Track light and track light assembly
Through the combination of conductive components, driving components and control components, remote control movement and illumination angle adjustment of track lights are achieved, solving the problems of maintenance difficulties and safety risks in existing technologies and improving ease of use and user experience.
Patent Information
- Application Number
- CN202010598403.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-06-28
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2040-06-28
AI Technical Summary
Existing track lights cannot be moved or adjusted by remote control, and maintenance requires manual operation at high altitude, which poses safety risks and high maintenance costs.
It adopts a combination of conductive components, drive components and control components. Power is taken through the conductive components, the drive components are slidably installed on the track, and the control components receive external control signals to achieve the movement of the track light and the adjustment of the illumination angle, and support remote control operation.
It realizes the convenient movement and illumination angle adjustment of track lights, reduces the difficulty of maintenance and safety risks, and improves the convenience of use and user experience.
Smart Images

Figure CN111609351B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of track lights, and in particular to a track light and a track light assembly. Background Art
[0002] With the development of society and the improvement of people's living standards, lighting equipment for various scenes has become more and more diverse, and people's requirements for the lamps used in various lighting scenes are also getting higher and higher, especially the interactive experience between people and lighting equipment. Track lights, as a special spotlight, play a very important role in commercial places such as shopping malls, hotels, and high-end clubs.
[0003] Currently, most track lights in the industry cannot be moved remotely. Routine maintenance and angle adjustment require manual removal or adjustment of the lamp head. If the track light is located at high altitude, installers must use equipment such as ladders to perform maintenance, increasing maintenance costs and posing safety risks. Furthermore, the current power supply method for track lights is not suitable for movement, making it prone to power outages and derailment during movement. Summary of the Invention
[0004] The present invention is to overcome at least one defect (shortcoming) of the above-mentioned prior art and provide a track light and a track light assembly.
[0005] In order to solve the above technical problems, the technical solutions of the present invention are as follows:
[0006] A method for panoramic calibration of a vehicle is installed on a track and includes a conductive component, a driving component, a control component and a lamp body; the conductive component is electrically connected to the driving component, the control component and the lamp body respectively, completing the connection between each component and an external power supply, and completing the power input of the track light; the driving component is slidably installed on the track, and the control component and the lamp body are directly or indirectly assembled on the driving component; the control component is controlled and connected to the driving component and the lamp body respectively, and receives external control signals to drive or control the driving component and the lamp body, completing the movement of the track light along the track direction and the lamp body lighting control and / or illumination angle adjustment.
[0007] Furthermore, the driving component includes a pulley set and a driving assembly; the driving assembly includes a driving motor and a rotating shaft, and the driving motor is connected to the pulley set through the rotating shaft; the pulley set is installed on the slide rail of the track, and is driven by the driving assembly to drive the driving component to move along the track direction on the track.
[0008] Furthermore, the driving component also includes a driving box body; the driving assembly is installed in the driving box body; through holes matching the rotating shaft are provided on both sides of the driving box body, and the rotating shaft passes through the through holes and is connected to the two pulleys of the pulley group arranged on both sides of the driving box body.
[0009] Furthermore, the conductive component is disposed in the driving box body and mounted on the top of the driving box body; the driving component abuts against the conductive plate on the top of the track through the conductive component.
[0010] Furthermore, the conductive component includes at least two groups of conductive components; the conductive components include a conductive wheel and an elastic member; the conductive wheel is elastically connected to the elastic member, and the conductive wheel abuts against the conductive plate on the track and is elastically buffered by the elastic member.
[0011] Furthermore, two conductive wheels are provided on each group of conductive components; the elastic member includes a base and a torsion spring sheet, the conductive wheels are elastically mounted on the base through the torsion spring sheet, and the two conductive wheels are arranged opposite to each other along the mounting point of the base.
[0012] Furthermore, the top of the control component is rotatably connected to the bottom of the driving component; the lamp body is rotatably installed on the side of the control component; the illumination angle of the lamp body is adjusted by rotating the control component on the driving component and the lamp body on the control component.
