Energy-saving intelligent lamp

By using light-transmitted hollow lamp panels and reflectors in LED energy-saving lamps, the problem of existing LED lamps not being able to make full use of light is solved, and more efficient lighting and energy-saving effects are achieved.

CN120212462AInactive Publication Date: 2025-06-27中山市宜普照明科技有限公司
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Patent Information

Application Number
CN202510609303.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing LED energy-saving lamps have not fully utilized the light of LED light sources, resulting in energy savings that need to be improved.

Method used

Design an energy-saving and intelligent lamp, and install fixed LED lamp beads through a translucent hollow lamp board to prevent light from being blocked. A reflector is also provided on the inside of the lamp board to reflect light, thereby improving the utilization rate of light.

Benefits of technology

By maximizing the performance of LED lamp beads, improving the utilization rate of LED lights, achieving more efficient lighting effects, and automatically adjusting brightness according to external light through intelligent control modules, further saving power.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of lighting equipment, and particularly relates to an energy-saving intelligent lamp which comprises a mounting plate mounted on a wall surface, a shell is clamped on the mounting plate, the outer side wall of the shell is covered with a lampshade, a lamp panel is arranged in the lampshade and is of a hollow convex surface structure, a reflecting cover is arranged on the inwards-concave side of the lamp panel, and the reflecting cover is arranged on the outer side wall of the shell. A reflecting coating is arranged on the surface of the reflecting cover, and a plurality of LED lamp beads which are evenly distributed are embedded in the lamp panel. According to the energy-saving intelligent lamp, the LED lamp is installed and fixed through the light-transmitting lamp panel, light emitted by the LED lamp to the periphery is not blocked, the reflecting cover capable of reflecting light is arranged on the inner side of the lamp panel, the light facing the interior is reflected outwards, and therefore the light utilization rate of the LED lamp is increased, and the energy-saving effect is achieved; and meanwhile, the control circuit module is matched with the light sensor capable of sensing the external illumination intensity, so that the lamp can be in proper brightness when light is turned on according to external conditions, and the energy-saving effect is further improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of lighting devices, and particularly relates to an energy-saving intelligent lamp. Background Art

[0002] A lighting fixture is an appliance used for lighting. It can emit light through a light source to provide a lighting environment. The design and application of lighting fixtures aim to meet people's needs in aspects such as light, lighting effect, comfort, and safety. There are various types of lighting fixtures. They can be classified into incandescent lamps, fluorescent lamps, LED lamps, etc. according to different light sources; and into indoor lighting fixtures, outdoor lighting fixtures, decorative lighting fixtures, etc. according to different uses. The main function of lighting fixtures is to provide light for illumination, enabling people to clearly see objects and carry out various activities in different environments. At the same time, lighting fixtures also have a certain role in decorating and beautifying the environment, capable of enhancing the overall atmosphere and visual effect of indoor or outdoor spaces. With the development of technology, many lamps have been gradually phased out. In order to achieve better lighting effects while consuming less power and being more energy-saving and environmentally friendly, the advantages of LED lighting fixtures have gradually emerged. An LED lamp is a lighting device that uses a light-emitting diode (abbreviated as LED) as the light source. A light-emitting diode is a semiconductor electronic component that can convert electrical energy into light energy, and has characteristics such as high efficiency, long life, energy saving, environmental protection, small volume, fast response speed, and strong impact resistance. The light in an LED lamp radiates radially from the light source lamp beads in all directions. However, for the existing LED energy-saving lamps on the market, the lighting all adopts the single-sided light of the LED light source, and the other side is blocked by the lamp board or circuit board and cannot be fully utilized. For LED lamps with the same power, the emitted light cannot be fully utilized, and their energy-saving performance needs to be improved.

[0003] To solve the above problems, an energy-saving intelligent lamp is proposed in this application. Summary of the Invention

[0004] To solve the problems raised in the above background art, the present invention provides an energy-saving intelligent lamp, which has the characteristics of improving the utilization rate of LED light and intelligent energy saving.

