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Global Future of Robotics Market Size, Trend & Opportunity Analysis Report, by Industrial Robots (Automotive, Food & Beverage, Electronics, Other End-Users), End-Users of Service Robots (Logistics, Military and Defence, Medical and Healthcare, Others), an

Published Sep 01, 2025
Length 285 Pages
SKU # KAIS20696769

Description

Market Definition and Introduction

The global future of robotics market was valued at USD 89.68 billion in 2024 and is anticipated to reach USD 317.20 billion by 2035, expanding at a CAGR of 12.17% during the forecast period (2024–2035). The robotics sector is today during technological transformations affecting industrial production lines, healthcare systems, defence strategies, and logistics operations. As global economies are shifting towards productivity gains driven by automation, robotics technologies are increasingly shedding their old skins and emerging as core enablers of Industry 4.0. Labour shortages, demand for operational efficiency, and safety standards have thus encouraged firms from various sectors to integrate robotics into their core business processes, furthering the worldwide fast acceptance of robotics. The importance of robotics is further enhanced due to its possibilities of enhancing precision, lowering operational costs, and engineering a different equation by which the workforce is regathered in advanced and developing economies.

Integration into robotics happens to be powered by progress in artificial intelligence, machine learning, computer vision, and edge computing. In industrial applications, robotics development quickly expands from automotive assembly lines to various domains, including food packaging, electronics, and pharmaceuticals; in the service category, it permeates logistics, healthcare, defence, and home applications. For instance, the high accuracy of medical robots performing minimally invasive surgery and logistics robots streamlining the supply chain network speedily and efficiently is now being upheld due to the boom in e-commerce. The landscape of defence robots and enhanced surveillance, and tactical missions has now gained momentum with autonomous vehicles and drones.

On the supply side, robotics manufacturers are now pushed to innovate collaborative robots (cobots), adaptive grippers, and mobile platforms to satisfy the demands of a more diversified consumer base. Competition on a global scale has led top-of-the-line players to create robots that are safe, lightweight, and intuitive to use while integrating cloud-based monitoring and digital twins into the design for predictive maintenance. As sustainability targets grow, robotics emerges as a major contributor towards energy efficiency and waste reduction, ensuring alignment with wider corporate mandates calling for circular economy practices. The whole robotics market is presently undergoing a generational transformation- driven by the convergence of technologies, regulatory pressures, and strategic partnerships towards a scenario where robots will play an increasingly central role as co-workers in an industry-wide environment.

Recent Developments in the Industry

ABB to invest USD 150 million in robotics research and development in Asia.

The Swiss group ABB Ltd., on an April afternoon in 2024, announced plans to pump in capital of $150 million in a new robotics research centre in Shanghai, China, which would be AI-powered for human-robot collaborative robotics.

Boston Dynamics reveals a prototype named Aris for state-of-the-art logistics applications.

The affordable human robot unveiled in March 2025 by Boston Dynamics provides implementation options for any warehouse, niftily lifting pieces and sorting packages with ease, fit to serve the e-commerce warehouse setup.

Intuitive Surgical gets clearance from the American FDA for the surgery platform of the future.

As of July 2024, Da Vinci Xi surgery system upgrades by Intuitive Surgical have been approved for imaging, good procedural extensions, and minimally invasive procedures.

Mitsubishi Electric introduces cobots powered by designed for food and beverage.

The cobots launched by Mitsubishi Electric from May 2024 are equipped with AI for the food, beverage, and packaging range of controlled-motion hygienic standards.

FANUC and NVIDIA team up to integrate the force of AI computing into robotics.

In September 2023, FANUC Corporation entered into a collaboration with NVIDIA to incorporate the AI workforce offered by high-performance GPUs as a foundation for bringing decisions into real-time realisation, thereby taking the assembly, inspection, and predictive maintenance of robots to unprecedented accuracy.

Market Dynamics

The revolution that is industrial automation drives the adoption of increasingly advanced robotics systems across almost every industry.

