Healthy red light LED eye protection lamp
By filling silicone oil between the homogenized shell and the lampshade and using a one-way translucent structure design, the problems of insufficient uniformity of the eye protection light and glare are solved, and better visual comfort and user experience are achieved.
Patent Information
- Application Number
- CN202422161662.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing eye protection lamps have insufficient light uniformity and glare problems in optical design, and the complexity and cost of optical components are high, so they cannot effectively control the light distribution, affecting visual comfort.
The design of setting a gap between the homogenized shell and the lampshade and filling it with silicone oil is adopted. Combined with the unidirectional light-transmitting structure of the lampshade, it reduces light reflection and scattering to ensure uniform light diffusing.
Improves the uniformity and stability of light, reduces glare, improves visual comfort and eye protection, and optimizes optical performance.
Smart Images

Figure CN223282947U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of eye protection lamps, and in particular to a healthy red light LED eye protection lamp. Background Art
[0002] In recent years, as people pay more attention to eye health, eye protection lamps have become a common lighting tool in home and office environments. Traditional eye protection lamps usually use white light LEDs or fluorescent lamps as light sources. Their design focuses on reducing eye fatigue and protecting eyesight. However, these traditional eye protection lamps have certain limitations. For example, they may not be able to effectively control the uniform distribution of light, or their optical design may not be able to fully reduce glare, thereby affecting the user's visual comfort.
[0003] In terms of optimizing the optical design of eye protection lamps, existing technical solutions mainly focus on using different optical components and materials to improve the uniformity and comfort of light. For example, some eye protection lamps use optical lenses and diffusers to diffuse light and reduce the discomfort caused by direct light. These technical solutions include installing optical diffusers and using light pipes. These methods can improve light distribution, but they usually also bring new problems, such as light loss, complexity of optical components, and increased costs.
[0004] Although the existing technical solutions have improved the optical performance of eye protection lamps to a certain extent, there are still some significant defects. For example, many traditional optical design methods cannot effectively control the uniformity of light, resulting in obvious shadows or bright spots in the light during use. Although optical diffusers and light pipes can reduce direct light, their light uniformity depends on the accuracy of optical design, and there may be problems of light loss and high manufacturing costs. In addition, the optical materials used in the existing technology may not provide sufficient light transmittance and stability, affecting the long-term use effect of the eye protection lamp. Therefore, a new optical design solution is needed to further optimize the optical performance of the red light LED eye protection lamp and achieve better visual comfort and usage experience. Utility Model Content
[0005] In view of this, it is necessary to provide a healthy red light LED eye protection lamp with optimized optical design to solve the above problems.
[0006] The embodiment of the present application provides a healthy red light LED eye protection lamp,
[0007] In at least one embodiment of the present application, the light-homogenizing shell is made of resin.
[0008] In at least one embodiment of the present application, the lampshade has an open surface extending in a vertical direction, and the light-distributing shell is provided at a lower end of the lampshade and is interference-fitted with the lampshade.
[0009] In at least one embodiment of the present application, the housing includes a top cover, which is arranged at the upper end of the lampshade along the vertical direction. The top cover is provided with an internal thread, and the top cover is threadedly connected to one end of the lampshade.
[0010] In at least one embodiment of the present application, the housing includes a base, the base is arranged away from the top cover, and the base is connected to the lampshade in a snap-fit connection.
[0011] In at least one embodiment of the present application, the lampshade is red light glass.
[0012] In at least one embodiment of the present application, the base includes a power supply, the LED lamp is disposed on the base, and the LED lamp is electrically connected to the power supply.
[0013] In at least one embodiment of the present application, the base platform includes a console, the console is electrically connected to the power supply, and the console is provided with a touch unit, and the touch unit is electrically connected to the console.
[0014] In at least one embodiment of the present application, the console is provided with a strong light unit, and the strong light unit is electrically connected to the touch unit and the power supply.
[0015] In at least one embodiment of the present application, the console is provided with a low-light unit, and the low-light unit is electrically connected to the touch unit and the power supply.
[0016] The healthy red light LED eye protection lamp provided above can effectively reduce the reflection and scattering of light by setting up a gap between the light-distributing shell and the lampshade and filling it with silicone oil, thereby improving the uniformity of light. The use of silicone oil not only helps to reduce the interference and distortion of light, but also can diffuse the light more evenly after passing through the light-distributing shell, thereby improving the stability and comfort of light. In addition, the one-way light-transmitting structure of the lampshade ensures that the light mainly diverges along the light-distributing shell toward the outside of the lampshade. This design effectively avoids the directionless scattering of light and reduces possible glare, thereby improving visual comfort and eye protection effect. Overall, this optical design optimizes the distribution and quality of light and enhances the actual use effect of the eye protection lamp. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a structural diagram of a healthy red light LED eye protection lamp;
[0018] Figure 2 This is an axial exploded view of a healthy red light LED eye protection lamp;
[0019] Figure 3 This is an axial exploded view of the components of a healthy red light LED eye protection lamp;
[0020] Figure 4 This is a schematic diagram of the electronic power supply connection.
