The market for inline metrology has changed, indicating the rising importance of precise measurement and quality control in production. Inline measuring technologies are being used by the automobile, aerospace, electrical, and medical device sectors. This market trend is noteworthy. Inline metrology measures and inspects components in real time during manufacturing, giving fast feedback for quality control. Inline measurement is helping manufacturers improve product quality, reduce manufacturing costs, and boost process efficiency.
Sensor technology is changing rapidly, disrupting the inline metrology sector. Inline measuring systems are using high-resolution cameras, three-dimensional scanners, and other cutting-edge sensors to improve accuracy and coverage. This trend is especially evident in enterprises that use complex aspects like technology and medical equipment, where exact measurements are needed to assure product functionality and industry compliance.
Automation is growing in the inline metrology business as companies seek to improve efficiency and effectiveness. Automated inline measuring systems can inspect and measure components quickly without human help, speeding up production and reducing labor costs. Onboard metrology combined with robotic systems makes measurement approaches more flexible. This allows manufacturers to respond quickly to changing production needs.
Straight metrology is favoring non-contact testing methods. Non-contact technologies like optical and laser measurements don't need component interaction. This reduces damage and contamination. These modifications are useful in semiconductor manufacturing, where precise measurements are needed for sensitive components that shouldn't lose purity.
Inline measurement is being used to support smart manufacturing and Industry 4.0. Linear measurement, data analytics, and communication enable real-time manufacturing process monitoring and management. This ensures consistent product quality and simplifies predictive maintenance, reducing downtime and increasing production efficiency. Manufacturers use inline measurement data to make smart choices and improve their operations.
The drive for smaller manufacturing in electronics and microelectronics is affecting the Inline Metrology industry. Inline measurement equipment that can correctly measure micron-scale characteristics are more important than ever. This is because components are shrinking without losing complexity. To overcome downsizing difficulties, companies are investing in high-tech measurement devices that provide accuracy and detail.
As production processes get more complicated, inline measurement systems are adding sensors. These systems use vision systems, touch probes, and laser readers to check components from all angles. Using many sensors in an inline metrology system improves measurement accuracy and adaptability. This makes the technology suitable for many industrial uses.
The Inline Metrology Market Size was valued at USD 0.55 Billion in 2022. The Inline Metrology industry is projected to grow from USD 0.63 Billion in 2023 to USD 1.21 Billion by 2032, exhibiting a compound annual growth rate (CAGR) of 10.27% during the forecast period (2024 - 2032). Inline metrology is a type of measurement technique used in manufacturing and quality control processes. The term "inline" refers to the fact that the measurements are taken in real-time and integrated directly into the production line, without the need for stopping the process or removing the product. Inline metrology can be used to measure various aspects of a product, such as its dimensions, surface characteristics, and overall quality. By using inline metrology, manufacturers can improve the efficiency and accuracy of their quality control processes, as well as reduce the time and cost associated with traditional inspection methods.
Source: Secondary Research, Primary Research, MRFR Database, and Analyst Review
Increase in Usage in the Electronics Sector
As there are different demands depending on the use, manufacturers have been concentrating on manufacturing innovative goods for certain applications. Inline metrology is being used more frequently in electronics sector applications such as touch panels, photovoltaics, displays, OLED/OPV, glass coating, and other devices. Non-contact measurements can be used to regulate the industrial thin film manufacturing process. Additionally, these inline metrology systems provide customization.
The market segmentation, based on Product, includes Coordinate measuring machines (CMM), Machine vision systems, Multisensor measuring systems, Optical scanners, Laser trackers, and Others. The Multisensor measuring systems segment holds the majority share in 2022, contributing to the global Inline Metrology revenue. This is due to the increasing popularity of inline metrology because they allow manufacturers to perform a wider range of measurements, including dimensional measurements, surface measurements, and form measurements, in a single system. This helps to improve the accuracy and efficiency of the inline metrology process, reducing the time and cost associated with traditional inspection methods.
Based on Application, the market segmentation includes Quality control and inspection, Reverse engineering, and Others. The Quality control and inspection segment dominated the market. This helps to improve the efficiency and speed of the quality control process and reduce the time and cost associated with traditional inspection methods.
