Engineer Safer Products with Structured,
Model-Based Analysis

The Ansys Safety Analysis collection helps engineering teams identify hazards earlier, analyze safety risks more systematically and build stronger evidence for compliance across safety-critical products. It brings together functional safety, cybersecurity, semiconductor safety, and digital safety management in one connected environment.

By replacing fragmented manual processes with more structured workflows, these solutions improve traceability, strengthen collaboration, and support safer design decisions across hardware, software, and systems engineering teams.

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Relevant Ansys
SOFTWARE

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Ansys medini analyze

A model-based functional safety solution for safety-critical E/E and software-controlled systems. Best for teams that need integrated safety analysis, end-to-end traceability, and support for major industry safety standards.

  • Support key safety analysis methods within one integrated environment.

  • Align workflows with standards such as ISO 26262, IEC 61508, ARP4761, ISO 21448, and MIL-STD-882E.

  • Improve traceability across safety, quality, and system development activities.

  • Help streamline safety analysis across the full system architecture, including down to the chip level.

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Ansys Medini Cybersecurity SE

A web-based cybersecurity analysis solution designed for system-oriented engineering workflows. Ideal for teams that need scalable threat analysis, vulnerability management, and compliance support within connected development programs.

  • Automate TARA workflows to improve cybersecurity analysis efficiency.

  • Support vulnerability management in a web-based collaborative environment.

  • Align cybersecurity workflows with ISO/SAE 21434 requirements.

  • Extend cybersecurity analysis across broader system and safety development activities.

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Ansys medini analyze for Semiconductors

A semiconductor-focused functional safety solution for chip-level safety analysis in automotive and other critical applications. Well suited for teams that need to connect semiconductor design data with FMEA, FMEDA, and FTA workflows.

  • Support safety analysis across multiple chip levels, from IP blocks to SoCs and electronic boards.

  • Derive base failure rates and determine failure distributions from hardware design data.

  • Perform FMEA, FMEDA, and FTA based on semiconductor design information.

  • Help streamline ISO 26262 semiconductor safety workflows with stronger traceability and automation.

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Ansys Digital Safety Manager

A web-based safety management platform for planning, coordinating, and governing safety activities across programs. Best for organizations that need stronger collaboration, structured safety governance, and clearer management of safety cases and work products.

  • Optimize planning, controlling, and execution of required safety activities.

  • Support real-time collaboration in a fully web-based environment.

  • Manage safety cases, baselines, reporting, and safety work products more effectively.

  • Improve lifecycle coordination from development through deployment and operation.

From Functional Safety to Cybersecurity
and Chip-Level Analysis

A key strength of the Safety Analysis collection is that it covers multiple but connected disciplines. Ansys medini analyze supports core safety methods in one integrated environment, Ansys Medini Cybersecurity SE addresses model-based TARA and vulnerability workflows, Ansys medini analyze for Semiconductors extends safety analysis down to chip level, and Ansys Digital Safety Manager supports digital safety management.

This makes the collection especially relevant for teams that need consistency across functional safety, cybersecurity and safety-case-driven development rather than separate disconnected tools. 

Relevant
Applications

Functional Safety Analysis

Support model-based functional safety analysis across electrical, electronic, and software-controlled systems. Apply structured safety methods more consistently across complex products and development programs.

Hazard Analysis and Risk Assessment

Identify hazards earlier and assess risk in a more connected, model-based safety workflow. Link hazards, architecture, and downstream safety activities with stronger consistency and traceability.

FMEA and Quality Analysis

Perform structured failure and quality analysis within the same environment used for broader safety activities. Support consistent FMEA workflows aligned with recognized automotive quality methods and handbooks.

Fault Tree Analysis

Analyze how failures propagate through a system with fault tree workflows built into the safety environment. Improve understanding of system-level risk and strengthen evidence for safer design decisions.

FMEDA and Failure Rate Assessment

Support FMEDA-style workflows where failure modes, diagnostic coverage, and failure rates must be assessed systematically. Improve standards-driven safety evaluations with more connected reliability and safety analysis.

SOTIF Risk Analysis

Address risks related to intended functionality in systems where safe behavior must be evaluated beyond random faults. Support more complete safety assessments in advanced, software-driven products and functions.

Automotive Safety Compliance

Support ISO 26262-aligned development for safety-critical vehicle electronics and software-driven systems. Help OEMs and suppliers manage functional safety activities with stronger consistency and traceability.

Aerospace Safety Workflows

Apply structured safety analysis in aerospace and defense programs that require standards-aligned development. Support ARP4761- and MIL-STD-882E-related workflows with model-based safety methods and clearer traceability.

Strengthen Safety, Compliance
and Traceability Earlier

When hazards, safety evidence, and compliance activities are handled too late or across disconnected tools, development becomes slower, riskier, and harder to manage.

Fluid Codes helps teams apply the right Ansys Safety Analysis solutions earlier, so they can reduce late-stage risk, improve compliance readiness, and build stronger traceability across the development lifecycle.

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