[0013] Furthermore, the control component includes a control box body, a controller and a rotating assembly; the controller and the rotating assembly are arranged in the control box body; the control component is rotationally connected to the driving component and the lamp body respectively through the rotating assembly; the controller is control-connected to the rotating assembly, the driving component and the lamp body, and is communicatively connected to an external remote control device to receive external control signals to realize the movement of the track light and the lighting control and illumination angle adjustment of the lamp body.
[0014] Furthermore, a positioning baffle is provided on the side of the pulley of the pulley assembly; the pulley is positioned on the slide rail of the track through the positioning baffle.
[0015] The present invention also provides a track light assembly, comprising a track and the above-mentioned track light; the track comprises a conductive plate, a mounting groove, a slide rail and a splicing interface; the track is installed on a ceiling or a wall through the mounting groove, and multiple groups of tracks are spliced together through the splicing interface; the conductive plate is arranged above the slide rail, connected to an external power supply, and abuts against the conductive component of the track light to realize power input of the track light; the track light is installed on the slide rail of the track through a driving component, thereby realizing sliding on the track.
[0016] The track light of the present invention draws power through the conductive wheel and moves on the track through the driving component. The lamp body slides quickly and effectively, and receives external control signals through the control component to complete the movement of the track light and the lighting control and illumination angle adjustment of the lamp body, so that the movement and illumination of the track light can be controlled by remote control, and the operation is simple and convenient. There is no need for lamp maintenance personnel to perform high-altitude debugging of the track light, which greatly increases the convenience of use and maintenance of the track light, improves the application scenarios of the track light, improves the user experience, increases its market competitiveness, and solves the problem of difficult maintenance of the current track light. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 2 is a structural diagram of a track light according to an embodiment of the present invention.
[0018] Figure 2 This is a diagram of the internal circuit connections of a track light according to an embodiment of the present invention.
[0019] Figure 3 This is an exploded view of the structure of the track light according to an embodiment of the present invention.
[0020] Figure 4 This is an exploded view of the structure of the driving component of an embodiment of the present invention.
[0021] Figure 5 Schematic diagram of the structure of the conductive component according to an embodiment of the present invention.
[0022] Figure 6 This is a side structural diagram of the track light in the installed state according to an embodiment of the present invention.
[0023] Figure 7 Schematic diagram of the corresponding structures of the conductive component and the track conductive plate according to an embodiment of the present invention.
[0024] Figure 8 Schematic diagram of the internal structure of the control component of an embodiment of the present invention.
[0025] Figure 9 This is a structural diagram of a track light assembly according to embodiment 2 of the present invention.
[0026] Figure 10 This is a diagram showing the internal structure of a track light assembly according to a second embodiment of the present invention.
[0027] in:
[0028] The conductive component is 10, the conductive assembly is 11, the conductive wheel is 12, the elastic member is 13, the base is 131, and the torsion spring is 132;
[0029] The driving component is 20, the pulley group is 21, the driving assembly is 22, the driving box body is 23, the positioning baffle is 24, the driving motor is 221, and the rotating shaft is 222;
[0030] The control component is 30, the control box is 31, the controller is 32, and the rotating component is 33.
[0031] The lamp body is 40, and the rotation axis of the lamp body is 41;
[0032] The track is 50 , the conductive plate is 51 , the mounting groove is 52 , the slide rail is 53 , and the joint is 54 . DETAILED DESCRIPTION
[0033] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0034] Example 1
[0035] Figure 1 shows the structure of the track light provided in this embodiment, Figure 2 The internal circuit connection diagram of the track light of this embodiment is shown.
[0036] See Figure 1-2 This embodiment provides a track light for installation on a track and providing illumination to the surrounding environment. The track light of this embodiment includes a conductive component 10, a driving component 20, a control component 30, and a lamp body 40. The conductive component 10 is electrically connected to the driving component 20, the control component 30, and the lamp body 40, respectively. Its main purpose is to complete the connection between each component and an external power source, thereby completing the power input of the track light. Specifically, a conductive plate is provided on the track to input power and abut against the conductive component 10 to realize the power input of the track light.
