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.
Didn't find what you were looking for?
Consult a professional engineer immediately for your service
Didn't find what you were looking for?
Consult a professional engineer immediately for your service
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.
Didn't find what you were looking for?
Consult a professional engineer immediately for your service
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.
Didn't find what you were looking for?
Consult a professional engineer immediately for your service
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.
Didn't find what you were looking for?
Consult a professional engineer immediately for your service
Professional verification platform, delivering precise data insights to build a solid foundation of trust for investors.
Didn't find what you were looking for?
Consult a professional engineer immediately for your service
Rapid Temperature Change Test

With the rapid development of modern electronic technology and industry, the requirements for the adaptability of various products to extreme temperature change environments are increasing day by day. 

Rapid Temperature Change Test

| Project Background

 

With the rapid development of modern electronic technology and industry, the requirements for the adaptability of various products to extreme temperature change environments are increasing day by day. As a method to simulate the performance of products under extreme temperature change conditions, the rapid temperature change test is widely used in fields such as electronic manufacturing, automotive electronics, aerospace, and instrumentation to evaluate the reliability and stability of products in environments with rapid temperature changes.

 

 

| Project Overview

 

The rapid temperature change test is a method to evaluate the performance of products or materials under extreme temperature change conditions. The severity of the test is determined by the high/low temperature range, temperature change rate, dwell time, and number of cycles. It is widely used in device screening, structural component evaluation, and product reliability evaluation.

 

 

| Test Objective

 

1. Determine whether the product suffers physical damage or performance degradation when subjected to alternating and drastic changes in the surrounding atmospheric temperature.

 

2. Evaluate the product's resistance to temperature changes: By simulating the working environment of the product under extreme temperature change conditions, evaluate the performance of the product during the rapid temperature change process, including changes in functions, structures, materials, etc.

 

3. Discover potential defects: During the rapid temperature change test process, observe and record the failure modes of the product to discover potential defects in the design and manufacturing process, such as improper material selection, insufficient structural strength, and poor temperature resistance of components.

 

4. Verify product reliability: Through the rapid temperature change test, verify the reliability of the product under extreme temperature change conditions to ensure that the product can meet the design requirements and service life during actual use.

 

 

| Testing Standards

 

The rapid temperature change test realizes a rapid change from high temperature to low temperature or from low temperature to high temperature in a short time by controlling the temperature inside the test chamber, simulating the working environment of the product under extreme temperature change conditions to evaluate the performance of the product.

 

Testing standards: GB/T 2423.22, IEC 60068-2-14, ISO 16750-4, GB/T 28046.4, VW 80000, GMW 3172, VW 75174, JESD22-104, etc.

 

 

| Service Products / Fields

 

Components, structural parts, assemblies, and complete machines of products such as electronic appliances, instrumentation, automotive electronics, rail transit, and aerospace;

 

 

| Project Advantages

 

The temperature range can reach from -70°C to 180°C;

Test chambers with different test spaces are available for selection;

The temperature change rate covers the range of 5-20°C/min;

It uses first-tier brand equipment with high operational stability.

 

 

| MTT Advantages

 

1. Advanced Equipment: First-tier brand rapid temperature change test chambers are used to ensure the accuracy and stability of the tests.

Professional Team: It has a professional technical team and rich testing experience, and can provide customers with accurate test results and solutions.

 

2. Comprehensive Service: A full-range of services are provided, including sample preparation, equipment calibration, test setup, test execution, data recording and analysis, and result evaluation.

 

3. Service Content:

Customized rapid temperature change test solutions are provided to meet the testing needs of different customers.

Provision of technical support and consulting services during the testing process to ensure smooth execution of the analysis.

Detailed test reports and conclusion suggestions are provided to provide strong support for customers' product improvement and optimization.

Online Service Enquiries
  • * Name:
  • * Email:
  • * Company:
  • Position:
  • * Tel:
  • City:
  • Consultation Content:
1. When you provide personal information to this website, we shall not disclose (share, sell or transfer) any of your personal information to third parties (including companies or individuals) without your prior consent, unless required by law or government mandate.
2. The information you provide will only be used to help us deliver a better service to you.
Online Customer Service
Business Consultation
Free Consultation
Report Inquiry
Back to Top
Contact Us
  • *Name:
  • *Contact:
  • *Email:
  • *Company/Organization/school:
  • *The location:
  • *Message information: