Europe Warehouse Robotics Market Assessment, By Type [Autonomous Mobile Robots, Automated Guided Vehicle, Automated Storage and Retrieval Systems, Cobots, Unmanned Aerial Vehicles, Others], By Payload [20 kg, 20-100 kg, 100-200 kg, >200 kg], By Function [

Europe warehouse robotics market is projected to witness a CAGR of 15.97% during the forecast period 2025-2032, growing from USD 1.97 billion in 2024 to USD 6.45 billion in 2032F, owing to increasing automation in logistics and e-commerce. Key trends include the rise of collaborative robots (cobots), AI-driven automation, and autonomous guided vehicles (AGVs) for efficient warehouse management. Companies across different sectors are adopting Robot-as-a-Service (RaaS) models for cost-effective solutions, resulting in different market growth opportunities for market players. Sustainability is also at focus, with energy-efficient robotics gaining traction among industries. Technological advancements, such as AI-powered decision-making and humanoid robots, are transforming the warehouse operations in Europe. Labor shortages and rising costs are further accelerating the shift toward robotic automation across industries. Hence, companies are adopting these technologies to cater to the dense supply chain while delivering goods with precision and accuracy.

For instance, in December 2023, a European wholesaler that deals with electrical, lighting, and DIY products, Eltra n.v. selected Exotec Automated Storage and Retrieval Systems (ASRS) to increase productivity. It features 23 Skypods and autonomous mobile robots (AMRs) that can climb and navigate the ASRS, pick the appropriate bin, and transport the bin to one of the four picking stations where human operators complete the order picking.

Increased number of Warehouses and Strict Labour Laws to Fuel the Market Growth

The proliferation of warehouses due to increased online shopping and expanded logistics is leading the market growth. New companies setting up or advancing their warehouse space are likely to propel the market. This has driven the development of advanced robotic solutions, such as AI-powered picking robots and autonomous mobile robots (AMRs), which optimize warehouse layouts and reduce order processing times. Hence, companies are investing heavily in their fulfillment and distribution spaces.

For instance, in April 2024, Amazon.com Inc. announced a USD 774 million investment in robotics and AI-powered technologies across its European fulfillment center network, with plans to introduce 120 new automation technologies, aiming to enhance efficiency and create new jobs. These cutting-edge technologies encompass item sorters, pallet movers, and automated guide vehicles, actively supporting Amazon employees in their roles across.

European labor laws impose stringent regulations on working hours, conditions, and wages, making it expensive to maintain large warehouse workforces. Additionally, many European countries face aging populations and declining interest in physically demanding warehouse jobs. These factors have accelerated the demand for warehouse robotics, as companies seek to mitigate labor shortages while ensuring compliance with workplace safety regulations. Robots help reduce reliance on human labor while maintaining high efficiency and operational continuity.

Rising Demand for Cold Chain and Urban Warehousing to Fuel the Market

The rising demand for temperature-sensitive goods, such as pharmaceuticals and fresh food, has driven the need for highly efficient robotic systems in cold storage and perishable goods warehouses. Operating in freezing environments poses challenges for human workers, making automation a more viable solution. Robotics tailored for cold-chain logistics, such as insulated autonomous guided vehicles (AGVs) and robotic arms with advanced grip technology, enables continuous operations, minimizes human exposure to extreme temperatures, and reduces waste due to human error. Hence, the role of collaborative robotics becomes more relevant.

For instance, in January 2025, KION GROUP AG collaborated with Accenture to enhance supply chains by leveraging NVIDIA’s cutting-edge AI and simulation technologies. During the Consumer Electronics Show (CES) 2025 in Las Vegas, the three organizations are demonstrating how clients can establish optimal configurations for new warehouses while also improving current facilities through Mega, an NVIDIA Omniverse framework designed for large-scale industrial digital twins.

With the expansion of same-day and next-day delivery services, companies are increasingly setting up warehouses within city limits. However, urban warehouses face high real estate costs and space constraints, requiring compact and highly efficient automation solutions. Robotics, such as vertical storage and retrieval systems, automated guided forklifts, and AI-driven inventory management systems, allow businesses to maximize space utilization while improving operational speed.

E-Commerce Segment Holds the Largest Market Share

Based on vertical, the e-commerce segment holds the largest portion in Europe warehouse robotics market due to due to its increasing demand for efficient order fulfillment, faster deliveries, and inventory management. Companies leverage robotics for high-speed picking, sorting, and packing processes, driven by the need to manage expanding SKU diversity and complex inventory requirements.

Strategic investments in AI-driven systems, particularly by global players such as Amazon, optimize supply chain efficiency and reduce operational costs amid labor shortages and rising wage pressures. Regional expansion of cross-border e-commerce further accelerates adoption, with logistics hubs in Germany, Poland, and the Netherlands deploying robotics to enhance throughput and scalability. This focus enables e-commerce firms to maintain competitive agility, improve customer satisfaction, and future-proof operations against market volatility.

Future Market Scenario (2025 – 2032F)

AI-driven robotics is likely to redefine inventory agility as e-commerce demands hyper-personalized, cross-border fulfillment.

