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Rf Engineer Jobs in Utah (NOW HIRING)

Experience with system engineering of RF subsystems. * Experience with waveform simulations using modulations schemes such as: PSK, FSK, OFDM, and QAM. * Familiar with common RF impairments: Phase ...

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Rf Engineer information

See Utah salary details

$33.7K

$107.1K

$166.6K

How much do rf engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for rf engineer in Utah is $107,133.00, according to ZipRecruiter salary data. Most workers in this role earn between $88,800.00 and $126,500.00 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 are the most commonly searched types of Rf Engineer jobs in Utah? The most popular types of Rf Engineer jobs in Utah are:
What are popular job titles related to Rf Engineer jobs in Utah? For Rf Engineer jobs in Utah, the most frequently searched job titles are:
What cities in Utah are hiring for Rf Engineer jobs? Cities in Utah with the most Rf Engineer job openings:
What are popular job titles related to Rf Engineer jobs in UT? For Rf Engineer jobs in UT, the most frequently searched job titles are:
Infographic showing various Rf Engineer job openings in Utah as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $107,133 per year, or $51.5 per hour.

Sr. Principal Radar / RF Electrical Subsystems Engineer

Raytheon

Provo, UT

$131K - $160K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 25 days ago


Raytheon rating

9.1

Company rating: 9.1 out of 10

Based on 99 frontline employees who took The Breakroom Quiz

2nd of 536 rated manufacturers


Job description

Date Posted:

2026-05-13

Country:

United States of America

Location:

US-AZ-TUCSON-9022 ~ 9022 S Rita Rd ~ BLDG 9022

Position Role Type:

Onsite

U.S. Citizen, U.S. Person, or Immigration Status Requirements:

Active and transferable U.S. government issued security clearance is required prior to start date.​ U.S. citizenship is required, as only U.S. citizens are eligible for a security clearance​

Security Clearance Type:

DoD Clearance: Secret

Security Clearance Status:

Active and existing security clearance required on day 1

At Raytheon, the foundation of everything we do is rooted in our values and a higher calling to help our nation and allies defend freedoms and deter aggression. We bring the strength of more than 100 years of experience and renowned engineering expertise to meet the needs of today’s mission and stay ahead of tomorrow’s threat. Our team solves tough, meaningful problems that create a safer, more secure world.

The Advanced Effector Guidance Systems (AEGS) Department within Raytheon Hardware Engineering provides Electrical Systems Engineering to develop Electronic Systems solutions for products across the Raytheon portfolio. Our core electrical engineering responsibilities include architecture, requirements, integration, and test. Our core electrical engineering technologies include RF/RADAR, Navigation/IMU/GPS, Data Link/Communication, Digital, and Power. We partner with several Electrical Product Team departments that provide the detailed design of our electrical products as well as systems teams.

The Advanced Effectors Guidance Systems department is seeking a Sr Principal Radar / RF-focused Electrical Subsystems Engineer with deep experience in RF subsystem design, radar development, and RF seeker integration. This role emphasizes the architecture, modeling, design, and integration of advanced radar-based guidance subsystems and supporting RF front-end and back-end components. You will drive subsystem requirements, conduct performance modeling, and decompose radar and RF functional needs into implementable hardware architectures.

What You Will Do

  • Develop and architect radar and RF subsystem solutions, including front-end RF chains, antennas, high-speed digitizing paths, and signal-processing-critical interfaces.

  • Perform modeling, analysis, and simulation of RF and radar subsystem performance, including ultra-wideband (UWB) and high-power-density architectures.

  • Evaluate hardware designs, subsystems, and components for radar seekers and related RF systems.

  • Generate and document subsystem-level requirements, interface definitions, test plans, and verification artifacts.

  • Conduct technical peer reviews and serve as subject matter expert for radar/RF integration topics.

  • Support lab testing, field test events, and root-cause failure analysis for radar and RF subsystems.

  • Mentor junior engineers and contribute to technical excellence across the organization.

  • Collaborate regularly with program leadership, functional management, suppliers, and customers.

  • May support multiple programs simultaneously and travel domestically and internationally as required.

  • Build and leverage cross-functional networks to solve complex technical challenges.

Qualifications You Must Have

  • Typically requires a Bachelor’s degree in Science, Technology, Engineering, Mathematics (STEM) and 10 years of prior relevant experience (advanced degrees substitute per policy).

  • Experience with electrical hardware development.

  • Experience in developing RF electrical subsystems, radar hardware, or RF seeker architectures.

  • Experience in subsystem or systems engineering, requirement development, and validation.

  • RF Modeling experience in HFSS and/or CST.

  • Experience with high-power-density RF architectures and thermal/electrical trade-space management.

  • Experience with high-speed digitizing and high-bandwidth memory systems.

Qualifications We Prefer

  • Hands-on experience with missile radar or RF seeker subsystems.

  • Background in detailed design, troubleshooting, and integration of radar/RF components.

  • Experience or knowledge of adaptive radar resolution-improvement techniques.

  • Deep understanding of S-parameters and impedance-matching techniques.

  • Experience with systems engineering and architecture.

  • Experience working with missile systems or high-reliability products.

  • Knowledge of mixed-signal electronics.

  • Familiarity with ultra-wide-bandwidth microwave components and design approaches.

  • Ability to manage cross-functional teams and drive suppliers.

  • Strong understanding of thermal, electrical, and microwave physics dependencies.

  • Knowledge of DoD/DoW hardware development processes.

  • Experience with Model-Based Systems Engineering (MBSE).

What We Offer

Our values drive our actions, behaviors, and performance with a vision for a safer, more connected world. At RTX we value: Trust, Respect, Accountability, Collaboration, and Innovation.

This position is located in Tucson, AZ and is eligible for relocation assistance.

As part of our commitment to maintaining a secure hiring process, candidates may be asked to attend select steps of the interview process in-person at one of our office locations, regardless of whether the role is designated as on-site, hybrid or remote.

The salary range for this role is 132,400 USD - 251,600 USD. The salary range provided is a good faith estimate representative of all experience levels. RTX considers several factors when extending an offer, including but not limited to, the role, function and associated responsibilities, a candidate’s work experience, location, education/training, and key skills. Hired applicants may be eligible for benefits, including but not limited to, medical, dental, vision, life insurance, short-term disability, long-term disability, 401(k) match, flexible spending accounts, flexible work schedules, employee assistance program, Employee Scholar Program, parental leave, paid time off, and holidays. Specific benefits are dependent upon the specific business unit as well as whether or not the position is covered by a collective-bargaining agreement. Hired applicants may be eligible for annual short-term and/or long-term incentive compensation programs depending on the level of the position and whether or not it is covered by a collective-bargaining agreement. Payments under these annual programs are not guaranteed and are dependent upon a variety of factors including, but not limited to, individual performance, business unit performance, and/or the company’s performance. This role is a U.S.-based role. If the successful candidate resides in a U.S. territory, the appropriate pay structure and benefits will apply. RTX anticipates the application window closing approximately 40 days from the date the notice was posted. However, factors such as candidate flow and business necessity may require RTX to shorten or extend the application window.

RTX is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability or veteran status, or any other applicable state or federal protected class. RTX provides affirmative action in employment for qualified Individuals with a Disability and Protected Veterans in compliance with Section 503 of the Rehabilitation Act and the Vietnam Era Veterans’ Readjustment Assistance Act.

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