A type of makeup mirror
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-08-14
AI Technical Summary
[0003]现有的带补光灯的化妆镜的线束存在外露的情况,虽然设计时会对暴露的线束进行一定的固定,但由于车内环境的复杂性以及长期使用的磨损因素,线束外露仍可能存在一定的安全隐患
[0022]本申请实施例提供的化妆镜的有益效果包括,例如:为了化妆镜减少线束外露的情况,设计了一种化妆镜,该化妆镜包括底座、化妆镜主体和补光灯,化妆镜主体可转动地设置于底座,化妆镜主体内设有第一走线腔,第一走线腔内设置有第一供电线束,补光灯设置于化妆镜主体内,补光灯设置有补光灯线束,补光灯线束的一端延伸至第一走线腔内并用于与第一供电线束的一端电连接。
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Figure CN224631620U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of vehicle-mounted equipment technology, and more specifically, to a cosmetic mirror. Background Technology
[0002] With the development of the automotive industry and the increasing demand from consumers for in-car comfort and convenience, in-car vanity mirrors have become a standard feature in many models. They are especially frequently used by female users. To meet the needs of users in low-light environments, some models are also equipped with in-car vanity mirrors with integrated lighting. These mirrors typically require connection to the vehicle's power system, with the lighting powered via wiring harnesses.
[0003] The wiring harness of existing vanity mirrors with auxiliary lights is exposed. Although the exposed wiring harness is fixed to a certain extent during the design, the complexity of the in-vehicle environment and wear and tear from long-term use may still pose certain safety hazards. Utility Model Content
[0004] The purpose of this application includes, for example, providing a makeup mirror that can reduce the exposure of wire harnesses.
[0005] The embodiments of this application can be implemented as follows:
[0006] An embodiment of this application provides a makeup mirror, which includes a base, a makeup mirror body, and a fill light. The makeup mirror body is rotatably disposed on the base. The makeup mirror body has a first wiring cavity, and a first power supply wire harness is disposed in the first wiring cavity. The fill light is disposed in the makeup mirror body, and the fill light has a fill light wire harness. One end of the fill light wire harness extends into the first wiring cavity and is used to electrically connect with one end of the first power supply wire harness.
[0007] Optionally, the base is provided with a cylindrical shaft, which passes through the body of the makeup mirror and extends into the first wiring cavity. The body of the makeup mirror is rotatably connected to the cylindrical shaft, and the first power supply harness is disposed inside the cylindrical shaft.
[0008] Optionally, a retaining spring is provided in the first wiring cavity, the retaining spring is fixedly connected to the body of the cosmetic mirror, and the retaining spring is sleeved on the cylindrical shaft.
[0009] Optionally, the retaining ring is provided with a spring piece, and the cylindrical shaft is provided with a clearance groove, so that the spring piece can pass through the clearance groove during the rotation of the makeup mirror body relative to the cylindrical shaft;
[0010] When the main body of the makeup mirror rotates to the point where the spring and the recess are misaligned, the spring abuts against the side wall of the cylindrical shaft, and the main body of the makeup mirror is in the open state; when the main body of the makeup mirror rotates to the point where the spring and the recess are directly opposite each other, the spring part extends into the recess, and the main body of the makeup mirror is in the closed state.
[0011] Optionally, one end of the first power supply harness is provided with a terminal, the terminal is located in the first wiring cavity, the terminal is provided with a contact piece, one end of the fill light harness is provided with a connecting piece, the connecting piece is provided on the side of the terminal, and the connecting piece is used to conduct the circuit when in contact with the contact piece.
[0012] Optionally, the number of fill lights is at least two, and the fill light harness is connected to all of the fill lights simultaneously;
[0013] The fill lights are connected in series, and one of the fill lights is equipped with a first switch; or, the fill lights are connected in parallel, and each fill light is equipped with a first switch.
[0014] Optionally, the number of fill lights is at least two, the fill light harness is connected to all of the fill lights simultaneously, and the fill lights are connected in series;
[0015] The makeup mirror also includes a tabletop, the base is disposed on the tabletop, and a second switch is disposed on the tabletop, the second switch being connected to the fill light harness.
[0016] Optionally, the main body of the cosmetic mirror includes an outer panel, an inner panel, and a lens, wherein the outer panel and the inner panel are connected, and the first wiring cavity is formed between the outer panel and the inner panel;
[0017] The fill light harness is located between the outer panel and the inner panel. The fill light is disposed on the outer panel facing the inner panel and on the side of the inner panel. The lens is disposed on the inner panel away from the outer panel and covers the fill light.
