Multifunctional motorcycle display screen structure and motorcycle

By installing and strategically arranging the transmission antenna within the motorcycle display screen, the problem of electrical components interfering with communication was solved, achieving stable wireless transmission and efficient heat dissipation, thus enhancing the user experience.

CN115871834BActive Publication Date: 2025-12-05ZHEJIANG CFMOTO POWER CO LTD
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Patent Information

Application Number
CN202111145122.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-28
Publication Date
2025-12-05
Estimated Expiration
2041-09-28

AI Technical Summary

Technical Problem

In existing motorcycle display screen structures, various electrical components interfere with the wireless communication between the display screen and mobile terminals or cloud servers, resulting in unstable communication.

Method used

By installing and rationally arranging transmission antennas, the interference of control components on communication components is reduced, the stability of communication transmission is enhanced, and a combination structure of metal and plastic housings is adopted to improve heat dissipation efficiency and reduce costs.

Benefits of technology

It achieves more stable and less interrupted wireless transmission, saves space, and improves display performance and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of motorcycle display screen, and particularly relates to a multifunctional motorcycle display screen structure and a motorcycle. The multifunctional motorcycle display screen structure comprises a shell, a display assembly, a cover plate, a circuit board, a control assembly and a transmission antenna. The shell has an opening and a containing cavity; the display assembly is arranged in the containing cavity and is used for displaying images; the cover plate is arranged at the opening of the shell; the circuit board is arranged in the containing cavity; the control assembly is mounted on the circuit board and is used for controlling the display assembly to display images; the transmission antenna is located at one end of the containing cavity away from the control assembly; and the transmission antenna is used for communication between the control assembly and a mobile terminal and / or a server. The transmission antenna can weaken the interference of the control assembly on the transmission antenna through reasonable spatial layout, so that wireless transmission is more stable, and space can be saved.
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Description

Technical Field

[0001] This invention relates to the field of motorcycle display technology, and in particular to a multifunctional motorcycle display structure and a motorcycle. Background Technology

[0002] Motorcycles have become the preferred mode of transportation for people. With the continuous construction and reconstruction of roads in various regions, the traffic environment in various regions is also rapidly expanding and changing, bringing great convenience to people's travel.

[0003] Some existing motorcycle display screens are equipped with electrical components that support various functions of the display screen, enabling users to perform navigation, voice commands, and other operations.

[0004] However, the diverse electrical components in existing display structures can interfere with wireless communication between the display structure and mobile terminals or cloud servers, thereby affecting the interaction between the display and mobile terminals or cloud servers and potentially leading to communication instability. Summary of the Invention

[0005] In view of this, and to address the aforementioned technical problems, it is necessary to provide a multifunctional motorcycle display screen structure and motorcycle that can perform navigation, voice operation, etc., has a simple structure, low cost, and stable communication.

[0006] To solve the above-mentioned technical problems, this application provides the following technical solution:

[0007] A multi-functional motorcycle display screen structure includes: a housing having an opening and a receiving cavity; a control component disposed within the receiving cavity; a display component disposed within the receiving cavity and connected to the control component, the control component controlling the display component to display an image; a communication component disposed within the receiving cavity, the communication component enabling the control component to communicate with a mobile terminal and / or a server; and a cover plate disposed at the opening of the housing. The multi-functional motorcycle display screen structure further includes: a transmission antenna located at the end of the receiving cavity away from the control component; the transmission antenna is capable of receiving or transmitting electromagnetic waves between the communication component and the mobile terminal, or between the communication component and the server; the communication component includes at least one of the following: a Bluetooth module and a WIFI module; the transmission antenna includes at least one of the following: a Bluetooth antenna and a WIFI antenna, wherein the communication component is matched with the transmission antenna.

[0008] In this application, by installing a transmission antenna and making a reasonable spatial layout of the transmission antenna's position, the interference of the control component on the communication component can be reduced, making the communication transmission more stable and less prone to interruption, and enhancing the transmission performance of the display component; at the same time, it can save space; and avoid the existing control component interfering with the transmission of electromagnetic waves between the communication component and the mobile terminal and server.

