Senior Nuclear I&C Engineer – Hardware
- $144,000–$176,000
- Onsite
- All software engineering jobs
About the role
About Valar Atomics
At Valar Atomics, we're redefining what's possible in energy. Our mission is to make clean, high-temperature nuclear power scalable—unlocking abundant energy for industry, hydrogen, and next-generation manufacturing. We are a team of builders, engineers, and operators who believe nuclear energy should be fast to deploy, factory-made, and built for the real world. Our first pilot plant in Orangeville, Utah will demonstrate how advanced nuclear systems and fuel fabrication can power the future. Joining Valar Atomics means becoming part of a company where autonomy, ownership, and impact exist at every level.
The Team
You will be joining Valar Atomics' Instrumentation, Control & Electrical (IC&E) organization, working on the Reactor side of the program. Nuclear I&C Hardware Engineers own the instruments that measure the reactor itself neutron flux across startup, intermediate, and power ranges, core and primary loop temperatures and pressures, and radiation levels throughout the plant along with the signal chains that carry those measurements to the protection and control systems. You will work alongside I&C, electrical, reactor physics, thermal-hydraulics, and nuclear safety engineers in a hands-on environment where measurement quality directly supports reactor safety. The team values technical depth, disciplined documentation, and a safety-first culture.
The Role
Valar Atomics is seeking Senior Nuclear I&C Hardware Engineers to own the plant design and application of nuclear instrumentation for our high temperature gas-cooled reactor program. The role covers neutron flux detection, radiation monitoring, reactor protection system sensors and signal chains, and process instrumentation in nuclear service, applied through instrument selection and specification, signal chain and installation design, cabling and grounding, environmental and radiation qualification, and commissioning. The focus is application of vendor-supplied instrumentation in plant design, not instrument or detector development. This is a senior position: you will own nuclear instrumentation scope end-to-end, from instrument selection and signal chain design through installation design, qualification, and commissioning, and provide technical direction to vendors, contractors, and junior engineers.
Key Responsibilities
- Select, specify, and analyze neutron flux detection hardware including fission chambers, ion chambers, and proportional counters across source, intermediate, and power range instrumentation, including range overlap, sensitivity, and cable and environment constraints.
- Design and analyze nuclear instrumentation signal chains end-to-end: detector biasing, preamplifier selection and placement, pulse, fluctuation (Campbell/MSV), and current mode processing, cable selection and length effects, termination, and noise and grounding practice.
- Apply detector physics neutron interactions, detector response, gamma discrimination, activation, and radiation transport — to instrument selection, placement, and shielding decisions, in coordination with reactor physics and shielding analysts.
- Select and specify radiation monitoring instrumentation including area monitors, process and effluent monitors, and health physics instrumentation, including range, response, and regulatory basis.
- Specify process instrumentation in nuclear service temperature, pressure, flow, and level for the primary helium loop and supporting systems — including environmental compatibility, materials, and qualification implications of high-temperature helium service.
- Produce and own instrumentation engineering documentation including instrument data sheets, specifications, loop diagrams, I/O lists, block diagrams, and installation details.
- Develop instrument installation and physical integration design instrument locations, thermowells and penetrations, junction boxes, cable and MI cable routing, and physical separation in coordination with electrical designers and mechanical and piping engineers.
- Lead environmental and radiation qualification for assigned equipment: qualification plans, application service condition definition, review and acceptance of vendor qualification test reports and analyses, thermal and radiation aging analysis, and qualification documentation consistent with IEEE 323 and IEEE 344 methodologies.
- Execute reactor protection system hardware scope including sensor selection, redundancy and voting architecture input, channel independence and separation considerations, setpoint analysis input, and response time analysis and testing.
- Plan and lead integration and verification test programs including channel bring-up and integration, receipt verification, cable and connector testing, and data acquisition; own test procedures, data quality, and test reports.
- Lead factory and site acceptance testing, calibration, loop checking, and commissioning of nuclear instrumentation.
- Diagnose and resolve instrumentation problems including noise, grounding, cable, and signal integrity issues; perform root cause analysis and document corrective actions.
