Motley Fool Hidden Gems Investing - America Is 10x Behind China in AI Infrastructure — The CEO Building the Solution
Episode Date: August 23, 2026The AI race isn't being won in the model lab — it's being won in the power grid. And right now, America is losing. Motley Fool analyst Rachel Warren talks with Hannan Happi, co-founder and CEO of Ex...owatt — backed by Sam Altman and Andreessen Horowitz — about why the AI build-out is hitting a wall that no amount of chips or software can fix. They get into why a one-year grid delay costs a hyperscaler $12 billion in missed revenue, why China has 10 times more capacity than the US to build AI infrastructure, and what investors need to actually be tracking as hundreds of billions of dollars flow into the AI build-out — including whether the data centers being built today will still be operating in ten years. Host: Rachel Warren Guest: Hannan Happi Producers: Dennis Golin, Lauren Budabin Disclosure: Advertisements are sponsored content and provided for informational purposes only. The Motley Fool and its affiliates (collectively, “TMF”) do not endorse, recommend, or verify the accuracy or completeness of the statements made within advertisements. TMF is not involved in the offer, sale, or solicitation of any securities advertised herein and makes no representations regarding the suitability, or risks associated with any investment opportunity presented. Investors should conduct their own due diligence and consult with legal, tax, and financial advisors before making any investment decisions. TMF assumes no responsibility for any losses or damages arising from this advertisement. We’re committed to transparency: All personal opinions in advertisements from Fools are their own. The product advertised in this episode was loaned to TMF and was returned after a test period or the product advertised in this episode was purchased by TMF. Advertiser has paid for the sponsorship of this episode. Learn more about your ad choices. Visit megaphone.fm/adchoices Learn more about your ad choices. Visit megaphone.fm/adchoices
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China adds 540 gigawatts of power to the group per year, so more than 10 times our capacity.
So that means that China, if we consider China to be our rival in this AI dominance race, has 10 to
11 times more capability and capacity than we do to build infrastructure and bring that online.
That was Hanan Happy, co-founder and CEO of Exalot, on why the AI race is less about algorithms and more about electricity, and why the U.S. is dramatically behind where it needs to be.
I'm Motley Fool analyst Rachel Warren.
The conversation about AI almost always focuses on chips and models, but Hanan argues that the real bottleneck is something far more physical.
He joined me to discuss why a single year of grid delays could cost a hyperscaler $12 billion in missed revenue,
why communities across the country are pushing back hard on data center development,
and what investors watching the AI build-out should actually be tracking as the capital flows in.
We hope you enjoy.
Hello, everyone, and welcome back to Motley Fool Conversations.
I'm Motley Fool analyst Rachel Warren.
Today, I'm joined by Hanan Happy, the co-founder and CEO of Exawatt.
Hanan brings an incredible deep tech background to the table.
He studied mechanical engineering at the Technical University of Munich, later attended the Stanford Graduate School of Business.
And prior to launching Exawatt, he held key engineering and leadership roles at industrial and tech powerhouses like General Electric, Accenture, Tesla.
He also co-founded Valanci, an autonomous hardware and logistics company.
But now he's tackling one of the biggest challenges facing the tech sector right now.
Its company, Exawatt, which has captured the backing of elite investors like Sam Altman, Andreessen Horowitz, is purpose-built to power AI, delivering dedicated renewable energy to the engines of modern intelligence.
Exawatt calls its new energy generation category on-site firm Solar.
It's designed to bypass the years-long utility grid delays that are stalling the modern AI build-out.
Hanan, welcome to the show.
Thanks for having me, Rachel.
Absolutely.
You know, the last few years when I think a lot of investors talk about AI, the conversation is very much focused on, you know, semiconductors, networking capabilities.
But you've argued that the next massive phase of AI investment isn't actually happening in software.
It's happening in that physical infrastructure.
So walk us through that.
