Streaming media rearview mirror

By integrating the cover structure and connecting the detachable bracket, the aesthetics and assembly complexity of the streaming rearview mirror are solved, achieving material savings, reduced thickness, and improved connection stability.

CN224045108UActive Publication Date: 2026-03-27YUANFENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing streaming rearview mirrors suffer from poor aesthetics, unstable structural connections, and complex assembly, especially with the increased thickness of the middle frame, unstable snap-fit ​​connections on the left and right rear covers, and cumbersome assembly procedures.

Method used

The cover structure features an integrated design, with the back cover and frame integrally formed. The bracket body connects to the mounting base through a through hole. Combined with the adhesive layer and detachable bracket design, the traditional split middle frame structure is eliminated, achieving sealing and simplifying assembly.

Benefits of technology

Reduce material costs, decrease overall thickness, improve aesthetics, simplify assembly processes, ensure connection stability and sealing performance, avoid gaps, and enhance operational flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a streaming media rearview mirror, which comprises a screen assembly, a cover body structure and a mounting bracket, the cover body structure comprises a rear cover part and a frame part, the rear cover part is provided with a through hole, and the frame part is fixedly connected with the screen assembly; the installation support comprises a support body and an installation base which are connected with each other, and the support body penetrates through the through hole and the installation base to be fixedly connected with the screen assembly. Wherein the rear cover part and the frame part are integrally formed, and a preset distance is arranged between the support body and the edge of the through hole. According to the streaming media rearview mirror, the integrally-formed cover body structure replaces a left rear cover, a right rear cover and a middle frame structure of a traditional streaming media rearview mirror, structural supporting and protecting effects on electronic elements in the rearview mirror can be achieved, and meanwhile the problems of stability of buckling connection of the left rear cover and the right rear cover, assembling complexity and the like do not need to be considered. Meanwhile, due to the fact that a traditional split type middle frame structure is omitted, the material cost can be reduced, the overall thickness of the rearview mirror is obviously reduced, gaps are avoided, and the attractiveness of the rearview mirror is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to vehicle rear -view mirror technical field especially relates to a streaming media rear -view mirror. BACKGROUND

[0002] Figure 1 The streaming media rear -view mirror shown in the prior art, the main structure includes screen assembly, middle frame structure, crank assembly, left rear cover and right rear cover, the specific assembly sequence is: first, the middle frame structure and screen assembly are assembled (generally for the rubber technology), then the crank assembly is assembled with screen assembly (generally for screw from top to bottom in turn through the crank assembly, middle frame structure and screen assembly and is fixed), finally, left rear cover and right rear cover are assembled (generally for buckle fixed).

[0003] Such structure design mode has the following defects and deficiencies:

[0004] 1, in the traditional streaming media rear -view mirror, the middle frame can play the structural support and protection effect to internal electronic components, but the overall thickness of the rear -view mirror will be increased significantly, and because the middle frame and the rear cover are not directly assembled and connected, there will be inevitable gap between the two (and the gap size will be uneven due to process difference), which causes the whole streaming media rear -view mirror to be not beautiful;

[0005] 2, the buckle connection mode of left and right rear cover is unstable, there is the possibility of loosening or displacement due to vibration during vehicle driving, and if other assembly methods (such as screws, adhesives, etc. Hard connection) are used, subsequent disassembly and maintenance operations are not convenient;

[0006] 3, without considering the additional components, the complete structure also needs at least four steps, and must rely on manual operation, and the assembly process is complicated.

[0007] Therefore, it is necessary to invent a streaming media rear -view mirror that can save material cost, facilitate assembly and improve appearance in the prior art. UTILITY MODEL CONTENT

[0008] In order to overcome the technical problems of poor appearance, unstable structure connection and inconvenient assembly of the traditional streaming media rear -view mirror in the prior art, the utility model provides a streaming media rear -view mirror based on integrated design.

