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Space Radiation Effects Jobs (NOW HIRING)

From military defense and space exploration to biomedical engineering, lives often depend on the ... The Principal Radiation Effects Engineer will be integrated in the MDA Survivability Knowledge ...

Radiation Effects Engineer Department: Avionics Employment Type: Full Time Location: Redondo Beach ... space missions from low Earth orbit to mars. You'll work closely with electrical engineers, RF ...

Radiation Effects Engineer Department: Avionics Employment Type: Full Time Location: Redondo Beach ... space missions from low Earth orbit to mars. You'll work closely with electrical engineers, RF ...

Description As a Radiation Effects Engineer, your core responsibility will be to contribute to the component selection, design, testing, and delivery of flight hardware systems for space missions ...

Guide the derivation and distribution of in space environmental requirements. * Tailor industry ... Ensure the Radiation Effects team meets project deadlines and company objectives. * Foster a strong ...

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Space Radiation Effects information

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$951

$2K

$3.1K

How much do space radiation effects jobs pay per week?

As of Sep 9, 2026, the average weekly pay for space radiation effects in the United States is $2,016.25, according to ZipRecruiter salary data. Most workers in this role earn between $1,471.15 and $2,480.77 per week, depending on experience, location, and employer.

What are space radiation effects?

Space radiation effects refer to the impact that high-energy particles, such as cosmic rays and solar radiation, have on spacecraft electronics, materials, and human health in space. These effects can cause issues like single event upsets, component degradation, and increased cancer risk for astronauts. Understanding and mitigating space radiation effects is critical for the safety and reliability of space missions, especially those beyond Earth's protective atmosphere. Engineers and scientists use shielding, specialized materials, and advanced design techniques to reduce these risks.

What are the typical challenges faced by professionals working in space radiation effects, and how can they be addressed?

Professionals working in space radiation effects often face the challenge of predicting and mitigating the impact of cosmic and solar radiation on spacecraft electronic systems. This requires staying updated on the latest radiation testing methodologies, simulation tools, and evolving materials. Collaboration with multidisciplinary teams—such as spacecraft designers, materials scientists, and mission planners—is crucial for developing effective shielding and robust system architectures. Regularly engaging in industry conferences and research initiatives can help professionals stay ahead of emerging threats and solutions.

What are the key skills and qualifications needed to thrive as a Space Radiation Effects Engineer, and why are they important?

To thrive as a Space Radiation Effects Engineer, you need expertise in physics, electrical engineering, or a related field, with a solid understanding of radiation effects on electronic devices and materials. Familiarity with simulation tools like SPENVIS, radiation testing systems, and certifications in aerospace or radiation safety are typically required. Strong analytical thinking, problem-solving, and clear communication skills help you interpret complex data and collaborate with multidisciplinary teams. These skills ensure spacecraft systems are designed and tested to withstand harsh space environments, protecting mission success and hardware reliability.

What is the difference between Space Radiation Effects vs Spacecraft Systems Engineer?

AspectSpace Radiation EffectsSpacecraft Systems Engineer
Required CredentialsBachelor's or higher in physics, aerospace, or related fields; specialized training in radiation effectsBachelor's or higher in aerospace, electrical, or systems engineering; certifications in project management may be common
Work EnvironmentResearch labs, space agencies, or aerospace companies focusing on radiation impact studiesDesign, develop, and test spacecraft systems in labs and on-site at aerospace facilities
Industry UsagePrimarily in space research, satellite design, and space mission planningAcross satellite, spacecraft, and mission development industries

Space Radiation Effects specialists focus on understanding how radiation impacts spacecraft components, ensuring durability in space. Spacecraft Systems Engineers design and integrate the entire spacecraft system, including managing radiation considerations. Both roles are vital in space missions but differ in scope and focus.

What other helpful pages are available for Space Radiation Effects?

Other pages related to Space Radiation Effects:

Infographic showing various Space Radiation Effects job openings in the United States as of September 2026, with employment types broken down into 2% Internship, 89% Full Time, 5% Part Time, and 4% Contract. Highlights an 92% In-person, 4% Hybrid, and 4% Remote job distribution, with an average salary of $104,845 per year, or $50.4 per hour.