Why has the biggest bottleneck in the AI boom suddenly shifted from the silicon to the raw physical infrastructure?
Yeah, absolutely.
Absolutely. So if you think about just a couple of years ago, the largest data center that
we had in the United States was about 100 megawatts in capacity. And that was considered
very large. And the rack density was in the tens of kilowatts. And a building block of
a data center was maybe 10 to 20 megawatts. And fast forward just in the last couple of
years, the building blocks for data centers have scaled up to in the order of 300 to 500
to even 700 megawatts, the building block.
So you could argue the building block of a data center is now five times larger than
the largest data center we had in the country a couple of years ago.
And the data centers themselves are now on average about a gigawatt, and there are some
that are in the order of 10 gigawatts.
And to put that into context, a gigawatt data center essentially is consuming the equivalent of one million U.S. households worth of energy.
So you're basically saying I am building a city from scratch for a million people, and I'm trying to do that as fast as possible because I want to stay in the AI race.
I want to have the best model.
I want to be competitive.
And this is where we're past the idea of like, how do I write the best LLM algorithms or models?
How can we overcome the chip shortage?
Because the chips have become better too and more powerful, even if they have become more energy efficient.
But they're still consuming a lot more energy as a total.
And now we have to build power infrastructure.
And as a country, we haven't had to build massive amounts of power infrastructure for the last couple of decades.
We haven't had much of a load growth in the U.S., and now we do, and data centers are eventually going to contribute or be taking about 9% to 10% of total energy produced in the U.S., the grid capacity.
So we are in a mad rush to build power infrastructure.
Building power infrastructure is not trivial.
It's not like software that you can write code and it just scales infinitely.
You have to move metal.
You have to move concrete.
You have to move earth.
You have to do all sorts of permitting and construction and move workers.
And we just don't have those capabilities at scale in the country.
And what we're trying to do at Exawad is come up with a formula that allows us to do something in a factory setting with tight control over cost,
tight control over the speed of execution, and try to scale that as fast as possible to address this power gap.
But there's a massive, massive power gap. And I think everyone's scrambling to figure out how to cover it. And yeah, that's kind of the reality that we're facing today.
Well, I think, as you noted, it's become increasingly obvious that the primary constraint is about delivering reliable power where AI infrastructure is actually being built.
So, you know, what are the solutions to that look like? I mean, obviously, I know that's what ExoWatt's all about, but I'd love to hear your thoughts as well broadly on how you're able to get past this bottleneck in the next 5, 10, 15 years if you're building out all these data centers as a tech company.
Yeah, good question.
Again, going back to the history of data center build-out, right?
Three, four years ago, when you built a data center, again, whether it was 25 megawatts
or even 100 megawatts, you really didn't think of power as a constraint.
You basically put the data center where the location was favorable from a real estate
perspective, maybe from a fiber perspective, typically close to urban and suburban areas.
And power was not really necessarily a key factor.
You just plugged it into the grid, and the grid was able to give you power.
But fast forward today where we have these massive data centers, the grid has no capacity.
They have to come up and scramble with solutions to build their own power.
And this started out with the mad rush to go build gas, right?
So over the last couple of years, especially the last two years, every data center that
has been announced is saying, well, I'm going to build some version of gas generation behind
the meter gas, and eventually there'll be some grid.
And gas generation has its own challenges.
We have, yes, abundant amounts of gas in the country, but we have the lack of supply chain
for turning that gas into electricity.
So turbines have been backlogged, you know, five to seven years in some cases.
We have also now fuel volatility, right?
Given the geopolitical things that are happening around the world, gas prices are also fluctuating.
And then just by the simple fact of having a gas line doesn't mean you actually have
access to that gas to turn it into electricity. And so a lot of people started saying like,
oh, I have a gas pipeline here, I'll build a data center. It's not that simple. And I think
the most recent thing that's happened, if you put aside all the supply chain constraints,
all the factors that go into building a generation system, is now the communities are saying,
I don't want this many gas generators in my backyard, right? So the nimbyism for gas
generation is now really spiking because gas generation by default is not necessarily a clean
solution. It might be a fast solution, but it's not a clean solution. And so the pollution that
it's creating, the emissions that it's creating, it's really, really hurting the communities.
