Grid photon mask instrument

By using all-liquid silicone material and a universal Type-C charging port, optimizing the LED light panel layout, and designing an ergonomic beauty mask device, problems such as hard materials, difficult cleaning, and insufficient eye protection have been solved, achieving uniformity and comfort in beauty effects.

CN224126420UActive Publication Date: 2026-04-17深圳市华俪莱科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
深圳市华俪莱科技有限公司
Filing Date
2025-01-03
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing beauty mask devices are made of hard and non-soft materials, which cannot perfectly fit the facial contours, resulting in uneven beauty effects. They may contain harmful ingredients, are uncomfortable, difficult to clean, provide insufficient eye protection, have incompatible and unreliable charging interfaces, and produce uneven LED light therapy effects.

Method used

Made of all-liquid silicone, it features a detachable silicone eye mask, an integrated universal Type-C charging port, and an optimized FPC lamp board and LED layout to ensure uniformity and efficiency of phototherapy. It also conforms to ergonomic design to avoid cleaning dead spots.

Benefits of technology

This product offers a safe, comfortable, easy-to-clean, and highly effective beauty mask device. It is biocompatible, soft and conforms to the face, distributes pressure evenly, protects the eyes, simplifies cleaning, uses a universal charging interface, and enhances the phototherapy effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a grid photon mask instrument, which relates to the field of mask instruments, and comprises a liquid silica gel front mask plate, a mask plate body A, a lamp plate body and a mask plate body B. One side of the liquid silica gel front mask plate is fixedly connected with an FPC lamp plate, one side of the FPC lamp plate is fixedly connected with a liquid silica gel rear mask plate, and the other side of the liquid silica gel rear mask plate is fixedly connected with a light source. Silica gel eyeshades are embedded in the liquid silica gel front mask plate, the FPC lamp plate and the liquid silica gel rear mask plate, and air holes A, eyeshade mounting holes A and a nose through hole A are formed in a mask plate body A. According to the utility model, a universal Type-c charging port is adopted, so that charging by a user is facilitated, the durability of the interface is improved, the layout of the FPC lamp plate and the wavelength of lamp beads is optimized, and the service life of the lamp beads is prolonged. By means of the technical means, the beauty mask instrument which is safer, more comfortable, easier to clean and efficient is provided.
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Description

Technical Field

[0001] This utility model relates to the field of facial mask devices, specifically a grid photon facial mask device. Background Technology

[0002] With people's increasing pursuit of beauty, the market for home beauty devices is developing rapidly. Traditional beauty mask devices are mostly made of hard plastic or other materials. Although they have certain beauty effects, they have some shortcomings in terms of user experience and safety.

[0003] Here are some background technical issues: Material issues: Most existing beauty mask devices on the market use hard plastic or other synthetic materials. These materials are generally too heavy and not flexible enough, failing to perfectly conform to facial contours, resulting in uneven beauty effects. Furthermore, some materials may contain harmful ingredients, potentially causing skin irritation or allergies with long-term use. Comfort issues: Due to material and design limitations, traditional beauty mask devices may cause discomfort during use, especially during extended periods. Cleaning issues: Beauty mask devices made of hard materials are difficult to clean, easily accumulating dirt and grime, affecting user hygiene and product lifespan. Eye protection issues: Many beauty mask devices do not consider eye protection, potentially causing light irritation and compromising user safety. Charging interface issues: Some beauty mask devices use non-standard charging interfaces, causing inconvenience and potentially leading to unreliable charging ports. Phototherapy technology: Although LED phototherapy technology has been applied in beauty mask devices, the uniformity of the phototherapy effect and the irradiation efficiency still need improvement.

