Electric control atmosphere lamp

By designing an electronically controlled ambient light, and utilizing multiple light-transmitting parts with different structures and motor drives, the problem of monotonous optical effects of the lighting fixtures was solved, achieving rich optical effects and dynamic changes, thus enhancing the user experience.

CN223178698UActive Publication Date: 2025-08-01GODOX PHOTO EQUIPMENT CO LTD
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Patent Information

Application Number
CN202422518334.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-01
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

The lighting effects produced by existing lighting fixtures are relatively simple and cannot meet the increasingly diverse needs of users in various scenarios, thus affecting the user experience.

Method used

Design an electronically controlled ambient light, including a light body, a light effect component, and a motor. The light effect component is composed of multiple light-transmitting parts with different structures. The motor drives the light effect component to rotate, so that the light source can selectively face the light-transmitting parts or sequentially face the light-transmitting parts to produce different optical effects.

Benefits of technology

It enriches the user experience, meets the needs of different scenarios, achieves dynamically changing optical effects, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electric control atmosphere lamp which comprises a lamp body, a lighting effect piece and a motor, the lighting effect piece comprises a plurality of light-transmitting parts of different structures, the light-transmitting parts of different structures generate different optical effects, the motor drives the lighting effect piece to rotate, the lighting effect piece can be rotatably arranged on the periphery of a barrel of the lamp body in a sleeved mode, and the lighting effect piece can be driven by the motor to rotate. And the light source can be selectively opposite to any one of the plurality of light-transmitting parts or sequentially opposite to the light-transmitting parts. By means of the arrangement, a user can select the specific light-transmitting part to be opposite to the light source according to actual use requirements to obtain the needed optical effect, continuous rotation of the light effect piece can be kept to obtain the dynamically-changing optical effect, and therefore the use experience of the user is effectively enriched, and the use requirements of the user for different scenes are met.
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Description

Technical Field

[0001] The utility model relates to the technical field of light-emitting equipment, in particular to an electrically controlled atmosphere lamp. Background Art

[0002] As people's living standards improve, some restaurants and homes often need to use some lights to create some atmosphere effects to improve people's quality of life.

[0003] However, the lighting atmosphere effects produced by existing lamps are generally relatively simple, and they only perform projection processing on the light to display fixed light and shadow images, which can no longer meet the users' increasingly diverse scene usage needs and affect the users' usage experience. Utility Model Content

[0004] The purpose of the present utility model is to solve the technical problem that in the prior art, the lighting atmosphere effects produced by lamps are generally relatively simple, and they only perform projection processing on the light to display a fixed light and shadow image, which can no longer meet the users' increasingly diverse scene usage needs and affects the users' usage experience.

[0005] In order to solve the above technical problems, the present invention provides an electrically controlled atmosphere lamp, which comprises:

[0006] The lamp body comprises a cylindrical body and a light source disposed in the cylindrical body, wherein the light source is capable of emitting light and emitting light from a side wall of the cylindrical body;

[0007] The light effect member includes a top plate and a plurality of light-transmitting portions. The light effect member is rotatably mounted on the outer circumference of the cylindrical body, with the light-emitting surface of the light source facing the light-transmitting portions. The ends of the light-transmitting portions are connected to the edges of the top plate. The plurality of light-transmitting portions are sequentially arranged along the circumference of the top plate and are sequentially enclosed and connected. The structures of the light-transmitting portions are different to produce different optical effects.

[0008] a motor disposed inside the lamp body, wherein a drive shaft of the motor is connected to the top plate to drive the light effect element to rotate relative to the lamp body;

[0009] The light effect component rotates relative to the lamp body, so that the light source can selectively face any one of the multiple light-transmitting parts or face multiple light-transmitting parts in sequence, so that the light emitted by the light source passes through the corresponding light-transmitting parts to produce different optical effects.

[0010] In some embodiments of the present application, the top plate includes a plate body and a connecting portion protruding from the inner wall of the plate body, and the light-transmitting portion is connected to the edge of the plate body; a connecting groove is provided on the connecting portion, and the end of the drive shaft is clamped and fixed in the connecting groove.