And in even very gas-rich states like Texas, we're seeing a backlash against data center
build-out. So our theory and hypothesis has been, and a couple of things we're doing wrong and we
should do differently as a kind of industry and also as a country. Number one, we shouldn't go
build these massive data centers in the same locations we used to build the smaller data
centers, so in urban and suburban areas, where they can have a massive impact on the communities.
We should try to take these massive infrastructure projects, these data centers,
out to areas where the impact on the community is lower, where you can get abundant, cheap energy
energy from solar resources, even if it is gas resources.
You want to take it as far out as possible.
And solar, in our opinion, is the cheapest, most abundantly available, least supply chain
constrained source of energy that we have today, not only in the US but around the world.
And the supply chain is very robust if we're talking about traditional solar panels.
And it's a matter of now making that enormous amount of solar energy that we get that sufficiently
covers all of our data center power gaps and making it such that it's dispatchable so that
it can serve a baseload application like a data center.
So the argument for solar against solar and wind and other renewable generation sources
historically has been, these are intermittent resources.
So when the sun is not shining, when the wind is not blowing, how can I power my data center
that's supposed to run 24-7?
That's exactly what we're solving for at Exawatt by taking that intermittent resource
and making it dispatchable by storing that energy in what we call a long-duration storage
technology and allowing data centers to have access to the solar energy that we capture
throughout the day around the clock 24-7 to power their basal applications.
And I think that's the shift that we're going to see in the data center market.
There are already hyperscalers that are starting to do that at scale.
And I think more and more of that is going to come online hopefully very soon because
Because it is the fastest path to electrons, the fastest path to electricity essentially,
and the lowest impact on communities.
And also it creates a ton of jobs, right?
Because you have to manufacture these panels, you have to manufacture all the supply chain
for the batteries and the components that go into that.
So that's where I think hopefully the sustainable kind of data center build out is going to
move towards, away from urban and suburban areas, away from very polluting generation
solutions like gas and diesel to more sustainable solutions, not because data centers want to be
sustainable, but because that is the cheapest, fastest path for them to get access to power
and without hurting any of the communities where they're building that power infrastructure.
Yeah. And I mean, the factors that we've seen like deployment speed and
permitting energy availability, which of course you've just touched on,
execution risk, this is a much bigger part of the picture as we're watching the AI build out.
demand seems to be just one very, very small piece of the pie. We hear a lot about grid
interconnection delays stretching for years. Can you paint a picture of how devastating a three to
five year grid wait time can be for, you know, a hyperscaler or a tech company that's trying to
build out, you know, these data centers to train their next gen models? Yeah, I mean, just think
about over the last, what is it now, July, right? Over the last seven to eight months this year,
how many model releases we've had between just OpenAI and Anthropic, and then also
Meta, and Grok, and Google, and also all the Chinese open source models. I can't keep count
of it anymore, but I'm sure it's in the order of dozens now of models that have been released over
just the last seven months. So the pace of these models being developed and released is extremely
high. The competition is really high. And if you look at the revenue profiles of OpenAI and
Anthropic. So it's very obvious that this is a very profitable business, right? Every day counts,
every minute counts. And whether you're essentially an AI application company or an AI model company,
or you're in a company that's providing infrastructure, if you look at the recent
transactions that SpaceX did with Anthropic and with Google, they're talking about a billion
dollars a month. So a year delay, if you just take that as a number, is about $12 billion of
missed revenue opportunity.
So obviously everyone is a mad rush to get any access to any power
they can get as fast as possible.
It used to be that when we talked to customers, they said, Oh, unless you
can give me 300, 500 megawatts a gigawatt, I'm not going to be interested.
