#ADAS #Camera #HDR #LFM #Tuning #4k #FHD #2M #3M #8M #AI #Telelian #TELROP
AI/ADAS camera technology provides image perception capabilities capable of adapting to precise and complex environments to enhance vehicle safety and autonomous driving abilities. Distinguished from general cameras by features such as high resolution, HDR, and LED flickering mitigation, these cameras are core components of driver assistance systems.
Characteristics of ADAS Cameras
They detect the surrounding environment in real-time and provide data for lane changes, obstacle detection, collision prevention, and more. They must operate with high precision and perform reliably under various weather conditions.
General Camera Tuning
Camera tuning is the process of adjusting camera settings to optimize image quality based on the lens and sensor. Unlike general cameras, ADAS cameras must provide accurate images under diverse external conditions (weather, lighting, etc.), making the tuning process complex and time-consuming.
Generally, tuning is performed in a controlled indoor environment followed by real-world tuning. However, depending on requirements, repetitive tuning and verification are necessary based on weather and lighting conditions, which requires significant time.
The Necessity of High Dynamic Range & LED Flickering Mitigation
High Dynamic Range (HDR) allows for the simultaneous capture of details in both very bright and very dark areas. For example, this enables the clear visibility of both a vehicle under direct sunlight and a vehicle in the shadows. LED Flickering Mitigation (LFM) is a technology that reduces the flickering caused by LED traffic lights or billboards, helping the camera recognize blinking lights as continuous signals.
Below are comparison videos of other cameras and footage filmed during tuning in various environments.


Comparison Between General Cameras and Perception Cameras
While general cameras are designed to capture photos or videos on behalf of the human eye, perception cameras focus on detecting and interpreting the environment to improve vehicle safety and driving support functions. In the comparison photos below, you can observe an evenly distributed histogram in the ADAS camera.

Comparison Between 3M Pixel (1920x1536) and 2M Pixel (1920x1080)
The 3M pixel camera can capture a larger area in the vertical direction compared to the 2M pixel camera. This is particularly useful for recently developed service robots.

Comparison Between 2M Pixel and 8M Pixel (4K)
The 8M pixel camera (commonly referred to as 4K) offers much higher resolution than the 2M pixel camera. In ADAS systems, such high-resolution images can help analyze the surrounding environment more precisely.

AI Perception Camera Lineup (2024.02)

#ADAS #Camera #HDR #LFM #Tuning #4k #FHD #2M #3M #8M #AI #Telelian #TELROP
AI/ADAS camera technology provides image perception capabilities capable of adapting to precise and complex environments to enhance vehicle safety and autonomous driving abilities. Distinguished from general cameras by features such as high resolution, HDR, and LED flickering mitigation, these cameras are core components of driver assistance systems.
Characteristics of ADAS Cameras
They detect the surrounding environment in real-time and provide data for lane changes, obstacle detection, collision prevention, and more. They must operate with high precision and perform reliably under various weather conditions.
General Camera Tuning
Camera tuning is the process of adjusting camera settings to optimize image quality based on the lens and sensor. Unlike general cameras, ADAS cameras must provide accurate images under diverse external conditions (weather, lighting, etc.), making the tuning process complex and time-consuming. Generally, tuning is performed in a controlled indoor environment followed by real-world tuning. However, depending on requirements, repetitive tuning and verification are necessary based on weather and lighting conditions, which requires significant time.
The Necessity of High Dynamic Range & LED Flickering Mitigation
High Dynamic Range (HDR) allows for the simultaneous capture of details in both very bright and very dark areas. For example, this enables the clear visibility of both a vehicle under direct sunlight and a vehicle in the shadows. LED Flickering Mitigation (LFM) is a technology that reduces the flickering caused by LED traffic lights or billboards, helping the camera recognize blinking lights as continuous signals.
Below are comparison videos of other cameras and footage filmed during tuning in various environments.
Comparison Between General Cameras and Perception Cameras
While general cameras are designed to capture photos or videos on behalf of the human eye, perception cameras focus on detecting and interpreting the environment to improve vehicle safety and driving support functions. In the comparison photos below, you can observe an evenly distributed histogram in the ADAS camera.
Comparison Between 3M Pixel (1920x1536) and 2M Pixel (1920x1080)
The 3M pixel camera can capture a larger area in the vertical direction compared to the 2M pixel camera. This is particularly useful for recently developed service robots.
Comparison Between 2M Pixel and 8M Pixel (4K)
The 8M pixel camera (commonly referred to as 4K) offers much higher resolution than the 2M pixel camera. In ADAS systems, such high-resolution images can help analyze the surrounding environment more precisely.
AI Perception Camera Lineup (2024.02)
