2026 Global: Atomic Force Microscopy Market-Competitive Review (2032) report
Description
The 2026 Global: Atomic Force Microscopy Market-Competitive Review (2031) report features the global market size and projected growth/decline data for the period 2021 through 2032. The report primarily provides an examination of the business strategies for the ten largest global companies in the market and how their strategies differ.
Perry/Hope Partners' reports provide the most accurate industry forecasts based on our proprietary economic models. Our forecasts project the product market size nationally and by regions for 2021 to 2032 using regression analysis in our modeling. and Perry/Hope is the only market research publisher that utilizes both longitudinal (historical) and vertical (from market section to market division to market class) analysis, since we study every manufactured product in the countries we analyze. The report also provides written analysis on the market definition, market segments, and SWOT analysis (market strengths, weaknesses, opportunities, and threats).
The market study aims at estimating the market size and the growth potential of this market. Topics analyzed within the report include a detailed breakdown of the global markets for atomic force microscopy market by geography and historical trend. The scope of the report extends to sizing of the atomic force microscopy market market and global market trends with market data for 2024 as the base year, 2025 and 2026 as the estimate years with projection of CAGR from 2027 to 2032.
The report also features a list of the top ten largest global players in the market. A review of each company includes 1) an estimate of the market share, 2) a listing of the products and/or services in the market, and 3) the features of these products and/or services in the market. The report has a chapter on Comparative Business Strategies for the largest four players. An example of the Comparative Business Strategies analysis would be -- How does Netflix's business strategy to expand its market share in the global online streaming compare to Amazon Prime's business strategy through its video products and services?
The ten market players in this report and a brief synopsis of their participation in the market are:
Park Systems leads the atomic force microscopy (AFM) market with the highest global revenue share, reported at 20.61% in 2023 and reaffirmed as the top player in 2025 forecasts projecting market growth from $541.8 million to $762.2 million by 2030 at a 7.1% CAGR. This South Korean innovator excels in high-speed, high-resolution systems like the Park FX40 autonomous AFM launched in 2021, integrating robotics and AI for automated nanoscale imaging in semiconductors, materials science, and life sciences. Recent expansions include the FX Large Sample AFM series unveiled at SEMICON Korea 2025, featuring models like FX300 for 300mm wafer analysis and IR spectroscopy variants (FX200 IR, FX300 IR), enhancing precision for industrial quality control and research. Park Systems' True Non-Contactâ„¢ Mode ensures non-destructive metrology, solidifying its dominance through continuous innovation and broad product footprints.
Bruker Corporation (US) and Hitachi High-Tech Corporation (Japan) rank among the top five, collectively holding 65-75% market share with Park Systems, Oxford Instruments, and Semilab. Bruker's Nano Surfaces and Metrology division delivers Dimension Icon and IconIR systems for nanoscale infrared spectroscopy, topography, and multiparametric analysis, serving over 11,396 employees across global facilities. Hitachi High-Tech advances with AFM500 Pro, incorporating software for superior imaging in semiconductors and materials, while Oxford Instruments (UK) launched the Jupiter Discovery AFM in May 2025 for large-sample, high-throughput applications in quantum materials and nanotechnology. These firms drive growth via automation, AI integration, and collaborations, addressing demands in miniaturized electronics and 2D materials like graphene.
Nanosurf AG (Switzerland), NT-MDT Spectrum Instruments (Russia), and Keysight Technologies complete the leading tier, focusing on user-friendly, compact systems for education, research, and electronics. Nanosurf's versatile AFMs support single-cell nanomanipulation, while NT-MDT's latest models offer enhanced sensitivity for nanoscience; Keysight integrates AFM with electronic measurements for faster precision in life sciences and semiconductors. Semilab Inc. (Hungary) specializes in semiconductor metrology for defect analysis, and Horiba Ltd. combines AFM with Raman spectroscopy for comprehensive material characterization. Nanonics Imaging Ltd. innovates in near-field optical microscopy hybrids, bolstering the competitive landscape amid rising nanotechnology investments exceeding $45 billion in North America alone. These companies employ mergers, product launches, and expansions to capture emerging markets in Asia-Pacific and Europe.
Perry/Hope Partners' reports provide the most accurate industry forecasts based on our proprietary economic models. Our forecasts project the product market size nationally and by regions for 2021 to 2032 using regression analysis in our modeling. and Perry/Hope is the only market research publisher that utilizes both longitudinal (historical) and vertical (from market section to market division to market class) analysis, since we study every manufactured product in the countries we analyze. The report also provides written analysis on the market definition, market segments, and SWOT analysis (market strengths, weaknesses, opportunities, and threats).
