Table lamp

Through the combined design of reflective lenses and translucent lenses, the table lights form a thousand-layer lighting effect, solving the problem of single light effects and enhancing the visual attractiveness and decorative effect.

CN223258026UActive Publication Date: 2025-08-22ZHONGSHAN HUAYU LIGHTING APPLIANCE CO LTD
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Patent Information

Application Number
CN202422167902.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-08-22
Estimated Expiration
2034-09-04

AI Technical Summary

Technical Problem

The existing desk lighting has a single effect, which cannot achieve multi-level visual effects, and is complex in design, which increases production difficulty.

Method used

The combination of reflective lenses and translucent lenses is adopted to allow the light from the decorative light source to be refracted or reflected through the reflective lenses, and then dispersed through the translucent lenses to form a thousand-layer lighting effect.

Benefits of technology

The light presents a sense of layering and far-reaching sense, which enhances the visual appeal of the overall atmosphere and enhances the decorative effect and brand promotion value.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a table lamp which comprises an installation outer shell, an installation open groove is formed in the installation outer shell, an installation inner shell is installed in the installation open groove, a driving circuit board is installed on the inner rear portion of the installation inner shell, a conductive inserting rod is connected to the driving circuit board, and a decorative light source is connected to the tail end of the conductive inserting rod. A reflective lens is installed on the front portion of the installation inner shell, a light-transmitting lens is installed on the front portion of the installation outer shell, and the decorative light source is arranged between the reflective lens and the light-transmitting lens. The light emitted by the decorative light source of the table lamp forms a multi-layer light effect through the matching of the reflective lens and the light-transmitting lens, so that the light looks layered, and the visual attraction of the whole atmosphere is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of lamps, and particularly relates to a desk lamp. Background Art

[0002] In modern decorative design, lamps not only serve as illumination but also fulfill important aesthetic functions. With the advancement of technology and the continuous innovation of design concepts, the technology and design of table lamps are also constantly improving, striving to provide solutions with greater visual appeal and the ability to create an atmosphere. However, existing table lamps still have some shortcomings in terms of light performance and visual effects.

[0003] Many desk lamps currently on the market primarily utilize traditional light source configurations and simple reflective designs. These lamps often produce a monotonous light effect, making it difficult to achieve multi-layered visual effects. While some high-end products utilize translucent and reflective materials to enhance light scattering and reflection, these designs still have limitations and cannot fully meet the demand for complex light layers and atmosphere creation.

[0004] Many traditional desk lamps are unable to effectively disperse and refract light at multiple levels, resulting in a relatively monotonous lighting effect.

[0005] Existing lamps lack innovation in the expression of light layering and three-dimensionality, which limits the effect of creating the overall atmosphere.

[0006] In order to achieve complex lighting effects, many lamps require complex optical designs and precise component coordination, which increases the difficulty of design and production.

[0007] In view of this, overcoming the defects of the above-mentioned prior art is an urgent problem to be solved in this technical field. Utility Model Content

[0008] In response to the technical problems mentioned in the background technology, the purpose of the present utility model is to provide a table lamp in which the light emitted by a decorative light source is combined with a reflective lens and a translucent lens to form a thousand-layer lighting effect, making the light look layered and enhancing the visual appeal of the overall atmosphere, so as to solve the technical problems mentioned in the above background technology.

[0009] To achieve the above-mentioned purpose, the utility model provides a technical solution: a desk lamp, which includes a mounting shell, a mounting groove is provided inside the mounting shell, a mounting inner shell is installed inside the mounting groove, a driving circuit board is installed on the inner rear part of the mounting inner shell, a conductive plug is connected to the driving circuit board, the end of the conductive plug is connected to a decorative light source, a reflective lens is installed on the front part of the mounting inner shell, and a translucent lens is installed on the front part of the mounting outer shell, so that the decorative light source is arranged between the reflective lens and the translucent lens.