[0009] Furthermore, the length of the diagonal of the display component is L, and the vertical distance between the center line of the control component projected onto the display component and the center line of the transmission antenna projected onto the display component is M; wherein, L / M is greater than or equal to 1.6 and less than or equal to 2.4.

[0010] This configuration allows for a reasonable spatial arrangement of the control components and transmission antennas, reducing interference from the control components to the transmission antennas and making wireless transmission more stable; furthermore, it saves space.

[0011] Furthermore, the multi-functional motorcycle display screen structure also includes: a circuit board installed within the accommodating cavity, wherein the control component is located on the circuit board and connected to the circuit board; a board-end connector, part of which is located within the accommodating cavity and connected to the circuit board, the board-end connector being used to realize signal interaction connection; and a transmission antenna disposed away from the control component relative to the board-end connector.

[0012] This configuration reduces interference from the control components and board connectors to the transmission antenna, making wireless transmission more stable and improving the user experience.

[0013] Furthermore, the multi-functional motorcycle display screen structure also includes a mounting bracket, which is installed at the opening and connected to the housing; the mounting bracket has a mounting cavity, in which the cover plate and the display component are both installed, and the cover plate is a touch cover plate; the circuit board and the control component are installed on the side of the mounting bracket away from the opening.

[0014] This design makes the cover easy to touch operate.

[0015] Furthermore, the housing includes a metal housing and a plastic housing, the metal housing is connected to the plastic housing, and the position of the metal housing corresponds to that of the control component.

[0016] This design, through the thermal conductivity of the metal casing, improves the heat dissipation efficiency of the control components; at the same time, the use of plastic material for part of the casing avoids affecting the signal transmission of the transmission antenna and greatly reduces costs.

[0017] Furthermore, the metal casing is made of aluminum alloy.

[0018] This design makes the aluminum alloy casing lightweight and has good thermal conductivity, which can effectively reduce the overall weight of the casing and accelerate heat dissipation.

[0019] Furthermore, the multi-functional motorcycle display screen structure also includes an antenna bracket, on which the transmission antenna is mounted, and the antenna bracket is mounted on the end of the circuit board away from the control component and the board end connector.

[0020] This configuration facilitates the installation of the transmission antenna and reduces interference from the control components and board connectors, resulting in more stable wireless transmission and improved user experience.

[0021] Furthermore, the shell is made of metal.

[0022] This configuration can improve heat dissipation efficiency.

[0023] Furthermore, the multi-functional motorcycle display screen structure also includes an antenna bracket, on which the transmission antenna is mounted. The antenna bracket is located at the end of the housing away from the control component and the board connector, and the antenna bracket is fitted into the housing.

[0024] This design is to avoid the metal material affecting the transmission signal of the transmission antenna, by fitting the antenna bracket into the housing.

[0025] This application also provides a motorcycle, including the multi-functional motorcycle display screen structure described above.

[0026] Compared with the prior art, the multifunctional motorcycle display screen structure provided in this application, by installing a transmission antenna and making reasonable spatial arrangements for the position of the transmission antenna, can reduce the interference of the control component on the communication component, make the communication transmission more stable and less prone to interruption, and enhance the transmission performance of the display component; at the same time, it can save space; and avoid the interference of the existing control component on the transmission of electromagnetic waves between the communication component and the mobile terminal and server. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the structure of the motorcycle provided by the present invention;

[0028] Figure 2 This is a front view of the multi-functional motorcycle display screen structure provided by the present invention;

[0029] Figure 3 Rear view of the multi-functional motorcycle display screen structure provided by the present invention;

[0030] Figure 4 A schematic diagram of a portion of the structure of the multifunctional motorcycle display screen provided by the present invention;

[0031] Figure 5 for Figure 4 A magnified view of a section at point A in the middle;

[0032] Figure 6 An exploded view of the structure of the multifunctional motorcycle display screen provided by the present invention;

[0033] Figure 7 for Figure 3 Schematic diagram of the cross section at point BB;

[0034] Figure 8 for Figure 3 Schematic diagram of the cross section at point C;

[0035] Figure 9 for Figure 8 A magnified view of a section at point D;

[0036] Figure 10 for Figure 8 A magnified view of a section at point E in the middle.

