Tower Semiconductor’s InP platform gains OpenLight’s design tools

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Customers can now design advanced photonic integrated circuits using a newly integrated ecosystem from OpenLight, Tower Semiconductor, and Cadence. OpenLight’s Process Design Kit is available on Cadence’s electronic design automation tools, specifically for Tower Semiconductor’s PH18DA indium phosphide-on-silicon photonics platform. This collaboration streamlines the development of PICs, bringing photonics design closer to standard IC workflows; as OpenLight CEO Dr. Adam Carter states, “By making our PDK available on Cadence tools, we enable customers to design photonic integrated circuits within the same environment they rely on for advanced IC development.” The PH18DA platform supports active photonic components for applications including optical interconnects and AI infrastructure. OpenLight’s PDK Integrates with Cadence Tools for PH18DA Platform The newly accessible PDK enables customers to design advanced PICs using a familiar IC design environment, accelerating development towards manufacturing readiness. Designs utilizing the PDK can be fabricated on Tower’s PH18DA platform, which integrates active photonic components like lasers, modulators, and amplifiers onto a single chip. This collaboration between OpenLight, Tower Semiconductor, and Cadence combines photonics intellectual property, manufacturing capabilities, and EDA tools, establishing a more efficient path from initial design to final production. Adam Carter is the CEO at OpenLight. Tower Semiconductor emphasizes the advancement of design capabilities through this integration, offering customers a streamlined approach to developing 400G and 1.6T laser-integrated PICs. “In collaboration with Cadence and OpenLight, we are advancing design capabilities on the PH18DA platform through a new capability that integrates expertise across technology, IP, and EDA,” explained Dr. Samir Chaudhry, vice president of customer design enablement and reliability at Tower Semiconductor. Gilles Lamant, distinguished engineer at Cadence, added that “Adding the OpenLight PDK for the PH18DA platform manufactured by Tower Semiconductor to the portfolio of photonics processes supported by the Cadence Photonics ecosystem is a key milestone because it marks the introduction of integrated active devices for high-performance, co-optimized electro-optical designs.” Adding the OpenLight PDK PH18DA manufactured by Tower Semiconductor to the rich portfolio of photonics processes supported by the Cadence Photonics ecosystem is a key milestone because it marks the introduction of integrated active devices for high-performance, co-optimized electro-optical designs. Gilles Lamant, distinguished engineer, Cadence Source: https://openlightphotonics.com/newsroom/openlight-and-tower-semiconductor-expand-ph18da-photonics-ecosystem-to-accelerate-photonic-ic-development Stay currentSee today’s quantum computing news on Quantum Zeitgeist for the latest breakthroughs in qubits, hardware, algorithms, and industry deals. Tags: The Quant The Quant possesses over two decades of experience in start-up ventures and financial arenas, brings a unique and insightful perspective to the quantum computing sector. This extensive background combines the agility and innovation typical of start-up environments with the rigor and analytical depth required in finance. Such a blend of skills is particularly valuable in understanding and navigating the complex, rapidly evolving landscape of quantum computing and quantum technology marketplaces. The quantum technology marketplace is burgeoning, with immense growth potential. This expansion is not just limited to the technology itself but extends to a wide array of applications in different industries, including finance, healthcare, logistics, and more. Latest Posts by The Quant: Quantum advantage shown with shallow circuits, despite errors August 11, 2026 MIT physicists observe quantum electrons rebuild phases in a material August 11, 2026 QC Ware calculates enzyme energy with hybrid quantum-classical method August 8, 2026
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