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Home » Transcript: NVIDIA CEO Jensen Huang’s Keynote At GTC 2025

Transcript: NVIDIA CEO Jensen Huang’s Keynote At GTC 2025

Read the full transcript of NVIDIA CEO Jensen Huang’s keynote speech at NVIDIA GTC 2025 Washington, D.C., October 28, 2025.

America’s Legacy of Innovation

VIDEO CLIP BEGINS:

JENSEN HUANG (Voice): America, the land of innovation, where invention shaped destiny, and technology helped dreams take flight. At Bell Labs, the transistor was born, sparking the age of semiconductors and giving rise to Silicon Valley. Hedy Lamarr reimagined communication, paving the way for wireless connectivity. IBM’s System 360 put a universal computer at the heart of industry. Intel’s microprocessor drove the digital age forward and Cray’s supercomputers expanded the frontiers of science.

So we think we’re at the beginning of something with this technology, and we’re going to grow just as fast as we can. Apple made computing personal.

UNIDENTIFIED SPEAKER: Hello, I am Macintosh.

UNIDENTIFIED SPEAKER: Microsoft opened the window to a new world of software. Long before the web, “You’ve got mail,” US government researchers built ARPANET, connecting the first computers, the foundation for the Internet.

An iPod, a phone. Are you getting it? Then Apple again, put a thousand songs in your pocket and the Internet in your hand. Every era, a leap.

UNIDENTIFIED SPEAKER: We choose to go to the moon in this decade and do the other things, not because they are easy, but because they are hard.

UNIDENTIFIED SPEAKER: Every leap America led. But by a leap for mankind. Now the next era is here, launched by a revolutionary new computing model. This is likely going to be the most important contribution we’ve made to the computer industry. It will likely be recognized as a revolution.

Machine learning is a branch of artificial intelligence, computers that almost appear to think. The amount of computational resource is ultimately what’s going to turbocharge this field. Artificial intelligence, the new industrial revolution. At its heart, NVIDIA GPUs invented here in America. Like electricity and the Internet, AI is essential infrastructure.

Every company will use it. Every nation will build it. Winning this competition will be a test of our capacities unlike anything since the dawn of the space age. And today, AI factories are rising, built in America for scientists, engineers and dreamers across universities, startups and industry. I think we want to try to reach new heights as a civilization, discovering the nature of the universe.

And now, American innovators are clearing the way for abundance, saving lives, shaping vision into reality, lending us a hand and delivering the future. We will soon power it all with unlimited clean energy. We will extend humanity’s reach to the stars. This is America’s next Apollo moment. Together, we take the next great leap to boldly go where no one has gone before.

VIDEO CLIP ENDS:

UNIDENTIFIED SPEAKER: Stage, NVIDIA founder and CEO, Jensen Huang.

Welcome to GTC Washington, D.C.

JENSEN HUANG: Washington, D.C. Washington, D.C., welcome to GTC. It’s hard not to be sentimental and proud of America. I got to tell you that. Was that video amazing? Thank you. NVIDIA’s creative team does an amazing job.

Welcome to GTC. We have a lot to cover with you today. GTC is where we talk about industry, science, computing, the present, and the future. So I’ve got a lot to cover with you today. But before I start, I want to thank all of our partners who helped sponsor this great event. You’ll see all of them around the show. They’re here to meet with you and, really great. We couldn’t do what we do without all of our ecosystem partners.

This is the Super Bowl of AI, people say. And therefore, every Super Bowl should have an amazing pregame show. What do you guys think about the pregame show and our all-star athletes and all-star cast? Look at these guys. Somehow, I turned out the buffets. What do you guys think? I don’t know if I had something to do with that.

The Birth of a New Computing Model

NVIDIA invented a new computing model for the first time in sixty years, as you saw in the video. A new computing model rarely comes about. It takes an enormous amount of time and set of conditions. We observed. We invented this computing model because we wanted to solve problems that general purpose computers, normal computers could not.

We also observed that someday, transistors will continue. The number of transistors will grow, but the performance and the power of transistors will slow down, that Moore’s law will not continue beyond, be limited by the laws of physics. And that moment has now arrived. Dennard scaling has stopped. It’s called Dennard scaling. Dennard scaling has stopped nearly a decade ago.

And in fact, the transistor performance and its power associated has slowed tremendously. And yet the number of transistors continued. We made this observation a long time ago. And for thirty years, we’ve been advancing this form of computing we call accelerated computing. We invented the GPU. We invented the programming model called CUDA.

And we observed that if we could add a processor that takes advantage of more and more and more transistors, apply parallel computing, add that to a sequential processing CPU, that we could extend the capabilities of computing well beyond, well beyond. And that moment has really come. We have now seen that inflection point. Accelerated computing, its moment has now arrived.

The Challenge of Accelerated Computing

However, accelerated computing is a fundamentally different programming model. You can’t just take a CPU software, software written by hands, executing sequentially, and put it onto a GPU and have it run properly. In fact, if you just did that, it actually runs slower. And so you have to reinvent new algorithms. You have to create new libraries. You have to, in fact, rewrite the application, which is the reason why it’s taken so long.

It’s taken us nearly thirty years to get here, but we did it one domain at a time. This is the treasure of our company.