Printed circuit boards and their assemblies (PCB & PCBA) are the core components of electronic products, and their reliability directly determines the overall reliability of electronic products. To ensure and enhance the quality and reliability of electronic products, it is essential to carry out comprehensive physical and chemical analyses of failures, identify the underlying failure mechanisms, and then propose corresponding improvement measures. MTT possesses profound technical expertise in board-level failure analysis, a complete range of analytical methods, a vast database of case studies, and a team of experienced experts, providing you with high-quality and efficient failure analysis services.
The purpose of electronic component failure analysis is to employ a variety of testing and analytical techniques and procedures to identify the failure phenomena of electronic components, determine their failure modes and mechanisms, identify the ultimate root cause of failure, and propose recommendations for improvements in design and manufacturing processes. This helps prevent the recurrence of failures and improves the overall reliability of the components.
The continuous rise in complexity and performance requirements of integrated circuits, combined with potential risks across design, manufacturing, packaging, and application stages, has led to frequent occurrences of critical failure modes such as short circuits, open circuits, leakage, burnout, and parameter drift. These issues not only result in costly device scrapping and system downtime but also often trigger disputes over responsibility among designers, foundries, packaging and testing houses, and end-users, causing significant economic losses and reputational risks.
The performance requirements for polymer materials continue to rise, while differences in understanding of high-demand products and processes between customers and suppliers often lead to frequent failures such as fracture, cracking, corrosion, and discoloration. These failures frequently cause disputes over responsibility and result in significant economic losses.
The increasingly harsh service environments of metal components place higher demands on material performance and structural reliability. However, factors such as design flaws, material defects, manufacturing deviations, or improper use can readily trigger typical failures including fatigue fracture, stress corrosion cracking, hydrogen embrittlement, creep, wear, and overload deformation.
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Meixin Testing leverages its technological edge in constructing massive failure databases, showcasing its capabilities through comprehensive case studies, solutions for complex scenarios, partnerships with leading enterprises, and systematic intellectual property. Drawing on millions of failure analyses, it delivers precise insights into root causes, enabling inspection reports to provide robust support for clients' quality upgrades and achieve zero failures.
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Stay updated with the latest news from Maxin Testing, including technical developments, exhibitions, and events. We build on a foundation of professional testing to deliver customized solutions for our clients, ensuring quality control from the source. This empowers our clients to stand out in the marketplace and achieve commercial success.
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Maxin Testing is a nationally accredited commercial third-party laboratory. We specialize in providing testing services, technical consulting services, and solution services to clients across industries including electronics manufacturing, automotive electronics, semiconductors, and aerospace materials.
Maxin Testing operates laboratory facilities in Shenzhen, Suzhou, and Beijing, featuring multidisciplinary testing and analytical laboratories. The company pioneers an industrial hospital service model grounded in materials science engineering and electronic reliability engineering.
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Professional verification platform, delivering precise data insights to build a solid foundation of trust for investors.
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Polycyclic Aromatic Hydrocarbons

MTT provides precise PAH detection, relying on complex matrix processing capabilities and high sensitivity analysis to help enterprises meet regulatory limits, ensure consumer safety, and break through green trade barriers.

 

Polycyclic Aromatic Hydrocarbons

| Project Background

 

Polycyclic Aromatic Hydrocarbons (PAHs) are a class of organic compounds composed of two or more benzene rings combined in a linear, angular, or clustered manner. Due to their persistence in the environment, bioaccumulation, and potential hazards to human health, PAHs have become one of the pollutants of global concern. In order to safeguard consumer health and protect environmental safety, it is particularly important to carry out PAH testing projects.

 

 

| Testing Item

 

Testing items: Acenaphthene, Acenaphthylene, Anthracene, Benzo(a)anthracene, Benzo(b)fluoranthene, Benzo(j)fluoranthene, Benzo(k)fluoranthene, Benzo(ghi)perylene (Dibenzoperylene), Benzo(a)pyrene, Benzo(b)pyrene, Chrysene, Dibenz(a,h)anthracene, Fluoranthene, Fluorene, Indeno(1,2,3-cd)pyrene, Naphthalene, Phenanthrene, Pyrene;

 

 

| PAH Testing Methods

 

ZEK 01.4-08, 18 PAHs in German consumer products; Relevant national and international standards;

 

 

| Testing Fields

 

Electrical and electronic products, rubber and plastic products, paint and coating products, packaging materials, toys, container materials, leather and textile products, wood products, etc.

 

 

| MTT Advantages

 

1. Professional Team: It has experienced testing engineers and technical personnel who are familiar with the standards and methods for testing phthalate plasticizers, ensuring the standardization of the testing process and the accuracy of the results.

 

2. Advanced Equipment: It is equipped with advanced testing instruments and equipment to improve testing efficiency and accuracy.

 

3. Comprehensive Services: Provide full-process services from sample reception, testing and analysis to report compilation to meet the different needs of customers. At the same time, offer professional consultations and suggestions to help customers improve production processes and material selection, and reduce the content of phthalate plasticizers.

 

4. Compliance Guarantee: Keep a close eye on domestic and international regulatory trends to ensure that the testing items meet the requirements of relevant regulations and standards, and provide compliance guarantee for customers.

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