High-power thick-beam LED stage lamp

By designing a high-power thick-beam LED stage light and utilizing the intelligent control of the rotating bracket, LED lamp head and color plate assembly, the problem of low intelligence level of existing LED beam lights is solved, and a rich and colorful combination of patterns, colors and lasers is achieved, thereby enhancing the entertainment effect.

CN223318954UActive Publication Date: 2025-09-09广东斯芭克舞台设备有限公司
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Patent Information

Application Number
CN202422982057.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-09-09
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

Existing LED beam lights have a low level of intelligence, limited pattern and color changes, and it is difficult to achieve automatic coordination of patterns, colors and lasers.

Method used

A high-power thick-beam LED stage light was designed. By coordinating the rotating bracket, LED lamp head, color plate and pattern plate components, combined with the oscillator laser, intelligent control of patterns, colors and lasers was achieved, and colorful combinations were achieved using the main control chip and motor drive system.

Benefits of technology

It realizes the intelligent coordination of patterns, colors and lasers, provides rich variations, improves the level of intelligence and enhances the entertainment effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a high-power thick-beam LED stage lamp. The high-power thick-beam LED stage lamp comprises a main machine; the rotating bracket is mounted at the top of the host; the LED lamp holder comprises an outer cover shell, a lens assembly is installed in the outer cover shell, a color chip disc and pattern disc assembly is installed below the lens assembly, and a rotary support lug shaft assembly is installed between the lens assembly and the color chip disc and pattern disc assembly. An LED light source and a heat dissipation assembly are installed below the color chip disc and the pattern disc assembly. The high-power thick-beam LED stage lamp is reasonable in design, convenient to carry, high in intelligent degree, capable of achieving intelligent matching of patterns, colors and lasers and rich in change.
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Description

Technical Field

[0001] The utility model relates to the technical field of stage lamps, in particular to a high-power thick-beam LED stage lamp. Background Art

[0002] Beam lights concentrate light sources at a single focal point, allowing them to be emitted in a more concentrated manner to form a beam. These lights are called beam lights, or more commonly, spotlights. With the improvement of people's living standards, various entertainment activities have become an important part of people's lives. Beam lights, while essential for adding ambiance to entertainment activities, currently have some shortcomings. Existing LED beam lights generally only have a focusing function, lacking pattern or color variations. Even if they do, the pattern and color combinations are limited in style and variety, and generally lack a laser effect. Furthermore, their low level of intelligence makes it difficult to automatically coordinate patterns, colors, and lasers, and therefore require improvement. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the utility model proposes a high-power coarse-beam LED stage light with a high degree of intelligence, which can realize the intelligent coordination of patterns, colors and lasers and has rich variations.

[0004] The utility model provides a high-power coarse-beam LED stage light, comprising: a main unit; a rotating bracket mounted on the top of the main unit; an LED lamp head mounted on the rotating bracket, the LED lamp head comprising an outer cover shell, a lens assembly mounted in the outer cover shell, a color plate and a pattern plate assembly mounted below the lens assembly, a rotating trunnion assembly mounted between the lens assembly and the color plate and pattern plate assembly, an LED light source and a heat dissipation assembly mounted below the color plate and pattern plate assembly, the lens assembly comprising a lens mounting bracket, a focusing lens mounted on the lens mounting bracket, an upwardly extending side support bracket further mounted on the lens mounting bracket, a light-emitting lens mounted on the side support bracket, And light-blocking plates are installed on the left and right sides of the light-emitting lens; the color plate and pattern plate assembly includes a mounting base, a central light-transmitting hole is provided on the mounting base, the top surface of the mounting base is located on one side of the central light-transmitting hole and is equipped with a oscillating crystal laser, the bottom surface of the mounting base is located on one side of the central light-transmitting hole and is equipped with a pattern plate and a color plate, and the pattern plate and the color plate are respectively driven by a pattern plate driving motor and a color plate driving motor installed on the mounting base; the LED light source and heat dissipation assembly includes a heat dissipation plate, the LED light source is installed on the heat dissipation plate and is located directly below the central light-transmitting hole provided on the mounting base, the radiator is installed on the bottom of the heat dissipation plate and is located directly below the LED light source, and the cooling fan is installed on one side of the radiator.

[0005] In the above technical solution, during actual operation, the main unit can be used to control the rotating bracket to drive the LED lamp head to rotate and shake its head. Through the structural design of the LED lamp head and the coordination between the pattern plate, the color plate and the oscillating crystal laser in the color plate and pattern plate assembly, a variety of patterns, combinations of colors and lasers can be generated. During actual operation, the LED light source generates light, which is emitted outward through the central light-transmitting hole via the focusing lens and the light-emitting lens. When the light source passes through the central light-transmitting hole, the pattern plate drive motor and the color plate drive motor respectively drive the pattern plate and the color plate to rotate, and at the same time the oscillating crystal laser emits laser, which can generate a variety of patterns, combinations of colors and lasers, and the changes are very rich.

