Lifting guide rail ceiling lamp
With its ceiling-mounted plate and conductive rail structure, the light source assembly can slide and be controlled by a remote control, solving the flexibility problem of traditional fixed installation of lamps. This enables flexible installation and remote control, improving the application range and lighting effect of suspended rail lamps.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 深圳市耐锐科技有限公司
- Filing Date
- 2025-04-18
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional fixed installation methods for lighting fixtures cannot meet the flexible layout requirements of ambient lighting, and high-level track installation affects the flexibility of operation and the lighting effect.
It adopts a ceiling plate and conductive rail structure, and the light source component can slide up and down along the rail. It can be flexibly operated by controlling the trigger switch through the remote control component, and can be remotely controlled by Bluetooth module.
It enables flexible installation and control of the light source components, avoids the impact of high-level installation on operation, expands the application range of suspended rail lights, and improves ease of use and lighting effect.
Smart Images

Figure CN224135809U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting technology, specifically to a suspended rail pendant light. Background Technology
[0002] Lighting fixtures are typically fixed to walls or ceilings, while table lamps can be moved within a limited range, but are restricted by power cord length and socket location. Ambient lighting products often require frequent adjustments to the lighting area or range to create the desired atmosphere. Traditional fixed installation methods for ambient lighting are insufficient to meet the flexible layout requirements of ambient lighting. Therefore, existing ambient lighting products have explored track mounting methods extensively, allowing fixtures to be installed in any location based on the track.
[0003] For example, by installing tracks along the ceiling or wall, the light fixtures can be positioned to change their lighting location. Typically, ceilings and tracks are installed high up, and the switching on and off of the light fixtures is usually controlled by the power status of the track. If multiple light fixtures / electrical appliances are installed on a single track, all of them will turn on or off simultaneously, making operation inflexible. Furthermore, the high installation position of the track can reduce the lighting effect of the light fixtures.
[0004] Therefore, existing technologies still need to be improved and developed. Utility Model Content
[0005] The purpose of this utility model is to address the shortcomings and deficiencies of the existing technology by providing a hanging rail chandelier that is structurally reasonable, flexible in use, and easy to operate.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] The present invention discloses a pendant light with a ceiling plate and several conductive rails. The upper end of the conductive rails is connected to the ceiling plate, and a remote control component is provided in the lower end of the conductive rails. A lamp tube is connected to the lower end of the conductive rails, and a light source component that can move up and down along the lamp tube is provided in the lamp tube. The remote control component is provided with a trigger switch, which is paired with the light source component. The remote control component is connected to the trigger switch, the light source component and the conductive rails through a circuit.
[0008] According to the above scheme, the remote control component includes a function board housing, which is located inside the lower port of the conductive rail and has a slide rail; the light source component has a slider, which has a vertical groove, which is connected to the slide rail, so that the light source component can slide up and down inside the lamp tube; the trigger switch is fixedly installed on the function board housing and is paired with the slider.
[0009] According to the above scheme, the light source assembly includes a heat sink, an LED chip, and a lens assembly. The slider and the heat sink are an integral structure. The heat sink, LED chip, and lens assembly are fixedly connected in sequence so that they can slide up and down together inside the lamp tube.
[0010] According to the above scheme, the remote control component also includes a function board, which is fixedly mounted on the function board housing. A trigger switch is fixedly mounted on the function board, and the function board is connected to the conductive rail and the LED chip respectively through circuits.
[0011] According to the above scheme, two conductive sheets are inserted inside the conductive rail, and the two conductive sheets are spaced apart from each other; two insulating blocks are provided in the lower port of the conductive rail, and the two insulating blocks are respectively filled between the corresponding conductive sheets and the conductive rail; two electrical contact springs are provided on the outer shell of the functional board, and the two electrical contact springs respectively contact the positive and negative poles of the conductive sheets, and the two electrical contact springs are connected to the functional board through a circuit.
[0012] According to the above scheme, one of the insulating blocks is equipped with a Bluetooth antenna, which is connected to the function board via a circuit.
