Integrated mirror lamp structure
The integrated mirror light structure with a split design solves the problems of transportation damage and complicated installation of traditional mirror cabinets, realizes the diversification of mirror light functions and improves user experience, and reduces transportation and maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- LETARON ELECTRONICS
- Filing Date
- 2026-03-26
- Publication Date
- 2026-05-12
AI Technical Summary
Traditional mirror cabinets are large and easily damaged, difficult to transport, complex to install, and have high maintenance costs. Furthermore, the strong coupling of functional modules makes repairs inconvenient.
The mirror adopts an integrated mirror light structure, separating the mirror and the mirror light accessories. The mirror light accessories include a control module, an operation module, and a power module, which are integrated on the side of the mirror. The mirror light mounting base has a built-in multi-functional module that supports light control, time display, audio playback, and external charging, and the detachable storage box can be used to expand the storage function.
Reduce the risk of damage during transportation, simplify the installation process, reduce transportation and maintenance costs, improve user experience, meet diverse usage needs, and enhance product competitiveness.
Smart Images

Figure CN122015054A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of mirror lamp technology, specifically to an integrated mirror lamp structure. Background Technology
[0002] Traditional mirror cabinet products generally adopt a one-piece design, which has the following technical pain points: (1) Limitations of transportation and installation: Large-sized mirror cabinets are prone to breakage due to collisions during transportation, and require multiple people to cooperate in installation, resulting in high logistics costs; the fixed structure is difficult to adapt to different apartment spaces (such as small bathrooms or irregular walls), and the position cannot be flexibly adjusted after installation.
[0003] (2) High maintenance costs: The integrated design means that local faults (such as light strip damage) require the whole machine to be repaired, resulting in a long after-sales cycle; the mirror surface is strongly coupled with the functional modules, and other components are easily damaged during cleaning or maintenance. Summary of the Invention
[0004] The main objective of this application is to provide an integrated mirror lamp structure that is highly integrated, can meet different usage requirements of mirror lamps, and is convenient for assembly and transportation.
[0005] To achieve the above objectives, this application provides the following technical solution: This application relates to an integrated mirror lamp structure, which includes a mirror, a lighting assembly, and mirror lamp accessories; The mirror includes a mirror body and a frame surrounding the mirror body. The lighting component is located on the back of the mirror and allows light to pass through to the front of the mirror. The mirror light accessory is installed on the side of the mirror and is electrically connected to the lighting component. The mirror light accessory includes a mirror light mounting base installed on the side of the mirror. The mirror light mounting base integrates a control module, an operation module, and a power module. The power module is connected to the mains power and supplies power to the power consumption module. The control module is electrically connected to the light assembly. The operation module is located on the surface of the mounting base and generates corresponding operation commands based on interactive information. The control module responds to the operation commands and controls the light assembly according to the operation commands.
[0006] Further configuration: The mirror light mounting base is configured as a rectangular box and is located at the bottom of the mirror. The length of the mirror light mounting base is adapted to the length of the bottom of the mirror, and the top surface of the mirror light mounting base is provided with a mounting groove for mating with the bottom edge of the mirror.
[0007] Further configuration: It also includes a time display module, which is connected to the control module. The time display module includes a display screen on the surface of the operation box for displaying real-time time information.
[0008] Further features: The mirror lamp mounting base has a built-in audio playback module, and the side wall of the mirror lamp mounting base is provided with a sound outlet.
[0009] Further features include a charging module electrically connected to the power module, the charging module including a charging port exposed on the surface of the mirror lamp mounting base, and the mirror lamp mounting base having a waterproof cover for covering the charging port.
[0010] Further features: The surface of the mirror lamp mounting base is provided with an assembly groove, and a storage box is detachably connected to the surface of the mirror lamp mounting base. The storage box is provided with a limiting block that engages with the assembly groove.
[0011] Further configuration: The assembly slot includes a first assembly slot located on the operating surface of the mirror lamp mounting base. The cross-section of the first assembly slot is arranged in an upwardly bent "┚" shape. The storage box is provided with a bottom first limiting block with an upwardly bent "┚" shaped cross-section that is adapted to the first assembly slot.
[0012] Further configuration: The assembly slot includes a second assembly slot located at the bottom of the mirror lamp mounting base. The second assembly slot is defined by an installation rod located at the bottom of the mirror lamp mounting base and the bottom surface of the mirror lamp mounting base. The storage box is provided with a second limiting block for cooperating with the positioning rod and the second assembly slot. The second limiting block is configured as a U-shaped limiting block. The storage box clamps the installation rod with the U-shaped limiting block to install and suspend it at the bottom of the mirror lamp mounting base.
