Track light

The hinged design of the base, first link, second link and mounting bracket solves the problem of traditional track lights not being able to rotate, and realizes multi-angle and multi-dimensional adjustment of track lights, meeting diverse lighting needs and improving the lighting effect of the space.

WO2025223487A1PCT designated stage Publication Date: 2025-10-30SUZHOU OPPLE LIGHTING +1
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Patent Information

Application Number
PCT/CN2025/090792
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-25
Filing Date
2025-04-24
Publication Date
2025-10-30

AI Technical Summary

Technical Problem

Traditional track lights cannot be rotated after installation, making it impossible to adjust the illumination angle and meet multi-angle, multi-dimensional lighting needs.

Method used

The track light achieves flexible adjustment in space through the hinged design between the base, first link, second link and mounting bracket. The hinged structure simplifies installation and disassembly and supports multiple lighting modes.

Benefits of technology

It enables track lights to remain stable after multi-angle and large-scale adjustments, preventing structural loosening, meeting the needs of diverse lighting scenarios, improving spatial lighting effects, and taking into account aesthetic design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the field of lighting lamps, and provides a track light. The track light comprises a base; first connecting rods, wherein a first end of each first connecting rod is hingedly connected to the base; second connecting rods, wherein a first end of each second connecting rod is hingedly connected to a second end of the corresponding first connecting rod; mounting bases, each hingedly connected to a second end of the corresponding second connecting rod; and tracks, configured to mount light bodies, wherein each track is mounted on the end of the mounting base away from the second connecting rod. The track light can achieve accurate locating and angle adjustment according to the actual lighting requirements and spatial layout; further, the production and maintenance processes are simplified, and corresponding parts can be quickly adjusted or replaced according to different application environments; and various lighting modes such as local lighting, floodlighting or combined lighting can be achieved, thereby satisfying the requirements of various lighting environments. Lighting resources can be used more efficiently in limited spaces, thereby enhancing the space lighting effects while taking the aesthetic design requirements into consideration.
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Description

Track lights

[0001] Cross-references to related applications

[0002] This application claims priority to Chinese patent application No. 2024208877896, filed on April 25, 2024, entitled “Track Lights”, which is incorporated herein by reference in its entirety. Technical Field

[0003] This application relates to the field of lighting fixtures and provides a track light. Background Technology

[0004] Track lights are commonly used for product display lighting, interior decoration, and outdoor lighting. Traditional track lights typically use a sliding rail to install the light fixture onto the guide rail, allowing the light fixture to slide back and forth.

[0005] Traditional track lights have fixed tracks after installation, making it impossible to rotate the tracks and thus impossible to adjust the angle of the track light beam. Summary of the Invention

[0006] This application aims to at least solve one of the technical problems existing in the related art. To this end, this application proposes a track light that can realize the rotation of at least the first link relative to the base, the second link relative to the first link, the mounting base, and the track relative to the second link, thereby satisfying the multi-angle and multi-dimensional adjustment of the track light.

[0007] This application provides a track light, including:

[0008] Base;

[0009] A first link, the first end of which is hinged to the base;

[0010] The second link has its first end hinged to the second end of the first link;

[0011] Mounting base, hinged to the second end of the second link;

[0012] A track is configured to mount the lamp body, the track being mounted on the end of the mounting base opposite to the second link.

[0013] The track light provided in this embodiment achieves a high degree of flexibility and freedom in spatial dimensions (such as up / down, left / right, and tilt angle) through the hinged design between the base, first link, second link, and mounting base. It can be precisely positioned and adjusted according to actual lighting needs and spatial layout. Furthermore, the hinged structure between the components facilitates installation and disassembly, simplifies production and maintenance, and allows for quick adjustment or replacement of components based on different application scenarios. By mounting the track on the mounting base and the light body on the track, the track can rotate relative to the base as needed, enabling various lighting modes such as localized lighting, floodlighting, or combined lighting to meet diverse lighting requirements. The base ensures the track light remains stable even after multi-angle and large-scale adjustments, preventing safety hazards caused by structural loosening. Because the track light can flexibly adjust its direction and position, it can utilize lighting resources more efficiently within a limited space, improving spatial lighting effects while also meeting aesthetic design requirements.