[0013] According to the above scheme, a threaded sleeve is provided between the conductive rail and the lamp tube, and the threaded sleeve is threadedly connected to the conductive rail and the lamp tube respectively; the upper end of the threaded sleeve touches the outer shell of the functional plate so as to fix it inside the conductive rail.
[0014] According to the above scheme, the ceiling plate is provided with a terminal block, and the upper end of the conductive rail is provided with a wire locker; a wire is provided between the ceiling plate and the conductive rail, and the upper end of the wire is connected to the terminal block; the upper end of the conductive rail is provided with an adapter plate, the upper end of the conductive sheet is connected to the adapter plate, and the lower end of the wire passes through the wire locker and is connected to the adapter plate.
[0015] The advantages of this utility model are as follows: This utility model has a reasonable structure. Pushing the light source component triggers the trigger switch to realize the opening and closing of the light source component. Moreover, the light source component can be controlled by the remote control component, avoiding the influence of the installation height of the conductive rail on the operation. Other suitable power supply modules can be added arbitrarily on the conductive rail. It is convenient to use and flexible to operate, and can effectively expand the application range of the suspended rail lighting fixture. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the disassembled structure of the conductive rail and light source assembly of this utility model;
[0018] Figure 3 This is a schematic diagram of the cross-sectional structure of the conductive rail and lamp tube of this utility model.
[0019] In the diagram: 1. Ceiling plate; 2. Conductive rail; 3. Lamp tube; 4. Trigger switch; 11. Wire; 12. Terminal block; 21. Insulating block; 22. Conductive sheet; 23. Threaded sleeve; 24. Adapter plate; 25. Wire locker; 31. Slider; 32. Vertical slide; 33. Heat sink; 34. LED chip; 35. Lens assembly; 41. Functional board housing; 42. Slide rail; 43. Functional board; 44. Electrical contact spring. Detailed Implementation
[0020] The technical solution of this utility model will be described below with reference to the accompanying drawings and embodiments.
[0021] like Figure 1-3 As shown, the present invention provides a suspended track chandelier, comprising a ceiling plate 1 and several conductive rails 2. The upper end of the conductive rails 2 is connected to the ceiling plate 1, and a remote control component is provided in the lower end of the conductive rails 2. A lamp tube 3 is connected to the lower end of the conductive rails 2, and a light source component that can move up and down along the lamp tube 3 is provided in the lamp tube 3. The remote control component is provided with a trigger switch 4, which is paired with the light source component. The remote control component is connected to the trigger switch 4, the light source component, and the conductive rails 2 respectively through circuits.
[0022] The ceiling plate 1 is installed on the ceiling surface, and several conductive rails 2 are suspended indoors. The conductive rails 2 can be fixedly connected to the ceiling plate 1. In this invention, the conductive rails 2 are connected to the ceiling plate 1 via wires 11, allowing the installation height of the conductive rails 2 and the light source components at their lower ends to be adjustable. The flexible wires 11 also act as a buffer when the conductive rails 2 are impacted, preventing damage to the lamps and electrical appliances. Furthermore, when the conductive rails 2 are suspended at a reasonable height, they can push the light source components inside the lamp holder 3 to trigger the trigger switch 4, thus controlling the switching of the light source components. Even further, the remote control component can also control the state of the light source components. Taking Bluetooth as an example, pushing the light source components closes the trigger switch 4 for a certain period of time, and the remote control component enters a pairing mode. After pairing the remote control component with a remote control or mobile terminal, remote control can be achieved, making it more convenient to use.
[0023] The remote control assembly includes a function board housing 41, which is located inside the lower port of the conductive rail 2. The function board housing 41 has a slide rail 42. The light source assembly has a slider 31, which has a vertical groove 32. The vertical groove 32 is connected to the slide rail 42, so that the light source assembly can slide up and down inside the lamp tube 3. The trigger switch 4 is fixedly mounted on the function board housing 41 and is paired with the slider 31.