[0005] To achieve the above object, the present invention provides the following technical solution: An energy-saving intelligent lamp includes a mounting plate installed on a wall surface. A housing is snap-fitted on the mounting plate. A lamp cover is covered on the outer side wall of the housing. A lamp board is arranged inside the lamp cover. The lamp board is a hollow convex structure. A reflective cover is provided on the concave side of the lamp board. The surface of the reflective cover has a reflective coating. A number of uniformly distributed LED lamp beads are embedded on the lamp board. A control module is installed on the surface of the mounting plate.

[0006] Preferably, as an energy-saving intelligent lamp of the present invention, the control module includes a power module, a control circuit module, a light sensor, and a wireless communication module.

[0007] Preferably, as an energy-saving intelligent lamp of the present invention, the reflector is a spherical structure made of PC material, and the reflective coating of the reflector is a mixture of glass microspheres and alumina reflective powder in a ratio of 1:2, and is bonded to the surface of the reflector by epoxy resin in a ratio of 1:1.

[0008] Preferably, as an energy-saving intelligent lamp of the present invention, a magnetic attraction ring with an annular structure is formed on the outer side wall edge of the reflector, a permanent magnet is embedded inside the magnetic attraction ring, and the surface of the magnetic attraction ring is also coated with a reflective coating.

[0009] Preferably, as an energy-saving intelligent lamp of the present invention, the magnetic attraction ring and the reflector are adapted to each other, an installation position adapted to the magnetic attraction ring is provided on the surface of the housing, a permanent magnet is installed inside the edge of the reflector, and a magnetic attraction gasket is fixed in the installation position on the surface of the housing.

[0010] Preferably, as an energy-saving intelligent lamp of the present invention, the lamp shade is a housing structure made of polypropylene material, and the inner surface of the lamp shade has a soft light coating.

[0011] Preferably, as an energy-saving intelligent lamp of the present invention, the lamp board is made of a mixture of fluorescent powder and epoxy resin in a ratio of 1:10, and the lamp board and the LED lamp beads are combined and hot-pressed into a curved surface through a mold.

[0012] Preferably, as an energy-saving intelligent lamp of the present invention, heat dissipation grilles are provided on the side surface of the housing, the housing and the lamp shade are connected by screws, heat dissipation grilles are also provided at the engaging part of the lamp shade and the housing, and the heat dissipation grilles of the housing and the lamp shade correspond to each other.

[0013] Preferably, as an energy-saving intelligent lamp of the present invention, the mounting plate is a rectangular plate structure, the lamp shade and the mounting plate are matched, and the surface of the lamp shade is an arc surface structure.

[0014] Preferably, as an energy-saving intelligent lamp of the present invention, the lamp board is arranged inside the lamp shade, the surface of the lamp board is parallel to the inner surface of the lamp shade, the reflector is arranged inside the lamp board, and the surface of the reflector is parallel to the inner surface of the lamp board.

[0015] Compared with the prior art, the beneficial effects of the present invention are: 1. In the present invention, the LED lamp beads are connected through a light-transmitting lamp board and an energized circuit. The LED lamp beads are located on the raised lamp board, and light can pass smoothly around the LED lamp beads. Compared with common LED lighting fixtures on the market, the light emitted by the LED lamp beads in the present invention will not be blocked by the circuit board on which the LED lamp beads are installed. The light emitted by the LED lamp beads is emitted towards the lampshade on one side and towards the reflector on the other side. The reflective coating on the surface of the reflector reflects the light onto the lampshade. The hollow structure in the lamp board further prevents the light from being absorbed and weakened during the reflection process, thereby maximizing the performance of the LED lamp beads and improving the utilization rate of the LED lamp beads.

