Lead Mixed-Signal Architect, Low-Power ICs

Lead Mixed-Signal Architect, Low-Power ICs

Full-Time 63000 - 77000 Β£ / year (est.) No working from home possible
Nutanix

At a Glance

  • Tasks: Lead the design of mixed-signal ICs for robotics and innovative applications.
  • Company: Join Qualcomm Technologies, a leader in cutting-edge technology.
  • Benefits: Attractive salary, flexible work options, and opportunities for professional growth.
  • Other info: Collaborative environment with exciting projects and career advancement potential.
  • Why this job: Shape the future of technology with your expertise in low-power IC design.
  • Qualifications: Experience in mixed-signal design and strong leadership skills required.

The predicted salary is between 63000 - 77000 Β£ per year.

Qualcomm Technologies International Ltd is seeking a senior Low Power MSIC-Analog System Technologist to lead mixed-signal IC and system design for robotics, IIoT, and XR applications. You will define architecture, drive transistor-level design, and enable system-level integration from concept to silicon bring-up. The role demands strong cross-functional collaboration, architectural judgment, and proven leadership across analog, digital, and firmware domains in ambiguous environments.

Lead Mixed-Signal Architect, Low-Power ICs employer: Nutanix

Eaton South Molton is an exceptional employer, offering a dynamic work environment in the heart of Devon, where over 400 skilled professionals collaborate on cutting-edge aerospace manufacturing. With a strong commitment to employee growth through ongoing learning opportunities and a focus on wellbeing, Eaton fosters a culture of innovation and teamwork, making it an ideal place for those looking to make a meaningful impact in the aerospace industry.

Nutanix

Contact Details:

Nutanix Recruitment Team

We think you need these skills to ace Lead Mixed-Signal Architect, Low-Power ICs

Mixed-Signal IC Design
Low-Power IC Design
System Architecture Definition
Transistor-Level Design
System-Level Integration
Cross-Functional Collaboration
Architectural Judgment