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Radio Frequency Jobs in Florida (NOW HIRING)

We are currently seeking a Radio Frequency (RF Engineer) to work in an integrated process team environment, with technical responsibility for all the following, regarding RF/microwave/mmW hardware ...

We are currently seeking a Radio Frequency (RF Engineer) to work in an integrated process team environment, with technical responsibility for all the following, regarding RF/microwave/mmW hardware ...

Position Overview As an RF PCB Design Engineer at Orion Edge, you will own the physical realization of our radio frequency hardware. Every emitter, receiver, and signal chain we field begins as a ...

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Radio Frequency information

See Florida salary details

$4

$13

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How much do radio frequency jobs pay per hour?

As of Sep 2, 2026, the average hourly pay for radio frequency in Florida is $13.27, according to ZipRecruiter salary data. Most workers in this role earn between $12.88 and $13.65 per hour, depending on experience, location, and employer.

What is a radio frequency engineer?

Radio frequency (RF) engineers are professionals who design, implement, and maintain systems that use radio waves for communication, such as wireless networks, radios, cell phones, and radar. They work with a range of frequencies and are responsible for tasks like antenna design, signal propagation analysis, and minimizing interference. RF engineers are essential in industries like telecommunications, aerospace, and broadcasting, ensuring that devices and systems can reliably send and receive wireless signals.

What skills and qualifications are needed to thrive as a radio frequency engineer?

To thrive as a Radio Frequency (RF) Engineer, you need a strong background in electrical engineering, RF circuit design, signal processing, and electromagnetic theory, often supported by a relevant degree. Proficiency with simulation tools like HFSS, ADS, and network analyzers, as well as certifications such as FCC licenses, is typically required. Effective problem-solving, attention to detail, and communication skills set top professionals apart in this field. These competencies ensure reliable RF system design and troubleshooting, which are crucial for maintaining performance and compliance in telecommunications and wireless industries.

What are common challenges faced by professionals working in radio frequency engineering roles?

One of the main challenges RF engineers face is troubleshooting signal interference and ensuring the reliable performance of wireless systems, especially in environments with numerous competing signals. Additionally, adapting to rapidly evolving technologies and standards requires ongoing learning and flexibility. RF engineers often collaborate closely with hardware, software, and network teams, so effective communication and problem-solving skills are essential. Balancing regulatory compliance with innovation can also present unique hurdles in this role.

What is the difference between Radio Frequency vs Radio Frequency Technician?

AspectRadio FrequencyRadio Frequency Technician
Required CredentialsKnowledge of RF principles, certifications varyTechnical certifications, RF training, sometimes licenses
Work EnvironmentDesign, testing, and development in labs or officesInstallation, maintenance, and troubleshooting on-site
Employer & Industry UsageTelecommunications, aerospace, defenseTelecom companies, network providers, equipment manufacturers
Common Search & ComparisonUnderstanding RF conceptsRF technician roles and responsibilities

Radio Frequency refers to the broad field of wireless communication and RF technology, while Radio Frequency Technician is a specific role focused on installing, maintaining, and troubleshooting RF systems. The technician role requires practical skills and certifications, whereas RF knowledge encompasses a wider understanding of RF principles used in various industries.

How to become a radio frequency technician?

To become a radio frequency technician, individuals typically need a high school diploma or equivalent, followed by postsecondary education such as an associate degree or technical certification in electronics or telecommunications. Gaining hands-on experience through apprenticeships or entry-level positions and obtaining certifications like the FCC's Commercial Radio Operator License can enhance job prospects. Strong technical skills, knowledge of RF equipment, and safety awareness are essential in this field.

Is radio frequency engineering in demand?

Radio frequency engineering is in demand due to the ongoing expansion of wireless communication, telecommunications, and radar systems. Professionals in this field with skills in signal analysis, antenna design, and certifications like FCC licensing are sought after in industries such as defense, telecommunications, and aerospace.

What job categories do people searching Radio Frequency jobs in Florida look for?

The top searched job categories for Radio Frequency jobs in Florida are:

Infographic showing various Radio Frequency job openings in Florida as of August 2026, with employment types broken down into 1% As Needed, 69% Full Time, 26% Part Time, and 4% Contract. Highlights an 93% Physical, 3% Hybrid, and 4% Remote job distribution, with an average salary of $27,597 per year, or $13.3 per hour.

Radio Frequency (RF) Engineer

TRAK TECOM

Tampa, FL • On-site

Full-time

Re-posted 12 days ago


Job description

Description:

TRAK TECOM designs, builds, and delivers advanced RF electronic solutions and antenna systems for mission-critical performance across the aerospace and defense industry.
 

Our RF microwave and antenna solutions support Electronic Warfare (EW), Intelligence, Surveillance, and Reconnaissance (ISR), Radar, Positioning, Navigation, and Timing (PNT), Telemetry, Tracking, Command & Datalink, and Communications helping customers achieve reliability, resilience, and high performance in the harshest operating environments.


We are currently seeking a Radio Frequency (RF Engineer) to work in an integrated process team environment, with technical responsibility for all the following, regarding RF/microwave/mmW hardware: research, architecture trades, estimating recurring and non-recurring hardware and activities, analysis, proposals, selection, development, prototyping, verification, customer support, manufacturing support, and sustainment. U.S. Citizenship Required. U.S. Citizenship is required to obtain a Government security clearance.


Responsibilities:

  • Have technical responsibility for all aspects of the RF/microwave/mmW hardware within our products, inclusive of UHF through 40GHz
  • Participate in the entire product lifecycle for bespoke electronics modules, subsystems, and systems for the aerospace and defense market, including for RADAR, EW, SIGINT, comm, and satcom.
  • Work in an integrated process team (IPT) environment, along with program management, quality, manufacturing, supply chain, and other engineering disciplines
  • Perform all of the following activities for RF/microwave/mmW hardware: research, architecture trades, estimate recurring and non-recurring hardware and activities, analyze circuits, write technical proposals, select active and passive devices, design single layer substrates and single to multi-layer printed circuit boards, prototyping, verification, customer support, manufacturing support, and sustainment.
Requirements:

Technical Knowledge, Skills and Abilities:

Required:

  • Competent in RF linear and non-linear circuit simulation using Cadence AWR or ADS
  • Experience with 2.5D and 3D electromagnetic problems and simulation tools
  • Experience with multi-layer printed wiring boards (PWB) design and layout up to 20 GHz
  • Experience with single layer droids and ceramic layout up to 40GHz
  • Experience with chip & wire/bare die design, interconnect, and modeling of interconnect
  • Competent in analog DC, AC, and transient circuit simulation using SPICE or derivative
  • Competent in RF measurements and design validation procedures

Preferred:

  • Experience with MMIC development through 40GHz
  • Knowledgeable of system architecture and block diagram planning of up converters and down converters
  • Experience with RF system modeling using Cadence AWR VSS
  • Knowledgeable of frequency planning and mixer spurious analysis for up and down converters
  • Knowledgeable of phase noise requirements, cascaded phase noise performance, and connection to hardware implementation methods
  • Knowledgeable with millimeter-wave electronics through 100GHz
  • General knowledge of the requirements for and design of microwave sources, LNAs, SSPAs, mixers, filters, and synthesizers
  • SSPA design of at least 10W linear from C-band through Ka Band using GaN or GaAs devices

Experience: 5 to 10 years of progressively increasing experience and responsibility for hardware development through at least 20GHz


Education: Bachelor’s degree in electrical engineering (BSEE)


Travel: Up to 10 % required or as business needs require, predominately within continental U.S.


Security: U.S. citizenship required. U.S. citizenship is required to obtain a government security clearance.