[0011] In some embodiments of the present application, the motor includes a machine body and a drive shaft rotatably disposed on the machine body; the lamp body further includes a mounting partition protruding from the inner side wall of the cylinder, and the machine body is disposed on the mounting partition.

[0012] In some embodiments of the present application, the motor further includes a flange provided on the side wall of the machine body, and the flange is provided with a mounting hole; a connection hole is formed on the mounting partition, and the electronic control atmosphere lamp further includes a fastener, and the fastener passes through the corresponding mounting hole and connection hole, so that the motor is fixed on the mounting partition.

[0013] In some embodiments of the present application, the electronic control atmosphere lamp further includes a battery, and the battery is disposed inside the cylinder and is electrically connected to the motor and the light source to supply power to the motor and the light source.

[0014] In some embodiments of the present application, the top plate is polygonal, and the light source includes a plurality of connecting side edges; a plurality of the light-transmitting portions are respectively connected to the plurality of connecting side edges, so that the light-transmitting portion and the top plate enclose a prism structure.

[0015] In some embodiments of the present application, a light-transmitting window is formed on the side wall of the cylinder, and the light source is disposed at the light-transmitting window; the electronic control atmosphere lamp further includes a lens covering the light-transmitting window, and the lens is arranged on one side of the light-emitting surface of the light source.

[0016] In some embodiments of the present application, the light-transmitting portion and the lens may be a lens, a plane mirror, a logo piece, a color filter, a light filter, a soft light sheet.

[0017] In some embodiments of the present application, the electronic control atmosphere lamp further includes a heat dissipation member, and the heat dissipation member includes a heat dissipation main body and a plurality of heat dissipation fins spaced on the surface of the heat dissipation main body, and the surface of the heat dissipation main body facing away from the heat dissipation fins is attached to the side of the light source facing away from the light-emitting surface.

[0018] In some embodiments of the present application, the lamp body further includes a base, and the base includes a base body and a first boss portion and a second boss portion both arranged in a ring shape on the surface of the base body. The surface of the base facing away from the first boss and the second boss is provided with a screw hole for connecting with an external support device;

[0019] The first boss portion protrudes from the surface of the base body, and the second boss portion protrudes from the surface of the first boss portion facing away from the base body. The second boss portion and the first boss portion form a stepped structure;

[0020] The end of the light effect component facing away from the top plate is rotatably sleeved on the outer peripheral side of the first boss portion, and the end face of the light-transmitting portion facing away from the top plate abuts against the surface of the seat main body; one end of the cylinder is open, and the end of the cylinder with the opening is sleeved and fixed on the outer peripheral side of the second boss portion, and the end face of the cylinder abuts against the surface of the first boss portion.

[0021] As can be seen from the above technical solutions, the beneficial effects of the present utility model are as follows: The electric control atmosphere lamp of the present utility model includes a lamp main body, a light effect component and a motor. The light effect component includes a plurality of light-transmitting portions with different structures, and the optical effects generated by the light-transmitting portions with different structures are different. The motor drives the light effect component to rotate, and the light effect component can be rotatably sleeved on the outer periphery of the cylinder of the lamp main body, so that the light source can selectively face any one of the plurality of light-transmitting portions or sequentially face the light-transmitting portions. Such a setting enables the user to select a specific light-transmitting portion to face the light source according to actual usage needs to obtain the required optical effect, or to keep the light effect component rotating continuously to obtain a dynamically changing optical effect, thereby effectively enriching the user's usage experience and meeting the user's usage needs for different scenarios. Description of the Drawings

[0022] Figure 1 It is a schematic structural diagram of an embodiment of the electric control atmosphere lamp of the present utility model.

[0023] Figure 2 is Figure 1 The exploded view of the electric control atmosphere lamp shown.

[0024] Figure 3 is Figure 1 Another exploded view of the electric control atmosphere lamp shown.

