LED frame lamp

By integrating an MCU and signal interface into the LED bracket light, power and signal transmission are realized, and the auxiliary light is plugged in to cooperate with the main light, which solves the problem of limited functionality of existing LED bracket lights and improves the intelligence and stability of the lighting system.

CN223740744UActive Publication Date: 2025-12-30NINGBO SUNPU OPTO SEMICON
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Patent Information

Application Number
CN202423310785.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing LED bracket lights lack signal line interfaces, which limits their functional expansion and application flexibility, and makes it impossible to achieve effective signal transmission and control.

Method used

An LED bracket light was designed. The main light integrates an MCU and a signal interface, which can transmit power and signals and be operated via an infrared remote control. The secondary light integrates a second MCU to receive signals from the main light and control the lighting effects. Multiple secondary lights are connected mechanically and electrically through plug-in cooperation to ensure the transmission of signals and power.

Benefits of technology

It enables the main light and auxiliary light to work together, improving the intelligence and stability of the lighting system. Users can perform various controls via remote control. The failure of the auxiliary light does not affect the overall system, thus improving the system's reliability and functional versatility.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223740744U_ABST
Patent Text Reader

Abstract

The utility model discloses an LED frame lamp which comprises a main lamp, a first lamp panel and a first driving module are fixedly arranged in the main lamp, the first lamp panel is electrically connected with the first driving module, a plurality of first lamp beads are integrated on the front face of the first lamp panel, and a first MCU is integrated on the back face of the first lamp panel. A first socket and a second socket are arranged on the two sides of the main lamp respectively, a first power interface is formed in the first socket, the input end of the first power interface is electrically connected with the mains supply, the output end of the first power interface is electrically connected with the first driving module, and a second power interface and a first signal interface are formed in the second socket. The input end of the second power supply interface is electrically connected with the first driving module, the first signal interface is electrically connected with the first MCU, the first signal interface can transmit signals of the main lamp, and the main lamp not only can provide illumination for the main lamp, but also can transmit a power supply and the signals to the outside.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a lamp technical field, especially a kind of LED support lamp. BACKGROUND

[0002] LED support lamp is a kind of modern lighting equipment, with its high efficiency energy saving, long life and environmental protection characteristics and is widely welcomed.This kind of lamp usually adopts LED (light emitting diode) technology, provides bright and uniform light, is suitable for a variety of occasions, including family, office, shop and outdoor space.But the existing LED support lamp, most cases are equipped with only power interface for power, when LED support lamp needs to receive and transmit signal, often need to connect signal line, unfortunately, conventional LED support lamp does not set the interface specially used for connecting signal line, which limits its function expansion and application flexibility to some extent. SUMMARY

[0003] The utility model aims at the defects and deficiencies of prior art, provide a kind of LED support lamp, its structure is simple and reasonable, easy to operate, main light not only provides illumination for itself, can also transmit power and signal outward, user can also operate and manage the various settings of main light by infrared remote controller, in addition, at least one vice light is also provided with the cooperation connection of main light, when there are two or more vice lights, the first vice light is inserted with the second vice light, realize mechanical connection and electrical connection, second MCU is integrated in vice light, for receiving the signal of main light and then controlling the running and light effect transformation of vice light.

[0004] To achieve the above object, the utility model adopts the following technical scheme:

[0005] A kind of LED support lamp of the utility model, including main light, first lamp plate and first drive module are fixedly arranged in the main light, the first lamp plate is electrically connected with first drive module, the front of the first lamp plate is integrated with a plurality of first lamp beads, the back of the first lamp plate is integrated with first MCU, the two sides of the main light are provided with first socket and second socket respectively, first power interface is provided on the first socket, the input end of first power interface is electrically connected with commercial power, the output end of first power interface is electrically connected with first drive module, second power interface and first signal interface are provided on the second socket, the input end of second power interface is electrically connected with first drive module, the first signal interface is electrically connected with first MCU.

[0006] Further, it further includes remote controller, and the remote controller is electrically connected with the first MCU.

[0007] Further, the remote controller is provided with a plurality of remote control switches for controlling the main lamp to work, the remote controller is provided with an infrared emission module electrically connected with the first MCU, and the remote control switches are electrically connected with the infrared emission module.

