Anti-dazzle brightening magnetic lamp with transparent optical diamond crystal cover
Through the design of transparent optical diamond cover, the combination of Fresnel anti-glare transparent light-transparent plate and secondary anti-glare transparent light-transparent plate is used to solve the problems of anti-glare and insufficient brightness of magnetic lamps, achieving soft and comfortable lighting effects and high brightness, enhancing the three-dimensional sense of space.
Patent Information
- Application Number
- CN202422170445.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing magnetic lamps have the contradiction between anti-glare and poor brightness, and it is impossible to achieve soft lighting and high brightness at the same time.
The transparent optical rhombus cover design is adopted. Through the combination of Fresnel anti-glare transparent light-transmitting plate and secondary anti-glare transparent light-transmitting plate, multiple refractions change the direction of light, so that light produces a rich light and shadow effect when passing through the lampshade, enhances brightness and filters glare.
It achieves a soft and comfortable lighting effect, enhances the three-dimensional sense of the space, and increases the brightness, providing a more pleasant lighting experience.
Smart Images

Figure CN223063713U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an anti-glare and brightening magnetic absorption lamp with a transparent optical rhombus crystal cover. Background Art
[0002] According to patent retrieval and market research, "no main light" means that there is no hanging rail or built-in rail installed in the middle of the house, and various lamps (spotlights, downlights, tubular lights) can be installed freely and disassembled for lighting. It is a partitioned scattered lighting method. According to the space requirements, the lighting needs are met by combining linear light sources and point light sources. No main light lighting can meet the lighting needs of complex spaces. Its design is very user-friendly and the spatial hierarchy can be DIY set, which provides a good experience. However, the existing magnetic lamps have contradictory structural defects of anti-glare and poor brightness. Generally, anti-glare is achieved by adding frosted sheets to allow light to pass through the frosted sheets so that the light is not dazzling, but the brightness is greatly reduced. If a transparent flat board is used, the brightness is increased, but the light is dazzling. In order to solve the above problems, we have developed an anti-glare and brightening magnetic lamp with a transparent optical rhombus cover. Utility Model Content
[0003] The technical problem to be solved by the utility model is to provide an anti-glare and brightening magnetic lamp with a transparent optical rhombus cover, which has the characteristics of brightening output and multiple anti-glare refraction. The design of the optical rhombus cover embossed lampshade cleverly changes the propagation path of light, so that the light produces rich light and shadow effects when passing through the lampshade. This lighting effect with staggered light and shadow and distinct layers not only enhances the three-dimensional sense of space, but also makes the lighting softer and more comfortable. The transparent embossed lampshade can filter out the dazzling glare, leaving only the warm and soft light rhythm to bring a more pleasant lighting experience to the residents.
[0004] In order to achieve the above-mentioned purpose, the technical solution adopted by the utility model is to provide an anti-glare and brightening magnetic absorption lamp with a transparent optical rhombus cover, characterized in that it comprises:
[0005] Anti-glare light transmission group, including transparent optical rhombus crystal cover;
[0006] The lamp body has a containing cavity and an LED light source arranged in the containing cavity. The LED light source emits light which is oscillated and refracted multiple times by an anti-glare light transmission group to change direction and output to the outside through a transparent optical rhombus crystal cover.
[0007] In one or more embodiments of the present utility model, the anti-glare light-transmitting group includes a Fresnel anti-glare transparent light-transmitting plate and a secondary anti-glare transparent light-transmitting plate located outside the Fresnel anti-glare transparent light-transmitting plate; the Fresnel anti-glare transparent light-transmitting plate has a Fresnel light-incident surface facing the light-receiving LED light source of the lamp, and a transparent rhombic surface for causing the light emitted from the LED light source to enter the Fresnel light-incident surface and then undergo optical path oscillation refraction to change the direction for output; the secondary anti-glare transparent light-transmitting plate is closely attached to the surface of the Fresnel anti-glare transparent light-transmitting plate.
[0008] In one or more embodiments of the present utility model, the lamp body is provided with a limiting groove for jointly placing the secondary anti-glare transparent light-transmitting plate and the Fresnel anti-glare transparent light-transmitting plate; the secondary anti-glare transparent light-transmitting plate receives the light output from the transparent rhombic surface and again undergoes optical path oscillation refraction to change the direction for external output.