[0006] Preferably, the rotating trunnion assembly includes a trunnion mounting bracket, which is installed between the lens mounting bracket and the mounting seat. The rotating trunnion is installed on the trunnion mounting bracket and extends horizontally outside the outer cover shell to dock with the rotating bracket.

[0007] Preferably, the rotating bracket includes a U-shaped bracket body, a bracket shaft is installed at the bottom of the U-shaped bracket body, the bottom of the bracket shaft is installed on the main unit, a shaft drive motor is installed on the U-shaped bracket body and connected to the bracket shaft, both sides of the U-shaped bracket body are provided with rotating ear shaft holes, the rotating ear shaft holes are connected to the rotating ear shafts, a swing drive motor is installed on the U-shaped bracket body and connected to one of the rotating ear shafts, and a side cover and an outer cover are respectively installed on the outside of the U-shaped bracket body. During actual operation, the shaft drive motor can drive the bracket shaft to drive the U-shaped bracket body to rotate rapidly in the horizontal direction, and the swing drive motor can drive the rotating ear shaft to drive the LED lamp head to shake in the vertical direction.

[0008] Preferably, the host includes an inner bracket, a main control chip is mounted on the inner bracket, a host housing is mounted on the outside of the inner bracket, a host heat sink is mounted on the top of the host housing, a rotating shaft is mounted on the host heat sink, the rotating shaft is docked with the bracket shaft in the rotating bracket, a control panel is mounted on the front side of the host housing, and a signal docking interface and a power module are mounted on the rear side of the host housing. During actual operation, working parameters can be set through the control panel, external signals can be input and output through the signal docking interface, power can be input through the power module, the host heat sink can enhance the heat dissipation of the host, and the main control chip can control the intelligent operation of the rotating bracket and the LED lamp head.

[0009] Preferably, handles are installed on both the left and right sides of the main body shell to facilitate the overall carrying of the high-power thick beam LED stage light.

[0010] The utility model provides a high-power coarse-beam LED stage light with the following beneficial effects: the high-power coarse-beam LED stage light has a reasonable design, is easy to carry, and has a high degree of intelligence. It can realize the intelligent coordination of patterns, colors, and lasers, and has a rich variety of variations. In actual operation, the host can control the rotating bracket to drive the LED lamp head to rotate and shake its head. Through the structural design of the LED lamp head, through the coordination between the pattern disk, the color disk, and the oscillating crystal laser in the color disk and pattern disk assembly, a rich variety of patterns, colors, and laser combinations can be produced. In actual operation, the LED light source generates light, which is emitted outward through the central light hole via the focusing lens and the light output lens. When the light passes through the central light hole, the pattern disk drive motor and the color disk drive motor respectively drive the pattern disk and the color disk to rotate, while the oscillating crystal laser emits laser light, which can produce a rich variety of patterns, colors, and laser combinations, and has a rich variety of variations. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 It is a three-dimensional structural diagram of the utility model.

[0012] Figure 2 This is a schematic diagram of the three-dimensional structure explosion of the utility model Figure I .

[0013] Figure 3 This is a schematic diagram of the three-dimensional structure explosion of the utility model Figure II .

[0014] Figure 4 This is a schematic diagram of the internal structure installation of the LED lamp holder in the present utility model.

[0015] Figure 5 This is an exploded diagram of the assembly three-dimensional structure of the LED lamp holder in this utility model Figure I .

[0016] Figure 6 This is an exploded diagram of the assembly three-dimensional structure of the LED lamp holder in this utility model Figure II .

[0017] In the figure: 1. Host; 11. Inner bracket; 12. Host shell; 13. Control panel; 14. Rotating shaft; 15. Host heat sink; 16. Signal docking interface; 17. Power module; 18. Main control chip; 2. Rotating bracket; 21. U-shaped bracket body; 22. Side cover; 23. Outer cover; 24. Bracket shaft; 25. Shaft drive motor; 26. Swing drive motor; 27. Rotating ear shaft hole; 3. LED lamp head; 31. Outer cover shell; 32. Rotating ear shaft assembly; 321. Ear shaft mounting bracket; 322. Rotating bracket Ear axis; 33. Lens assembly; 331. Lens mounting bracket; 332. Light baffle; 333. Side support frame; 334. Light-emitting lens; 335. Focusing lens; 34. Color plate and pattern plate assembly; 341. Mounting seat; 342. Center light hole; 343. Pattern plate drive motor; 344. Color plate drive motor; 345. Oscillator laser; 346. Pattern plate; 347. Color plate; 35. LED light source and heat dissipation assembly; 351. Heat sink; 352. LED light source; 353. Cooling fan; 354. Radiator. DETAILED DESCRIPTION

[0018] The following is a clear and complete description of the technical solutions in the embodiments of the present invention, in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. All other embodiments obtained by ordinary persons in this field without creative work are within the scope of protection of the present invention.

