Physical AI For The Warehouse Floor
Ideal for space-constrained environments, the EL1 is optimized for high-frequency, low-lift material movement where speed, consistency, and reliability are critical.
Proven, Predictable Performance
With 20M+ autonomous miles driven to date, Seegrid AMRs do exactly what you expect them to do–delivering on time, every time.
Reduced Operating Costs
Optimize workflow processes and lower operational costs with consistent and efficient delivery of goods and labor predictability.
Unmatched
Flexibility
Dynamically dispatch or redeploy your AMR fleet during live production shifts using Fleet Central management software for unparalleled operational flexibility and unmatched ROI.
Automate Repetitive Tasks
Seegrid AMRs automate monotonous, hard labor tasks, mitigating industrial labor shortages and allow human workforces to focus on value-add, cognitive roles.
Trusted by Top Industry Leaders
Automated Workflows for the Lift EL1 AMR
A high-performance solution in a compact, cost-effective form factor built for low-lift applications across warehousing, 3PL, and high-volume fulfillment environments.
The Foundation of Our Physical AI
Lift EL1 Specifications
The Lift EL1 is engineered to strictly adhere to ANSI B56.5 and ISO/IEC industrial autonomous vehicle safety standards, utilizing overlapping 3D sensor fields to guarantee a secure operating environment.
Key Specifications
Max Lift Height: 5' 2"
Payload Capacity: 2,500 lbs
Maximum Automatic Speed: 3.4 mph
Safety: Layered 2D & 3D LiDAR sensors
Forks: ITA Rated; 42" Standard, 36"-48" Optional
Frequently Asked Questions
Can't find what you're looking for?
Both are automated lift trucks, but they serve different physical footprints. The Lift EL1 is a compact, highly cost-efficient model with a 2,500 lb capacity and a 5' 2" lift height, built specifically for space-constrained warehousing facilities. The Lift RS1 is a larger autonomous truck with a 3,500 lb capacity and a 6-foot lift height, designed for heavier payloads and industrial manufacturing environments.