Switching device capable of setting scene light in user-defined manner

By introducing button and voice control panel modules into the switching device, diverse lighting control can be achieved, solving the problems of cumbersome operation and high cost of traditional switching devices. It provides flexible lighting adjustment and group control to meet diverse user needs.

CN224124297UActive Publication Date: 2026-04-14GUANGZHOU JINPEI ELECTRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Traditional switching devices are cumbersome to operate and expensive, failing to meet users' needs for diverse control panels. Existing smart switching devices with single-button control panels also cannot meet users' diverse needs.

Method used

Design a switch device with customizable scene lighting settings, combining a button control panel module and a voice control panel module, providing single-channel two-button, two-channel four-button, three-channel four-button, and four-channel six-button panels, supporting button and voice input, and achieving intelligent control through Bluetooth wireless communication and AC zero-crossing detection.

Benefits of technology

It offers diverse control methods, improving user convenience and lighting control efficiency. It supports multiple lighting group control to meet the lighting needs of different scenarios and create a personalized environmental atmosphere.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN224124297U_ABST
Patent Text Reader

Abstract

The utility model discloses a switch device capable of setting scene light in a user-defined manner, a key control panel module provides multiple choices such as a single-path two-key mode, a two-path four-key mode, a three-path four-key mode, a four-path six-key mode and the like, different user requirements are met, a voice control panel is added, so that a user can set and adjust light through voice instructions, the use convenience is improved, and the user experience is improved. The light control module is particularly suitable for dark light or inconvenience of two hands, can adjust the brightness, color or on-off state of light according to key or voice input of a user, realizes user-defined setting, creates a comfortable and personalized environment, combines key and voice control, provides flexible and diversified light control means, and is suitable for popularization and application. According to the invention, a user can switch according to needs or simultaneously use two modes to adjust the light, in addition, grouping control of multiple lights is supported, on-off and brightness of the multiple lights are controlled by one key, the control efficiency and convenience are improved, and the diversified and intelligent control mode brings more convenient and personalized light experience for the user.
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Description

Technical Field

[0001] This utility model relates to the field of lighting switch technology, and in particular to a switch device with customizable scene lighting settings. Background Technology

[0002] Traditional switching devices typically only have simple switching functions and cannot meet the diverse lighting needs of users in their homes or offices. With the continuous development of smart home technology, people's demand for the functionality, intelligence, and personalization of switching devices is growing. Therefore, there is an urgent need in the market for a switching device that can customize scene lighting to meet the lighting needs of different users in different situations.

[0003] However, most existing scene lighting settings rely on complex control systems or professional lighting designers, which are cumbersome and costly for ordinary users. At the same time, although some smart switches have certain customization functions, they are often limited to a single button control panel and cannot meet users' needs for diverse control panels. Utility Model Content

[0004] In view of this, the present invention proposes a switch device for customizable scene lighting, which can solve the defects of the existing technology, such as cumbersome operation, high cost, and inability to meet users' needs for diverse control panels.

[0005] The technical solution of this utility model is implemented as follows:

[0006] A customizable ambient lighting switch includes a button control panel module and a voice control panel module. The button control panel module is used by the user to input ambient lighting setting information via buttons, and the voice control panel module is used by the user to input ambient lighting setting information via voice. Based on the received information, the brightness, color, or on / off state of each light is adjusted to achieve customizable ambient lighting settings. The button control panel module includes a single-channel two-button panel, a two-channel four-button panel, a three-channel four-button panel, and a four-channel six-button panel.

[0007] As a further optional solution for the customizable ambient lighting switch device, the single-channel two-button panel includes a first panel switch button circuit, a first 2.4G Bluetooth wireless transmission circuit, a first AC zero-crossing detection circuit, a first 220VAC to 5VDC circuit, and a first relay control circuit. The first panel switch button circuit is used to set two buttons. The first 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The first AC zero-crossing detection circuit is used to detect the zero point of AC power. The first 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the first panel switch button circuit, the first 2.4G Bluetooth wireless transmission circuit, the first AC zero-crossing detection circuit, and the first relay control circuit. The first relay control circuit is connected to the first panel switch button circuit, the first 2.4G Bluetooth wireless transmission circuit, and the first AC zero-crossing detection circuit, and is used to receive button input or Bluetooth signals, and safely control the on / off state of the relay through AC zero-crossing detection.

