
Service Robotics Market, Opportunity, Growth Drivers, Industry Trend Analysis and Forecast, 2025-2034
Description
The global service robotics market was valued at USD 36.1 billion in 2024 and is expected to grow at a CAGR of 17.1% from 2025 to 2034. Service robots are autonomous or semi-autonomous machines designed to perform specific tasks that assist humans across various sectors without the need for direct human intervention. These robots are increasingly being used in industries such as healthcare, hospitality, retail, and personal assistance.
The rise in demand for service robotics is driven by several factors, including labor shortages, increasing operational costs, and the need for automation in repetitive or hazardous tasks. Technological advancements in robotics and artificial intelligence have made robots more efficient, safer, and cost-effective, contributing to their widespread adoption. The aging global population is further driving the demand for robots, especially in healthcare and eldercare, where robots assist in patient care and daily activities. The ongoing trend toward automation, particularly in manufacturing and logistics, along with the impact of the COVID-19 pandemic, has further accelerated the adoption of service robots in various sectors.
The service robotics market is segmented into professional and personal robots. The professional robot segment, which includes robots used in commercial and industrial settings, is projected to exceed USD 135.74 billion by 2034. This segment is expanding rapidly due to the growing demand for automation in industries that require high precision and efficiency. Robots are being increasingly adopted in fields like healthcare, logistics, and workplace safety to perform tasks that range from surgery to hazardous environment operations.
The market is also divided based on mobility, into mobile robots and fixed robots. Fixed robots dominate the market and are expected to see a CAGR of 17.7% from 2025 to 2034. These robots are preferred in environments that require precision and stability, such as in healthcare laboratories, logistics, and research. Their popularity is rising as industries seek to improve efficiency, minimize errors, and enhance throughput in specialized tasks.
In North America, the U.S. holds a dominant share of 71.8% of the service robotics market. The growth of the service robotics sector in the U.S. is fueled by a need for automation across industries like logistics, healthcare, and manufacturing, as well as the increasing popularity of smart home robots. The country’s large e-commerce market is also driving demand for robots in warehouse and delivery operations. Additionally, government initiatives and significant investments from technology companies are further accelerating the development and deployment of service robots in various sectors.
The rise in demand for service robotics is driven by several factors, including labor shortages, increasing operational costs, and the need for automation in repetitive or hazardous tasks. Technological advancements in robotics and artificial intelligence have made robots more efficient, safer, and cost-effective, contributing to their widespread adoption. The aging global population is further driving the demand for robots, especially in healthcare and eldercare, where robots assist in patient care and daily activities. The ongoing trend toward automation, particularly in manufacturing and logistics, along with the impact of the COVID-19 pandemic, has further accelerated the adoption of service robots in various sectors.
The service robotics market is segmented into professional and personal robots. The professional robot segment, which includes robots used in commercial and industrial settings, is projected to exceed USD 135.74 billion by 2034. This segment is expanding rapidly due to the growing demand for automation in industries that require high precision and efficiency. Robots are being increasingly adopted in fields like healthcare, logistics, and workplace safety to perform tasks that range from surgery to hazardous environment operations.
The market is also divided based on mobility, into mobile robots and fixed robots. Fixed robots dominate the market and are expected to see a CAGR of 17.7% from 2025 to 2034. These robots are preferred in environments that require precision and stability, such as in healthcare laboratories, logistics, and research. Their popularity is rising as industries seek to improve efficiency, minimize errors, and enhance throughput in specialized tasks.
In North America, the U.S. holds a dominant share of 71.8% of the service robotics market. The growth of the service robotics sector in the U.S. is fueled by a need for automation across industries like logistics, healthcare, and manufacturing, as well as the increasing popularity of smart home robots. The country’s large e-commerce market is also driving demand for robots in warehouse and delivery operations. Additionally, government initiatives and significant investments from technology companies are further accelerating the development and deployment of service robots in various sectors.
