A wardrobe panel with embedded light bar
Patent Information
- Application Number
- CN202522234130.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-10-22
AI Technical Summary
[0006]同时要解决现有衣柜照明发光方向固定、功能灵活度低,以及线路暴露影响美观与安全,难以满足现代家居一体化设计与多样照明需求的技术问题
[0024]本实用新型实现了灯条组件与衣柜板本体的深度融合,通过在衣柜板本体开设安装槽,将散热型材、灯条本体等部件嵌入式装配,避免了灯体外置或简单内嵌导致的空间占用与结构突兀问题,使照明功能与衣柜板形成一体化结构,显著提升了衣柜整体的美观性与空间利用率。
Smart Images

Figure CN224806164U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of wardrobe panel technology, specifically relating to a wardrobe panel with embedded light strips. Background Technology
[0002] In modern home design, wardrobes, as core storage furniture, have evolved from basic storage to a combination of convenience, comfort, and aesthetics. With increasing demands for lighting in home spaces, adding lighting fixtures inside or around wardrobes has become a common design trend. This aims to solve the problem of inconvenient access to items due to dim lighting inside the wardrobe, especially in poorly lit bedrooms or walk-in closets, where wardrobe lighting can significantly improve the user experience. Currently, while some wardrobes on the market include additional lighting components, they mostly use external light fixtures or simple embedded designs, failing to achieve a deeply integrated design with the wardrobe panels. This results in insufficient coordination between the lighting structure and the overall wardrobe style, and there is room for improvement in terms of installation stability and functional flexibility.
[0003] In existing wardrobe lighting solutions, external light fixtures need to be fixed to the inner wall or door of the wardrobe using brackets. This not only occupies internal storage space but also makes the brackets prone to loosening and the light fixtures to shift due to vibrations and opening / closing the doors, and may even lead to poor wiring connections. Even with recessed designs, the light strips are often simply pasted onto the wardrobe panel or clipped into pre-drilled slots, lacking a dedicated fixing and heat dissipation structure. The heat generated by the light strips during operation cannot be effectively dissipated, which can accelerate the aging of the light fixtures. At the same time, the assembly strength between the light strips and the wardrobe panel is insufficient, and there is a risk of them falling off after long-term use, affecting the stability and lifespan of the lighting function.
[0004] Existing wardrobe lighting devices mostly have a fixed light emission direction, which can only achieve illumination in one direction. They cannot adjust the lighting angle according to actual usage needs (such as illuminating clothes deep inside the wardrobe or supplementing the ambient light around the wardrobe), resulting in significant functional limitations. In addition, the wiring of external light fixtures is mostly exposed on the outside or inside of the wardrobe, which not only affects the overall neatness and aesthetics of the wardrobe, but also poses a safety hazard of short circuits due to wire wear and dust accumulation. While some recessed designs hide the wiring, the connection between the light fixture and the wardrobe panel lacks a smooth transition, which can easily form protrusions or gaps, ruining the overall visual effect of the wardrobe panel and failing to meet the modern home's demand for integrated and aesthetically pleasing design. Utility Model Content
[0005] The present invention aims to solve the technical problems of existing wardrobe lighting devices, which are mostly external or simply embedded, resulting in low integration with wardrobe panels, easy space occupation, obtrusive structure, easy displacement of the lamp body, and insufficient heat dissipation leading to rapid aging.
[0006] At the same time, it is necessary to solve the technical problems of existing wardrobe lighting, such as fixed light emission direction, low functional flexibility, and exposed wiring affecting aesthetics and safety, which makes it difficult to meet the integrated design and diverse lighting needs of modern homes.
[0007] To achieve the above objectives, this utility model provides the following technical solution:
[0008] A wardrobe panel with recessed light strips, comprising:
[0009] The wardrobe panel body has a mounting groove extending along its length on one end face.