[0014] According to one embodiment of this application, it further includes a pivot assembly, wherein a first receiving portion is provided at the second end of the first connecting rod, a second receiving portion is provided at the first end of the second connecting rod, and the pivot assembly is disposed at the first receiving portion and the second receiving portion.

[0015] According to one embodiment of this application, the base is provided with a rotating groove, and a hinge shaft is provided in the rotating groove. The first end of the first connecting rod is hinged to the hinge shaft.

[0016] According to one embodiment of this application, the mounting base has a clearance groove configured to avoid the second link, the second link being hinged to the clearance groove.

[0017] According to one embodiment of this application, a first cover is also included, which is detachably mounted on the clearance groove.

[0018] According to one embodiment of this application, a terminal assembly is also included, the terminal assembly being mounted on the side of the mounting base opposite to the clearance groove.

[0019] According to one embodiment of this application, the mounting base is provided with a positioning post on the side opposite to the clearance groove, which is suitable for positioning and engaging with the terminal assembly.

[0020] According to one embodiment of this application, the mounting base, the first connecting rod, the second connecting rod, and the base are all provided with wire-passing holes, and the terminals of the terminal assembly are adapted to pass through the wire-passing holes and connect to the cables in the base.

[0021] According to one embodiment of this application, the mounting base is provided with a first positioning part, and the track is formed with a second positioning part. When the track is installed on the mounting base, the mounting base and the track are adapted to be positioned by the first positioning part and the second positioning part.

[0022] According to one embodiment of this application, a groove is formed on the side of the track opposite to the second positioning part, and a conductive strip is formed in the groove. When the first positioning part and the second positioning part are positioned and engaged, the terminal in the terminal assembly is adapted to extend into the groove and contact the conductive strip.

[0023] According to one embodiment of this application, a second cover and a bottom cover are further included, the second cover and the bottom cover being detachably connected to two opposite sides of the base.

[0024] According to one embodiment of this application, a suspension wire assembly is also included, which is connected to the second cover.

[0025] According to one embodiment of this application, the first link is adapted to rotate relative to the base in a first plane, the first link is adapted to rotate relative to the second link in a second plane, and the second link is adapted to rotate relative to the mounting base in a third plane;

[0026] The first plane is perpendicular to at least one of the second and third planes.

[0027] The above-described one or more technical solutions in the embodiments of this application have at least one of the following technical effects:

[0028] The track light provided in this embodiment achieves a high degree of flexibility and freedom in spatial dimensions (such as up / down, left / right, and tilt angle) through the hinged design between the base, first link, second link, and mounting base. It can be precisely positioned and adjusted according to actual lighting needs and spatial layout. Furthermore, the hinged structure between the components facilitates installation and disassembly, simplifies production and maintenance, and allows for quick adjustment or replacement of components based on different application scenarios. By mounting the track on the mounting base and the light body on the track, the track can rotate relative to the base as needed, enabling various lighting modes such as localized lighting, floodlighting, or combined lighting to meet diverse lighting requirements. The base ensures the track light remains stable even after multi-angle and large-scale adjustments, preventing safety hazards caused by structural loosening. Because the track light can flexibly adjust its direction and position, it can utilize lighting resources more efficiently within a limited space, improving spatial lighting effects while also meeting aesthetic design requirements.

