2D object detection laser scanner for AGV/AMR anti-collision
DETECTION FIELD
Detection field - LZR®-VISIOSCAN AC
The LZR®-VISIOSCAN AC is a compact and rugged 2D laser scanner engineered for reliable object detection, area
monitoring, and anti-collision of AGV/AMRs and automatic forklifts. Built to perform in challenging industrial settings, it uses the LASER time-of-flight technology to identify the presence of objects or people within the user defined field and triggers instant responses through its configurable I/O outputs.
LZR®-VISIOSCAN AC delivers reliable low-reflectivity detection (2% @ 7m, 10% @ 15m), while its intelligent object filter minimizes false triggers by ignoring irrelevant targets, ensuring consistent performance in complex industrial environments.
LZR®-VISIOSCAN AC features 16 configurable field triplets with outputs that can be assigned to configurable I/O interfaces, enabling flexible detection setups.
The LZR®-VISIOSCAN AC features a robust design with an operating temperature range of -30 °C to +60 °C, shock resistance up to 15g, and an IP67 protection rating, ensuring stable operation under extreme temperature variations and strong vibration.
The Intelligent Window Monitoring System detects optical window contamination in real-time, enabling predictive maintenance through customizable alerts to prevent performance issues and unplanned downtime.
Engineered for uninterrupted operations from -30°C to +60°C, and withstanding up to 15g shock impact. The scanner’s robust design maintains stable detection, ensuring consistent performance even in harsh industrial environments.
The innovative and intelligent window monitoring system instantly pinpoints the location and severity of any contaminant on the optical window. With user-definable alert thresholds, it enables predictive maintenance scheduling to eliminate unplanned downtime.
CE compliant and UL listed, certified for seamless global market entry, backed by BEA’s commercial and technical support stretching across EU, Americas and APAC regions.