Full-color dance lamp capable of controlling light effect through inclination induction
Through the integrated three-axis gyroscope sensor and a full-color dance lighting with built-in battery, the problems of messy installation and wiring and inconvenient control of the dance lighting are solved, wireless control and simple installation are achieved, and the efficiency and safety of the dance lighting scene layout are improved.
Patent Information
- Application Number
- CN202422148243.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The installation and wiring of the existing stage lighting is messy and inconvenient to control, which poses safety risks.
The control board with integrated three-axis gyroscope sensor controls the angle of the LED light board through tilt sensing, combining wireless connection and built-in battery design to achieve wireless control and simple installation.
It improves the efficiency of lighting scene layout in stage design, reduces manual output, reduces costs, avoids messy cables and safety hazards, and supports a variety of lighting effects and application scenarios.
Smart Images

Figure CN223137817U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lamps, in particular to a full-color stage lighting lamp with tilt sensing for controlling lighting effects. Background Art
[0002] Stage lighting lamps are closely related to the overall concept of lighting and stage in stage art. They are not only an important part of stage art but also a crucial part, playing an irreplaceable role in enhancing stage expressiveness and visual impact. Therefore, through carefully designed lighting schemes, lighting designers can greatly enhance the artistic expressiveness and appeal of the stage, enabling the audience to obtain a richer and deeper experience. With the development of stage lighting lamp technology, stage lighting lamps are used in some theme exhibition halls, expositions, science and technology museums, shopping malls, parks, squares and other scenarios to achieve the visual beauty brought by lighting. Some existing stage lighting lamp products are controlled by externally connected control devices, which require wiring, usually resulting in tangled and messy connecting wires and posing potential safety hazards. Therefore, it is necessary to make some optimizations and improvements to the existing stage lighting lamps to achieve convenient installation and simple operation. Summary of the Utility Model
[0003] In view of this, the utility model provides a full-color stage lighting lamp with tilt sensing for controlling lighting effects to solve the problems of messy installation wiring and inconvenient operation of existing stage lighting lamps.
[0004] The technical solution disclosed by the utility model, a full-color stage lighting lamp with tilt sensing for controlling lighting effects, includes a lamp housing, an LED lamp board, a control board and a battery unit. The lamp housing includes a front housing and a rear housing, and the front housing and the rear housing form a hollow cylindrical lamp tube. The LED lamp board is fixedly arranged in the hollow cylindrical lamp tube. The LED lamp board is provided with a plurality of red LEDs, a plurality of green LEDs, a plurality of blue LEDs and a plurality of white LEDs arranged in an array, and the light of the LED lamp board is emitted from the front housing. A cavity is provided at a position near one end of the rear housing, and the control board is arranged in the cavity. The control board is provided with a main control MCU, a three-axis gyroscope sensor and a control switch. The LED lamp board is electrically connected to the control board. The battery unit is fixedly arranged in the rear housing and is electrically connected to the control board.
[0005] Preferably, the control board is connected with a WiFi module and is in signal connection with a computer terminal or a mobile communication terminal through the WiFi module. The computer terminal or the mobile communication terminal outputs a control signal to the control board to realize the control of the LED lamp board.
[0006] Preferably, the control board is further connected with a display screen, and the display screen is arranged on the side of the control switch.
[0007] Further, the control switch is a push-button rotary switch. The push-button rotary switch integrates a rotary encoder with a push function. Turning on or off the full-color stage light is achieved by pressing the push-button rotary switch. Rotating the push-button rotary switch is used to select the menu option displayed on the display screen in the power-on state, and pressing the push-button rotary switch simultaneously is used to enter the menu option.
[0008] Preferably, end caps are provided at both ends of the lamp housing and are arranged oppositely. The end face of the end cap along the length direction of the lamp housing is a splicing plane. Plugging holes are provided on the splicing plane, and a pin is plugged into the plugging hole.
[0009] Preferably, at least two plugging holes are provided at the splicing plane of the end cap, and at least one threaded connection hole is provided between the two plugging holes. A threaded connecting piece is connected through the threaded connection hole to fix the full-color stage light.
[0010] Further, the battery unit includes a rechargeable lithium battery, a charging board, and a charging interface provided on the charging board. The charging interface is a Micro USB or Type-c interface.
