Network connector sorting device
By adjusting the drop height of the network connector using a drive motor and lead screw system, the problem of damage caused by the inability to adjust the receiving structure was solved, thus achieving stable conveying and sorting.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGXI SHICHUANG ELECTRONICS CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-17
AI Technical Summary
The receiving structure of existing network connector sorting devices cannot be adjusted, resulting in network connectors being subjected to significant impact when falling, making them prone to damage.
By setting a drive motor to rotate the lead screw, the lead screw drives the moving seat and lifting plate to move up and down, adjusting the falling height of the network connector, reducing impact, and achieving stable conveying and sorting through limit rods and cylinders.
It effectively reduces the impact force on network connectors during drop, avoids damage, and ensures stable conveying and sorting without spillage, thereby improving the reliability of equipment operation.
Smart Images

Figure CN224127927U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of network connectors, and more particularly to a network connector sorting device. Background Technology
[0002] A network connector sorting device is a specialized piece of equipment used for the automated sorting, inspection, or classification of network connectors. It is typically used in electronic manufacturing, communication equipment assembly, or quality inspection processes. Its core function is to achieve precise sorting of connectors through mechanical structures, sensors, and control systems, thereby improving production efficiency and consistency.
[0003] The existing network connector sorting device cannot adjust the height of its receiving structure during use. This results in the network connectors falling from a high height during initial operation, causing them to be subjected to a large impact force and easily leading to damage.
[0004] Therefore, in view of the problem that the height of the receiving structure of the existing network connector sorting device cannot be adjusted, which makes the network connectors easily damaged due to the drop height, there is an urgent need to design a new type of network connector sorting device. Utility Model Content
[0005] To overcome the problem that the height of the receiving structure in the existing network connector sorting device cannot be adjusted, which makes the network connectors easily damaged due to the drop height.
[0006] The technical solution of this utility model is as follows: a network connector sorting device, including a first conveyor belt; it also includes a receiving frame, a mounting frame, a drive motor, a movable seat, a lifting plate, and a lead screw. Two symmetrical second conveyor belts are arranged on the left side surface of the first conveyor belt. A receiving frame is provided at the discharge position of both the first and second conveyor belts. A mounting frame is provided at the rear position of the bottom of the inner surface of the receiving frame. A drive motor is installed at the bottom of the inner surface of the mounting frame. A lead screw is connected to the output end of the drive motor. The top of the lead screw is rotatably connected to the top of the inner surface of the mounting frame. A movable seat is threaded through the outer surface of the lead screw. A lifting plate is provided on the front side of the movable seat.
[0007] Preferably, by setting a drive motor, its output end can drive the lead screw to rotate during operation. When the lead screw rotates, it can drive the moving seat that is threaded with it to move up and down, thereby driving the lifting plate to move up and down. When the equipment is turned on, the lifting plate can be moved to the top, thereby reducing the falling distance of the network connectors, thus reducing the impact force of falling and avoiding damage to the network connectors. During the receiving process, the lifting plate will gradually descend to prevent the network connectors from piling up too high and overflowing from the inside of the receiving frame. This solves the problem that the receiving structure of the existing network connector sorting device cannot be height adjusted during use, resulting in a high falling height of the network connectors during the initial operation, and the large falling impact force, which easily leads to damage to the network connectors.
[0008] Preferably, a limiting frame is installed on the front side of the bottom surface of the receiving frame, and limiting rods are connected to the upper and lower sides of the inner surface of the limiting frame. The outer surface of the limiting rods is slidably connected to a limiting seat, and the front surface of the limiting seat is connected to the front surface of the lifting plate.
[0009] Preferably, the outer surface of the first conveyor belt is provided with several equally spaced receiving seats, and a mounting bracket is provided at the rear position of the right side surface of the first conveyor belt. Two cylinders are mounted on the top surface of the mounting bracket, and push plates are connected to the telescopic ends of the cylinders.
[0010] Preferably, a vision module is provided on the top surface of the cylinder, and slide rails are provided on the upper surface of the first conveyor belt at positions corresponding to the two second conveyor belts.
[0011] Preferably, a support is provided on the front right side surface of the first conveyor belt, and a feeding frame is installed on the top surface of the support.
[0012] Preferably, four symmetrical baffles are installed on the bottom of the inner surface of the feeding frame, and the baffles are fixed to the feeding frame with screws.
[0013] Preferably, two symmetrical positioning rods are installed on the bottom left side of the inner surface of the feeding frame. The outer surface of the positioning rods is rotatably connected to a movable plate. One side of the movable plate is connected to one end of a compression spring, and the other end of the compression spring is connected to the feeding frame.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting up a drive motor, the rotation of its output end can drive the lead screw to rotate. When the lead screw rotates, it can drive the moving seat to move up and down. The moving seat can drive the lifting plate to move synchronously. When the equipment is turned on, the lifting plate can be moved to the top, thereby reducing the falling distance of the network connectors and reducing the impact force of the fall, thus avoiding damage to the network connectors. During the receiving process, the lifting plate will gradually descend to prevent the network connectors from piling up too high and overflowing from the inside of the receiving frame. This solves the problem that the receiving structure of the existing network connector sorting device cannot be height adjusted during use, resulting in a high falling height of the network connectors during the initial operation, and the large falling impact force, which easily leads to damage to the network connectors. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the network connector sorting device of this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional structural schematic of the receiving frame of the network connector sorting device of this utility model.
