Neon lamp strip capable of emitting light at 360 degrees

By bonding the COB light strip into an elliptical cylindrical shape and using a silicone sleeve for protection, the problems of uneven light emission and unstable connection in existing technologies are solved, achieving all-round lighting and stable connection, and improving the reliability and service life of the product.

CN224245973UActive Publication Date: 2026-05-15SHENZHEN LINGBENYANG TECHNICAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN LINGBENYANG TECHNICAL CO LTD
Filing Date
2025-05-27
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing 360-degree luminous neon light strips exhibit uneven light emission and blind spots when small in size, and the connection between the wires and the light-emitting components is not stable, affecting the reliability and stability of the product.

Method used

The first and second COB light strips are bonded together in an elliptical cylindrical shape. The LED lights are distributed in a 360-degree direction. The wires are connected by an adhesive layer and an adapter plate. The sleeve is placed on the outside, and the plug and tail plug fix both ends. The internal components are protected by a sleeve made of silicone material.

Benefits of technology

It achieves omnidirectional lighting, eliminates blind spots, improves lighting uniformity and stability, simplifies the assembly process, enhances the stability and convenience of wire connections, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a neon lamp strip capable of emitting light in 360 degrees, which relates to the technical field of illumination, and comprises a light-emitting component, a lead, a sleeve, a plug and a tail plug, the lead is electrically connected with the light-emitting component, the sleeve is sleeved outside the light-emitting component, the plug penetrates through the lead and is sleeved at one end of the sleeve, and the tail plug is arranged at the other end of the sleeve. The tail plug is sleeved at the other end of the sleeve; the light-emitting assembly is provided with a first COB lamp strip and a second COB lamp strip which are attached to each other, the first COB lamp strip and the second COB lamp strip are in an elliptic cylinder shape after being attached to each other, and the light-emitting directions of a plurality of LED lamps of the first COB lamp strip and a plurality of LED lamps of the second COB lamp strip are distributed in a 360-degree mode. 360-degree all-dimensional light emitting is achieved through the light emitting assembly, and the illumination uniformity is improved; meanwhile, the assembling process is simplified, and the stability and convenience of connection between the wire and the light-emitting assembly are enhanced; the light-emitting component is effectively protected, and the service life and the working stability are improved.
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Description

Technical Field

[0001] This utility model relates to the field of lighting technology, and in particular to a 360-degree luminous neon light strip. Background Technology

[0002] Currently, 360-degree luminous neon light strips on the market use bare flexible light strips inside their sleeves. This method does not produce particularly uniform light emission when the size is small, and the product's large size makes installation in confined spaces difficult. Furthermore, the light-emitting components in existing technologies have a relatively unidirectional light emission direction, failing to achieve 360-degree omnidirectional illumination. This can lead to blind spots in scenarios requiring uniform lighting, affecting the overall illumination effect. Additionally, the connection between the wires and the light-emitting components in existing technologies is not secure or convenient enough, easily resulting in poor contact and reducing product reliability and stability. Therefore, there is an urgent need to develop a 360-degree luminous neon light strip to meet practical application needs. Utility Model Content

[0003] In view of this, the present invention addresses the deficiencies of the existing technology, and its main objective is to provide a 360-degree luminous neon light strip. It achieves 360-degree all-around illumination by using light-emitting components, thereby improving the uniformity of lighting; at the same time, it simplifies the assembly process, enhances the stability and convenience of the connection between the wires and the light-emitting components, and effectively protects the light-emitting components, improving their service life and operational stability.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A 360-degree luminous neon light strip includes a light-emitting component, a wire, a sleeve, a plug, and a tail plug. The wire is electrically connected to the light-emitting component. The sleeve is fitted over the outside of the light-emitting component. The plug passes through the wire and is fitted over one end of the sleeve. The tail plug is fitted over the other end of the sleeve. The light-emitting component has a first COB light strip and a second COB light strip that are attached together. The first COB light strip and the second COB light strip are elliptical cylindrical after being attached together. Both the first COB light strip and the second COB light strip have a number of LEDs. The light-emitting directions of the LEDs of the first COB light strip and the LEDs of the second COB light strip are distributed in a 360-degree manner.