[0008] As a further optional solution for the customizable ambient lighting switch device, the two-way four-button panel includes a second panel switch button circuit, a second 2.4G Bluetooth wireless transmission circuit, a second zero-crossing detection circuit, a second 220VAC to 5VDC circuit, a second relay control circuit, and a first indicator light circuit. The second panel switch button circuit is used to set four buttons. The second 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The second AC zero-crossing detection circuit is used to detect the zero point of AC power. The second 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the second panel switch button circuit, the second 2.4G Bluetooth wireless transmission circuit, the second AC zero-crossing detection circuit, the second relay control circuit, and the first indicator light circuit. The second relay control circuit is connected to the second panel switch button circuit, the second 2.4G Bluetooth wireless transmission circuit, and the second AC zero-crossing detection circuit to receive button input or Bluetooth signals and safely control the on / off state of the relay through AC zero-crossing detection. The first indicator light circuit is used to indicate the current state of the two-way four-button panel.

[0009] As a further optional solution for the customizable ambient lighting switch device, the three-way four-button panel includes a third panel switch button circuit, a third 2.4G Bluetooth wireless transmission circuit, a first relay group, a third AC zero-crossing detection circuit, a third 220VAC to 5VDC circuit, and a first button lighting control circuit. The third panel switch button circuit is used to set four buttons. The third 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The first relay group is used to receive button input or Bluetooth signals and safely control the on / off state of external circuits through AC zero-crossing detection. The third AC zero-crossing detection circuit is used to detect the zero point of AC power. The third 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the third panel switch button circuit, the third 2.4G Bluetooth wireless transmission circuit, the first relay group, the third AC zero-crossing detection circuit, and the first button lighting control circuit. The first button lighting control circuit is used to illuminate the corresponding indicator light when a button is pressed.

[0010] As a further optional solution for the customizable ambient lighting switch device, the four-way six-button panel includes a fourth panel switch button circuit, a fourth 2.4G Bluetooth wireless transmission circuit, a second relay group, a fourth AC zero-crossing detection circuit, a fourth 220VAC to 5VDC circuit, a second button lighting control circuit, and a master off button circuit. The fourth panel switch button circuit is used to set six buttons. The fourth 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The second relay group is used to receive button input or Bluetooth signals and safely control the on / off state of external circuits through AC zero-crossing detection. The fourth AC zero-crossing detection circuit is used to detect the zero point of AC power. The fourth 220VAC to 5VDC circuit is used to convert AC power to DC power for use by the fourth panel switch button circuit, the fourth 2.4G Bluetooth wireless transmission circuit, the second relay group, the fourth AC zero-crossing detection circuit, the second button lighting control circuit, and the master off button circuit. The second button lighting control circuit is used to illuminate the corresponding indicator light when a button is pressed. The master off button circuit is used to simultaneously cut off the power supply to all circuit paths on the four-way six-button panel.

[0011] As a further optional solution for the customizable ambient lighting switch device, the voice control panel module includes a microphone circuit, a voice control circuit, a wireless communication circuit, a second indicator light circuit, a power supply circuit, a fifth AC zero-crossing detection circuit, and a third relay group. The microphone circuit is equipped with at least one microphone for receiving voice commands. The voice control circuit controls the switching state of at least one circuit path according to the voice commands. The wireless communication circuit is used for wireless communication with external devices. The second indicator light circuit is used to display the switching state of the circuit path. The power supply circuit provides power to the microphone, voice control circuit, wireless communication circuit, second indicator light circuit, fifth AC zero-crossing detection circuit, and third relay group. The fifth AC zero-crossing detection circuit is used to detect the zero-crossing point of the AC power. The third relay group is used to control the switching of the circuit paths, with each relay corresponding to one circuit path.

