Design and optimize FPGA-based control systems for quantum computing at planqc, a neutral-atom quantum hardware startup. Develop real-time firmware for precise atomic control, high-speed interfaces, and scalable SoC architectures. Collaborate with physicists and engineers to advance quantum system performance and stability.
Key Highlights
Develop FPGA-based control systems for quantum computing with nanosecond precision
Work at the intersection of hardware, firmware, and cutting-edge quantum physics
Collaborate with interdisciplinary teams to integrate quantum hardware and software
Key Responsibilities
Design, implement, and optimize FPGA-based control and data acquisition systems for quantum computing applications
Develop synthesizable modules in SystemVerilog, Verilog, or VHDL for real-time signal generation and acquisition
Implement high-speed interfaces for ADC/DAC systems and ensure reliable data throughput across multiple clock domains
Collaborate with physicists, hardware engineers, and software teams to ensure seamless system integration
Contribute to system architecture decisions and continuous performance improvements
Technical Skills Required
FPGA Development (SystemVerilog/Verilog/VHDL)
AXI Protocols (AXI4, AXI-Stream, AXI-Lite)
Real-Time Systems & Low-Latency Architectures
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Benefits & Perks
Flexible working with hybrid options
Company pension with employer contribution
Relocation and visa support for international hires
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Nice to Have
Experience with high-bandwidth ADC/DAC systems (>1 GSPS)
Hands-on experience with Xilinx SoCs and toolchains (Vivado, Vitis/SDK)
Background in real-time systems or low-latency architectures
Job Description
Your missionAt planqc, we are building scalable quantum computers based on neutral atoms, one of the most promising architectures for achieving real-world quantum advantage.As an , you will be part of our Electrical Engineering team, d at the core of our quantum computing platform. Your work will focus on that enable precise with nanosecond accuracy.Working closely with quantum hardware and software teams, you will translate complex experimental requirements into robust, scalable firmware solutions. Your contributions will be critical in advancing system performance, stability, and scalability, enabling the next generation of quantum algorithms and applications.
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