Robotics has spread well beyond automotive manufacturing to include the food and beverage, electronics, pharmaceuticals, and logistics industries. This spread is primarily driven by the labour cost pressures, the demand for consistent product quality, and the need for productivity improvements in global supply chains that are competing.

Increased healthcare needs are drivers in the innovation of medical and surgical robotics.

The rise in the aged global population, the increasing incidence of chronic illness, and the rising demand for less invasive procedures create strong drivers for the growth of medical robotics. Surgical procedures using robotic assistance are increasingly adopted for oncology, orthopaedics, and cardiology applications to allow for rapid recovery and reduced clinical risk.

Integration of AI and IoT will transform the capabilities of robotics across the globe.

Fusion of AI and machine learning with IoT is linked to robotics, creating self-optimising adaptive robots, fronted with predictive analytics, remote monitoring, and autonomous navigation that will support human use in logistics and military situations.

High capital expense and a shortage of skilled workforce are still barriers.

Robotics adoption is constrained by huge initial investments, complexity of integration, and a shortage of trained personnel able to program and maintain sophisticated robots, despite the large possible prospects. These would be very daunting challenges for small and medium-sized enterprises in trying to balance cost and return on investment.

Geopolitical disruptions and regulatory standards shape future supply chains.

Robotics manufacturers continue to be influenced by global or regional geopolitical instability, shortage of semiconductors, and relevant legislative frameworks in terms of adoption timing. That said, these limitations are mitigated by international collaborative efforts and regional incentives towards automation adoption.

Attractive Opportunities in the Market

AI-Powered Robotics Surge – Growing reliance on AI-integrated robots enhances autonomy and precision across applications.
Medical Robotics Expansion – Rising adoption of robotic-assisted surgeries drives demand for healthcare robotics solutions.
Cobots for SMEs – Collaborative robots provide cost-effective automation tailored to small and medium enterprises.
Defence Robotics Growth – Autonomous drones and vehicles revolutionise defence strategies and tactical operations.
E-commerce Logistics Boost – Surge in online retail accelerates demand for warehouse and delivery robotics.
Sustainability Integration – Robotics adoption reduces energy consumption and supports sustainable production practices.
Asia-Pacific Manufacturing Push – Expanding industrial base spurs large-scale robotics adoption in regional markets.
Humanoid Robotics Evolution – Development of humanoid robots broadens applications in customer service and logistics.
Cross-Industry Partnerships – Alliances between robotics and AI firms drive advanced product development.
Regulatory Incentives – Government support and subsidies encourage automation adoption across industries.

Report Segmentation

By Industrial Robots: Automotive, Food & Beverage, Electronics, Other End-Users

By End-Users of Service Robots: Logistics, Military and Defence, Medical and Healthcare, Others

By Region: North America (U.S., Canada, Mexico), Europe (UK, Germany, France, Spain, Italy, Spain, Rest of Europe), Asia-Pacific (China, India, Japan, Australia, South Korea, Rest of Asia-Pacific), LAMEA (Brazil, Argentina, UAE, Saudi Arabia (KSA), Africa Rest of Latin America)

Key Market Players

ABB Ltd., FANUC Corporation, KUKA AG, Yaskawa Electric Corporation, Mitsubishi Electric Corporation, Boston Dynamics, iRobot Corporation, Intuitive Surgical, Inc., Teradyne Inc. (Universal Robots), and Honda Robotics.

Report Aspects

Base Year: 2024
Historic Years: 2022, 2023, 2024
Forecast Period: 2024-2035
Report Pages: 293

Dominating Segments

Industrial robots dominate the robotics market, driven by automotive and electronics adoption.

Industrial robots continue to account for a significant share of the robotics market due to their widespread deployment in automotive assembly, electronics manufacturing, and packaging lines. These robots ensure efficiency, precision, and scalability, making them indispensable for high-volume production. The continued integration of AI and machine learning is further extending their utility into complex tasks, accelerating adoption among manufacturers seeking competitive advantages in quality and output.

