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Entry Level Rf Power Amplifier Design Engineer Jobs in Seattle, WA

As an RF Design Engineer working on LEO Phased Array and RF Front-Ends, you will design, integrate, and characterize antennas and arrays across multiple domains (phased arrays, reflectors, aperture ...

As an RF Design Engineer working on LEO Phased Array and RF Front-Ends, you will design, integrate, and characterize antennas and arrays across multiple domains (phased arrays, reflectors, aperture ...

As an RF Design Engineer working on LEO Phased Array and RF Front-Ends, you will design, integrate, and characterize antennas and arrays across multiple domains (phased arrays, reflectors, aperture ...

Ability to load/connect Antenna, RF/Power/Ethernet cables, and configure test parameters through ... Additional experience with test engineering and RF products such as antennas or amplifiers is ...

We are seeking a motivated, proactive, and intellectually curious RF/Analog IC engineer who will ... and power amplifiers * Knowledge of digital communication systems, spread spectrum, single and ...

Electrical Design Engineer

Renton, WA · On-site

$82K - $90K/yr

Design EngineeringDesign power single line and riser diagrams • Perform electrical ... calculations (arc flash, coordination, short circuit, voltage drop, load flow) using ETAP/SKM. • ...

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Entry Level Rf Power Amplifier Design Engineer information

See Seattle, WA salary details

$82.5K

$147.9K

$192.9K

How much do entry level rf power amplifier design engineer jobs pay per year?

As of Aug 30, 2026, the average yearly pay for entry level rf power amplifier design engineer in Seattle, WA is $147,940.00, according to ZipRecruiter salary data. Most workers in this role earn between $125,200.00 and $166,200.00 per year, depending on experience, location, and employer.

What is the difference between Entry Level Rf Power Amplifier Design Engineer vs RF Test Engineer?

AspectEntry Level Rf Power Amplifier Design EngineerRF Test Engineer
Required CredentialsBachelor's in Electrical Engineering or related field; basic knowledge of RF designBachelor's in Electrical Engineering or related field; focus on testing and measurement skills
Work EnvironmentDesign labs, R&D departments, collaborative teamsTesting labs, production lines, quality assurance teams
Industry UsageWireless communication, aerospace, defense, consumer electronicsManufacturing, product development, quality control in RF products

Both roles typically require a bachelor's degree in electrical engineering and involve working within the RF industry. The design engineer focuses on creating RF power amplifiers, while the test engineer specializes in testing and validating RF components. Understanding these differences helps job seekers identify the right career path based on their skills and interests.

RF Technician with Security Clearance

SkyBridge Aviation

Seattle, WA • On-site

Other

Posted 18 days ago


Job description

The Impact You'll Make
As an EMC Lab RF Technician, you’ll be at the heart of our testing operations. Your expertise will help engineers validate designs, troubleshoot issues, and ensure compliance with global standards. The data you collect and the insights you provide will directly influence product safety certifications and customer trust. Set up and operate RF and EMC test equipment, including spectrum analyzers, signal generators, power amplifiers, and EMI receivers.
Conduct radiated and conducted emissions/immunity tests in accordance with standards such as DO-160 and MIL-STD-461.
Configure test environments in shielded rooms.
Assist in troubleshooting RF interference issues and documenting root causes.
Maintain calibration records and ensure all test equipment meets requirements.
Collaborate with engineers to refine test plans and improve measurement accuracy.
What You'll Bring Hands-on experience in EMC or RF testing environments.
Familiarity with EMC standards.
Proficiency in using RF test instruments such as vector network analyzers, spectrum analyzers, and RF power meters.
Strong troubleshooting skills for RF signal paths, grounding, and shielding issues.
Ability to read and interpret schematics, wiring diagrams, and test specifications.
Excellent attention to detail and a methodical approach to testing.
Strong written and verbal communication skills for reporting and collaboration