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Rf Antenna Engineer Jobs in Florida (NOW HIRING)

Description The Defense Systems Group at Leidos has an immediate opening for a Senior RF / Antenna Engineer at our St. Petersburg, FL facility. This position supports the development, integration ...

The Defense Systems Group at Leidos has an immediate opening for a Senior RF / Antenna Engineer at our St. Petersburg, FL facility. This position supports the development, integration, and testing of ...

The Defense Systems Group at Leidos has an immediate opening for a Senior RF / Antenna Engineer at our St. Petersburg, FL facility. This position supports the development, integration, and testing of ...

Engineering Time Type: Full time Minimum Clearance Required to Start: TS/SCI Employee Type: Regular ... BSEE (MSEE desired) and minimum of 7 years of RF antenna design experience Experience in Antenna ...

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Rf Antenna Engineer information

See Florida salary details

$27.6K

$87.9K

$136.8K

How much do rf antenna engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for rf antenna engineer in Florida is $87,941.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,900.00 and $103,900.00 per year, depending on experience, location, and employer.

What is an RF antenna engineer?

An RF Antenna Engineer designs, develops, and tests antennas used in wireless communication systems, radar, and other RF applications. They analyze antenna performance, optimize designs for efficiency, and ensure compliance with industry standards. Their work involves simulation, prototyping, and testing in lab environments to enhance signal propagation and minimize interference. RF Antenna Engineers collaborate with cross-functional teams to integrate antennas into devices such as smartphones, satellites, and military systems.

What does an RF antenna engineer do?

A typical day for an RF Antenna Engineer involves designing and simulating antenna structures, conducting performance tests, troubleshooting issues, and optimizing designs based on project requirements. You may work closely with hardware engineers, system architects, and manufacturing teams to ensure seamless integration of new antenna designs into larger systems. Regular meetings to review project progress and cross-functional collaboration are common, often requiring strong documentation and presentation skills. Additionally, you’ll stay up-to-date with emerging technologies and industry standards to contribute innovative solutions. This dynamic role offers a balance of hands-on technical work and teamwork, providing ongoing learning and growth opportunities.

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

To thrive as an RF Antenna Engineer, you need a strong background in electromagnetic theory, antenna design, and RF circuit analysis, typically supported by a degree in electrical engineering or a related field. Familiarity with specialized software tools such as CST Microwave Studio, HFSS, and network analyzers is essential, along with relevant certifications like FCC or ETSI compliance knowledge. Strong analytical thinking, problem-solving abilities, and effective communication are key soft skills for collaborating with multidisciplinary teams and presenting technical findings. These skills are critical for developing reliable, high-performance antenna systems and successfully troubleshooting issues throughout the product lifecycle.

How much do RF antenna engineers make?

RF antenna engineers typically earn a median annual salary ranging from $70,000 to $120,000, depending on experience, education, and location. Senior roles or those with specialized skills in RF design, testing, and certification can earn higher salaries, often exceeding $130,000 annually.

How much does an RF antenna engineer earn?

The average salary for an RF antenna engineer typically ranges from $70,000 to $120,000 annually, depending on experience, location, and certifications. Senior engineers with specialized skills or working in high-demand areas can earn higher salaries, and the role often requires knowledge of RF design tools and testing equipment.

Is RF antenna engineering in demand?

RF antenna engineering is in high demand due to the growth of wireless communication, 5G networks, and satellite technology. Engineers in this field are needed to design, test, and optimize antennas and RF systems, often requiring knowledge of RF theory, simulation tools, and certifications. Job opportunities are available in telecommunications, aerospace, defense, and consumer electronics industries.

What are popular job titles related to Rf Antenna Engineer jobs in Florida?

For Rf Antenna Engineer jobs in Florida, the most frequently searched job titles are:

What job categories do people searching Rf Antenna Engineer jobs in Florida look for?

The top searched job categories for Rf Antenna Engineer jobs in Florida are:

Infographic showing various Rf Antenna Engineer job openings in Florida as of August 2026, with employment types broken down into 95% Full Time, 2% Part Time, and 3% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $87,941 per year, or $42.3 per hour.

