Products & Solutions

Simulate the complete product engineering process — from materials characterization to full-system performance — with the CAE software portfolio GTECH ASIA supports across Asia.

Solution Portfolio

Materials → Fabrication → Parts → Assembly → Systems

Our simulation portfolio spans the full engineering lifecycle, letting teams validate design decisions before committing to physical prototypes.

MAT

Materials

Digimat, Digimat-VA, and MaterialCenter for composite material modeling and database management.

FAB

Fabrication

Digimat Additive, Simufact Additive, and Simufact Forming for manufacturing process simulation.

PARTS

Parts

Apex and Marc for next-generation modeling and nonlinear finite element analysis.

ASM

Assembly

Simufact Welding and Simufact Joining for joining process simulation and validation.

Our Product Portfolio

Software for every stage of engineering design

From mechanical simulation to semiconductor design to collaborative 3D CAD — GTECH ASIA supplies and supports the following software through our technology partners. Select a category, then a product, to see its full engineering profile.

Electronic design automation (EDA) tools for IC, PCB, and system design, plus the CAE simulation software portfolio GTECH ASIA provides — spanning AI-driven simulation, structural analysis, reliability, materials, acoustics, thermal, and manufacturing process simulation. Select a product below to view its full engineering profile.

Cadence · AI-Driven Simulation

Cadence ODYSSEE

An AI/ML platform that turns existing simulation data into instant, predictive engineering insight.

Overview

Cadence ODYSSEE is an AI/ML platform that accelerates engineering simulation by learning from existing CAE, test, and sensor data to create accurate predictive models. Instead of running thousands of computationally expensive simulations, engineers can evaluate, optimize, and validate designs in seconds. Supporting any solver or engineering domain, ODYSSEE dramatically reduces simulation time, computing costs, and product development cycles while enabling real-time design exploration, digital twin applications, and confident engineering decisions.

Key Features

  • Learns from existing CAE, test, and sensor data
  • Supports any CAE solver and engineering discipline
  • Predicts thousands of design variations instantly
  • Enables digital twin and real-time engineering

Engineering Applications

  • Reduce simulation time from weeks to seconds
  • Lower HPC computing and engineering costs
  • Accelerate optimization and design exploration
  • Improve accuracy with AI-driven predictions
  • Shorten product development and time-to-market

Industries Served

AutomotiveAerospaceElectronicsIndustrial Machinery

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Cadence · Structural Analysis

Nastran — Structural Integrity

Industry-standard FEA for machine precision, reliability, and stable performance under real operating conditions.

Overview

Most engineering teams already have CAD simulation tools. The challenge today is not simply verifying strength, but ensuring machines deliver precision, reliability, and stable performance under real operating conditions. Advanced virtual engineering with Nastran helps reduce prototype iterations, accelerate product development, and build confidence before the first machine is ever built.

Key Features

  • Linear and nonlinear structural, dynamic, and thermal FEA
  • Predicts vibration and thermal distortion
  • Extends the value of your existing CAD environment

Engineering Applications

  • Reduce prototype iterations
  • Improve machine precision and stability
  • Increase product reliability and durability
  • Accelerate New Product Introduction (NPI)

Industries Served

Industrial MachineryAutomotiveAerospace

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Cadence · Nonlinear Reliability Analysis

Marc — EV Motor Reliability

Predict structural, thermal, and fatigue behavior in EV motors before physical prototypes are built.

Overview

Marc complements electromagnetic and thermal design tools by predicting structural behavior, thermal stress, fatigue, vibration, and durability in EV motors. Engineers can optimize reliability, reduce development risk, accelerate validation, and improve motor lifetime before physical prototypes are built.