[0037] In the diagram, 101 is the motorcycle; 102 is the body panel; 103 is the frame assembly; 104 is the running gear assembly; 105 is the power assembly; 106 is the suspension assembly; 100 is the multi-functional motorcycle display screen structure; 10 is the housing; 11 is the opening; 12 is the abutment platform; 13 is the waterproof component; 14 is the receiving cavity; 15 is the vent; 151 is the first step; 1511 is the waterproof platform; 152 is the second step; 1521 is the channel; 153 is the waterproof and breathable membrane; 16 is the metal housing; 17 is the plastic housing; 20 is the mounting bracket; 21 is the mounting cavity; 22 is the mounting groove; and 30 is the cover plate. 40. Display component; 50. Circuit board; 60. Control component; 61. Shielding cover; 62. Heat-conducting component; 70. Board end connector; 71. Waterproof pad; 80. First shock absorber; 81. Second shock absorber; 82. Third shock absorber; 91. Antenna bracket; 92. Transmission antenna; 93. Communication component; 94. Mobile terminal; 95. Server. Detailed Implementation

[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0039] It should be noted that when a component is said to be "mounted on" another component, it can be directly mounted on the other component or may be interspersed with a component. When a component is said to be "set on" another component, it can be directly set on the other component or may be interspersed with a component. When a component is said to be "fixed to" another component, it can be directly fixed to the other component or may be interspersed with a component.

[0040] 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 in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "or / and" as used herein includes any and all combinations of one or more of the associated listed items.

[0041] Please see Figure 1 This application provides a motorcycle 101, which includes a multi-functional motorcycle display screen structure 100, a body panel 102, a frame assembly 103, a running gear assembly 104, a power assembly 105, and a suspension assembly 106. The body panel 102 is connected to the frame assembly 103. The running gear assembly 104 is connected to the frame assembly 103 via the suspension assembly 106. The power assembly 105 drives the running gear assembly 104 to move.

[0042] The multi-functional motorcycle display screen structure 100 adds multimedia functions, such as a touch interface, radio, navigation, telephone, voice, music, and wireless transmission, thereby providing motorcycle users with a better interactive experience and meeting their higher travel experience requirements.

[0043] Please see Figures 2 to 3 and Figure 6 The multi-functional motorcycle display screen structure 100 includes a housing 10, a mounting bracket 20, a cover plate 30, a display component 40, a circuit board 50, and a control component 60. The housing 10 has an opening 11 and a receiving cavity 14. The display component 40 is disposed within the receiving cavity 14, and the cover plate 30 is disposed at the opening 11 of the housing 10. The circuit board 50 is disposed within the receiving cavity 14, and at least one control component 60 is mounted on the circuit board 50.

[0044] Mounting bracket 20 is installed at the opening 11 and connected to housing 10. Mounting bracket 20 has a mounting cavity 21, within which display component 40 and cover plate 30 are both disposed, with display component 40 located between mounting bracket 20 and cover plate 30. Circuit board 50 and control component 60 are both installed within the receiving cavity 14 of housing 10, located on the side of mounting bracket 20 away from cover plate 30, and circuit board 50 is connected to mounting bracket 20. Control component 60 is located on the side of circuit board 50 away from opening 11 and is connected to circuit board 50. Cover plate 30 is a touch cover.

[0045] It should be noted that the control component 60 in this application is a central processing unit (CPU), the cover plate 30 can realize touch function, the display component 40 mainly displays images and video and other related information, and the circuit board 50 and the control component 60 mainly realize the control of the product, wireless transmission and control of the display component 40 to display images.

