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Remote Radiation Effects Engineer Jobs in Oregon

Location: Bellevue, WA / San Francisco, CA / Remote What You'll Do (Key Responsibilities ... Interest or experience in orbital mechanics, radiation-tolerant software design, or space-based ...

Fire Protection Engineer

$140K - $165K/yr

Multi-state Work Environment: Hybrid/Remote Preferred to be at Dudek office, remote is ... Mode and Effects Analysis (FMEA), modeling), designing suppression and detection systems ...

Senior Data Engineer

OR · On-site +1

$105K - $143K/yr

We're a remote-first, work-anywhere, and "yes - you should make time for that adventure/vacation ... You see the big picture and understand the cascading effects of your changes. Stays calm under ...

Principal Technical Artist, Games R&D - Tech Lab

OR · On-site +1

$126K - $151K/yr

... developer experience that enables developers to focus on the fun. The R&D Team Games Principal ... Create game assets - textures, models, shaders, and effects - that can ship in a real game with a ...

Remote Radiation Effects Engineer information

How does a Remote Radiation Effects Engineer typically collaborate with cross-functional teams to ensure component reliability in space applications?

As a Remote Radiation Effects Engineer, you will regularly collaborate with design engineers, test engineers, and project managers to assess and mitigate the impact of radiation on electronic components used in space. This often involves participating in virtual meetings to discuss design modifications, reviewing test data, and providing recommendations based on your analysis. Effective communication and documentation are key, as you'll be relied upon to clearly explain complex technical findings and coordinate with geographically dispersed teams to ensure mission-critical components meet reliability standards.

What are Remote Radiation Effects Engineers?

Remote Radiation Effects Engineers are professionals who analyze and mitigate the impact of radiation on electronic systems and materials, often for aerospace, defense, or nuclear applications. Working remotely, they use specialized software and simulations to assess how radiation affects various components, ensuring systems remain reliable in high-radiation environments like space. Their work may include testing, data analysis, and developing protective solutions, all while collaborating with teams virtually. This role typically requires expertise in physics, electrical engineering, or a related field, and familiarity with radiation effects standards and testing protocols.

What is the difference between Remote Radiation Effects Engineer vs Remote Nuclear Safety Engineer?

AspectRemote Radiation Effects EngineerRemote Nuclear Safety Engineer
Required CredentialsEngineering degree, radiation safety certificationsEngineering or nuclear safety certifications, safety training
Work EnvironmentResearch labs, aerospace, electronics industriesNuclear plants, safety compliance settings
Industry UsageElectronics, aerospace, defenseNuclear power, energy sectors

The Remote Radiation Effects Engineer focuses on analyzing how radiation impacts electronic components and materials, often in aerospace or electronics industries. In contrast, the Remote Nuclear Safety Engineer concentrates on ensuring safety protocols in nuclear facilities. While both roles require safety certifications and engineering expertise, their industries and specific responsibilities differ significantly.

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

To thrive as a Remote Radiation Effects Engineer, you need a solid background in electrical engineering, physics, or a related field, along with expertise in radiation effects on electronic components. Familiarity with simulation tools like SPICE, radiation testing protocols, and knowledge of standards such as MIL-STD-883 are typically required, and certifications in aerospace or nuclear industries can be advantageous. Strong analytical thinking, attention to detail, and effective remote communication skills are essential soft skills for success in this role. These competencies ensure accurate analysis, reliable testing, and smooth collaboration with distributed teams to guarantee the resilience of electronic systems in radiation-prone environments.
What are popular job titles related to Remote Radiation Effects Engineer jobs in Oregon? For Remote Radiation Effects Engineer jobs in Oregon, the most frequently searched job titles are:
Infographic showing various Remote Radiation Effects Engineer job openings in Oregon as of July 2026, with employment types broken down into 2% As Needed, 79% Full Time, 14% Part Time, and 5% Contract. Highlights an 91% Physical, 1% Hybrid, and 8% Remote job distribution.

