Find Jobs
Find Jobs Near You – Available Work in Your Location
Skip to job details
R
Roguebeam
RF/Mirowave Engineer
Career Insights for Radio Frequency (RF) Engineer
See where this job fits in the broader career landscape. Knowing your career path helps you see what's possible from here.
Scorecard
Based on Washington data
Review key factors to help you decide if this role fits your goals. How is this calculated?
What they do
A Radio Frequency (RF) Engineer works with technology and electronic equipment that uses radio waves, from cell phones to radio stations. Designs, installs, and repairs systems and equipment that transmit radio signals. May specialize in design or maintenance; may focus on the design of transmission equipment, such as radio antennae, or manage larger systems such as networks of cell phone towers.
$138,785 / year median in Washington
-9% projected decline
Job Description
RF/Mirowave Engineer Roguebeam Seattle, WA Job Details Full-time 1 hour ago Qualifications Electrical equipment calibration RF signal diagnostics Telecommunications RF engineering Simulation tools Radio frequency (RF) testing Full Job Description About the Role We're looking for a motivated and technically excellent RF/microwave engineer to help design our phased array and system solutions. As one of our early hires, you won't just execute against a spec handed down to you—you'll contribute to the architecture and design methodology behind our products and help shape how the team works as it grows. You'll own RF design from architecture through the different design phases, working shoulder-to-shoulder with RFIC, antenna, EE and ME teams. The decisions you make will ripple through every product we build. Responsibilities Develop top level models, link budgets and architectures for communications and radar systems Run system-level simulations covering linearity, noise, gain/phase control accuracy, and power and develop line up budgets Design RF/microwave circuits, MMICs, passive/printed components, substrates, chip break-outs, matching networks and packages. Design RF modules and SIPs consisting of RFICs passives and other RF components Make this real by collecting and analyzing characterization data, and provide solutions for design iterations of fabricated parts Collaborate with antenna, digital, and DSP teams to ensure system performance meets full-system requirements Collaborate closely with mechanical and thermal teams to manage heat dissipation and packaging constraints, and work with PCB layout teams to ensure robust grounding and signal integrity for high-frequency designs. Minimum Qualifications Bachelor's degree in Electrical Engineering or a related field 3-5 years of relevant experience in RF/mmwave design Proficiency with industry-standard design and simulation tools (e.g., ADS, CST, HFSS, AWR or similar) Proficiency with mmWave lab equipment and measurement techniques, including calibration at high frequencies Solid foundation in RF fundamentals: matching, noise, linearity, and S-parameters Preferred Qualifications Masters degree or PhD with a focus on RF/microwave circuits/systems or electromagnetic theory Background in communication and radar systems RF/microwave design in Ku, Ka, V, E, and/or W-band frequency range Experience with design of linear and non-linear circuits such as power amplifiers, low noise amplifiers, mixers, filters and PLLs Experience in Matlab, Python, C++ or equivalent tools for modeling and analyzing RF systems Schematic and layout using Altium Designer or other PCB design tools Knowledge of digital communication systems, spread spectrum, single and multi-carrier techniques and modulation types such as QPSK, APSK and QAM Familiarity with mm-wave design and silicon technologies (SiGe BiCMOS, CMOS, GaAs/GaN) Why Roguebeam This is a rare ground-floor opportunity. Joining a startup at this stage means your work has a direct, visible effect on whether the company succeeds—and a corresponding upside as we grow. Because we build the entire system in-house, you'll see your RFIC designs integrated into real phased arrays and deployed in working systems, not handed off and forgotten. You'll have real ownership and a seat at the table on technical direction.