the internal components of the equipment, which facilitates the maintenance and cleaning of the equipment.

[0032] like Figure 3 and Figure 7 As shown in the embodiment of the present invention, at least a portion of the halogen lamp tubes 21 are installed inside the mounting portion 13, and the mounting portion 13 is provided with a plurality of heat dissipation holes 15 communicating with the interior of the mounting portion 13.

[0033] In the above technical solution, the halogen lamp tube 21 generates heat during operation. The multiple heat dissipation holes 15 on the mounting part 13 effectively improve the heat dissipation efficiency of the equipment, ensuring that the halogen lamp tube 21 can be cooled in time during operation, avoiding overheating of the equipment, thereby improving the operational stability and service life of the equipment. The design of the heat dissipation holes also helps to reduce safety hazards caused by overheating of the equipment, such as skin burns, increasing the safety of use.

[0034] like Figure 5 and Figure 6 As shown in the embodiment of this utility model, a plurality of first snap-fit ​​members 141 are provided on the inner wall of the skin contact portion 14. The plurality of first snap-fit ​​members 141 are arranged at intervals along the circumference of the skin contact portion 14. Each first snap-fit ​​member 141 is provided with a first slot 142. A plurality of first buckles 131 are provided on the side of the mounting portion 13 facing the skin contact portion 14. The plurality of first buckles 131 are respectively engaged with the plurality of first slots 142.

[0035] The above-mentioned configuration ensures a secure connection between the skin contact part 14 and the mounting part 13, preventing loosening or detachment during use and improving the overall stability and operational safety of the device. At the same time, the spaced first snap-fit ​​141 and the first buckle 131 can be more precisely aligned, ensuring accurate positioning of the device components and optimizing the assembly precision of the device.

[0036] like Figure 5 and Figure 6 As shown in the embodiment of the present invention, at least two first connectors 143 are provided on the inner wall of the skin contact portion 14, and at least two first mounting members 132 are provided on the inner wall of the mounting portion 13 corresponding to the at least two first connectors 143. The outer shell 10 also includes at least two first locking members, which pass through the at least two first mounting members 132 and are threadedly connected to the at least two first connectors 143 respectively. At least one first snap-fit ​​member 141 is provided between two adjacent first connectors 143.

[0037] In the above technical solution, the use of a first locking member for threaded connection, and the auxiliary fixing of the first buckle 131 and the first slot 142, together enhance the connection firmness and stability between the skin contact part 14 and the mounting part 13, ensuring the structural integrity of the equipment during use and preventing loosening or detachment due to external impact or long-term use.

[0038] Preferably, in the embodiment of the present invention, there are two first connectors 143, and the two first connectors 143 are respectively located on the inner walls on both sides of the skin contact portion 14; correspondingly, there are also two first mounting members 132.

[0039] Preferably, in an embodiment of the present invention, the first locking member is a screw or nut, and the end cap of the screw is located on the side of the first mounting member 132 opposite to the first connecting member 143.

[0040] like Figures 3 to 6As shown in the embodiment of the present invention, the gripping part 12 includes a first housing 121 and a second housing 122 detachably connected to the first housing 121. The first housing 121 and the second housing 122 are used to form a receiving cavity and an opening communicating with the receiving cavity. A portion of the mounting part 13 extends into the receiving cavity through the opening. The first housing 121 and the second housing 122 are located on both sides of the mounting part 13 and are both connected to the mounting part 13.

[0041] In the above technical solution, the detachable connection between the first housing 121 and the second housing 122 can simplify the assembly and disassembly process of the equipment. During production or maintenance, the gripping part 12 can be assembled or disassembled independently of other parts, which can improve production efficiency and maintenance convenience. At the same time, the fact that part of the mounting part 13 extends into the receiving cavity through the opening can increase the overlap between the mounting part 13 and the gripping part 12, thereby facilitating the mounting part 13 to be installed on the gripping part 12.

