A high-efficiency automotive lighting system based on flat light design (Flat Light technology)
Patent Information
- Application Number
- CN202510299642.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-09-22
AI Technical Summary
[0002]传统的汽车照明系统由于其结构和材料限制,通常具有较大的厚度,安装空间有限,且能耗较高;要不就是采用更高价格的技术路线
可集成摄像头和传感器,实时检测周围环境变化,如迎面车辆、行人或道路标识,并智能调整欢迎/欢送等等动画模式,增加车车、车人互动。
Smart Images

Figure FT_1
Abstract
Description
Technical Field
[0001] This invention belongs to the field of automotive lighting technology, specifically relating to a high-efficiency automotive lighting system based on a highly uniform surface light-emitting design, suitable for the lighting and signaling function requirements of passenger cars, commercial vehicles, and autonomous vehicles. Background Technology
[0002] Traditional automotive lighting systems, due to structural and material limitations, are typically quite thick, resulting in limited installation space and high energy consumption; alternatively, they often employ more expensive technologies. Furthermore, traditional lamps fall short in terms of brightness, intelligent adjustment, and personalized settings, failing to meet the demands of modern vehicles for high efficiency, intelligence, and aesthetics. Therefore, developing an ultra-thin, efficient, intelligent, and aesthetically pleasing automotive lighting system has become an urgent technical challenge. Summary of the Invention
[0003] This invention provides a high-efficiency automotive lighting system (FlatLight technology) based on a highly uniform surface light emission design, and an ultra-thin intelligent automotive lighting system and its application method, aiming to overcome the above-mentioned shortcomings in the prior art. Technical solution
[0004] Ultra-thin optical design: The lighting system employs a unique optical design, with an overall thickness controlled within a few millimeters, greatly reducing the required installation space.
[0005] Through precision manufacturing processes, the structural strength and heat dissipation performance of the lamps are ensured, enabling them to work stably in various environments.
[0006] High-efficiency LED light source: It adopts high-efficiency LED light source, providing extremely high brightness output to ensure sufficient illumination under various driving conditions.
[0007] LED light sources consume less energy, reducing energy consumption by 50% compared to traditional halogen or xenon lamps, which helps reduce vehicle fuel consumption and carbon emissions.
[0008] Designed for a lifespan of over 50,000 hours, it requires almost no replacement, reducing maintenance costs over long-term use.
[0009] Intelligent control system: It can integrate cameras and sensors to detect changes in the surrounding environment in real time, such as oncoming vehicles, pedestrians or road signs, and intelligently adjust the welcome / farewell animation modes to increase vehicle-to-vehicle and vehicle-to-person interaction.
[0010] It supports directly displaying important prompts such as warning signs to indicate vehicle status, thereby improving driving safety and convenience.
[0011] Personalized lighting solutions are provided based on different driving habits and road conditions.
[0012] Aesthetics and personalization: The lamps have a simple and stylish design that blends perfectly with the design style of modern cars.
[0013] Users can customize the beam shape, color, and intensity through a mobile application or in-vehicle system to create a personalized driving experience.
[0014] Durability and reliability: It can work stably in harsh environments, has UV resistance and corrosion resistance, and is adaptable to various climatic conditions.
[0015] It can operate normally in a temperature range of -40°C to 85°C, ensuring reliability even under extreme conditions.
[0016] Environmental protection and sustainability: Made with environmentally friendly materials, reducing the emission of harmful substances and complying with environmental standards such as RoHS.
[0017] By optimizing optical design and intelligent power management, energy consumption is further reduced, battery life is extended, and green travel is facilitated.
[0018] Further details of this application are set forth in the claims and the accompanying drawings.
[0019] To make the above description of this application more easily understood, the following is a further explanation with accompanying drawings. Attached Figure Description To more clearly illustrate the embodiments of this application, the accompanying drawings used are briefly described.