[0009] The technical scheme adopted by the utility model to solve the above problems is:

[0010] A streaming media rear -view mirror, comprising:

[0011] A screen assembly;

[0012] The cover structure comprises a rear cover part and a frame part, the rear cover part is provided with a through hole, and the frame part and the screen assembly are fixedly connected;

[0013] The mounting bracket comprises a bracket body and a mounting seat connected with each other, the bracket body passes through the through hole, and the mounting seat and the screen assembly are fixedly connected;

[0014] The rear cover part and the frame part are integrally formed, and a preset distance is arranged between the bracket body and the edge of the through hole.

[0015] In the above technical solution, the cover structure comprises a rear cover part and a frame part, which are integrally formed. Compared with the traditional split type left rear cover, right rear cover and middle frame structure, the integrally formed cover structure not only plays a role in supporting and protecting the electronic elements inside the streaming rearview mirror, but also solves the problems of large overall thickness of the rearview mirror, existence of gaps and complex assembly.

[0016] As a preferred solution, the screen assembly comprises a display screen, the display screen is provided with a first adhesive layer at the peripheral position of the side facing the cover structure, and the frame part is fixedly connected with the display screen through the first adhesive layer.

[0017] In the above technical solution, the cover structure and the display screen of the screen assembly are connected through the first adhesive layer, which not only achieves the assembly effect, but also ensures the sealing performance of the streaming rearview mirror.

[0018] Further, the screen assembly further comprises a back plate assembly, the back plate assembly and the display screen are fixedly connected, the back plate assembly is provided with a protruding mounting column on the side away from the display screen, and the back plate assembly is fixedly connected with the mounting seat through the mounting column.

[0019] In the above technical solution, the mounting column is a protruding structure, which can form a certain space between the back plate and the mounting seat, which is conducive to arranging circuit boards, heat dissipation components and other structures, optimizing the internal space layout of the streaming rearview mirror and improving the design flexibility.

[0020] As a preferred solution, the bracket body and the mounting seat are detachably connected.

[0021] In the above technical solution, the detachable connection between the bracket body and the mounting seat is designed, which aims to assemble the streaming rearview mirror in advance, then pass the bracket body through the through hole of the cover structure, and then assemble the mounting seat on the bracket body, so that the mounting seat with a size larger than that of the through hole can pass through the cover structure to realize the relative fixing effect.

[0022] As a preferred solution, the preset distance between the bracket body and the edge of the through hole is 0.5-2mm.

[0023] In the above technical solution, the gap with the preset distance size is formed between the support body and the edge of the through hole, so that when the mounting support is passed through the cover structure, the two are not in an absolute fixed state, the cover structure can be moved up and down along the axial direction of the support body, thereby facilitating subsequent fixing screws, adhesive and other processes, and improving the flexibility of assembly operation.

[0024] As a preferred solution, the streaming rearview mirror further comprises a circuit board fixedly arranged between the back plate assembly and the mounting seat.

[0025] In the above technical solution, by arranging the mounting column protruding upward on the back plate assembly, a space for accommodating the circuit board can be formed between the back plate assembly and the mounting seat. By arranging the circuit board, the functions of signal processing and transmission, power management, and integrated electronic components can be achieved.

[0026] Further, the streaming rearview mirror further comprises a key assembly, the key assembly comprising a touch film and an FPC, the touch film and the inner side wall of the cover structure being arranged in abutment, and the touch film being connected to the circuit board through the FPC.

[0027] In the above technical solution, on the basis of the cover structure being an integral molding structure, the streaming rearview mirror can adopt a touch key scheme, which can reduce the number of parts, simplify the assembly process, reduce the assembly difficulty, and avoid problems such as abnormal sound, key jamming, step difference, and mismatched gap that are prone to occur in the physical key scheme, thereby further improving the aesthetic appearance of the streaming rearview mirror.

[0028] Further, the circuit board is provided with at least one connector, and the touch film is connected to the connector through the FPC.

[0029] In the above technical solution, the circuit board can be connected to the FPCs of multiple touch films through one connector (when multiple FPCs are connected, only the number of P I Ns of the connector needs to be increased), thereby further reducing the number of parts and the material cost.