[0006] As a preferred embodiment: the light-emitting component further includes an adhesive layer, which is sheet-shaped, with one side of the adhesive layer bonded to a first COB LED strip and the other side of the adhesive layer bonded to a second COB LED strip; the end of the first COB LED strip has a pad, the front end of the adhesive layer is flush with the front end of the second COB LED strip, the front end of the first COB LED strip extends beyond the front end of the adhesive layer, and the pad is disposed on the portion of the first COB LED strip that extends beyond the adhesive layer.

[0007] As a preferred embodiment, the light-emitting component further includes an adapter plate, which is tightly attached to the upper surface of the first COB light strip via solder pads. The adapter plate is provided with a soldering part for easy soldering of wires, and the wires are soldered to the adapter plate through the soldering part.

[0008] As a preferred embodiment: the adhesive layer is made of double-sided adhesive, which is in the form of a long strip, and the surfaces of the first COB LED strip and the second COB LED strip that are in contact with the adhesive layer are both planar.

[0009] As a preferred embodiment: the sleeve has a through hole in the middle for the light-emitting component to pass through, and the light-emitting component is detachably located in the through hole; the plug has a wire-passing part for the wire to pass through, the wire-passing part is tubular, and the plug passes through the wire through the wire-passing part and is sleeved on one end of the sleeve.

[0010] As a preferred embodiment: both the first COB light strip and the second COB light strip also have several resistors, several LEDs connected in parallel, several resistors connected in parallel, and several resistors and several LEDs distributed in a grid pattern in a one-to-one correspondence.

[0011] As a preferred embodiment: the sleeve is made of silicone material, one end of the sleeve is coated with glue and fitted with a tail plug; the other end of the sleeve is coated with glue and fitted with a plug.

[0012] As a preferred embodiment, the cross-sectional dimension of the sleeve is 13mm.

[0013] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, the first COB light strip and the second COB light strip are bonded together to form an elliptical cylinder, and the light emission direction of the LEDs on them is distributed 360 degrees along the circumference of the elliptical cylinder. This enables the neon light strip to achieve an all-round lighting effect, eliminates lighting dead angles, and is suitable for scenarios with high requirements for lighting uniformity, such as decoration and display. The electrical connection with the light-emitting component is achieved through wires, and the sleeve is fitted on the outside of the light-emitting component. The plug and the end cap are respectively fitted on both ends of the sleeve. This structural design is compact, combining all the components together, which not only ensures the normal operation of the light strip, but also facilitates the overall installation and use.

[0014] To more clearly illustrate the structural features and effects of this utility model, the following detailed description is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of a three-dimensional structure of a 360-degree luminous neon light strip according to the present invention.

[0016] Figure 2 This is an exploded view of a 360-degree luminous neon light strip according to the present invention;

[0017] Figure 3 This is a three-dimensional structural diagram of the first and second COB light strips of this utility model;

[0018] Figure 4 This is a three-dimensional structural diagram of the first COB light strip, the second COB light strip, and the adapter plate of this utility model.

[0019] Figure 5 This is a three-dimensional structural diagram of the first COB light strip, the second COB light strip, the adapter plate, and the wires of this utility model.

[0020] Figure 6 This is a circuit diagram of a 360-degree luminous neon light strip according to the present invention.

[0021] Explanation of reference numerals in the attached diagram:

[0022] In the diagram: 10, wire; 20, light-emitting component; 21, first COB light strip; 211, solder pad; 22, second COB light strip; 23, adhesive layer; 24, adapter board; 241, welding part; 30, sleeve; 31, through hole; 40, plug; 41, wire threading part; 50, tail plug. Detailed Implementation

[0023] This utility model is as follows Figures 1 to 6 As shown, a 360-degree luminous neon light strip includes a light-emitting component 20, a wire 10, a sleeve 30, a plug 40, and a tail plug 50, wherein:

[0024] The wire 10 is electrically connected to the light-emitting component 20. The sleeve 30 is fitted on the outside of the light-emitting component 20. The plug 40 passes through the wire 10 and is fitted on one end of the sleeve 30. The tail plug 50 is fitted on the other end of the sleeve 30. The light-emitting component 20 has a first COB light strip 21 and a second COB light strip 22 that are attached to each other. The first COB light strip 21 and the second COB light strip 22 are elliptical cylindrical after being attached. The first COB light strip 21 and the second COB light strip 22 each have a number of LEDs. The light-emitting directions of the number of LEDs in the first COB light strip 21 and the number of LEDs in the second COB light strip 22 are distributed in a 360-degree direction.

