Lamp holder and lamp

By designing light outlets and reflectors in opposite directions on the lamp head to reflect light, and combining them with independently controlled light-emitting units, the problems of complex structure and uneven brightness of reading and writing lamps are solved, achieving a simple and comfortable three-dimensional lighting effect.

CN122107330APending Publication Date: 2026-05-29OPPLE LIGHTING CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
OPPLE LIGHTING CO LTD
Filing Date
2024-11-28
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing reading and writing lamps suffer from problems such as heavy light guide plates, difficult installation, high cost, insufficient light environment, complex structure, heavy lamp heads, many parts, and uneven brightness.

Method used

Design a lamp head with first and second light outlets facing opposite directions on the housing, and first and second light-emitting units on the light source board. The light is reflected by a reflector, and combined with a diffuser and a microstructure board, it can achieve light emission from the top and bottom, independently control the two sets of light-emitting units, reduce the number of parts, and avoid light interference through an isolation part.

Benefits of technology

It achieves a simple structure, no glare, and uniform illumination effect for three-dimensional lighting, meets anti-glare requirements, and improves the overall lighting effect and comfort of the lamp.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a lamp holder and a lamp. The lamp holder comprises a shell and a light source. The shell is provided with a first light outlet and a second light outlet with opposite light directions on opposite sides. The light source comprises a first light emitting unit and a second light emitting unit arranged on the same side surface of a same light source plate. The first light emitting unit emits light towards the first light outlet. A reflector covers the second area in the light emitting direction of the second light emitting unit. The light emitted by the second light emitting unit is reflected by the reflector and then emitted from the second light outlet. The upper and lower light sources of the lamp holder share a same light source plate, thereby reducing the number of parts and achieving three-dimensional space illumination. The main lighting part adopts a reflector for light distribution, which takes into account the glare resistance and the uniformity of illumination, improves the lighting effect of the whole lamp, illuminates the whole work surface without shadows, and the direct light is soft and has no particle feeling, thereby meeting the glare resistance requirement.
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Description

Technical Field

[0001] This invention relates to the field of lighting, and in particular to a lamp holder for a reading and writing lamp and a lamp including the lamp holder. Background Technology

[0002] Among lighting products, there is a category specifically designed for reading, writing, and work. These lamps emit light facing the work surface, and the light emission methods are primarily side-emitting and direct-emitting. Side-emitting lamps emit light by refracting it through a light guide plate, achieving the effect of seeing the light but not the lamp itself. This type of light is softer and more comfortable than direct-emitting light. However, side-emitting lamps have drawbacks, such as heavier light guide plates, more difficult installation, and higher costs. In addition, side-emitting lamps may have inconsistent brightness on the sides, or even have bright edges that are clearly visible.

[0003] Meanwhile, current reading and writing lights typically only illuminate the work surface without upward beams, resulting in a small illumination range and an insufficiently bright and uncomfortable lighting environment. Lighting fixtures that incorporate upward light sources, on the other hand, suffer from complex structures, heavier lamp heads, and more components. Summary of the Invention

[0004] The purpose of this application is to solve at least one of the above problems and provide a lamp head and lamp fixture with a simple structure that can emit light from both the top and bottom and is glare-free.

[0005] To achieve the above-mentioned functions, this application provides a lamp holder, including a housing and a light source. The housing has a first light-emitting port and a second light-emitting port with opposite light-emitting directions on opposite sides. The light source includes a first light-emitting unit and a second light-emitting unit disposed on the same light source plate and on the same side surface of the light source plate. The first light-emitting unit is disposed in a first region, and the second light-emitting unit is disposed in a second region. The first light-emitting unit emits light towards the first light-emitting port. An isolation portion is provided between the first region and the second region. A reflector covers the second region in the light-emitting direction of the second light-emitting unit. One end of the reflector is connected to the isolation portion, and the other end is connected to the second light-emitting port. Light emitted by the second light-emitting unit is reflected by the reflector and emitted from the second light-emitting port.

[0006] Furthermore, the lamp head is rectangular, and the second region is disposed on both sides of the first region; or the lamp head is circular, and the second region is disposed around the first region.

[0007] Furthermore, the isolation portion is made of an opaque material and covers the entire boundary between the first region and the second region.