[0016] 2. The lampshade and the lamp board of the present invention are both outwardly convex curved surface structures. Through the arc-shaped LED lamp beads, the LED lamp beads can irradiate the outside world at multiple angles, enabling the present invention to fully illuminate the room during lighting operations. Compared with existing lamps on the market, it has a larger lighting range, and the light distribution in the irradiated area is more uniform, improving the lighting effect.

[0017] 3. The control system of the present invention, when the intelligent mode is turned on, senses the external brightness through the control circuit and intelligently adjusts the light to an appropriate brightness. When there is a certain amount of light in the outside world, the present invention can increase the brightness. When the external light is relatively dim, it automatically turns on a dimmer brightness for lighting. The user can manually adjust the light to a higher or lower brightness. In this way, it prevents damage to the eyesight caused by suddenly illuminated environments and can further save electricity. When lighting for a long time and the external brightness is high, it can be automatically turned off to further achieve the purpose of energy conservation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. In the drawings: Figure 1 is a perspective structure schematic diagram of an energy-saving and intelligent lighting fixture of the present invention; Figure 2 is a side view structure schematic diagram of an energy-saving and intelligent lighting fixture of the present invention; Figure 3 is a three-dimensional structure schematic diagram of an energy-saving and intelligent lighting fixture of the present invention; Figure 4 is an exploded structure schematic diagram of an energy-saving and intelligent lighting fixture of the present invention Figure 1 ; Figure 5 is an exploded structure schematic diagram of an energy-saving and intelligent lighting fixture of the present invention Figure 2 ; Figure 6 is a structure schematic diagram of the second embodiment of an energy-saving and intelligent lighting fixture of the present invention Figure 1; Figure 7 Structural schematic of the second embodiment of an energy-saving intelligent lamp of the present invention Figure 2 ; Figure 8 Structural schematic of the second embodiment of an energy-saving intelligent lamp of the present invention Figure 3 ; In the figure: 1, mounting plate; 2, housing; 3, lamp cover; 4, lamp board; 5, LED lamp beads; 6, reflector; 7, magnetic attraction ring. Specific embodiments

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0020] A lighting fixture is a device used for lighting. It can emit light through a light source to provide a lighting environment. The design and application of lighting fixtures aim to meet people's needs in terms of light, lighting effects, comfort, safety, etc.; with the development of technology, many lighting fixtures have been gradually phased out. In order to have a better lighting effect, lower power consumption, and be more energy-saving and environmentally friendly, the advantages of LED lighting fixtures have gradually emerged. An LED lamp is a lighting device that uses light-emitting diodes as the light source. The light in the LED lamp radiates radially from the light source lamp beads to the surroundings. However, in the existing LED energy-saving lamps on the market, only the unilateral light of the LED light source is used for lighting, and the other side is blocked by the lamp board or circuit board and cannot be fully utilized. For LED lamps with the same power, the emitted light cannot be fully utilized, and their energy-saving performance needs to be improved; To further improve the energy-saving efficiency of lighting fixtures, the present invention provides an energy-saving intelligent lamp, which has an LED lamp installed and fixed through a light-transmitting lamp board, so that the light radiating from the LED lamp to the surroundings is not blocked. A reflector that can reflect light is provided inside the lamp board to reflect the light facing the inside outward, thereby improving the light utilization rate of the LED and achieving an energy-saving effect. At the same time, the control circuit module cooperates with a light sensor that can sense the external light intensity, so that the present invention can be at an appropriate brightness when the light is turned on according to the external situation, further improving the energy-saving effect. During the day, it can be automatically turned off, further improving the energy-saving effect.