[0025] The first and second COB light strips are bonded together in an elliptical cylindrical shape, and the LED lights are distributed in a 360-degree circumferential direction, achieving all-round lighting, eliminating lighting dead angles, and improving lighting uniformity.

[0026] During assembly, the first COB LED strip 21 and the second COB LED strip 22 are first bonded together with adhesive layer 23 to form an elliptical cylindrical light-emitting component 20. Then, the adapter plate 24 is bonded to the first COB LED strip 21 through solder pad 211, and the first COB LED strip 21 and the second COB LED strip 22 are connected through the adapter plate 24. Next, the wire 10 is soldered to the adapter plate 24 through the soldering part 241 to realize the electrical connection between the wire 10 and the light-emitting component 20. Then, the light-emitting component 20 is placed into the through hole 31 of the sleeve 30, and the plug 40 is fitted onto one end of the sleeve 30. Adhesive is applied to the end of the sleeve 30 to fix the plug 40. Finally, adhesive is applied to the other end of the sleeve 30 and the tail plug 50 is fitted on.

[0027] After the first COB light strip 21 and the second COB light strip 22 are attached together, they form an elliptical cylinder, and the light emission direction of the LEDs on them is distributed 360 degrees along the circumference of the elliptical cylinder. This allows the neon light strip to achieve an all-round lighting effect, eliminating lighting dead spots, and is suitable for scenarios with high requirements for lighting uniformity, such as decoration and display. The electrical connection with the light-emitting component 20 is achieved through the wire 10. The sleeve 30 is sleeved on the outside of the light-emitting component 20, and the plug 40 and the tail plug 50 are respectively sleeved on both ends of the sleeve 30. This structure design is compact, combining all the components together, which not only ensures the normal operation of the light strip, but also facilitates the overall installation and use.

[0028] The light-emitting component 20 also includes an adhesive layer 23, which is sheet-shaped. One side of the adhesive layer 23 is bonded to the first COB LED strip 21, and the other side of the adhesive layer 23 is bonded to the second COB LED strip 22. The end of the first COB LED strip 21 has a pad 211. The front end of the adhesive layer 23 is flush with the front end of the second COB LED strip 22. The front end of the first COB LED strip 21 extends beyond the front end of the adhesive layer 23. The pad 211 is disposed on the portion of the first COB LED strip 21 that extends beyond the adhesive layer 23.

[0029] The adhesive layer 23 is sheet-like, with one side attached to the first COB LED strip 21 and the other side attached to the second COB LED strip 22. This allows the first COB LED strip 21 and the second COB LED strip 22 to be tightly bonded together, ensuring a stable relative position between them and facilitating 360-degree uniform light emission. The front end of the first COB LED strip 21 extends beyond the front end of the adhesive layer 23 and is provided with a solder pad 211, which facilitates the subsequent installation of the adapter board 24 and the soldering of the wires 10. This avoids interference from the adhesive layer 23 on the soldering operation and improves the accuracy and reliability of the soldering.

[0030] The light-emitting component 20 also includes an adapter plate 24, which is tightly attached to the upper surface of the first COB light strip 21 via a solder pad 211. The adapter plate 24 is provided with a soldering part 241 for easy soldering of the wire 10, and the wire 10 is soldered to the adapter plate 24 via the soldering part 241.

[0031] With the adapter plate 24 and the welding part 241, the connection between the wire 10 and the light-emitting component 20 is more stable and convenient, reducing the problem of poor contact and improving the reliability of the product.

[0032] The adhesive layer 23 uses double-sided adhesive, which is in the form of a long strip. The surfaces of the first COB LED strip 21 and the second COB LED strip 22 that adhere to the adhesive layer 23 are both flat. This allows the double-sided adhesive to better perform its adhesive function, ensuring that the first COB LED strip 21 and the second COB LED strip 22 are tightly bonded, further improving the stability and luminous effect of the light-emitting component 20. Double-sided adhesive is a common and low-cost material. Using double-sided adhesive as the adhesive layer 23 reduces the production cost of the product and also facilitates operation during the production process.