[0025] Figure 4 is Figure 1 The cross-sectional view of the electric control atmosphere lamp shown.

[0026] Figure 5 is Figure 2 The cross-sectional view of the electric control atmosphere lamp shown.

[0027] The description of the reference numerals is as follows: 100, electric control ambient light; 10, lamp body; 11, cylinder; 111, cylinder body; 112, upper cover; 113, perforation; 12, light source; 13, light-transmitting window; 14, mounting edge; 15, base; 151, base body; 152, first boss part; 153, second boss part; 16, mounting partition; 161, connecting column; 162, connecting hole; 20, light effect part; 21, top plate; 211, plate body; 212, connecting part; 213, connecting groove; 22, light-transmitting part; 30, lens; 40, heat dissipation part; 41, heat dissipation body; 42, heat dissipation fins; 50, motor; 51, motor body; 52, drive shaft; 53, flange; 54, mounting hole; 60, battery; 70, fastener. Detailed implementation manners

[0028] Typical implementation manners reflecting the features and advantages of the present utility model will be described in detail in the following description. It should be understood that the present utility model can have various changes in different implementation manners, all of which do not depart from the scope of the present utility model, and the descriptions and illustrations therein are essentially for illustrative purposes rather than for limiting the present utility model.

[0029] In the description of the present application, it should be understood that in the embodiments shown in the drawings, the indication of directions or positional relationships (such as up, down, left, right, front, and back, etc.) is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. When these elements are in the positions shown in the drawings, these descriptions are appropriate. If the descriptions of the positions of these elements change, then the indication of these directions also changes accordingly.

[0030] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the said features. In the description of the present application, the meaning of "a plurality" is two or more, unless otherwise specifically defined.

[0031] Refer to Figures 1 to 3 , an embodiment of the present application provides an electric control ambient light 100, which can produce different optical effects and optimize the user experience. The electric control ambient light 100 includes a lamp body 10, a light effect part 20, and a motor 50.

[0032] Specifically, the lamp body 10 includes a cylinder 11 and a light source 12 disposed in the cylinder 11. The light source 12 can emit light and can emit light from the side wall of the cylinder 11. The light effect member 20 includes a top plate 21 and a plurality of light-transmitting portions 22. The light effect member 20 is rotatably sleeved on the outer periphery of the cylinder 11, and the light-emitting surface of the light source 12 faces the light-transmitting portions 22. The end portions of the light-transmitting portions 22 are connected to the edge of the top plate 21. The plurality of light-transmitting portions 22 are arranged in sequence along the circumferential direction of the top plate 21, and the plurality of light-transmitting portions 22 are sequentially enclosed and connected. The structures of the respective light-transmitting portions 22 are different from each other to produce different optical effects.

[0033] The motor 50 is disposed inside the lamp body 10. The drive shaft 52 of the motor 50 is connected to the top plate 21 to drive the light effect member 20 to rotate relative to the lamp body 10.

[0034] Wherein, the light effect member 20 rotates relative to the lamp body 10, so that the light source 12 can selectively face any one of the plurality of light-transmitting portions 22 or sequentially face the plurality of light-transmitting portions 22, so that the light emitted by the light source 12 passes through the corresponding light-transmitting portion 22 to produce different optical effects.

[0035] For the electronic control atmosphere lamp 100 of the present application, during actual use, the user can select the corresponding optical effect, that is, the light effect member 20 can be driven to rotate so that the light source 12 faces one of the light-transmitting portions 22 to obtain a specific optical effect; or the light effect member 20 can be driven to continuously rotate so that the light source 12 sequentially faces different light-transmitting portions 22, so that the light emitted by the light source 12 sequentially passes through different light-transmitting portions 22, making the electronic control atmosphere lamp 100 present a dynamically changing optical effect, effectively enriching the user experience and ensuring that the electronic control atmosphere lamp 100 can be applied to a variety of different usage scenarios.

