SpiNNaker is a massively-parallel machine designed for very-large scale neural net simulation in real time. SpiNNaker systems are based on multi-core SpiNNaker chips, which contain 18 energy-efficient ARM cores and a bespoke communications infrastructure optimized for the transmission of simulated neuronal spikes. SpiNNaker systems are built using SpiNN-5 boards, populated with 48 SpiNNaker chips interconnected in a hexagonal 2D mesh. Boards are connected together using high-speed serial links provided by 3 on-board Xilinx Spartan6 FPGAs. The spI/O library contains a series of FPGA designs and reusable modules for I/O and internal connectivity in SpiNNaker systems. The designs directory contains ready-to-synthesise FPGA designs based on t...
Create a hardware interface to connect midi devices to SpiNNaker. AER In neural engineering, address...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
The automatic design of intelligent systems has been inspired by biology, specifically the operation...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
SpiNNaker is a massively parallel architecture with more than a million processing cores that can mo...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
SpiNNaker (Spiking Neural Network Architecture) is a specialized computing engine, intended for real...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
simulating a billion spiking neurons in real time. Fortunately, such an application is an ideal cand...
Create a hardware interface to connect midi devices to SpiNNaker. AER In neural engineering, address...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
The automatic design of intelligent systems has been inspired by biology, specifically the operation...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
SpiNNaker is a massively parallel architecture with more than a million processing cores that can mo...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
SpiNNaker (Spiking Neural Network Architecture) is a specialized computing engine, intended for real...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
simulating a billion spiking neurons in real time. Fortunately, such an application is an ideal cand...
Create a hardware interface to connect midi devices to SpiNNaker. AER In neural engineering, address...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
The automatic design of intelligent systems has been inspired by biology, specifically the operation...