Wall lamp

By incorporating an inclined light shield and a fixed light plate within the wall lamp's housing, the structural complexity and waterproofing issues caused by adjustable light plates are resolved, resulting in simplified operation, reduced costs, and improved waterproofing.

CN223610007UActive Publication Date: 2025-11-28SHENZHEN GUANKE TECH
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Patent Information

Application Number
CN202520064072.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-11-28
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

The adjustable light panel design of existing wall lamps complicates the internal structure, increases manufacturing costs and maintenance difficulty, and makes it difficult to guarantee waterproof performance, especially when used in outdoor environments, failing to meet actual needs.

Method used

By using an inclined light-shielding plate inside the housing to divide the accommodating space into sub-spaces, and setting a fixed lamp plate at an angle to the light-emitting surface in the sub-space, the light emission angle can be optimized and the lighting mode can be flexibly switched, avoiding frequent adjustments of movable structures, simplifying the operation process and improving waterproof performance.

Benefits of technology

The wall lamp's structural design has been simplified, reducing production costs and maintenance difficulty, while improving waterproof performance and lighting mode adjustment efficiency, thus enhancing overall reliability and light utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wall lamp, relates to lighting device technical field, the wall lamp includes shell, visor, first lamp panel and second lamp panel, the shell is equipped with horizontal light-emitting surface and vertical light-emitting surface, the visor is arranged between horizontal light-emitting surface and vertical light-emitting surface for dividing the accommodation space into first subspace and second subspace, the second subspace is equipped with second light-emitting surface, the second light-emitting surface is equipped with second light-emitting surface, the second light-emitting surface is equipped with second light-emitting surface, the second light-emitting surface is equipped with second light-emitting surface. The first lamp panel is contained in the first subspace, an included angle is formed between the first lamp panel and the horizontal light-emitting face, the second lamp panel is contained in the second subspace, and an included angle is formed between the second lamp panel and the vertical light-emitting face. When different lighting effects need to be achieved, only the first lamp panel and / or the second lamp panel are selected to be turned on, light rays can be emitted out through the fixed structure, due to the fact that frequent adjustment of a movable structure or the lamp panels is not involved, the influence of mechanical adjustment on the waterproof performance of the wall lamp can be effectively avoided, the structural simplicity and the overall reliability of the wall lamp are kept, and the cost is reduced. The operation process of the user is simplified, and the adjustment efficiency of the lighting mode is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lighting device technical field, especially a wall lamp. BACKGROUND

[0002] With the rapid development of the construction and interior design industry, wall lamps, as an important lighting equipment, not only play a role in providing basic lighting functions, but also are often used to create a specific atmosphere.

[0003] Current wall lamp designs usually include a mounting surface close to the wall and a light-emitting surface that emits light outward. To achieve diverse lighting effects, many wall lamp designs allow the light-emitting surface to emit light upward or downward, which can either serve as an ambient light to illuminate the upper or lower space of a room or as a main light to shine downward or obliquely downward. In addition, to enhance the flexibility and adaptability of the lamp, some designs employ adjustable lamp panels that allow users to adjust the angle of the lamp panel according to specific needs, thereby changing the direction of light projection.

[0004] However, the design of adjustable lamp panels often leads to the complication of internal structures, which not only increases manufacturing costs but also increases maintenance difficulty. More importantly, the presence of multiple movable components makes it difficult to ensure the waterproof performance of the wall lamp, especially when used in outdoor environments, whose waterproof performance often fails to meet actual needs. SUMMARY

[0005] The main purpose of the utility model is to provide a wall lamp that simplifies the internal structure of the wall lamp and improves waterproof performance, reduces manufacturing costs and maintenance difficulty without sacrificing flexibility and light efficiency.

