Energy-saving building lighting intelligent control device
By using the movable connection between the insert block and the limiting groove and the cooperation of the magnet block, the problem of difficulty in replacing the sensor after it is damaged is solved, and the sensor can be quickly installed and removed, improving the stability and aesthetics of the device.
Patent Information
- Application Number
- CN202423028735.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-09
AI Technical Summary
In existing smart lighting control devices, sensors are difficult to replace when damaged, and their complex structure makes them unsuitable for widespread adoption.
An energy-saving intelligent building lighting control device was designed, which includes an insertion block and a disassembly mechanism. The sensor can be quickly installed and removed by the guide block of the insertion block being movably connected to the limiting groove and the attraction of the magnetic block.
It enables rapid sensor replacement and stable installation, improving the stability and aesthetics of the device.
Smart Images

Figure CN223525092U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building lighting technical field, concretely is a kind of energy-saving building lighting intelligent control device. BACKGROUND
[0002] Most of the current intelligent lighting lamps are induction lamps, which automatically turn on or off by sensing human bodies. However, the current intelligent lighting lamps still have certain deficiencies. First, the control device of the existing intelligent lighting lamp is fixed on the inner wall of the top plate of the lamp. When the sensor is damaged, it is difficult to replace.
[0003] After searching, the authorized announcement No. CN215892285U discloses an indoor lighting intelligent control device for building decoration, which comprises a bottom plate, a lamp frame and a mounting frame are arranged on the upper surface of the bottom plate, the mounting frame is located on one side of the lamp frame, an inductor is arranged on the inner side of the mounting frame, second sliding grooves are arranged on the front side surface and the rear side surface of the mounting frame, rectangular through holes are arranged above the second sliding grooves, and sliding blocks are connected to the interiors of the second sliding grooves.
[0004] In the process of implementing the utility model, the inventors found that the above-mentioned problems in the prior art have not been solved. The above-mentioned case can push the buckle plate inside the notch by setting the adjusting block on the front side of the second sliding groove and the pushing mechanism arranged above the adjusting block. Therefore, one end of the buckle plate will pass through the rectangular through hole to buckle the inductor inside the mounting frame. However, in the process of use, one end of the buckle plate lacks a corresponding limiting mechanism. When the pushing mechanism loses the pushing force, the buckle plate is easy to reset, causing the inductor to fall off. Moreover, the structure is complex and not suitable for widespread promotion.
[0005] Therefore, we propose an energy-saving building lighting intelligent control device that can solve the above-mentioned problems. UTILITY MODEL CONTENTS
[0006] The utility model aims to provide an energy-saving building lighting intelligent control device that solves the problems raised in the background art.
[0007] In order to achieve the above object, the utility model provides the following technical scheme: an energy -saving building lighting intelligent control device, including the lamp stand, the middle part of the lower surface of lamp stand is fixedly connected with the lighting lamp, the side of lighting lamp is provided with the inductor, it also includes the plug -in block, the convex end of plug -in block is opened with the installation groove, the inductor is fixedly connected in the inside of installation groove, the middle part of plug -in block bottom side is opened with the induction port, the quick installation and disassembly of inductor, the dismounting mechanism includes two groups of guide blocks, two groups the guide block is installed on both sides of plug -in block convex end symmetry, the side of lamp stand is opened with the connecting groove, the convex end of plug -in block is movably connected with connecting groove, the bottom of both sides inner wall of connecting groove is opened with the guide groove symmetry, the middle part of both sides inner wall of connecting groove is opened with the limit groove symmetry, the one end of guide groove and limit groove is communicated, the limit groove is arc, and the guide block is movably connected with guide groove and limit groove.
[0008] As an optional scheme of the technical scheme of the application, one side of the lower surface of the lamp stand is provided with a receiving groove, the receiving groove is communicated with the connecting groove, and the size of the receiving groove is matched with the plug-in block.
[0009] As an optional scheme of the technical scheme of the application, two first magnet blocks are symmetrically installed on the both sides of the top end inner wall of the receiving groove, and two second magnets are symmetrically installed on the both sides of the upper surface of the plug-in block.
[0010] As an optional scheme of the technical scheme of the application, two operation grooves are symmetrically formed in the bottom side of the plug-in block, and the two operation grooves are arranged on the both sides of the induction port.
[0011] As an optional scheme of the technical scheme of the application, four groups of fixing holes are formed in the end of the lamp stand away from the lighting lamp, and the four groups of fixing holes are uniformly distributed on the outer side of the lamp stand.