[0018] Optionally, the makeup mirror further includes a tabletop, a linkage mechanism, and a second power supply harness. The base and the linkage mechanism are both disposed on the tabletop. The second power supply harness passes through the linkage mechanism, and one end of the second power supply harness extends out of the linkage mechanism and into the tabletop. The end of the first power supply harness away from the fill light harness is connected to the end of the second power supply harness that extends into the tabletop.
[0019] Optionally, the linkage mechanism includes a rotating arm, which has a second wiring cavity. The two ends of the rotating arm are respectively provided with an inlet and an outlet that communicate with the second wiring cavity. The second power supply harness enters the second wiring cavity through the inlet and exits through the outlet, and is connected to the end of the first power supply harness away from the fill light harness.
[0020] Optionally, the makeup mirror also includes a support frame, which is connected to both the tabletop and the base.
[0021] Optionally, a support groove is formed between the main body of the makeup mirror and the base when the mirror is in the open state.
[0022] The beneficial effects of the makeup mirror provided in this application embodiment include, for example, reducing the exposure of wire harnesses in the makeup mirror, a makeup mirror is designed, the makeup mirror includes a base, a makeup mirror body and a fill light, the makeup mirror body is rotatably disposed on the base, the makeup mirror body is provided with a first wiring cavity, the first wiring cavity is provided with a first power supply wire harness, the fill light is disposed in the makeup mirror body, the fill light is provided with a fill light wire harness, one end of the fill light wire harness extends into the first wiring cavity and is used to electrically connect with one end of the first power supply wire harness.
[0023] By placing the fill light inside the main body of the makeup mirror, and providing a first wiring cavity inside the main body of the makeup mirror, a first power supply harness is installed in the first wiring cavity, and the first power supply harness and the fill light harness are electrically connected inside the first wiring cavity, thereby achieving a hidden arrangement of the harness and reducing the safety hazards caused by exposed harnesses. Attached Figure Description
[0024] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0025] Figure 1 This is a schematic diagram of the overall makeup mirror in the embodiments of this application;
[0026] Figure 2 This is an exploded view of the makeup mirror in an embodiment of this application;
[0027] Figure 3 This is a schematic diagram illustrating the internal structure of the main body of the makeup mirror in an embodiment of this application;
[0028] Figure 4 This is a schematic diagram illustrating the wiring harness connection relationship in the embodiments of this application;
[0029] Figure 5 This is a partial structural diagram of the main body of the cosmetic mirror in an embodiment of this application;
[0030] Figure 6 for Figure 5 A schematic diagram showing the electrical connection between the contact piece and the connecting piece in the AA direction;
[0031] Figure 7 for Figure 5 A schematic diagram showing the disconnection of the contact piece and connecting piece in the AA direction;
[0032] Figure 8 This is a schematic diagram illustrating the first type of supplementary lighting control method in an embodiment of this application;
[0033] Figure 9 This is a schematic diagram illustrating the second type of fill light control method in an embodiment of this application;
[0034] Figure 10 This is a schematic diagram illustrating a third type of fill light control method in an embodiment of this application;
[0035] Figure 11 This is a schematic diagram illustrating the fit between the snap ring and the cylinder shaft in an embodiment of this application;
[0036] Figure 12 This is a schematic diagram illustrating the positional relationship between the retaining spring and the cylinder shaft when the main body of the makeup mirror is in the closed state, as shown in the embodiments of this application;
[0037] Figure 13 This is a schematic diagram illustrating the positional relationship between the retaining spring and the cylinder shaft when the main body of the makeup mirror is in the open state, as shown in the embodiments of this application;
[0038] Figure 14 This is an exploded view of a partial structure of the makeup mirror in an embodiment of this application;
[0039] Figure 15 This is a schematic diagram of the linkage mechanism from a first-view perspective in an embodiment of this application;
[0040] Figure 16 This is a schematic diagram of the linkage mechanism from a second perspective in an embodiment of this application;
[0041] Figure 17 This is a schematic diagram illustrating the application of a cosmetic mirror in a car dashboard, as shown in an embodiment of this application.
[0042] Figure 18 This is a schematic diagram illustrating the application of a cosmetic mirror in a car seat in an embodiment of this application.
[0043] Icons: 10-Makeup mirror; 100-Base; 110-Cylinder shaft; 111-Giveaway groove; 120-Support groove; 200-Makeup mirror body; 210-First wiring cavity; 220-First power supply harness; 221-Terminal; 2211-Contact piece; 230-Snap ring; 231-Spring piece; 240-Outer plate; 250-Inner plate; 260-Lens; 300-Fill light; 310-Fill light harness; 311-Connecting piece; 320-First switch; 400-Tabletop; 410-Cover plate; 420-Second switch; 500-Linkage mechanism; 510-First rotating arm; 511-Inlet; 512-Outlet; 513-Shielding cover; 520-Second rotating arm; 530-Mounting plate; 600-Second power supply harness; 700-Support frame. Detailed Implementation
[0044] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0045] Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of the application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0046] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0047] In the description of this application, it should be noted that if terms such as "upper," "lower," "inner," or "outer" are used to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0048] Furthermore, the terms "first" and "second" are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.
