Electronic rearview mirror and vehicle

By adopting a flat drive motor and a high-strength nylon mirror mount in the electronic rearview mirror, and optimizing the mirror housing structure, the electronic rearview mirror has achieved portability, miniaturization, and flexibility, solving the problems of large size and heavy weight.

CN223631460UActive Publication Date: 2025-12-05SAIC GM WULING AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202423017602.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-12-05
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing electronic rearview mirrors have problems such as large size and overall weight, making them prone to scratches and inconvenient to fold, especially when used on narrow roads.

Method used

By adopting a flat drive motor and a high-strength nylon mirror mount, combined with the optimized design of the mirror housing assembly, including the snap-fit ​​structure of the upper and lower mirror housings and the lightweight material of the mirror mount, the electronic rearview mirror is made lightweight and miniaturized.

Benefits of technology

It effectively reduces the size and weight of electronic rearview mirrors, improves flexibility and ease of use, reduces wind resistance, and solves the problems of large size and heavy weight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electronic rearview mirror and a vehicle. The electronic rearview mirror comprises a mirror shell assembly and a mirror base assembly. The mirror shell assembly comprises an upper mirror shell and a lower mirror shell, the upper mirror shell and the lower mirror shell are mutually buckled to form a containing cavity, and a flat type driving motor, a camera and a lateral lamp are installed in the containing cavity; the mirror base assembly comprises a fixing base, the fixing base is made of high-strength nylon, the fixing base is integrally connected with a vehicle door, a mounting base table is arranged at the end, away from the vehicle door, of the fixing base, the mirror shell assembly is arranged on the mounting base table, and the flat driving motor drives the mirror shell assembly to rotate around the mounting base table. The thickness of the mirror shell assembly after the mirror shell assembly is buckled ranges from 50.0 mm to 65.0 mm. The technical scheme has the technical advantages of being flexible, light, small in size and small in wind resistance.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of vehicle rearview mirror, in particular to an electronic rearview mirror and a vehicle. BACKGROUND

[0002] With the development trend of intelligence and electrification, the electronic outside rearview mirror has high observation clarity in specific scenarios such as rainy and foggy weather and night, has excellent environmental adaptability, and has excellent field of view; thereby gradually replacing the traditional mirror surface reflection type rearview mirror.

[0003] The existing domestic and foreign electronic outside rearview mirror structures are mainly divided into fixed structures and front and rear folding structures. The vehicle with the electronic outside rearview mirror of the fixed structure is prone to scratching and damage of the camera when parking and driving on narrow roads, because the electronic outside rearview mirror is obviously protruding relative to the vehicle body. The electronic outside rearview mirror of the traditional manual folding type, i.e. the front and rear folding electronic outside rearview mirror, needs to be folded inward when driving in a narrow area, which increases the inconvenience of driving. The current automatic folding electronic rearview mirror has the disadvantages of large size of the driving motor and large volume and overall weight due to the metal material of the mirror seat. CONTENT OF THE UTILITY MODEL

[0004] The present application provides an electronic rearview mirror and a vehicle, which apply a thin driving motor and an integrated light material mirror seat, and have the advantages of small volume, flexibility and lightness.

[0005] The present application provides an electronic rearview mirror, which comprises a mirror shell assembly and a mirror seat assembly.

[0006] The mirror shell assembly comprises an upper mirror shell and a lower mirror shell, the upper mirror shell and the lower mirror shell are mutually buckled to form a containing cavity, and a flat driving motor, a camera and a lateral lamp are installed in the containing cavity.

[0007] The mirror seat assembly comprises a fixed seat, the fixed seat is made of high-strength nylon, the fixed seat is integrally connected with a vehicle door, one end of the fixed seat away from the vehicle door is provided with a mounting base, the mirror shell assembly is arranged on the mounting base, and the flat driving motor drives the mirror shell assembly to rotate around the mounting base.

[0008] The thickness of the mirror shell assembly after buckling is 50.0mm-65.0mm.

