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Journal ArticleDOI

A million spiking-neuron integrated circuit with a scalable communication network and interface

TLDR
Inspired by the brain’s structure, an efficient, scalable, and flexible non–von Neumann architecture is developed that leverages contemporary silicon technology and is well suited to many applications that use complex neural networks in real time, for example, multiobject detection and classification.
Abstract
Inspired by the brain’s structure, we have developed an efficient, scalable, and flexible non–von Neumann architecture that leverages contemporary silicon technology. To demonstrate, we built a 5.4-billion-transistor chip with 4096 neurosynaptic cores interconnected via an intrachip network that integrates 1 million programmable spiking neurons and 256 million configurable synapses. Chips can be tiled in two dimensions via an interchip communication interface, seamlessly scaling the architecture to a cortexlike sheet of arbitrary size. The architecture is well suited to many applications that use complex neural networks in real time, for example, multiobject detection and classification. With 400-pixel-by-240-pixel video input at 30 frames per second, the chip consumes 63 milliwatts.

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Citations
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Journal ArticleDOI

Memristors Based on 2D Materials as an Artificial Synapse for Neuromorphic Electronics.

TL;DR: An overview of the latest advances in the structures, mechanisms, and memristive characteristics of 2D material-based memristor-based artificial synapses is presented and the potentials and challenges of these emerging materials for future neuromorphic electronics are discussed.
Proceedings ArticleDOI

Conversion of artificial recurrent neural networks to spiking neural networks for low-power neuromorphic hardware

TL;DR: Surprisingly, it is found that short synaptic delays are sufficient to implement the dynamic (temporal) aspect of the RNN in the question classification task and the discretization of the neural activities is beneficial to the train-and-constrain approach.
Journal ArticleDOI

Braindrop: A Mixed-Signal Neuromorphic Architecture With a Dynamical Systems-Based Programming Model

TL;DR: Two innovations—sparse encoding through analog spatial convolution and weighted spike-rate summation though digital accumulative thinning—cut digital traffic drastically, reducing the energy Braindrop consumes per equivalent synaptic operation to 381 fJ for typical network configurations.
Journal ArticleDOI

Reconfigurable Nonvolatile Logic Operations in Resistance Switching Crossbar Array for Large-Scale Circuits.

TL;DR: Resistance switching devices have potential to offer computing and memory function and Resistance states stored in devices located in arbitrary positions of RS array can be performed various nonvolatile logic operations.
Journal ArticleDOI

Artificial Sensory Memory.

TL;DR: increasing attention to this area would offer unprecedented opportunities toward new hardware architecture of artificial intelligence, which could extend the capabilities of digital systems with emotional/psychological attributes.
References
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Journal ArticleDOI

Receptive fields, binocular interaction and functional architecture in the cat's visual cortex

TL;DR: This method is used to examine receptive fields of a more complex type and to make additional observations on binocular interaction and this approach is necessary in order to understand the behaviour of individual cells, but it fails to deal with the problem of the relationship of one cell to its neighbours.
Journal ArticleDOI

Can programming be liberated from the von Neumann style?: a functional style and its algebra of programs

TL;DR: A new class of computing systems uses the functional programming style both in its programming language and in its state transition rules; these systems have semantics loosely coupled to states—only one state transition occurs per major computation.
Journal ArticleDOI

Object vision and spatial vision: two cortical pathways

TL;DR: Evidence is reviewed indicating that striate cortex in the monkey is the source of two multisynaptic corticocortical pathways, one of which enables the visual identification of objects and the other allows instead the visual location of objects.
Journal ArticleDOI

Modality and topographic properties of single neurons of cat's somatic sensory cortex.

TL;DR: Observations upon the modality and topographical attributes of single neurons of the first somatic sensory area of the cat’s cerebral cortex, the analogue of the cortex of the postcentral gyrus in the primate brain, support an hypothesis of the functional organization of this cortical area.
Journal ArticleDOI

Neuronal circuits of the neocortex

TL;DR: It is found that, as has long been suspected by cortical neuroanatomists, the same basic laminar and tangential organization of the excitatory neurons of the neocortex is evident wherever it has been sought.
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