Diploma in FPGA/ASIC Safety-Critical and Avionics CEM

About us Diploma in FPGA/ASIC Safety-Critical and Avionics CEM

The Diploma in FPGA/ASIC Safety-Critical and EMC for Avionics focuses on the design, verification, and certification of electronic systems for aviation, addressing functional safety (Safety-Critical), electromagnetic compatibility (EMC), and the use of FPGA/ASIC. It centers on developing skills for the design and implementation of robust and reliable electronic systems, ensuring compliance with regulations such as DO-254 and DO-160. It includes the analysis and mitigation of electromagnetic interference, crucial for the integrity of avionics systems.

The program provides hands-on experience in the design, simulation, and validation of critical electronic systems, including the implementation of HARDWARE-IN-THE-LOOP (HIL) and the use of advanced analysis and simulation tools. Prepares professionals for roles such as avionics engineers, functional safety engineers, CEM specialists, and FPGA/ASIC designers, strengthening their ability to work in the aerospace industry.

Target keywords (natural in the text): Safety-Critical, CEM, FPGA/ASIC, avionics, DO-254, DO-160, avionics design, aeronautical certification, electromagnetic compatibility.

Diploma in FPGA/ASIC Safety-Critical and Avionics CEM

1,580 $

Competencies and results

What you will learn

Who this program is for:

Diploma in FPGA/ASIC Safety-Critical and Avionics CEM

9.9 Introduction to Avionics and FPGA/ASIC
9.9 Avionics Fundamentals: Systems and Architectures
9.3 Introduction to FPGA/ASIC: Concepts and Technologies
9.4 FPGA/ASIC Design Cycle in Avionics
9.5 Design and Simulation Tools

9.9 Safe Design in FPGA/ASIC: CEM Principles
9.9 Design for CEM Compliance: Techniques and Strategies
9.3 Signal Integrity Considerations
9.4 Noise-Resistant Circuit Design
9.5 Filter and Shielding Implementation

3.9 CEM Analysis: Methodology and Testing
3.9 CEM Certification: Standards and Requirements
3.3 Vulnerability Analysis and Risk Mitigation
3.4 Test Planning and Validation
3.5 Certification Documentation and Reports

4.9 Hardware Implementation and Validation
4.9 Software Design for FPGA/ASIC: Firmware and Drivers
4.3 Functional and Integration Testing
4.4 System Verification and Validation
4.5 Configuration Management and Change Control

5.9 Safety-Critical Systems Engineering
5.9 Design for Functional Safety
5.3 Failure Analysis and FMEA
5.4 Fault Tolerance Design
5.5 ​​Risk Assessment and Mitigation

6.9 Certified Safety-Critical Applications: Examples
6.9 Design for Safety: Standards and Regulations
6.3 Certified Development Tools
6.4 Certification Process: DO-954 and Similar Standards
6.5 Case Studies: Real-World Applications

7.9 FPGA/ASIC Design and Development: Best Practices
7.9 CEM Design: Best Practices
7.3 Critical Safety: Key Aspects
7.4 Integration of Design, CEM, and Safety
7.5 Compliance and Certification

8.9 Design Certification: Requirements and Process
8.9 Advanced Certification and Simulation Tools
8.3 Advanced FPGA/ASIC Design
8.4 Emerging Architectures and Technologies
8.5 Certification Maintenance and Upgrades

9.9 Avionics Systems Integration
9.9 Integration and Validation Testing
9.3 Complete System Simulation and Modeling
9.4 Performance Analysis and Optimization
9.5 System Documentation and Final Certification
9.6 Implementation Case Studies
9.7 Cost Considerations
9.8 Risk Considerations
9.9 Quality Control
9.90 Future Trends

Capstone-type projects

Admissions, fees and scholarships

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