A vertical LED plug-in tube
Patent Information
- Application Number
- CN202521545583.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-22
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-07-22
AI Technical Summary
[0006]鉴于上述现有技术的不足之处,本实用新型的目的在于提供一种垂直型LED插拔管,解决了传统玻璃管插拔管色温等参数固定的问题,提高了LED插拔管的使用灵活性和经济性
[0019]本实用新型提供了一种垂直型LED插拔管,具有结构紧凑的优点,调节按钮与驱动装置、发光件的电连接设计,允许用户直接通过按钮调整发光件的色温、亮度等工作参数,解决了传统玻璃管插拔管色温等参数固定的问题,无需更换灯具即可满足不同场景需求,提高了LED插拔管的使用灵活性和经济性。
Smart Images

Figure CN224706847U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting fixtures, and in particular to a vertical LED plug-in tube. Background Technology
[0002] In the modern lighting field, glass tube pluggable tubes, as a traditional lighting product, are widely used in indoor and outdoor decorative lighting, advertising light boxes, stage lighting, and other scenarios. This product mainly consists of a glass tube and a corresponding pluggable structure. Its light-emitting principle is that the built-in light source excites the phosphor inside the glass tube, thereby producing an illumination effect. However, traditional glass tube pluggable tubes have some inherent drawbacks:
[0003] First, due to the brittleness of glass, glass tubes are easily broken when subjected to external impact or drops, which not only increases the risk of product damage but also poses a potential threat to the safety of users. In addition, cleaning up glass shards is both tedious and environmentally unfriendly, increasing maintenance costs.
[0004] Secondly, the color temperature of traditional glass tube pluggable tubes is usually fixed and cannot be adjusted according to different usage environments or user needs. This means that when users need different color temperature lighting effects, they must replace the glass tubes with different color temperatures, which not only increases costs but also reduces the flexibility of use.
[0005] It is evident that existing technologies still need improvement and enhancement. Utility Model Content
[0006] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a vertical LED plug-in tube, which solves the problem of fixed parameters such as color temperature of traditional glass tube plug-in tubes, and improves the flexibility and economy of LED plug-in tubes.
[0007] To achieve the above objectives, the present invention adopts the following technical solution:
[0008] A vertical LED plug-in tube includes a lampshade, a lamp body, a light-emitting element, an adjustment button, and a driving device; the light-emitting element and the driving device are respectively disposed in the lamp body, the adjustment button and the light-emitting element are respectively electrically connected to the driving device, and the adjustment button is used to adjust the working parameters of the light-emitting element; the lampshade is disposed at one end of the lamp body and is located on the light-emitting side of the light-emitting element.
[0009] In the vertical LED plug-in tube, the light-emitting element includes a lamp board and a heat sink. The heat sink is fixed inside the lamp cover. The backlight side of the lamp board is fixedly connected to the heat sink, and the light-emitting side of the lamp board faces the lamp cover.
[0010] In the vertical LED plug-in tube, a plurality of first slots are provided on the outer periphery of the lamp cover, and a plurality of first blocks are correspondingly provided on the inner side of one end of the lamp body. The first blocks are connected to the first slots.
[0011] In the vertical LED plug-in tube, the outer periphery of the lamp cover is provided with several first positioning grooves, the outer periphery of the heat sink is provided with several second positioning grooves, and the lamp body is provided with several positioning posts, which are connected to the first positioning grooves and the second positioning grooves.
[0012] In the vertical LED plug-in tube, the heat sink has a connecting groove, and the lamp board is electrically connected to the driving device through the connecting groove.
[0013] In the vertical LED plug-in tube, the adjustment button includes a push button and an adjustment switch. The adjustment switch is located inside the lamp body and is electrically connected to the driving device. A through slot is provided on the lamp body. The push button is located on the outside of the lamp body and is connected to the adjustment switch through the through slot. An adjustment groove is provided at the bottom of the adjustment button, and the adjustment switch is connected to the adjustment groove.