[0006] To achieve the above-mentioned purpose, the wall lamp provided by the utility model comprises:

[0007] A housing, the housing comprises first and second side walls arranged adjacent to each other, a containing space is formed between the first and second side walls, a horizontal light-emitting surface is provided on the first side wall, and a vertical light-emitting surface is provided on the second side wall;

[0008] A light shield is arranged between the horizontal and vertical light-emitting surfaces and is inclined from the edge of the housing towards the containing space, used to divide the containing space into a first subspace and a second subspace, the first subspace is arranged between the horizontal light-emitting surface and the light shield, and the second subspace is arranged between the vertical light-emitting surface and the light shield;

[0009] A first lamp panel is accommodated in the first subspace and is arranged at an angle with the horizontal light-emitting surface, used to emit light to the horizontal light-emitting surface;

[0010] A second lamp plate is accommodated in the second subspace and is arranged at an angle with the vertical light exit surface, for emitting light to the vertical light exit surface.

[0011] The technical scheme of the utility model discloses an inclined light shield is arranged in the shell, and the containing space is divided into a first subspace and a second subspace, and a first lamp plate and a second lamp plate are arranged in the subspace at an angle with the light exit surface, which realizes the optimization of the light exit angle and the flexible switching of the lighting mode. When different lighting effects need to be realized, only the first lamp plate and / or the second lamp plate are selected to be turned on, and manual adjustment is not needed, and the light can be emitted through the fixed structure. Since movable structures or frequent adjustment of the lamp plate are not involved, the influence of mechanical adjustment on the waterproof performance of the wall lamp can be effectively avoided, the structural simplicity and overall reliability are maintained, the operation process of the user is simplified, the technical level of the user is reduced, light loss is reduced, and the adjustment efficiency of the lighting mode is improved. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained from the structures shown in these drawings without creative labor.

[0013] Figure 1 The structure schematic diagram of one embodiment of the wall lamp provided by the utility model is shown in the figure.

[0014] Figure 2 The structure schematic diagram of another embodiment of the wall lamp provided by the utility model is shown in the figure.

[0015] Figure 3 The explosion structure schematic diagram of one embodiment of the wall lamp provided by the utility model is shown in the figure.

[0016] Figure 4 The internal structure schematic diagram of one embodiment of the wall lamp provided by the utility model is shown in the figure.

[0017] Explanation of reference numerals:

[0018] 100, shell; 101, containing space; 102, inner cavity; 110, first side wall; 111, horizontal light exit surface; 120, second side wall; 121, vertical light exit surface; 130, heat dissipation shell; 140, mounting shell; 141, fixing hole; 200, light shield; 201, first subspace; 202, second subspace; 300, first lamp plate; 400, second lamp plate; 500, light-transmitting cover; 600, waterproof rubber ring.

[0019] The purposes, functional features and advantages of the utility model will be further described in combination with embodiments and with reference to the drawings. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0021] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0022] In addition, if the embodiments of the utility model involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.

[0023] Current wall lamp designs typically include a mounting face close to the wall and a light-emitting face that emits light outward. To achieve diverse lighting effects, many wall lamp designs allow the light-emitting face to emit light upward or downward, which can serve as an ambient light to illuminate the upper or lower space of a room, or as a main light to shine downward or obliquely downward. In addition, to enhance the flexibility and adaptability of the lamp, some designs employ adjustable lamp panels that allow users to adjust the angle of the lamp panel according to specific needs, thereby changing the projection direction of the light.

[0024] However, the design of the adjustable lamp panel often leads to the internal structure complication, which not only increases the manufacturing cost, but also increases the difficulty of maintenance. More importantly, the presence of multiple movable components makes it difficult to ensure the waterproof performance of the wall lamp, especially when used in outdoor environment, the waterproof performance often cannot meet the actual demand.

[0025] To solve the technical problem, the utility model provides a wall lamp.