[0036] In some embodiments of the present application, the top plate 21 is a polygon, and the top plate 21 includes a plurality of connecting side edges. The plurality of light-transmitting portions 22 are correspondingly connected to the plurality of connecting side edges of the top plate 21, so that the light effect member 20 has a multi-prismatic structure.

[0037] Wherein, the light-transmitting portion 22 is light-transmitting and can realize the light effect processing of light. The light-transmitting portion 22 can be one of a lens, a plane mirror, a logo sheet, a color filter, a light filter, and a soft light sheet. Among them, the logo sheet is also called a pattern sheet or a gobo sheet, which can project various patterns through light, and the patterns include logos, patterns, characters, etc.; its materials are divided into metal lamp sheets, copper lamp sheets, glass lamp sheets, colored glass sheets, etc.

[0038] The types of the multiple light-transmitting parts 22 in the light effect part 20 can be the same or different. The top plate 21 can be made opaque to prevent the leakage of the light emitted by the light source 12, ensure that the light effectively undergoes light effect processing through the light-transmitting parts 22, and ensure the overall light emission brightness of the electric control atmosphere lamp 100.

[0039] In this embodiment, the structures of the respective light-transmitting parts 22 are different from each other. Among them, the different structures of the light-transmitting part 22 can be the size of its thickness, the size of its curvature, the shape specification, etc., or the structure of the surface of the light-transmitting part 22 can be different.

[0040] Specifically, in some examples, uneven structures of different shapes can be provided on the light-transmitting part 22, such as bump structures, groove structures, texture structures, etc., so that the light-transmitting parts 22 of different structural forms present different optical effects.

[0041] Moreover, by changing the number and arrangement form of the bump structures and groove structures, or the shape of the texture structure, such as being set in a wavy shape, a serrated shape, a striped shape, etc., the light-transmitting parts 22 of different structural forms present different optical effects.

[0042] In some examples, the surface of the light-transmitting part 22 can also be frosted, and by changing the frosting degree of the surfaces of different light-transmitting parts 22, the optical effects of the respective light-transmitting parts 22 are made different, thereby generating light effects with different degrees of haziness.

[0043] In other examples, the respective light-transmitting parts 22 can also be set to different colors, such as being set to blue, green, red, etc., so that corresponding light effects of the corresponding colors are generated after the light passes through.

[0044] By setting the top plate 21 into a polygonal structure, the integrated setting of the multiple light-transmitting parts 22 can be realized, and the surrounding connection of the multiple light-transmitting parts 22 can be realized, so that the light effect part 20 can form a multi-prism structure with one end open, so that the light effect part 20 can form the outer shell of the electric control atmosphere lamp 100, so that the light effect part 20 can not only form different light effects, but also protect the lamp body 10, and its degree of functional integration is relatively high.

[0045] Furthermore, the lamp body 10 includes a cylinder body 11 and a light source 12 arranged in the cylinder body 11, and the light emitted by the light source 12 can undergo light effect processing through the light-transmitting part 22. When the light effect part 20 rotates relative to the lamp body 10, the light source 12 can selectively face any one of the multiple light-transmitting parts 22 or sequentially face the multiple light-transmitting parts 22, so that the light emitted by the light source 12 passes through the corresponding light-transmitting part 22 to generate different optical effects.

[0046] The light source 12 can be a lamp board, which includes a board body and lamp beads arranged on the board body. There are multiple lamp beads, and the multiple lamp beads are spaced apart on the surface of the board body. The lamp beads can emit light and form the light-emitting surface of the light source 12.

[0047] Specifically, the user can rotate the light effect member 20 according to their own usage needs to make the light source 12 face one of the light-transmitting parts 22, so as to obtain the corresponding light effect; or the user can keep the light effect member 20 rotating continuously to make the light source 12 face multiple light-transmitting parts 22 in sequence, so that the light changes to produce different optical effects, making the electronic control atmosphere lamp 100 present a dynamic optical effect, effectively enriching the user experience and ensuring that the electronic control atmosphere lamp 100 can be applied to a variety of different usage scenarios.

