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Antenna Test Engineer Jobs in Florida (NOW HIRING)

Senior Antenna and Radome Engineer

Orlando, FL

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

The Effector RF Design Antenna & Radome team at Raytheon is seeking a talented Engineer to join our ... Analyze simulation and test data to verify performance to requirements Qualifications You Must Have:

Senior Antenna and Radome Engineer

Miami, FL

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  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

The Effector RF Design Antenna & Radome team at Raytheon is seeking a talented Engineer to join our ... Analyze simulation and test data to verify performance to requirements Qualifications You Must Have:

Senior Antenna Design Engineer I

Melbourne, FL · On-site

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We are looking to add a Senior Antenna Design Engineer I to our team. The ideal candidate has ... test. Minimum of 4 years of experience with a Masters degree. More experienced candidates are also ...

Principal Electrical Engineer

Saint Petersburg, FL · On-site

$107K - $195K/yr

  • Medical

  • Retirement

  • PTO

Antenna systems * Wireless communications and networking * System integration and verification ... automated RF test equipment. * Experience supporting DoD acquisition programs, classified ...

Principal Electrical Engineer

Saint Petersburg, FL · On-site

$131K - $160K/yr

Collaborate with RF, digital, FPGA, embedded software, mechanical, systems, and test engineers to ... Antenna systems * Wireless communications and networking * System integration and verification

Showing results 21-40

Antenna Test Engineer information

See Florida salary details

$30.3K

$83.3K

$122.9K

How much do antenna test engineer jobs pay per year?

As of Aug 19, 2026, the average yearly pay for antenna test engineer in Florida is $83,323.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,800.00 and $103,900.00 per year, depending on experience, location, and employer.

What is an antenna test engineer?

Antenna Test Engineers are professionals who specialize in evaluating the performance of antennas and related wireless devices. They design and execute testing procedures to measure parameters like gain, radiation pattern, efficiency, and impedance using specialized equipment such as anechoic chambers and network analyzers. Their work ensures that antennas meet industry standards and function correctly within various communication systems. Antenna Test Engineers often collaborate with design teams to troubleshoot issues and suggest improvements based on test results.

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

To thrive as an Antenna Test Engineer, you need a strong background in electrical engineering, RF principles, and antenna theory, typically supported by a relevant engineering degree. Familiarity with test equipment like network analyzers, anechoic chambers, and simulation tools such as CST or HFSS is often required. Attention to detail, analytical thinking, and effective communication are standout soft skills for interpreting test data and collaborating with development teams. These skills ensure accurate antenna performance validation, efficient troubleshooting, and successful integration into complex systems.

What are some common challenges faced by antenna test engineers during measurement and validation processes?

Antenna Test Engineers often encounter challenges such as minimizing signal interference, accurately calibrating equipment, and ensuring measurements are consistent across different environments. Working in anechoic chambers or outdoor ranges can present logistical and technical hurdles, such as dealing with reflections, noise, or weather effects. Additionally, collaborating with design teams to interpret test data and provide actionable feedback is crucial for refining antenna performance. Addressing these challenges requires strong problem-solving skills, attention to detail, and effective communication with cross-functional teams.

What is the difference between Antenna Test Engineer vs RF Test Engineer?

AspectAntenna Test EngineerRF Test Engineer
Required CredentialsBachelor's in Electrical Engineering or related; knowledge of antenna theoryBachelor's in Electrical Engineering or related; expertise in RF systems
Work EnvironmentLaboratories, testing facilities, field testing sitesLaboratories, manufacturing, testing labs
Industry UsageTelecommunications, aerospace, defenseWireless devices, telecommunications, consumer electronics
Common Search IntentTesting antennas, antenna performance analysisTesting RF components, signal integrity

While both roles involve testing and analyzing radio frequency systems, the Antenna Test Engineer specializes in antenna performance and design, whereas the RF Test Engineer focuses on RF components and systems. Understanding these differences helps employers and professionals target the right skills and certifications for each role.

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

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

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

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

What cities in Florida are hiring for Antenna Test Engineer jobs?

Cities in Florida with the most Antenna Test Engineer job openings:

Infographic showing various Antenna Test Engineer job openings in Florida as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 11% Part Time, 3% Contract, and 1% Nights. Highlights an 93% Physical, 1% Hybrid, and 6% Remote job distribution, with an average salary of $83,323 per year, or $40.1 per hour.

Senior Principal RF Antenna System Engineer

Leidos

Saint Petersburg, FL • On-site

Full-time

Re-posted 26 days ago


Leidos rating

8.3

Company rating: 8.3 out of 10

Based on 152 frontline employees who took The Breakroom Quiz

79th of 492 rated business services


Job description

The Defense Systems Group at Leidos has an immediate opening for a Senior Principal RF Antenna Systems Engineer at our St. Petersburg, FL facility. This position serves as a senior technical authority and system architect supporting the development of advanced phased array antenna systems for mission-critical defense applications.

In this role, you will lead the architecture, design, analysis, integration, and fielding of complex RF antenna systems supporting Department of Defense and national security customers. You will provide technical leadership across multi-disciplinary engineering teams and serve as a key interface to customers, program management, and capture teams.

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 challenging and contested environments.

