DATE: 2026/06/03

Robot Pallet Mover High Performance & Durable

Robot Pallet Mover High Performance & Durable

Robot Pallet Mover

SEER Robotics’ intelligent robot pallet mover, with its high-precision positioning and multimodal navigation capabilities, helps system integrators rapidly deploy flexible logistics solutions. SEER Robotics is a leading manufacturer of mobile robots, cutting out the middleman to offer direct bulk purchasing, ensuring you benefit from more competitive factory‑direct pricing and faster delivery times.

The robotic pallet mover is primarily used for material handling in automotive manufacturing workshops, line-side sorting in electronics factories, handling of new-energy battery pallets, and high-density storage in warehousing and logistics operations.

Rated load
1.5 tons
Navigation Mode
Laser Positioning
Positioning accuracy
±10mm

Features Of The Robot Pallet Mover

Brain-Driven Operation Powered by an Intelligent Controller
Equipped with an industry-leading core controller, the entire vehicle boasts robust autonomous computing and control capabilities, ensuring stable and highly efficient operation at the system’s lowest level.
High-Precision Positioning and Smooth Docking
Leveraging advanced laser navigation technology, the system delivers exceptional end-effector positioning accuracy, ensuring high‑precision handling during pallet docking and transport and minimizing the risk of material collisions.
Compact turning radius for dense environments
The vehicle’s body structure has been engineered to be highly compact, delivering an exceptionally small turning radius that enables agile maneuvering in narrow aisles and high-density storage areas, thereby maximizing space utilization.
All‑round, three‑dimensional obstacle avoidance safety system
By integrating multiple sensors, including safety LiDAR and drop‑prevention cameras, it delivers 360‑degree, three-dimensional protection, enabling highly sensitive intelligent stopping and obstacle avoidance to ensure safe human–robot collaboration.
Excellent heavy-duty fork-picking and handling capacity
The product line has a strong industrial-grade carrying capacity, supports heavy-duty cargo handling up to 1.5 tons, and is perfectly suitable for automatic handling of various heavy-duty industrial spare parts and bulk carriers.
One-stop rapid deployment of a software‑hardware ecosystem
Equipped with mature implementation tools and fleet management software, it offers open system interfaces, enabling automation integrators to swiftly build and deploy robotic fleets on-site within just a few days.
Robot Pallet Mover Structured Detailed Parameter Table
Parameter Items Specifications and Technical Indicators
Rated load capacity 300 kg to 1.5 tons
Core Control System Controller Components
Navigation and positioning technology Laser positioning and natural feature navigation
Operating speed 2m/s
Security protection configuration Obstacle avoidance LiDAR and mechanical anti-collision contact edge
Auxiliary sensing devices 3D anti-drop camera
Dispatch management software Robot Management and Scheduling System

Robot Pallet Mover Comparison
Points

Conventional mobile handling equipment often faces the problem of incompatible hardware and software, making it easy to lose positioning in a complex dynamic environment. The robot pallet mover developed by SEER deeply integrates the control brain, perception system, and actuator of the whole vehicle by carrying a self-developed intelligent controller, giving the equipment strong adaptability to the field environment. Automation integrators are generally limited to cumbersome secondary development when delivering traditional projects. Relying on a large-scale open platform and a one-stop digital software matrix, SEER Robotics provides integrators with a fast vehicle-building and deployment channel, greatly reducing the overall supply chain integration and fleet scheduling costs.

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Obstructed fork taking of carriers in dense storage locations
In dense storage areas where pallets or racks are not placed in standard positions, the equipment uses advanced perception to intelligently adjust the fork-taking angle to deal with the problem of non-standard placement of carriers.
Dynamic complex workshop environment positioning loss
In the frequent human-machine mixed spatial layout of the evolving industrial high-dynamic field, LiDAR-based natural feature positioning to deal with the change of site markers caused by navigation loss.
Cross-regional multi-vehicle hybrid scheduling is difficult
In view of the problem that multi-specification and multi-type handling equipment cannot be managed uniformly between different processes, the equipment cooperates with unified scheduling software to deal with cross-workshop material flow information faults and conflicts.