[0037] In terms of the installation of the track, the driving component 20 is slidably installed on the slide rail of the track, and the control component 30 and the lamp body 40 are directly or indirectly assembled on the driving component 20. Preferably, in this embodiment, the control component 30 is installed on the driving component 20, and the lamp body 40 is connected to the control component 30, and the conductive component 10 is arranged on the top of the driving component 20, so that the various components of the track light are stably and effectively suspended on the track.
[0038] In terms of control, the control component 30 is connected to the drive component 20 and the lamp body 40, and receives external control signals to drive or control the drive component 20 and the lamp body 40, completing the movement of the track light along the track and controlling the lighting of the lamp body 40 and / or adjusting the illumination angle. Preferably, the control component 30 is wirelessly connected to an external remote control device to receive control signals input by the external remote control device. More specifically, the drive component 20 is connected to the slide rail of the track via a pulley, and the pulley is in a driving and control connection with the control component 30. The pulley achieves directional movement of the track light along the track.
[0039] Figure 3 Shows an exploded view of the structure of the track light of this embodiment; Figure 4 FIG. 2 shows an exploded view of the structure of the driving component 20 of this embodiment.
[0040] As a preferred embodiment of this invention, Figure 3-4 As shown, the driving component 20 specifically includes a pulley block 21 and a driving assembly 22; wherein the pulley block 21 includes two pulleys, which are symmetrically installed on both sides of the driving component 20 to enable the driving assembly 22 to slide on the track. The driving assembly 22 is mainly used to receive the control of the control component 30 and provide the pulley block 21 with a driving force to slide on the track. It mainly includes a driving motor 221 and a rotating shaft 222. Specifically, the driving motor 221 is connected to the two pulleys of the pulley block 21 through the rotating shaft 222. The pulley block 21 is installed on the slide rail of the track. Under the drive of the driving motor 221, the driving component 20 is driven to move along the track direction on the track. More specifically, the control board on the driving motor 221 is connected to the control component 30 through a data line, thereby receiving external control instructions through the control component 30.
[0041] To provide a better user experience, multiple pulley sets 21 can be provided, with at least one set of pulley sets 21 serving as a driving pulley set. In this embodiment, two pulley sets 21 are provided: one pulley set 21 is a driving pulley set, drivingly connected to the drive assembly 22, and the other pulley set 21 is a driven pulley set. The two pulley sets 21 are located near the two ends of the bottom of the drive component 20, ensuring stable sliding of the drive component 20 on the track.
[0042] More preferably, the driving component 20 also includes a driving box body 23, and the driving assembly 22 is installed in the driving assembly. Through holes matching the rotating shaft 222 are provided on both sides of the driving box body 23. During assembly, the transmission shaft is connected to the two pulleys of the pulley group 21 respectively through the through holes on both sides of the driving box body 23, thereby completing the connection between the driving assembly 22 and the pulley group 21.
[0043] As a preferred embodiment of this embodiment, the conductive component 10 is disposed in the driving box body 23 and mounted on the top of the driving box body 23. Correspondingly, a conductive plate is provided on the top of the track. The driving component 20 abuts against the conductive plate on the top of the track through the conductive component 10, thereby connecting the track light to an external power source while ensuring stable and balanced force on the driving component 20 as it moves within the track.
[0044] Regarding the positioning of the drive member 20 in the track, see Figure 6The pulley side of the pulley block 21 is provided with a positioning baffle 24, the main purpose of which is to position the pulley on the slide rail to prevent the pulley from derailing. Specifically, the positioning baffle 24 can cooperate with the side of the slide rail to engage with the pulley to position the pulley and prevent the driving component 20 from derailing. In addition, the track is provided with a positioning step on the inner side of the slide rail, which can further effectively prevent the driving component 20 from derailing.