[0009] In an embodiment, the lower mirror shell is provided with a motor mounting groove concave downward, the motor mounting groove is provided with a mounting portion, the flat driving motor is installed in the motor mounting groove and is detachably connected with the mounting portion.

[0010] In an embodiment, the thickness of the flat driving motor is 35.0mm-55.0mm.

[0011] In an embodiment, the mirror base assembly comprises an upper end cover arranged on the mounting base and a lower end cover arranged under the mounting base, the mounting base is provided with a mounting protrusion, the upper end cover is provided with a mounting hole, and the upper end cover is detachably connected with the mounting protrusion; the upper end cover is arranged on the top of the fixing seat.

[0012] In an embodiment, the lower end cover is a round cover structure, and the outer edge is further provided with a turned edge.

[0013] In an embodiment, the bottom of the lower mirror shell is provided with a lap joint formed by upward recessing, the lap joint is matched with the mounting base and is rotationally connected.

[0014] In an embodiment, the upper mirror shell is provided with at least two clamping feet, the lower mirror shell is provided with at least two clamping grooves, and the clamping feet are clamped in the clamping grooves.

[0015] In an embodiment, the end of the lower mirror shell away from the mirror base assembly is provided with a camera mounting portion and a plurality of mounting protrusions, and the mounting protrusions and the camera mounting portion are used for mounting the camera.

[0016] In an embodiment, the lower mirror shell is further provided with a lateral lamp mounting portion, and the mounting protrusions and the lateral lamp mounting portion are used for mounting the lateral lamp.

[0017] The application also provides a vehicle comprising the electronic rearview mirror.

[0018] After adopting the above technical scheme, the beneficial effects are:

[0019] The application provides an electronic rearview mirror and a vehicle, which comprise a mirror shell assembly and a mirror base assembly, the mirror shell assembly comprises an upper mirror shell and a lower mirror shell, the upper mirror shell and the lower mirror shell are mutually buckled to form a containing cavity, a flat driving motor, a camera and a lateral lamp are installed in the containing cavity, and the thickness of the buckled mirror shell assembly is 50.0mm-65.0mm. The mirror base assembly comprises a fixing seat, the material of the fixing seat is high-strength nylon, and the fixing seat is integrally connected with a vehicle door. The technical scheme of the application effectively simplifies the structure of the electronic rearview mirror, reduces the volume and weight, solves the problems of large volume and heavy weight in the original structure, and realizes the technical advantages of flexibility, lightness, small volume and small wind resistance. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0021] Figure 1 It is a structural schematic diagram of an electronic rearview mirror.

[0022] Figure 2 It is an exploded schematic diagram of the structure of an electronic rearview mirror.

[0023] Figure 3 It is a structural schematic diagram of a lower mirror shell of an electronic rearview mirror.

[0024] Figure 4 It is a partial structural schematic diagram of a motor mounting groove of an electronic rearview mirror.

[0025] Figure 5 It is a partial structural schematic diagram of a camera mounting portion of an electronic rearview mirror.

[0026] Figure 6 It is a structural schematic diagram of a mirror seat assembly of an electronic rearview mirror.

[0027] Reference signs:

[0028] 100 - electronic rearview mirror;

[0029] 10 - mirror shell assembly;

[0030] 11 - upper mirror shell; 111 - clamping leg;

[0031] 12 - lower mirror shell; 121 - motor mounting groove; 1211 - mounting portion; 122 - mounting protrusion; 123 - camera mounting portion; 125 - side light mounting portion; 126 - lap joint portion; 127 - clamping groove;

[0032] 13 - accommodating cavity;

[0033] 15 - flat type driving motor;

[0034] 16 - camera;

[0035] 17 - side light;

[0036] 20 - mirror seat assembly;

[0037] 21 - fixing seat; 211 - mounting base; 22 - upper end cover; 221 - mounting hole; 23 - lower end cover. DETAILED DESCRIPTION

[0038] In order to better understand the technical solutions of the present application, the embodiments of the present application are described in detail below with reference to the drawings.