[0019] Embodiment: A high-power thick-beam LED stage light.

[0020] Reference Figures 1 to 6 As shown, a high-power thick beam LED stage light includes:

[0021] The main unit 1 includes an inner bracket 11, on which a main control chip 18 is mounted. A main unit housing 12 is mounted on the outside of the inner bracket 11. A main unit heat sink 15 is mounted on the top of the main unit housing 12. A rotating shaft 14 is mounted on the main unit heat sink 15, which docks with the bracket shaft 24 in the rotating bracket 2. A control panel 13 is mounted on the front side of the main unit housing 12, and a signal docking interface 16 and a power module 17 are mounted on the rear side of the main unit housing 12. During operation, operating parameters can be set through the control panel 13, external signals can be input and output through the signal docking interface 16, and power can be input through the power module 17. The main unit heat sink 15 enhances heat dissipation, and the main control chip 18 controls the intelligent operation of the rotating bracket 2 and the LED lamp head 3. Handles are mounted on both the left and right sides of the main unit housing 12 to facilitate the overall portability of the high-power coarse-beam LED stage light.

[0022] The rotating bracket 2 is mounted on top of the main unit 1. The rotating bracket 2 includes a U-shaped bracket body 21. A bracket shaft 24 is mounted at the bottom of the U-shaped bracket body 21. The bottom of the bracket shaft 24 is mounted on the rotating shaft 14 of the main unit 1. A shaft drive motor 25 is mounted on the U-shaped bracket body 21 and connected to the bracket shaft 24. Rotating trunnion holes 27 are provided on both sides of the U-shaped bracket body 21. The rotating trunnion holes 27 mate with rotating trunnion shafts 322 on the LED lamp head 3. A swing drive motor 26 is mounted on the U-shaped bracket body 21 and connected to one of the rotating trunnion shafts 322. Side covers 22 and an outer cover 23 are mounted on the outside of the U-shaped bracket body 21. During actual operation, the shaft drive motor 25 can drive the bracket shaft 24 to cause the U-shaped bracket body 21 to rotate rapidly in the horizontal direction. The swing drive motor 26 can drive the rotating trunnion shaft 322 to cause the LED lamp head 3 to shake in the vertical direction.

[0023] An LED lamp head 3 is mounted on a rotating bracket 2, and the LED lamp head 3 includes an outer cover shell 31, a lens assembly 33 is mounted in the outer cover shell 31, a color plate and pattern plate assembly 34 is mounted below the lens assembly 33, a rotating ear shaft assembly 32 is mounted between the lens assembly 33 and the color plate and pattern plate assembly 34, the rotating ear shaft assembly 32 includes an ear shaft mounting bracket 321, the ear shaft mounting bracket 321 is mounted between a lens mounting bracket 331 and a mounting seat 341, the rotating ear shaft 322 is mounted on the ear shaft mounting bracket 321 and extends horizontally to the outside of the outer cover shell 31 to dock with the rotating ear shaft hole 27 in the rotating bracket 2. An LED light source and a heat dissipation assembly 35 are installed below the color plate and pattern plate assembly 34. The lens assembly 33 includes a lens mounting bracket 331. A focusing lens 335 is mounted on the lens mounting bracket 331. An upwardly extending side support frame 333 is also installed on the lens mounting bracket 331. A light-emitting lens 334 is mounted on the side support frame 333, and light-blocking plates 332 are installed on both sides of the light-emitting lens 334. The color plate and pattern plate assembly 34 includes a mounting seat 341. A central light-transmitting hole 342 is provided on the mounting seat 341. A quartz crystal laser 345 is installed on one side of the top surface of the mounting seat 341 located at the center of the light-transmitting hole 342. The bottom surface of the mounting seat 341 is located at the center of the light-transmitting hole A pattern disk 346 and a color disk 347 are installed on one side of 342, and the pattern disk 346 and the color disk 347 are driven by the pattern disk drive motor 343 and the color disk drive motor 344 installed on the mounting base 341 respectively; the LED light source and heat dissipation assembly 35 includes a heat dissipation plate 351, the LED light source 352 is installed on the heat dissipation plate 351 and is located directly below the central light-transmitting hole 342 set on the mounting base 341, the radiator 354 is installed at the bottom of the heat dissipation plate 351 and is located directly below the LED light source 352, and the cooling fan 353 is installed on one side of the radiator 354. Through the design of the heat dissipation plate 351, the cooling fan 353 and the radiator 354, the heat dissipation effect of the LED light source 352 can be effectively enhanced.

