AnySignal
RF Hardware Engineer
About this role
AnySignal seeks an RF Hardware Engineer to design and deliver high-performance radio frequency devices for space and defense applications. You'll own the full lifecycle from circuit design through manufacturing and flight qualification, collaborating with software and FPGA teams on integrated RF systems.
What you'll do
- Design and develop RF products across PCB, box, and system integration levels
- Conduct trade studies and analysis on new designs while challenging requirements
- Perform bring-up, troubleshooting, and qualification testing of RF hardware
- Collaborate with supply chain and manufacturing to scale production
- Manage RF performance metrics and link budget analysis
- Select and integrate RF components (amplifiers, mixers, converters, filters)
What they're looking for
- RF circuit design (3+ years, frontend and conversion chains)
- PCB design end-to-end (schematic, layout, fabrication, assembly)
- Keysight ADS, Ansys HFSS, Altium Designer
- RF metrics (S-parameters, P1dB, noise figure, EVM, channel power)
- RF cascades, link budgets, and noise analysis
- Test instruments (oscilloscopes, VNAs, spectrum analyzers, power supplies)
- Analog/RF components (LNAs, PAs, mixers, ADCs/DACs, PLLs, filters)
- PCB soldering and rework (0402, QFN packages)
Benefits
- Equity compensation
- Medical, dental, and vision coverage
- HSA program
- 401K retirement plan
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AnySignal
AnySignal builds advanced RF communications systems and power electronics for space and defense missions. The company is hiring Forward Deployed Engineers, Power Electronics Engineers, RF Hardware Engineers, Embedded Software Engineers, and EMC Engineers to develop and deploy mission-critical systems from concept through integration.
View all jobs at AnySignalLikely interview questions
- Walk us through a complete RF circuit design you've owned from schematic to production—what were the key performance challenges and how did you address them?
- Describe your experience with PCB layout for RF designs; how do you approach impedance control, grounding, and EMI mitigation?