Power Management Architect

Posted 2 Days Ago
Be an Early Applicant
Santa Clara, CA, USA
In-Office
200K-300K Annually
Senior level
Artificial Intelligence • Hardware • Software • Semiconductor
The Role
Own the power architecture for Physical AI SoCs, including power domains, DVFS, power states, power delivery, and low-power techniques. Define on-die power management, PMIC interfaces, sensors, telemetry, and hardware/software controls. Establish energy and thermal budgets, model PPA trade-offs, integrate UPF-based power intent, and validate designs through silicon bring-up. Partner across silicon, firmware, thermal, package, and software teams while setting methodology standards and mentoring engineers.
Summary Generated by Built In
Role Overview

Velaura is designing the compute silicon that powers robots, autonomous systems, and intelligent machines that operate in the physical world—where energy is scarce, thermal headroom is limited, and every milliwatt affects range, runtime, and performance. As Power Management Architect for our Physical AI System-on-Chip (SoC), you will own the power architecture of our silicon: defining how the chip delivers, distributes, and manages energy across compute, AI/NPU, memory, and I/O so that our platforms hit their performance targets within tight power and thermal budgets.

This is a foundational, cross-cutting role spanning silicon, firmware, platform software, and product teams. You will set Velaura’s power management strategy from the earliest architecture phase through tape-out and production—shaping power delivery, voltage and frequency scaling, low-power states, and the hardware/software control that keeps Physical AI systems efficient in the field.


    Responsibilities
  • Own the SoC power architecture: define power domains, voltage/frequency (DVFS) strategy, power states, and the power delivery network across Velaura’s Physical AI silicon roadmap.

  • Define dynamic and static power management techniques including clock and power gating, adaptive voltage scaling, body biasing, and retention strategies, to maximize performance-per-watt for AI and real-time workloads.

  • Establish power and energy budgets and model them across use cases; drive power, performance, and area (PPA) trade-offs with architecture, design, and product teams.

  • Architect the on-die power management and control subsystem—PMIC interface, power management controller, sensors, and telemetry—and the firmware/software policies that drive it.

  • Partner with silicon design, firmware, thermal, package, and platform software teams to embed power intent (e.g., UPF) into the design flow and validate it through implementation and silicon bring-up.

  • Define power and thermal management for sustained real-world operation, including thermal throttling, energy-aware scheduling, and safe operating limits.

  • Establish power architecture standards, modeling methodology, and review practices; mentor engineers and raise the power-engineering bar across the organization.

    Required Qualifications
  • 8+ years in power management, mixed-signal, or SoC architecture, with significant experience defining power architecture for shipping silicon or embedded platforms.

  • Deep expertise in low-power design techniques: multiple power domains, DVFS, clock/power gating, adaptive voltage scaling, retention, and power state management.

  • Strong understanding of power delivery networks, PMICs, voltage regulation, and the interaction between power, thermal, and package constraints.

  • Hands-on experience with power intent and low-power methodology (e.g., UPF/CPF) and with power modeling and analysis across the SoC design flow.

  • Experience working across silicon design, firmware, and platform software to define and validate power management policies from architecture through silicon bring-up.

  • Bachelor’s or advanced degree in Electrical/Computer Engineering or a related field, or equivalent practical experience.

  • Excellent written and verbal communication skills, with a track record of influencing technical direction and mentoring engineers.

    Preferred Qualifications
  • Experience optimizing power for AI/ML accelerators or NPUs and for real-time or latency-sensitive edge workloads.

  • Familiarity with robotics, automotive, mobile, or other power- and thermally-constrained domains, and with battery and energy-storage considerations.

  • Experience with energy-aware software/firmware, thermal management, and silicon power characterization and correlation.

  • Prior experience at an early-stage or high-growth semiconductor or hardware company, building power architecture and methodology from the ground up.

Why Velaura?

Velaura is building next-generation compute technology for cloud, edge, and Physical AI. Our solutions will enable robots, autonomous systems, drones, and other intelligent machines to operate efficiently in the physical world.
This is an opportunity to help build foundational technology at a time when the industry is undergoing fundamental change. You will work alongside experienced leaders, architects, engineers, and operators who have delivered industry-defining products across mobile, cloud, semiconductor, and AI platforms. If you enjoy solving difficult problems, working across disciplines, and helping shape the future of Physical AI, we would love to hear from you.

Equal Employment Opportunity and Accommodations

Velaura is an Equal Opportunity Employer that is committed to inclusion and diversity. Qualified applicants will receive consideration for employment without regard to race, color, religion, national origin, gender, sexual orientation, gender identity, disability or protected veteran status. We also take affirmative action to offer employment
opportunities to minorities, women, individuals with disabilities, and protected veterans.

Velaura is committed to working with qualified individuals with physical or mental disabilities. Applicants who would like to contact us regarding the accessibility of our website or who need special assistance or a reasonable accommodation for any part of the application or hiring process may contact us at: [email protected]. This contact
information is for accommodation requests only. Evaluation of requests for reasonable accommodation will be determined on a case-by-case basis.

Skills Required

  • 8+ years in power management, mixed-signal, or SoC architecture, with significant experience defining power architecture for shipping silicon or embedded platforms.
  • Deep expertise in multiple power domains, DVFS, clock and power gating, adaptive voltage scaling, retention, and power state management.
  • Strong understanding of power delivery networks, PMICs, voltage regulation, and power, thermal, and package interactions.
  • Hands-on experience with power intent and low-power methodology, such as UPF or CPF, and power modeling and analysis across the SoC design flow.
  • Experience working across silicon design, firmware, and platform software to define and validate power management policies through silicon bring-up.
  • Bachelor's or advanced degree in Electrical or Computer Engineering or a related field, or equivalent practical experience.
  • Excellent written and verbal communication skills, with a record of influencing technical direction and mentoring engineers.
  • Experience optimizing power for AI/ML accelerators or NPUs and real-time or latency-sensitive edge workloads.
  • Familiarity with robotics, automotive, mobile, or other power- and thermally-constrained domains, including battery and energy-storage considerations.
  • Experience with energy-aware software or firmware, thermal management, and silicon power characterization and correlation.
  • Prior experience at an early-stage or high-growth semiconductor or hardware company, building power architecture and methodology from the ground up.
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The Company
104 Employees
Year Founded: 2022

What We Do

Velaura AI develops ultra-low-power silicon and software for AI compute infrastructure, serving cloud, edge, and physical-AI applications. Its patented, energy-efficient digital-design technology and power-optimized architectures support next-generation AI accelerators, helping compute systems scale with lower energy use. Drawing on deep semiconductor expertise, the company aims to make AI computing more efficient across data centers and intelligent devices, with performance and sustainability central to its approach.

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