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Electromagnetic Engineer Jobs in Utah (NOW HIRING)

Description CenCore is seeking a Senior RF Engineer to support advanced electromagnetic systems, secure infrastructure development, RF testing, technical analysis, and customer accreditation efforts.

Lead, EMI/EMC Engineer

Salt Lake City, UT

$153K - $160K/yr

Collaborate with multidisciplinary engineering teams to ensure Electromagnetic Environmental Effects (E3/EMI/EMC) requirements are understood and integrated into product design, planning, testing ...

Perform modeling and analysis of link budgets, RF cascades, electromagnetic emissions (EME ... Experience interacting across engineering disciplines (e.g. Systems, Mechanical, SW, Algorithms ...

Senior Electrical Engineer

Salt Lake City, UT · On-site

$98K - $128K/yr

You are experienced with design-for-test (DFT), design-for-manufacturing (DFM), and electromagnetic ... Serve as primary engineer responsible for multiple subsystems within a design or a single subsystem ...

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Showing results 1-20

Electromagnetic Engineer information

See Utah salary details

$53.7K

$125K

$178.9K

How much do electromagnetic engineer jobs pay per year?

As of Aug 2, 2026, the average yearly pay for electromagnetic engineer in Utah is $125,002.00, according to ZipRecruiter salary data. Most workers in this role earn between $92,400.00 and $178,400.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the Electromagnetic Engineer position, and why are they important?

To thrive as an Electromagnetic Engineer, you need a strong background in physics, electromagnetics, mathematics, and electrical engineering, typically supported by a relevant degree such as a BSEE or MSEE. Familiarity with simulation tools like HFSS, CST, or COMSOL, as well as experience with lab instrumentation and standards compliance (such as FCC or IEEE), is important. Strong problem-solving skills, attention to detail, teamwork, and effective communication are essential soft skills. These competencies enable you to design, analyze, and troubleshoot complex electromagnetic systems while collaborating effectively and ensuring regulatory compliance.

What are some typical projects or tasks that an Electromagnetic Engineer might work on daily?

Electromagnetic Engineers often work on the design, modeling, and testing of components like antennas, sensors, or shielding for electronic devices. Their daily responsibilities can include using simulation software to predict electromagnetic behavior, conducting experiments in lab settings, troubleshooting interference issues, and ensuring that products meet regulatory standards. Collaboration with multidisciplinary teams—such as mechanical engineers, PCB designers, or project managers—is common, as is preparing technical reports to document findings. These tasks ensure that products perform reliably and safely in real-world electromagnetic environments.

What does an Electromagnetic Engineer do?

An Electromagnetic Engineer designs, analyzes, and troubleshoots systems involving electromagnetic fields, such as antennas, radar, wireless communication, and electromagnetic interference (EMI) control. They apply principles of physics and electrical engineering to develop solutions for industries like telecommunications, aerospace, defense, and automotive. Their work often involves simulations, testing, and compliance with industry standards to ensure optimal performance and safety of electromagnetic systems.

What are popular job titles related to Electromagnetic Engineer jobs in Utah? For Electromagnetic Engineer jobs in Utah, the most frequently searched job titles are:
What job categories do people searching Electromagnetic Engineer jobs in Utah look for? The top searched job categories for Electromagnetic Engineer jobs in Utah are:
What cities in Utah are hiring for Electromagnetic Engineer jobs? Cities in Utah with the most Electromagnetic Engineer job openings:
Infographic showing various Electromagnetic Engineer job openings in Utah as of July 2026, with employment types broken down into 69% Full Time, 30% Part Time, and 1% Contract. Highlights an 61% Physical, 2% Hybrid, and 37% Remote job distribution, with an average salary of $125,002 per year, or $60.1 per hour.

