ED-AIC2000 | ED-AIC2100 (Product in development) | |
---|---|---|
CPU | Broadcom BCM2711, quad core Cortex-A72 (ARM v8) 64-bit SoC @ 1.5GHz | Broadcom BCM2711, quad core Cortex-A72 (ARM v8) 64-bit SoC @ 1.5GHz |
Storage | Options for 8GB, 16GB, 32GB eMMC storage | Options for 8GB, 16GB, 32GB eMMC storage |
Image Sensor | 12 million pixels | 12 million pixels |
Lense | Optional liquid module zoom for automatic zooming | - Support a variety of C-Mount lenses - Optional liquid module zoom for automatic zooming |
Illumination | - Intergrated modular light source design, each group of light source can be controlled independently - 3 colors are optional for light sources - Support brightfield and darkfield modes for optimal lighting on normal, etched, high-gloss or textured surfaces | |
Mount | High-quality industrial blue aluminum alloy case, supporting bracket mounting | High-quality industrial blue aluminum alloy case, supporting bracket mounting |
The CM4 AI Camera by EDATEC is a robust and highly integrated industrial AI camera designed to streamline the process of capturing and processing images in various industrial applications. This camera is powered by the Raspberry Pi Compute Module 4 (CM4), which offers a robust computing platform for on-device artificial intelligence work. The CM4 AI Camera is equipped with a 2.0-megapixel global shutter image sensor that can capture high-resolution images at an impressive acquisition rate of up to 70 FPS, ensuring clear and precise imaging even of fast-moving objects. For those who require higher resolution, a 5.0-megapixel rolling shutter version is also available.
The camera is designed to withstand harsh environments, with an IP65 and IP67 rating, making it dust-tight and resistant to water ingress. It can operate in a wide range of temperatures, from 0°C to 45°C, and is capable of withstanding shocks and vibrations, which is essential for industrial settings. The camera also features a red cross laser aiming point for precise focusing and built-in LED illumination, which can be controlled independently for optimal lighting on various surfaces.