[0029] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0030] To more clearly illustrate the technical solutions in this application or conventional technology, the drawings used in the description of the embodiments or conventional technology will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0031] Figure 1 is a schematic exploded view of the track light provided in an embodiment of this application;

[0032] Figure 2 is a schematic structural diagram of the track light provided in an embodiment of this application;

[0033] Figure 3 is a schematic structural diagram of the track light and track provided in an embodiment of this application;

[0034] Figure 4 is a schematic structural diagram of the mounting base provided in an embodiment of this application;

[0035] Figure 5 is a schematic structural diagram of the first link provided in an embodiment of this application;

[0036] Figure 6 is a schematic structural diagram of the second link provided in an embodiment of this application;

[0037] Figure 7 is a schematic structural diagram of the first link and pivot assembly provided in an embodiment of this application;

[0038] Figure 8 is a schematic structural diagram of the first link and the second link provided in the embodiment of this application;

[0039] Figure 9 is a schematic structural diagram of the first link, the second link, and the mounting base provided in an embodiment of this application;

[0040] Figure 10 is a schematic structural diagram of the base, first link, second link and mounting base provided in the embodiment of this application;

[0041] Figure 11 is a schematic structural diagram of the track provided in an embodiment of this application.

[0042] Reference numerals: 100, base; 102, first connecting rod; 104, second connecting rod; 106, mounting base; 108, track; 109, rotating shaft assembly; 110, first receiving part; 112, second receiving part; 114, rotating groove; 116, clearance groove; 117, first cover; 118, terminal assembly; 122, wire through hole; 124, first positioning part; 126, second positioning part; 128, sliding groove; 130, conductive strip; 132, second cover; 134, bottom cover; 136, suspension wire assembly. Detailed Implementation

[0043] The embodiments of this application will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this application, but should not be used to limit the scope of this application.

[0044] As shown in Figures 1 to 11, embodiments of this application provide a track light, including:

[0045] Base 100;

[0046] First link 102, the first end of the first link 102 is hinged to the base 100;

[0047] The second link 104, the first end of the second link 104 is hinged to the second end of the first link 102;

[0048] Mounting base 106 is hinged to the second end of the second link 104;

[0049] The track 108 is configured to mount the lamp body and is mounted on the end of the mounting base 106 opposite to the second link 104.

[0050] The track light provided in this embodiment achieves high flexibility and freedom of adjustment in spatial dimensions (such as up / down, left / right, and tilt angle) through the hinged design between the base, the first connecting rod 102, the second connecting rod 104, and the mounting base 106. It can be precisely positioned and adjusted according to actual lighting needs and spatial layout. Furthermore, the hinged structure between the components facilitates installation and disassembly, simplifies production and maintenance, and allows for quick adjustment or replacement of components based on different application scenarios. By mounting the track 108 on the mounting base 106 and the light body on the track 108, the track 108 can rotate relative to the base 100 as needed, enabling various lighting modes such as local lighting, floodlighting, or combined lighting to meet the needs of diverse lighting scenarios. The base 100 ensures the track light remains stable even after multi-angle and large-scale adjustments, avoiding safety hazards caused by structural loosening. Because the track light can flexibly adjust its direction and position, it can more efficiently utilize lighting resources within a limited space, improving spatial lighting effects while also meeting aesthetic design requirements.

[0051] Please continue to refer to Figures 1 to 11. The track light provided in this embodiment mainly includes a base 100, a first connecting rod 102, a second connecting rod 104, a mounting base 106, and a track 108.

[0052] The base 100 serves as the supporting foundation for the entire track light, ensuring its stability. The first end of the first connecting rod 102 is hinged to the base 100, allowing the first connecting rod 102 to rotate relative to the base 100 within a certain range.

[0053] The first end of the second link 104 is hinged to the second end of the first link 102, forming a double-arm linkage mechanism. This arrangement allows the second link 104 to rotate relative to the first link 102, thereby adjusting the angle and position of the track light.

[0054] Mounting base 106 is hinged to the second end of the second link 104. Mounting base 106 is configured to mount rail 108, which is configured to mount the lamp body, providing stable support and power supply for the lamp body. Rail 108 is mounted on the end of mounting base 106 opposite to the second link 104, ensuring that the lamp body can be stably mounted on rail 108 and provide illumination.

[0055] Through this linkage mechanism design, the track light provided in this embodiment can be adjusted at multiple angles and in multiple directions to meet different lighting needs. At the same time, this structure also has advantages such as simplicity, light weight, and ease of installation and disassembly, making it convenient for users to use and maintain.