The market study aims at estimating the market size and the growth potential of this market. Topics analyzed within the report include a detailed breakdown of the global markets for atomic force microscopy market by geography and historical trend. The scope of the report extends to sizing of the atomic force microscopy market market and global market trends with market data for 2024 as the base year, 2025 and 2026 as the estimate years with projection of CAGR from 2027 to 2032.
The report also features a list of the top ten largest global players in the market. A review of each company includes 1) an estimate of the market share, 2) a listing of the products and/or services in the market, and 3) the features of these products and/or services in the market. The report has a chapter on Comparative Business Strategies for the largest four players. An example of the Comparative Business Strategies analysis would be -- How does Netflix's business strategy to expand its market share in the global online streaming compare to Amazon Prime's business strategy through its video products and services?
The ten market players in this report and a brief synopsis of their participation in the market are:
Park Systems leads the atomic force microscopy (AFM) market with the highest global revenue share, reported at 20.61% in 2023 and reaffirmed as the top player in 2025 forecasts projecting market growth from $541.8 million to $762.2 million by 2030 at a 7.1% CAGR. This South Korean innovator excels in high-speed, high-resolution systems like the Park FX40 autonomous AFM launched in 2021, integrating robotics and AI for automated nanoscale imaging in semiconductors, materials science, and life sciences. Recent expansions include the FX Large Sample AFM series unveiled at SEMICON Korea 2025, featuring models like FX300 for 300mm wafer analysis and IR spectroscopy variants (FX200 IR, FX300 IR), enhancing precision for industrial quality control and research. Park Systems' True Non-Contactâ„¢ Mode ensures non-destructive metrology, solidifying its dominance through continuous innovation and broad product footprints.
Bruker Corporation (US) and Hitachi High-Tech Corporation (Japan) rank among the top five, collectively holding 65-75% market share with Park Systems, Oxford Instruments, and Semilab. Bruker's Nano Surfaces and Metrology division delivers Dimension Icon and IconIR systems for nanoscale infrared spectroscopy, topography, and multiparametric analysis, serving over 11,396 employees across global facilities. Hitachi High-Tech advances with AFM500 Pro, incorporating software for superior imaging in semiconductors and materials, while Oxford Instruments (UK) launched the Jupiter Discovery AFM in May 2025 for large-sample, high-throughput applications in quantum materials and nanotechnology. These firms drive growth via automation, AI integration, and collaborations, addressing demands in miniaturized electronics and 2D materials like graphene.
Nanosurf AG (Switzerland), NT-MDT Spectrum Instruments (Russia), and Keysight Technologies complete the leading tier, focusing on user-friendly, compact systems for education, research, and electronics. Nanosurf's versatile AFMs support single-cell nanomanipulation, while NT-MDT's latest models offer enhanced sensitivity for nanoscience; Keysight integrates AFM with electronic measurements for faster precision in life sciences and semiconductors. Semilab Inc. (Hungary) specializes in semiconductor metrology for defect analysis, and Horiba Ltd. combines AFM with Raman spectroscopy for comprehensive material characterization. Nanonics Imaging Ltd. innovates in near-field optical microscopy hybrids, bolstering the competitive landscape amid rising nanotechnology investments exceeding $45 billion in North America alone. These companies employ mergers, product launches, and expansions to capture emerging markets in Asia-Pacific and Europe.
Table of Contents
32 Pages
- 1.0 Scope of Report and Methodology
- 2.0 Market SWOT Analysis and Players
- 2.1 Market Definition
- 2.2 Market Segments
- 2.3 Market Strengths
- 2.4 Market Weaknesses
- 2.5 Market Threats
- 2.6 Market Opportunities
- 2.7 Major Players
- 3.0 Competitive Analysis
- 3.1 Market Player 1
- 3.2 Market Player 2
- 3.3 Market Player 3
- 3.4 Market Player 4
- 3.5 Market Player 5
- 3.6 Market Player 6
- 3.7 Market Player 7
- 3.8 Market Player 8
- 3.9 Market Player 9
- 3.10 Market Player 10
- 4.0 Comparative Business Strategies
- 4.1 Comparative Business Strategies of Player 1 and 2
- 4.2 Comparative Business Strategies of Player 1 and 3
- 4.3 Comparative Business Strategies of Player 1 and 4
- 4.4 Comparative Business Strategies of Player 2 and 3
- 4.5 Comparative Business Strategies of Player 2 and 4
- 4.6 Comparative Business Strategies of Player 3 and 4
- 5.0 Appendix
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