Lamp panel based on intelligent IC

The combination of a heat-conducting plate, a miniature cooling fan, and an exhaust head solves the problems of poor heat dissipation and unstable installation of LED light boards, achieving efficient heat dissipation and secure installation, extending the lifespan of the light boards and improving their stability.

CN120868408APending Publication Date: 2025-10-31XINHUA ELECTRIC APPLIANCES SHUNDE CITY
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Patent Information

Application Number
CN202511103128.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2025-10-31

AI Technical Summary

Technical Problem

Existing LED lights have poor heat dissipation because the light panels are fixed to the wall by the lamp holder and covered by the lamp cover. Prolonged high temperature will reduce the lifespan, and the installation method makes them susceptible to falling off due to external impact.

Method used

The lampshade is secured by a combination of heat-conducting plate, miniature cooling fan and air outlet. The operation of the miniature cooling fan is controlled by a temperature sensor. The lampshade is also securely fixed by a combination of inserts, slots and clips.

Benefits of technology

It achieves effective heat dissipation and secure installation of the lampshade, avoiding the impact of high temperature on the lamp panel, while improving the lifespan of the lamp panel and the stability of the installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a lamp panel based on an intelligent IC, and relates to the field of LED lamp panels, the lamp panel comprises a lamp panel main body, the outer side of the lamp panel main body is provided with a lamp holder, the lamp panel main body is provided with a temperature sensor, the inner side of the lamp holder is provided with a heat dissipation structure, and a lampshade is clamped on the lamp holder. By arranging the heat conducting plates, the micro cooling fans, the air outlet head, the LEDs and the like in daily use, the heat conducting plates conduct out heat generated by operation of the lamp panel body and conduct heat exchange through contact with air, primary cooling is achieved, meanwhile, a temperature sensor on the lamp panel body conducts temperature detection, and when the temperature reaches the ultra-high temperature, the heat conducting plates conduct heat dissipation on the lamp panel body. The micro cooling fan is controlled to operate, air outside the lamp holder is absorbed, the air enters the lamp holder through the air outlet head after being filtered by the dustproof net, air cooling is conducted on the lamp panel body, advanced heat dissipation is achieved, and the heat conduction plate and the micro cooling fan are used in cooperation, so that it can be guaranteed that the lamp panel body cannot be seriously affected by high temperature.
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Description

Technical Field

[0001] This invention relates to the field of LED light boards, specifically a light board based on a smart IC. Background Technology

[0002] LEDs, known as the fourth generation of lighting sources or green light sources, are characterized by energy saving, environmental friendliness, long lifespan, and small size. They are widely used in various fields such as indicators, displays, decorations, backlights, general lighting, and urban nightscapes. With the advancement of technology, our lives are becoming increasingly intelligent. In this rapidly changing era, smart home lighting systems are gradually changing our lifestyles. Dimming touch control ICs, as an important component of smart home lighting systems, are leading the future of smart lighting. A dimming touch control IC is a special integrated circuit that allows users to control the brightness and color of lights through touch or other means. This IC not only provides a convenient control method but also enables precise light adjustment, greatly improving lighting comfort and energy efficiency.

[0003] Existing LED light panels are fixed to the wall by lamp holders, and the panels are covered by lamp covers and lamp holders, resulting in poor heat dissipation. Heat cannot be dissipated in time, and prolonged high temperatures will reduce the lifespan of the light panels. Therefore, there is an urgent need for a light panel based on smart ICs. Summary of the Invention

[0004] The purpose of this invention is to address the problems of existing LED light panels, which are fixed to the wall by lamp holders and are encased by lamp covers and lamp holders, resulting in poor heat dissipation and heat that cannot be dissipated in time. Prolonged high temperatures reduce the lifespan of the light panel. Furthermore, the installation method of the lamp cover, light panel, and lamp holder is a snap-fit ​​fixation, which is prone to accidental falling due to external impacts. The invention provides a light panel based on a smart IC.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a lamp board based on a smart IC, comprising a lamp board body, a lamp holder disposed on the outer side of the lamp board body, a temperature sensor mounted on the lamp board body, a heat dissipation structure disposed on the inner side of the lamp holder, a lamp cover snapped onto the lamp holder, and a reinforcement structure disposed on the lamp cover.