[0004] Therefore, those skilled in the art have provided a grid photon mask device to solve the problems mentioned in the background art. Utility Model Content

[0005] The purpose of this invention is to provide a grid-type photon facial mask device to address the material issues mentioned in the background section. Most existing facial mask devices on the market use hard plastics or other synthetic materials. These materials are too heavy and not flexible enough to perfectly conform to facial contours, resulting in uneven beauty effects. Furthermore, some materials may contain harmful components, potentially causing skin irritation or allergies with long-term use. Comfort is also a concern; due to material and design limitations, traditional facial mask devices may cause discomfort, especially during prolonged use. Cleaning is also an issue; facial mask devices made of hard materials are difficult to clean, easily accumulating dirt and grime, affecting user hygiene and product lifespan. Eye protection is another concern; many facial mask devices do not consider eye protection, potentially causing light irritation and compromising user safety. Charging interfaces are also problematic; some devices use non-standard charging interfaces, causing inconvenience and potentially leading to unreliable charging ports. Finally, while LED light therapy technology has been applied in facial mask devices, the uniformity and efficiency of the light therapy effect still need improvement.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A grid photon facial mask device includes a liquid silicone front panel, a mask panel body A, a lamp panel body, and a mask panel body B. An FPC lamp panel is fixedly connected to one side of the liquid silicone front panel, and a liquid silicone rear panel is fixedly connected to one side of the FPC lamp panel. Silicone eye masks are embedded inside the liquid silicone front panel, FPC lamp panel, and liquid silicone rear panel. The mask panel body A has a ventilation hole A, an eye mask mounting hole A, and a nose opening A inside. A Type-C charging port is located on one side of the mask panel body A. Side hanging ears are located on both sides of the mask panel body A. A ventilation hole B and a lamp panel opening are located inside the lamp panel body. LED beads are located on the inner side of the lamp panel body. A ventilation hole C, an eye mask mounting hole B, and a nose opening B are located inside the mask panel body B. A charging port mounting hole is located at the bottom of the mask panel body B.

[0008] In a preferred embodiment of this utility model, the liquid silicone front film, the FPC lamp board, and the liquid silicone rear film are of the same size, and the FPC lamp board is located between the liquid silicone front film and the liquid silicone rear film.

[0009] As a preferred embodiment of the present invention: the liquid silicone front film plate includes a film plate body A, a vent hole A, a side ear hook, an eye mask mounting hole A, a nose through hole A, and a Type-C charging port.

[0010] In a preferred embodiment of this utility model, the FPC light board includes a light board body, a vent hole B, a light board through hole, and light beads.

[0011] In a preferred embodiment of this utility model, the liquid silicone back panel includes a face mask body B, a vent C, an eye mask mounting hole B, a nose through hole B, and a charging port mounting hole.

[0012] In a preferred embodiment of this utility model, the Type-C charging port is electrically connected to the lamp board and the lamp beads via wires.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] This utility model discloses a grid-type photon facial mask device. Made entirely of liquid silicone, it improves the product's biocompatibility, softness, and comfort. It features a detachable silicone eye mask to protect the user's eyes from light stimulation. A universal Type-C charging port facilitates charging and improves interface durability. The optimized wavelength layout of the FPC lamp board and LED beads enhances the uniformity and efficiency of the phototherapy effect. These technologies provide a safer, more comfortable, easier-to-clean, and more efficient beauty facial mask device. Using medical-grade liquid silicone as the main material, the device boasts excellent biocompatibility, softness, and weather resistance, allowing it to closely conform to different facial contours while ensuring no skin irritation during use. The overall shape of the mask device is ergonomically designed to ensure even pressure distribution and reduce facial pressure. The soft properties of liquid silicone allow the product to better adapt to different facial features. The smooth surface of the liquid silicone is not easily stained and is fully washable. Furthermore, the design avoids complex gaps, reducing cleaning dead spots and simplifying product maintenance. The mask device integrates a universal Type-C charging port, allowing users to charge it with a common Type-C charging cable without needing to carry a separate charger. It comes equipped with a detachable solid silicone eye mask made of the same liquid silicone material as the main body of the device, ensuring effective protection of the eyes during LED light therapy. The eye mask's design allows users to easily remove and install it as needed. An FPC light board is embedded between the A and B sides of the device, with high-efficiency LED beads evenly distributed on the board. Precise optical design and circuit layout ensure that the LED light can evenly illuminate the face, enhancing the beauty effect. Attached Figure Description

[0015] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0016] Figure 1This is an exploded view of the overall structure of a grid photon facial mask device;

[0017] Figure 2 A three-dimensional structural diagram of the liquid silicone front membrane plate in a mesh photon facial mask device;

[0018] Figure 3 A three-dimensional structural schematic diagram of the FPC lamp plate in a mesh photon facial mask device;

[0019] Figure 4 This is an isometric side view of the FPC lamp plate in a mesh photon mask device.

