The China Fab Automation Market was valued at $7210.9 Million in 2025 and projected to reach to $13095.1 Million by 2030, representing a compound annual growth rate of 8.9%. China's fab automation market is positioned for sustained growth through 2030, supported by government incentives, substantial capital investments in semiconductor fabs, and the strategic push toward advanced process nodes.
| Market Size in | USD 26.32 MN |
| Market Forecast in | |
| CAGR | |
| Forecast Period | |
| Units Considered | Value (USD MN) |
China's fab automation market is projected to grow from $7,210.9 million in 2025 to $13,095.1 million by 2030, driven by aggressive semiconductor manufacturing capacity expansion and government support for domestic chip production.
China's 8.9% CAGR significantly outpaces the global market growth of 7.3%, reflecting the country's strategic prioritization of semiconductor self-sufficiency and advanced manufacturing capabilities.
Chinese fabs are increasingly investing in automation technologies to support advanced process node development, reducing reliance on foreign semiconductor imports and strengthening domestic technological capabilities.
Automation adoption is accelerating across China's foundry and memory manufacturing segments, with major players investing in robotics, AI-driven quality control, and integrated manufacturing execution systems.
| Report Metric | Details |
|---|---|
| Base Year | 2025 |
| Fastest Growing Segment | SOFTWARE (Offering) |
| Forecast Period | 2025–2030 |
| Growth Rate | CAGR of 7.3% from 2025 to 2030 |
| Largest Segment | 300 MM (Wafer Size) |
| Market Size Base Year (Billions) | ~USD 25.31 (2025) |
| Revenue Forecast (Billions) | ~USD 35.99 (2030) |
| Segments Covered | Offering, Type, Wafer Size, Deployment Type, End User, Hardware Type |
6 segment dimensions are covered across the global market.
| Company | HQ | Ownership | Strongest segments |
|---|---|---|---|
| DAIFUKU CO., LTD. | Japan | Public Company | Storage, transport, sorting, and picking systems,Cleanroom transport and storage systems,Automobile production line systems, |
| EBARA CORPORATION | Japan | Public Company | Building Service & Industrial (pumps, fans, chillers, cooling towers),Energy and Infrastructure (pumps, compressors, turbines, cryogenic products),Environmental Solutions (waste treatment, incineration, gasification, sewerage systems), |
| RORZE CORPORATION | Japan | Public Company | Wafer handling systems (robots, EFEMs, load ports, stockers),Mask/reticle handling systems,System integration, software, and EDA/interface A solutions, |
| FANUC | Japan | Public Company | CNC Systems and Servo Drives,Industrial Robots,Robomachines (Robodrill, Roboshot, Robocut), |
| HIRATA CORPORATION | Japan | Public Company | Automotive and EV production equipment,Semiconductor-related equipment,Industrial robots and 3D vision systems, |
| KUKA AG | Germany | Private Company | Industrial robots and controllers,Collaborative and mobile robots,Turnkey production systems and manufacturing cells, |
| YASKAWA ELECTRIC CORPORATION | Japan | Public Company | Motion control (servo motors, drives, controllers, encoders),Industrial robots (arc/spot welding, handling, collaborative, biomedical, palletizing),AC drives and motor systems for appliances, infrastructure, and factories, |
| KAWASAKI HEAVY INDUSTRIES | Japan | Public Company | Powersports and Engines,Precision Machinery and Robotics,Aerospace Systems, |
| ATLAS COPCO | Sweden | Public Company | Compressor Technique,Vacuum Technique,Industrial Technique, |
| THIRA-UTECH | South Korea | Public Company | Planning and scheduling (THiRA Planner, Scheduler, SCP, DCP, Optimizer),Manufacturing execution and operations (THiRA MES, MOM, EIS, SECS-GEM),Smart logistics and robotics (THiRAbot, MCS, FMCS), |
| DAIHEN CORPORATION | Japan | Public Company | Transformers, distribution and power management equipment,Conventional welding and cutting machines,Robot-integrated welding and industrial robots, |
| BROOKS AUTOMATION | United States | Public Company | Sample Management Solutions,Multiomics Services,Consulting and Design Services, |
| MIRLE AUTOMATION | Taiwan | Public Company | Intelligent automation systems and equipment (material handling, AS/RS, FPD and glass lines),Digital technology products, industrial controllers, and intelligent control systems,Intelligent factory software, immersion systems, and analytics, |
| SYNUS TECH | South Korea | Private Company | Logistics equipment and intralogistics systems,Energy equipment and related systems,Services, integration, and aftermarket, |
Daifuku Co., Ltd. is a Japanese public company founded in 1937 with 11,417 employees. The company operates as a major industrial automation and material handling solutions provider.
Ebara Corporation is a Japanese public company founded in 1912 with 21,148 employees. The company operates across multiple industrial sectors including pumps, compressors, and environmental systems.
Rorze Corporation is a Japanese public company founded in 1966 with 4,435 employees. The company provides automation and robotics solutions for industrial applications.
Fanuc is a Japanese public company founded in 1950 with 10,040 employees. The company is a leading manufacturer of industrial robots and factory automation systems.
Hirata Corporation is a Japanese public company founded in 1920 with 1,984 employees. The company specializes in automation equipment and manufacturing solutions.
