Researchers have developed photonic computing chips that overcome key limitations for a type of neural network known as a ...
Scientists have taken a major step toward mimicking nature’s tiniest gateways by creating ultra-small pores that rival the dimensions of biological ion channels—just a few atoms wide. The breakthrough ...
Dhireesha Kudithipudi, PhD, is the founding director of MATRIX AI Consortium and lead scientific PI for THOR. THOR will make the promising technology available for researchers nationwide to explore ...
Neuromorphic computers modeled after the human brain can now solve the complex equations behind physics simulations — something once thought possible only with energy-hungry supercomputers. The ...
Abstract: This tutorial will discuss how to incorporate neuromorphic circuits, computing, and sensing into an autonomous system at the edge, and present an end-to-end system analysis showing their ...
Zinc doping enables visible-light programming of ferroelectric memristors for neuromorphic computing
Adding zinc ions to lithium niobate crystals cuts the energy needed for polarization switching by 69%, enabling visible-light programming of memristors for brain-inspired computing. (Nanowerk ...
A new digital system allows operations on a chip to run in parallel, so an AI program can arrive at the best possible answer more quickly. When you purchase through links on our site, we may earn an ...
A good January day to you! There was major chip news last week, most of it coming out of the big CES show in Las Vegas, along with other interesting developments, here’s a fast (11:10) run-down of ...
To overcome AI's limits, a bridge must be built between computer science and biology, according to Kea-Tiong Tang, a professor from Taiwan's National Tsing Hua University (NTHU) and a leading scholar ...
Sandia National Labs today released an update on its neuromorphic computing research, reporting that these systems, inspired by the architecture of the human brain, are surprisingly adept at solving ...
Neuromorphic computers, inspired by the architecture of the human brain, are proving surprisingly adept at solving complex mathematical problems that underpin scientific and engineering challenges.
The takeaway: Researchers in China have developed an artificial skin that allows robots to sense pressure and respond in ways similar to living tissue, helping them avoid damage. The flexible ...
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