[0046] In this application, the cover plate 30 and the mounting bracket 20 are sealed and bonded together using an adhesive dispensing process, which can improve the sealing and waterproof performance and effectively prevent external water from directly entering and damaging the internal display components 40, electronic components, etc. At the same time, the adhesive dispensing process provides high stability and can play a certain role in shock resistance.

[0047] The display component 40 and the cover plate 30 are sealed and bonded together using a full-lamination process. This full-lamination process fills the gap between the display component 40 and the cover plate 30, ensuring a tight fit between them. This improves sealing and waterproofing performance, preventing internal components from being contaminated by dust and moisture in the environment, thus affecting the performance.

[0048] Meanwhile, the full lamination process significantly reduces light reflection and light loss, thereby increasing brightness and enhancing the display effect of the display component 40. Furthermore, the full lamination process between the display component 40 and the cover plate 30 reduces the thickness of the multi-functional motorcycle display screen structure 100, making the motorcycle display component 40 thinner and lighter. Additionally, the full lamination process improves connection strength and stability, thus enhancing shock resistance.

[0049] Please continue reading. Figure 6 and Figure 10The multi-functional motorcycle display screen structure 100 also includes a waterproof component 13, disposed between the housing 10 and the mounting bracket 20. The mounting bracket 20 has a mounting groove 22 on the side near the housing 10, and the waterproof component 13 is installed within the mounting groove 22. The housing 10 has a protruding abutment 12 on the side facing the mounting bracket 20, which extends into the mounting groove 22 and presses against the waterproof component 13. This reduces the gap between the housing 10 and the mounting bracket 20, thereby improving waterproofing and sealing performance, preventing external water or dust from entering the housing 10 and damaging internal electronic components; it also enhances the protection of the multi-functional motorcycle display screen structure 100 and extends its service life.

[0050] In this application, the waterproof component 13 is either a rubber ring or a silicone ring; rubber rings and silicone rings have good sealing, insulation and environmental protection properties, and can withstand high and low temperatures and are less affected by external environmental interference.

[0051] Meanwhile, rubber or silicone rings are used for sealing and waterproofing, which facilitates the disassembly of the housing 10 and the mounting bracket 20 in the future, so as to inspect the inside of the multi-functional motorcycle display screen structure 100 without having to replace the entire multi-functional motorcycle display screen structure 100 when a fault occurs, thereby reducing costs.

[0052] The housing 10 has ventilation holes 15. The multi-functional motorcycle display screen structure 100 also includes a waterproof and breathable membrane 153. The waterproof and breathable membrane 153 is attached to the ventilation holes 15. On the one hand, it can play a waterproof role, protecting the internal structure of the housing 10 from the influence of the external environment. On the other hand, it can balance the pressure difference inside the multi-functional motorcycle display screen structure 100 and play a role in heat dissipation and ventilation, preventing the multi-functional motorcycle display screen structure 100 from generating heat expansion inside and affecting its service life.

[0053] Please see Figures 3 to 5 The vent 15 has a first step 151 and a second step 152, which are stacked along the axial direction of the vent 15. The second step 152 is arc-shaped and has a channel 1521 for balancing air pressure with the outside. Along the axial direction of the vent 15, the first step 151 covers the channel 1521 to prevent water or dust from entering. The first step 151 has a raised waterproof platform 1511, which is Ω-shaped to prevent liquid from flowing in.

[0054] Please see Figure 7The multi-functional motorcycle display screen structure 100 also includes a board-end connector 70 and a waterproof pad 71. The board-end connector 70 is partially located inside the housing 10 and is connected to the circuit board 50. The circuit board 50 and the control component 60 mainly realize the control and wireless transmission of the display component, which needs to be connected to the wire-end connector through the board-end connector 70 to achieve continuous signal interaction and transmission. The waterproof pad 71 is installed around the board-end connector 70 to prevent water from entering the board-end connector 70 and affecting its service life.

