Track lamp
By introducing a damping structure and detachable connectors into the track lights, the flexible rotation of the support arm is achieved, solving the problems of limited adjustment and connection stability when installing track lights in grid ceilings, thus improving installation efficiency and aesthetics.
Patent Information
- Application Number
- CN202323331568.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-07
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2033-12-07
AI Technical Summary
When existing track lights are installed in grid ceilings, the short support arms, severely limited adjustment, and low connection stability result in complex installation and negatively impact aesthetics and visitor experience.
Design a track light structure including connectors, support arms, and light bodies. The support arms are equipped with damping structures at both ends to enable flexible rotation of the support arms. The connectors are detachably connected to the suspension track, and the light bodies are rotatably installed in the recessed holes of the support arms to enhance the tightness and stability of the connection.
While occupying less space, it improves the adjustability of the support arm, solves the problem of limited track light adjustment, enhances installation stability and convenience, and improves the installation efficiency of workers and the functional applicability of track lights.
Smart Images

Figure CN223826100U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lighting device field, specifically, relate to a track lamp convenient to hang. BACKGROUND
[0002] With the gradual improvement of people's quality of life and cultural needs, more and more cultural projects such as museums and art galleries attract more visitors to visit or participate, and many track lights are set up in cultural projects such as museums and art galleries according to the exhibition of cultural relics or works to facilitate visitors to visit cultural relics or works. Since the ceiling is a very common suspended ceiling in public building projects such as museums and art galleries, the existing track light is installed in the grid, and the track light arm is short and the adjustment is severely limited. The track is installed under the grid, which affects the overall appearance of the suspended ceiling and further affects the experience of visitors. In addition, the shape of the existing track light is various, such as cylindrical and square column guide rail spotlight, and the main structure includes reflector, LED light source module, radiator, lamp power supply warehouse, power supply and other main components. This type of track spotlight generally has the following shortcomings: complex structure, time-consuming and laborious production, poor heat dissipation, complex installation, etc. The main problem is that the power supply electrical box of the track spotlight is connected to the lamp connection arm, the three-core or four-core guide rail head is installed on the power supply warehouse, the power supply is fixed in the power supply warehouse, and the wire is connected. After covering the power supply warehouse cover and tightening the screw, it is not convenient to install, which affects the assembly speed of the staff, so it is of great significance to study how to improve the adjustment flexibility of the arm under the condition of ensuring that the track light occupies small space.
[0003] In the patent CN211315918U, a track spotlight convenient to install is mentioned, which comprises a heat dissipation shell, a connecting boom connected to the heat dissipation shell, and a guide rail head connected to the connecting boom; a mounting groove is formed in the heat dissipation shell, and the lower end of the connecting boom is mounted in the mounting groove through a fastening assembly; a light source is mounted in the front end of the heat dissipation shell through a light source pressing block, a face ring is rotatably connected to the front end of the heat dissipation shell, a lens is arranged on the inner side of the face ring, a lens reflecting cover is arranged on the outer side of the lens, and the lens reflecting cover is clamped between the face ring. In addition, the fastening assembly is also disclosed, which comprises a C-shaped fixing piece mounted in the mounting groove through a screw, a bolt hole is formed in the open end of the C-shaped fixing piece, a bolt through hole is formed in the lower end of the connecting boom, the bolt hole and the bolt through hole are correspondingly arranged, a damping washer is arranged between the bolt hole and the bolt through hole, a bolt is inserted through the bolt hole and the bolt through hole, and a nut is screwed on the bolt to connect and fix them. The stability between the boom and the bolt can be enhanced by the damping washer. However, due to the rotational connection between the boom and the lamp body, the connecting point between the boom and the lamp body is small, which easily leads to low connection stability and anti-impact performance between the boom and the lamp body. When the track lamp is arranged in the grid, the rotation of the lamp body easily affects the stability of the grid, and further causes the collision between the grid and the track lamp, resulting in the problem of short length of the boom. Utility model content
[0004] Therefore, the utility model aims at providing a track lamp to solve the problems of short track lamp arm, limited adjustment, low connection stability between the track lamp arm and the lamp body, and low adjustment flexibility of the track lamp in the prior art. Thus, the adjustment flexibility of the arm is improved while ensuring that the track lamp occupies a small space, the problem of limited adjustment of the track lamp caused by the short track lamp arm is solved, the connection tightness between the track lamp arm and the lamp body is enhanced, and the stability of the track lamp after installation is improved.
