Multifunctional LED wall lamp
By separate and installing the lighting components and driving power, and introducing dial-code power adjustment, color temperature and light control sensors, the problems of complex wall lamp design and poor heat dissipation are solved, intelligent and energy-saving lighting control is achieved, and user experience and service life are improved.
Patent Information
- Application Number
- CN202422508088.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-16
AI Technical Summary
The existing wall lamps are complex in design, inconvenient installation and maintenance, lack color temperature and power adjustment functions, poor heat dissipation effect, affect service life, and poor user experience.
The lighting components and driving power supply are installed in the lighting housing and power box respectively, and the dialing power and color temperature functions are used, combined with the light-controlled sensor to achieve thermal isolation and intelligent control.
It improves the heat dissipation effect, extends the service life of the lamp, improves the user experience, and realizes intelligent and energy-saving lighting control.
Smart Images

Figure CN223153516U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of LED lamps, in particular to a multifunctional LED wall lamp. Background Art
[0002] Wall lamps are mostly installed on balconies, stairs, corridors and in bedrooms, and are suitable as long - burning lamps. However, most of the existing wall lamps are complex in design, inconvenient to install and maintain. At the same time, the existing wall lamps do not have the functions of adjusting color temperature and power. The user experience is poor. In addition, most of them integrate LED lamp beads and power supplies in the same chamber, and the heat dissipation effect is average, which affects their service life. Therefore, it needs to be improved. Content of the Utility Model
[0003] The purpose of the utility model is to provide a multifunctional LED wall lamp. The wall lamp installs the lighting component and the driving power supply in the lighting housing and the power supply box respectively, so as to isolate two main heat sources, avoid heat concentration, reduce heat interference, improve the heat dissipation effect, and effectively improve the service life of the lamp. At the same time, it has the functions of DIP switch power adjustment and color temperature adjustment, and can select appropriate brightness and color temperature according to actual needs to achieve the expected lighting effect. In addition, a light control sensor is installed, which has the function of light control, achieving the purpose of energy - saving and intelligent use of the lamp.
[0004] To achieve the above purpose, the following technical solutions are adopted:
[0005] A multifunctional LED wall lamp, comprising
[0006] A power supply component, the power supply component includes a power supply box and a sealing cover plate; the power supply box is provided with a first cavity with an opening on one side, and a driving power supply is also installed in the first cavity; the sealing cover plate is installed at the opening of the first cavity, and a first wire passing hole penetrating through to the inside of the first cavity is also opened on the sealing cover plate;
[0007] A lighting housing, the lighting housing is installed on the other side of the power supply box, and the lighting housing is provided with a second cavity with openings at both ends; a second wire passing hole penetrating through to the inside of the first cavity is opened on the other side of the power supply box, and a third wire passing hole penetrating through to the inside of the second cavity is opened at the corresponding position of the outer wall of the lighting housing and the second wire passing hole;
[0008] Two lighting components, the two lighting components are respectively installed at one end opening of the lighting housing, and each lighting component is connected to the driving power supply;
[0009] A light control sensor, the light control sensor is installed at one end of the power supply box and is connected to the driving power supply.
[0010] Further, the lighting assembly includes a heat dissipation end cover, a lamp board, a lens, and glass; the heat dissipation end cover is installed in the opening at one end of the lighting housing, and a first installation cavity is provided on one side of the heat dissipation end cover; the lamp board is installed in the first installation cavity, and a plurality of LED lamp beads are arrayed on one side of the lamp board; the lens is arranged in the first installation cavity and covers the LED lamp beads; the glass is installed in the first installation cavity and covers the lens; a fourth wire passing hole communicating with the second cavity is also provided in the first installation cavity.
[0011] Further, a first waterproof ring is installed at each end of the lighting housing.
[0012] Further, a power adjustment and color temperature component is also installed in the first cavity.
[0013] Further, the power adjustment and color temperature component includes a DIP circuit board connected to the drive power supply, and a DIP debugging switch installed on the DIP circuit board; a debugging hole is also provided at the corresponding position of the other end of the power supply box opposite to the DIP debugging switch, and a first hole plug is installed in the debugging hole.