[0055] Please see Figure 6 The multi-functional motorcycle display screen structure 100 also includes a first shock absorber 80, a second shock absorber 81 and a third shock absorber 82. The housing 10 is connected to the mounting bracket 20 through the first shock absorber 80, and the first shock absorber 80 is coated with waterproof adhesive to improve the waterproof and dustproof performance of the housing 10 and prevent external water or dust from entering the interior of the housing 10 through the holes of the first shock absorber 80.

[0056] The number of first damping members 80 is adapted to the shape of the housing 10. In this embodiment, the cross-sectional shape of the housing 10 is approximately rectangular, and the number of first damping members 80 is at least four. The first damping members 80 pass through the four corners of the housing 10 to securely connect the housing 10 to the mounting bracket 20. Of course, the number of first damping members 80 can also be other numbers, such as eight, twelve, or sixteen. In other embodiments, the housing 10 can also be of other shapes, such as trapezoidal, and the number of first damping members 80 can also be different, as long as it is adapted to the shape of the housing 10.

[0057] In this application, the circuit board 50 is connected to the mounting bracket 20 via the second shock absorber 81, and the control component 60 is connected to the circuit board 50 via the third shock absorber 82. The shock absorber enables a tight and stable connection between the internal parts of the multi-functional motorcycle display screen structure 100, improves the connection strength, thereby improving the shock resistance of the multi-functional motorcycle display screen structure 100 and reducing the adverse effects caused by vibration during motorcycle driving.

[0058] The number of second shock absorbers 81 is adapted to the shape of the circuit board 50. In this embodiment, the circuit board 50 is approximately cuboid in shape, and there are at least four second shock absorbers 81. The second shock absorbers 81 are respectively inserted into the circuit board 50 to securely connect the circuit board 50 to the mounting bracket 20. Of course, the number of second shock absorbers 81 can also be other numbers, such as 8, 12, or 16. In other embodiments, the circuit board 50 can also be other shapes, such as a square, and the number of second shock absorbers 81 can also be different, as long as it adapts to the shape of the circuit board 50.

[0059] The first damping component 80, the second damping component 81, and the third damping component 82 used in this application are bolts; and the bolts are high-strength bolts with a performance grade of 8.8; of course, bolts with higher performance grades, such as 9.8 or 10.9, can also be used. High-strength bolts have the characteristics of simple connection, good stress performance, replaceability, fatigue resistance, and no loosening under dynamic loads.

[0060] The principle of high-strength bolt connections: High-strength bolts are tightened with a special wrench, generating a large but controlled preload. This preload, through the nut and washer, applies the same preload to the connected components. Under this preload, significant friction is generated along the surfaces of the connected components. Clearly, as long as the axial force is less than this friction, the components will not slip, and the connection will not be damaged. Ordinary bolts, on the other hand, have poor shear resistance and lower connection strength than high-strength bolts. Using high-strength bolts improves connection strength, thereby enhancing the overall seismic performance of the structure.

[0061] Of course, depending on the actual needs, the first damping component 80, the second damping component 81, and the third damping component 82 can also be made of screws or rivets.

[0062] Please see Figures 7 to 9 The multi-functional motorcycle display structure 100 also includes a heat-conducting element 62, which is located inside the housing 10 and connected to the side of the control component 60 away from the opening 11. The heat-conducting element 62 can conduct the heat generated by the control component 60 out more quickly and accelerate the heat dissipation of the control component 60.

[0063] In this application, the thermally conductive component 62 is a thermally conductive pad; the thermally conductive pad has good elasticity and resilience, can adapt to temperature fluctuations, and has excellent thermal conductivity; moreover, it is easy to disassemble, inexpensive, and has a long service life. Of course, the thermally conductive component 62 can also be other components with thermal conductivity.

