The AR0230CSSC00SUEAH3-GEVB from ON Semiconductor is an advanced CMOS digital image sensor with an active-pixel array of 1928(H) x 1088(V). It is designed to capture high-quality images with superior low-light performance, making it an ideal solution for a wide range of applications including surveillance, industrial, drones, and automotive systems.
Key Features:
- Superior Low-Light Performance: Equipped with ON Semiconductor's innovative pixel technology, this sensor provides excellent image quality even in challenging lighting conditions.
- High Dynamic Range (HDR): Features an advanced HDR mode that captures scenes with high contrast, preserving details in both bright and dark areas.
- Resolution: Delivers stunning high-definition (HD) video with a resolution of 2.1 Megapixels.
- Frame Rate: Supports frame rates up to 60 frames per second (fps) at full resolution, enabling smooth video capture for dynamic scenes.
- Flexible Interface: Offers a 4-lane Serial Digital Interface (SDI) for high-speed data transfer and easy integration with a variety of systems.
- Programmable Controls: Includes programmable controls for frame rate, exposure, gain, cropping, and windowing, providing versatility for different imaging requirements.
- Automatic Exposure and Gain Control: Comes with automatic exposure and gain control to adjust to varying light conditions without manual intervention.
- Electronic Shutter: Features an electronic rolling shutter that allows for simultaneous exposure of all pixels, leading to consistent and sharp images.
Applications:
The AR0230CSSC00SUEAH3-GEVB sensor's adaptability and performance make it suitable for a variety of applications, including:
- Security and Surveillance Cameras
- Automotive Imaging Systems
- Industrial and Machine Vision
- Drone Cameras
- Video Conferencing
- Body-Worn Cameras for Law Enforcement
ON Semiconductor's AR0230CSSC00SUEAH3-GEVB is a testament to the company's commitment to providing cutting-edge imaging solutions that enhance the capabilities of modern electronic devices.