Multifunctional connecting structure of goal and net luminescent lamp strip
By designing a multifunctional connection structure for the goal net light strip, the problem that the existing net light strip cannot control the light and adapt to different power sockets is solved, flexible control of the light and power adaptability are achieved, ensuring normal lighting effects at night.
Patent Information
- Application Number
- CN202422983920.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing net light strips cannot control and adjust the light, waste electricity resources and cannot adapt to different power sockets, affecting the night lighting effect.
A multifunctional connection structure for goal and net light strips is designed, which includes a light controller and a combination of various power plugs. It can control the brightness, color and flashing frequency of the light and is compatible with a variety of power sockets.
It realizes flexible control of lighting and adaptability of power supply, improves the efficiency of power supply use, and ensures the normal lighting of the net at night.
Smart Images

Figure CN223331676U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sports equipment, in particular to a multifunctional connection structure of a goal net luminous light strip. Background Art
[0002] A net is a device used in various ball sports, such as tennis, volleyball, and badminton, to divide the playing field and limit the playing area, ensuring fairness and standardization of the competition. A net is a mesh structure woven from fine threads or threads. Its basic structure consists of two parts: the frame secures the net, while the mesh blocks the ball's flight path. The size and shape of the mesh in a net can affect the ball's speed, direction, and bounce.
[0003] Since the function of the net is to clearly define the playing area, the area defined by the net is blurred in insufficient light at night, so a light strip is needed to illuminate the outline of the net. However, the existing net light strip cannot control and adjust the light, wasting electricity resources; the existing net light strip is only equipped with one type of power plug. When the plug does not match the socket, the light of the light strip will not be turned on, which cannot meet the normal use of the light strip in various scenarios and affects the lighting effect of the net. Utility Model Content
[0004] The purpose of the utility model is to provide a multifunctional connection structure of a goal net luminous light strip, which effectively and reasonably uses electricity resources, improves the adaptability of the light strip to different power sockets, and ensures the normal use of the net at night.
[0005] To achieve the above purpose, the present invention provides the following solutions:
[0006] A multifunctional connection structure for a goal net light strip, comprising a net frame and a light strip, wherein the light strip is wrapped around the edge of the net frame, the net frame comprises a bottom column, a column, a crossbeam, a fence and a column cover, two bottom columns are provided, both of which are provided at the bottom of both ends of the net frame, the bottom ends of the columns are welded to the top center of the bottom columns, the columns are fixed to both ends of the net frame, the crossbeam is provided in a direction perpendicular to the bottom column, the crossbeam is welded to the top of the column, the columns at both ends of the net frame are connected via the crossbeam, the left and right ends of the fence are respectively sleeved on the outside of the two columns, and the top of the fence is sleeved on the crossbeam The fence is supported by columns and beams, the column cover is threadedly connected to the top of the column, the radius of the column cover is larger than the radius of the column, and the two ends of the fence are limited on the column by the column cover. The light strip includes a lamp bead string, a waterproof shell, a light controller and a power plug group. The lamp bead string is arranged in the waterproof shell, and the waterproof shell is tightly wrapped around the outside of the lamp bead string. The waterproof shell and the lamp bead string are "linear", and the end of the lamp bead string is connected to one end of the light controller, and the other end of the light controller is connected to the power plug group via an electric wire, and the lamp bead string is powered by the power plug group.
[0007] Furthermore, the light controller is provided with a light enhancement key, a light reduction key, a multi-color change key, a light flashing key and a toggle switch. The light enhancement key, the light reduction key, the multi-color change key and the light flashing key are all embedded in the top surface of the light controller and are all in the form of "buttons". The toggle switch is embedded in the rear end of the light controller, and the lamp bead string receives power through the toggle switch.
[0008] Furthermore, the power plug group includes a converter, a straight plug, a USB plug and a DC plug. The converter is connected to the end of the light controller via an electric wire. The other end of the converter is connected to three electric wires. The converter is respectively connected to the straight plug, the USB plug and the DC plug via electric wires. The straight plug is connected to an external straight socket to transmit current, the USB plug is connected to an external USB socket or a power bank to transmit current, and the DC plug is connected to an external DC socket to transmit current. The light strip provides power to the lamp bead string via the power plug.
[0009] In summary, the beneficial technical effects of the present invention are:
[0010] 1. A light controller is used to control the brightness and color of the light, and to change the flashing frequency of the light. A toggle switch is also provided to control the light on / off status with one button. It is distinguished from the button and has a good recognition effect. At night, you do not need to look at the indicator pattern of the button on the light controller. You can directly toggle the switch key to control the power supply, which prevents the occurrence of accidental pressing of the switch key.