Now it's come to a point where like any power you can give me, I'm going to take
it, even if it's in small quantities, because the equation is very simple.
If I have 10 megawatts or a hundred megawatts, I can monetize that to the
tunes of hundreds of millions of dollars if not billions of dollars and that's
kind of the why why everyone's in a mad rush putting aside the fact that we're
also competing with China for AI dominance just internally the economics
of AI right now are so so lucrative that everyone's willing to spend whatever it
takes to get access to power infrastructure to compute infrastructure
as fast as possible
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I mean, given all these factors, do you think that the next generation of AI winners will be defined less by their breakthrough technology and more by their ability to build out?
Yes, yes.
And I think that's definitely the case.
And I think that's where, as a country, we have a massive problem.
So if you think about the U.S., in the U.S., we're adding about 50 gigawatts of infrastructure,
or sorry, power to the grid per year.
And we're talking about the hyperscale is spending hundreds of billions of dollars to
trillions of dollars on their compute infrastructure, and they need to cover a gap that's in the
order of 70 to 100 gigawatts at a minimum, right?
And then you kind of take that as comparison to the fact that China adds 540 gigawatts
of power to the grid per year, so more than 10 times our capacity.
So that means that China, if we consider China to be our rival in this AI dominance race,
has 10 to 11 times more capability and capacity than we do to build infrastructure and bring
that online.
Now, we could argue they don't have the most advanced chips that we do, but it seems like
even without those chips, they're already outperforming us, given the most recent open
source models that Chinese companies have released at that are outperforming the closed
source models that we have in the U.S.
So I think we're at a massive disadvantage there as a country.
And I think we have to scramble to figure out what sorts of energy infrastructure we
can bring online, how fast, what sorts of partnerships we can kind of establish around
the world.
Because there's massive, massive challenges here in the U.S., not only like the permitting
challenges, the grid backlog, and not only the fact that we have to build so much infrastructure,
we have the community backlash, we have the essentially lack of resources, labor to build
and construct and electricians and technicians. All of that combined with the fact that our so-called
adversary in this race is 10 to 11 times more powerful than we are. And so I don't really have
a solution for that right now, but I think that's a challenge that we have to all acknowledge.
Well, you know, we've spent a lot of time talking about some of the infrastructure build-out challenges and the various integrated energy solutions like what Exelot is providing that could help to stem that tide.
But I want to go back to something you mentioned earlier, which is this idea of NIMBYism.
Maybe you can define what that means for our audience, and then I'll follow up with my next question.
Yeah. So basically, it means that a community or someone that is in the vicinity of the data center is asking not to build that data center in their backyard.
And for good reasons, they're saying, look, I'm paying the price of all the pollution that the data center is creating.
The real estate is gone for that data center. It's not creating a lot of jobs.
There may be some marginal tax revenue, but for the most part, data centers don't have a lot of ongoing jobs or sustaining jobs.
You're taking away my water resources.
You're increasing, essentially, my energy bills because I have to pay for your infrastructure upgrades.
So for all of those reasons, you could see why people, communities don't want data centers in their backyards.
And I think there's been kind of an effort now from the administration and also from the hyperscalers to try to reduce this burden by saying, well, you know, the hyperscaler or whoever's building that data center has to start paying for that infrastructure upgrades themselves.
They have to kind of bring this online in a way that it doesn't impact the rate payers and the communities.
They have to try to reduce these emissions that are hurting the communities.
I mean, one of the things that is really tragic about this is we talk about how fast the data center is coming online in certain places.
The other thing we don't talk about is like, well, everybody around that data center now has cancer and is dying as a result of that.
So, yes, while one company may be saying like, oh, I put out a slightly better model than this other company, the communities around that data center have been massively, massively impacted.
So I understand and I have sympathy for them why you wouldn't want a data center in your backyard.
