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Entry Level Radio Frequency Engineer Jobs in Puerto Rico

PR · On-site

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Entry Level Radio Frequency Engineer information

What is an entry level radio frequency engineer?

An Entry Level Radio Frequency Engineer is responsible for assisting in the design, testing, and optimization of wireless communication systems. They work with senior engineers to analyze signal performance, troubleshoot RF issues, and ensure compliance with industry standards. Typical tasks include using simulation tools, conducting field tests, and optimizing antenna designs. This role is common in industries such as telecommunications, aerospace, and defense. It provides a foundation for career growth in RF engineering and wireless technology.

What are the typical daily responsibilities of an entry level radio frequency engineer?

As an Entry Level Radio Frequency Engineer, your daily tasks may include assisting in the design and testing of RF circuits, performing equipment measurements, documenting test results, and troubleshooting hardware or signal issues. You will often work closely with senior engineers and cross-functional teams to support larger project objectives and learn established testing procedures. Additionally, you may contribute to field testing, help calibrate RF equipment, and ensure systems meet performance targets. This hands-on role provides valuable exposure to practical engineering challenges and is a key stepping stone for advancing your RF engineering career.

What are the key skills and qualifications needed to thrive as an entry level radio frequency engineer?

To thrive as an Entry Level Radio Frequency Engineer, you need a solid understanding of RF principles, circuit analysis, and engineering fundamentals, usually supported by a degree in electrical engineering or a related field. Familiarity with industry-standard tools such as spectrum analyzers, network analyzers, MATLAB, and simulation software is highly valuable. Strong problem-solving skills, effective communication, and a willingness to learn are essential soft skills for this role. These abilities are critical for diagnosing technical issues, working collaboratively with multidisciplinary teams, and adapting to the fast-paced, evolving nature of RF engineering projects.

How much does an entry level radio frequency engineer earn?

Entry-level radio frequency engineers typically earn between $55,000 and $75,000 annually, depending on location, education, and certifications. Starting salaries may be lower in some regions but tend to increase with experience and specialized skills such as antenna design or signal analysis.

How to get into entry level radio frequency engineering?

To enter as an entry-level radio frequency engineer, candidates typically need a bachelor's degree in electrical engineering, telecommunications, or a related field. Gaining hands-on experience through internships, developing skills in RF design, testing, and using tools like spectrum analyzers, and obtaining certifications such as FCC licensing or RF-specific courses can improve job prospects.

Is entry level radio frequency engineering in demand?

Entry level radio frequency engineering is in demand due to the ongoing expansion of wireless networks, 5G technology, and telecommunications infrastructure. Employers seek candidates with knowledge of RF design, testing, and tools like spectrum analyzers, often requiring relevant certifications and a strong understanding of signal propagation. Job growth is expected as the industry continues to evolve and upgrade communication systems.

What are the most commonly searched types of Radio Frequency Engineer jobs in Puerto Rico?

The most popular types of Radio Frequency Engineer jobs in Puerto Rico are:

What are popular job titles related to Entry Level Radio Frequency Engineer jobs in Puerto Rico?

For Entry Level Radio Frequency Engineer jobs in Puerto Rico, the most frequently searched job titles are:

What job categories do people searching Entry Level Radio Frequency Engineer jobs in Puerto Rico look for?

The top searched job categories for Entry Level Radio Frequency Engineer jobs in Puerto Rico are:

Infographic showing various Entry Level Radio Frequency Engineer job openings in Puerto Rico as of August 2026, with employment types broken down into 93% Full Time, 3% Part Time, and 4% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution.

RF Systems Engineer, Antenna Fabrication and Test

ITERRA

Hatillo, PR • On-site

Full-time

Medical, Dental, PTO

Posted 28 days ago


Job description

WHAT YOU OWN

Everything the detection stack can hear is bounded by what the antenna captures and what the front end preserves. You own that boundary, from the air interface to the samples the SDR hands off. You also own the measurement function that proves it works. You will report to the CTO.