[0021] The specific implementation plan of the present invention will be elaborated in detail below: Embodiment 1 As Figures 1 to 5 shown; An energy-saving intelligent lamp, comprising a mounting plate 1 installed on a wall surface. A housing 2 is snap-fitted on the mounting plate 1. A lamp cover 3 is covered on the outer side wall of the housing 2. A lamp board 4 is arranged inside the lamp cover 3. The lamp board 4 is a hollow convex structure. A reflecting cover 6 is arranged on the concave side of the lamp board 4. The surface of the reflecting cover 6 has a reflecting coating. A number of uniformly distributed LED lamp beads 5 are embedded on the lamp board 4. A control module is installed on the surface of the mounting plate 1; In this embodiment: When installing the present invention, the mounting plate 1 is fixed to the wall surface by screws. Then, in the case of power failure in the outside world, the power module on the mounting plate 1 is connected to the external power supply. Then, the housing 2 is covered on the mounting plate 1. The protruding clamping blocks (not shown in the figure) on the surface of the mounting plate 1 are snap-fitted with the clamping grooves (not shown in the figure) inside the housing 2 to pre-fix the housing 2 and the mounting plate 1. The operator fixes the mounting plate 1 and the housing 2 by screws to make the housing 2 firmly installed. Then, the reflecting cover 6 is installed at the center of the housing 2. Then, the lamp board 4 is covered on the surface of the reflecting cover 6. At this time, the LED lamp beads 5 and the power module are connected by a quick-connect plug. Finally, the lamp cover 3 is covered on the surface of the housing 2, and the housing 2 and the lamp cover 3 are firmly installed and fixed from the side by screws to complete the installation and fixation of the present invention. The installation of the present invention is simple and the operation is simple; When the present invention is in the lighting operation, the LED lamp beads 5 are connected through the lamp board 4 and the power module in the housing 2. The LED lamp beads 5 are installed on the outwardly protruding lamp board 4. Light can pass smoothly around the LED lamp beads 5. Compared with the common LED lighting lamps on the market, the light emitted by the LED lamp beads 5 of the present invention will not be blocked by the circuit board on which the LED lamp beads 5 are installed. The light emitted by the LED lamp beads 5 is emitted to the lamp cover 3 on one side and to the reflecting cover 6 on the other side. The reflecting coating on the surface of the reflecting cover 6 makes the light reflected onto the lamp cover 3. The hollow structure in the lamp board 4 further prevents the light from being absorbed and weakened during the reflection process, so as to maximize the performance of the LED lamp beads 5 and improve the utilization rate of the LED lamp beads 5. The lamp cover 3 and the lamp board 4 of the present invention are both outwardly convex curved surface structures. Through the arc-shaped LED lamp beads 5, the LED lamp beads 5 can irradiate the outside world at multiple angles, so that the present invention can fully illuminate the room during the lighting operation. Compared with the existing lamps on the market, it has a larger lighting range, and the light distribution in the irradiated area is more uniform, improving the lighting effect.

[0022] Furthermore: In an alternative embodiment, the lamp board 4 is composed of multiple light strips arranged in parallel, and the number of light strips is at least three groups. The light strips are evenly spaced from each other. Each individual light strip has an arc structure, and the LED lamp beads 5 on a single light strip are evenly arranged along the arc. The intersection of multiple light strips forms a polygonal ring structure, which together forms a convex spherical surface. This polygonal ring structure can prevent the LED lamp beads 5 at the intersection from being too dense, preventing the brightness at the center from being too high and causing uneven overall illumination. There are gaps between the light strips, providing a certain heat dissipation space for the LED lamp beads 5.

[0023] Furthermore: In an alternative embodiment, the control module includes a power supply module, a control circuit module, a light sensor, and a wireless communication module. The power supply module is used to convert the external power supply into the working current of the LED lamp beads 5. The control circuit module is used to control the on / off of the LED lamp beads 5, process information parameters, and control the LED lamp beads 5 to an appropriate brightness according to the parameters. The light sensor is used to sense the external light intensity and transmit the external brightness parameters to the control circuit module. The wireless communication module is used to connect to the external network layer to receive and send wireless signals.

