This application claims priority to a Chinese Patent Application No. CN 202111179350.5, filed on Oct. 11, 2021.
The present invention relates to the field of lighting techniques, particularly a high-efficiency linear light source focused strip lamp.
In the context of energy conservation and environmental protection, LED lamps are increasingly used in the field of home and commercial lighting because of their high light efficiency and good light concentration performance. In recent years, both home and abroad have anti-glare standards for indoor lamps, and the European Union has strict anti-glare standards, that is, UGR<19 or even lower. In 1995, the International Lighting Commission put forward the concept of anti-glare of lamps, and took UGR as an indicator to evaluate the uncomfortable glare of indoor lighting environment.
There are many indoor lighting LED lamps, such as LED tubes. In order to avoid the light is too strong to give a person visual sense of vertigo, lamp covers often use translucent material, the LED point light source is expanded into surface light, increasing the lighting surface, eliminate the glare, sublimation visual effect. The light emitted by the light source cannot be effectively used, resulting in less effective lighting, and the illumination angle is not easy to control, and it is difficult to achieve the lighting effect requirements of UGR<19 in indoor lighting. In addition, color difference and blue light phenomenon will also occur, which is harmful to human eyes.
Now, few LED lamps can meet the anti-glare requirement in indoor lighting. At present, the common anti-glare panel light in the industry is to add a grid in front of the panel light to block the light from large angles. A quite part of the light emitted by the light source cannot be used for efficient use. It often loses more than half of the power, the structure is complex, and the energy saving effect is not ideal.
In view of this, the present invention provides a high-efficiency linear light source focused strip lamp to solve the above technical problems.
A high-efficiency linear light source focused strip lamp, comprises
The length direction is the length direction of the strip lamp.
The technical effects of the present invention:
The high-efficiency linear light source focused strip lamp of the present invention performs light distribution through the concentrating lens in the vertical length direction, and achieves high-efficiency sweeping function, and in the longitudinal direction, the light-emitting chip is performed visually stretching by the convex lens arrays on the strip lamp cover, thus achieving the effect of the line light source, solves the original glare problem without affecting the efficiency.
Embodiments of the present invention will be described below with reference to the drawings, in which:
The specific embodiments of the present invention will be described in further detail below based on the drawings. It should be understood that the description of the embodiments of the present invention is not intended to limit the scope of the invention.
As shown in
The light-emitting chip 300 according to the present invention refers to an electroluminescent material, and an LED chip is currently common and efficiently.
The above structure is a common structure of a strip lamp having a sweeping function, wherein the light emitting Angle of the light-emitting chip 300 is reduced by the condensing lens 400, and the direction of the strongest light and the irradiation surface are set to a certain Angle, the sweeping effect can be obtained, and the light is uniform and the irradiation range is large.
The connection mode between the strip lamp frame 100, the strip lamp plate 200, and the strip lamp cover 500 is a conventional way, using the form of clip or plug, etc., which is not described here.
Further, the lamp also includes an end cap assembly 700 disposed at both ends, which is not the focus of the present invention and it will not be described herein.
In this embodiment, the strip lamp cover 500 is provided with a convex lens array 501 that visually stretches the light-emitting chip 300 along a length direction. The arrangement of the convex lens array 501 can let the light-emitting chip 300 on the vision stretching on the length direction. The dimming of the present invention is in the vertical length direction, and there is no need to light in the longitudinal direction, so it changes the imaging of the light emitting chip 300 through the convex lens array 501 but does not affect the light distribution, the implementation of line source at the same time, do not affect the light efficiency.
The length direction of the present invention is the length direction of the strip lamp.
The convex lens array 501 is disposed on the outer surface of the strip lamp cover 500, or in the inner surface, and it is easier manufacturing when provided in the outer surface.
In order to make more light out, the cross section of the strip lamp cover 500 is a curved shape, and each convex lens in the convex lens array 501 is a strip-shaped lens extending along an arc. The radius of the convex lens can be adjusted as needed to achieve the imaging of the adjacent two light-emitting chips 300 connect.
In order to further increase the light efficiency, one side of the condensing lens 400 away from the irradiation surface is provided with a strip reflective portion 600 that reflects the light leakage to the opposite side of the condensing lens 400. When the strip lamp of the present invention is in use, since the arrangement of the concentrating lens often leads to the area in front of the lamp don't get enough light, therefore, we set a strip reflective portion 600 on the side of the condensing lens 400 away from the radiation surface, which reuses some of the original waste of the leak and makes it reflected to the front of the strip lamp, making the light more uniform.
In order to improve the light uniformity, the strip reflective portion 600 of the present embodiment adopts a white reflective surface. The diffuse reflection produced by the white reflective surface, compared with the specular reflection is not easy to form uneven spots.
In order to improve the reflection efficiency and reflect more light leakage, in this embodiment, the strip reflective portion 600 is arranged between the strip lamp plate 200 and the strip lamp cover 500. Light leakage mainly occurs at the position of the light-emitting chip 300 and the condensing lens 400, and the strip reflective portion 600 can reflect these light leakage very well.
In order to facilitate mounting and fixing, one side of the strip reflective portion 600 toward the condensing lens 400 is provided with a card slot 601, and the condensing lens 400 is provided with a block 401 that cooperates with the card slot 601. Generally, when fixing the condensing lens 400, a fixed connection structure needs to be set between the strip lamp plate 200 and the condensing lens 400, which will become complex. A card slot is set on the strip reflective portion 600 to fix one side of the condensing lens 400, which reduces the setting of locking components and is more convenient for disassembly and replacement.
In order to facilitate manufacturing and installation, in the present embodiment, the condensing lens 400 is a strip lens.
The condensing lens can reduce the light outlet Angle of the light-emitting chip 300 to improve the light intensity near the optical axis, and the embodiment is more. In this embodiment, in order to improve the light efficiency, the condensing lens 400 includes a total reflection surface 402 provided on both sides and an light inlet surface 403 and an light outlet surface 404 disposed between the two total reflection surfaces 402. The light inlet surface 403 can also be set up as a concentrating convex lens, further increasing the efficiency. Further, the strip reflective portion 600 is attached to a total reflection surface 402 of the condensing lens 400.
As shown in
The above are only preferred embodiments of the present invention, and are not used to limit the protection scope of the present invention. Any modification, equivalent replacement or improvement within the spirit of the present invention is covered by the scope of the claims of the present invention.
Number | Date | Country | Kind |
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202111179350.5 | Oct 2021 | CN | national |
Number | Name | Date | Kind |
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20210341123 | Mototsuji | Nov 2021 | A1 |
Number | Date | Country |
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110454700 | Nov 2019 | CN |
Entry |
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Xu et al., “Optical assembly of illuminating lamp and linear-light-source illuminating lamp”, Nov. 15, 2019, Espacenet, https://worldwide.espacenet.com/patent/search/family/067085523/publication/CN110454700A?q=pn%3DCN110454700A (Year: 2019). |
Number | Date | Country | |
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20230111995 A1 | Apr 2023 | US |