Key Features

  • Predicts rotor stress and burst-speed safety margin
  • Analyzes thermal expansion and air-gap variation
  • Assesses assembly, shrink-fit, and manufacturing effects
  • Evaluates bearing load changes and housing deformation

Engineering Applications

  • Prevent magnet cracking and debonding
  • Predict fatigue life and crack initiation
  • Reduce vibration and NVH risks
  • Reduce physical prototype testing
  • Accelerate design validation and time-to-market

Industries Served

AutomotiveEnergy

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Cadence · Reliability Prediction

Marc — Electronic Reliability

Extend simulation beyond performance analysis into long-term reliability prediction for electronics.

Overview

Marc complements existing CAE tools by extending simulation beyond performance analysis into reliability prediction. It enables engineers to evaluate thermal-mechanical stress, deformation, fatigue, moisture effects, and long-term durability, helping teams identify potential failures earlier and optimize product designs before physical prototyping.

Key Features

  • Evaluates thermal-mechanical stress, deformation, and fatigue
  • Supports advanced nonlinear and multiphysics simulation
  • Complements existing electrical, thermal, and EM CAE tools

Engineering Applications

  • Identify stress, warpage, and fatigue risks early
  • Evaluate moisture, thermal cycling, and delamination effects
  • Improve package, sensor, and power module reliability
  • Reduce physical prototypes and testing costs
  • Accelerate design validation and qualification

Industries Served

ElectronicsSemiconductor

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Cadence · Structural Reliability

Marc — Transformer Reliability

Predict winding stress, thermal expansion, and structural integrity before physical testing.

Overview

Marc complements electromagnetic and thermal transformer design tools by predicting winding stress, thermal expansion, vibration, fatigue, sealing performance, and structural integrity. Engineers can improve reliability, reduce failures, optimize designs, and extend transformer service life before physical testing.

Key Features

  • Predicts winding deformation during short-circuit events
  • Evaluates thermal expansion and mechanical stress
  • Analyzes vibration, noise, and resonance risks

Engineering Applications

  • Improve transformer structural integrity
  • Predict fatigue life and long-term durability
  • Assess gasket sealing and leakage performance
  • Optimize tank, support, and clamping structures
  • Reduce physical testing and validation costs

Industries Served

EnergyIndustrial Machinery

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Cadence · Materials & Reliability

Digimat + Marc — Transfer Moulding & Package Reliability

Simulation that doesn't stop at molding — from material behavior through to post-molding package reliability.

Overview

Transfer moulding simulation traditionally stops once the part is formed — but the package lifecycle continues long after: moisture absorption, JEDEC MSL conditioning, 260°C reflow, thermal cycling, and mechanical loading can all cause die cracks, delamination, popcorn failure, or package cracks that a successful moulding process alone cannot predict. Digimat's advanced material modeling captures how epoxy molding compound (EMC) really behaves — cure-dependent properties, cure shrinkage, and viscoelastic response — instead of relying on simplified, constant-property assumptions. Combined with Marc's structural reliability analysis, this workflow extends transfer moulding simulation through to post-molding package reliability, predicting residual stress, moisture-induced swelling, delamination, and crack initiation before a physical prototype is built.

Key Features

  • Cure-dependent material properties and cure shrinkage prediction
  • Composite filler and viscoelastic material modeling
  • Residual stress and thermo-mechanical coupling analysis
  • Moisture-induced swelling and delamination prediction

Engineering Applications

  • Predict die crack, delamination, popcorn failure, and package crack risk
  • Model JEDEC MSL conditioning, reflow, and thermal cycling effects
  • Reduce physical material testing and DOE iterations
  • Faster EMC qualification and design iteration
  • Lower rejection rate and improve first-pass manufacturing yield

Industries Served

SemiconductorElectronics

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Cadence · Vibro-Acoustic Simulation

Actran — Acoustic Multiphysics for Audio Devices

Predict and optimize Bluetooth audio device performance before physical prototypes are built.