[0049] It should be noted that, where there is no conflict, the features in the embodiments of this application can be combined with each other.
[0050] Existing makeup mirrors with integrated lighting have exposed wiring harnesses. Although the design includes some securing of the exposed wiring harnesses, the complexity of the vehicle interior environment and the wear and tear from long-term use still pose certain safety hazards. For example, the insulation layer of the wiring harness may be damaged due to long-term friction, or it may be prone to aging in the external environment, increasing the risk of short circuits. Embodiments of this application provide a makeup mirror that at least addresses the aforementioned technical problems.
[0051] Please refer to Figures 1-4 The makeup mirror 10 provided in the embodiments of this application includes a base 100, a makeup mirror body 200, and a fill light 300. The makeup mirror body 200 is rotatably disposed on the base 100. A first wiring cavity 210 is provided in the makeup mirror body 200. A first power supply wire harness 220 is disposed in the first wiring cavity 210. The fill light 300 is disposed in the makeup mirror body 200. The fill light 300 is provided with a fill light wire harness 310. One end of the fill light wire harness 310 extends into the first wiring cavity 210 and is connected to one end of the first power supply wire harness 220.
[0052] The first power supply harness 220 provides power to the fill light 300. The fill light 300 itself has a fill light harness 310, one end of which extends into the first wiring cavity 210 and is used to electrically connect with one end of the first power supply harness 220. This design allows the power supply line of the fill light 300 to be connected through internal wiring, effectively avoiding the safety hazards caused by exposed external wiring harnesses in traditional makeup mirrors 10.
[0053] Since the main body 200 of the makeup mirror needs to rotate within a certain angle range, its internal wiring harness must have a certain amount of leeway to ensure the stability and reliability of the electrical connection during rotation. Therefore, the first wiring cavity 210 not only provides space for the wiring harness but also reserves the necessary leeway for its movement, thus ensuring the structural compatibility between the rotational action and the electrical connection.
[0054] By placing the fill light 300 inside the makeup mirror body 200, and also providing a first wiring cavity 210 inside the makeup mirror body 200, a first power supply harness 220 is provided inside the first wiring cavity 210, and the first power supply harness 220 and the fill light harness 310 are electrically connected inside the first wiring cavity 210, thereby achieving a hidden arrangement of the harness and reducing the safety hazards caused by exposed harnesses.
[0055] In some embodiments, a cylindrical shaft 110 is provided on the base 100, the cylindrical shaft 110 passes through the makeup mirror body 200 and extends into the first wiring cavity 210, the makeup mirror body 200 is rotatably connected to the cylindrical shaft 110, and the first power supply harness 220 is provided in the cylindrical shaft 110.
[0056] The cylindrical shaft 110 is a cylindrical body open at both ends. It not only serves as a rotational support structure between the makeup mirror body 200 and the base 100, but also functions as a wiring harness channel. Specifically, the cylindrical shaft 110 extends along the rotation axis of the makeup mirror body 200 and penetrates part of its structure. The internal space of the cylindrical shaft 110 is used to accommodate the first power supply wiring harness 220. This design allows the first power supply wiring harness 220 to maintain a relatively fixed position during the rotation of the makeup mirror body 200, avoiding problems such as wire pulling, tangling, and wear caused by the rotation of the makeup mirror body 200, thereby improving the stability and service life of the overall structure.
[0057] Since the cylindrical shaft 110 itself serves as the rotation center, the routing of the first power supply harness 220 located within the cylindrical shaft 110 is basically consistent with the rotation axis of the makeup mirror body 200. Therefore, when the makeup mirror body 200 rotates, the first power supply harness 220 is not prone to twisting or shifting, thus ensuring the reliability of the electrical connection.
[0058] Please refer to Figures 5-7 In some embodiments, one end of the first power supply harness 220 is provided with a terminal 221, the terminal 221 is located in the first wiring cavity 210, and a contact piece 2211 is provided on the terminal 221. One end of the fill light harness 310 is provided with a connecting piece 311, the connecting piece 311 is provided on the side of the terminal 221, and the connecting piece 311 is used to conduct the circuit when in contact with the contact piece 2211.