[0010] An embedded light strip assembly includes a heat dissipation profile, a light strip body, and a light-transmitting cover plate. The heat dissipation profile is fastened and embedded in a mounting groove by fasteners, and the heat dissipation profile is fitted to the bottom of the mounting groove. The light strip body is installed on the side of the heat dissipation profile away from the bottom of the groove, and the light-emitting surface of the light strip body faces the light-transmitting cover plate. The light-transmitting cover plate is detachably installed in the profile cavity of the heat dissipation profile and cooperates with the light strip body to emit light from the left, right, or vertically.
[0011] The power supply module includes an electrical connector located at the end of the wardrobe panel body and a wire embedded inside the wardrobe panel body. One end of the wire is electrically connected to the light strip body through the electrical connector, and the other end is electrically connected to the power interface.
[0012] This wardrobe panel with embedded light strips allows for stable assembly of the light strip components through mounting slots in the wardrobe panel itself. Heat dissipation profiles ensure heat dissipation for the light strips, and the light-transmitting cover allows for flexible switching of the light emission direction. The embedded wires and end electrical connectors form a safe power supply circuit, taking into account lighting function, structural stability, and aesthetics.
[0013] Preferably, the side of the wardrobe panel has a slot for wires to be led out. The slot on the side of the wardrobe panel facilitates the wires to be led out and routed in a reasonable manner, avoiding messy wiring and protecting the wires from damage.
[0014] As a preferred embodiment, the heat dissipation profile includes a profile body with a size of 10mm×10mm, two limiting ears integrally formed on both sides of the profile body and limited to the outside of the wardrobe panel body, and lugs I, lugs II and lugs III integrally formed on the profile body and located on the inner walls of both sides of the profile cavity and arranged from top to bottom.
[0015] The groove Ⅰ between lug Ⅰ and the limiting lug, the groove Ⅱ between lug Ⅰ and lug Ⅱ, the groove Ⅲ between lug Ⅱ and lug Ⅲ, and the groove Ⅳ between lug Ⅲ and the bottom wall of the profile body are all designed to achieve the specific size of the heat dissipation profile body, the limiting lugs on both sides, and the multiple sets of lugs and grooves in the cavity. This design not only achieves the installation limitation of the profile itself, but also provides a basis for the diversified installation of the light-transmitting cover, thus meeting different usage needs.
[0016] As a preferred option, the light-transmitting cover is horizontally inserted and positioned in slot I to emit light vertically. One end of the light-transmitting cover is inserted and positioned in slot I, and the other end is inserted and positioned in slot II to emit light to the left or right. By inserting and positioning the light-transmitting cover in different slots, multiple light emission directions such as vertical, left, and right can be flexibly realized to adapt to different lighting scenarios.
[0017] As a preferred embodiment, two symmetrical limiting protrusions are provided on the bottom wall of the profile cavity. After the light strip body is bonded to the bottom wall of the profile body, it is limited to the inner side of the two limiting protrusions. The symmetrical limiting protrusions on the bottom wall of the profile cavity, together with the bonding method, can effectively limit the displacement of the light strip body, ensuring the stable installation of the light strip and the stable lighting effect.
[0018] Preferably, the embedded light strip assembly also includes plugs that seal both ends of the heat dissipation profile. The plugs include locking blocks that snap into the profile cavity, slot I, slot II, slot III, and slot IV, as well as sealing blocks that are integrally formed on the locking blocks and seal the outside of the profile body and are flush with the outer surface of the profile body. Through the design of locking blocks and sealing blocks, the plugs at both ends of the heat dissipation profile can not only tightly seal each slot and cavity, but also keep flush with the outer surface of the profile body, ensuring structural sealing and aesthetics.
[0019] Preferably, the top of the plug is provided with a handle groove for easy removal from the profile body. The handle groove on the top of the plug provides a convenient operating point for disassembling the plug, making it convenient for subsequent inspection or replacement of the internal components of the heat dissipation profile.
