Shell integrated display module
By integrating the display unit and the housing in the car housing, combining control and power supply units, dynamic appearance changes and information display are achieved, the problem of separation of the appearance and interior appearance of traditional cars is solved, personalization and functional integration are improved, and information stability and security are ensured.
Patent Information
- Application Number
- CN202510484930.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-07-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional car shells cannot achieve dynamic changes in the appearance of the vehicle. The in-car display system is independent of the shell, which cannot meet the personalized needs of the car owners, and the visual effects and function integration are insufficient.
Design an integrated display module for the shell, integrating the display unit with the outer shell, adopting LCD, OLED, QLED, MicroLED and other display screens, combined with control units, power supply units and perception modules, to realize dynamic display and environmental perception, support multiple power supply and adaptive algorithms, and ensure clear and stable operation of information.
It realizes dynamic changes in the appearance of the vehicle, meets personalized needs, optimizes the in-vehicle display, solves the problem of separation between the display and the shell, ensures clear display of information in different scenarios, provides multiple power supply, prevents interference, and enhances safety and stability.
Smart Images

Figure CN120229193A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of automobiles, and specifically to an integrated housing display module. Background Art
[0002] In the development process of the automotive industry, users' demands for vehicle personalization and intelligence are increasing day by day. Traditional automotive housings only have the functions of protection and decoration. The appearance styles of vehicles are fixed, making it difficult to meet the diverse aesthetic needs of car owners. The in-vehicle display system is independent of the housing, and the collaborative integration of information display and vehicle structure functions cannot be fully realized, resulting in certain limitations in terms of visual effects and functional integration. Therefore, an integrated housing display module is proposed to solve the above problems. Summary of the Invention
[0003] To achieve the above object, the present invention provides the following technical solution: An integrated housing display module, the module includes:
[0004] A display unit, which is integrally arranged with the housing body through planar, flexible, curved or integral molding technology to form a continuous integral structure and can display images, texts and other information; including but not limited to types of display screens such as LCD, LED, OLED, QLED, MicroLED, etc., for realizing large-area dynamic changes in the vehicle appearance, meeting the personalized needs of car owners, and enhancing the visual effects of the vehicle appearance and interior.
[0005] A control unit, electrically connected to the display unit, for receiving external data signals and generating display control signals to control the display unit to display corresponding information.
[0006] A power supply unit, for providing working electrical energy for the display unit and the control unit.
[0007] Further, the control unit includes an information processing unit and a linkage control unit, and the linkage control unit is used to dynamically adjust the display content and display mode according to the vehicle state, external environment data and user input.
[0008] Further, the power supply unit includes an external power interface and a backup battery module to achieve multi-channel power supply for the display unit and the control unit.
[0009] Further, the integration of the display unit and the housing body adopts bonding, embedding or integral molding process to form an inseparable structural connection to prevent physical disassembly or replacement.
[0010] Further, a dynamic adaptive algorithm module is provided in the control unit, and this module automatically adjusts the display control strategy under different working environments.
[0011] Furthermore, this module is applied to vehicles, intelligent devices, or other devices that require a high degree of integration between the housing and the display function to achieve the coordinated integration of information display and device structural functions.
[0012] A manufacturing method of an integrated housing display module using any one of the above-mentioned modules includes the following steps:
[0013] Integrate the display unit with the housing by using bonding, embedding, or integral molding processes to form an integrated structure;
[0014] Electrically connect and communicatively connect the control unit and the power supply unit to the display unit;
[0015] Adopt security technologies such as encrypted data transmission, identity authentication, and multi-factor authentication in the control unit to prevent modification, replacement of a single module, or partial modification of the communication interface to ensure the security and integrity of data transmission.
[0016] Furthermore, it further includes a sensing module, and the module includes:
[0017] Optical sensors, radar sensors, ultrasonic sensors, temperature and humidity sensors, touch sensors, pressure sensors, distance sensors;
[0018] The sensing module analyzes and processes the collected data of different sensors through data fusion technology to achieve dynamic perception of the external environment state.
[0019] Compared with the prior art, the technical solution of the present application has the following beneficial effects:
[0020] This integrated housing display module, through the integrated structure of the display unit and the housing body, breaks through the tradition, realizes the dynamic change of the vehicle appearance, meets personalization, optimizes the in-vehicle display, solves the problem of separation between the display and the housing, the control unit can intelligently adjust the display according to the vehicle state, etc., ensures clear information in different scenarios, the power supply unit provides multiple power supplies, externally supplies power normally, and the backup battery maintains in case of failure, the dynamic adaptive algorithm module can adapt to the environment, prevent interference, and ensure the stable operation of the display module, and the sensing module realizes environmental perception, automatic dimming, warning, and supports interaction, solving the problem of insufficient perception and interaction in traditional vehicles. Description of the Drawings
[0021] Figure 1 It is a schematic structural diagram of the present invention.