[0059] When the base 100 is provided with a cylindrical shaft 110, the terminal 221 extends outside the cylindrical shaft 110 and is located inside the first wiring cavity 210; when the base 100 is not provided with a cylindrical shaft 110, the first power supply harness 220 can be fixed to the makeup mirror body 200 by pre-embedding, as long as one end of the first power supply harness 220 with the terminal 221 extends into the first wiring cavity 210. The embodiments of this application are described using the case where the base 100 is provided with a cylindrical shaft 110 as an example.
[0060] Terminal 221, as a key component for electrical connection, is equipped with a contact piece 2211. This contact piece 2211 is located on the outer surface of terminal 221 and is used to form a contact engagement with the connecting piece 311 at one end of the fill light harness 310. The connecting piece 311 of the fill light harness 310 is located on the side of terminal 221. When the makeup mirror body 200 rotates around the cylindrical axis 110 to a specific angle, the connecting piece 311 contacts the contact piece 2211, thereby forming a closed circuit, allowing the fill light 300 to operate normally. Conversely, when the makeup mirror body 200 rotates to a position where the connecting piece 311 and the contact piece 2211 disengage, the circuit is broken, and the fill light 300 stops working.
[0061] The first power supply harness 220 and the fill light harness 310 adopt a rotary contact electrical connection method. The fill light 300, the fill light harness 310, and the connecting piece 311 all rotate together with the makeup mirror body 200, while the terminal 221 and its contact piece 2211 are fixed on the cylindrical shaft 110 and do not rotate with the makeup mirror body 200. This design enables dynamic on / off control of the circuit during rotation, thereby simplifying the overall structure and reducing manufacturing costs while ensuring the reliability of the electrical connection.
[0062] By linking the circuit's on / off state to the rotational position of the makeup mirror body 200, automatic start / stop control of the fill light 300's fill light function is achieved. For example, when the makeup mirror body 200 is closed, the connecting piece 311 and the contact piece 2211 are in a non-contact state, the circuit is broken, and the fill light 300 does not work; however, when the makeup mirror body 200 is opened to a certain usage angle, the connecting piece 311 rotates with the makeup mirror body 200 and contacts the contact piece 2211, the circuit is connected, and the fill light 300 automatically lights up, thereby improving the user's convenience and level of intelligence.
[0063] For example, two contact pieces 2211 are disposed opposite to each other on the terminal 221, and two connecting pieces 311 are disposed at one end of the fill light harness 310. The two connecting pieces 311 are respectively disposed on both sides of the terminal 221, and the two connecting pieces 311 conduct the circuit when they contact the two contact pieces 2211 respectively.
[0064] It is understandable that the cylindrical shaft 110 does not completely penetrate the body of the makeup mirror 200. The first wiring cavity 210 is a strip-shaped cavity. The cylindrical shaft 110 extends into the first wiring cavity 210 along the extension direction of the first wiring cavity 210. The length of the cylindrical shaft 110 in the first wiring cavity 210 is less than half the overall length of the first wiring cavity 210, so that the terminal 221 can be engaged with the connecting piece 311 after it extends out of the cylindrical shaft 110. There can be two cylindrical shafts 110. The two cylindrical shafts 110 are respectively inserted into the first wiring cavity 210 from both sides of the body of the makeup mirror 200. The first power supply harness 220 can be set in one of the cylindrical shafts 110.
[0065] Please refer to Figure 8 , Figure 9 In one optional embodiment, the number of fill lights 300 is at least two, and the fill light harness 310 is connected to all the fill lights 300 at the same time; the fill lights 300 are connected in series, and one of the fill lights 300 is provided with a first switch 320; or, the fill lights 300 are connected in parallel, and each fill light 300 is provided with a first switch 320.
[0066] The number of fill lights 300 can be determined according to actual needs. For example, two fill lights 300 can be symmetrically arranged along the length of the makeup mirror body 200, and the first switch 320 can be a touch switch.
[0067] When the fill lights 300 are connected in series, one of the fill lights 300 is equipped with a first switch 320. When the makeup mirror body 200 is opened to a certain usage angle so that the connecting piece 311 contacts the contact piece 2211, the user can turn the circuit on or off by touching the first switch 320. When the circuit is on, all the fill lights 300 are turned on simultaneously, and when the circuit is off, all the fill lights 300 are turned off simultaneously.
[0068] When the fill lights 300 are connected in parallel, each fill light 300 is equipped with a first switch 320. When the makeup mirror body 200 is opened to a certain usage angle so that the connecting piece 311 contacts the contact piece 2211, the user can turn on or off the circuit of the corresponding fill light 300 by touching any first switch 320, thereby realizing the zoned control of the fill lights 300.
