Remote power supply LED pixel lamp
The movable shade system with a motor-driven wheel on a U-shaped track addresses the issue of incomplete light intensity regulation in LED pixel lights, allowing for comprehensive light blocking and adjustment.
Patent Information
- Application Number
- CN202422449991.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-10-11
AI Technical Summary
Existing LED pixel lights cannot be blocked in all directions, resulting in the strong light continuously illuminating at the bottom affecting the amount of light occlusion and the precise light intensity adjustment cannot be performed.
The shielding assembly is adopted, including a moving assembly and an inverted U-shaped moving track, and the all-round movement of the shielding plate is achieved through the motor driving the rotating shaft and the moving wheel, and the lighting intensity is adjusted.
It realizes all-round occlusion of pixel lamps and precise lighting intensity adjustment, improving the practicality and intelligence of operation.
Smart Images

Figure CN223105901U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pixel lamp devices, in particular to a long-distance power supply LED pixel lamp. Background Art
[0002] The LED pixel lamp adopts a professional waterproof connector for multi-stage connection and combination, and can form various shapes of points, lines and surfaces to display text patterns. In actual projects, it can form regular shapes such as rectangles, squares, and bars, or can form shapes such as spheres and triangular surfaces to display animations. The LED pixel lamp uses imported silica gel for sealing and waterproofing, and its product performance and lifespan are more guaranteed, and it better meets outdoor installation requirements. This product is small in size, light in weight, and low in power consumption, and is widely used in advertising decoration lighting projects, square landscape projects, municipal lighting projects, etc.
[0003] In the prior art, the publication number CN202321426451.2 provides a multi-pixel lamp, which specifically relates to the technical field of lamps, including a main body and a light adjustment mechanism. The light adjustment mechanism is arranged at the top of the main body, and the disassembly and assembly mechanism is arranged at the bottom of the main body. In the process of adjusting the light of the pixel lamp body in this utility model, first, the micro motor is started. The micro motor drives the micro gear to rotate through the rotating shaft. The rotating micro gear drives the micro rack to move downward. At the same time, the micro rack drives the light-shielding cover to move downward. Then, the light-shielding cover drives the movable block to slide downward on the inner wall of the movable groove, so that the light-shielding cover covers a part of the pixel lamp body, thus effectively ensuring the light adjustment of the pixel lamp body, and at the same time expanding the use range of the multi-pixel lamp. The multi-pixel lamp is an LED pixel lamp. The LED pixel lamp is a green light source, which is a cold light source with low heat generation and consumes less power when in use, and is an energy-saving light source.
[0004] In the above patent, the main purpose of adjusting the light intensity is achieved by moving the light-shielding cover up and down. However, this way of adjusting the light intensity can only block and adjust the side light, and cannot perform all-round light blocking. When the pixel lamp needs to block the light, the strong light continuously irradiating from the bottom will affect the light blocking amount, resulting in the pixel lamp being unable to perform precise light intensity adjustment. Summary of the Utility Model
[0005] The purpose of the utility model is to overcome the shortcomings of the prior art and provide a long-distance power supply LED pixel lamp, which solves the technical problems such as the bottom of the pixel lamp cannot be blocked.
[0006] To achieve the above object, the utility model is realized through the following technical solutions: A long-distance power supply LED pixel lamp, including a shielding component and a lamp body. Both ends of the shielding component are fixedly installed on both sides of the lamp body. The shielding component includes a moving component and a moving track. Fixed parts are fixedly installed at both ends of an even number of the moving tracks close to the ground. The moving component is movably installed at the middle position between the two moving tracks. The fixed parts are used to fixedly install the moving tracks on the lamp body. The moving component is movably installed at the middle position between the two moving tracks, enabling the moving component to move more smoothly within the moving track, greatly improving the efficiency of adjusting the lamp brightness intensity inside the long-distance power supply LED pixel lamp.
[0007] Furthermore, the moving component includes a shielding plate. Inner grooves are opened on both sides of the shielding plate close to the moving track. A number of rotating shafts are installed in the inner grooves of the moving track. A moving wheel is fixedly installed at the middle position of the rotating shaft. A motor for driving the rotating shaft to rotate is installed at any one end of the rotating shaft. The motor installed at any one end of the rotating shaft can drive the rotating shaft to rotate more quickly, enhancing the intelligence of the operation of the internal structure of the long-distance power supply LED pixel lamp.
[0008] Furthermore, the lamp body includes a lamp body component. An even number of external wires are connected to both sides of the lamp body component different from the shielding component. An even number of interfaces are arranged on the same side of the lamp body component as the external wires. The interfaces are inserted and connected to the external wires. The insertion connection between the interfaces and the external wires enables the long-distance power supply of the long-distance power supply LED pixel lamp, greatly improving the practicality of the operation of the long-distance power supply LED pixel lamp.
[0009] Furthermore, the lamp body also includes a top cover and bolts. The lamp body component includes an outer shell body. An even number of threaded holes are opened on one side of the outer shell body away from the ground. The bolts pass through the top cover and are inserted into the threaded holes for fixation. The bolts passing through the top cover and being inserted into the threaded holes for fixation make the internal structure of the long-distance power supply LED pixel lamp more firm, greatly enhancing the safety of the operation of the long-distance power supply LED pixel lamp.