And I think that's why we're advocating for a model which we call to build on frontier land.
So not in urban areas or suburban areas or even rural areas, but to go out in areas where we have massive amounts of land, massive amounts of energy and solar resources and energy resources as a whole.
And we're far away from impacting communities.
We're not going to take away their energy resources.
And I think that's the shift that needs to happen for us to be able to really build data centers. Otherwise, as you probably know, you know, I think there's over $160 billion of data centers that are currently not coming online this year that were supposed to be coming online because of all the community backlash.
Many states have already put moratoriums out.
Many are considering them, both Democrat and Republican states.
This is a bipartisan kind of hate issue, right?
Nobody wants this data center build out.
And I think we need that data center build out.
The infrastructure is required, of course, because we want to advance.
We want to kind of stay dominant on the AI front.
But we need to do it in a sustainable way.
And I think what we've been doing so far hasn't been sustainable.
It's been just kind of driven by how fast can I get something online and really not take into consideration what the even short-term impacts of this are going to be, let alone the long-term impacts.
Yeah, I want to talk about this frontier land concept that you have been talking about.
It really kind of flips the legacy model.
You know, historically, data centers were built where networks and talent already existed.
So maybe talk through this idea of why we should be looking more at locations where the reliable energy can be built alongside compute power and how that kind of flips the script on what we think of in terms of, you know, real estate and utilities and infrastructure.
Yeah, again, going back to the history of data center build out.
So in the era where power was into constraint, you just built it at a location where, you know, there was at some point a constraint around fiber connectivity.
So you want to have access to fiber.
And I think the other thing was that a lot of data center build out was happening with a real estate lens.
So also the developers of these data centers are always thinking about, well, what else could I do with this plot of land if it's not a data center?
Or what do I do after the data center kind of boom is gone?
Is there something there?
Is there some other use to this land?
And so I think that's why data centers were really concentrated around urban and suburban areas or, you know, especially in places like Virginia, you have like this data center alley, high concentration of data centers.
By the way, Virginia is not cheap.
Land is not cheap.
Power is not cheap.
There's nothing cheap in Virginia.
So, like, you should ask yourself, why do we build so many data centers there?
It just doesn't make sense.
And I think our opinion is now that we've really come to a point where data center developers just don't have any more solutions to go build urban and suburban data centers in prime real estate markets, essentially, now there's a shift to let's go build farther out from cities and towns and even rural areas, frankly, and go build in what we call barren land and frontier land.
where you have abundant land, 41% of the country is empty, right?
Literally empty.
There's nobody living in 41% of the country.
So, and I'm not saying all of that is flat
and all of that is prime for data center development,
but more than enough of it is available
to power all the data center capacity that we need in a country.
And we can do that sustainably because in those areas,
you have abundant sunshine, you have abundant wind,
you have abundant gas resources even,
And especially think about like Texas and New Mexico and other places like that and Oklahoma.
And we have now also kind of started building data centers in a way that they're going to be reliant on having massive amounts of construction workers, right?
This whole hypothesis behind ExoWatt is if we can build a modular system in a factory setting where you can have your professional labor right in the factory,
You don't need to go have them in the middle of the desert.
You can then ship out these modules and then install them very easily on site.
And the same thing is happening on the data center development as well.
You know, companies are developing much more rapid ways and modular ways of building data center infrastructure.
So I think that's where the industry needs to go and is somewhat going.
But we're still going to be seeing a little bit of this short term impact on the reaction that some states are going to have to data center build out
about completely banning them,
completely coming to a stop
or kind of taking away their incentives.
And I think we could revive that
in certain areas where it makes sense
by showing that there's a model
for sustainable data center development.
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yeah it's fascinating to hear about as well i guess another question i'd like to ask
Are we seeing, you know, the hyperscalers, the tech companies that are building out their data centers, are they looking at this type of energy generation as the solution to a lot of the problems and bottlenecks that they're seeing right now in the infrastructure build-out?