[0045] Figure 5 shows a schematic structural diagram of the conductive component 11 of this embodiment; Figure 6 A side view of the track light of this embodiment in an installed state is shown; Figure 7 FIG. 1 shows a schematic diagram of the corresponding structures of the conductive component 10 and the track conductive plate of this embodiment.
[0046] like Figure 5-7 As shown, as a preference of this embodiment, the conductive component 10 includes at least two groups of conductive components 11. Specifically, the conductive component 11 includes a conductive wheel 12 and an elastic member 13, and the conductive wheel 12 is elastically connected to the elastic member 13. In the assembled state, the conductive wheel 12 abuts against the conductive plate on the track and is elastically buffered by the elastic member 13. The conductive plate of the track is connected to an external power supply, and the conductive wheel 12 plays a conductive role, providing a stable power input for the various components in the track light, and the spring member plays a buffering role, which can ensure sufficient abutment between the conductive plate and the conductive wheel 12. It is worth noting that the conductive components 11 can be two or three groups, and the two groups of conductive components 11 are respectively connected to the two power poles to form a power supply loop, and the third group of the three groups of conductive components 11 can be used as a grounding pole.
[0047] More preferably, each group of conductive components 11 is provided with two conductive wheels 12; and the elastic member 13 includes a base 131 and a torsion spring 132. The two conductive wheels 12 are elastically mounted on the base 131 by the torsion spring 132. The function of the torsion spring 132 is to provide a force to the conductive wheel 12 in the direction of the guide plate to ensure close contact between the conductive wheel 12 and the conductive plate. In addition, the two conductive wheels 12 of the same group of conductive components 11 are arranged relative to each other along the installation point of the base 131. The advantage of such an arrangement is that it can ensure the force balance of the conductive component 11 and the conductive plate, and ensure the stability of the contact between the two. More specifically, the elastic member 13 and the conductive wheel 12 are both made of conductive materials. The base 131 of the elastic member 13 is connected to the power wire in the track light, and the electrical connection between the conductive component 11 and the various components is achieved through the power wire.
[0048] Figure 8 FIG. 2 shows a schematic diagram of the internal structure of the control component 30 of this embodiment.
[0049] As a preferred embodiment of this invention, Figure 8As shown, the control component 30 includes a control box body 31, a controller 32 and a rotating assembly 33, wherein the controller 32 and the rotating assembly 33 are both arranged inside the control box body 31, and the control component 30 is rotatably connected to the driving component 20 and the lamp body 40 respectively through the rotating assembly 33. Its main purpose is to drive the control component 30 to rotate horizontally on the driving component 20 under the control of the controller 32, and to drive the lamp body 40 to rotate vertically on the control component 30, thereby completing the adjustment of the illumination angle of the lamp body 40.
[0050] The controller 32's primary purpose is to communicate with and receive control commands from an external remote control device, controlling the track light's movement along the track and adjusting the illumination and angle of the lamp body 40. Specifically, the controller 32 is connected to the rotating assembly 33, the drive unit 20, and the lamp body 40 via data cables. It also communicates with the external remote control device via an internal wireless module. It's worth noting that in this embodiment, the external remote control device is a remote controller or smartphone.
[0051] In the connection between the control component 30 and the driving component 20 and the lamp body 40, in this embodiment, the rotating assembly 33 includes a control box body 31 rotating assembly 33 and a lamp body 40 rotating assembly 33, wherein the top of the control component 30 is rotatably connected to the bottom of the driving component 20 through the control box body 31 rotating assembly 33, and the lamp body 40 is placed into the control component 30 from the side of the control box body 31 through the lamp body rotating shaft 41, and is driven and connected to the rotating motor in the lamp body 40 rotating assembly 33. In summary, the control component 30 controls the rotating assembly 33 through the controller 32 to complete the rotation of the control component 30 and the lamp body 40, ensuring that the lamp body 40 has a sufficiently large illumination angle.
