Streaming media rearview mirror and vehicle
By installing positioning components in the streaming rearview mirror to secure the wiring harness, the problem of loosening during insertion, removal, and adjustment of the wiring harness is solved, achieving stable data transmission and power supply, and improving driving safety and contact reliability.
Patent Information
- Application Number
- CN202422851104.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Existing streaming rearview mirrors are prone to loosening of the wiring harness connection to the circuit board during the plugging and unplugging of the wiring harness connector and lens adjustment, which affects the stability of data transmission and power supply.
By setting positioning elements on the housing or circuit board to fix the wire harness, it is ensured that the wire harness is not directly pulled on the internal interface during insertion, removal and adjustment. The positioning elements and buckle structure made of elastic material are used to fix the wire harness and prevent the connection from becoming loose.
Effectively prevents loose wiring harness connections, ensures stable transmission of image data and reception of power supply for the streaming rearview mirror, improves driving safety, simplifies the wiring harness installation process, and maintains good contact.
Smart Images

Figure CN223764331U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vehicle rearview mirror technology, and in particular to a streaming media rearview mirror and a vehicle. Background Technology
[0002] Currently, streaming media rearview mirrors, as devices that integrate advanced imaging technology and data transmission functions, are widely used in the field of vehicle monitoring systems. They are typically connected to the circuit board in the mirror and the interface on the vehicle body via wiring harnesses to achieve data transmission and power supply.
[0003] However, during the process of plugging and unplugging the external connectors of the wiring harness to the vehicle body interface, the connection between the internal connectors and the circuit board may be pulled, leading to poor contact within the internal wiring harness. Furthermore, users frequently twist the lens to adjust the viewing angle. This twisting not only affects the lens itself but may also be transmitted through the mechanical structure to the connection between the wiring harness and the circuit board, causing the connection to loosen. A loose connection may cause the data transmission line to break, preventing the streaming media endoscope from transmitting image data in real time. Utility Model Content
[0004] In order to overcome at least one of the defects of the prior art, the present invention provides a streaming media rearview mirror and a vehicle, which fixes the wiring harness to the housing or circuit board by setting a positioning component, thereby avoiding the problem of loose connection between the internal interface of the wiring harness and the connection port of the circuit board.
[0005] The technical solution adopted by this utility model to solve its problem is:
[0006] A streaming rearview mirror, including,
[0007] A rearview mirror includes a housing and a circuit board, the circuit board being installed inside the housing and having a connection port on it;
[0008] The wiring harness assembly includes a wiring harness disposed within the housing and a positioning member. One end of the wiring harness is provided with a first interface, which is electrically connected to the connection port. The other end of the wiring harness extends outside the housing and is provided with a second interface, which is used to connect to an external port. The positioning member is detachably connected to the housing or the circuit board to fix the wiring harness.
[0009] Furthermore, the wire harness includes a fixed wire harness segment and a movable wire harness segment that are connected to each other. The first interface and the positioning member are respectively disposed at both ends of the fixed wire harness segment. The movable wire harness segment extends from inside the housing to outside the housing. The second interface is disposed at the end of the movable wire harness segment.
[0010] Furthermore, the housing is provided with a connector, and the connector has a connecting part on the side facing the circuit board; the positioning member is detachably connected to the connecting part to fix the wire harness.
[0011] Furthermore, the connecting part includes a mounting groove, and the mounting groove has limiting grooves on both sides; the positioning member includes a connecting block, and the outer periphery of the connecting block has a limiting protrusion, the connecting block is installed in the mounting groove, and the limiting protrusion is embedded in the limiting groove.
[0012] Furthermore, the streaming media rearview mirror includes a mounting base, one end of which is provided with a rotating part, and the middle of the connecting base is provided with a rotating groove. The rotating part extends into the housing and is rotatably connected to the rotating groove so that the angle of the rearview mirror is adjustable.
[0013] Furthermore, the mounting base is provided with a wiring channel; the movable wire harness segment extends into the wiring channel through the rotating groove and extends out of the housing through the wiring channel.