[0012] The beneficial effects of this utility model are as follows: The button control panel module provides a variety of panel options (single-channel two-button, two-channel four-button, three-channel four-button, and four-channel six-button), meeting the needs of different users and different scenarios. Whether it is simple two-button control or a complex six-button layout, users can choose the appropriate panel according to their preferences and needs. The addition of the voice control panel module allows users to set and adjust the lights through voice commands without manual operation, further improving the convenience of use. Voice control is particularly useful when the light is dim or when the user's hands are inconvenient. It can adjust the brightness, color, or on / off status of each light based on the information input by the user through buttons or voice. This custom setting function allows users to set appropriate lighting effects according to different scenarios (such as reading, watching movies, parties, etc.), creating a more comfortable and personalized environment. By combining button and voice control methods, it provides more flexible and diverse lighting control methods. Users can switch control methods at any time or use both methods simultaneously to achieve more precise lighting adjustment according to actual needs. It also supports group control of multiple lights, allowing users to control the on / off and brightness adjustment of multiple lights with one button, further improving the efficiency and convenience of lighting control. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a schematic diagram of the components of a switch device for customizable scene lighting according to the present invention;

[0015] Figure 2 This is a circuit diagram of a single-channel two-button panel in this utility model;

[0016] Figure 3 This is a circuit diagram of the two-way four-button panel in this utility model;

[0017] Figure 4 This is a circuit diagram of the three-way four-button panel in this utility model;

[0018] Figure 5 This is a circuit diagram of the four-way six-key panel in this utility model;

[0019] Figure 6 This is a circuit diagram of the voice control panel module in this utility model. Detailed Implementation

[0020] The technical solutions in the embodiments of this utility model will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0021] refer to Figures 1 to 6 A customizable ambient lighting switch includes a button control panel module and a voice control panel module. The button control panel module is used by the user to input ambient lighting setting information via buttons, and the voice control panel module is used by the user to input ambient lighting setting information via voice. Based on the received information, the user can adjust the brightness, color, or on / off state of each light to achieve customizable ambient lighting settings. The button control panel module includes a single-channel two-button panel, a two-channel four-button panel, a three-channel four-button panel, and a four-channel six-button panel.

[0022] In this embodiment, the button control panel module provides multiple panel options (single-channel two-button, two-channel four-button, three-channel four-button, and four-channel six-button) to meet the needs of different users and scenarios. Whether it's simple two-button control or a complex six-button layout, users can choose the appropriate panel according to their preferences and needs. The addition of the voice control panel module allows users to set and adjust the lighting via voice commands, eliminating the need for manual operation and further improving ease of use. Voice control is particularly useful when the light is dim or when the user's hands are unavailable. It can adjust the brightness, color, or on / off status of each light based on the information input by the user via buttons or voice. This customizable setting function allows users to set appropriate lighting effects according to different scenarios (such as reading, watching movies, parties, etc.), creating a more comfortable and personalized atmosphere. By combining button and voice control methods, it provides more flexible and diverse lighting control methods. Users can switch control methods at any time or use both methods simultaneously to achieve more precise lighting adjustments according to actual needs. It also supports group control of multiple lights, allowing users to control the on / off and brightness adjustment of multiple lights with one button, further improving the efficiency and convenience of lighting control.

[0023] Preferably, the single-channel two-button panel includes a first panel switch button circuit, a first 2.4G Bluetooth wireless transmission circuit, a first AC zero-crossing detection circuit, a first 220VAC to 5VDC circuit, and a first relay control circuit. The first panel switch button circuit is used to set two buttons. The first 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The first AC zero-crossing detection circuit is used to detect the zero point of AC power. The first 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the first panel switch button circuit, the first 2.4G Bluetooth wireless transmission circuit, the first AC zero-crossing detection circuit, and the first relay control circuit. The first relay control circuit is connected to the first panel switch button circuit, the first 2.4G Bluetooth wireless transmission circuit, and the first AC zero-crossing detection circuit, and is used to receive button input or Bluetooth signals, and safely control the on / off state of the relay through AC zero-crossing detection.