[0008] Further, at least one sub-lamp connected with the main lamp is further included, the sub-lamp is internally fixedly provided with a second lamp plate and a second driving module, the second lamp plate is electrically connected with the second driving module, a plurality of second lamp beads are integrated on the front face of the second lamp plate, a second MCU is integrated on the back face of the second lamp plate, a third socket and a fourth socket are respectively arranged on the two sides of the sub-lamp, a third power interface and a second signal interface are arranged on the third socket, the input end of the third power interface is electrically connected with the second power interface, the input end of the second signal interface is electrically connected with the first signal interface, the output ends of the third power interface and the second signal interface are electrically connected with the second driving module, a fourth power interface and a third signal interface are arranged on the fourth socket, the input end of the fourth power interface is electrically connected with the second driving module, and the input end of the third signal interface is electrically connected with the second MCU.

[0009] Further, when the sub-lamp is two or more, the output end of the fourth power interface of the former sub-lamp is electrically connected with the third power interface of the latter sub-lamp, and the output end of the third signal interface of the former sub-lamp is electrically connected with the second power interface of the latter sub-lamp.

[0010] Further, the fourth socket of the former sub-lamp is plug-connected with the third socket of the latter sub-lamp, so that mechanical connection and electrical connection are formed between the former sub-lamp and the latter sub-lamp.

[0011] Further, the second socket is plug-connected with the third socket, so that mechanical connection and electrical connection are formed between the main lamp and the sub-lamp.

[0012] Further, a connecting piece is further included, the second socket and the third socket or the fourth socket of the former sub-lamp and the third socket of the latter sub-lamp are plug-connected through the connecting piece to form mechanical connection and electrical connection.

[0013] Further, the connecting piece comprises a fifth socket and a sixth socket, the fifth socket and the sixth socket are electrically connected with a connecting line, the fifth socket is plugged with the second socket or the fourth socket, the sixth socket is plugged with the third socket, the fifth socket is provided with a fifth power interface and a fourth signal interface, the fifth power interface is plugged with the second power interface or the fourth power interface, the fourth signal interface is plugged with the first signal interface or the third signal interface, the sixth socket is provided with a sixth power interface and a fifth signal interface, the sixth power interface is plugged with the third power interface, and the fifth signal interface is plugged with the second signal interface.

[0014] Further, the fourth socket of the last end sub-lamp is further provided with a cover plate.

[0015] The LED support lamp has the following advantages: the first MCU can receive the instruction of the remote controller, and the main lamp is intelligently controlled, the user can operate and manage various settings of the main lamp through the infrared remote controller, such as adjusting the brightness and color temperature, so as to improve the user experience, the main lamp is provided with the first signal interface, and the signal of the main lamp can be transmitted, and at least one sub-lamp connected with the main lamp is further provided, when the number of the sub-lamps is two or more, the front sub-lamp is plugged with the rear sub-lamp, mechanical connection and electrical connection are realized, the sub-lamps work cooperatively with the main lamp, the lighting effect and the diversity of functions are further enhanced, the second MCU is integrated in the sub-lamp, and is used for receiving the signal of the main lamp and then controlling the operation and the change of the light effect of the sub-lamp, the main lamp not only provides illumination for itself, but also transmits the power and the signal to the sub-lamp, so that the whole lighting system is more efficient and intelligent, when the main lamp is on, the sub-lamps are also on, if one of the sub-lamps in the sub-lamp sequence is faulty, the sub-lamps after the faulty sub-lamp will not be on, but the sub-lamps before the faulty sub-lamp can still work normally, the design avoids the condition that the whole lighting system cannot work due to the fault of one lamp, and the stability and reliability of the system are improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a connection structure schematic view of the main lamp, the connecting piece and the sub-lamp;

[0017] Figure 2 is a structure schematic view of the connecting piece;

[0018] Figure 3 is an enlarged structure schematic view of the fifth socket;

[0019] Figure 4 is an enlarged structure schematic view of the sixth socket;

[0020] Figure 5 is a structure schematic view of the direct plug connection of the main lamp and the sub-lamp;

[0021] Figure 6 is a structural schematic diagram of the main lamp at a first viewing angle;

[0022] Figure 7 is Figure 6 an enlarged structural schematic diagram at A in FIG. 1;

[0023] Figure 8 is a structural schematic diagram of the main lamp at a second viewing angle;

[0024] Figure 9 is Figure 8 an enlarged structural schematic diagram at B in FIG. 1;

[0025] Figure 10 is a structural schematic diagram of the auxiliary lamp at a third viewing angle;

[0026] Figure 11 is Figure 10 an enlarged structural schematic diagram at C in FIG. 1;

[0027] Figure 12 is a structural schematic diagram of the auxiliary lamp at a fourth viewing angle;

[0028] Figure 13 is Figure 12 an enlarged structural schematic diagram at D in FIG. 1;

[0029] Figure 14 is an exploded structural schematic diagram of the main lamp;

[0030] Figure 15 is an exploded structural schematic diagram of the auxiliary lamp;

[0031] Figure 16 is a circuit block diagram between the main lamp and the auxiliary lamp.

