PUBLISHER: AnalystView Market Insights | PRODUCT CODE: 1730698
PUBLISHER: AnalystView Market Insights | PRODUCT CODE: 1730698
Focused Ion Beam Market size was valued at USD 1,402.42 Million in 2023, expanding at a CAGR of 7.10% from 2024 to 2032.
A Focused Ion Beam (FIB) is a tool used mainly in materials science, electronics, and nanotechnology. It is a machine that shoots a very thin, intense beam of ions, usually gallium ions at a material.
Focused Ion Beam Market- Market Dynamics
Rising demand from semiconductor industry and nanotechnology & material science are expected to propel market demand
Major drivers of the focused ion beam (FIB) market is the rapid evolution of the semiconductor industry. As electronic devices become smaller, more powerful, and more complex, there is a growing need for advanced failure analysis, circuit editing, and defect review. FIB systems allow manufacturers to inspect, modify, and repair integrated circuits with extreme precision, making them critical tools in semiconductor fabrication and R&D. Focused ion beam (FIB) systems are indispensable for researchers working on nanomaterials, composites, metals, and polymers. The ability to precisely cut, mill, and deposit material enables researchers to prepare cross-sections, fabricate microstructures, and perform site-specific analysis. With increased investment in nanotechnology and advanced materials development, the demand for FIB in academic and industrial research labs has risen sharply.
Furthermore, there has been growing interest in applying FIB to life sciences, particularly in the preparation of biological samples for high-resolution imaging. Cryo-FIB techniques, where samples are maintained at cryogenic temperatures, allow researchers to prepare biological specimens for Cryo-Transmission Electron Microscopy (Cryo-TEM) with minimal damage. This has opened new frontiers in structural biology and medical research, driving a fresh wave of demand for FIB systems. Modern FIB systems often combine ion beams with electron beams in dual-beam or multi-beam systems, providing both milling and imaging capabilities simultaneously. Improvements in ion source technologies such as the shift from traditional gallium ion sources to plasma ion sources (PFIB) using xenon have increased throughput and reduced sample damage, making FIB more versatile and efficient.
Focused Ion Beam Market- Key Insights
As per the analysis shared by our research analyst, the global market is estimated to grow annually at a CAGR of around 7.10% over the forecast period (2024-2032)
Based on Type segmentation, Ga+ liquid metal segment was predicted to show maximum market share in the year 2023, owing to its high resolution & precision in material science.
Based on Application segmentation, failure analysis segment was the leading Application in 2023, due to rising complexity in semiconductor device manufacturing.
Based on End-Use Industry segmentation, electronics & semiconductor segment was the leading End-Use Industry in 2023, owing to increased demand from nanotechnology & electronics applications.
On the basis of the region, North America was the leading revenue generator in 2023, owing to the growing number of investments in nanotechnology & material research.
The Global Focused Ion Beam Market is segmented on the basis of Type, Application, End-Use Industry, and Region.
The market is divided into three categories based on Type: Ga+ liquid metal, gas field, and plasma. The Ga+ liquid metal segment dominates the market. Gas field segment is expected to grow at the fastest rate with rising environmental concerns, FIB system uses nitrogen gas efficiently.
The market is divided into five categories based on Application: device modification, nanofabrication, failure analysis, counterfeit detection, and others. The failure analysis segment dominates the market. In smaller & complex defects it's difficult to analyze, which can be done through FIB systems.
The market is divided into five categories based on the End-Use Industry: material science, electronics & semiconductors, bioscience, industrial science, and others. The electronics & semiconductors segment dominates the market and is expected to maintain its high dominance during the forecast period. The bioscience segment is estimated to expand at the highest rate owing to adoption of high-tech imaging, personalized medicines., etc.
Focused Ion Beam Market- Geographical Insights
Worldwide, the Focused Ion Beam market is widespread in the regions of North America, Latin America, Europe, Asia Pacific, and the Middle East and Africa. North America holds a major share of the global FIB market, driven largely by the U.S. Asia Pacific is the fastest-growing region for the FIB market. Rising investment in nanotechnology and advanced materials and expansion of electronics, automotive, and telecom industries is fueling regional growth. The Middle East & Africa is expected to grow at a moderate rate. Investments in advanced manufacturing, particularly in the UAE and Saudi Arabia. There is an emerging interest in nanotechnology for renewable energy projects.
The global Focused Ion Beam (FIB) market is moderately consolidated, with a few large players dominating market global market share. The market is characterized by continuous new product launches, strategic partnerships, and R&D investments to meet growing demands across semiconductors, nanotechnology, and life sciences. Thermo Fisher Scientifc, Zeiss Group, JEOL Ltd., are some of the market leaders in FIB systems. Thermo Fisher launched the Helios 5 PXL DualBeam featuring a new plasma ion source for faster milling and lower sample damage in late 2023. Market players focus on Cryo-FIB development for life sciences and semiconductor failure analysis. Zeiss Group is one of the leading providers of multi-beam systems, especially for correlative microscopy. Zeiss Group introduced Crossbeam 550, a dual-beam system designed for faster sample preparation and analysis.
In 2024, Thermo Fisher Scientific started expanding its Cryo-FIB offerings for life sciences under its new Aquilos product line.
In 2024, Hitachi High Technologies Corporation developed a compact FIB-SEM system aimed at university research labs for smaller footprint and lower cost to make them cost effective.