[0010] Furthermore, the reflective lens is arranged at the rear of the decorative light source, and the transparent lens is arranged at the front of the decorative light source.

[0011] Furthermore, the light-transmitting lens is a translucent light-transmitting lens, and the light-reflecting lens is an opaque light-reflecting lens.

[0012] Furthermore, the surface of the reflective lens is symmetrically provided with insertion rod through-holes, and the front ends of the conductive insertion rods are respectively connected between the reflective lens and the transparent lens through the insertion rod through-holes.

[0013] Furthermore, the driving circuit board is provided with a conductive socket, and one end of the conductive plug rod is provided with a conductive plug adapted to the conductive socket, and the conductive plug is respectively inserted into the conductive socket for electrical connection.

[0014] Furthermore, a driving button is provided at the rear interior of the mounting inner shell, and the driving button is connected to the driving circuit board by an electric wire.

[0015] Furthermore, a charging socket is installed on the driving circuit board.

[0016] Furthermore, a rechargeable battery is installed at the inner rear portion of the mounting inner shell, and the rechargeable battery is connected to the driving circuit board via an electric wire.

[0017] Furthermore, a mounting rear plate is mounted on the rear portion of the mounting housing.

[0018] Furthermore, a support foot card plate is installed at the bottom of the mounting shell, and supporting foot plates are respectively provided on both sides of the support foot card plate. A connecting card surface is inclined on the upper part of the supporting foot plate, and a first splicing card slot is recessed on the connecting card surface. Second splicing card slots are respectively recessed on both sides of the support foot card plate, and the first splicing card slot and the second splicing card slot are spliced ​​and fixed.

[0019] The utility model mainly has the following beneficial effects: an installation groove is provided inside the installation shell, an installation inner shell is installed inside the installation groove, a driving circuit board and a rechargeable battery are respectively installed on the inner rear part of the installation inner shell, two conductive plug rods are connected to the driving circuit board, and the ends of the two conductive plug rods are connected to a decorative light source, a reflective lens is installed on the front part of the installation inner shell, and a translucent lens is installed on the front part of the installation shell, and the decorative light source is arranged between the reflective lens and the translucent lens. The light emitted by the decorative light source of the table lamp of the utility model passes through the cooperation of the reflective lens and the translucent lens to form a thousand-layer lighting effect, which makes the light look layered and enhances the visual appeal of the overall atmosphere. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the utility model.

[0021] Figure 2 This is a schematic diagram of the exploded structure of the present invention.

[0022] Figure 3 It is a schematic diagram of the internal structure of the utility model.

[0023] Figure numerals: mounting outer shell 10; mounting slot 11; mounting inner shell 20; mounting rear plate 30; driving circuit board 40; rechargeable battery 50; conductive plug 41; decorative light source 42; reflective lens 60; translucent lens 70; plug hole 61; conductive socket 43; conductive plug 411; driving button 44; charging socket 45; support foot plate 12; supporting foot plate 13; connecting card surface 131; first splicing card slot 132; second splicing card slot 121. DETAILED DESCRIPTION

[0024] like Figures 1 to 3 As shown, a desk lamp includes a mounting shell 10, an mounting slot 11 is provided inside the mounting shell 10, an mounting inner shell 20 is installed inside the mounting slot 11, a mounting rear plate 30 is installed at the rear of the mounting shell 10, a driving circuit board 40 and a rechargeable battery 50 are respectively installed at the inner rear of the mounting inner shell 20, the rechargeable battery 50 and the driving circuit board 40 are connected by wires, two conductive plugs 41 are connected to the driving circuit board 40, and the ends of the two conductive plugs 41 are connected to decorative light sources 42. When in use, the driving circuit board 40 drives the electric energy stored in the rechargeable battery 50 to be transmitted to the driving circuit board 40 through wires, the driving circuit board 40 receives the current from the battery, and the driving circuit board 40 transmits the processed current to the decorative light source 42 through the two conductive plugs 41. After receiving the current, the decorative light source 42 generates light through the internal light-emitting element (such as LED), and the light source emits light to form a decorative lighting effect.

