This internship provides an exceptional opportunity to work with cutting-edge hardware attack methodologies against state-of-the-art semiconductor technologies. The 6-month program is scheduled to take place in Paris during 2026 and will be conducted using a specialized test chip platform where selected software and hardware countermeasures have been disabled to permit comprehensive analysis and precise characterization of attack internship program will begin with comprehensive training on existing Electromagnetic Fault Injection (EMFI) techniques applying these methodologies against test devices with direct CPU access. The second phase will focus on advancing EMFI capabilities through systematic setup and technology optimizations including improvements to injection probe resolution and reductions in electromagnetic pulse duration. The final phase will involve evaluating these enhanced attack methodologies on SoCs with stacked DRAM architectures to quantitatively determine how this configuration affects attack effectiveness and success the internship you will work alongside other hardware security researchers on your missions
- Experience in physical attacks
- Knowledge of electromagnetism fundamentals
- Knowledge and experience in analog electronic and microprocessors architecture
- Great analytical and presentation skills.
- Proficiency in switching power supply techniques
- Applied cryptography
- Experience in fault attacks
Required Experience:
Intern
This internship provides an exceptional opportunity to work with cutting-edge hardware attack methodologies against state-of-the-art semiconductor technologies. The 6-month program is scheduled to take place in Paris during 2026 and will be conducted using a specialized test chip platform where sele...
This internship provides an exceptional opportunity to work with cutting-edge hardware attack methodologies against state-of-the-art semiconductor technologies. The 6-month program is scheduled to take place in Paris during 2026 and will be conducted using a specialized test chip platform where selected software and hardware countermeasures have been disabled to permit comprehensive analysis and precise characterization of attack internship program will begin with comprehensive training on existing Electromagnetic Fault Injection (EMFI) techniques applying these methodologies against test devices with direct CPU access. The second phase will focus on advancing EMFI capabilities through systematic setup and technology optimizations including improvements to injection probe resolution and reductions in electromagnetic pulse duration. The final phase will involve evaluating these enhanced attack methodologies on SoCs with stacked DRAM architectures to quantitatively determine how this configuration affects attack effectiveness and success the internship you will work alongside other hardware security researchers on your missions
- Experience in physical attacks
- Knowledge of electromagnetism fundamentals
- Knowledge and experience in analog electronic and microprocessors architecture
- Great analytical and presentation skills.
- Proficiency in switching power supply techniques
- Applied cryptography
- Experience in fault attacks
Required Experience:
Intern
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