Kuka AG is a private German company founded in 1898 with 14,985 employees. The company is a global leader in industrial robotics and automation technology.
Yaskawa Electric Corporation is a Japanese public company founded in 1915 with 12,483 employees. The company manufactures industrial robots, motion control systems, and power electronics.
Kawasaki Heavy Industries is a Japanese public company founded in 1878 with 40,640 employees. The company operates across diverse sectors including robotics, aerospace, and industrial machinery.
Atlas Copco is a Swedish public company founded in 1873 with 56,473 employees. The company provides industrial equipment and solutions including compressors, vacuum systems, and power tools.
Thira-Utech is a South Korean public company founded in 2006 with 229 employees. The company operates in the industrial technology sector.
Daihen Corporation is a Japanese public company founded in 1919 with 4,542 employees. The company manufactures welding equipment and industrial automation systems.
Brooks Automation is a United States public company founded in 1978 with 2,900 employees. The company provides automation and cryogenic solutions for semiconductor and life sciences industries.
Mirle Automation is a Taiwanese company founded in 1989 with 579 employees. The company specializes in automation equipment and manufacturing solutions.
Synus Tech is a private South Korean company with limited available information. The company operates in the industrial technology sector.
China's fab automation market is valued at $7,210.9 million in 2025 and is projected to reach $13,095.1 million by 2030.
China's fab automation market is growing at a compound annual growth rate (CAGR) of 8.9% from 2025 to 2030.
Key drivers include government support for semiconductor self-sufficiency, rising demand for consumer electronics, Industry 4.0 compliance requirements, and the need to improve manufacturing efficiency and yield.
China is seeing strong demand for robotic systems, AI-enabled process control, integrated manufacturing execution systems (MES), and advanced material handling solutions.
China's 8.9% CAGR exceeds the global average of 7.3%, reflecting accelerated investment in domestic semiconductor manufacturing and automation capabilities.
The research study involved four major activities in estimating the size of the fab automation market. Exhaustive secondary research has been conducted to gather key information about the market and its peer markets. The next step has been to validate these findings and assumptions, and size them up with the help of primary research involving industry experts across the value chain. Both top-down and bottom-up approaches have been used to estimate the market size. Following this, market breakdown and data triangulation have been employed to estimate the market sizes of segments and sub-segments.
During the secondary research process, various secondary sources have been consulted to identify and collect the information required for this study. The secondary sources include annual reports, press releases, investor presentations of companies, white papers, and articles from recognized authors. Secondary research has primarily been conducted to gather key information about the market’s value chain, the pool of key market players, market segmentation based on industry trends, regional outlook, and developments from both market and technology perspectives.
The fab automation market report estimates the global market size using both top-down and bottom-up approaches, as well as several dependent submarkets. Major players in the market have been identified through extensive secondary research, and their presence in the market has been determined using both secondary and primary research. All the percentage shares, splits, and breakdowns have been determined using secondary sources and verified through primary sources.
Extensive primary research has been conducted following an understanding of the fab automation market scenario through secondary research. Several primary interviews have been conducted with key opinion leaders from demand- and supply-side vendors across three major regions—Americas, Europe, Asia Pacific, and EMEA. Approximately 25% of the primary interviews have been conducted with demand-side vendors, while 75% have been conducted with supply-side vendors. Primary data has been collected mainly through telephonic interviews, which comprised 80% of the total primary interviews; questionnaires and emails have also been used to collect the data.
After successful interaction with industry experts, brief sessions have been conducted with highly experienced independent consultants to reinforce the findings of our primary research. This, along with the opinions of our in-house subject-matter experts, has led us to the findings described in the report.
Note: “Others” includes sales, marketing, and product managers
To know about the assumptions considered for the study, download the pdf brochure
In the market engineering process, the top-down and bottom-up approaches, along with data triangulation methods, have been employed to estimate and validate the size of the fab automation market and its dependent submarkets. The research methodology used to estimate the market sizes includes the following:

After arriving at the overall market size by the market size estimation process explained in the earlier section, the overall fab automation market has been divided into several segments and subsegments. The data triangulation and market breakdown procedures have been used to complete the overall market engineering process and arrive at the exact statistics for all segments, wherever applicable. The data has been triangulated by studying various factors and trends from both demand and supply perspectives. In addition to data triangulation and market breakdown, the market has been validated through both top-down and bottom-up approaches.
Fab automation refers to the integrated use of hardware, software, and intelligent control systems to automate and optimize semiconductor manufacturing processes across front-end and back-end fabrication facilities. The fab automation market encompasses solutions such as automated material handling systems (AMHS), robotics, environmental and utility control systems, manufacturing execution systems (MES), advanced process control (APC), yield management software (YMS), and AI-driven analytics platforms. These technologies enable precise wafer handling, real-time process monitoring, predictive maintenance, and seamless coordination between tools and factory systems. As semiconductor production advances toward smaller nodes, higher wafer volumes, and increasingly complex device architectures, fab automation has become essential for improving throughput, enhancing yield consistency, reducing contamination risks, and supporting scalable, high-efficiency manufacturing operations worldwide.
With the given market data, MarketsandMarkets offers customizations according to the specific requirements of companies. The following customization options are available for the report:
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