[0012] As an optional scheme of the technical scheme of the application, the two groups of guide blocks correspond to the two groups of guide grooves respectively, and the size of the guide block, the guide groove and the limit groove is matched.
[0013] Compared with the prior art, the utility model has the advantages that the guide block of the convex end of the plug-in block is movably connected with the limit groove, the limit groove is arc-shaped, the plug-in block can be rotated, the guide block can be moved to one end of the limit groove and aligned with the guide groove, the plug-in block can be pulled out of the connecting groove, the inductor in the installation groove can be quickly replaced, the combination is simple, the stability of the inductor during use can be improved through the combination of the first magnet block and the second magnet block. BRIEF DESCRIPTION OF DRAWINGS
[0014] Other features, objects and advantages of the utility model will become more apparent through reading the following detailed description of the non-limiting embodiments with reference to the accompanying drawings.
[0015] Fig. 1 It is the front view of the energy-saving building lighting intelligent control device of the utility model;
[0016] Fig. 2 It is the inductor and the plug block connection schematic view of the energy-saving building lighting intelligent control device of the utility model.
[0017] In the figure: 1, lamp holder; 11, lighting lamp; 12, connecting groove; 13, inductor; 14, plug block; 15, installation groove; 16, guide groove; 17, limiting groove; 18, guide block; 19, storage groove; 2, first magnet block; 21, second magnet block; 22, induction port; 23, operation groove; 24, fixed hole. DETAILED DESCRIPTION
[0018] Please refer to Figs. 1-2 The utility model provides a technical scheme: an energy-saving building lighting intelligent control device, including lamp holder 1, the middle part of the lower surface of lamp holder 1 is fixedly connected with lighting lamp 11, one side of lighting lamp 11 is provided with inductor 13, still including plug block 14, the convex end of plug block 14 is opened in installation groove 15, inductor 13 is fixedly connected in the inside of installation groove 15, the middle part of the bottom side of plug block 14 is opened in induction port 22, dismounting mechanism: for the quick installation and dismounting of inductor 13, dismounting mechanism includes two groups of guide blocks 18, two groups of guide blocks 18 are installed on the both sides of the convex end of plug block 14 symmetrically, one side of lamp holder 1 is opened in connecting groove 12, the convex end of plug block 14 is movably connected with connecting groove 12, the bottom end of the inner wall of the both sides of connecting groove 12 is opened in guide groove 16 symmetrically, the middle part of the inner wall of the both sides of connecting groove 12 is opened in limiting groove 17 symmetrically, guide groove 16 is communicated with one end of limiting groove 17, limiting groove 17 is arc-shaped, two groups of guide blocks 18 correspond to two groups of guide grooves 16 respectively, the size of guide block 18 is matched with guide groove 16 and limiting groove 17, and guide block 18 is movably connected with guide groove 16 and limiting groove 17, the bottom side of plug block 14 is opened in operation groove 23 symmetrically, two groups of operation grooves 23 are placed in the both sides of induction port 22, the end away from lighting lamp 11 of lamp holder 1 is opened in four groups of fixed holes 24, four groups of fixed holes 24 are evenly distributed on the outside of lamp holder 1.
[0019] In the technical scheme, the induction port 22 is arranged at the bottom end of the plug 14, and when the inductor 13 in the installation slot 15 senses a person, the switch is opened to turn on the illuminating lamp 11, and vice versa, the control illuminating lamp 11 is turned off, the guide block 18 at the convex end of the plug 14 is movably connected with the limiting slot 17, the limiting slot 17 is arc-shaped, when the inductor 13 in the installation slot 15 is damaged, the plug 14 is rotated through the two groups of operation grooves 23 at the bottom side of the plug 14, the guide block 18 is moved to one end of the limiting slot 17 and aligned with the guide groove 16, so that the plug 14 can be pulled out of the connecting slot 12, and the inductor 13 in the installation slot 15 can be conveniently and quickly replaced.
[0020] In the embodiment, the receiving groove 19 is arranged at one side of the lower surface of the lamp holder 1, the receiving groove 19 is communicated with the connecting slot 12, and the size of the receiving groove 19 is matched with that of the plug 14.
[0021] In the technical scheme, the plug 14 can be received in the receiving groove 19 at the bottom side of the connecting slot 12, so that the plug 14 is hidden in the connecting slot 12 and the receiving groove 19, and the appearance is improved.
[0022] In the embodiment, the first magnet block 2 is symmetrically arranged at two sides of the inner wall at the top end of the receiving groove 19, the second magnet is symmetrically arranged at two sides of the upper surface of the plug 14, the first magnet block 2 corresponds to the second magnet block 21, and the magnetism of the first magnet block 2 and the second magnet block 21 is opposite.