Table of Contents
202 Pages
- Chapter 1 Research Methodology and Scope
- 1.1 Scope and definition
- 1.1.1 Scope
- 1.1.2 Definitions
- 1.2 Research Design
- 1.2.1 Data collection techniques
- 1.2.2 Market size estimation
- 1.2.3 Forecasting model
- 1.3 Data Sources
- 1.3.1 Secondary Sources
- 1.3.1.1 Paid Sources
- 1.3.2.1 Primary Sources
- 1.3.2.1 Public Sources
- Chapter 2 Executive Summary
- 2.1 Industry snapshot
- 2.2 Business trends
- 2.3 Business trends
- 2.4 Robot type trends
- 2.5 Mobility trends
- 2.6 Applications trends
- 2.7 Technology trends
- 2.8 Regional trends
- Chapter 3 Service Robotics Industry Insights
- 3.1 Service robotics industry ecosystem analysis
- 3.1.1 Component Suppliers
- 3.1.2 Technology Providers
- 3.1.3 Manufacturers
- 3.1.4 Distributors
- 3.1.5 End Users
- 3.1.6 Vendor matrix
- 3.1.7 Profit margin analysis
- 3.2 Patent analysis
- 3.3 Key news & initiatives
- 3.4 Technology & Innovation Landscape
- 3.4.1 Adoption Of Digital Twin Technology
- 3.4.2 5G and AI in Robotics
- 3.4.3 Impact of IoT and Industry
- 4.0
- 3.4.4 Sensor Precision Revolutionizes Perception
- 3.4.1 Humanoid
- 3.5 Regulatory landscape
- 3.5.1.1 Occupational Safety & Health Act (OSHA)
- 3.5.1.2 IPC Standards for Printed Circuit Boards (PCBs)
- 3.5.2 Europe
- 3.5.2.1 EU product safety framework for advanced robots & autonomous systems
- 3.5.2.2 Artificial Intelligence Act
- 3.5.3 Asia Pacific
- 3.5.3.1 Regulations on the protection of layout designs of integrated circuits
- 3.5.3.2 Guidelines for Building Basic Security Standard System for the Internet of Things (Draft)
- 3.5.4 Latin America
- 3.5.4.1 Decree Law No. 5452
- 3.5.4.2 OSH Regulatory Framework
- 3.5.5 MEA 56
- 3.5.5.1 United Arab Emirates (UAE) Restriction of Hazardous Substances (RoHS) regulation
- 3.6 Industry impact forces
- 3.6.1 Growth drivers
- 3.6.1.1 Increasing Government Initiatives and Investments in Robot Manufacturing Companies
- 3.6.1.2 Increasing Demand for Autonomous Last-mile Delivery
- 3.6.1.3 Huge Growth in the E-commerce & Online Food Industry
- 3.6.1.4 Growth in the Hospitality and Healthcare Industries
- 3.6.1.5 Growing Adoption of Collaborative Robots (Cobots)
- 3.6.2 Industry Pitfalls & Challenges
- 3.6.2.1 High Initial Investments Limiting the Entry of New Players into the Market.
- 3.6.2.2 Lack of Skilled Workforce
- 3.7 Growth Potential Analysis
- 3.8 Porter's analysis
- 3.9 PESTEL analysis
- Chapter 4 Competitive Landscape, 2024
- 4.1 Introduction
- 4.2 Company market share, 2024
- 4.3 Competitive analysis of the key market players
- 4.3.1 Intuitive Surgical, Inc
- 4.3.2 ABB 69
- 4.3.3 Ecovas Robotics
- 4.3.4 KUKA AG
- 4.3.5 Fanuc Corporation
- 4.3.6 Kawasaki Heavy Industries, Ltd
- 4.3.7 Omron Corporation
- 4.4 Competitive positioning matrix
- 4.5 Strategic outlook matrix
- Chapter 5 Service Robotics Market, By Component
- 5.1 Key trends
- 5.2 Hardware
- 5.2.1 Sensors
- 5.2.2 Actuators And Motors
- 5.2.3 Power Supply
- 5.2.4 Controllers And Processors
- 5.2.5 Manipulators
- 5.3 Software
- 5.4 Services
- 5.4.1 Integration Services
- 5.4.2 Maintenance And Repair Services
- 5.4.3 Training Services
- Chapter 6 Service Robotics Market, By Robot Type
- 6.1 Key trends
- 6.2 Professional Robots
- 6.2.1 Medical
- 6.2.2 Logistics and Warehouse Robots
