Mirror cabinet
By integrating integrated power supply and power consumption functional components on the cabinet door of the mirror cabinet, and using the contact connection between the power supply contacts and the power supply contacts, the loosening and falling problem of the wire due to collision or pulling with the cabinet door is solved, and the stable use and aesthetics of the mirror cabinet are achieved.
Patent Information
- Application Number
- CN202421694441.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-07-16
AI Technical Summary
In existing smart mirror cabinets, wires loosen and fall off or break due to collision with the door gaps with the cabinet door or being frequently pulled, which affects the normal use of the electricity consumption function and is not beautiful.
The integrated power supply and power consumption functional components are integrated on the cabinet door, and the power supply contacts and power supply contacts are installed on the cabinet door and the cabinet body. The power connection is achieved through the mutual contact between the power supply contacts and the power supply contacts. A power storage unit is installed on the cabinet door to provide backup power, and the wires are installed centrally on the cabinet door.
It solves the problem of loosening and falling off caused by collision or pulling of the wire with the door of the cabinet door, ensuring that the electrical functional components can be used normally when the cabinet door is closed and opened, improving the aesthetics and user experience, making it more convenient to install and repair.
Smart Images

Figure CN223169374U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sanitary wares, in particular to a mirror cabinet. Background Art
[0002] In the existing intelligent mirror cabinets, anti-fog films, lamp belts and other power-consuming functional components are often installed inside the cabinet door, and a power supply box is correspondingly equipped at the top of the cabinet body. During installation, holes are respectively drilled at the top of the cabinet body and the back of the cabinet door, and wires pass through the top of the cabinet body and the back of the cabinet door in sequence to connect the power supply box with the power-consuming functional components. Since the power-consuming functional components and the power supply box are respectively arranged on two components, namely the cabinet door and the cabinet body, some wires will be exposed between the cabinet door and the cabinet body. During the use process, the wires may be loosened, detached, damaged, etc. due to mutual collision with the cabinet door gap or being frequently pulled, affecting the normal use of the power-consuming functional components of the product, and the aesthetic degree is not good at the same time.
[0003] In the prior art, there is also a corrugated pipe arranged outside the exposed part of the wire, and the stretchability of the corrugated pipe is used to reduce the phenomenon that the wire is frequently pulled during the opening and closing process of the cabinet door. However, the corrugated pipe is also prone to the phenomenon of mutual collision with the cabinet door gap, and the aesthetic degree is also not good. Summary of the Utility Model
[0004] The purpose of the embodiment of the utility model is to provide a mirror cabinet aiming at the existing technical status. The mirror cabinet of the embodiment of the utility model can effectively solve the problems that the wires in the prior art are loosened, detached, damaged, etc. due to mutual collision with the cabinet door gap or being frequently pulled, the cabinet door will not be unsmooth to open and close due to the wires, and there will be no problem of wire exposure between the cabinet door and the cabinet body, and the aesthetic degree is better.
[0005] To achieve the above purpose, the embodiment of the utility model adopts the following technical scheme:
[0006] The utility model discloses a mirror cabinet, which includes a cabinet door and a cabinet body. An integrated power supply, a power-consuming functional component and a power-taking contact are arranged on the cabinet door. The integrated power supply includes a power supply main body and a power storage unit which are electrically connected. The power supply main body is electrically connected with the power-consuming functional component and the power-taking contact respectively. A power supply contact for connecting an external power supply is arranged on the cabinet body. The power-taking contact and the power supply contact are arranged opposite to each other and are movably abutted.
[0007] In some embodiments, contact ends are arranged on both the power-taking contact and the power supply contact. The contact end of any one of the power-taking contact and the power supply contact is an arc-shaped convex structure, and the contact end of the other is an arc-shaped concave structure.
[0008] In some embodiments, a back panel is provided on one side of the cabinet door close to the cabinet body. An installation cavity is provided on the side of the back panel facing away from the cabinet body. An installation hole communicating with the installation cavity is provided through the back panel. The integrated power supply and the electrical function components are arranged in the installation cavity. One end of the power-taking contact is arranged in the installation cavity and is electrically connected to the power supply main body. The other end of the power-taking contact penetrates through the installation hole and is exposed outside the back panel.
[0009] In some embodiments, the cabinet door includes a mirror layer, and the mirror layer and the back panel enclose to form the installation cavity.
[0010] In some embodiments, the electrical function component includes a defogging component, and the defogging component includes a heating defogging film, and the heating defogging film is arranged on the side of the mirror layer facing the installation cavity.