[0039] It should be clear that the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0040] The terms used in the embodiments of the present application are only for the purpose of describing the specific embodiments, and are not intended to limit the present application. The singular forms "a", "an" and "the" used in the embodiments of the present application and the appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise.

[0041] It should be understood that the term "and / or" used herein is only to describe the association relationship of the associated objects, which means that there can be three relationships, for example, A and / or B can represent: A exists alone, A and B exist together, and B exists alone. In addition, the character " / " herein generally represents an "or" relationship between the front and rear associated objects.

[0042] With the development trend of vehicle intelligence and electrification, the application of electronic outside rearview mirror is increasingly expanding. In order to solve the problems of large size and overall weight of the existing electronic rearview mirror technology, the present application provides an electronic rearview mirror 100, Figure 1 is a structural schematic view of an electronic rearview mirror, Figure 2 is a structural exploded view of an electronic rearview mirror, as Figure 1 and Figure 2 As shown, it comprises a mirror shell assembly 10 and a mirror seat assembly 20.

[0043] The mirror shell assembly 10 comprises an upper mirror shell 11 and a lower mirror shell 12, which are mutually buckled to form a containing cavity 13. A flat driving motor 15, a camera 16 and a side light 17 are installed in the containing cavity 13. The mirror seat assembly 20 comprises a fixing seat 21, the material of the fixing seat 21 is high-strength nylon, the fixing seat 21 is integrally connected with a vehicle door (not shown in the figure), and an installation base 211 is arranged at the end of the fixing seat 21 away from the vehicle door. The mirror shell assembly 10 is arranged on the installation base 211, and the flat driving motor 15 drives the mirror shell assembly 10 to rotate around the installation base 211.

[0044] The thickness of the mirror shell assembly 10 after buckling is 50.0mm-65.0mm.

[0045] From the above scheme, it can be seen that the solution to the problem of large volume and overall heavy of the electronic rearview mirror 100 is to optimize the mirror shell structure, use a flat drive motor 15, and replace metal with high-strength nylon as the mirror seat material to achieve the technical advantages of flexibility, lightness, small volume and low wind resistance.

[0046] In order to make the technical solutions, objectives and advantages of the present application more clear and explicit, the present application will be further described in detail below in combination with the drawings and examples.

[0047] In some embodiments, as shown in Figure 1 The mirror shell assembly 10 has a banana-shaped arc shape, including an upper mirror shell 11 and a lower mirror shell 12.

[0048] For ease of understanding, the banana-shaped arc shape of the overall mirror shell assembly 10 is placed horizontally, which is also the installation and working state direction of the electronic rearview mirror 100. The direction of extending the horizontal line to the installation position of the electronic rearview mirror 100 and the door (not shown) is defined as the right direction, and vice versa. The direction perpendicular to the horizontal line and away from the ground is defined as the upper direction, and vice versa. The direction of the vehicle head connected to the electronic rearview mirror 100 and the door (not shown) is defined as the front direction, and the vehicle tail direction is defined as the rear direction.

[0049] In some embodiments, as shown in Figure 2 The upper mirror shell 11 has an inner arc-shaped groove structure, and the lower mirror shell 12 also has an inner arc-shaped groove structure. The upper mirror shell 11 and the lower mirror shell 12 are mutually engaged to form a containing cavity 13, which can install a flat drive motor 15, a camera 16 and a lateral lamp 17.

[0050] In the above scheme, the mirror shell assembly 10 has a banana-shaped arc shape, and the upper mirror shell 11 and the lower mirror shell 12 are mutually engaged to form a containing cavity 13, which can install a flat drive motor 15, a camera 16 and a lateral lamp 17. This structure removes the physical mirror lens component and reduces the volume of the electronic rearview mirror 100.

