
Qualcomm Targets Edge Inference with High Bandwidth Compute Architecture
Qualcomm is developing a new chip architecture to bring data center-level AI performance to mobile devices by optimizing memory-compute proximity.

Qualcomm is developing a new chip architecture to bring data center-level AI performance to mobile devices by optimizing memory-compute proximity.

The aerospace firm is aggressively expanding its internal machine learning capacity to automate complex vehicle design and secure government-facing platform operations.

The new processor architecture aims to balance traditional scientific computing with the orchestration demands of autonomous research agents.

Researchers have developed a new diagnostic framework that enables neural networks to quantify uncertainty, reducing the risk of overconfident errors in cancer subtyping.

The new RLTune platform integrates directly into existing utility control stacks to provide real-time, adaptive process optimization without requiring digital twins.

A new robotic system utilizes deep reinforcement learning and tactile sensing to automate the delicate task of slicing and serving salmon.

Researchers have developed a high-density, ultra-flexible electrode array that maintains signal integrity for over 550 days by minimizing mechanical friction with neural tissue.

The co-author of the Transformer architecture moves to OpenAI after a brief tenure at Google, signaling a shift in the development of efficient large language models.

Researchers in Sweden have developed a machine-learning framework that integrates electromagnetic laws to speed up the design of optical components.

The ATLAS navigation system utilizes synthetic data and probabilistic filtering to enable uncrewed ground vehicles to operate in contested environments without satellite signals.
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