[0020] Preferably, the wardrobe panel body is provided with a connection and installation groove and a lead-out groove, and a through hole groove for positioning the electrical connector. After the electrical connector passes through the plug hole on the end cap, it is electrically connected to the light strip body. The through hole groove of the wardrobe panel body and the plug hole of the end cap cooperate to ensure that the electrical connector accurately achieves electrical connection with the light strip body and ensures the stability of the power supply circuit.
[0021] Preferably, the fasteners are provided with several fasteners that are equidistantly fastened to the outer surface of the profile body. The fasteners include a U-shaped clamping plate that is clamped to the outer surface of the profile body, and two spring pieces located at both ends of the U-shaped clamping plate and protruding outward. The inner walls of both sides of the U-shaped clamping plate are provided with elastic pieces that are clamped into the grooves on the outer sides of both sides of the profile body. After the profile body is clamped into the fasteners, the fasteners and the profile body are clamped into the mounting groove together. The two spring pieces abut against the mounting groove, so as to achieve stable fastening and embedding of the heat dissipation profile into the mounting groove. Multiple sets of equidistant fasteners, through the structure of U-shaped clamping plates, spring pieces and elastic pieces, can firmly fasten and embed the heat dissipation profile into the mounting groove, ensuring that the heat dissipation profile is installed stably and is not easy to shift.
[0022] Preferably, the U-shaped plate has a circular hole, and the U-shaped plate is fixed in the mounting groove by a hidden screw that passes through the circular hole. The circular hole on the U-shaped plate can be used with the hidden screw to further fix the U-shaped plate in the mounting groove, thereby enhancing the overall stability of the heat dissipation profile installation.
[0023] Compared with the prior art, the technical effects and advantages of this utility model are:
[0024] This utility model achieves deep integration of the light strip assembly and the wardrobe panel body. By opening an installation groove in the wardrobe panel body, the heat dissipation profile, light strip body and other components are embedded and assembled, avoiding the space occupation and structural abruptness caused by external or simple internal lighting. This makes the lighting function and the wardrobe panel form an integrated structure, significantly improving the overall aesthetics and space utilization of the wardrobe.
[0025] In terms of lighting flexibility, this utility model uses a detachable and adjustable light-transmitting cover plate to work with the light strip body to achieve multiple light emission directions. Compared with the existing lighting scheme with a fixed light emission direction, it can be flexibly adjusted according to the wardrobe usage scenario (such as internal storage lighting, ambient lighting, etc.) to better meet different lighting needs and improve ease of use.
[0026] In terms of structural stability and safety, this utility model uses fasteners to stably fasten the heat dissipation profile into the mounting groove. At the same time, the design of the heat dissipation profile fitting into the bottom of the groove enhances the heat dissipation effect, effectively solving the problems of easy displacement of the lamp body and rapid aging caused by insufficient heat dissipation in the prior art. In addition, the wires are embedded inside the wardrobe panel body, forming a hidden power supply circuit with the electrical connector at the end, avoiding wear and short circuit risks caused by exposed wires, and improving the overall structural stability and electrical safety.
[0027] This utility model has advantages in terms of ease of maintenance and assembly. The light-transmitting cover is detachable and the plug design facilitates the later inspection or replacement of the light strip assembly without requiring major modifications to the wardrobe panel body. At the same time, the assembly method of each component is simple and reliable, and installation can be completed without complicated tools. Compared with the difficult maintenance and cumbersome assembly of the prior art, it reduces the cost of use and maintenance and is more practical. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the structure of this utility model;
[0029] Figure 2 This is a schematic diagram of the structure of the wardrobe panel body of this utility model;
[0030] Figure 3 This is a schematic diagram of the structure of the heat dissipation profile, the light-transmitting cover plate, and the electrical connector of this utility model;
[0031] Figure 4 This is an exploded view of the heat dissipation profile, the light-transmitting cover plate, and the light strip body of this utility model;
[0032] Figure 5 This is a front view of the embedded light strip of this utility model emitting light from the left.
