The Thailand Collaborative Robot Market was valued at $27.4 Million in 2025 and projected to reach to $88.7 Million by 2030, representing a compound annual growth rate of 26.5%. Thailand's collaborative robot market is poised for exceptional growth as the country strengthens its position as a regional manufacturing powerhouse.
Thailand's collaborative robot market is projected to grow from $27.4 million in 2025 to $88.7 million by 2030, representing a robust 26.5% CAGR—significantly outpacing the global average of 18.9%.
Thailand's semiconductor and electronics manufacturing sector is undergoing digital transformation, with collaborative robots becoming essential for enhancing productivity and reducing labor costs in production facilities.
As a key manufacturing hub in Southeast Asia, Thailand is attracting increased foreign direct investment in automation technologies, positioning the country as a critical growth market for collaborative robotics adoption.
Thai manufacturers are increasingly integrating collaborative robots into smart factory initiatives, driven by government incentives and the need to maintain competitive advantage in global electronics supply chains.
| Report Metric | Details |
|---|---|
| Base Year | 2025 |
| Fastest Growing Segment | SOFTWARE (Component) |
| Forecast Period | 2025–2030 |
| Growth Rate | CAGR of 18.9% from 2025 to 2030 |
| Largest Segment | HARDWARE (Component) |
| Market Size Base Year (Billions) | ~USD 1.42 (2025) |
| Revenue Forecast (Billions) | ~USD 3.38 (2030) |
| Segments Covered | Payload, Application, Industry, Component 2021–2024, Component, Type |
6 segment dimensions are covered across the global market.
| Company | HQ | Ownership | Strongest segments |
|---|---|---|---|
| FOXCONN INDUSTRIAL INTERNET CO LTD | China | Public Company | Server and storage hardware,Networking equipment,Industrial automation systems and precision components, |
| LEONI AG | Germany | Private Company | Wiring Systems (complete wiring systems and cable harnesses),Wire & Cable Solutions – automotive standard and special cables,Wire & Cable Solutions – charging cables and e-mobility, |
| VOITH | Germany | Private Company | Voith Hydro (turbines, generators, hydro services),Voith Paper (papermaking components and systems),Voith Turbo (drives, transmissions, braking, couplings), |
| FANUC CORPORATION | Japan | Public Company | CNC Systems and Factory Automation Components (servo, lasers),Industrial Robots,Robomachine Equipment, |
| ABB | Switzerland | Public Company | Electrification,Motion,Automation, |
| TECHMAN ROBOT INC. | Taiwan | Public Company | TM Robots & TM S series hardware,TMflow and core software (TMscript, TMcraft, ROS Driver),AI vision and TM AI+ software (Training Server, AOI Edge, Image Manager), |
| KUKA AG | Germany | Private Company | Industrial robots and controllers,Systems and production cells,Logistics, AGVs, and warehouse automation, |
| DOOSAN ROBOTICS INC. | South Korea | Public Company | Industrial collaborative robot arms (hardware),Motion control algorithms and proprietary robotic software,Integration, services, and related robotic solutions, |
| DENSO CORPORATION | Japan | Public Company | Air-conditioning and thermal management systems,Powertrain systems (gasoline, diesel, hybrid, EV, fuel cell),Safety and cockpit systems, |
| YASKAWA ELECTRIC CORPORATION | Japan | Public Company | Motion control (servo motors, amplifiers, controllers, encoders),Industrial robots (welding, handling, collaborative, biomedical, palletizing),Low-voltage AC drives and PM motors, |
| SIASUN ROBOT & AUTOMATION CO., LTD. | China | Public Company | Industrial robots (SCARA, desktop, large and ultra-high payload, truss robots, integrated solutions),Mobile robots (forklift, tote/box handling, industrial cleaning, under-ride lift, industrial park delivery, customized AMRs),Collaborative robots and application workstations (GCR series, explosion-proof, palletizing, welding, DUCO Mobile Cobot), |
| COMAU S.P.A. | Italy | Private Company | Body assembly and press shop automation,Powertrain and machining modules,Robotics and general automation systems, |
Foxconn Industrial Internet Co Ltd is a Chinese public company founded in 2015 that operates as a major industrial internet platform. With 217,084 employees, the company provides digital transformation and industrial solutions.
Leoni AG is a German private company with a history dating back to 1569 and employs 95,090 people, operating as a major industrial conglomerate.
Voith is a German private company established in 1867 with 23,224 employees, operating across multiple industrial sectors including drive technology and paper making.
Fanuc Corporation is a Japanese public company established in 1950 with 10,040 employees, specializing in industrial robots, CNC systems, and factory automation.
ABB is a Swiss public company founded in 1883 with 112,700 employees, operating as a global leader in robotics, power, and automation technology.
Techman Robot Inc. is a Taiwanese public company founded in 2015 with 388 employees, specializing in collaborative robotic arms and automation solutions.
Kuka AG is a German private company founded in 1898 with 14,985 employees, specializing in industrial robots and automation systems.
Doosan Robotics Inc. is a South Korean public company founded in 2015 with 237 employees, focused on developing collaborative and industrial robotic solutions.
Denso Corporation is a Japanese public company established in 1949 with 154,716 employees, operating as a major supplier of automotive components and industrial systems.
Yaskawa Electric Corporation is a Japanese public company founded in 1915 with 12,483 employees, specializing in industrial robots, motion control, and power electronics.
