Senior Photonics Process Engineer, Hybrid Integration - US

Reposted 16 Days Ago
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Cambridge, MA, USA
In-Office
120K-180K Annually
Senior level
Hardware • Information Technology • Software
The Role
Lead the development and optimization of hybrid integration processes for TFLN photonics, focusing on production scale and process innovation.
Summary Generated by Built In

HyperLight is at the forefront of the commercialization of thin-film lithium niobate (TFLN) integrated photonics - a material and process technology that is enabling high-performance, scalable optical components across AI/datacom infrastructure, hyperscale computing, quantum computing, sensing, and beyond. Founded in 2018 and backed by leading venture capital, we’ve built a team and a platform focused on real-world mass deployment of TFLN photonics technology.

At the core of our work is the TFLN Chiplet™ platform — a modular, integrated architecture designed for scalability, manufacturability, and seamless integration into complex systems. It offers a rare combination of extraordinary performance and industrial readiness, enabling system developers across applications to deploy the technology fast and ready. We partner with our customers and suppliers from conceptualization, design, and prototyping phases, all the way through mass production to ensure smooth and rapid deployment of TFLN photonic technology.

We believe our platform is the key, in the golden age of integrated photonics, to empower humanity to the next level. We assembled a world class team covering engineering, business, and operations. We believe in the power of integrity, innovation, collaboration, and pragmatic solutions. Our diverse team thrives on challenges and is united by a shared commitment to excellence. We take pride in tackling complex challenges with curiosity, humility, and a deep sense of care for one another.

If you are interested in pushing the limits of integrated photonics devices and revolutionizing their applications through hardware innovation, we are looking for you to join HyperLight’s growing team as a Senior Photonics Process Engineer. We are seeking highly motivated individuals who enjoy problem solving and will thrive in a collaborative environment.

Join us to make a real-world impact in a fast-paced, collaborative, and high-growth environment!

Responsibilities

As a Senior Photonics Process Engineer for Hybrid Integration, you will be a key technical leader driving the development, optimization, and scaling of fabrication processes for an advanced standalone TFLN platform and hybrid integration of TFLN with silicon-photonics platform. You will take ownership of advanced process node development, lead root-cause investigations, guide continuous improvement, and work cross-functionally to enable reliable high-volume manufacturing. This role is ideal for individuals who excel at hands-on problem-solving, process innovation, and collaborative execution. As part of your responsibilities, you will:

  • Explore, define, and optimize next-generation fabrication processes for a high performance standalone TFLN PIC platform, including hybrid integration of TFLN to silicon photonics platforms, using advanced packaging technologies.
  • Passive and active component design for hybrid TFLN SiPh platform.
  • Conduct root cause analysis and implement solutions to achieve high yield targets.
  • Collaborate with cross-functional teams, including Design, Test Engineering, and Production, to drive process optimization initiatives.
  • Prepare and maintain documentation, including process specifications, standard operating procedures, and reports.
  • Support the transfer and qualification of new products or processes into the manufacturing environment.

Requirements
  • PhD in Electrical Engineering, Applied Physics, Materials Science, Physics, or related fields.
  • 5+ years of experience in integrated photonics, semiconductors, or microelectronics fabrication.
  • Expertise in silicon photonics.
  • Experience with TFLN.
  • Expertise with advanced packaging (3D, 2.5D) technologies.
  • Track record in developing and optimizing new nanofabrication processes.
  • Strong problem-solving skills and ability to analyze complex data sets.
  • Experience with RF/high-speed electronics is a plus
  • Strong communications skills with Fluency in both English and Mandarin is a must

Benefits
  • Competitive market-based compensation (Salary range $120,000 - $180,000 per year)
  • Comprehensive health coverage, including medical, vision, and dental plans for individuals and families
  • 401(k) retirement plans with employee matching
  • Paid Parental Leave
  • Life and disability insurance
  • Commuter benefits and subsidies
  • Professional growth and mentorship opportunities

This role can be located at HyperLight's offices in Massachusetts, USA, OR in Singapore. Work authorization is required at either location.

HyperLight is an equal opportunity employer. All applicants will be considered for employment without attention to race, color, religion, sex, sexual orientation, gender identity, national origin, veteran or disability status. HyperLight is committed to providing reasonable accommodations to individuals with disabilities during our hiring process. If you need assistance or an accommodation, please contact us at [email protected].

Skills Required

  • PhD in Electrical Engineering, Applied Physics, Materials Science, Physics, or related fields
  • 5+ years of experience in integrated photonics, semiconductors, or microelectronics fabrication
  • Expertise in silicon photonics
  • Experience with TFLN
  • Expertise with advanced packaging technologies
  • Track record in developing and optimizing new nanofabrication processes
  • Strong problem-solving skills and ability to analyze complex data sets
  • Fluency in both English and Mandarin
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The Company
HQ: Cambridge, Massachusetts
58 Employees

What We Do

The information age relies on billions of devices converting signals between electricity and light waves. These integrated light circuits are the backbone of telecommunication infrastructures, data centers, sensors, and even secure quantum communications. Our devices set new benchmarks for performance, including extraordinary speed and efficiency, that will force industries to rethink and reimagine their current standards.

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