As per Intent Market Research, the Robotics and Automation Actuators Market was valued at USD 25.7 Billion in 2024-e and will surpass USD 55.7 Billion by 2030; growing at a CAGR of 13.8% during 2025-2030.
The robotics and automation actuators market is driven by the growing need for automation across industries such as manufacturing, healthcare, automotive, and logistics. Actuators are essential components in robotic systems, converting energy into motion and enabling precise movements for various robotic applications. As automation technologies continue to evolve, the demand for high-performance actuators is increasing, driven by the need for improved efficiency, productivity, and precision. The market is expected to grow significantly, fueled by advancements in technology and increasing industrial automation in emerging economies.
Linear Actuators Segment Is Largest Owing to Versatility and Efficiency
Among the various actuator types, linear actuators hold the largest share in the robotics and automation market. Linear actuators are widely used due to their ability to provide linear motion in both robotic arms and various automated machinery. Their versatility makes them ideal for applications in a variety of industries, including automotive, manufacturing, and healthcare. Linear actuators are often used in robotic arms, conveyors, and even medical robotics, where precision is critical. With advancements in materials and design, modern linear actuators offer enhanced efficiency, quieter operation, and energy savings, making them increasingly favored in industrial automation applications.
The growth in the automotive and industrial sectors is driving the demand for linear actuators, as manufacturers seek automation solutions that improve production speed, consistency, and safety. The ability of linear actuators to handle heavy loads and offer precise motion control further boosts their adoption in industries where automation is critical to operations. This segment’s prominence is also attributed to the rising trend of smart manufacturing, where robotic systems powered by linear actuators enable precise assembly, packaging, and material handling.
Automotive End-User Industry Is Largest Due to Growing Demand for Automation
In terms of end-user industries, the automotive sector is the largest contributor to the robotics and automation actuators market. The automotive industry heavily relies on robotics and automation technologies to streamline production lines, improve efficiency, and enhance safety standards. Actuators are essential components of automated robotic systems used in assembly lines, material handling, and quality inspection, contributing to the industry's overall productivity and cost-efficiency. With the rise of electric vehicles (EVs) and autonomous driving technologies, the automotive sector continues to adopt advanced automation solutions, further driving the demand for robotics actuators.
The increasing need for precision in automotive manufacturing, such as in the assembly of complex components, is another factor contributing to the growth of actuators in this segment. As automotive companies invest in smart factories and automated production lines, the demand for actuators, particularly linear and electric types, is expected to grow. The automotive industry's focus on improving production speed and reducing errors in assembly processes will continue to drive actuator demand in the coming years.
Robotic Arms Application Is Fastest Growing Due to Rising Automation Adoption
Among the various applications of robotics actuators, robotic arms are the fastest-growing segment. Robotic arms are pivotal in both industrial and healthcare applications due to their flexibility, precision, and efficiency. These arms are widely used in manufacturing for tasks such as welding, painting, assembly, and packaging. In healthcare, robotic arms are increasingly used for surgeries and rehabilitation purposes, where precision is crucial. As industries adopt more advanced robotics for automation, the demand for high-performance actuators to power robotic arms continues to increase.
The growth of the robotic arms segment is supported by advancements in AI and machine learning, which allow these robots to operate more autonomously and intelligently. Furthermore, industries such as automotive and electronics are integrating robotic arms into their production lines for tasks requiring high precision, driving significant growth in this application. The continued trend toward Industry 4.0, where automated systems and robotics play a central role, will ensure that robotic arms remain a key area for actuator deployment.
Asia-Pacific Region Is Fastest Growing Due to Industrial Expansion
Asia-Pacific is the fastest-growing region in the robotics and automation actuators market. The region has seen significant industrial expansion, particularly in countries like China, Japan, and South Korea, where manufacturing automation is rapidly advancing. The rise of smart factories and the growing adoption of robots in industries such as automotive, consumer electronics, and logistics are contributing to the increasing demand for actuators. The Asia-Pacific region is also home to some of the world’s largest robotics and automation companies, which are driving technological innovations and pushing the market forward.
In addition to the industrial sector, the healthcare industry in Asia-Pacific is also experiencing growth, with robotics being increasingly used in medical applications such as surgery and patient care. The demand for actuators in robotic arms, particularly in the medical field, is expected to see a substantial increase. With ongoing investments in automation infrastructure and a growing focus on technological advancement, Asia-Pacific is poised to lead the market growth in the coming years.
Leading Companies and Competitive Landscape
The robotics and automation actuators market is competitive, with several global players leading the charge in terms of product innovation and market share. Companies like Bosch Rexroth AG, Parker Hannifin Corporation, and Festo AG dominate the market by offering a wide range of actuators designed for various industrial and robotic applications. These companies focus on developing advanced actuator technologies that offer higher performance, efficiency, and reliability.