[0052] In order to provide a better operating experience, a specific connection structure of the track light of this embodiment is provided. Specifically, the lamp body 40 is placed in the control box body 31 through the lamp body rotation shaft 41, and is driven and connected to the lamp body 40 rotation component 33, so that it is vertically rotated and installed on the control component 30. The control component 30 is arranged at the bottom of the driving component 20, and is horizontally rotated and connected to the driving component 20 through the control box body 31 rotation component 33. In addition, a compartment that can accommodate the conductive component 10 is provided on the top of the driving box body 23, and the top cover of the driving box body 23 is provided with a power supply through-hole. The conductive component 10 is installed in the compartment, and the conductive wheel 12 is electrically connected to the conductive plate of the track through the power supply through-hole to complete the power input of the track light. More specifically, a conductive strip corresponding to the conductive wheel 12 is provided on the conductive plate opposite to the conductive wheel 12, and the conductive wheel 12 abuts against the conductive strip to complete the power input of the track light.
[0053] The track light of this embodiment has the advantage of being slidably mounted on the track via a drive component 20 and pulley assembly 21. Positioning baffles 24 are provided on the pulleys to prevent derailment and ensure stable and reliable sliding of the track light. Furthermore, the conductive wheels 12 of the conductive component 10 are in close contact with the conductive plates on the track, ensuring stable and effective power supply. The elastic member 13 provides elastic cushioning for the conductive wheels 12, improving the stability of the track light's support and engagement within the track.
[0054] In terms of remote control, the track light receives external control signals through the control unit 30 to complete the movement of the track light, as well as the lighting control and illumination angle adjustment of the lamp body 40. This makes the movement and illumination of the track light remotely controlled, which is simple and convenient to operate. It eliminates the need for lighting maintenance personnel to debug the track light from a distance, greatly increasing the convenience of track light use and maintenance, and solving the problem of difficult track light maintenance. The illumination angle of the track light can be adjusted remotely, greatly expanding the application scenarios of the track light, improving the user experience, and increasing its market competitiveness.
[0055] Example 2
[0056] Figure 9 It shows the structure diagram of the track light assembly 50 of the second embodiment of the present application; Figure 10 The internal structure of the track light assembly 50 of the second embodiment is shown.
[0057] like Figure 9-10 As shown, this embodiment provides a track 50 lamp assembly, specifically, including a track 50 and the track 50 lamp described in Example 1, the track 50 includes a conductive plate 51, a mounting groove 52, a slide rail 53 and a splicing interface 54; specifically, when in use, the track 50 is installed on the ceiling or wall through the mounting groove 52, and the splicing interface 54 is used to realize the splicing of multiple groups of tracks 50.
[0058] The conductive plate 51 is disposed above the slide rail 53 and is connected to an external power source. The conductive plate 51 abuts against the conductive component 11 of the track light 50, thereby providing power to the track light 50. Regarding the connection between the track 50 and the track light 50, the slide rail 53 is disposed at the bottom of the track 50 and is disposed flatly. The track light 50 is slidably mounted on the slide rail 53 of the track 50 via the pulley assembly 21 of the drive component 20, thereby enabling sliding on the track 50.
[0059] The advantage of this structure is that the track 50 of the track 50 light assembly is easy to install, and multiple sets of tracks 50 can be spliced together through the splicing interface 54, which improves the speed and convenience of transporting and loading and unloading the track 50. At the same time, the track 50 light closely matches the track 50, and can effectively draw power through the conductive wheel 12 and the conductive plate 51, and is not affected by the sliding of the track 50 light. The drive assembly 22 and the pulley assembly 21 realize remote control driving on the slide rail 53, and the control component 30 and the lamp body 40 are conveniently rotated, so that the track 50 light can remotely adjust the illumination angle, which is convenient to use, greatly increasing its market competitiveness, improving the user experience, and solving the problems of difficult maintenance and poor practicality of the track 50 light.
[0060] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention, and are not intended to limit the embodiments of the present invention. Those skilled in the art will appreciate that other variations or modifications can be made based on the above description. It is not necessary and impossible to enumerate all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.