[0020] Figure 5 This is a three-dimensional structural diagram of the back film plate of liquid silicone in a mesh photon mask device.

[0021] In the diagram: 1. Liquid silicone front panel; 101. Mask panel body A; 102. Vent hole A; 103. Side hook; 104. Eye mask mounting hole A; 105. Nose opening A; 106. Type-C charging port; 2. FPC light board; 201. Light board body; 202. Vent hole B; 203. Light board through hole; 204. LED bead; 3. Liquid silicone rear panel; 301. Mask panel body B; 302. Vent hole C; 303. Eye mask mounting hole B; 304. Nose opening B; 305. Charging port mounting hole; 4. Silicone eye mask. Detailed Implementation

[0022] Please see Figure 1-5In this embodiment of the invention, a grid photon mask device includes a liquid silicone front film plate 1, a mask plate body A101, a light plate body 201, and a mask plate body B301. An FPC light plate 2 is fixedly connected to one side of the liquid silicone front film plate 1, and a liquid silicone rear film plate 3 is fixedly connected to one side of the FPC light plate 2. Silicone eye masks 4 are embedded inside the liquid silicone front film plate 1, the FPC light plate 2, and the liquid silicone rear film plate 3. Using all-liquid silicone material improves the product's biocompatibility, softness, and comfort. The removable silicone eye masks protect the user's eyes from light stimulation. A universal Type-C charging port is used for convenient charging and improved interface durability. The FPC light plate and light... The arrangement of the phototherapy wavelengths improves the uniformity and efficiency of the phototherapy effect. These technologies provide a safer, more comfortable, easier-to-clean, and more efficient beauty mask device. The mask panel A101 has internal ventilation holes A102, eye mask mounting holes A104, and a nose opening A105. A Type-C charging port 106 is located on one side of the mask panel A101. The main material of the mask device is liquid silicone, which has excellent biocompatibility, softness, and weather resistance, allowing it to closely conform to the facial contours of different users while ensuring no skin irritation during use. The overall shape of the mask device is ergonomically designed to ensure even pressure distribution during use and reduce facial pressure. The soft properties of liquid silicone allow the product to better adapt to different facial features. The smooth surface of liquid silicone is not easily stained and is washable. Furthermore, the design of the mask device avoids complex gaps, reducing cleaning dead spots and simplifying product maintenance. The mask device integrates a universal Type-C charging interface 106, allowing users to connect to the controller and power it using a common Type-C charging cable 106, eliminating the need to carry a separate dedicated charging cable. The mask plate body A101 has side hanging ears 103 on both sides. The lamp plate body 201 has ventilation holes B202 and lamp plate through holes 203. Lamp beads 204 are located on the inner side of the lamp plate body 201. The mask plate body B301 has ventilation holes C302, eye mask mounting holes B303, and nose through holes B304. The bottom of the mask plate body B301 has a charging port mounting hole 305.