[0030] Further, the touch film comprises a touch sensor, a protective layer, and a second adhesive layer, the protective layer being arranged on the outer circumferential side of the touch sensor, and the second adhesive layer being arranged on the outer side of the protective layer and used for bonding with the inner side wall of the cover structure.

[0031] In the above technical solution, the touch sensor is the core structure of the touch film, which is used for detecting touch operation and converting touch signals into electrical signals to realize recognition and processing of touch position, force and other information, and plays a touch sensing role. The protective layer is used for protecting the touch sensor. The adhesive layer is used for bonding between the touch film and the inner side wall of the cover structure.

[0032] Further, the outer side wall of the cover structure is provided with a button pattern corresponding to the position of the touch film, and the size of the button pattern is less than or equal to the touch film.

[0033] In the above technical solution, the button pattern of the outer side wall of the cover structure is used for identification, so that the user can intuitively see the position and function of the button, and only needs to gently touch the corresponding button pattern during operation to realize the corresponding function.

[0034] In summary, the streaming media rearview mirror provided by the present application has at least the following technical effects compared with the prior art:

[0035] 1) The cover structure formed integrally replaces the left and right rear covers and the middle frame structure of the conventional streaming media rearview mirror, which can support and protect the electronic components inside the rearview mirror, and does not need to consider the stability of the buckle connection of the left and right rear covers and the assembly complexity. At the same time, since the conventional split middle frame structure is cancelled, the material cost can be reduced, the overall thickness of the rearview mirror can be significantly reduced, and the gap can be avoided, thereby improving the aesthetic appearance of the rearview mirror.

[0036] 2) During assembly, the bracket body of the mounting bracket is first inserted through the cover structure, then the mounting seat of the mounting bracket and the screen assembly are assembled and connected, and finally the cover structure and the screen assembly are assembled, which reduces the manual alignment and buckle connection process, and the operation process is simple and convenient. When the mounting bracket is inserted through the cover structure, the two are not in an absolute fixed state, and there is a gap between the bracket body and the edge of the through hole of the cover body, so that the cover structure can move up and down in the axial direction of the bracket body, thereby facilitating the subsequent fixing screw, adhesive and other processes, and improving the flexibility of the assembly operation. BRIEF DESCRIPTION OF DRAWINGS

[0037] Figure 1 FIG. 1 is a structural schematic view of a streaming media rearview mirror of the prior art;

[0038] Figure 2 FIG. 2 is a structural schematic view of a streaming media rearview mirror of the present application;

[0039] Figure 3 FIG. 3 is a structural schematic view of a streaming media rearview mirror of the present application; Figure 2 FIG. 4 is a partial enlarged schematic view of the H part shown in FIG. 3;

[0040] Figure 4 FIG. 5 is another structural schematic view of a streaming media rearview mirror of the present application;

[0041] In the drawings, the meanings of the reference signs are as follows:

[0042] 1', screen assembly; 2', middle frame structure; 3', crank assembly; 4', left rear cover; 5', right rear cover;

[0043] 1, screen assembly; 11, display screen; 12, back plate assembly; 121, mounting column; 2, cover structure; 21, rear cover part; 22, frame part; 3, mounting bracket; 31, bracket body; 32, mounting seat; 4, first adhesive layer; 5, circuit board; 51, connector; 6, touch film; 7, FPC; 8, key pattern. DETAILED DESCRIPTION

[0044] In order to better understand and implement, the technical solutions in the embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application.

[0045] In the description of the present application, it should be noted that the orientations or positional relationships indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the specification of the present application is only for the purpose of describing specific embodiments and is not intended to limit the present application.

[0047] Referring to Figure 2 and Figure 4 As shown in the technical scheme of the present application, the streaming media rearview mirror comprises a screen assembly 1, a cover structure 2 and a mounting bracket 3, the cover structure 2 comprises a rear cover part 21 and a frame part 22, the rear cover part 21 is provided with a through hole, and the frame part 22 and the screen assembly 1 are fixedly connected. Preferably, the through hole of the rear cover part 21 is arranged at the middle position thereof.