[0025] During specific implementation, a reflective lens 60 is installed on the front of the mounting inner shell 20, and a translucent lens 70 is installed on the front of the mounting outer shell 10. The reflective lens 60 is arranged at the rear of the decorative light source 42, and the translucent lens 70 is arranged in front of the decorative light source 42, so that the decorative light source 42 is arranged between the reflective lens 60 and the translucent lens 70. The translucent lens 70 is a translucent lens, and the reflective lens 60 is an opaque reflective lens.

[0026] When in use, when the decorative light source 42 is powered on and emits light, the light emitted by the decorative light source 42 shines on the reflective lens 60. Since the reflective lens 60 is designed to be opaque, it will refract or reflect the light onto the transparent lens 70 instead of allowing the light to pass directly through. The reflective lens 60 concentrates and refracts the light, guiding the light to propagate toward the transparent lens 70. At this time, the intensity and direction of the light will be controlled by the reflective lens 60. The transparent lens 70 is translucent, allowing some light to pass through while also reflecting some light. The transparent lens 70 will disperse the refracted light so that the light forms a layered effect on its surface. Due to the translucent nature of the transparent lens 70, it will produce a complex light refraction effect. As a result, the light presents a layered progressive visual effect on the surface of the translucent lens 70. This effect makes the light look like it is diverging from different levels, creating a profound and gradually progressive visual experience. The light emitted by the decorative light source 42 passes through the reflective lens 60 and the translucent lens 70 to form a thousand-layer lighting effect. This effect makes the light look layered, as if the light extends infinitely in space. This visual effect adds a unique beauty to the environment, and the layered and profound sense of light enhances the visual appeal of the overall atmosphere. For merchants, this effect not only enhances the decorative effect of stores or venues, but also has extremely high publicity value because it attracts customers' attention and enhances the visual impact of the brand.

[0027] In a specific implementation, two insertion rod through-holes 61 are symmetrically opened on the surface of the reflective lens 60 , and the front ends of the two conductive insertion rods 41 are respectively connected between the reflective lens 60 and the transparent lens 70 through the two insertion rod through-holes 61 .

[0028] Two conductive sockets 43 are respectively provided on the driving circuit board 40, and two conductive plugs 411 are respectively provided at one end of the two conductive rods 41 facing the driving circuit board 40, which are adapted to the conductive sockets 43. The two conductive plugs 411 are respectively inserted into the two conductive sockets 43 for electrical connection, so that the conductive rods 41 are electrically connected to the driving circuit board 40.

[0029] A driving button 44 is provided at the rear interior of the mounting inner shell 20. The driving button 44 is fixedly installed in the mounting inner shell 20 by fasteners. The driving button 44 is connected to the driving circuit board 40 by wires. When in use, by pressing the driving button 44, the driving button 44 drives the driving circuit board 40 to work.

[0030] The driving circuit board 40 is provided with a charging socket 45 . When in use, the rechargeable battery 50 is charged by connecting an external power line to the charging socket 45 .

[0031] The bottom of the mounting housing 10 is provided with a foot plate 12, and the left and right sides of the foot plate 12 are provided with support foot plates 13, and the upper parts of the two support foot plates 13 are provided with connection card surfaces 131, respectively, which are inclined. The connection card surfaces 131 are recessed with a first splicing card slot 132, and the left and right sides of the foot plate 12 are recessed with a second splicing card slot 121, respectively. The first splicing card slot 132 and the second splicing card slot 121 are spliced ​​and fixed, so that the two support foot plates 13 are respectively clamped on both sides of the foot plate 12. When in use, the support foot plates 13 are in contact with the ground, providing support for the lamp, so that it stands stably on the ground. Due to the inclined design of the support foot plates 13, the lamp can be supported at a better angle, optimizing the viewing angle, and ensuring that the light can effectively illuminate the target area.