[0021] Description of main component symbols
[0022] 1. Outer shell; 2. LED lamp; 3. Light-distributing structure; 4. Lampshade; 5. Light-distributing shell; 6. Silicone oil; 7. Base; 8. Top cover; 9. Power supply; 10. Control console; 11. Touch unit; 12. High light unit; 13. Low light unit; 100. A healthy red light LED eye protection lamp. DETAILED DESCRIPTION
[0023] The embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.
[0024] It should be noted that when a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and similar expressions used herein are for illustrative purposes only.
[0025] The embodiments of the present application provide a healthy red light LED eye protection lamp, comprising:
[0026] shell;
[0027] LED lights;
[0028] The light-distributing structure includes a lampshade and a light-distributing shell. Both ends of the lampshade are fixedly connected to the shell. The light-distributing shell is arranged in the lampshade. The LED lamp is arranged in the light-distributing shell. There is a gap between the light-distributing shell and the lampshade. The gap is filled with silicone oil. The lampshade is a one-way light-transmitting structure, and the light diverges along the light-distributing shell toward the outside of the lampshade.
[0029] The healthy red light LED eye protection lamp provided above can effectively reduce the reflection and scattering of light by setting up a gap between the light-distributing shell and the lampshade and filling it with silicone oil, thereby improving the uniformity of light. The use of silicone oil not only helps to reduce the interference and distortion of light, but also can diffuse the light more evenly after passing through the light-distributing shell, thereby improving the stability and comfort of light. In addition, the one-way light-transmitting structure of the lampshade ensures that the light mainly diverges along the light-distributing shell toward the outside of the lampshade. This design effectively avoids the directionless scattering of light and reduces possible glare, thereby improving visual comfort and eye protection effect. Overall, this optical design optimizes the distribution and quality of light and enhances the actual use effect of the eye protection lamp.
[0030] The following is combined with Figure 1-4 , some embodiments of the present application are described in detail. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.
[0031] The embodiment of the present application provides a healthy red light LED eye protection lamp 100, comprising:
[0032] Shell 1;
[0033] LED lights;
[0034] The light-distributing structure 3 includes a lampshade 4 and a light-distributing shell 5. Both ends of the lampshade 4 are fixedly connected to the outer shell 1. The light-distributing shell 5 is arranged in the lampshade 4. The LED lamp is arranged in the light-distributing shell 5. There is a gap between the light-distributing shell 5 and the lampshade 4. The gap is filled with silicone oil 6. The lampshade 4 is a one-way light-transmitting structure, and the light diverges along the light-distributing shell 5 toward the outside of the lampshade 4.
[0035] Specifically, the red light LED eye protection lamp includes a housing 1, an LED lamp 2, and a light-distributing structure 3 including a lampshade 4 and a light-distributing shell 5. The lampshade 4 is fixed to the housing 1, and the light-distributing shell 5 is arranged in the lampshade 4, and there is a gap between the two, and the gap is filled with silicone oil 6. The lampshade 4 is designed to be a one-way light-transmitting structure, and the light diverges along the light-distributing shell 5 toward the outside of the lampshade 4. This design effectively reduces the reflection and scattering of light by setting a gap between the light-distributing shell 5 and the lampshade 4 and filling it with silicone oil 6. Silicone oil 6 has excellent optical properties, which can reduce interference and distortion of light during transmission and ensure that the light is evenly diffused. This light-distributing design can significantly reduce the unevenness of light, avoid hot spots and shadow phenomena that are common in traditional lamps, and thus improve the stability and comfort of light. The one-way light-transmitting structure of the lampshade 4 makes the light diverge mainly along the direction of the light-distributing shell 5, effectively preventing the directionless scattering of light and reducing the generation of glare. This optimized optical design is suitable for office environments, home reading, study and other places where eyes need to be used for a long time. It can provide soft and uniform lighting, reduce eye fatigue, protect eyesight and improve user comfort.
[0036] In one embodiment, the light-distributing shell 5 is made of resin.
[0037] Specifically, the light-distributing shell 5 is made of resin material. The choice of resin material has an important influence on the optical performance. The optical properties of the resin enable the light to be evenly distributed inside the light-distributing shell 5, reducing the non-uniformity of the light during transmission. The resin material not only has excellent light transmittance, but also has good mechanical strength and durability, and can withstand long-term use without deformation or damage. In addition, the processing technology of the resin material is flexible and can be made into complex optical shapes, further optimizing the distribution effect of light. The use of resin materials can also reduce production costs and improve the economy of the product. The design of the resin light-distributing shell 5 not only improves the overall lighting effect of the eye protection lamp, but also ensures the durability and reliability of the product. It is suitable for environments that require a stable light source, such as reading, office, night work, etc., providing users with a more comfortable lighting experience.