[0005] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows:
[0006] The utility model relates to a track lamp, which comprises a connecting piece, an arm, a lamp body and an intelligent module. One end of the arm is connected to a suspension track through the connecting piece, and the other end of the arm is connected to the intelligent module in a detachable manner. The lamp body is arranged on the outer side wall of the arm near the intelligent module. The arm comprises a damping structure, which is arranged at both ends of the arm to drive both ends of the arm to move clockwise and / or counterclockwise in a rotatable manner, thereby avoiding limited adjustment of the lamp body.
[0007] Further, the connecting piece comprises a rotating shaft arranged inside the connecting piece, and the connecting piece is rotatably connected with the supporting arm through the rotating shaft.
[0008] Further, the connecting piece further comprises a first connecting block and a second connecting block, one end of the second connecting block is connected with the suspension rail through the first connecting block, and the other end of the second connecting block is movably connected with the supporting arm away from the lamp body through the rotating shaft.
[0009] Further, the supporting arm comprises a first supporting arm and a second supporting arm, and the second supporting arm is rotatably connected with the connecting piece through the first supporting arm.
[0010] Further, the second supporting arm comprises a first supporting arm, a second supporting arm and a third supporting arm, and the first supporting arm, the second supporting arm and the third supporting arm are sequentially connected, one end of the first supporting arm away from the second supporting arm is connected with the first supporting arm, and one end of the third supporting arm away from the second supporting arm is connected with the lamp body and the intelligent module respectively.
[0011] Further, the first supporting arm, the second supporting arm and the third supporting arm form a concave hole therebetween.
[0012] Further, the lamp body is rotatably arranged inside the concave hole.
[0013] Further, the damping structure is arranged at one end of the first supporting arm away from the second supporting arm and one end of the second supporting arm close to the lamp body respectively.
[0014] Further, the damping structure comprises a first damping piece and a second damping piece, the first damping piece is arranged at one end of the first supporting arm away from the second supporting arm, and the second damping piece is arranged at one end of the third supporting arm close to the second supporting arm.
[0015] Further, the supporting arm further comprises a cover plate arranged at one side of the second supporting arm away from the lamp body.
[0016] Compared with the prior art, the track lamp has the following beneficial effects:
[0017] Through the track lamp, the adjustment flexibility of the supporting arm can be improved under the condition that the overall space occupied by the track lamp is small, so as to solve the problem that the adjustment of the track lamp is severely limited due to the short supporting arm of the track lamp when the track lamp is installed in the grid, the connection tightness between the supporting arm and the lamp body is enhanced, the stability of the track lamp after installation is improved, in addition, the convenience of the staff in installing the track lamp is improved through the arrangement of the track lamp supporting arm, and the installation speed of the staff is accelerated. BRIEF DESCRIPTION OF DRAWINGS
[0018] Some of the accompanying drawings form part of the present disclosure and are included to further provide further understanding of the present disclosure, and the schematic embodiments of the present disclosure and the description thereof are used to explain the present disclosure, and do not constitute an improper limitation on the present disclosure. In the drawings:
[0019] Figure 1 Figure 1 is a schematic diagram of a first state of the overall structure of the track light;
[0020] Figure 2 Figure 2 is a schematic diagram of a first perspective view of an exploded view of the damping structure in a second state of the overall structure of the track light;
[0021] Figure 3 Figure 3 is a schematic diagram of a second perspective view of an exploded view of the damping structure in a second state of the overall structure of the track light;
[0022] Figure 4 Figure 4 is a schematic diagram of a first perspective view of an exploded view of the lamp body in a second state of the overall structure of the track light;
[0023] Figure 5 Figure 5 is a schematic diagram of a second perspective view of an exploded view of the lamp body in a second state of the overall structure of the track light;
[0024] Figure 6 Figure 6 is a schematic diagram of a cross-sectional view of the lamp body in a second state of the overall structure of the track light;
[0025] Figure 7 Figure 7 is a schematic diagram of a first perspective view of the detachable and installable intelligent module structure of the track light;
[0026] Figure 8 Figure 8 is a schematic diagram of a second perspective view of the detachable and installable intelligent module structure of the track light;
[0027] Figure 9 Figure 9 is a schematic diagram of a third perspective view of the detachable and installable intelligent module structure of the track light;
[0028] Figure 10 Figure 10 is a schematic diagram of the track light with different optical lens aperture numbers.
