Warehouse & Logistics Robots
Optimise your warehouse operations with AMRs, AGVs, and automated material handling solutions.

Revolutionise your warehouse and logistics operations with autonomous mobile robots and intelligent automation systems. Reduce costs, improve accuracy, and scale your operations efficiently.
Common use cases
Key benefits
Reduce picking time by up to 50%
Improve inventory accuracy to 99.9%
Scale operations without adding headcount
Optimise warehouse space utilisation
Frequently asked questions
How much faster is robotic picking?
Typical result: picking time cut by up to 50%. A. Perry saw 4× faster picking and 60% higher order throughput from a 15-AMR goods-to-person system, live in six weeks.
What does warehouse automation cost?
Robots run $30,000–$150,000 each plus racking and software. Superdry's 47-robot deployment reached ROI in under two years while lifting returns productivity 3–3.5×.
Can robots handle returns processing?
Yes — it's one of the strongest use cases. Superdry processes returns (25% of stock movements across 60,000 SKUs) 3–3.5× faster at 99% accuracy.
Do we have to shut the warehouse during installation?
No — deployments phase in alongside live operations. A. Perry's system was live within six weeks without stopping fulfilment.
How accurate is robotic inventory handling?
Deployments typically reach 99%+ picking accuracy and up to 99.9% inventory accuracy — the robots eliminate mis-picks rather than just moving faster.
Featured robots
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Pudu Robotics CC1 Pro
The PUDU CC1 Pro is an autonomous commercial cleaning robot designed for small and medium-sized indoor public areas such as offices, commercial buildings, retail malls, apartment hotels and residential common areas. It combines sweeping, scrubbing, carpet vacuuming and dust mopping in one machine, with LiDAR and visual fusion positioning to support autonomous cleaning in dynamic indoor environments. For facilities teams, its main value is improving cleaning consistency and reducing routine manual intervention, while optional workstation functions can support automatic charging, water refill, drainage and self-cleaning workflows.
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Pudu Robotics MT1
PUDU MT1 is an AI-powered dry sweeping robot designed for large-scale commercial and industrial environments. It focuses on hard-floor sweeping, AI trash recognition and AI spot cleaning rather than wet scrubbing or mopping. With a 70 cm cleaning width, 35 L dustbin, LiDAR/VSLAM navigation and autonomous charging support, it is best suited to warehouses, factories, home-improvement retail, stations, airports and other large indoor areas with recurring debris. Its main value is reducing repetitive manual sweeping while maintaining cleanliness across large, dynamic sites.
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Pudu Robotics MT1 Max
The PUDU MT1 Max is an AI-powered autonomous commercial sweeping robot designed for large-scale hard-floor environments such as airports, railway stations, residential courtyards, parking garages and other controlled indoor, semi-outdoor or outdoor areas. It combines a 700 mm sweeping path, 35 L dustbin and AI-supported debris recognition with cover cleaning up to 2,200 m2/hour and Ultra Spot Clean performance up to 7,000 m2/hour. LiDAR and vision-fusion positioning, 3D perception and multi-sensor obstacle avoidance support operation around vehicles, pedestrians and animals. For facilities teams, its main value is high-area dry sweeping with 5-10 hours of runtime and optional autonomous charging, subject to flat hardened floors and restrictions on rain, snow, standing water and extreme weather.
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Pudu Robotics MT1 Vac
The PUDU MT1 Vac is an AI-powered autonomous commercial sweeper and vacuum for large, flat indoor environments, including airports, hotels, banquet halls and industrial facilities. It combines sweeping, vacuuming and dust mopping and can work across hardened floors and short-pile or industrial carpets, with LiDAR and vision-fusion navigation plus AI floor and debris recognition. The robot offers a 700 mm sweeping path, 550 mm vacuuming width, up to 1,400 m2/hour theoretical productivity and 3-6.5 hours runtime. Optional automatic charging and PUDU Link/IoT integrations can reduce charging intervention and connect the unit with building systems, while local certification, service coverage and site suitability should be confirmed before deployment.
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UBTECH Robotics Walker
The UBTECH Walker S2 is an industrial-grade bipedal humanoid robot designed for smart manufacturing and logistics. It leverages a proprietary AI large model, advanced bipedal locomotion, and dexterous manipulation to autonomously perform complex tasks like assembly, quality inspection, and material handling, enhancing efficiency and flexibility on the factory floor.
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UBTECH Robotics Walker S2
The UBTECH Robotics Walker S2 Standard is an industrial-grade bipedal humanoid robot engineered for smart factory environments. It combines advanced locomotion, dexterous manipulation, and AI-powered perception to automate complex tasks like quality inspection, material handling, and assembly line operations, enabling flexible and intelligent manufacturing.
Learn MoreProven in the field
Real deployments, real results — not projections.
SHAOKE Logistics
Pudu MT1 + Pudu CC1
Challenge: A busy 24/7 warehouse faced fast dust build-up, inconsistent manual cleaning quality and unpopular repetitive cleaning work.
Solution: Two complementary robots were deployed: a PUDU MT1 to sweep dust and debris, followed by a PUDU CC1 for wet scrubbing across scheduled zones.
Result: Saved at least 5 staff hours per day, cleaning ~3,000 m² autonomously alongside continuous 24/7 warehouse operations.
A. Perry
HIKROBOT Q7 AMRs
Challenge: Managing more than 15,000 product lines across 4,000 picking locations, A. Perry faced rising demand, labour shortages and slow fulfilment.
Solution: A goods-to-person system with 15 Q7 AMRs (1,000kg capacity each), 330 mobile racks and two picking stations, live within six weeks.
Result: Picking speed increased 4× and order throughput rose by 60%, with lower day-to-day warehouse operating costs.
Superdry
HIKROBOT AMRs
Challenge: Superdry’s UK warehouse handled ~60,000 SKUs with returns at ~25% of stock movements, all via a fully manual, labour-heavy process.
Solution: 47 mobile robots and 1,000+ (later 1,750) mobile racks were deployed across 12 picking workstations with pick-to-light guidance.
Result: Returns productivity increased 3–3.5× with 99% accuracy, picking staff reduced from 30 to six, and ROI achieved in under two years.
Related to logistics robotics
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