Rethink Your AMR System with MagFleet

MagFleet operates as the central control layer for multi-robot coordination and execution.

Automate every move across your AMR fleet

With Magfleet, one operator can automate and coordinate a full fleet of SESTO AMRs by assigning jobs, avoiding traffic, and moving materials exactly where they’re needed.

MagFleet

SESTO’s fleet management software that coordinates AMR workflows across your facility   for smarter internal movement.

Manufacturing

MagFleet coordinates AMR movements across production areas, helping parts, pallets, and materials move efficiently between stations.

Healthcare

MagFleet manages autonomous workflows across healthcare environments, supporting reliable movement of medicines, linen, meals, supplies, and other hospital materials.

Warehousing

MagFleet streamlines warehouse transport by coordinating AMRs for zone-to-zone movement, replenishment, and internal material flow.

Semiconductor

MagFleet supports precise and controlled AMR coordination in semiconductor environments, helping maintain smooth movement of materials across clean and support areas.

Aerospace

MagFleet enables coordinated transport of tools, components, and materials across aerospace production and maintenance environments.

Specialty Industries

MagFleet adapts to specialized workflows by coordinating AMR fleets across unique operational environments with complex material movement needs.

Our Solutions

Our Software Suite

Comprehensive solution for seamless robotic system management. 

Mission

Build smarter workflows.

Design, launch, and scale robot missions with confidence. Mission lets you turn real operational goals into intelligent automation  from simple transport to complex, multi-step workflows with logic, triggers, and conditions built in.

Standardize what works and adapt when things change. 

Fleet

One command center.

Fleet gives you real-time command over every robot, every task, and every movement. Assign work dynamically, prevent traffic conflicts, manage charging automatically, and control shared resources like doors and lifts from a single live dashboard.

The result: Higher throughput and a fleet that runs itself.

Navigation Software

Build your autonomous operation

Our priorietary AI-drive Fleet Management System enables optimisation of payload delivery in both healthcare and manufacturing environment. It orchestrates and prioritises the deliveries that matter to you; delivering reliability and efficiency daily.

Laser based Navigation

Sesto’s AMRs use laser SLAM to build and maintain a high-precision map of your site, localizing within millimeters without floor markers. The lidar continuously matches live scans to the map, so routes stay reliable even when layouts shift or aisles crowd up. Map updates are versioned and deployable with zero downtime, enabling quick reconfiguration for new lines or temporary works.

Forward-facing depth cameras significantly enhance safety and navigation by providing a rich 3D perspective that complements traditional lidar. 

This 3D view allows the system to recognize challenging obstacles often missed by 2D sensors, such as low, OR overhanging dynamic objects especially in the healthcare and manufacturing sector, where such obstructions are spotted along the paths. By fusing 3D depth data with laser inputs, the system improves edge-case handling for things like open-legged carts, unusually high pallets, or partially obscured obstacles. The result is safer navigation in dynamic environments and smoother docking performance.

Safety scanners create intelligent protection fields that expand or shrink with speed and turning radius, stopping the AMR before contact. Vision and lidar work together to detect people, trolleys, and floor hazards in real time, with conservative behaviors (slow/stop/seek path) when scenes are uncertain. All events are logged for traceability and continuous tuning.

Sesto’s robots automatically adjust their speed based on the environment, slowing down near people, doors, and in tight corners, and accelerating on open, straight paths. Throughput remains consistent without compromising safety or comfort in mixed-traffic areas. Customization is possible through policies that can be set for specific zones (e.g., quiet areas in wards, shared corridors), and these policies can also account for factors like payload, slope, and floor conditions.

Industry Use case

Robotics
innovation in action

Exploring the cutting edge of autonomous industrial technologies

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