Principal Opto-Electronics Device Engineer in Cambridge

Principal Opto-Electronics Device Engineer in Cambridge

Cambridge Full-Time 60000 - 80000 € / year (est.) Home office (partial)
Microsoft

At a Glance

  • Tasks: Design and optimise cutting-edge photonic devices for high-speed optical communication.
  • Company: Join Microsoft Research, a leader in AI infrastructure innovation.
  • Benefits: Competitive salary, inclusive culture, and opportunities for professional growth.
  • Other info: Collaborative environment with diverse teams and exciting career advancement opportunities.
  • Why this job: Be at the forefront of technology, shaping the future of AI with your expertise.
  • Qualifications: PhD in relevant field and experience in high-speed electro-optic device design.

The predicted salary is between 60000 - 80000 € per year.

At Microsoft Research, we are shaping the future of AI infrastructure by pursuing high-risk and high-reward programs that will define the next generation of AI platforms. Our work spans the full stack, models, systems, software, and hardware, and we partner with product teams across Microsoft to turn research breakthroughs into impact at scale. Through close collaboration with industry partners, the team bridges research and production, translating hardware innovation into working prototypes and manufacturable solutions for next-generation AI infrastructure.

You will join a multidisciplinary team working at the intersection of optics, electronics, photonics, packaging, networking, and AI system design. We are looking for an Optoelectronics Device Engineer who will play a critical role in the design, simulation, and characterization of high-speed electro-optic devices. As an Optoelectronics Device Engineer, you will lead the design and optimization of optical and photonic devices, e.g., lasers, microLEDs, modulators, and photodetectors. You will leverage your deep understanding of semiconductor physics and your expertise with optical/device simulation tools to develop novel device designs, drive tape-outs, and validate device performance through hands-on lab characterization. You will work closely with both Microsoft R&D teams and Azure engineering teams to bring innovations from prototype to production.

This role offers the opportunity to work at the intersection of advanced semiconductor technology and photonic integration, collaborating with cross-functional teams including optical and electronics designers, packaging engineers, and system architects. This role is primarily based in the United Kingdom. Remote working may be considered in exceptional circumstances, at the organization’s discretion and in accordance with business requirements and employment policies.

Responsibilities:

  • Design and optimize photonics devices structures for high-speed optical communication applications.
  • Perform optical, electrical, and thermal device simulations using industry-standard tools to predict device performance, optimize designs, and guide layout and fabrication.
  • Collaborate with supplier partners and internal teams to execute tape-outs.
  • Conduct hands-on device characterization in the lab, including DC and high-frequency measurements (S-parameter measurements, eye diagrams), optical power measurements, spectral analysis, and reliability testing.
  • Develop and apply equivalent circuit models and compact models for electro-optic devices to enable co-simulation with electronic driver and transimpedance amplifier (TIA) circuits.
  • Analyze experimental data, correlate with simulation results, and drive iterative design improvements to meet performance targets specifications.
  • Serve as a technical expert in optoelectronic device physics, advising cross-functional teams on device-level trade-offs and their impact on system-level performance.
  • Contribute to intellectual property generation and patent filings.

Qualifications:

Required Qualifications:

  • PhD in Electrical Engineering, Physics, Photonics, Optical Engineering, or a related field.
  • Strong foundation in semiconductor physics, including carrier transport, p-n junctions, and photon-matter interactions.
  • Demonstrated experience designing high-speed electro-optic devices operating at GHz frequencies.
  • Proficiency with one or more optical/device simulation packages such as COMSOL Multiphysics, Tidy3D, Ansys Lumerical FDTD/MODE/CHARGE, HFSS, or Sentaurus/Silvaco TCAD.
  • Hands-on experience with optoelectronic device characterization in a lab environment, including high-speed RF measurements and optical test setups.
  • Ability to operate effectively in a multi-disciplinary environment.
  • Excellent communication skills in English, both written and spoken, including the skill to clearly communicate technical results and justify assumptions to diverse technical audiences.

Preferred Qualifications:

  • Experience with microLEDs, laser or photodetector device design and characterization.
  • Track record of tape-outs in photonic or optoelectronic foundry processes, including PDK development and design-for-manufacturability.
  • Experience with III-V optoelectronic device fabrication and/or silicon photonics platforms.
  • Knowledge of optical packaging, co-packaged optics, optical transceiver architectures, or datacentre interconnect requirements.
  • Experience with driving device concepts from concept to production.

