LED display screen module and LED display screen module splicing structure

Through the design of the adjustment frame and positioning distance adjustment mechanism, the gap problem when splicing LED display modules is solved, seamless splicing and time-saving disassembly and assembly are achieved, and the display effect and work efficiency are improved.

CN119642052BActive Publication Date: 2025-09-30GUANGDONG RENENYU OPTOELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202510150708.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-09-30
Estimated Expiration
2045-02-11

AI Technical Summary

Technical Problem

Existing LED display screen modules are prone to splicing gaps when splicing, which affects the display effect.

Method used

It adopts an adjustable frame and positioning distance adjustment mechanism with clamping components instead of traditional screw fixation to ensure seamless splicing between modules, and uses a press-leveling mechanism and magnetic strip guide system for stability.

Benefits of technology

It achieves seamless splicing between modules, ensures the display effect, and reduces the labor intensity of disassembly and assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an LED display screen module and an LED display screen module splicing structure, comprising an LED display screen module body, a back cover provided in the middle of one side of the outer surface of the LED display screen module body, a grabbing hoop fixedly provided in the middle of the outer surface of the back cover, correction angle codes fixedly provided on the outer surface of the back cover and at both ends of the middle of one side of the grabbing hoop, and further comprising: a pressing and leveling mechanism located between two adjacent LED display screen module bodies. The present invention utilizes an adjustable adjustment frame with adjustable specifications to clamp a plurality of LED display screen module bodies, and cooperates with a positioning and distance adjustment mechanism to fix and equidistantly adjust each LED display screen module body, so that no splicing gap will be generated between two adjacent LED display screen module bodies during the splicing of each LED display screen module body, thereby ensuring the display effect. In addition, the provided clamping assembly is utilized instead of traditional screw fixation, so that the disassembly and assembly process is time-saving and labor-saving, and the labor intensity of the staff is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of display screens, and in particular to an LED display screen module and an LED display screen module splicing structure. Background Art

[0002] An LED display module is a fundamental component of an LED display system. It consists of several LED (light-emitting diode) elements arranged in a specific pattern, working together through a drive circuit and control system to form a basic unit capable of independently displaying images or text. LED lamp beads are the module's core light-emitting components, typically arranged in red, green, and blue (RGB) colors. These combinations can display full-color images and text. As the foundational unit of an LED display system, the performance and quality of the LED display module directly impact the overall display's effectiveness and lifespan.

[0003] When existing LED display screen modules are spliced ​​together, due to the fixed specifications of the module frames and the fact that the existing LED display screen modules are generally spliced ​​together by screws, splicing gaps are easily generated between the installed LED display screen modules, which easily affects the display effect. Summary of the Invention

[0004] The purpose of the present invention is to provide an LED display screen module and an LED display screen module splicing structure to solve the problem proposed in the above background technology that splicing gaps are easily generated between installed LED display screen modules, which easily affects the display effect.

[0005] To achieve the above-mentioned object, the specific technical solution of the present invention is as follows: an LED display screen module, comprising an LED display screen module body, a back cover provided in the middle of one side of the outer surface of the LED display screen module body, a grabbing hoop fixedly provided in the middle of the outer surface of the back cover, correction angle brackets fixedly provided on the outer surface of the back cover at both ends of the middle of one side of the grabbing hoop, and further comprising:

[0006] A pressing and leveling mechanism located between two adjacent LED display module bodies.

[0007] Preferably, a wiring hole for leading out and introducing wires is opened through the middle of the outer surface of the back cover, the cross-section of the grabbing hoop is designed in an L-shaped structure, the correction angle code is designed in a U-shaped structure, and the two correction angle codes are symmetrically arranged about the longitudinal center axis of the back cover.

[0008] Preferably, the pressing and leveling mechanism includes a pressing spring, a sliding rod, a movable leveling circular plate and a fixed leveling circular plate. The sliding rod is located between two correction angle codes that are close to each other, and the end of the sliding rod extends to the inside of the correction angle code. The fixed leveling circular plate is installed in the middle of the end of the sliding rod. The movable leveling circular plate and the pressing spring are both located on the outer surface of the sliding rod, and the movable leveling circular plate and the sliding rod are elastically arranged by the pressing spring.

[0009] An LED display screen module splicing structure is used to splice an LED display screen module.

[0010] The utility model comprises: an adjustment frame for wrapping and clamping a plurality of LED display module bodies, wherein the adjustment frame is composed of two mutually parallel horizontal frames and two mutually parallel vertical frames, the horizontal frames are slidably arranged on the inner surface of the vertical frames, the two horizontal frames are symmetrically arranged about the horizontal central axis of the vertical frames, and the two vertical frames are symmetrically arranged about the longitudinal central axis of the horizontal frames, a threaded rod is fixedly arranged inside the vertical frames, and two adjustment nuts are arranged on both sides of the outer surface of the threaded rod.