Senior Space & Radiation Effects Engineer, Amazon Leo

Redmond, WA • On-site

$150 - $200/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 3 days ago

New


Job description

Senior Space & Radiation Effects Engineer, Amazon Leo

Mentions AI-vibe coding as a preferred skill alongside Python and LabView, suggesting occasional use of AI-assisted tooling or scripting for analysis and automation.

About the Role

Senior Radiation Effects Engineer for Amazon Leo responsible for ensuring avionics and payload hardware reliability across a LEO satellite constellation by performing radiation analysis, component qualification, testing, and failure investigations to maintain on-orbit performance.

Job DescriptionRole

As a Senior Radiation Effects Engineer on the Amazon Leo team you will ensure avionics and payload hardware performance across a low Earth orbit satellite constellation by performing radiation analysis, defining test methods, qualifying components, and investigating on-orbit radiation events.

Key Responsibilities
  • Define, collect, and analyze TID, heavy ion, and proton test data to qualify components and build a component test database.
  • Determine system-level impacts of radiation-induced failures and lead root-cause analysis for on-orbit radiation events.
  • Qualify electronic components including microcontrollers, memory devices, FPGAs, and power management hardware.
  • Provide guidance to electrical design engineers on selection and use of radiation-sensitive components.
  • Develop processes, testing standards, and documentation practices for component and flight PCBA radiation tests.
  • Develop tools and dashboards to organize and visualize on-orbit events and test results.
  • Work with supply chain and component reliability teams and review PCN changes to maintain radiation qualification status.
RequirementsBasic Qualifications
  • Bachelor’s degree in Electrical Engineering or related field, or equivalent experience in electrical engineering.
  • 3+ years of experience in spaceflight avionics development, parts selection, and radiation testing.
  • 3+ years of system design and component qualification experience with radiation environments and radiation-tolerant hardware.
  • Demonstrated understanding of single-event effects (SEE) and total ionizing dose (TID) impacts on electronic systems.
  • Experience with one or more radiation environment modeling tools such as IRENE, OMERE, SIRE2, SPENVIS, OLTARIS, CREME96, SAPPHIRE, ESP, or PSYCHIC.
Preferred Qualifications
  • Advanced degree (Master’s or PhD) in Electrical Engineering, Computer Science, Mathematics, or Physics.
  • Experience with radiation transport codes (e.g., NOVICE, FASTRAD, SHIELDOSE2, GEANT4, MCNP).
  • Experience with NASA, defense, or commercial space programs and vehicle-level reliability models.
  • Experience with component selection, reliability assessment, and hardware troubleshooting (PCBA, ICs, sensors).
  • Familiarity with Python, LabView, or AI-vibe coding, and AWS tools such as S3 and DynamoDB.
Export Control Requirement

Due to export control laws, candidates must be a U.S. citizen or national, U.S. permanent resident (Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum.

Location & Compensation
  • Location: Redmond, Washington, USA.
  • Base salary range listed: 159,200.00 - 215,300.00 USD annually. Final compensation may include sign-on payments and restricted stock units (RSUs) and will vary with experience and location.
Benefits (summary)

Amazon offers comprehensive benefits including health insurance (medical, dental, vision), life and AD&D insurance, flexible spending accounts, employee assistance and mental health support, 401(k) matching, paid time off, parental leave, adoption and surrogacy reimbursement, and other standard benefits.

IRENE OMERE SIRE2 SPENVIS OLTARIS CREME96 SAPPHIRE ESP PSYCHIC NOVICE FASTRAD SHIELDOSE2 GEANT4 MCNP Python LabView AI-vibe coding AWS S3 DynamoDB

Skills

Radiation Effects Analysis Component Qualification System Design Data Analysis Test Planning and Execution Root Cause Analysis Technical Documentation Dashboarding and Visualization Cross-functional Collaboration Supply Chain Coordination Hardware Troubleshooting Reliability Engineering Leadership

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