Overview

Nastran + Actran delivers a complete Electro-Vibro-Acoustic (EVA) simulation workflow that enables engineers to predict and optimize Bluetooth audio device performance before physical prototypes are built. By combining structural dynamics, loudspeaker modeling, enclosure acoustics, and sound radiation analysis, manufacturers can reduce development cost, shorten design cycles, eliminate unwanted vibration and resonance, and achieve superior sound quality with greater engineering confidence.

Key Features

  • Complete Electro-Vibro-Acoustic (EVA) simulation workflow
  • Combines structural dynamics, loudspeaker, and enclosure acoustics
  • Simulates the complete path from electrical input to sound output

Engineering Applications

  • Predict speaker, enclosure, and acoustic performance early
  • Eliminate unwanted vibration, buzz, squeak, and rattle (BSR)
  • Optimize sound pressure level (SPL) and frequency response
  • Reduce physical prototypes and testing costs

Industries Served

ElectronicsConsumer Audio Devices

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Cadence · Aero-Acoustic Simulation

Actran — Aero-Acoustics for Home Appliances

A complete virtual aero-acoustic workflow for quieter, higher-performance appliances.

Overview

Cradle CFD, Nastran, and Actran provide a complete virtual aero-acoustic workflow for air purifier and home appliance development. By simulating airflow, structural vibration, and radiated noise before prototype build, manufacturers can deliver quieter, higher-performance products while reducing development cost and time-to-market.

Key Features

  • Complete virtual aero-acoustic workflow (Cradle CFD + Nastran + Actran)
  • Simulates airflow, structural vibration, and radiated noise

Engineering Applications

  • Predict airflow and noise performance early in design
  • Identify and eliminate fan, turbulence, and structural noise
  • Optimize fan, filter, duct, and enclosure designs
  • Reduce physical prototypes and testing iterations

Industries Served

ElectronicsIndustrial Machinery

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Cadence · Thermal Simulation

Cradle CFD — Electronic Cooling

Accelerate thermal design as power densities rise and cooling moves from board-level to system-level.

Overview

The rapid growth of AI computing, advanced packaging, and higher power densities is driving the evolution from traditional board-level cooling to complete system-level thermal management. Cradle CFD enables engineers to accelerate thermal design by simplifying model preparation, improving simulation efficiency, and providing deeper insights into heat flow for faster and more confident engineering decisions.

Key Features

  • Simplified model preparation and faster thermal simulation
  • Supports transition from air cooling to liquid cooling
  • System-level thermal management for advanced packaging

Engineering Applications

  • Optimize thermal performance before hardware prototyping
  • Gain deeper insight into heat flow and thermal bottlenecks
  • Faster design iterations for AI and HPC hardware

Industries Served

SemiconductorElectronics

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Cadence · Impact Simulation

Dytran — Drop Test Simulation

Virtually validate complete electronic assemblies and packaging systems before physical testing.

Overview

Dytran enables manufacturers to virtually validate complete electronic assemblies and packaging systems before physical testing. By simulating drop and impact events, engineers can optimize product design, foam cushions, and thermoformed trays, reducing redesign iterations, qualification failures, development cost, and ensuring products arrive safely throughout the logistics journey.

Key Features

  • Virtualizes complete product assemblies — hundreds to thousands of components in a single model
  • Optimizes packaging design — foam cushions, thermoformed trays, corrugated boxes

Engineering Applications

  • Reduce design iterations and Engineering Change Orders (ECOs)
  • Improve first-pass qualification success in customer drop tests
  • Protect sensitive components — PCBs, connectors, heat sinks
  • Reduce physical prototypes before tooling and lab testing

Industries Served

ElectronicsLogistics & Packaging

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Cadence · Manufacturing Process Simulation

Simufact — Welding Process Simulation

Virtually predict and optimize welding processes before production.

Overview

Simufact Welding enables manufacturers to virtually predict and optimize welding processes before production — minimizing distortion, improving assembly quality, reducing manufacturing costs, and accelerating time-to-market through data-driven process optimization.