[0048] In some embodiments of the present application, in combination with Figure 3 , Figure 4 and Figure 5 , the cylinder body 11 includes a cylinder main body 111 and an upper cover 112. The cylinder main body 111 is a cylindrical structure with openings at both ends and a hollow interior. In the view direction of the accompanying drawings of the specification, the upper cover 112 is arranged at the top opening of the cylinder main body 111.

[0049] It should be noted that when the electronic control atmosphere lamp 100 of the present application is in use, it can be placed in the state presented in the accompanying drawings of the specification, that is, the top plate 21 and the upper cover 112 in the electronic control atmosphere lamp 100 are both in the top position, and one end of the electronic control atmosphere lamp 100 away from the top plate 21 is the bottom and can be used to place on a plane such as a table; when the electronic control atmosphere lamp 100 of the present application is in use, there can also be other placement states, such as hanging upside down on the roof, hanging on the side wall of the wall or other objects, etc. At this time, the concepts of the top and bottom in the electronic control atmosphere lamp 100 can be adjusted correspondingly.

[0050] That is, the description of the top, bottom and other orientations of the electronic control atmosphere lamp 100 in this article only refers to the illustrated state presented in the accompanying drawings of the specification, and does not limit the usage state form of the electronic control atmosphere lamp 100, nor does it limit the connection position relationship of the components in the electronic control atmosphere lamp 100.

[0051] In this example, a light-transmitting window 13 is provided on the side wall of the cylinder main body 111. The light source 12 is arranged inside the cylinder main body 111 and is close to the light-transmitting window 13, and the light-emitting surface of the light source 12 faces the outside of the main body through the light-transmitting window 13.

[0052] The electronic control atmosphere lamp 100 of the present application further includes a lens 30. The lens 30 is arranged on the cylinder main body 111 and covers the light-transmitting window 13, and the lens 30 is arranged on one side of the light-emitting surface of the light source 12. The lens 30 can protect the light source 12, and the light emitted by the light source 12 can pass through the lens 30 and then shoot towards the light effect member 20.

[0053] In some examples, a lens 30 with optical processing effects can be set, such as a lens, a plane mirror, a logo sheet, a color filter, a light filter, a soft light sheet, etc. Among them, the logo sheet is also called a pattern sheet or a gobo sheet, which can project various patterns through light, and the patterns include logos, patterns, characters, etc.; its materials are divided into metal lamp sheets, copper lamp sheets, glass lamp sheets, colored glass sheets, etc.

[0054] The light emitted by the light source 12 can first be processed by the lens 30 and then be secondarily processed by the light transmissive part 22, so as to superimpose and generate different optical effects, providing a richer user experience for users.

[0055] In addition, the electronic control ambient light 100 of the present application further includes a heat dissipation member 40, and the heat dissipation member 40 includes a heat dissipation main body 41 and a plurality of heat dissipation fins 42 spaced apart and arranged on the surface of the heat dissipation main body 41.

[0056] The surface of the heat dissipation main body 41 facing away from the heat dissipation fins 42 is attached to the side of the light source 12 facing away from the light emitting surface. The heat dissipation main body 41 can transfer the heat on the light source 12 to the heat dissipation fins 42, and then the heat is diffused by the plurality of heat dissipation fins 42, avoiding the accumulation of heat on the light source 12, ensuring the effective normal use of the electronic control ambient light 100, and ensuring the service life of the electronic control ambient light 100.

[0057] In some embodiments of the present application, an installation stop edge 14 is further provided on the inner wall of the cylinder body 111. There are two installation stop edges 14, and they are respectively arranged near the top and bottom of the light transmissive window 13.