[0022] In the figure: 1. Display unit; 2. Outer housing; 3. Control unit; 31. Information processing unit; 32. Linkage control unit; 33. Dynamic adaptive algorithm module; 4. Power supply unit; 41. External power interface; 42. Backup battery module; 5. Sensing module; 51. Optical sensor; 52. Radar sensor; 53. Ultrasonic sensor; 54. Humidity sensor; 55. Touch sensor; 56. Pressure sensor; 57. Distance sensor. Specific implementation
[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0024] Please refer to Figure 1 , a display module with an integrated housing in this embodiment, the module includes:
[0025] A display unit 1, which is integrally arranged with the outer housing 2 through planar, flexible, curved or integral molding technology to form a continuous integral structure and can display images, texts and other information; including but not limited to display screens of types such as LCD, LED, OLED, QLED, MicroLED, etc., for realizing large-area dynamic changes in the vehicle appearance, meeting the personalized needs of the vehicle owner, and enhancing the visual effects of the vehicle appearance and interior.
[0026] A control unit 3, electrically connected to the display unit 1, for receiving external data signals and generating display control signals to control the display unit 1 to display corresponding information.
[0027] A power supply unit 4, for providing working electrical energy for the display unit 1 and the control unit 3.
[0028] The present invention provides an integrated housing display module, which mainly consists of a display unit 1, a housing 2, a control unit 3, and a power supply unit 4. The display unit 1 is integrally arranged with the housing 2 through planar, flexible, curved, or integral molding technology, and the two form a continuous integral structure. The display unit 1 can select display screens of types including but not limited to LCD, LED, OLED, QLED, MicroLED, etc., which can display images, texts, and other information, can realize large-area dynamic changes in the vehicle appearance, greatly meet the personalized needs of vehicle owners, and significantly improve the visual effects of the vehicle appearance and interior. The control unit 3 is electrically connected to the display unit 1, responsible for receiving external data signals and generating display control signals to accurately control the display unit 1 to display corresponding information. The function of the power supply unit 4 is to provide stable operating electrical energy for the display unit 1 and the control unit 3.
[0029] Furthermore, the control unit 3 includes an information processing unit 31 and a linkage control unit 32. Among them, the linkage control unit 32 can intelligently and dynamically adjust the display content and display mode according to the vehicle state, external environment data, and user input. For example, when the vehicle is in different driving states such as high-speed driving, low-speed turning, etc., the brightness of the display unit 1 and the focus of the displayed information can be adjusted; in different weather conditions such as sunny, rainy, night, etc., the contrast and color of the display content are automatically changed to ensure that the driver can clearly obtain important information.
[0030] A dynamic adaptive algorithm module 33 is provided inside the control unit 3. This module can automatically adjust the display control strategy in different working environments. For example, in a high-temperature environment, the display brightness is automatically reduced to reduce power consumption and heat generation; in a low-temperature environment, the response speed of the display is adjusted to prevent phenomena such as image ghosting, effectively preventing the adverse effects of external interference on the display module and ensuring the stable and reliable operation of the display module.
[0031] The power supply unit 4 includes an external power interface 41 and a backup battery module 42. Through this design, multi-channel power supply for the display unit 1 and the control unit 3 is achieved. The external power interface 41 can be connected to the vehicle's power system to supply power to the module when the vehicle is driving normally; while the backup battery module 42 serves as an emergency power source to provide temporary electrical energy for the display unit 1 and the control unit 3 when the external power is interrupted, such as when the vehicle breaks down or the charging system is abnormal, ensuring the basic function operation of the module and ensuring that the vehicle can still maintain a certain information display function under special circumstances.
[0032] The integration of the display unit 1 and the outer housing 2 is achieved through bonding, embedding, or integral molding processes. After these processes, the two form an inseparable structural connection. This design can effectively prevent physical disassembly or replacement, enhance the stability and security of the module, prevent malicious tampering or damage to the display module by unauthorized persons, and also improve the overall protection performance of the module, such as waterproofing, dustproofing, and shockproofing.
[0033] The module also includes a sensing module 5, which encompasses an optical sensor 51, a radar sensor 52, an ultrasonic sensor 53, a temperature and humidity sensor 54, a touch sensor 55, a pressure sensor 56, and a distance sensor 57. The sensing module 5 analyzes and processes the collected data from different sensors through data fusion technology to achieve dynamic perception of the external environmental state. For example, the optical sensor 51 can sense the ambient light intensity for automatically adjusting the brightness of the display unit 1; the radar sensor 52 and the ultrasonic sensor 53 can detect the distance and speed of objects around the vehicle and provide information for the display unit 1 to display safety warning information of the vehicle; the temperature and humidity sensor 54 can sense the ambient temperature and humidity, provide data support for the vehicle's air conditioning system, etc., and also display the ambient temperature and humidity information on the display unit 1; the touch sensor 55 and the pressure sensor 56 can be used for user interaction operations with the display unit 1; the distance sensor 57 can be used to detect the distance between an object and the vehicle, assist in operations such as parking the vehicle, and display relevant information on the display unit 1.