[0033] Figure 6 This is a front view of the right-side emitting embedded light strip of this utility model;
[0034] Figure 7 This is a front view of the embedded light strip of this utility model emitting light vertically;
[0035] Figure 8 This is a diagram showing the left-side illumination state of the embedded light strip of this utility model;
[0036] Figure 9 This is a diagram showing the right-side illumination state of the embedded light strip of this utility model;
[0037] Figure 10 This is a diagram showing the vertical illumination state of the embedded light strip of this utility model;
[0038] Figure 11 This is a schematic diagram of the structure of the heat dissipation profile of this utility model;
[0039] Figure 12 This is a schematic diagram of the structure of the plug of this utility model;
[0040] Figure 13 This is a structural schematic diagram of the fastener of this utility model.
[0041] In the picture:
[0042] 1. Wardrobe panel body; 101. Mounting groove; 102. Outlet groove; 103. Through hole groove;
[0043] 2. Heat dissipation profile; 201. Profile chamber; 202. Profile body; 203. Limiting ear; 204. Lug I; 205. Lug II; 206. Lug III; 207. Slot I; 208. Slot II; 209. Slot III; 210. Slot IV; 211. Limiting protrusion; 212. Plug; 213. Locking block; 214. Sealing block; 215. Handle groove; 216. Insertion hole; 217. Channel;
[0044] 3. The light strip itself;
[0045] 4. Translucent cover plate;
[0046] 5. Fasteners; 501. U-shaped clamping plate; 502. Spring clip; 503. Elastic sheet; 504. Circular hole;
[0047] 6. Electrical connectors;
[0048] 7. Wires. Detailed Implementation
[0049] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0050] The following combination Figures 1 to 13 This application will be described in further detail.
[0051] This application discloses a wardrobe panel with embedded light strips. The core components include the wardrobe panel body 1, the embedded light strip assembly, and the power supply module. The components work together to satisfy the basic storage function of the wardrobe and to meet the lighting needs through the embedded light strips, thereby improving the user experience.
[0052] The wardrobe panel body 1 serves as the basic load-bearing structure of the entire device. A mounting groove 101 extending along the length direction is specially designed on one end face of the wardrobe panel. The mounting groove 101 provides a stable installation space for the embedded light strip assembly, ensuring that the light strip assembly can be firmly and reasonably assembled on the wardrobe panel.
[0053] The embedded light strip assembly is the core component for realizing the lighting function. It mainly consists of a heat dissipation profile 2, a light strip body 3, and a light-transmitting cover plate 4. The three work together to ensure the lighting effect, solve the heat dissipation problem when the light strip is working, and also take into account the structural protection.
[0054] The heat dissipation profile 2 is fastened and embedded into the mounting groove 101 by fastener 5, and fits tightly against the bottom of the mounting groove 101. This installation method not only allows the heat dissipation profile 2 to be stably fixed, but also makes full use of the structure of the bottom of the mounting groove 101 to enhance the heat dissipation effect and dissipate the heat generated by the light strip body 3 when it is working.
[0055] The light strip body 3 is fixedly installed on the side of the heat dissipation profile 2 away from the bottom of the groove, with its light-emitting surface precisely facing the light-transmitting cover plate 4, ensuring that the light can be effectively emitted through the light-transmitting cover plate 4 to provide sufficient lighting for the inside or surrounding area of the wardrobe.
[0056] The light-transmitting cover plate 4 is installed in the profile cavity 201 of the heat dissipation profile 2 in a detachable manner. By adjusting its installation position, it can cooperate with the light strip body 3 to achieve multiple lighting directions such as left-lighting, right-lighting, and vertical-lighting, so as to meet the lighting needs of different scenarios.
[0057] The power supply module is responsible for providing stable power support to the light strip body 3. It mainly consists of an electrical connector 6 and a wire 7. The electrical connector 6 is located at the end of the wardrobe panel body 1, while the wire 7 is embedded inside the wardrobe panel body 1 to avoid the wires being exposed. This ensures electrical safety and makes the overall structure neater.