[0011] Preferably, a guide rail is fixedly provided in the middle of one side of the outer surface of the vertical frame, and a displacement block is slidably provided on the inner surface of the guide rail and located at the position of each row of LED display module bodies, and guide blocks are fixedly provided on both sides of the outer surface of the displacement block, and guide grooves are provided on both sides of the outer surface of the guide rail. A sliding opening is provided in the middle of the outer surface of the displacement block, and a second magnetic strip is provided inside the sliding opening, and magnetic strip guide rods are fixedly provided on both sides of the inner surface of the sliding opening, and the second magnetic strip is slidably provided on the outer surface of the magnetic strip guide rod, and a first magnetic strip is fixedly provided in the middle of the guide rail, and the first magnetic strip and the second magnetic strip attract each other.

[0012] Preferably, it also includes multiple positioning and distance adjustment mechanisms for splicing the horizontally arranged LED display module bodies, the positioning and distance adjustment mechanisms include a fork-scissor type telescopic mechanism located between the two vertical frames, and a clamping assembly located at the position of each LED display module body, and the two ends of the fork-scissor type telescopic mechanism are respectively connected to two displacement blocks.

[0013] Preferably, the clamping assembly includes a disc corresponding to the position of the grabbing hoop, and the disc is connected to the cross shaft arranged in the fork-scissor type telescopic mechanism through a connecting shaft. The outer surface of the disc is fixedly provided with a plurality of joints distributed in a ring shape with equal intervals, and a movable head is provided inside the joint through a rotation of the adapter shaft, one end of the movable head is fixedly provided with a grab hook for grabbing the grabbing hoop, and the other end of the movable head is fixedly provided with a tail handle, and torsion springs are provided on both sides of the outer surface of the adapter shaft, and the two ends of the torsion spring are respectively connected to the movable head and the joint.

[0014] Compared with the prior art, the beneficial effects of the present invention are: the LED display screen module and the LED display screen module splicing structure,

[0015] The present invention utilizes an adjustable adjustment frame to clamp a plurality of LED display screen module bodies, and cooperates with a positioning and distance adjustment mechanism to fix and equidistantly adjust the respective LED display screen module bodies. During the splicing of the respective LED display screen module bodies, no splicing gap is generated between two adjacent LED display screen module bodies, thereby ensuring the display effect. In addition, the provided clamping assembly is used instead of traditional screw fixation, and the disassembly and assembly process is time-saving and labor-saving, thereby reducing the labor intensity of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0017] Figure 2 It is an enlarged view of the local structure of the present invention;

[0018] Figure 3 A side view of the local structure of the present invention Figure 1 ;

[0019] Figure 4 For the present invention Figure 3 A magnified view of the structure at center A;

[0020] Figure 5 A side view of the local structure of the present invention Figure 2 .

[0021] In the picture:

[0022] 100, LED display module body; 101, back cover; 102, grab bar; 103, wiring hole; 104, correction angle bracket; 200, adjustment frame; 201, horizontal frame; 202, vertical frame; 203, first magnetic strip; 204, threaded rod; 205, guide groove; 206, adjustment nut; 207, guide rail; 208, guide block; 209, second magnetic strip; 210, magnetic strip guide rod; 2 11. Displacement block; 300. Pressing and leveling mechanism; 301. Pressing spring; 302. Sliding rod; 303. Movable leveling circular plate; 304. Fixed leveling circular plate; 400. Positioning and distance-adjusting mechanism; 401. Fork-scissor type telescopic mechanism; 402. Connecting shaft; 403. Joint; 404. Disc; 405. Movable head; 406. Torsion spring; 407. Adapter shaft; 408. Grappling hook; 409. Tail handle. DETAILED DESCRIPTION

[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1-5 The present invention provides a technical solution: an LED display screen module, including an LED display screen module body 100, a plurality of LED display screen module bodies 100 are provided, and the plurality of LED display screen module bodies 100 are distributed at equal intervals, and the plurality of LED display screen module bodies 100 are close to each other, and also includes: a pressing and leveling mechanism 300 located between two adjacent LED display screen module bodies 100, which is used to correct and stabilize the two so that the two are on the same horizontal plane.

