Modularly-designed multifunctional double-head waterproof wall lamp
The modularly designed multi-functional double-headed waterproof wall lamp solves the problems of difficult installation and limited functionality in existing technologies, achieving simple installation and multi-functional adjustment, improving user experience and expanding the range of applications.
Patent Information
- Application Number
- CN202520238110.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing outdoor double-headed waterproof wall lights lack modular assembly capabilities, making installation difficult. They also lack adjustable light output and color temperature, and do not have wall-washing angle adjustment functionality, resulting in a poor user experience.
This multi-functional, dual-head waterproof wall lamp features a modular design, including a lamp head module, a junction box module, and connecting screws. It achieves vertical light output, color temperature and power adjustment, and photosensitive control through wire harness plug-in connection. The junction box module has pre-drilled standard mounting screw holes for wiring conduits, supporting installation without a pre-drilled octagonal box.
It achieves simple installation and multi-functional adjustment, meets the needs of different scenarios, broadens the scope of use, improves user experience, and reduces installation costs.
Smart Images

Figure CN223579862U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lighting technical field, especially in a kind of modular design's multifunctional double-end waterproof wall lamp. BACKGROUND
[0002] The outdoor double-end waterproof wall lamp on current market does not have the function of modular assembly, and has gradually lost the advantage of export under the background of continuously imposing tariffs on China by North America;The outdoor double-end waterproof wall lamp on current market needs to be installed on the wall with octagonal box embedded in North America market, and many terminal users need to purchase matching junction box separately to use when installing in place without octagonal box, which not only increases the difficulty of installation for users, but also increases the use cost;The outdoor double-end waterproof wall lamp on current market does not have the adjusting function of upper light emission, lower light emission and both upper and lower light emission, and cannot meet the needs of customers for different scenes and energy saving and environmental protection;The color temperature adjusting module of the outdoor double-end waterproof wall lamp on current market is designed in the junction box, and needs to be adjusted according to the needs before installation, and if the terminal user forgets to adjust or wants to switch color temperature later, the multiple lamps need to be disassembled to adjust, and the experience of users is poor;The outdoor double-end waterproof wall lamp on current market does not have the function of adjustable wall washing angle, and some enterprises realize it by replacing different reflection cups, which undoubtedly increases the difficulty of replacement for users, and users need to purchase reflection cups to realize it. CONTENT OF UTILITY MODEL
[0003] In order to make up for the deficiency of prior art, the application provides a kind of modular design's multifunctional double-end waterproof wall lamp to solve the problems existing in prior art.
[0004] In order to solve the above technical problems, the utility model provides the following technical scheme:
[0005] A kind of modular design's multifunctional double-end waterproof wall lamp, which is composed of lamp head module, junction box module and connecting screw, wherein the lamp head module is designed with wire harness and wire harness, the junction box module is designed with wire harness and wire harness, the wire harness and wire harness are connected by plug-in, to realize the adjustment of upper and lower light emission, color temperature adjustment and power adjustment, the wire harness and wire harness are connected by plug-in, to realize photosensitive control, and the two parts are quickly locked by screw after connection.
[0006] As a further technical scheme of the utility model: the lamp head module is composed of end cover module, reflection cup, driving module, lamp barrel and optical module, the optical module is installed on the upper end of the driving module, the whole driving module is first placed into the lamp barrel and connected with the lamp barrel by screw, the wire harness on the optical module is connected with the wire harness on the driving module by plug-in after connection, and then connected with the lamp barrel by screw;The reflection cup is placed into the lamp barrel at both ends, and finally the rear cover is screwed into the lamp barrel at both ends to complete the installation.
[0007] As a further technical scheme of the utility model: the upper cover module adopts aluminum die casting shell as appearance piece, and the inside is bonded with tempered glass through silica gel, and screw threads are designed below, and the lamp cylinder is rotatably installed, and O-shaped rings are designed on the top of screw threads.