[0048] The mounting bracket 3 comprises a bracket body 31 and a mounting seat 32, which are connected to each other, the bracket body 31 passes through the through hole of the rear cover part 21, and the mounting seat 32 and the screen assembly 1 are fixedly connected.

[0049] Specifically, the rear cover part 21 and the frame part 22 are integrally formed, and the integrally formed cover structure 2 replaces the left rear cover, the right rear cover and the middle frame structure of the traditional streaming rearview mirror, which can support and protect the various electronic components inside the rearview mirror, and does not need to consider the stability of the buckle connection of the left and right rear covers and the assembly complexity. At the same time, since the traditional split middle frame structure is cancelled, the material cost can be reduced, the overall thickness of the streaming rearview mirror can be significantly reduced, and the gap can be avoided, thereby improving the aesthetic appearance.

[0050] In particular, the cover structure 2 can be integrally formed by injection molding, vacuum forming or die molding, and the specific molding method is not limited in the present application.

[0051] In addition, a preset distance is provided between the through hole edge of the bracket body 31 and the rear cover part 21, so that a gap or gap is formed between the through hole edge of the bracket body 31 and the rear cover part 21. Through the above structural design, the bracket body 31 and the rear cover part 21 after passing through the through hole of the rear cover part 21 are in a relatively fixed state, and the cover structure 1 can move up and down along the bracket body 31, thereby facilitating the subsequent fixing screw, adhesive and other processes, and improving the flexibility of assembly operation.

[0052] Optionally, the bracket body 31 and the mounting seat 32 are detachably connected. Before assembling the streaming rearview mirror of the present application, the bracket body 31 and the mounting seat 32 can be detached, or the two are initially separated, so that the bracket body 31 can pass through the through hole of the mounting seat 32, and then the mounting seat 32 is mounted on the bracket body 31, thereby completing the relative fixation between the mounting bracket 3 and the cover structure 2.

[0053] Further, since the gap or gap is provided between the through hole edge of the bracket body 31 and the rear cover part 21, the cover structure 2 can move up and down along the axial direction of the bracket body 31, thereby facilitating the subsequent adhesive operation between the frame part 22 and the screen assembly 1 and the fixing screw operation between the mounting seat 32 and the screen assembly 1, and improving the flexibility of assembly operation. In addition, this structural design can effectively solve the problem that the mounting seat 32 cannot pass through the cover structure 22 because the size of the mounting seat 32 is greater than the size of the through hole of the rear cover part 21.

[0054] Optionally, the preset distance between the through hole edge of the bracket body 31 and the mounting seat 32 can be 0.5-2mm. By setting the preset distance, the cover structure 2 and the mounting bracket 3 are relatively fixed, and the cover structure 2 cannot be shaken or displaced relative to the mounting bracket 3, which further improves the accuracy and convenience of subsequent screw fixing and adhesive operation.

[0055] In particular, the preset distance between the bracket body 31 and the edge of the through hole of the mounting seat 32 is preferably 1mm.

[0056] Embodiment 1

[0057] In an optional embodiment of the utility model, a specific structural design scheme about how the streaming media rearview mirror is assembled is provided.

[0058] Referring to Figure 2 In the technical scheme of this embodiment, the screen assembly 1 includes the display screen 11, the first adhesive layer 4 is arranged at the peripheral position of the side of the display screen 11 facing the cover structure 2, and the frame part 22 is fixedly connected with the display screen 11 through the first adhesive layer 4. Specifically, the assembly mode of the adhesive layer connection can tightly combine the cover structure 2 and the screen assembly 1 together to form a whole, thereby enhancing the structural stability and reliability of the whole streaming media rearview mirror. This helps the streaming media rearview mirror to remain stable even if it encounters bumps or vibrations during the driving of the vehicle, and the streaming media rearview mirror will not be loose or shake. Moreover, the first adhesive layer 4 can realize seamless connection between the cover structure 2 and the screen assembly 1, so that the appearance of the whole streaming media rearview mirror is more simple and smooth, and there is no obvious connection trace, thereby further improving the overall aesthetic degree of the rearview mirror product.