[0024] In this embodiment, users can easily input scene lighting settings information, such as selecting a specific lighting scene, adjusting the brightness or color of the light, through the two buttons on the single-channel two-button panel. This button operation is intuitive and easy to understand, allowing users to quickly customize the desired lighting effects. The application of the first 2.4G Bluetooth wireless transmission circuit enables the switch device to receive control signals from remote Bluetooth devices. This means that users can not only set the settings through the buttons on the panel, but also remotely control it through applications on smart devices such as mobile phones and tablets, further improving the convenience of use. The first AC zero-crossing detection circuit can accurately detect the zero point of the AC current, thereby ensuring that the relay performs switching operations at a safe time. This not only protects the circuit from damage caused by current surges but also extends the lifespan of the relays, while improving the stability and safety of the entire device. The first 220VAC to 5VDC circuit can efficiently convert AC power into DC power for use by other circuit modules. This power conversion not only ensures the normal operation of each circuit module but also improves energy utilization efficiency and reduces energy consumption. The first relay control circuit can receive control commands from key input or Bluetooth signals and safely control the on / off state of the relays based on the AC zero-crossing detection results. This intelligent control method enables the lighting system to automatically adjust the brightness, color, or on / off status of each light according to the user's settings, realizing customized settings and intelligent control of scene lighting.

[0025] Preferably, the dual-channel four-button panel includes a second panel switch button circuit, a second 2.4G Bluetooth wireless transmission circuit, a second zero-crossing detection circuit, a second 220VAC to 5VDC circuit, a second relay control circuit, and a first indicator light circuit. The second panel switch button circuit is used to set four buttons. The second 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The second AC zero-crossing detection circuit is used to detect the zero point of AC power. The second 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the second panel switch button circuit, the second 2.4G Bluetooth wireless transmission circuit, the second AC zero-crossing detection circuit, the second relay control circuit, and the first indicator light circuit. The second relay control circuit is connected to the second panel switch button circuit, the second 2.4G Bluetooth wireless transmission circuit, and the second AC zero-crossing detection circuit, and is used to receive button input or Bluetooth signals, and safely control the on / off state of the relay through AC zero-crossing detection. The first indicator light circuit is used to indicate the current state of the dual-channel four-button panel.

[0026] In this embodiment, by setting four buttons, users can intuitively perform various operations, such as switching and adjusting, which improves the ease of use; the second AC zero-crossing detection circuit can accurately detect the zero point of AC power, ensuring that the relay performs switching operations at a safe time, avoiding sparks or arcs that may be caused by switching during voltage peaks or troughs, thereby improving the safety and stability of the circuit; the first indicator light circuit can clearly indicate the current status of the two-way four-button panel, such as the switch status, Bluetooth connection status, etc., so that users can quickly understand the working status of the panel.

[0027] Preferably, the three-way four-button panel includes a third panel switch button circuit, a third 2.4G Bluetooth wireless transmission circuit, a first relay group, a third AC zero-crossing detection circuit, a third 220VAC to 5VDC circuit, and a first button light control circuit. The third panel switch button circuit is used to set four buttons. The third 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The first relay group is used to receive button input or Bluetooth signals and safely control the on / off state of external circuits through AC zero-crossing detection. The third AC zero-crossing detection circuit is used to detect the zero point of AC power. The third 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the third panel switch button circuit, the third 2.4G Bluetooth wireless transmission circuit, the first relay group, the third AC zero-crossing detection circuit, and the first button light control circuit. The first button light control circuit is used to illuminate the corresponding indicator light when a button is pressed.

[0028] In this embodiment, the first relay group is used to receive key input or Bluetooth signals, and safely control the on / off state of the external circuit through the third AC zero-crossing detection circuit. AC zero-crossing detection can ensure that the circuit switching is performed near the zero point of the AC power, thereby avoiding sparks or damage that may be caused by sudden current changes, and improving the safety and reliability of the circuit. The first key light control circuit illuminates the corresponding indicator light when the key is pressed, providing intuitive feedback. At the same time, since the light only illuminates when the key is operated, it can effectively save energy, which is in line with the concept of energy conservation and environmental protection.

[0029] Preferably, the four-way six-button panel includes a fourth panel switch button circuit, a fourth 2.4G Bluetooth wireless transmission circuit, a second relay group, a fourth AC zero-crossing detection circuit, a fourth 220VAC to 5VDC circuit, a second button light control circuit, and a master switch button circuit. The fourth panel switch button circuit is used to set six buttons. The fourth 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The second relay group is used to receive button input or Bluetooth signals and safely control the on / off state of external circuits through AC zero-crossing detection. The fourth AC zero-crossing detection circuit is used to detect the zero point of AC power. The fourth 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the fourth panel switch button circuit, the fourth 2.4G Bluetooth wireless transmission circuit, the second relay group, the fourth AC zero-crossing detection circuit, the second button light control circuit, and the master switch button circuit. The second button light control circuit is used to illuminate the corresponding indicator light when a button is pressed. The master switch button circuit is used to simultaneously cut off the power supply to all circuit paths on the four-way six-button panel.