[0058] The installation stop edge 14 is L-shaped, and an installation groove is formed inside the installation stop edge 14. One end of the installation stop edge 14 is connected to the inner wall of the cylinder body 111, and the other end is bent towards the direction close to the light transmissive window 13 to form an abutting end. In the present application, the top and bottom of the light source 12 are respectively clamped in the installation grooves of the two installation stop edges 14, and the abutting ends of the two installation stop edges 14 respectively abut against the top and bottom of the heat dissipation member 40, so that the light source 12 and the heat dissipation member 40 are stably installed inside the cylinder body 11.

[0059] In some embodiments of the present application, the lamp main body 10 further includes a base 15, and the base 15 is arranged at the opening at one end of the cylinder body 111 facing away from the upper cover 112.

[0060] In this embodiment, the base 15 includes a base main body 151 and a first boss portion 152 and a second boss portion 153 that are both annular. The first boss portion 152 and the second boss portion 153 are both arranged on the surface of the base main body 151, and screw holes for connecting with an external support device are provided on the surface of the base main body 151 facing away from the first boss 152 and the second boss 153.

[0061] The provision of screw holes on the base body 151 enables the connection between the base and an external support device, and can fix the electric control ambient light 100 on an external support frame, a fixed tabletop, etc.

[0062] The first boss portion 152 protrudes from the surface of the base body 151, and the second boss portion 153 protrudes from the surface of the first boss portion 152 facing away from the base body 151. The second boss portion 153 and the first boss portion 152 form a stepped structure.

[0063] The end of the light effect member 20 facing away from the top plate 21 is rotatably sleeved on the outer peripheral side of the first boss portion 152, and the end face of the light transmission portion 22 facing away from the top plate 21 abuts against the surface of the base body 151. When the light effect member 20 rotates relative to the lamp body 10 and the base 15, the first boss portion 152 can limit the light effect member 20 to prevent it from shaking, ensuring that the relative position between the light source 12 and the light transmission portion 22 is stably achieved.

[0064] One end of the barrel body 111 of the barrel 11 facing away from the upper cover 112 is open and fixed on the outer peripheral side of the second boss portion 153, and the end face of the barrel 11 abuts against the surface of the first boss portion 152. The provisions of the first boss portion 152 and the second boss portion 153 define the installation positions of the lamp body 10 and the light effect member 20, ensuring that the light effect member 20 in a rotating state can be stably and relatively aligned with the light source 12, so as to ensure effective light effect processing of the light by the light transmission portion 22.

[0065] Furthermore, in some embodiments of the present application, the electric control ambient light 100 further includes a motor 50. The motor 50 is arranged inside the lamp body 10, and the drive shaft 52 of the motor 50 is connected to the top plate 21 to drive the light effect member 20 to rotate relative to the lamp body 10.

[0066] In some examples, an installation partition 16 is provided inside the barrel 11. The side of the installation partition 16 is fixed to the inner side wall of the barrel body 111. Avoidance notches are provided at the positions of the installation partition 16 corresponding to the heat dissipation member 40 and the light source 12. The installation partition 16 is arranged close to the upper cover 112, and the motor 50 is fixed on the installation partition 16 and arranged between the upper cover 112 and the installation partition 16. [[ID=1,6]]

[0067] The output shaft of the motor 50 faces the upper cover 112. A through hole 113 is provided at the corresponding position of the upper cover 112. The output shaft of the motor 50 passes through the through hole 113 and is fixed to the top plate 21 of the light effect member 20.

[0068] In some examples, the top plate 21 includes a plate body 211 and a connecting portion 212 protruding from the inner wall of the plate body 211. The light transmission portion 22 is connected to the edge of the plate body 211. A connecting groove 213 is provided on the connecting portion 212, and the end of the drive shaft 52 is clamped and fixed in the connecting groove 213.

[0069] The drive shaft 52 of the motor 50 is clamped with the connecting groove 213, so that the drive shaft 52 is fixed to the top plate 21. The drive shaft 52 rotates to drive the top plate 21 to rotate, thereby realizing the rotation of the light effect member 20.

[0070] In some embodiments of the present application, the motor 50 includes a machine body 51, a drive shaft 52 rotatably arranged on the machine body 51, and a convex edge 53 arranged on the side wall of the machine body 51.