[0008] As a further technical scheme of the utility model: the driving module adopts an L-shaped galvanized plate to connect the optical module and the drive through screws; the optical module is designed with a wire harness, the drive is designed with a wire harness, a wire harness, a wire harness, an input wire, the wire harness and the wire harness are connected to realize the electrical connection between the upper light-emitting optical module and the drive, the wire harness and the wire harness are connected to realize the electrical connection between the lower light-emitting optical module and the drive, the wire harness and the wire harness are connected to realize the electrical connection between the light-sensitive module and the drive, and the wire harness and the wire harness are connected to realize the electrical connection between the control panel and the drive.
[0009] As a further technical scheme of the utility model: the drive adopts an upper and lower cover clamping structure made of PC material, and a driving circuit board is installed inside.
[0010] As a further technical scheme of the utility model: the optical module is internally provided with a radiator, the radiator is made of ADC die casting, a boss is designed below the radiator for installing a COB; the COB is electrically connected with the wire harness, the other end of the wire harness is designed with a terminal, and the wire harness and the wire harness are connected to realize the electrical connection with the drive module; the COB is fixed with a plastic support on the front surface, the COB is fixed and pressed through screws, so that it fully contacts the radiator, the outer surface of the plastic support is designed with a guide groove and a plurality of concave points arranged in a certain angle; a rotating ring is installed on the periphery, a guide column and a spring arm bump are designed on the inner wall of the rotating ring; an optical lens is installed on the upper surface of the rotating ring, the pressure ring is fixed and buckled with the rotating ring, and the optical lens is fixed; the rotating ring is rotated clockwise, the guide column is stably moved upwards according to the direction designed by the guide groove, so that the distance between the optical lens and the COB changes, and the purpose of adjusting the light-emitting angle is achieved.
[0011] As a further technical scheme of the utility model: the reflecting cup is made of PET material and is formed by suction molding, and the surface is a smooth white surface.
[0012] As a further technical scheme of the utility model: the box body of the junction box module is made of ADC die casting, and a control panel is installed inside, a wire harness is designed on the control panel, and the control panel is fixed and electrically isolated by a plastic cover; a photosensitive module is designed below the periphery of the box body, a photosensitive control panel is installed inside, and a wire harness is designed, and the wire harness is connected by plugging to realize electrical connection of photosensitivity, an optical cover is designed on the surface and fixed on the outside of the photosensitive module by screws, and users can select whether to need the photosensitive function according to the cover; an adjusting switch cover is designed on the side of the box body, screw threads are designed below the switch cover and rotatably installed on the box body, O-rings are designed on the upper ends of the screw threads, and three dials on the control panel can be adjusted by opening the switch cover; plug covers are designed on both sides of the box body, standard NPT screw threads are designed on the two plug covers, O-rings are designed on the upper ends of the screw threads, when the user installs the lamp on a wall without an octagonal box, the user needs to arrange a wire tube on the surface of the wall, the plug covers are removed after the lamp is installed, and the joint of the wire tube can be installed; a silica gel gasket is designed on the connecting surface of the box body and the lamp body module.
[0013] The one or more technical schemes provided in the embodiments of the application have at least the following technical effects or advantages:
[0014] 1) The structure adopts modular design, so that the relatively complex structure becomes extremely simple to install; the module can be shipped, so that the purpose of rapid assembly and shipment in different countries can be realized;
[0015] 2) The up and down light output can be adjusted to meet the needs of different scenes;
[0016] 3) The 5-grade color temperature and 4-grade power can be adjusted to meet the needs of users for different light colors and brightness;
[0017] 4) The optical module can realize adjustable light output angle to meet the needs of users for different wall washing effects;
[0018] 5) The photosensitive function is shipped with the product, and the user can activate the photosensitive function by removing the cover,
[0019] 6) The electronic dial for adjustment is designed on the side of the junction box, so that the up and down light output, color temperature and power can be adjusted without disassembling the lamp, and the user experience is better;
[0020] 7) The junction box module reserves a standard installation screw thread hole for a wire tube, so that the user can install the lamp on a wall without an octagonal box, and the user does not need to separately purchase a junction box; the range of use places is greatly widened, especially when the user renovates an old house.
