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Accelerating nonlinear MEMS simulations with the harmonic balance method

See how harmonic balance is leveraged for solving nonlinear periodic problems in frequency domain for quicker, more precise results without transient analysis.

Faster and more reliable MEMS design with cloud-based multiphysics simulations

See how engineers are leveraging cloud computing for faster design cycles and increased product reliability in MEMS design

Webinar key takeaways

  • This webinar highlighted how cloud-based multiphysics simulation software, Quanscient Allsolve, addresses challenges in MEMS design, such as slow prototyping cycles, limitations in simulating complex multiphysics interactions, and restricted design exploration due to computational constraints
  • The webinar detailed how Quanscient’s cloud-based platform overcomes these issues through cloud computing, enabling faster design cycles and increased product reliability
  • A live demonstration showcased Allsolve's capabilities in setting up and running a microspeaker simulation, including meshing, parameter sweeps, and results analysis
  • Guest speaker Dr. Andrew Tweedie, CEO of Kogsys, presented real-world examples of how Allsolve has been used to simulate large-scale PMUT arrays and optimize complex MEMS designs for manufacturability, resulting in reduced development time and increased product reliability

About our technical speakers

abhishek (1) (1)

 

Dr. -Ing. Abhishek Deshmukh has more than a decade of experience in advanced multiphysics simulation research and software development. As the Team Lead of the Application Engineering team at Quanscient, Dr. Deshmukh works closely with customers to understand their challenges and help leverage Quanscient Allsolve to solve them.

andrew-tweedie-bg

 

Dr. Andrew Tweedie has an extensive background in MEMS design and experience working with clients in the MEMS industry, helping them leverage Quanscient Allsolve to tackle design challenges.

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MEMS webinar pdf

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