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Flexible, software-defined fabric IP for custom protocols, AI workloads, and chiplet-scale systems.
Our Protocol-Neutral Scalable Custom Fabric IP enables chip designers to build custom interconnects for advanced SoCs, AI accelerators, and chiplet-based systems using a flexible, protocol-independent transport fabric.
Designed for extreme flexibility, the fabric gives teams control over topology, routing, channel width, clock frequency, protocol clusters, and physical implementation choices. This allows engineering teams to optimize area, power, performance, and layout based on workload and floorplan requirements.
With built-in QoS, RAS, multicast, virtual channels, system-level simulation, and physically aware optimization through FabricStudio, the fabric helps teams create scalable custom architectures that support multiple protocols while reducing implementation risk and accelerating time to market.
Explore mesh, ring, crossbar, and custom topologies with cycle-accurate analysis — converging on the right architecture for your workload.
Fast static sweeps narrow the design space; cycle-accurate dynamic simulation proves the final architecture against real workloads.
Tiling-based implementation planning accounts for floorplan, timing closure, and signoff constraints from microarchitecture decisions onward.
Data-driven D2D traffic analysis and chiplet partitioning with protocol-level cluster perimeters and performance isolation as first-class features.
Create custom interconnects using a protocol-independent transport fabric that supports customer-defined protocols and enables multiple protocol domains to coexist within a unified architecture.
Scale to very high bandwidth and interface counts with up to 2048-bit channels, up to 64 parallel networks, and support for large multi-chiplet systems.
Configure topology, routing, channel widths, clock frequency, and protocol-level clusters to match workload, floorplan, and system architecture needs.
Support high-throughput multicast, scatter/gather acceleration, deep virtual channels, and deterministic traffic behavior for demanding AI workloads.
Use FabricStudio-driven analysis, tiling, QoS, RAS, and performance monitoring to optimize implementation, reduce risk, and accelerate time to market.
Discover how Baya’s Protocol-Neutral Scalable Custom Fabric IP enables flexible, high-bandwidth interconnect design for custom protocols, AI workloads, and chiplet-based systems. Connect with our team to discuss your architecture goals.