[0013] Further configuration: The inner side of the U-shaped limiting block is provided with a locking block, and the mounting rod is provided with a locking groove for the locking block to be inserted and engaged, and the locking groove extends along the length direction of the mounting rod.
[0014] Further configuration: The lighting assembly includes a light strip disposed on the back of the mirror, and the back of the mirror is provided with a mounting shell for supporting and protecting the light strip at the installation position corresponding to the installation position of the light strip.
[0015] Compared with existing technologies, the solution in this application has the following advantages: 1. The integrated mirror light structure of this application simplifies the mirror light structure and reduces the overall volume of the composite structure by integrating the control function into a mirror light accessory independent of the mirror. This reduces the risk of mirror damage or cabinet deformation caused by vibration during transportation. In actual transportation, the mirror light accessory and the mirror are packaged separately, avoiding structural stress concentration during transportation of traditional integrated mirror cabinets, and also reducing transportation and labor costs.
[0016] 2. In the integrated mirror light structure of this application, users can install storage boxes according to their actual storage needs. When there is no storage need, some storage boxes can be removed from the operation box to keep the mirror light structure tidy. It can be installed as needed and has high flexibility of use.
[0017] 3. In the integrated mirror light structure of this application, a split modular design is used, which not only solves the pain points of transportation and installation of traditional integrated mirror cabinets, but also further enhances the user experience and product competitiveness through the multi-functional integration of mirror light accessories. The mirror light accessories integrate functions such as light control, time display, audio playback, and external charging. The storage function can also be expanded by installing storage boxes without changing the main structure of the mirror, meeting the different usage needs of users and achieving a comprehensive improvement in technology, cost and user experience.
[0018] Additional aspects and advantages of this application will be set forth in part in the description which follows, and will become apparent from the description or may be learned by practice of this application. Attached Figure Description
[0019] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, wherein: Figure 1 This is a three-dimensional structural diagram of the integrated mirror lamp structure of this application; Figure 2 This is a schematic diagram of the mirror lamp mounting base in the integrated mirror lamp structure of this application; Figure 3 This is a schematic diagram illustrating the internal structure of the mirror lamp mounting base in the integrated mirror lamp structure of this application. Figure 4 This is a schematic diagram of the cross-sectional structure of the mounting shell in the integrated mirror lamp structure of this application; Figure 5 This is a cross-sectional structural diagram of another embodiment of the mounting shell in the integrated mirror lamp structure of this application; Figure 6 This is a front view of the integrated mirror lamp structure of this application; Figure 7 This is a schematic diagram of the back of the integrated mirror lamp structure of this application; Figure 8 This is a top view of the integrated mirror lamp structure of this application; Figure 9 This is a bottom view of the integrated mirror lamp structure of this application; Figure 10 This is a left-side schematic diagram of the integrated mirror lamp structure of this application; Figure 11 This is a right-side schematic diagram of the integrated mirror lamp structure of this application; Figure 12 This is a schematic diagram showing the sound outlet of the integrated mirror lamp structure of this application located on the operating surface of the mounting base housing; Figure 13 This is a schematic diagram of a structural embodiment of the integrated mirror lamp structure of this application used for a storage box connected to the first assembly slot; Figure 14 This is a schematic diagram of an embodiment of the integrated mirror lamp structure of this application used for a storage box connected to a second assembly slot.
[0020] In the diagram, 1. Mirror light mounting base; 11. Sound outlet; 12. Mounting slot; 13. First assembly slot; 14. Mounting rod; 141. Slot; 15. Control module; 151. Wire; 16. Power module; 161. Power cord; 162. Power supply line; 17. Charging module; 171. Charging port; 172. Waterproof cover; 18. Display screen; 19. Audio playback module; 10. Storage box; 101. First limiting block; 102. Second limiting block; 103. Locking block; 2. Mirror; 21. Mirror body; 22. Mirror frame; 23. Mounting shell; 231. Light strip slot; 232. Protective cover; 233. Curved surface; 234. Light transmission slot; 235. Splicing part; 3. Lighting assembly; 31. Light strip. Detailed Implementation
[0021] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0022] It should be understood that the various steps described in the method embodiments of the present invention may be performed in different orders and / or in parallel. Furthermore, the method embodiments may include additional steps and / or omit the steps shown. The scope of the present invention is not limited in this respect.
[0023] The term "comprising" and its variations as used herein are open-ended, meaning "including but not limited to". The term "connection" can refer to a direct connection or an indirect connection via intermediate components (elements). The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Definitions of other terms will be given in the following description.