Distinguished Engineer / Technical Fellow

Armada

OR • Remote

Other

Medical, Dental, Vision, Retirement, PTO

Re-posted 20 days ago


Job description

About the Role

As a Distinguished Engineer / Technical Fellow, you will be the primary architect of Armada's long-term technical vision. This is a "builder-leader" role for a world-class technologist who possesses a deep, fundamental understanding of data center architecture, high-density compute, and massive-scale AI infrastructure. You will solve the most difficult technical hurdles across our core product suite while leading the R&D for "Next Horizon" projects, such as Data Centers in Space. Beyond internal development, you will act as a key technical diplomat, collaborating with our most strategic industry partners to design deep-tech solutions that deepen Armada's product adoption and expand our reach into entirely new frontiers.

Location: Bellevue, WA / San Francisco, CA / Remote

What You'll Do (Key Responsibilities)

  • Architecting the Universal Edge: Lead the evolution of the Armada Edge Platform (AEP), ensuring seamless orchestration of compute and AI workloads across globally distributed, high-latency, and disconnected environments.
  • Next Horizon Projects: Drive the architectural roadmap for visionary initiatives, including Data Centers in Space. This involves adapting the Armada stack for orbital compute modules and solving for the unique challenges of Low Earth Orbit (LEO)-including radiation-tolerant software, thermal management, and power-constrained AI processing.
  • Strategic Partner Engineering: Work directly with elite industry partners to co-design solutions that integrate Armada's technology deeper into their global ecosystems. You will ensure our platform becomes the standard infrastructure for compute, whether terrestrial or orbital.
  • Technical Strategy: Partner with Company Leadership to define the 3-5 year technical roadmap, identifying emerging technologies in high-density GPU orchestration and orbital data processing that align with our long-term business goals.
  • Hard-Problem Solver: Act as the final point of escalation for complex architectural challenges involving real-time data streaming, computer vision, and network-aware workload distribution.
  • Innovation & R&D: Lead Proof-of-Concepts for next-generation capabilities, such as in-orbit inference, adaptive learning at the edge, and secure Earth-to-space data orchestration.
  • Mentorship: Elevate the entire engineering organization by mentoring Staff and Principal engineers, fostering a culture of high-performance engineering and architectural rigor.

Required Qualifications:

  • Core Infrastructure Mastery: Deep understanding of Data Center operations, Compute architectures (CPU/GPU/NPU), and AI Infrastructure at scale. You should understand the full stack from silicon to the orchestration layer.
  • Experience: 15+ years of software engineering experience, with a proven track record as a Distinguished Engineer, Fellow, or equivalent senior technical leader at a major infrastructure or AI company.
  • Distributed Systems Mastery: Expert-level knowledge of distributed systems and data storage in resource-constrained, remote, or "denied" environments.
  • Systems Programming: Mastery of Go, C++, or Rust, with a deep understanding of how software interacts with physical compute hardware and non-terrestrial networking layers.
  • Ecosystem Influence: Proven ability to work across company lines with partners to build "1+1=3" technical solutions that drive adoption and industry standards.

Preferred Qualifications:

  • Deep understanding of networking stacks, specifically optimization for satellite and terrestrial mesh networks.
  • Interest or experience in orbital mechanics, radiation-tolerant software design, or space-based communication protocols.
  • Experience building "Day 2" operations for fleets of thousands of remote, distributed devices in harsh environments.

Compensation

For U.S. Based candidates: To ensure fairness and transparency, the starting base salary range for this role for candidates in the U.S. are listed below, varying based on location experience, skills, and qualifications.

In addition to base salary, this role will also be offered equity and subsidized benefits (details available upon request).

Benefits

  • Competitive base salary and equity
  • Medical, dental, and vision (subsidized cost)
  • Health savings accounts (HSA), flexible spending accounts (FSA), and dependent care FSAs (DCFSA)
  • Retirement plan options, including 401(k) and Roth 401(k)
  • Unlimited paid time off (PTO)
  • 14 paid company holidays per year

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