[0032] In summary, the interior of the mounting shell 10 is provided with a mounting groove 11, and the interior of the mounting groove 11 is provided with a mounting inner shell 20, and the inner rear part of the mounting inner shell 20 is respectively provided with a driving circuit board 40 and a rechargeable battery 50, and the driving circuit board 40 is connected to two conductive plug rods 41, and the ends of the two conductive plug rods 41 are connected to a decorative light source 42, and the front part of the mounting inner shell 20 is provided with a reflective lens 60, and the front part of the mounting shell 10 is provided with a translucent lens 70, and the decorative light source 42 is arranged between the reflective lens 60 and the translucent lens 70. The light emitted by the decorative light source of the desk lamp of the present invention is formed through the cooperation of the reflective lens and the translucent lens to form a thousand-layer lighting effect, which makes the light look layered and enhances the visual appeal of the overall atmosphere.

Claims

1. A desk lamp, characterized in that: The invention comprises a mounting shell (10), wherein a mounting slot (11) is provided inside the mounting shell (10), a mounting inner shell (20) is mounted inside the mounting slot (11), a driving circuit board (40) is mounted on the inner rear portion of the mounting inner shell (20), a conductive plug rod (41) is connected to the driving circuit board (40), and a decorative light source (42) is connected to the end of the conductive plug rod (41), a reflective lens (60) is mounted on the front portion of the mounting inner shell (20), and a translucent lens (70) is mounted on the front portion of the mounting shell (10), so that the decorative light source (42) is arranged between the reflective lens (60) and the translucent lens (70).

2. The desk lamp according to claim 1, characterized in that The reflective lens (60) is arranged at the rear of the decorative light source (42), and the light-transmitting lens (70) is arranged at the front of the decorative light source (42).

3. The desk lamp according to claim 2, characterized in that The light-transmitting lens (70) is a semi-transparent light-transmitting lens, and the light-reflecting lens (60) is an opaque light-reflecting lens.

4. The desk lamp according to claim 1, characterized in that The surface of the reflective lens (60) is symmetrically provided with insertion rod through-holes (61), and the front ends of the conductive insertion rods (41) are connected between the reflective lens (60) and the light-transmitting lens (70) through the insertion rod through-holes (61).

5. The desk lamp according to claim 1, characterized in that The driving circuit board (40) is provided with a conductive socket (43), one end of the conductive plug rod (41) is provided with a conductive plug (411) adapted to the conductive socket (43), and the conductive plug (411) is inserted into the conductive socket (43) for electrical connection.

6. The desk lamp according to claim 1, characterized in that A driving button (44) is provided at the rear interior of the mounting inner shell (20), and the driving button (44) is connected to the driving circuit board (40) via an electric wire.

7. The desk lamp according to claim 1, characterized in that A charging socket (45) is installed on the driving circuit board (40).

8. The desk lamp according to claim 1, characterized in that A rechargeable battery (50) is installed at the inner rear portion of the mounting inner shell (20), and the rechargeable battery (50) is connected to the driving circuit board (40) via an electric wire.

9. The desk lamp according to claim 1, characterized in that A mounting rear plate (30) is mounted on the rear portion of the mounting housing (10).

10. The desk lamp according to claim 1, characterized in that A foot card plate (12) is installed at the bottom of the mounting shell (10), and supporting foot plates (13) are respectively provided on both sides of the foot card plate (12). A connecting card surface (131) is provided on the upper part of the supporting foot plate (13) in an inclined manner, and a first splicing card slot (132) is recessed on the connecting card surface (131). Second splicing card slots (121) are respectively recessed on both sides of the foot card plate (12), and the first splicing card slot (132) and the second splicing card slot (121) are spliced ​​and fixed.