[0025] Specifically, a back cover 101 is provided in the middle of one side of the outer surface of the LED display module body 100, and a wiring hole 103 for leading out and introducing the wires is opened through the middle of the outer surface of the back cover 101, and a gripping hoop 102 is fixedly provided in the middle of the outer surface of the back cover 101, and the cross section of the gripping hoop 102 is designed in an L-shaped structure. Correction angle codes 104 are fixedly provided on the outer surface of the back cover 101 and at both ends of the middle of one side of the gripping hoop 102, and the correction angle code 104 is designed in a U-shaped structure, and the two correction angle codes 104 are connected with each other with respect to the longitudinal direction of the back cover 101. The pressing and leveling mechanism 300 is symmetrically arranged about the central axis, and includes a pressing spring 301, a sliding rod 302, a movable leveling circular plate 303 and a fixed leveling circular plate 304. The sliding rod 302 is located between two correction angle codes 104 close to each other, and the end of the sliding rod 302 extends to the inside of the correction angle code 104. The fixed leveling circular plate 304 is installed in the middle of the end of the sliding rod 302. The movable leveling circular plate 303 and the pressing spring 301 are both located on the outer surface of the sliding rod 302, and the movable leveling circular plate 303 and the sliding rod 302 are elastically arranged by the pressing spring 301.

[0026] A LED display module splicing structure is used to splice an LED display module, including an adjustment frame 200 for wrapping and clamping multiple LED display module bodies 100. Multiple LED display module bodies 100 are located inside the adjustment frame 200. Specifically, the adjustment frame 200 is composed of two mutually parallel horizontal frames 201 and two mutually parallel vertical frames 202. The horizontal frame 201 is slidably set on the inner surface of the vertical frame 202. The two horizontal frames 201 are symmetrically arranged about the horizontal central axis of the vertical frame 202, and the two vertical frames 202 are symmetrically arranged about the longitudinal central axis of the horizontal frame 201. A threaded rod 204 is fixedly set inside the vertical frame 202, and two adjusting nuts 206 are set on both sides of the outer surface of the threaded rod 204 for fastening the horizontal frame 201 and the vertical frame 202. The adjusting nut 206 is set by threaded engagement with the threaded rod 204.

[0027] Furthermore, a guide rail 207 is fixedly provided in the middle of one side of the outer surface of the vertical frame 202, and the upper end surface of the guide rail 207 is flush with the upper end surface of the vertical frame 202, and the lower end surface of the guide rail 207 is flush with the lower end surface of the vertical frame 202. The inner surface of the guide rail 207 is provided with a displacement block 211 which is slidably provided at the position of each row of the LED display module body 100. Guide blocks 208 are fixedly provided on both sides of the outer surface of the displacement block 211. Guide grooves 205 are provided on both sides of the outer surface of the guide rail 207 for cooperating with the device. The guide block 208 is provided to guide the displacement block 211. A sliding opening is provided in the middle of the outer surface of the displacement block 211, and a second magnetic strip 209 is provided inside the sliding opening. Magnetic strip guide rods 210 are fixedly provided on both sides of the inner surface of the sliding opening. The second magnetic strip 209 is slidably provided on the outer surface of the magnetic strip guide rod 210. A first magnetic strip 203 is fixedly provided in the middle of the guide rail 207, which is used to fix the displacement block 211 in conjunction with the second magnetic strip 209. The first magnetic strip 203 and the second magnetic strip 209 attract each other.

[0028] Furthermore, the device also includes a plurality of positioning and distance-adjusting mechanisms 400 for splicing the horizontally arranged LED display module bodies 100. Specifically, the positioning and distance-adjusting mechanism 400 includes a fork-scissor telescopic mechanism 401 located between the two vertical frames 202, and a clamping assembly located at the position of each LED display module body 100. The two ends of the fork-scissor telescopic mechanism 401 are respectively connected to the two displacement blocks 211. Specifically, the clamping assembly includes a disc 404 corresponding to the position of the grab hoop 102, and the disc 404 is connected to the cross shaft set in the fork-scissor telescopic mechanism 401. The disc 404 is connected via a connecting shaft 402, and a plurality of joints 403 are fixedly provided on the outer surface thereof and are distributed in a circular shape with equal intervals, and a movable head 405 is provided inside the joint 403 through a rotation of an adapter shaft 407, and a grab hook 408 for grabbing the grab hoop 102 is fixedly provided at one end of the movable head 405, and a tail handle 409 is fixedly provided at the other end of the movable head 405, so that the staff can rotate the movable head 405 and unhook the grab hook 408, and a torsion spring 406 is provided on both sides of the outer surface of the adapter shaft 407, and the two ends of the torsion spring 406 are respectively connected to the movable head 405 and the joint 403.