This position will be open for a minimum of 5 days, with applications accepted on an ongoing basis until the position is filled. Microsoft is an equal opportunity employer. All qualified applicants will receive consideration for employment without regard to age, ancestry, citizenship, color, family or medical care leave, gender identity or expression, genetic information, immigration status, marital status, medical condition, national origin, physical or mental disability, political affiliation, protected veteran or military status, race, ethnicity, religion, sex (including pregnancy), sexual orientation, or any other characteristic protected by applicable local laws, regulations and ordinances.

If you need assistance with religious accommodations and/or a reasonable accommodation due to a disability during the application process, read more about requesting accommodations.

Principal Opto-Electronics Device Engineer in Cambridge employer: Microsoft

At Microsoft Research, we pride ourselves on being an exceptional employer, offering a dynamic work culture that fosters innovation and collaboration. Our multidisciplinary teams are dedicated to pushing the boundaries of technology, providing employees with unparalleled opportunities for growth and development in cutting-edge fields like AI and photonics. Located in the United Kingdom, we embrace a flexible working environment and uphold values of respect, integrity, and inclusion, ensuring that every team member can thrive and contribute to meaningful advancements in technology.

Microsoft

Contact Detail:

Microsoft Recruiting Team

StudySmarter Expert Advice🤫

We think this is how you could land Principal Opto-Electronics Device Engineer in Cambridge

Tip Number 1

Network like a pro! Reach out to current employees at Microsoft or in the optoelectronics field on LinkedIn. A friendly chat can give you insider info and might even lead to a referral.

Tip Number 2

Show off your skills! Prepare a portfolio or a presentation that highlights your past projects, especially those related to high-speed electro-optic devices. This will help you stand out during interviews.

Tip Number 3

Practice makes perfect! Get ready for technical interviews by brushing up on your semiconductor physics and device simulation tools. Mock interviews with friends can help you feel more confident.

Tip Number 4

Apply through our website! It’s the best way to ensure your application gets seen. Plus, it shows you’re genuinely interested in joining the Microsoft team.

We think you need these skills to ace Principal Opto-Electronics Device Engineer in Cambridge

Optoelectronics Device Design
High-Speed Electro-Optic Devices
Semiconductor Physics
Optical/Device Simulation Tools
COMSOL Multiphysics
Ansys Lumerical FDTD/MODE/CHARGE
HFSS

Some tips for your application 🫡

Tailor Your CV:Make sure your CV is tailored to the role of Principal Opto-Electronics Device Engineer. Highlight your experience with high-speed electro-optic devices and any relevant projects that showcase your skills in semiconductor physics and optical simulations.

Craft a Compelling Cover Letter:Your cover letter should tell us why you're passionate about this role and how your background aligns with our mission at Microsoft Research. Don’t just repeat your CV; use this space to share your unique story and what you can bring to the team.

Showcase Your Technical Skills:Be sure to include specific examples of your hands-on experience with optoelectronic device characterization and simulation tools. We want to see your expertise shine through, so don’t hold back on the details!

Apply Through Our Website:We encourage you to apply directly through our website. It’s the best way for us to receive your application and ensures you’re considered for the role. Plus, it’s super easy to do!

How to prepare for a job interview at Microsoft

Know Your Stuff

Make sure you brush up on your semiconductor physics and optoelectronic device design. Be ready to discuss specific projects you've worked on, especially those involving high-speed electro-optic devices. This will show that you not only understand the theory but also have practical experience.

Familiarise with Tools

Get comfortable with the optical/device simulation tools mentioned in the job description, like COMSOL or Ansys. If you can demonstrate your proficiency with these tools during the interview, it’ll give you a significant edge over other candidates.

Show Your Collaborative Spirit

Since this role involves working closely with cross-functional teams, be prepared to share examples of how you've successfully collaborated in the past. Highlight your communication skills and how you’ve navigated technical discussions with diverse teams.

Prepare for Technical Questions

Expect to face some challenging technical questions related to device performance and characterisation. Practise explaining complex concepts clearly and concisely, as this will demonstrate your ability to communicate effectively with both technical and non-technical audiences.