[0030] In this embodiment, the fourth panel switch circuit provides a wealth of operation options by setting six buttons, allowing users to make various settings and controls according to actual needs. The second relay group is used to receive button input or Bluetooth signals and safely control the on / off of external circuits through AC zero-crossing detection. This design not only ensures the accuracy of circuit control but also improves the safety of circuit switching through AC zero-crossing detection, avoiding potential dangers caused by improper operation or sudden current changes. The design of the master switch circuit allows users to simultaneously cut off the power supply to all circuit paths on the four-way six-button panel, realizing rapid power-off control of the entire panel. This design is particularly important in emergency situations, as it can quickly cut off the power supply to avoid potential safety risks.

[0031] Preferably, the voice control panel module includes a microphone circuit, a voice control circuit, a wireless communication circuit, a second indicator light circuit, a power supply circuit, a fifth AC zero-crossing detection circuit, and a third relay group. The microphone circuit is equipped with at least one microphone for receiving voice commands. The voice control circuit controls the switching state of at least one circuit path according to the voice commands. The wireless communication circuit is used for wireless communication with external devices. The second indicator light circuit is used to display the switching state of the circuit path. The power supply circuit provides power to the microphone, voice control circuit, wireless communication circuit, second indicator light circuit, fifth AC zero-crossing detection circuit, and third relay group. The fifth AC zero-crossing detection circuit is used to detect the zero-crossing point of the AC power. The third relay group is used to control the switching of the circuit paths, with each relay corresponding to one circuit path.

[0032] In this embodiment, the microphone circuit allows users to control the switching status of circuit paths via voice commands, greatly improving operational convenience, especially for elderly users or those who are unable to operate manually. The voice control circuit can recognize and respond to voice commands, realizing intelligent control of the device. This not only reduces the frequency of manual operation but also helps improve the automation level of living or working environments. The wireless communication circuit enables the voice control panel module to communicate with external devices, such as smartphones and smart home systems. This communication capability not only facilitates remote monitoring and control but also provides more possibilities for device expansion and integration. The second indicator light circuit displays the switching status of circuit paths, allowing users to intuitively understand the current operating status of the device. This helps users to promptly identify problems and make corresponding adjustments. The fifth AC zero-crossing detection circuit can detect the zero-crossing point of AC power, which is crucial for controlling the switching status of the circuit. Switching operations near the zero-crossing point can reduce the impact on the power grid and improve the safety and stability of the device. The third relay group is used to control the switching of circuit paths, with each relay corresponding to one circuit path. This design allows users to flexibly control the switching status of each circuit path, meeting the control needs in different scenarios.

[0033] It should be noted that the wireless communication circuit includes a 433 wireless transmitter chip circuit and a 2.4G Bluetooth wireless transmitter chip circuit. The fifth AC zero-crossing detection circuit and the third relay group are not included. Figure 6 As shown in the image.

[0034] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A switch device for customizable ambient lighting, characterized in that, The system includes a button control panel module and a voice control panel module. The button control panel module is used by the user to input ambient lighting settings information via buttons, while the voice control panel module is used by the user to input ambient lighting settings information via voice. Based on the received information, the user can adjust the brightness, color, or on / off status of each light channel to achieve customized ambient lighting settings. The button control panel module includes single-channel two-button panels, two-channel four-button panels, three-channel four-button panels, and four-channel six-button panels.

2. The switch device for customizable scene lighting according to claim 1, characterized in that, The single-channel two-button panel includes a first panel switch button circuit, a first 2.4G Bluetooth wireless transmission circuit, a first AC zero-crossing detection circuit, a first 220VAC to 5VDC conversion circuit, and a first relay control circuit. The first panel switch button circuit is used to set two buttons. The first 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The first AC zero-crossing detection circuit is used to detect the zero point of AC power. The first 220VAC to 5VDC conversion circuit is used to convert AC power into DC power for use by the first panel switch button circuit, the first 2.4G Bluetooth wireless transmission circuit, the first AC zero-crossing detection circuit, and the first relay control circuit. The first relay control circuit is connected to the first panel switch button circuit, the first 2.4G Bluetooth wireless transmission circuit, and the first AC zero-crossing detection circuit, and is used to receive button input or Bluetooth signals, and safely control the on / off state of the relay through AC zero-crossing detection.

