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CryptoNext Security is seeking an FPGA Hardware Design Engineer intern in Paris, France, to own a key project at the hardware/software codesign intersection for PQC accelerators. You will design RTL in SystemVerilog, integrate accelerators with software, and evaluate performance on an AMD Xilinx ZCU104/MPSoC platform.
The role focuses on NTT and Keccak state permutation implementations for ML-KEM/ML-DSA within the CryptoNext Quantum Safe Library, and requires hands-on work with FPGA tooling and
CryptoNext Security is a deeptech startup specializing in post-quantum cryptography. Our solutions help businesses and institutions prepare for a future where quantum computers will challenge traditional data security. We work with leading clients in finance, defense, and telecommunications.
As part of an exploratory project on hardware accelerators for post-quantum cryptography (PQC), we are looking for a highly motivated FPGA Hardware Design Engineer to take ownership of a key strategic project at the intersection of hardware/software codesign (FPGA development and low-level C) and post-quantum cryptographic accelerators. You will work on the design, integration, and evaluation of hardware accelerators for well-identified mathematical functions used in post-quantum cryptographic algorithms, with a strong focus on demonstrating concrete performance benefits on a real embedded platform.
Your mission
You will study state-of-the-art approaches described in the scientific literature on PQC hardware acceleration, including relevant academic work such as this recent study, and implement the selected ones. You will focus in particular on the Number Theoretic Transform (NTT) and the Keccak state permutation function, two key computational functions involved in the implementation of algorithms such as ML-KEM and ML-DSA (lattice-based PQC algorithms).
You will be responsible for developing system-level RTL code using SystemVerilog, integrating the resulting accelerators into a complete hardware/software system, and evaluating their impact on application-level performance. The target platform will be an AMD Xilinx ZCU104 development board, equipped with a Zynq UltraScale+ MPSoC.
The primary objective of the internship is to demonstrate, on the target platform, that a hardware accelerator for either the NTT or the Keccak permutation can effectively accelerate the corresponding ML-KEM or ML-DSA implementation in the CryptoNext Quantum Safe Library (C-QSL).
Required skills
Internship details