CPU RTL Design Engineer: High-Perf, Low-Power in Cambridge

CPU RTL Design Engineer: High-Perf, Low-Power in Cambridge

Cambridge Full-Time 72000 - 88000 Β£ / year (est.) No working from home possible
Q

At a Glance

  • Tasks: Design and develop high-performance, low-power CPU micro-architecture and RTL.
  • Company: Join Qualcomm Technologies, a leader in innovative chip design.
  • Benefits: Competitive salary, flexible working hours, and opportunities for professional growth.
  • Other info: Collaborative environment with a focus on innovation and career advancement.
  • Why this job: Be at the forefront of technology, shaping the future of computing.
  • Qualifications: Experience in RTL/Silicon design and understanding of performance/power trade-offs.

The predicted salary is between 72000 - 88000 Β£ per year.

Qualcomm Technologies International Ltd in Cambridge, UK, is recruiting for a CPU Micro-architecture and RTL Design Engineer to partner with chip architects on micro-architecture and early product lifecycle involvement.

The role expects expertise in RTL/Silicon design and performance/power trade-offs.

You will own RTL development, explore high-performance strategies, and collaborate with cross-functional teams to deliver timing, area and reliability goals across the design flow.

#J-18808-Ljbffr

CPU RTL Design Engineer: High-Perf, Low-Power in Cambridge employer: Qualcomm

Qualcomm is an exceptional employer, offering a dynamic work culture that fosters innovation and collaboration in the heart of Cambridge. Employees benefit from a strong focus on professional growth, with opportunities to engage in cutting-edge AI projects and enterprise systems optimisation, all while being part of a diverse team that values inclusivity and creativity. The company's commitment to employee well-being and development makes it an ideal place for those seeking meaningful and rewarding careers in technology.

Q

Contact Details:

Qualcomm Recruitment Team

We think you need these skills to ace CPU RTL Design Engineer: High-Perf, Low-Power in Cambridge

RTL Design
Micro-architecture
Silicon Design
Performance Analysis
Power Trade-offs
Cross-functional Collaboration
Timing Analysis