Plane water drop LED display screen module
By designing a teardrop-shaped LED display module and employing structures such as sockets, inserts, and magnetic layers, the problem of the monotonous shape of LED displays has been solved. This enables flexible splicing and disassembly, enhances the aesthetic appeal and application diversity, reduces costs and maintenance difficulty, and meets personalized needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-03-31
AI Technical Summary
Existing LED displays have relatively conventional shapes, making it difficult to meet the needs of unique designs and creative displays, and failing to satisfy the diverse and personalized demands of the market.
Design an LED display module with a teardrop-shaped longitudinal section. Employ structures such as sockets, inserts, springs, and clips to achieve flexible splicing and disassembly of the module. Combined with the use of magnetic layers and mounting holes, it can meet the installation needs of different scenarios.
It enhances the visual aesthetics, increases the application flexibility and diversity of the display screen, reduces maintenance and installation costs, improves maintainability and reusability, and meets modern aesthetic requirements.
Smart Images

Figure CN224067367U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of LED display technology, and in particular to a planar waterdrop LED display module. Background Technology
[0002] In existing technologies, LED displays are widely used in various public places due to their long lifespan and energy-saving and environmentally friendly characteristics, providing image display for people. In current production technology, LED displays are generally manufactured in square or rectangular shapes.
[0003] However, with the progress of the times and the continuous improvement of people's requirements for visual experience, square or rectangular LED displays are relatively conventional and traditional in shape. In some occasions that require unique design and creative display, they are difficult to stand out, cannot meet the personalized and artistic needs of specific scenarios, and cannot meet the diversified needs of the market. Utility Model Content
[0004] The present invention aims to provide a planar waterdrop LED display module to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A planar waterdrop LED display module includes a housing with a waterdrop-shaped longitudinal section. The housing is connected to a power supply mounting plate and a system board. A lamp board is detachably connected to the housing and electrically connected to the power supply mounting plate and system board. The housing is connected to a first mounting shell and a second mounting shell. A first mounting shell is connected to a first spring, and the other end of the first spring is connected to a plug. The plug is slidably connected to the first mounting shell. The housing has a first insertion hole and a second insertion hole, which mate with the plug. The plug has a hidden groove, and a second spring is connected to the inner wall of the hidden groove. The other end of the second spring is connected to a locking block, which is slidably connected to the hidden groove. A second mounting shell is connected to a third spring, and the other end of the third spring is connected to a pressing plate, which is slidably connected to the second mounting shell and mates with the plug.
[0007] Preferably, the light panel is composed of several groups of light panel modules spliced together.
[0008] Preferably, the housing has a sliding groove that communicates with a socket, a baffle is slidably connected to the inner wall of the sliding groove that cooperates with the socket, and the housing has an operating port that communicates with the sliding groove.
[0009] Preferably, the second mounting shell is connected to a telescopic rod, the telescopic end of which is connected to the extrusion plate, and the third spring is sleeved on the outside of the telescopic rod.
[0010] Preferably, the housing has mounting holes.
[0011] Preferably, the housing is connected to a magnetic layer.
[0012] The beneficial effects of this technical solution compared to existing technologies are as follows:
[0013] (1) This technical solution, by setting the shell with a teardrop-shaped longitudinal section, can bring a strong visual impact compared with the traditional square or rectangular shape, and is more artistic and modern. It can better meet people's pursuit of personalized visual experience and is suitable for places with high requirements for display effect, which helps to enhance the overall style and atmosphere of the environment. By setting socket one, socket two, mounting shell one, spring one and spring two, two sets of LED display modules can be spliced together. According to the needs of actual application scenarios, they can be flexibly combined into different shapes to better meet the requirements of various special places and creative designs, and increase the application flexibility and diversity of the display. By setting mounting shell two, spring three and extrusion plate, it is easy to disassemble the spliced LED display modules, so that the modules can still maintain good connection performance and working status after multiple splicing and disassembly. It is convenient to flexibly adjust and recombine the scale and shape of the display according to different usage needs and scenarios, improve the reuse rate of the modules and reduce the overall usage cost.
[0014] (2) By setting up a light board composed of several sets of light board modules, when a light board malfunctions, only the faulty module needs to be identified and replaced, without replacing the entire light board. This allows maintenance personnel to locate and resolve problems more quickly, reducing maintenance costs and time, and improving the maintainability of the light board. At the same time, it also facilitates the upgrading and improvement of the light board, as only some modules need to be replaced to achieve functional improvements.
