Flying stage lamp device

By combining flight mechanisms and beam lighting mechanisms on stage, precise control of the drone's flight path and beam pattern is achieved, solving the problem of insufficient flexibility of traditional stage lighting equipment, providing a rich variety of lighting effects, and enhancing the artistic expression of stage performances.

CN224050292UActive Publication Date: 2026-03-27GUANGZHOU SHANGJI TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional stage lighting equipment is fixed in place, resulting in insufficient flexibility and an inability to meet the needs of rapid changes in position and angle, leading to poor lighting effects.

Method used

The system employs a flight mechanism as a mobile platform, combined with a beam light mechanism, control unit, and power supply unit, to achieve precise control of the UAV's flight path and beam light operating mode. It utilizes various beam modules to generate rich lighting effects and ensures system stability through wireless signals and weather sensors.

Benefits of technology

It provides flexible and varied lighting effects, enhancing the visual impact and artistic expression of stage performances, and solving the problems of insufficient flexibility and poor effect of traditional equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224050292U_ABST
    Figure CN224050292U_ABST
Patent Text Reader

Abstract

The utility model discloses a flying stage lamp device which comprises a flying mechanism, a beam lamp mechanism, a control unit and a power supply unit, the beam lamp mechanism, the control unit and the power supply unit are installed on the flying mechanism, an installation portion is arranged on the flying mechanism, and the beam lamp mechanism and the power supply unit are both detachably installed on the installation portion. The flight mechanism and the beam lamp mechanism are electrically connected with the control unit, the control unit is used for controlling the flight path of the flight mechanism and the working mode of the beam lamp mechanism, and the flight mechanism and the beam lamp mechanism are electrically connected with the power supply unit. The power supply unit is used for supplying power to the flight mechanism and the beam lamp mechanism, and the beam lamp mechanism is used for generating various beam effects. The problems that in the prior art, stage lighting equipment is insufficient in flexibility and poor in lighting effect are solved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to stage light technical field especially is related to a flying stage light device. BACKGROUND

[0002] Traditional stage lighting equipment usually adopts fixed installation mode, and this fixed installation mode makes it difficult for the lighting equipment to achieve flexible and variable beam effects. Especially in complex stage performances, the fixedly installed lighting equipment cannot meet the demand of rapid position and angle change, thereby limiting the richness and dynamics of stage lighting effects. Therefore, there is an urgent need for a stage lighting solution that can be flexibly moved and provide high-quality beam effects. SUMMARY

[0003] In view of the defects existing in the prior art, the utility model provides a flying stage light device to solve the problems of insufficient flexibility and poor light effect of the stage lighting equipment in the prior art.

[0004] The utility model adopts the following technical scheme:

[0005] A flying stage light device, comprising a flight mechanism, a beam lamp mechanism installed on the flight mechanism, a control unit and a power supply unit, the flight mechanism is provided with a mounting portion, the beam lamp mechanism and the power supply unit are detachably installed on the mounting portion, the flight mechanism and the beam lamp mechanism are electrically connected with the control unit respectively, the control unit is used for controlling the flight path of the flight mechanism and the working mode of the beam lamp mechanism, the flight mechanism and the beam lamp mechanism are electrically connected with the power supply unit respectively, the power supply unit is used for power supply to the flight mechanism and the beam lamp mechanism, and the beam lamp mechanism is used for generating a variety of beam effects.

[0006] Further, the beam lamp mechanism comprises a lamp body with a light outlet, the lamp body is provided with a laser beam module, an LED beam module, a bubble lamp beam module and a switching mechanism for aligning the laser beam module, the LED beam module and the bubble lamp beam module to the light outlet, the switching mechanism is electrically connected with the control unit, and the control unit is electrically connected with the laser beam module, the LED beam module and the bubble lamp beam module respectively.

[0007] Further, the beam lamp mechanism further comprises a mounting bracket, the mounting bracket is detachably connected with the mounting portion, and the lamp body is rotationally connected with the mounting bracket.

[0008] Further, the control unit controls the flight path of the flight mechanism and the working mode of the beam lamp mechanism through wireless signals.

[0009] Further, the power supply unit is mounted on the mounting portion by a clamp mechanism.