[0009] In one or more embodiments of the present utility model, the rhombic surface forms an uneven shape arranged uniformly; the transparent optical rhombic cover can be detachably assembled to the lamp body
[0010] In one or more embodiments of the present utility model, the secondary anti-glare transparent light-transmitting plate has a prismatic uneven surface arranged uniformly.
[0011] In one or more embodiments of the present utility model, the Fresnel anti-glare transparent light-transmitting plate, the secondary anti-glare transparent light-transmitting plate, and the transparent optical rhombic cover are made of transparent plastic or transparent soft glue or transparent glass.
[0012] In one or more embodiments of the present utility model, the lamp body is connected to an electrical coupling block.
[0013] In one or more embodiments of the present utility model, the lamp body is integrally formed of a metal material or plastic.
[0014] In one or more embodiments of the present utility model, the two ends of the lamp body are provided with snap-fit end caps.
[0015] In one or more embodiments of the present utility model, the light rays of the LED light source form a variety of beam angles from 10 to 90 degrees for output after passing through the Fresnel anti-glare transparent light-transmitting plate, the secondary anti-glare transparent light-transmitting plate, and the transparent optical rhombic cover.
[0016] The effects of the present utility model compared with the background technology are as follows: By adopting the above technical solution, it has the characteristics of enhanced brightness output and multiple anti-glare refractions. The light is redirected and concentrated through the Fresnel light-incident transparent lens, and then passes through the transparent rhombic crystal surface. The transparent rhombic crystal surface effectively increases the light output rate, enhances the brightness, and anti-glare, and then passes through the secondary anti-glare transparent rhombic crystal lens again and reaches the transparent optical rhombic cover for diffused light output; The design of the optical rhombic cover pressed flower lamp cover cleverly changes the light propagation path, making the light produce rich light and shadow effects when passing through the lamp cover. This lighting effect with staggered light and shadow and distinct levels not only enhances the three-dimensional sense of the space but also makes the lighting softer and more comfortable. The transparent pressed flower lamp cover can filter out the dazzling glare and only retain the warm and soft light charm, bringing a more pleasant lighting experience to the residents. It has a simple structure, low manufacturing cost, and good user experience. Therefore, it has excellent performance in terms of technology, practicality, and economy. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 FIG. is a three-dimensional unfolded structural schematic diagram of an anti-glare and brightness-enhancing magnetic-absorbing lamp with a transparent optical rhombic cover in an embodiment of the present utility model;
[0018] Those skilled in the art can obtain the solutions shown in the shapes and structures in the drawings. The various components in the drawings are not necessarily to scale, and the sizes of the various components and elements in the drawings can be enlarged or reduced to more clearly illustrate the embodiments of the present utility model described herein. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] The embodiments of the present utility model are described in detail below. The illustrated embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements with the same or similar functions throughout.
[0020] The orientation shown in the drawings should not be construed as limiting the specific protection scope of the present utility model. It is only for reference and understanding of the preferred embodiments. The positions of the product components shown in the drawings can be changed, the quantity can be increased, or the structure can be simplified.
[0021] The "connection" described in the specification and the "connection" relationship between the components shown in the drawings can be understood as fixedly connected, detachably connected, or integrally formed; it can be directly connected or connected through an intermediate medium. Those of ordinary skill in the art can understand the connection relationship according to the specific situation and can obtain different implementation modes by using appropriate connection methods such as screwing, riveting, welding, clamping, or embedding.
[0022] The orientation terms such as upper, lower, left, right, top, bottom, etc. described in the specification and the orientations shown in the attached drawings. Each component can be in direct contact or in contact through other features between them. For example, "above" can be directly above or diagonally above, or it only means higher than other objects. Similar understandings can be made for other orientations. The following will further describe the specific embodiments of the present invention in combination with the attached drawings of the specification, making the technical solutions and their beneficial effects of the present invention clearer and more definite.