[0024] In this implementation: When installing the mounting plate 1, the power supply module in the present invention is connected to the external power supply. The control module is used to control the turning on and off of the LED lamp beads 5 and the brightness of the LED lamp beads 5. Through the light sensor, the present invention can sense the external light condition, obtain the external brightness parameters according to the light sensor, and then the control module controls the LED lamp beads 5 to reach an appropriate brightness when turned on. The present invention can be connected to the smart home APP through the wireless communication module, and the turning on and off of the present invention can be remotely controlled. When there is a certain amount of light in the external environment, the control circuit makes the LED lamp beads 5 increase to a higher brightness. When the external light is relatively dim, the control circuit makes the LED lamp beads 5 adjust to a lower brightness. In this way, it can prevent sudden illumination from damaging eyesight and can also further save electricity. The operator can manually adjust the brightness of the light to a higher or lower level through the switch; when the lighting lasts for a long time and the external brightness is high, it can be automatically turned off. In this way, it can prevent the situation where indoor people forget to turn off the lights when the external environment is daytime, achieving automatic light off and further achieving the purpose of energy saving.

[0025] It should be noted that: Through the control module, the LED lamp beads 5 of the present invention can also be set for timed on / off, further improving the energy-saving performance of the present invention.

[0026] Furthermore: In an alternative embodiment, the reflector 6 is a spherical structure made of PC material. The reflective coating of the reflector 6 is a mixture of glass microspheres and alumina reflective powder in a ratio of 1:2, and is adhered to the surface of the reflector 6 by epoxy resin in a ratio of 1:1. The mixture of glass microspheres and alumina in a ratio of 1:2 enables the reflective coating to have a high light reflectivity, and can reflect the light emitted by the LED lamp beads 5 towards the interior of the lamp to the outside. The epoxy resin is used for adhesion, and the epoxy resin has sufficient viscosity and can protect the coating.

[0027] In this embodiment: Through this design, the reflective coating on the surface of the reflector 6 can reflect the light emitted by the LED lamp beads 5 towards the interior to the outside, thereby improving the utilization rate of the LED lamp beads 5. The spherical reflector 6 makes the light reflection more uniform.

[0028] Furthermore: In an alternative embodiment, a magnetic attraction ring 7 with an annular structure is formed on the outer side wall edge of the lamp board 4. A permanent magnet is embedded inside the magnetic attraction ring 7, and the surface of the magnetic attraction ring 7 is also coated with a reflective coating.

[0029] In this embodiment: Through this design, the magnetic attraction ring 7 improves the stability of the lamp board 4 and facilitates the installation of the lamp board 4 on the surface of the housing 2. The lamp board 4 is provided with a quick-connect plug for connecting to the power module. The magnetic attraction ring 7 makes the installation and disassembly of the lamp board 4 convenient and fast.

[0030] Furthermore: In an alternative embodiment, the magnetic attraction ring 7 and the reflector 6 are adapted to each other. An installation position adapted to the magnetic attraction ring 7 is provided on the surface of the housing 2. A permanent magnet is installed inside the edge of the reflector 6, and a magnetic attraction gasket is fixed in the installation position on the surface of the housing 2.

[0031] In this embodiment: Through this design, the reflector 6 can be adsorbed to the lamp board 4 through the magnetic attraction ring 7. The magnetic attraction ring 7 plays a supporting role for the reflector 6 to prevent the reflector 6 from deforming. Moreover, both of them are installed in the installation position on the housing 2 and are in the same plane, improving the compactness of the present invention and the installation stability of the lamp board 4 and the reflector 6.

[0032] Furthermore: In an alternative embodiment, the lamp shade 3 is a housing structure made of polypropylene material, and the inner surface of the lamp shade 3 has a soft light coating.

[0033] In this embodiment: Through this design, the soft light coating on the inner surface of the lampshade 3 further softens the light emitted by the LED lamp beads 5, avoiding the generation of halos on the lampshade 3. At the same time, it makes the illumination level within the lighting range uniform, improving the lighting effect. The lampshade 3 and the lamp board 4 of the present invention are both outwardly convex curved surface structures. Through the arc-shaped LED lamp beads 5, the LED lamp beads 5 can irradiate the outside world at multiple angles, enabling the present invention to fully illuminate the room during lighting operations.