[0024] This high-power, coarse-beam LED stage light features a rational design, portability, and a high degree of intelligence, enabling intelligent coordination of patterns, colors, and lasers for a rich variety of effects. During operation, the main unit 1 controls the rotating bracket 2 to drive the LED lamp head 3 to rotate and shake its head. The structural design of the LED lamp head 3, coupled with the coordination between the pattern disc 346, the color disc 347, and the oscillating laser 345 in the color disc and pattern disc assembly 34, enables the production of a wide variety of patterns, colors, and laser combinations. During operation, the LED light source 352 generates light, which is emitted through the central light aperture 342 via the focusing lens 335 and the light output lens 334. When the light passes through the central light aperture 342, the pattern disc drive motor 343 and the color disc drive motor 344 respectively drive the pattern disc 346 and the color disc 347 to rotate, while the oscillating laser 345 simultaneously emits laser light, producing a rich variety of patterns, colors, and laser combinations for a rich variety of effects.

[0025] The above description is only a preferred embodiment of the present invention, but the present invention should not be limited to the contents disclosed in the embodiment and the drawings. Therefore, any equivalent or modification completed without departing from the spirit disclosed in the present invention shall fall within the scope of protection of the present invention.

Claims

1. A high-power thick beam LED stage light, characterized by include: Host; A rotating bracket mounted on top of the main unit; An LED lamp head mounted on a rotating bracket, the LED lamp head comprising an outer cover shell, a lens assembly mounted in the outer cover shell, a color plate and a pattern plate assembly mounted below the lens assembly, a rotating ear shaft assembly mounted between the lens assembly and the color plate and pattern plate assembly, an LED light source and a heat dissipation assembly mounted below the color plate and pattern plate assembly, the lens assembly comprising a lens mounting bracket, a focusing lens mounted on the lens mounting bracket, an upwardly extending side support bracket also mounted on the lens mounting bracket, a light-emitting lens mounted on the side support bracket, and light-blocking plates mounted on both sides of the light-emitting lens; the color plate The plate and pattern plate assembly includes a mounting base, which is provided with a central light-transmitting hole. The top surface of the mounting base is located on one side of the central light-transmitting hole and is equipped with a quartz crystal laser. The bottom surface of the mounting base is located on one side of the central light-transmitting hole and is equipped with a pattern plate and a color plate. The pattern plate and the color plate are respectively driven by a pattern plate drive motor and a color plate drive motor installed on the mounting base; the LED light source and heat dissipation assembly includes a heat dissipation plate, the LED light source is installed on the heat dissipation plate and is located directly below the central light-transmitting hole provided on the mounting base, the radiator is installed on the bottom of the heat dissipation plate and is located directly below the LED light source, and the cooling fan is installed on one side of the radiator.

2. The high-power thick-beam LED stage light according to claim 1, characterized in that: The rotating trunnion assembly includes a trunnion mounting frame, which is installed between the lens mounting bracket and the mounting seat. The rotating trunnion is installed on the trunnion mounting frame and extends horizontally outside the outer cover shell to dock with the rotating bracket.

3. The high-power thick-beam LED stage light according to claim 2, characterized in that: The rotating bracket includes a U-shaped bracket body, a bracket shaft is installed at the bottom of the U-shaped bracket body, the bottom of the bracket shaft is installed on the main machine, the shaft drive motor is installed on the U-shaped bracket body and connected to the bracket shaft, rotating ear shaft holes are provided on both sides of the U-shaped bracket body, the rotating ear shaft holes are docked with the rotating ear shafts, the swing drive motor is installed on the U-shaped bracket body and connected to one of the rotating ear shafts, and side covers and outer covers are respectively installed on the outside of the U-shaped bracket body.

4. The high-power thick-beam LED stage light according to claim 3, characterized in that: The host includes an inner bracket, a main control chip is installed on the inner bracket, a host shell is installed on the outside of the inner bracket, a host heat sink is installed on the top of the host shell, a rotating shaft is installed on the host heat sink, the rotating shaft is docked with the bracket shaft in the rotating bracket, the control panel is installed on the front side of the host shell, and the signal docking interface and the power module are installed on the rear side of the host shell.

5. The high-power thick-beam LED stage light according to claim 4, characterized in that: Handles are installed on both the left and right sides of the main body shell.