[0024] It should be noted that the concepts of "first" and "second" mentioned in this invention are only used to distinguish between devices, modules or units, and are not intended to limit these devices, modules or units to necessarily be different devices, modules or units, nor are they intended to limit the order or interdependence of the functions performed by these devices, modules or units.
[0025] To address the issue of existing mirror cabinets being bulky and difficult to transport, which can easily lead to damage to the mirror or cabinet body during transit, please refer to [link / reference needed]. Figures 1 to 14This application provides an integrated mirror light structure that can combine control, storage and other functions, and can effectively simplify the complex structure of existing mirror cabinets. Specifically, it includes a mirror 2, a light component 3 and mirror light accessories. The three adopt a modular assembly design, which can effectively reduce the transportation damage risk faced by the existing integrated structure of composite mirror cabinets.
[0026] Specifically, the mirror 2 of this application includes a mirror body 21 and a frame 22 disposed around the mirror body 21. The frame 22 is mainly used to protect the edge of the mirror body 21 and prevent damage caused by bumps or daily use. The light assembly 3 is disposed on the back of the mirror 2 and can transmit light to the front of the mirror 2. The mirror light accessory is installed on the side of the mirror 2 and is electrically connected to the light assembly 3, which can realize the control of the light assembly 3 to meet the usage needs in different scenarios.
[0027] The aforementioned mirror light accessory is a core component of this application, integrating multiple functions. Besides controlling the lighting assembly 3, it also supports the mirror 2 by being installed at the bottom, thus combining assembly and support functions. The mirror light accessory of this application includes a mirror light mounting base 1, which includes a mounting base housing. A receiving cavity is formed inside the mounting base housing, and a functional module is disposed within the receiving cavity. The functional module is electrically connected to the lighting assembly 3 installed on the mirror 2 to control the lighting assembly 3.
[0028] In this embodiment, the mirror lamp mounting base 1 is glued and fixed to the bottom of the mirror 2. The outer shell of the mounting base is a rectangular box, and the length of the outer shell is adapted to the width of the bottom edge of the mirror 2 to ensure the overall aesthetics of the mirror 2 after assembly with the mirror lamp mounting base 1. In addition, a mounting groove 12 for assembling with the mirror 2 is provided on the top of the mirror lamp mounting base 1. The mounting groove 12 can improve the assembly accuracy and stability of the mirror lamp mounting base 1 and the mirror 2.
[0029] Furthermore, in this embodiment, the mounting groove 12 is configured as an L-shaped mounting groove extending along the length direction of the mirror lamp mounting base 1. The L-shaped mounting groove has a bottom surface and a side surface that are perpendicular to each other. The bottom surface of the L-shaped mounting groove abuts against the bottom surface of the mirror 2 to provide vertical support for the mirror 2. The width of the bottom surface of the L-shaped mounting groove is adapted to the width of the bottom surface of the mirror, so that the bottom of the mirror can be completely fitted onto the bottom surface of the L-shaped mounting groove, improving the structural stability and overall aesthetics of the installation. The side surface of the L-shaped mounting groove abuts against the back surface of the mirror 2 to provide lateral restraint for the mirror 2. Through the bidirectional abutment and cooperation between its bottom surface and side surface, the mounting groove 12 can stably position the mirror 2, preventing the mirror 2 from wobbling back and forth or shifting left and right relative to the mirror lamp mounting base 1.
[0030] Both the mirror light mounting base 1 and the mirror 2 mentioned above adopt standardized dimensions, which can realize quick matching and installation of components. If the mirror 2 is damaged or the internal components of the mirror light mounting base 1 are damaged, the standardized components can be replaced by the user without the need for professional tools or personnel, effectively reducing after-sales maintenance costs and repair difficulty.
[0031] Furthermore, it should be noted that the mirror light accessories are not limited to being located at the bottom of the mirror 2; they can also be located on the sides or top of the mirror 2, offering flexible installation options. In this embodiment, the mirror light mounting base 1, which is rectangular in shape and located at the bottom of the mirror 2, has six surfaces, including a top surface, a bottom surface, two end surfaces, and two vertical surfaces. The two end surfaces are located at both ends of the mirror light mounting base 1 along its length, and the two vertical surfaces are located on the vertical sides of the mirror light mounting base 1 along its length. The two vertical surfaces include an operating surface and a fixing surface. The operating surface allows the user to operate the mirror light, while the fixing surface is used to fix the mirror light mounting base 1 to the wall, which can be achieved by adhesive bonding, hanging, or screw fastening.
