600 kg Payload Material Handling Robot
The AIsirRobot 600 kg Payload Material Handling Robot is an autonomous material handling robot for heavy-load shelf, rack, and material transport in factory and warehouse environments. It supports a maximum transport payload of 600 kg and a maximum lifting payload of 500 kg — both ratings include the transported shelf or rack. Laser SLAM navigation requires no QR codes or magnetic tracks. A 10 cm autonomous lifting mechanism handles shelf pickup and delivery. The robot operates up to 8 hours under full load, travels at 0.1–1 m/s with ±5 cm navigation accuracy, and supports four remote calling methods. Optional elevator control and 3D cameras are available.
Product Overview
Material Handling Robot Key Features & Capabilities






Battery & Charging System for Autonomous Material Transport
LiFePO4 Battery
| Parameter | Specification |
| Battery Type | Lithium Iron Phosphate (LiFePO4) |
| Battery Capacity | 38.4 V / 27 Ah |
| Runtime (Full Load) | Up to 8 hours |
| Runtime (No Load) | Up to 15 hours |
| Charging Time | Approximately 5 hours |
| Charge Cycles | 2,000+ discharge cycles |
| Safety Characteristics | High-temperature tolerant; designed to resist combustion and explosion |
Business Value
LiFePO4 chemistry provides a higher safety margin than standard lithium-ion batteries in industrial environments. The 2,000+ cycle life reduces battery replacement frequency and lowers total cost of ownership. Runtime varies with payload weight, travel distance, and lifting frequency.
Applicable Conditions
Actual runtime depends on payload weight, travel distance, lifting frequency, and operating environment. Actual cycle life varies with charging patterns and ambient temperature conditions.
Automatic Recharging
The robot returns to its charging station automatically when battery levels drop. A charging dock with charging contacts enables autonomous docking and charging without manual intervention. A direct charging port is also available for manual charging when needed.
Practical Implication
The robot can operate without dedicated personnel for battery management. Charging occurs during idle periods or low-battery states, minimizing workflow interruption.
Charging System Specifications
| Component | Specification |
| Adapter Input | AC 110–240 V, 50/60 Hz |
| Adapter Output | 43.2 V / 6.5 A |
| Charging Dock Output | 43.2 V DC / 6.5 A |
| Charging Dock Protection | Overcurrent protection, smart shutoff |
Material Handling Robot Applications
Widely used in factories and workshops, libraries,hazardous environments, logistics and warehousing, andspecialized industries.
- Factory Material Delivery
- Warehouse Transport
- Library Material Transport
- Remote Material Delivery in Controlled or Restricted Areas
- Specialized Industry Applications