[0029] Explanation of reference numerals: 1, connecting piece; 11, first connecting block; 111, pulley hole; 12, second connecting block; 13, rotating shaft; 14, stopper; 2, arm; 21, first arm; 22, second arm; 221, first branch of the first arm; 222, second branch of the first arm; 223, third branch of the first arm; 23, recess hole; 24, cover plate; 3, lamp body; 31, lamp shell; 32, optical conversion device; 321, collimating lens; 322, optical lens; 33, optical accessory; 331, flat light mirror; 332, color temperature sheet; 333, anti-glare grid; 34, shell accessory; 341, decorative ring; 4, intelligent module; 41, light adjustment module; 42, Bluetooth control module; 43, sensor module; 44, top bead; 45, positioning groove; 5, damping structure; 51, first damping piece; 52, second damping piece. DETAILED DESCRIPTION
[0030] The inventive concepts of this disclosure will be described below using terminology commonly used by those skilled in the art to convey the essence of their work to others skilled in the art. However, these inventive concepts may be embodied in many different forms and should not be construed as limited to the embodiments described herein.
[0031] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0032] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0033] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0034] This embodiment pertains to a lighting device. Similar to conventional lighting devices, the overall structure consists of a lamp housing, a support arm, and a power supply.
[0035] In existing technologies, grid ceilings are a common ceiling method in public buildings such as museums and art galleries. However, when existing track lights are installed within the grid, the short support arms and severely limited adjustment, along with the track installed under the grid, affect the overall aesthetics of the ceiling and consequently the visitor experience. Furthermore, existing track lights come in various shapes, including cylindrical and square column track lights, with main components such as reflectors, LED light source modules, heat sinks, power supply compartments, and power supplies. This type of track light generally has the following disadvantages: complex structure, time-consuming and labor-intensive production, poor heat dissipation, and complicated installation. This is mainly reflected in the fact that the power supply box of the track light is connected and fixed to the light fixture's connecting arm. The three-core or four-core guide rail head is installed on the power supply compartment, and the power supply is fixed inside the compartment. After the wires are connected, the power supply compartment cover is closed and the screws are tightened, making installation inconvenient and affecting the assembly speed of the workers.
[0036] To address the problems in existing track lights where the short support arm 2 severely limits adjustment and the low stability of the connection between the support arm 2 and the light body 3 results in limited adjustment flexibility when installed within a grid, this embodiment proposes a track light comprising a connector 1, a support arm 2, a light body 3, and an intelligent module 4. One end of the support arm 2 is connected to the suspension track via the connector 1, and the other end is detachably connected to the intelligent module 4. The light body 3 is located on the outer wall of the support arm 2 near the intelligent module 4. The support arm 2 includes a damping structure 5. The nylon structure 5 is set at both ends of the support arm 2 to drive both ends of the support arm 2 to rotate clockwise and / or counterclockwise, respectively, so as to avoid the lamp body 3 being restricted in adjustment. In addition, the lamp body 3 includes a lamp housing 31 and an optical conversion device 32. The optical conversion device 32 is detachably installed on the inner side of the lamp housing 31. The outer wall of the lamp housing 31 is connected to the support arm 2. Through the setting of the optical conversion device 32, connector 1, support arm 2, lamp body 3 and intelligent module 4, the beam angle and light color change can be adjusted in time as needed, so that the track light can meet the lighting needs of different exhibitions.
