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Entry Level Rf Jobs in Los Angeles, CA (NOW HIRING)

Radio Frequency Engineer

Simi Valley, CA · On-site

$74K - $138K/yr

The Associate RF Engineer is responsible for the analysis, design, implementation, optimization and ... Overall Summary Entry-level professional with broad theoretical job knowledge. Works under general ...

Showing results 21-30

Entry Level Rf information

See Los Angeles, CA salary details

$39.9K

$126.8K

$197.2K

How much do entry level rf jobs pay per year?

As of Sep 1, 2026, the average yearly pay for entry level rf in Los Angeles, CA is $126,802.00, according to ZipRecruiter salary data. Most workers in this role earn between $105,100.00 and $149,800.00 per year, depending on experience, location, and employer.

What is an entry level RF engineer?

Entry Level RF (Radio Frequency) jobs are positions designed for individuals who are just starting their careers in the field of radio frequency engineering or technology. These roles typically involve assisting with the design, testing, and maintenance of RF systems, such as wireless communication devices, antennas, and transmitters. Entry-level RF professionals may work under the supervision of senior engineers, conduct laboratory tests, and troubleshoot equipment. These jobs are common in industries like telecommunications, aerospace, and defense. A relevant degree in electrical engineering or a related field is usually required.

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

To thrive as an Entry Level RF Engineer, you need a solid understanding of electronics, electromagnetics, and communication systems, typically supported by a bachelor's degree in electrical engineering or a related field. Familiarity with RF design tools like MATLAB, CST, or HFSS, along with experience in using spectrum analyzers and network analyzers, is highly valuable. Strong analytical skills, attention to detail, and effective teamwork and communication abilities help you stand out in this role. These competencies are crucial for ensuring reliable RF system performance and successful project delivery in wireless communication industries.

What are some common challenges faced by entry level RF engineers, and how can they overcome them?

Entry-level RF engineers often face challenges such as troubleshooting complex signal issues, understanding intricate circuit designs, and adapting to rapidly evolving wireless technologies. To overcome these obstacles, new engineers should actively seek mentorship from more experienced colleagues, participate in hands-on projects, and continuously update their knowledge through training and self-study. Collaborating closely with design and testing teams can also help in gaining practical insights and building confidence in problem-solving within real-world scenarios.

What is the difference between Entry Level Rf vs Entry Level Network Technician?

AspectEntry Level RfEntry Level Network Technician
Required CertificationsRF certifications, CompTIA Network+CompTIA Network+, Cisco CCNA
Work EnvironmentTelecom, broadcasting, wirelessIT, networking, data centers
Industry UsageTelecommunications, broadcastingIT, corporate networks

Entry Level Rf roles focus on radio frequency systems, antennas, and wireless communication, often in telecom or broadcasting settings. Entry Level Network Technicians handle network infrastructure, cabling, and troubleshooting in IT environments. While both roles require networking fundamentals and certifications like CompTIA Network+, they differ in industry focus and daily tasks. Understanding these distinctions helps job seekers target the right entry-level position based on their skills and interests.

What are the most commonly searched types of Rf jobs in Los Angeles, CA?

The most popular types of Rf jobs in Los Angeles, CA are:

What job categories do people searching Entry Level Rf jobs in Los Angeles, CA look for?

The top searched job categories for Entry Level Rf jobs in Los Angeles, CA are:

Infographic showing various Entry Level Rf job openings in Los Angeles, CA as of August 2026, with employment types broken down into 92% Full Time, and 8% Temporary. Highlights an 100% In-person job distribution, with an average salary of $126,802 per year, or $61 per hour.

