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ProTOp Professional 1-token

ProTOp Professional 1-token


Overview


ProTOp Professional is a standalone, high-performance topology optimization solution built for engineers who need powerful, production-ready results. It supports FNF, INP, GEO, and DAT files generated by leading platforms such as PTC® Creo®, Simulia® Abaqus, SolidWorks® Simulation, and Siemens NX™, making it easy to integrate into existing simulation and design workflows. With fast solvers and robust optimization engines, ProTOp streamlines the creation of lightweight, efficient, and manufacturable designs.

The software offers advanced design capabilities through efficient shell and lattice configurators, delivering full 3D solid models that are ready for downstream engineering or additive manufacturing. Its fully interactive environment includes high-quality visualization, smoothing, and post-processing tools, enabling users to refine geometry and prepare optimized models directly for 3D printing. For teams seeking cutting-edge topology optimization with practical, real-world output, ProTOp is a powerful and flexible choice.


What's New

  • Reference node targeting in stress topology optimization; various reference node response values of individual load cases can now be used for targeting in topology optimization.
  • Improved response fields display; only selected volume regions and individual displacement components can be displayed now.
  • Updated mesh refinement tool.

Features



  • Based on custom finite elements, developed in-house especially for topology optimization
  • FEA - highly parallelized code, high performance sparse solver
  • Optimizer - a hybrid evolutionary/level-set optimizer, highly parallelized code
  • Shell (envelope) and lattice structure generation from solid parts
  • Semi-contact and semi-plastic finite elements
  • Easy modeling of pin joints, bolt/rivet fastening, and similar contact situations
  • Simple and easy to use user interface; fully interactive optimization process

Capabilities

  • Structure: statically loaded, linearly elastic isotropic material
  • Objectives: minimum strain energy; maximum lowest eigenfrequency
  • Targeting: volume part, stress, displacement
  • Technological constraints: YES
  • Multiple load cases: YES
  • Smoothing and simplification tools for resulting surface mesh: YES


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From $14,339.00
ProTOp Professional 1-token
$14,339.00
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Description


Overview


ProTOp Professional is a standalone, high-performance topology optimization solution built for engineers who need powerful, production-ready results. It supports FNF, INP, GEO, and DAT files generated by leading platforms such as PTC® Creo®, Simulia® Abaqus, SolidWorks® Simulation, and Siemens NX™, making it easy to integrate into existing simulation and design workflows. With fast solvers and robust optimization engines, ProTOp streamlines the creation of lightweight, efficient, and manufacturable designs.

The software offers advanced design capabilities through efficient shell and lattice configurators, delivering full 3D solid models that are ready for downstream engineering or additive manufacturing. Its fully interactive environment includes high-quality visualization, smoothing, and post-processing tools, enabling users to refine geometry and prepare optimized models directly for 3D printing. For teams seeking cutting-edge topology optimization with practical, real-world output, ProTOp is a powerful and flexible choice.


What's New

  • Reference node targeting in stress topology optimization; various reference node response values of individual load cases can now be used for targeting in topology optimization.
  • Improved response fields display; only selected volume regions and individual displacement components can be displayed now.
  • Updated mesh refinement tool.

Features



  • Based on custom finite elements, developed in-house especially for topology optimization
  • FEA - highly parallelized code, high performance sparse solver
  • Optimizer - a hybrid evolutionary/level-set optimizer, highly parallelized code
  • Shell (envelope) and lattice structure generation from solid parts
  • Semi-contact and semi-plastic finite elements
  • Easy modeling of pin joints, bolt/rivet fastening, and similar contact situations
  • Simple and easy to use user interface; fully interactive optimization process

Capabilities

  • Structure: statically loaded, linearly elastic isotropic material
  • Objectives: minimum strain energy; maximum lowest eigenfrequency
  • Targeting: volume part, stress, displacement
  • Technological constraints: YES
  • Multiple load cases: YES
  • Smoothing and simplification tools for resulting surface mesh: YES


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