Low-voltage conductive track lamp

By using a sliding contact connection and an insulating strip design, the problem of unstable current and electric shock risk caused by wear of existing track light conductive devices is solved, thus improving safety and durability.

CN223550395UActive Publication Date: 2025-11-14ZHONGSHAN LANSI LIGHTING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422870207.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-11-14
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

The conductive devices of existing track lights are prone to unstable current transmission due to wear and poor contact, posing a risk of electric shock, and are also complex to install and maintain.

Method used

The design employs a sliding contact connection, using insulating strips to isolate the positive and negative conductive tracks. The sliding contact conductive connection is achieved through conductive sliders and conductive sheets, ensuring that the positive and negative conductive tracks are always isolated and eliminating the risk of short circuits.

Benefits of technology

It improves the safety and durability of track lights, simplifies the installation process, and reduces maintenance costs and the risk of electric shock.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a low-voltage conductive track lamp which comprises a track assembly and a conductive device, the conductive device is in sliding contact and conductive connection with the track assembly, and the track assembly comprises an insulating rubber strip, a positive conductive track and a negative conductive track. The positive conductive track and the negative conductive track are oppositely connected to the two sides of the insulating rubber strip in a spaced mode. The low-voltage conductive track lamp is connected in a sliding contact mode, is simple in structure and convenient to assemble, guarantees that the positive conductive track and the negative conductive track are always isolated through the design of the insulating rubber strip, avoids the risk of short circuit, and improves safety and durability of products.
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Description

Technical Field

[0001] This utility model belongs to the field of conductive track lighting technology, specifically relating to a modern lighting fixture suitable for home and commercial use. Background Technology

[0002] Track lights are widely used in modern home and commercial lighting as an efficient and flexible lighting solution. Existing track lights on the market generally use a straight strip shape, and the power transmission mainly relies on magnetic or spring-based devices. However, existing technology has some significant problems in use and maintenance, limiting its further popularization and application.

[0003] Firstly, current track light designs often rely on spring or magnetic devices to achieve electrical conductivity. While this design maintains good electrical contact initially, the conductivity of the spring device gradually decreases over time, easily leading to poor contact or unstable current transmission. After prolonged use, the spring device may experience uneven contact surfaces or scratches on the rail due to metal fatigue or rail wear, even resulting in current interruption, severely impacting the normal operation and lifespan of the light fixture.

[0004] Secondly, while the spring and magnetic closure designs offer a simpler installation method, they also introduce a higher risk of electric shock. Especially in track lights powered by conventional voltages (such as 220V), poor contact or loose connections can lead to current leakage or short circuits, posing a potential danger of electric shock to users. Although track lights typically incorporate protective designs, these measures may not completely eliminate the risk of electric shock during actual use.

[0005] Furthermore, the existing track light design and installation process is relatively complex, especially when the spring mechanism needs adjustment or replacement, which often requires disassembling the entire light fixture, increasing the difficulty of installation and maintenance. Since conductive components are prone to poor contact due to wear and tear or dust accumulation, regular cleaning and maintenance are essential, which inevitably increases the user's maintenance and time costs.

[0006] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content

[0007] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a low-voltage conductive track light that uses sliding contact connection, has a simple structure, is easy to assemble, and ensures that the positive and negative conductive tracks are always isolated through the design of insulating rubber strips, eliminating the risk of short circuits and improving the safety and durability of the product, so as to solve the technical problems mentioned in the background art.

[0008] To achieve the above objectives, the present invention provides the following technical solution: a low-voltage conductive track light, comprising a track assembly and a conductive device, wherein the conductive device and the track assembly are connected by sliding contact conductive connection, and the track assembly comprises an insulating strip, a positive conductive track and a negative conductive track, wherein the positive conductive track and the negative conductive track are connected at intervals to both sides of the insulating strip.

[0009] Furthermore, a conductive groove is formed between the upper part of the positive conductive track and the upper part of the negative conductive track. The upper part of the positive conductive track is provided with a positive conductive surface, and the upper part of the negative conductive track is provided with a negative conductive surface. The positive conductive surface and the negative conductive surface are symmetrically arranged on both sides of the conductive groove.

[0010] Furthermore, the bottom of the conductive device is provided with a conductive outer shell, and a conductive slider is protruding from the upper inner part of the conductive outer shell. A positive conductive sheet is connected to one side of the conductive slider, and a negative conductive sheet is connected to the other side of the conductive slider. The conductive outer shell is slidably connected to the upper outer side of the positive conductive track and the negative conductive track. The conductive slider is slidably connected in the conductive groove. At the same time, the positive conductive sheet is in contact with the positive conductive surface, and the negative conductive sheet is in contact with the negative conductive surface, so that the track assembly and the conductive device are in sliding contact conductive connection.

