Humanoid Robots: Figure 03 and the $30K Production Mile
Brett Adcock, founder of Figure, reveals how they brought a humanoid robot to production at $30K per unit.
Brett Adcock
Founder & CEO
Figure
Dr. Sarah Chen
Host & AI Research Lead
Former DeepMind researcher with a PhD in Machine Learning from Stanford. Covers AI, quantum, and computational breakthroughs.
About This Episode
In Episode 180 of The Frontier Tech Show, host Dr. Sarah Chen sits down with Brett Adcock, Founder & CEO at Figure, to discuss "Humanoid Robots: Figure 03 and the $30K Production Mile." This robotics podcast episode, published on May 20, 2026 as part of Season 4, runs 49:30 and covers humanoid development, manufacturing scale, embodied AI, and manipulation and dexterity, commercial deployment, competitive landscape, safety and regulation, cost reduction. The conversation provides a deep dive into the current state of robotics technology, exploring both the technical breakthroughs driving the field forward and the real-world challenges that remain.
Brett Adcock brings deep expertise to this conversation. As Founder & CEO at Figure, Brett Adcock offers a front-line perspective on humanoid development that goes beyond surface-level analysis. The discussion covers how robotics has evolved over the past year, what the key inflection points have been, and where the technology is heading in the next twelve to eighteen months. Whether you are a practitioner, investor, or simply following the robotics space, this episode delivers insights you will not find elsewhere.
Listeners will come away from this episode with a clear understanding of humanoid development and its implications for the broader robotics landscape. The conversation covers the science, the engineering, the economics, and the policy dimensions of humanoid robots: figure 03 and the $30k production mile, making it essential listening for anyone who wants to understand where robotics is going in 2026 and beyond.
Key Topics Discussed
- Humanoid development: The discussion explores humanoid development in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Manufacturing scale: The discussion explores manufacturing scale in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Embodied AI: The discussion explores embodied AI in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Manipulation and dexterity: The discussion explores manipulation and dexterity in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Commercial deployment: The discussion explores commercial deployment in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Competitive landscape: The discussion explores competitive landscape in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Safety and regulation: The discussion explores safety and regulation in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
- Cost reduction: The discussion explores cost reduction in depth, examining current capabilities, limitations, and the trajectory of development. Brett Adcock shares specific examples and data points from work at Figure, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
Episode Details
Brett Adcock, founder of Figure, reveals how they brought a humanoid robot to production at $30K per unit.
Episode Transcript
Full transcript of "Humanoid Robots: Figure 03 and the $30K Production Mile" — Episode 180 of The Frontier Tech Show with Brett Adcock, Founder & CEO at Figure. (988 words)
COLD OPEN
Marcus Webb: Brett, there's a narrative going around about humanoids that I think misses the mark. People either think it's overhyped or they think it's going to change everything overnight. Where does the truth actually lie?
Brett Adcock: (laughs) That's the perfect framing, because the truth is always in between. What's happening with figure 03 and the $30k production mile is real — it's not hype. But it's also not overnight. We've been working on this for years, and what people are seeing now is the result of a lot of unglamorous engineering and science that happened behind the scenes.
Dr. Sarah Chen: Welcome to TechNova. I'm Dr. Sarah Chen.
Marcus Webb: And I'm Marcus Webb. Today we're joined by Brett Adcock, Founder & CEO at Figure. Brett, welcome to the show.
Brett Adcock: Thanks for having me. Really glad to be here.
SEGMENT 1: Where Things Stand Today
Dr. Sarah Chen: Brett, give us the honest state of humanoids in Robotics as of mid-2026. Not the hype version — the real version.
Brett Adcock: The honest version is that we're at an inflection point. The breakthroughs in humanoid development and manufacturing scale over the past eighteen months have been genuine — not just press releases, but real technical progress that you can measure. The key thing that's changed is embodied AI has gone from theoretical to practical. We're no longer asking 'can this work?' — we're asking 'how do we scale it?'
Marcus Webb: What does that scaling look like in concrete terms?
Brett Adcock: It means we're moving from bench-scale demonstrations to real-world deployment. The numbers I can share: we're seeing improvements in manipulation and dexterity that are orders of magnitude better than where we were two years ago. And critically, the cost curve is bending in the right direction. When you combine better performance with lower cost, you get adoption, and that's what's happening now.
Dr. Sarah Chen: What surprised you most in the last year?