[0032] Since the mirror lamp accessory of this application can realize at least one of the control functions of switching, brightness adjustment, and color temperature adjustment of the light component 3, this application forms a receiving cavity inside the mounting base housing, and sets a functional module in the receiving cavity to realize the control of the light component through the functional module. Specifically, the functional module includes a control module 15, an operation module, and a power module 16. The power module 16 is connected to the mains power and supplies power to the control module 15, the operation module (not shown in the figure), the light component 3, and other power-consuming units. The control module 15 is electrically connected to the operation module and the light component 3 respectively. The operation module is set on the surface of the mounting base housing, specifically on the operation surface of the mounting base housing. The operation module generates corresponding control commands according to the interaction information, and the control module 15 responds to the control commands to adjust the brightness and / or color temperature of the light component 3.
[0033] In this embodiment, the operation module includes a touch panel mounted on the operation surface of the mirror lamp mounting base 1. Users can generate corresponding operation commands by performing touch operations on the touch panel and send them to the control module 15, thereby controlling the corresponding execution unit. In other embodiments, the operation module may also employ buttons or knobs mounted on the surface of the mounting base housing, allowing the control module 15 to perform corresponding adjustment control on the lighting assembly 3 based on input signals from different types of operation units.
[0034] The lighting component 33 of this application includes light strips 31 disposed on the back of the mirror 2. In this embodiment, two sets of light strips 31 are disposed on both sides of the mirror 2 along its vertical direction. The light emitted by the light strips 31 can be transmitted to the front of the mirror 2 through the light-transmitting grooves 234 reserved in the mirror body 21 and the mirror frame 22, or the mirror frame 22 can be made of transparent material so that the light from the light strips 31 can be directly projected onto the front of the mirror 2 through the mirror frame 22. In other embodiments, in addition to the vertical light strips 31 disposed on both sides of the mirror 2, a horizontal light strip 31 can be further added to the top of the mirror 2, or light strips 31 can be disposed around the entire perimeter of the mirror 2. In addition, light strips 31 can also be disposed at the bottom of the mirror light mounting base 1 to further enhance the overall lighting effect and user experience of the mirror cabinet.
[0035] In this embodiment, the light strip 31 can be made of a flexible PCB with a surface-mount LED light source, with an overall thickness of only 5mm, which is conducive to achieving an ultra-thin structural design of the product. At the same time, a mounting shell 23 is provided on the back of the mirror 2 at the mounting position corresponding to the light strip 31. The mounting shell 23 extends along the length of the light strip 31 and can provide reliable support and protection for the light strip 31.
[0036] In one specific embodiment, please refer to Figure 4 The mounting housing 23 has a light strip groove 231 extending along its length inside, into which the light strip 31 can be embedded. A protective cover 232 is fitted onto the outside of the mounting housing 23, located on the outside of the light strip groove 231. The protective cover 232 is fixed to the side wall of the mounting housing 23 by a snap-fit connection. After the light strip 31 is installed, the protective cover 232 is placed over the opening of the light strip groove 231, forming a closed space with the mounting housing 23. This enclosed space effectively isolates the working area of the light strip 31 from external dust, moisture, and other impurities, preventing contaminants from adhering to the surface of the light strip 31 or seeping into the internal circuitry. This significantly extends the service life of the light strip 31 and reduces the risk of failure due to environmental factors. Furthermore, the protective cover 232 is made of a light-transmitting material to ensure that the light emitted by the light strip 31 can pass through it smoothly.
[0037] Furthermore, the end face of the mounting housing 23 near the mirror 2 has an inwardly recessed arc surface 233, which corresponds to the position of the mirror frame 22. The light emitted by the light strip 31 passes through the protective cover 232 and is projected onto the arc surface 233. The curvature characteristics of the arc surface 233 are used to reflect and guide the light, achieving precise control of the light path. This application, through the reasonable design of the curvature of the arc surface 233, makes the light uniformly scattered on the arc surface 233, effectively avoiding the problems of concentrated light spots or lighting dead angles, and improving the uniformity and softness of the emitted light.
[0038] Accordingly, in this embodiment, the mirror frame 22 is a transparent mirror frame 22 or a hollowed-out mirror frame 22. The light from the light strip 31 passes through the protective cover 232, is focused and guided by the curved surface 233, and finally propagates outward through the mirror frame 22 to achieve the lighting effect. In addition, the outer contour of the mounting shell 23 is rectangular, and its end face away from the mirror 2 is flush with the operating surface of the mirror lamp mounting base 1, so that the mounting shell 23 can effectively support the mirror 2, thereby improving the overall installation stability of the mirror lamp structure of this application.