[0010] Further, the clamp mechanism comprises a first clamp, a second clamp and a fastening connector for connecting the first clamp and the second clamp, the first clamp is formed with a first clamping groove matched with the mounting portion, the second clamp is formed with a second clamping groove matched with the power supply unit, two ends of the first clamp are respectively provided with first connecting portions, two ends of the second clamp are respectively provided with second connecting portions matched with the first connecting portions, the first connecting portions and the second connecting portions are both provided with through holes, and the fastening connector passes through the through holes of the first connecting portions and the second connecting portions to lock the first clamp and the second clamp.

[0011] Further, a plurality of weather sensors are mounted on the flight mechanism, and the plurality of weather sensors are electrically connected with the control unit.

[0012] Further, the weather sensors comprise a wind speed sensor, an air pressure sensor and a temperature and humidity sensor.

[0013] Further, the flight mechanism is a drone.

[0014] Further, the power supply unit is a rechargeable battery.

[0015] Compared with the prior art, the beneficial effects of the utility model at least include:

[0016] The utility model discloses a flight mechanism as a mobile platform, can fly freely in three-dimensional space, provides flexible moving ability for light beam lamp mechanism, solves the problem that the position of traditional fixed installation light equipment is limited, and light beam lamp mechanism can produce various light beam effects, so can satisfy the demand of various stage performances, provides rich and varied light effect, and the control unit realizes accurate control to the flight path of unmanned aerial vehicle and light beam lamp working mode, makes the whole system can adjust light position and effect in real time according to the need of stage performance, greatly improves the flexibility and adaptability of light effect. The power supply unit provides power support for the flight mechanism and the light beam lamp mechanism, ensures that the whole system can work continuously and stably. The flight stage lamp device can realize flexible and changeable light effect in stage performance according to the stage demand, greatly enhances the visual impact and artistic expression of stage performance, solves the problems of insufficient flexibility of traditional stage light equipment and poor light effect. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is the schematic diagram of the flight stage lamp device of the utility model embodiment;

[0018] Figure 2 is the schematic diagram of the clamp mechanism of the utility model embodiment.

[0019] In the figure: 1, flight mechanism; 11, mounting portion; 2, light beam lamp mechanism; 21, lamp body; 22, mounting bracket; 3, power supply unit; 4, clamp mechanism; 41, first clamp; 411, first connecting portion; 42, second clamp; 421, second connecting portion; 43, fastening connecting piece. DETAILED DESCRIPTION

[0020] Example embodiments now will be described more fully hereinafter with reference to the accompanying drawings. Example embodiments, however, can be implemented in many different forms and should not be construed as limited to the implementations set forth herein; rather, these implementations are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the example embodiments to those skilled in the art. Like reference numerals refer to like elements throughout the figures, and descriptions of the same or similar elements can be omitted or combined.

[0021] The words expressing position and direction described in the present application are explained by taking the drawings as an example, but changes can also be made as needed, and the changes made are included in the protection scope of the present application.

[0022] As shown in Figure 1 and Figure 2 A flying stage light device is provided, which comprises a flight mechanism 1, a light beam lamp mechanism 2 mounted on the flight mechanism 1, a control unit and a power supply unit 3. The flight mechanism 1 is provided with a mounting portion 11. The light beam lamp mechanism 2 and the power supply unit 3 are detachably mounted on the mounting portion 11. The flight mechanism 1 and the light beam lamp mechanism 2 are electrically connected to the control unit, respectively. The control unit is used for controlling the flight path of the flight mechanism 1 and the working mode of the light beam lamp mechanism 2. The flight mechanism 1 and the light beam lamp mechanism 2 are electrically connected to the power supply unit 3, respectively. The power supply unit 3 is used for supplying power to the flight mechanism 1 and the light beam lamp mechanism 2. The light beam lamp mechanism 2 is used for generating various light beam effects.

[0023] In the embodiment, the flight mechanism 1 serves as a mobile platform and can freely fly in a three-dimensional space, thereby providing flexible movement ability for the light beam lamp mechanism 2 and solving the problem of limited position of the conventional fixedly installed light equipment. The light beam lamp mechanism 2 can generate various light beam effects, so as to meet the needs of various stage performances and provide rich and varied light effects. The control unit realizes accurate control of the flight path of the unmanned aerial vehicle and the working mode of the light beam, so that the entire system can adjust the light position and effect in real time according to the needs of the stage performance, thereby greatly improving the flexibility and adaptability of the light effect. The power supply unit 3 provides power support for the flight mechanism 1 and the light beam lamp mechanism 2, thereby ensuring that the entire system can continuously and stably work.