  • Antenna fabrication and measurement. Our antennas are designed in house. You build what the design calls for and you prove what it actually does. Sheet metal, 3D-printed structures, RF PCB, connectors, and phase-matched cabling. VNA measurement of S11, return loss, and bandwidth. Gain and pattern measurement, in a chamber or by open-field comparison. Tolerances matter here: on a direction-finding array, a feed path a centimeter long is a bearing error in the field. You report the pattern you measured, not the pattern that was simulated.
  • RF front end. Filtering, LNA and gain distribution, sensitivity and noise figure, IP3 and dynamic range, intermodulation and blocker rejection, cabling and connector loss budgets. You own the tradeoff between hearing the weak signal and surviving the strong one.
  • Waveform analysis. Characterize UAS control link and video downlink signals from raw IQ. Modulation, bandwidth, symbol rate, hopping behavior, framing. You tell the detection engineer what is actually in the air.
  • Test bench and procedure. Instrumentation, calibration, controlled signal injection, repeatable written procedure. If a result cannot be reproduced next month, it is not a result.
  • Over-the-air collection. Live Group 1-3 targets across wooded, open, and urban terrain. Fixed and moving. Multiple airframes, including modified ones.
  • Ground truth and dataset hygiene. Labeling protocol, versioning, metadata discipline. The training corpus is a company asset and its quality is your responsibility.
  • Government criteria characterization and documentation. Detect, track, and identify performance measured against published counter-small-UAS characterization criteria, documented cleanly enough to submit in a federal proposal without rewriting.
  • Radome and enclosure effects and computer vision integration. Detuning, loss, and pattern distortion from the housing. You work with mechanical engineering so the antenna that passed on the bench still passes inside the box, outdoors, in Caribbean heat and humidity.

The number you produce is the number that goes into a product and into thd test report. Nobody downstream re-derives it. That is the weight of the seat, and it is why we will hand it to someone early in their career who has clearly earned it.

WHAT WE REQUIRE

B.S. in Electrical Engineering or Physics. Recent graduates through roughly 5 years of experience. Hands-on work counts wherever you did it: coursework, senior design, student competition, amateur radio, or a bench in your apartment. We care that you have done it, not who paid you to.

  • You have built something that radiates. An antenna you fabricated, tuned, and measured. Tell us what it was, how you built it, and how you knew it worked.
  • RF fundamentals, applied. dB math, link budgets, free space path loss, multipath and fading, noise figure and sensitivity, receiver dynamic range, filters, LNAs, mixers, amplifiers, transmission line and connector loss. You reason in RF, you do not look it up mid-conversation.
  • Antennas, hands-on. Antenna types and when to use each: dipole, monopole, patch and microstrip, Yagi, log-periodic, spiral, and arrays. Impedance matching and matching networks. Return loss, and bandwidth. Gain and pattern measurement, in a chamber or by open-field comparison. You have built, tuned, or characterized a working antenna and you can explain how you knew it worked.
  • SDR modulation and demodulation. Digital modulation and how it looks in IQ: FSK and GFSK, BPSK, QPSK, QAM, OFDM, DSSS, and frequency-hopping spread spectrum. Baseband sampling, decimation and filtering, symbol timing and carrier recovery, constellation and spectrogram interpretation. You can look at raw IQ and say what the signal is doing.
  • SDR platforms, hands-on. GNU Radio, UHD or SoapySDR, and real SDR hardware, including low-cost receivers. Python for collection, processing, and plotting. Linux comfort.
  • Lab instrumentation. Spectrum analyzer, VNA, signal generator, oscilloscope, power meter. You know what a calibration is for and why it expires.
  • Method over conclusions. If the measurement says the product underperforms, we need to hear it from you first, and we will act on it, not argue with it.
  • Prototyping. Comfortable at a bench with a soldering iron. Any of: RF PCB layout, sheet metal, 3D printing, machining. You can get from a drawing to a physical part you can measure.
  • U.S. person under ITAR.
  • Onsite in San Juan, and in the field, outdoors, carrying gear.

Preferred: electromagnetic simulation, HFSS, CST, FEKO, openEMS, or NEC. RF PCB layout and 50-ohm design practice. Direction-finding array design. Circular polarization. UAS or drone hands-on time. Clearance eligibility. Spanish.

WHAT WE OFFER
  • Base salary within the posted range, set by demonstrated capability.
  • Stock options in the Delaware parent, subject to board approval.
  • Health, dental, flexible PTO.
  • Direct mentorship from our CTO who shipped perception systems at consumer scale, and a founder who spent years on the receiving end of this threat.
  • In your first year you will characterize a fielded defense system against a real government criteria set. Very few engineers get that in their first five.