[0014] In the vertical LED plug-in tube, guide blocks are respectively provided on both sides of the bottom of the push button, and the guide blocks abut against the inner wall of the lamp body.
[0015] The vertical LED plug-in tube further includes a lamp holder and a conductive component. The conductive component is fixed to the lamp holder and is electrically connected to the driving device. The lamp holder is detachably connected to the other end of the lamp body.
[0016] In the vertical LED plug-in tube, the inner sidewall of the other end of the lamp body is provided with a number of second locking blocks, and the outer sidewall of the lamp head is provided with a number of second locking slots, and the second locking blocks are connected to the second locking slots.
[0017] In the vertical LED plug-in tube, the lamp body is made of thermally conductive nylon material or polybutylene terephthalate plastic; the lamp shade is made of polycarbonate with high light transmittance.
[0018] Beneficial effects:
[0019] This invention provides a vertical LED pluggable tube with a compact structure. The electrical connection design between the adjustment button, the driving device, and the light-emitting element allows users to directly adjust the operating parameters such as the color temperature and brightness of the light-emitting element via the button. This solves the problem of fixed parameters such as color temperature in traditional glass tube pluggable tubes. It can meet the needs of different scenarios without replacing the lamp, thus improving the flexibility and economy of using LED pluggable tubes. Attached Figure Description
[0020] Figure 1 A schematic diagram of the structure of the vertical LED plug-in tube provided by this utility model;
[0021] Figure 2 Exploded view of the vertical LED plug-in tube provided by this utility model;
[0022] Figure 3 Exploded view of the lamp body, lamp head, and push button provided for this utility model.
[0023] Explanation of main component symbols: 1-Lamp cover, 11-First slot, 12-First positioning slot, 2-Lamp body, 21-First locking block, 22-Positioning post, 23-Through slot, 24-Second locking block, 31-Lamp board, 32-Heat sink, 321-Second positioning slot, 322-Connecting slot, 41-Push button, 411-Guide block, 42-Adjustment switch, 5-Drive device, 61-Lamp head, 611-Second slot, 62-Conductive component. Detailed Implementation
[0024] This utility model provides a vertical LED plug-in tube. To make the purpose, technical solution and effect of this utility model clearer and more explicit, the following describes this utility model in further detail with reference to the accompanying drawings and embodiments.
[0025] In the description of this utility model, it should be understood that the terms "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and should not be construed as limiting this utility model; in addition, the terms "installation", "connection", etc. should be interpreted broadly, and those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0026] Please see Figures 1 to 3 This utility model provides a vertical LED plug-in tube, including a lampshade 1, a lamp body 2, a light-emitting element, an adjustment button, and a driving device 5; the light-emitting element and the driving device 5 are respectively disposed in the lamp body 2, the adjustment button and the light-emitting element are respectively electrically connected to the driving device 5, and the adjustment button is used to adjust the working parameters of the light-emitting element; the lampshade 1 is disposed at one end of the lamp body 2 and is located on the light-emitting side of the light-emitting element.
[0027] This utility model discloses a vertical LED pluggable tube, which has the advantage of compact structure. Specifically, the light-emitting element and the driving device 5 are both fixedly installed inside the lamp body 2. The two are electrically connected to the driving device 5 through wires to ensure that the driving device 5 can supply power to the light-emitting element and control its working state. The lamp cover 1 is installed on the end of the lamp body 2 where the light-emitting element is located and covers the light-emitting side of the light-emitting element, forming an encapsulation of the light-emitting element and a light output channel. The electrical connection design between the adjustment button and the driving device 5 and the light-emitting element allows users to directly adjust the working parameters such as color temperature and brightness of the light-emitting element through the button. This solves the problem of fixed parameters such as color temperature of traditional glass tube pluggable tubes. It can meet the needs of different scenarios without replacing the lamp, improving the flexibility and economy of using LED pluggable tubes.
