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Intermediate RF Engineer

Job in Burlington, Ontario, Canada
Listing for: Evertz
Full Time position
Listed on 2026-07-27
Job specializations:
  • Engineering
    Electronics Engineer, Test Engineer, Systems Engineer, Telecoms Engineering
Salary/Wage Range or Industry Benchmark: 80000 CAD Yearly CAD 80000.00 YEAR
Job Description & How to Apply Below
Scope:
We are seeking an experienced Senior RF Engineer to lead the design, integration, and verification of advanced RF systems including RF routers, fiber extenders, DIFI based RF over IP and transceiver RF front end systems.

Scope:
We are seeking an experienced Senior RF Engineer to lead the design, integration, and verification of advanced RF systems including RF routers, fiber extenders, DIFI based RF over IP and transceiver RF front end systems.  This is a hands‑on technical role:  you will own designs from whiteboard to working hardware, drive system‑level studies, and personally validate performance on the bench. You will work alongside signal processing, firmware, and mechanical engineering teams in a fast‑paced, collaborative environment where every design serves a mission critical application.
This is not a research position.

Key Responsibilities:

RF System & Subsystem Design:

Architect and design high-performance RF receiver chains from antenna port to ADC, including LNAs, filters, mixers, amplifiers, and switching networks

Perform end-to-end system‑level RF link budget analysis across HF through Ka‑band, including path loss, atmospheric effects, multipath, and interference margin

Develop noise figure budgets and cascade analyses; specify and verify NF, IP3, P1dB, spurious, and dynamic range requirements at subsystem and system level

Design RF analog circuits including matching networks, bias circuits, AGC loops, and frequency synthesizers; manage PCB‑level RF layout guidelines

Design high performance, scalable, fan‑in and fan‑out RF routers minimizing physical size while ensuring maximum port isolation and specifications

Apply RF propagation models (free‑space, two‑ray, terrain‑diffraction, Okumura‑Hata) to understand and validate overall system performance

Verification & Lab Work:

Own initial test and verification of your own designs — this is not delegated; you are expected to be at the bench with VNA, spectrum analyzer, signal generator, and oscilloscope as needed to ensure timely completion and success

Plan, execute, and document RF performance testing: NF measurements using Y‑factor/cold‑source methods, IMD/IP3 two‑tone tests, spurious emission sweeps, and conducted susceptibility

Optimize designs iteratively based on measured data; root‑cause failures and implement corrective actions through hardware re‑spins and/or driving firmware updates

Support qualification testing including environmental (MIL‑STD‑810), EMI/EMC (MIL‑STD‑461), and reliability screening

Systems Engineering:

Lead systems engineering activities for RF‑intensive programs: requirements review, architecture design, system design, schematic generation, component life status reviews, lead design reviews, drive PCB layout team and perform final PCB layout reviews

Interface directly with internal deployment teams, support teams and/or end customer as may be requested to resolve system integration and/or performance issues

Author or review engineering documentation including system specifications, test plans, test plan conformance forms, and review RMA failure analysis reports for continued product improvements

Mentor and technically guide junior and intermediate RF engineers; participate in design reviews and provide critical feedback

Required Qualifications

Bachelor’s degree or higher in Electrical Engineering or a closely related discipline

10+ years of professional experience in RF hardware design, with a demonstrated portfolio of shipped products or fielded systems

Expert‑level RF analog design skills: LNA, PA, mixer, filter, synthesizer, and attenuator design in microstrip and co‑planar waveguide topologies

Strong RF digital design background: FPGA‑based DSP, digital down‑conversion, software‑defined radio (SDR) architectures, and JESD
204B/DIFI digital RF interfaces

Deep understanding of radio wave propagation including free‑space loss, atmospheric absorption, multipath fading, and terrain effects

Proficient in RF link budget modelling for satellite and terrestrial systems

Hands‑on competence with RF test equipment: VNA, spectrum analyzer, phase noise measurements, power meter, noise figure measurements, and signal generators

Proficie…
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