[0064] Please see Figure 8 The multi-functional motorcycle display screen structure 100 also includes a communication component 93, which is located within the accommodating cavity 14 and on the side of the circuit board 50 away from the opening 11. The communication component 93 enables connection to external wireless devices, such as a mobile terminal 94 or a server 95. The communication component 93 allows the control component 60 to communicate with the mobile terminal 94 and / or the server 95, enabling the multi-functional motorcycle display screen structure 100 to perform functions such as navigation and wireless information interaction, providing diverse features, enhancing the user experience, and meeting various user needs.

[0065] The multi-functional motorcycle display screen structure 100 also includes a transmission antenna 92. It should be noted that the transmission antenna 92 ​​is a key component affecting the transmission characteristics of the communication component 93. In wireless transmission, the transmission antenna 92 ​​functions as both a transmitting antenna and a receiving antenna. The transmission antenna 92 ​​is located at the end of the accommodating cavity 14 furthest from the control component 60. The transmission antenna 92 ​​can receive or transmit electromagnetic waves between the communication component 93 and the mobile terminal 94, or between the communication component 93 and the server 95. The communication component 93 includes at least one of the following: a Bluetooth module and a WIFI module. The transmission antenna 92 ​​includes at least one of the following: a Bluetooth antenna and a WIFI antenna, wherein the communication component 93 is matched with the transmission antenna 92. For example, if the communication component 93 is a Bluetooth module, then the transmission antenna 92 ​​is a Bluetooth antenna matched with the Bluetooth module; if the communication component 93 is a WIFI module, then the transmission antenna 92 ​​is a WIFI antenna matched with the WIFI module; if the communication component 93 is a combination of a Bluetooth module and a WIFI module, then the transmission antenna 92 ​​is a combination of a Bluetooth antenna and a WIFI antenna.

[0066] In this application, the transmission antenna 92 ​​is positioned away from the board connector 70 and the control component 60; the length of the diagonal of the display component 40 is L, and the vertical distance between the center line of the projection of the control component 60 onto the display component 40 and the center line of the projection of the transmission antenna 92 ​​onto the display component 40 is M, where L / M is greater than or equal to 1.6 and less than or equal to 2.4; a reasonable spatial layout of the control component 60 and the transmission antenna 92 ​​can reduce the interference of the control component 60 on the transmission antenna 92, making the wireless transmission more stable.

[0067] Preferably, L / M is 2, which allows for a reasonable layout of the components inside the housing 10, saving space, and also effectively reduces the interference of the control component 60 on the transmission antenna 92. Of course, depending on the actual needs, L / M can also be 1.8, 1.9, 2.2 or 2.3.

[0068] Please see Figure 8 and Figure 9 The multi-functional motorcycle display screen structure 100 also includes a shielding cover 61, which is placed on the control component 60 and connected to the circuit board 50. The shielding cover 61 can prevent external environmental signals from interfering with the control component 60, thereby improving the performance of the multi-functional motorcycle display screen structure 100.

[0069] Please see Figure 8In one embodiment, the housing 10 includes at least one metal housing 16 and at least one plastic housing 17, the metal housing 16 and the plastic housing 17 are connected, and at least the housing 10 corresponding to the control component 60 is a metal housing 16. Because the control component 60 generates a large amount of heat during operation, the metal housing 16 is correspondingly disposed with the control component 60, and the heat dissipation efficiency at the control component 60 can be improved by utilizing the thermal conductivity of the metal housing 16.

[0070] Furthermore, since the multi-functional motorcycle display screen structure 100 of this application has added multimedia functions, a large number of electronic components have also been added inside, which causes the multi-functional motorcycle display screen structure 100 to generate a lot of heat during operation. The metal casing 16 can also improve the heat dissipation efficiency of the entire multi-functional motorcycle display screen structure 100.

[0071] The metal shell 16 and the plastic shell 17 are connected by an injection molding process, in which plastic is filled between the plastic shell 17 and the metal shell 16. The plastic shell 17 and the metal shell 16 are respectively embedded in the plastic. This can enhance the sealing and waterproof performance and prevent the internal parts from being contaminated by dust and moisture in the environment, thus affecting the performance.