[0011] For a full-color stage light with tilt-sensing control of lighting effects disclosed in this application, the beneficial effects are as follows: Compared with the prior art, for the full-color stage light of this application, its control board integrates a three-axis gyroscope sensor, and its control method not only includes manually setting different lighting effect modes through the control switch, such as: setting a single color light irradiation, mixed light cold white light irradiation, mixed light warm white light irradiation, multi-color mixed light full-color irradiation, flashing irradiation, meteor lamp flowing irradiation. It can also turn on the three-axis gyroscope sensor to self-sense the tilt of the lamp body and output the working mode of controlling the tilt angle of the LED lamp board. In this mode, it can be preset that when the lamp body tilts up or down by a certain angle on the basis of any plane, a certain lighting effect mode is triggered, such as: taking the lamp body at the end with the control board as the reference, tilting up by 1 to 179° on any plane, then the lighting effect mode of the LED lamp board is the meteor lamp illumination mode flowing from the end with the control board to the other end; and taking the lamp body at the end with the control board as the reference, tilting down by 1 to 179° on any plane, then the lighting effect mode of the LED lamp board is the meteor lamp illumination mode flowing from the end far from the control board to the end with the control board. In this way, as long as the tilting directions are different during installation, it can be realized. Its lighting effect mode can be preset in various ways. Only need to select and set through the control switch, and then install according to the tilting direction. For arranging large-scale stage lights with a very large number of basic schemes, the stage lights designed in this scheme can improve the efficiency of installing and arranging the lighting scene, reduce manual output, and achieve the purpose of cost reduction and efficiency increase.
[0012] In addition, the stage lighting of this solution uses built-in batteries and does not require cable connection to the power supply. The lighting layout site is simple, without the mess of cables, and there will be no safety problems of being tripped by cables. At the same time, the stage lights of this solution are easy to be spliced. Static lights, dynamic lights, single-color or color lights can be used to diversify the application scenarios, meet different needs, and are convenient to carry. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 Stereogram of the overall structure of the full-color stage light provided by the embodiment of the present utility model
[0014] Figure 2 Partial enlarged view of one end of the full-color stage light far from the control board in the embodiment of the present utility model.
[0015] Figure 3 Rear view of the full-color stage light in the embodiment of the present utility model.
[0016] Figure 4 For Figure 3 Cross-sectional view in the A-A direction of
[0017] Figure 5 For Figure 4 Partial enlarged view of the end with the control board in
[0018] Figure 6 Schematic diagram of the light direction of the meteor light mode when the full-color stage light is tilted upward with the end with the control board as the reference.
[0019] Figure 7 Schematic diagram of the light direction of the meteor light mode when the full-color stage light is tilted downward with the end with the control board as the reference.
[0020] Reference numerals:
[0021] 1, front shell; 2, rear shell; 3, LED light board; 4, control board; 5, control switch; 6, rechargeable lithium battery; 7, display screen; 8, charging interface; 9, end cap; 10, insertion hole; 11, threaded connection hole; 20, pin. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the drawings. Obviously, the described embodiments are only some of the embodiments of the present disclosure, rather than all of them. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present disclosure without creative efforts shall also fall within the scope of protection of the present disclosure.
[0023] Please refer to Figures 1 to 5, a full-color stage light that provides an inclined induction control lighting effect for this technical solution, includes a lamp housing, an LED lamp board 3, a control board 4, and a battery unit. The lamp housing includes a front housing 1 and a rear housing 2, and the front housing 1 and the rear housing 2 form a hollow cylindrical lamp tube; the LED lamp board 3 is fixedly arranged in the hollow cylindrical lamp tube, and the LED lamp board 3 is provided with a number of red LEDs, a number of green LEDs, a number of blue LEDs, and a number of white LEDs arranged in an array, and the light of the LED lamp board 3 is emitted from the front housing 1; a cavity is provided at a position near one end of the rear housing 2, the control board 4 is arranged in the cavity, the control board 4 is provided with a main control MCU, a three-axis gyroscope sensor, and a control switch 5, and the LED lamp board 3 is electrically connected to the control board 4; the battery unit is fixedly arranged in the rear housing 2, and the battery unit is electrically connected to the control board 4.