[0006] The heat dissipation structure includes a heat-conducting plate, a miniature heat dissipation fan is installed on the outside of the lamp holder, a dustproof net is provided at the end of the miniature heat dissipation fan, and a mounting bracket is fixed on the outer wall of the miniature heat dissipation fan. An air outlet is connected to the inner side of the miniature heat dissipation fan.

[0007] The reinforcing structure includes a plug, a slot on the outer side of the plug, a support base on the outer wall of the lampshade, a spring connected to the inner side of the support base, a locking block at the end of the spring, and a pressing block movably disposed on the inner side of the lamp holder, with limit rods at both ends of the pressing block.

[0008] Preferably, the surface of the lamp panel body is equipped with lamp beads, and the lamp panel body is fixedly installed with the lamp holder.

[0009] Preferably, the temperature sensor and the miniature cooling fan are electrically connected via a PLC controller, the heat-conducting plate is fixedly connected to the bottom of the lamp board body with glue, and the heat-conducting plate is made of aluminum.

[0010] Preferably, the miniature cooling fan and the lamp holder are fixedly installed by a mounting bracket, and the dustproof net and the miniature cooling fan are fixedly installed by adhesive.

[0011] Preferably, the air outlet extends through to the inside of the lamp holder and is located above the lamp panel body, and the lamp holder has a through groove that matches the heat-conducting plate.

[0012] Preferably, a sealing ring is fixed to the outer wall of the lampshade, and the sealing ring is attached to the inner wall of the lamp holder. The insert is fixed to the outer wall of the lampshade, and the number of inserts and slots is four.

[0013] Preferably, the slot is formed on the inner wall of the lamp holder, and the lamp cover and the lamp holder are connected by a plug and a slot. The support is fixed on the outer wall of the lamp cover, and the plug and the support are movably connected by a spring.

[0014] Preferably, the inner side of the lamp holder is provided with an expansion groove that matches the extrusion block and a limiting groove that matches the limiting rod, and the number of the support base and the extrusion block is two.

[0015] Preferably, the lampshade and the lamp holder are engaged and fixed by a locking block and a telescopic groove.

[0016] Compared with the prior art, the beneficial effects of the present invention are: First, this invention, by setting up heat-conducting plates, miniature cooling fans, and air outlets, allows multiple heat-conducting plates to conduct heat generated by the LED panel during daily use. This heat is then exchanged with the air to achieve primary heat dissipation. Simultaneously, a temperature sensor on the LED panel detects the temperature. When the temperature reaches an extremely high level, the miniature cooling fan is activated to draw in air from outside the lamp holder. This air is then filtered through a dust filter and enters the lamp holder through the air outlet, providing air cooling to the LED panel and achieving advanced heat dissipation. The combined use of heat-conducting plates and miniature cooling fans ensures that the LED panel is not severely affected by high temperatures.

[0017] Secondly, this invention, by setting up inserts, slots, locking blocks, and telescopic grooves, aligns the four inserts on the outer wall of the lampshade with the four slots on the lamp holder and inserts them, so that the bottom of the lampshade is inserted into the lamp holder. After the two locking blocks on the outer wall of the lampshade press against the inner wall of the lamp holder, they compress the spring at one end and retract into the support base, so that the locking blocks continue to move downwards after retracting until they contact the telescopic groove. Then, under the elastic support of the spring, the locking blocks pop out and insert into the telescopic groove, so that the lampshade is locked and fixed to the lamp holder by the locking blocks and the telescopic groove. At the same time, the sealing ring on the outer wall of the lampshade covers the gap between the lampshade and the lamp holder, thereby ensuring the firmness and sealing of the lampshade installation. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the main body of the lamp panel of the present invention; Figure 3 This is a schematic diagram of the heat dissipation miniature cooling fan of the present invention; Figure 4 This is a schematic diagram of the air outlet of the present invention; Figure 5 This is a schematic diagram of the heat-conducting plate of the present invention; Figure 6 This is a schematic diagram of the card block of the present invention; Figure 7 This is a schematic diagram of the reinforcement structure of the present invention.

