A flying saucer lamp of quick installation
Patent Information
- Application Number
- CN202522391851.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-11
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-11
AI Technical Summary
[0003]传统飞碟灯在安装时需要使用工具进行螺钉拧紧或卡环锁固,安装步骤繁琐,不仅耗时较长,而且在高空操作时存在一定的安全隐患
[0016]本实用新型主要具有以下有益效果:本实用新型通过灯座与灯头之间的滑动卡合结构设计,实现了快速安装和稳固连接,用户只需将灯头的对接卡部对准灯座的对接卡位轻推即可完成装配,无需使用螺丝或工具,操作简便,大幅提升安装效率。通过在对接卡位与对接卡部的两侧设置的定位卡槽与定位卡条的导向配合,使灯头在滑入过程中能够实现准确定位,防止安装偏移或晃动,保证装配的稳定性与精确度。通过灯座内设置的导电子接头与灯头内的导电母接头之间的插接导通结构,实现了灯座与灯头之间的可靠电连接。灯座的上表面设有若干灯座散热部,若干灯座散热部之间以环形阵列方式均匀分布,每个灯座散热部由若干沿径向间隔设置的散热凸条组成,相邻的散热凸条之间形成散热间隙,有利于空气流通与热量散发,从而有效提升整体散热性能,延长光源灯板的使用寿命。
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Figure CN224801525U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of UFO light technology, specifically relating to a quick-installation UFO light. Background Technology
[0002] Currently, UFO lights, as aesthetically pleasing and providing uniform illumination, are widely used in homes, shopping malls, conference rooms, and public places. Existing UFO light structures typically consist of a lamp holder and a lamp head, which are fixed together using screws, clips, or screw clips. While this structure enables basic connection and use, some shortcomings still exist in actual assembly and maintenance.
[0003] Traditional UFO lights require tools to tighten screws or lock them in place during installation, making the process cumbersome, time-consuming, and posing safety hazards when operating at heights. Disassembling the lamp head and socket is also difficult; replacing the light source or performing electrical maintenance often requires complete disassembly, further complicating the process.
[0004] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content
[0005] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a quick-installation flying saucer light to solve the technical problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a quick-installation UFO-shaped lamp, comprising a lamp holder and a lamp head. The upper part of the lamp holder is provided with a docking slot, and the lower end of the lamp head is provided with a docking part. The front end of the docking slot is provided with a connecting groove, and the front end of the docking part is provided with a connecting buckle. The docking part is slidably connected in the docking slot. When the docking part slides into place, the connecting buckle and the connecting groove are engaged and fixed, thereby realizing the connection between the lamp head and the lamp holder.
[0007] Furthermore, the lower two sides of the docking slot are symmetrically provided with positioning slots, and the lower two sides of the docking slot are symmetrically provided with positioning strips. The positioning strips are slidably connected in the positioning slots to achieve positioning connection between the lamp head and the lamp holder.
[0008] Furthermore, the lower end of the lamp holder is recessed with a lamp plate mounting groove, and the inner surface of the mating slot has a wire through hole, so that the lamp plate mounting groove and the mating slot are connected.
[0009] Furthermore, a light source board is installed in the mounting slot of the light panel, and a conductive electronic connector is electrically connected to the middle of the light source board. The conductive electronic connector extends upward through the wire through-hole.
[0010] Furthermore, the upper end of the lamp holder is connected to a conductive part, and the internal part of the conductive part is electrically connected to a conductive female connector that is compatible with the conductive electronic connector. The conductive electronic connector and the conductive female connector are plugged into each other for electrical conduction.
[0011] Furthermore, the end of the docking slot is provided with a docking opening, the size of which is larger than the size of the docking part, and the docking part is slidably connected to the docking slot through the docking opening.
[0012] Furthermore, the upper surface of the lamp holder is provided with several lamp holder heat dissipation parts, which are evenly distributed on the upper surface of the lamp holder in a ring array.
[0013] Furthermore, each of the heat dissipation parts of the lamp holder is composed of several heat dissipation protrusions arranged at intervals in sequence. The heat dissipation protrusions extend along the radial direction of the lamp holder, and there are intervals between each adjacent heat dissipation protrusion to form multiple heat dissipation gaps.
[0014] Furthermore, the size of the docking slot is larger than the size of the docking part.
[0015] Furthermore, the size of the positioning slot is larger than the size of the positioning strip.