[0034] Furthermore: In an alternative embodiment, the material of the lamp board 4 is a mixture of fluorescent powder and epoxy resin in a ratio of 1:10. The lamp board 4 and the LED lamp beads 5 are combined and hot-pressed into a curved surface through a mold.

[0035] In this embodiment: Through this design, the lamp board 4 is a light-transmitting material, and the light can pass smoothly around the LED lamp beads 5. Moreover, the fluorescent powder in the lamp board 4 facilitates the dispersion of the light of the LED lamp beads 5, making the lighting effect more uniform.

[0036] Furthermore: In an alternative embodiment, the side of the housing 2 is provided with a heat dissipation grille. The housing 2 and the lampshade 3 are connected by screws, and a heat dissipation grille is also provided at the engaging portion between the lampshade 3 and the housing 2. The heat dissipation grilles of the housing 2 and the lampshade 3 correspond to each other.

[0037] In this embodiment: Through this design, the heat dissipation grille enables the housing 2 and the lampshade 3 to perform heat dissipation operations when the LED lamp beads 5 are working. Since the heat generated by the LED lamp beads 5 themselves is relatively small, the lamp board 4 being a hollow structure itself is beneficial for the heat dissipation of the LED lamp beads 5. Combined with the heat dissipation grilles on the housing 2 and the lampshade 3, the heat dissipation effect of the LED lamp beads 5 can be further improved, facilitating the improvement of the service life of the LED lamp beads 5.

[0038] Embodiment 2 Since the shapes and outer forms of the lamps are diverse, the present invention can be adjusted in shape to be applicable to a variety of outer dimensions.

[0039] Such as Figures 6 to 8 shown; An energy-saving intelligent lamp, the mounting plate 1 is a rectangular plate structure, the lampshade 3 matches the mounting plate 1, and the surface of the lampshade 3 is an arc surface structure.

[0040] In this embodiment: Through this design, the mounting plate 1 is a rectangular plate structure. When installing, the mounting plate 1 is installed on the wall surface by screws, and then the housing 2 is clamped on the mounting plate 1. The housing 2 and the mounting plate 1 are firmly installed and fixed by screws. Then, the four corners of the reflector 6 are fixed on the surface of the housing 2 by screws to make the reflector 6 firmly fixed. Then, the lamp board 4 is clamped on the edge of the reflector 6, and the magnetic pad on the lamp board 4 and the housing 2 are adsorbed and fixed. Since the reflector 6 is a rectangular structure, the magnetic ring 7 on the edge of the lamp board 4 is also a rectangular ring structure. When installing the lamp board 4, it is connected to the power module through a quick-connect plug, and then the remaining installation steps are the same as those in Embodiment 1.

[0041] Furthermore: In an alternative embodiment, the lamp board 4 is arranged inside the lamp cover 3, the surface of the lamp board 4 is parallel to the inner surface of the lamp cover 3, the reflector 6 is arranged inside the lamp board 4, and the surface of the reflector 6 is parallel to the inner surface of the lamp board 4.

[0042] In this embodiment: Through this design, the distance from the LED lamp beads 5 on the lamp board 4 to the lamp cover 3 is equal, so that the light emitted by the lamp cover 3 is uniform, improving the lighting effect. The distance from the LED lamp beads 5 to the reflector 6 is equal, so that the reflection of the reflector 6 is more uniform. Moreover, the space around the lamp board 4 with this structure is large enough to fully contact the air during heat dissipation, facilitating the heat dissipation of the LED lamp beads 5 in the lamp board 4.

