Principal Signal Integrity Engineer – R&D Networking Platforms
Hewlett Packard Enterprise
- Location
- Singapore, Central Singapore, Singapore
- Work model
- On-Site
- Level
- Principal
- H-1B history
- 167 approvals (FY2023)
- Posted
- Aug 26, 2026
Skills
About this role
Principal Signal Integrity Engineer – R&D Networking Platforms This role has been designed as ‘’Onsite’ with an expectation that you will primarily work from an HPE office.
Who We Are
Hewlett Packard Enterprise is the global edge-to-cloud company advancing the way people live and work. We help companies connect, protect, analyze, and act on their data and applications wherever they live, from edge to cloud, so they can turn insights into outcomes at the speed required to thrive in today’s complex world. Our culture thrives on finding new and better ways to accelerate what’s next. We know varied backgrounds are valued and succeed here. We have the flexibility to manage our work and personal needs. We make bold moves, together, and are a force for good. If you are looking to stretch and grow your career our culture will embrace you. Open up opportunities with HPE.
Job Description
Principal Signal Integrity Engineer – R&D Networking Platforms Define signal integrity strategy. Architect next-generation networks. Enable industry-leading platform performance. At Hewlett Packard Enterprise (HPE), we don’t just build technology—we build what’s next. Join a global technology leader where innovation, collaboration, and growth come together to create real‑world impact. At HPE, your career is more than a job. You’ll be part of a culture that values curiosity, technical excellence, and continuous learning. We invest in our people, challenge them with meaningful work, and support their growth every step of the way. Here, brilliant minds come together to spark technological breakthroughs that transform how businesses and communities operate worldwide. Why HPE Networking? HPE Networking is one of our fastest-growing businesses, delivering open, standards-based networking solutions that power Branch, Campus, Core, and Data Center environments worldwide. Our platforms operate at the forefront of networking technology, driving ever-increasing bandwidth, density, and power efficiency. We are seeking a highly accomplished Principal Signal Integrity Engineer to provide technical leadership for signal and power integrity across multiple networking platforms and future technology generations. In this role, you will serve as a recognized subject matter expert, influencing architecture, design methodologies, engineering standards, and technology roadmaps across the organization. Your expertise will help shape the next generation of enterprise and AI networking infrastructure deployed globally at scale. Join HPE Networking—and define the signal integrity strategy behind the world's most advanced networks. HOW YOU’LL MAKE AN IMPACT As a Principal Signal Integrity Engineer, you will serve as the organization's technical authority for signal and power integrity, driving architectural decisions, engineering excellence, and innovation across multiple product families. You will: Define and drive the SI/PI technical strategy, methodologies, design standards, and engineering best practices across networking hardware platforms. Lead signal and power integrity architecture for next-generation networking systems, influencing platform design from concept through production. Provide technical leadership for high-speed interfaces, including next-generation SerDes technologies operating at leading-edge data rates. Establish company-wide SI/PI design guidelines, PCB stackup strategies, routing methodologies, and validation approaches to ensure scalable and repeatable success. Lead cross-functional technical reviews and drive resolution of the most complex SI/PI challenges spanning multiple products and engineering disciplines. Develop advanced simulation methodologies, modelling approaches, and automation techniques to improve engineering productivity and design quality. Drive SI/PI technology readiness for future generations of networking products, evaluating emerging technologies and enabling adoption of new architectures and