[0032] Figures 1-16 In FIG. 1: 1, main lamp; 11, first lamp plate; 12, first driving module; 111, first lamp bead; 112, first MCU; 13, first socket; 131, first power interface; 14, second socket; 141, second power interface; 142, first signal interface; 2, auxiliary lamp; 21, second lamp plate; 211, second lamp bead; 22, second driving module; 23, second MCU; 24, third socket; 241, third power interface; 242, second signal interface; 25, fourth socket; 251, fourth power interface; 252, third signal interface; 3, connecting piece; 31, fifth socket; 311, fifth power interface; 312, fourth signal interface; 32, sixth socket; 321, sixth power interface; 322, fifth signal interface; 33, connecting line; 4, first control switch; 5, second control switch; 6, cover plate. DETAILED DESCRIPTION

[0033] The utility model will be further described below with reference to the drawings.

[0034] As Figures 1-16 The utility model discloses a LED support lamp, including main light 1, referring to Figure 14 First lamp plate 11 and first drive module 12 are fixedly arranged in main light 1, first lamp plate 11 is electrically connected with first drive module 12, the front of first lamp plate 11 is integrated with a plurality of first lamp pearl 111, specifically, first lamp pearl 111 is RGB three color lamp pearl, can emit the light of multiple colors, provides rich lighting selection for user, the back of first lamp plate 11 is integrated with first MCU 112, is used to control the luminous mode and luminance parameter of lamp pearl, the both sides of main light 1 are provided with first socket 13 and second socket 14 respectively, referring to Figures 6-7 First power interface 131 is arranged on first socket 13, the input end of first power interface 131 can be electrically connected with commercial power, and the output end of first power interface 131 is electrically connected with first drive module 12, referring to Figures 8-9 Second power interface 141 and first signal interface 142 are arranged on second socket 14, can deliver the power and signal of main light 1, the input end of second power interface 141 is electrically connected with first drive module 12, and first signal interface 142 is electrically connected with first MCU 112.

[0035] Preferably, the embodiment further includes a remote control, the remote control is electrically connected with the first MCU 112, so that the first MCU 112 can receive the instruction of the remote control, realizing the intelligent control of the LED support lamp, and the user can operate and manage various settings of the LED support lamp, such as adjusting the brightness, color temperature, etc., thereby improving the user experience.

[0036] Preferably, in the embodiment, the remote control is provided with a plurality of remote control switches for controlling the operation of the main light 1, for controlling various functions of the main light 1, so that the user can easily adjust the brightness, color temperature and other parameters of the main light 1, and the remote control is provided with an infrared emission module electrically connected with the first MCU 112, and the remote control switches are electrically connected with the infrared emission module.

[0037] Preferably, in the embodiment, referring to Figure 1 Further comprising at least one sub-light 2 connected with the main light 1, the sub-lights 2 work cooperatively with the main light 1, further enhancing the lighting effect and the diversity of functions, preferably, in the embodiment, the main light 1 is provided with a first control switch 4, and the sub-light 2 is provided with a second control switch 5, the control switches allow the user to independently control the on-off state of each lamp, thereby realizing fine adjustment of the lighting environment, referring to Figure 15The second lamp 2 is internally fixed with a second lamp plate 21 and a second driving module 22, the second lamp plate 21 is electrically connected with the second driving module 22, a plurality of second lamp beads 211 are integrated on the front face of the second lamp plate 21, specifically, the second lamp beads 211 are RGB three-color lamp beads, which can emit light of multiple colors to provide users with rich lighting options, a second MCU 23 is integrated on the back face of the second lamp plate 21, which is used for receiving signals of the main lamp 1 to control the operation and light effect transformation of the second lamp 2, the two sides of the second lamp 2 are respectively provided with a third socket 24 and a fourth socket 25, referring to Figures 10-11 The third socket 24 is provided with a third power interface 241 and a second signal interface 242, the input end of the third power interface 241 is electrically connected with the second power interface 141, the input end of the second signal interface 242 is electrically connected with the first signal interface 142, specifically, the output ends of the third power interface 241 and the second signal interface 242 are electrically connected with the second driving module 22, referring to Figures 12-13 The fourth socket 25 is provided with a fourth power interface 251 and a third signal interface 252, the input end of the fourth power interface 251 is electrically connected with the second driving module 22, and the input end of the third signal interface 252 is electrically connected with the second MCU 23. In this way, the main lamp 1 not only provides illumination for itself, but also transmits power and signals to the second lamp 2, so that the whole lighting system is more efficient and intelligent.