[0037] By setting up the damping structure 5, the adjustment flexibility of the support arm 2 can be improved while ensuring that the overall space occupied by the track light is small. This solves the problem of severely limited track light adjustment caused by the short support arm 2 when the track light is installed in the grid. It also enhances the connection between the track light support arm 2 and the lamp body 3, improving the stability of the track light after installation. In addition, the cooperative arrangement between the connector 1, the support arm 2 and the lamp body 3 can effectively change the position of the track light and the type of optical conversion device 32, thereby meeting different lighting needs according to changes in the exhibition content. It also helps to improve the control of the track light beam angle and light color, enhance the functionality of the track light, expand the applicability of the track light, and thus greatly save the operation time and cost of changing the lighting in different scenarios.
[0038] Connector 1 includes a rotating shaft 13, which is disposed inside the connector 1. The connector 1 is rotatably connected to the support arm 2 via the rotating shaft 13. One end of the rotating shaft 13 is connected to the connector 1 via a gear, and the other end of the rotating shaft 13 is connected to the support arm 2. Connector 1 also includes a stop 14, which is disposed inside the connector 1. The outer wall of the gear meshes with the stop 14. The stop 14 enables the rotation or switching of the track light. The stop 14 is a sliding switch, used to facilitate the connection of the track light to the power supply, and also to brake and assist the pulley end of the rotating shaft 13. Connector 1 also includes a first connecting block 11 and a second connecting block 12. One end of the second connecting block 12 is connected to the suspension track in the grid on the ceiling via the first connecting block 11, and the other end of the second connecting block 12 is connected to the support arm 2 away from the light body via the rotating shaft 13. One side of 3 is connected in a movable manner. The first connecting block 11 includes a pulley hole 111. At least one pulley hole 111 is provided. A pulley is provided inside the pulley hole 111 for sliding connection with the inner side of the suspension track. At least one pulley is provided. The first connecting block 11 includes a first protrusion and a second protrusion. The first protrusion and the second protrusion are engaged to form the first connecting block 11. The first protrusion and the second protrusion are both provided on the top of the second connecting block 12. The first protrusion and the second protrusion form a first cavity inside for facilitating the setting of the rotating shaft 13. The second connecting block 12 includes a third protrusion and a fourth protrusion. The third protrusion and the fourth protrusion are engaged to form the second connecting block 12. The first protrusion and the third protrusion are integrally formed. The second protrusion and the fourth protrusion form a second cavity inside. The first cavity and the second cavity are in communication and are both used for setting the rotating shaft 13.
[0039] By setting connector 1, it is easy to connect the track light to the suspension track in the grid. It can also improve the structural stability of the connection between the track light and the suspension track, and avoid the risk of the light body 3 falling due to excessive weight. In addition, the sliding connection between connector 1 and support arm 2 can greatly avoid the problem of the support arm 2 being too short, which would limit the elevation angle of the light body 3. It can also ensure that the overall structure of the track light is compact while improving the angle of the turning of the light body 3.