[0056] According to one embodiment of this application, the first link 102 is adapted to rotate relative to the base 100 in a first plane, the first link 102 is adapted to rotate relative to the second link 104 in a second plane, and the second link 104 is adapted to rotate relative to the mounting base 106 in a third plane.

[0057] The first plane is perpendicular to at least one of the second and third planes.

[0058] According to one embodiment of this application, the hinged design between the first link 102, the second link 104 and the mounting base 106 allows them to rotate relative to each other in different planes, thereby enabling multi-angle and multi-directional adjustment of the track light.

[0059] Specifically, the first link 102 can rotate relative to the base 100 in a first plane, which means that the user can change the illumination direction of the track light in the first plane by adjusting the angle of the first link 102.

[0060] The first link 102 can rotate relative to the second link 104 in the second plane, which provides the user with further adjustment freedom, enabling the track light to be angled in the second plane.

[0061] The second link 104 can rotate relative to the mounting base 106 in a third plane, which means that the track light can be angled in the third plane.

[0062] The above-described configuration allows the track light to be flexibly adjusted in at least the first or second plane, or the first or third plane, to adapt to different lighting needs. Whether it is necessary to adjust the overall direction or the local lighting angle, it can be achieved by adjusting the angle of the first link 102, the second link 104, or the mounting base 106.

[0063] It is worth noting that the first plane is perpendicular to at least one of the second and third planes. This design ensures that the rotation between the links does not interfere with each other, making the adjustment of the track lights more stable and reliable. At the same time, the perpendicular plane design also reduces friction and wear between the links, extending the service life of the track lights.

[0064] According to one embodiment of this application, it further includes a pivot assembly 109, a first receiving portion 110 is provided at the second end of the first connecting rod 102, a second receiving portion 112 is provided at the first end of the second connecting rod 104, and the pivot assembly 109 is disposed in the first receiving portion 110 and the second receiving portion 112.

[0065] As shown in Figures 1 and 7, according to one embodiment of this application, the track light further includes a pivot assembly 109, configured to achieve a stable connection and flexible rotation between the first link 102 and the second link 104. Specifically, the second end of the first link 102 is provided with a first receiving portion 110, while the first end of the second link 104 is provided with a second receiving portion 112. The pivot assembly 109 is disposed between these two receiving portions to ensure smooth relative rotation between the first link 102 and the second link 104.

[0066] The design of the pivot assembly 109 can be customized according to actual needs to ensure that it can meet the rotational requirements between the first link 102 and the second link 104. For example, the pivot assembly 109 may include components such as a pivot and bearings to ensure smooth and stable rotation. Simultaneously, the pivot assembly 109 may also include a locking mechanism configured to fix the relative angle between the first link 102 and the second link 104 when needed to prevent accidental rotation.

[0067] With the addition of the pivot assembly 109, the relative rotation between the first link 102 and the second link 104 becomes more stable and reliable. Users can adjust the angle between the first link 102 and the second link 104 to change the overall direction and lighting effect of the track light. This design not only improves the flexibility and practicality of the track light but also provides users with more adjustment and selection options.

[0068] Therefore, through the arrangement of the pivot assembly 109, the track light provided in this embodiment achieves a stable connection and flexible rotation between the first link 102 and the second link 104, improving the lighting effect and user experience of the track light. This design not only meets the actual needs of users but also enhances the overall performance and aesthetics of the track light.

[0069] According to one embodiment of this application, a rotating groove 114 is provided on the base 100, and a hinge shaft is provided in the rotating groove 114. The first end of the first connecting rod 102 is hinged to the upper hinge shaft.

[0070] As shown in Figure 2, according to one embodiment of this application, a rotating groove 114 is provided on the base 100, and a hinge shaft is disposed in the rotating groove 114. The first end of the first connecting rod 102 is hinged to the base 100 through the hinge shaft. This arrangement allows the first connecting rod 102 to rotate freely on the base 100, thereby adjusting the angle and lighting direction of the track light. It should be noted that the rotating groove 114 can be located at the bottom of the base 100. This arrangement avoids generating a relatively large bending moment on the first connecting rod 102, ensuring the structural strength and service life of the first connecting rod 102.

