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TolAnalyst

TolAnalyst

Tolerance stack-up analysis and validation.

With TolAnalyst, you’ll be able to quickly verify dimensioning and tolerancing schemes to ensure proper fit and function.  TolAnalyst GD&T data is read directly from the SolidWorks models.  TolAnalyst eliminates the need for hand calculations and manual entry of dimensions and tolerances.

 

Key Capabilities of TolAnalyst

  • Fast tolerance stack-up calculation of maximum and minimum “worst-case” and RSS for parts and assemblies
  • Intuitive and easy-to-use
  • Ability to create and display critical study dimensions directly on the 3D model
  • Automatic extraction of dimensions and tolerances necessary for the analysis directly from the 3D models
  • Automatic calculation and display of a contributors list of features and tolerances based on percent impact on the critical evaluation dimensions
  • Graphic display of maximum and minimum condition in the 3D model
  • Quickly evaluate diffrent tolerance schemes
  • Seamlessly integrated with SolidWorks DimXpert - automated part dimensioning and tolerancing
  • Ability to export all analysis results in Excel

Key Benefits of TolAnalyst

  • Significantly reduces prototyping typically required to test for assembly fit and function and even reveals "worst-case" issues you would not normally find with physical prototyping
  • Decreases manufacturing costs by verifying tolerance schemes – allows looser tolerances and less expensive manufacturing techniques where tight tolerances are not needed
  • Eliminates the need for hand calculations which can be time consuming and error-prone - TolAnalyst contains a tolerance stack-up analysis engine
  • Eliminates the need for manual data entry into a program or spreadsheet because TolAnalyst is seamlessly integrated with DimXpert and automatically extracts DimXpert dimensions and tolerances that are necessary for the stack-up calculation
  • Provides graphical and text-based feedback as to which features and tolerances most greatly affect the critical dimension being evaluated - easier for the designer to figure out what tolerances and/or features needs to be modified
  • Fast tolerance stack-up calculations, combined with the fact that no manual data entry is required, allows designers to quickly iterate stack-up analyses in order to optimize assembly fit and function
  • Solves minimum/maximum “worst-case” tolerance stack-up with respect to position of components in the assembly, not by just merely rebuilding parts at their maximum or minimum tolerances

 

 
 
 
 
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