[0051] In order to make the electronic rearview mirror 100 of the present application have a streamlined shape and reduce wind resistance, the upper mirror shell 11 gradually shrinks from left to right on the basis of the banana arc shape, that is, the thickness of one end of the mirror shell assembly 10 close to the mirror seat assembly 20 is greater than the thickness of the other end of the mirror shell assembly 10 away from the mirror seat assembly 20. The shape of the mirror shell assembly 10 is more streamlined and simple.

[0052] In some embodiments, as shown in Figure 2As shown, at least one locking foot 111 is provided on each of the left and right ends near the lower edge of the upper lens housing 11. The locking foot 111 is a thin sheet structure that protrudes downward in a local area of ​​the edge of the upper lens housing 11 and is elastic. The top of the sheet has an angle and a step. When the upper lens housing 11 and the lower lens housing 12 are fastened together, the locking foot 111 engages with the lower lens housing 12.

[0053] The mounting feet 111 are integrally formed with the upper lens housing 11, and the material is engineering plastic or other lightweight material, without restriction.

[0054] The important function of this electronic rearview mirror 100 is to capture images through the camera 16 and retract and fold it through the drive motor. The lower mirror housing 12 has a related structure that can accommodate and connect important components such as the camera 16 and the flat drive motor 15.

[0055] Figure 3 This is a schematic diagram of the structure of the lower housing of an electronic rearview mirror, as shown below. Figure 3 As shown, the lower lens housing 12 is provided with a motor mounting groove 121. The motor mounting groove 121 is located on the right side of the lower lens housing 12 and is recessed downward in a whistle shape. The motor mounting groove 121 includes a motor mounting part and a circuit mounting part. The bottom of the motor mounting part is provided with a shaft hole to facilitate the use of motor driving force to drive the lens housing assembly 10 to rotate relative to the lens mount assembly 20.

[0056] Figure 4 This is a partial structural diagram of a motor mounting slot for an electronic rearview mirror, as shown below. Figure 4 As shown, the motor mounting slot 121 is provided with a mounting part 1211. The mounting part 1211 includes at least two mounting protrusions 122. The mounting protrusions 122 are conical cylinders that protrude upwards from the groove of the lower mirror housing 12. The conical cylinders have an inner hole at their center. After the flat drive motor 15 is installed in the motor mounting slot 121, self-tapping screws can be installed to connect and fix it to form a detachable connection, preventing the flat drive motor 15 from shifting.

[0057] Specifically, the thickness of the flat drive motor 15 used in the electronic rearview mirror 100 of this application is 35.0mm to 55.0mm, and can be 35mm, 36.0mm, 38mm, 40mm, 42mm, 45mm, 48mm, 50mm, 52mm, 55mm or any value between them, without limitation here.

[0058] In the above scheme, the camera mounting part 123 integrated inside the lower lens housing 12 is an integral structure, and the thickness of the installed flat drive motor 15 is 35.0mm to 55.0mm, which lays the foundation for reducing the thickness of the final lens housing assembly 10.

[0059] Figure 5 This is a partial structural diagram of the camera mounting section of an electronic rearview mirror, as shown below. Figure 5As shown, the lower mirror housing 12 is provided with a camera mounting portion 123 at the end away from the mirror base assembly 20. The camera mounting portion 123 is located at the left end of the lower mirror housing 12, and the end face of the camera mounting portion 123 is perpendicular to the ground and obliquely faces the rear. The lower half of the end face of the camera mounting portion 123 blocks the left end of the lower mirror housing 12, and the upper half of the end face of the camera mounting portion 123 protrudes from the upper edge of the lower mirror housing 12, like blocking the circular and complete end cover at one end of a semicircular groove structure. Therefore, it is more appropriate for the end face of the camera mounting portion 123 to form an integral structure with the lower mirror housing 12.