Senior RF Engineer

CenCore LLC

Springville, UT • On-site

Full-time

Posted 11 days ago


Job description

Description
CenCore is seeking a Senior RF Engineer to support advanced electromagnetic systems, secure infrastructure development, RF testing, technical analysis, and customer accreditation efforts. This role will support the development, modeling, testing, and integration of technologies for secure, rapidly deployable infrastructure supporting national security missions.
Location Note: Denver, CO is preferred for this position. Springville/Payson, UT and hybrid/remote options may be available for exceptionally qualified candidates.
The ideal candidate brings strong RF engineering experience, deep understanding of electromagnetic shielding and RF propagation, and the ability to translate complex engineering concepts into practical, manufacturable solutions. This position requires both technical depth and intellectual curiosity, with a focus on solving difficult engineering challenges in sensitive government and secure facility environments.
The Senior RF Engineer will work closely with CenCore's advanced engineering, RF/TEMPEST, manufacturing, operations, customer, and leadership teams to develop courses of action, improve shielding effectiveness, support secure facility requirements, and help define next-generation electromagnetic protection capabilities.
Key Responsibilities
Advanced Engineering & Applied Physics
  • Lead research, development, modeling, testing, and validation of advanced electromagnetic protection systems and RF shielding technologies.
  • Evaluate emerging RF, electromagnetic, cyber-physical, and technical surveillance threats and develop engineering solutions that anticipate future operational requirements.
  • Design, analyze, prototype, and validate shielding architectures, grounding approaches, conductive composites, advanced materials, and related electromagnetic systems.
  • Support product development for expeditionary SCIFs, SAPFs, containerized secure units, secure data centers, AI edge compute infrastructure, tactical command posts, and classified mission systems.
  • Apply advanced engineering principles to improve shielding effectiveness while reducing weight, complexity, cost, and deployment timelines.
  • Conduct RF testing, analysis, troubleshooting, and documentation in support of secure facility requirements, SCIF/SAPF builds, and customer accreditation efforts.
  • Use RF and electromagnetic test equipment to assess, analyze, and validate RF performance, vulnerabilities, emissions, signal leakage, waveguide performance, EMC/EMI concerns, and technical compliance issues.
  • Prepare technical reports, engineering analyses, test results, white papers, executive briefings, findings, and recommended courses of action for CenCore leadership and customer stakeholders.
  • Serve as a senior technical resource for advanced electromagnetic systems and collaborate across engineering, manufacturing, construction security, operations, and customer-facing teams.
  • Support installation, integration, field testing, customer demonstrations, technical exchanges, and operational field activities.
  • Mentor engineers, contribute to technical standards and roadmaps, and help foster a culture of innovation, collaboration, disciplined experimentation, and continuous improvement.
  • Travel to customer sites as required to perform RF testing, technical assessments, integration support, and accreditation-related activities.

Requirements
Required Qualifications
  • Bachelor's degree in Electrical Engineering, RF Engineering, Electromagnetic Engineering, Applied Physics, Physics, or a closely related engineering discipline.
  • Active TS/SCI clearance highly preferred
    • Candidates without an active clearance must be willing and able to undergo and maintain a security clearance.
  • U.S. Citizenship required; must provide a valid U.S. Passport Book or Passport Card.
  • Demonstrated expertise in RF engineering and electromagnetic systems, including both theoretical understanding and hands-on development or testing experience with electromagnetic shielding technologies.
  • Strong understanding of electromagnetic theory, RF propagation, shielding effectiveness, EMC, EMI, grounding and bonding, signal integrity, waveguide theory, antenna systems, and advanced electromagnetic materials.
  • Experience operating laboratory and field instrumentation such as vector network analyzers, spectrum analyzers, signal generators, oscilloscopes, RF receivers, near-field probes, and shielding effectiveness measurement equipment.
  • Experience solving complex engineering challenges using sound engineering principles, disciplined experimentation, and practical technical judgment.
  • Strong written and verbal communication skills, including the ability to communicate effectively with engineers, executives, government customers, manufacturing teams, and operational personnel.
  • Ability to prepare clear technical documentation, engineering analyses, briefings, test reports, findings, and corrective action recommendations.
  • Ability to travel as required, including potential international travel.

Preferred Qualifications
Experience with one or more of the following is highly desired:
  • Master's degree or Ph.D. in a related engineering, RF, electromagnetic, applied physics, or technical discipline.
  • TEMPEST engineering, EMSEC, TSCM, RF shielding, or emanations security experience.
  • ICD/ICS-705, secure facility accreditation, SCIF design, SAPF engineering, or secure construction experience.
  • MIL-STD-461, MIL-STD-464, IEEE EMC standards, or related electromagnetic compatibility standards.
  • Advanced shielding materials, conductive composites, computational electromagnetic modeling, additive manufacturing, or secure manufacturing.
  • Systems engineering, AI infrastructure, edge computing, government research and development programs, or Intelligence Community engineering experience.
  • Experience leading technical discussions with government customers, senior stakeholders, engineering teams, and manufacturing or operations teams.
  • Ability to operate independently in dynamic, high-pressure environments with minimal supervision.

Knowledge, Skills, and Abilities
  • RF testing, electromagnetic systems engineering, and technical analysis.
  • Advanced shielding design, grounding, bonding, RF propagation, EMC/EMI mitigation, signal leakage, and secure facility technical requirements.
  • Development of practical, manufacturable solutions from advanced engineering concepts.
  • Technical leadership across engineering, manufacturing, product development, operations, and customer-facing teams.
  • Real-time problem solving in laboratory, manufacturing, field, and customer environments.
  • Clear communication with senior leaders, government customers, engineers, construction teams, and accreditation stakeholders.
  • Technical documentation accuracy, professional discretion, and confidentiality in sensitive customer environments.