Overview As a SoC Architect at Arm, you will design high-volume SoC platforms on advanced nodes for multiple markets, delivering production-quality silicon with top performance and efficiency. You collaborate across architecture, core technology, software, and partner teams to shape architecture roadmaps and feature development. You will drive innovation, guide implementation teams, and ensure timely integration of Arm IP into SoCs. This role offers the opportunity to influence future IP and work in a fast-paced, impact-driven environment.
Compensation / Benefits- hybrid working
- accommodations during recruitment
- competitive total rewards package
Responsibilities- Design and develop Arm's SoC architecture using Arm IP and system-level concepts to meet compute requirements
- Coordinate with architecture, core technology, and software teams to roadmap technology features for groundbreaking SoCs
- Scale efforts across multiple partners and manage several engagements in parallel
- Collaborate to optimize end-to-end platform solutions and identify key workloads/use cases
- Ensure on-time delivery of Arm IP into SoCs and translate learnings into future IP development
- Drive continuous innovation in SoC architecture and stay updated on industry trends
- Lead partner/customer architecture discussions and mature specifications for design/implementation teams
Key requirements- Significant experience architecting scalable SoCs on groundbreaking nodes across multiple markets
- Expertise in heterogeneous compute architectures, power management, interconnects, caching, PCIe/CXL, memory hierarchies, packaging, modeling, and related areas
- Excellent presentation and communication skills; ability to engage with executives
- Bachelor's or Master's degrees in Electrical or Computer Engineering and 10 years of senior development/leadership experience in semiconductor industry
- Ability to influence across engineering and business groups internal and external to Arm
- Excellent presentation and communication skills
- Ability to influence at all levels
- Collaborative mindset in cross-functional environments
- Heterogeneous compute architectures
- Power management
- Clocking and interconnect (PCIe/CXL)