[0011] In some embodiments, a receiving groove for receiving the integrated power supply and / or the electrical function components and a wire groove for receiving wires are provided in the installation cavity.
[0012] In some embodiments, the electrical function component includes a lighting component, and the lighting component includes a light source. The receiving groove includes a first groove body at the four peripheral edges of the cabinet door, and the light source is arranged in the first groove body.
[0013] In some embodiments, the receiving groove includes a second groove body for receiving the integrated power supply. A support partition is provided in the installation cavity, and the support partition encloses to form the second groove body.
[0014] In some embodiments, the cabinet body is provided with a partition cavity. A cover plate is provided on the side of the partition cavity facing the cabinet door. A through hole is provided through the cover plate. One end of the power supply contact is arranged in the partition cavity, and the other end is exposed outside the partition cavity through the through hole.
[0015] In some embodiments, a touch control is provided on the cabinet door, and the touch control is electrically connected to the power supply main body.
[0016] The beneficial effects of the embodiments of the present utility model are as follows:
[0017] This mirror cabinet integrates the power supply and electrical function components on the cabinet door. Power-taking contacts and power-supplying contacts are correspondingly arranged on the cabinet door and the cabinet body. Thus, when the cabinet door is closed, the power-taking contact and the power-supplying contact are in contact with each other to connect the integrated power supply to the external power supply. The integrated power supply can supply power to the electrical function components through the external power supply, and a power storage unit is arranged in the integrated power supply. When the cabinet door is opened, the power storage unit can provide backup power, and the electrical function components can also operate normally. The overall structure is simple. The integrated power supply, the electrical function components, and the wires between them can be centrally installed on the cabinet door, effectively solving the problems in the prior art such as the wires becoming loose, falling off, or being damaged due to collision with the cabinet door gap or being frequently pulled. The cabinet door will not be difficult to open or close due to the wires, and there will be no problem of exposed wires between the cabinet door and the cabinet body, resulting in better aesthetics. The installation and maintenance of the integrated power supply and the electrical function components are more convenient and fast. At the same time, the electrical function components can be used normally whether the cabinet door is closed or opened, providing a better user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 FIG. 6 is a schematic structural view of a mirror cabinet (when the cabinet door is open) according to an embodiment of the present invention.
[0019] Figure 2 FIG. 10 is a schematic structural view of a mirror cabinet (without a mirror layer and a defogging component) according to an embodiment of the present invention.
[0020] Figure 3 FIG. 14 is one perspective of an exploded view of a mirror cabinet according to an embodiment of the present invention.
[0021] Figure 4 FIG. 18 is another perspective of an exploded view of a mirror cabinet according to an embodiment of the present invention.
[0022] Figure 5 FIG. 22 is a schematic structural view of a power-taking contact and a power-taking contact according to an embodiment of the present invention.
[0023] Figure 6 FIG. 26 is a schematic structural view of a mirror layer and a touch control component according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] The present invention will be further described below with reference to the drawings and embodiments:
[0025] Please refer to Figures 1 to 3 As shown, this embodiment discloses a mirror cabinet, including a cabinet door 1 and a cabinet body. An integrated power supply 3, an electrical function component 4, and a power-taking contact 5 are arranged on the cabinet door 1. The integrated power supply 3 includes a power supply main body and a power storage unit that are electrically connected. The power supply main body is electrically connected to the electrical function component 4 and the power-taking contact 5 respectively. A power-supplying contact 6 for connecting to an external power supply is arranged on the cabinet body. The power-taking contact 5 and the power-supplying contact 6 are arranged opposite to each other and are in movable contact.
[0026] When the cabinet door 1 is closed, the power-taking contact 5 on the cabinet door 1 conflicts with the power supply contact 6 on the cabinet body, and the integrated power supply 3 is connected to the external power supply. The external power supply energizes the power supply body through the power supply contact 6 and the power-taking contact 5. At this time, the integrated power supply 3 supplies power to the power-consuming functional component 4 through the power supply body. At the same time, the storage unit stores electricity to provide backup power.
[0027] When the cabinet door 1 is opened, the power supply contacts 5 on the cabinet door 1 and the power supply contacts 6 on the cabinet body are separated from each other as the cabinet door 1 opens, and the path between the integrated power supply 3 and the external power supply is disconnected. The integrated power supply 3 cannot supply power to the power-consuming functional component 4 through the external power supply, but the storage unit can provide backup power, so that the power-consuming functional component 4 can also operate normally when the cabinet door 1 is opened.