[0058] One end of the wire 7 is electrically connected to the lamp strip body 3 through the electrical connector 6, and the other end is connected to the power interface to form a complete power supply circuit, ensuring that the current can be stably transmitted to the lamp strip body 3 and ensuring the continuous and stable operation of the lighting function.
[0059] To facilitate the lead-out and arrangement of the wires 7, a lead-out groove 102 is specially opened on the side of the wardrobe panel body 1. The wires 7 can be routed reasonably through the lead-out groove 102 to avoid messy and tangled wires, and at the same time protect the wires 7 from damage.
[0060] The structure of the heat dissipation profile 2 is carefully designed. In addition to the core profile body 202 with a size of 10mm×10mm, it also has two limiting ears 203 and three sets of convex ear structures integrally formed. The limiting ears 203 are located on both sides of the profile body 202, which can limit the installation position of the heat dissipation profile 2 on the wardrobe panel body 1 to prevent displacement; three sets of lug structures are arranged vertically along the inner walls of both sides of the profile chamber 201, and cooperate with other structures to form different slots. Specifically, they include lugs I 204, lug II 205 and lug III 206, which are integrally formed on the profile body 202 and located on the inner walls of both sides of the profile chamber 201 and arranged from top to bottom; there is a slot I 207 between lug I 204 and the limiting ears 203, a slot II 208 between lug I 204 and lug II 205, a slot III 209 between lug II 205 and lug III 206, and a slot IV 210 between lug III 206 and the bottom wall of the profile body 202.
[0061] The light-transmitting cover plate 4 is horizontally inserted and positioned within slot I 207 for vertical light emission. One end of the light-transmitting cover plate 4 is inserted and positioned within slot I 207, while the other end is inserted and positioned within slot II 208 for left or right light emission. These different slots provide a basis for the diversified installation of the light-transmitting cover plate 4. By installing the light-transmitting cover plate 4 in different slot combinations, different directional light emission effects can be achieved, making the lighting method more flexible.
[0062] On the bottom wall of the profile cavity 201, symmetrical limiting protrusions 211 are arranged. The lamp strip body 3 is fixed to the bottom wall of the profile body 202 by adhesive bonding and is simultaneously limited to the inside of the two limiting protrusions 211. This double fixing method can effectively prevent the lamp strip body 3 from shifting during use and ensure the stability of lighting.
[0063] The embedded light strip assembly is also equipped with plugs 212 for sealing both ends of the heat dissipation profile 2. The plugs 212 include a locking block 213 that snaps into the profile cavity 201, slot I 207, slot II 208, slot III 209, and slot IV 210, and a sealing block 214 integrally formed on the locking block 213 and sealing the outside of the profile body 202 and flush with the outer surface of the profile body 202. The locking block 213 of the plug 212 can be precisely locked into each slot and cavity of the heat dissipation profile 2, while the sealing block 214 remains flush with the outer surface of the profile body 202, achieving both a good sealing effect and ensuring the aesthetics of the overall structure.
[0064] The top of the plug 212 is designed with a handle groove 215. When it is necessary to inspect or replace the light strip body 3 and other components inside the heat dissipation profile 2, the plug 212 can be easily removed from the profile body 202 through the handle groove 215, making the operation convenient and efficient.
[0065] The wardrobe panel body 1 has a through hole groove 103, which connects the mounting groove 101 and the lead-out groove 102. It is specifically used to cooperate with the insertion and positioning of the electrical connector 6. After the electrical connector 6 passes through the insertion hole 216 on the plug 212, it is electrically connected to the light strip body 3 to ensure the stability and accuracy of the power supply connection.
