The AI/HPC Consultant will support the definition, design and validation of advanced AI infrastructure solutions based on NVIDIA reference architectures. The role is heavily focused on high-performance networking and physical connectivity design across GPU-accelerated platforms, with regular involvement in bill-of-materials reviews, design assurance and customer-facing technical guidance.
Responsibilities:
Develop high-level and low-level designs for NVIDIA-based AI/HPC infrastructure, particularly GB300, B300, DGX, HGX and NVL72-aligned environments.
Design InfiniBand Back End fabrics, Spectrum-X converged Front End networks and where required, Spectrum-X Ethernet Back End fabrics using NVIDIA reference architectures as the baseline.
Provide expert technical guidance across RoCEv2, InfiniBand, VXLAN EVPN, leaf-spine architectures, congestion management, rail-optimised design and multi-plane fabrics.
Create, review and optimise Bills of Material, including Switches, optics, DAC/ACC/AEC cables, fibre assemblies, adapters, DPUs/SuperNICs and associated licensing or support items.
Support customer discovery workshops, requirements capture sessions, technical option analysis and architecture governance reviews.
Act as a technical lead for defined work packages, coordinating with consultants, vendors, pre-sales teams and delivery stakeholders to ensure designs are technically correct and commercially practical.
Maintain awareness of NVIDIA product roadmaps, networking reference architectures, switch platforms, adapter families, optics guidance and deployment best practice.
Skills Required:
Strong networking background with demonstrable experience in data centre, HPC, AI infrastructure or large-scale low-latency fabric design.
Excellent knowledge of high-performance AI/HPC networking technologies, including InfiniBand, RoCEv2, Spectrum-X Ethernet, congestion control concepts and lossless Ethernet design principles.
Strong understanding of VXLAN EVPN, BGP, leaf-spine fabric design, routing design, resiliency models and operational troubleshooting in modern data centre networks.
Good understanding of physical infrastructure design, including switch placement, row-level design, structured cabling, patching strategy, fibre polarity, cable routing and data centre implementation constraints.
Practical knowledge of optical and copper connectivity choices, including MMF, SMF, DAC, ACC/AEC, breakout cables, MPO/MTP, LC, QSFP, QSFP112, OSFP and QSFP-DD form factors.
Strong written communication skills, including the ability to produce clear HLDs, LLDs, design notes, BoM justifications and customer-facing technical explanations.