[0014] Furthermore, the housing includes a front shell and a bottom shell, with the circuit board and the connector both connected to the front shell; the bottom shell is connected to the rear side of the front shell; a through hole is provided in the middle of the bottom shell, and the rotating part extends into the through hole and is connected to the rotating groove.
[0015] Furthermore, the peripheral edge of the connector is provided with a connecting hole, which is fixedly connected to the housing by a fastener.
[0016] Furthermore, the positioning element is made of an elastic material and is integrally formed into the wire harness.
[0017] A vehicle includes a vehicle body and a streaming media rearview mirror as described above. The vehicle body is provided with a power port and a transmission port, both of which are used for electrical connection with a second interface.
[0018] In summary, the streaming media rearview mirror and vehicle provided by this utility model have the following technical effects:
[0019] 1) The streaming media rearview mirror of this utility model uses a positioning component to fix the wiring harness inside the housing to the circuit board or housing. During the process of plugging and unplugging the second interface of the external wiring harness to the external port, only the wiring harness outside the housing is pulled, and the connection between the internal connector of the wiring harness and the circuit board is not pulled, ensuring that the internal wiring harness is firmly in contact. This effectively prevents the problem of loosening of the internal connection of the wiring harness caused by plugging and unplugging the external connector or pulling the wiring harness. This ensures that the streaming media rearview mirror can stably transmit image data and receive power supply, allowing the driver to observe the situation behind the vehicle more accurately and improving driving safety.
[0020] 2) When the external interface of the wiring harness is plugged into or unplugged from the power port and transmission port on the vehicle body, the internal wiring is fixed, so the connection between the internal interface of the wiring harness and the circuit board will not be affected during the plugging and unplugging process, ensuring good contact. During use, when the rearview mirror is rotated to adjust the viewing angle, the force exerted when twisting the lens will not directly act on the connection between the wiring harness and the circuit board, thus avoiding the risk of loose connection. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the streaming media rearview mirror according to an embodiment of the present utility model;
[0022] Figure 2 This is a schematic diagram of the structure of the streaming media rearview mirror with its bottom shell hidden according to an embodiment of the present utility model;
[0023] Figure 3 This is an exploded view of the streaming media rearview mirror according to an embodiment of the present utility model;
[0024] Figure 4 This is a front view of the streaming media rearview mirror according to an embodiment of the present utility model;
[0025] Figure 5 This is a cross-sectional view of the streaming media rearview mirror according to an embodiment of the present utility model;
[0026] Figure 6 This is a schematic diagram of the assembly structure of the mounting base, connecting base, and wire harness assembly according to an embodiment of the present utility model;
[0027] Figure 7 for Figure 6 Cross-sectional view;
[0028] Figure 8 This is a schematic diagram of the assembly structure of the mounting base and wire harness assembly according to an embodiment of the present utility model;
[0029] Figure 9 This is a schematic diagram of the positioning component according to an embodiment of the utility model;
[0030] Figure 10 This is a schematic diagram of the connecting seat according to an embodiment of the utility model.
[0031] The meanings of the reference numerals in the attached figures are as follows:
[0032] 1. Mounting base; 11. Rotating part; 12. Wiring channel; 2. Housing; 21. Circuit board; 211. Connection port; 22. Connecting base; 221. Connecting part; 222. Mounting groove; 223. Limiting groove; 224. Rotating groove; 225. Connecting hole; 23. Front shell; 24. Bottom shell; 241. Through hole; 3. Wire harness assembly; 31. Wire harness; 311. First interface; 312. Second interface; 32. Positioning component; 321. Connecting block; 322. Limiting protrusion; 33. Fixed wire harness segment; 34. Movable wire harness segment. Detailed Implementation
[0033] To better understand and implement this invention, the technical solutions in the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings.
[0034] In the description of this utility model, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model 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. Therefore, they should not be construed as limitations on this utility model.