[0071] The convex edge 53 is provided with a mounting hole 54, a connecting hole 162 is formed on the mounting partition 16, and the electronic control atmosphere lamp 100 further includes a fastener 70. The fastener 70 passes through the corresponding mounting hole 54 and connecting hole 162, so that the motor 50 is fixed on the mounting partition 16.

[0072] In some examples, a connecting column 161 can be arranged on the mounting partition 16, and the connecting hole 162 is formed in the connecting column 161. By passing the fastener 70 through the mounting hole 54 of the mounting hole 54 of the connecting column 161, the connection and fixation of the motor 50 and the mounting partition 16 are realized.

[0073] In some examples, the electronic control atmosphere lamp 100 may further include a battery 60. The battery 60 is arranged inside the cylinder body 11 and is electrically connected to the motor 50 and the light source 12 to supply power to the motor 50 and the light source 12.

[0074] The battery 60 can be arranged on the surface of the mounting partition 16 facing away from the motor 50, and the battery 60 can be clamped, adhered or magnetically fixed on the surface of the mounting partition 16.

[0075] In addition, the electronic control atmosphere lamp 100 of the present application may further include a controller, and the controller can be arranged in the cylinder body 11. The controller is electrically connected to the light source 12 and the motor 50 to output corresponding control signals to the light source 12 and the motor 50 correspondingly, so as to control the light source 12 and the motor 50. Specifically, it can control the opening and closing of the light source 12, the brightness and intensity of the light emitted by the light source 12, etc.; control the rotation speed and working frequency of the motor 50, etc.

[0076] The electronic control atmosphere lamp 100 may further include a remote controller, and the remote controller can be arranged independently of the lamp body 10 and the light effect member 20. The remote controller can be connected to the controller through a wireless signal module to realize remote control of the electronic control atmosphere lamp 100 by the user.

[0077] When the electric control ambient light 100 of the present application is in use, the light effect component 20 can be driven by the motor 50 to rotate so that the light source 12 faces one of the light-transmitting parts 22, thereby obtaining a specific optical effect. It is also possible to drive the light effect component 20 to continuously rotate by the motor 50, so that the light source 12 faces different light-transmitting parts 22 in sequence, so that the light emitted by the light source 12 passes through different light-transmitting parts 22 in sequence, making the electric control ambient light 100 present a dynamically changing optical effect, effectively enriching the user experience and ensuring that the electric control ambient light 100 can be applied to a variety of different usage scenarios.

[0078] For the electric control ambient light of the present application, it includes a lamp body, a light effect component and a motor. The light effect component includes a plurality of light-transmitting parts with different structures, and the optical effects generated by the light-transmitting parts with different structures are different. The motor drives the light effect component to rotate, and the light effect component can be rotatably sleeved on the outer periphery of the cylinder of the lamp body, so that the light source can selectively face any one of the plurality of light-transmitting parts or face the light-transmitting parts in sequence. This setting enables the user to select a specific light-transmitting part to face the light source according to actual usage needs to obtain the required optical effect, or to continuously rotate the light effect component to obtain a dynamically changing optical effect, thereby effectively enriching the user experience and meeting the user's usage requirements for different scenarios.

[0079] Although the present invention has been described with reference to several exemplary embodiments, it should be understood that the terms used are illustrative and exemplary, rather than restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above-described embodiments are not limited to any of the foregoing details, but should be broadly construed within the spirit and scope defined by the appended claims. Therefore, all changes and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.