[0033] The sleeve 30 has a through hole 31 in the middle for the light-emitting component 20 to pass through, and the light-emitting component 20 is detachably located in the through hole 31. The plug 40 has a wire-passing part 41 for the wire 10 to pass through. The wire-passing part 41 is tubular. The plug 40 passes through the wire-passing part 41 and is sleeved on one end of the sleeve 30. The through hole 31 in the middle of the sleeve 30 allows the light-emitting component 20 to be detachably located in the through hole 31, which facilitates the installation and removal of the light-emitting component 20 and makes it easy to replace or repair the light-emitting component 20. The tubular wire-passing part 41 on the plug 40 facilitates the passage of the wire 10 and its sleeve on one end of the sleeve 30. This design makes the wire 10 more neat and orderly to pass through, avoids problems such as tangling of the wire 10 during installation, and also ensures the sealing of the connection between the plug 40 and the sleeve 30.

[0034] The first COB light strip 21 and the second COB light strip 22 each have several resistors, several LEDs connected in parallel, several resistors connected in parallel, and several resistors and several LEDs distributed in a grid pattern in a one-to-one correspondence.

[0035] The neon light strip provided in this application can be cut individually, and can be cut arbitrarily without affecting the light emission of other LEDs. The neon light strip product of this application can be cut arbitrarily without affecting the light emission of the product, and can meet the requirements of any length. The circuit is stable: the LEDs and resistors in the first COB light strip and the second COB light strip are connected in parallel and distributed in a grid pattern, which makes the circuit more stable and improves the working stability of the light-emitting component 20. This circuit connection method allows each LED to work independently. When one LED fails, it will not affect the normal light emission of other LEDs, thus improving the reliability and stability of the light strip. The parallel resistors can divide the current, making the voltage and current across each LED more uniform, thereby ensuring that the light emission brightness of each LED is consistent and improving the overall light emission quality of the light strip.

[0036] The sleeve 30 is made of silicone. One end of the sleeve 30 is coated with glue and fitted with a tail plug 50; the other end of the sleeve 30 is coated with glue and fitted with a plug 40. The light-emitting component 20 is detachably located inside the sleeve 30. The plug 40 and tail plug 50 are fitted to both ends of the sleeve 30 by applying glue. The assembly process is simple and convenient for production and maintenance. The silicone sleeve 30 can effectively prevent the intrusion of external dust, moisture, etc. into the light-emitting component 20, playing a good protective role and extending the service life of the light-emitting component 20. The sleeve 30 is made of silicone, which has good flexibility, insulation and weather resistance, and can effectively protect the internal light-emitting component 20 from the influence of the external environment, such as dust, moisture, ultraviolet rays, etc., extending the service life of the light strip. The plug 40 and tail plug 50 are fitted to both ends of the sleeve 30 by applying glue. This sealing method can ensure the airtightness of the sleeve 30, further preventing external factors from damaging the light-emitting component 20, and also enhancing the stability of the entire light strip structure.

[0037] The cross-sectional dimension of the sleeve 30 is 13mm; most existing LED strips are 40mm or 25mm. Or 15mm, which is relatively large in size. The neon light strip provided in this application is small in size, flexible and adaptable, and has good lighting effect, meeting the market demand for miniaturized and flexible neon light strips.

[0038] Composition of neon light strip: The first COB light strip 21 and the second COB light strip 22 are attached back to back with 3M double-sided tape. One end of the first COB light strip 21 and the second COB light strip 22 are connected by a rigid adapter plate 24. Then, the wire 10 is soldered to the rigid adapter plate 24. The first COB light strip 21 and the second COB light strip 22 are inserted tightly into the preset through hole 31 of the silicone sleeve 30. Then, glue is applied to one end of the sleeve 30 and a tail plug 50 is installed. Glue is applied to the other end with the wire 10 and a plug 40 is installed (the wire 10 passes through the wire part 41 of the plug 40). The product assembly is simple and convenient.

[0039] The neon light strip provided in this application is small in size and can be cut to any size without affecting the light emission of other LED lights. The sleeve 30 contains the first COB light strip 21 and the second COB light strip 22, while the light strip sleeve 30 in the prior art contains a bare flexible light strip. The neon light strip of this application is small in size and occupies little space, making it easy to install and use in narrow spaces. The sleeve 30 in this application is made of silicone material, which is flexible and can adapt to various irregular installation surfaces and scene requirements. By using the first COB light strip 21 and the second COB light strip 22, the lighting effect is good, achieving uniform, soft, and glare-free illumination, meeting the requirements of high-quality lighting. The sleeve 30 has good heat dissipation, effectively extending the life of the lamp. The light-emitting component 20 is detachable and located in the sleeve 30, reducing maintenance costs.