[0069] Please refer to Figure 10 In another optional embodiment, the number of fill lights 300 is at least two, and the fill light harness 310 is connected to all the fill lights 300 at the same time, and the fill lights 300 are connected in series; the makeup mirror 10 also includes a table 400, the base 100 is disposed on the table 400, and a second switch 420 is disposed on the table 400, and the second switch 420 is connected to the fill light harness 310.
[0070] For the makeup mirror 10 including the tabletop 400, a second switch 420 may be provided on the tabletop 400. The second switch 420 may be a physical switch and is electrically connected to the fill light harness 310.
[0071] When the makeup mirror body 200 is opened to a certain usage angle so that the connecting piece 311 contacts the contact piece 2211, the user can turn the circuit on or off by pressing the second switch 420. When the circuit is on, all the fill lights 300 are turned on simultaneously, and when the circuit is off, all the fill lights 300 are turned off simultaneously.
[0072] In some embodiments, a retaining ring 230 is provided in the first wiring cavity 210, the retaining ring 230 is fixedly connected to the makeup mirror body 200, and the retaining ring 230 is sleeved on the cylindrical shaft 110.
[0073] The retaining spring 230 is fixed inside the first wiring cavity 210 of the makeup mirror body 200 and sleeved on the cylindrical shaft 110. Since the retaining spring 230 is fixedly connected to the makeup mirror body 200, when the makeup mirror body 200 rotates around the cylindrical shaft 110, the retaining spring 230 rotates synchronously, while the cylindrical shaft 110 itself remains stationary. When sleeved on the cylindrical shaft 110, the inner surface of the retaining spring 230 has a certain frictional force with the outer surface of the cylindrical shaft 110. This frictional force is sufficient to provide adequate resistance to the deflection tendency caused by the makeup mirror body 200's own weight or slight external disturbances when the makeup mirror body 200 rotates to any angle.
[0074] The design of the retaining spring 230 allows the makeup mirror body 200 to obtain a certain positioning resistance during rotation, thereby achieving a stepless hovering function. When adjusting the angle of the makeup mirror body 200, the user only needs to rotate the makeup mirror body 200 to the desired position, and the retaining spring 230 can keep the makeup mirror body 200 stably in that position through frictional engagement with the cylindrical shaft 110, preventing it from sagging or wobbling due to gravity, thus improving the convenience and stability of use.
[0075] Since the retaining ring 230 is sleeved on the outside of the cylindrical shaft 110, it will not interfere with the first power supply harness 220. Furthermore, the type of retaining ring 230 can be adjusted according to actual usage requirements to achieve different damping effects, thereby meeting the operational feel and positioning accuracy requirements in different usage scenarios. In other embodiments, the retaining ring 230 can also be replaced with other components capable of producing a damping effect; this is not limited.
[0076] Please refer to Figures 11-13 In some embodiments, the retaining ring 230 is provided with a spring piece 231, and the cylindrical shaft 110 is provided with a relief groove 111. During the rotation of the makeup mirror body 200 relative to the cylindrical shaft 110, the spring piece 231 can pass through the relief groove 111. When the makeup mirror body 200 rotates to the point where the spring piece 231 is misaligned with the relief groove 111, the spring piece 231 abuts against the side wall of the cylindrical shaft 110, and the makeup mirror body 200 is in the open state. When the makeup mirror body 200 rotates to the point where the spring piece 231 is directly opposite the relief groove 111, part of the spring piece 231 extends into the relief groove 111, and the makeup mirror body 200 is in the closed state.
[0077] The spring piece 231 on the retaining ring 230 serves as a key elastic element, possessing a certain elastic deformation capability and capable of contacting the outer wall of the cylindrical shaft 110 during the rotation of the makeup mirror body 200. As the makeup mirror body 200 rotates around the cylindrical shaft 110, the spring piece 231 rotates along with the retaining ring 230 and extends into the clearance groove 111 when the makeup mirror body 200 rotates to the closed state.
[0078] When the makeup mirror body 200 is rotated to the open state, that is, when the spring 231 and the relief groove 111 are misaligned, the spring 231 opens outward due to elasticity and presses against the side wall of the cylindrical shaft 110, thereby forming a certain frictional resistance. This resistance is sufficient to keep the makeup mirror body 200 suspended at any angle position when no external force is applied.
[0079] When the makeup mirror body 200 is rotated to the closed state, that is, when the spring 231 and the relief groove 111 are directly opposite each other, the spring 231 no longer presses against the side wall of the cylindrical shaft 110 due to the presence of the relief groove 111 on the cylindrical shaft 110, but instead partially extends into the relief groove 111, thereby releasing the original elastic pressure. At this time, the frictional resistance applied by the spring 231 is significantly reduced, and the starting force required by the user to open the makeup mirror body 200 the next time is also reduced, making the makeup mirror body 200 easier to rotate and open, improving the smoothness of operation and user experience.