[0014] Further, an installation fixing plate is connected to one side of the sealing cover plate; the side of the installation fixing plate corresponding to the first wire passing hole is in a hollow structure, and a plurality of first fixing holes are provided on the edge of one side of the installation fixing plate.
[0015] Further, an EVA waterproof cotton is connected to one side of the installation fixing plate, and the side of the EVA waterproof cotton corresponding to the first wire passing hole is in a hollow structure.
[0016] Further, a second waterproof ring is connected to the opening of the first cavity.
[0017] Further, a second hole plug is installed in the first wire passing hole.
[0018] Further, a first extension block extends outward from the middle of the other side of the power supply box; a first limiting groove is provided on one side of the first extension block, and a first through hole communicating with the first cavity is provided in the first limiting groove; a first waterproof pad is also embedded in the first limiting groove, and a second extension block extends outward from the middle of one side of the first waterproof pad; the second extension block is inserted into the third wire passing hole, and a second wire passing hole is provided on the second extension block.
[0019] Adopting the above scheme, the beneficial effects of the utility model are:
[0020] In this utility model, the lighting component and the drive power supply are respectively installed in the lighting housing and the power supply box to isolate the two main heat sources, avoid heat concentration, reduce heat interference, improve the heat dissipation effect, and thus effectively extend the service life of the lamp. At the same time, it has the functions of DIP switch power adjustment and color temperature adjustment, and can select appropriate brightness and color temperature according to actual needs to achieve the expected lighting effect. In addition, a light control sensor is installed, which has the function of light regulation, so as to achieve the purpose of energy-saving and intelligent use of the lamp. Brief Description of the Drawings
[0021] Figure 1 is a structural schematic diagram of this utility model;
[0022] Figure 2 is an exploded view of this utility model;
[0023] Figure 3 is a structural schematic diagram of one perspective of the power supply box of this utility model;
[0024] Figure 4 is a structural schematic diagram of another perspective of the power supply box of this utility model;
[0025] Among them, the description of the attached drawing reference numerals:
[0026] 1. Power supply component; 2. Lighting housing; 3. Lighting component; 4. Light control sensor; 5. DIP switch circuit board; 6. DIP switch debugging switch; 7. Installation fixing plate; 8. EVA waterproof cotton; 11. Power supply box; 12. Sealing cover plate; 13. First cavity; 14. Drive power supply; 15. Second wire passing hole; 21. First waterproof ring; 31. Heat dissipation end cover; 32. Lamp board; 33. Lens; 34. Glass; 35. First installation cavity; 111. First hole plug; 112. Second waterproof ring; 113. Second hole plug; 114. First extension block; 115. First limit groove; 116. First through hole; 117. First waterproof pad; 118. Second extension block. Detailed Description of the Preferred Embodiments
[0027] The following will describe this utility model in detail with reference to the attached drawings and specific embodiments.
[0028] Refer to Figures 1 to 4 as shown, this utility model provides a multifunctional LED wall lamp. In one embodiment, it includes
[0029] a power supply component 1, and the power supply component 1 includes a power supply box 11 and a sealing cover plate 12; the power supply box 11 is provided with a first cavity 13 with an opening on one side, and a drive power supply 14 is also installed in the first cavity 13; the sealing cover plate 12 is installed at the opening of the first cavity 13, and a first wire passing hole penetrating into the first cavity 13 is also provided on the sealing cover plate 12;
[0030] A lighting housing 2 is installed on the other side of the power supply box 11, and the lighting housing 2 is provided with a second cavity having openings at both ends thereof; a second wire passing hole 15 communicating with the first cavity 13 is provided on the other side of the power supply box 11, and a third wire passing hole communicating with the second cavity is provided at a position corresponding to the second wire passing hole 15 on the outer wall of the lighting housing 2.
[0031] Two lighting assemblies 3 are respectively installed at one end opening of the lighting housing 2, and each lighting assembly 3 is connected to the driving power supply 14.
[0032] A light control sensor 4 is installed at one end of the power supply box 11 and is connected to the driving power supply 14.