[0010] Furthermore, one end of the lamp body close to the ground also includes a bottom plate. An even number of fixing holes are opened at one end of the outer shell body close to the ground. The outer shell body is fixed to the bottom plate by bolts through the fixing holes. The outer shell body being fixed to the bottom plate by bolts through the fixing holes makes the connection between the internal devices of the long-distance power supply LED pixel lamp more closely and reliably, enhancing the stability of the operation of the long-distance power supply LED pixel lamp.
[0011] Furthermore, several pixel lights are arranged inside the lamp body, a single-chip microcomputer is arranged inside the lamp body assembly, the single-chip microcomputer is electrically connected to the pixel lights, and the single-chip microcomputer is electrically connected to the external wire through the interface. The single-chip microcomputer is electrically connected to the external wire through the interface, enabling the automatic operation and long-distance power supply of the long-distance power supply LED pixel lights inside through the single-chip microcomputer, improving the intelligence of the operation of the long-distance power supply LED pixel lights.
[0012] Furthermore, the moving track is in an inverted U shape. The moving track being in an inverted U shape allows the movement of the arc of the moving track to fully block the long-distance power supply LED pixel lights, improving the practicality of the operation of the long-distance power supply LED pixel lights. Beneficial Effects
[0013] Compared with the prior art, the present utility model has the following beneficial effects:
[0014] In the present utility model, the motor drives the rotation shaft and the moving wheels to rotate, thereby enabling the moving component to move on the moving track. The moving baffle directly blocks the light emitted by the pixel lights, and the moving distance is used to adjust the amount of light blocked, thereby achieving the purpose of fully adjusting the equal intensity, greatly improving the practicality of the operation of the long-distance power supply LED pixel lights. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of a long-distance power supply LED pixel light of the present utility model;
[0016] Figure 2 It is a three-dimensional structural diagram of the shielding component of the present utility model;
[0017] Figure 3 It is a three-dimensional structural diagram of the moving component of the present utility model;
[0018] Figure 4 It is a partially enlarged three-dimensional structural diagram of A of the present utility model;
[0019] Figure 5 It is a three-dimensional structural diagram of the lamp body of the present utility model;
[0020] Figure 6 It is a three-dimensional structural diagram of the lamp body assembly of the present utility model.
[0021] In the figure: shielding component (1), lamp body (2), moving component (11), moving track (12), fixing part (13), shielding plate (111), inner groove (112), moving wheel (113), rotating shaft (114), lamp body component (21), top cover (22), external wiring (23), pixel lamp (24), bolt (25), bottom plate (26), single-chip microcomputer (211), threaded hole (212), fixing hole (213), outer shell (214), interface (215). Specific implementation mode
[0022] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0023] Embodiment
[0024] The following combines with the attached Figure 1 - Attached Figure 6, a further detailed description of the present application is provided. A long-distance power supply LED pixel lamp includes an occlusion component 1 and a lamp body 2. Both ends of the occlusion component 1 are fixedly installed on both sides of the lamp body 2. The occlusion component 1 includes a moving component 11 and moving tracks 12. Fixing members 13 are fixedly installed at both ends of an even number of moving tracks 12 close to the ground. The moving component 11 is movably installed at the middle position between two moving tracks 12. The fixing member 13 is used to fixedly install the moving track 12 on the lamp body 2. The moving component 11 includes a baffle 111. Inner grooves 112 are opened on both sides of the baffle 111 close to the moving tracks 12. A number of rotating shafts 114 are installed in the inner grooves 112 of the moving tracks 12. A moving wheel 113 is fixedly installed at the middle position of the rotating shaft 114. A motor for driving its rotation is installed at any one end of the rotating shaft 114. The lamp body 2 includes a lamp body component 21. Even numbers of external wires 23 are connected to both sides of the lamp body component 21 different from the occlusion component 1. Even numbers of interfaces 215 are arranged on the same side of the lamp body component 21 as the external wires 23. The interfaces 215 are inserted and connected to the external wires 23. The lamp body 2 further includes a top cover 22 and bolts 25. The lamp body component 21 includes an outer shell 214. Even numbers of threaded holes 212 are opened on the side of the outer shell 214 away from the ground. The bolts 25 pass through the top cover 22 and are inserted into the threaded holes 212 for fixation. One end of the lamp body 2 close to the ground further includes a bottom plate 26. Even numbers of fixing holes 213 are opened at one end of the outer shell 214 close to the ground. The outer shell 214 is fixed to the bottom plate 26 by bolts through the fixing holes 213. A number of pixel lamps 24 are arranged in the lamp body 2. A single-chip microcomputer 211 is arranged in the lamp body component 21. The single-chip microcomputer 211 is electrically connected to the pixel lamps 24. The single-chip microcomputer 211 is electrically connected to the external wires 23 through the interfaces 215. The moving tracks 12 are in an inverted U shape.
