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AMD
Secaucus, New Jersey
Source: AMD careers · View original posting
From AMD's posting. “We” and “our” refer to the employer.
ADVANCE YOUR CAREER. ADVANCE THE WORLD.
At AMD, we believe technology has the power to solve the world’s most important challenges. From advancing healthcare and scientific discovery to powering AI and the technologies people rely on every day, innovation at AMD is shaping the future.
Whether you’re designing next-gen processors, enabling AI breakthroughs, or bringing leading edge products to market, every role at AMD contributes to something bigger — technology that moves the world forward. Join us and, together, we’ll advance your career.
Own end-to-end hardware root cause analysis for server PCBAs, with primary depth in power delivery, PDBs, bridge boards, sequencing, connectors, and board-level electrical interfaces while maintaining capability across motherboards and high-speed IO paths. This role leads RCA for bring-up, factory, customer, and system-level failures by quickly isolating board-level issues through schematic and layout review, SI/PI assessment, rail behavior analysis, component-level electrical debug, imaging, fault isolation, and lab evidence.
The engineer will determine whether issues are driven by design, layout, component quality, manufacturing process, configuration, firmware-controlled behavior, or platform interactions. Success requires serving as the technical FA owner while partnering with Systems Integration on firmware and platform topics and driving corrective actions with hardware design, validation, silicon, manufacturing, supplier quality, firmware, and customer-facing teams.
The ideal candidate is a hands-on technical FA lead with deep server PCBA debug experience across power distribution, PDBs, bridge boards, and complex compute, GPU, accelerator, or hyperscale platforms. They can navigate ambiguous failures involving rails, VRs, hot-swap paths, connectors, cables, clocks, resets, diagnostics, motherboards, firmware-controlled hardware boundaries, and high-speed IO.
This person can review schematics and layouts, apply SI/PI fundamentals, perform component-level electrical debug, use scopes and logic analyzers, leverage imaging and fault isolation methods, and build evidence-based RCA conclusions. They should define diagnostic strategy, automate analysis with Python, Linux, and SQL, communicate clear technical conclusions, and drive corrective actions across cross-functional engineering teams.
Own end-to-end hardware root cause analysis for server PCBAs, with primary depth in power delivery, PDBs, bridge boards, sequencing, connectors, and board-level electrical interfaces while maintaining capability across motherboards and high-speed IO paths. This role leads RCA for bring-up, factory, customer, and system-level failures by quickly isolating board-level issues through schematic and layout review, SI/PI assessment, rail behavior analysis, component-level electrical debug, imaging, fault isolation, and lab evidence.
The engineer will determine whether issues are driven by design, layout, component quality, manufacturing process, configuration, firmware-controlled behavior, or platform interactions. Success requires serving as the technical FA owner while partnering with Systems Integration on firmware and platform topics and driving corrective actions with hardware design, validation, silicon, manufacturing, supplier quality, firmware, and customer-facing teams.
The ideal candidate is a hands-on technical FA lead with deep server PCBA debug experience across power distribution, PDBs, bridge boards, and complex compute, GPU, accelerator, or hyperscale platforms. They can navigate ambiguous failures involving rails, VRs, hot-swap paths, connectors, cables, clocks, resets, diagnostics, motherboards, firmware-controlled hardware boundaries, and high-speed IO.
This person can review schematics and layouts, apply SI/PI fundamentals, perform component-level electrical debug, use scopes and logic analyzers, leverage imaging and fault isolation methods, and build evidence-based RCA conclusions. They should define diagnostic strategy, automate analysis with Python, Linux, and SQL, communicate clear technical conclusions, and drive corrective actions across cross-functional engineering teams.
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