[0028] In this embodiment, the integrated power supply 3 and the power-using functional component 4 are integrated on the cabinet door 1. The cabinet door 1 and the cabinet body are provided with power-taking contacts 5 and power supply contacts 6 respectively. Thus, when the cabinet door 1 is closed, the power-taking contacts 5 and the power supply contacts 6 contact each other and the integrated power supply 3 is connected to the external power supply. The integrated power supply 3 can supply power to the power-using functional component 4 through the external power supply, and a storage unit is provided in the integrated power supply 3. When the cabinet door 1 is opened, the storage unit can provide backup power, and the power-using functional component 4 can also operate normally. The overall structure is simple and integrated. The power supply 3, the power-consuming functional component 4 and the wires between the two can be installed centrally on the cabinet door 1, effectively solving the problems in the prior art of loosening, falling off, and damage of the wires due to collision with the cabinet door gap or frequent pulling. The cabinet door 1 will not open and close smoothly due to the wires, and there will be no problem of exposed wires between the cabinet door 1 and the cabinet body, which makes it more aesthetically pleasing. The installation and maintenance of the integrated power supply 3 and the power-consuming functional component 4 are more convenient and quick. At the same time, the power-consuming functional component 4 can be used normally when the cabinet door 1 is closed or opened, and the user experience is better.
[0029] See also Figure 4 and Figure 5 As shown, both the power contact 5 and the power contact 6 are provided with contact ends. The contact end of any one of the power contact 5 and the power contact 6 is an arc-shaped protruding structure 71 , and the contact end of the other is an arc-shaped recessed structure 72 .
[0030] By setting the contact ends of the power taking contact 5 and the power supply contact 6 as a matching arc-shaped protruding structure 71 and an arc-shaped recessed structure 72, when the power taking contact 5 and the power supply contact 6 contact each other, the arc-shaped protruding structure 71 is stuck in the arc-shaped recessed structure 72, thereby making the connection between the power taking contact 5 and the power supply contact 6 more stable and avoiding poor contact.
[0031] In the first specific embodiment, the contact end of the electrical contact 5 is an arc-shaped protruding structure 71 , and the contact end of the power supply contact 6 is an arc-shaped recessed structure 72 .
[0032] Preferably, in the second specific embodiment, the contact end of the power-taking contact 5 is an arc-shaped convex structure 71, and the contact end of the power-supplying contact 6 is an arc-shaped concave structure 72. In this embodiment, the second specific embodiment is adopted. Since the power-supplying contact 6 is arranged facing the user when the cabinet door 1 is opened, setting the contact end of the power-supplying contact 6 as an arc-shaped concave structure 72 can avoid the risk of electric shock.
[0033] See Figures 2 to 4 As shown, on one side of the cabinet door 1 close to the cabinet body, there is a back panel 11. On the side of the back panel 11 facing away from the cabinet body, there is an installation cavity 12. An installation hole 13 communicating with the installation cavity 12 is penetrated through the back panel 11. The integrated power supply 3 and the power-consuming functional components 4 are arranged in the installation cavity 12. One end of the power-taking contact 5 is arranged in the installation cavity 12 and is electrically connected to the power supply main body. The other end of the power-taking contact 5 penetrates through the installation hole 13 and is exposed outside the back panel 11. The integrated power supply 3 and the power-consuming functional components 4 are arranged in the installation cavity 12, effectively protecting the components, and the appearance of the cabinet door 1 is more concise and beautiful.
[0034] See Figure 2 、 Figure 3 and Figure 6 As shown, the cabinet door 1 includes a mirror layer 14. The mirror layer 14 and the back panel 11 enclose to form the installation cavity 12.
[0035] See Figure 3 and Figure 4 As shown, the power-consuming functional component 4 includes a defogging component 41. The defogging component 41 includes a heating defogging film. The heating defogging film is arranged on the side of the mirror layer 14 facing the installation cavity 12, so as to facilitate heating the mirror layer 14 and prevent or reduce the fogging of the mirror surface due to water vapor condensation.
[0036] See Figure 2 and Figure 3 As shown, in the installation cavity 12, there is a receiving groove 15 for receiving the integrated power supply 3 and / or the power-consuming functional components 4 and a wire groove 16 for receiving wires, so that the integrated power supply 3 and the power-consuming functional components 4 are orderly installed in the installation cavity 12, facilitating the installation and maintenance of the integrated power supply 3 and the power-consuming functional components 4. [[ID=3)]]
[0037] Among them, the back panel 11 can be an injection molded part, and at least part of the receiving groove 15 and the wire groove 16 can be formed synchronously when the back panel 11 is injection molded, which is beneficial to production and manufacturing.