Service robots for logistics gain traction as e-commerce and warehousing expand.

The logistics sector has emerged as a powerhouse of service robot adoption, fuelled by the relentless growth of e-commerce and global trade. Autonomous mobile robots and robotic arms are streamlining sorting, inventory management, and last-mile delivery. As warehouses increasingly require 24/7 operability and error-free fulfilment, logistics robots provide unparalleled agility and cost savings. Companies are racing to deploy advanced robotics solutions to ensure resilience against labour shortages and supply chain disruptions.

The medical robotics segment surges with demand for minimally invasive procedures.

Medical robotics, particularly robotic-assisted surgery, is rapidly gaining ground in hospitals worldwide. The integration of advanced imaging and robotic precision enables reduced recovery times and improved patient outcomes. From orthopaedics to neurosurgery, robotics systems are enhancing surgeons' capabilities and broadening procedural applications. As healthcare providers pursue operational efficiency and precision care, investment in medical robotics is intensifying, with strong growth prospects expected in the coming decade.

Defence robotics strengthens military strategies through autonomous technologies.

Defence and military robotics are witnessing significant investment as governments prioritise modernisation of warfare capabilities. Drones, unmanned ground vehicles, and surveillance robots are deployed for reconnaissance, combat support, and security missions. The integration of AI enables these systems to operate autonomously in hostile environments, reducing human risk while enhancing mission effectiveness. The strategic imperative of strengthening national security continues to fuel growth within this domain.

The electronics sector fuels robotics growth with automation-intensive processes.

Robotics adoption in electronics manufacturing is accelerating due to demand for precision in micro-component assembly. Robots are deployed for soldering, inspection, and material handling, offering reliability and high throughput in sensitive operations. With increasing consumer demand for electronics and semiconductors, robotics deployment ensures scalability, cost efficiency, and product innovation, strengthening its role as a dominant industrial segment.

Alcohol-based cobots gain relevance across the food and beverage industries.

Collaborative robots are increasingly integrated into food processing and packaging plants, supporting hygiene standards and repetitive operations. Robotics solutions designed with safety and adaptability enable production efficiency, while AI-driven vision systems enhance quality control. This trend reflects a broader shift towards automation in food and beverage, ensuring resilience in supply chains and compliance with health regulations.

Key Takeaways

Industrial Robot Leadership – Automotive and electronics sectors maintain robotics dominance across global manufacturing.
Medical Robotics Growth – Increasing reliance on robotic-assisted surgeries expands healthcare robotics adoption.
Logistics Robot Expansion – Warehouse automation intensifies with rising e-commerce and supply chain complexity.
Defence Sector Demand – Autonomous drones and vehicles strengthen modern military strategies globally.
Electronics Sector Boost – Robotics ensures precision and scalability in semiconductor and electronics manufacturing.
Cobots for SMEs – Small and medium businesses increasingly adopt cobots for affordable automation solutions.
Asia-Pacific Acceleration – Expanding industrial base and government support accelerate robotics adoption in the region.
AI Integration Surge – AI, ML, and IoT integration enhances robotics precision and operational adaptability.
Sustainability Alignment – Robotics aligns with green manufacturing initiatives, improving energy efficiency and waste reduction.
Cross-Sector Partnerships – Collaborations between tech and robotics firms fuel innovation and market expansion.

Regional Insights

North America is the leader in the robotics market with strong innovation and industrial adoption.

North America is the national hub for the development of robotics, as it has advanced industrial infrastructure and has early adopted automation technologies in industries. North America also host a strong presence of key players like Boston Dynamics, iRobot, and Intuitive Surgical. The momentum is mostly driven in the United States, which is being buoyed by large-scale investments in AI-powered robotics and defence automation. Apart from that, healthcare providers in the region have taken the initiative of adopting surgical robots, thus facilitating the growth of the market. Regulation incentives and government-backed innovation programs further strengthen robotics penetration in industries like automotive to logistics.

