The AR0147ATSC00XUEA0-DRBR from ON Semiconductor is a cutting-edge digital image sensor designed to deliver superior imaging performance in a wide range of applications. This sensor is part of ON Semiconductor's renowned AR series, which is known for providing high-quality, high-resolution images for both industrial and consumer markets.
Key Features:
- Resolution: The sensor boasts a 1/4-inch optical format and provides a 1.0 Megapixel resolution, ensuring clear and detailed images.
- Pixel Size: With a pixel size of 3.0 µm x 3.0 µm, it offers excellent sensitivity and low-light performance, making it ideal for security and surveillance applications.
- Frame Rate: It features a high frame rate of up to 45 frames per second (fps) at full resolution, enabling smooth video capture for dynamic scenes.
- Shutter Type: The sensor incorporates a global shutter mechanism, which is perfect for capturing fast-moving objects without distortion.
- Interface: It supports a versatile MIPI CSI-2 interface, ensuring easy integration with a wide range of processors and systems.
- Advanced Imaging Features: The AR0147ATSC00XUEA0-DRBR includes advanced features such as automatic exposure control, automatic gain control, and automatic white balance, simplifying the task of capturing high-quality images under varying lighting conditions.
- Operating Range: Designed for flexibility, it operates over a wide temperature range, making it suitable for outdoor environments and challenging industrial settings.
Applications:
This image sensor is versatile and can be utilized in a multitude of applications, including but not limited to:
- Video surveillance systems
- Automotive vision systems
- Industrial automation and inspection
- Machine vision
- Medical imaging devices
- Unmanned aerial vehicles (UAVs)
The AR0147ATSC00XUEA0-DRBR is a testament to ON Semiconductor's commitment to providing advanced imaging solutions that meet the evolving needs of the digital world. With its robust feature set and flexible application range, this sensor is set to be a key component in the development of innovative imaging systems.