[0018] Figure 3 The diagram shown is a three-dimensional structural schematic of the lead screw of the network connector sorting device of this utility model;
[0019] Figure 4 The diagram shown is a three-dimensional structural schematic of the cylinder of the network connector sorting device of this utility model.
[0020] Figure 5 The diagram shown is a three-dimensional structural schematic of the feeding frame of the network connector sorting device of this utility model.
[0021] Explanation of reference numerals in the attached drawings: 1. First conveyor belt; 2. Second conveyor belt; 3. Receiving frame; 4. Mounting frame; 5. Drive motor; 6. Moving seat; 7. Lifting plate; 8. Limiting frame; 9. Limiting rod; 10. Limiting seat; 11. Receiving seat; 12. Mounting bracket; 13. Cylinder; 14. Push plate; 15. Vision module; 16. Slide rail; 17. Support; 18. Feeding frame; 19. Baffle; 20. Positioning rod; 21. Movable plate; 22. Compression spring; 23. Lead screw. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Please see Figures 1-5This utility model provides an embodiment of a network connector sorting device, including a first conveyor belt 1; it also includes a receiving frame 3, a mounting frame 4, a drive motor 5, a movable seat 6, a lifting plate 7, and a lead screw 23. Two symmetrically arranged second conveyor belts 2 are provided on the left side surface of the first conveyor belt 1. A receiving frame 3 is provided at the discharge position of both the first and second conveyor belts 1 and 2. A mounting frame 4 is provided at the rearmost position of the bottom of the inner surface of each receiving frame 3. A drive motor 5 is mounted on the bottom of the inner surface of the mounting frame 4. The output end of the drive motor 5 is connected to the lead screw 23, and the top of the lead screw 23 is rotatably connected to the top of the inner surface of the mounting frame 4. The outer surface of the lead screw 23 is threadedly connected to a movable seat 6. A lifting plate 7 is provided on the front side of the movable seat 6. By setting a drive motor 5, its output end can drive the lead screw 23 to rotate during operation. When the lead screw 23 rotates, it can drive the movable seat 6, which is threaded with it, to move up and down, thereby driving the lifting plate 7 to move up and down. When the equipment is turned on, the lifting plate 7 can be moved to the top, thereby reducing the falling distance of the network connector, thus reducing the impact force of the fall and avoiding damage to the network connector. During the receiving process, the lifting plate 7 will gradually descend to prevent the network connector from accumulating too high and overflowing from the inside of the receiving frame 3.
[0024] Please see Figures 1-4 In this embodiment, a limiting frame 8 is installed on the front side of the bottom surface of the receiving frame 3. Limiting rods 9 are connected to the upper and lower sides of the inner surface of the limiting frame 8. A limiting seat 10 is slidably connected to the outer surface of the limiting rods 9. The front surface of the limiting seat 10 is connected to the front surface of the lifting plate 7. By setting the limiting rods 9 and the limiting seat 10, the lifting plate 7 can drive the limiting seat 10 to slide synchronously on the outer surface of the limiting rods 9 when moving. The limiting rods 9 can restrict the moving direction of the limiting seat 10, thereby improving the stability of the lifting plate 7 when moving. Several equally spaced receiving seats 11 are provided on the outer surface of the first conveyor belt 1. A mounting bracket 12 is provided at the rear position of the right side surface of the first conveyor belt 1. Two cylinders 13 are mounted on the top surface of the mounting bracket 12. The telescopic ends of the cylinders 13 are connected to push plates 14. By setting the cylinders 13, the cylinders 13 can drive the push plates 14 to move when they are in operation, thereby pushing the unqualified network connectors on the first conveyor belt 1 to fall onto the surface of the second conveyor belt 2. A vision module 15 is set on the top surface of the cylinders 13. Slides 16 are set on the upper surface of the first conveyor belt 1 at the positions of the two second conveyor belts 2. By setting the vision module 15, the vision analysis camera inside can judge the appearance and shape of the network connectors. When unqualified products are found, the controller inside the vision module 15 can start the cylinders 13 to push and sort the materials.
[0025] Please see Figures 1-5In this embodiment, a support 17 is provided at the front position of the right side surface of the first conveyor belt 1. A loading frame 18 is installed on the top surface of the support 17. By setting the support 17 and the loading frame 18, the network connector to be tested is stored inside the loading frame 18 and loaded by the loading frame 18. Four symmetrical baffles 19 are installed on the bottom of the inner surface of the loading frame 18. The baffles 19 are fixed to the loading frame 18 with screws. By setting the baffles 19, the network connector can be blocked, and its downward speed inside the loading frame 18 can be slowed down. Two symmetrical positioning rods 20 are installed on the bottom left of the inner surface of the 18. The outer surface of the positioning rods 20 is rotatably connected to a movable plate 21. One side of the movable plate 21 is connected to one end of a compression spring 22, and the other end of the compression spring 22 is connected to the feeding frame 18. By setting the movable plate 21 and the compression spring 22, the network connector can squeeze the movable plate 21 during feeding, thereby causing the compression spring 22 to retract. When a network connector passes through, the compression spring 22 will rebound and drive the movable plate 21 to reset, thereby realizing the single feeding of the network connector.