[0039] In other embodiments, please refer to Figure 5 The mounting housing 23 has a rectangular frame structure in cross-section. A light-transmitting groove 234 extending along the length of the mounting housing 23 is provided on the side near the connection with the mirror 2. A light strip 31 is mounted on the inner wall of the mounting housing 23. The light emitted by the light strip 31 is reflected and refracted multiple times on the inner wall of the mounting housing 23 before being emitted outwards from the light-transmitting groove 234. Simultaneously, a splicing part 235 for splicing with adjacent mounting housings 23 is provided on the outer wall of the mounting housing 23. In this embodiment, the splicing part 235 can be achieved using corner brackets to connect adjacent mounting housings 23.
[0040] It should be noted that the structure of the mounting shell 23 disclosed in this application is not limited to the two specific embodiments mentioned above. In actual application, the structure of the mounting shell 23 can be adapted and improved according to various factors such as actual functional requirements, production process characteristics, and cost control considerations, resulting in a variety of different structural forms to meet the adaptation requirements of the light strip 31 for installation, fixing, protection and sealing, and load-bearing support under different application scenarios.
[0041] Since this application integrates the control module 15 and the power module 16 inside the mirror lamp mounting base 1, the control module 15 is connected to a wire 151 extending to the outside of the mounting base housing, and is electrically connected to the lighting assembly 3 through this wire 151. This allows the control module 15 to output control signals to the lighting assembly 3 via the wire 151, thereby achieving precise dimming of the lighting assembly 3. Similarly, the power module 16 is equipped with a power cord 161 and a power supply line 162. The power module 16 is connected to the mains power interface through the power cord 161 and is electrically connected to the lighting assembly 3 through the power supply line 162, thereby providing stable operating power to the lighting assembly 3.
[0042] The aforementioned wires 151, power cord 161, and power supply line 162 are all arranged on the back of the mirror 2, utilizing the reserved gap between the mirror and the wall for concealed wiring. This effectively reduces the risk of users directly contacting the wiring, making it particularly suitable for electrical safety protection in humid environments such as bathrooms. It also ensures a clean and aesthetically pleasing overall appearance of the mirror light, meeting the aesthetic design requirements of modern homes. Furthermore, the wires 151 and 162 used to connect to the lighting assembly 3 can pass through the end of the mirror light mounting base 1 that connects to the mounting housing 23, and then connect to the light strip 31, further reducing exposed wiring and making the overall structure more concise and aesthetically pleasing. The mounting housing 23 covers and protects the internal wiring, reducing dust accumulation and physical damage, and preventing users from directly touching the wiring, further reducing the risk of electric shock in humid environments and significantly improving the product's safety performance.
[0043] In addition, besides integrating the lighting control function into the mirror light accessory 1, which is independent of the mirror 2, the control module 15 inside the mirror light mounting base 1 also integrates a wireless communication module. This wireless communication module can establish a stable wireless connection with external devices (such as smartphones). Users can input corresponding control commands through the external device. The control commands are transmitted to the control module 15 via the wireless communication module. The control module 15 then adjusts one or more of the following according to the commands: the on / off state, color temperature, and brightness of the lighting component 3, further improving the convenience of user operation.
[0044] Furthermore, the mirror lamp mounting base 1 also integrates a time display module electrically connected to the control module 15. The time display module includes a display screen 18 mounted on the operating surface of the mounting base housing, used to intuitively display the current time and provide users with convenient time reference. The control module 15 can access the Internet through its integrated wireless communication module, thereby enabling timing control and data synchronization functions for the time display module, ensuring the accuracy and timeliness of time information. In addition, the display screen 18 can also simultaneously display environmental parameters such as temperature, humidity, and air quality, further enhancing user convenience.
[0045] Furthermore, in this embodiment, the display screen 18 can also simultaneously realize the touch function of the operation module. Users can control various functions of the mirror light through the touch display screen 18 without the need for additional physical buttons. This effectively simplifies the housing structure of the mirror light mounting base 1, making the overall design more concise and aesthetically pleasing, while also improving the convenience and flexibility of operation. Specifically, the display screen 18 can support operations such as mirror light on / off, brightness adjustment, and color temperature switching. It can also access interfaces such as time setting and environmental parameter display switching through touch operation, achieving integrated operation and balancing practicality and convenience.