Like, what does that adoption curve look like from your vantage point?
I think, yes.
I mean, in general, I think there are hyperscalers out there, majority of the hyperscalers out there are right now trying to build some sort of dispatchable renewable capacity, whether it's taking traditional solar panels and combining them with some short-duration batteries, or whether it's to combine them with long-duration storage technologies, or whether it's to buy and build a full-stack energy solution like the ExoIP3.
And we have a massive backlog right now for our product, for our solutions, something that we're working really hard to try to serve as we scale up our manufacturing.
But yet, there are definitely a lot of interest for these types of solutions because everyone at the end of the day knows that this is the fastest path, the fastest way to get to electricity.
This is the fastest half the electrons that are cost effective, that are sustainable,
that are not going to be impacted by supply chain risks, that are not going to be impacting
the communities.
And I think it's happening more and more.
Again, the last two years, I would say it was very focused on gas and everyone thought
gas is the end all be all.
But now we're seeing this transition more to dispatchable renewables as being the solution.
And there's some other technologies out there too that folks are investing in or thinking
about.
And I should say, at the end of the day, there is no silver bullet for energy or power.
You have to build an energy mix.
That's ultimately what our grid is.
It's an energy mix.
So every solution out there should be tested out and tried as much as possible.
Some of them have shorter term timelines coming online and lower costs.
Some of them have longer-term kind of potential.
And, yeah, hyperscalers are, at the end of the day, trying everything, to be honest.
You know, if you can go sell them power from anything that you can generate power from, they'll probably be a buyer.
Well, as we draw to the end, the last few minutes of our conversation today, kind of going back to all the different points that we have discussed in this last bit of time.
I mean, if you're an investor that is watching the AI infrastructure build out, I mean, that is something that pertains greatly to a lot of the companies that we as investors own and invest in.
And what are the things we should be looking for to track the health and sustainability of the AI infrastructure build out to ensure that, you know, all of the CapEx that we are seeing flowing into the markets, that it's actually having a valuable, profitable effect for the companies that we invest in?
Yeah, I think as an investor, I would look at both the short term and the long term.
So the short term is like, how viable is the plan for this CapEx build out going to be in the short term?
Are there any obstacles facing that from communities, from an energy perspective, from a labor perspective, right?
So these are short term things.
And then the long term is like, how viable is this going to be in the long run in the sense that are they building this infrastructure around energy sources that are going to be sustainable?
Not in the sense of green, but sustainable in the sense of they're not going to have supply chain volatility, they're not going to have fuel volatility, they're not going to have kind of, you know, with the change of administrations, potential huge penalties to pay, which is going to be probably the case for a lot of gas data centers, right?
if the change and tune of the administration and policies change around gas data centers,
and I think a lot of hyperscalers are aware of that, they might be up for paying massive,
massive penalties for the pollution and the emissions. And also, the communities will
probably come out and ask for a lot of damages or maybe put these data centers to complete halt.
Who knows? So I would look at both the short term and the long term. I think it's very,
very enticing to think about the short term, because as we discuss, the faster you can get
these data centers online, billions of dollars get printed out very quickly. But I think as an
investor, I would want to say and look at how sustainable is that revenue stream? Can we bank
on it for another 5, 10, 15, 20 years? And look at the long-term components of the infrastructure
build out as well. And, you know, really, I think in that sense, think about where are these data
centers being built, right? Is that essentially going to be in an area that's sustainable in the
long run or not? Oh, I so appreciate your time today, Hanan. It's been really a fascinating
discussion and really interesting to hear about the pace of the build out, what it's looking like
and the work that ExoWatt is doing. Thank you so much for joining me today. Yeah, thanks for having
me, Rachel. As always, people on the program may have interests in the stocks they talk about,
And The Motley Fool may have formal recommendations for or against,
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I'm Rachel Warren. Thanks for listening. We'll see you next time.