[0020] Figure 1 This is a schematic diagram of the overall structure of the lighting system in this invention; Figure 1 The reference numerals in the attached figures are as follows: 101-pattern generating cover; 102-protective back cover; 103-light generator; 104-reflection device; 105-light guide with microscopic optical pattern; 106-light homogenizer; 107-intelligent control system. Detailed Implementation
[0021] Manufacturing process: High-precision injection molding process is used to ensure the dimensional accuracy and surface quality of the lamps.
[0022] Use a high-reflectivity reflective device to ensure maximum light utilization.
[0023] By using highly uniform materials, more uniform light output can be achieved.
[0024] Intelligent control system: By combining a high-sensitivity camera with various sensors, such as infrared sensors and distance sensors, optical control is achieved through real-time monitoring of changes in the surrounding environment.
[0025] Equipped with a high-performance processor and memory, it supports complex image processing and data analysis tasks.
[0026] Enables dynamic optimization and personalized customization of lighting strategies.
[0027] User interface: Develop dedicated mobile applications or in-vehicle system interfaces that allow users to customize the displayed images through an intuitive user interface.
[0028] It provides preset modes, allowing users to quickly select suitable lighting and display solutions. Application scenarios: In passenger vehicles, Flat Light technology is applied to headlights, rear combination lights, and interior lights to improve lighting and signaling performance and enhance the comfort of the in-vehicle environment.
[0029] Utilizing the compact design and high efficiency of Flat Light technology, it meets the needs of high-intensity usage environments.
[0030] In autonomous vehicles, display technology enhances communication between the vehicle and pedestrians or other vehicles by enabling interaction with the surrounding environment.
Claims
1. A high-efficiency automotive lighting system, characterized in that, The system includes: An optical structure based on a highly uniform surface emission design; High-efficiency LED light source, providing extremely high brightness output while reducing energy consumption; Intelligent control system for real-time adjustment of display mode; Light guides and light homogenizers with micro-optical patterns enable more uniform light output; The overall thickness of the system is controlled within a few millimeters, making it suitable for the lighting and signaling needs of passenger cars, commercial vehicles, and autonomous vehicles.
2. The high-efficiency automotive lighting system according to claim 1, characterized in that, The optical structure is manufactured using precision processes to ensure structural strength and heat dissipation performance, enabling it to operate stably in various environments.
3. The high-efficiency automotive lighting system according to claim 1, characterized in that, The high-efficiency LED light source consumes 50% less energy than traditional halogen lamps or xenon lamps, and has a designed lifespan of over 50,000 hours.
4. The high-efficiency automotive optical system according to claim 1, characterized in that, The integrated intelligent control system can intelligently adjust the welcome / farewell animation mode or display warning signs in real time.
5. The high-efficiency automotive lighting system according to claim 1, characterized in that, The system supports customizable light patterns via mobile applications or in-vehicle systems, providing a personalized driving experience.
6. The high-efficiency automotive lighting system according to claim 1, characterized in that, The system employs a high-reflectivity reflective device and highly uniform materials to improve light utilization and achieve more uniform light output.
7. The high-efficiency automotive lighting system according to claim 1, characterized in that, The system employs a high-precision injection molding process to ensure the dimensional accuracy and surface quality of the lamps.
8. The high-efficiency automotive lighting system according to claim 1, characterized in that, The intelligent control system enables dynamic optimization of the lighting strategy.
9. The high-efficiency automotive lighting system according to claim 1, characterized in that, It can operate normally in a temperature range of -40°C to 85°C.
10. The high-efficiency automotive lighting system according to claim 1, characterized in that, The system is made of environmentally friendly materials and complies with environmental standards such as RoHS. It further reduces energy consumption through optimized optical design and intelligent power management.
11. The high-efficiency automotive lighting system according to claim 1, characterized in that, The system can be applied to headlights, rear combination lights, and interior lights of passenger vehicles to improve lighting and signaling functions and enhance the comfort of the vehicle interior environment.
12. The high-efficiency automotive lighting system according to claim 1, characterized in that, The system utilizes a compact design and high efficiency to meet the needs of commercial vehicles and autonomous vehicles in high-intensity usage environments, and enhances communication between vehicles and pedestrians or other vehicles.