- 6.2.2.1 Autonomous Mobile Robots (AMRs)
- 6.2.2.2 Automated Guided Vehicles (AGVs)
- 6.2.3 Inspection and Maintenance Robots
- 6.2.4 Others
- 6.3 Personal Robots
- 6.3.1 Domestic Robots
- 6.3.1.1 Vacuum Cleaning Robots
- 6.3.1.2 Lawn-Mowing Robots
- 6.3.1.3 Pool-cleaning robots
- 6.3.2 Entertainment
- Chapter 7 Service Robotics Market, By Mobility
- 7.1 Key trends
- 7.2 Mobile Robots
- 7.3 Fixed Robots
- Chapter 8 Service Robotics Market, By Technology
- 8.1 Key trends
- 8.2 Artificial Intelligence
- 8.3 Robotic Process Automation (RPA)
- 8.4 Computer Vision
- 8.5 Voice and Gesture Recognition
- 8.6 Autonomous Navigation
- Chapter 9 Service Robotics Market, By Application
- 9.1 Key trends
- 9.2 Healthcare
- 9.2.1 Surgical Assistance
- 9.2.2 Patient Monitoring
- 9.2.3 Rehabilitation
- 9.2.4 Delivery (Medicines, Equipment within Hospitals)
- 9.2.5 Elderly Assistance
- 9.3 Logistics and Warehousing
- 9.3.1 Material Handling and Transportation
- 9.3.2 Goods Sorting and Packaging
- 9.3.3 Autonomous Drones for Delivery
- 9.3.4 Automated Inventory Management
- 9.4 Security And Surveillance
- 9.5 Education And Training
- 9.6 Others
- Chapter 10 Service Robotics Market, By Region
- 10.1 Key trends
- 10.2 North America
- 10.3 Europe
- 10.4 Asia-Pacific
- 10.5 Latin America
- 10.6 Middle East and Africa
- Chapter 11 Company Profiles
- 11.1 ABB Ltd.
- 11.1.1 Global overview
- 11.1.2 Market/Business Overview
- 11.1.3 Financial data
- 11.1.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.1.4 Product Landscape
- 11.1.5 Strategic Outlook
- 11.1.6 SWOT analysis
- 11.2 Aethon
- 11.2.1 Global overview
- 11.2.2 Market/Business Overview
- 11.2.3 Financial data
- 11.2.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.2.4 Product Landscape
- 11.2.5 Strategic Outlook
- 11.2.6 SWOT analysis
- 11.3 Blue Ocean Robotics
- 11.3.1 Global overview
- 11.3.2 Market/Business Overview
- 11.3.3 Financial data
- 11.3.4 Product Landscape
- 11.3.5 Strategic Outlook
- 11.3.6 SWOT analysis
- 11.4 Boston Dynamics
- 11.4.1 Global overview
- 11.4.2 Market/Business Overview
- 11.4.3 Financial data
- 11.4.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.4.4 Product Landscape
- 11.4.5 Strategic Outlook
- 11.4.6 SWOT analysis
- 11.5 Clearpath Robotics
- 11.5.1 Global overview
- 11.5.2 Market/Business Overview
- 11.5.3 Financial data
- 11.5.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.5.4 Product Landscape
- 11.5.5 Strategic Outlook
- 11.5.6 SWOT analysis
- 11.6 DJI
- 11.6.1 Global overview
- 11.6.2 Market/Business Overview
- 11.6.3 Financial data
- 11.6.4 Product Landscape
- 11.6.5 SWOT analysis
- 11.7 Dematic
- 11.7.1 Global overview
- 11.7.2 Market/Business Overview
- 11.7.3 Financial data
- 11.7.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.7.4 Product Landscape
- 11.7.5 Strategic Outlook
- 11.7.6 SWOT analysis
- 11.8 ECOVACS
- 11.8.1 Global overview
- 11.8.2 Market/Business Overview
- 11.8.3 Financial data
- 11.8.4 Product Landscape
- 11.8.5 SWOT analysis
- 11.9 FANUC CORPORATION
- 11.9.1 Global overview
- 11.9.2 Market/Business Overview
- 11.9.3 Financial data
- 11.9.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.9.4 Product Landscape
- 11.9.5 Strategic Outlook
- 11.9.6 SWOT analysis
- 11.10 Intuitive Surgical, Inc.