[0028] Further, please refer to Figure 2 The light-emitting element includes a lamp plate 31 and a heat sink 32. The heat sink 32 is fixed inside the lamp cover 1. The backlight side of the lamp plate 31 is fixedly connected to the heat sink 32, and the light-emitting side of the lamp plate 31 faces the lamp cover 1.
[0029] In this embodiment, the backlight side of the lamp board 31 is tightly connected to the heat sink 32 by means of screw fixing or thermal adhesive bonding. As the light-emitting core, the heat generated by the backlight side of the lamp board 31 is transferred to the heat sink 32 through the fixed connection with the heat sink 32. The heat sink 32 then dissipates the heat to the surrounding environment, effectively solving the heat dissipation problem when the LED plug-in tube is working, extending the service life of the lamp board 31, and ensuring the long-term stable operation of the LED plug-in tube. Furthermore, the tight connection between the lamp board 31 and the heat sink 32 avoids the problem of reduced luminous efficiency caused by heat accumulation, and improves the stability of the lighting effect. The light-emitting side of the lamp board 31 faces the lamp cover 1, ensuring that the light can pass smoothly through the lamp cover 1 for output.
[0030] Further, please refer to Figure 2 The lampshade 1 has several first slots 11 on its outer periphery, and the lamp body 2 has several first blocks 21 on its inner side at one end. The first blocks 21 are connected to the first slots 11.
[0031] In this embodiment, the first locking block 21 is integrally formed with the lamp body 2. Four first locking slots 11 are evenly arranged on the outer periphery of the lamp cover 1, and four first locking blocks 21 are correspondingly arranged on the inner side of one end of the lamp body 2. During actual installation, the first locking blocks 21 on the lamp body 2 are aligned with the first locking slots 11 on the lamp cover 1, and the first locking blocks 21 are engaged into the first locking slots 11 by rotating or pressing. The cooperation between the locking slots and the locking blocks enables the lamp cover 1 and the lamp body 2 to be quickly assembled and fixed, ensuring that the lamp cover 1 is accurately and stably installed on the lamp body 2. The snap-fit connection method facilitates the installation and disassembly of the lamp cover 1, and facilitates the maintenance and replacement of internal components such as the lamp board 31 in the later stage. Compared with traditional threaded connections, the assembly efficiency is higher, and the connection structure is more stable and can withstand a certain amount of external impact, reducing the risk of the lamp cover 1 loosening during use.
[0032] Further, please refer to Figure 2 The lampshade 1 has several first positioning grooves 12 on its outer periphery, the heat sink 32 has several second positioning grooves 321 on its outer periphery, and the lamp body 2 has several positioning posts 22 inside, which are connected to the first positioning grooves 12 and the second positioning grooves 321.
[0033] In this embodiment, the positioning post 22 is integrally formed with the lamp body 2. Three first positioning grooves 12 are evenly provided on the outer periphery of the lampshade 1, and three second positioning grooves 321 are evenly provided on the outer periphery of the heat sink 32. Three positioning posts 22 are correspondingly provided on the inner side of one end of the lamp body 2. Through the precise cooperation between the positioning post 22 and the first positioning grooves 12 and the second positioning grooves 321, the precise positioning of the lampshade 1 and the heat sink 32 in the lamp body 2 is achieved, ensuring the accuracy of the relative positions between the components. This effectively avoids problems such as abnormal light output or poor heat dissipation caused by installation deviations, and restricts the radial and circumferential movement of the lampshade 1 and the heat sink 32 in the lamp body 2. In addition, this positioning structure can also assist in the assembly of snap-fit connections, thereby improving assembly efficiency.
[0034] Further, please refer to Figure 2 The heat sink 32 has a connecting groove 322, and the lamp board 31 is electrically connected to the driving device 5 through the connecting groove 322.
[0035] In this embodiment, a connecting groove 322 is provided on the heat sink 32 to provide a channel and protection for the wire connection between the lamp board 31 and the driving device 5, so as to avoid the wire being exposed to the external environment and be damaged, extend the service life of the circuit, and reduce the failure rate caused by wire damage. At the same time, the connecting groove 322 guides and fixes the wire, making the internal circuit layout more regular, and preventing the wire from falling off or being worn due to vibration or other reasons during use, which facilitates production assembly and subsequent inspection and maintenance.