[0046] By accurately identifying and processing touch operation signals, and combining the networking function of the wireless communication module, the control module 15 can further realize the linkage control of touch operation with time display and environmental parameter display. For example, when the user touches to switch the environmental parameter display mode, the display screen 18 can automatically switch the display interface while maintaining the synchronous display of time information, ensuring smooth operation and clear display, and further optimizing the user experience.
[0047] The mirror lamp structure of this application also has an audio playback function, specifically implemented through an audio playback module 19 located inside the mirror lamp mounting base 1. The audio playback module 19 is electrically connected to the control module 15 and includes a speaker. It supports dual-mode playback of local and remote audio, enabling flexible switching of audio sources to meet the needs of users in different usage scenarios. To improve audio propagation efficiency, sound outlet holes 11 are provided on the two end sides of the mirror lamp mounting base 1 along its length. These sound outlet holes 11 adopt a multi-hole distribution design, which effectively improves audio propagation efficiency and avoids mutual interference of sound waves, ensuring playback sound quality. It should be noted that the location of the sound outlet holes 11 is not limited to the two end sides of the mirror lamp mounting base 1; it can be adjusted to other sides of the mirror lamp mounting base 1 according to actual production needs, such as the operating surface of the mounting base housing. See [link to relevant documentation] for details. Figure 12 .
[0048] The mirror light mounting base 1 also integrates a charging module 17, which is connected to the power module 16. The charging module 17 includes a charging port 171 on the surface of the mounting base housing, which supplies power to external devices to meet the user's temporary power needs in the bathroom.
[0049] In addition, the surface of the mounting base housing is also provided with a waterproof cover 172 for covering the charging port 171. The waterproof cover 172 is connected to the mirror lamp mounting base 1 in a movable manner, such as a sliding connection or a hinge. When the user needs to charge, the waterproof cover 172 is opened to expose the charging port 171. After use, the waterproof cover 172 is closed to restore the protective state. This balances the convenience of daily use with the waterproof reliability when not in use, effectively reducing the oxidation and corrosion of the metal contacts of the charging port 171 in humid environments such as bathrooms, reducing the probability of failure due to poor interface contact, and further improving the reliability and service life of the product.
[0050] This application simplifies the mirror lamp structure by integrating the control function into an independent component, reducing the overall volume of the composite structure and lowering the risk of mirror damage or cabinet deformation due to vibration during transportation. Specifically, during transportation, the mirror lamp mounting base 1 and the mirror 2 can be packaged separately, avoiding structural stress concentration during transportation of traditional integrated mirror cabinets, and also reducing transportation and labor costs.
[0051] If this embodiment uses adhesive to fix the mirror 2 and the mirror lamp mounting base 1, the adhesive used needs to have good mechanical strength, stability, and chemical compatibility. Specifically, its thermal stability needs to cover a working environment of -40℃ to 120℃ to prevent the adhesive layer from cracking or the mirror 2 from shifting due to temperature changes. It also needs to be moisture-proof to prevent moisture penetration and delamination. In this embodiment, silicone adhesive can be used to fix the mirror 2 and the mirror lamp mounting base 1.
[0052] In addition to the aforementioned functions such as light control dimming, time display, audio playback, and external charging, the mirror light mounting base 1 of this application can further expand its storage function to enhance the overall practicality of the product. Specifically, the mirror light mounting base 1 has an assembly slot, through which the storage box 10 can be detachably connected to the mounting base housing. Simultaneously, the storage box 10 is provided with a limiting block for engaging with the assembly slot. Through the snap-fit engagement of the limiting block and the assembly slot, a secure connection between the storage box 10 and the mirror light mounting base 1 can be achieved, facilitating assembly and disassembly.
[0053] Storage box 10 is mainly used to store various items that users use frequently. It can be set to different sizes to achieve classified storage of different types of items. For example, it can be used to store toiletries such as toothbrushes, toothpaste, and facial cleanser, as well as small items such as glasses and jewelry. It effectively avoids various items being mixed up and messy, reduces the time users spend searching for items, and improves the convenience of use.
[0054] In this embodiment, the assembly slot extends along the length of the mirror lamp mounting base 1, and multiple storage boxes 10 of different or identical specifications can be installed along the length of the assembly slot. Users can flexibly choose to install the appropriate number of storage boxes 10 according to their actual storage needs. When there is no storage need, some or all of the storage boxes 10 can be removed from the mirror lamp mounting base 1 to maintain the neatness and aesthetics of the overall structure of the mirror lamp. When it is necessary to expand the storage space, storage boxes 10 can be added to the assembly slot of the mirror lamp mounting base 1 at any time, realizing on-demand installation and flexible adjustment, which greatly improves the product's flexibility of use and adaptability to different scenarios.
