USA remote
RF Designer
About this role
Fidus is a global high-tech design firm headquartered in Ottawa, with additional design centres in Kitchener-Waterloo and San Jose. We specialize in leading-edge electronic product development, with hardware, RF/wireless, embedded software, FPGA/ASIC, and signal integrity teams working together to design and deliver next-generation products for clients in emerging technology markets. Position Overview/Mandate: The RF Designer owns complete RF subsystems on Fidus client programs — from the antenna port through the front-end, frequency conversion and data converters, that present into the DSP and/or FPGA fabric.
You will set the RF architecture, build the frequency and sampling plans, design and model the transmit and receive lineups, and prove the performance on the bench, working at microwave frequencies up to 40 GHz. This role suits an RF designer who has carried subsystems from architecture to characterized, manufacturable hardware, is ready to be the RF authority on a cross-functional team, and works directly with customers — taking pride in designs rigorously modeled before build and rigorously measured after.
Make an Impact with US: You'll collaborate across FPGA/DSP, hardware, embedded software, verification, SI/PI, PCB layout and mechanical/thermal design, delivering real products for our clients. In practice, that means SatCom payloads, ground modems and portable terminals; GNSS and precision synchronization; radar and multi-sensor fusion; software defined radios; semiconductor characterization and test fixturing; industrial and private network radios; and medical telemetry.
What You’ll Be Doing: Define the RF architecture and frequency plan — IF and LO selection, Nyquist zone/sampling plan, clocking, anti-alias/spurious filtering, and line-up specification. Design Tx chains from baseband through up-conversion — drivers, filters, power amplifiers to 10 W, ALC and detector-based output level control, and output protection. Design Rx chains, including digitally intensive sampling architectures — LNA lineups, down-conversion strategy, analog variable gain and AGC, interferer rejection, and input limiting and protection.