[0060] The camera mounting portion 123 is a downwardly recessed structure, and at least two mounting protruding columns 122 are provided on the front and rear sides of the camera mounting portion 123. The mounting protruding columns 122 have the same structure as the mounting protruding columns 122 mentioned above. The end face of the camera mounting portion 123 is also provided with a hole position. The camera lens portion protrudes outward from the hole position as a preliminary installation position of the camera 16, and then a self-tapping screw is installed to fix the camera 16 to form a detachable connection.

[0061] In the above scheme, the camera mounting portion 123 has a simple structure, uses fewer components, and is convenient to install, use and maintain.

[0062] In some embodiments, as shown, Figure 5 The lower mirror housing 12 is also provided with a side lamp mounting portion 125, which is located near the camera mounting portion 123 at the left end of the lower mirror housing 12. The side lamp mounting portion 125 is a local notch structure located at the left end of the front edge of the recessed area of the lower mirror housing 12. The side lamp mounting portion 125 is square with rounded corners. The left and right upper corners of the notch are flush with the front edge of the lower mirror housing 12, and the lower edge of the notch is slightly lower than the front edge of the lower mirror housing 12. The notch can install and clamp the side lamp 17, and the surface of the installed side lamp 17 slightly protrudes from the lower mirror housing 12.

[0063] At least one mounting protruding column 122 is provided on the front and rear sides of the side lamp mounting portion 125. The mounting protruding column 122 has the same structure as the mounting protruding column 122 mentioned above, and can install a self-tapping screw to fix the side lamp 17 to form a detachable connection.

[0064] In the above scheme, the camera mounting portion 123 has a simple structure, which is convenient to install and maintain.

[0065] In some embodiments, as shown, Figure 2 The bottom of the lower mirror housing 12 is provided with an upwardly recessed lap portion 126. The lap portion 126 is located at the right end of the lower mirror housing 12, which is connected to the mirror base assembly 20. The outer contour of the lap portion 126 is circular, which can be rotatably connected to the mirror base assembly 20.

[0066] In the above scheme, the lap portion 126 is beneficial to reduce the final thickness value of the mirror housing assembly 10.

[0067] In some embodiments, as shown,Figure 2 As shown, the upper edge of the front and rear edges of the lower mirror housing 12 is provided with at least two clamping grooves 127 on the left and right sides. The clamping grooves 127 are the inner side of the upper edge of the front and rear edges of the lower mirror housing 12 and are the local groove structure near the upper edge of the front and rear edges of the lower mirror housing 12. The clamping grooves 127 are recessed on the inner surface of the front and rear edges of the lower mirror housing 12. The clamping feet 111 of the upper mirror housing 11 can be clamped in the clamping grooves 127. The upper mirror housing 11 and the lower mirror housing 12 are connected by the clamping feet 111 and the clamping grooves 127. The mirror housing assembly 10 is formed. The thickness of the mirror housing assembly 10 is the thickest structure of the electronic rearview mirror 100 of the present application. The thickness of the mirror housing assembly 10 after buckling is 50.0mm-65.0mm. Specifically, it can be 50mm, 52.0mm, 54mm, 58mm, 60mm, 62mm, 64mm, 65mm or any value between them. Here, no limitation is made.

[0068] The motor mounting groove 121, the mounting protruding column 122, the camera mounting portion 123, the side light mounting portion 125 and the clamping groove 127 of the lower mirror housing 12 are integrally formed with the lower mirror housing 12. The material is engineering plastic or other lightweight material, which is not limited.

[0069] The assembled mirror housing assembly 10 needs to be connected with the mirror seat assembly 20. The mirror seat assembly 20 is the part of the electronic rearview mirror 100 connected with the door (not shown in the figure) and is also the bearing basis of the mirror housing assembly 10. It not only has an important supporting role, but also is the communication hub of power supply and information instruction.