Primary Responsibilities:

  • Serve as the technical lead and subject matter expert for the architecture, design, analysis, integration, and production of advanced phased array antenna systems supporting mission-critical defense applications.
  • Lead and mentor a multi-disciplinary engineering team (RF, antenna, digital, mechanical, thermal, software) through concept development, modeling and simulation, hardware implementation, integration, and qualification testing.
  • Develop antenna system concepts in collaboration with customers and program leadership, translating mission needs into clear, traceable system requirements and performance specifications.
  • Lead requirements development, decomposition, allocation, and traceability to ensure system-level objectives are achieved across antenna, RF front-end, and supporting subsystems.
  • Conduct and oversee trade studies evaluating performance, cost, risk, manufacturability, scalability, and lifecycle supportability.
  • Provide technical oversight throughout design reviews (SRR, PDR, CDR), integration, verification and validation (V&V), and transition to production.
  • Guide electromagnetic modeling, array simulation, beamforming architecture development, and performance validation activities.
  • Develop and review technical documentation including system architectures, interface control documents, verification plans, test procedures, and qualification reports.
  • Identify emerging antenna and RF technologies, industry trends, and modernization opportunities to inform program strategy and innovation.
  • Support business development and capture efforts through white papers, technical proposals, RFI responses, and customer technical engagements.

Clearance Qualifications:

  • U.S. Citizenship required.
  • Ability to obtain and maintain a Secret Security Clearance.
  • Active Secret clearance strongly preferred.
  • Ability to obtain and maintain a Top Secret security clearance preferred.
  • 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, RF Engineering, or related discipline with 12-15+ years of relevant experience, or Master's degree with 10-13+ years of relevant experience in phased array or advanced antenna systems.
  • Extensive experience in the design, analysis, fabrication, integration, and test of complex phased array antenna systems, including planar, conformal (cylindrical/spherical), and other non-planar array geometries.
  • Deep understanding of array theory, beamforming techniques (analog, digital, hybrid), mutual coupling effects, scan loss, grating lobes, sidelobe control, and calibration methodologies.
  • Experience conducting near-field and far-field antenna measurements, including near-field to far-field transformation techniques and associated signal processing algorithms.
  • Proficiency with full-wave electromagnetic modeling and simulation tools such as HFSS, FEKO, CST, or equivalent, along with analytical and data processing tools such as MATLAB.
  • Demonstrated experience leading multi-disciplinary engineering teams (RF, digital, mechanical, thermal, manufacturing) and conducting formal technical design reviews (SRR, PDR, CDR, TIMs) with government customers.
  • Experience transitioning antenna designs from prototype through qualification and production, including manufacturability and integration considerations.
  • Working knowledge of system-level trade studies considering performance, cost, schedule, risk, and lifecycle supportability.
  • Strong written and verbal communication skills with demonstrated experience presenting complex technical material to customers and senior leadership.

Preferred Qualifications:

  • Advanced understanding of electromagnetic theory, phased array architectures, and RF/microwave system design, including system-level performance trade-offs and integration impacts.
  • Experience developing and implementing advanced phased array algorithms, including adaptive beamforming, digital beamforming (DBF), null steering, interference mitigation, calibration techniques, and self-healing array architectures.
  • Experience with distributed or networked array systems, hybrid analog/digital beamforming architectures, and real-time signal processing integration.
  • Hands-on experience operating in compact range, near-field, and far-field antenna measurement facilities, including development of test plans, calibration methodologies, and automated measurement scripts.
  • Proficiency with RF and microwave test equipment, including vector network analyzers (VNA), spectrum analyzers, RF power meters, signal generators, and phased array test systems.
  • Working knowledge of the RF spectrum and modern communications infrastructures, including signal structures, propagation environments, modulation schemes, bandwidth considerations, and multiplexing/demultiplexing techniques.
  • Experience supporting DoD radar, EW, SATCOM, SIGINT, or advanced communications programs.
  • Experience with manufacturability, producibility, and environmental qualification considerations (EMI/EMC, thermal, vibration).

If you're looking for comfort, keep scrolling. At Leidos, we outthink, outbuild, and outpace the status quo - because the mission demands it. We're not hiring followers. We're recruiting the ones who disrupt, provoke, and refuse to fail. Step 10 is ancient history. We're already at step 30 - and moving faster than anyone else dares.

Original Posting:February 23, 2026

For U.S. Positions: While subject to change based on business needs, Leidos reasonably anticipates that this job requisition will remain open for at least 3 days with an anticipated close date of no earlier than 3 days after the original posting date as listed above.

Pay Range:Pay Range $131,300.00 - $237,350.00

The Leidos pay range for this job level is a general guideline onlyand not a guarantee of compensation or salary. Additional factors considered in extending an offer include (but are not limited to) responsibilities of the job, education, experience, knowledge, skills, and abilities, as well as internal equity, alignment with market data, applicable bargaining agreement (if any), or other law.


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About Leidos

Sourced by ZipRecruiter

At Leidos, we deliver innovative solutions through the efforts of our diverse and talented people who are dedicated to our customers' success. We empower our teams, contribute to our communities, and operate sustainable practices. Everything we do is built on a commitment to do the right thing for our customers, our people, and our community.

Industry

It services

Company size

10,000+ Employees

Headquarters location

Reston, VA, US

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