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Technical Lead Digital Design Engineer

Astera Labs - San Jose, California, United States

Posted Mar 12, 2026

Benefits

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About this role

Technical Lead Digital Design Engineer San Jose, California, United States Astera Labs (NASDAQ: ALAB) provides rack-scale AI infrastructure through purpose-built connectivity solutions. By collaborating with hyperscalers and ecosystem partners, Astera Labs enables organizations to unlock the full potential of modern AI. Astera Labs' Intelligent Connectivity Platform integrates CXL®, Ethernet, NVLink, PCIe®, and UALink™ semiconductor-based technologies with the company's COSMOS software suite to unify diverse components into cohesive, flexible systems that deliver end-to-end scale-up, and scale-out connectivity. The company's custom connectivity solutions business complements its standards-based portfolio, enabling customers to deploy tailored architectures to meet their unique infrastructure requirements. Discover more at www.asteralabs.com . Role Overview Join Astera Labs as a Technical Lead Digital Design Engineer to architect and implement next-generation digital designs for high-performance AI connectivity solutions. You'll own complex blocks from micro-architecture through silicon bring-up, driving RTL implementation and collaborating with verification, physical design, and DFT teams to deliver production-quality silicon supporting PCIe Gen 6/7, CXL, UALink, UCI, Ethernet, and DDR4/DDR5 protocols. This role offers the opportunity to work on cutting-edge technology at the forefront of AI infrastructure, taking ownership of critical design challenges in a fast-paced, collaborative environment where your contributions directly impact products deployed by the world's leading hyperscalers. Key Responsibilities - Design Ownership & Execution - Develop and implement complex digital blocks and subsystems by defining micro-architecture and driving RTL implementation with an exceptional power, performance and area trade-off using silicon technologies better than 7nm. - Lead efforts to achieve timing closure and implement Design-for-Test (DFT)

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