[0016] This utility model has the following advantages: Through the sliding engagement structure design between the lamp holder and the lamp head, it achieves rapid installation and a stable connection. Users only need to align the lamp head's mating part with the lamp holder's mating position and gently push to complete the assembly, without the need for screws or tools, making operation simple and significantly improving installation efficiency. The positioning grooves and positioning strips on both sides of the mating position and mating part guide the lamp head to achieve accurate positioning during sliding, preventing installation misalignment or shaking, and ensuring assembly stability and accuracy. The plug-in conductive structure between the conductive electronic connector in the lamp holder and the conductive female connector in the lamp head achieves a reliable electrical connection between the lamp holder and the lamp head. The upper surface of the lamp holder has several heat dissipation sections, evenly distributed in a ring array. Each heat dissipation section consists of several radially spaced heat dissipation protrusions, forming heat dissipation gaps between adjacent protrusions, which facilitate air circulation and heat dissipation, thereby effectively improving overall heat dissipation performance and extending the lifespan of the light source board. 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 schematic diagram of the internal structure of the lamp holder of this utility model.
[0019] Figure 3 This is a schematic diagram of the upper structure of the lamp holder of this utility model.
[0020] Figure 4 This is a schematic diagram of the lower structure of the lamp holder of this utility model.
[0021] Figure 5 This is a schematic diagram of the docking slot structure of this utility model.
[0022] Figure 6 This is a schematic diagram of the lamp holder structure of this utility model.
[0023] Reference numerals: Lamp holder 10; Lamp head 20; Connecting slot 11; Connecting part 21; Connecting groove 111; Connecting buckle 211; Positioning groove 112; Positioning strip 212; Lamp board mounting groove 12; Wire through hole 113; Light source board 13; Conductive connector 14; Lamp head conductive part 22; Conductive female connector 23; Connecting opening 114; Lamp holder heat dissipation part 15; Heat dissipation protrusion 151; Heat dissipation gap 152. Detailed Implementation
[0024] like Figures 1 to 6 As shown, a quick-installation UFO-shaped lamp includes a lamp holder 10 and a lamp head 20. The lamp holder 10 has a mating slot 11 at its upper center, and the lamp head 20 has a mating part 21 at its lower end. The mating slot 11 is larger than the mating part 21. The inner front end of the mating slot 11 has a connecting groove 111, and the outer front end of the mating part 21 has a connecting buckle 211 that matches the connecting groove 111. During installation, the mating part 21 slides vertically into the mating slot 11. Once the mating part 21 is in place, the connecting buckle 211 engages with the connecting groove 111, thus achieving quick assembly and stable connection between the lamp head 20 and the lamp holder 10. In use, the user simply aligns the mating part 21 of the lamp head 20 with the mating slot 11 of the lamp holder 10 and gently pushes to complete the engagement and installation, making installation convenient and quick.
[0025] In practical implementation, the lower two sides of the docking slot 11 are symmetrically provided with positioning slots 112, and the lower two sides of the docking part 21 are symmetrically provided with positioning strips 212. The size of the positioning slot 112 is larger than the size of the positioning strip 212. When the docking part 21 is slidably connected in the docking slot 11, the two positioning strips 212 are correspondingly slidably connected in the two positioning slots 112 for positioning connection, realizing the positioning connection between the lamp head 20 and the lamp holder 10. Through the cooperation of the positioning slots 112 and the positioning strips 212, the lamp head 20 can maintain an accurate guiding position during the process of sliding into the lamp holder 10, preventing the lamp head from shaking or shifting during installation, and further improving the smoothness and assembly accuracy of the engagement.
[0026] In practical implementation, the lower end of the lamp holder 10 is recessed with a lamp plate mounting groove 12, and the inner surface of the mating slot 11 has a wire-passing opening 113, so that the lamp plate mounting groove 12 and the mating slot 11 are connected. A light source lamp plate 13 is installed in the lamp plate mounting groove 12 to provide a lighting source. A conductive electronic connector 14 is electrically connected to the middle of the light source lamp plate 13. The conductive electronic connector 14 extends upward through the wire-passing opening 113 into the interior of the mating slot 11 to realize the electrical conductive connection between the lamp holder 10 and the lamp head 20.
[0027] In practical implementation, the upper end of the lamp holder 20 is connected to a lamp holder conductive part 22, and the interior of the lamp holder conductive part 22 is electrically connected to a conductive female connector 23 that is compatible with the conductive electronic connector 14. The conductive electronic connector 14 and the conductive female connector 23 are plugged into each other to conduct electricity, thereby realizing the electrical connection between the lamp holder 10 and the lamp holder 20.
[0028] In practical implementation, the end of the docking slot 11 is provided with a docking opening 114. The size of the docking opening 114 is larger than the size of the docking part 21. During installation, the docking part 211 is slidably connected to the docking slot 11 through the docking opening 114. By setting the docking opening 114, the docking part 21 of the lamp holder 20 can be smoothly inserted into the docking slot 11 of the lamp holder 10 in the initial stage of installation, realizing the assembly guidance and alignment function, and facilitating users to perform quick installation operations.