Experimental Chemist, Quantum Energy Systems

Pronoia Energy

Torrance, CA • On-site

Full-time

Medical, PTO

Posted 11 days ago


Job description

Company Overview:
Pronoia Energy is a pioneering deep tech startup at the forefront of quantum energy storage innovation. As a lean, mission-driven team, we thrive on rapid prototyping, cross-disciplinary collaboration and solving complex engineering challenges to turn quantum physics into practical, scalable products. Our current focus is on developing our groundbreaking room-temperature macroscopic quantum energy storage technology that promises orders of magnitude greater energy density, faster charging, and higher power delivery as well as being cheaper and safer compared to existing battery technology. This represents a paradigm shift in energy storage with applications spanning consumer electronics, electric vehicles, renewable grids, and beyond.
About the Role
To meet our ambitious goals we are hiring an Experimental Chemist to do the hands-on chemistry of discovery and characterization at the heart of our technology. This is a high-stakes, high-reward role where you will synthesize new materials, run the reactions, and use analytical instruments to determine what a material actually is and how it behaves.
In this role, you will collaborate across the simulation, synthesis, and cell-build pipeline, feeding validated materials to the computational scientists who model them and the cell technicians who build them into cells. Once the material is processed, the chemistry ends and the physics begins: you will interpret data with a deep understanding of solid state device physics, evaluate permittivity and analyze electric moduli to verify that macroscopic ion leakage is completely frozen out, and that each candidate truly locks energy into a stable quantum-confined state.
What You'll Do:
  • Synthesize and purify candidate materials, including electrode materials and novel solid-state compounds.
  • Characterize materials rigorously using tools such as broadband dielectric spectroscopy (BDS), impedance analysis, X-ray diffraction, and electrochemical testing.
  • Verify quantum confinement from BDS data, calculate frequency dispersion exponents, evaluate real permittivity stabilization plateaus, and analyze electric modulus inversions to confirm macroscopic ion leakage is completely frozen out.
  • Perform impedance data analysis to isolate long-range charge translation from highly localized bulk relaxation states
  • Fit experimental dielectric data to Cole-Cole, Davidson-Cole, or other equations to extract relaxation times
  • Feed validated material candidates and transport parameters into the simulation, cell-build, and testing pipeline.
  • Keep a safe, meticulous wet lab and collaborate across the materials, physics, and computational functions.
  • Provide data-driven insight that informs each design iteration.

Required Qualifications:
  • M.S. or Ph.D. in electronic materials science, condensed matter physics, chemistry, or a related discipline, ideally with a specialization in functional solid-state dielectric metamaterials.
  • Hands-on synthetic or electrochemical chemistry with direct battery-materials experience, and safe, meticulous wet-lab practice.
  • Hands-on expertise in broadband dielectric spectroscopy and high-speed potentiostat diagnostics, with mathematical fluency in areas such as complex permittivity, complex conductivity, and electric modulus formalisms to isolate bulk quantum relaxations from macroscopic space-charge effects.
  • Experience compounding solvent-free, catalyst-activated dynamic covalent polymer networks, with a working understanding of network relaxation dynamics, alpha/beta structural transitions, and polymer chain behavior under sub-nanometer confinement in porous host matrices.
  • A self-starter comfortable in an early, undefined materials function who thrives amid ambiguity and rapid iteration.

Preferred Qualifications:
  • Experience with fast-transient bench craft such as impedance-matched 50-ohm RF transmission lines, high-slew-rate pulse generators, and shielding configurations that suppress parasitic cabling noise during fast-edge pulsing.
  • Transport modeling using explicit Laity resistance friction coefficients derived from current-current correlation functions.
  • Practical experience handling thermodynamics of nano-confined systems
  • Specialization in solid-state, materials, or battery chemistry, and experience synthesizing and rigorously proving genuinely novel materials.
  • Familiarity with battery metrics and standards, and prior deep tech R&D alongside interdisciplinary teams in physics or materials science.

What We Offer:
  • Chance to solve one of the world's biggest engineering challenges and pioneer quantum energy storage.
  • Competitive salary, equity in a transformative startup, and performance-based incentives.
  • Access to cutting-edge labs, tools, and resources in a flexible, collaborative work environment.
  • Comprehensive benefits: health insurance, unlimited PTO, professional development stipend, and relocation assistance if needed.
  • A culture of innovation where your work will accelerate our path to market impact.

If you're excited to tackle this real-world quantum problem and build the energy systems of the future, apply with your resume and a cover letter detailing relevant projects.