The Electrical & Microsystems Modeling Department develops and markets application software that support engineering processes and provide a 3D vision of systems at both the conceptual and material level. Providing both large scale computing solutions and customized modeling and simulation tools, our tools can encourage the efficiency of greater missions.

Charon
ChISELS
Faethm
applications
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Xyce

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Contact:

Rob Hoekstra
(505) 844-7627

Manager

 

 

 

 

 

 

 

 

Xyce Parallel Electronic Simulator

Xyce is parallel code that not only allows the simulations of circuits of unprecedented size, but also addresses possible solutions to critical numerical kernels such as improved time-stepping algorithms and controls, better convergence of the nonlinear solver, and improved device models.
 
Charon Device Simulator
The Charon project seeks to model electrical semiconductor devices such as transistors at high fidelities. By applying finite element & massively parallel solver technology, the tool is capability of modeling at unprecedented fidelity including transient gamma and neutron irradiation effects.
 

ChISELS: Chemically Induced Surface Evolution with Level Sets

ChISELS is a parallel code designed to model 2-D and 3-D material depositions and etches at feature scales on patterned wafers at low pressures. ChISELS is a platform on which to build and improve upon previous feature-scale modeling tools while taking advantage of the most recent advances in load balancing and scalable solution algorithms.
 
Faethm: MEMS Design Tool
Faethm is an application for the implementation and validation of a new, topology driven method for automatic mask generation from three-dimensional models.
 
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