[0026] During operation, by setting a limit rod 9 and a limit seat 10, the lifting plate 7 can drive the limit seat 10 to slide synchronously on the outer surface of the limit rod 9 when it moves. The limit rod 9 can restrict the movement direction of the limit seat 10, thereby improving the stability of the lifting plate 7 when it moves. By setting a cylinder 13, the cylinder 13 can drive the push plate 14 to move when it operates, thereby pushing the unqualified network connectors on the first conveyor belt 1 onto the surface of the second conveyor belt 2. By setting a vision module 15, the visual analysis camera inside can judge the appearance shape of the network connectors. When unqualified products are found, it can... The controller inside the vision module 15 can start the cylinder 13 to push and sort the materials. By setting the support 17 and the loading frame 18, the network connectors to be tested are stored inside the loading frame 18 and loaded by the loading frame 18. By setting the baffle 19, the network connectors can be blocked, and their downward speed inside the loading frame 18 can be slowed down. By setting the movable plate 21 and the compression spring 22, the network connectors can squeeze the movable plate 21 during loading, thereby causing the compression spring 22 to retract. When a network connector passes through, the compression spring 22 will rebound and drive the movable plate 21 to reset, thereby realizing the single loading of network connectors.
[0027] Through the above steps, by setting the drive motor 5, the rotation of its output end can drive the lead screw 23 to rotate. When the lead screw 23 rotates, it can drive the moving seat 6 to move up and down. The moving seat 6 can drive the lifting plate 7 to move synchronously. When the equipment is turned on, the lifting plate 7 can be moved to the top, thereby reducing the falling distance of the network connectors, thus reducing the impact force of the fall and avoiding damage to the network connectors. During the receiving process, the lifting plate 7 will gradually descend to prevent the network connectors from accumulating too high and overflowing from the inside of the receiving frame 3. This solves the problem that the receiving structure of the existing network connector sorting device cannot be height adjusted during use, resulting in a high falling height of the network connectors and a large falling impact force during the initial operation, which easily leads to damage to the network connectors.
Claims
1. Network connector sorting device comprising a first conveyor belt (1); characterized in that: It also includes a receiving frame (3), an installation frame (4), a drive motor (5), a moving seat (6), a lifting plate (7), and a lead screw (23). Two second conveyor belts (2) are symmetrically arranged on the left side surface of the first conveyor belt (1). A receiving frame (3) is provided at the discharge position of both the first conveyor belt (1) and the second conveyor belt (2). An installation frame (4) is provided at the rear position of the bottom of the inner surface of the receiving frame (3). A drive motor (5) is installed at the bottom of the inner surface of the installation frame (4). A lead screw (23) is connected to the output end of the drive motor (5). The top of the lead screw (23) is rotatably connected to the top of the inner surface of the installation frame (4). A moving seat (6) is threaded through the outer surface of the lead screw (23). A lifting plate (7) is provided on the front side of the moving seat (6).
2. The network connector sorting device of claim 1, wherein: A limiting frame (8) is installed on the front side of the bottom surface of the receiving frame (3). Limiting rods (9) are connected to the upper and lower sides of the inner surface of the limiting frame (8). The outer surface of the limiting rods (9) is slidably connected to the limiting seat (10). The front surface of the limiting seat (10) is connected to the front surface of the lifting plate (7).
3. The network connector sorting device of claim 1, wherein: The outer surface of the first conveyor belt (1) is provided with several equally spaced receiving seats (11). The right side surface of the first conveyor belt (1) is provided with a mounting bracket (12) at the rear position. Two cylinders (13) are installed on the top surface of the mounting bracket (12). The telescopic end of the cylinder (13) is connected to a push plate (14).
4. The network connector sorting device of claim 3, wherein: A vision module (15) is provided on the top surface of the cylinder (13), and a slide rail (16) is provided on the upper surface of the first conveyor belt (1) at the positions corresponding to the two second conveyor belts (2).
5. The network connector sorting device of claim 1, wherein: A support (17) is provided on the front right side surface of the first conveyor belt (1), and a feeding frame (18) is installed on the top surface of the support (17).
6. The network connector sorting device of claim 5, wherein: Four symmetrical baffles (19) are installed on the bottom of the inner surface of the feeding frame (18), and the baffles (19) are fixed to the feeding frame (18) by screws.
7. The network connector sorting device of claim 5, wherein: Two symmetrical positioning rods (20) are installed on the bottom left of the inner surface of the feeding frame (18). The outer surface of the positioning rods (20) is rotatably connected to a movable plate (21). One side of the movable plate (21) is connected to one end of a compression spring (22), and the other end of the compression spring (22) is connected to the feeding frame (18).