[0036] Further, please refer to Figure 2 The adjustment button includes a push button 41 and an adjustment switch 42. The adjustment switch 42 is located inside the lamp body 2 and is electrically connected to the driving device 5. A through groove 23 is provided on the lamp body 2. The push button 41 is located on the outside of the lamp body 2 and is connected to the adjustment switch 42 through the through groove 23. An adjustment slot is provided at the bottom of the adjustment button, and the adjustment switch 42 is connected to the adjustment slot.
[0037] In this embodiment, the push button 41 is located on the outside of the lamp body 2 for easy user operation. The adjustment switch 42 is electrically connected to the drive device 5 inside the lamp body 2 to achieve functional control. The mechanical connection between the two is achieved through the through groove 23, so that the user's operation of the push button 41 can be transmitted to the adjustment switch 42, thereby controlling the drive device 5 to adjust the parameters of the light-emitting element. The setting of the adjustment groove ensures that the adjustment switch 42 and the push button 41 are precisely matched, achieving precise docking and force transmission between the two, ensuring the reliability of operation, and making the parameter adjustment more accurate.
[0038] Further, please refer to Figure 3 Guide blocks 411 are provided on both sides of the bottom of the push button 41, and the guide blocks 411 abut against the inner wall of the lamp body 2.
[0039] In this embodiment, the guide block 411 is integrally formed with the push button 41; guide blocks 411 are provided on both sides of the bottom of the adjustment button, and the guide blocks 411 abut against the inner wall of the lamp body 2; when the push button 41 is operated, the guide blocks 411 slide along the inner wall of the lamp body 2, making the movement of the adjustment button more stable and smooth, avoiding the jamming phenomenon during operation. At the same time, the limiting function prevents the adjustment button from failing to cooperate with the adjustment switch 42 due to offset, ensuring the reliable realization of the adjustment function and improving the user operation experience.
[0040] Further, please refer to Figure 2 The vertical LED plug-in tube also includes a lamp head 61 and a conductive element 62. The conductive element 62 is fixed on the lamp head 61 and is electrically connected to the driving device 5. The lamp head 61 is detachably connected to the other end of the lamp body 2.
[0041] In this embodiment, the LED plug-in tube can be connected to an external power source by the lamp holder 61 and the conductive component 62. The conductive component 62 transmits the electrical energy from the external power source to the driving device 5 to power the entire LED plug-in tube, thus meeting the power supply requirements of the LED plug-in tube. The detachable connection between the lamp holder 61 and the lamp body 2 facilitates maintenance and replacement when the lamp holder 61 is damaged or needs to be replaced with a different type of lamp holder 61, reducing maintenance costs. It also makes it easy to replace the appropriate type of lamp holder 61 according to different usage scenarios.
[0042] Further, please refer to Figure 2 and Figure 3 The inner sidewall of the other end of the lamp body 2 is provided with a plurality of second locking blocks 24, and the outer sidewall of the lamp head 61 is provided with a plurality of second locking slots 611, and the second locking blocks 24 are connected to the second locking slots 611.
[0043] In this embodiment, the second locking block 24 is integrally formed with the lamp body 2. A second locking block 24 is respectively provided on the inner walls of both sides of the other end of the lamp body 2, and two second locking slots 611 are correspondingly provided on the outer wall of the lamp head 61. During actual installation, the lamp head 61 and the lamp body 2 are connected by a snap-fit mechanism using the second locking block 24 and the second locking slots 611. The second locking slots 611 on the lamp head 61 are aligned with the second locking blocks 24 on the lamp body 2, and the second locking block 24 is engaged into the second locking slots 611 by rotation or pressing. The cooperation between the second locking block 24 and the second locking slots 611 enables rapid assembly and fixation of the lamp head 61 and the lamp body 2, improving production and maintenance efficiency. Furthermore, the connection structure is stable, ensuring the relative position of the lamp head 61 and the lamp body 2 remains stable during insertion and removal, preventing power outages or lighting malfunctions due to poor contact.
