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Principal Radiation Effects Engineer

Job in Fairfax, Fairfax County, Virginia, 22032, USA
Listing for: Trident
Full Time position
Listed on 2026-07-14
Job specializations:
  • Engineering
    Electronics Engineer, Test Engineer, Systems Engineer, Aerospace / Aviation / Avionics
Salary/Wage Range or Industry Benchmark: 113000 - 211000 USD Yearly USD 113000.00 211000.00 YEAR
Job Description & How to Apply Below

Principal Radiation Effects Engineer

At Trident Systems Space Electronic Systems (SES) division, we believe in the power of using strong engineering principles to drive innovation and solve complex problems. We foster a culture of rigorous engineering and continuous improvement, leveraging the full knowledge of our organization through collaborative product development processes that include design and peer reviews. We combine our expertise in space electronics with right‑sized development processes to create innovative, high‑performance space‑based electronic systems that meet our customers' evolving needs.

We are a mission partner supporting DoD, Intelligence Community, and Civil space customers. We develop complex, radiation‑effects‑mitigated designs that balance competing requirements in modern space programs, delivering cutting‑edge solutions that enable our customers to achieve more in space.

Position Summary

The Principal Radiation Effects Engineer will serve as the technical authority for radiation environment definition, analysis, mitigation, and verification across advanced aerospace and defense programs. As a senior member of the engineering organization, this individual will lead radiation effects strategy for complex, integrated electronic systems—spanning semiconductors, boards, sensors, avionics, and spaceborne platforms.

The successful candidate will leverage deep expertise in radiation physics and microelectronics reliability to guide design teams, assess mission environments, define test approaches, and ensure hardware survivability. Acting as both a hands‑on engineer and a cross‑functional leader, the Principal Radiation Effects Engineer will proactively identify radiation‑driven risks, manage component‑level and system‑level effects analyses, and partner with program management, design engineering, and suppliers to embed radiation resilience throughout the development lifecycle.

Duties

and Responsibilities Radiation Environment & Effects Analysis
  • Define product radiation environments (TID, SEE, displacement damage, dose rate, etc.) and perform system/component level effects assessments.
  • Model radiation transport and shielding effectiveness to inform system architecture decisions.
  • Perform worst‑case analysis, margin assessments, and susceptibility evaluations.
Mitigation Strategy Development
  • Recommend component selection, shielding strategies, circuit‑level hardening techniques, and system‑level architectural approaches.
  • Guide electronic design teams on layout, redundancy, error detection/correction, derating, and other resilience mechanisms.
Testing & Verification Leadership
  • Develop radiation test plans, including heavy ion, proton, neutron, gamma, X‑ray, and dose‑rate testing.
  • Coordinate with external radiation test facilities and oversee execution and data analysis.
  • Document results, maintain compliance evidence, and communicate performance impacts and required mitigations.
Cross‑Functional Technical Leadership
  • Partner with design engineering, suppliers, reliability teams, and program management to ensure radiation requirements are flowed down and met.
  • Identify risks early, recommend corrective actions, and support variance resolution.
  • Provide technical leadership reviews and serve as the subject‑matter expert during customer engagements.
Required Qualifications
  • Bachelor’s degree in Electrical Engineering, Physics, Nuclear Engineering, or related discipline (or equivalent experience).
  • Minimum 10 years of experience in radiation effects engineering for aerospace, space, or defense electronic systems.
  • Deep technical knowledge of TID, SEE, SEU, SEL, SET, DDD, and dose‑rate effects on microelectronics.
  • Proficiency in radiation modeling tools (e.g., GEANT4, MCNP, FASTRAD) and device‑level analysis methodologies.
  • Demonstrated experience developing and executing radiation test campaigns at accredited facilities.
  • Strong communication, leadership, and cross‑functional collaboration skills.
Preferred Qualifications
  • Experience with spaceborne electronics, rad‑hard design, FPGA radiation characterization, or microelectronics reliability.
  • Advanced degree (MS or PhD) in radiation physics, microelectronics…
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