[0040] Support arm 2 includes a first support arm 21 and a second support arm 22. The second support arm 22 is rotatably connected to the second connecting block 12 of connector 1, away from the first connecting block 11, via the first support arm 21. Both the first support arm 21 and the second support arm 22 are hollow arms. The second support arm 22 is bent and includes a first support arm 221, a second support arm 222, and a third support arm 223, which are connected sequentially. The end of the first support arm 221 away from the second support arm 222 is connected to the first support arm 21. The end of the third support arm 223 away from the second support arm 222 is connected to the lamp body 3 and the intelligent module 4, respectively. A recess 23 is formed between the first arm 221, the second arm 222, and the third arm 223. The lamp body 3 is rotatably disposed inside the recess 23. Damping structures 5 are respectively disposed at the end of the first arm 21 away from the second arm 22 and at the end of the second arm 22 near the lamp body 3. Specifically, damping structures 5 are disposed at the ends of the third arm 223 near the second arm 222 and the ends of the third arm 223 near the lamp body 3. At least one damping structure 5 is provided, wherein the damping structure 5 includes a first damping element 51 and a second damping element 52. The first damping element 51 is disposed at the end of the first arm 21 away from the second arm 22, and the second damping element 52 is disposed at the end of the first arm 21 away from the second arm 22. The damping element 52 is located at one end of the third support arm 223 near the second support arm 222. The arrangement of the first damping element 51 and the second damping element 52 enhances the flexibility and stability of rotation between the various components of the track light. Preferably, the inner wall of the first damping element 51 is disposed on the outer wall of the nut via a washer. The first damping element 51, washer, and nut are all disposed on the inner side of the first support arm 21, with the inner wall of the nut fitting against the outer wall of the rotating shaft 13. This allows the first damping element 51 to drive the support arm 2 to rotate precisely as the rotating shaft 13 rotates, helping to prevent excessively fast or frequent rotation from reducing the structural stability between the support arm 2 and the connecting part 1. In a preferred embodiment, the damping structure 5 includes a first damping plate, a second damping plate, and a hollow connecting column. Both the first and second damping plates are disposed on the outside of the hollow connecting column. The first damping plate is disposed above and / or to the left of the second damping plate. The first damping plate has a groove and a first through hole. A first screw is disposed through the first through hole for fastening the damping structure 5. At least one groove and one first through hole are provided. The second damping plate has a second through hole. A second screw is disposed through the second through hole. The position of the second through hole on the second damping plate corresponds to the position of the groove on the first damping plate, which facilitates the installation and disassembly of the damping structure 5.Support arm 2 also includes a cover plate 24, which is located on the side of the second support arm 222 away from the light body 3. The cover plate 24 enhances the aesthetics of the track light and also protects the internal components of the support arm 2 after installation, providing dust and water protection. The third support arm 223 includes a first column and a second column. The first column is connected to the end of the second support arm 222 away from the first support arm 221. A connecting shaft is installed inside the first column, connecting it to the second column. A second damping element 52 is located outside the connecting shaft and between the first and second columns. The second column is located on the side of the light body 3. At the bottom of the shell 31, the end of the second column furthest from the first column is electrically connected to the intelligent module 4 in a pluggable manner. Furthermore, a scale marking is provided on the outer side of the end of the third support arm 223 near the second support arm 222 to maintain consistency in the elevation angle adjustment of different lamps and improve the accuracy and convenience of the track light's pitch angle adjustment. Preferably, a flange connecting block is provided between the first and second columns to improve the tightness of the connection between them. In this embodiment, the first damping element 51 and the second damping element 52 have the same structure, consisting of a first damping plate, a second damping plate, and a hollow connecting column, but in practice, they are not limited to this.