[0024] Preferably, the control board 4 is connected to a WiFi module and is signal-connected to a computer terminal or a mobile communication terminal through the WiFi module. The computer terminal or the mobile communication terminal outputs a control signal to the control board 4 to realize the control of the LED lamp board 3. The principle of the WiFi module connecting to the computer terminal or the mobile communication terminal: First, when the full-color stage light is in the initial state, it will start the default AP mode, that is, act as a WiFi hotspot, so that users can connect to this hotspot through the APP provided by the manufacturer installed on the computer or mobile phone for configuration. Then, the user adds a device through the APP provided by the manufacturer, that is, this full-color stage light. This process is actually the mobile phone connecting to the WiFi hotspot generated by this device. Then, enter the WiFi account and password used in the APP, or authorize the APP to automatically retrieve the WiFi information connected by the mobile phone, and transmit the real WiFi information to the full-color stage light through the network transmission composed of the mobile phone and the full-color stage light. Finally, the full-color stage light is converted into the STA mode, that is, the station mode, and connects to the WiFi of the router like other network devices, so as to complete the successful network configuration. After the network configuration is completed, the full-color stage light can be controlled by the APP on the mobile phone or computer terminal in the same WiFi signal connection.
[0025] Preferably, the control board 4 is also connected to a display screen 7. The display screen 7 is arranged on the side of the control switch 5. The display screen 7 preferably uses an OLED display screen, and displays the power, as well as menu options such as WiFi information, tilt angle working mode, ART-NEI protocol working mode, sACN protocol working mode, effect, color adjustment, and brightness through the OLED display screen.
[0026] Preferably, the control switch 5 is a push-button rotary switch, which integrates a rotary encoder with a push function. Pressing the push-button rotary switch turns the full-color stage light on or off. Rotating the push-button rotary switch is used to select the menu option displayed on the display screen in the powered-on state, and pressing the push-button rotary switch simultaneously enters the menu option. Among them, turning on or off is to long-press the control switch 5, and selecting to enter the menu option is to short-press the control switch 5.
[0027] In the full-color stage light proposed in this embodiment, its control board 4 is integrated with a three-axis gyroscope sensor, and its control method not only includes setting different lighting effects manually through the control switch 5, such as: setting a single color light irradiation, mixed light cold white light irradiation, mixed light warm white light irradiation, multi-color mixed light full-color irradiation, flashing irradiation, meteor light flowing irradiation. It can also turn on the self-sensing mode of the three-axis gyroscope sensor to output the tilt angle of the LED light board 3. In this mode, it can be preset that when the lamp body is tilted up or down by a certain angle on any plane, a certain lighting mode will be triggered, such as: Figure 6 Taking the lamp body with the control board 4 as the reference, when tilted up by 1 to 179° on any plane, the lighting mode of the LED light board 3 is the meteor light irradiation mode flowing from the end with the control board 4 to the other end ( Figure 7 as shown); taking the lamp body with the control board 4 as the reference, when tilted down by 1 to 179° on any plane, the lighting mode of the LED light board 3 is the meteor light irradiation mode flowing from the end away from the control board 4 to the end with the control board 4 (
[0028] as shown). In this way, as long as the tilting directions are different during installation, the required meteor light flow direction can be achieved, which is convenient for installation and layout. The tilt angle working mode is to long-press the control switch 5 to turn on the power. In the menu option displayed on the display screen 7 when powered on, select the tilt angle working mode by rotating the control switch 5. At this time, the display screen 7 of the full-color stage light needs to be horizontally facing up, wait for a 5-second countdown to reset the three-axis gyroscope sensor, and after resetting, press the control switch 5 to return to the angle effect in the menu selection function effect, and then the above-mentioned meteor light irradiation mode can be turned on. It should be noted that the above example of the meteor light irradiation mode realizing different meteor light walking directions through tilt sensing is only one example of the lighting effect mode. The lighting effect mode can also be preset to other various styles. Just select the menu option through the control switch 5 and then install it according to the tilting direction. For arranging large-scale stage lights with many basic solutions, the stage lights designed in this solution can improve the efficiency of installing and arranging the lighting scene, reduce manual output, and achieve the purpose of cost reduction and efficiency increase.