Siasun Robot & Automation Co., Ltd. is a Chinese public company established in 2000 with 3,585 employees, specializing in industrial robots and automation systems.
Comau S.P.A. is an Italian private company founded in 1970 with 7,103 employees, specializing in industrial automation and robotic systems.
Thailand's collaborative robot market was valued at $27.4 million in 2025 and is projected to reach $88.7 million by 2030.
Thailand's collaborative robot market is growing at a compound annual growth rate (CAGR) of 26.5% from 2025 to 2030, significantly outpacing the global average of 18.9%.
Thailand's semiconductor, electronics assembly, automotive, and precision manufacturing sectors are the primary drivers of collaborative robot adoption, leveraging automation to enhance productivity and address labor challenges.
Thailand's rapid market growth is driven by manufacturing sector modernization, rising labor costs, supply chain resilience initiatives, and substantial Industry 4.0 investments across Thai manufacturing facilities.
Continued automation investments, digital transformation initiatives, labor cost pressures, and Thailand's role as a regional manufacturing hub will sustain strong demand for collaborative robots through 2030.
The study involved major activities in estimating the current size of the collaborative robot market. Exhaustive secondary research was done to collect information on collaborative robots. The next step was to validate these findings, assumptions, and sizing with industry experts across the value chain using primary research. Different approaches, such as top-down and bottom-up, were employed to estimate the total market size. After that, the market breakup and data triangulation procedures were used to estimate the market size of the segments and subsegments of the collaborative robot.
In the secondary research process, various secondary sources were referred to identify and collect information relevant to this study. Secondary sources included annual reports, press releases, and investor presentations of companies; white papers, certified publications, and articles from recognized authors; directories; and databases. Secondary research was mainly carried out to obtain critical information about the industry’s supply chain, value chain, the total pool of key players, and market classification and segmentation according to industry trends, geographic markets, and key developments from both market- and technology-oriented perspectives. Secondary sources included corporate filings (such as annual reports, investor presentations, and financial statements); trade, business, and professional associations; white papers; IoT technologies journals and certified publications; articles by recognized authors; gold-and silver-standard websites; directories; and databases. Data was also collected from secondary sources, such as the International Federation of Robotics (IFR), the International Trade Centre (ITC) (Switzerland), and the Robotics Business Review (RBR).
Secondary research was mainly used to obtain critical information about the supply chain of the industry, the value chain of the market, the total pool of key players, market classification and segmentation according to industry trends to the bottom-most level, geographic markets, and key developments from both the market and technology-oriented perspectives. Secondary data was collected and analyzed to arrive at the overall market size, which was further validated by primary research.
Extensive primary research was conducted after understanding and analyzing the current scenario of the collaborative robot market through secondary research. Several primary interviews were conducted with key opinion leaders from both the demand and supply sides across four major regions: North America, Europe, Asia Pacific, and the Rest of the World. Approximately 25% of the primary interviews were conducted with the demand side, while 75% were conducted with the supply side. This primary data was collected mainly through telephonic interviews, which accounted for 80% of the total primary interviews. Questionnaires and e-mails were also used to collect data.
Note: Three tiers of companies are defined based on their total revenue as of 2024; tier 1: revenue more than or equal to USD 500 million, tier 2: revenue between USD 100 million and USD 500 million, and tier 3: revenue less than or equal to USD 100 million. Other designations include sales and marketing executives and researchers, as well as members of various collaborative robot organizations
To know about the assumptions considered for the study, download the pdf brochure
This report implements both top-down and bottom-up approaches to estimate and validate the size of the collaborative robot market and various other dependent submarkets. Secondary research identifies key players in this market, and their market shares in the respective regions are determined through primary and secondary research.
This report implements both top-down and bottom-up approaches to estimate and validate the size of the collaborative robot market and various other dependent submarkets. Secondary research identifies key players in this market, and their market shares in the respective regions are determined through primary and secondary research.
Top-Down Approach

After arriving at the overall size of the collaborative robot market from the estimation process explained above, the market was split into several segments and subsegments. The data triangulation and market breakdown procedures were employed (wherever applicable) to complete the overall market engineering process and arrive at the exact statistics for all segments and subsegments. The data was triangulated by studying various factors and trends from both the demand and supply sides. The size of the collaborative robot market was validated using both top-down and bottom-up approaches..
According to the International Federation of Robotics (IFR), robots intended for collaborative use need to adhere to the International Organization for Standards (ISO) standard 10218-1. This standard establishes essential criteria and recommendations to guarantee the safe design, effective protective measures, and comprehensive usage guidelines for industrial robots. By adhering to these standards, a secure and efficient environment can be ensured for both operators and machinery.
Collaborative robots (also known as cobots) are designed to work alongside humans with precision, strength, and speed to achieve greater efficiency in production. Using robots to assist humans can help significantly reduce the workload of human workers and relieve them of monotonous, repetitive tasks. As an emerging automation technology, cobots complement the existing industrial robotics market. The total cost of ownership of factory automation solutions, especially for small and medium-sized enterprises (SMEs), can be significantly reduced by adopting cobots. Cobot operations are primarily governed by the ISO 15066:2016 standard that further specifies various safety requirements. Other standards governing the safe operations of cobots include ISO 10218-1:2011, RIA/ANSI R15.06-2012, ISO 12100:2010, and ISO 13849-1:2008.
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