[0071] In this embodiment, the hinge shaft can be a pin fixed in the rotating groove 114. The first end of the first connecting rod 102 is provided with a hole or groove that matches the hinge shaft. By fitting the hole or groove onto the hinge shaft, the first connecting rod 102 is hinged to the base 100. With this configuration, when the user needs to adjust the angle of the track light, they only need to gently rotate the first connecting rod 102 to achieve its rotation relative to the base 100.

[0072] Furthermore, by providing a rotating groove 114 on the base 100 and installing a hinge shaft, not only is the structural stability and reliability of the track light improved, but the rotation of the first connecting rod 102 is also made smoother and more stable. At the same time, this design simplifies the installation and disassembly process of the track light, making it easier for users to maintain and replace it.

[0073] According to one embodiment of this application, a clearance groove 116 is formed on the mounting base 106, which is configured to avoid the second link 104, and the second link 104 is hinged to the clearance groove 116.

[0074] As shown in Figure 4, according to one embodiment of this application, a clearance groove 116 is formed on the mounting base 106, configured to allow the second link 104 to pass. The design of the clearance groove 116 allows the second link 104 to rotate freely on the mounting base 106 without being restricted by the structure of the mounting base 106. This design enables the second link 104 to rotate relative to the mounting base 106 in a second plane, thereby adjusting the angle and lighting direction of the track light.

[0075] Specifically, the clearance groove 116 can be a recess or through hole formed in the mounting base 106, the shape and size of which are adapted to the second connecting rod 104. The first end of the second connecting rod 104 has a rotating part adapted to the clearance groove 116. By installing this rotating part in the clearance groove 116, a hinged connection is achieved between the second connecting rod 104 and the mounting base 106. In this way, when the user needs to adjust the angle of the track light, simply rotating the second connecting rod 104 will allow it to rotate relative to the mounting base 106.

[0076] The design of the clearance groove 116 not only improves the structural stability and reliability of the track light, but also makes the rotation of the second connecting rod 104 smoother and more stable. At the same time, the use of the clearance groove 116 can also avoid friction and collision between the second connecting rod 104 and the mounting base 106, thus extending the service life of the track light.

[0077] It should be noted that, in order to achieve damped rotation of the second link 104 and the clearance groove 116, a nylon washer can be set on the second link 104, and the above purpose can be achieved by passing a pin through the nylon washer.

[0078] According to one embodiment of this application, a first cover 117 is also included, which is detachably mounted on the clearance groove 116.

[0079] As shown in Figures 1 and 2, according to one embodiment of this application, the track light further includes a first cover 117, which is detachably mounted on the clearance groove 116. The first cover 117 is designed to protect the clearance groove 116 and its internal hinge structure, preventing dust, moisture or other impurities from entering, thereby ensuring the stability and reliability of the track light.

[0080] The shape and size of the first cover 117 are adapted to the clearance groove 116, allowing it to tightly cover the clearance groove 116. For detachable installation, a corresponding connecting structure, such as a clip or screw, can be provided between the first cover 117 and the clearance groove 116. Users can easily install or remove the first cover 117 as needed for maintenance, cleaning, or replacement of the hinge structure.

[0081] Furthermore, the use of the first cover 117 not only protects the clearance groove 116 and its internal hinge structure, but also improves the overall aesthetics of the track light. At the same time, the detachable design of the first cover 117 makes the maintenance and use of the track light more convenient.

[0082] Thus, by detachably installing the first cover 117 onto the clearance groove 116, the track light of this application protects the clearance groove 116 and its internal hinge structure, improving the stability and reliability of the track light, while also providing users with more convenience and choices.

[0083] According to one embodiment of this application, a terminal assembly 118 is also included, which is mounted on the side of the mounting base 106 away from the clearance groove 116.