Europe strengthens leadership in collaborative and green robotics solutions.

Europe stands at the forefront of developing safe, collaborative, and sustainable robotics systems. This has led EU robotics manufacturers towards developing eco-efficient models of robots with ethical and environmental standards laid down in policy frameworks such as the AI Act of the EU and the Green Deal. Germany, France, and Italy are largely industrial robotics hubs for the automotive and electronics sectors, while the UK increasingly underpins the application of robotics in healthcare. Collab robots, or cobots, are rapidly gaining ground across SMEs in Europe, making for extensive adoption in manufacturing.

Asia-Pacific Enters As The Fastest-Growing Market for Robotics Worldwide.

Asia-Pacific is likely to see the highest growth rate during the forecast period, driven by fast industrialisation, production expansion, and rising investment in smart factories. China's largest market in terms of electronics, automotive, and logistics automation driving forces, while Japan and South Korea keep leading innovations in humanoid and service robotics. In addition, India has adopted more government-backed automation policies as the country witnesses increasing demand from the pharmaceutical sector development. Finally, considering local manufacturing, the combination of affordable cost of robotics solutions makes the Asia-Pacific the very heart of global robotics growth.

LAMEA gains traction with investments in automation and smart infrastructure.

LAMEA is emerging as an increasingly important region for robotics adoption because of recent government investments in infrastructure, logistics, and defence modernisation. The Middle East has focused its efforts, particularly the UAE and Saudi Arabia, on smart city projects and the economic diversification that their governments have chosen to implement through industrial automation. In countries like Latin America, adoption can also be seen in the automotive industry and agriculture, while Africa shows some signs of early robotics blending into logistics and healthcare. Though the growth is slow compared to other regions, it offers many long-term opportunities in automation and smart infrastructure development, thus making LAMEA an attractive market front.

Core Strategic Questions Answered in This Report

What is the expected growth trajectory of the robotics market from 2024 to 2035?

The global robotics market is projected to grow from USD 89.68 billion in 2024 to USD 317.20 billion by 2035, registering a CAGR of 12.17%. This growth is driven by the expansion of industrial automation, rising demand for service robots in logistics and healthcare, and continuous technological advancements integrating AI and IoT.

Which key factors are fuelling the growth of the robotics market?

Several key factors are propelling market growth:

Expanding applications of robotics across automotive, healthcare, logistics, and defence industries
Rising demand for automation due to labour shortages and operational efficiency needs
Technological convergence of AI, ML, IoT, and robotics platforms
Increasing e-commerce and logistics operations requiring automated fulfilment solutions
Growing investments in humanoid and collaborative robot innovations

What are the primary challenges hindering the growth of the robotics market?

Major challenges include:

High initial capital investment for advanced robotics systems
Shortage of skilled workforce to operate and maintain robotic platforms
Integration complexity with existing production environments
Regulatory and safety compliance challenges across different regions
Geopolitical risks and semiconductor shortages impacting supply chains

Which regions currently lead the robotics market in terms of market share?

North America currently leads the robotics market, supported by advanced industrial adoption and strong healthcare robotics penetration. Asia-Pacific follows closely as the fastest-growing region, driven by industrialisation and smart factory initiatives, while Europe maintains leadership in collaborative and eco-efficient robotics solutions.

What emerging opportunities are anticipated in the robotics market?