[0035] 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 this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0036] Example 1
[0037] See Figures 1 to 5 This utility model discloses a streaming media rearview mirror, which includes a rearview mirror and a wiring harness assembly 3; see reference. Figure 1 as well as Figure 2 The rearview mirror includes a housing 2 and a circuit board 21. The circuit board 21 is installed inside the housing 2 and has a connection port 211. The wiring harness assembly 3 includes a wiring harness 31 disposed within the housing 2 and a positioning member 32. Specifically, one end of the wiring harness 31 has a first interface 311, which is electrically connected to the connection port 211; the other end of the wiring harness 31 extends outside the housing 2 and has a second interface 312, which is used to connect to an external port. Furthermore, the positioning member 32 is detachably connected to the housing 2 or the circuit board 21 to secure the wiring harness 31.
[0038] Based on this structure, during assembly, the circuit board 21 is first installed into the housing 2, and the first interface 311 of the wire harness 31 is electrically connected to the connection port 211 on the circuit board 21. Then, the positioning member 32 is used to fix the wire harness 31 to the housing 2 or the circuit board 21. Then, the second interface 312 of the wire harness 31 is led out to the outside of the housing 2, and finally the housing 2 is encapsulated.
[0039] When using the streaming media rearview mirror of this utility model, the housing 2 of the rearview mirror is fixed in an appropriate position inside the vehicle. Then, the second interface 312 of the wiring harness 31 located outside the housing 2 is connected to an external port (such as a port on the vehicle body) to realize data transmission and power supply.
[0040] Since the wiring harness 31 located inside the housing 2 is fixed to the circuit board 21 or the housing 2 by the positioning member 32, when the second interface 312 is plugged into or unplugged from the external port, only the wiring harness 31 outside the housing 2 is pulled, and the connection between the internal connector of the wiring harness 31 and the circuit board 21 is not pulled, thus ensuring that the internal wiring harness 31 is in firm contact.
[0041] Thus, by fixing the wiring harness 31 to the housing 2 or circuit board 21 through the positioning component 32, the problem of loosening of the internal connection of the wiring harness 31 caused by plugging and unplugging external connectors or pulling the wiring harness 31 is effectively prevented. This ensures that the streaming media rearview mirror can stably transmit image data and receive power supply, so that the driver can observe the situation behind the vehicle more accurately and improve driving safety.
[0042] Furthermore, the positioning element 32 is detachably connected to the housing 2 or the circuit board 21, making it easier to assemble and disassemble. Specifically, the positioning element 32 can be a screw, which locks the wire harness 31 to the circuit board 21 or the housing 2, thereby achieving the positioning function of the wire harness 31. The positioning element 32 can also be fastened to the circuit board 21 or the housing 2 via a snap-fit structure.
[0043] Further, see Figure 3 as well as Figure 5 The wire harness 31 includes a fixed wire harness segment 33 and a movable wire harness segment 34 that are connected to each other. The first interface 311 and the positioning member 32 are respectively disposed at both ends of the fixed wire harness segment 33, while the movable wire harness segment 34 extends from inside the housing 2 to outside the housing 2, and the second interface 312 is disposed at the end of the movable wire harness segment 34.
[0044] Based on this structure, during installation, the first interface 311 of the fixed wire harness segment 33 is first electrically connected to the connection port 211 on the circuit board 21, which is usually achieved through welding, plugging, or other connection methods. Next, the other end of the fixed wire harness segment 33 is fixed to the housing 2 or the circuit board 21 using the positioning element 32. Then, the movable wire harness segment 34 extends from inside the housing 2 to outside the housing 2, and the second interface 312 at the end of the wire harness segment 31 is connected to the external port. Specifically, the positioning element 32 can be a clip, screw, tape, or other fastening device, and its main function is to prevent the fixed wire harness segment 33 from moving or loosening due to vibration or external force.
[0045] Since the end of the fixed wire harness segment 33 near the movable wire harness segment 34 is fixed by the positioning member 32, when the movable wire harness segment 34 moves or is pulled, its force is ultimately transmitted to the positioning member 32, without pulling on the fixed wire harness segment 33, thus ensuring the stable connection between the first interface 311 and the circuit board 21. Therefore, the use of the positioning member 32 ensures the stability of the fixed wire harness segment 33 during use and reduces the risk of loosening due to vibration or external forces.