[0038] Preferably, in the embodiment, when the second lamp 2 is two or more, the output end of the fourth power interface 251 of the first second lamp 2 is electrically connected with the third power interface 241 of the second second lamp 2, and the output end of the third signal interface 252 of the first second lamp 2 is electrically connected with the second power interface 141 of the second second lamp 2. This connection mode ensures that the power and signals between the second lamps 2 can be smoothly transmitted, so that the operation of the whole lighting system is more stable and efficient.

[0039] Preferably, the first driving module 12 and the second driving module 22 each comprise an independent power supply and a control board, the independent power supply is electrically connected with the control board, and a third MCU is further electrically connected on the control board, the control board of the first driving module 12 is electrically connected with the first lamp plate 11, the control board of the second driving module 22 is electrically connected with the second lamp plate 21, and the third MCU can be used to transmit signals of the main lamp 1 to the auxiliary lamp 2, so that the main lamp 1 and the auxiliary lamp 2 can work coordinately, thereby realizing more intelligent and flexible lighting control, and the independent power supply is arranged in the main lamp 1 and the auxiliary lamp 2, specifically, when the main lamp 1 is turned on, the auxiliary lamp 2 is also turned on, if one of the auxiliary lamps 2 in the auxiliary lamp 2 sequence fails, the auxiliary lamp 2 after the failed auxiliary lamp 2 will not be turned on, but the auxiliary lamp 2 before the failed auxiliary lamp 2 can still work normally, and the design avoids the condition that the whole lighting system cannot work due to the failure of one lamp, and improves the stability and reliability of the system.

[0040] Referring to Figure 13 , the fourth socket 25 of the last auxiliary lamp 2 is further provided with a cover plate 6, which plays a role of dust prevention and protection.

[0041] Preferably, in the embodiment, referring to Figure 1 , the second socket 14 and the third socket 24 are plug-in matched, so that the main lamp 1 and the auxiliary lamp 2 are mechanically connected and electrically connected, preferably, in the embodiment, the fourth socket 25 of the former auxiliary lamp 2 is plug-in matched with the third socket 24 of the latter auxiliary lamp 2, so that the former auxiliary lamp 2 and the latter auxiliary lamp 2 are mechanically connected and electrically connected through the direct insertion mode, which has the advantage of small connection gap and is more beautiful.

[0042] Preferably, in the embodiment, referring to Figures 2-4The connecting piece 3 is connected between the second socket 14 and the third socket 24 or between the fourth socket 25 of the former auxiliary lamp 2 and the third socket 24 of the latter auxiliary lamp 2 to form a mechanical connection and an electrical connection. Preferably, the connecting piece 3 comprises a fifth socket 31 and a sixth socket 32, the fifth socket 31 and the sixth socket 32 are electrically connected by a connecting wire 33, the fifth socket 31 is connected with the second socket 14 or the fourth socket 25, and the sixth socket 32 is connected with the third socket 24. In the case of installation inconvenience such as corner, the connecting piece 3 can be used to conveniently realize the connection, thereby overcoming the limitation of the direct insertion mode in specific cases. The fifth socket 31 is provided with a fifth power interface 311 and a fourth signal interface 312, the fifth power interface 311 is connected with the second power interface 141 or the fourth power interface 251, and the fourth signal interface 312 is connected with the first signal interface 142 or the third signal interface 252. Specifically, the sixth socket 32 is provided with a sixth power interface 321 and a fifth signal interface 322, the sixth power interface 321 is connected with the third power interface 241, and the fifth signal interface 322 is connected with the second signal interface 242. Specifically, the first power interface 131, the third power interface 241, the second signal interface 242, the fifth power interface 311 and the fourth signal interface 312 are two wire posts arranged side by side, the second power interface 141, the first signal interface 142, the fourth power interface 251, the third signal interface 252, the sixth power interface 321 and the fifth signal interface 322 are two wire holes arranged side by side, and the wire post and the wire hole are connected to realize a mechanical connection and an electrical connection.