Based on Vertical, the market segmentation includes ​​​​​​Automotive, Aerospace, Semiconductors, Energy & Power, and Others. The Automotive segment is the largest segment of the market. Due to the growing demand for higher-quality vehicles and the need to improve the efficiency and speed of the manufacturing process. Inline metrology provides manufacturers with real-time and highly accurate measurements, reducing the need for separate quality control processes and helping to improve the overall efficiency of the manufacturing process.
Figure 2: Inline Metrology Market, by Vertical, 2022 & 2030 (USD Million)
Source: Secondary Research, Primary Research, MRFR Database, and Analyst Review
By region, the study provides market insights into North America, Europe, Asia-Pacific, and the Rest of the World. The global market was topped by North America. The market in this area is anticipated to be driven by the increasing usage of AI and IoT technologies as well as the increasing integration of automation in industrial facilities. The projection period is expected to see the fastest growth in the Asia-Pacific region. Inline metrology systems are employed for quality control inspections at many of the region's car and electronics production facilities. The need for inline metrology systems is thus anticipated to grow quickly in this area.
Figure 3: Inline Metrology Market SHARE BY REGION 2022 (%)
Source: Secondary Research, Primary Research, MRFR Database, and Analyst Review
The North American region is expected to expand significantly at a CAGR. The market is expanding as a result of the growing integration of connected technologies. However, due to commercial organizations' increasing adoption of VRF technology for energy savings and flexible designs.
Major market players are spending a lot of money on R&D to increase their product lines, which will help the market grow even more. Market participants are also taking various strategic initiatives to grow their worldwide footprint, with key market developments such as new product launches, contractual agreements, mergers and acquisitions, increased investments, and collaboration with other organizations. Competitors in the Inline Metrology industry must offer cost-effective items to expand and survive in an increasingly competitive and rising market environment.
Manufacturing locally to cut operating costs is one of the main business tactics manufacturers use in the global Inline Metrology industry to benefit customers and expand the market sector. Major market players, including Hexagon, Faro Technologies, Nikon Metrology Inc, LMI Technologies, and others, are attempting to increase market demand by funding R&D initiatives.
Hexagon is a business that focuses on sensors, software, and autonomous technologies. It works in two segments: Geospatial Enterprise Solutions and Industrial Enterprise Solutions. Sensors for data capture from land and air, as well as sensors for a satellite location, are included in the Geospatial Enterprise Solutions sector. The Industrial Enterprise Solutions section offers metrology systems, CAD and CAM software, and other products. The firm services aerospace, chemicals, automotive, electronics, government, shipbuilding, transportation, mining, and other industries.
FARO Technologies creates, develops, produces, sells, and offers support for software-driven 3D measuring, imaging, and realization systems. Its products are used for a variety of tasks, including checking parts and assemblies, production planning, recording huge areas or buildings in 3D, surveying, building, and investigating and recreating accident or crime scenes. The business provides services to shipbuilding, aerospace, defense, legal, and other industries.
Faro Technologies
Nikon Metrology Inc
LMI Technologies
Jenoptik Group
Carl Zeiss
ABB Ltd
Mitutoyo Corporation
Ametek Inc
Cognex Corporation
February 2023: LMI Technologies (LMI) released its new Gocator 2540/50 high-speed wide field of view 3D laser line profile sensors.
August 2022: LMI Technologies (LMI) has announced the official availability of its new Gocator® 2600 Series of smart 3D laser line profile sensors with 4K+ resolution.
Coordinate measuring machines (CMM)
Machine vision systems
Multisensor measuring systems
Optical scanners
Laser trackers
Others
Quality control and inspection
Reverse engineering
Others
Automotive
Aerospace
Semiconductors
Energy & power
Others
North America
US
Canada
Europe
Germany
France
UK
Italy
Spain
Rest of Europe
Asia-Pacific
China
Japan
India
Australia
South Korea
Australia
Rest of Asia-Pacific
Rest of the World
Middle East
Africa
Latin America
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