[0059] In particular, the first adhesive layer 4 can be made of acrylic adhesive, epoxy resin adhesive or polyurethane adhesive, etc. Of course, the utility model does not make specific limitation on the specific adhesive layer.

[0060] Further, referring to Figure 2 and Figure 4 The screen assembly 1 further includes the backboard assembly 12, the backboard assembly 12 is fixedly connected with the display screen 11, the backboard assembly 12 is provided with a protruding mounting column 121 on the side away from the display screen 11, and the backboard assembly 12 is fixedly connected with the mounting seat 32 through the mounting column 121. Specifically, the upwardly protruding mounting column 121 arranged on the backboard assembly 12 can jointly enclose a containing space with the mounting seat 32, which is conducive to arranging the circuit board 5, the heat dissipation assembly and other structures and facilitating the layout of the circuit, optimizes the internal space layout of the streaming media rearview mirror and improves the design flexibility.

[0061] Embodiment 2

[0062] In another optional embodiment of the utility model, a specific structural design scheme about how to realize the touch button function on the basis of the integrated cover structure is provided.

[0063] Referring to Figure 2 and Figure 4As shown in the technical scheme of this embodiment, the streaming rearview mirror further comprises a circuit board 5 fixedly arranged between the back plate assembly 22 and the mounting seat 32. The circuit board 5 is used for efficient processing and accurate transmission of signals, and is responsible for reasonable distribution and management of power supply, and can integrate various electronic components, thereby improving the functionality and operating efficiency of the entire streaming rearview mirror.

[0064] As shown in Figure 2 and Figure 3 In one preferred scheme of this embodiment, the streaming rearview mirror further comprises a key assembly, which comprises a touch film 6 and an FPC 7 (flexible printed circuit board), the touch film 6 and the inner side wall of the cover structure 2 are arranged in close contact, and the touch film 6 is connected to the circuit board 5 through the FPC 7. Specifically, since the cover structure 2 of the utility model is integrally formed, the touch key scheme can be realized on this basis, and the touch key can be arranged at the middle position of the cover structure 2, which cannot be realized in the traditional split streaming rearview mirror. The touch key scheme of the utility model sets the touch film 6 and the FPC 7, and the touch film 6 is connected to the circuit board 5 through the FPC 7, which can ensure the rapid and stable transmission of touch signals. Moreover, the touch film 6 and the FPC 7 are integrated on the inner side of the cover structure 2, which fully utilizes the internal space, so that the entire key assembly structure is compact, which is conducive to the lightweight and miniaturization design of the streaming rearview mirror

[0065] Therefore, by adopting the above-mentioned touch key scheme, compared with the traditional physical key scheme, the number of parts can be reduced, the assembly process can be simplified, the assembly difficulty can be reduced, and the problems such as abnormal sound, key jamming, step difference and mismatched gap that are prone to occur in the physical key scheme can be avoided, and the aesthetic degree of the streaming rearview mirror is further improved.

[0066] Further, as shown in Figure 3 The circuit board 5 is provided with at least one connector 51, and the touch film 6 is connected to the connector 51 through the FPC 7, so as to realize the transmission of touch signals.

[0067] In particular, the connector 51 can be an FPC connector.

[0068] Alternatively, the circuit board 5 is provided with one connector 51, which is connected to the FPC 7 of multiple touch films 6 (when connected to multiple FPC 7, only the PIN number of the connector 51 needs to be increased), thereby further reducing the number of parts and reducing the material cost. This structure design method can be applied to the technical scheme of multiple touch films 6.

