Multimedia Search in Resources Articles Manuals -OR- All Products Active-HDL Riviera-PRO ALINT-PRO HES-DVM HES Proto-AXI HES™ Boards RTAX/RTSX Adaptor Boards HES-DVM Proto Cloud Edition TySOM™ EDK Spec-TRACER DO-254/CTS All Documents Application Notes Manual Demonstration Videos FAQ Recorded Webinars Tutorials White Papers Technical Specification Case Studies All Categories Coverage 3rd Party Integration Design Entry, Documentation Simulation, Debugging Design Management, Libraries Advanced Verification Assertions and Functional Coverage RTL Simulation & Verification HDL Languages Encryption Military & Aerospace Verification Design Rule Checking Design Hardware Emulation Solutions Encryption Design HDL Languages RTL Simulation & Verification Assertions and Functional Coverage Advanced Verification Design Rule Checking Military & Aerospace Verification Hardware Emulation Solutions Tutorials Prototyping High-Level Synthesis Embedded Embedded Embedded High Performance Computer SoC & ASIC Prototyping Reset Results Name Products Type Action Managing Requirements-Based Verification for Safety-Critical FPGAs and SoCs Safety-critical industry standards such as DO-254 for avionics, IEC 61508/61511 for industrial and ISO 26262 for automotive enforce a requirements-based verification process to ensure that the end-product is reliable, safe and will function as intended under all foreseeable conditions. Adhering to a strict requirements-based verification approach entails that organizations must follow certain processes and provide a long list of reports and deliverables. With the growing size and complexity of today’s FPGAs and SoCs, the requirements that must be managed, reviewed, validated, traced, implemented and verified have also undeniably multiplied. Requirements frequently change impacting other project elements which leads to more rework, redesign and retests. The traceability from requirements to test data must be created and preserved so testing activities can get chaotic without a systematic method to manage it. If organizations do not have a system in place to efficiently manage these underlying activities, this translates to more time and money and unfortunately in many cases project failure. Learn in this webinar the common processes of requirements-based verification for safety-critical FPGAs and SoCs. We will describe the associated challenges, and we will show how Aldec’s tool Spec-TRACER can facilitate industry best engineering best practices to overcome these challenges. Play webinar > Spec-TRACER, DO-254/CTS Recorded Webinars 1 result