[0019] In the diagram: 1. Main body of the lamp panel; 2. Lamp beads; 3. Temperature sensor; 4. Heat dissipation structure; 401. Heat conduction plate; 402. Miniature cooling fan; 403. Mounting bracket; 404. Dustproof net; 405. Air outlet; 5. Lamp holder; 6. Lamp cover; 7. Reinforcing structure; 701. Insert block; 702. Slot; 703. Support base; 704. Spring; 705. Locking block; 706. Pressing block; 707. Limiting rod; 708. Sealing ring. Detailed Implementation

[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0021] Please see Figures 1-4A light board based on a smart IC includes a light board body 1, a lamp holder 5 disposed on the outer side of the light board body 1, a temperature sensor 3 mounted on the light board body 1, a heat dissipation structure 4 disposed on the inner side of the lamp holder 5, a lamp cover 6 snapped onto the lamp holder 5, a reinforcing structure 7 disposed on the lamp cover 6, the heat dissipation structure 4 including a heat-conducting plate 401, a miniature cooling fan 402 mounted on the outer side of the lamp holder 5, a dustproof mesh 404 disposed at the end of the miniature cooling fan 402, a mounting bracket 403 fixed to the outer wall of the miniature cooling fan 402, and an air outlet 405 connected to the inner side of the miniature cooling fan 402. LED beads 2 are mounted on the surface of the lamp panel body 1, and the lamp panel body 1 is fixedly mounted to the lamp holder 5. A temperature sensor 3 and a miniature cooling fan 402 are electrically connected via a PLC controller. A heat-conducting plate 401 is fixedly connected to the bottom of the lamp panel body 1 with adhesive, and the heat-conducting plate 401 is made of aluminum. The miniature cooling fan 402 is fixedly mounted to the lamp holder 5 via a mounting bracket 403, and a dustproof mesh 404 is fixedly mounted to the miniature cooling fan 402 with adhesive. An air outlet 405 extends through to the inside of the lamp holder 5 and is located above the lamp panel body 1. The lamp holder 5 has openings for connection with the heat-conducting plate 3. After the heat-conducting plates 401 are fixed to the lamp holder 5 by matching the through slots on the lamp holder 5, multiple heat-conducting plates 401 are then passed through the through slots on the lamp holder 5 and inserted into the lower part of the lamp holder 1. The heat-conducting plates 401 are then fixed to the bottom of the lamp holder 1 with glue. Simultaneously, a miniature cooling fan 402 is installed on one side of the lamp holder 5, and the exhaust head 405 on one side of the miniature cooling fan 402 is inserted into the inside of the lamp holder 5 and positioned above the lamp holder 1. During daily use, the LED lights are precisely adjusted based on the intelligent IC. At this time, the multiple heat-conducting plates 401 generate heat to the lamp holder 1. The heat is dissipated and exchanged with the air to achieve primary heat dissipation. At the same time, the temperature sensor 3 on the lamp board body 1 detects the temperature. When the temperature reaches an ultra-high temperature, the PLC controls the micro cooling fan 402 to run, generating suction to draw in the air outside the lamp holder 5. After the air passes through the dust filter 404, it enters the lamp holder 5 through the air outlet 405 to cool the lamp board body 1, achieving advanced heat dissipation. The combined use of the heat conduction plate 401 and the micro cooling fan 402 can ensure that the lamp board body 1 is not severely affected by the high temperature.

