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Architect
Palo Alto, California, United States; Bangalore, India
Source: Architect careers · View original posting
From Architect's posting. “We” and “our” refer to the employer.
Architect is a frontier AI lab for custom silicon. We partner with frontier labs, clouds / neoclouds, physical AI companies, and advanced fabs to tape-out custom chips co-designed for next-generation AI workloads. Our goal is to compress end-to-end software to silicon timelines, and maximize intelligence per watt and per dollar for the world. We are a small exceptional team across silicon, systems, software and frontier AI.
Our team have led research teams at nearly every frontier AI lab, and at some of the most complex SoCs in the world.
Required Qualifications
Degree
: Bachelor’s, Master’s, or PhD in Electrical Engineering, Computer Engineering, or a closely related field.
Experience
: 5+ years (10+ preferred) in RTL design with at least one advanced-node tapeout experience involving on-chip interconnects, NoC fabrics, or high-speed I/O subsystems.
AMBA Protocol Expertise
: Deep familiarity with ARM AMBA protocol suite — AXI4/AXI5 (channel mechanics, burst types, ordering, exclusive access), ACE/ACE-Lite (coherence transactions, snoop channels), CHI (request/response/data/snoop flits, home nodes, snoop filters), and legacy AHB/APB for peripheral integration.
NoC/Fabric Design
: Hands-on experience designing or owning crossbar switches, NoC routers, or multi-layer interconnects including arbitration schemes (round-robin, priority, age-based, bandwidth-regulated), virtual channel management, flow control (credit-based, ready/valid), and QoS mechanisms.
High-Speed I/O Integration
: Experience with HSIO bridge logic — PCIe root complex/endpoint bridge design, CXL.io/CXL.mem/CXL.cache protocol translation, or custom chip-to-chip links (UCIe, proprietary die-to-die) including link-layer protocols, credit management, and replay/retry logic.
Peer-to-Peer Data Movement
: Experience with peer-to-peer DMA architectures, zero-copy data transfer engines, scatter-gather descriptors, and direct device-to-device communication paths that bypass host memory bottlenecks.
SystemVerilog
: Clear, synthesizable, lint-clean RTL with strong design habits — parameterization for configurable port counts and data widths, modularity for hierarchical fabric composition, and configurability for different topology and QoS instantiations.
SoC Methodology
: Solid grasp of synthesis, timing constraints (especially for wide crossbar paths and high-radix switches), clock domain crossings (fabric-to-IP clock boundaries, async bridge design), reset strategies, and power management for interconnect logic.
Python
: Strong skills for design automation, traffic generation/analysis, NoC configuration scripting, regression infrastructure, and tooling.
PPA Ownership
: Experience taking an interconnect or fabric block from RTL through synthesis and working with PD teams on timing/area/power closure — particularly for wide-datapath crossbars and high-frequency router pipelines.
Bonus Qualifications
Experience with coherent multi-chip/multi-die interconnect architectures (chiplet-based designs, UCIe, BoW).
Familiarity with hardware coherence protocols: MOESI/MESIF state machines, snoop filter design, directory-based coherence.
Experience with network-on-chip research: adaptive routing, congestion management, topology optimization, or formal deadlock analysis.
Low-power design techniques for interconnect: clock gating idle ports, power gating unused links, link-level power states (L0s/L1), dynamic frequency/width scaling.
FPGA prototyping experience (Xilinx Vivado/Vitis), especially with AXI interconnect IPs, NoC IPs (Versal), or custom fabric implementations.
SVA assertions for protocol compliance: AXI ordering rules, CHI transaction flows, deadlock detection, and livelock/starvation monitors.
Prior IP building and delivery experience for NoC IPs, AXI interconnect IPs, PCIe controllers, or CXL endpoint/switch IPs.
Performance modeling: experience building or using NoC simulators (e.g., BookSim, Garnet) or system-level traffic models to validate fabric microarchitecture.
Domain-specific research contributions: publications or patents in on-chip networks, interconnect architectures, or high-performance data movement for ML/HPC workloads.
Why Architect
You’ll join a founding team building the future of chip design at the intersection of AI and silicon. Your interconnect and fabric expertise will directly shape the communication backbone of production ASICs — enabling the data movement performance that ML workloads demand — and influence how AI transforms hardware development from spec to tapeout.
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