[0008] Furthermore, one end of the isolation portion is disposed adjacent to the light source plate, and the other end of the isolation portion extends away from the light source plate, with the end forming the first light outlet.

[0009] Furthermore, the reflective surface of the reflector is an arc-shaped surface, and the distance between its highest point and the light source plate is greater than the distance between the first light outlet and the light source plate.

[0010] Furthermore, the reflector is a portion of the inner surface of the housing.

[0011] Furthermore, the first light-emitting port is provided with a diffusion mask, and / or the second light-emitting port is provided with a microstructure plate.

[0012] Furthermore, the first light-emitting unit and the second light-emitting unit are respectively connected to different control circuits, and each is controlled independently.

[0013] This application also provides a lamp, characterized in that: it includes a base, a lamp post and a lamp head as described above, the lamp post connects the base and the lamp head, and the second light outlet emits light toward the base.

[0014] Furthermore, the lamp post is equipped with a control module, which includes two control circuits connected to the first light-emitting unit and the second light-emitting unit respectively. The control module controls the first light-emitting unit and the second light-emitting unit respectively.

[0015] The lamp holder provided in this application uses a single light source board for both the upper and lower light sources, reducing the number of parts required for assembly and enabling three-dimensional lighting with ambient lighting functionality. The main lighting section uses a reflector for light distribution, balancing anti-glare and illuminance uniformity, thus improving the overall lighting effect. It can illuminate the entire work surface without shadows, and the direct light is soft and grain-free, meeting anti-glare requirements. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the lamp holder structure according to a preferred embodiment of the present invention; Figure 2 yes Figure 1 Another view of the lamp head; Figure 3 yes Figure 1 Cross-sectional view of the lamp holder; Figure 4 yes Figure 1 Light path diagram of light emitting from the upper part of the lamp head; Figure 5 yes Figure 1 The light distribution curve of light emitted from the upper part of the lamp head; Figure 6 yes Figure 1 Light path diagram of light emitting from the lower side of the lamp holder; Figure 7 yes Figure 1 Light distribution curve of light emitted from the lower side of the lamp holder; Figure 8 This is a schematic diagram of the desktop uniformity test area; Figure 9 This is a schematic diagram of the structure of a lamp according to a preferred embodiment of the present invention; Figure 10 yes Figure 9 Side view of the lamp. Detailed Implementation

[0017] The lamp holder and lamp fixture proposed in this invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0018] A preferred embodiment of this application is the lamp holder 1, as shown in... Figure 1 , Figure 2 , Figure 3 As shown, the lamp head 1 includes a housing 101 forming the outer contour of the lamp head 1, and a light source disposed within the housing 101. A first light-emitting port 601 is provided on the upper side of the housing 101, and a second light-emitting port 602 is provided on the lower side of the housing 101. The first light-emitting port 601 and the second light-emitting port 602 are respectively disposed on opposite sides of the surfaces of the housing 101, and their light emission directions are opposite. The light source includes a first light-emitting unit 501 and a second light-emitting unit 502, which are disposed on the same side surface of the same light source plate 5. The two sets of light-emitting units and the two light-emitting ports constitute two sets of upper and lower optical path systems.

[0019] The upper part of lamp holder 1 is an auxiliary lighting system that creates ambient light, and its light path is as follows: Figure 4 As shown. The first light-emitting unit 501 is disposed in the middle part of the light source plate 5, emitting light towards the first light-emitting port 601. A diffuser 102 covers the first light-emitting port 601. The light emitted by the first light-emitting unit 501 is refracted and diffused at the diffuser 102 before being emitted, illuminating the space above and creating ambient lighting. Its light distribution curve is shown in Figure 601. Figure 5 As shown.

[0020] The lower part of lamp holder 1 is the main lighting system, providing illumination for reading, writing, and work. Its optical path is as follows: Figure 6As shown. Since the second light-emitting unit 502 and the first light-emitting unit 501 are located on the same side surface of the same light source plate 5, their light-emitting directions are the same. However, the directions of the second light-emitting port 602 and the first light-emitting port 601 are opposite. Therefore, a reflector 105 is provided above the second light-emitting unit 502, and part of the reflector 105 covers the second light-emitting unit 502. The light emitted by the second light-emitting unit 502 is reflected by the reflector 105 and then emitted towards the second light-emitting port 602. The second light-emitting port 602 is provided with a microstructure plate 103, and the microstructure on the microstructure plate 103 can play a role in uniform light refraction. After the light passes through the microstructure plate 103, it is emitted and illuminates the area below the lamp head 1, which can achieve an anti-glare effect. Its light distribution curve is shown in Figure 103. Figure 7 As shown.