Instructions for using the robot pallet mover

Workshop environment map construction
Operators use one-stop implementation tool software to control equipment to drive slowly in the site, and automatically scan and generate high-precision maps through on-board LiDAR.
01
Driving path site editing
On the generated electronic map, draw the driving route of the equipment through the visual interface, and mark the pallet fork position and the automatic charging pile site.
02
Sensing obstacle avoidance parameter calibration
Configure the sensing range of LiDAR and the anti-fall camera, and set the deceleration interval and safe stopping distance through software to ensure the operation safety in a complex environment.
03
Unified scheduling and operation of the fleet
The central robot management and scheduling system issues handling tasks to the equipment, realizing multi-vehicle coordination, path planning, and visual circulation of the whole material process.
04

Robot Pallet Mover For People

Logistics integrators in the automotive manufacturing industry

System integrators that specialize in providing smart logistics solutions for large automotive workshops. Through the introduction of this product, it can be perfectly adapted to the automatic flow of heavy parts and bulk pallet materials.

Electronics and semiconductor system integrators

Integrators that provide automation upgrade services to well-known industrial brand factories. Using the high-precision positioning ability of this equipment, the stable docking between the precision electronic material rack and the semi-finished tray is realized.

Consumer electronics and medical factory purchasers

Head of in-plant logistics covering a wide range of product lines and facing high-frequency material turnover. They need to improve the level of workshop automation by introducing highly automated equipment to replace traditional manual transportation.

Heavy-duty and modern warehouse manufacturers

Mobile robot body manufacturers with vehicle mechanical design capabilities but a lack of core control systems. By directly using our proven controllers and components, you can quickly upgrade your forklift or chassis to a high-performance smart device in a few days.

Certificates And Factories

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As the world’s leading controller manufacturer, SEER Robotics has independent intellectual property rights of SRC series controllers and production lines. It is the real source manufacturer, providing you with highly competitive ex-factory prices and faster delivery speed. Products comply with international standards and have been deployed in many countries and regions around the world. Through standardized communication protocols, the stable operation and technical compatibility of the system in multinational plant projects are ensured.

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FAQ

Q1: What is the rated carrying capacity and the fastest operating speed of this equipment?
A1: The equipment can provide multi-stage load selection covering 300 kg to 1.5 tons, and the maximum driving speed can reach 2 m/s, which can fully meet the actual requirements of industrial heavy loads and efficient turnover.
Q2: In a highly dynamic, human-machine mixed factory, how do you ensure the safety of equipment?
A2: The equipment is equipped with a safety LiDAR, a three-dimensional anti-fall camera, and a mechanical anti-collision touch edge. It can avoid obstacles in a 360-degree all-around three-dimensional manner and will automatically slow down or stop when obstacles or pedestrians are found.
Q3: What navigation method is used for the equipment, and is it necessary to carry out a large-scale transformation of the existing workshop?
A3: The main use of laser navigation and natural feature positioning technology, relying entirely on the existing building features for high-precision positioning, does not need to transform the existing factory environment.
Q4: In the face of dense storage space, how is the flexibility of the equipment?
A4: The robot’s body structure has been optimized for compact engineering, with a very small radius of gyration, and can realize barrier-free shuttling in narrow roadways and high-density storage areas.
Q5: How does it solve the problem that the pallet or rack is placed obliquely and cannot be accurately forked?
A5: The equipment combines an advanced machine vision and perception system, which can automatically identify the actual position and inclination angle of the pallet when approaching the carrier and make fine adjustments to ensure accurate fork-taking.
Q6: How does the equipment interface with the existing information system of the enterprise and perform unified scheduling?
A6: With the self-developed robot management system, it provides an open standard data interface, which can be directly connected with the existing warehouse management system or manufacturing execution system of the enterprise.