In addition to established companies, newer entrants and startups are contributing to market dynamics by focusing on specific actuator solutions for emerging applications like collaborative robots (cobots) and medical robotics. The competitive landscape is characterized by continuous product innovation, strategic partnerships, and acquisitions aimed at expanding product portfolios and market reach. The market is expected to witness further consolidation as companies invest in R&D to create advanced actuators that cater to the growing needs of automation across different industries.
List of Leading Companies:
- Bosch Rexroth AG
- Festo AG & Co. KG
- Parker Hannifin Corporation
- SMC Corporation
- ABB Ltd.
- Rockwell Automation
- KUKA AG
- Schneider Electric
- Siemens AG
- Curtiss-Wright Corporation
- Honeywell International Inc.
- Yaskawa Electric Corporation
- Mitsubishi Electric Corporation
- Nidec Corporation
- Applied Robotics, Inc.
Recent Developments:
- Bosch Rexroth launched a new series of high-performance linear actuators designed for precise automation applications, improving energy efficiency and reducing downtime for industrial robots.
- Parker Hannifin Corporation expanded its portfolio with the acquisition of a leading robotics automation company to enhance its actuator technologies, particularly in the medical robotics sector.
- Festo AG unveiled a cutting-edge pneumatic actuator that combines advanced motion control with sustainable energy solutions, targeting the growing demand for eco-friendly robotics in manufacturing.
- ABB Ltd. introduced a new electric actuator designed for collaborative robots (cobots), enabling smoother and more flexible operations in manufacturing and assembly lines.
- Yaskawa Electric Corporation completed the development of an innovative rotary actuator for robotic arms, enhancing the flexibility and precision required in assembly and inspection processes across various industries.
Report Scope:
Report Features |
Description |
Market Size (2024-e) |
USD 25.7 Billion |
Forecasted Value (2030) |
USD 55.7 Billion |
CAGR (2025 – 2030) |
13.8% |
Base Year for Estimation |
2024-e |
Historic Year |
2023 |
Forecast Period |
2025 – 2030 |
Report Coverage |
Market Forecast, Market Dynamics, Competitive Landscape, Recent Developments |
Segments Covered |
Robotics and Automation Actuators Market By Product Type (Linear Actuators, Rotary Actuators, Pneumatic Actuators, Electric Actuators, Hydraulic Actuators), By End-User Industry (Automotive, Industrial Manufacturing, Healthcare, Aerospace & Defense, Consumer Electronics, Logistics & Warehousing, Food & Beverage, Oil & Gas), By Application (Robotic Arms, Autonomous Mobile Robots, Conveyors & Sorting Systems, Medical Robotics, Collaborative Robots, Industrial Robots) |
Regional Analysis |
North America (US, Canada, Mexico), Europe (Germany, France, UK, Italy, Spain, and Rest of Europe), Asia-Pacific (China, Japan, South Korea, Australia, India, and Rest of Asia-Pacific), Latin America (Brazil, Argentina, and Rest of Latin America), Middle East & Africa (Saudi Arabia, UAE, Rest of Middle East & Africa) |
Major Companies |
Bosch Rexroth AG, Festo AG & Co. KG, Parker Hannifin Corporation, SMC Corporation, ABB Ltd., Rockwell Automation, KUKA AG, Schneider Electric, Siemens AG, Curtiss-Wright Corporation, Honeywell International Inc., Yaskawa Electric Corporation, Mitsubishi Electric Corporation, Nidec Corporation, Applied Robotics, Inc. |
Customization Scope |
Customization for segments, region/country-level will be provided. Moreover, additional customization can be done based on the requirements |
Frequently Asked Questions
1. Introduction |
1.1. Market Definition |
1.2. Scope of the Study |
1.3. Research Assumptions |
1.4. Study Limitations |
2. Research Methodology |
2.1. Research Approach |
2.1.1. Top-Down Method |
2.1.2. Bottom-Up Method |
2.1.3. Factor Impact Analysis |
2.2. Insights & Data Collection Process |
2.2.1. Secondary Research |
2.2.2. Primary Research |
2.3. Data Mining Process |
2.3.1. Data Analysis |
2.3.2. Data Validation and Revalidation |
2.3.3. Data Triangulation |
3. Executive Summary |
3.1. Major Markets & Segments |
3.2. Highest Growing Regions and Respective Countries |
3.3. Impact of Growth Drivers & Inhibitors |
3.4. Regulatory Overview by Country |
4. Robotics and Automation Actuators Market, by Type (Market Size & Forecast: USD Million, 2023 – 2030) |
4.1. Linear Actuators |
4.2. Rotary Actuators |
4.3. Pneumatic Actuators |
4.4. Electric Actuators |
4.5. Hydraulic Actuators |
4.6. Others |
5. Robotics and Automation Actuators Market, by End-User Industry (Market Size & Forecast: USD Million, 2023 – 2030) |
5.1. Automotive |
5.2. Industrial Manufacturing |
5.3. Healthcare |
5.4. Aerospace & Defense |
5.5. Consumer Electronics |
5.6. Logistics & Warehousing |
5.7. Food & Beverage |
5.8. Oil & Gas |
5.9. Others |
6. Robotics and Automation Actuators Market, by Application (Market Size & Forecast: USD Million, 2023 – 2030) |
