Read the full transcript of AMD CEO Dr. Lisa Su’s speech at the OneMIT Commencement Ceremony on Thursday, May 28, 2026.
Editor’s Note: In this inspiring commencement address, AMD CEO and MIT alumna Dr. Lisa Su welcomes the graduating Class of 2026, sharing personal reflections on her own challenging journey from a 17-year-old freshman to a world-class engineer. Drawing from her executive experiences, she encourages the graduates to embrace the engineer’s instinct and boldly run toward the world’s hardest problems—especially as they step into the transformative age of artificial intelligence.
Opening Remarks
LISA SU: Good afternoon, everyone. President Kornbluth, Chairman Gorenberg, trustees, faculty, family, friends, and most importantly, the MIT Class of 2026, congratulations. You’ve earned this, and I can tell you that standing here feels very different than I expected. I’ve given a lot of talks over the years, but this one is quite personal.
And as you can imagine, with Murphy’s law, I somehow managed to lose my voice this week. So please bear with me if I sound a little rough. But I couldn’t be happier to be here with you.
My Journey at MIT
If I give you a little bit of my story, I came to MIT in the fall of 1986. My parents dropped me off at Next House. I was 17 years old, born in Taiwan, raised in Queens, and I was pretty sure I was good at math. Then, of course, I walked into 6.001 and 6.002. And within about two weeks, I realized that there were a lot of people at MIT who were very, very good at math.
And I remember staring at those first problem sets thinking, my goodness, these are super hard. And I’d never really pulled an all-nighter until freshman year. It was a new experience, but it was a lot of fun doing it together with your classmates.
Now, MIT has this incredible way of pushing you further than you thought you could go. You wrestled with the problem. You blew up a circuit or two. Yes, some of you may have. And then somehow the thing worked. And suddenly you realized that you could build something real. And that’s when I started feeling like an engineer.
The UROP Experience That Changed My Life
One of the best parts of MIT is actually UROP, the opportunity as an undergraduate to work on real research. And that actually truly changed my life.
My first UROP was in Professor Hank Smith’s lab in Building 39, which Anantha tells me we are decommissioning and moving, making x-ray lithography mask blanks for a grad student. To be absolutely clear, at the time I had no idea what that actually meant. But I got to put on my first bunny suit and walk into a clean room and start building devices on little two-inch wafers, which at the time was pretty state-of-the-art.
And I learned very quickly to be careful because those wafers were actually really delicate, and I definitely didn’t want to be the one who broke them. But I ran a bunch of experiments. Most of them didn’t work the way we expected. And so we adjusted and we tried again. And it was the coolest thing ever.
For the first time, I wasn’t just learning about technology in a classroom. I was part of a team trying to discover something new. And I remember thinking, wow, we can build things this small, things tiny enough to fit on a die the size of a coin, but powerful enough to change the world. And that’s when I fell in love with semiconductors.
Learning to Solve Problems
Later, I had the privilege of working with Professor Dimitri Antoniadis, who became my PhD advisor. And that was where I really learned how to solve problems. I remember spending weeks in the clean room fabricating devices and then bringing my wafers up to the test lab, only to discover they didn’t behave the way I expected at all.
And so I’d go back to Dimitri’s office, and we’d figure out what we should do next. And looking back, that was probably where I grew the most at MIT. Because little by little, I went from a new grad student learning about the field to someone doing original research and actually contributing something new to the field.
And along the way, I started believing in myself. Not the confidence that I would always know the answer, but the confidence that even when I didn’t know the answer, I could figure it out.
Mens et Manus: Mind and Hand
What I realize now is MIT was teaching me something much bigger than semiconductor device physics. Mens et Manus. Mind and hand. When I was a student, I thought it was just a motto. Now I think it captures exactly what makes MIT so special.
MIT teaches you to think deeply. But it also teaches you to build, to test ideas, to keep going when the first experiment or even the fifth experiment doesn’t work. And over time, you start believing that you can solve problems that once felt impossible. I carried that feeling with me long after I left campus.
Early Career: Run Towards the Hardest Problems
When I joined IBM, I found myself starting all over again. IBM had hundreds of thousands of employees. I was 25 years old wondering how I could possibly make a difference in a company that big. But I learned something important very quickly. Engineering actually doesn’t care how old you are. It actually cares whether you have good ideas.
And one of my mentors told me something that I’ve never forgotten: “Run towards the hardest problems.” At the time, I’m not sure I really knew what that meant, but I now realize this was the best advice I’ve ever received. Hard problems really teach you what you’re capable of.
Leading AMD: The Engineer’s Instinct
So fast forward a bit. 12 years ago, I got a chance to put that lesson to the test.