[0021] A first light-emitting unit 501 is disposed in the first region on the light source board 5, and a second light-emitting unit 502 is disposed in the second region. Both are independently wired and connected to different control circuits, thus allowing for independent control. That is, either the first light-emitting unit 501 or the second light-emitting unit 502 can be turned on individually, or one of them can be dimmed or brightened. To prevent the two light-emitting units from interfering with each other, an isolation portion 106 is provided between the first and second regions. The isolation portion 106 is made of opaque material and is located at the junction of the first and second regions. In this embodiment, the lamp head 1 is rectangular, and both the first and second regions are rectangular and parallel, with the second region located on both sides of the first region. The isolation portion 106 extends longitudinally and covers the entire junction between the first and second regions, forming two sidewalls distributed on both sides of the first region, thereby separating the first and second regions. The lower end of the isolation portion 106 is disposed adjacent to the light source board 5, and in some cases, it can be attached to the light source board 5. The other end of the isolation portion 106 extends away from the light source board 5, and the extended end forms a first light outlet 601. A diffusion mask 102 is provided at the first light outlet 601.

[0022] The reflector 105, serving as the light distribution element of the second light-emitting unit 502, has an arc-shaped reflective surface. One end of the arc-shaped surface is connected to the isolation portion 106, and the arc-shaped surface extends upward and outward along the direction away from the light source plate 5. The other end forms a second light-emitting port 602. The second light-emitting port 602 is covered by a microstructure plate 103. The distance between the highest point of the arc-shaped surface of the reflector 105 and the light source plate 5 is greater than the distance between the first light-emitting port 601 and the light source plate 5. That is, the first light-emitting port 601 forms a recessed shape downward relative to the reflector 105, which can prevent the first light-emitting unit 501 from being seen during use and provides a certain degree of anti-glare effect.

[0023] In this embodiment, the reflector 105 is part of the inner surface of the housing 101. The reflective arc surface is directly formed from the housing 101, resulting in a simpler, smoother, and more aesthetically pleasing appearance for the lamp holder 1. The reflective surface can be formed by providing a reflective layer on the inner surface of the housing 101. This reflective layer can be formed by surface polishing, electroplating, spraying, or adhesive application; this application does not limit the specific method. Thus, there is no need to separately provide a reflective element, making the structure of the lamp holder 1 simpler, with fewer parts, easier assembly, and reduced product costs.

[0024] In other preferred embodiments, the lamp head 1 can also be circular, with the first region and the second region coaxially arranged, the second region surrounding the first region, and the isolation portion 106 forming an annular wall. The remaining structure is similar to that of the rectangular lamp head 1, and will not be described in detail here.

[0025] The microstructure plate 103 covers the second light outlet, while the back of the light source plate 5 is not obstructed. Therefore, in this embodiment, the back of the light source plate 5 is also covered with a dustproof cover 104 to protect the light source plate and provide insulation.

[0026] Example lamp holder 1 can be used as follows Figure 9 , Figure 10 The lamp shown is a vertical reading and writing lamp, comprising a lamp head 1, a lamp post 2, and a base 3. The lamp post 2 connects the base 3 and the lamp head 1. Because the lamp head 1 is relatively large, the base 3 helps to stabilize the overall center of gravity of the lamp, preventing it from tipping over. A lamp control module is located in the middle of the lamp post 2. This module includes two control circuits connected to the first light-emitting unit 501 and the second light-emitting unit 502, allowing for separate control of the upper and lower light sources, adjusting brightness, color temperature, and operating mode. The lamp post 2 also contains a photosensitive component that can detect ambient brightness and adjust the lamp brightness according to a set mode. A power cord runs from the bottom of the lamp post 2 to the lamp head 1 for electrical connection.

