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Rf Engineer Jobs in Provo, UT (NOW HIRING)

The ideal candidate brings strong RF engineering experience, familiarity with ICD-705 requirements, and the ability to support RF/TEMPEST-related testing in sensitive government environments.

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

RF subsystem engineers collaborate with missile level system engineers in developing requirements for the subsystem. They perform evaluation and modeling to decompose requirements for RF sub ...

RF subsystem engineers collaborate with missile level system engineers in developing requirements for the subsystem. They perform evaluation and modeling to decompose requirements for RF sub ...

Our engineers develop advanced technologies that create a safer, more secure world. The Effector RF Design (ERFD) Department is the engineering organization responsible for the design and technical ...

Hardware Engineering provides RF expertise to develop RF & Radar solutions across the Raytheon portfolio. We are seeking a Senior RF Product Engineer to support the development of complex Radio ...

The Effector RF Team at Raytheon is seeking a talented Senior Engineer to join our team in Tucson, AZ. The candidate will be responsible for contributing to the analysis, design, and implementation ...

The Effector RF Design Team at Raytheon is seeking a talented Senior Engineer to join our team in Tucson, AZ. The candidate will be responsible for providing innovative design solutions for the ...

Technical oversight responsibilities for less-senior engineers * Working across domains on complex projects * Architecting and requirements definition for complex RF products * Team leadership ...

The Effector RF Design Department is seeking talented engineers with the skills and passion to develop complex Radio Frequency (RF) systems, subsystems and components, including antennas, RF circuit ...

Technical oversight responsibilities for less-senior engineers * Working across domains on complex projects * Architecting and requirements definition for complex RF products * Team leadership ...

RF and electromagnetic theory Qualifications We Prefer * Master's degree in electrical or computer engineering with a focus in digital communications, communications systems design, data link ...

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Rf Engineer information

See Provo, UT salary details

$35K

$111.3K

$173.1K

How much do rf engineer jobs pay per year?

As of Aug 4, 2026, the average yearly pay for rf engineer in Provo, UT is $111,321.00, according to ZipRecruiter salary data. Most workers in this role earn between $92,200.00 and $131,500.00 per year, depending on experience, location, and employer.

What does an RF engineer do?

A radio frequency (RF) engineer's primary responsibilities are to collect data, research radio frequency, and analyze gathered information to improve radar design. Your duties have you working with intelligence sensors, surveillance radars, cellular components, over-the-horizon radar, and radio waves. You design modules and switches to improve how the electronics transmit and perform surveys and installations. You take measurements of electromagnetic emissions, install equipment, test your designs, and troubleshoot and debug to improve the radio frequency and speed. RF engineers often coordinate with technicians and other engineers to cover multiple data sites.

Is RF engineering in demand?

RF engineering is in demand due to the growth of wireless communication, 5G networks, and satellite technology. RF engineers with skills in signal processing, antenna design, and proficiency with tools like MATLAB and RF simulation software are sought after across telecommunications, defense, and aerospace industries.

What is the difference between Rf Engineer vs Wireless Communications Engineer?

AspectRf EngineerWireless Communications Engineer
Required CredentialsBachelor's in Electrical Engineering, RF certificationsBachelor's in Electrical/Communications Engineering, RF certifications
Work EnvironmentDesign, testing, and optimization of RF systemsDevelopment and deployment of wireless communication systems
Industry UsageTelecom, aerospace, defenseTelecom, mobile networks, IoT

RF Engineers focus on designing and testing RF components and systems, while Wireless Communications Engineers work on developing and implementing wireless network solutions. Both roles require similar technical skills and certifications, often overlap in industry applications, but differ in their specific focus areas within wireless technology.

What are the key skills and qualifications needed to thrive as an RF engineer?

To thrive as an RF Engineer, you need a solid background in electrical engineering, RF circuit design, and signal processing, often supported by a relevant degree. Familiarity with tools such as spectrum analyzers, network analyzers, simulation software (like HFSS or ADS), and certifications such as FCC or amateur radio licenses are commonly required. Strong problem-solving skills, attention to detail, and effective teamwork help set top performers apart in this field. These skills and qualifications are crucial for designing, testing, and optimizing wireless communication systems to ensure reliable and efficient performance.

What is an RF engineer?

RF Engineers, or Radio Frequency Engineers, are professionals who design, implement, and maintain systems that transmit or receive radio waves. They work with wireless communication systems, including cellular networks, Wi-Fi, satellite, and broadcasting technologies. Their responsibilities include optimizing signal strength, troubleshooting interference issues, and ensuring regulatory compliance. RF Engineers use specialized software and testing equipment to analyze and improve network performance. They are essential in industries such as telecommunications, aerospace, and defense.

What are some typical challenges an RF engineer might face when working on wireless network deployments?