[0066] Multiple fasteners 5 are provided and are equidistantly fastened to the outer side of the profile body 202. Each fastener 5 includes a U-shaped clamping plate 501 that engages with the outer side of the profile body 202, and two outwardly protruding spring tabs 502 located at both ends of the U-shaped clamping plate 501. The inner walls of both sides of the U-shaped clamping plate 501 are provided with elastic tabs 503 that engage with the grooves 217 on the outer sides of the profile body 202. After the profile body 202 is engaged with the fasteners 5, both the fasteners 5 and the profile body 202 are engaged together in the mounting groove 101. The two spring tabs 502 abut against the mounting groove 101, achieving a stable connection and embedding of the heat dissipation profile 2 into the mounting groove 101. Its special structural design allows for a tight engagement with the profile body 202, followed by engagement together in the mounting groove 101. The spring tabs 502 abut against the inner wall of the mounting groove 101 for stable fixation. Some fasteners 5 can also be further reinforced with hidden screws, greatly improving the assembly stability of the heat dissipation profile 2 within the mounting groove 101. The U-shaped card plate 501 has a circular hole 504, and the U-shaped card plate 501 is fixed in the mounting groove 101 by a hidden screw that passes through the circular hole 504.
[0067] This wardrobe panel with embedded light strips achieves its lighting function through a modular design. The core of this design is the coordinated integration of the embedded light strip assembly with the wardrobe panel body 1 and the power supply module. The mounting groove 101 of the wardrobe panel body 1 provides a fixed base for the heat dissipation profile 2. The heat dissipation profile 2 is stably embedded in the groove and fits against the bottom of the groove using fasteners 5. The light strip body 3 is fixed to the heat dissipation profile 2 with its light-emitting surface facing the light-transmitting cover plate 4. The power supply module, through the wires 7 embedded in the wardrobe panel and the electrical connectors 6 at the ends, constructs a complete power supply circuit from the power interface to the light strip body 3. Simultaneously, the light-transmitting cover plate 4 can be adjusted in different mounting positions within the grooves of the heat dissipation profile 2 to cooperate with the light strip body 3, achieving multi-directional light emission and meeting various lighting needs.
[0068] From a structural perspective, this design offers multiple advantages. First, the embedded installation method allows for a high degree of integration between the light strip assembly and the wardrobe panel, avoiding exposed wiring, ensuring a clean appearance of the wardrobe, and reducing the risk of wiring damage. Second, the heat dissipation profile 2 not only enhances heat dissipation by fitting snugly against the bottom of the mounting groove 101, but also achieves flexible installation of the light-transmitting cover 4 and fixed positioning of the light strip body 3 through integrated molding of the limiting ear 203 and protruding ear structures, improving the overall structural stability. Third, the detachable light-transmitting cover 4 and the plug 212 with buckle handle groove 215 facilitate future inspection and replacement of the light strip assembly, reducing maintenance difficulty, while the fastener 5 fixing method combining hidden screws and spring clips 502 further ensures that the heat dissipation profile 2 is installed firmly without affecting the appearance.
[0069] In practical use, this design significantly enhances the user experience. On one hand, the multi-directional light emission function can be flexibly switched according to the wardrobe's usage scenario. For example, vertical light emission can illuminate the storage area inside the wardrobe, while left and right light emission can supplement the ambient light around the wardrobe, meeting different lighting needs. On the other hand, the design of the embedded wire 7 and the end electrical connector 6 of the power supply module ensures electrical safety and avoids messy wiring affecting use. At the same time, the heat dissipation profile 2 dissipates the heat of the light strip in a timely manner, extending the life of the light strip and ensuring continuous and stable lighting function, providing users with a convenient, safe, and comfortable user experience.
[0070] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A wardrobe panel with embedded light strips, characterized in that, include: The wardrobe panel body (1) has an installation groove (101) extending along its length on one end face. The embedded light strip assembly includes a heat dissipation profile (2), a light strip body (3), and a light-transmitting cover plate (4). The heat dissipation profile (2) is fastened and embedded in the mounting groove (101) by fasteners (5), and the heat dissipation profile (2) is fitted to the bottom of the mounting groove (101). The light strip body (3) is installed on the side of the heat dissipation profile (2) away from the bottom of the groove, and the light-emitting surface of the light strip body (3) faces the light-transmitting cover plate (4). The light-transmitting cover plate (4) is detachably installed in the profile cavity (201) of the heat dissipation profile (2) and cooperates with the light strip body (3) to emit light from the left, right, or vertically. The power supply module includes an electrical connector (6) located at the end of the wardrobe panel body (1) and a wire (7) embedded inside the wardrobe panel body (1). One end of the wire (7) is electrically connected to the light strip body (3) through the electrical connector (6), and the other end is electrically connected to the power interface.