[0021] 8) The reflective cup is sleeved on the periphery of the optical module, the light output is increased, and the overall appearance is more beautiful;
[0022] 9) All appearance parts adopt a spraying process to realize color diversification and meet the scene needs of different users. Attached Figure Description
[0023] Figure 1 This is an exploded view of the entire utility model.
[0024] Figure 2 This is an exploded view of the lamp body module.
[0025] Figure 3 This is an exploded view of the top cover module.
[0026] Figure 4 This is an exploded view of the driver module.
[0027] Figure 5 This is an exploded view of the optical module.
[0028] Figure 6 This is an exploded view of the junction box module.
[0029] Figure 7 This is a schematic diagram illustrating the application of this utility model. Detailed Implementation
[0030] The technical solutions in the embodiments of this utility model will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0031] like Figures 1-7 As shown, a modularly designed multifunctional double-head waterproof wall lamp consists of three parts: a lamp head module 1, a junction box module 2, and connecting screws 3. The lamp head module 1 is equipped with wiring harnesses 6-7 and 6-8, while the junction box module 2 is equipped with wiring harnesses 2-4 and 2-10. Wiring harnesses 6-7 and 2-4 are connected by a plug-in connection to achieve up / down light output adjustment, color temperature adjustment, and power adjustment. Wiring harnesses 6-8 and 2-10 are connected by a plug-in connection to achieve photosensitive control. After connection, the two parts are quickly secured together using screws 3.
[0032] The lamp head module 1 also adopts a modular design, consisting of five parts: end cover module 4, reflector cup 5, driver module 6, lamp tube 7, and optical module 8. The optical module 6-10 is installed on the upper end of the driver module 6. The entire driver module is first placed into the lamp tube 7 and connected to the lamp tube by screws 9. The optical module 8 is designed with a wire harness 8-7, which is connected to the wire harness 6-4 on the driver module by plugging and then connected to the lamp tube 7 by screws 10. The reflector cup 5 is placed into both ends of the lamp tube 7, and finally the back cover 4 is screwed into both ends of the lamp tube to complete the installation.
[0033] The upper cover module 4 adopts an aluminum die-cast shell 4-1 as an appearance part, and a tempered glass 4-3 is adhered inside by a ring of silica gel. A screw thread is designed below the tempered glass 4-3 for rotating installation with the lamp cylinder 7. An O-ring 4-2 is designed on the top of the screw thread to meet the waterproof requirement after installation with the lamp cylinder 7.
[0034] The driving module 6 adopts an L-shaped galvanized plate 6-2 to connect the optical module 6-10 and the driving 6-1 through a screw 6-3. The upper light-emitting optical module 6-10 is designed with a wire harness 8-7, and the driving 6-1 is designed with a wire harness 6-4, a wire harness 6-6, a wire harness 6-7, a wire harness 6-8 and an input wire 6-9.
[0035] The wire harness 8-7 and the wire harness 6-4 are connected in pairs to realize the electrical connection between the upper light-emitting optical module 6-10 and the driving 6-1.
[0036] The wire harness 6-6 and the wire harness 8-7 on the lower light-emitting module 8 are connected in pairs to realize the electrical connection between the lower light-emitting optical module 8 and the driving 6-1.
[0037] The wire harness 6-8 and the wire harness 2-10 are connected in pairs to realize the electrical connection between the photosensitive module 2-10 and the driving 6-1.
[0038] The wire harness 6-7 and the wire harness 2-4 are connected in pairs to realize the electrical connection between the control panel 2-3 and the driving 6-1.