[0024] In actual use, the control unit receives instructions from the stage light console, so that the flying mechanism 1 flies according to the preset path above the stage, and the light beam mechanism 2 switches different light beam effects at specific time points. During the whole process, the power supply unit 3 continuously supplies power to the flying mechanism 1 and the light beam mechanism 2, ensuring the continuity and stability of the light effect during the whole performance. In this way, the flying stage light device can achieve flexible and variable light effects in stage performances according to stage requirements, greatly enhancing the visual impact and artistic expression of stage performances, and solving the problems of insufficient flexibility and poor light effect of traditional stage light equipment.

[0025] As a preferred embodiment, the light beam mechanism 2 comprises a lamp body 21 with an outlet, the lamp body 21 is provided with a laser light beam module, an LED light beam module, a bubble lamp light beam module, and a switching mechanism for aligning the laser light beam module, the LED light beam module and the bubble lamp light beam module with the outlet, the switching mechanism is electrically connected with the control unit, and the control unit is electrically connected with the laser light beam module, the LED light beam module and the bubble lamp light beam module respectively.

[0026] In this embodiment, the laser light beam module can produce highly concentrated and linear light, which can create precise patterns and effects, the LED light beam module can provide colorful and brightness-adjustable light effects, which can quickly change color and intensity, and the bubble lamp light beam module can produce unique soft and floating light effects, increasing the diversity of stage atmosphere. The combination of diversified light sources makes the stage light effect more colorful, which can meet the needs of different types of performances, greatly enhancing the adaptability and expression of the system. In actual use, the control unit sends corresponding light beam instructions to the switching mechanism, and the switching mechanism receives the light beam instructions to switch the light beam module corresponding to the light beam instructions to the outlet. For example, when the lead singer starts singing the climax, the controller can send instructions to make the flying mechanism 1 quickly rise to a higher position, and at the same time control the switching mechanism to switch the laser light beam module to the outlet, projecting a dazzling light beam pattern above the audience. When the music rhythm slows down, the flying mechanism 1 can be controlled to slowly descend, and the soft LED light beam mode is switched to create a warm atmosphere. In this way, one flying mechanism 1 can provide a variety of different styles of light effects, greatly enhancing the visual impact and artistic expression of stage performances.

[0027] It should be noted that the switching mechanism of the embodiment can be a turntable, and the laser beam module, the LED beam module and the bubble lamp beam module are arranged on the turntable. The control unit controls the rotation of the turntable to drive the laser beam module, the LED beam module and the bubble lamp beam module to rotate to the position aligned with the light outlet. The parameters of the laser beam module, the LED beam module and the bubble lamp beam module are controlled by the control unit, so as to realize automatic switching of different beam modes.

[0028] As a preferred embodiment, the light beam lamp mechanism 2 further comprises a mounting bracket 22, which is detachably connected with the mounting portion 11, and the lamp body 21 is rotationally connected with the mounting bracket 22.

[0029] In the embodiment, the lamp body 21 and the flight mechanism 1 are detachably mounted through the mounting bracket 22, which facilitates the replacement of different specifications of the lamp body 21 at any time according to different needs. The lamp body 21 and the mounting bracket 22 are connected in a rotating manner, which facilitates flexible adjustment of the angle of the lamp body 21 and has strong adaptability.

[0030] As a preferred embodiment, the control unit controls the flight path of the flight mechanism 1 and the working mode of the light beam lamp mechanism 2 through wireless signals.

[0031] In the embodiment, the control unit realizes remote and real-time control of the flight mechanism 1 and the light beam lamp mechanism 2 through wireless signal transmission. For example, the control unit can adjust the flight path of the flight mechanism 1 in real time, so that the light effect can be adjusted in position at any time according to the stage performance requirements. The control unit can change the working mode of the light beam lamp mechanism 2 in real time, including the beam type, color, intensity and other parameters, so that the light effect can accurately match the rhythm and atmosphere of the stage performance. At the same time, the control unit can realize cooperative control of multiple flight mechanisms 1 and light beams, creating a complex light programming effect. This wireless control method greatly improves the flexibility and response speed of the system, so that the stage light effect can be more accurately matched with the performance content, enhancing the overall performance effect.

