At a Glance
- Tasks: Design high-speed circuits and develop cutting-edge RF systems for photonic networking.
- Company: Join Oriole Networks, a leader in next-gen photonic technology for AI and HPC.
- Benefits: Competitive salary, innovative projects, and opportunities for professional growth.
- Other info: Collaborative environment with a focus on real-world impact and career advancement.
- Why this job: Be at the forefront of technology, shaping the future of AI infrastructure.
- Qualifications: PhD in relevant field with strong RF engineering and programming skills.
The predicted salary is between 60000 - 80000 ÂŁ per year.
About Oriole Networks: Oriole Networks is building nextâgeneration photonic networking systems to power the future of AI and highâperformance computing. By moving data with light instead of electrons, we enable dramatically higher bandwidth, lower latency, and reduced energy consumption. We are taking optical circuit switching from cuttingâedge research to realâworld deployment, enabling the next generation of scalable AI infrastructure. Backed by strong funding and deep academic roots, we are building a worldâclass team to turn breakthrough science into production systems.
The Role: We are seeking a PhDâlevel RF / HighâSpeed Electronics Engineer with a strong foundation in applied mathematics, electromagnetic theory, and measurement science. You will work at the intersection of RF engineering, signal integrity, and electroâoptics, developing highâfrequency systems that interface closely with advanced photonic components operating at multiâtens of GHz and beyond. This role is ideal for candidates who think from first principles, are rigorous in experimentation, and are motivated to bridge theory, simulation, and realâworld measurements.
What You'll Do:
- Highâspeed circuit design: Contribute to highâspeed interconnects and transceiver electronics, including drivers, TIAs, and frontâend circuits for modulators and photodetectors.
- 3D EM modelling & simulation: Develop and apply fullâwave 3D electromagnetic models of RF structures, interconnects, and packaging (e.g., using HFSS, CST), alongside analytical models (transmission lines, Sâparameters, noise, linearity, SI/PI), and correlate predictions with measured data.
- Measurement & characterisation: Design and execute calibrated RF measurements (VNA SOLT/TRL, deâembedding, timeâ and frequencyâdomain analysis) using >50 GHz instrumentation.
- Electroâoptic integration: Coâdesign electronic interfaces for integrated photonic switches and transceivers, working closely with photonics and systems teams.
- Prototype bringâup & debugging: Support schematic and PCB reviews, lab debugging, and performance optimisation.
- Data analysis & automation: Use Python or MATLAB for data analysis, modelling, and lab automation.
- Documentation & communication: Clearly document results and communicate insights across multidisciplinary teams.
Required Qualifications And Experience:
- PhD in Electrical/Electronic Engineering, Physics, Photonics, or a closely related field.
- Deep understanding of electromagnetics, RF/microwave engineering, and highâfrequency circuit theory.
- Experience with 3D electromagnetic simulation tools (e.g., HFSS, CST, or similar fullâwave solvers).
- Strong applied mathematics background (linear algebra, signal processing, numerical methods, optimisation).
- Handsâon experience with RF measurement techniques and instrumentation (VNAs, oscilloscopes, spectrum analysers, BERTs).
- Programming skills for modelling and data analysis (Python, MATLAB, or similar).
- Ability to apply theory to real systems and extract insight from experimental data.
- Clear communication and effective collaboration in multidisciplinary teams.
Desirable:
- Highâspeed digital systems (e.g., 112 G+ SerDes, PAM4).
- Signal integrity / power integrity for highâspeed interconnects.
- Silicon photonics, coâpackaged optics, or optical communications.
- Strong experimental expertise (calibration, deâembedding, fixture design, noise/linearity/BER measurement).
- PCB design and EDA tools (e.g., Cadence, PADS).
- Exposure to FPGA development (Verilog/VHDL).
- Thermal considerations in highâdensity electronic systems.
- Publications in relevant journals or conferences.
Accelerating AI in a LowâCarbon World â Oriole Networks is a photonic networking company developing disruptive technologies for AI/ML and HPC networking that will revolutionise data centres.
RF Engineer in Paignton employer: Oriole
Contact Detail:
Oriole Recruiting Team
StudySmarter Expert Advice đ¤Ť
We think this is how you could land RF Engineer in Paignton
â¨Tip Number 1
Network like a pro! Get out there and connect with people in the RF engineering field. Attend industry events, join relevant online forums, and donât be shy about reaching out to professionals on LinkedIn. You never know who might have the inside scoop on job openings!
â¨Tip Number 2
Show off your skills! Create a portfolio that highlights your projects, especially those involving high-speed circuit design or 3D EM modelling. This will give potential employers a taste of what you can do and set you apart from the crowd.
â¨Tip Number 3
Prepare for interviews by brushing up on your technical knowledge and problem-solving skills. Be ready to discuss your experience with RF measurement techniques and how youâve applied theory to real-world systems. Practice makes perfect!
â¨Tip Number 4
Donât forget to apply through our website! Weâre always on the lookout for talented individuals like you. Keep an eye on our careers page for the latest opportunities and make sure your application stands out!
We think you need these skills to ace RF Engineer in Paignton
Some tips for your application đŤĄ
Tailor Your CV: Make sure your CV is tailored to the RF Engineer role. Highlight your experience with high-speed circuit design and 3D electromagnetic simulation tools. We want to see how your skills align with what we're looking for!
Showcase Your Projects: Include specific projects that demonstrate your hands-on experience with RF measurement techniques and programming skills. We love seeing real-world applications of your knowledge, so donât hold back!
Be Clear and Concise: When writing your cover letter, keep it clear and concise. Explain why you're passionate about photonic networking and how your background makes you a great fit for our team. We appreciate straightforward communication!
Apply Through Our Website: Donât forget to apply through our website! Itâs the best way for us to receive your application and ensures youâre considered for the role. We canât wait to see what you bring to the table!
How to prepare for a job interview at Oriole
â¨Know Your Electromagnetics
Brush up on your understanding of electromagnetics and RF/microwave engineering. Be prepared to discuss how these principles apply to high-frequency circuit design, as this will likely come up during the interview.
â¨Showcase Your Hands-On Experience
Be ready to share specific examples of your hands-on experience with RF measurement techniques and instrumentation. Discuss any projects where you designed and executed calibrated RF measurements, as this will demonstrate your practical skills.
â¨Familiarise Yourself with Simulation Tools
Make sure youâre comfortable discussing 3D electromagnetic simulation tools like HFSS or CST. You might be asked about your experience with these tools, so having a couple of examples of how you've used them in past projects can really set you apart.
â¨Communicate Clearly and Collaboratively
Since the role involves working in multidisciplinary teams, practice articulating your ideas clearly. Think of examples where you successfully collaborated with others, especially in complex projects involving electro-optic integration or high-speed digital systems.