[0039] The driving 6-1 adopts an upper and lower cover clamping structure made of PC material, and a driving circuit board is installed inside. The box can be optionally filled with sealing glue according to different power requirements.
[0040] The optical module 8 adopts an ADC12 die-casting process for the heat sink 8-6, which has excellent heat dissipation. A boss is designed below the heat sink for mounting the COB 8-5. The COB is electrically connected with the wire harness 8-7, and the other end of the wire harness is designed with a terminal and connected in pairs with the wire harness 6-6 to realize the electrical connection with the driving module 6-1. A plastic support 8-4 is fixed on the front of the COB, and the COB is fixed and compressed by a screw to make it fully contact with the heat sink 8-6 for heat transfer. The plastic support 8-4 is designed with a guide groove and a plurality of concave points arranged in a certain angle on the outer surface. A rotating ring 8-3 is installed around the plastic support 8-4, and a guide column and a spring arm bump are designed on the inner wall of the rotating ring 8-3. An optical lens 8-2 is installed on the upper surface of the rotating ring 8-3, and a compression ring 8-1 is buckled and fixed with the rotating ring 8-3 to fix the optical lens 8-2. The rotating ring 8-3 is rotated clockwise, the guide column moves upward along the direction of the guide groove, and the distance between the optical lens 8-2 and the COB 8-5 changes to adjust the light-emitting angle.
[0041] The reflector cup 5 is made of PET material using a vacuum forming process. Its surface is glossy white. It makes the light output more uniform through reflection. The interior of the lamp will look more beautiful when viewed through the glass 4-3 of the upper cover module 4.
[0042] Junction box module 2, box body 2-1 is made using ADC die-casting process, and the surface is spray-painted to achieve different color appearances; the control board 2-3 is installed inside, and the control board is designed with wiring harness 2-4. The control board is fixed and electrically isolated by plastic cover 2-2; a photosensitive module 2-6 is designed on the lower periphery of the box body, and a photosensitive control board is installed inside, with wiring harness 2-10 designed. It is connected to wiring harness 6-8 through plug-in to achieve the electrical connection of photosensitive function. The surface of the photosensitive module is designed with a light-shielding cover 2-8, which is fixed to the outside of the photosensitive module by screws 2-11. The user can select whether the photosensitive function is required according to this cover (the cover is blocked by default when shipped, and the photosensitive function is disabled. The photosensitive function is enabled when the cover is removed); an adjustment switch cover 2-7 is designed on the side of the box body, below which The design features a screw thread that rotates and installs with the housing. An O-ring is located at the top of the screw thread to ensure waterproofing after installation. Opening the switch cover allows adjustment of three DIP switches on the control panel 2-3: a switch 12 for controlling up and down light output, a switch 11 for controlling four power levels, and a switch 13 for controlling color temperature. The housing has two plugs 2-5 on either side, each with standard NPT screw threads and an O-ring at the top. These screw threads rotate and engage with the housing for waterproofing. When installing on a wall without an octagonal box, a conduit 10 needs to be installed on the wall surface. After installation, the plugs 2-5 can be removed to install the conduit connector. A silicone gasket 2-9 is located at the connection surface between the housing and the lamp module 1. This gasket, secured with screws 3, provides waterproofing.
[0043] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention.
[0044] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This way of describing the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment have been appropriately combined to form other embodiments that are easy for those skilled in the art to understand.
Claims
1. A modularly designed multi-functional double-headed waterproof wall lamp, comprising a lamp head module, a junction box module, and connecting screws, characterized in that: The lamp head module is designed with wire harnesses and wire harnesses, and the junction box module is designed with wire harnesses and wire harnesses. The wire harnesses and wire harnesses are connected to each other to realize the adjustment of the upper and lower light output, color temperature adjustment and power adjustment. The wire harnesses and wire harnesses can be connected to each other to realize photosensitive control. After the connection is completed, the two parts are quickly locked together with screws.
