CPU Core RTL & Microarchitecture Engineer in Cambridge

CPU Core RTL & Microarchitecture Engineer in Cambridge

Cambridge Full-Time 56250 - 68750 £ / year (est.) Home office (partial)
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At a Glance

  • Tasks: Design and develop next-gen CPU cores with a talented team.
  • Company: Join AMD, a leader in cutting-edge technology and innovation.
  • Benefits: Enjoy hybrid work options, competitive salary, and career growth.
  • Other info: Collaborative environment with opportunities to work across hardware and software.
  • Why this job: Be at the forefront of CPU design and make a real impact.
  • Qualifications: Strong knowledge of CPU architecture and high-performance design experience.

The predicted salary is between 56250 - 68750 £ per year.

AMD is seeking a CPU Core MicroArchitect/RTL Design Engineer in the United Kingdom to craft a functional unit in AMD’s next-generation core. You will join a skilled team and contribute to a cutting-edge CPU roadmap, with hybrid work options and a focus on collaboration across hardware and software disciplines.

Applicants should have strong knowledge of modern CPU architecture, with a track record in high-performance CPU design and the ability to push advanced microarchitectures from conception.

CPU Core RTL & Microarchitecture Engineer in Cambridge employer: AMD

AMD in Cambridge offers an exceptional work environment for Senior CPU Verification Engineers, fostering a culture of innovation and collaboration. Employees benefit from competitive compensation, comprehensive professional development opportunities, and the chance to work on cutting-edge technology in a vibrant tech hub. With a focus on teamwork and communication, AMD ensures that every team member can contribute meaningfully to the success of their projects.

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Contact Details:

AMD Recruitment Team

We think you need these skills to ace CPU Core RTL & Microarchitecture Engineer in Cambridge

CPU Architecture
RTL Design
Microarchitecture
High-Performance CPU Design
Collaboration Skills
Hybrid Work Adaptability
Functional Unit Design