The OPERA project sets clear and measurable main objectives to reach a TRL 7 as follows:
1. Validation and tradeoff by end users of NanoXplore rad-hard FPGA (NG-LARGE and NG-ULTRA) – TRL 6 achieved.
2. Development and testing of very complex ceramic hermetic package CGA 1752 – TRL 6 achieved
3. Space ESCC evaluation of NanoXplore's rad-hard FPGA (NG-LARGE) – TRL 7 achieved.
OPERA is set up to validate and do the ESCC evaluation of advanced rad-hard NG-LARGE FPGA with minimum risk execution and best product time to market. The project will give access to state of the art qualified rad-hard FPGA NG-LARGE and prepare future applications for the most advanced FPGA in the world NG-ULTRA.
The proposed activity is part of a jointly agreed space FPGA roadmap between EU, the European Space Agency, the CNES and the key European space equipment manufacturers. It is supporting the Strategic Research Agenda of the European Space Technology Platform through various objectives such as:
• Preparing and enabling future European space programmes,
• Supporting the industry competitiveness (short term/time to market),
• Guaranteeing European technology independence,
• Fostering technology transfer The proposed activities allow addressing applications beyond the space market such as avionic, energy and transport. These markets are close to the space market in terms of reliability and performance requirements and can be derived from the proposed development in a short time frame.
OPERA will offer European space agencies and major customers the state-of-the-art components they need without having to worry about exportation regulations. Additional markets beyond aerospace will also be addressed. The main goal of OPERA is indeed to validate and ESCC evaluate a rad-hard FPGA and associated CAD tools by integrating all the enabling design and manufacturing technologies needed to deliver high reliability, radiation-hardened integrated circuits.