2. The modularly designed multifunctional double-headed waterproof wall lamp according to claim 1, characterized in that, The lamp head module consists of five parts: end cover module, reflector cup, driver module, lamp tube, and optical module. The optical module is installed on the upper end of the driver module. The entire driver module is first placed into the lamp tube and connected to the lamp tube by screws. The optical module is designed with a wire harness that is plugged into the wire harness on the driver module and then connected to the lamp tube by screws. The reflector cup is placed at both ends of the lamp tube, and finally the back cover is screwed into both ends of the lamp tube to complete the installation.
3. The modularly designed multifunctional double-headed waterproof wall lamp according to claim 2, characterized in that, The top cover module uses an aluminum die-cast shell as the outer part, and tempered glass is bonded to the inside with silicone. It is designed with threads for rotating and installing the lamp tube, and an O-ring is designed on the top of the threads.
4. A modularly designed multifunctional double-headed waterproof wall lamp according to claim 3, characterized in that, The drive module uses an L-shaped galvanized sheet to connect the optical module and the drive with screws. The optical module is designed with wire harnesses, and the drive is designed with wire harnesses and input lines. The wire harnesses are plugged into each other to achieve electrical connection between the upper light-emitting optical module and the drive, the wire harnesses are plugged into each other to achieve electrical connection between the lower light-emitting optical module and the drive, the wire harnesses are plugged into each other to achieve electrical connection between the photosensitive module and the drive, and the wire harnesses are plugged into each other to achieve electrical connection between the control board and the drive.
5. A modularly designed multifunctional double-headed waterproof wall lamp according to claim 4, characterized in that, The drive uses a PC material upper and lower cover clamping structure, and a drive circuit board is installed inside.
6. A modularly designed multifunctional double-headed waterproof wall lamp according to claim 5, characterized in that, The optical module has a heat sink inside, which is made of ADC die casting. A boss is designed below the heat sink for mounting the COB. The COB is electrically connected to the wiring harness. The other end of the wiring harness is designed with a terminal, which is plugged into the wiring harness to achieve electrical connection with the drive module. A plastic bracket is fixed to the front of the COB and is pressed by screws to ensure that the COB is in full contact with the heat sink. The outer surface of the plastic bracket is designed with guide grooves and multiple recesses arranged at a certain angle. A rotating ring is installed around it. The inner wall of the rotating ring is designed with guide posts and spring arm protrusions. An optical lens is installed on the rotating ring. The pressure ring is fastened to the rotating ring by a buckle and fixes the optical lens. Rotating the rotating ring clockwise causes the guide post to move smoothly upwards according to the direction designed for the guide groove, thus changing the distance between the optical lens and the COB and adjusting the light emission angle accordingly.
7. A modularly designed multifunctional double-headed waterproof wall lamp according to claim 6, characterized in that, The reflective cup is made of PET material through vacuum forming, and its surface is glossy white.
8. A modularly designed multifunctional double-headed waterproof wall lamp according to claim 1, characterized in that, The junction box module's housing is made using ADC die-casting, and an internal control board with wiring harnesses is installed. The control board is secured and electrically isolated by a plastic cover. A photosensitive module is located on the lower periphery of the housing, housing a photosensitive control board with wiring harnesses. The photosensitive module is electrically connected to the control board via a plug-and-play connection. A light-shielding cover is screwed to the outside of the photosensitive module, allowing the user to select whether the photosensitive function is needed. An adjustment switch cover is located on the side of the housing, with threads for rotational installation. An O-ring is located at the top of the threads. Opening the switch cover allows adjustment of three DIP switches on the control board. Two plugs are located on both sides of the housing, each with standard NPT threads and O-rings at the top. When installing on a wall without an octagonal junction box, the user needs to run conduit on the wall surface. After the light fixture is installed, removing the plugs allows for the installation of the conduit connectors. The connection surface between the box and the lamp module is designed with a silicone gasket.