RF Engineers often encounter challenges such as signal interference, environmental obstacles, and fluctuating network demands. Dealing with interference from both internal and external sources requires careful planning, site surveys, and frequent optimization. Additionally, working in multidisciplinary teams with network architects, field technicians, and software engineers is common, requiring strong communication skills to coordinate solutions. Keeping up-to-date with evolving wireless standards and technologies is also essential for success in this role.
What cities near Provo, UT are hiring for Rf Engineer jobs? Cities near Provo, UT with the most Rf Engineer job openings:
Infographic showing various Rf Engineer job openings in Provo, UT as of July 2026, with employment types broken down into 91% Full Time, 7% Part Time, and 2% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $111,625 per year, or $53.7 per hour.

RF Engineer

CenCore LLC

Springville, UT โ€ข On-site

Full-time

Posted 14 days ago


Job description

Description
CenCore is seeking an experienced RF Engineer to support RF testing, technical analysis, SCIF build requirements, secure facility evaluations, and customer accreditation efforts. The ideal candidate brings strong RF engineering experience, familiarity with ICD-705 requirements, and the ability to support RF/TEMPEST-related testing in sensitive government environments.
Location Note: This position is based in Springville, UT. Aurora, CO and remote/hybrid options may be available for highly qualified candidates.
This role requires an adaptive, technically strong engineer who can respond quickly to RF testing needs, provide clear analysis, and support real-time customer requirements in high-visibility environments. The RF Engineer will work closely with CenCore's corporate TEMPEST and RF team, customer stakeholders, engineering teams, and senior leadership to develop courses of action and deliver effective RF solutions.
Key Responsibilities
  • Conduct RF testing, analysis, troubleshooting, and documentation in support of secure facility requirements and customer accreditation efforts.
  • Use RF test equipment to assess, analyze, and validate RF performance, vulnerabilities, emissions, and technical compliance concerns.
  • Support SCIF build efforts, secure facility design reviews, RF testing activities, and ICD-705-related requirements.
  • Provide timely technical response to RF testing needs driven by customer accreditation schedules and operational requirements.
  • Prepare technical reports, analysis summaries, test results, findings, and recommended courses of action for CenCore leadership and customer stakeholders.
  • Lead or support RF and TEMPEST-related technical discussions with internal teams, customers, and senior stakeholders.
  • Develop real-time technical solutions and recommendations to address RF-related issues during SCIF builds, inspections, testing events, and accreditation activities.
  • Coordinate with corporate TEMPEST and RF leadership to support testing plans, site assessments, corrective actions, and customer deliverables.
  • Travel to customer sites as required to perform RF testing, analysis, technical assessments, and accreditation support.
  • Support potential international travel requirements based on contract and mission needs.
  • Maintain professionalism, technical accuracy, discretion, and strong customer service in sensitive government and secure facility environments.

Requirements
Required Qualifications
  • Engineering degree required.
    • Experience with radio frequency and electromagnetic shielding highly preferred.
  • 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.
  • Experience as an RF Engineer or in a similar technical engineering role involving RF testing, RF analysis, signal analysis, or secure facility technical support.
  • Hands-on experience using RF test equipment, spectrum analyzers, signal generators, antennas, probes, receivers, and related diagnostic tools.
  • Strong understanding of RF theory, signal propagation, shielding, grounding, interference, emissions, and technical testing methodologies.
  • Experience supporting secure facility environments, SCIF builds, or accreditation-related technical requirements.
  • Knowledge of ICD-705 standards and secure facility construction/accreditation requirements.
  • Ability to interpret test results, identify technical risks, and communicate findings to technical and non-technical audiences.
  • Ability to brief senior leaders and customers clearly and professionally.
  • Strong written communication skills with the ability to produce detailed test reports, findings, and corrective action recommendations.
  • Ability to travel as required, including potential international travel.

Preferred Qualifications
  • Experience supporting government SCIF builds, ICD-705 accreditation, or secure construction projects.
  • TEMPEST, TSCM, RF shielding, or emanations security experience highly desired.
  • Experience leading RF/TEMPEST technical discussions with government customers.
  • Background working in government contracting, cleared facilities, intelligence community environments, or Department of Defense secure spaces.
  • Experience developing technical courses of action for urgent customer requirements.
  • Ability to operate independently in dynamic, high-pressure environments with minimal supervision.
  • Bachelor's degree in Electrical Engineering, RF Engineering, Electronics Engineering, Physics, or related technical discipline preferred; equivalent experience may be considered.

Knowledge, Skills, and Abilities
  • RF testing and technical analysis
  • Troubleshooting complex RF issues in secure facility environments
  • SCIF-related technical concerns, shielding, grounding, and secure construction requirements
  • Communication with senior leaders, government customers, engineers, construction teams, and accreditation stakeholders
  • Real-time problem solving in field environments
  • Technical documentation accuracy
  • Professional discretion and confidentiality in sensitive customer environments