[0042] like Figure 3 and Figure 5 As shown in the embodiment of this utility model, a plurality of second connectors 123 are provided on the inner wall of the first housing 121. The plurality of second connectors 123 are located at one end of the first housing 121 near the mounting portion 13. A plurality of second mounting parts 133 are provided on the inner wall of the mounting portion 13, corresponding to the plurality of second connectors 123. The outer shell 10 also includes a plurality of second locking parts, which pass through the plurality of second mounting parts 133 and are threadedly connected to the plurality of second connectors 123 respectively.

[0043] Through the above settings, a stable connection between the first housing 121 and the mounting part 13 can be achieved, ensuring that the relative movement between components will not occur due to external forces during use, thus improving the overall stability of the equipment; at the same time, the setting of multiple connection points improves the assembly accuracy and ensures accurate alignment between components.

[0044] Preferably, in an embodiment of the present invention, the second locking member is a screw or bolt, and the end cap of the screw is located on the side of the second mounting member 133 opposite to the second connecting member 123.

[0045] like Figure 4 and Figure 6 As shown in the embodiment of the present invention, a plurality of second buckles 124 are provided on the inner wall of the second housing 122. The plurality of second buckles 124 are located at one end of the second housing 122 near the mounting part 13. The mounting part 13 is provided with a plurality of second slots 134. The plurality of second buckles 124 are respectively engaged with the plurality of second slots 134.

[0046] In the above-mentioned technical solution, multiple second buckles 124 are respectively engaged with multiple second slots 134, making the connection between the second housing 122 and the mounting part 13 simple and quick. Operators or users can assemble and disassemble without using additional tools, saving time and effort and improving the convenience of equipment maintenance and user component replacement.

[0047] like Figure 5 and Figure 6 As shown in the embodiment of this utility model, a plurality of second snap-fit ​​members 125 are provided at intervals on the inner wall of the first housing 121, and a third snap-fit ​​groove 126 is provided on each of the second snap-fit ​​members 125. A plurality of third buckles 127 are provided at intervals on the inner wall of the second housing 122, and the plurality of third buckles 127 are respectively snap-fitted and engaged with the plurality of third snap-fit ​​grooves 126.

[0048] In the above technical solution, by setting multiple snap-fit ​​points between the first housing 121 and the second housing 122, the connection between the two parts of the grip can be made more stable, and it is not easy to loosen or separate due to external forces, which effectively improves the stability and durability of the overall structure of the equipment. At the same time, by connecting the first housing 121 and the second housing 122 through snap-fit, the grip can be quickly disassembled and replaced, which is convenient for cleaning and maintenance. In this way, the first housing 121 can be connected to the mounting part 13 with bolts first, and then the second housing 122 can be snapped onto the first housing 121 and snapped into the mounting part 13, which not only improves the connection stability, but also facilitates assembly.

[0049] like Figure 1 As shown in the embodiment of this utility model, the ultra-radio frequency anti-aging transdermal collagen light beauty device also includes an electrode assembly. The electrode assembly includes multiple electrode heads 24 for outputting microcurrents to the skin. At least some of the electrode heads 24 are exposed outside the skin contact area 11. The multiple electrode heads 24 are arranged at intervals on the outer periphery of the light-transmitting element 23. There is a gap between each electrode head 24 and the light-transmitting element 23. The electrode assembly is electrically connected to the controller to control the operation of the electrode assembly.

[0050] In the above technical solution, the dual care effect of the electrode assembly outputting microcurrent and the light-transmitting component 23 outputting near-infrared light can simultaneously stimulate the skin's microcirculation, promote collagen production, and accelerate cell renewal through phototherapy, significantly improving the skin's firmness and elasticity, thus achieving a comprehensive cosmetic effect of anti-aging, wrinkle smoothing, and improved skin texture.

[0051] Furthermore, the multiple electrode heads 24 can be configured to adjust the output microcurrent intensity, frequency, and time according to the user's needs and skin condition via a controller, providing personalized care solutions to meet the different needs of different users for microcurrent care intensity and methods.

[0052] In this utility model and its embodiments, the multiple electrode heads 24 are all microcurrent electrodes, and the beauty device is a microcurrent beauty device. Of course, the multiple electrode heads 24 can also be radio frequency electrodes, and the beauty device can also be a radio frequency beauty device.