[0038] In a specific example, the lampshade 4 has an open surface extending in a vertical direction, and the light-distributing shell 5 is disposed at the lower end of the lampshade 4 and is interference-fitted with the lampshade 4 .
[0039] Specifically, the lampshade 4 has an open surface running through the vertical direction, and the light-distributing shell 5 is provided at the lower end of the lampshade 4 and is interference fit with the lampshade 4. The open surface design simplifies the installation process of the light-distributing shell 5, allowing the light-distributing shell 5 to be precisely positioned inside the lampshade 4. The interference fit design ensures a tight fit between the light-distributing shell 5 and the lampshade 4. This fit can prevent dust and impurities from entering the interior of the lampshade 4, keep the optical system clean, and avoid light leakage or uneven scattering. The interference fit also enhances the stability of the structure, forming a firm seal between the light-distributing shell 5 and the lampshade 4, ensuring stable optical performance during long-term use. In practical applications, this design can effectively extend the service life of the eye protection lamp, improve the durability and performance stability of the product, and is suitable for various lighting scenarios requiring high stability, such as offices, study rooms, etc.
[0040] In a specific example, the housing 1 includes a top cover 8 , which is disposed on the upper end of the lampshade 4 along the vertical direction. The top cover 8 is provided with an internal thread, and the top cover 8 is threadedly connected to one end of the lampshade 4 .
[0041] Specifically, the outer shell 1 includes a top cover 8, which is arranged on the upper end of the lampshade 4 in the vertical direction, and the top cover 8 is connected to one end of the lampshade 4 by a thread. The design of the top cover 8 not only provides protection for the lampshade 4, but also enhances the stability of the overall structure. The use of threaded connection enables the top cover 8 to be firmly fixed to the lampshade 4. This structure makes installation and disassembly more convenient, and can also reduce trouble when maintaining and replacing lamp components. The top cover 8 is provided with an internal thread, which can be precisely matched with the external thread of the lampshade 4 to ensure the stability and sealing of the connection. The advantage of this structural design is that it improves the overall strength and stability of the eye protection lamp, prevents the lampshade 4 from loosening or shifting during use, thereby improving the safety and durability of the lamp, ensuring long-term stable operation, and is suitable for environments requiring stable lighting.
[0042] In a specific example, the housing 1 includes a base 7 , which is disposed away from the top cover 8 , and the base 7 is snap-connected to the lampshade 4 .
[0043] Specifically, the housing 1 includes a base 7, which is arranged under the top cover 8 and is connected to the lampshade 4 through a snap-on connection. The design of the base 7 ensures the overall stability of the eye protection lamp. The snap-on connection between the base 7 and the lampshade 4 provides a reliable fixation, so that the lampshade 4 will not shake or shift during use. This connection method simplifies the assembly process and improves the stability of the product, prevents unnecessary movement or falling during use, and improves the safety and stability of use. The structure of the base 7 can also accommodate other components, such as a power supply 9 and a console 10, providing an integrated support platform for the eye protection lamp. This design is suitable for use environments that require long-term stable placement, such as office desks, desks, etc., ensuring the long-term stability and reliability of the eye protection lamp.
[0044] In one specific example, the lampshade 4 is made of red glass.
[0045] Specifically, lampshade 4 is made of red glass. Red glass effectively filters blue light, reducing eye fatigue and promoting eye health. The potential damage of blue light to the eyes has been extensively studied, and the use of red glass can reduce this damage, providing users with a more comfortable lighting experience. Red glass not only helps relieve eye fatigue but also softens the light, making it suitable for situations requiring prolonged eye use, such as reading and working. This design improves visual comfort, especially for nighttime use or low-light environments, providing a gentle, non-glaring light to protect eyesight.
[0046] In a specific example, the base includes a power supply 9 , the LED lamp is disposed on the base, and the LED lamp is electrically connected to the power supply 9 .
[0047] Specifically, the base includes a power supply 9, and the LED lamp 2 is electrically connected to the power supply 9. The integrated design of the power supply 9 ensures the stable operation of the LED lamp 2 and simplifies the electrical connection process. As an integrated part of the power supply 9, the base improves the overall reliability and ease of use of the eye protection lamp. The design of the power supply 9 takes into account the power adaptation and power supply 9 management, which can ensure the normal operation of the LED lamp 2 under different lighting requirements. By directly connecting the power supply 9 to the LED lamp 2, the demand for an external power supply 9 is reduced, making the eye protection lamp more convenient and safer when used. This design is suitable for various occasions that require a stable light source, such as offices, home reading, etc., ensuring a long-term stable lighting effect.
