Job Description
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Job Description
Diraq is redefining scalable quantum computing by enabling billions of qubits on a single chip—far beyond the hundreds available today—to unlock practical, commercial quantum applications. We are building a full-stack quantum computing company, delivering quantum hardware and software as a cloud-accessible service.
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Job Description
Diraq is redefining scalable quantum computing by enabling billions of qubits on a single chip—far beyond the hundreds available today—to unlock practical, commercial quantum applications. We are building a full-stack quantum computing company, delivering quantum hardware and software as a cloud-accessible service.
\n We are seeking an Electronics Engineer to support the development, integration and validation of advanced cryogenic test infrastructure used to evaluate next-generation quantum computing hardware.
\n This role combines electronic design, hardware integration, laboratory testing and systems engineering. You will design and maintain reliable, high-performance test platforms that enable the characterisation of quantum devices operating at cryogenic temperatures. Working within a multidisciplinary team of engineers, scientists and researchers, you will contribute to sophisticated measurement systems at the forefront of emerging quantum technologies.
Job Requirements
Essential Qualifications and Experience
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- Bachelor's degree in Electronics Engineering, Electrical Engineering, Mechatronics Engineering or a related discipline. \n
- Demonstrated experience in electronics design, hardware development, test engineering, or closely related engineering environments. \n
- Strong electrical engineering fundamentals, including analogue and digital electronics, circuit analysis, grounding, shielding, power distribution and measurement principles. \n
- Experience with schematic capture and PCB design using Altium Designer or an equivalent tool. \n
- Demonstrated ability to bring up, test, debug and modify electronic hardware. \n
- Experience using laboratory instrumentation such as oscilloscopes, vector network analysers, spectrum analysers, signal generators, source measure units and digital multimeters. \n
- Strong troubleshooting skills and the ability to systematically identify root causes across complex hardware systems. \n
- Practical experience with soldering, PCB rework, cable assembly, connectors and prototype construction. \n
- Understanding of systems engineering principles, including requirements definition, interface management, verification, validation and configuration control. \n
- Ability to analyse measurement data and clearly communicate technical findings. \n
- Strong documentation discipline and attention to detail.
Desirable Experience
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- Electronics or test infrastructure for cryogenic, quantum computing, semiconductor, RF, microwave or low-noise measurement applications. \n
- Signal integrity, impedance-controlled PCB design, RF transmission lines, grounding, shielding, filtering and electromagnetic compatibility. \n
- Cryogenic design constraints, including thermal loading, material selection, thermal contraction, connector reliability and temperature-dependent electrical behaviour. \n
- Automated test, data acquisition or data analysis using Python, MATLAB or similar tools. \n
- Design for manufacture, component selection, supplier engagement and prototype production. \n
- Engineering change control, document management and laboratory safety practices.
Personal Attributes \n
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- Practical and comfortable working directly with hardware in a laboratory environment. \n
- Methodical and evidence-based when diagnosing technical issues. \n
- Able to manage competing priorities and progress work with a high degree of ownership. \n
- Strong written and verbal communication skills. \n
- Collaborative and comfortable working within a multidisciplinary engineering and scientific team. \n
- Curious, adaptable and motivated to develop knowledge of cryogenic and quantum computing technologies.
Job Responsibilities
Electronic Design and Development \n
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- Design schematic circuits and printed circuit boards for cryogenic test systems, including signal routing, control electronics, signal conditioning, interface circuits and breakout hardware. \n
- Develop wiring assemblies, cable harnesses, test fixtures, adapter boards and supporting laboratory infrastructure. \n
- Select electronic components and contribute to hardware architecture decisions, considering performance, manufacturability, reliability and cost.
System Integration \n
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- Integrate electronic hardware with cryogenic platforms, laboratory instruments, device packages and software control systems. \n
- Support system bring-up, configuration, commissioning and performance verification activities. \n
- Collaborate with physicists, device engineers, mechanical engineers, software engineers and test engineers to deliver integrated cryogenic test capabilities.
Testing, Verification and Analysis \n
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- Plan and execute hardware verification, validation and characterisation activities for electronic subsystems and complete test platforms. \n
- Develop test procedures and measurement methods to evaluate electrical performance, signal integrity, thermal behaviour and system reliability. \n
- Analyse test data, identify performance limitations and provide practical recommendations for design and system improvement. \n
- Communicate findings through clear technical reports, presentations and design recommendations.
Troubleshooting and Continuous Improvement \n
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- Diagnose and resolve hardware and system-level issues using structured fault-finding and root-cause analysis methods. \n
- Modify, optimise and improve existing test infrastructure as technical requirements evolve. \n
- Support reliability investigations, engineering risk reduction and corrective actions.
Documentation and Quality \n
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- Prepare and maintain engineering documentation, including schematics, PCB design files, bills of materials, assembly instructions, test plans, test reports, operating procedures and engineering change records. \n
- Define technical requirements and contribute to system architecture, interface definitions, design reviews, risk assessments and configuration control.
Hands-on Laboratory Work \n
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- Perform assembly, rework and prototyping activities, including soldering, cable assembly, connector installation, PCB modification and prototype construction. \n
- Support safe, organised and effective laboratory operations and maintain test equipment and infrastructure.
Job Benefits
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- Opportunity to work on cutting-edge quantum hardware development \n
- Collaborative environment with leading experts in quantum computing \n
- Paid volunteer day to give back to a cause you care about \n
- Eligibility to participate in our employee incentive program \n
- Flexible working arrangements and supportive team culture \n
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