OverviewXona is building the next generation of satellite navigation - a high-performance, resilient alternative to GPS powered by a commercial constellation of low Earth orbit (LEO) satellites. We are on a mission to unlock a new era of autonomy, advanced mobility, and infrastructure resilience by delivering precise, secure, and robust positioning services to the world.
We're not here to incrementally improve GNSS. We're here to
redefine it from the ground up.
We're looking for a highly motivated and hands-on
RF Test Engineer to join our growing team and take ownership of testing the RF systems that power our next generation service. In this role, you'll be instrumental in designing and executing test campaigns for everything from our mission-critical payload to the RF subsystems that tie together the satellite bus. This is an in-person role that demands technical depth, creativity, and a strong desire to build and break hardware in service of a mission.
If you thrive in a fast-paced, startup environment, enjoy getting your hands on flight hardware, and take pride in designing test setups that are both clever and rock solid, we'd love to meet you.
What You'll Do:- Design, implement, and execute test plans for a wide range of RF systems, including payload transmit/receive chains, telemetry/command links, GNSS receivers, and interconnects across the satellite bus
- Build and maintain RF test setups using VNAs, spectrum analyzers, signal generators, power meters, and custom fixtures
- Develop automated test scripts and data capture tools to accelerate and standardize test workflows
- Perform detailed analysis of RF test data to validate system performance and characterize margins
- Troubleshoot RF anomalies at the board, subsystem, and system level
- Support environmental testing (e.g., thermal vacuum, vibration, EMI/EMC) with RF test instrumentation and monitoring
- Work closely with subsystem teams to ensure test coverage aligns with mission requirements
- Contribute to the definition of test requirements and verification matrices across the full satellite development lifecycle
You Might Be a Fit If:- You take pride in building reliable, high-quality test systems and seeing them used to validate flight hardware
- You enjoy hands-on work in the lab and are comfortable working directly with complex RF systems
- You approach testing as an opportunity to learn, improve, and de-risk - not just verify
- You're confident interpreting unexpected results and methodically tracking down root causes
- You're proactive, detail-oriented, and capable of working independently to push tests forward
- You thrive in a fast-paced environment where priorities evolve and your contributions directly impact mission success
- You get a thrill out of isolating a weird RF issue down to a connector, solder joint, or firmware setting
- You like working on cross-functional teams where your input shapes hardware, software, and system decisions
- Hands-on, solutions-first mindset - you're comfortable debugging at the system level.
- Ability to move fast, make decisions, and pivot when needed without getting stuck.
- Great communicator who can break down complex ideas for teammates and stakeholders.
- Passion for building real-world systems that go beyond theory.
Requirements:- B.S. or M.S. in Electrical Engineering, Physics, or a related field
- 3+ years of hands-on experience in RF testing, preferably in aerospace, defense, or telecommunications
- Deep familiarity with RF test equipment (spectrum analyzers, VNAs, signal generators, etc.)
- Strong foundation in RF fundamentals, including link budgets, S-parameters, gain/loss calculations, and impedance matching
- Proficiency in scripting languages such as Python for test automation and data analysis
- Comfort working in lab environments and around flight hardware
- Excellent problem-solving skills and attention to detail
- Strong communication skills and the ability to collaborate across disciplines
Desired Qualifications:
- Experience testing RF systems in space environments (TVAC, EMI/EMC, vibration, etc.)
- Familiarity with satellite communication protocols (e.g., CCSDS, DVB-S2, S-band, C-band, L-Band)
- Understanding of digital signal processing and RF impairments
- Experience with GNSS systems and signal acquisition
- Familiarity with configuration control and documentation practices in a hardware development environment