Key Features

  • Predicts distortion and residual stress before production
  • Optimizes weld sequence and fixture design

Engineering Applications

  • Reduce scrap and rework
  • Minimize physical trials and prototyping
  • Improve assembly quality
  • Lower manufacturing costs and accelerate development

Industries Served

AutomotiveIndustrial Machinery

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Signal integrity and power integrity (SI/PI) design automation software — GTECH ASIA is a technology partner for this platform.

Aurora Systems · SI/PI Automation

Aurora Appalachian

Automates the layout-to-compliance workflow for advanced chiplet packaging.

Overview

Aurora Appalachian automates the layout-to-compliance workflow for advanced chiplet packaging, accelerating UCIe chiplet development while catching signal integrity issues early in the design cycle.

Key Features

  • Automates layout-to-compliance workflow
  • Integrates extraction, compliance, and simulation
  • Supports UCIe-A and UCIe-S standards

Engineering Applications

  • Accelerates UCIe chiplet development
  • Detects signal integrity issues early
  • Minimizes costly package re-spins
  • Generates executive-ready reports automatically
  • Improves first-pass success and time-to-market

Industries Served

Semiconductor

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Cloud-native 3D CAD software for mechanical design teams, supplied by GTECH ASIA through our reseller network.

3D CAD Software

CrownCAD — Cloud-Native 3D CAD

Browser-based 3D CAD for collaborative mechanical design — no installs, no IT overhead.

Overview

CrownCAD is a cloud-native 3D CAD platform GTECH ASIA supplies for mechanical design teams who need a collaborative, browser-based alternative to traditional desktop CAD. Built on independently developed geometry modeling (DGM) and constraint-solving (DCS) technology, CrownCAD delivers parametric part design, large assembly handling, and 2D drawing generation entirely in the browser — letting distributed teams co-edit and review the same model in real time, on any device.

Key Features

  • Parametric solid modeling, surface/mesh modeling, and 3D annotation
  • Large assembly handling with interference and clearance detection
  • Automatic 2D drawing generation synced to 3D parts
  • Sheet metal and weldment design modules
  • Compatible with STEP, IGES, CATIA, UG/NX, Creo, SOLIDWORKS, and DWG

Engineering Applications

  • Design anywhere, on any device, with no local installation
  • Real-time multi-user co-editing, review, and approval
  • Open large, million-part assemblies without local hardware limits
  • Maintain full edit history and version control for design review

Industries Served

Industrial MachineryAutomotiveAerospaceParts & Tooling

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Cadence Simulation Software

Full-system structural, dynamic, and acoustic analysis

Cadence now supports the simulation solver portfolio GTECH ASIA provides, covering structural, dynamics, and acoustic analysis across industries.

Nastran

Industry-standard solver for linear and nonlinear structural, dynamic, and thermal finite element analysis — the flagship platform behind decades of aerospace and automotive design.

Patran

Full-featured pre- and post-processing environment for building, verifying, and visualizing finite element models.

Adams

Multibody dynamics simulation for mechanisms, vehicles, and machinery — from basic kinematics to full vehicle and driveline modeling.

Marc

Advanced nonlinear analysis for large deformation, contact, and material nonlinearity across structural applications.

Actran

Vibro-acoustic and aero-acoustic simulation for noise, vibration, and harshness (NVH) engineering.

Easy5 & Sinda

Dynamic systems modeling and thermal network analysis for fluid power, controls, and thermal systems.

Data & Process Management

Scale simulation across your engineering organization

SimManager

Simulation data and process management platform that lets engineering teams publish, track, and collaborate on simulation studies at enterprise scale — used across automotive, aerospace, shipbuilding, energy, and electronics industries.

MVision

Materials information system for navigating, querying, and managing engineering material property databanks across your organization.

Not sure which solution fits your workflow?

Our engineers can walk you through the right combination of software for your industry and analysis needs.