[0044] Preferably, the lamp body 2 is made of thermally conductive nylon material or polybutylene terephthalate plastic; the lamp shade 1 is made of polycarbonate with high light transmittance.
[0045] In this embodiment, specific materials are used for the lamp body 2 and the lamp cover 1. Thermally conductive nylon or polybutylene terephthalate plastic has good mechanical strength and certain thermal conductivity, making it suitable for manufacturing the lamp body 2. This protects the internal components, aids in heat dissipation, and extends the lifespan of the LED plug-in tube. The lamp cover 1 is made of high-transmittance polycarbonate material, which minimizes light loss and ensures lighting effect. At the same time, polycarbonate material has good impact resistance, solving the problem of the fragility of traditional glass lamp covers 1, improving the safety and reliability of the LED plug-in tube during use, and reducing maintenance costs.
[0046] It is understood that those skilled in the art can make equivalent substitutions or changes based on the technical solution and inventive concept of this utility model, and all such substitutions or changes should fall within the protection scope of this utility model.
Claims
1. A vertical LED plug-in tube, characterized in that, The lamp includes a lampshade, a lamp body, a light-emitting element, an adjustment button, and a driving device; the light-emitting element and the driving device are respectively disposed in the lamp body, the adjustment button and the light-emitting element are respectively electrically connected to the driving device, and the adjustment button is used to adjust the working parameters of the light-emitting element; the lampshade is disposed at one end of the lamp body and is located on the light-emitting side of the light-emitting element.
2. The vertical LED plug-in tube according to claim 1, characterized in that, The light-emitting element includes a lamp panel and a heat sink. The heat sink is fixed inside the lamp cover. The backlight side of the lamp panel is fixedly connected to the heat sink, and the light-emitting side of the lamp panel faces the lamp cover.
3. A vertical LED plug-in tube according to claim 2, characterized in that, The outer periphery of the lampshade is provided with several first slots, and the inner side of one end of the lamp body is provided with several first blocks, which are connected to the first slots.
4. A vertical LED plug-in tube according to claim 2, characterized in that, The lampshade has several first positioning grooves on its outer periphery, the heat sink has several second positioning grooves on its outer periphery, and the lamp body has several positioning posts, which are connected to the first positioning grooves and the second positioning grooves.
5. A vertical LED plug-in tube according to claim 2, characterized in that, The heat sink has a connecting slot, and the lamp board is electrically connected to the driving device through the connecting slot.
6. A vertical LED plug-in tube according to claim 1, characterized in that, The adjustment button includes a push button and an adjustment switch. The adjustment switch is located inside the lamp body and is electrically connected to the driving device. A through groove is provided on the lamp body. The push button is located on the outside of the lamp body and is connected to the adjustment switch through the through groove. An adjustment slot is provided at the bottom of the adjustment button, and the adjustment switch is connected to the adjustment slot.
7. A vertical LED plug-in tube according to claim 6, characterized in that, Guide blocks are provided on both sides of the bottom of the push button, and the guide blocks abut against the inner wall of the lamp body.
8. A vertical LED plug-in tube according to claim 1, characterized in that, It also includes a lamp holder and a conductive component, the conductive component being fixed to the lamp holder and electrically connected to the driving device; the lamp holder is detachably connected to the other end of the lamp body.
9. A vertical LED plug-in tube according to claim 8, characterized in that, The inner wall of the other end of the lamp body is provided with a number of second locking blocks, and the outer wall of the lamp head is provided with a number of second locking slots. The second locking blocks are connected to the second locking slots.
10. A vertical LED plug-in tube according to claim 1, characterized in that, The lamp body is made of thermally conductive nylon material or polybutylene terephthalate plastic; the lampshade is made of polycarbonate with high light transmittance.