Principal Electrical Design Engineer
Asteralabs · San Jose, California, United States · 2026-09-08
About this role
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.
Job Description
Principal Electrical Design Engineer
Board Hardware Engineering
Department: Hardware Engineering
Reports To: [Engineering Leadership]
Job Type: Full-Time, Exempt
Level: Principal Electrical Design Engineer (L4)
Location: San Jose, On-site
About the Role
We are seeking a Principal Electrical Design Engineer to define and drive the architecture, design, and technical strategy for advanced board-level hardware across next-generation networking and high-performance connectivity platforms. This role encompasses complex hardware systems including chassis boards, NIC cards, PCIe Gen6 platforms, and 800G Ethernet products.
This is a principal-level technical leadership role requiring deep domain expertise, strategic vision, and organizational influence. You will set the technical direction for board architecture, establish design methodologies, drive innovation in high-speed system design, and serve as the top technical authority across multiple programs. You will partner with and influence silicon, SI/PI, mechanical, firmware, manufacturing, system, and executive teams to deliver industry-leading products from concept through production and beyond.
Key Responsibilities
Technical Strategy and Architecture Leadership
• Define and own the board-level hardware architecture and technical roadmap across multiple product lines and platform generations
• Establish design standards, methodologies, and best practices that scale across the hardware engineering organization
• Drive architectural tradeoff decisions for complex multi-layer PCBs integrating high-speed digital, analog, and mixed-signal circuitry, balancing performance, cost, schedule, and manufacturability
• Get involved and drive discussions on stack-up strategy, impedance optimization and other SI relates development work
• Own power delivery architecture strategy including multi-rail regulation topologies, advanced sequencing schemes, transient response optimization, protection philosophies, and power budgeting across platform generations
• Define and evolve hardware implementation strategies for management and control interfaces such as I2C, SPI, GPIO, MDIO, and debug and observability architectures
Electrical Design Ownership
• Own schematic capture and board-level design for complex multi-layer PCBs with high-speed digital, analog, and mixed-signal circuitry
• Serve as the technical authority for board-level hardware development across high-performance server and connectivity platforms, including NIC cards, PCIe add-in cards, and chassis-integrated hardware
• Provide technical oversight and approval for schematic capture and board-level designs across multiple designs
• Lead component strategy and qualification roadmaps in partnership with suppliers, sourcing, and manufacturing teams
• Drive design-for-excellence initiatives including DFT, DFM, and DFR to systematically improve manufacturability, yield, reliability, and production readiness across all programs
Bring-Up, Validation, and Debug Leadership
• Define and own the bring-up and validation strategy for new hardware platforms, establishing frameworks that improve first-pass success rates across the organization
• Lead root-cause analysis of the most complex and escalated hardware issues across high-speed interfaces, power delivery, clocks, resets, and control paths
• Drive systemic improvements to debug methodologies, validation coverage, and failure analysis processes
• Partner with firmware, software, and system teams to define and validate initialization sequences, telemetry, diagnostics, and platform-level functionality
• Own corrective action frameworks and feed lessons learned into design standards and review processes
Cross-Functional Impact
• Serve as the technical point of escalation and decision-maker for hardware design challenges across the organization
• Work closely with SI/PI, mechanical, thermal, firmware, system, and manufacturing teams throughout the product lifecycle, driving alignment and resolving cross-domain technical conflicts
• Interface with silicon vendors and internal ASIC teams at a strategic level on platform architecture, bring-up, errata resolution, compliance, and next-generation readiness
• Mentor and develop senior and lead engineers, raising the technical bar across the hardware engineering team
• Lead and contribute to design reviews and architectural reviews, and technical publications that advance the team’s collective expertise
• Represent the hardware engineering organization in executive reviews, customer engagements, and industry forums as needed
Required Qualifications
• Bachelor’s or Master’s degree in Electrical Engineering or a closely related field; advanced degree preferred
• 12+ years of progressive hardware design experience with deep expertise in board-level electrical engineering and demonstrated technical leadership across multiple product generations
• Extensive track record of architecting and delivering production hardware for server, networking, storage, or high-performance compute systems at scale
• Expert-level experience with high-speed SerDes-based systems supporting Ethernet, PCIe, or related…
Skills asked for
- python
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