2. A wardrobe panel with embedded light strips according to claim 1, characterized in that: The side of the wardrobe panel body (1) is provided with a lead-out groove (102) for the lead-out of the wire (7).
3. A wardrobe panel with embedded light strips according to claim 2, characterized in that: The heat dissipation profile (2) includes a profile body (202) with a size of 10mm×10mm, two limiting ears (203) integrally formed on both sides of the profile body (202) and limited to the outside of the wardrobe panel body (1), and lugs I (204), lugs II (205) and lugs III (206) integrally formed on the profile body (202) and located on the inner walls of both sides of the profile chamber (201) and arranged from top to bottom. A groove I (207) is formed between lug I (204) and limiting lug (203), a groove II (208) is formed between lug I (204) and lug II (205), a groove III (209) is formed between lug II (205) and lug III (206), and a groove IV (210) is formed between lug III (206) and the bottom wall of the profile body (202).
4. A wardrobe panel with embedded light strips according to claim 3, characterized in that: The light-transmitting cover plate (4) is horizontally inserted and positioned in slot I (207) to emit light vertically. One end of the light-transmitting cover plate (4) is inserted and positioned in slot I (207), and the other end is inserted and positioned in slot II (208) to emit light to the left or right.
5. A wardrobe panel with embedded light strips according to claim 3, characterized in that: Two limiting protrusions (211) are symmetrically provided on the bottom wall of the profile cavity (201). After the light strip body (3) is bonded to the bottom wall of the profile body (202), it is limited to the inside of the two limiting protrusions (211).
6. A wardrobe panel with embedded light strips according to claim 4, characterized in that: The embedded light strip assembly also includes plugs (212) that seal both ends of the heat dissipation profile (2). The plugs (212) include a locking block (213) that is inserted into the profile cavity (201), slot I (207), slot II (208), slot III (209) and slot IV (210), and a sealing block (214) that is integrally formed on the locking block (213) and sealed on the outside of the profile body (202) and flush with the outer side of the profile body (202).
7. A wardrobe panel with embedded light strips according to claim 6, characterized in that: The top of the plug (212) is provided with a handle groove (215) to facilitate its removal from the profile body (202).
8. A wardrobe panel with embedded light strips according to claim 6, characterized in that: The wardrobe panel body (1) is provided with a connecting installation groove (101) and a lead-out groove (102) and a through hole groove (103) for positioning the electrical plug (6). The electrical plug (6) passes through the plug hole (216) on the plug (212) and is electrically connected to the light strip body (3).
9. A wardrobe panel with embedded light strips according to claim 3, characterized in that: The fastener (5) is provided with several fasteners that are equidistant from each other on the outer side of the profile body (202). The fastener (5) includes a U-shaped card plate (501) that is clipped on the outer side of the profile body (202) and two spring pieces (502) located at both ends of the U-shaped card plate (501) and protruding outward. The inner wall surfaces of both sides of the U-shaped card plate (501) are provided with elastic pieces (503) that are clipped in the grooves (217) on both sides of the outer side of the profile body (202). After the profile body (202) is clipped into the fastener (5), the fastener (5) and the profile body (202) are clipped into the mounting groove (101) together. The two spring pieces (502) abut against the mounting groove (101) to achieve stable fastening of the heat dissipation profile (2) and embedding it into the mounting groove (101).
10. A wardrobe panel with embedded light strips according to claim 1, characterized in that: The U-shaped card plate (501) has a circular hole (504), and the U-shaped card plate (501) is fixed in the mounting groove (101) by a hidden screw that passes through the circular hole (504).