[0033] Continue to refer to Figures 1 to 4 As shown, the driving power supply 14 is installed in the power supply box 11. The driving power supply 14 is used to supply power to the entire lamp. At the same time, a sealing cover plate 12 is provided to seal the driving power supply 14 in the first cavity 13 to prevent damage caused by being impacted by external objects. A first wire passing hole is provided on the sealing cover plate 12 to facilitate access to the mains electricity. The lighting housing 2 is in a cylindrical structure. The middle part of the outer wall of the lighting housing 2 is connected to the other side of the power supply box 11. The two lighting assemblies 3 are respectively installed at one end of the lighting housing 2 to emit light to the outside for lighting. The cable of the lighting assembly 3 can pass through the second cavity, the third wire passing hole, and the second wire passing hole 15 in sequence and then be inserted into the first cavity 13 of the power supply box 11 to be connected to the driving power supply 14. By adopting such a wiring method, the cable can be hidden in the lighting housing 2, which can not only ensure the overall cleanliness and tidiness of the lamp but also protect the cable from damage. In addition, a light control sensor 4 is provided, which can sense the surrounding light intensity to realize the automatic light control function, achieving the purpose of energy-saving and intelligent use of the lamp. At the same time, in this embodiment, the lighting assembly 3 and the driving power supply 14 are respectively installed in the lighting housing 2 and the power supply box 11 to isolate the two main heat sources, avoid heat concentration, reduce heat interference, improve the heat dissipation effect, and thus effectively improve the service life of the lamp.
[0034] In one embodiment, the lighting assembly 3 includes a heat dissipation end cap 31, a lamp board 32, a lens 33, and a glass 34. The heat dissipation end cap 31 is installed in the opening at one end of the lighting housing 2, and a first installation cavity 35 is formed on one side of the heat dissipation end cap 31. The lamp board 32 is installed in the first installation cavity 35, and a plurality of LED lamp beads are arranged in an array on one side of the lamp board 32. The lens 33 is arranged in the first installation cavity 35 and covers the LED lamp beads. The glass 34 is installed in the first installation cavity 35 and covers the lens 33. A fourth wire passing hole communicating with the second cavity is also formed in the first installation cavity 35. The cable of the lamp board 32 can pass through the fourth wire passing hole and be inserted into the second cavity, and then sequentially pass through the third wire passing hole and the second wire passing hole 15, and then be inserted into the first cavity 13 of the power supply box 11 to be connected to the driving power supply 14. The lens 33 can improve the lighting effect. At the same time, the glass 34 is also provided to play a role in dust prevention and waterproofing. In addition, to further improve the waterproof performance of the lighting assembly 3, in this embodiment, a first waterproof ring 21 is installed at each end of the lighting housing 2.
[0035] In one embodiment, a power adjustment and color temperature component is further installed in the first cavity 13. The power adjustment and color temperature component includes a DIP circuit board 5 connected to the driving power supply 14, and a DIP debugging switch 6 installed on the DIP circuit board 5. A debugging hole is also formed at the corresponding position of the other end of the power supply box 11 opposite to the DIP debugging switch 6, and a first hole plug 111 is installed in the debugging hole. By means of the DIP debugging switch 6, appropriate brightness and color temperature can be selected according to actual needs to achieve the expected lighting effect and improve the user experience. At the same time, when the DIP debugging switch 6 is not in use, the first hole plug 111 can be inserted into the debugging hole to play a role in dust prevention and waterproofing.
[0036] In one embodiment, an installation fixing plate 7 is further connected to one side of the sealing cover plate 12. One side of the installation fixing plate 7 corresponding to the first wire passing hole is of a hollow structure, and a plurality of first fixing holes are formed on the edge of one side of the installation fixing plate 7. Screws can be locked into the first fixing holes to lock and install the lamp on the outside. At the same time, the side of the installation fixing plate 7 corresponding to the first wire passing hole is of a hollow structure, which can form an avoidance position for easy wiring. In addition, an EVA waterproof cotton 8 is connected to one side of the installation fixing plate 7, and the side of the EVA waterproof cotton 8 corresponding to the first wire passing hole is of a hollow structure. Through the EVA waterproof cotton 8, the waterproof performance of the power supply box 11 can be improved.
[0037] To further improve the waterproof performance of the power supply box 11, a second waterproof ring 112 is connected to the opening of the first cavity 13, and a second hole plug 113 is installed in the first wire passing hole.