[0026] Please refer to Figures 1 to 4 In an embodiment of the utility model, the wall lamp comprises a shell 100, a light shield plate 200, a first lamp panel 300 and a second lamp panel 400, the shell 100 comprises first side wall 110 and second side wall 120 arranged adjacently, and the accommodating space 101 is formed between first side wall 110 and second side wall 120, the horizontal light exit surface 111 is arranged on first side wall 110, and the vertical light exit surface 121 is arranged on second side wall 120, the light shield plate 200 is arranged between horizontal light exit surface 111 and vertical light exit surface 121, and is arranged obliquely from the edge of shell 100 to the accommodating space 101, and is used for separating the accommodating space 101 into first subspace 201 and second subspace 202, first subspace 201 is arranged between horizontal light exit surface 111 and light shield plate 200, and second subspace 202 is arranged between vertical light exit surface 121 and light shield plate 200, the first lamp panel 300 is accommodated in first subspace 201, and the first lamp panel 300 is arranged at an angle with horizontal light exit surface 111, and is used for emitting light to horizontal light exit surface 111, and the second lamp panel 400 is accommodated in second subspace 202, and the second lamp panel 400 is arranged at an angle with vertical light exit surface 121, and is used for emitting light to vertical light exit surface 121.

[0027] Specifically, in the interior of shell 100, the light shield plate 200 is arranged between horizontal light exit surface 111 and vertical light exit surface 121, and is arranged obliquely from the edge of shell 100 to the accommodating space 101. The light shield plate 200 separates the accommodating space 101 into first subspace 201 and second subspace 202, wherein first subspace 201 is arranged between horizontal light exit surface 111 and light shield plate 200, and second subspace 202 is arranged between vertical light exit surface 121 and light shield plate 200. Through the oblique arrangement of the light shield plate 200, the direct entry of light from horizontal light exit surface 111 to vertical light exit surface 121 or from vertical light exit surface 121 to horizontal light exit surface 111 can be effectively blocked, thereby reducing the generation of glare and improving the lighting comfort.

[0028] In the first subspace 201, the first lamp plate 300 is arranged at an angle with the horizontal light exit surface 111 for guiding light to the horizontal light exit surface 111 to realize horizontal illumination. Similarly, in the second subspace 202, the second lamp plate 400 is arranged at an angle with the vertical light exit surface 121 for guiding light to the vertical light exit surface 121 to realize vertical illumination. By arranging the lamp plate at an angle in the subspace, the light exit angle can be optimized, and the illumination efficiency and uniformity can be improved.

[0029] In the technical scheme of the utility model, the light receiving space 101 is divided into the first subspace 201 and the second subspace 202 by arranging the inclined light shield 200 in the shell 100, and the first lamp plate 300 and the second lamp plate 400 are arranged at an angle with the light exit surface in the subspace, so that the light exit angle is optimized and the illumination mode is flexibly switched. When different illumination effects are needed, the first lamp plate 300 and / or the second lamp plate 400 are only needed to be turned on by selection, without manual adjustment, and light can be emitted through the fixed structure. Since no movable structure or frequent adjustment of the lamp plate is involved, the influence of mechanical adjustment on the waterproof performance of the wall lamp can be effectively avoided, the structural simplicity and overall reliability of the wall lamp are maintained, the operation process of the user is simplified, the technical level of the user is reduced, light loss is reduced, and the adjustment efficiency of the illumination mode is improved.

[0030] As an optional implementation, the vertical light exit surface 121 extends upward from the light shield 200 and is arranged downwardly inclined. The light exit angle in the vertical direction can be further optimized, so that the light is better downwardly irradiated to meet the demand of main illumination.

[0031] As another optional implementation, the first lamp plate 300 and the second lamp plate 400 arranged at an internal offset position can realize different illumination modes. When only downward irradiation is needed, the first lamp plate 300 is selected to be turned on, and the area of the horizontal line upwardly can be ensured to have no light overflow; when a larger irradiation angle is needed, the first lamp plate 300 and the second lamp plate 400 are selected to be turned on simultaneously. The user can flexibly select the illumination mode according to the actual demand, while unnecessary light overflow is avoided.