[0029] In practical implementation, the upper surface of the lamp holder 10 is provided with a plurality of lamp holder heat dissipation parts 15. These lamp holder heat dissipation parts 15 are evenly distributed on the upper surface of the lamp holder 10 in a circular array. Each of the lamp holder heat dissipation parts 15 is composed of a plurality of heat dissipation protrusions 151 arranged sequentially at intervals. The heat dissipation protrusions 151 extend radially along the lamp holder 10, and adjacent heat dissipation protrusions 151 are spaced apart to form multiple heat dissipation gaps 152. Through this circularly arranged heat dissipation structure, the overall heat dissipation area of the lamp holder 10 is significantly increased, and air can circulate between the multiple heat dissipation protrusions 151, thereby effectively carrying away the heat generated by the light source panel 13 during operation and improving heat dissipation efficiency.
[0030] In summary, this utility model achieves rapid installation and stable connection through the sliding engagement structure between the lamp holder 10 and the lamp head 20. Users only need to align the mating part 21 of the lamp head 20 with the mating slot 11 of the lamp holder 10 and gently push to complete the assembly, without the need for screws or tools. This simplifies operation and significantly improves installation efficiency. The positioning grooves 112 and positioning strips 212 on both sides of the mating slot 11 and mating part 21 guide the lamp head 20 during sliding, ensuring accurate positioning and preventing installation misalignment or shaking, thus guaranteeing assembly stability and precision. The plug-in conductive structure between the conductive electronic connector 14 inside the lamp holder 10 and the conductive female connector 23 inside the lamp head 20 ensures a reliable electrical connection between the lamp holder 10 and the lamp head 20. The upper surface of the lamp holder 10 is provided with several lamp holder heat dissipation parts 15. The several lamp holder heat dissipation parts 15 are evenly distributed in a ring array. Each lamp holder heat dissipation part 15 is composed of several heat dissipation protrusions 151 arranged radially at intervals. A heat dissipation gap 152 is formed between adjacent heat dissipation protrusions 151, which is conducive to air circulation and heat dissipation, thereby effectively improving the overall heat dissipation performance and extending the service life of the light source lamp board 13.
Claims
1. A quick-installation flying saucer light, characterized in that, It includes a lamp holder (10) and a lamp head (20). The upper part of the lamp holder (10) is provided with a docking slot (11), and the lower end of the lamp head (20) is provided with a docking slot (21). The front end of the docking slot (11) is provided with a connecting groove (111), and the front end of the docking slot (21) is provided with a connecting buckle (211). The docking slot (21) is slidably connected in the docking slot (11). When the docking slot (21) slides into place, the connecting buckle (211) and the connecting groove (111) are fastened and fixed, thereby realizing the connection between the lamp head (20) and the lamp holder (10).
2. The quick-installation flying saucer light according to claim 1, characterized in that, The lower sides of the docking slot (11) are symmetrically provided with positioning slots (112), and the lower sides of the docking part (21) are symmetrically provided with positioning strips (212). The positioning strips (212) are slidably connected in the positioning slots (112) to achieve positioning connection between the lamp head (20) and the lamp holder (10).
3. The quick-installation flying saucer light according to claim 1, characterized in that, The lower end of the lamp holder (10) is recessed with a lamp plate mounting groove (12), and the inner surface of the docking slot (11) is provided with a wire through hole (113) so that the lamp plate mounting groove (12) and the docking slot (11) are connected.
4. The quick-installation flying saucer light according to claim 3, characterized in that, The light source plate (13) is installed in the light plate mounting groove (12). The light source plate (13) is electrically connected to a conductive connector (14) in the middle. The conductive connector (14) extends upward through the wire through hole (113).
5. The quick-installation flying saucer light according to claim 4, characterized in that, The upper end of the lamp holder (20) is connected to a lamp holder conductive part (22), and the interior of the lamp holder conductive part (22) is electrically connected to a conductive female connector (23) that is compatible with the conductive sub-connector (14). The conductive sub-connector (14) and the conductive female connector (23) are plugged into each other for electrical conduction.
6. The quick-installation flying saucer light according to claim 1, characterized in that, The end of the docking slot (11) is provided with a docking opening (114), the size of which is larger than the size of the docking part (21), and the docking part (21) is slidably connected in the docking slot (11) through the docking opening (114).
7. The quick-installation flying saucer light according to claim 1, characterized in that, The upper surface of the lamp holder (10) is provided with a plurality of lamp holder heat dissipation parts (15), and the plurality of lamp holder heat dissipation parts (15) are evenly distributed in a ring array on the upper surface of the lamp holder (10).
8. The quick-installation UFO light according to claim 7, characterized in that, Each of the lamp holder heat dissipation parts (15) is composed of a number of heat dissipation protrusions (151) arranged in sequence at intervals. The heat dissipation protrusions (151) extend along the radial direction of the lamp holder (10), and there is a gap between each adjacent heat dissipation protrusion (151) to form a number of heat dissipation gaps (152).
9. The quick-installation UFO light according to claim 1, characterized in that, The size of the docking slot (11) is larger than the size of the docking part (21).
10. The quick-installation UFO light according to claim 2, characterized in that, The size of the positioning slot (112) is larger than the size of the positioning strip (212).