Senior Staff Digital Systems & Emulation Engineer

Renesas Electronics•Austin, TX
•Onsite

About The Position

Renesas is seeking an experienced Senior Staff Digital Systems & Emulation Engineer to develop and drive advanced pre-silicon emulation and digital system validation for next-generation power management products targeting AI, datacenter, and high-performance computing applications. This role will focus on bridging system architecture, digital design, FPGA/emulation, control algorithms, and hardware validation, enabling complex digital power-management functions to be exercised and validated ahead of silicon availability. The successful candidate will combine strong digital design fundamentals with hands-on FPGA and emulation expertise and a working knowledge of digital signal processing and control techniques. The engineer will work closely with System Architecture, Digital Design, Firmware, Design Verification, Analog/Mixed-Signal Design, Applications, and Validation teams to translate product requirements and algorithms into executable real-time prototypes. The position is a senior individual-contributor role with significant technical ownership and influence on emulation architecture, methodology, and future development platforms.

Requirements

  • Bachelor's or Master's degree in Electrical Engineering, Computer Engineering, Computer Science, or a related discipline.
  • 10+ years of relevant industry experience in digital design, FPGA development, emulation, or related semiconductor development.
  • Strong hands-on experience with FPGA architecture, implementation, integration, and debug.
  • Strong knowledge of Verilog and/or SystemVerilog RTL design.
  • Good understanding of digital design fundamentals including clocks, resets, CDC, state machines, datapaths, pipelining, timing, and hardware interfaces.
  • Experience with FPGA synthesis, implementation, timing analysis, and hardware bring-up.
  • Experience developing scripting and automation using Python, TCL, shell, or similar languages.
  • Hands-on experience debugging complex interactions between RTL, firmware/software, and hardware.
  • Ability to interpret system requirements and translate them into practical emulation and validation architectures.
  • Strong technical documentation and communication skills.
  • Demonstrated ability to work effectively across geographically distributed and cross-functional engineering teams.

Nice To Haves

  • Experience with semiconductor pre-silicon emulation or FPGA prototyping.
  • Experience with major FPGA platforms and development environments.
  • Knowledge of digital signal processing, including digital filters, fixed-point arithmetic, sampling, quantization, and signal-processing datapaths.
  • Understanding of digital control systems and feedback-loop concepts.
  • Experience with digital power management, multiphase voltage regulators, PMICs, or mixed-signal ICs.
  • Familiarity with ADC/DAC interfaces, PWM generation, telemetry, high-speed digital interfaces, and real-time control systems.
  • Experience correlating behavioral models, RTL simulations, FPGA/emulation results, and laboratory measurements.
  • Familiarity with Python-based modeling, data analysis, and automated hardware validation.
  • Experience developing reusable FPGA/emulation platforms supporting multiple products or development teams.

Responsibilities

  • Architect, develop, and maintain FPGA-based emulation platforms for advanced digital power controllers and mixed-signal power-management products.
  • Map and integrate production or representative RTL into FPGA/emulation environments for pre-silicon feature development and validation.
  • Develop reusable FPGA infrastructure, interfaces, test capabilities, and debug methodologies supporting multiple product generations.
  • Develop and improve build, configuration, automation, and debug flows to make emulation environments accessible and repeatable across engineering teams.
  • Support integration of FPGA/emulated controllers with real power stages, loads, instrumentation, and system-level hardware.
  • Identify differences between ASIC and FPGA implementation and develop appropriate strategies to maintain meaningful system-level behavior and correlation.
  • Understand and contribute to digital system architecture, microarchitecture, and RTL implementation where required.
  • Analyze timing, latency, clock-domain, interface, datapath, and real-time execution requirements relevant to system behavior.
  • Develop or modify synthesizable RTL blocks required for emulation, instrumentation, prototyping, and architectural exploration.
  • Support integration and debug of digital interfaces, ADC/DAC data paths, PWM generation, telemetry, protection functions, state machines, and embedded control logic.
  • Work with Digital Design and Verification teams to correlate behavior between behavioral models, RTL simulation, emulation, and silicon.
  • Support implementation and evaluation of digital control and signal-processing functions used within power-management systems.
  • Translate mathematical or system-level algorithms into practical fixed-point and real-time digital implementations.
  • Evaluate effects of sampling rate, latency, quantization, numerical precision, filtering, and computational architecture on system performance.
  • Implement and evaluate digital filters, signal conditioning, control-loop functions, and related DSP algorithms where required.
  • Collaborate with system architects to rapidly prototype new algorithms before committing them to production RTL.
  • Develop system-level emulation scenarios representing realistic customer use cases and operating conditions.
  • Define measurable pass/fail criteria and validation methodologies for new architectural features.
  • Correlate emulation results with simulation, behavioral models, bench measurements, and silicon measurements where available.
  • Support pre-silicon validation of control-loop behavior, transient response, telemetry, protection mechanisms, sequencing, communication interfaces, and other system-level functions.
  • Perform detailed debug across hardware, RTL, firmware, and system boundaries to identify root causes of complex issues.
  • Define and improve methodologies for FPGA prototyping and emulation of mixed-signal and digitally controlled power systems.
  • Develop reusable architectures, automation, scripts, and engineering workflows that reduce setup and debug time.
  • Participate in architecture, design, and verification reviews and provide technical guidance on emulation feasibility and implementation trade-offs.
  • Work independently on complex technical problems and drive issues to resolution across organizational boundaries.
  • Mentor engineers in FPGA, digital design, emulation, and system-debug techniques.
  • Document architecture, implementation, test methodology, limitations, and results to enable reuse across programs.

Benefits

  • competitive benefits package
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