[0032] Please continue to refer to Figure 3 and Figure 4 In the embodiment of the utility model, the angle between the first lamp plate 300 and the horizontal light exit surface 111 is 25-35°.

[0033] Specifically, the angle between the first lamp plate 300 and the horizontal light exit surface 111 is 25-35°, so that the irradiation angle of light can be effectively controlled, the light emitted by the first lamp plate 300 can be more uniformly distributed on the horizontal light exit surface 111, and the uniformity and comfort of illumination are improved.

[0034] In addition, the angle setting also takes into account the decoration and practicality of the wall lamp, so that the wall lamp can meet the basic lighting needs and increase the atmosphere of the environment through the soft distribution of light when emitting light.

[0035] In terms of structure, due to the fixed angle of the first lamp plate 300, the design and manufacturing process of the wall lamp are simplified, and compared with the adjustable lamp plate design, the mechanical complexity of the wall lamp is reduced, thereby reducing the production cost and maintenance difficulty.

[0036] More specifically, when the included angle between the first lamp plate 300 and the horizontal light emitting surface 111 is 25°, the wall lamp can realize relatively concentrated light distribution. In this case, the illumination angle of the light is relatively small, mainly concentrated in the horizontal direction, which can improve the intensity and contrast of the illumination, so that the details of the object are more clearly visible.

[0037] When the included angle between the first lamp plate 300 and the horizontal light emitting surface 111 is 35°, the wall lamp can realize relatively extensive light distribution. In this case, the illumination angle of the light is relatively large, which can cover a larger horizontal area, and can provide a more soft and uniform lighting effect, thereby improving the comfort and visual experience of the space.

[0038] When the included angle between the first lamp plate 300 and the horizontal light emitting surface 111 is 30°, the wall lamp can achieve a balance between concentrated lighting and extensive lighting. This included angle setting is between the above two extreme values, and takes into account the focusing and diffusion of light in the vertical direction, which is suitable for most common lighting scenes and can provide sufficient local lighting while also illuminating the surrounding environment, thereby creating a comfortable and natural light effect.

[0039] Please continue to refer to Figure 3 and Figure 4 In the embodiment of the present application, the included angle between the second lamp plate 400 and the vertical light emitting surface 121 is 25° to 35°.

[0040] Specifically, setting the included angle between the second lamp plate 400 and the vertical light emitting surface 121 to 25° to 35° helps to adjust the illumination range and direction of the light, so that the light is more concentrated or dispersed to adapt to different use environments and lighting needs. For example, when the included angle is 25°, the light is relatively concentrated, which is suitable for occasions that require strong direct light. When the included angle reaches 35°, the light is more dispersed, which is suitable for extensive lighting and can provide more uniform light distribution. When the included angle between the second lamp plate 400 and the vertical light emitting surface 121 is 30°, the wall lamp can achieve a balance between concentrated lighting and extensive lighting, and takes into account the focusing and diffusion of light in the vertical direction, which is suitable for most common lighting scenes.

[0041] More specifically, the angle between the second lamp plate 400 and the vertical light-emitting surface 121 not only independently plays a role, but also cooperates with the setting of the first lamp plate 300 to achieve more comprehensive and flexible lighting effects. For example, when the angle between the first lamp plate 300 and the horizontal light-emitting surface 111 is 30°, and the angle between the second lamp plate 400 and the vertical light-emitting surface 121 is 25°, the wall lamp can provide relatively concentrated horizontal and vertical plane lighting. When the angle between the first lamp plate 300 and the horizontal light-emitting surface 111 is 35°, and the angle between the second lamp plate 400 and the vertical light-emitting surface 121 is 35°, the wall lamp can achieve relatively extensive horizontal and vertical plane lighting.

[0042] Please continue to refer to Figure 3 and Figure 4 In the embodiment of the present application, the first lamp plate 300 and the second lamp plate 400 are arranged in parallel and staggered.

