24 Sep
|
Qualcomm
|
Bengaluru
24 Sep
Qualcomm
Bengaluru
Job Summary
We are seeking a Sr. Staff Power Lead Systems Architecture to lead system-level power architecture, analysis, modeling, projection, optimization, and issue closure for complex SoCs and platforms. This is a systems architecture role, not a narrowly scoped circuit-power or physical-design position.
The successful candidate will define and assess system power states, power islands, operating points, workload scenarios, data movement, shared-resource policies, and power-performance-thermal trade-offs. The role will establish traceability from product use cases and architecture assumptions through pre-silicon estimates, design evidence, post-silicon measurements, correlation, and next-generation improvements.
Key Responsibilities
- Lead system power architecture for target SoCs and platforms from concept development through architecture freeze, design convergence, pre-silicon readiness, post-silicon characterization, and learning closure.
- Translate product requirements, use cases, workload behavior, concurrency, duty cycles, thermal constraints, and performance KPIs into system-level power requirements and architecture decisions.
- Define and analyze system power states, power islands, retention strategies, clock- and power-gating behavior, wake/sleep flows, operating points, DVFS policies, and cross-IP power-management interactions.
- Establish top-down system power budgets and projections and work with IP teams to decompose targets, assumptions, modes, activity profiles, and optimization requirements.
- Develop or guide workload-driven analytical, simulation, empirical, or hybrid models for power and performance projection.
- Evaluate architectural options across power, performance, thermal behavior, area, latency, responsiveness, complexity, risk, and user-experience objectives.
- Perform workload, use-case, concurrency, utilization, traffic, and data-movement analysis to identify system-level optimization opportunities.
- Drive cross-IP power optimization involving compute, memory, interconnect, multimedia, connectivity, peripherals, system infrastructure, firmware, and software policies.
- Track gaps between targets and projections; lead technical investigations, root-cause analysis, mitigation planning, risk assessment, and issue closure.
- Integrate IP-level models and implementation evidence into coherent system projections while making assumptions, model fidelity, uncertainty,
and confidence ranges explicit.
- Define architecture validation and measurement requirements so that pre-silicon hypotheses can be verified on emulation, prototypes, boards, and production silicon.
- Correlate pre-silicon models and estimates with post-silicon rail, workload, telemetry, and performance measurements; explain material variances and feed calibrated models and architecture actions into subsequent products.
- Partner with SoC architecture, performance/modeling, IP architecture, RTL design, DV, physical design, firmware, software, thermal, validation, lab, and silicon teams.
- Communicate system power status, trade-offs, risks, recommendations, and closure plans to technical and program stakeholders.
- Develop reusable power-architecture methods, workload definitions, model standards, projection practices, dashboards, and review criteria.
Minimum/Basic Qualifications
- Bachelors degree in Engineering, Electrical/Electronics Engineering, Computer Engineering, Computer Science, Information Systems, or a related field and 10+ years of Systems Engineering, SoC Architecture, Power Architecture, Performance/Power Analysis, or related experience; or
- Masters degree in a related field and 8+ years of relevant experience; or
- PhD in a related field and 5+ years of relevant experience.
- Approximately 10+ years of relevant industry experience is preferred.
- Strong understanding of SoC and computer architecture, including compute subsystems, memory hierarchy, interconnects, system infrastructure, I/O, clock/reset, and HW/SW interaction.
- Experience in system power architecture, workload-based power analysis, power-performance analysis, system modeling, projection, optimization, or post-silicon power characterization.
- Ability to reason about agile and leakage power, operating modes, utilization, duty cycle, voltage/frequency operating points, concurrency, and thermal or sustained-performance effects.
- Demonstrated ability to lead cross-functional technical investigations and convert analysis into architecture or optimization decisions.
- Strong analytical, problem-solving, technical-communication, and stakeholder-leadership skills.
Preferred Qualifications and Domain Expertise
- Experience defining SoC or subsystem power states, islands, low-power modes, sleep/idle behavior, wake-up paths, retention, power gating, clock gating, or DVFS.
- Experience with representative CPU, GPU, DSP, NPU/AI, memory, interconnect, multimedia, connectivity, peripheral, or full-platform workloads.
- Hands-on experience with power/performance modeling, sensitivity analysis, projection, workload characterization, trace analysis, scripting, or large-data analysis.
- Experience correlating architecture models and pre-silicon estimates with post-silicon measurements and driving variance root cause and model calibration.
- Familiarity with rail-level power measurements, silicon telemetry, performance counters, profiling, lab measurement methods, board bring-up, or system debugging.
- Working knowledge of RTL/gate-level power inputs, activity factors, leakage/dynamic splits, corners, implementation data, or power-estimation tools.
- Awareness of UPF/CPF, power-domain crossings, isolation, level shifting, retention, structural low-power verification, synthesis, timing, or physical-design power considerations.
- Understanding of PMICs, regulators, power rails, PDN/power-grid considerations, thermal management, and their relationship to SoC operating policy.
- Familiarity with Linux/Android, firmware, device drivers, system traces, power-management software, or Python/shell-based automation.
- Prior SoC architecture, subsystem architecture, IP microarchitecture, design, validation, or silicon-debug experience.
- Demonstrated technical leadership across distributed teams, including the ability to align stakeholders and influence decisions without direct authority.
Minimum Qualifications
- Bachelor's degree in Engineering, Information Systems, Computer Science, or related field and 6+ years of Systems Engineering or related work experience.
- Master's degree in Engineering, Information Systems, Computer Science, or related field and 5+ years of Systems Engineering or related work experience.
- PhD in Engineering, Information Systems, Computer Science, or related field and 4+ years of Systems Engineering or related work experience.
📌 Sr. Staff Engineer - Power Lead, Systems Architecture (Bengaluru)
🏢 Qualcomm
📍 Bengaluru