[0070] Figure 6 It is a structural schematic view of a mirror seat assembly of an electronic rearview mirror. Please refer to Figure 6 and Figure 2 The mirror seat assembly 20 includes a fixing seat 21. The material of the fixing seat 21 is high-strength nylon. The fixing seat 21 is integrally connected with the door (not shown in the figure). The end of the fixing seat 21 away from the door (not shown in the figure) is provided with a mounting base 211. The mirror housing assembly 10 is arranged on the mounting base 211. The flat driving motor 15 drives the mirror housing assembly 10 to rotate around the mounting base 211.

[0071] Specifically, please continue to refer to Figure 2 and Figure 6 The outer shape of the fixing seat 21 is a right-down 6-shaped shape. The upper segment of the 6-shaped structure is provided with a connecting hole and a threading hole and faces the door (not shown in the figure). The lower segment of the 6-shaped structure is the mounting base 211. The mounting base 211 is a downwardly recessed disc structure. The mounting base 211 can match the shape of the lap joint portion 126. Moreover, the lap joint portion 126 and the body thereof, i.e., the mirror housing assembly 10, can rotate around the mounting base 211 under the driving of the flat driving motor 15.

[0072] The material of the fixing seat 21 is high-strength nylon, which has high structural strength and light weight, and the fixing seat 21 has simple structure and can be formed at one time, thereby reducing the processing cost.

[0073] In some embodiments, as shown in Figure 2 The mirror seat assembly 20 includes an upper end cover 22 arranged on the mounting base 211 and a lower end cover 23 arranged under the mounting base 211.

[0074] The mounting base 211 is also provided with a plurality of mounting protrusions 122, which have the same structure as the mounting protrusions 122 mentioned above.

[0075] The upper end cover 22 has a disc structure, and a plurality of mounting holes 221 are arranged on the upper surface of the upper end cover 22, and a secondary boss is arranged on the lower surface of the upper end cover 22 and protrudes downward. The upper end cover 22 is arranged on the top of the mounting base 211 of the fixing seat 21, and a self-tapping screw is used to pass through the mounting hole 221 to fix the upper end cover 22 on the mounting base 211 and form a detachable connection.

[0076] In the above scheme, the secondary boss arranged on the upper end cover 22 can play a limiting and supporting role, so that the strength is improved.

[0077] In some embodiments, as shown in Figure 2 The lower end cover 23 has a circular sheet structure, and the outer edge of the lower end cover 23 is concave upward and bent downward to form a flexible flange. The lower end cover 23 is arranged on the bottom of the mounting base 211 at the bottom of the fixing seat 21 and forms a detachable connection.

[0078] In the above scheme, the flexible flange structure arranged on the lower end cover 23 can play a clamping role, so that it is convenient to install and disassemble.

[0079] In addition, the mounting base 211 and the mounting protrusions 122 of the mirror seat assembly 20 can be formed at one time, and the mirror seat assembly 20, the upper end cover 22, and the lower end cover 23 can be made of engineering plastics or other lightweight materials without limitation. The mounting protrusions 122 can be conical or other shapes, and the mounting protrusions 122 have an inner hole without limitation. Self-tapping screws or connecting screws are used, or adhesive or hot-pressing connection methods are used without limitation.

[0080] The electronic rearview mirror 100 of the present application is first of all installed with the flat driving motor 15, the camera 16 and the side light 17 in the lower mirror shell 12 during the assembling process, and can be fixed by using self-tapping screws, and then the wire harness and the connector (not shown in the figure) of the flat driving motor 15, the camera 16 and the side light 17 are led out; next, the mirror seat assembly 20 including the fixed seat 21 and the upper end cover 22 are assembled; the wire harness of the electronic rearview mirror 100 is led out through the mirror seat assembly 20, the flat driving motor 15 is fastened with the mirror seat assembly 20 by using the connecting screw, and then the lower end cover 23 of the mirror seat is installed; next, the upper mirror shell 11 is assembled to the lower mirror shell 12 through the structure of the clamping leg 111 and the clamping groove 127; finally, the wire harness of the electronic rearview mirror 100 is installed through the door (not shown in the figure), the electronic rearview mirror 100 is fixed to the door (not shown in the figure) by using the bolt, and the wire harness of the electronic rearview mirror 100 is connected with the wire harness of the whole vehicle.