The market is ripe with new opportunities, including:

Expansion of collaborative robots in SMEs and food processing industries
Breakthroughs in humanoid robotics for logistics and customer service
Rising healthcare demand for robotic-assisted surgeries and rehabilitation devices
Defence modernisation initiatives fuelling demand for autonomous drones and vehicles
Integration of robotics with green and sustainable manufacturing processes

Key Benefits for Stakeholders

The report offers a quantitative assessment of market segments, emerging trends, projections, and market dynamics for the period 2024 to 2035.
The report presents comprehensive market research, including insights into key growth drivers, challenges, and potential opportunities.
Porter's Five Forces analysis evaluates the influence of buyers and suppliers, helping stakeholders make strategic, profit-driven decisions and strengthen their supplier-buyer relationships.
A detailed examination of market segmentation helps identify existing and emerging opportunities.
Key countries within each region are analysed based on their revenue contributions to the overall market.
The positioning of market players enables effective benchmarking and provides clarity on their current standing within the industry.
The report covers regional and global market trends, major players, key segments, application areas, and strategies for market expansion.

Table of Contents

285 Pages
Chapter 1. Market Snapshot
1.1. Market Definition & Report Overview
1.2. Market Segmentation
1.3. Key Takeaways
1.3.1. Top Investment Pockets
1.3.2. Top Winning Strategies
1.3.3. Market Indicators Analysis
1.3.4. Top Impacting Factors
1.4. Application Ecosystem Analysis
1.4.1. 360’ Analysis
Chapter 2. Executive Summary
2.1. CEO/CXO Standpoint
2.2. Strategic Insights
2.3. ESG Analysis
2.4. Market Attractiveness Analysis (top leader’s point of view on the market)
2.5. Key Findings
Chapter 3. Research Methodology
3.1. Research Objective
3.2. Supply Side Analysis
3.2.1. Primary Research
3.2.2. Secondary Research
3.3. Demand Side Analysis
3.3.1. Primary Research
3.3.2. Secondary Research
3.4. Forecasting Models
3.4.1. Assumptions
3.4.2. Forecasts Parameters
3.5. Competitive breakdown
3.5.1. Market Positioning
3.5.2. Competitive Strength
3.6. Scope of the Study
3.6.1. Research Assumption
3.6.2. Inclusion & Exclusion
3.6.3. Limitations
Chapter 4. Industry Landscape
4.1. Market Dynamics
4.1.1. Drivers
4.1.2. Restraints
4.1.3. Opportunities
4.2. Porter’s 5 Forces Model
4.2.1. Bargaining Power of Buyer
4.2.2. Bargaining Power of Supplier
4.2.3. Threat of New Entrants
4.2.4. Threat of Substitutes
4.2.5. Competitive Rivalry
4.3. Value Chain Analysis
4.4. PESTEL Analysis
4.5. Pricing Analysis and Trends
4.6. Key growth factors and trends analysis
4.7. Market Share Analysis (2024)
4.8. Top Winning Strategies (2024)
4.9. Trade Data Analysis (Import Export)
4.10. Regulatory Guidelines
4.11. Historical Data Analysis
4.12. Analyst Recommendation & Conclusion
Chapter 5. Global Future of Robotics Market Size & Forecasts by Industrial Robots 2024-2035
5.1. Market Overview
5.1.1. Market Size and Forecast By Industrial Robots 2024-2035
5.2. Automotive
5.2.1. Market definition, current market trends, growth factors, and opportunities
5.2.2. Market size analysis, by region, 2024-2035
5.2.3. Market share analysis, by country, 2024-2035
5.3. Food & Beverage
5.3.1. Market definition, current market trends, growth factors, and opportunities
5.3.2. Market size analysis, by region, 2024-2035
5.3.3. Market share analysis, by country, 2024-2035
5.4. Electronics
5.4.1. Market definition, current market trends, growth factors, and opportunities
5.4.2. Market size analysis, by region, 2024-2035
5.4.3. Market share analysis, by country, 2024-2035
5.5. Other End-Users
5.5.1. Market definition, current market trends, growth factors, and opportunities
5.5.2. Market size analysis, by region, 2024-2035
5.5.3. Market share analysis, by country, 2024-2035
Chapter 6. Global Future of Robotics Market Size & Forecasts by End-Users of Service Robots 2024–2035
6.1. Market Overview
6.1.1. Market Size and Forecast By End-Users 2024-2035
6.2. Logistics
6.2.1. Market definition, current market trends, growth factors, and opportunities
6.2.2. Market size analysis, by region, 2024-2035
6.2.3. Market share analysis, by country, 2024-2035
6.3. Military and Defense
6.3.1. Market definition, current market trends, growth factors, and opportunities
6.3.2. Market size analysis, by region, 2024-2035
6.3.3. Market share analysis, by country, 2024-2035
6.4. Medical and Healthcare