[0023] Please see Figure 1 , Figure 3 and Figure 5The liquid silicone front panel 1, FPC lamp panel 2, and liquid silicone rear panel 3 are all the same size, with FPC lamp panel 2 positioned between them. A detachable solid silicone eye mask 4 is included, made of the same liquid silicone material as the main body of the mask, ensuring effective protection of the eyes during LED light therapy. The eye mask is designed for easy removal and installation as needed. An FPC lamp panel 2 is embedded between sides A and B of the mask, with high-efficiency LED beads 204 evenly distributed on the panel. Precise optical design and circuit layout ensure even illumination of the face by the LED light, enhancing the beauty effect. The liquid silicone front panel 1 and liquid silicone rear panel 3 are made of high-transparency, high-elasticity medical-grade liquid silicone. The hexagonal hollow design of the mold for the mask ensures an ergonomic shape and facilitates the molding of the liquid silicone. The FPC light board 2 is designed, and LED beads with appropriate wavelengths and brightness are selected to achieve the best beauty effect. The FPC light board 2 is integrated with the external controller circuit system to ensure stable power supply and control of the LED beads. The liquid silicone front mask plate 1 includes a mask plate body A101, ventilation holes A102, side ear hooks 103, eye mask mounting holes A104, nose opening A105, and a Type-C charging port 106. A detachable solid silicone eye mask 4 is designed to ensure a good fit between the eye mask and the main body of the mask device. A Type-C charging port is pre-installed in the design of the mask device, ensuring the interface's sealing and durability. Side ear hooks 103 are provided on both sides of the mask device for head strap use, ensuring user convenience and comfort. All components are assembled into a complete product, and rigorous functional and safety tests are conducted to ensure the product performance meets expectations. This effectively solves the problems existing in current beauty mask devices, providing a safe, comfortable, easy-to-use, and efficient beauty instrument. The mask device uses medical-grade liquid silicone as its main material. This material boasts excellent biocompatibility, softness, and weather resistance, allowing it to closely conform to the facial contours of different users while ensuring no skin irritation during use. The overall shape of the mask device is ergonomically designed to ensure even pressure distribution during use, reducing facial pressure. The softness of the liquid silicone allows the product to better adapt to different facial features. The FPC light plate 2 includes a light plate body 201, vent holes B202, light plate through holes 203, and LED beads 204. The rear mask plate 3, made of liquid silicone, includes a mask plate body B301, vent holes C302, eye mask mounting holes B303, nose through holes B304, and charging port mounting holes 305. The smooth surface of the liquid silicone is not easily stained and is washable. Furthermore, the design of the mask device avoids complex gaps, reducing cleaning dead spots and simplifying product maintenance.The mask device integrates a universal Type-C charging port, allowing users to charge it with a common Type-C charging cable without needing to carry a separate dedicated charger. It features a detachable solid silicone eye mask made of the same liquid silicone material as the mask body, ensuring effective protection of the eyes during LED light therapy. The eye mask design allows users to easily remove and install it as needed. An FPC light board is embedded between the A and B sides of the mask device, with high-efficiency LED beads evenly distributed on the board. Precise optical design and circuit layout ensure that the LED light can evenly illuminate the face, enhancing the beauty effect. The Type-C charging port 106 is electrically connected to the light board 201 and the LED beads 204 via wires.

[0024] It should be noted that this utility model is a grid photon mask device, including: 1. a liquid silicone front mask plate; 101. mask plate body A; 102. vent hole A; 103. side hanging ear; 104. eye mask mounting hole A; 105. nose through hole A; 106. Type-C charging port; 2. an FPC light board; 201. light board body; 202. vent hole B; 203. light board through hole; 204. LED beads; 3. a liquid silicone rear mask plate; 301. mask plate body B; 302. vent hole C; 303. eye mask mounting hole B; 304. nose through hole B; 305. charging port mounting hole; 4. silicone eye mask. All components are general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods.