[0025] Among them, the inner groove 112 is inserted into the moving track 12, and the rotating moving wheel 113 will always contact the edge of the moving track 12, so that the rotating moving wheel 113 can drive the baffle 111 to slide on the moving track 12.
[0026] Among them, the connecting wire at the end of the interface 215 is inserted into the single-chip microcomputer 211, so that the external connection power supply can directly supply power to the single-chip microcomputer 211, and the long-distance power supply of the LED pixel lamp is completed.
[0027] Among them, the end of the pixel lamp 24 contacts the single-chip microcomputer 211, so that the single-chip microcomputer 211 can directly control the operation and stop of the pixel lamp 24.
[0028] Among them, when the baffle 111 moves to the directly above the lamp body 2, the baffle 111 can completely block the light emitted by the pixel lamp 24, improving the accuracy of adjusting the light intensity of the long-distance power supply LED pixel lamp.
[0029] Among them, the baffle 111 is not completely opaque. The operation of the baffle 111 can only adjust the irradiation intensity of the pixel lamp 24, while the turning on and off of the pixel lamp 24 are controlled by the single-chip microcomputer 211.
[0030] The working principle of the present utility model is described as follows: Each mechanical structure inside the long-distance power supply LED pixel lamp is fixed by threads if not clearly stated. In the figure, in order to more intuitively observe the professional technical features, the bolt connection is appropriately hidden. When the long-distance power supply LED pixel lamp is in use, the user needs to externally connect a power supply and insert the external wire 23 of the power plug into the interface 215 to supply power to the single-chip microcomputer 211 through the interface 215. Then, the user fixes the lamp body assembly 21 and the bottom plate 26 at the position where the LED pixel lamp operates by passing bolts through the fixing holes 213. Then, the single-chip microcomputer 211 controls the pixel lamp 24 to light up. When the long-distance power supply LED pixel lamp needs to adjust the light intensity, the user controls the motor at one end of the rotating shaft 114 to operate. At this time, the motor drives the rotating shaft 114 and the moving wheel 113 to rotate. The rotating moving wheel 113 fits on the edge of the moving track 12 and rotates along the moving track 12, so as to drive the baffle 111 to move on the moving track 12. The moving baffle 111 can block the light emitted by the pixel lamp 24. The moving distance of the baffle 111 can always adjust the light intensity of the light emitted by the pixel lamp 24, so that the long-distance power supply LED pixel lamp can perform a more complete light intensity adjustment on the basis of being able to supply power over a long distance, greatly improving the practicability of the operation of the long-distance power supply LED pixel lamp.
[0031] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.
Claims
1. A long-distance power supply LED pixel light, characterized in that It includes an occlusion component (1) and a lamp body (2). Both ends of the occlusion component (1) are fixedly installed on both sides of the lamp body (2). The occlusion component (1) includes a moving component (11) and a moving track (12). Fixed parts (13) are fixedly installed at both ends of an even number of the moving tracks (12) close to the ground. The moving component (11) is movably installed at the middle position between two of the moving tracks (12). The fixed part (13) is used to fixedly install the moving track (12) on the lamp body (2).
2. The long-distance power supply LED pixel lamp according to claim 1, wherein: The moving component (11) includes a shielding plate (111). Inner grooves (112) are opened on both sides of the shielding plate (111) close to the moving track (12). A number of rotating shafts (114) are installed in the inner grooves (112) of the moving track (12). A moving wheel (113) is fixedly installed at the middle position of the rotating shaft (114). A motor for driving the rotating shaft (114) to rotate is installed at any one end of the rotating shaft (114).
3. The long-distance power supply LED pixel lamp according to claim 1, wherein: The lamp body (2) includes a lamp body component (21). An even number of external connection wires (23) are connected to both sides of the lamp body component (21) different from the occlusion component (1). An even number of interfaces (215) are arranged on the same side of the lamp body component (21) as the external connection wires (23). The interfaces (215) are inserted and connected to the external connection wires (23).
4. The long-distance power supply LED pixel lamp according to claim 3, characterized in that: The lamp body (2) further includes a top cover (22) and bolts (25). The lamp body component (21) includes an outer shell body (214). An even number of threaded holes (212) are opened on one side of the outer shell body (214) far from the ground. The bolts (25) pass through the top cover (22) and are inserted into the threaded holes (212) for fixation.
5. The long-distance power supply LED pixel lamp according to claim 4, characterized in that: One end of the lamp body (2) close to the ground further includes a bottom plate (26). An even number of fixing holes (213) are opened at one end of the outer shell body (214) close to the ground. The outer shell body (214) is fixed to the bottom plate (26) by bolts through the fixing holes (213).
6. The long-distance power supply LED pixel lamp according to claim 5, wherein: A number of pixel lights (24) are arranged in the lamp body (2). A single-chip microcomputer (211) is arranged in the lamp body component (21). The single-chip microcomputer (211) is electrically connected to the pixel lights (24). The single-chip microcomputer (211) is electrically connected to the external connection wires (23) through the interfaces (215).
7. The long-distance power supply LED pixel lamp according to claim 1, characterized in that: The moving track (12) is in an inverted U shape.
Citation Information
Patent Citations
Multi-pixel lamp
CN220379527U