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Silicon Photonics Designer and Tester Engineer

Ranovus6 days ago
Ottawa, ON
Mid Level
full_time

About the role

Social networking, machine learning, and big data analytics demand ever-increasing network connectivity. RANOVUS, with operations in Ottawa, Canada, Nuremberg, Germany, and San Jose, USA, is a solution provider for the next generation data center infrastructures. We aim to deliver advanced technology that minimizes environmental impact through lower power dissipation. Working with world class fabrication partners, RANOVUS is the leader in the application of unique new technologies to fiber-optic communications products for data-centers.

We are seeking a highly skilled, independent, and detail-oriented Silicon Photonics Designer and Tester Engineer to join our team. The successful candidate will have a Master or PhD degree in Engineering Physics or Electrical engineering and at least 2 years of experience in silicon photonics design and testing, supporting various research and development projects in a collaborative laboratory environment.

Key Responsibilities:

  • Design and test silicon photonic integrated circuits (PICs) at the die level.

  • Develop and work with opto-mechanical setups that include lasers, optical fibers, electrical probes, polarization controllers, and other optical and electrical equipment to evaluate and characterize photonic devices.

  • Perform device simulations and data analysis to optimize photonic designs and improve performance.

  • Set up and operate both manual and automated testing equipment for optical measurements.

  • Assemble and adjust mechanical setups for photonics and optical experiments.

  • Work independently to troubleshoot and solve technical challenges while contributing to a collaborative team environment.

  • Collaborate closely with engineers and scientists across multiple projects, demonstrating flexibility in adapting to new tasks. Ensure accuracy and attention to detail in all measurements and test results.

Qualifications & Skills:

  • Master or PhD degree in a relevant field.

  • Minimum 2 years of experience in silicon photonics design and testing.

  • Hands-on experience with testing at the die level, optical fibers, electrical probes, and polarization experiments.

  • Proficiency in device simulations and data analysis.

  • Experience with layout design for photonic devices.

  • Proficiency in software tools such as MATLAB, Python, and Ansys Lumerical.

  • Ability to work independently while maintaining strong collaborative and communication skills.

  • Proficiency in working with both manual and automated test equipment.

  • Strong mechanical skills for setting up and adjusting optical test stations.

  • Ability to work efficiently on multiple projects and collaborate with various teams. High attention to detail and ability to ensure accuracy in data collection and reporting.

Preferred Qualifications:

  • Experience with manual and automated optical test setups.

  • Familiarity with optical alignment and laser safety procedures. Strong troubleshooting skills in an R&D environment.

Work Environment: You will be part of a friendly and welcoming team where colleagues are always willing to share knowledge and help solve challenges together. We value a balanced mix of independent problem-solving and teamwork, ensuring both personal growth and collective success.

If you are passionate about silicon photonics technology and enjoy working in a supportive, engaging, and dynamic lab setting, we encourage you to apply!

About Ranovus

Telecommunications
51-200

The world-class team of scientist and engineers at Ranovus is comprised of professionals with a unique combination of decades of expertise in product development of optoelectronics components and transceiver subsystems for the information technology industry.

Ranovus'​ disruptive innovation in Quantum Dot Multi-Wavelength Laser combined with advanced digital and photonics integrated circuit technologies is setting a new industry benchmark for the next generation of optical interconnect solutions.

Our technology delivers significant reduction in power dissipation, size and cost of interconnects, and enables a much higher degree of distortion tolerance compared to traditional solutions, thereby enabling a "freeway"​ architecture to reduce network latency.