Modular robotics ecosystems are expected to dominate, enabling scalable solutions for micro-fulfillment centers in urban hubs.

Autonomous mobile robots are anticipated to become standard, bridging gaps in last-mile delivery and labor-intensive workflows

Collaborative robots (cobots) will integrate human-robot workflows to address niche SKU handling and returns management.

Key Players Landscape and Outlook

Key players in the European warehouse robotics market are focusing on strategic innovations to maintain a competitive edge. Many are investing heavily in artificial intelligence and machine learning to enhance robotic efficiency, enabling real-time data processing and adaptive decision-making. Companies are also expanding their product portfolios by integrating collaborative robots (cobots) and autonomous mobile robots (AMRs) to improve warehouse flexibility. Partnerships with logistics providers and technology firms are common to accelerate innovation and adoption. Additionally, firms are adopting a Robot-as-a-Service (RaaS) model, making automation more accessible for small and mid-sized businesses. Sustainability is another focus, with energy-efficient designs and recyclable materials becoming key priorities in robotic development. Furthermore, companies are expanding their space in the region to cater to the larger consumer base.

For instance, in February 2024, FANUC CORPORATION relocated and expanded FANUC IBERIA, its group company in Spain. FANUC is currently placing greater emphasis on its operations in Europe, evident from the enhancements and growth of its European facilities. In recent years, ten sites have been expanded, with ongoing developments taking place in Turkey and Poland.


1. Project Scope and Definitions
2. Research Methodology
3. Executive Summary
4. Voice of Customers
4.1. Product and Market Intelligence
4.2. Mode of Brand Awareness
4.3. Factors Considered in Purchase Decisions
4.3.1. Functionality and Capabilities
4.3.2. Autonomy and Navigation
4.3.3. Integration and Compatibility
4.3.4. Scalability and Flexibility
4.3.5. Ease of Use and Maintenance
4.3.6. Safety Features
4.4. Consideration of Privacy and Regulations
5. Europe Warehouse Robotics Market Outlook, 2018-2032F
5.1. Market Size Analysis & Forecast
5.1.1. By Value
5.2. Market Share Analysis & Forecast
5.2.1. By Type
5.2.1.1. Autonomous Mobile Robots (AMR)
5.2.1.2. Automated Guided Vehicle (AGV)
5.2.1.3. Automated Storage and Retrieval Systems (ASRS)
5.2.1.4. Cobots
5.2.1.5. Unmanned Aerial Vehicles (UAV)
5.2.1.6. Others
5.2.2. By Payload
5.2.2.1. 20 kg
5.2.2.2. 20-100 kg
5.2.2.3. 100-200 kg
5.2.2.4. >200 kg
5.2.3. By Function
5.2.3.1. Transportation
5.2.3.2. Pick and Place
5.2.3.3. Palettizing
5.2.3.4. Packaging
5.2.3.5. Others
5.2.4. By Vertical
5.2.4.1. E-Commerce
5.2.4.2. Manufacturing
5.2.4.3. Food and Beverage
5.2.4.4. Pharmaceutical
5.2.4.5. Electronics
5.2.4.6. Automotive
5.2.4.7. Others
5.2.5. By Region
5.2.5.1. Germany
5.2.5.2. France
5.2.5.3. Italy
5.2.5.4. United Kingdom
5.2.5.5. Russia
5.2.5.6. Netherlands
5.2.5.7. Spain
5.2.5.8. Turkey
5.2.5.9. Poland
5.3. By Company Market Share Analysis (Top 5 Companies and Others – By Value, 2024)
5.4. Market Map Analysis, 2024
5.4.1. By Type
5.4.2. By Payload
5.4.3. By Function
5.4.4. By Vertical
5.4.5. By Region
6. Demand Supply Analysis
7. Import and Export Analysis
8. Porter’s Five Forces Analysis
9. PESTLE Analysis
10. Pricing Analysis
11. Market Dynamics
11.1. Market Drivers
11.2. Market Challenges
12. Market Trends and Developments
13. Market Trends and Developments
14. Case Studies
15. Competitive Landscape
15.1. Competition Matrix of Top 5 Market Leaders
15.2. SWOT Analysis for Top 5 Players
15.3. Key Players Landscape for Top 10 Market Players
15.3.1. Locus Robotics Corporation
15.3.1.1. Company Details
15.3.1.2. Key Management Personnel
15.3.1.3. Products and Services
15.3.1.4. Financials (As Reported)
15.3.1.5. Key Market Focus and Geographical Presence
15.3.1.6. Recent Developments/Collaborations/Partnerships/Mergers and Acquisition
15.3.2. FANUC CORPORATION
15.3.3. Techman Robot Inc.
15.3.4. OTTO by Rockwell Automation (Clearpath Robotics Inc.)
15.3.5. ABB Ltd.
15.3.6. KUKA AG
15.3.7. Teradyne Robotics A/S
15.3.8. Daifuku Co., Ltd.
15.3.9. AGILOX Services GmbH
15.3.10. ROBOTNIK AUTOMATION S.L.
*Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.
16. Strategic Recommendations
17. About Us and Disclaimer

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