Photonics System Architect
As Photonics System Architect you will work with internal and external customers and translate their requirements into architectures in the space of IMDD datacom, coherent telecom, quantum and PON.
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Are you passionate about pushing the boundaries of photonic integrated circuit (PIC) technology? Lightium, a leading-edge photonics startup, is looking for a skilled Photonics System Architect to spearhead the system-level design and requirements management for internal and external customers in Lightium’s proprietary thin-film lithium niobate (TFLN) platform. This role offers a unique opportunity to contribute to the next generation of photonics solutions while collaborating with leading transceiver manufacturers and optical interconnect hardware companies.
Position Summary
As a Photonics System Architect, you will be responsible to define and implement system-level architectures together our customers and for Lightium’s reference designs from concept over schematic until layout in Lightium’s proprietary TFLN-based technology. You will have the opportunity to apply state-of-the-art requirements tracking methodologies and tools to guarantee the success of internal and external customers. You will derive the your contributions will be pivotal in ensuring a first-time right design of complex electro-optical high-speed photonic integrated circuits (PICs).
Key Responsibilities
System Concepts and Architecture: Design optical on-chip communication systems based on internal and external customer requirements in the space of coherent communication in both C-band and O-band (coherent lite), intensity modulation direct detection (IMDD), quantum, radio over fiber (RoF) and passive optical networking (PON) systems. Setting up system-level specifications and derive block-level specifications. You will derive the system architectures of those systems and drive their schematic design and layout in state-of-the-art EDA tools while ensuring both manufacturability and testability.
Requirements Management: Benchmarking and selection of requirements management tools, their implementation, applying the previously-defined procedures and training of your colleagues and peers in the space of system engineering. Prior experience with PLM systems at industrial level is advantageous for this role.
Process Development: Define and implement best-in-class requirements management methods and standard operating procedures for Lightium’s high-speed electro-optical TFLN-based PIC technology in collaboration with its internal and external stakeholders.
Collaboration: Work closely with the R&D teams from design to optical testing and characterization, contributing to cross-functional projects to advance our TFLN technologies. Occasional travel to Lightium’s existing customers and prospects.
Documentation and Reporting: Maintain thorough documentation and report findings, as well as establishing standard-operating procedures and training new colleagues.
Innovation: Stay up-to-date on the latest advancements in photonics, incorporating new techniques and technologies into our R&D landscape. Contribution to Lightium’s IP portfolio.
What You’ll Bring
Educational Background: An advanced degree (PhD preferred) in Communications, Integrated Photonics, Electrical Engineering, Physics or a related field.
Experience Level: At least 5 years work experience in RF and optical system design in integrated photonics (PICs) including ISO-compliant requirements management. Prior experience with integrated photonics, such as TFLN, silicon photonics, SiN, InP or related photonics platforms including microwave photonics, is mandatory for this role. Prior experience with IEEE standards such as IEEE 803.2ba including 100 GbE LR4, 400 GbE DR4 up to 1.6T DR4, 1.6T ZR and 1.6T ZR+ is a plus.
Technical Skills: Proficiency in system-level design including system-level simulation software packages such as Ansys Lumerical, GDSFactory, Luceda, PhotonDesign, or VPI Photonics. Strong understanding on system-level architectures in the space of photonics, like coherent transmitters and coherent receivers. Requirements tracking according to the V development model. Prior experience with quantum computing systems or optical communication between or towards satellites is a plus.
Organization & Documentation: Strong organizational skills to plan your work schedule between multiple facilities, record your results and procedures follow facilities’ guidelines, and use best practices to maintain confidentiality.
Collaboration: Excellent communication skills and the ability to communicate effectively in a multidisciplinary team and with international customers. Cultural awareness and tailoring of communication style to US, European and Asian customers.
Adaptability: The ability to thrive in a fast-paced startup environment, demonstrating flexibility and resilience in the face of change.
Language Skills:Fluency in English is required; knowledge of German, French or an Asian language is an advantage.
What We Offer
A unique opportunity to lead a cutting-edge manufacturing initiative in the rapidly growing field of photonics.
Competitive compensation and benefits package, including employee stock option plan (ESOP), reflective of your experience and expertise.
Become a key player in an early-phase startup and be part of a young, motivated, and energetic team. You will have the unique opportunity to create, grow, and develop your professional skills at a fast pace.
We'd love to hear from you if you're passionate about building new tech from the ground up and thrive in a collaborative and innovative environment.
Lightium is an equal opportunity employer. We celebrate diversity and are committed to creating an inclusive environment for all employees.
- Locations
- Zürich
About Lightium AG
Just as silicon chips reshaped electronics, Photonic Integrated Circuits (PICs) are poised to revolutionize how we process, store, and transmit data. As data creation and consumption explode, transmission speeds struggle to keep up.
We are proud to be Europe’s first company to offer a high-volume, production-grade foundry platform based on our proprietary thin-film lithium niobate (TFLN) technology. This material outperforms traditional silicon photonics in speed, power efficiency, and overall performance.
We are positioned at the forefront of photonics, enabling ultra-high speeds for our connected world.