[0024] The functional board housing 41 has a hollow structure, and the upper end of the slider 31 passes through the lower port of the functional board housing 41. The two are slidably engaged by the slide rail 42 and the vertical slide groove 32. When the light source assembly is pushed upward, the slider 31 is driven to contact the paired trigger switch 4, realizing the switching of the light source assembly and the matching control of the remote control assembly.
[0025] The light source assembly includes a heat sink 33, an LED chip 34, and a lens assembly 35. The slider 31 is an integral part of the heat sink 33. The heat sink 33, LED chip 34, and lens assembly 35 are sequentially and fixedly connected, allowing them to slide up and down within the lamp holder 3 as a single unit. The heat sink 33, LED chip 34, and lens assembly 35 are conventional structures. Specifically, the lens assembly 35 is fixedly connected to the heat sink 33, and the heat sink 33 and slider 31 are an integral part of the assembly. It can be understood that the light source assembly is integrally disposed within the lamp holder 3 and can slide up and down along it. When the height of the lamp holder 3 is suitable, the user can directly push the lens assembly 35 to trigger the trigger switch 4 via the slider 31, thereby controlling the opening and closing of the light source assembly.
[0026] Of course, if the ceiling height is high, the light source component can be tested for mains power first, and then the ceiling plate 1 can be installed on the ceiling. After that, the user can press and hold the trigger switch 4 through the lens component 35 to start the matching mode of the remote control component, so that the remote control component can be matched with the remote control or smart terminal.
[0027] The remote control assembly also includes a function board 43, which is fixedly mounted on the function board housing 41. A trigger switch 4 is fixedly mounted on the function board 43. The function board 43 is connected to the conductive rail 2 and the LED chip 34 via wiring. Preferably, the function board 43 integrates a Bluetooth module and a Bluetooth antenna. The Bluetooth antenna can be mounted on the conductive rail 2. The control range of the Bluetooth module can cover most indoor spaces, meeting the needs of remote control and enabling remote control of the light source assembly.
[0028] Two conductive plates 22 are inserted inside the conductive rail 2, and the two conductive plates 22 are spaced apart from each other. Two insulating blocks 21 are provided at the lower end of the conductive rail 2, and the two insulating blocks 21 fill the spaces between the corresponding conductive plates 22 and the conductive rail 2. Two contact springs 44 are provided on the outer shell 41 of the functional board, and the two contact springs 44 respectively contact the positive and negative terminals of the conductive plates 22, and the two contact springs 44 are connected to the functional board 43 through wiring. The two conductive plates 22 inside the conductive rail 2 correspond to the positive and negative terminals of the power output, and are parallel and spaced apart within the conductive rail 2. Openings are provided on both sides of the conductive rail 2, allowing the use of corresponding connectors to install other electrical appliances or lighting fixtures on the conductive rail 2.
[0029] The insulating block 21 can fill the gaps in the conductive rail 2 to fix the lower end of the conductive sheet 22 and prevent dust and debris from falling into the conductive rail 2 and causing a short circuit. Furthermore, one of the insulating blocks 21 is equipped with a Bluetooth antenna, which is connected to the function board 43 via wiring.
[0030] A threaded sleeve 23 is provided between the conductive rail 2 and the lamp tube 3, and the threaded sleeve 23 is threadedly connected to the conductive rail 2 and the lamp tube 3 respectively; the upper end of the threaded sleeve 23 touches the functional plate housing 41, thereby fixing it in place inside the conductive rail 2. Both the conductive rail 2 and the lamp tube 3 adopt a cylindrical structure, and the conductive rail 2 and the lamp tube 3 can be paired and connected by the threaded sleeve 23, while the functional plate housing 41 is fixedly placed in the lower port of the conductive rail 2.