[0029] Preferably, end caps 9 are provided at both ends of the lamp housing, and the end faces of the end caps 9 along the length direction of the lamp housing are splicing planes. Plug holes 10 are provided on the splicing planes, and pins 20 are inserted into the plug holes 10. At least two of the plug holes 10 are provided at the splicing plane of the end cap 9, and at least one threaded connection hole 11 is provided between the two plug holes 10. A threaded connection member is connected through the threaded connection hole 11 to fix the full-color stage light. The splicing of the head and tail ends of multiple full-color stage lights is realized through the pins 20, and the full-color stage lights are fixed at a certain inclination angle through the threaded connection member via the threaded connection hole 11.
[0030] In this embodiment, the battery unit includes a rechargeable lithium battery 6, a charging board, and a charging interface 8 provided on the charging board. The charging interface 8 is a Micro USB or Type-c interface.
[0031] The full-color stage light of this embodiment can also be used as a portable lighting tube or a light stick for enlivening the atmosphere in concert venues. The front shell 1 is made of a light-transmitting material, and the rear shell 2 is made of aluminum to support the strength of the entire lamp. The front shell 1 and the rear shell 2 are fixedly connected to the end cap 9 through plug-in snap connection.
[0032] The embodiments of the present disclosure have been described above. The above description is exemplary and not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art in the technical field without departing from the scope and spirit of the described embodiments. The selection of the terms used herein is intended to best explain the principles of the embodiments, practical applications, or improvements to the technologies in the market, or to enable other ordinary technical personnel in the technical field to understand the embodiments disclosed herein.
Claims
1. A full-color stage light that senses tilt to control lighting effects, characterized in that, Comprising: A lamp housing, including a front housing and a rear housing, the front housing and the rear housing forming a hollow cylindrical lamp tube; An LED lamp board, fixedly arranged inside the hollow cylindrical lamp tube, the LED lamp board being provided with a plurality of red LEDs, a plurality of green LEDs, a plurality of blue LEDs, and a plurality of white LEDs arranged in an array, the light of the LED lamp board emitting from the front housing; A control board, a cavity being provided at a position near one end of the rear housing, the control board being arranged inside the cavity, the control board being provided with a main control MCU, a three-axis gyroscope sensor, and a control switch, the LED lamp board being electrically connected to the control board; A battery unit, fixedly arranged inside the rear housing, the battery unit being electrically connected to the control board.
2. The full-color stage light with tilt-sensing controlled lighting effects according to claim 1, wherein The control board is connected with a WiFi module, and is signal-connected to a computer terminal or a mobile communication terminal through the WiFi module, and the computer terminal or the mobile communication terminal outputs a control signal to the control board to realize the control of the LED lamp board.
3. The full-color stage light with tilt-sensing controlled lighting effects according to claim 1, wherein The control board is connected with a display screen, and the display screen is arranged on the side of the control switch.
4. The full-color stage light with tilt induction for controlling lighting effects according to claim 3, characterized in that, The control switch adopts a push-button rotary switch, the push-button rotary switch integrating a rotary encoder with a push function, turning on or off the full-color stage light by pressing the push-button rotary switch, rotating the push-button rotary switch to select the menu option displayed on the display screen in the on state, and simultaneously pressing the push-button rotary switch to enter the menu option.
5. The full-color stage light with tilt induction control of lighting effects according to claim 1, characterized in that, Both ends of the lamp housing are provided with oppositely arranged end caps, the end faces of the end caps along the length direction of the lamp housing being splicing planes, the splicing planes being provided with insertion holes, and the insertion holes being inserted with pins.
6. The full-color stage light with tilt-sensing controlled lighting effects according to claim 5, characterized in that, At least two of the insertion holes are provided at the splicing plane of the end cap, and at least one threaded connection hole is provided between the two insertion holes, and a threaded connecting piece is connected through the threaded connection hole to fix the full-color stage light.
7. The full-color stage light with tilt induction control of lighting effects according to claim 1, characterized in that, The battery unit includes a rechargeable lithium battery, a charging board, and a charging interface arranged on the charging board, the charging interface being a MicroUSB or a Type-c interface.