[0015] (3) By setting up slides, baffles and operating ports, the plug can be sealed inside the mounting shell, making the LED display module look simpler and more beautiful. There will be no protruding parts or messy lines exposed. The overall appearance is more neat and uniform, which meets the requirements of modern aesthetics.
[0016] (4) By setting a telescopic rod, a clear guide is provided for the movement of the extrusion block, so that it can only move along the axial direction, thus ensuring the accuracy and stability of the extrusion action.
[0017] (5) By setting mounting holes, it is easy to fix the LED display module on various support structures, and the LED display module can be installed quickly and firmly, ensuring that the display remains stable during use and will not shift or fall due to external forces.
[0018] (6) By setting a magnetic layer, the display module can be quickly attached to a magnetic or magnetically-adhesive mounting surface, so that the display module can adapt to a variety of different installation environments. Attached Figure Description
[0019] Figure 1 This is a front sectional view of the present invention;
[0020] Figure 2 for Figure 1 Enlarged view of point A;
[0021] Figure 3 This is a front view of the present invention;
[0022] Figure 4 This is a side view of the present invention;
[0023] Reference numerals: 1. Housing; 2. Mounting hole; 3. System board; 4. Power mounting plate; 5. Socket one; 6. Mounting housing one; 7. Spring one; 8. Slide groove; 9. Baffle; 10. Operating port; 11. Insert block; 12. Telescopic rod; 13. Mounting housing two; 14. Spring three; 15. Squeezing plate; 16. Spring two; 17. Hidden groove; 18. Locking block; 19. Socket two; 20. Lamp board; 21. Magnetic layer. Detailed Implementation
[0024] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments:
[0025] like Figure 1-4 The diagram illustrates a planar teardrop LED display module, comprising a housing 1 with a teardrop-shaped longitudinal section and pre-installed wiring ports. A power supply mounting plate 4 and a system board 3 are connected to the inner wall of the housing 1. The power supply mounting plate 4 houses the power supply components, providing power to the entire LED display module. The system board 3 controls and processes various signals, ensuring that the LED panel 20 can display corresponding images and text according to a preset program. A LED panel 20 is detachably connected to the front wall of the housing 1, and the LED panel 20 is composed of several LED panel modules. The LED panel 20 is electrically connected to the power supply mounting plate 4 and the system board 3 to obtain electrical energy and control signals for illumination. Several sets of mounting holes 2 are provided on the side wall of the housing 1, and a magnetic layer 21 is connected to the rear wall of the housing 1.
[0026] like Figure 2As shown, mounting shell 1 (6) and mounting shell 2 (13) are respectively connected to the left and right side walls of the housing 1. A spring 7 is connected to the inner wall of mounting shell 1 (6), and a plug 11 is connected to the other end of spring 7. The plug 11 is slidably connected to mounting shell 1 (6). Insertion holes 1 (5) and 2 (19) are respectively provided on the left and right side walls of housing 1. The size of insertion hole 1 (5) is the same as the size of plug 11, allowing plug 11 to slide within it. A hidden groove 17 is provided at the top of plug 11. A spring 2 (16) is connected to the inner wall of hidden groove 17, and a locking block 18 is connected to the other end of spring 2 (16). The locking block 18 is a trapezoidal block structure. The locking block 18 is slidably connected to hidden groove 17. When spring 2 (16) is in a balanced state, the locking block 18 is exactly in contact with the inner wall of mounting shell 2 (13) of another LED display module. Insertion hole 2 (19) allows plug 11 and locking block 18 to pass through simultaneously in their natural state. A telescopic rod 12 is connected to the inner wall of the mounting shell 13. A pressing plate 15 is connected to the telescopic end of the telescopic rod 12. A spring 14 is sleeved on the outer side of the telescopic rod 12. The two ends of the spring 14 are connected to the inner wall of the mounting shell 13 and the pressing plate 15, respectively. The pressing plate 15 is slidably connected to the mounting shell 13. When the insertion block 11 of another LED display module is inserted into the mounting shell 13, the spring 14 is in a balanced state. The pressing plate 15 is just in contact with the side wall of the insertion block 11, so that the other side wall of the insertion block 11 is in contact with the inner wall of the insertion hole 19. When the insertion block 11 is fully inserted into the mounting shell 13, the locking block 18 loses its restriction, the spring 16 rebounds, and pushes the locking block 18, so that the locking block 18 abuts against the inner wall of the shell 1. During disassembly, push the housing 1 at the end of the insert 11 to cause the insert 11 to press against the compression block, thereby causing the compression block to slide within the mounting housing 2 13, compressing the spring 3 14 and the telescopic rod 12 until the insert 11 abuts against the inner wall of the other side of the insertion hole 2 19, at which point the insert 11 and the locking block 18 can be pulled out from the insertion hole 2 19. The housing 1 has a sliding groove 8, which communicates with the insertion hole 1 5. A baffle 9 is slidably connected to the inner wall of the sliding groove 8. The upper surface of the baffle 9 is rough, and there is a certain friction between the baffle 9 and the sliding groove 8. The baffle 9 can completely block the insertion hole 1 5. An operating port 10 is provided on the outer wall of the housing 1, which communicates with the sliding groove 8. The inner baffle 9 can be pushed through the operating port 10 to slide within the sliding groove 8. Press the locking block 18 into the hidden groove 17, then press the hidden groove 17 into the mounting shell 6. Push the baffle 9 through the operating port 10 until the baffle 9 completely blocks the insertion hole 5. At this time, the top wall of the insertion block 11 abuts against the baffle 9 and moves to the outside of the shell 1.
