Principal System Power Management and Performance Architect

NVIDIA AI

Eugene (OR)

On-site

USD 232,000 - 368,000

Full time

4 days ago
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Job summary

NVIDIA is seeking a Principal System Power Management and Performance Architect in the Silicon Co-Design Group to tackle ambiguous problems spanning workload behavior, silicon capabilities, firmware policies, and platform constraints. You will shape system-level power/performance features across generations and own integration strategies for HSIO, DVFS, and P-states.

You will lead boot/IST architecture, drive datacenter power telemetry strategies, and redefine boot/low-power entry with cross-IP

Qualifications

  • BS or MS in EE/CE, or equivalent experience.
  • 15+ years of system architecture, development, and validation experience with focus on power and performance-per-watt in datacenter/high-performance platforms.
  • Verifiable history of guiding architecture decisions that shipped across multiple silicon programs.
  • Extensive knowledge of HSIO power management, DVFS, P-states, and boot flows across IP/firmware/platform layers.
  • Strong fundamentals in low-power design and rack-level performance architecture.

Responsibilities

  • Define the multi-generation roadmap for system-level power and performance features with prototyping and cost/benefit trade-offs across segments.
  • Own architecture and integration strategy for HSIO power management, DVFS, P-states, and low-power features across product lines.
  • Lead system-level boot and IST architecture for complex multi-IP systems with large interaction space and critical failure modes.
  • Drive power management strategy at datacenter scale, including rack-level telemetry and platform state coordination.
  • Identify and redesign system-level processes that break under new product requirements and architect the next steps.

Skills

System architecture
Power management
Low-power design
Datacenter hardware
AI workflow discipline

Education

BS or MS in EE/CE

Job description

Job Requisition ID

JR2022177

Job Category

Engineering

Time Type

Full time

NVIDIA builds the silicon behind AI, accelerated computing, and graphics. Every watt of performance and every degree of thermal headroom traces back to decisions made in power, performance, and thermal architecture. We are the Silicon Co-Design Group (SCG). We identify, own, and drive system-level co-design ideas. We start with initial concepts and advance to product differentiation across NVIDIA’s roadmap.

We are hiring a Principal System Power Management and Performance Architect who operates at the ambiguous boundary where workload behavior, silicon capabilities, firmware policies, and platform constraints collide, and who turns that ambiguity into architecture that survives across multiple silicon generations. SCG scope spans architecture, design, software, operations, platforms, and productization. This role shapes system, platform, and data center features and behavior, and partners with teams across NVIDIA.

What You’ll Be Doing

The work here is rarely well-defined when it arrives. You will be given problems that appear to be performance gaps or power anomalies and encouraged to build a framework for solving them, not just tackle a single instance.

  • Define the multi-generation roadmap for system-level power and performance features, grounded in prototyping, use-case analysis, and cost/benefit trade-offs across segments. You will decide what problems are worth solving and why.
  • Own the architecture and integration strategy for HSIO power management, DVFS, P-states, and low-power features. Your decisions improve product performance, power, and reliability across product lines — not just the current program.
  • Lead system-level boot and IST architecture defining how power and clock domains initialize, sequence, and recover across complex multi-IP systems where the interaction space is large and the failure modes matter.
  • Drive power management strategy at datacenter scale, including rack-level power telemetry and platform state coordination in high-performance environments.
  • Identify and redesign system-level processes that break under new product requirements—boot/reset flows, low-power entry/exit sequences, and control-system policies across IPs. When a prior design no longer holds, you diagnose why and architect what comes next.
  • Serve as the multi-functional technical authority across architecture, ASIC, board/platform, and firmware teams. You improve the power-performance trade-offs by influencing decisions made by teams you do not control.
What We Need To See

We are calibrating for candidates who can carry ambiguous product-level power and performance problems from concept through silicon correlation to release trade-off, and who can show the work!

  • BS or MS in EE/CE, or equivalent experience proven through the work itself
  • 15+ years of system architecture, development, and validation experience with a strong focus on power and performance-per-watt optimization in datacenter or high-performance platforms.
  • A verifiable history of guiding architecture decisions that shipped across multiple silicon programs. Be ready to walk through a case where you challenged a roadmap direction, explain your reasoning from first principles, and describe what changed.
  • Extensive knowledge of HSIO power management, DVFS, P-states, system boot flows, and low-power entry/exit architecture, including how they interact with IP, firmware, and platform layers. The expectation is not pattern-matching to prior solutions; it is knowing why the design space is built the way it is.
  • Strong fundamentals in low-power design, power management techniques, and rack-level performance architecture.
Ways To Stand Out From The Crowd

We are not looking for breadth of exposure. We are looking for depth of ownership in areas where the design space is hard, and the artifacts prove it!

  • Practical, hands-on depth in at least two of the following: Preference is given to candidates who have debugged these features in silicon and then architected the next-generation solution in any of the two areas: system power management, robust boot flow optimizations, HSIO, and memory power management.
  • A power management architecture or methodology you introduced that survived multiple silicon generations and was adopted beyond your immediate team. We want to understand the original problem, why prior approaches failed, how you structured the solution, and what the adoption path looked like.
  • A demonstrated AI/agentic workflow practice: Not just tool use, but a disciplined approach to compressing engineering velocity with AI while applying strong judgment to validate and refine results. Be prepared to describe where you’ve found AI dangerous, not just useful.
  • Visible technical leadership through patents, publications, conference presentations, standards participation, or broader industry recognition for work that influenced products, roadmaps, or engineering practice.

Widely considered to be one of the technology world’s most desirable employers, NVIDIA offers highly competitive salaries and a comprehensive benefits package. As you plan your future, see what we can offer to you and your family www.nvidiabenefits.com/

Your base salary will be determined based on your location, experience, and the pay of employees in similar positions. The base salary range is 232,000 USD - 368,000 USD.

You will also be eligible for equity and benefits.

Applications for this job will be accepted at least until August 30, 2026.

This posting is for an existing vacancy.

NVIDIA uses AI tools in its recruiting processes.

NVIDIA is committed to fostering an inclusive work environment and proud to be an equal opportunity employer. As we highly value diversity in our current and future employees, we do not discriminate (including in our hiring and promotion practices) on the basis of race, religion, color, national origin, gender, gender expression, sexual orientation, age, marital status, veteran status, disability status or any other characteristic protected by law.

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