[0055] The assembly slot includes a first assembly slot 13 and / or a second assembly slot. In this embodiment, two assembly slots are set on the mirror lamp mounting base 1 as an example. Both the first assembly slot 13 and the second assembly slot extend along the length direction of the mirror lamp mounting base 1. The first assembly slot 13 is set on the operating surface of the mirror lamp mounting base 1, and the second assembly slot is formed at the bottom of the mirror lamp mounting base 1. By installing the storage box 10 at different height positions of the mirror lamp mounting base 1, a stacked or staggered layout is formed, which effectively utilizes the vertical space and improves the space utilization rate.
[0056] Please combine Figure 9The first assembly groove 13 has an upward-bent "┚" shaped cross section. The storage box 10 has a first limiting block 101 with an upward-bent "┚" shaped cross section and a size that matches the cross section size of the first assembly groove. Through the snap-fit action of the first assembly groove 13 and the first limiting block 101, the stability of the connection between the two can be effectively enhanced, and the storage box 10 can be prevented from slipping off the mirror lamp mounting base 1 due to its own weight or external vibration.
[0057] The second mounting slot is located at the bottom of the mirror lamp mounting base. It is formed between the mounting rod 14 located at the bottom of the mirror lamp mounting base 1 and the bottom surface of the mirror lamp mounting base 1. The mounting rod 14 extends along the length of the mirror lamp mounting base 1. Please refer to... Figure 10 The storage box installed at the bottom of the mirror light mounting base 1 is provided with a second limiting block 102. The second limiting block is set as a U-shaped limiting block. The U-shaped limiting block is connected to the mirror light mounting base 1 by clamping the mounting rod 14. Part of the structure of the U-shaped limiting block is embedded in the second assembly groove formed between the mirror light mounting base 1 and the mounting rod 14, so that the storage box 10 is suspended at the bottom of the mirror light mounting base 1.
[0058] To further improve the connection stability between the U-shaped limiting block and the mounting rod 14, a locking block 103 is provided on the inner side of the U-shaped limiting block, and a locking groove 141 is provided on the mounting rod 14 for the locking block 103 to be inserted and cooperated with. The locking groove 141 extends along the length direction of the mounting rod 14, which can facilitate the adjustment of the position of the storage box 10 along the length direction of the mounting rod 14.
[0059] Both of the above-mentioned connection structures between the storage box 10 and the mirror lamp mounting base 1 enable the storage box 10 to move along the groove of the assembly slot. Users can flexibly adjust the installation position of the storage box 10 according to the space requirements of different usage scenarios, further improving the product's flexibility and scenario adaptability.
[0060] To facilitate the assembly, inspection, maintenance, or replacement of the internal functional modules of the mirror light mounting base 1, an opening is provided on the outer shell of the mirror light mounting base 1. This opening communicates with the internal receiving cavity of the mirror light mounting base 1. The position of the opening can be reasonably set according to the structural layout of the mirror light mounting base 1 and the assembly requirements of the internal components. Simultaneously, a cover is provided at the opening. The cover is detachably connected to the mirror light mounting base 1, and its size and shape are adapted to the opening. The cover is used to completely close the opening, forming a closed space inside the mirror light mounting base 1. The detachable connection between the cover and the mirror light mounting base 1 can adopt a conventional detachable structure in the art. After the cover closes the opening, it effectively protects the electrical components inside the mirror light mounting base 1, preventing external dust, moisture, impurities, and other contaminants from entering the receiving cavity, avoiding contaminants corroding internal components and causing short circuits or malfunctions, thus extending the service life of the components, especially suitable for use in humid environments such as bathrooms. Furthermore, it makes the overall structure of the mirror light mounting base 1 more regular and aesthetically pleasing, matching the overall shape of the mirror light mounting base 1 and meeting the aesthetic requirements of modern homes.
[0061] In summary, this application integrates lighting control, power management, operation interaction, wireless communication, time display, and audio playback functions into a mirror lamp mounting base 1, which is independent of the mirror 2. This centralized arrangement of electronic and interactive functions facilitates future maintenance, upgrades, or replacements. Simultaneously, storage functionality is expanded through a storage box 10 detachably connected to the mirror lamp mounting base 1. Different sized storage boxes 10 can be stacked or staggered, improving space utilization efficiency and flexibility. Furthermore, the mirror lamp mounting base 1 can be packaged and transported separately from the mirror 2, thereby reducing the risk of damage during transportation.
