Oxford Quantum Circuits
Computer Hardware
PrincipalElectronicDesignEngineer
Neural analysis suggests this role is
optimal for Senior candidates.
“Principal Electronic Design Engineer at Oxford Quantum Circuits. Skills: Electronic architectures, Quantum control hardware, High-speed electronics, System integration. Architect scalable electronic systems. Lead hardware design and development”
What You'll Achieve.
Deliver next generation quantum control hardware
Industry & Context.
System-level problem solving; Root-cause analysis
What They're Looking For.
Must Have
Electronic systems architecture and design, High-speed digital design, FPGA hardware integration, Deterministic synchronisation systems, Signal integrity and power integrity analysis, EMIC compliance and regulatory considerations, Hardware and system integration, Verification and validation planning, Technical leadership and engineering decision-making, Communication, judgement, and problem-solving skills, Degree in Electronic Engineering, Electrical Engineering, Physics, or related discipline, or equivalent practical experience, Significant experience developing complex high-speed electronic systems, Experience working across full hardware product development lifecycles, Proven track record collaborating with cross-functional engineering teams on integrated systems, Experience with hardware validation, integration, debugging, and system-level problem solving, Experience developing scalable or distributed hardware platforms, Experience providing technical leadership, conducting technical reviews, and mentoring engineers
Nice to Have
Experience with RF or microwave electronic systems, Experience working with FPGA-based or multi-board hardware platforms, Experience working with outsourced hardware development teams or manufacturing partners, Knowledge of high-speed networking architectures, Experience driving engineering process improvements and development methodology enhancements, Postgraduate qualification in Electronics, RF Systems, Embedded Systems, Physics, or related field, Specialist training or certifications in high-speed electronic systems, FPGA platforms, signal integrity, or EMC design practices
What You'll Do.
Architect scalable electronic systems
Lead hardware design and development
Drive technical decision-making
Collaborate with multidisciplinary teams
Define validation strategies
Manage supplier engagement
Lead hardware integration
Perform root-cause analysis
Lead technical reviews
Contribute to architecture evolution
How You'll Work.
Team & Collaboration
Multidisciplinary engineering teams; FPGA teams; Embedded software teams; Mechanical teams; Cryogenic teams; Systems teams; Deployment teams; Cross-functional engineering teams
Communication Scope
Technical leadership; Technical reviews
Full Job Description
At OQC, we aren’t just theorising about the future; we’re building it. Born from a philosophy of bold innovation, we’ve successfully transitioned quantum computing from an academic dream into a commercial reality. The most exciting thing is that we’re just getting started. As a Principal Electronic Design Engineer, you will define the electronic architectures that power scalable quantum computing systems. You'll solve complex system-level challenges spanning high-speed electronics, synchronisation, integration, and manufacturability, helping to deliver the next generation of quantum control hardware. ### The Role As a senior technical leader within our Control Hardware team, you'll drive the architecture, design, and delivery of highly integrated electronic systems that enable high-performance qubit control, deterministic synchronisation, and data acquisition across distributed quantum computing platforms. You'll work closely with multidisciplinary engineering teams, influence long-term hardware strategy, and provide technical leadership across the organisation. ### What You'll Be Working On * Architecting scalable, high-performance electronic systems for quantum control platforms, balancing performance, reliability, manufacturability, and long-term scalability. * Leading the design and development of complex hardware systems, including schematic capture, component selection, and review of high-density multilayer PCB designs. * Driving technical decision-making across the hardware development lifecycle, ensuring robust and practical engineering solutions. * Collaborating with FPGA, embedded software, mechanical, cryogenic, systems, and deployment teams to define interfaces and integration strategies across the control hardware stack. * Defining validation strategies, acceptance criteria, and technical specifications while managing engagement with external suppliers and manufacturing partners. * Leading hardware integration, validation, debugging, and root-cause anal
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