[0022] Please see Figures 5-7A lamp board based on a smart IC, wherein the reinforcing structure 7 includes an insert 701, a slot 702 is provided on the outer side of the insert 701, a support base 703 is provided on the outer wall of the lamp cover 6, a spring 704 is connected to the inner side of the support base 703, a locking block 705 is provided at the end of the spring 704, a pressing block 706 is movably provided on the inner side of the lamp holder 5, a limit rod 707 is provided at both ends of the pressing block 706, and a sealing ring 708 is fixed on the outer wall of the lamp cover 6. 8 is attached to the inner wall of the lamp holder 5, and the insert 701 is fixed to the outer wall of the lamp cover 6. There are four inserts 701 and four slots 702. The slots 702 are opened on the inner wall of the lamp holder 5, and the lamp cover 6 and the lamp holder 5 are connected by the inserts 701 and the slots 702. The support base 703 is fixed to the outer wall of the lamp cover 6, and the locking block 705 and the support base 703 are movably connected by the spring 704. The inner side of the lamp holder 5 is provided with telescopic grooves that match the pressing block 706 and limiters. The rod 707 has a matching limiting groove. There are two support bases 703 and two compression blocks 706. The lampshade 6 and lamp holder 5 are fixed together by locking blocks 705 and telescopic grooves. After the heat dissipation structure 4 is installed, the lampshade 6 is installed. The four insert blocks 701 on the outer wall of the lampshade 6 are aligned with the four slots 702 on the lamp holder 5 and inserted, so that the bottom of the lampshade 6 is inserted into the lamp holder 5. The two locking blocks 705 on the outer wall of the lampshade 6 then press against the inner wall of the lamp holder 5, compressing it. The spring 704 at the end retracts into the support base 703, causing the locking block 705 to retract and continue to move downward until the locking block 705 contacts the telescopic groove. Then, under the elastic support of the spring 704, the locking block 705 pops out and inserts into the telescopic groove, so that the lamp cover 6 is engaged and fixed with the lamp holder 5 by the locking block 705 and the telescopic groove. At the same time, the sealing ring 708 on the outer wall of the lamp cover 6 covers the gap between the lamp cover 6 and the lamp holder 5, thereby ensuring the firmness and sealing of the lamp cover 6 installation.

[0023] Working principle: In use, after fixing the lamp panel body 1 to the lamp holder 5, multiple heat-conducting plates 401 are passed through the slots on the lamp holder 5 and inserted into the lower part of the lamp panel body 1. The heat-conducting plates 401 are then fixed to the bottom of the lamp panel body 1 with glue. At the same time, a miniature cooling fan 402 is installed on one side of the lamp holder 5, and the exhaust head 405 on one side of the miniature cooling fan 402 is inserted into the inner side of the lamp holder 5 and located above the lamp panel body 1. After the heat dissipation structure 4 is installed, the lamp is turned on. To begin installing the lampshade 6, align the four inserts 701 on the outer wall of the lampshade 6 with the four slots 702 on the lamp holder 5 and insert them. This will allow the bottom of the lampshade 6 to be inserted into the lamp holder 5. The two locking blocks 705 on the outer wall of the lampshade 6 will then press against the inner wall of the lamp holder 5, compressing one end of the spring 704 and retracting into the support base 703. This causes the locking blocks 705 to retract and continue to move downwards until they contact the telescopic groove. Then, supported by the elastic force of the spring 704, the locking blocks 705 will pop out and insert. When the lampshade 6 is inserted into the telescopic groove, it is secured to the lamp holder 5 by the locking block 705 and the telescopic groove. At the same time, the sealing ring 708 on the outer wall of the lampshade 6 blocks the gap between the lampshade 6 and the lamp holder 5, thereby ensuring the firmness and sealing of the lampshade 6 installation. During daily use of LEDs, the light is precisely adjusted based on the intelligent IC. At this time, the multiple heat conduction plates 401 conduct heat dissipation generated by the operation of the lamp board body 1 and exchange heat with the air to achieve primary heat dissipation. Meanwhile, the temperature sensor 3 on the lamp board body 1 detects the temperature. When the temperature reaches an extremely high temperature, the PLC controls the micro cooling fan 402 to operate, generating suction to absorb the air outside the lamp holder 5. After the air is filtered by the dustproof net 404, it enters the lamp holder 5 through the air outlet 405 to cool the lamp board body 1, achieving advanced heat dissipation. The combined use of the heat conduction plate 401 and the micro cooling fan 402 can ensure that the lamp board body 1 is not severely affected by high temperature.