[0027] The second light-emitting port 602 of the lamp head 1 is positioned facing the base 3. That is, the light emitted by the second light-emitting unit 502 is reflected by the reflector 105 and then changes direction to face the base 3, achieving indirect light emission where the light source is visible but the lamp itself is not. The standard height of a vertical lamp is H (1.8m ≤ H ≤ 2.1m), the length of the light-emitting surface of the lamp head is L (0.4m ≤ L ≤ 0.7m), and the width is D (0.25m ≤ D ≤ 0.6m). In this embodiment, the overall height of the lamp is H = 2m. Figure 1 The length of the light-emitting surface of lamp holder 1 is L=0.6m, and the width is D=0.4m. For the anti-glare requirements of a 5A quality lighting grade floor lamp: when all light sources are lit, the average luminance at positions of 65°, 75°, and 85° should not exceed 4500 cd / m². 2 According to the formula for calculating the surface brightness of lamps. The luminance L of the luminous surface dA in the θ direction VThe luminous intensity I of the element area dA in the θ direction is equal to the luminous intensity of the element area dA. V The ratio of the area to the projection cosθ*dA onto a plane perpendicular to that direction. Tests show that the luminaire in this embodiment, while meeting AA-level illuminance requirements, has an average luminance of less than 4500 cd / m² at 65°, 75°, and 85°, thus meeting anti-glare requirements. According to the illuminance requirements for vertical eye-protection lamps in the Lighting Product Quality Grading Certification Technical Specifications of the China Quality Certification Center, the luminaire in this embodiment meets the following requirements: Figure 8 The desktop uniformity test area shown meets the AA-level illuminance requirement, and the uniformity is <1.5 (the standard is <7).

[0028] In addition to being used in the vertical reading and writing lamp of the embodiment, the lamp holder 1 provided in this application can also be used in table lamps, pendant lamps, etc., and this application does not limit it in this regard.

[0029] The foregoing description of preferred embodiments of the present invention is for illustrative purposes only and is not intended to exhaustively describe or limit the invention to the specific forms disclosed. Obviously, many modifications and variations may be made, which may be apparent to those skilled in the art and should be included within the scope of the invention as defined by the appended claims.

Claims

1. A lamp holder, comprising a housing and a light source, characterized in that: The housing has a first light-emitting port and a second light-emitting port with opposite light-emitting directions on opposite sides. The light source includes a first light-emitting unit and a second light-emitting unit disposed on the same light source plate and on the same side surface of the light source plate. The first light-emitting unit is disposed in a first region, and the second light-emitting unit is disposed in a second region. The first light-emitting unit emits light towards the first light-emitting port. An isolation part is disposed between the first region and the second region. A reflector covers the second region in the light-emitting direction of the second light-emitting unit. One end of the reflector is connected to the isolation part, and the other end is connected to the second light-emitting port. The light emitted by the second light-emitting unit is reflected by the reflector and emitted from the second light-emitting port.

2. The lamp holder according to claim 1, characterized in that: The lamp head is rectangular, and the second region is located on both sides of the first region; or the lamp head is circular, and the second region is located around the first region.

3. The lamp holder according to any one of claims 1 or 2, characterized in that: The isolation section is made of opaque material and covers the entire boundary between the first region and the second region.

4. The lamp holder according to claim 3, characterized in that: One end of the isolation section is disposed adjacent to the light source plate, and the other end of the isolation section extends away from the light source plate, with the end forming the first light outlet.

5. The lamp holder according to claim 4, characterized in that: The reflective surface of the reflector is an arc-shaped surface, and the distance between its highest point and the light source plate is greater than the distance between the first light outlet and the light source plate.

6. The lamp holder according to claim 5, characterized in that: The reflector is part of the inner surface of the housing.

7. The lamp holder according to claim 1, characterized in that: The first light-emitting port is provided with a diffusion mask, and / or the second light-emitting port is provided with a microstructure plate.

8. The lamp holder according to claim 1, characterized in that: The first light-emitting unit and the second light-emitting unit are connected to different control circuits, and each is controlled independently.

9. A lamp, characterized in that: It includes a base, a lamp post, and a lamp head as described in any one of claims 1-8, wherein the lamp post connects the base and the lamp head, and the second light outlet emits light toward the base.

10. The lamp according to claim 9, characterized in that: The lamp post is equipped with a control module, which includes two control circuits that are respectively connected to the first light-emitting unit and the second light-emitting unit. The control module controls the first light-emitting unit and the second light-emitting unit respectively.