[0011] 2. A power plug set is selected to combine multiple ways of connecting the power supply on the light strip, which can adapt to various types of sockets to provide power for it, thereby improving the applicability of the light strip. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic diagram of the overall structure of the utility model;
[0013] Figure 2 This is a schematic diagram of the structure of the lighting controller of the utility model;
[0014] Figure 3 This is a schematic structural diagram of the power plug assembly of the utility model.
[0015] 1. Grid; 2. Light strip; 11. Base column; 12. Upright column; 13. Crossbeam; 14. Fence; 15. Column cover; 21. Lamp string; 22. Waterproof housing; 23. Light controller; 24. Power plug assembly; 231. Light increase button; 232. Light decrease button; 233. Multi-color change button; 234. Light flashing button; 235. Toggle switch; 241. Converter; 242. Straight plug; 243. USB plug; 244. DC plug. DETAILED DESCRIPTION
[0016] The present invention will be described in further detail below with reference to the accompanying drawings.
[0017] The utility model discloses a multifunctional connection structure of a goal net luminous light strip, comprising a grid 1 and a light strip 2, the light strip 2 being wrapped around the edge of the grid 1, the grid 1 comprising a bottom column 11, an upright column 12, a crossbeam 13, a fence 14 and a column cover 15, two bottom columns 11 are provided, both of which are arranged at the bottoms of both ends of the grid 1, the grid 1 is supported on the ground by the bottom columns 11, the bottom ends of the upright columns 12 are welded to the top centers of the bottom columns 11, the upright columns 12 are fixed at both ends of the grid 1, the crossbeam 13 is arranged in a direction perpendicular to the bottom columns 11, the crossbeam 13 is welded to the tops of the upright columns 12, the upright columns 12 at both ends of the grid 1 are connected via the crossbeam 13, the crossbeam 13 is used to support the fence 14, the left and right ends of the fence 14 are respectively sleeved on the outsides of the two upright columns 12, the top of the fence 14 is sleeved on the crossbeam 13, the fence 14 is supported by the upright columns 12 and the crossbeam 13, and the column cover 15 is threadedly connected to the tops of the upright columns 12 The radius of the column cover 15 is larger than the radius of the column 12. The two ends of the fence 14 are limited on the column 12 through the column cover 15. The light strip 2 includes a lamp bead string 21, a waterproof shell 22, a light controller 23 and a power plug group 24. The lamp bead string 21 is arranged in the waterproof shell 22. The lamp bead string 21 is the core component of the light. Usually, every 3 lamps are a unit, and every 50 cm is a large length unit. The waterproof shell 22 is tightly wrapped around the outside of the lamp bead string 21. The waterproof shell 22 is made of transparent PVC, which is not only waterproof and dustproof, but also can improve the service life of the light strip 2. The waterproof shell 22 and the lamp bead string 21 are "linear". One end of the lamp bead string 21 is connected to one end of the light controller 23. The light controller 23 controls the state of the light of the light strip 2. The other end of the light controller 23 is connected to the power plug group 24 via an electric wire. The lamp bead string 21 is powered by the power plug group 24. See specifically Figure 1 .
[0018] The color and brightness of the lamp bead string 21 determine the overall effect of the light strip 2. The light controller 23 is provided with a light enhancement key 231, a light reduction key 232, a multi-color change key 233, a light flashing key 234 and a toggle switch 235. The light enhancement key 231, the light reduction key 232, the multi-color change key 233 and the light flashing key 234 are all embedded in the top surface of the light controller 23 and are all in the form of "buttons". The light enhancement key 231 and the light reduction key 232 are used to control the light brightness, the multi-color change key 233 is used to change the light color, and the light flashing key 234 is used to change the flashing frequency of the light. The toggle switch 235 is embedded in the rear end of the light controller 23. The lamp bead string 21 receives power through the toggle switch 235. The toggle switch 235 performs one-touch control on or off the light and is distinguished from the button, has a good recognition effect, and prevents the occurrence of accidental pressing of the switch key. Figure 2 .
