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Optical Design Engineer (Silicon Photonics) | PIC Design

Texas Instruments, Dallas, TX, United States


Change the world. Love your job.
Kilby Labs is the advanced R&D and product development support organization within Texas Instruments chartered to define and develop new and innovative technologies and solutions in collaboration with business units and customers.

As a member of Kilby Labs you’ll have the chance to interact with many product groups and functions, work with an interdisciplinary team, bridge from lab to fab to develop technologies, enable new markets, and scale-up for volume products.

About the Position
Kilby Labs is seeking a highly motivated and experienced Silicon Photonics Design Engineer to design silicon photonics solutions for advanced data communications applications and establish methodologies, tools, and automation flows for silicon photonics design. In this role, you will be responsible for the end-to-end design and layout of transmit and receive Photonic Integrated Circuits (PICs). You will play a critical role in helping to build up an internal design enablement toolset including PDK and verification flows. The role includes working closely with process development, system architecture, validation, and product and test engineering team members to ensure successful prototyping, product development, and launch. The role requires a creative problem-solver who can develop unique, breakthrough technologies that leap-frog the state-of-the-art and contribute across various aspects of a project depending on project needs.

Responsibilities may include, but are not limited to

PIC Design - Design of passive and active PIC components such as advanced passive waveguide circuit elements, and high speed active components such as modulators and Ge-based waveguide detectors.

Layout and tape-out execution - Translating schematic level layouts to .gds files and development of PCells, including both hands-on layout and working with remote layout engineering teams.

Design Enablement and PDK development – Assist with Building and maintaining a Process Design Kit and schematic-driven layout automation including development of design rules and design rule checking.

Layout Verification – Development of DRC and LVS checks for layout verification to ensure first-pass silicon success

Design for manufacturability – Collaborate with design, systems, architecture and packaging teams to ensure designs meet specifications with high yield. Link design rules to process capabilities and test yield data.

Design for test – Ensure designs include advanced DFT features including strategies and architectures enabling wafer-level and die-level volume testing.

Develop and implement volume-product-ready solutions that are power- and cost-efficient, contributing to the development of the launch of datacom transceiver products.

Ensure component models and design rules correlate to volume test data by closing the loop between manufacturing test data and design simulations using tools such as JMP.

Develop PICs based on both external fixed and custom Si fabrication processes, working closely with process teams.

See designs through to mass production by collaborating with product engineering and operations teams.

Participate in R&D to develop next generation photonics technologies, drive IP development.

Present work and findings to internal and external stakeholders.

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