[0043] Specifically, arranging the first lamp plate 300 and the second lamp plate 400 in parallel can ensure that the light directions of the two lamp plates are consistent, avoiding interference and conflict between the light. At the same time, by arranging the two lamp plates staggered, even if they are on the same parallel plane, the staggered distribution of light can be achieved, thereby expanding the lighting range and improving the coverage of light. While ensuring the consistency of light direction, the staggered characteristics of the lamp plate are fully utilized, so that the wall lamp can provide uniform and sufficient lighting in a larger space.

[0044] In actual application, the parallel and staggered arrangement of the first lamp plate 300 and the second lamp plate 400 can be adjusted according to specific needs. For example, the degree of light staggering can be changed by controlling the distance between the two lamp plates, thereby achieving different lighting effects. When the two lamp plates are close to each other, the degree of light staggering and overlapping is high, which can provide a strong lighting atmosphere. When the two lamp plates are far apart, the degree of light staggering and overlapping is reduced, which can provide extensive and uniform lighting.

[0045] In the embodiment of the present application, the surface of the light shield plate 200 is coated with a reflective coating.

[0046] Specifically, in the internal structure of the wall lamp, the light shield plate 200 serves to separate the first sub-space 201 and the second sub-space 202, preventing light from directly entering the vertical light-emitting surface 121 from the horizontal light-emitting surface 111, or vice versa, thereby reducing the generation of glare. However, in actual use, the surface of the light shield plate 200 may absorb or scatter a portion of the light, resulting in a loss of light energy. To solve this problem, the utility model adopts the method of coating a reflective coating on the surface of the light shield plate 200, utilizing the high-efficiency reflection characteristics of the reflective coating on the incident light, to redirect the light that would otherwise be absorbed or scattered to the light-emitting surface, thereby improving the utilization rate of light and enhancing the overall lighting effect of the wall lamp.

[0047] In practical applications, the reflective coating on the surface of the light shield plate 200 can be selected from different materials and processes according to specific needs. For example, a metal reflective coating such as aluminum plating or silver plating can be used to achieve effective reflection and guidance of light by utilizing the high reflectivity of the metal surface. A reflective coating made of high-refractive-index materials such as titanium dioxide can also be used to achieve precise control and adjustment of light by utilizing the optical properties of the material itself.

[0048] Please continue to refer to Figure 1 and Figure 3 In the embodiments of the utility model, the horizontal light-emitting surface 111 and the vertical light-emitting surface 121 are both detachably covered with a light-transmitting cover 500.

[0049] Specifically, the use of the light-transmitting cover 500 provides physical protection for the horizontal light-emitting surface 111 and the vertical light-emitting surface 121, preventing dust, moisture and other potential environmental factors from directly contacting the lamp panel, thereby prolonging the service life of the lamp and reducing maintenance requirements. In addition, the light-transmitting cover 500 has the function of improving light distribution, and by its material and design, it can adjust the diffusion or concentration of light, providing users with a more soft or concentrated lighting effect to meet different lighting needs.

[0050] As an optional implementation, the light-transmitting cover 500 is made of glass. The glass light-transmitting cover 500 not only improves the appearance quality of the entire wall lamp, but also effectively transmits light without losing too much light energy due to its excellent light transmission properties. The high light transmittance and plasticity of glass allow it to be designed into different shapes and surface treatments such as frosted, engraved or colored, to achieve specific light effects and decorative effects.

[0051] In addition, the detachable design of the light-transmitting cover 500 facilitates the cleaning and maintenance of the lamp by the user, and also facilitates the replacement of different styles or functions of the light-transmitting cover 500 to meet the different use needs of the user.

[0052] Please continue to refer to Figure 4In the embodiment of the utility model, the waterproof rubber ring is arranged at the connection between the horizontal light emitting surface 111 and the vertical light emitting surface 121 and the light transmission cover 500.