[0046] Furthermore, the movable wiring harness segment 34 can be extended to allow for a certain range of motion. This ensures that its length will not pull on the fixed wiring harness segment 33 during the insertion and removal of the second interface 312. When it is necessary to adjust the viewing angle of the streaming media rearview mirror, the lens can be manually twisted. Because the movable wiring harness segment 34 has a certain degree of flexibility and range of motion, the lens will not directly act on the connection between the fixed wiring harness segment 33 and the circuit board 21 during adjustment, thus avoiding the risk of loosening.
[0047] Further, see Figure 2 , Figure 4 and Figure 5 The housing 2 is provided with a connector 22, and the connector 22 has a connecting part 221 on the side facing the circuit board 21. The positioning member 32 is detachably connected to the connecting part 221 to fix the wire harness 31.
[0048] Based on this structure, after connecting the first interface 311 of the wire harness 31 to the connection port 211 on the circuit board 21, the positioning member 32 is connected to the connecting part 221, thereby fixing the fixed wire harness segment 33 to the connecting seat 22. Then, the second interface 312 of the movable wire harness segment 34 is led out to the outside of the housing 2.
[0049] The connecting part 221 can be a threaded hole, slot, snap fastener or other connecting structure, and the positioning part 32 can be a screw, insert, snap fastener or other fastener.
[0050] Therefore, when the movable wire harness segment 34 is stretched, the force acts on the positioning member 32 and the connecting part 221. Since the positioning member 32 is connected to the connecting seat 22, it can avoid the force from directly acting on the circuit board 21 and causing damage to the circuit board 21 when the positioning member 32 is connected to the circuit board 21. That is, the tensile force that the positioning member 32 can withstand is increased.
[0051] Further, see Figure 10 The connecting part 221 includes a mounting groove 222, and limiting grooves 223 are provided on both sides of the mounting groove 222; see reference Figure 9 The positioning element 32 includes a connecting block 321, and a limiting protrusion 322 is provided on the outer periphery of the connecting block 321. (See reference...) Figure 6 The connecting block 321 is installed in the mounting groove 222, and the limiting protrusion 322 is embedded in the limiting groove 223.
[0052] Based on this structure, the first interface 311 of the fixed wire harness segment 33 is initially connected to the connection port 211 on the circuit board 21 to ensure normal electrical connection. Next, the connecting block 321 of the positioning member 32 is aligned with the mounting groove 222 of the connecting part 221 and slowly pushed in. During the pushing process, the limiting protrusion 322 and the limiting groove 223 are correctly aligned and successfully fitted.
[0053] After the positioning member 32 and the connecting part 221 are installed, the fixed wire harness segment 33 should be in a relaxed state. This can be achieved by leaving a certain length margin on the fixed wire harness segment 33, or by avoiding excessive bending and pulling during wiring. This prevents the fixed wire harness segment 33 from becoming loose due to the force exerted when the positioning member 32 and the connecting part 221 are connected, and allows the fixed wire harness segment 33 to adapt to vibration changes during vehicle operation to a certain extent.
[0054] Therefore, since the positioning member 32 and the connecting part 221 are mutually fitted and limited in the wiring direction of the wire harness 31, when the movable wire harness segment 34 is pulled, the positioning member 32 can distribute the force transmitted from the movable wire harness segment 34 to the connecting part 221 without pulling the fixed wire harness segment 33.
[0055] Further, see Figure 1 as well as Figure 2 The streaming rearview mirror includes mounting bracket 1, see [link / reference] Figure 3 as well as Figure 8 One end of the mounting base 1 is provided with a rotating part 11, see reference. Figure 10 The connecting seat 22 has a rotating groove 224 in the middle. The rotating part 11 extends into the housing 2 and is rotatably connected to the rotating groove 224 so that the angle of the rearview mirror is adjustable.