[0025] The working principle of this invention is as follows: Using all-liquid silicone material improves the product's biocompatibility, softness, and comfort; a detachable silicone eye mask protects the user's eyes from light stimulation; a universal Type-C charging port facilitates charging and improves interface durability; and the optimized wavelength layout of the FPC lamp board and LED beads improves the uniformity and efficiency of phototherapy. Through these technologies, a safer, more comfortable, easier-to-clean, and more efficient beauty mask device is provided. Using all-liquid silicone as the main material of the mask device offers excellent biocompatibility, softness, and weather resistance, allowing it to closely conform to the facial contours of different users while ensuring no skin irritation during use. The overall shape of the mask device is ergonomically designed to ensure even pressure distribution during use, reducing facial pressure. The soft properties of liquid silicone allow the product to better adapt to different facial features. The smooth surface of liquid silicone is not easily stained and is fully washable. Furthermore, the design of the mask device avoids complex gaps, reducing cleaning dead spots and simplifying product maintenance. The mask device integrates a universal Type-C charging port 106, allowing users to connect and power the device using a common Type-C charging cable 106, eliminating the need for a separate dedicated charging cable. It features a detachable solid silicone eye mask 4, made of the same liquid silicone material as the main body of the mask device, ensuring effective protection of the eyes during LED light therapy. The eye mask design allows users to easily remove and install it as needed. An FPC light board 2 is embedded between the A and B sides of the mask device, with high-efficiency LED beads 204 evenly distributed on the board. Precise optical design and circuit layout ensure that the LED light evenly illuminates the face, enhancing the beauty effect. The liquid silicone front mask plate 1 and liquid silicone rear mask plate 3 are made of high-transparency, high-elasticity medical-grade liquid silicone. The hexagonal hollow design of the liquid silicone front mask plate 1, FPC light board 2, and liquid silicone rear mask plate 3 forms the mold for the mask device, ensuring an ergonomic shape and facilitating the molding of the liquid silicone. The FPC light board 2 is designed, and LED beads with appropriate wavelengths and brightness are selected to achieve the best beauty effect. The FPC light board 2 is integrated with the external controller circuit system to ensure stable power supply and control of the LED beads. A detachable solid silicone eye mask 4 is designed to ensure a good fit between the eye mask and the main body of the mask device. A Type-C charging port is reserved in the design of the mask device, ensuring the interface's sealing and durability. Side ear hooks 103 are provided on both sides of the mask device for head strap use, ensuring user convenience and comfort. All components are assembled into a complete product, and rigorous functional and safety tests are conducted to ensure that the product performance meets expectations. This design effectively solves the problems existing in current beauty mask devices, providing a safe, comfortable, easy-to-use, and efficient beauty instrument.The mask uses medical-grade liquid silicone as its main material. This material boasts excellent biocompatibility, softness, and weather resistance, allowing it to closely conform to the facial contours of different users while ensuring no skin irritation during use. The overall shape of the mask is ergonomically designed to ensure even pressure distribution and reduce facial discomfort. The softness of liquid silicone allows the product to better adapt to different facial features. The smooth surface of liquid silicone is not easily stained and is fully washable. Furthermore, the design avoids complex gaps, reducing cleaning dead spots and simplifying maintenance. A universal Type-C charging port is integrated into the design, allowing users to charge with common Type-C cables without needing a separate charger. A detachable solid silicone eye mask, made of the same liquid silicone material as the mask body, ensures effective protection of the eyes during LED light therapy. The eye mask design allows users to easily remove and install it as needed. An FPC light board is embedded between the A and B sides of the mask, with high-efficiency LED beads evenly distributed on the board. Through precise optical design and circuit layout, it is ensured that LED light can be evenly irradiated on the face, improving the beauty effect.

[0026] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A grid photon facial mask instrument, comprising a liquid silicone gel front mask plate (1), a mask plate body A (101), a lamp plate body (201) and a mask plate body B (301), characterized in that, An FPC light panel (2) is fixedly connected to one side of the liquid silicone front film plate (1), and a liquid silicone back film plate (3) is fixedly connected to one side of the FPC light panel (2). Silicone eye masks (4) are embedded inside the liquid silicone front film plate (1), the FPC light panel (2), and the liquid silicone back film plate (3). The mask plate body A (101) has an internal ventilation hole A (102), an eye mask mounting hole A (104), and a nose passage hole A (105). A Ty... The mask panel A (101) has a PE-C charging port (106), and the mask panel A (101) has side hanging ears (103) on both sides. The light panel A (201) has a ventilation hole B (202) and a light panel through hole (203). The inner side of the light panel A (201) has a lamp bead (204). The mask panel B (301) has a ventilation hole C (302), an eye mask mounting hole B (303), and a nose through hole B (304). The bottom of the mask panel B (301) has a charging port mounting hole (305).

2. The mesh photonic facial mask device of claim 1, wherein, The liquid silicone front film plate (1), FPC lamp plate (2) and liquid silicone rear film plate (3) are the same size, and the FPC lamp plate (2) is located between the liquid silicone front film plate (1) and the liquid silicone rear film plate (3).

3. The mesh photonic facial mask device of claim 1, wherein, The liquid silicone front panel (1) includes a panel body A (101), a vent A (102), a side ear hook (103), an eye mask mounting hole A (104), a nose through hole A (105), and a Type-C charging port (106).

4. The mesh photonic facial mask device of claim 1, wherein, The FPC lamp board (2) includes a lamp board body (201), a vent hole B (202), a lamp board through hole (203), and lamp beads (204).

5. The mesh photonic face mask device of claim 1, wherein, The liquid silicone back panel (3) includes a face mask panel body B (301), a vent C (302), an eye mask mounting hole B (303), a nose through hole B (304), and a charging port mounting hole (305).

6. The mesh photonic face mask device of claim 1, wherein, The Type-C charging port (106) is electrically connected to the lamp board body (201) and the lamp beads (204) via wires.