[0034] A manufacturing method of the above-mentioned housing-integrated display module specifically includes the following steps:
[0035] Integrate the display unit 1 and the housing using bonding, embedding, or integral molding processes to form an integrated structure. During this process, strictly control the process parameters, such as the amount of glue applied, curing time, and temperature during bonding; precision control during embedding; mold design and molding process during integral molding, to ensure that the display unit 1 is tightly combined with the housing without affecting the display performance of the display unit 1.
[0036] Electrically connect and communicate connect the control unit 3 and the power supply unit 4 with the display unit 1. During the electrical connection process, ensure the firmness and conductivity of the line connection to avoid problems such as loose connection and short circuit; for the communication connection, ensure the stability and accuracy of data transmission, and can adopt methods such as shielded cables and optimized communication protocols to improve the connection quality.
[0037] In the control unit 3, security technologies such as encrypted data transmission, identity authentication, and multi-factor verification are adopted to prevent modification, replacement of a single module, or partial modification of the communication interface, so as to ensure the security and integrity of data transmission. For example, the transmitted data is encrypted by setting a complex encryption algorithm, and only authorized devices can read and parse the data; multiple identity authentication methods such as fingerprint recognition and password verification are adopted to ensure that the operations on the control unit 3 are performed by legitimate users.
[0038] In summary, for this integrated housing display module, through the integrated structure of the display unit 1 and the housing 2, it breaks through the tradition, realizes the dynamic change of the vehicle appearance, meets personalization, optimizes the in-vehicle display, solves the problem of separation between the display and the housing. The control unit 3 can intelligently adjust the display according to the vehicle state, etc., ensuring clear information in different scenarios. The power supply unit 4 provides multiple power supplies, externally supplied under normal conditions and maintained by the backup battery in case of failure. The dynamic adaptive algorithm module 33 can adapt to the environment, prevent interference, and ensure the stable operation of the display module. The sensing module 5 realizes environmental perception, automatic dimming, warning, and supports interaction, solving the problems of insufficient perception and interaction in traditional vehicles.
[0039] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the existence of additional identical elements in the process, method, article or device comprising the element.
[0040] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A housing-integrated display module, characterized in that: The modules include: A display unit (1), wherein the display unit (1) is integrated with the outer shell (2) through a flat, flexible, curved or integral molding technology to form a continuous integral structure, and is capable of displaying images, texts and other information; including but not limited to LCD, LED, OLED, QLED, MicroLED and other types of display screens, and is used to achieve large-area dynamic changes in the vehicle's exterior, meet the personalized needs of the vehicle owner, and enhance the visual effects of the vehicle's exterior and interior; A control unit (3) is electrically connected to the display unit (1) and is used to receive an external data signal and generate a display control signal to control the display unit (1) to display corresponding information; A power supply unit (4) is used to provide operating power to the display unit (1) and the control unit (3).
2. The housing-integrated display module according to claim 1, characterized in that: The control unit (3) comprises an information processing unit (31) and a linkage control unit (32), wherein the linkage control unit (32) is used to dynamically adjust display content and display mode according to vehicle status, external environment data and user input.
3. The housing-integrated display module according to claim 1, characterized in that: The power supply unit (4) comprises an external power supply interface (41) and a backup battery module (42) to realize multi-channel power supply to the display unit (1) and the control unit (3).
4. The housing-integrated display module according to claim 1, characterized in that: The display unit (1) and the outer shell (2) are integrated by bonding, embedding or integral molding processes to form an inseparable structural connection to prevent physical disassembly or replacement.
5. The housing-integrated display module according to claim 1, characterized in that: The control unit (3) is provided with a dynamic adaptive algorithm module (33), which automatically adjusts the display control strategy under different working environments.
6. The housing-integrated display module according to any one of claims 1 to 5, characterized in that: This module is used in vehicles, smart devices or other devices that require a high degree of integration between the housing and the display function to achieve the coordinated integration of information display and device structure functions.
7. A method for manufacturing a housing-integrated display module according to any one of claims 1 to 5, characterized in that: The following steps are involved: (1) The display unit (1) is integrated with the housing by bonding, embedding or integral molding to form an integrated structure; (2) electrically and communicatively connecting the control unit (3) and the power supply unit (4) to the display unit (1); (3) Security technologies such as encrypted data transmission, identity authentication and multiple verification are used in the control unit (3) to prevent modification, replacement of a single module or partial modification of the communication interface, so as to ensure the security and integrity of data transmission.
8. The housing-integrated display module according to any one of claim 1, characterized in that: It also includes a perception module (5), which includes: Optical sensor (51), radar sensor (52), ultrasonic sensor (53), temperature and humidity sensor (54), touch sensor (55), pressure sensor (56), distance sensor (57); The perception module (5) analyzes and processes the collected data of different sensors through data fusion technology to achieve dynamic perception of the external environment state.