Optimize and Predict Electronic Reliability

Optimize and Predict Electronic Reliability


Electronic device reliability is a critical factor in today's competitive world. It is essential for customer satisfaction, brand reputation, and even safety.

The best practices for ensuring and predicting electronic reliability require comprehensive multiphysics simulations. These simulations analyze complex physical processes that represent the real-world operating conditions of electronic devices.

Ansys offers a comprehensive portfolio of solutions and workflows for electronic reliability. These solutions help improve reliability at every stage of the electronic device design process, from concept to production.

Key features of Ansys solutions include:

  • Extracting detailed geometries from any ECAD file: Ansys automatically imports any ECAD file and creates a detailed geometry of the electronic device. This saves users time and effort in performing complex simulations.
  • Performing complex multiphysics analyses: Ansys can perform complex multiphysics analyses that include electrical, thermal, mechanical, and other physical processes. These analyses represent the real-world operating conditions of electronic devices and help identify reliability risks.
  • Predicting failure time before prototyping: Ansys uses advanced algorithms to predict the failure time of electronic devices. These predictions provide valuable insights for design optimization and risk management.
  • Implementing automation and optimization: Ansys provides tools to automate and optimize electronic reliability simulations. These tools save users time and effort and enable them to perform more accurate and efficient simulations.

Ansys solutions are one of the most effective tools available for optimizing and predicting electronic reliability. These solutions help improve reliability at every stage of the electronic device design, manufacturing, and use.

How to improve your electronic reliability with Ansys solutions:

Extracting detailed geometries:

Ansys automatically imports any ECAD file and creates a detailed geometry of the electronic device. This saves users time and effort in performing complex simulations.

For example, a laptop designer can use Ansys to create a detailed geometry of all the electronic components in the laptop. This geometry can be used to evaluate the laptop's thermal performance, mechanical durability, and electrical reliability.

Performing complex multiphysics analyses:

Ansys can perform complex multiphysics analyses that include electrical, thermal, mechanical, and other physical processes. These analyses represent the real-world operating conditions of electronic devices and help identify reliability risks.

For example, an automotive component designer can use Ansys to perform a complex multiphysics analysis to evaluate the component's thermal stress, mechanical fatigue, and electrical failure.

Predicting failure time before prototyping:

Ansys uses advanced algorithms to predict the failure time of electronic devices. These predictions provide valuable insights for design optimization and risk management.

For example, a smartphone designer can use Ansys to predict the thermal failure of a smartphone. This prediction can help designers take the necessary steps to improve the smartphone's thermal performance.

Implementing automation and optimization:

Ansys provides tools to automate and optimize electronic reliability simulations. These tools save users time and effort and enable them to perform more accurate and efficient simulations.

For example, an electronic device manufacturer can use Ansys to automate the reliability testing process for electronic devices. This automation can help speed up the testing process and reduce costs.

Ansys solutions are one of the most effective tools available for optimizing and predicting electronic reliability. These solutions help improve reliability at every stage of the electronic device design, manufacturing, and use.