[0053] Specifically, when using the wall lamp in outdoor or humid environment, water and moisture may seep into the lamp interior through the gap between the light emitting surface and the light transmission cover 500, causing the circuit board and other sensitive components to be corroded or short-circuited, thereby affecting the normal work and service life of the lamp. In order to solve this problem, the utility model sets a waterproof rubber ring at the connection between the horizontal light emitting surface 111 and the vertical light emitting surface 121 and the light transmission cover 500. The waterproof rubber ring is made of flexible and water-resistant material, such as silicone or rubber, which forms a tight sealing layer between the light emitting surface and the light transmission cover 500, effectively preventing the infiltration of water and moisture, thereby greatly improving the waterproof performance of the wall lamp.

[0054] In practical application, the setting of the waterproof rubber ring can be optimized according to the specific structure and use environment of the wall lamp. For example, a continuous sealing rubber ring is arranged between the light transmission cover 500 and the light emitting surface to ensure complete sealing of the entire connecting surface; or multiple independent sealing points are arranged at key positions of the connection to focus on protecting the parts most prone to water seepage. At the same time, the material selection and thickness design of the waterproof rubber ring can also be adjusted according to the required waterproof level and service life to balance the waterproof performance and cost-effectiveness.

[0055] In addition, when installing or replacing the light transmission cover 500, the waterproof rubber ring can effectively fill the gap at the connection, ensuring that the stable waterproof effect is maintained after multiple disassembly and assembly.

[0056] Please continue to read Figures 2 to 4 In the embodiment of the utility model, the shell 100 includes a heat dissipation shell 130 and a mounting shell 140, the heat dissipation shell 130 is buckled to the mounting shell 140, the heat dissipation shell 130 and the mounting shell 140 form an inner cavity 102, the accommodating space 101 is accommodated in the inner cavity 102, the bottom of the heat dissipation shell 130 forms a first side wall 110, and the side of the heat dissipation shell 130 away from the mounting shell 140 forms a second side wall 120.

[0057] Specifically, the heat dissipation shell 130 and the mounting shell 140 can form a closed inner cavity 102 to protect the internal components from the external environment and also effectively manage heat.

[0058] In terms of installation, the heat dissipation shell 130 is first disassembled before the mounting shell 140 is fixed to the wall. In this way, the user can more conveniently fix the mounting shell 140 to the wall surface, and then re-buckle the heat dissipation shell 130. This simplifies the installation process, making installation more convenient and fast, while ensuring firm installation of the lamp and accurate alignment of the correct position.

[0059] In addition, the connection between the heat dissipation shell 130 and the mounting shell 140 is optionally provided with a waterproof rubber ring, further enhancing the environmental adaptability of the wall lamp, especially in humid or dusty environments. The waterproof rubber ring provides additional protection against moisture and dust entering the internal electrical components, improving the reliability and safety of the wall lamp.

[0060] Please continue to refer to Figure 2 and Figure 3 In the embodiment of the present application, the mounting shell 140 is provided with a fixing hole 141 on the side away from the heat dissipation shell 130.

[0061] Specifically, during the installation of the wall lamp, it is necessary to firmly fix the lamp on the wall surface or other mounting surface to ensure its stability and safety. In actual application, the fixing hole 141 can be set according to the specific structure and installation requirements of the wall lamp. For example, multiple fixing holes 141 can be provided on the mounting shell 140 to adapt to different mounting surfaces and types of fasteners; or the size and position of the fixing hole 141 can be adjusted to achieve optimal stress distribution and stability. At the same time, the shape and edge treatment of the fixing hole 141 can also be optimized to facilitate the insertion and fixation of the fastener, and to prevent scratches or damage to the surface of the lamp during installation.

[0062] In the embodiment of the present application, the inner cavity 102 contains a power control module and a lamp driving power supply, and the power control module, the first lamp plate 300 and the second lamp plate 400 are electrically connected with the lamp driving power supply.