[0056] Based on this structure, during assembly, the rotating part 11 can be connected to the rotating groove 224 on the connecting seat 22 first, and the positioning part 32 can be installed on the connecting seat 22. Then, the connecting seat 22 can be connected to the housing 2, and then the interface of the wire harness 31 can be connected.
[0057] The assembled streaming rearview mirror can then be fixed in a suitable position inside the vehicle using the mounting bracket 1, typically below the windshield and in front of the driver's line of sight. In use, the angle of the streaming rearview mirror can be adjusted by gently rotating the rearview mirror and adjusting the relative position of the rotating part 11 and the rotating groove 224.
[0058] Among them, see Figure 8 The rotating part 11 can be a ball bearing, and the connecting seat 22 is made of plastic so that the rotating groove 224 has a certain elastic deformation capability. The ball bearing and the rotating groove 224 are interference-fitted so that the position of the ball bearing in the rotating groove 224 is adjustable.
[0059] Since the wiring harness 31 located inside the housing 2 is fixed to the connector 22 by the positioning member 32, when the connector 22 drives the rearview mirror to rotate relative to the mounting base 1, the fixed wiring harness section 33 rotates with the entire rearview mirror without loosening or twisting. This ensures good contact between the internal interface of the wiring harness 31 and the circuit board 21, ensuring the normal operation of the streaming media rearview mirror.
[0060] Further, see Figure 7 The mounting base 1 has a cable routing channel 12; see reference. Figure 6 The movable wire harness segment 34 extends into the wiring channel 12 through the rotating groove 224 and extends out of the housing 2 through the wiring channel 12.
[0061] After fixing the movable wiring harness segment 34 to the connector 22, the movable wiring harness segment 34 can be inserted into the wiring channel 12. Then, the connector 22 is connected to the mounting base 1, so that the second interface 312 extends from the other end of the wiring channel 12 and connects to the external port on the vehicle body. When the rearview mirror rotates, it will move the movable wiring harness segment 34 within the wiring channel 12. Since the length of the movable wiring harness segment 34 has a margin, the rearview mirror will not pull on the movable wiring harness segment 34 when rotating, thus ensuring the connection between the second interface 312 and the external port.
[0062] Therefore, the movable wiring harness segment 34 is stored in the wiring channel 12, which can ensure that the cables are neat and orderly, and avoid obstructed driving vision or safety hazards caused by messy cables.
[0063] Further, see Figure 3The housing 2 includes a front housing 23 and a bottom housing 24. The circuit board 21 and the connecting seat 22 are both connected to the front housing 23. The bottom housing 24 is connected to the rear side of the front housing 23, and a through hole 241 is provided in the middle of the bottom housing 24. The aforementioned rotating part 11 extends into the through hole 241 and is connected to the rotating groove 224.
[0064] The bottom shell 24 and the front shell 23 are connected by a snap-fit structure, and the connector 22 is connected to the front shell 23. It should be noted that if the circuit board 21 is connected to the front shell 23 and the connector 22 is connected to the bottom shell 24, then when the bottom shell 24 is removed, the bottom shell 24 will move the connector 22 away from the front shell 23. At this time, since the connector 22 is connected to the positioning member 32, it will cause pulling on the wire harness 31.
[0065] Therefore, this application connects both the circuit board 21 and the connector 22 to the front shell 23. When disassembly is required, the bottom shell 24 can be removed first to expose the connector 22. Then, the positioning member 32 can be separated from the connector 22, and the connector 22 can be removed.
[0066] Thus, the front housing 23 provides support for the circuit board 21, the connector 22, and the rotating part 11, while the bottom housing 24 encloses all the components within the housing 2, protecting the circuit board 21 and other electronic components from damage. When it is necessary to repair the circuit board 21 or replace the rotating part 11, the bottom housing 24 and the front housing 23 can be easily disassembled for operation.
[0067] Furthermore, the periphery of the connecting seat 22 is provided with a connecting hole 225, and the connecting hole 225 is fixedly connected to the housing 2 by fasteners.
[0068] Specifically, the fasteners can be screws, bolts, etc. The housing 2 has corresponding mounting holes, and the mounting holes and connecting holes 225 are connected by fasteners, thereby fixing the connecting seat 22 to the housing 2.
