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Isight

Automate repetitive simulation workflows, standardize corporate simulation practices, optimize structural, fluid, and electromagnetic product performance, and perform efficient material calibration studies.

Isight:
Automation & Optimization

Isight automates simulation workflows to explore design alternatives and determine optimal performance parameters. It connects with commercial CAD and CAE software, in house programs, and Excel spreadsheets. With built in methods such as Design of Experiments, Optimization, Design for Six Sigma, Taguchi, and Response Surface Models, Isight improves design efficiency and overall product performance.

Isight Advantages

Eliminate manual repetitive simulation tasks

Standardize corporate simulation processes

Optimize structural, fluid or magnetic behavior of designs

Perform material calibrations

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Component
Library

Isight includes a built in library of standard components that form the basis for creating simulation workflows. Each component acts as a container with its own interface, allowing smooth integration and execution of specific simulation applications directly within Isight.

Direct Interfaces to

Abaqus

Ansys

Nastran

Femap.

Pro/Mechanica

UG-NX

SolidWorks

Catia

LS-dyna

Matlab

Excel

… and many more

Material Model
Calibration

Isight streamlines and automates the material calibration process by connecting simulation tools, test data, and optimization algorithms within a unified workflow. Engineers can automate comparisons between simulation results and experimental data to determine the most accurate material model parameters.

Key Benefits

Automates repetitive calibration tasks, reducing manual effort

Calculates the error between simulation and test automatically with the Data Matching component

Uses optimization techniques to minimize error between test and simulation

Improves accuracy and reliability of material models for simulation

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Return of
Investment

Organizations across many industries have achieved measurable gains in efficiency, product performance, and cost reduction by integrating advanced simulation and optimization technologies into their engineering and design workflows.

Use Cases

Conceptual Design Workflow Optimization​
Reduced design iteration time from 5 days to just 10 minutes

Lighting System Enhancement​
Increased output performance by 48%​
Reduced energy consumption by 15%​
Shortened development cycle from 1 year to 4 weeks

Aerospace Component Redesign​
Achieved significant structural weight savings​
Delivered an estimated lifetime cost reduction exceeding $500 million

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