[0062] The integrated mirror light structure of this application adopts a modular design with separate mirror 2 and mirror light accessories. These two components can be packaged and transported independently, avoiding issues such as mirror cracks and cabinet deformation that are prone to occur in traditional integrated mirror cabinets due to structural stress concentration. Furthermore, separate packaging simplifies packaging, reduces the amount of reinforcing materials used, and lowers warehousing, transportation, and handling labor costs. Both the mirror light accessories and mirror 2 in this application use standardized dimensions and can be fixed by adhesive bonding, improving installation efficiency. The modular design also supports quick replacement of various mirror light components, reducing after-sales maintenance costs.
[0063] The integrated mirror light structure of this application adopts a split modular design, which not only solves the transportation and installation problems of traditional integrated mirror cabinets, but also integrates multiple functions such as light control, time display, audio playback, and external charging through mirror light accessories. With the expandable storage structure, it meets the diverse usage needs of users without changing the main structure of mirror 2, and achieves a comprehensive improvement in technical effect, production cost and user experience, significantly enhancing the overall competitiveness of the product.
[0064] The above description is only a partial embodiment of this application. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this application, and these improvements and modifications should also be considered within the scope of protection of this application.
Claims
1. An integrated mirror lamp structure, characterized in that, Includes mirrors, lighting components, and mirror light accessories; The mirror includes a mirror body and a frame surrounding the mirror body. The lighting component is located on the back of the mirror and allows light to pass through to the front of the mirror. The mirror light accessory is installed on the side of the mirror and is electrically connected to the lighting component. The mirror light accessory includes a mirror light mounting base installed on the side of the mirror. The mirror light mounting base integrates a control module, an operation module, and a power module. The power module is connected to the mains power and supplies power to the power consumption module. The control module is electrically connected to the light assembly. The operation module is located on the surface of the mounting base and generates corresponding operation commands based on interactive information. The control module responds to the operation commands and controls the light assembly according to the operation commands.
2. The integrated mirror lamp structure according to claim 1, characterized in that, The mirror light mounting base is configured as a rectangular box and is located at the bottom of the mirror. The length of the mirror light mounting base is adapted to the length of the bottom of the mirror, and the top surface of the mirror light mounting base is provided with a mounting groove for mating with the bottom edge of the mirror.
3. The integrated mirror lamp structure according to claim 1, characterized in that, It also includes a time display module, which is connected to the control module. The time display module includes a display screen on the surface of the operation box for displaying real-time time information.
4. The integrated mirror lamp structure according to claim 1, characterized in that, The mirror lamp mounting base has a built-in audio playback module, and the side wall of the mirror lamp mounting base is provided with a sound outlet.
5. The integrated mirror lamp structure according to claim 1, characterized in that, It also includes a charging module electrically connected to the power module, the charging module including a charging port exposed on the surface of the mirror lamp mounting base, and the mirror lamp mounting base is provided with a waterproof cover for covering the charging port.
6. The integrated mirror lamp structure according to claim 1, characterized in that, The surface of the mirror lamp mounting base is provided with an assembly groove, and a storage box is detachably connected to the surface of the mirror lamp mounting base. The storage box is provided with a limiting block that engages with the assembly groove.
7. The integrated mirror lamp structure according to claim 6, characterized in that, The assembly slot includes a first assembly slot located on the operating surface of the mirror lamp mounting base. The cross-section of the first assembly slot is arranged in an upwardly bent "┚" shape. The storage box is provided with a bottom first limiting block with an upwardly bent "┚" shaped cross-section that is adapted to the first assembly slot.
8. The integrated mirror lamp structure according to claim 6, characterized in that, The assembly slot includes a second assembly slot located at the bottom of the mirror lamp mounting base. The second assembly slot is defined by an installation rod located at the bottom of the mirror lamp mounting base and the bottom surface of the mirror lamp mounting base. The storage box is provided with a second limiting block for cooperating with the positioning rod and the second assembly slot. The second limiting block is configured as a U-shaped limiting block. The storage box clamps the installation rod with the U-shaped limiting block to install and suspend it at the bottom of the mirror lamp mounting base.
9. The integrated mirror lamp structure according to claim 8, characterized in that, The U-shaped limiting block has a locking block on its inner side, and the mounting rod has a locking groove for the locking block to be inserted and engaged. The locking groove extends along the length of the mounting rod.
10. The integrated mirror lamp structure according to claim 1, characterized in that, The lighting assembly includes a light strip disposed on the back of a mirror, and a mounting shell for supporting and protecting the light strip is provided on the back of the mirror at the mounting position corresponding to the installation position of the light strip.