6.4.1. Market definition, current market trends, growth factors, and opportunities
6.4.2. Market size analysis, by region, 2024-2035
6.4.3. Market share analysis, by country, 2024-2035
6.5. Others
6.5.1. Market definition, current market trends, growth factors, and opportunities
6.5.2. Market size analysis, by region, 2024-2035
6.5.3. Market share analysis, by country, 2024-2035
Chapter 7. Global Future of Robotics Market Size & Forecasts by Region 2024–2035
7.1. Regional Overview 2024-2035
7.2. Top Leading and Emerging Nations
7.3. North America Future of Robotics Market
7.3.1. U.S. Future of Robotics Market
7.3.1.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.3.1.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.3.2. Canada Future of Robotics Market
7.3.2.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.3.2.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.3.3. Mexico Future of Robotics Market
7.3.3.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.3.3.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.4. Europe Future of Robotics Market
7.4.1. UK Future of Robotics Market
7.4.1.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.4.1.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.4.2. Germany Future of Robotics Market
7.4.2.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.4.2.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.4.3. France Future of Robotics Market
7.4.3.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.4.3.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.4.4. Spain Future of Robotics Market
7.4.4.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.4.4.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.4.5. Italy Future of Robotics Market
7.4.5.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.4.5.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.4.6. Rest of Europe Future of Robotics Market
7.4.6.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.4.6.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.5. Asia Pacific Future of Robotics Market
7.5.1. China Future of Robotics Market
7.5.1.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.5.1.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.5.2. India Future of Robotics Market
7.5.2.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.5.2.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.5.3. Japan Future of Robotics Market
7.5.3.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.5.3.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.5.4. Australia Future of Robotics Market
7.5.4.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.5.4.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.5.5. South Korea Future of Robotics Market
7.5.5.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.5.5.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.5.6. Rest of APAC Future of Robotics Market
7.5.6.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.5.6.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.6. LAMEA Future of Robotics Market
7.6.1. Brazil Future of Robotics Market
7.6.1.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.6.1.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.6.2. Argentina Future of Robotics Market
7.6.2.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.6.2.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.6.3. UAE Future of Robotics Market
7.6.3.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.6.3.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.6.4. Saudi Arabia (KSA Future of Robotics Market
7.6.4.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.6.4.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.6.5. Africa Future of Robotics Market
7.6.5.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.6.5.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
7.6.6. Rest of LAMEA Future of Robotics Market
7.6.6.1. Industrial Robots breakdown size & forecasts, 2024-2035
7.6.6.2. End-Users of Service Robots breakdown size & forecasts, 2024-2035
Chapter 8. Company Profiles
8.1. Top Market Strategies
8.2. Company Profiles
8.2.1. ABB Ltd.
8.2.1.1. Company Overview
8.2.1.2. Key Executives
8.2.1.3. Company Snapshot
8.2.1.4. Financial Performance (Subject to Data Availability)
8.2.1.5. Product/Services Port
8.2.1.6. Recent Development
8.2.1.7. Market Strategies
8.2.1.8. SWOT Analysis
8.2.2. FANUC Corporation
8.2.3. KUKA AG
8.2.4. Yaskawa Electric Corporation
8.2.5. Mitsubishi Electric Corporation
8.2.6. Boston Dynamics
8.2.7. iRobot Corporation
8.2.8. Intuitive Surgical, Inc.
8.2.9. Teradyne Inc. (Universal Robots)
8.2.10. Honda Robotics
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