[0011] Furthermore, a first mounting groove is recessed on one side of the insulating strip, and a second mounting groove is recessed on the other side of the insulating strip. A first mounting protrusion is provided on one side of the positive conductive track, and a second mounting protrusion is provided on one side of the negative conductive track. The first mounting protrusion is slidably connected in the first mounting groove, and the second mounting protrusion is slidably connected in the second mounting groove.

[0012] Furthermore, a spacer protrusion is provided between the first mounting groove and the second mounting groove.

[0013] Furthermore, the insulating strip is made of adhesive material.

[0014] Furthermore, both the positive and negative conductive tracks are made of aluminum.

[0015] Furthermore, both the positive conductive sheet and the negative conductive sheet are made of copper.

[0016] The present invention has the following advantages: the positive conductive track and the negative conductive track are connected to each other on both sides of the insulating strip. The bottom of the conductive device is provided with a conductive shell, and a conductive slider is protruding from the upper inner part of the conductive shell. A positive conductive sheet is connected to one side of the conductive slider, and a negative conductive sheet is connected to the other side of the conductive slider. The track assembly and the conductive device are slidably connected, so that the positive conductive sheet and the positive conductive track are in contact and conductive connection, and the negative conductive sheet and the negative conductive track are in contact and conductive connection. The low-voltage conductive track light of the present invention has a simple structure and is easy to assemble through sliding contact connection. Furthermore, the design of the insulating strip ensures that the positive and negative conductive tracks are always isolated, eliminating the risk of short circuit and improving the safety and durability of the product. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model.

[0018] Figure 2 This is a front structural diagram of the present invention.

[0019] Figure 3 This is a schematic diagram of the conductive device structure of this utility model.

[0020] Reference numerals: track assembly 10; conductive device 20; insulating strip 11; positive conductive track 12; negative conductive track 13; conductive groove 14; positive conductive surface 121; negative conductive surface 131; conductive shell 21; conductive slider 22; positive conductive sheet 23; negative conductive sheet 24; first mounting groove 111; second mounting groove 112; first mounting protrusion 122; second mounting protrusion 132; spacer protrusion 113. Detailed Implementation

[0021] like Figures 1 to 3 As shown, a low-voltage conductive track light includes a track assembly 10 and a conductive device 20. The conductive device 20 is in sliding contact conductive connection with the track assembly 10. In use, the conductive device 20 is installed in the light fixture, and the conductive device 20 is in contact conductive contact with the track assembly 10. The track assembly 10 is connected to a low-voltage power supply (such as 24V or 48V) through a power adapter. Current is transmitted through the track assembly 10 to the conductive device 20, and then transmitted by the conductive device to the light fixture to drive the light fixture to work normally.

[0022] In practical implementation, the track assembly 10 includes an insulating strip 11, a positive conductive track 12, and a negative conductive track 13. The positive conductive track 12 and the negative conductive track 13 are connected to each other on both sides of the insulating strip 11. A conductive groove 14 is formed between the upper parts of the positive conductive track 12 and the negative conductive track 13. The upper side of the positive conductive track 12 is provided with a positive conductive surface 121, and the upper side of the negative conductive track 13 is provided with a negative conductive surface 131. The positive conductive surface 121 and the negative conductive surface 131 are symmetrically arranged on both sides of the conductive groove 14. In use, the positive conductive track 12 and the negative conductive track 13 are completely separated by the insulating strip 11. The design of the insulating strip 11 ensures that the positive and negative conductive tracks are always isolated, eliminating the risk of short circuit and improving the safety and durability of the product.

[0023] In practical implementation, the conductive device 20 has a conductive outer shell 21 at its bottom, and a conductive slider 22 protrudes from the upper inner part of the conductive outer shell 21. The size of the conductive slider 22 is smaller than the size of the conductive groove 14. One side of the conductive slider 22 is connected to a positive conductive plate 23 that matches the positive conductive surface 121, and the other side of the conductive slider 22 is connected to a negative conductive plate 24 that matches the negative conductive surface 131. During installation, the conductive outer shell 21 is slidably connected to the upper outer sides of the positive conductive track 12 and the negative conductive track 13, and the conductive slider 22 is slidably connected to the conductive groove 14. In the groove 14, the positive conductive sheet 23 is in contact with the positive conductive surface 121, and the negative conductive sheet 24 is in contact with the negative conductive surface 131, thereby making the track assembly 10 and the conductive device 20 in sliding contact conductive connection. In use, the current is transmitted through the positive conductive track 12 to the positive conductive surface 121, and then flows into the conductive device 20 through the positive conductive sheet 23. The negative current path is similar, from the negative conductive track 13 through the negative conductive surface 131 and connects with the negative conductive sheet 24 to complete the closed circuit. The structure is simple and easy to assemble.