Claims

1. An electronically controlled ambient light, characterized in that, Comprising: A lamp body, including a cylinder and a light source disposed in the cylinder, the light source being capable of emitting light and capable of emitting light from the side wall of the cylinder; An optical effect member, including a top plate and a plurality of light-transmitting portions, the optical effect member being rotatably sleeved on the outer periphery of the cylinder, the light-emitting surface of the light source facing the light-transmitting portions; the ends of the light-transmitting portions are connected to the edge of the top plate, and the plurality of light-transmitting portions are arranged in sequence along the circumference of the top plate, and the plurality of light-transmitting portions are sequentially enclosed and connected; the structures of the respective light-transmitting portions are different from each other to produce different optical effects; A motor, disposed inside the lamp body, the drive shaft of the motor being connected to the top plate to drive the optical effect member to rotate relative to the lamp body; Wherein, the optical effect member rotates relative to the lamp body, so that the light source can selectively face any one of the plurality of light-transmitting portions or sequentially face the plurality of light-transmitting portions, so that the light emitted by the light source passes through the corresponding light-transmitting portion to produce different optical effects.

2. The electronically controlled ambient light according to claim 1, wherein The top plate includes a plate body and a connecting portion protruding from the inner wall of the plate body, and the light-transmitting portion is connected to the edge of the plate body; a connecting groove is formed in the connecting portion, and the end of the drive shaft is clamped and fixed in the connecting groove.

3. The electronically controlled ambient light according to claim 1, characterized in that, 4. The electronically controlled ambient light according to claim 3, characterized in that, The motor includes a machine body and the drive shaft rotatably disposed on the machine body; the lamp body further includes a mounting partition protruding from the inner side wall of the cylinder, and the machine body is disposed on the mounting partition.

5. The electronic control ambient light according to claim 1, wherein The motor further includes a convex edge disposed on the side wall of the machine body, and a mounting hole is provided on the convex edge; a connecting hole is formed on the mounting partition, and the electronically controlled atmosphere lamp further includes a fastener, and the fastener passes through the corresponding mounting hole and connecting hole, so that the motor is fixed on the mounting partition.

6. The electronically controlled atmosphere lamp according to claim 1, characterized in that, The electronically controlled atmosphere lamp further includes a battery, and the battery is disposed inside the cylinder and electrically connected to the motor and the light source to supply power to the motor and the light source.

7. The electronically controlled ambient light according to claim 1, wherein The top plate is polygonal, and the light source includes a plurality of connecting side edges; the plurality of light-transmitting portions are correspondingly connected to the plurality of connecting side edges one by one, so that the light-transmitting portions and the top plate enclose a prism structure.

8. The electronically controlled ambient light according to claim 7, characterized in that, A light-transmitting window is formed on the side wall of the cylinder, and the light source is disposed at the light-transmitting window; the electronically controlled atmosphere lamp further includes a lens covering the light-transmitting window, and the lens is disposed on one side of the light-emitting surface of the light source.

9. The electronically controlled ambient light according to claim 1, characterized in that, The light-transmitting portion is one of a lens, a plane mirror, a logo sheet, a color filter, a light filter, and a soft light sheet; the lens is one of a lens, a plane mirror, a logo sheet, a color filter, a light filter, and a soft light sheet. The electronically controlled atmosphere lamp further includes a heat dissipation member, the heat dissipation member includes a heat dissipation main body and a plurality of heat dissipation fins spaced on the surface of the heat dissipation main body, and the surface of the heat dissipation main body facing away from the heat dissipation fins is attached to the side of the light source facing away from the light-emitting surface.

10. The electronically controlled ambient light according to claim 1, wherein The lamp body also includes a base, which includes a base body and a first boss portion and a second boss portion both annular and arranged on the surface of the base body. The surface of the base facing away from the first boss and the second boss is provided with a screw hole for connecting to an external support device; The first boss portion is protrudingly provided on the surface of the seat body, the second boss portion is protrudingly provided on the surface of the first boss portion away from the seat body, and the second boss portion and the first boss portion form a step-shaped structure; The end of the light effect component facing away from the top plate can be rotatably mounted on the outer peripheral side of the first boss portion, and the end surface of the light-transmitting portion facing away from the top plate abuts against the surface of the seat body; one end of the cylinder is open, and the end of the cylinder provided with the opening is mounted and fixed on the outer peripheral side of the second boss portion, and the end surface of the cylinder abuts against the surface of the first boss portion.