[0023] The following refers to Figure 1 to describe specific embodiments. However, those skilled in the art will easily understand that the detailed description given herein with respect to these drawings is for illustrative purposes only and should not be construed as restrictive. This embodiment provides a magnetically attached lamp with an optical cover for anti-glare and brightness enhancement, which has the characteristics of enhanced output and multiple anti-glare refractions. The light is redirected and concentrated through the Fresnel light-incident surface transparent lens and then scattered out from the transparent rhombic crystal surface. The transparent rhombic crystal surface effectively increases the light output rate, enhances the brightness, and anti-glare, and then passes through the secondary anti-glare transparent rhombic crystal lens again; it has a simple and beautiful structure, low manufacturing cost, and good user experience.
[0024] To achieve the above object, the technical solution adopted by the present invention is to provide an anti-glare and brightness-enhancing magnetically attached lamp with a transparent optical rhombic crystal cover, which is characterized in that it includes:
[0025] An anti-glare light-transmitting group 1, including a transparent optical rhombic crystal cover 11;
[0026] A lamp body 2, which has a receiving cavity 21 and an LED light source 3 provided in the receiving cavity. The light emitted by the LED light source 3 passes through the anti-glare light-transmitting group 1 for multiple optical path oscillation refractions to change the direction and is output externally through the transparent optical rhombic crystal cover 11.
[0027] The anti-glare light-transmitting group 1 includes a Fresnel anti-glare transparent light-transmitting plate 12 and a secondary anti-glare transparent light-transmitting plate 13 located outside the Fresnel anti-glare transparent light-transmitting plate. The Fresnel anti-glare transparent light-transmitting plate 12 has a Fresnel light-incident surface 121 facing the LED light source 3 of the lamp for receiving light, and a transparent rhombic crystal surface 122 for causing the light emitted from the LED light source to undergo optical path oscillation refraction and change the direction after entering the Fresnel light-incident surface for output. The secondary anti-glare transparent light-transmitting plate 13 is closely attached to the surface of the Fresnel anti-glare transparent light-transmitting plate 122.
[0028] The lamp body 2 is provided with a limit groove 22 for jointly placing the secondary anti-glare transparent light-transmitting plate and the Fresnel anti-glare transparent light-transmitting plate. The secondary anti-glare transparent light-transmitting plate 13 receives the light output from the transparent rhombic crystal surface 131 and undergoes optical path oscillation refraction again to change the direction and is output externally through the optical cover 11.
[0029] The surface 131 of the rhombic crystal forms a concave-convex shape with uniform arrangement; the transparent optical rhombic crystal cover 11 can be disassembled and assembled on the lamp body 2
[0030] The secondary anti-glare transparent light-transmitting plate 13 has a prism concave-convex surface with uniform arrangement. The 11, Fresnel anti-glare transparent light-transmitting plate 12 and secondary anti-glare transparent light-transmitting plate 13 are made of transparent plastic or transparent soft glue or transparent glass.
[0031] The lamp body 2 is connected to the electrical coupling block 3. The lamp body 2 is integrally formed of a metal material or plastic. Both ends of the lamp body 2 are provided with snap-on end caps 4.
[0032] The light of the LED light source 3 forms an output of multiple beam angles of 10 - 90 degrees after passing through the Fresnel anti-glare transparent light-transmitting plate 12, the secondary anti-glare transparent light-transmitting plate 13 and the transparent optical rhombic crystal cover 11.