[0084] As shown in Figure 1, according to one embodiment of this application, the track light also includes a terminal assembly 118, which is mounted on the side of the mounting base 106 opposite to the clearance groove 116. The terminal assembly 118 is an important part of the track light, mainly responsible for power supply and distribution to ensure the normal operation of the light body.

[0085] In this embodiment, the terminal assembly 118 includes a terminal box, wiring terminals, and terminals. It is understood that the terminal box can be directly mounted on the side of the mounting base 106 opposite to the clearance groove 116.

[0086] Thus, the terminal assembly 118 ensures stable power supply and distribution, guaranteeing the normal operation of the light fixture. Furthermore, the installation location of the terminal assembly 118 takes into full account structural layout and ease of use, improving the overall performance and user experience of the track light.

[0087] According to one embodiment of this application, the mounting base 106 is provided with a positioning post (not shown) on the side opposite to the clearance groove 116, which is suitable for positioning and engaging with the terminal assembly 118.

[0088] According to one embodiment of this application, in order to install the terminal assembly 118 on the side of the mounting base 106 opposite to the clearance groove 116 and ensure its stable positioning, positioning posts are provided on the mounting base 106. These positioning posts are designed to be positioned and engaged with corresponding structures on the terminal assembly 118.

[0089] Specifically, the positioning post can be a cylindrical or rectangular structure protruding from the surface of the mounting base 106, or other shapes capable of positioning and engaging with the terminal assembly 118. When installing the terminal assembly 118, the user simply aligns the positioning hole or groove on the terminal assembly 118 with the positioning post on the mounting base 106, and then fixes the terminal assembly 118 onto the mounting base 106. The engagement of the positioning post with the positioning hole or groove on the terminal assembly 118 not only ensures the accurate positioning of the terminal assembly 118 on the mounting base 106, but also improves the connection stability between the terminal assembly 118 and the mounting base 106, preventing the terminal assembly 118 from loosening or falling off during use.

[0090] Therefore, by cooperating with the positioning pins on the mounting base 106 and the positioning holes or grooves on the terminal assembly 118, the track light of this application achieves quick and stable installation of the terminal assembly 118, improving the overall stability and reliability of the track light. This configuration not only simplifies the installation process but also provides users with a more convenient user experience.

[0091] According to one embodiment of this application, the mounting base 106, the first connecting rod 102, the second connecting rod 104 and the base 100 are all provided with wire holes 122, and the terminals of the terminal assembly 118 are adapted to pass through the wire holes 122 and connect to the cables in the base 100.

[0092] As shown in Figures 5 and 6, according to one embodiment of this application, in order to achieve orderly wiring and connection of the internal wires of the track light, wiring holes 122 are provided on the mounting base 106, the first connecting rod 102, the second connecting rod 104, and the base 100. The design of these wiring holes 122 allows the terminals in the terminal assembly 118 to pass through the base 100, the first connecting rod 102, the second connecting rod 104, and the mounting base 106 and connect to the cables in the base 100, thereby achieving electrical connection between the various components inside the track light.

[0093] The cable passage holes 122 not only allow the wires to pass through the various components in an orderly manner, but also prevent the wires from twisting or tangling during installation and use, thus improving the stability and reliability of the track light. Furthermore, by passing the wires through the cable passage holes 122 and connecting them to the cables in the base 100, the track light can be electrically connected to other devices, expanding its functionality.

[0094] According to one embodiment of this application, a first positioning part 124 is provided on the mounting base 106, and a second positioning part 126 is formed in the track 108. When the track 108 is installed on the mounting base 106, the mounting base 106 and the track 108 are adapted to be positioned by the first positioning part 124 and the second positioning part 126.

[0095] As shown in Figures 4 and 11, according to one embodiment of this application, in order to achieve precise positioning between the mounting base 106 and the track 108 and ensure the stability and reliability of the track light, a first positioning part 124 is provided on the mounting base 106, and a second positioning part 126 is formed in the track 108. When the track 108 is installed on the mounting base 106, the mounting base 106 and the track 108 are precisely positioned by the first positioning part 124 and the second positioning part 126.