3. The switch device for customizable scene lighting according to claim 1, characterized in that, The dual-channel four-button panel includes a second panel switch button circuit, a second 2.4G Bluetooth wireless transmission circuit, a second zero-crossing detection circuit, a second 220VAC to 5VDC circuit, a second relay control circuit, and a first indicator light circuit. The second panel switch button circuit is used to set four buttons. The second 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The second AC zero-crossing detection circuit is used to detect the zero point of AC power. The second 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the second panel switch button circuit, the second 2.4G Bluetooth wireless transmission circuit, the second AC zero-crossing detection circuit, the second relay control circuit, and the first indicator light circuit. The second relay control circuit is connected to the second panel switch button circuit, the second 2.4G Bluetooth wireless transmission circuit, and the second AC zero-crossing detection circuit. It is used to receive button input or Bluetooth signals and safely control the on / off state of the relay through AC zero-crossing detection. The first indicator light circuit is used to indicate the current state of the dual-channel four-button panel.

4. The switch device for customizable scene lighting according to claim 1, characterized in that, The three-way four-button panel includes a third panel switch button circuit, a third 2.4G Bluetooth wireless transmission circuit, a first relay group, a third AC zero-crossing detection circuit, a third 220VAC to 5VDC circuit, and a first button light control circuit. The third panel switch button circuit is used to set four buttons. The third 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The first relay group is used to receive button input or Bluetooth signals and safely control the on / off state of external circuits through AC zero-crossing detection. The third AC zero-crossing detection circuit is used to detect the zero point of AC power. The third 220VAC to 5VDC circuit is used to convert AC power into DC power for use by the third panel switch button circuit, the third 2.4G Bluetooth wireless transmission circuit, the first relay group, the third AC zero-crossing detection circuit, and the first button light control circuit. The first button light control circuit is used to illuminate the corresponding indicator light when a button is pressed.

5. A switch device for customizable scene lighting according to claim 1, characterized in that, The four-way six-button panel includes a fourth panel switch button circuit, a fourth 2.4G Bluetooth wireless transmission circuit, a second relay group, a fourth AC zero-crossing detection circuit, a fourth 220VAC to 5VDC circuit, a second button light control circuit, and a master switch button circuit. The fourth panel switch button circuit is used to set six buttons. The fourth 2.4G Bluetooth wireless transmission circuit is used to realize wireless communication control. The second relay group is used to receive button input or Bluetooth signals and safely control the on / off of external circuits through AC zero-crossing detection. The fourth AC zero-crossing detection circuit is used to detect the zero point of AC power. The fourth 220VAC to 5VDC circuit is used to convert AC power to DC power for use by the fourth panel switch button circuit, the fourth 2.4G Bluetooth wireless transmission circuit, the second relay group, the fourth AC zero-crossing detection circuit, the second button light control circuit, and the master switch button circuit. The second button light control circuit is used to illuminate the corresponding indicator light when a button is pressed. The master switch button circuit is used to simultaneously cut off the power supply to all circuit paths on the four-way six-button panel.

6. A switch device for customizable scene lighting according to claim 1, characterized in that, The voice control panel module includes a microphone circuit, a voice control circuit, a wireless communication circuit, a second indicator light circuit, a power supply circuit, a fifth AC zero-crossing detection circuit, and a third relay group. The microphone circuit is equipped with at least one microphone for receiving voice commands. The voice control circuit controls the switching state of at least one circuit path according to the voice commands. The wireless communication circuit is used for wireless communication with external devices. The second indicator light circuit is used to display the switching state of the circuit path. The power supply circuit provides power to the microphone, voice control circuit, wireless communication circuit, second indicator light circuit, fifth AC zero-crossing detection circuit, and third relay group. The fifth AC zero-crossing detection circuit is used to detect the zero-crossing point of the AC power. The third relay group is used to control the switching of the circuit paths, with each relay corresponding to one circuit path.