[0053] It should be noted that the embodiments of this utility model employ a novel anti-aging technology that surpasses radiofrequency: transdermal collagen light (near-infrared light). On one hand, the penetration depth of the light waves in transdermal collagen light technology exceeds that of radiofrequency technology, allowing it to directly act on deep skin tissues, such as the dermis, and even reach the subcutaneous fat layer, achieving a lifting and firming effect from the root. After just one use, users can feel a significant improvement in facial contours, with a U-shaped face quickly transforming into a V-shaped face, showcasing a firmer and younger appearance. On the other hand, the thermal field intensity generated by transdermal collagen light technology in deep skin tissues is significantly higher than that of radiofrequency technology, more effectively stimulating collagen regeneration and accelerating skin cell metabolism. Through continuous full-face use for 7 days, it can significantly reduce fine lines, improve skin elasticity, and achieve a lasting anti-aging effect. Furthermore, transdermal collagen light technology acts on the skin through specific wavelengths of light... It can stimulate the growth of collagen and elastin fibers deep in the skin, with a significantly better growth-promoting effect than radiofrequency technology. After 14 days of continuous use, users will experience a significant improvement in skin elasticity, and a firmer, fuller facial contour, truly achieving anti-aging care at the root. Furthermore, the transdermal collagen light technology combined with multi-frequency respiratory microcurrents can target facial muscles and skin tissues to achieve a rapid lifting and firming effect. In just 3 minutes of use, the jawline can be clearly lifted, reshaping a U-shaped face into a V-shaped face, giving the face a more three-dimensional and firmer appearance. Moreover, the transdermal collagen light technology acts on the dermis, achieving a triple growth-promoting effect on collagen, elastin fibers, and fibroblasts through photothermal, photochemical, and photobiological regulation. This triple care strategy, which addresses the root of the skin, can fundamentally improve skin laxity and enhance skin firmness and elasticity.

[0054] Furthermore, in addition to transdermal collagen light technology, this invention also employs multi-frequency respiratory microcurrent technology. Through microcurrent pulse stimulation of different frequencies, it can cover the care needs of different depths of the skin, achieving comprehensive care from the epidermis to the dermis. This synergistic effect of multi-frequency microcurrent and transdermal collagen light makes the skin care effect more comprehensive and in-depth.

[0055] From the above description, it can be seen that the above embodiments of this utility model achieve the following technical effects: On the one hand, the parallel arrangement of the halogen lamp and the filter can optimize the light transmission path, maximize the straight transmission of light, reduce scattering and loss of light during transmission, and enable the light to be transmitted more directly to the light-transmitting component to irradiate the skin, thereby improving the transmission efficiency of near-infrared light and enhancing the cosmetic effect of the device; on the other hand, the minimum distance between the halogen lamp and the filter is set to 2mm to ensure that the light is fully filtered during transmission. This avoids the problem of insufficient light filtering caused by the halogen lamp and the filter being too close, and also prevents the problem of light intensity attenuation caused by excessive distance, thereby ensuring the purity and intensity of near-infrared light, and thus improving the safety and stability of phototherapy; furthermore, since the halogen lamp generates high temperature when emitting light, the minimum distance between the halogen lamp and the filter is set to 2mm, which can effectively avoid the impact of high temperature on the filter, ensuring the stability and long-term reliability of the filter, and thus ensuring the safe and stable operation of the device.

