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Received β€” 4 August 2026 ⏭ NVIDIA Technical Blog

Beyond VLAs: How World Action Models Reshape Robot Manipulation

4 August 2026 at 16:00
A GIF of a robot following directions” with a description of the actual robot, task, objects, and motion shown.A central challenge in robotics is building policies that generalize beyond the demonstrations they’re trained on. A policy that succeeds in a training scene...A GIF of a robot following directions” with a description of the actual robot, task, objects, and motion shown.

A central challenge in robotics is building policies that generalize beyond the demonstrations they’re trained on. A policy that succeeds in a training scene often fails when object shapes, positions, or lighting change. Generalizing to these new conditions requires the policy to understand the tasks underlying physics, not just mimic the demonstrations. This ability comes from the backbone it’s…

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Generate Trajectories, Reasoning Traces, and Auto-Labels with NVIDIA Alpamayo 2 Super

4 August 2026 at 15:00
A GIF showing autonomous driving.Autonomous vehicle (AV) development often relies on separate models for trajectory generation, high-level intent prediction, scene understanding, and data...A GIF showing autonomous driving.

Autonomous vehicle (AV) development often relies on separate models for trajectory generation, high-level intent prediction, scene understanding, and data labeling. This separation makes it hard to compare related outputs, investigate model behavior, and reuse the same representations across the development workflow. NVIDIA Alpamayo 2 Super is an open 34-billion-parameter reasoning vision…

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Received β€” 28 July 2026 ⏭ NVIDIA Technical Blog

Developing Healthcare Robotics with GPU-Native Medical Physics Simulation

28 July 2026 at 20:49
A surgeon using simulation on a computer to place a catheter.Unlike autonomous driving or industrial robotics, healthcare robotics can’t rely on internet-scale data collection or unlimited real-world experimentation....A surgeon using simulation on a computer to place a catheter.

Unlike autonomous driving or industrial robotics, healthcare robotics can’t rely on internet-scale data collection or unlimited real-world experimentation. Every demonstration requires specialized equipment, clinical expertise, and access to patients or laboratory environments. This creates three fundamental challenges for developers. First is the data gap. Training modern robotic policies…

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Received β€” 15 July 2026 ⏭ NVIDIA Technical Blog

Develop Lightweight USD Runtimes Faster with AI Agents

15 July 2026 at 21:57
A Gif in a warehouse.OpenUSD is an open, extensible framework that provides a common scene description language for physical AI. It enables teams to bring CAD data, simulation...A Gif in a warehouse.

OpenUSD is an open, extensible framework that provides a common scene description language for physical AI. It enables teams to bring CAD data, simulation assets, and real-world telemetry into a shared, physically accurate view of the world. Until now, building a USD implementation has typically required adapting a large existing codebaseβ€” even for teams that need a specific memory footprint…

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Received β€” 7 July 2026 ⏭ NVIDIA Technical Blog

Develop Humanoid Robot Policies End-to-End with NVIDIA Isaac GR00T

7 July 2026 at 17:05
As more teams move from humanoid robot bring-up to task-specific skill development, the need for repeatable development workflows is growing. Building humanoids...

As more teams move from humanoid robot bring-up to task-specific skill development, the need for repeatable development workflows is growing. Building humanoids remains complex, and today’s development pipelines are still highly fragmented. As a result, developers spend significant time configuring robotics infrastructure before they can focus on building robot capabilities.

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Received β€” 22 June 2026 ⏭ NVIDIA Technical Blog

Inside NVIDIA Halos for Robotics: A Full-Stack Functional Safety System for Physical AI

Physical AIβ€”robots working autonomously alongside people in factories, warehouses, hospitals, and homesβ€”is arriving faster than most expected. Traditional...

Physical AIβ€”robots working autonomously alongside people in factories, warehouses, hospitals, and homesβ€”is arriving faster than most expected. Traditional safety which was built for structured environments can not work anymore as the spaces become more unstructured and robots move out of cages. AI-driven safety is the key. Marking a major milestone in the arrival of physical AI…

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Received β€” 15 June 2026 ⏭ NVIDIA Technical Blog

Pretrained to Imagine, Fine-Tuned to Act: The Rise of World-Action Models

15 June 2026 at 12:00
Quick glossary for readers new to VLA/WAM terminology VLA Vision-Language-Action model: a robot policy that starts from a pretrained VLM backbone and adapts it...

Quick glossary for readers new to VLA/WAM terminology VLA Vision-Language-Action model: a robot policy that starts from a pretrained VLM backbone and adapts it to generate actions from visual observations and language instructions. Large-scale VLM pretraining is a core part of the recipe. See Pi-0 and GR00T N1. WAM World-Action Model: a policy that starts from a pretrained world-model or video…

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Received β€” 2 June 2026 ⏭ NVIDIA Technical Blog

Deploy Agentic-Ready AI at the Edge with Memory Efficiency in NVIDIA JetPack 7.2

2 June 2026 at 02:00
As AI agents move from the digital world to the physical environment, they can readily use NVIDIA Jetson to accelerate real-world deployment with optimized...

As AI agents move from the digital world to the physical environment, they can readily use NVIDIA Jetson to accelerate real-world deployment with optimized memory and performance. NVIDIA JetPack 7.2 directly supports one-command deployment of NVIDIA NemoClaw, an open source stack that adds privacy and security controls to OpenClaw. It introduces NVIDIA agent skills for Jetsonβ€”Jetson device…

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Received β€” 1 June 2026 ⏭ NVIDIA Technical Blog

How to Post-Train Autonomous Vehicle Models in Closed-Loop with NVIDIA Alpamayo

1 June 2026 at 04:49
Developing autonomous vehicle (AV) policies requires bridging an important gap between training and deployment. Vision-language-action (VLA) models that can...

Developing autonomous vehicle (AV) policies requires bridging an important gap between training and deployment. Vision-language-action (VLA) models that can reason over more complex driving scenes and produce richer intermediate reasoning are predominantly trained in open-loop, where model outputs are directly compared to ground-truth behaviors without considering their effect on the environment.

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Develop Physical AI Reasoning, World, and Action Models with NVIDIA Cosmos 3

1 June 2026 at 04:43
Physical AI systems must understand the real world before they can act within it. Robots, autonomous vehicles, and smart spaces need to understand what's...

Physical AI systems must understand the real world before they can act within it. Robots, autonomous vehicles, and smart spaces need to understand what’s happening in their world, predict what’s likely to happen next, and generate actions for specific environments, embodiments, and tasks. NVIDIA Cosmos 3 is a frontier foundation model for physical AI that combines physical reasoning…

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