[0019] The power plug group 24 includes a converter 241, a straight plug 242, a USB plug 243 and a DC plug 244. The converter 241 is connected to the end of the light controller 23 via a wire. The other end of the converter 241 is connected to three wires. The converter 241 is connected to the straight plug 242, the USB plug 243 and the DC plug 244 via wires. The straight plug 242 is connected to an external straight socket to transmit current. The converter 241 can convert one power source into another power source, adapt to the voltage of different sockets, protect the light strip 2, improve power efficiency and enhance power stability. The USB plug 243 is connected to an external USB socket or a power bank to transmit current. The DC plug 244 is connected to an external DC socket to transmit current. The light strip 2 provides power to the lamp bead string 21 through the power plug. Multiple connection power supply methods are combined on the light strip 2, which is adapted to various types of sockets to provide power for it, thereby improving the applicability of the light strip 2. See for details. Figure 3 .
[0020] Example
[0021] Operation process
[0022] 1. Place the net frame 1 in the sports field, and then install the fence 14 on the net frame 1;
[0023] 2. Thread the column cover 15 onto the top of the column 12 and clamp the fence 14 onto the outside of the column 12;
[0024] 3. Wrap the light strip 2 around the edge of the fence 14, and then select one of the power plugs in the power plug set 24 according to the power socket at the site to connect the power supply;
[0025] 4. If the venue is too large to connect to a power socket, use USB plug 243 to connect a power bank to power the light strip 2;
[0026] 5. Control the light status through the buttons on the light controller 23, and control the light of the light strip 2 to be turned on or off by toggling the switch 235.
[0027] The embodiments of this specific implementation method are all preferred embodiments of the present utility model, and are not intended to limit the scope of protection of the present utility model. Therefore, any equivalent changes made based on the structure, shape, and principle of the present utility model should be included in the scope of protection of the present utility model.
Claims
1. A multifunctional connection structure for a goal net light strip, comprising a net frame (1) and a light strip (2), characterized in that: The light strip (2) is wound around the edge of the grid (1). The grid (1) includes a bottom column (11), a column (12), a crossbeam (13), a fence (14) and a column cover (15). Two bottom columns (11) are provided, both of which are provided at the bottom of both ends of the grid (1). The bottom ends of the columns (12) are welded to the top center of the bottom columns (11). The columns (12) are fixed to both ends of the grid (1). The crossbeam (13) is provided in a direction perpendicular to the bottom column (11). The crossbeam (13) is welded to the top of the column (12). The columns (12) at both ends of the grid (1) are connected via the crossbeam (13). The left and right ends of the fence (14) are respectively sleeved on the outside of the two columns (12). The top of the fence (14) is sleeved on the crossbeam (13). The fence (14) is connected via the columns (12) and the crossbeam ( 13) is opened, the column cover (15) is threadedly connected to the top of the column (12), the radius of the column cover (15) is larger than the radius of the column (12), and the two ends of the fence (14) are limited on the column (12) through the column cover (15). The light strip (2) includes a lamp string (21), a waterproof shell (22), a light controller (23) and a power plug group (24). The lamp string (21) is arranged in the waterproof shell (22), and the waterproof shell (22) is tightly wrapped around the outside of the lamp string (21). The waterproof shell (22) and the lamp string (21) are in a "line shape". The end of the lamp string (21) is connected to one end of the light controller (23), and the other end of the light controller (23) is connected to the power plug group (24) via an electric wire. The lamp string (21) is powered by the power plug group (24).
2. The multifunctional connection structure of the goal net light strip according to claim 1, characterized in that: The light controller (23) is provided with a light enhancement key (231), a light reduction key (232), a multi-color change key (233), a light flashing key (234) and a toggle switch (235). The light enhancement key (231), the light reduction key (232), the multi-color change key (233) and the light flashing key (234) are all embedded in the top surface of the light controller (23) and are all in a "button" type. The toggle switch (235) is embedded in the rear end of the light controller (23). The lamp bead string (21) receives power through the toggle switch (235).
3. The multifunctional connection structure of the goal net light strip according to claim 1, characterized in that: The power plug group (24) comprises a converter (241), a straight plug (242), a USB plug (243) and a DC plug (244); the converter (241) is connected to the end of the light controller (23) via an electric wire; the other end of the converter (241) is connected to three electric wires; the converter (241) is respectively connected to the straight plug (242), the USB plug (243) and the DC plug (244) via electric wires; the straight plug (242) is connected to an external straight socket to transmit current; the USB plug (243) is connected to an external USB socket or a power bank to transmit current; the DC plug (244) is connected to an external DC socket to transmit current; and the light strip (2) provides power to the light bead string (21) via the power plug.