[0033] During installation, the electrical coupling block 4 is cooperatively placed into the track of the mainless lamp for power connection. After the LED light source 3 is reflected by the reflector cup (reflective paper) 5, it irradiates the Fresnel light-incident surface 111; after passing through the Fresnel anti-glare light-transmitting plate 11, the light oscillates and refracts to change the direction for the first anti-glare transmission. At the same time, after anti-glare, it passes through the secondary anti-glare transparent rhombic lens again and then reaches the transparent optical rhombic crystal cover for diffused light output. This makes the light produce a rich light and shadow effect when passing through the lamp shade. This lighting effect with interlaced light and shadow and distinct levels not only enhances the three-dimensional sense of the space but also makes the lighting softer and more comfortable. The transparent pressed flower lamp shade can filter out the dazzling glare and only retain the warm and soft light charm, bringing a more pleasant lighting experience to the occupants. Such light has the characteristics of increased light output and multiple anti-glare refractions. The light changes direction and is concentrated through the Fresnel light-incident surface lens and then diffused from the rhombic crystal surface. The transparent rhombic crystal surface effectively increases the light output rate and enhances the brightness, and after anti-glare, it passes through the secondary anti-glare lens again; especially the design of the optical rhombic crystal cover pressed flower lamp shade cleverly changes the propagation path of the light, making the light produce a rich light and shadow effect when passing through the lamp shade. This lighting effect with interlaced light and shadow and distinct levels not only enhances the three-dimensional sense of the space but also makes the lighting softer and more comfortable. The transparent pressed flower lamp shade can filter out the dazzling glare and only retain the warm and soft light charm, bringing a more pleasant lighting experience to the occupants. It has a simple and beautiful structure, low manufacturing cost and good user experience. Therefore, it has excellent performance in terms of technology, practicality and economy.
[0034] For purposes of illustration, the foregoing description uses specific names to provide a thorough understanding of the described embodiments. However, it will be apparent to those skilled in the art that no specific details are required in order to practice the described embodiments. Those skilled in the art should understand that the present utility model is not limited to the specific embodiments described above, and improvements and substitutions using well-known techniques in the art based on the present utility model fall within the protection scope of the present utility model, which should be defined by each claim.
Claims
1. An anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover, characterized in that, It includes: An anti-glare light-transmitting group, including a transparent optical rhombic cover; A lamp body, which has a receiving cavity and an LED light source disposed in the receiving cavity. The light emitted by the LED light source passes through the anti-glare light-transmitting group for multiple optical path oscillations and refractions to change the direction and is output externally through the transparent optical rhombic cover.
2. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover as claimed in claim 1, wherein The anti-glare light-transmitting group includes a Fresnel anti-glare transparent light-transmitting plate and a secondary anti-glare transparent light-transmitting plate located outside the Fresnel anti-glare transparent light-transmitting plate; the Fresnel anti-glare transparent light-transmitting plate has a Fresnel light-incident surface facing the LED light source of the lamp for receiving light, and a transparent rhombic surface for causing the light emitted from the LED light source to enter the Fresnel light-incident surface and then undergo optical path oscillations and refractions to change the direction for output; the secondary anti-glare transparent light-transmitting plate is closely attached to the surface of the Fresnel anti-glare transparent light-transmitting plate.
3. The anti-glare and brightness-enhancing magnetic-absorbing lamp with a transparent optical rhombic cover according to claim 2, wherein The lamp body is provided with a limiting groove for jointly placing the secondary anti-glare transparent light-transmitting plate and the Fresnel anti-glare transparent light-transmitting plate; the secondary anti-glare transparent light-transmitting plate receives the light output from the transparent rhombic surface and undergoes optical path oscillations and refractions again to change the direction for external output.
4. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover according to claim 3, characterized in that, The rhombic surface forms an uneven shape arranged uniformly; the transparent optical rhombic cover can be detachably assembled to the lamp body.
5. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover according to claim 2, characterized in that, The secondary anti-glare transparent light-transmitting plate has an uneven light-incident cup surface arranged uniformly.
6. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover according to claim 5, characterized in that, The Fresnel anti-glare transparent light-transmitting plate, the secondary anti-glare transparent light-transmitting plate and the transparent optical rhombic cover are made of transparent plastic or transparent soft glue or transparent glass.
7. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover according to claim 6, characterized in that The lamp body is connected to an electrical coupling block.
8. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover according to claim 7, characterized in that, The lamp body is integrally formed with a metal material or plastic.
9. The anti-glare and brightness-enhancing magnetic lamp with a transparent optical rhombic cover according to claim 8, wherein, Both ends of the lamp body are provided with snap-on end caps.
10. The anti-glare and brightness-enhancing magnetic-absorbing lamp with a transparent optical rhombic cover according to claim 9, characterized in that, The light of the LED light source forms multiple beam angles of 10 - 90 degrees for output after passing through the Fresnel anti-glare transparent light-transmitting plate, the secondary anti-glare transparent light-transmitting plate and the transparent optical rhombic cover.