[0063] Specifically, the main function of the power control module is to manage and regulate the power input, ensure the stable output of the power supply, and provide the necessary current and voltage to the connected lamp plate. The addition of the power control module can effectively prevent potential damage to the lamp plate caused by power fluctuations and sudden changes, and also provides protection for the long-term stable operation of the lamp. In addition, the power control module may also contain safety functions such as overload protection and short circuit protection, further enhancing the safety of the entire system.

[0064] The lamp driving power supply is a device that provides specific voltage and current to the first lamp plate 300 and the second lamp plate 400 to support the normal operation of the lamp plate. In the present application, by integrating the power control module and the lamp driving power supply in the same inner cavity 102 and ensuring that they are electrically connected with the two lamp plates, not only the space is saved, but also the electrical connection is simplified, improving the assembly efficiency and electrical safety.

[0065] In practical applications, this integrated design makes the installation, maintenance and upgrade of the wall lamp more convenient. Since all the main electrical components are integrated in the inner cavity 102, a maintenance worker can easily replace any component without worrying about complex circuit reorganization. This not only reduces the time and cost of maintenance, but also reduces the risk of errors.

[0066] The above is only an exemplary embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.

Claims

1. A wall lamp, characterized in that The application relates to a light-emitting device. The light-emitting device comprises a housing, a light-shielding plate, a first lamp plate and a second lamp plate. The housing comprises a first side wall and a second side wall arranged adjacently, and a containing space is formed between the first side wall and the second side wall. The first side wall is provided with a horizontal light-emitting surface, and the second side wall is provided with a vertical light-emitting surface. The light-shielding plate is arranged between the horizontal light-emitting surface and the vertical light-emitting surface, and is arranged to be inclined from the edge of the housing towards the containing space, so as to divide the containing space into a first subspace and a second subspace.

2. The wall lamp of claim 1, wherein The first subspace is arranged between the horizontal light-emitting surface and the light-shielding plate, and the second subspace is arranged between the vertical light-emitting surface and the light-shielding plate.

3. The wall lamp of claim 1, wherein The first lamp plate is accommodated in the first subspace, and is arranged at an angle with the horizontal light-emitting surface, so as to emit light to the horizontal light-emitting surface.

4. The wall lamp of claim 1, wherein The second lamp plate is accommodated in the second subspace, and is arranged at an angle with the vertical light-emitting surface, so as to emit light to the vertical light-emitting surface.

5. The wall lamp of claim 1, wherein The angle between the first lamp plate and the horizontal light-emitting surface is 25-35 degrees.

6. The wall lamp according to any one of claims 1 to 5, characterized in that The angle between the second lamp plate and the vertical light-emitting surface is 25-35 degrees.

7. The wall lamp of claim 6, wherein The first lamp plate and the second lamp plate are arranged in parallel and are dislocated.

8. The wall lamp according to any one of claims 1 to 5, wherein The surface of the light-shielding plate is coated with a reflective coating.

9. The wall lamp of claim 8, wherein The horizontal light-emitting surface and the vertical light-emitting surface are detachably covered with a light-transmitting cover.

10. The wall lamp of claim 8, wherein Waterproof rubber rings are arranged at the connecting positions of the horizontal light-emitting surface, the vertical light-emitting surface and the light-transmitting cover. The housing comprises a heat-dissipating shell and a mounting shell. The heat-dissipating shell is buckled to the mounting shell. The heat-dissipating shell and the mounting shell jointly form an inner cavity. The containing space is accommodated in the inner cavity. The bottom of the heat-dissipating shell forms the first side wall. The side of the heat-dissipating shell away from the mounting shell forms the second side wall. The side of the mounting shell away from the heat-dissipating shell is provided with a fixing hole. The inner cavity is accommodated with a power control module and a lamp driving power supply. The power control module, the first lamp plate and the second lamp plate are electrically connected with the lamp driving power supply.