[0096] Specifically, the first positioning part 124 may be one or more protrusions, grooves, or other structures, the shape and size of which are adapted to the second positioning part 126. Similarly, the second positioning part 126 may also be one or more grooves, protrusions, or other structures, and it engages with the first positioning part 124. When the track 108 is installed on the mounting base 106, the first positioning part 124 and the second positioning part 126 engage with each other, ensuring accurate positioning between the track 108 and the mounting base 106.

[0097] This positioning method not only improves the stability and reliability of the track light but also simplifies the installation process of the track 108. Users simply align the track 108 with the mounting base 106, ensuring the first positioning part 124 and the second positioning part 126 engage to complete the installation. No additional tools or complex procedures are required, improving installation efficiency. The cooperation of the first positioning part 124 and the second positioning part 126 also ensures that the track 108 will not easily loosen or fall off the mounting base 106. This stable connection makes the track light safer and more reliable during use.

[0098] According to one embodiment of this application, a groove 128 is formed on the side of the track 108 opposite to the second positioning part 126, and a conductive strip 130 is formed in the groove 128. When the first positioning part 124 and the second positioning part 126 are positioned and engaged, the terminals in the terminal assembly 118 are adapted to extend into the groove 128 and contact the conductive strip 130.

[0099] As shown in Figure 11, according to one embodiment of this application, in order to achieve electrical connection between the track 108 and the terminal assembly 118, and to ensure the stability and reliability of the connection, a groove 128 is formed on the side of the track 108 opposite to the second positioning part 126, and a conductive strip 130 is formed in the groove 128. When the first positioning part 124 on the mounting base 106 is positioned and engaged with the second positioning part 126 in the track 108, the terminals in the terminal assembly 118 can extend into the groove 128 and contact the conductive strip 130, thereby establishing an electrical connection between the track 108 and other devices.

[0100] The groove 128 can be a recess formed on one side of the track 108, the shape and size of which are adapted to the terminals in the terminal assembly 118. The conductive strip 130 is one or more metal strips disposed inside the groove 128, which have good electrical conductivity. When the track 108 is positioned and engaged with the mounting base 106, the terminals in the terminal assembly 118 can extend into the groove 128 and contact the conductive strip 130.

[0101] Furthermore, since the conductive strip 130 is housed inside the slide groove 128, it is not exposed, thus avoiding safety hazards such as electric shock. At the same time, the design of the slide groove 128 ensures stable and reliable contact between the terminal and the conductive strip 130, making it less susceptible to external interference or vibration.

[0102] Furthermore, the design of the groove 128 and conductive strip 130 simplifies the installation and use of track lights. Users simply align and position the track 108 with the mounting base 106, then insert the terminals from the terminal assembly 118 into the groove 128 to contact the conductive strip 130. No additional tools or complex procedures are required, improving installation and usage efficiency.

[0103] According to one embodiment of this application, it also includes a second cover 132 and a bottom cover 134, which are detachably connected to two opposite sides of the base 100.

[0104] As shown in Figures 1 to 3, according to one embodiment of this application, in order to further improve the structural integrity and aesthetics of the track light, the track light also includes a second cover 132 and a bottom cover 134. The second cover 132 and the bottom cover 134 are detachably connected to two opposite sides of the base 100, thereby protecting the internal components of the base 100, enhancing structural stability, and improving the overall appearance.

[0105] Understandably, the second cover 132 typically matches the shape of the top surface of the base 100 and is fixed to the base 100 using appropriate connection methods (such as screws, clips, etc.). The bottom cover 134 corresponds to the bottom surface of the base 100 and is fixed in a similar manner. In this way, the second cover 132 and the bottom cover 134 together form a closed space, effectively protecting the electrical components and wiring inside the base 100 and preventing interference from external factors such as dust and moisture.

[0106] Furthermore, the detachable connection makes the installation and removal of the second cover 132 and the bottom cover 134 very convenient. When it is necessary to maintain or replace the components inside the base 100, the user can easily remove these parts, and the operation is simple and quick.