[0038] See [[ID=)6]] Figure 2 and Figure 3As shown, the electrical function component 4 includes a lighting component 42. The lighting component 42 includes a light source. The receiving groove 15 includes a first groove body 151 at the four peripheral edges of the cabinet door 1. The light source is arranged in the first groove body 151. In this embodiment, the light source is a light strip. By providing the first groove body 151, the convenience of installing the light source is improved. In this embodiment, the first groove body 151 is formed synchronously during the injection molding of the back plate 11.
[0039] The receiving groove 15 includes a second groove body 152 for receiving the integrated power supply 3. A support partition is provided in the installation cavity 12, and the support partition encloses to form the second groove body 152. On the one hand, the support partition can improve the overall strength of the cabinet door 1, and at the same time can form the second groove body 152 for installing the integrated power supply 3.
[0040] See Figure 4 and Figure 6 As shown, the cabinet body is provided with a partition cavity 21. A cover plate is provided on one side of the partition cavity 21 facing the cabinet door 1. The cover plate is provided with a through hole. One end of the power supply contact 6 is arranged in the partition cavity 21, and the other end is exposed outside the partition cavity 21 through the through hole. The power supply contact 6 and the electric wire are installed in the partition cavity 21 to prevent the power supply contact 6 from being collided and squeezed during storage.
[0041] See Figure 6 As shown, a touch control component 8 is provided on the cabinet door 1. The touch control component 8 is electrically connected to the power supply main body. The touch control component 8 is arranged on the cabinet door 1, so that the touch control component 8 and the integrated power supply 3 are integrated on the cabinet door 1.
[0042] Of course, the above drawings are only the preferred embodiments of the present invention, and are not used to limit the scope of use of the present invention. Therefore, all equivalent changes made on the principle of the present invention should be included in the protection scope of the present invention.
Claims
1. A mirror cabinet, comprising a cabinet door and a cabinet body, characterized in that, The cabinet door is provided with an integrated power supply, an electrical function component and a power-taking contact. The integrated power supply includes a power supply main body and a power storage unit which are electrically connected. The power supply main body is electrically connected to the electrical function component and the power-taking contact respectively. The cabinet body is provided with a power supply contact for connecting an external power supply. The power-taking contact is arranged opposite to the power supply contact and is in movable contact therewith.
2. The mirror cabinet according to claim 1, characterized in that, The power-taking contact and the power supply contact are both provided with contact ends. The contact end of any one of the power-taking contact and the power supply contact is an arc-shaped convex structure, and the contact end of the other is an arc-shaped concave structure.
3. The mirror cabinet according to claim 1, wherein, One side of the cabinet door close to the cabinet body is provided with a back plate. An installation cavity is arranged on the side of the back plate facing away from the cabinet body. An installation hole communicating with the installation cavity is penetrated through the back plate. The integrated power supply and the electrical function component are arranged in the installation cavity. One end of the power-taking contact is arranged in the installation cavity and is electrically connected to the power supply main body. The other end of the power-taking contact penetrates through the installation hole and is exposed outside the back plate.
4. The mirror cabinet according to claim 3, wherein, The cabinet door includes a mirror layer. The mirror layer and the back plate enclose to form the installation cavity.
5. The mirror cabinet according to claim 4, characterized in that, The electrical function component includes a defogging component. The defogging component includes a heating defogging film. The heating defogging film is arranged on the side of the mirror layer facing the installation cavity.
6. The mirror cabinet according to claim 3, characterized in that, The installation cavity is provided with a receiving groove for receiving the integrated power supply and / or the electrical function component and a wire groove for receiving wires.
7. The mirror cabinet according to claim 6, characterized in that, The electrical function component includes a lighting component. The lighting component includes a light source. The receiving groove includes a first groove body at the four peripheral edges of the cabinet door. The light source is arranged in the first groove body.
8. The mirror cabinet according to claim 6, characterized in that, The receiving groove includes a second groove body for receiving the integrated power supply. A support partition is arranged in the installation cavity. The support partition encloses to form the second groove body.
9. The mirror cabinet according to any one of claims 1 to 8, characterized in that, The cabinet body is provided with a partition cavity. One side of the partition cavity facing the cabinet door is provided with a cover plate. A through hole is penetrated through the cover plate. One end of the power supply contact is arranged in the partition cavity, and the other end is exposed outside the partition cavity through the through hole.
10. The mirror cabinet according to any one of claims 1 to 8, characterized in that, The cabinet door is provided with a touch control component. The touch control component is electrically connected to the power supply main body.