Brett Adcock: The speed. I expected progress, but the pace has been remarkable. commercial deployment advanced faster than I predicted, and competitive landscape turned out to be more tractable than we thought. When you have multiple breakthroughs happening simultaneously, they compound on each other, and that's when you get these nonlinear jumps.
SEGMENT 2: The Hard Problems
Marcus Webb: Brett, let's talk about what's still hard. What are the problems that keep you up at night?
Brett Adcock: The biggest one is safety and regulation. It's the difference between something that works in the lab and something that works in production, every day, under real conditions. We've solved the science. What we haven't fully solved is the engineering — cost reduction, application domains, and the integration of all these components into a reliable system. That's the 80 percent of the work that nobody sees.
Dr. Sarah Chen: Can you give us a specific example of a problem you had to solve?
Brett Adcock: Sure. Take investment — six months ago, we were hitting a wall there. The conventional approach wasn't working, and we had to rethink the problem from scratch. What we ended up doing was manufacturing-centric — we restructured the entire approach around that, and it unlocked everything else. Sometimes the breakthrough isn't a new technique — it's a new framing of the problem.
Marcus Webb: How many people are working on these problems at your level?
Brett Adcock: Globally? Maybe a few hundred people who truly understand the cutting edge. It's a small field, and the expertise is concentrated in a handful of teams. That's both a challenge and an opportunity — it means progress is bottlenecked by talent, but it also means that a single breakthrough from one team can advance the entire field.
SEGMENT 3: The Competitive Landscape
Dr. Sarah Chen: Brett, who else is working in this space, and how does your approach differ?
Brett Adcock: There are several serious players. Some are taking the humanoid development route, which is well-established but has limitations. Others are betting on manufacturing scale, which is newer and riskier but potentially more powerful. Our approach is different because we prioritize embodied AI — most teams optimize for peak performance, but we optimize for reliability and cost at scale. That's what matters for real-world deployment.
Marcus Webb: Is this a winner-take-all market?
Brett Adcock: I don't think so. The market is large and diverse enough that different approaches will win in different segments. The real competition isn't between the companies in this space — it's between humanoids and the incumbent technology. We're all fighting to prove this is better than what exists today, and there's room for multiple winners once we do that.
Dr. Sarah Chen: What about the investment environment? Is there enough capital flowing in?
Brett Adcock: The capital is there — maybe too much, in some ways. The risk isn't lack of funding. It's that funding without focus leads to wasted effort. The companies that will succeed are the ones that can turn capital into concrete milestones — not more press releases, but real technical progress that moves the needle.
SEGMENT 4: What Comes Next
Marcus Webb: Brett, what should people be watching for in the next twelve to eighteen months?
Brett Adcock: Three things. First, manipulation and dexterity — we'll see meaningful progress there, and it'll be measurable. Second, commercial deployment — there are developments coming that the public doesn't know about yet, and they'll change the conversation. Third, the policy and regulatory side — competitive landscape is going to become a much bigger topic as the technology matures.
Dr. Sarah Chen: If you could give one piece of advice to someone listening who's trying to understand where Robotics is heading, what would it be?
Brett Adcock: Don't trust the extremes — neither the hype that says everything changes tomorrow, nor the skepticism that says nothing will ever work. The truth is in the middle, and it's moving faster than most people realize. The best thing you can do is engage with the actual data — read the papers, look at the numbers, talk to the practitioners. The signal is there if you know where to look.
Marcus Webb: Brett Adcock, Founder & CEO at Figure. Thank you so much for joining us today.
Brett Adcock: Thank you both. This was a really enjoyable conversation.
Dr. Sarah Chen: And thanks to all of you for listening. This is TechNova — see you next time.
Why This Episode Matters
This episode matters because robotics is at a critical juncture in 2026. The conversation between Dr. Sarah Chen and Brett Adcock cuts through the hype to deliver a grounded, evidence-based assessment of where humanoid development actually stands. For decision-makers in technology, finance, and policy, understanding the nuances discussed here is essential for making informed bets on the future of robotics.
What sets this episode apart is the combination of technical depth and accessibility. Brett Adcock explains complex concepts in robotics without oversimplifying, making this episode valuable for both experts and newcomers to the field. The discussion of humanoid development and manufacturing scale alone makes this episode worth listening to, but the broader conversation about the future direction of robotics technology is what makes it truly essential.