[0029] According to the above, the present invention utilizes an adjustable adjustment frame 200 to clamp a plurality of LED display module bodies 100, and cooperates with a positioning and distance adjustment mechanism 400 to fix and equidistantly adjust each LED display module body 100. During the splicing of each LED display module body 100, no splicing gap will be generated between two adjacent LED display module bodies 100, thereby ensuring the display effect. In addition, the provided clamping assembly is used instead of the traditional screw fixation, and the disassembly and assembly process is time-saving and labor-saving, thereby reducing the labor intensity of the staff.

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

Claims

1. An LED display screen module, comprising an LED display screen module body (100), characterized in that: The LED display screen module body (100) is provided with a back cover (101) in the middle of one side of the outer surface, and a gripping hoop (102) is fixedly provided in the middle of the outer surface of the back cover (101), and correction angle codes (104) are fixedly provided on both ends of the outer surface of the back cover (101) and in the middle of one side of the gripping hoop (102), and further comprising: A pressing and leveling mechanism (300) located between two adjacent LED display screen module bodies (100); A wiring hole (103) for leading out and leading in a wire is provided through the middle of the outer surface of the back cover (101); the cross section of the gripping hoop (102) is designed in an L-shaped structure; the correction angle code (104) is designed in a U-shaped structure; and the two correction angle codes (104) are symmetrically arranged with respect to the longitudinal center axis of the back cover (101); The pressing and leveling mechanism (300) includes a pressing spring (301), a sliding rod (302), a movable leveling circular plate (303), and a fixed leveling circular plate (304); the sliding rod (302) is located between two correction angle codes (104) that are close to each other, and the end of the sliding rod (302) extends to the inside of the correction angle code (104); the fixed leveling circular plate (304) is installed in the middle of the end of the sliding rod (302); the movable leveling circular plate (303) and the pressing spring (301) are both located on the outer surface of the sliding rod (302), and the movable leveling circular plate (303) and the sliding rod (302) are elastically arranged by the pressing spring (301); The splicing structure used to splice LED display modules includes the following: An adjustment frame (200) for wrapping and clamping a plurality of LED display screen module bodies (100), the adjustment frame (200) comprising two mutually parallel horizontal frames (201) and two mutually parallel vertical frames (202), the horizontal frames (201) being slidably arranged on the inner surface of the vertical frames (202), the two horizontal frames (201) being symmetrically arranged about the horizontal center axis of the vertical frames (202), and the two vertical frames (202) being symmetrically arranged about the longitudinal center axis of the horizontal frame (201), a threaded rod (204) being fixedly arranged inside the vertical frames (202), and two adjustment nuts (206) being arranged on both sides of the outer surface of the threaded rod (204); A guide rail (207) is fixedly provided in the middle of one side of the outer surface of the vertical frame (202), a displacement block (211) is slidably provided on the inner surface of the guide rail (207) and located at the position of each row of LED display module bodies (100), and guide blocks (208) are fixedly provided on both sides of the outer surface of the displacement block (211), and guide grooves (205) are provided on both sides of the outer surface of the guide rail (207), a sliding opening is provided in the middle of the outer surface of the displacement block (211), and a second magnetic strip (209) is provided inside the sliding opening, and magnetic strip guide rods (210) are fixedly provided on both sides of the inner surface of the sliding opening, and the second magnetic strip (209) is slidably provided on the outer surface of the magnetic strip guide rod (210), and a first magnetic strip (203) is fixedly provided in the middle of the guide rail (207), and the first magnetic strip (203) and the second magnetic strip (209) attract each other; It also includes a plurality of positioning and distance adjustment mechanisms (400) for splicing the horizontally arranged LED display module bodies (100), wherein the positioning and distance adjustment mechanisms (400) include a fork-scissor-type telescopic mechanism (401) located between two vertical frames (202), and a clamping assembly located at the position of each LED display module body (100), and the two ends of the fork-scissor-type telescopic mechanism (401) are respectively connected to the two displacement blocks (211); The clamping assembly comprises a disc (404) corresponding to the position of the grab hoop (102), the disc (404) being connected to a cross shaft arranged in a fork-scissor type telescopic mechanism (401) via a connecting shaft (402), a plurality of joints (403) being fixedly arranged on the outer surface of the disc (404) and distributed in a circular shape with equal intervals, and a movable head (405) being rotatably arranged inside the joint (403) via a transfer shaft (407), a grab hook (408) for grabbing the grab hoop (102) being fixedly arranged at one end of the movable head (405), and a tail handle (409) being fixedly arranged at the other end of the movable head (405), torsion springs (406) being arranged on both sides of the outer surface of the transfer shaft (407), and the two ends of the torsion spring (406) being respectively connected to the movable head (405) and the joint (403).