6.1. Robotic Arms |
6.2. Autonomous Mobile Robots (AMRs) |
6.3. Conveyors & Sorting Systems |
6.4. Medical Robotics |
6.5. Collaborative Robots (Cobots) |
6.6. Industrial Robots |
6.7. Others |
7. Regional Analysis (Market Size & Forecast: USD Million, 2023 – 2030) |
7.1. Regional Overview |
7.2. North America |
7.2.1. Regional Trends & Growth Drivers |
7.2.2. Barriers & Challenges |
7.2.3. Opportunities |
7.2.4. Factor Impact Analysis |
7.2.5. Technology Trends |
7.2.6. North America Robotics and Automation Actuators Market, by Type |
7.2.7. North America Robotics and Automation Actuators Market, by End-User Industry |
7.2.8. North America Robotics and Automation Actuators Market, by Application |
7.2.9. By Country |
7.2.9.1. US |
7.2.9.1.1. US Robotics and Automation Actuators Market, by Type |
7.2.9.1.2. US Robotics and Automation Actuators Market, by End-User Industry |
7.2.9.1.3. US Robotics and Automation Actuators Market, by Application |
7.2.9.2. Canada |
7.2.9.3. Mexico |
*Similar segmentation will be provided for each region and country |
7.3. Europe |
7.4. Asia-Pacific |
7.5. Latin America |
7.6. Middle East & Africa |
8. Competitive Landscape |
8.1. Overview of the Key Players |
8.2. Competitive Ecosystem |
8.2.1. Level of Fragmentation |
8.2.2. Market Consolidation |
8.2.3. Product Innovation |
8.3. Company Share Analysis |
8.4. Company Benchmarking Matrix |
8.4.1. Strategic Overview |
8.4.2. Product Innovations |
8.5. Start-up Ecosystem |
8.6. Strategic Competitive Insights/ Customer Imperatives |
8.7. ESG Matrix/ Sustainability Matrix |
8.8. Manufacturing Network |
8.8.1. Locations |
8.8.2. Supply Chain and Logistics |
8.8.3. Product Flexibility/Customization |
8.8.4. Digital Transformation and Connectivity |
8.8.5. Environmental and Regulatory Compliance |
8.9. Technology Readiness Level Matrix |
8.10. Technology Maturity Curve |
8.11. Buying Criteria |
9. Company Profiles |
9.1. Bosch Rexroth AG |
9.1.1. Company Overview |
9.1.2. Company Financials |
9.1.3. Product/Service Portfolio |
9.1.4. Recent Developments |
9.1.5. IMR Analysis |
*Similar information will be provided for other companies |
9.2. Festo AG & Co. KG |
9.3. Parker Hannifin Corporation |
9.4. SMC Corporation |
9.5. ABB Ltd. |
9.6. Rockwell Automation |
9.7. KUKA AG |
9.8. Schneider Electric |
9.9. Siemens AG |
9.10. Curtiss-Wright Corporation |
9.11. Honeywell International Inc. |
9.12. Yaskawa Electric Corporation |
9.13. Mitsubishi Electric Corporation |
9.14. Nidec Corporation |
9.15. Applied Robotics, Inc. |
10. Appendix |
A comprehensive market research approach was employed to gather and analyze data on the Robotics and Automation Actuators Market. In the process, the analysis was also done to analyze the parent market and relevant adjacencies to measure the impact of them on the Robotics and Automation Actuators Market. The research methodology encompassed both secondary and primary research techniques, ensuring the accuracy and credibility of the findings.
Secondary Research
Secondary research involved a thorough review of pertinent industry reports, journals, articles, and publications. Additionally, annual reports, press releases, and investor presentations of industry players were scrutinized to gain insights into their market positioning and strategies.
Primary Research
Primary research involved conducting in-depth interviews with industry experts, stakeholders, and market participants across the E-Waste Management ecosystem. The primary research objectives included:
- Validating findings and assumptions derived from secondary research
- Gathering qualitative and quantitative data on market trends, drivers, and challenges
- Understanding the demand-side dynamics, encompassing end-users, component manufacturers, facility providers, and service providers
- Assessing the supply-side landscape, including technological advancements and recent developments
Market Size Assessment
A combination of top-down and bottom-up approaches was utilized to analyze the overall size of the Robotics and Automation Actuators Market. These methods were also employed to assess the size of various subsegments within the market. The market size assessment methodology encompassed the following steps:
- Identification of key industry players and relevant revenues through extensive secondary research
- Determination of the industry's supply chain and market size, in terms of value, through primary and secondary research processes
- Calculation of percentage shares, splits, and breakdowns using secondary sources and verification through primary sources
Data Triangulation
To ensure the accuracy and reliability of the market size, data triangulation was implemented. This involved cross-referencing data from various sources, including demand and supply side factors, market trends, and expert opinions. Additionally, top-down and bottom-up approaches were employed to validate the market size assessment.