[0023] In the technical scheme, when the inductor 13 in the installation slot 15 is replaced, the guide block 18 at two sides of the plug 14 is inserted into the guide groove 16 at two sides of the connecting slot 12, then the plug 14 is reversely rotated, the guide block 18 is screwed into the limiting slot 17, at this time, the second magnet block 21 on the upper surface of the plug 14 is aligned with the first magnet block 2 at two sides of the receiving groove 19, the first magnet block 2 and the second magnet block 21 are attracted and attached together, the plug 14 can be fixed, and the stability of the inductor 13 in use is further improved.
[0024] In the use of the energy-saving building lighting intelligent control device, the lamp holder 1 can be fixed at the designated position through the screw penetrating the fixing hole 24. When the sensor 13 inside the installation groove 15 senses someone, the switch will be turned on to make the lighting lamp 11 light up, otherwise the lighting lamp 11 will be turned off. The guide block 18 of the convex end of the plug-in block 14 is movably connected with the limiting groove 17, and the limiting groove 17 is arc-shaped. When the sensor 13 inside the installation groove 15 is damaged, the plug-in block 14 can be rotated through the two groups of operation grooves 23 on the bottom side of the plug-in block 14, so that the guide block 18 moves to one end of the limiting groove 17 and aligns with the guide groove 16, thereby the plug-in block 14 can be pulled out of the connecting groove 12, facilitating quick replacement of the sensor 13 inside the installation groove 15. After the replacement of the sensor 13 inside the installation groove 15 is completed, the guide block 18 on both sides of the plug-in block 14 is inserted into the guide groove 16 on both sides of the connecting groove 12, and then the plug-in block 14 is reversely rotated, so that the guide block 18 is screwed into the limiting groove 17. At this time, the second magnet block 21 on the upper surface of the plug-in block 14 is aligned with the first magnet block 2 on both sides of the receiving groove 19, and the first magnet block 2 and the second magnet block 21 are attracted and attached together, so as to fix the plug-in block 14 and further improve the stability of the sensor 13 during use.
Claims
1. An energy-saving building lighting intelligent control device, comprising a lamp holder (1), the middle of the lower surface of the lamp holder (1) is fixedly connected with a lighting lamp (11), one side of the lighting lamp (11) is provided with an inductor (13), characterized in that, Plug (14) is provided with installation slot (15) in the convex end, the inductor (13) is fixedly connected in the installation slot (15), and the bottom of the plug (14) is provided with induction port (22) in the middle. The dismounting mechanism is used for the quick installation and dismounting of the inductor (13), and the convex end of the plug (14) is movably connected with the connecting groove (12) of the lamp holder (1), the bottom end of the inner wall of the connecting groove (12) is symmetrically provided with guide groove (16), the middle of the inner wall of the connecting groove (12) is symmetrically provided with limiting groove (17), one end of the guide groove (16) and the limiting groove (17) is communicated, the limiting groove (17) is arc-shaped, and the guide block (18) is movably connected with the guide groove (16) and the limiting groove (17).
2. The energy-saving building lighting intelligent control device according to claim 1, characterized in that: The bottom surface of the lamp holder (1) is provided with receiving groove (19) on one side, the receiving groove (19) is communicated with the connecting groove (12), and the size of the receiving groove (19) is matched with that of the plug (14).
3. The energy-saving building lighting intelligent control device according to claim 2, characterized in that: The top end of the receiving groove (19) is symmetrically provided with first magnet block (2) on the two sides of the inner wall, the upper surface of the plug (14) is symmetrically provided with second magnet block (21) on the two sides, the first magnet block (2) corresponds to the second magnet block (21), and the magnetism of the first magnet block (2) and the second magnet block (21) is opposite.
4. The energy-saving building lighting intelligent control device according to claim 1, characterized in that: The bottom of the plug (14) is symmetrically provided with operation groove (23), and the two groups of operation grooves (23) are arranged on the two sides of the induction port (22).
5. The energy-saving building lighting intelligent control device according to claim 1, characterized in that: The lamp holder (1) is provided with four groups of fixing holes (24) penetratingly arranged on the outer side of the lamp holder (1).
6. The energy-saving building lighting intelligent control device according to claim 1, characterized in that: The two groups of guide blocks (18) correspond to the two groups of guide grooves (16) respectively, and the size of the guide block (18) is matched with that of the guide groove (16) and the limiting groove (17).
Citation Information
Patent Citations
Indoor lighting intelligent control device for building decoration
CN215892285U