Blog List
New collaboration with Electronic Design Chemnitz GmbH and i-ROM GmbH
New collaboration with Electronic Design Chemnitz GmbH and i-ROM GmbH

We’re pleased to announce our collaboration with EDC Electronic Design Chemnitz GmbH. A key focus of our joint work is the systematic wafer-level characterization of MEMS devices after tape-out.
Predicting MEMS Performance under Package Warp with i-ROM MODELBUILDER
18 Aug 2026
Predicting MEMS Performance under Package Warp with i-ROM MODELBUILDER
18 Aug 2026

The package interface of the i-ROM MODELBUILDER enables you to simulate precisely the influence of package warp on the performance of MEMS sensors and actuators. Temperature dependent bias-offset drift and sensitivity changes can be predicted before manufacturing.
From Idea to final MEMS Layout – Automating the Design Process
15 Jul 2022
From Idea to final MEMS Layout – Automating the Design Process
15 Jul 2022

Getting from an idea of what a next-generation accelerometer or gyroscope might look like to a manufacturable layout involves many complex simulation steps. Normally, many redesigns and a variety of software tools are used to arrive at a feasible layout that meets the target specifications and can be fabricated within manufacturing tolerances.
Model-Driven MEMS Design Automation: Bridging Concept to Production with Reduced Order Modeling
20 Jun 2022
Model-Driven MEMS Design Automation: Bridging Concept to Production with Reduced Order Modeling
20 Jun 2022

i-ROM Modelbuilder is an advanced MEMS design software that incorporates cutting-edge reduced order modeling (ROM) techniques to simulate nonlinear electrostatic and mechanical behaviors in microelectromechanical systems (MEMS).
Revolutionizing MEMS CAD: How AI and Fast Reduced-Order Modeling Transform Sensor Design
10 Aug 2022
Revolutionizing MEMS CAD: How AI and Fast Reduced-Order Modeling Transform Sensor Design
10 Aug 2022

With the rise of artificial intelligence (AI) and large language models (LLMs) in various applications, there is growing interest in leveraging these technologies for MEMS development.