[0072] The metal material used for the metal casing 16 has a density of 1.4 g / cm2-2.2 g / cm2, for example, a metal material with a density of 1.6 g / cm2, 1.8 g / cm2 or 2 g / cm2 can be used.

[0073] The metal housing 16 is made of aluminum alloy. The aluminum alloy housing 10 is lightweight and has good thermal conductivity, which can accelerate the heat dissipation of the control component 60 and effectively reduce the overall weight of the housing 10.

[0074] Please continue reading. Figure 8 The multi-functional motorcycle display screen structure 100 also includes an antenna bracket 91, which is made of plastic. The transmission antenna 92 ​​is mounted on the antenna bracket 91. The antenna bracket 91 is mounted on the end of the circuit board 50 away from the control component 60 and the board connector 70, thereby reducing the interference of the control component 60 and the board connector 70 on the transmission antenna 92, making the wireless transmission more stable and improving the user experience.

[0075] Apart from the metal housing 16 corresponding to the control component 60, the other parts of the housing 10 are plastic housings 17, meaning that the housing 10 corresponding to the mounting position of the transmission antenna 92 ​​is made of plastic. Using a plastic housing 10 serves two purposes: firstly, it avoids affecting the signal transmission of the transmission antenna 92; secondly, it significantly reduces costs.

[0076] In another embodiment, considering the heat dissipation of the multi-functional motorcycle display screen structure 100, the entire housing 10 can be made of metal. The antenna bracket 91 is located away from the control component 60 and the board connector 70. The transmission antenna 92 ​​is mounted on the antenna bracket 91. In order to avoid the metal material affecting the transmission signal of the transmission antenna 92, the antenna bracket 91 is fitted into the housing 10.

[0077] The multi-functional motorcycle display screen structure 100 of this application integrates instrument and entertainment functions, and incorporates multiple functions such as waterproofing, transmission antenna 92, control components 60, FM / AM power amplifier, shock resistance, and heat dissipation. Furthermore, through reasonable spatial layout, the shape of the multi-functional motorcycle display screen structure 100 is reduced, making the multi-functional motorcycle display screen structure 100 lighter and thinner, with a simple overall structure, low cost, and high degree of intelligence.

[0078] Entertainment-equipped display screens are increasingly appearing in various car brands. Compared to traditional cars, cars with entertainment features typically integrate them into the center console area between the driver and passenger seats. Existing solutions are generally easier to implement in cars because the cabin space is larger, making it easier to simultaneously arrange the instrument panel and center console display components. However, implementation in motorcycles is relatively difficult, which is related to the smaller front space and lower cost of motorcycles.

[0079] Currently, while some motorcycles support intelligent features, most employ a separate solution for instrument and entertainment functions. This means two distinct display components handle the instrument and entertainment functions, respectively, and two independent control components manage and control each display. Due to space limitations in the front area of ​​the motorcycle, it's difficult to arrange the instrument and entertainment screens effectively, making them smaller and hindering user access to information.

[0080] Compared to display components in general automobiles, the multi-functional motorcycle display screen structure 100 provided in this application is designed for motorcycles, which are typically used outdoors in more complex environments and are significantly affected by weather and environmental conditions. Therefore, motorcycles require much higher levels of dust and water resistance, as well as greater shock resistance, to meet user needs. This application utilizes full lamination technology, dispensing technology, waterproof components 13, and waterproof adhesive to achieve the overall dust and water resistance of the multi-functional motorcycle display screen structure 100.

[0081] Meanwhile, automotive display components typically have plastic casings, while the multi-functional motorcycle display structure 100 requires higher brightness during use. Therefore, the multi-functional motorcycle display structure 100 operates at higher temperatures than typical automotive display components. Using plastic for the entire motorcycle casing 10 would not meet the heat dissipation requirements of the multi-functional motorcycle display structure 100.