[0041] By using the support arm 2, the overall structure of the track light can be optimized, the space occupied by the track light can be reduced, and the installation efficiency of the track light can be improved. In addition, the bending design of the support arm 2 can effectively enhance the support strength of the support arm 2 for the lamp body 3, improve the stability of the track light structure, and improve the safety and reliability of the lamp body 3 during rotation. Unlike the existing public building projects such as museums and art galleries, where the ceilings generally use grid ceilings, the size and adjustment range of the track light are easily limited when the lighting track is hidden deep in the grid for visual purposes. However, with the track light support arm 2 setting method of this application, the connection point between the support arm 2 and the lamp body 3 is set at the bottom of the lamp body 3. This allows the lamp body 3 to rotate with the support arm 223, forming two support arm 2 states of different lengths. That is, the lamp housing 31 of the lamp body 3 is equivalent to extending a portion of the support arm 2, thus effectively solving the installation problem within the grid. The design of the track light also ensures that the track light itself remains relatively compact under normal installation conditions. This achieves improved adjustment flexibility of the support arm 2 while minimizing the overall space occupied by the track light. This solves the problem of severely limited track light adjustment caused by the short support arm 2 when the track light is installed inside the grid. It also enhances the connection between the support arm 2 and the track light body 3, improving the stability of the track light after installation. In addition, the design of the support arm 2 improves the convenience and speed of track light installation for workers. With the cooperation of the damping structure 5, the tilt angle adjustment of the track light is easily achieved while maintaining a stable suspension at the required position. Furthermore, the scale markings on the support arm 2 ensure the consistency of tilt angle adjustment between different types of track lights when multiple types are installed.
[0042] The lamp body 3 also includes optical components 33 and housing components 34. The housing components 34 are detachably connected to the lamp body 3. The optical components 33 are disposed inside the lamp housing 31 and / or the housing components 34. The optical components 33 are used to adjust the lighting effect of the track light, making the color temperature of the track light more suitable and the light more uniform, avoiding glare for users. The housing components 34 are used to enhance the installation stability of the optical components 33 and improve the disassembly and assembly efficiency of the track light. The optical conversion device 32 includes a collimating lens 321 and an optical lens 322. Both the collimating lens 321 and the optical lens 322 are disposed inside the lamp housing 31. The collimating lens 321 and the optical lens 322 are integrally formed. The optical lens 322 is disposed in front of the collimating lens 321. Alternatively, the optical conversion device 32 includes a collimating lens 321, which is disposed inside the lamp housing 31. The optical conversion device 32 also includes an optical lens 322, which is disposed inside the lamp housing 31 and / or the housing components 34. Inside the housing accessory 34, the collimating lens 321 is connected to the optical lens 322. The side of the collimating lens 321 away from the optical lens 322 is attached to the inside of the lamp housing 31. The collimating lens 321 is an instrument used to turn the light from each point in the aperture bar into a parallel collimated beam. The optical lens 322 is used to turn the collimated beam emitted by the collimating lens 321 into a beam suitable for different lighting needs, making it suitable for different scenarios, especially when museum and art gallery projects require regular changes to the exhibition content. In this embodiment, the collimating lens 321 has a diopter of 5°, the optical lens 322 has a diopter of 9°, and the optical lens 322 has at least one internal aperture. The shape of the internal aperture of the optical lens 322 is set according to the requirements, but is not limited to this. Both the collimating lens 321 and the optical lens 322 can be detachably or replaceably installed inside the lamp housing 31, so as to facilitate timely replacement of the appropriate lens according to the needs of different scenarios.
[0043] The combination of collimating lens 321 and optical lens 322 enables track lights to be easily replaced and adjusted, and also helps to save costs for track lights installed in different locations. Especially in museum and art gallery projects with regularly scheduled exhibitions, unlike existing technologies that require changing different types of track lights to suit different exhibition needs, resulting in significant costs, the track lights of this application only require changing the exhibition content, the position of the light fixtures, and the optical lens 322 to meet the lighting needs of different scenes or exhibition content during the change of exhibition content. This greatly saves time and costs for track light adjustment. Due to the flexibility of the optical combination of collimating lens 321 and optical lens 322, the track lights are more usable and reusable. Furthermore, this helps to reduce environmental pollution, reduce the use of track light materials, and avoid waste.