[0024] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A light board based on a smart IC, comprising a light board body (1), characterized in that: A lamp holder (5) is provided on the outer side of the lamp panel body (1), and a temperature sensor (3) is installed on the lamp panel body (1). A heat dissipation structure (4) is provided on the inner side of the lamp holder (5), and a lamp cover (6) is snapped onto the lamp holder (5). A reinforcement structure (7) is provided on the lamp cover (6). The heat dissipation structure (4) includes a heat-conducting plate (401), a miniature heat dissipation fan (402) is installed on the outside of the lamp holder (5), a dustproof net (404) is provided at the end of the miniature heat dissipation fan (402), and a mounting bracket (403) is fixed on the outer wall of the miniature heat dissipation fan (402). An air outlet (405) is connected to the inner side of the miniature heat dissipation fan (402). The reinforcing structure (7) includes a plug (701), a slot (702) is provided on the outer side of the plug (701), a support base (703) is provided on the outer wall of the lampshade (6), a spring (704) is connected to the inner side of the support base (703), a locking block (705) is provided at the end of the spring (704), and a pressing block (706) is movably provided on the inner side of the lamp holder (5), with limit rods (707) provided at both ends of the pressing block (706).

2. The LED board based on a smart IC according to claim 1, characterized in that: The lamp board body (1) is equipped with lamp beads (2) on its surface, and the lamp board body (1) is fixedly installed with the lamp holder (5).

3. The LED board based on a smart IC according to claim 1, characterized in that: The temperature sensor (3) and the miniature cooling fan (402) are electrically connected through a PLC controller. The heat-conducting plate (401) is fixedly connected to the bottom of the lamp board body (1) with glue, and the heat-conducting plate (401) is made of aluminum.

4. A light board based on a smart IC according to claim 1, characterized in that: The miniature cooling fan (402) and the lamp holder (5) are fixedly installed by the mounting bracket (403), and the dustproof net (404) and the miniature cooling fan (402) are fixedly installed by glue.

5. A light board based on a smart IC according to claim 1, characterized in that: The air outlet (405) extends through to the inside of the lamp holder (5) and is located above the lamp panel body (1). The lamp holder (5) has a through groove that matches the heat conduction plate (401).

6. A light board based on a smart IC according to claim 1, characterized in that: The outer wall of the lampshade (6) is fixed with a sealing ring (708), and the sealing ring (708) is attached to the inner wall of the lamp holder (5). The plug (701) is fixed to the outer wall of the lampshade (6), and the number of plug (701) and slot (702) is four.

7. A light board based on a smart IC according to claim 1, characterized in that: The slot (702) is opened on the inner wall of the lamp holder (5), and the lamp cover (6) and the lamp holder (5) are engaged and connected by the insert (701) and the slot (702). The support (703) is fixed on the outer wall of the lamp cover (6), and the insert (705) and the support (703) are movably connected by the spring (704).

8. A light board based on a smart IC according to claim 1, characterized in that: The inner side of the lamp holder (5) is provided with a telescopic groove that matches the extrusion block (706) and a limiting groove that matches the limiting rod (707). The number of the support base (703) and the extrusion block (706) is two.

9. A light board based on a smart IC according to claim 1, characterized in that: The lampshade (6) and the lamp holder (5) are engaged and fixed by a locking block (705) and a telescopic groove.