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Senior Rf Engineer Jobs in Hemet, CA (NOW HIRING)

Sorenson Engineering located in Yucaipa, California has for over six decades been a globally recognized leader in micro technology solutions for Aerospace/Defense, RF interconnect, Microwave Test ...

Buyer I/II

Yucaipa, CA ยท On-site

$36K - $62K/yr

Description Sorenson Engineering located in Yucaipa, California has for over six decades been a globally recognized leader in micro technology solutions for Aerospace/Defense, RF interconnect ...

Senior Rf Engineer information

See Hemet, CA salary details

$59.7K

$127K

$184.1K

How much do senior rf engineer jobs pay per year?

As of Sep 2, 2026, the average yearly pay for senior rf engineer in Hemet, CA is $126,992.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,900.00 and $144,000.00 per year, depending on experience, location, and employer.

What is a senior RF engineer?

Senior RF Engineers are experienced professionals who design, implement, and optimize radio frequency (RF) systems used in telecommunications, broadcasting, and other wireless communications. They are responsible for ensuring the performance and reliability of RF networks by conducting tests, troubleshooting issues, and developing solutions to improve signal quality. Senior RF Engineers often lead project teams, mentor junior engineers, and work closely with other departments to deliver effective wireless communication solutions.

What are the key skills and qualifications needed to thrive as a senior RF engineer?

To thrive as a Senior RF Engineer, you need advanced knowledge of radio frequency theory, wireless communication systems, and a relevant engineering degree, often complemented by several years of industry experience. Familiarity with RF simulation tools (such as CST, HFSS, or ADS), network analyzers, and certifications like Certified Wireless Network Professional (CWNP) are typically required. Excellent problem-solving, analytical thinking, and effective communication skills help in troubleshooting and collaborating with cross-functional teams. These skills and qualities are vital for designing reliable RF solutions, optimizing performance, and ensuring seamless integration in complex wireless environments.

What are some common technical challenges faced by senior RF engineers, and how are they typically addressed within engineering teams?

Senior RF Engineers often encounter challenges related to signal interference, system integration, and maintaining optimal performance under real-world conditions. These issues are typically addressed through collaborative troubleshooting with cross-functional teams, such as hardware, software, and test engineers. Utilizing advanced simulation tools, performing thorough field testing, and conducting design reviews are standard practices to ensure solutions are effective and reliable. Regular knowledge sharing within the team helps in quickly resolving complex RF problems and staying updated with evolving technologies.

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

AspectSenior RF EngineerRF Engineer
CredentialsBachelor's or Master's in Electrical Engineering, certifications like FCC or RF-specific coursesBachelor's in Electrical Engineering or related field, some certifications beneficial
Work EnvironmentDesign, testing, and troubleshooting RF systems in labs or fieldAssist in RF system development, testing, and maintenance
ResponsibilitiesLead projects, optimize RF performance, mentor junior staffSupport RF design, perform measurements, and document results

The main difference lies in experience and responsibility level. Senior RF Engineers typically lead projects and mentor others, while RF Engineers focus on supporting design and testing tasks. Both roles require similar technical skills and certifications, but the senior position involves more leadership and strategic planning.

Is RF engineering in demand?

RF engineering is in high demand due to the growth of wireless communication, 5G networks, and IoT devices. Senior RF engineers with expertise in signal processing, antenna design, and testing are sought after across telecommunications, aerospace, and defense industries.

What does a senior RF engineer do?

A senior RF engineer designs, develops, and tests radio frequency systems and components used in wireless communication devices. They analyze signal performance, troubleshoot issues, and ensure compliance with industry standards, often using tools like spectrum analyzers and simulation software. Their role requires strong technical knowledge, problem-solving skills, and experience with RF design and testing processes.

What are the most commonly searched types of Rf Engineer jobs in Hemet, CA?

The most popular types of Rf Engineer jobs in Hemet, CA are:

What job categories do people searching Senior Rf Engineer jobs in Hemet, CA look for?

The top searched job categories for Senior Rf Engineer jobs in Hemet, CA are:

What cities near Hemet, CA are hiring for Senior Rf Engineer jobs?

Cities near Hemet, CA with the most Senior Rf Engineer job openings:

Infographic showing various Senior Rf Engineer job openings in Hemet, CA as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, 1% Temporary, and 3% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $126,992 per year, or $61.1 per hour.