[0056] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A super radio frequency anti-aging transdermal collagen optical and cosmetic instrument, characterized in that, The application relates to a halogen lamp device, which comprises the following parts: a shell, one end of the shell being formed with a skin contact area; an optical assembly, which comprises a halogen lamp tube, a filter and a light-transmitting piece arranged in sequence, the halogen lamp tube and the filter being arranged in the shell, at least part of the light-transmitting piece being exposed to the skin contact area, the filter being used for filtering light emitted by the halogen lamp tube to allow near-infrared light emitted by the halogen lamp tube to pass through and prevent non-near-infrared light emitted by the halogen lamp tube from passing through, the light-transmitting piece being used for radiating the near-infrared light filtered by the filter out of the shell, wherein the halogen lamp tube and the filter are arranged in parallel, and the distance between the halogen lamp tube and the filter is not less than 2 mm; a controller arranged in the shell, the halogen lamp tube being electrically connected with the controller to control the halogen lamp tube to work. The shell comprises: a mounting part; a skin contact part, one end of the mounting part being detachably connected with the skin contact part, the side of the skin contact part, which is away from the mounting part, being formed with the skin contact area, the inner wall of the skin contact part being provided with a plurality of first clamping pieces, the plurality of first clamping pieces being arranged in sequence along the circumference of the skin contact part, each first clamping piece being provided with a first clamping groove, and the side of the mounting part, which faces the skin contact part, being provided with a plurality of first buckles corresponding to the plurality of first clamping grooves.

2. The super radio frequency anti-aging transdermal collagen photocosmetic device of claim 1, wherein, The shell comprises: a holding part, the other end of the mounting part being detachably connected with the holding part.

3. The super radio frequency anti-aging transdermal collagen optical and cosmetic instrument according to claim 2, characterized in that, At least part of the halogen lamp tube is arranged in the interior of the mounting part, and the mounting part is provided with a plurality of heat dissipation holes communicating with the interior of the mounting part.

4. The super radio frequency anti-aging transdermal collagen photocosmetic device of claim 2, wherein, The inner wall of the skin contact part is provided with at least two first connecting pieces, the inner wall of the mounting part is provided with at least two first mounting pieces corresponding to the at least two first connecting pieces, the shell further comprises at least two first locking pieces, the at least two first locking pieces are respectively threadedly connected with the at least two first connecting pieces by penetrating through the at least two first mounting pieces, and at least one first clamping piece is arranged between adjacent two first connecting pieces.

5. The super radio frequency anti-aging transdermal collagen optical and cosmetic device according to any one of claims 2 to 4, characterized in that, The holding part comprises a first shell and a second shell detachably connected with the first shell, the first shell and the second shell are used for surrounding a containing cavity and an opening communicating with the containing cavity, part of the mounting part extends into the containing cavity through the opening, and the first shell and the second shell are respectively arranged on the two sides of the mounting part and are connected with the mounting part.

6. The super radio frequency anti-aging transdermal collagen photocosmetic device of claim 5, wherein, The inner wall of the first shell is provided with a plurality of second connecting pieces, the plurality of second connecting pieces are arranged at one end of the first shell close to the mounting part, the inner wall of the mounting part is provided with a plurality of second mounting pieces corresponding to the plurality of second connecting pieces, and the shell further comprises a plurality of second locking pieces, the plurality of second locking pieces are respectively threadedly connected with the plurality of second connecting pieces by penetrating through the plurality of second mounting pieces.

7. The super radio frequency anti-aging transdermal collagen photocosmetic device of claim 5, wherein, The inner wall of the second shell is provided with a plurality of second buckles, and the plurality of second buckles are located at one end of the second shell close to the mounting portion, the mounting portion is provided with a plurality of second clamping grooves, and the plurality of second buckles are respectively matched with the plurality of second clamping grooves.

8. The super radio frequency anti-aging transdermal collagen photocosmetic device of claim 5, wherein, The inner wall of the first shell is provided with a plurality of second clamping members at intervals, each second clamping member is provided with a third clamping groove, the inner wall of the second shell is provided with a plurality of third buckles at intervals, and the plurality of third buckles are respectively matched with the plurality of third clamping grooves.

9. The super radio frequency anti-aging transdermal collagen photocosmetic device according to any one of claims 1 to 4, characterized in that, The super radio frequency anti-aging transdermal collagen light beauty instrument further comprises an electrode assembly, the electrode assembly comprises a plurality of electrode heads for outputting micro-current to the skin, at least part of the electrode heads are exposed outside the skin contact area, a plurality of the electrode heads are arranged at intervals on the outer circumferential side of the light-transmitting piece, each electrode head has a spacing with the light-transmitting piece, and the electrode assembly is electrically connected with the controller to control the working of the electrode assembly.