[0043] The working principle and usage process of the present invention: When the present invention is installed, the mounting plate 1 is fixed on the wall surface by screws. Then, in the case of power failure outside, the power module on the mounting plate 1 is connected to the external power supply. Then, the housing 2 is covered on the mounting plate 1, and the protruding blocks (not shown in the figure) on the surface of the mounting plate 1 are engaged with the card slots (not shown in the figure) inside the housing 2 to pre-fix the housing 2 and the mounting plate 1. The operator fixes the mounting plate 1 and the housing 2 with screws to make the housing 2 firmly installed. Then, the permanent magnet of the reflector 6 and the magnetic ring 7 attract and combine with each other, and the reflector 6 and the magnetic ring 7 are clamped together in the mounting position at the center of the housing 2. The reflector 6 and the magnetic ring 7 are attracted to the magnetic pads in the mounting position, making the reflector 6 and the magnetic ring 7 firmly fixed in the mounting position. In this way, the reflector 6 on the magnetic ring 7 is firmly installed. At this time, the LED lamp beads 5 and the power module are connected through a quick-connect plug. Finally, the lamp cover 3 is covered on the surface of the housing 2, and the heat dissipation grilles on the side of the lamp cover 3 correspond to the heat dissipation grilles on the side of the housing 2. The housing 2 and the lamp cover 3 are firmly installed and fixed from the side by screws to complete the installation and fixation of the present invention. For the rectangular mounting plate 1 and the housing 2, in order to prevent the long lamp board 4 and the reflector 6 from falling off the mounting position, the reflector 6 and the lamp board 4 are fixed at the corners of the reflector 6 and the magnetic ring 7 by screws. The installation of the present invention is simple and the operation is simple; When the present invention is in use for lighting, the LED lamp beads 5 are connected through the lamp board 4 and the power supply module in the housing 2. The LED lamp beads 5 are located on the protruding lamp board 4. Since the lamp board 4 is made of a light-transmitting material, light can pass through smoothly around the LED lamp beads 5. Compared with the common LED lighting fixtures on the market, the light emitted by the LED lamp beads 5 of the present invention will not be blocked by the circuit board on which the LED lamp beads 5 are installed. The light emitted by the LED lamp beads 5 is emitted to the lampshade 3 on one side and to the reflector 6 on the other side. The reflective coating on the surface of the reflector 6 reflects the light onto the lampshade 3. The hollow structure in the lamp board 4 further prevents the light from being absorbed and weakened during the reflection process, thereby maximizing the performance of the LED lamp beads 5 and improving the utilization rate of the LED lamp beads 5. The lampshade 3 and the lamp board 4 of the present invention are both outwardly convex curved surface structures. Through the arc-shaped LED lamp beads 5, the LED lamp beads 5 can irradiate the outside world at multiple angles, enabling the present invention to fully illuminate the room during lighting operations. Compared with the existing lamps on the market, it has a larger lighting range, and the light distribution in the irradiated area is more uniform, improving the lighting effect. When the present invention is in use for lighting, an on signal is sent to the control module through the switch. The ambient brightness is sensed by the light sensor, and the ambient brightness parameter is fed back to the control circuit module. The control circuit module turns on the LED lamp beads 5 and simultaneously adjusts the brightness of the LED lamp beads 5 to adapt to the ambient brightness. When there is a certain amount of light in the outside world, the control circuit increases the brightness of the LED lamp beads 5 to a higher level. When the outside light is relatively dim, the control circuit adjusts the LED lamp beads 5 to a lower brightness. In this way, it prevents damage to the eyes caused by suddenly illuminated environments and can also further save electricity. The operator can manually adjust the brightness of the light to a higher or lower level through the switch. When lighting for a long time and the outside brightness is high, it can be automatically turned off. In this way, it prevents the situation where indoor personnel forget to turn off the lights when the outside is daytime, achieving automatic power-off and further achieving the purpose of energy conservation.