[0027] The specific implementation process is as follows:
[0028] When using a single module, it can be fixed to a suitable mounting surface using screws or other connectors via the mounting holes 2 on the side wall of housing 1, according to actual needs. Alternatively, the magnetic layer 21 on the rear wall of housing 1 can be used to attach the module to a magnetic mounting surface. For multiple modules, first fix one module as a reference, then push the baffle 9 of another module away from the insertion hole 5, causing the insertion block 11 to pop out of the insertion hole 5. Align the insertion block 11 of the other module with the insertion hole 19 of the reference module and insert it until the insertion block 11 is fully inserted into the mounting housing 13. The locking block 18 will then pop out and fit against the inner wall of the mounting housing 13, and the pressing plate 15 will fit against the side wall of the insertion block 11. After assembly, proceed with installation. If maintenance or replacement of a module is required, push any module so that the insertion block 11 presses against the pressing plate 15, then pull the insertion block 11 out of the insertion hole 19.
[0029] The above descriptions are merely embodiments of this utility model. Commonly known technical solutions and / or characteristics are not described in detail here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solution of this utility model. These modifications and improvements should also be considered within the scope of protection of this utility model, and will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A planar waterdrop LED display module, characterized in that: The application relates to a lamp, which comprises a shell (1), wherein the longitudinal section of the shell (1) is in the shape of a water drop; the shell (1) is connected with a power supply mounting plate (4) and a system plate (3); the shell (1) is detachably connected with a lamp plate (20); the lamp plate (20) is electrically connected with the power supply mounting plate (4) and the system plate (3); the shell (1) is connected with a mounting shell one (6) and a mounting shell two (13); the mounting shell one (6) is connected with a spring one (7); the other end of the spring one (7) is connected with a plug block (11); the plug block (11) is slidably connected with the mounting shell one (6); the shell (1) is provided with a plug hole one (5) and a plug hole two (19); the plug hole one (5) and the plug hole two (19) are matched with the plug block (11); the plug block (11) is provided with a hidden groove (17); the inner wall of the hidden groove (17) is connected with a spring two (16); the other end of the spring two (16) is connected with a clamping block (18); the clamping block (18) is slidably connected with the hidden groove (17); the mounting shell two (13) is connected with a spring three (14); the other end of the spring three (14) is connected with a pressing plate (15); the pressing plate (15) is slidably connected with the mounting shell two (13); and the pressing plate (15) is matched with the plug block (11).
2. The flat water-drop LED display screen module of claim 1, wherein: The lamp plate (20) is spliced by a plurality of lamp plate modules.
3. The flat water-drop LED display screen module of claim 1, wherein: The shell (1) is provided with a sliding groove (8); the sliding groove (8) is communicated with the plug hole one (5); the inner wall of the sliding groove (8) is slidably connected with a baffle (9); the baffle (9) is matched with the plug hole one (5); the shell (1) is provided with an operation opening (10); and the operation opening (10) is communicated with the sliding groove (8).
4. The flat water-drop LED display screen module of claim 1, wherein: The mounting shell two (13) is connected with a telescopic rod (12); the telescopic end of the telescopic rod (12) is connected with the pressing plate (15); and the spring three (14) is sleeved outside the telescopic rod (12).
5. The flat water-drop LED display screen module of claim 1, wherein: The shell (1) is provided with a mounting hole (2).
6. The flat water-drop LED display screen module of claim 1, wherein: The shell (1) is connected with a magnetic attraction layer (21).