Failure Analysis Equipment Market Report 2025 – Failure Analysis Equipment Market Trends And Share

How has the failure analysis equipment market evolved, and where is it heading next?

The failure analysis equipment market size has grown strongly in recent years. It will grow from $8.92 billion in 2024 to $9.73 billion in 2025 at a compound annual growth rate (CAGR) of 9.1%. The growth in the historic period can be attributed to the expansion of consumer electronics, quality control requirements, regulatory compliance, and demand for cost-effective solutions.

The failure analysis equipment market size is expected to see strong growth in the next few years. It will grow to $13.56 billion in 2029 at a compound annual growth rate (CAGR) of 8.7%. The growth in the forecast period can be attributed to the expansion of IoT and connected devices, the emergence of AI and machine learning, the demand for high-reliability electronics, and the globalization of manufacturing. Major trends in the forecast period include integration with big data analytics, cross-industry collaboration, environmental sustainability, enhanced user interface and software, and security and data protection.

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What are the key forces behind the failure analysis equipment market’s growth in recent years?

The growing adoption of IoT devices is expected to propel the growth of the failure analysis equipment market going forward. IoT devices are interconnected physical devices embedded with sensors, software, and other technologies, allowing them to collect and exchange data over the internet. IoT devices streamline workflows, automate repetitive tasks, and monitor equipment performance, leading to increased efficiency and productivity. Failure analysis equipment helps identify the underlying reasons for system failures, malfunctions, or breakdowns in automated processes to ensure that components and assemblies meet quality standards. For instance, in February 2024, according to a report published by The GSMA, a UK-based trade body that represents the interests of mobile network operators worldwide, licensed cellular IoT connections are expected to increase from 3.5 billion in 2023 to 5.8 billion IoT connections in 2030 with an 8% CAGR. Therefore, the growing adoption of IoT devices is driving the growth of the failure analysis equipment market.

What are the major segments of the failure analysis equipment market?

The failure analysis equipment market covered in this report is segmented –

1) By Equipment: Scanning Electron Microscope, Transmission Electron Microscope, Focused Ion Beam System, Dual – Beam Systems

2) By Application: Industrial Science, Material Science, Bio Science, Electronics

3) By End-Use: Semiconductors Manufacturing, Fiber Optics, Biomedical And Life Science, Nanotechnology And Nanomaterial, Polymers

Subsegments:

1) By Scanning Electron Microscope: Conventional SEM, Field Emission SEM (FE-SEM), Low Vacuum SEM, Environmental SEM (ESEM)

2) By Transmission Electron Microscope: Conventional TEM, Scanning TEM (STEM), Cryo-TEM, High-Resolution TEM

3) By Focused Ion Beam System: FIB-SEM (Integrated SEM), Standalone FIB Systems, FIB With Milling Capabilities

4) By Dual-Beam Systems: FIB-SEM Dual-Beam Systems, Dual-Beam With Gas Injection Systems, Multifunctional Dual-Beam Systems

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Which companies dominate the failure analysis equipment market?

Major companies operating in the failure analysis equipment market are Hitachi Ltd., Thermo Fisher Scientific Inc., Applied Materials Inc., KLA Corporation, CARL Zeiss SMT GmbH, Eurofins Scientific SE, Ametek Inc., Keysight Technologies, Advantest Corporation, Shimadzu Corporation, Intertek Group PLC, Teradyne Inc., Bruker Corporation., HORIBA Ltd., Jeol Ltd., Leica Microsystems GmbH, Axcelis Technologies Inc., Veeco Instruments, Oxford Instruments, Exponent Inc., A&D Company Ltd., Park Systems Corporation, Tescan Orsay Holding A.S., Semilab, TESTiLABS, Motion X Corporation

What major trends will shape the failure analysis equipment market during the forecast period?

Major companies operating in the failure analysis equipment market are developing solutions with high-force capabilities such as real-view high-resolution camera systems, to improve the accuracy and efficiency of failure analysis processes. The real-view high-resolution camera system’s advanced features, including color analysis and streamlined interpretation, make it invaluable for failure analysis tasks. For instance, in September 2023, Hitachi High-Tech Science Corporation, a Japan-based equipment manufacturer, launched the DMA200, a dynamic mechanical analyzer (DMA) distributed by Hitachi High-Tech Analytical Science Ltd. The DMA200 offers advanced thermal analysis capabilities, particularly beneficial for industries requiring in-depth evaluations of materials like automotive, aerospace, and electronics. With its upgraded Real View high-resolution camera system, including color analysis and result videos, the DMA200 simplifies interpretation, making it ideal for failure analysis and investigating abnormal results., allowing for easy visualization of investigations and the elimination of extensive coding.

What are the key regional dynamics of the failure analysis equipment market, and which region leads in market share?

North America was the largest region in the failure analysis equipment market in 2024. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the failure analysis equipment market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.

What Does The Failure Analysis Equipment Market Report 2025 Offer?

The failure analysis equipment market research report from The Business Research Company offers global market size, growth rate, regional shares, competitor analysis, detailed segments, trends, and opportunities.

Failure analysis equipment refers to the systematic investigation and examination of components or processes to determine the root causes of failures or malfunctions. Failure analysis equipment provides valuable insights into the performance and behavior of materials and components under different operating conditions.

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