Claims
1. A track light, installed on a track, characterized in that: The track light comprises a conductive component, a driving component, a control component, and a lamp body; the conductive component is electrically connected to the driving component, the control component, and the lamp body, respectively, to complete the connection between each component and the external power supply, thereby completing the power input of the track light; the driving component is slidably mounted on the track, and the control component and the lamp body are directly or indirectly assembled on the driving component; the control component is control-connected to the driving component and the lamp body, respectively, and receives external control signals to drive or control the driving component and the lamp body, thereby completing the movement of the track light along the track direction, as well as the lighting control of the lamp body and / or the adjustment of the illumination angle; Wherein, the driving component also includes a driving box body, the conductive component is arranged in the driving box body and is installed on the top of the driving box body; the driving component abuts the conductive plate on the top of the track through the conductive component; the conductive component includes at least two groups of conductive components; the conductive components include conductive wheels and elastic members; the conductive wheels are elastically connected to the elastic members, and the conductive wheels abut the conductive plates on the track and are elastically buffered by the elastic members; two conductive wheels are provided on each group of conductive components; the elastic member includes a base and a torsion spring sheet, the conductive wheels are elastically mounted on the base respectively through the torsion spring sheet, and the two conductive wheels are arranged opposite to each other along the mounting point of the base; the torsion spring sheet provides A force is provided in the direction of the conductive plate to ensure that the conductive wheel is in close contact with the conductive plate; and the elastic member and the conductive wheel are both made of conductive materials, the base of the elastic member is connected to the power wire in the track light, and the electrical connection between the conductive component and each component is achieved through the power wire; the driving component includes a pulley group and a driving component, the pulley group includes two pulleys, which are symmetrically installed on both sides of the driving component, and at least one of the pulley groups is a driving wheel group, the control component is respectively connected to the driving component and the lamp body control, and receives an external control signal to drive or control the driving component and the lamp body, to complete the movement of the track light along the track direction and the lighting control and / or illumination angle adjustment of the lamp body.
2. The track light according to claim 1, characterized in that The driving assembly includes a driving motor and a rotating shaft, and the driving motor is connected to the pulley group through the rotating shaft; the pulley group is installed on the slide rail of the track, and drives the driving component to move along the track direction on the track under the drive of the driving assembly.
3. The track light according to claim 2, characterized in that The driving assembly is installed in the driving box body; through holes matching the rotating shaft are provided on both sides of the driving box body, and the rotating shaft passes through the through holes and is connected to the two pulleys of the pulley group arranged on both sides of the driving box body.
4. According to the track light of claim 1, the top of the control component is rotatably connected to the bottom of the driving component; the lamp body is rotatably installed on the side of the control component; the illumination angle of the lamp body is adjusted by rotating the control component on the driving component and the lamp body on the control component.
5. The track light according to claim 1 or 4, characterized in that: The control component includes a control box body, a controller and a rotating assembly; the controller and the rotating assembly are arranged in the control box body; the control component is rotationally connected to the driving component and the lamp body respectively through the rotating assembly; the controller is control-connected to the rotating assembly, the driving component and the lamp body, and is communicatively connected to an external remote control device to receive external control signals to realize the movement of the track light and the lighting control and illumination angle adjustment of the lamp body.
6. The track light according to any one of claims 1 to 3, characterized in that: A positioning baffle is provided on the side of the pulley of the pulley group; the pulley is positioned on the slide rail of the track through the positioning baffle.
7. A track light assembly, characterized in that: It comprises a track and a track light according to any one of claims 1 to 6; the track comprises a conductive plate, a mounting groove, a slide rail and a splicing interface; the track is installed on a ceiling or a wall through the mounting groove, and multiple groups of tracks are spliced together through the splicing interface; the conductive plate is arranged above the slide rail, connected to an external power supply, and abuts against the conductive component of the track light to realize power input of the track light; the track light is installed on the slide rail of the track through a driving component, thereby realizing sliding on the track.
Citation Information
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