[0081] The electronic rearview mirror 100 of the present application presents three states during use, one is a normal working flat state, the electronic rearview mirror 100 is in an unfolded flat state, the camera 16 can take image information, and the driver can directly watch the in-vehicle central control screen to understand the situation behind the vehicle; two is a folding state when not working, that is, the electronic rearview mirror 100 is in a state of bending towards the door direction, the mirror shell assembly 10 is bent towards the door direction with the mirror seat assembly 20 as the center under the driving of the motor, and the mirror shell assembly 10 can be automatically unfolded when the vehicle starts to drive; three is a reverse folding state, that is, the mirror shell assembly 10 of the electronic rearview mirror 100 is further bent towards the head direction on the basis of the flat state, which may be caused by scratching or human factors, and can be reset manually or by starting the reset function.

[0082] In summary, the electronic rearview mirror 100 of the present application applies a high-strength nylon material to form the fixed seat 21, uses a flat driving motor 15 with a thickness of 35.0mm-55.0mm, and adopts an integrated structure of the upper and lower mirror shells, so that the thickness of the mirror shell assembly 10 after buckling is finally reduced to 50.0mm-65.0mm, effectively simplifying the structure, reducing the volume and weight, and solving the problems of large volume and overall overweight in the original structure.

[0083] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An electronic rearview mirror, characterized by, The mirror housing assembly and the mirror base assembly are provided. The mirror housing assembly comprises an upper mirror housing and a lower mirror housing, which are buckled to each other to form a containing cavity, and a flat driving motor, a camera and a side light are installed in the containing cavity. The mirror base assembly comprises a fixed base made of high-strength nylon, which is integrally connected with a door of the vehicle, and an installation base provided at an end of the fixed base away from the door, and the mirror housing assembly is arranged on the installation base, and the flat driving motor drives the mirror housing assembly to rotate around the installation base. The thickness of the mirror housing assembly after buckling is 50.0mm-65.0mm.

2. An electronic rearview mirror according to claim 1, wherein, The lower mirror housing is provided with a motor installation groove concave downward, and an installation part is arranged in the motor installation groove, and the flat driving motor is installed in the motor installation groove and detachably connected with the installation part.

3. An electronic rearview mirror according to claim 1, wherein, The thickness of the flat driving motor is 35.0mm-55.0mm.

4. An electronic rearview mirror according to claim 1, wherein, The mirror base assembly comprises an upper end cover arranged on the installation base and a lower end cover arranged under the installation base, and an installation protruding column is arranged in the installation base, and the upper end cover is provided with an installation hole, and the upper end cover is detachably connected with the installation protruding column; and the upper end cover is arranged on the top of the fixed base.

5. An electronic rearview mirror according to claim 4, wherein, The lower end cover is a round cover structure, and the outer edge is further provided with a turned edge.

6. An electronic rearview mirror according to claim 1, wherein, The lower mirror housing is provided with a lap joint part concave upward at the bottom, which is matched with the installation base and rotationally connected.

7. An electronic rearview mirror according to claim 1, wherein, The upper mirror housing is provided with at least two clamping legs, and the lower mirror housing is provided with at least two clamping grooves, and the clamping legs are clamped in the clamping grooves.

8. An electronic rearview mirror according to claim 1, wherein, An end of the lower mirror housing away from the mirror base assembly is provided with a camera installation part and a plurality of installation protruding columns, and the installation protruding columns and the camera installation part are used for arranging the camera.

9. An electronic rearview mirror according to claim 8, wherein, The lower mirror housing is further provided with a side light installation part, and the installation protruding columns and the side light installation part are used for arranging the side light.

10. A vehicle characterized by comprising: The vehicle comprises the electronic rearview mirror according to any one of claims 1-9.