[0032] Specifically, on the stage lighting console, the operator can control the flight path of the flight mechanism 1 in real time through a special software interface. For example, when the singer moves to the left side of the stage, the operator can instruct the flight mechanism 1 to also move to the left side through the virtual joystick or preset path button on the interface, maintaining the light following effect. At the same time, the operator can switch the working mode of the light beam mechanism 2 in real time through the buttons or sliders on the console. For example, during the climax of the music, it can be quickly switched to a strong laser light beam mode; during the transition of the music, it can be smoothly adjusted to a soft LED light beam mode. If multiple flight mechanisms 1 are working simultaneously, the control personnel can simultaneously adjust the positions and light effects of multiple flight mechanisms 1 through the grouping control function, creating complex lighting arrangements. For example, multiple flight mechanisms 1 can be made to form a specific geometric pattern and synchronously change the light color, producing a stunning visual effect. This wireless control method enables real-time adjustment of the stage lighting effect according to the on-site situation, greatly improving the flexibility and interactivity of the performance.

[0033] As a preferred embodiment, the power supply unit 3 is installed on the mounting portion 11 through the clamp mechanism 4.

[0034] In this embodiment, the clamp mechanism 4 realizes the dismounting function of the power supply unit 3, allowing different specifications of power supply units 3 to be replaced at any time, and the clamp mechanism 4 can adapt to different structures of the mounting portion 11, ensuring that the power supply unit 3 can be stably fixed on the flight mechanism 1.

[0035] As a preferred embodiment, the clamp mechanism 4 includes a first clamp 41, a second clamp 42, and a fastening connector 43 for connecting the first clamp 41 and the second clamp 42, the first clamp 41 is formed with a first clamping groove adapted to the mounting portion 11, the second clamp 42 is formed with a second clamping groove adapted to the power supply unit 3, both ends of the first clamp 41 are respectively provided with a first connecting portion 411, both ends of the second clamp 42 are respectively provided with a second connecting portion 421 opposite to the first connecting portion 411, the first connecting portion 411 and the second connecting portion 421 are both provided with through holes, and the fastening connector 43 passes through the through holes of the first connecting portion 411 and the second connecting portion 421 to lock the first clamp 41 and the second clamp 42.

[0036] In this embodiment, the first clamp 41 is first fixed on the mounting portion 11, the power supply unit 3 is clamped in the second clamping groove of the second clamp 42, then the first connecting portion 411 of the first clamp 41 and the second connecting portion 421 of the second clamp 42 are aligned, and the fastening connector 43 passes through the through holes of the first connecting portion 411 and the second connecting portion 421 to fix the power supply unit 3 on the mounting portion 11. This clamp mechanism 4 is easy to install and dismount, firmly fixed, and convenient for later maintenance.

[0037] As a preferred implementation, a plurality of weather sensors are mounted on the flight mechanism 1, and the plurality of weather sensors are electrically connected with the control unit.

[0038] Specifically, the weather sensors include a wind speed sensor, a barometric pressure sensor, and a temperature and humidity sensor.

[0039] In this embodiment, when the flying stage light device is applied in an outdoor scene, in such an open environment, the flight stability of the flight mechanism 1 faces severe challenges. For example, sudden strong winds, rain, snow and other adverse weather conditions in the outdoor environment can cause the flight mechanism 1 to lose balance, not only affecting the presentation of the light effect, but also possibly endangering the safety of the audience. Or when the flight mechanism 1 needs to move quickly or hover at a high position, the unpredictability and instantaneous changes of the wind force can cause the flight mechanism 1 to deviate from the preset track, or even lose control and fall. To solve the problem of stability of the unmanned aerial vehicle in the outdoor environment, a plurality of weather sensors are mounted on the flight mechanism 1, including a wind speed sensor, a barometric pressure sensor, and a temperature and humidity sensor. Through these sensors, the surrounding environmental meteorological data can be collected in real time, and the trend of changes in wind direction and wind speed can be quickly identified, and possible sudden weather changes can be predicted, providing basic information for flight adjustment of the flight mechanism 1, greatly improving the adaptability of the flight mechanism 1 in complex outdoor environments, and ensuring that the flight mechanism 1 can maintain stable flight in various weather conditions, thereby providing continuous and safe light effects for outdoor large-scale activities.

[0040] As a preferred implementation, the flight mechanism 1 is an unmanned aerial vehicle.

