In modern warehouse logistics and industrial automation, the performance of AGV (Automated Guided Vehicle) systems directly impacts operational efficiency. The high-performance 1.5-3 ton AGV lifting and rotating module is designed for high-load mobile robots and intelligent warehouse systems, offering durability, precise motion control, and reliable operation in complex industrial environments.

Key Advantages
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High Load Capacity & Overload Protection: Supports loads from 1.5 to 3 tons with triple overload capability and a rated life exceeding 300,000 cycles, ensuring stability during continuous high-frequency operations.
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Smooth and Precise Motion: Driven by a servo motor, providing stable lifting and rotation movements, reducing mechanical shocks and material damage while enhancing task precision.
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Fast and Accurate Rotation: X-type planetary reducer combined with a rotation origin sensor enables quick and precise positioning, improving handling, sorting, and multi-station efficiency.
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Efficient Operating Speed: Lifting speed of 6mm/s and rotation speed of 60°/s allow rapid completion of complex lifting and rotation tasks in automated warehouse operations.
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Versatile Chassis Compatibility: Flexible design allows integration with pallet transfer AGVs, traction AGVs, multifunctional logistics robots, or custom industrial AGV chassis, providing stable technical support.
Typical Applications
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Warehouse Sorting Systems: Optimizes pallet handling and sorting with precise lifting and rotation.
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Industrial AGV Transport: Ideal for high-load transportation tasks in production workshops and logistics centers.
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Multi-Station Loading & Unloading: Enables precise operation in tight spaces, improving safety and flexibility.
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Smart Logistics Robots: Works seamlessly with other AGV components to build fully automated warehouse systems, enhancing overall operational efficiency.
Selection and Application Guidelines
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Load Matching: Choose 1.5-ton or 3-ton modules according to payload and operation frequency to ensure long-term stable operation.
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Chassis Integration: Evaluate chassis structure and module compatibility for optimized power and motion coordination.
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Environment Adaptation: Suitable for indoor warehouse environments, capable of handling dense logistics and continuous operations.
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Maintenance and Reliability: Durable structure reduces maintenance frequency, while the servo motor controller provides high-precision positioning feedback for system monitoring and remote maintenance.
Conclusion
The 1.5-3 ton AGV lifting and rotating module enhances warehouse logistics and industrial automation efficiency while providing reliable core power for smart warehouse systems. Choosing a high-performance, highly compatible module significantly improves AGV operational efficiency, handling precision, and long-term reliability.

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