1

Radiation Detector Engineer Jobs (NOW HIRING)

... scintillator-based radiation detector products, especially in medical imaging applications ... Vital Materials Engineering Center is in a 62,000 sq ft facility in Bowling Green, Ohio About Vital:

Detector materials research * Radiation detection technology * Advanced semiconductor process ... Ability to mentor scientists, engineers, and technical staff in detector physics, semiconductor ...

... engineering collaboration. RESPONSIBILITIES * Design and develop novel neutron and gamma radiation detectors for BWR, SMR and PWR nuclear reactors. * Analyze and model detector response, gas gain ...

Calibrator

Sweetwater, TX · On-site

$21 - $24.50/hr

Works closely with Production Control, Engineering, and Sales to ensure the product meets the ... Remains current on existing and emerging LMI radiation detector calibration procedures. * Perform ...

The Staff Systems Engineer will support the design, integration, productization, and production ... radiation detection systems for mobile search platforms, handheld and portable detector systems ...

Showing results 21-40

Radiation Detector Engineer information

See salary details

$81.5K

$118.4K

$161K

How much do radiation detector engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for radiation detector engineer in the United States is $118,363.00, according to ZipRecruiter salary data. Most workers in this role earn between $90,500.00 and $156,000.00 per year, depending on experience, location, and employer.

What does a radiation detector engineer do?

A Radiation Detector Engineer designs, develops, tests, and maintains devices that detect, measure, and analyze radiation levels. These professionals work with a variety of technologies, including scintillation counters, semiconductor detectors, and gas-filled detectors, to ensure accurate radiation detection in fields such as nuclear power, medical imaging, environmental monitoring, and homeland security. They also troubleshoot instruments, optimize performance, and may be involved in research to improve detector sensitivity and reliability.

What are the key skills and qualifications needed to thrive as a radiation detector engineer?

To thrive as a Radiation Detector Engineer, you need a strong background in physics, electrical engineering, or a related field, typically supported by a relevant bachelor's or master’s degree. Familiarity with radiation detection technologies, signal processing software, and safety standards—along with certifications like HAZWOPER or DOE Q Clearance—are often required. Strong analytical thinking, problem-solving abilities, and effective communication skills help engineers collaborate and troubleshoot complex systems. These skills ensure the safe and accurate design, implementation, and maintenance of radiation detection equipment critical for research, medical, and security applications.

What are some typical challenges a radiation detector engineer might face in daily work, and how are they addressed?

Radiation Detector Engineers often encounter challenges related to ensuring the accuracy and reliability of detection systems in complex environments, such as nuclear facilities or medical imaging centers. These challenges may include calibrating sensitive instruments, troubleshooting electronic components, and interpreting data from various radiation sources. To address these issues, engineers frequently collaborate with physicists, health and safety personnel, and technical staff to optimize detector performance, implement rigorous quality assurance protocols, and stay updated on emerging technologies and standards.

What is the difference between Radiation Detector Engineer vs Nuclear Instrumentation Engineer?

AspectRadiation Detector EngineerNuclear Instrumentation Engineer
CredentialsBachelor's in engineering, physics, or related field; certifications like NRC or ANSI often preferredSimilar degrees; certifications in nuclear safety and instrumentation
Work EnvironmentResearch labs, manufacturing facilities, field testing sitesNuclear power plants, research reactors, industrial facilities
Industry UsageDesign, testing, and calibration of radiation detection devicesDevelopment and maintenance of nuclear measurement and control systems

Both roles involve working with nuclear technology and instrumentation, but Radiation Detector Engineers focus on designing and testing radiation detection devices, while Nuclear Instrumentation Engineers work on broader nuclear measurement systems within nuclear facilities. They share similar credentials and work environments, often overlapping in industry applications.

What are popular job titles related to Radiation Detector Engineer jobs?

For Radiation Detector Engineer jobs, the most frequently searched job titles are:

Infographic showing various Radiation Detector Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 92% Full Time, 3% Part Time, and 4% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $118,363 per year, or $56.9 per hour.

Electrical Engineer

Bowling Green, OH • On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 16 days ago


Job description


The successful applicant will assume a key role in supporting the electronic development of the company's semiconductor and scintillator-based radiation detector products, especially in medical imaging applications.


Responsibilities:

  • Own electronic design on prototype and product development of radiation detection instruments and medical imaging systems.
  • Manage product electronics' schematics, layouts, and BOMs.
  • Communicate progress and achievement status to leadership, R&D partners, and others.


Skills and Experience:

A minimum of five years' experience in the following areas:


  • High-speed analog and digital circuit design.
  • Medical device and imaging system design, prototype, and development.
  • Schematic design to PCB layout.
  • Simulation software such as SPICE is highly desirable.
  • Signal conditioning and DSP skill is a plus.
  • FPGA/Embedded system design and firmware development is a plus.
  • Excellent oral and written communications skills.
  • A hands-on individual who works well in a team environment.
  • Bi-Lingual in Mandarin and English Strongly Preferred


Education:

Higher degree in electrical engineering or equivalent

Location:

Vital Materials Engineering Center is in a 62,000 sq ft facility in Bowling Green, Ohio

About Vital:

Vital Chemicals USA is a subsidiary of Vital Materials (www.vitalchem.com), a global materials technology and equipment company.

Established in 1995 and headquartered in China, Vital Materials has vertically integrated industrial and commercial operations located in Asia, Europe, North and South America, with over 6,000 employees worldwide.

We are an ISO9001 certified company, a global leader in R&D, sales and recycling of rare metals, and high-tech materials, devices, modules, and systems. Vital Materials has evolved rapidly since our founding. Our core competency is rare metals; we also focus on high growth/high-tech industries and applications including semiconductors, displays, electronics, photovoltaics, LED, acousto-optics, thermoelectrics, photosensors, radiation detectors, pharmaceuticals, feed additives, glass, ceramics, and metallurgy. We also produce custom manufacturing equipment for a variety of industries like the energy, semiconductor, and automotive industry, along with many others.

The starting location is in Bowling Green, Ohio. We have a 62,000 sq ft facility there, in which the Engineering Center will be based. Bowling Green is a small college town that is home to Bowling Green State University.

Benefits:

Vital Chemicals USA offers health, dental, and vision insurance along with a 401K matching plan, Paid Time Off, and a generous holiday schedule.

Salary:

Competitive salary commensurate with experience.

Other:

Applicants must be authorized to work for any employer in the U.S. We are unable to sponsor or take over sponsorship of an employment visa at this time.