Build Safer Products. Manage Safety From Concept to System.
Ansys medini analyze supports safety and security analysis for electronic and automotive systems. It brings methods such as HAZOP, HARA, FHA, FTA, FMEA/FMECA and FMEDA into an integrated engineering workflow.
Talk to an ExpertKEY PRODUCT CAPABILITIES
Advanced System Evaluation. Full Process Integration.
1. Functional Safety Analysis
Integrate core safety standards natively into your hardware/software architecture design.
2. HARA (Hazard Analysis)
Systematically identify hazards, evaluate risks, and determine safety goals (ASIL/SIL).
3. HAZOP Simulation
Formulate safety-critical risk mitigation lists across process elements.
4. FMEA / FMECA
Run systematic risk-prioritized failure modes, effects, and criticality analysis.
5. Fault Tree Analysis
Automate qualitative and quantitative failure path calculations (FTA).
6. FMEDA Processes
Calculate diagnostic coverage and hardware architectural metrics.
7. Fault Propagation
Model cascading failures across highly complex system-of-systems.
8. Safety Requirements
Establish bidirectional tracing of safety goals to implementation levels.
9. Automotive Safety
Fulfill ISO 26262 road vehicle compliance with fully audited methods.
10. Security Analysis
Incorporate threat analysis and risk assessment (TARA) for cybersecurity.
Fulfill Demanding Automotive & Aerospace Safety Standards.
Functional Safety
Implement automated ISO 26262 and IEC 61508 safety standards validation.
Requirements Management
Maintain absolute safety-case tracing across changing system revisions.
Failure Analysis
Uncover cascading physical failure modes before building physical prototypes.
Automotive Compliance
Accelerate ASIL-D safety-case sign-off with pre-audited template reports.
System-level Risk
Unify diverse software, electronic and mechanical risks in one source of truth.
Safety Lifecycle
Streamline engineering safety management from early concept to final decommissioning.
Step-by-Step Simulation-Driven Design Verification.
Explore
Test structural concepts with rapid numerical prototyping.
Refine
Modify component designs using real-time physics feedback.
Validate
Subject chosen iterations to strict compliance solvers.
Optimize
Finalize material topology for safe mass production.
Trusted Across Rigorous High-Performance Industries.
Automotive & EV
ASIL compliance, ADAS electronics safety, battery hazards.
Aerospace & Defense
ARP4754A compliance, flight control redundancy.
Energy & Power
IEC 61508 process safety, grid distribution risk mapping.
Industrial Equipment
ISO 13849 machinery control loop validation.
Manufacturing
Functional process safety loop testing.
Oil & Gas
Emergency shutdown control system auditing.
Heavy Machinery
Braking, hydraulic control safety verification.
Transportation
Critical railway signalling and train control safety.
Build Confidence in Your Simulation-Driven Design Workflow.
Kaizenat helps safety engineering teams implement structured safety analysis, customize medini analyze templates, deliver professional training, and establish repeatable, ISO-ready functional safety verification processes.

Verified technical competence, high-performance computing expert support.
Understand
Detailed mapping of product design bottlenecks and physical boundary objectives.
Implement
License setup, workspace syncing, and enterprise network integration.
Enable
Team onboarding with focused custom webinars, hands-on tutorials and local support.
Optimize
Scale development exploration with multiphysics models and detailed solvers.
Ready to Accelerate Your Performance Validation?
Talk to Kaizenat's seasoned simulation specialists to map out and deploy the ideal medini analyze workflow for your specific industrial application.