collaborators

8 papers

cs.AR2026

A Lightweight High-Throughput Collective-Capable NoC for Large-Scale ML Accelerators

Luca Colagrande, Lorenzo Leone, Chen Wu +3

The exponential increase in Machine Learning (ML) model size and complexity has driven unprecedented demand for high-performance acceleration systems. As technology scaling enables…

cs.AR2026

EPAC: The Last Dance

Filippo Mantovani, Fabio Banchelli, Pablo Vizcaino +36

This paper presents EPAC, a RISC-V-based accelerator chip developed within the European Processor Initiative (EPI) as part of a multi-year, multi-partner effort to build a European…

cs.AR2025

Toward Open-Source Chiplets for HPC and AI: Occamy and Beyond

Paul Scheffler, Thomas Benz, Tim Fischer +3

We present a roadmap for open-source chiplet-based RISC-V systems targeting high-performance computing and artificial intelligence, aiming to close the performance gap to proprieta…

cs.AR2025

ControlPULPlet: A Flexible Real-time Multi-core RISC-V Controller for 2.5D Systems-in-package

Alessandro Ottaviano, Robert Balas, Tim Fischer +3

The growing complexity of real-time control algorithms with increasing performance demands, along with the shift to 2.5D technology, drive the need for scalable controllers to mana…

cs.DC2025

TeraNoC: A Multi-Channel 32-bit Fine-Grained, Hybrid Mesh-Crossbar NoC for Efficient Scale-up of 1000+ Core Shared-L1-Memory Clusters

Yichao Zhang, Zexin Fu, Tim Fischer +3

A key challenge in on-chip interconnect design is to scale up bandwidth while maintaining low latency and high area efficiency. 2D-meshes scale with low wiring area and congestion…

cs.AR2025

FlooNoC: A 645 Gbps/link 0.15 pJ/B/hop Open-Source NoC with Wide Physical Links and End-to-End AXI4 Parallel Multi-Stream Support

Tim Fischer, Michael Rogenmoser, Thomas Benz +2

The new generation of domain-specific AI accelerators is characterized by rapidly increasing demands for bulk data transfers, as opposed to small, latency-critical cache line trans…