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Senior Rf Design Engineer Jobs in Tampa, FL (NOW HIRING)

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Mechanical Design Engineer Location: Clearwater, FL About the Opportunity [Confidential] is seeking ... Support senior engineers in preparing plans, designs, calculations, and technical reports. * Assist ...

We are hiring a Senior Roadway Design Engineer for a full service Civil Engineering firm to lead transportation infrastructure projects in the Tampa Bay metro area. This role serves as engineer of ...

We are hiring a Senior Roadway Design Engineer for a full service Civil Engineering firm to lead transportation infrastructure projects in the Tampa Bay metro area. This role serves as engineer of ...

We are hiring a Senior Roadway Design Engineer for a full service Civil Engineering firm to lead transportation infrastructure projects in the Tampa Bay metro area. This role serves as engineer of ...

Senior Electrical Design Engineer

Largo, FL · On-site

$88K - $119K/yr

The Senior Electrical Engineer is responsible for electrical analysis, detailed design, controls integration, and overall electrical performance of HVAC equipment, including air handlers, fan coils ...

Principal Electrical Test Engineer

Saint Petersburg, FL · On-site

$131K - $160K/yr

Working as part of a multidisciplinary engineering team, the Senior Electrical Test Engineer will ... Analog and digital electronics, RF design, Embedded hardware, Power distribution, Electrical system ...

Principal Electrical Test Engineer

Saint Petersburg, FL · On-site

$131K - $160K/yr

Working as part of a multidisciplinary engineering team, the Senior Electrical Test Engineer will ... Analog and digital electronics, RF design, Embedded hardware, Power distribution, Electrical system ...

World Wide Engineering & Innovation (WWEI) is seeking an exceptional Sr. Process Design Engineer to spearhead the development of next-generation sortation systems and procsses. This pivotal role will ...

World Wide Engineering & Innovation (WWEI) is seeking an exceptional Sr. Process Design Engineer to spearhead the development of next-generation sortation systems and procsses. This pivotal role will ...

Senior Rail Track Design Engineer

Tampa, FL · On-site

$98K - $135K/yr

... senior project managers and multidisciplinary teams. The Track and Civil Engineer will lead the planning, design, and delivery of rail and transit track infrastructure across the U.S. This role is ...

Showing results 21-40

Senior Rf Design Engineer information

See Tampa, FL salary details

$66.6K

$127.2K

$184.3K

How much do senior rf design engineer jobs pay per year?

As of Aug 17, 2026, the average yearly pay for senior rf design engineer in Tampa, FL is $127,178.00, according to ZipRecruiter salary data. Most workers in this role earn between $101,600.00 and $148,800.00 per year, depending on experience, location, and employer.

What is a senior RF design engineer?

Senior RF Design Engineers are experienced professionals who design, develop, and optimize radio frequency (RF) circuits and systems used in communication devices, radar, wireless networks, and other applications. They lead projects, solve complex technical issues, and often mentor junior engineers. Their work typically involves simulation, prototyping, testing, and ensuring compliance with industry standards. These engineers play a critical role in advancing wireless technology and supporting reliable, high-performance electronics.

What is the difference between Senior Rf Design Engineer vs RF Engineer?

AspectSenior RF Design EngineerRF Engineer
CredentialsBachelor's or Master's in Electrical Engineering, specialized in RF design, often with certifications like FCC or IEEEBachelor's degree in Electrical Engineering or related field, with some certifications optional
Work EnvironmentDesign labs, R&D departments, product development teamsField testing, system integration, troubleshooting in various environments
ResponsibilitiesLeading RF circuit design, simulation, and optimization; mentoring junior engineersImplementing RF systems, testing, and troubleshooting existing designs

The main difference is that Senior RF Design Engineers focus on advanced design, simulation, and leadership in RF projects, while RF Engineers typically handle implementation, testing, and troubleshooting. Senior roles require more experience and often involve guiding projects and teams.

What are the main challenges faced by senior RF design engineers during the product development cycle?

Senior RF Design Engineers often encounter challenges such as balancing performance with cost and manufacturability, mitigating interference and signal integrity issues, and ensuring compliance with regulatory standards. They may also need to troubleshoot complex integration problems when working with cross-functional teams in hardware, software, and testing. Staying updated with evolving technologies and adapting designs to meet tight project timelines are also common aspects of the role.

What are the key skills and qualifications needed to thrive as a senior RF design engineer, and why are they important?

To thrive as a Senior RF Design Engineer, you need advanced knowledge of RF circuit design, electromagnetic theory, and a degree in electrical engineering or a related field. Expertise in using simulation tools such as ADS, HFSS, or CST, as well as familiarity with PCB layout and test equipment, is typically required. Strong problem-solving, project management, and communication skills set top performers apart in this role. These skills are crucial for developing high-performance RF systems, meeting project deadlines, and effectively collaborating with multidisciplinary teams.

What cities near Tampa, FL are hiring for Senior Rf Design Engineer jobs?

Cities near Tampa, FL with the most Senior Rf Design Engineer job openings:

Infographic showing various Senior Rf Design Engineer job openings in Tampa, FL as of August 2026, with employment types broken down into 1% Internship, 84% Full Time, 10% Part Time, and 5% Contract. Highlights an 83% Physical, 5% Hybrid, and 12% Remote job distribution, with an average salary of $127,178 per year, or $61.1 per hour.

Senior Principal RF Antenna System Engineer

NCSL International

Saint Petersburg, FL • On-site

$120 - $150/hr

Other

Posted 11 days ago


Job description

Senior Principal RF Antenna Systems Engineer

The Defense Systems Group at Leidos has an immediate opening for a Senior Principal RF Antenna Systems Engineer at our St. Petersburg, FL facility and this position serves as a senior technical authority for 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, 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, beam‑forming 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, beam‑forming 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, null steering, interference mitigation, calibration techniques, and self‑healing array architectures.
  • Experience with distributed or networked array systems, hybrid analog/digital beam‑forming 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, 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).
Equal Opportunity Employer Statement

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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