[0044] For the present invention with a rectangular structure, since the mounting plate 1 is a rectangular plate structure, during installation, the mounting plate 1 is installed on the wall through screws, and then the housing 2 is clamped on the mounting plate 1. The housing 2 and the mounting plate 1 are firmly installed and fixed through screws. Then, the four corners of the reflector 6 are fixed on the surface of the housing 2 through screws to make the reflector 6 firmly fixed. Then, the lamp board 4 is clamped on the edge of the reflector 6, and the magnetic adsorption gaskets on the lamp board 4 and the housing 2 are adsorbed and fixed. Since the reflector 6 is a rectangular structure, the magnetic adsorption ring 7 on the edge of the lamp board 4 is also a rectangular ring structure. When installing the lamp board 4, it is connected to the power supply module through a quick-connect plug, and then the remaining installation steps are the same as those in Embodiment 1.

[0045] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An energy-saving smart lamp, characterized in that: The invention comprises a mounting plate (1) mounted on a wall, a shell (2) being clamped on the mounting plate (1), a lampshade (3) being provided on the outer wall of the shell (2), a lamp panel (4) being arranged inside the lampshade (3), the lamp panel (4) being a hollow convex structure, a reflector (6) being provided on the concave side of the lamp panel (4), the surface of the reflector (6) having a reflective coating, a plurality of evenly distributed LED lamp beads (5) being embedded on the lamp panel (4), and a control module being installed on the surface of the mounting plate (1).

2. The energy-saving smart lamp according to claim 1, characterized in that: The control module includes a power supply module, a control circuit module, a light sensor and a wireless communication module.

3. The energy-saving smart lamp according to claim 1, characterized in that: The reflector (6) is a spherical structure made of PC material, and the reflective coating of the reflector (6) is a mixture of glass micro beads and aluminum oxide reflective powder in a ratio of 1:2, which is bonded to the surface of the reflector (6) by epoxy resin in a ratio of 1:

1.

4. The energy-saving smart lamp according to claim 3, characterized in that: A magnetic attraction ring (7) of an annular structure is formed on the edge of the outer wall of the lamp panel (4), a permanent magnet is embedded in the interior of the magnetic attraction ring (7), and a reflective coating is coated on the surface of the magnetic attraction ring (7).

5. The energy-saving smart lamp according to claim 4, characterized in that: The magnetic attraction ring (7) is matched with the reflector (6); a mounting position matched with the magnetic attraction ring (7) is provided on the surface of the shell (2); a permanent magnet is mounted on the inner side of the edge of the reflector (6); and a magnetic attraction gasket is fixed in the mounting position on the surface of the shell (2).

6. The energy-saving smart lamp according to claim 1, characterized in that: The lampshade (3) is a shell structure made of polypropylene, and the inner surface of the lampshade (3) has a soft light coating.

7. The energy-saving smart lamp according to claim 1, characterized in that: The material of the lamp board (4) is a mixture of fluorescent powder and epoxy resin in a ratio of 1:10, and the lamp board (4) and the LED lamp beads (5) are combined and hot-pressed into a curved surface through a mold.

8. The energy-saving smart lamp according to claim 1, characterized in that: A heat dissipation grille is provided on the side of the housing (2); the housing (2) and the lampshade (3) are connected by screws; a heat dissipation grille is also provided at the engaging portion between the lampshade (3) and the housing (2); the heat dissipation grilles of the housing (2) and the lampshade (3) correspond to each other.

9. The energy-saving smart lamp according to claim 1, characterized in that: The mounting plate (1) is a rectangular plate structure, the lampshade (3) matches the mounting plate (1), and the surface of the lampshade (3) is a curved surface structure.

10. The energy-saving smart lamp according to claim 9, characterized in that: The lamp panel (4) is arranged inside the lampshade (3), and the surface of the lamp panel (4) is arranged parallel to the inner surface of the lampshade (3); the reflector (6) is arranged on the inner side of the lamp panel (4), and the surface of the reflector (6) is arranged parallel to the inner surface of the lamp panel (4).

Citation Information

Patent Citations

  • Heat dissipation type LED lamp

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