Senior Simulation Engineer (Optical & Photonics)

Ignite Human Capital

Temecula, CA โ€ข On-site

$180K - $220K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 15 days ago


Job description

Senior Simulation Engineer - Optical & Photonics
Temecula, CA | Full-TimeSummary:
The Senior Simulation Engineer - Optical & Photonics is a highly technical engineering role responsible for the high-fidelity modeling, simulation, and virtual prototyping of advanced photonic integrated circuits (PICs). This individual will design and optimize high-performance III-V and Silicon Photonics devices, including lasers, modulators, photodetectors, and passive optical components.
Working closely with device designers, fabrication teams, and an in-house foundry, this role serves as a critical bridge between theoretical modeling and physical device implementation. The ideal candidate brings deep expertise in computational photonics, semiconductor physics, multi-physics simulation, and the development of photonic products from concept through manufacturing.Key Responsibilities:
  • Design, model, and simulate advanced III-V and Silicon Photonics devices and photonic integrated circuits (PICs)
  • Develop high-fidelity models for active and passive components, including DFB/DBR lasers, SOAs, EAM/MZM modulators, UTC photodiodes, optical couplers, WDM devices, and 90-degree hybrids
  • Lead multi-physics simulations combining optical, electrical, and thermal models, including analysis of self-heating and other device-performance effects
  • Optimize RF performance for high-speed modulators and optical-electrical conversion efficiency
  • Optimize epitaxy layers, quantum well designs, optical modes, and impedance matching across heterogeneous material interfaces
  • Model and optimize III-V and Silicon heterogeneous integration for next-generation photonic devices
  • Partner directly with internal fabrication and device-design teams to translate simulation results into actionable device layouts
  • Support HPIC layouts, process design rules, DRC (Design Rule Check), and LVS (Layout Versus Schematic) activities to ensure tapeout accuracy
  • Execute virtual Design of Experiments (DOE) to predict device performance, reliability, and manufacturing behavior
  • Validate simulation results against internal laboratory characterization data and refine models and material parameters based on measured performance
  • Develop automated simulation and data-analysis workflows using Python and/or MATLAB
  • Analyze large technical datasets and use statistical methods to identify trends, optimize performance, and communicate results
  • Troubleshoot discrepancies between simulated and measured device performance and recommend design or process improvements
  • Present complex technical findings, design trade-offs, and recommendations to engineering teams, leadership, and customers
Desired Skills:
  • Deep expertise in Silicon Photonics, III-V photonics, photonic integrated circuits, and semiconductor device modeling
  • Expert-level proficiency with Ansys Lumerical, including FDTD, MODE, DEVICE, and INTERCONNECT
  • Experience with photonics simulation platforms such as Synopsys RSoft/OptSim and Zemax/Speos
  • Experience with RF and electromagnetic simulation tools such as Keysight ADS, Ansys HFSS, or CST Microwave Studio
  • Advanced proficiency in Python and/or MATLAB for simulation automation, modeling, and large-scale data analysis
  • Strong understanding of semiconductor physics, including bandgap engineering, carrier dynamics, recombination mechanisms, band structures, and quantum well design
  • Experience modeling optical, electrical, thermal, and RF interactions in high-performance photonic devices
  • Strong understanding of semiconductor fabrication and how epitaxy growth, etching profiles, and metallization affect optical and electrical device performance
  • Familiarity with fiber coupling, optical packaging, and Co-Packaged Optics (CPO)
  • Experience with DRC, LVS, process design rules, and tapeout processes
  • Experience using statistical analysis tools such as JMP or Minitab is preferred
  • Strong analytical and troubleshooting skills, particularly in identifying and resolving discrepancies between modeled and measured performance
  • Excellent technical communication skills with the ability to explain complex engineering trade-offs to technical teams, leadership, and customers
  • Proven ability to collaborate across device design, fabrication, characterization, and manufacturing teams
Education & Experience:
Minimum Education: M.S. or Ph.D. in Physics, Electrical Engineering, Materials Science, or a related technical discipline with an emphasis on computational photonics
  • 10+ years of industrial experience in photonics simulation and design
  • Extensive hands-on experience with III-V and Silicon Photonics device modeling
  • Proven track record of bringing photonic or semiconductor products from concept and simulation through fabrication and manufacturing
  • Significant experience with active and passive photonic device simulation, multi-physics modeling, and model validation
  • Experience working directly with semiconductor fabrication or an in-house foundry environment strongly preferred
  • Demonstrated experience translating simulation results into manufacturable device designs
Work Environment & Travel:
  • Full-time position in a temperature-controlled office and laboratory environment
  • Role requires prolonged use of high-resolution monitors for detailed simulation and modeling work
  • Expected travel is less than 25%
  • Position is based at a facility operating under International Traffic in Arms Regulations (ITAR)
  • Applicants must qualify as a "U.S. person" under ITAR, which includes U.S. citizens, U.S. permanent residents (Green Card holders), political asylees, and refugees
Compensation & Benefits:
  • Competitive compensation based on experience and qualifications
  • Comprehensive benefits package including:
    • Medical, dental, and vision coverage
    • 401(k)
    • Company-paid life insurance
    • Company-paid disability coverage
    • Paid holidays and vacation
    • Birthday leave
    • Gym membership discounts