Senior RF/Antenna Engineer

NCSL International

Saint Petersburg, FL • On-site

$120 - $170/hr

Other

Re-posted 14 hours ago


Job description

The Defense Systems Group at Leidos has an immediate opening for a Senior RF / Antenna Engineer at our St. Petersburg, FL facility. This position supports the development, integration, and testing of advanced RF and phased array antenna systems for mission‑critical defense applications.

In this role, you will contribute to the architecture, design, analysis, and integration of complex RF antenna systems supporting Department of Defense and national security customers. You will collaborate with multidisciplinary engineering teams and interface with systems engineering, program leadership, and customers to deliver innovative solutions for challenging operational environments.

The St. Petersburg facility specializes in the design, modeling and simulation, prototyping, integration, and testing of advanced electronic systems, with a focus on embedded communications systems, Software Defined Radios (SDR), phased array antenna systems, and secure RF architectures operating in contested and denied environments.

Key Responsibilities
  • Design, analyze, and optimize RF and antenna subsystems.
  • Perform electromagnetic simulations and validate performance through laboratory and field testing.
  • Support system architecture development and RF link analysis.
  • Develop antenna concepts and perform trade studies for performance, size, weight, and power constraints.
  • Conduct RF measurements, debugging, and performance characterization.
  • Support integration of RF hardware into larger system architectures.
  • Prepare technical documentation, test reports, and engineering presentations.
  • Collaborate with systems, mechanical, digital, and software engineering teams.
  • Participate in design reviews and technical assessments.
  • Support proposal efforts and customer technical discussions as needed.
Clearance Qualifications
  • U.S. Citizenship required.
  • Ability to obtain and maintain a Secret Security Clearance.
  • Willingness to work in classified laboratory environments and support secure development, integration, and test activities.
  • Ability to comply with all program‑specific security requirements, including handling of classified materials and controlled technical data (ITAR/EAR).
Basic Qualifications
  • Bachelor’s degree in Electrical Engineering, Electromagnetics, Physics, or related technical discipline with 4-8 years of relevant experience; OR
  • Master’s degree in Electrical Engineering, Electromagnetics, Physics, or related technical discipline with 2-6 years of relevant experience.
  • Strong understanding of RF and microwave engineering fundamentals.
  • Experience with antenna design, analysis, and testing.
  • Familiarity with electromagnetic simulation and modeling tools such as HFSS, CST, FEKO, ADS, or similar.
  • Experience with RF test equipment including VNAs, spectrum analyzers, signal generators, power meters, and oscilloscopes.
  • Knowledge of RF propagation, impedance matching, link budgets, and system‑level RF performance.
  • Ability to analyze technical data and troubleshoot RF system issues.
  • Strong written and verbal communication skills.
  • Ability to work effectively in a collaborative engineering environment.
  • U.S. citizenship required.
Preferred Qualifications
  • Experience supporting DoD, aerospace, defense, or government programs.
  • Experience supporting phased array or advanced antenna system development efforts.
  • Familiarity with planar or conformal array architectures and beamforming concepts.
  • Familiarity with antenna measurement techniques including near‑field and far‑field testing.
  • Proficiency with electromagnetic simulation and modeling tools such as HFSS, FEKO, CST, or equivalent, and familiarity with MATLAB or similar analysis tools.
  • Experience with phased arrays, beamforming, EW systems, radar systems, SATCOM, or tactical communications.
  • Familiarity with mutual coupling effects, scan performance, sidelobe control, and array calibration principles.
  • Experience designing wideband, multi‑band, or conformal antennas.
  • Knowledge of EMI/EMC principles and testing.
  • Experience with MATLAB, Python, or other scripting/analysis tools.
  • Familiarity with RF PCB design and microwave components.
  • Active Secret or Top Secret clearance preferred.
Commitment to Non-Discrimination

All qualified applicants will receive consideration for employment without regard to sex, race, ethnicity, age, national origin, citizenship, religion, physical or mental disability, medical condition, genetic information, pregnancy, family structure, marital status, ancestry, domestic partner status, sexual orientation, gender identity or expression, veteran or military status, or any other basis prohibited by law. Leidos will also consider for employment qualified applicants with criminal histories consistent with relevant laws.

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