[0024] In practice, the insulating strip 11 is made of adhesive material, the positive conductive track 12 and the negative conductive track 13 are both made of aluminum material, and the positive conductive sheet 23 and the negative conductive sheet 24 are both made of copper material.

[0025] In practical implementation, the insulating strip 11 has a first mounting groove 111 recessed on one side and a second mounting groove 112 recessed on the other side. The positive conductive track 12 has a first mounting protrusion 122 adapted to the first mounting groove 111 on one side and a second mounting protrusion 132 adapted to the second mounting groove 112 on one side. During installation, the first mounting protrusion 122 is slidably connected in the first mounting groove 111 and the second mounting protrusion 132 is slidably connected in the second mounting groove 112, thereby connecting the positive conductive track 12 and the negative conductive track 13 to each other on both sides of the insulating strip 11. The structure is simple and the installation is convenient.

[0026] In practical implementation, a spacer protrusion 113 is provided between the first mounting groove 111 and the second mounting groove 112. During use, the spacer protrusion 113 is positioned between the first mounting groove 111 and the second mounting groove 112, acting as an insulating barrier between the positive conductive track 12 and the negative conductive track 13, ensuring that the two do not come into direct contact, thereby effectively preventing the risk of short circuit. The spacer protrusion 113 provides additional mechanical support and improves the stability of the track assembly 10.

[0027] In practical implementation, the track component 10 can be designed into a long strip shape, a round shape, or a curved shape, etc., according to the requirements.

[0028] In summary, the positive conductive track 12 and the negative conductive track 13 are connected to each other on both sides of the insulating strip 11. The bottom of the conductive device 20 is provided with a conductive housing 21, and a conductive slider 22 is protruding from the upper inner part of the conductive housing 21. A positive conductive sheet 23 is connected to one side of the conductive slider 22, and a negative conductive sheet 24 is connected to the other side of the conductive slider 22. The track assembly 10 and the conductive device 20 are slidably connected, so that the positive conductive sheet 23 is in contact with the positive conductive track 12 and the negative conductive sheet 24 is in contact with the negative conductive track 13. The low-voltage conductive track light of this utility model has a simple structure and is easy to assemble through sliding contact connection. Furthermore, the design of the insulating strip ensures that the positive and negative conductive tracks are always isolated, eliminating the risk of short circuit and improving the safety and durability of the product.

Claims

1. A low-voltage conductive track light, characterized in that, It includes a track assembly (10) and a conductive device (20), which is in sliding contact with the track assembly (10). The track assembly (10) includes an insulating strip (11), a positive conductive track (12) and a negative conductive track (13), which are connected at intervals to each other on both sides of the insulating strip (11).

2. The low-voltage conductive track light according to claim 1, characterized in that, A conductive groove (14) is formed between the upper part of the positive conductive track (12) and the negative conductive track (13). The upper part of the positive conductive track (12) is provided with a positive conductive surface (121), and the upper part of the negative conductive track (13) is provided with a negative conductive surface (131). The positive conductive surface (121) and the negative conductive surface (131) are symmetrically arranged on both sides of the conductive groove (14).

3. The low-voltage conductive track light according to claim 2, characterized in that, The bottom of the conductive device (20) is provided with a conductive shell (21). The upper inner part of the conductive shell (21) is provided with a conductive slider (22). One side of the conductive slider (22) is connected to a positive conductive sheet (23), and the other side of the conductive slider (22) is connected to a negative conductive sheet (24). The conductive shell (21) is slidably connected to the upper outer side of the positive conductive track (12) and the negative conductive track (13). The conductive slider (22) is slidably connected in the conductive groove (14). At the same time, the positive conductive sheet (23) is in contact with the positive conductive surface (121), and the negative conductive sheet (24) is in contact with the negative conductive surface (131), so that the track assembly (10) and the conductive device (20) are in slidable contact conductive connection.

4. The low-voltage conductive track light according to claim 2, characterized in that, The insulating strip (11) has a first mounting groove (111) recessed on one side and a second mounting groove (112) recessed on the other side. The positive conductive track (12) has a first mounting protrusion (122) on one side and a second mounting protrusion (132) on one side. The first mounting protrusion (122) is slidably connected in the first mounting groove (111) and the second mounting protrusion (132) is slidably connected in the second mounting groove (112).

5. The low-voltage conductive track light according to claim 4, characterized in that, A spacer protrusion (113) is provided between the first mounting groove (111) and the second mounting groove (112).

6. The low-voltage conductive track light according to claim 1, characterized in that, The insulating strip (11) is made of adhesive material.

7. The low-voltage conductive track light according to claim 1, characterized in that, Both the positive conductive track (12) and the negative conductive track (13) are made of aluminum.

8. The low-voltage conductive track light according to claim 3, characterized in that, Both the positive conductive sheet (23) and the negative conductive sheet (24) are made of copper.