[0107] In other words, by adding two detachable components, the second cover 132 and the bottom cover 134, the track light of this application has been significantly improved in terms of structural integrity, stability, and aesthetics. This design not only provides users with a safer and more reliable product experience, but also endows the track light with more artistic flair and personalized characteristics.

[0108] According to one embodiment of this application, a suspension wire assembly 136 is also included, which is connected to the second cover 132.

[0109] As shown in Figures 1 to 3, according to one embodiment of this application, the first end of the suspension wire assembly 136 is connected to the second cover 132, and the second end of the suspension wire assembly 136 can be fixed to the ceiling or other supporting structure as needed. By connecting the suspension wire assembly 136 to the second cover 132, the user can easily adjust the height and position of the track light to meet different lighting needs. The design of the suspension wire assembly 136 also makes the installation of the track light simpler and more flexible, without the need for complex supporting structures or installation tools. In addition, the suspension wire assembly 136 has good load-bearing capacity and stability, ensuring that the track light remains stable and safe during use. The length of the suspension wire can also be adjusted as needed to adapt to different suspension heights and space requirements.

[0110] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A track light, comprising: Base (100); A first link (102) is connected at its first end to the base (100); The second link (104) has its first end hinged to the second end of the first link (102); Mounting base (106) is hinged to the second end of the second link (104); A track (108) is configured to mount a lamp body, the track (108) being mounted on the end of the mounting base (106) away from the second link (104).

2. The track light according to claim 1 further includes a rotating shaft assembly (109), wherein the second end of the first connecting rod (102) is provided with a first receiving portion (110), the first end of the second connecting rod (104) is provided with a second receiving portion (112), and the rotating shaft assembly (109) is disposed in the first receiving portion (110) and the second receiving portion (112).

3. The track light according to claim 1, wherein, The base (100) has a rotating groove (114) and a hinge shaft is provided in the rotating groove (114). The first end of the first connecting rod (102) is hinged to the hinge shaft.

4. The track light according to claim 1, wherein, The mounting base (106) has a clearance groove (116) configured to avoid the second link (104), the second link (104) being hinged to the clearance groove (116).

5. The track light according to claim 4 further includes a first cover (117), the first cover (117) being detachably installed in the clearance groove (116).

6. The track light according to claim 4 further includes a terminal assembly (118) mounted on the side of the mounting base (106) opposite to the clearance groove (116).

7. The track light according to claim 6, wherein, The mounting base (106) is provided with a positioning post on the side opposite to the relief groove (116) that is suitable for positioning and engaging with the terminal assembly (118).

8. The track light according to claim 6, wherein, The mounting base (106), the first connecting rod (102), the second connecting rod (104), and the base (100) are all provided with wire holes (122), and the terminals of the terminal assembly (118) are adapted to pass through the wire holes (122) and connect to the cables in the base (100).

9. The track light according to claim 8, wherein, The mounting base (106) is provided with a first positioning part (124), and the track (108) is formed with a second positioning part (126). When the track (108) is installed on the mounting base (106), the mounting base (106) and the track (108) are adapted to be positioned by the first positioning part (124) and the second positioning part (126).

10. The track light according to claim 9, wherein, A groove (128) is formed on the side of the track (108) away from the second positioning part (126), and a conductive strip (130) is formed in the groove (128). When the first positioning part (124) and the second positioning part (126) are positioned and engaged, the terminal in the terminal assembly (118) is adapted to extend into the groove (128) and contact the conductive strip (130).

11. The track light according to any one of claims 1 to 10, further comprising a second cover (132) and a bottom cover (134), the second cover (132) and the bottom cover (134) being detachably connected to two opposite sides of the base (100).

12. The track light according to claim 11 further includes a suspension wire assembly (136) connected to the second cover (132).

13. The track light according to any one of claims 1 to 10, wherein, The first link (102) is adapted to rotate relative to the base (100) in a first plane, the first link (102) is adapted to rotate relative to the second link (104) in a second plane, and the second link (104) is adapted to rotate relative to the mounting base (106) in a third plane; The first plane is perpendicular to at least one of the second and third planes.

Citation Information

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