[0038] In one embodiment, a first extension block 114 extends outward from the middle of the other side of the power supply box 11; a first limiting groove 115 is formed on one side of the first extension block 114, and a first through hole 116 communicating with the first cavity 13 is formed in the first limiting groove 115; a first waterproof pad 117 is also embedded in the first limiting groove 115, and a second extension block 118 extends outward from the middle of one side of the first waterproof pad 117; the second extension block 118 is inserted into the third wire passing hole, and a second wire passing hole 15 is formed in the second extension block 118. A first waterproof pad 117 is provided at the connection between the power supply box 11 and the lighting housing 2, which can improve the waterproof performance at the connection between the two, prevent the lamp from getting water in, and thus affect the service life of the lamp.
[0039] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A multifunctional LED wall lamp, characterized in that, Including A power supply component, the power supply component includes a power supply box and a sealing cover plate; the power supply box is provided with a first cavity having an opening on one side thereof, and a driving power supply is further installed in the first cavity; the sealing cover plate is installed at the opening of the first cavity, and a first wire passing hole penetrating through to the inside of the first cavity is further provided on the sealing cover plate; A lighting housing, the lighting housing is installed on the other side of the power supply box, and the lighting housing is provided with a second cavity having openings at both ends thereof; a second wire passing hole penetrating through to the inside of the first cavity is provided on the other side of the power supply box, and a third wire passing hole penetrating through to the inside of the second cavity is provided at the position corresponding to the second wire passing hole on the outer wall of the lighting housing; Two lighting components, the two lighting components are respectively installed at one end opening of the lighting housing, and each lighting component is connected to the driving power supply; A light control sensor, the light control sensor is installed at one end of the power supply box and is connected to the driving power supply.
2. The multifunctional LED wall lamp according to claim 1, wherein The lighting component includes a heat dissipation end cover, a lamp board, a lens, and glass; the heat dissipation end cover is installed in one end opening of the lighting housing, and a first installation cavity is provided on one side of the heat dissipation end cover; the lamp board is installed in the first installation cavity, and a plurality of LED lamp beads are arrayed on one side of the lamp board; the lens is arranged in the first installation cavity and covers the LED lamp beads; the glass is installed in the first installation cavity and covers the lens; a fourth wire passing hole penetrating through to the inside of the second cavity is further provided in the first installation cavity.
3. The multifunctional LED wall lamp according to claim 2, characterized in that, A first waterproof ring is further installed at each end of the lighting housing.
4. The multifunctional LED wall lamp according to claim 1, characterized in that, A power adjustment and color temperature component is further installed in the first cavity.
5. The multi-functional LED wall lamp according to claim 4, characterized in that, The power adjustment and color temperature component includes a DIP circuit board connected to the driving power supply, and a DIP debugging switch installed on the DIP circuit board; a debugging hole is further provided at the position corresponding to the DIP debugging switch on the other end of the power supply box, and a first hole plug is installed in the debugging hole.
6. The multifunctional LED wall lamp according to claim 1, characterized in that, An installation fixing plate is further connected to one side of the sealing cover plate; the side of the installation fixing plate corresponding to the first wire passing hole is in a hollow structure, and a plurality of first fixing holes are further provided at the edge of one side of the installation fixing plate.
7. The multifunctional LED wall lamp according to claim 6, characterized in that, An EVA waterproof cotton is further connected to one side of the installation fixing plate, and the side of the EVA waterproof cotton corresponding to the first wire passing hole is in a hollow structure.
8. The multifunctional LED wall lamp according to claim 1, characterized in that, A second waterproof ring is further connected at the opening of the first cavity.
9. The multifunctional LED wall lamp according to claim 1, characterized in that, A second hole plug is further installed in the first wire passing hole.
10. The multifunctional LED wall lamp according to claim 1, characterized in that, A first extension block extends outward from the middle of the other side of the power supply box; a first limiting groove is provided on one side of the first extension block, and a first through hole penetrating through to the first cavity is provided in the first limiting groove; a first waterproof pad is further embedded in the first limiting groove, and a second extension block extends outward from the middle of one side of the first waterproof pad; the second extension block is inserted into the third wire passing hole, and the second wire passing hole is provided on the second extension block.