[0080] Please refer to Figure 14 In some embodiments, the makeup mirror body 200 includes an outer plate 240, an inner plate 250, and a lens 260. The outer plate 240 and the inner plate 250 are connected. A first wiring cavity 210 is formed between the outer plate 240 and the inner plate 250. A fill light harness 310 is located between the outer plate 240 and the inner plate 250. A fill light 300 is disposed on the outer plate 240 facing the inner plate 250 and located on the side of the inner plate 250. The lens 260 is disposed on the side of the inner plate 250 away from the outer plate 240 and covers the fill light 300.
[0081] The main body 200 of the makeup mirror is composed of an outer panel 240 and an inner panel 250. The outer panel 240 and the inner panel 250 are joined together by welding or other fixed connection methods, thereby forming a first wiring cavity 210 between the outer panel 240 and the inner panel 250.
[0082] The fill light 300 is disposed on the outer panel 240 facing the inner panel 250 and located on the side of the inner panel 250. For example, the fill light 300 includes two light panels, both of which are connected to the fill light harness 310 and are located on both sides of the inner panel 250. The lens 260 can be attached to the side of the inner panel 250 away from the outer panel 240 and simultaneously cover the inner panel 250 and the two light panels. The fill light harness 310 is arranged between the outer panel 240 and the inner panel 250, and one end of the fill light harness 310 extends into the first wiring cavity 210 so that the fill light harness 310 is not exposed during the opening and closing of the makeup mirror body 200.
[0083] In some embodiments, the makeup mirror 10 further includes a tabletop 400, a linkage mechanism 500, and a second power supply harness 600. The base 100 and the linkage mechanism 500 are both disposed on the tabletop 400. The second power supply harness 600 passes through the linkage mechanism 500, and one end of the second power supply harness 600 extends out of the linkage mechanism 500 and into the tabletop 400. One end of the first power supply harness 220 away from the fill light harness 310 is connected to the end of the second power supply harness 600 that extends into the tabletop 400.
[0084] The tabletop 400 serves as the support platform for the entire makeup mirror 10. It is equipped with a base 100 and a linkage mechanism 500. Both the base 100 and the linkage mechanism 500 are fixedly connected to the tabletop 400. The linkage mechanism 500 not only supports the tabletop 400, but also has a channel inside for wire harnesses to pass through, allowing the second power supply wire harness 600 to extend along the inside of the linkage mechanism 500, thus preventing the wire harness from being exposed.
[0085] The second power supply harness 600 is housed inside the linkage mechanism 500, with one end extending from the linkage mechanism 500 and further into the tabletop 400. This extended end is electrically connected to the end of the first power supply harness 220 away from the fill light harness 310 via a harness connector. The other end of the second power supply harness 600 is used for connection to an external power harness, allowing power input from the power harness to be transmitted sequentially through the second power supply harness 600, the first power supply harness 220, and the fill light harness 310 to the fill light 300, forming a complete power supply path. Because the second power supply harness 600 is housed inside the linkage mechanism 500 and the tabletop 400, it is not exposed to the external environment during use, effectively avoiding the risk of harness wear and improving the product's safety and durability.
[0086] Please refer to Figure 15 , Figure 16 In some embodiments, the linkage mechanism 500 includes a rotating arm, which has a second wiring cavity. The two ends of the rotating arm are respectively provided with an inlet 511 and an outlet 512 communicating with the second wiring cavity. The second power supply harness 600 passes through the inlet 511 into the second wiring cavity and passes through the outlet 512 to connect with the end of the first power supply harness 220 away from the supplementary light harness 310.
[0087] The second wiring cavity is located inside the rotating arm, forming a closed space for accommodating the wiring harness. The second wiring cavity has an inlet 511 at one end of the rotating arm and an outlet 512 at the other end, allowing the second power supply harness 600 to enter the second wiring cavity through the inlet 511, extend along the inside of the cavity to the outlet 512, and then exit, finally achieving electrical connection with the end of the first power supply harness 220 away from the supplementary light harness 310.
[0088] The second power supply harness 600 extends along the length of the rotating arm within the second wiring cavity and exits at the outlet 512, connecting to the first power supply harness 220 connection end inside the makeup mirror body 200. This design not only achieves the concealed arrangement of the second power supply harness 600 in the linkage mechanism 500, but also prevents power outages due to the movement of the rotating arm.
[0089] In some embodiments, the makeup mirror 10 further includes a support frame 700, which is connected to both the tabletop 400 and the base 100.