[0082] Therefore, this application improves heat dissipation performance by setting a shell structure consisting of a metal shell or a metal shell 16 and a plastic shell 17. Furthermore, by setting other components and a reasonable spatial layout, the multi-functional motorcycle display screen structure 100 achieves structural simplicity, strong shock resistance, high level of intelligence, and excellent heat dissipation, waterproofing, and dustproofing.

[0083] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore should not be construed as limiting the scope of protection of this invention.

[0084] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0085] Those skilled in the art should recognize that the above embodiments are merely illustrative of the present invention and are not intended to limit the present invention. Any appropriate changes and variations made to the above embodiments within the essential spirit of the present invention fall within the scope of protection claimed by the present invention.

Claims

1. A multifunctional motorcycle display screen structure, comprising: a housing having an open end and a receiving cavity; a control assembly arranged in the receiving cavity; a display assembly arranged in the receiving cavity and connected with the control assembly, the control assembly controlling the display assembly to display images; a communication assembly arranged in the receiving cavity, the communication assembly enabling the control assembly to communicate with a mobile terminal and / or a server; a cover plate arranged at the open end of the housing; characterized in that the multifunctional motorcycle display screen structure further comprises: a transmission antenna located at an end of the receiving cavity away from the control assembly, the transmission antenna being capable of receiving or transmitting electromagnetic waves between the communication assembly and the mobile terminal, or between the communication assembly and the server; the communication assembly comprising at least one of a Bluetooth module and a WIFI module, and the transmission antenna comprising at least one of a Bluetooth antenna and a WIFI antenna, wherein the communication assembly is matched with the transmission antenna; a length of a diagonal line of the display assembly being L, and a vertical distance between a center line of a projection of the control assembly on the display assembly and a center line of a projection of the transmission antenna on the display assembly being M in a length direction of the display assembly; wherein L / M is greater than or equal to 1.6 and less than or equal to 2.

4.

2. The multi-functional motorcycle display screen structure according to claim 1, characterized in that, the multifunctional motorcycle display screen structure further comprising: a circuit board installed in the receiving cavity, wherein the control assembly is located on the circuit board and connected with the circuit board; a board end connector, the board end connector being partially located in the receiving cavity and connected with the circuit board, the board end connector being used to realize interactive connection of signals; the transmission antenna being arranged away from the control assembly relative to the board end connector.

3. The multi-functional motorcycle display screen structure according to claim 2, wherein, the multifunctional motorcycle display screen structure further comprising a mounting bracket, the mounting bracket being installed at the open end and connected with the housing, the mounting bracket having a mounting cavity, the cover plate and the display assembly being installed in the mounting cavity, and the cover plate being a touch cover plate, the circuit board and the control assembly being installed at a side of the mounting bracket away from the open end.

4. The multi-functional motorcycle display screen structure according to claim 2, wherein, the housing comprising a metal housing and a plastic housing, the metal housing being connected with the plastic housing, and the metal housing being arranged in position corresponding to the control assembly.

5. The multi-functional motorcycle display screen structure according to claim 4, wherein, the metal housing being made of an aluminum alloy material.

6. The multi-functional motorcycle display screen structure of claim 4, wherein, the multifunctional motorcycle display screen structure further comprising an antenna bracket, the transmission antenna being installed on the antenna bracket, and the antenna bracket being installed at an end of the circuit board away from the control assembly and the board end connector.

7. The multi-functional motorcycle display screen structure of claim 2, wherein, the housing being made of a metal material.

8. The multi-functional motorcycle display screen structure according to claim 7, characterized in that, the multifunctional motorcycle display screen structure further comprising an antenna bracket, the transmission antenna being installed on the antenna bracket, the antenna bracket being located at an end of the housing away from the control assembly and the board end connector, and the antenna bracket being embedded in the housing.

9. A motorcycle characterized in that a multifunctional motorcycle display screen structure according to any one of claims 1-8.

Citation Information

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