[0044] Specifically, the optical component 33 is any one or more of the following: a diffuser, a flattened lens 331, a color temperature filter 332, and an anti-glare grille 333. The diffuser, as part of the backlight module, prepares for providing a uniform surface light source for the track light, facilitating uniform light transmission. The optical component 33 includes a flattened lens 331, a color temperature filter 332, and an anti-glare grille 333. These components are sequentially arranged from back to front inside the lamp body 3 and / or housing component 34. The side of the color temperature filter 332 furthest from the flattened lens 331 is located on the side of the optical lens 322 furthest from the collimating lens 321. The flattened lens 331 enhances the application effect of the track light, while the color temperature filter 332 balances the color temperature of the light in the scene, making the light more vivid and natural. It also breaks the balance between the track light and the indoor scene light, creating a warm-cool color contrast between the track light's color temperature and the ambient color temperature. The anti-glare grille 333 is used to expand the lighting area, prevent glare, protect eyesight, enhance the aesthetics of the track light, and protect the internal components of the track light from dust. Furthermore, the housing accessory 34 can be any one or more of a structural ring, decorative ring 341, or square ring. The housing accessory 34 includes a decorative ring 341, one end of which is connected to the lamp housing 31. Optical accessories 33 are respectively arranged on the inner side of the decorative ring 341. The decorative ring 341 is used to fix the optical accessories 33. Specifically, the color temperature filter 332, the flat lens 331, and the anti-glare grille 333 are arranged on the inner side of the decorative ring 341 from back to front, facilitating the fixing of the optical accessories 33 through the decorative ring 341 and also facilitating the disassembly and replacement of the optical accessories 33. In this embodiment, the decorative ring 341 is magnetically attached, but it is not limited to this; "back and front" refers to the direction shown in the figure.
[0045] The rings on the inner side of the housing accessory 34 enhance the protection of the track lights, improving their safety and stability during use. Furthermore, the decorative rings 341 and different types of structural rings greatly enhance the aesthetics of the track lights, improving their compatibility with the exhibition content. This prevents the track lights from appearing too obtrusive and negatively impacting the visitor experience. The changes in appearance and lighting provide visitors with the best possible experience, ensuring that the lighting on the outer side of the exhibition content complements the content as it changes, thus enhancing the presentation and color contrast of the exhibits.
[0046] The outer side of the intelligent module 4 is provided with a top bead 44 and a positioning groove 45, with at least one top bead 44 and a positioning groove 45. The inner side of the end of the support arm 2 away from the connector 1 is provided with a top bead groove and a positioning buckle, with at least one top bead groove and a positioning buckle. The top bead groove corresponds to the position of the top bead 44, and the top bead groove and the top bead 44 are engaged or disengaged. The positioning buckle corresponds to the position of the positioning groove 45, and the positioning buckle and the positioning groove 45 are engaged or disengaged. The intelligent module 4 is any one or more of the following: a dimming module 41, a Bluetooth control module 42, and a sensor module 43. The dimming module 41 and the Bluetooth control module 42 are also mentioned. Both module 42 and sensor module 43 can be hot-swapped and installed on the inner side of the end of the support arm 2 away from connector 1. The dimming module 41 is a 0-10V dimming knob with graduations, allowing for precise manual adjustment without tools, while maintaining a comfortable rotation feel, improving ease and stability, reducing tool usage, and increasing adjustment efficiency. The Bluetooth control module 42 is a Bluetooth APP control module for convenient remote operation, avoiding issues when the track light is positioned high. To address the issue of inconsistent lighting adjustment, sensor module 43 is used to sense changes in the exhibition content, the color temperature of the exhibition environment, and the ambient light in real time, and to adjust the track light accordingly. Preferably, the dimming module 41, Bluetooth control module 42, and sensor module 43 can be interchanged. Sensor module 43 includes a sensor and a dimming knob. Both the sensor and the dimming knob are located at the end of sensor module 43 away from lamp housing 31. The sensor is located on the left side of sensor module 43, and the dimming knob is located on the outer wall of sensor module 43 around its circumference for easy manual adjustment of light intensity. In this embodiment, three top beads 44 are provided, but this is not the only option. The intelligent module 4 consists of dimming module 41 and Bluetooth control module 42. Dimming module 41 and Bluetooth control module 42 can be used selectively in an interchangeable manner. Dimming module 41 or Bluetooth control module 42 is hot-swappable and located on the inner side of the support arm 2 away from connector 1. A power supply is located inside the lamp body 3. The intelligent module 4 is connected to the power supply through support arm 2 to control the beam angle and color change of the track light.