[0069] Furthermore, the positioning element 32 is made of an elastic material and is integrally formed on the wire harness 31.
[0070] Specifically, the positioning component 32 can be integrally formed on the outer periphery of the wire harness 31 using elastic materials such as rubber, silicone, and thermoplastic elastomer (TPE) through processes such as SR molding, injection molding, or extrusion molding.
[0071] Therefore, the positioning element 32 is made of an elastic material, possessing a certain degree of elasticity and toughness. When the wire harness 31 is subjected to external forces, the positioning element 32 can absorb and disperse these forces, thereby protecting the wire harness 31 from damage. Simultaneously, the positioning element 32 can firmly fix the wire harness 31 to the housing 2, preventing connection failure between the internal interface of the wire harness 31 and the circuit board 21. Furthermore, the positioning element 32 is integrally formed on the wire harness 31, simplifying the installation process. The wire harness 31 can be fixed to the housing 2 without additional fasteners or tools.
[0072] Example 2
[0073] Unlike Embodiment 1, this embodiment discloses a vehicle, which includes a vehicle body and the streaming media rearview mirror in Embodiment 1. The vehicle body is also provided with a power port and a transmission port, both of which are used for electrical connection with the second interface 312.
[0074] Based on this structure, the camera component of the streaming rearview mirror can be installed at the rear of the vehicle body, while the streaming rearview mirror is installed below the windshield and in front of the driver's line of sight. Then, the exposed wiring harness 31 of the streaming rearview mirror is connected to the power port and transmission port on the vehicle body through the second interface 312.
[0075] The transmission port is connected to one end of the camera extension cable, and the other end of the camera extension cable is connected to the camera. When the rearview mirror wiring harness 31 is connected to the transmission port through the second interface 312, the camera captures a real-time image of the area behind the vehicle and transmits it to the rearview mirror inside the vehicle. The power port is connected to the vehicle's power supply via a power cord. When the rearview mirror wiring harness 31 is connected to the power port through the second interface 312, the power supply provides power to the rearview mirror.
[0076] It should be noted that the wiring harness 31 inside the streaming rearview mirror is also connected to the circuit board 21 via the first interface 311, and the wiring harness 31 is fixed to the circuit board 21 or the housing 2 of the rearview mirror by the positioning component 32. Therefore, when the external wiring harness 31 is plugged into or unplugged from the interface on the vehicle body via the second interface 312, the connection between the first interface 311 and the circuit board 21 will not be affected because the internal wiring is fixed, ensuring good contact.
[0077] When the viewing angle of the streaming rearview mirror needs to be adjusted, the driver can manually twist the lens. Since the wiring harness 31 inside the housing 2 is fixed to the circuit board 21 or the housing 2 by the positioning member 32, the force when twisting the lens will not be directly applied to the connection between the wiring harness 31 and the circuit board 21, thus avoiding the risk of loose connection.
[0078] The specific structure, usage process and principle of the positioning component 32 are described in detail in Embodiment 1, and will not be elaborated further here.
[0079] The technical means disclosed in this utility model are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications are also considered within the scope of protection of this utility model.
Claims
1. A streaming rearview mirror, characterized by: The application relates to a rearview mirror. The application relates to a rearview mirror. The application relates to a rearview mirror.
2. The streaming back mirror of claim 1, wherein: The application relates to a rearview mirror.
3. The streaming back mirror of claim 2, wherein: The application relates to a rearview mirror.
4. The streaming back mirror of claim 3, wherein: The application relates to a rearview mirror.
5. The streaming back mirror of claim 4, wherein: The application relates to a rearview mirror.
6. The streaming back mirror of claim 5, wherein: The application relates to a rearview mirror.
7. The streaming back mirror of claim 5, wherein: The application relates to a rearview mirror.
8. The streaming back mirror of claim 5, wherein: The application relates to a rearview mirror.
9. The streaming rearview mirror of any of claims 1-4, wherein: The application relates to a rearview mirror.
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