[0031] The ceiling plate 1 is equipped with a terminal block 12, and the upper end of the conductive rail 2 is equipped with a wire lock 25. A wire 11 is provided between the ceiling plate 1 and the conductive rail 2, and the upper end of the wire 11 is connected to the terminal block 12. The upper end of the conductive rail is equipped with an adapter plate 24, and the upper end of the conductive sheet 22 is connected to the adapter plate 24. The lower end of the wire 11 passes through the wire lock 25 and is connected to the adapter plate 24. The ceiling plate 1 is equipped with multiple terminal blocks 12, and the wire 11 acts as a conductor to electrically connect the terminal blocks 12 to the adapter plate 24. The height of the wire 11 can be arbitrarily set, making the installation position of the conductive rail 2 and the light source assembly more flexible.
[0032] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A pendant light with a suspended guide rail, comprising a ceiling plate (1) and a plurality of conductive guide rails (2), wherein the upper end of the conductive guide rails (2) is connected to the ceiling plate (1), characterized in that: The lower port of the conductive rail (2) is provided with a remote control component. The lower end of the conductive rail (2) is connected to a lamp tube (3). The lamp tube (3) is provided with a light source component that can move up and down along it. The remote control component is provided with a trigger switch (4). The trigger switch (4) is paired with the light source component. The remote control component is connected to the trigger switch (4), the light source component and the conductive rail (2) through a line.
2. A pendant track pendant according to claim 1, characterized in that: The remote control assembly includes a function board housing (41), which is located inside the lower port of the conductive rail (2). The function board housing (41) is provided with a slide rail (42). The light source assembly is provided with a slider (31), which is provided with a vertical slide groove (32). The vertical slide groove (32) is connected to the slide rail (42) so that the light source assembly can slide up and down inside the lamp tube (3). The trigger switch (4) is fixedly installed on the function board housing (41) and is paired with the slider (31).
3. A pendant track pendant according to claim 2, characterized in that: The light source assembly includes a heat sink (33), an LED chip (34), and a lens assembly (35). The slider (31) and the heat sink (33) are an integral structure. The heat sink (33), the LED chip (34), and the lens assembly (35) are fixedly connected in sequence so that they can slide up and down in the lamp tube (3) as a whole.
4. The pendant light with a suspended guide rail according to claim 2, characterized in that: The remote control assembly also includes a function board (43), which is fixedly mounted on the function board housing (41). A trigger switch (4) is fixedly mounted on the function board (43). The function board (43) is connected to the conductive rail (2) and the LED chip (34) respectively through circuits.
5. A pendant track downlight according to claim 4, characterised in that: Two conductive plates (22) are inserted inside the conductive rail (2), and the two conductive plates (22) are spaced apart from each other; two insulating blocks (21) are provided in the lower port of the conductive rail (2), and the two insulating blocks (21) are respectively filled between the corresponding conductive plates (22) and the conductive rail (2); two electrical contact springs (44) are provided on the outer shell (41) of the functional board, and the two electrical contact springs (44) respectively contact the positive and negative poles of the conductive plates (22), and the two electrical contact springs (44) are connected to the functional board (43) through the circuit.
6. A suspension rail pendant lamp according to claim 5, characterized in that: One of the insulating blocks (21) is equipped with a Bluetooth antenna, which is connected to the function board (43) via a circuit.
7. A suspension rail pendant lamp according to claim 5, characterized in that: A threaded sleeve (23) is provided between the conductive rail (2) and the lamp tube (3), and the threaded sleeve (23) is threadedly connected to the conductive rail (2) and the lamp tube (3) respectively; the upper end of the threaded sleeve (23) touches the outer shell (41) of the functional plate so that it is fixedly installed in the conductive rail (2).
8. The pendant rail pendant of claim 1, wherein: The ceiling plate (1) is provided with a terminal block (12), and the upper end of the conductive rail (2) is provided with a wire locker (25); a wire (11) is provided between the ceiling plate (1) and the conductive rail (2), and the upper end of the wire (11) is connected to the terminal block (12); the upper end of the conductive rail is provided with an adapter plate (24), the upper end of the conductive sheet (22) is connected to the adapter plate (24), and the lower end of the wire (11) passes through the wire locker (25) and is connected to the adapter plate (24).