[0047] By configuring the intelligent module 4, the lamp body 3 is equipped with a 0-10V dimming knob and a Bluetooth APP control module, both of which can be hot-swapped. This effectively avoids the impact of unpredictable spatial scale and complexity on track light dimming during dimming in museums, art galleries, and commercial projects. By adopting the ability to hot-swap the 0-10V dimming knob and Bluetooth APP control module simultaneously, the efficiency of track light dimming during project dimming can be greatly improved, and the risks of track light dimming operation can be reduced, especially the risks of operators working at heights and the risk of damage to exhibited cultural relics. This greatly improves the safety of operators and exhibited cultural relics.
[0048] In this utility model, any lighting device may include the track light structure described in this embodiment. In addition to the damping structure 5 and the related structure and assembly relationship of the cover plate 24 provided in this embodiment, the lighting device also includes conventional components such as lamp housing 31, support arm 2, and power supply. Since these are all prior art, they will not be described in detail here.
[0049] 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 track light, characterized in that, The device includes a connector (1), a support arm (2), a lamp body (3), and an intelligent module (4). One end of the support arm (2) is connected to the suspension rail via the connector (1), and the other end of the support arm (2) is detachably connected to the intelligent module (4). The lamp body (3) is located on the outer wall of the support arm (2) near the intelligent module (4). The support arm (2) includes a damping structure (5), which is located at both ends of the support arm (2) to drive both ends of the support arm (2) to rotate clockwise and / or counterclockwise, thereby preventing the lamp body (3) from being restricted in its adjustment.
2. A track light according to claim 1, characterized in that, The connector (1) includes a rotating shaft (13), which is disposed inside the connector (1). The connector (1) is rotatably connected to the support arm (2) via the rotating shaft.
3. A track light according to claim 2, characterized in that, The connector (1) further includes a first connecting block (11) and a second connecting block (12). One end of the second connecting block (12) is connected to the suspension rail through the first connecting block (11), and the other end of the second connecting block (12) is connected to the side of the support arm (2) away from the lamp body (3) through a pivot (13) in a movable manner.
4. A track light according to claim 2, characterized in that, The support arm (2) includes a first support arm (21) and a second support arm (22), and the second support arm (22) is rotatably connected to the connector (1) through the first support arm (21).
5. A track light according to claim 4, characterized in that, The second arm (22) includes a first arm (221), a second arm (222), and a third arm (223). The first arm (221), the second arm (222), and the third arm (223) are connected in sequence. The end of the first arm (221) away from the second arm (222) is connected to the first arm (21). The end of the third arm (223) away from the second arm (222) is connected to the lamp body (3) and the intelligent module (4) respectively.
6. A track light according to claim 5, characterized in that, A recess (23) is formed between the first arm (221), the second arm (222), and the third arm (223).
7. A track light according to claim 6, characterized in that, The lamp body (3) is rotatably disposed inside the recess (23).
8. A track light according to claim 5, characterized in that, The damping structure (5) is respectively located at the end of the first arm (21) away from the second arm (22) and at the end of the second arm (22) close to the lamp body (3).
9. A track light according to claim 6, characterized in that, The damping structure (5) includes a first damping element (51) and a second damping element (52). The first damping element (51) is located at the end of the first arm (21) away from the second arm (22), and the second damping element (52) is located at the end of the third arm (223) close to the second arm (222).
10. A track light according to claim 5, characterized in that, The support arm (2) also includes a cover plate (24), which is located on the side of the support arm (222) away from the lamp body (3).
Citation Information
Patent Citations
Track spotlight convenient to install
CN211315918U