- 11.10.1 Global overview
- 11.10.2 Market/Business Overview
- 11.10.3 Financial data
- 11.10.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.10.4 Product Landscape
- 11.10.5 SWOT analysis
- 11.11 iRobot Corporation
- 11.11.1 Global overview
- 11.11.2 Market/Business Overview
- 11.11.3 Financial data
- 11.11.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.11.4 Product Landscape
- 11.11.5 SWOT analysis
- 11.12 Kawasaki Heavy Industries Ltd.
- 11.12.1 Global overview
- 11.12.2 Market/Business Overview
- 11.12.1 Financial data
- 11.12.1.1 Sales Revenue, 2022-2024(USD Million)
- 11.12.2 Product Landscape
- 11.12.3 Strategic Outlook
- 11.12.4 SWOT analysis
- 11.13 Kiva Systems
- 11.13.1 Global overview
- 11.13.2 Market/Business Overview
- 11.13.3 Financial data
- 11.13.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.13.4 Product Landscape
- 11.13.5 Strategic Outlook
- 11.13.6 SWOT analysis
- 11.14 KUKA AG
- 11.14.1 Global overview
- 11.14.2 Market/Business Overview
- 11.14.3 Financial data
- 11.14.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.14.4 Product Landscape
- 11.14.5 SWOT analysis
- 11.15 Locus Robotics
- 11.15.1 Global overview
- 11.15.2 Market/Business Overview
- 11.15.3 Financial data
- 11.15.4 Product Landscape
- 11.15.5 SWOT analysis
- 11.16 Neato Robotics, Inc.
- 11.16.1 Global overview
- 11.16.2 Market/Business Overview
- 11.16.3 Financial data
- 11.16.4 Product Landscape
- 11.16.5 SWOT analysis
- 11.17 Omron Corporation
- 11.17.1 Global overview
- 11.17.2 Market/Business Overview
- 11.17.3 Financial data
- 11.17.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.17.4 Product Landscape
- 11.17.5 SWOT analysis
- 11.18 PAL Robotics
- 11.18.1 Global overview
- 11.18.2 Market/Business Overview
- 11.18.3 Financial data
- 11.18.4 Product Landscape
- 11.18.5 SWOT analysis
- 11.19 Rethink Robotics
- 11.19.1 Global overview
- 11.19.2 Market/Business Overview
- 11.19.3 Financial data
- 11.19.4 Product Landscape
- 11.19.5 Strategic Outlook
- 11.19.6 SWOT analysis
- 11.20 Robomart, Inc.
- 11.20.1 Global overview
- 11.20.2 Market/Business Overview
- 11.20.3 Financial data
- 11.20.4 Product Landscape
- 11.20.5 SWOT analysis
- 11.21 Roborock
- 11.21.1 Global overview
- 11.21.2 Market/Business Overview
- 11.21.3 Financial data
- 11.21.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.21.4 Product Landscape
- 11.21.5 SWOT analysis
- 11.22 Savioke
- 11.22.1 Global overview
- 11.22.2 Market/Business Overview
- 11.22.3 Financial data
- 11.22.4 Product Landscape
- 11.22.5 SWOT analysis
- 11.23 Vecna Robotics
- 11.23.1 Global overview
- 11.23.2 Market/Business Overview
- 11.23.3 Financial data
- 11.23.4 Product Landscape
- 11.23.5 Strategic Outlook
- 11.23.6 SWOT analysis
- 11.24 YASKAWA ELECTRIC CORPORATION
- 11.24.1 Global overview
- 11.24.2 Market/Business Overview
- 11.24.3 Financial data
- 11.24.3.1 Sales Revenue, 2021-2023(USD Million)
- 11.24.4 Product Landscape
- 11.24.5 SWOT analysis
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