[0040] The usage and working principle of this 360-degree luminous neon light strip are as follows:

[0041] During assembly, the first CO2 LED strip and the second COB LED strip are first bonded together with an adhesive layer to form an elliptical cylindrical light-emitting component. Then, an adapter board is attached to the first COB LED strip via solder pads, connecting the first COB LED strip and the second COB LED strip. Next, wires are soldered to the adapter board through the soldering part to achieve electrical connection between the wires and the light-emitting component. Then, the light-emitting component is placed into the through hole of the sleeve, and a plug is fitted onto one end of the sleeve. Adhesive is applied to the end of the sleeve to fix the plug. Finally, adhesive is applied to the other end of the sleeve, and a tail plug is fitted on.

[0042] The key design feature of this invention is that the first and second COB light strips, when bonded together, form an elliptical cylinder, with the LEDs emitting light in a 360-degree circumferential distribution along the cylinder. This allows the neon light strip to achieve omnidirectional lighting, eliminating blind spots and making it suitable for scenarios requiring high uniformity of illumination, such as decoration and displays. Electrical connections to the light-emitting components are achieved via wires, with a sleeve fitted over the outside of the components and plugs and end caps fitted at both ends of the sleeve. This compact design integrates all components, ensuring normal operation of the light strip while facilitating overall installation and use.

[0043] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.

Claims

1. A 360-degree luminous neon light strip, characterized in that: The device includes a light-emitting component, a wire, a sleeve, a plug, and a tail plug. The wire is electrically connected to the light-emitting component. The sleeve is fitted over the outside of the light-emitting component. The plug passes through the wire and is fitted over one end of the sleeve. The tail plug is fitted over the other end of the sleeve. The light-emitting component has a first COB light strip and a second COB light strip that are attached to each other. The first COB light strip and the second COB light strip are elliptical cylindrical after being attached. Both the first COB light strip and the second COB light strip have a number of LEDs. The light-emitting directions of the LEDs of the first COB light strip and the LEDs of the second COB light strip are distributed in a 360-degree pattern.

2. The 360-degree luminous neon light strip according to claim 1, characterized in that: The light-emitting component also includes an adhesive layer, which is sheet-shaped. One side of the adhesive layer is bonded to a first COB LED strip, and the other side of the adhesive layer is bonded to a second COB LED strip. The end of the first COB LED strip has a pad, and the front end of the adhesive layer is flush with the front end of the second COB LED strip. The front end of the first COB LED strip extends beyond the front end of the adhesive layer, and the pad is disposed on the portion of the first COB LED strip that extends beyond the adhesive layer.

3. A 360-degree luminous neon light strip according to claim 1, characterized in that: The light-emitting component also includes an adapter plate, which is tightly attached to the upper surface of the first COB light strip via solder pads. The adapter plate is provided with a soldering part to facilitate soldering of wires, and the wires are soldered to the adapter plate through the soldering part.

4. A 360-degree luminous neon light strip according to claim 2, characterized in that: The adhesive layer is made of double-sided adhesive, which is in the shape of a long strip. The surfaces of the first COB LED strip and the second COB LED strip that are in contact with the adhesive layer are both planar.

5. A 360-degree luminous neon light strip according to claim 1, characterized in that: The sleeve has a through hole in the middle for the light-emitting component to pass through, and the light-emitting component is detachably located in the through hole; the plug has a wire-passing part for the wire to pass through, the wire-passing part is tubular, and the plug passes the wire through the wire-passing part and is sleeved on one end of the sleeve.

6. A 360-degree luminous neon light strip according to claim 1, characterized in that: The first COB light strip and the second COB light strip also each have several resistors, several LEDs connected in parallel, several resistors connected in parallel, and several resistors and several LEDs distributed in a grid pattern in a one-to-one correspondence.

7. A 360-degree luminous neon light strip according to claim 1, characterized in that: The sleeve is made of silicone. One end of the sleeve is coated with glue and fitted with a tail plug; the other end of the sleeve is coated with glue and fitted with a plug.

8. A 360-degree luminous neon light strip according to claim 1, characterized in that: The cross-sectional dimension of the sleeve is 13mm.