- Prepare procurement technical packages for nuclear instrumentation; evaluate vendor proposals against specifications; review vendor documentation, test reports, and quality records.
- Coordinate with reactor physics and nuclear safety engineers on detector placement, expected flux and dose environments, and instrument range and accuracy requirements; coordinate with I&C software and electrical engineers on signal interfaces and power supplies.
- Apply nuclear I&C codes and standards including IEEE 603, IEEE 497, IEC 61513, and applicable NRC regulatory guidance to design and documentation, and support licensing deliverables drawing on instrumentation content.
- Mentor junior engineers on detector physics, signal chain design, and test practice; provide technical direction to vendors and contractors on nuclear instrumentation scope.
- Maintain disciplined engineering records consistent with nuclear quality requirements, ensuring traceability of design decisions, analyses, and test results.
Basic Qualifications
- Bachelor's degree in Nuclear, Electrical, Computer, or Mechanical Engineering, or a closely related discipline.
- 5+ years of experience in radiation detection systems, nuclear instrumentation, or precision analog instrumentation and measurement systems.
- Hands-on experience with radiation detectors (fission chambers, ion chambers, proportional counters, scintillators, or similar) and their signal chains, including detector electronics, biasing, and low-level signal measurement.
- Demonstrated ability to design or analyze analog measurement chains, including reasoning quantitatively about noise, grounding, shielding, cable effects, and signal integrity.
- Experience planning and leading integration, verification, or commissioning test work, including test procedure development, instrumentation setup, and formal test reporting.
- Strong grounding in nuclear physics fundamentals — neutron interactions, fission, decay, and radiation detection principles.
- Working knowledge of nuclear I&C codes and standards (IEEE 603, IEEE 497, IEC 61513, or equivalent), or a demonstrated record of rapidly working within rigorous standards frameworks in an adjacent high-assurance field.
- Ability to read and interpret P&IDs, electrical schematics, loop diagrams, and instrument data sheets.
- Experience producing engineering documentation — specifications, data sheets, test procedures, and reports — under formal review and configuration control.
Preferred Skills and Experience
- Professional Engineer (PE) license.
- Advanced degree (MS or PhD) in nuclear engineering, physics, or a related field.
- Experience with wide-range neutron flux channels, including pulse/Campbell/current mode operation and range overlap design.
- Experience with environmental and radiation qualification programs (IEEE 323/344), including aging analysis and qualification testing.
- Experience with reactor protection system instrumentation, setpoint methodology (ISA-67.04 or equivalent), or response time testing.
- Experience with mineral-insulated cable, high-temperature instrumentation, or instrumentation for harsh or high-radiation environments.
- Experience at a research reactor, national laboratory, operating nuclear plant, or reactor developer.
- Familiarity with radiation transport or reactor physics codes (MCNP, Serpent, OpenMC, SCALE, or equivalent).
- Familiarity with nuclear quality programs (NQA-1, 10 CFR 50 Appendix B) as applied to design, procurement, and test records.
- Experience with data acquisition systems and Python or MATLAB for test data analysis.
What We Offer
- Competitive base salary
- Equity ownership in a rapidly growing advanced energy company
- Comprehensive medical benefits
- Unlimited PTO
- Free daily lunch and dinner provided onsite
- Generous PPE stipend
- High-impact startup environment with significant ownership and autonomy
- Opportunities for rapid career growth and internal advancement
- Direct collaboration with experienced operators, engineers, and industry leaders
- The opportunity to help build and scale transformative energy technology from the ground up
Equal Employment Opportunity Statement
Valar Atomics is an equal opportunity employer. We consider all qualified applicants without regard to race, color, religion, sex, gender identity, sexual orientation, national origin, age, disability, veteran status, or any other protected status under applicable law.
We are committed to providing a workplace free of discrimination and harassment and will provide reasonable accommodation as required by law.
Applicants must be legally authorized to work in the United States as a U.S. citizen or lawful permanent resident (green card holder).
Salary$144,000—$176,000 USDDescription as published by Valar Atomics.