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Remote Radiation Engineer Jobs in Virginia (NOW HIRING)

Principal Electrical Systems Engineer

Herndon, VA ยท On-site +1

$142K - $174K/yr

... remote sensing technologies for demanding spaceflight applications. This position is ideal for an ... Experience with radiation-tolerant, radiation-hardened, or other high-reliability electronics ...

Working knowledge of hardware development for harsh environments (radiation tolerance, thermal ... Our positions are based in Reston, Virginia, with much of our team operating in a hybrid or remote ...

NDE Technician VT Level III

Lynchburg, VA ยท Remote

$17.50 - $23.50/hr

This is a full-time direct-hire Office Based/Remote assignment with our client. This position ... From engineering and manufacturing heavy components to advanced digital and I&C solutions, our ...

$125K - $172K/yr

... or engineering groups. * May coordinate or lead customer and/or employee training courses. May ... Minimum of 2 years of Radiation Oncology Clinical Experience * Meets all Vendor Credentialing ...

$66K - $89K/yr

Annual TB testing * Healthcare training #Remote Who we are : We are a team of more than 72,000 ... developers, researchers, professionals, and skilled specialists, who believe in each individual ...

Remote Radiation Engineer information

What are Remote Radiation Engineers?

Remote Radiation Engineers are professionals who specialize in analyzing, testing, and mitigating the effects of radiation on electronic systems, often for industries such as aerospace, defense, or nuclear power. Working remotely, they use advanced simulation tools and collaborate with onsite teams to ensure systems remain operational and safe in radiation-prone environments. Their responsibilities may include designing radiation-hardened components, conducting virtual assessments, and developing protection strategies, all while working from a remote location.

What is the difference between Remote Radiation Engineer vs Remote Medical Physicist?

AspectRemote Radiation EngineerRemote Medical Physicist
Required CredentialsBachelor's or Master's in Engineering, certifications in radiation safetyMaster's or Doctorate in Medical Physics, board certification (ABR)
Work EnvironmentEngineering firms, energy companies, research labsHospitals, clinics, healthcare facilities
Industry UsageEnergy, nuclear, aerospace sectorsHealthcare, radiation therapy centers
Common Search/ComparisonYesNo

Remote Radiation Engineers focus on designing and maintaining radiation systems in energy and industrial sectors, often requiring engineering credentials. Remote Medical Physicists specialize in radiation safety and treatment planning within healthcare, requiring medical physics certifications. While both roles involve radiation, their work environments and credentials differ significantly, making them distinct career paths.

What are some unique challenges faced by Remote Radiation Engineers, and how can they effectively collaborate with on-site teams?

Remote Radiation Engineers often face challenges such as limited direct access to physical equipment and the need to interpret data without being on-site. To overcome these obstacles, it is essential to maintain clear and frequent communication with on-site teams, often using video conferencing tools, shared documentation, and remote monitoring systems. Building strong relationships with on-site staff and leveraging digital collaboration platforms can help ensure that all safety protocols are followed and that engineering solutions are accurately implemented. Being proactive in seeking feedback and clarifying uncertainties with colleagues helps maintain high-quality results, even from a distance.

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

To thrive as a Remote Radiation Engineer, you need a solid background in electrical or nuclear engineering, knowledge of radiation effects, and a relevant engineering degree. Familiarity with simulation tools like SPICE, radiation testing equipment, and understanding industry standards such as MIL-STD-883 are typically required. Strong analytical thinking, attention to detail, and effective remote communication skills help you excel in cross-functional teams and solve complex problems. These abilities are crucial to ensure the reliability and safety of electronic systems exposed to radiation, often in aerospace or medical contexts.
What are the most commonly searched types of Radiation Engineer jobs in Virginia? The most popular types of Radiation Engineer jobs in Virginia are:
What job categories do people searching Remote Radiation Engineer jobs in Virginia look for? The top searched job categories for Remote Radiation Engineer jobs in Virginia are:
What cities in Virginia are hiring for Remote Radiation Engineer jobs? Cities in Virginia with the most Remote Radiation Engineer job openings:
Principal Electrical Systems Engineer

Principal Electrical Systems Engineer

TalentRemedy

Herndon, VA โ€ข On-site, Remote

$142K - $174K/yr

Full-time

Posted 19 days ago


Job description

We are seeking a Principal Electrical Systems Engineer to join our Herndon, VA team and lead the development of advanced electro-optical and laser-based systems supporting NASA, DoD, and commercial space missions. In this role, you will serve as the technical lead for the electrical architecture of complex aerospace systems, guiding programs from concept development through integration, test, qualification, and mission deployment. You will work closely with multidisciplinary teams of optical, mechanical, software, and systems engineers to develop next-generation laser, sensing, and remote sensing technologies for demanding spaceflight applications.

This position is ideal for an experienced engineer who enjoys solving challenging technical problems, defining system architectures, mentoring engineers, and helping transition advanced research into operational aerospace systems. Responsibilities Lead the electrical architecture, design, and technical execution of complex electro-optical, laser, and sensing systems for spaceflight and defense applications. Define system-level electrical requirements, interfaces, performance budgets, and verification strategies.

Provide technical leadership for the development of high-reliability electronics, including power systems, control electronics, data acquisition systems, signal conditioning, and system interconnects. Lead electrical subsystem integration activities and ensure successful interface compatibility across multidisciplinary systems. Lead system integration, verification, validation, troubleshooting, and qualification activities.

Support customer interactions, technical proposals, design reviews, and program execution. Mentor and develop junior and mid-level engineers while helping establish engineering best practices. Participate in laboratory testing, environmental testing, and field demonstrations as required.

Support multiple concurrent R&D and production programs spanning NASA, DoD, and commercial space customers. Required Qualifications BSEE required; MSEE preferred. 15+ years of experience developing complex aerospace, defense, or spaceflight electrical systems.

Demonstrated experience serving as the technical lead, principal engineer, or system architect for complex electrical systems. Direct experience developing, integrating, testing, or qualifying electronics for spaceflight applications, including satellites, spacecraft, launch vehicles, scientific instruments, human-rated systems, or other high-reliability aerospace platforms. Strong background in system-level electrical architecture, integration, verification, troubleshooting, and qualification.

Experience with power distribution, control electronics, instrumentation, mixed-signal systems, and electrical interfaces. Experience working within multidisciplinary engineering teams and leading technical decision-making. Ability to work hands-on in laboratory environments and support system integration and test activities.

Preferred Qualifications MSEE or PhD in Electrical Engineering. Experience supporting NASA, DoD, NRO, SDA, Space Force, or commercial space programs. Experience with radiation-tolerant, radiation-hardened, or other high-reliability electronics technologies.

Familiarity with spaceflight design standards, mission assurance processes, and environmental qualification testing. Experience with electro-optical systems, laser systems, remote sensing, or LIDAR technologies. Experience leading technical teams and mentoring engineers.

Active security clearance or ability to obtain one.