[0090] The support frame 700 is fixedly connected to both the tabletop 400 and the base 100 using bolts and other fasteners. This not only improves the bending resistance of the tabletop 400 when supporting the base 100 and the main body of the makeup mirror 200, but also enhances the connection strength between the base 100 and the tabletop 400, thereby improving the overall structural rigidity and stability of the makeup mirror 10. Furthermore, to cover the support frame 700, a cover plate 410 is provided on the side of the tabletop 400 where the support frame 700 is located. The cover plate 410 and the tabletop 400 can be engaged in a snap-fit manner to prevent the support frame 700 from being exposed.
[0091] When the user applies a certain external force to adjust the angle of the makeup mirror body 200 during use, the support frame 700 can apply a reverse support force to the base 100 through its rigid structure, suppressing the slight wobbling or offset tendency of the base 100 on the table 400, thereby ensuring the stability and reliability of the makeup mirror body 200 during use.
[0092] In an optional embodiment, the swing arm includes a first swing arm 510 and a second swing arm 520 of different lengths. The linkage mechanism 500 also includes a mounting plate 530. One end of the first swing arm 510 and the second swing arm 520 is hinged to the mounting plate 530, and the other end of the first swing arm 510 and the second swing arm 520 away from the mounting plate 530 is hinged to the support frame 700.
[0093] The second wiring cavity, the inlet 511, and the outlet 512 can all be located on the first rotating arm 510. A detachable cover 513 can be provided on one side of the first rotating arm 510. For example, the cover 513 can be glued or snapped onto the main body of the first rotating arm 510. When assembling the second power supply harness 600, the cover 513 is first removed, then the second power supply harness 600 is inserted into the main body of the first rotating arm 510, and both ends of the second power supply harness 600 are led out from the inlet 511 and the outlet 512, respectively. Finally, the cover 513 is put back onto the main body of the first rotating arm 510 to enclose the second power supply harness 600 in the second wiring cavity, achieving the effect of harness shielding.
[0094] When the mounting plate 530 is mounted on an external mounting base, the table 400 can be raised or lowered via the linkage mechanism 500. The external mounting base can be the metal frame of a car dashboard or the metal frame inside a car seat.
[0095] It is understood that the linkage mechanism 500 is an existing motion mechanism used to realize the raising or lowering of the table 400. Therefore, the principle of the linkage mechanism 500 will not be described in detail in this embodiment. In addition, there are generally two linkage mechanisms 500 symmetrically provided. The stability of the table 400 during the movement can be guaranteed by the two linkage mechanisms 500.
[0096] Please refer to Figure 17 In some embodiments, a support groove 120 is formed between the makeup mirror body 200 and the base 100 when the mirror is in the open state.
[0097] The main body 200 of the makeup mirror is rotatably mounted on the base 100. When rotated to the open position, it forms a support groove 120 with a certain depth between itself and the base 100. The shape and size of the support groove 120 are designed to fit common handheld electronic devices or reading utensils, such as mobile phones, books, and tablets, so that users can place these items in the support groove 120 while using the makeup mirror 10, and the main body 200 of the makeup mirror provides stable support.
[0098] The support groove 120 expands the application scenarios of the makeup mirror 10. Since the formation of the support groove 120 does not require additional support components, the makeup mirror body 200 can support the items. Therefore, while realizing the functional expansion, it does not increase the complexity of the overall structure, which helps to reduce manufacturing costs and assembly difficulty.
[0099] The base 100 may also be equipped with a USB or Type-C interface, which makes it convenient for users to charge mobile phones, tablets and other electrical devices. In some embodiments, the base 100 and the table 400 can be integrally formed.
[0100] Figure 17 The image shows the vanity mirror 10 mounted on a car dashboard. Figure 18 The illustration shows the vanity mirror 10 mounted on a car seat. It is understood that the vanity mirror 10 can also be mounted in other areas of the car interior as needed, and there are no limitations on this.
[0101] In summary, this application provides a makeup mirror 10, which includes a base 100, a makeup mirror body 200, and a fill light 300. By placing the fill light 300 inside the makeup mirror body 200, and providing a first wiring cavity 210 inside the makeup mirror body 200, a first power supply harness 220 is provided inside the first wiring cavity 210, and the first power supply harness 220 and the fill light harness 310 are electrically connected inside the first wiring cavity 210, thereby achieving a hidden arrangement of the wiring harness and reducing the safety hazards caused by exposed wiring harnesses.