[0043] The above only describes the preferred embodiments of the present application, and equivalent changes or modifications made according to the structure, features and principles of the present application patent application range are included in the present application patent application range.

Claims

1. An LED fixture, characterized by: The utility model provides a kind of main light (1), first lamp plate (11) and first drive module (12) are fixedly arranged in the main light (1), the first lamp plate (11) is electrically connected with first drive module (12), the front of the first lamp plate (11) is integrated with a plurality of first lamp beads (111), the back of the first lamp plate (11) is integrated with first MCU (112), the two sides of the main light (1) are provided with first socket (13) and second socket (14) respectively, first power interface (131) is provided on the first socket (13), the input end of first power interface (131) is electrically connected with commercial power, the output end of first power interface (131) is electrically connected with first drive module (12), second power interface (141) and first signal interface (142) are provided on the second socket (14), the input end of second power interface (141) is electrically connected with first drive module (12), the first signal interface (142) is electrically connected with first MCU (112).

2. The LED can light of claim 1, wherein: Further comprising a remote controller, the remote controller is electrically connected with the first MCU (112).

3. The LED can light of claim 2, wherein: The remote controller is provided with a plurality of remote control switches for controlling the operation of the main light (1), and the remote controller is provided with an infrared emission module electrically connected with the first MCU (112).

4. The LED can light of claim 1, wherein: Further comprising at least one sub-light (2) connected with the main light (1), the sub-light (2) is fixedly provided with second lamp plate (21) and second drive module (22) inside, the second lamp plate (21) is electrically connected with second drive module (22), the front of the second lamp plate (21) is integrated with a plurality of second lamp beads (211), the back of the second lamp plate (21) is integrated with second MCU (23), the two sides of the sub-light (2) are provided with third socket (24) and fourth socket (25) respectively, third power interface (241) and second signal interface (242) are provided on the third socket (24), the input end of third power interface (241) is electrically connected with second power interface (141), the input end of second signal interface (242) is electrically connected with first signal interface (142), the output end of third power interface (241) and second signal interface (242) is electrically connected with second drive module (22), fourth power interface (251) and third signal interface (252) are provided on the fourth socket (25), the input end of fourth power interface (251) is electrically connected with second drive module (22), the input end of third signal interface (252) is electrically connected with second MCU (23).

5. The LED can light of claim 4, wherein: When the sub-light (2) is two or more, the output end of the fourth power interface (251) of the former sub-light (2) is electrically connected with the third power interface (241) of the latter sub-light (2), and the output end of the third signal interface (252) of the former sub-light (2) is electrically connected with the second power interface (141) of the latter sub-light (2).

6. The LED can light of claim 5, wherein: The fourth socket (25) of the former auxiliary lamp (2) is plugged with the third socket (24) of the latter auxiliary lamp (2), so that the mechanical connection and electrical connection are formed between the former auxiliary lamp (2) and the latter auxiliary lamp (2).

7. The LED can light of claim 4, wherein: The second socket (14) is plugged with the third socket (24), so that the mechanical connection and electrical connection are formed between the main lamp (1) and the auxiliary lamp (2).

8. The LED can light of claim 4, wherein: The connecting piece (3) is further included, and the second socket (14) and the third socket (24) or the fourth socket (25) of the former auxiliary lamp (2) and the third socket (24) of the latter auxiliary lamp (2) are plugged through the connecting piece (3) to form the mechanical connection and electrical connection.

9. The LED can light of claim 8, wherein: The connecting piece (3) includes a fifth socket (31) and a sixth socket (32), the fifth socket (31) and the sixth socket (32) are electrically connected with a connecting line (33), the fifth socket (31) is plugged with the second socket (14) or the fourth socket (25), the sixth socket (32) is plugged with the third socket (24), the fifth socket (31) is provided with a fifth power interface (311) and a fourth signal interface (312), the fifth power interface (311) is plugged with the second power interface (141) or the fourth power interface (251), the fourth signal interface (312) is plugged with the first signal interface (142) or the third signal interface (252), the sixth socket (32) is provided with a sixth power interface (321) and a fifth signal interface (322), the sixth power interface (321) is plugged with the third power interface (241), and the fifth signal interface (322) is plugged with the second signal interface (242).

10. The LED can light of claim 4, wherein: The fourth socket (25) of the auxiliary lamp (2) at the end is further provided with a cover plate (6).