[0069] Further, the touch film 6 comprises a touch sensor, a protective layer and a second adhesive layer, the protective layer is arranged on the outer circumferential side of the touch sensor, the outer side of the protective layer is provided with the second adhesive layer, and the touch film 6 is bonded to the inner side wall of the cover structure 2 through the second adhesive layer. Specifically, the touch sensor is the core structure of the touch film 6, which is used to detect the touch operation of the user on the outer side of the cover structure 2 and convert the touch signal into an electrical signal to realize the recognition and processing of the touch position, force and other information, and plays a touch sensing role. The protective layer is used to protect the touch sensor, and the second adhesive layer is used to realize the bonding between the touch film 6 and the inner side wall of the cover structure 2.

[0070] Further, referring to Figure 2 As shown in the figure, the outer side wall of the cover structure 2 is provided with a key pattern 8, the position of the key pattern 8 corresponds to that of the touch film 6, and the size of the key pattern 8 is less than or equal to that of the touch film 6. Among them, the accurate correspondence between the key pattern 8 and the touch film 6 ensures that the user's touch operation can directly act on the effective sensing area of the touch film 6, and improves the sensitivity and accuracy of the touch. At the same time, the size design of the key pattern 8 also helps to optimize the sensing range of the touch film 6, so that the touch operation is more reliable, and even in complex environmental conditions, such as strong light irradiation or electromagnetic interference, etc., the function can also be stably realized.

[0071] Particularly, the shape, number and size of the key pattern 8 can be designed according to actual needs, and the size of the touch film 6 is greater than that of the key pattern 8 by more than 3mm.

[0072] The technical means disclosed in the utility model scheme is not only limited to the technical means disclosed in the above-mentioned embodiments, but also includes the technical scheme composed of any combination of the above technical features. It should be pointed out that for ordinary skilled persons in the technical field, without departing from the principle of the utility model, some improvements and refinements can be made, and these improvements and refinements are also considered as the protection range of the utility model.

Claims

1. A streaming rearview mirror, characterized by, The utility model relates to a streaming media rearview mirror, including: Screen assembly; Cover structure, the cover structure includes back cover part and frame part, the back cover part is equipped with through -hole, the frame part and screen assembly fixed connection; Mounting support, the mounting support includes mutually connected support body and mounting seat, the support body passes through the through -hole, the mounting seat and screen assembly fixed connection; Wherein, the back cover part and the frame part are integrally formed, and a preset distance is provided between the support body and the edge of the through -hole.

2. The streaming back mirror of claim 1, wherein, The screen assembly includes a display screen, a first adhesive layer is provided on the periphery of the side of the display screen facing the cover structure, and the frame part is fixedly connected with the display screen through the first adhesive layer.

3. The streaming back mirror of claim 2, wherein, The screen assembly further includes a back plate assembly, the back plate assembly is fixedly connected with the display screen, and a protruding mounting column is provided on the side of the back plate assembly away from the display screen, and the back plate assembly is fixedly connected with the mounting seat through the mounting column.

4. The streaming back mirror of claim 1, wherein, The support body and the mounting seat are detachably connected.

5. The streaming back mirror of claim 1, wherein, The preset distance between the support body and the edge of the through -hole is 0.5-2mm.

6. The streaming back mirror of claim 3, wherein, The streaming media rearview mirror further includes a circuit board, which is fixedly arranged between the back plate assembly and the mounting seat.

7. The streaming back mirror of claim 6, wherein, The streaming media rearview mirror further includes a key assembly, the key assembly includes a touch film and an FPC, the touch film and the inner side wall of the cover structure are arranged in close contact, and the touch film is connected with the circuit board through the FPC.

8. The streaming back mirror of claim 7, wherein, The circuit board is provided with at least one connector, and the touch film is connected with the connector through the FPC.

9. The streaming back mirror of claim 7, wherein, The touch film includes a touch sensor, a protective layer and a second adhesive layer, the protective layer is arranged on the outer periphery of the touch sensor, and the second adhesive layer is arranged on the outer side of the protective layer for bonding with the inner side wall of the cover structure.

10. The streaming back mirror of claim 7, wherein, The outer side wall of the cover structure is provided with a key pattern, the key pattern corresponds to the position of the touch film, and the size of the key pattern is less than or equal to the touch film.