[0102] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A makeup mirror, characterized in that, The device includes a base (100), a makeup mirror body (200), and a fill light (300). The makeup mirror body (200) is rotatably mounted on the base (100). The makeup mirror body (200) has a first wiring cavity (210) and a first power supply harness (220) inside the first wiring cavity (210). The fill light (300) is located inside the makeup mirror body (200) and has a fill light harness (310). One end of the fill light harness (310) extends into the first wiring cavity (210) and is used to electrically connect to one end of the first power supply harness (220).
2. The makeup mirror according to claim 1, characterized in that, A cylindrical shaft (110) is provided on the base (100). The cylindrical shaft (110) passes through the makeup mirror body (200) and extends into the first wiring cavity (210). The makeup mirror body (200) is rotatably connected to the cylindrical shaft (110). The first power supply harness (220) is provided inside the cylindrical shaft (110).
3. The makeup mirror according to claim 2, characterized in that, A retaining ring (230) is provided in the first wiring cavity (210). The retaining ring (230) is fixedly connected to the body of the makeup mirror (200) and is sleeved on the cylindrical shaft (110).
4. The makeup mirror according to claim 3, characterized in that, The snap ring (230) is provided with a spring piece (231), and the cylindrical shaft (110) is provided with a relief groove (111). During the rotation of the makeup mirror body (200) relative to the cylindrical shaft (110), the spring piece (231) can pass through the relief groove (111). When the makeup mirror body (200) rotates to the point where the spring (231) is misaligned with the relief groove (111), the spring (231) abuts against the side wall of the cylindrical shaft (110), and the makeup mirror body (200) is in the open state; when the makeup mirror body (200) rotates to the point where the spring (231) is directly opposite the relief groove (111), part of the spring (231) extends into the relief groove (111), and the makeup mirror body (200) is in the closed state.
5. The makeup mirror according to claim 1, characterized in that, One end of the first power supply harness (220) is provided with a terminal (221), the terminal (221) is located in the first wiring cavity (210), the terminal (221) is provided with a contact piece (2211), one end of the fill light harness (310) is provided with a connecting piece (311), the connecting piece (311) is provided on the side of the terminal (221), and the connecting piece (311) is used to conduct the circuit when in contact with the contact piece (2211).
6. The makeup mirror according to claim 5, characterized in that, The number of fill lights (300) is at least two, and the fill light harness (310) is connected to all of the fill lights (300) at the same time; The fill lights (300) are connected in series, and one of the fill lights (300) is provided with a first switch (320); or, the fill lights (300) are connected in parallel, and each fill light (300) is provided with a first switch (320).
7. The makeup mirror according to claim 5, characterized in that, The number of fill lights (300) is at least two, and the fill light harness (310) is connected to all of the fill lights (300) at the same time, and the fill lights (300) are connected in series; The makeup mirror (10) also includes a tabletop (400), the base (100) is disposed on the tabletop (400), and a second switch (420) is disposed on the tabletop (400), the second switch (420) being connected to the fill light harness (310).
8. The makeup mirror according to claim 1, characterized in that, The main body (200) of the cosmetic mirror includes an outer plate (240), an inner plate (250) and a lens (260). The outer plate (240) and the inner plate (250) are connected, and the first wiring cavity (210) is formed between the outer plate (240) and the inner plate (250). The fill light harness (310) is located between the outer plate (240) and the inner plate (250). The fill light (300) is disposed on the outer plate (240) facing the inner plate (250) and located on the side of the inner plate (250). The lens (260) is disposed on the side of the inner plate (250) away from the outer plate (240) and the lens (260) covers the fill light (300).
9. The makeup mirror according to claim 1, characterized in that, The makeup mirror (10) also includes a tabletop (400), a linkage mechanism (500), and a second power supply harness (600). The base (100) and the linkage mechanism (500) are both disposed on the tabletop (400). The second power supply harness (600) passes through the linkage mechanism (500), and one end of the second power supply harness (600) extends out of the linkage mechanism (500) and into the tabletop (400). The end of the first power supply harness (220) away from the fill light harness (310) is connected to the end of the second power supply harness (600) that extends into the tabletop (400).
10. The makeup mirror according to claim 9, characterized in that, The linkage mechanism (500) includes a rotating arm, which has a second wiring cavity. The two ends of the rotating arm are respectively provided with an inlet (511) and an outlet (512) communicating with the second wiring cavity. The second power supply harness (600) passes through the inlet (511) into the second wiring cavity and passes through the outlet (512) to connect with the end of the first power supply harness (220) away from the supplementary light harness (310).
11. The makeup mirror according to claim 9, characterized in that, The makeup mirror (10) also includes a support frame (700), which is connected to both the tabletop (400) and the base (100).
12. The makeup mirror according to claim 1, characterized in that, When the makeup mirror body (200) is in the open state, a support groove (120) is formed between it and the base (100).