[0048] In a specific example, the base platform includes a console 10 , which is electrically connected to the power supply 9 . The console 10 is provided with a touch unit 11 , which is electrically connected to the console 10 .
[0049] Specifically, the base includes a control console 10, which is electrically connected to the power supply 9 and is provided with a touch unit 11. The setting of the touch unit 11 provides the user with convenient control of the eye protection lamp function, and the user can easily adjust the light intensity and other function settings through touch operation. The integrated design of the control console 10 makes the operation more intuitive and simple, and improves the convenience of using the eye protection lamp. The touch unit 11 is electrically connected to the control console 10 and can reflect the user's operation in real time, ensuring rapid response and adjustment of the lamp function. This design is suitable for various occasions that require flexible lighting adjustment, and improves the functionality and user experience of the eye protection lamp.
[0050] In a specific example, the console 10 is provided with a strong light unit 12 , and the strong light unit 12 is electrically connected to the touch unit 11 and the power source 9 .
[0051] Specifically, the console 10 is provided with a strong light unit 12, which is electrically connected to the touch unit 11 and the power supply 9. The setting of the strong light unit 12 provides the option of adjusting the light intensity to meet different lighting needs. The user can adjust the light intensity as needed to adapt to different usage scenarios, such as requiring strong light when working and soft light when reading. The electrical connection between the strong light unit 12, the touch unit 11 and the power supply 9 ensures the real-time and accuracy of the adjustment operation, improves the functional applicability of the eye protection lamp, and enhances the user experience.
[0052] In a specific example, the console 10 is provided with a low-light unit 13 , and the low-light unit 13 is electrically connected to the touch unit 11 and the power source 9 .
[0053] Specifically, the console 10 is provided with a low-light unit 13, which is electrically connected to the touch unit 11 and the power supply 9. The low-light unit 13 provides a soft light mode, which is suitable for low-light environments or nighttime use, reduces irritation to the eyes, and provides a more comfortable lighting experience. The setting of the low-light unit 13 allows the user to still obtain appropriate lighting without the need for strong light, which increases the flexibility and applicability of the eye protection lamp. The design of the electrical connection ensures the stability of the low-light mode and the convenience of operation, and is suitable for various environments that require adjustment of light intensity, such as bedrooms, nighttime reading, etc.
[0054] The above is only an implementation method of the present application. It should be pointed out that for ordinary technicians in this field, improvements can be made without departing from the creative concept of the present application, but these all fall within the scope of protection of the present application.
Claims
1. A healthy red light LED eye protection lamp, characterized in that: include: shell; LED lights; The light-distributing structure includes a lampshade and a light-distributing shell. Both ends of the lampshade are fixedly connected to the shell. The light-distributing shell is arranged in the lampshade. The LED lamp is arranged in the light-distributing shell. There is a gap between the light-distributing shell and the lampshade. The gap is filled with silicone oil. The lampshade is a one-way light-transmitting structure, and the light diverges along the light-distributing shell toward the outside of the lampshade.
2. The healthy red light LED eye protection lamp according to claim 1, characterized in that: The homogenous shell is made of resin.
3. The healthy red light LED eye protection lamp according to claim 1, characterized in that: The lampshade has an open surface running through the vertical direction, and the light-distributing shell is arranged at the lower end of the lampshade and is interference-fitted with the lampshade.
4. The healthy red light LED eye protection lamp according to claim 3, characterized in that: The housing includes a top cover, which is arranged on the upper end of the lampshade along the vertical direction. The top cover is provided with an internal thread, and the top cover is threadedly connected to one end of the lampshade.
5. The healthy red light LED eye protection lamp according to claim 4, characterized in that: The housing comprises a base, the base is arranged away from the top cover, and the base is connected to the lampshade by a locking mechanism.
6. The healthy red light LED eye protection lamp according to claim 1, characterized in that: The lampshade is made of red glass.
7. The healthy red light LED eye protection lamp according to claim 5, characterized in that: The base includes a power supply, the LED lamp is arranged on the base, and the LED lamp is electrically connected to the power supply.
8. The healthy red light LED eye protection lamp according to claim 7, characterized in that: The base platform includes a control console, the control console is electrically connected to the power supply, and the control console is provided with a touch unit, and the touch unit is electrically connected to the control console.
9. The healthy red light LED eye protection lamp according to claim 8, characterized in that: The console is provided with a strong light unit, and the strong light unit is electrically connected to the touch unit and the power supply.
10. The healthy red light LED eye protection lamp according to claim 8, characterized in that: The console is provided with a low-light unit, and the low-light unit is electrically connected to the touch unit and the power supply.