SoC Design Engineer

Posted 3 Days Ago
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Santa Clara, CA, USA
In-Office
157K-160K Annually
Junior
Semiconductor • Manufacturing
The Role
Designs and verifies SoC digital circuits for CMOS image sensors and Wi-Fi 6 architectures. Responsibilities include RTL development, IP integration, clock and reset management, power-aware design, synthesis, DFT, static timing analysis, UVM verification, automation scripting, mixed-signal integration, hardware modeling, chip bring-up, silicon validation, and imaging pipeline optimization. The role collaborates with physical design, analog, firmware, algorithm, and image-quality teams through tape-out and product qualification.
Summary Generated by Built In
Job Title: SoC Design Engineer
 
Job Duties:
 
  • Design and verify digital circuits for CMOS image sensors (CIS), including sensor array timing control logic, analog-digital interface modules, and ISP (Image Signal Processing) data pipelines, in accordance with product requirements, system architecture, and ASIC design methodology.
  • Perform full-chip SoC integration, including IP integration, clock/reset domain management, power-aware design, and system-level verification to ensure functional correctness and tape-out readiness.
  • Develop, integrate, and validate IPs through the complete ASIC design flow: RTL coding in Verilog/SystemVerilog, simulation, synthesis and DFT implementation.
  • Conduct static timing analysis (STA) for image sensor timing-critical paths, including interfaces between analog front-end and digital control logic, ensuring robust timing closure across process corners.
  • Collaborate closely with the back-end physical design team on floor planning, timing closure, power optimization, and DFT strategy throughout the implementation cycle.
  • Perform pre-silicon verification using UVM-based testbenches, and scripting languages (Python, Perl) for automation, coverage analysis, and regression testing.
  • Work with sensor analog/digital engineers to co-develop system-level architectures, define interface protocols, and validate mixed-signal functionality during integration and bring-up.
  • Partner with algorithm engineers to implement hardware-efficient microarchitectures, develop C/C++ reference models, perform RTL-to-model co-simulation, and optimize hardware/software partitioning for imaging pipelines.
  • Support post-silicon activities including chip bring-up, silicon validation, debugging, and performance tuning in collaboration with firmware, application, and image quality teams.
  • Contribute to image tuning, sensor characterization, and product qualification by analyzing hardware behavior and providing feedback to algorithm and system teams.
  • Create and maintain technical documentation, including architecture specifications, registers, interface control documents. 
 
Requirements:
 
Master’s degree or foreign equivalent degree in Electrical Engineering, Computer Engineering, or a closely related field
 
Require one year experience in digital design.
 
Must have the experience/skills:
 
  • Architecture for Wi-Fi 6 AP transmitter.
  • Wi-Fi PHY based RTL design and verification using Verilog.
  • Module-level verification and full-chip integration support.
  • Design optimization techniques for area, power, and timing.
  • Using industry-standard digital design and verification tools.
 

Annual base salary for this role in California, US is expected to be between $156,853 - $160,000. Actual pay will be determined on a number of factors such as relevant skills and experience, and the pay of employees in the similar role.

Skills Required

  • Master's degree or foreign equivalent in Electrical Engineering, Computer Engineering, or a closely related field
  • At least one year of experience in digital design
  • Architecture experience for Wi-Fi 6 access-point transmitters
  • Wi-Fi PHY-based RTL design and verification using Verilog
  • Module-level verification and full-chip integration support
  • Design optimization for area, power, and timing
  • Experience using industry-standard digital design and verification tools
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The Company
HQ: Santa Clara, California
1,448 Employees
Year Founded: 1985

What We Do

Founded in 1995, OMNIVISION has been at the leading-edge of technology, developing and delivering advanced digital imaging, analog, and touch & display solutions for multiple applications across several industries. With more than 3,000 employees worldwide and over 13 billion products shipped, OMNIVISION is a well-known global fabless semiconductor company. Our products can be found everywhere in people’s lives including mobile phones, security & surveillance, automotive, computing, medical, and emerging applications. Across these segments, OMNIVISION’S award-winning technology enables a smoother human/machine interface in many of today’s commercial devices. In this way, OMNIVISION delivers solutions that put its customers at the leading edge of technology. Whether it be developing the first mobile handset camera accessory in 2002, introducing the world’s smallest NTS camera in 2006 or launching PureCel CMOS image sensors in 2013, our dedication to providing reliable, innovative imaging and sensing solutions continue to be the primary aim. The company has recorded numerous industry firsts in its relentless quest for technology breakthroughs that deliver #InfiniteIngenuity: • Guinness World Record for the World's Smallest Commercially Available Image Sensor (OV6948) in 2019. In 2021, it beat its own record with the new OH0TA OVMed® • First to commercialize backside illumination technology in 2007 (OmniBSI™) • Industry's 1st to deploy the most mature LED Flicker Mitigation (LFM) solution in mass production for multiple automotive applications • Automotive industry leader with HALE, our HDR & LFM Engine combination algorithm • Developer of Nyxel® near-infrared technology with by far the best quantum efficiency in CMOS near-infrared imagine • Creator of CameraCubeChip™, the industry’s 1st wafer-level camera modules • First and only global shutter image sensors with cybersecurity, for ADAS and autonomous vehicles • First to introduce RBG-Ir technology to medical

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