[0041] In this embodiment, the unmanned aerial vehicle is a kind of unmanned aircraft that is controlled by radio remote control equipment and self-provided program control device. The light beam lamp mechanism 2 is carried on the unmanned aerial vehicle, and the light beam lamp mechanism 2 is driven by the unmanned aerial vehicle to fly freely in three-dimensional space. The light beam lamp mechanism 2 can move in all directions in real time following the stage characters, and the light trajectory is not limited. The unmanned aerial vehicle can provide flexible movement ability for the light beam lamp mechanism 2.

[0042] As a preferred implementation, the power supply unit 3 is a rechargeable battery. The rechargeable battery is used to supply power to the flight mechanism 1 and the light beam lamp mechanism 2, which expands the range of use and improves the reliability of the power supply unit 3.

[0043] Although the embodiments of the utility model have been shown and described above, it can be understood that the above-mentioned embodiments are exemplary and cannot be understood as limiting the utility model. The ordinary skilled in the art can change, modify, replace and modify the above-mentioned embodiments without departing from the principles and purposes of the utility model, and all these changes should belong to the protection scope of the utility model claim.

Claims

1. A flying stage light device, characterized in that, The application relates to a flight mechanism (1), a light beam lamp mechanism (2) mounted on the flight mechanism (1), a control unit and a power supply unit (3), wherein the flight mechanism (1) is provided with a mounting portion (11), the light beam lamp mechanism (2) and the power supply unit (3) are detachably mounted on the mounting portion (11), the flight mechanism (1) and the light beam lamp mechanism (2) are electrically connected with the control unit respectively, the control unit is used for controlling the flight path of the flight mechanism (1) and the working mode of the light beam lamp mechanism (2), the flight mechanism (1) and the light beam lamp mechanism (2) are electrically connected with the power supply unit (3) respectively, the power supply unit (3) is used for supplying power to the flight mechanism (1) and the light beam lamp mechanism (2), and the light beam lamp mechanism (2) is used for generating multiple light beam effects.

2. The flying stage light device of claim 1, wherein, The light beam lamp mechanism (2) comprises a lamp body (21) with a light outlet, the lamp body (21) is internally provided with a laser light beam module, an LED light beam module, a bubble lamp light beam module and a switching mechanism for aligning the laser light beam module, the LED light beam module and the bubble lamp light beam module with the light outlet, the switching mechanism is electrically connected with the control unit, and the control unit is electrically connected with the laser light beam module, the LED light beam module and the bubble lamp light beam module respectively.

3. The flying stage light device of claim 2, wherein, The light beam lamp mechanism (2) further comprises a mounting bracket (22), the mounting bracket (22) is detachably connected with the mounting portion (11), and the lamp body (21) is rotationally connected with the mounting bracket (22).

4. The flying stage light device of claim 1, wherein, The control unit controls the flight path of the flight mechanism (1) and the working mode of the light beam lamp mechanism (2) through wireless signals.

5. The flying stage light device of claim 1, wherein, The power supply unit (3) is mounted on the mounting portion (11) through a hoop mechanism (4).

6. The flying stage light device of claim 5, wherein, The hoop mechanism (4) comprises a first hoop (41), a second hoop (42) and a fastening connecting piece (43) used for connecting the first hoop (41) and the second hoop (42), the first hoop (41) is formed with a first hoop groove matched with the mounting portion (11), the second hoop (42) is formed with a second hoop groove matched with the power supply unit (3), the two ends of the first hoop (41) are respectively provided with first connecting portions (411), the two ends of the second hoop (42) are respectively provided with second connecting portions (421) matched with the first connecting portions (411), the first connecting portions (411) and the second connecting portions (421) are both provided with through holes, and the fastening connecting piece (43) passes through the through holes of the first connecting portions (411) and the second connecting portions (421) to lock the first hoop (41) and the second hoop (42).

7. The flying stage light device of claim 1, wherein, The flight mechanism (1) is provided with multiple weather sensors, and the multiple weather sensors are electrically connected with the control unit.

8. The flying stage light device of claim 7, wherein, The weather sensors comprise a wind speed sensor, an air pressure sensor and a temperature and humidity sensor.

9. The flying stage light device of claim 1, wherein, The flight mechanism (1) is a drone.

10. The flying stage light device of claim 1, wherein, The power supply unit (3) is a rechargeable battery.