Startup targets datacenters with 3D-printed nuclear reactor module

Jul 04, 2026 Last reply: 2 weeks ago 9 Replies

We'll have 2 please


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US startup Ampera has produced what it claims is the first 3D-printed nuclear reactor module. The firm says it is working towards delivering scalable, emission-free power for datacenters, defense applications, and off-grid sites.



Ampera unveiled its first nuclear reactor module during an event at the firm's innovation center in Palm Beach Gardens, Florida. More than 100 people attended, including local officials, business leaders and employees.



Founder and CEO Brian Matthews revealed the prototype microreactor, which features a fully 3D-printed silicon carbide reactor core and pressure vessel.



"This next-generation nuclear core and pressure vessel sets the foundation for factory-built, mass-produced nuclear energy," Matthews said. "The advanced technology and additive manufacturing used demonstrate a clear commercial path for new nuclear technology coming to market in an accelerated manner."



His company is developing a subcritical, solid-state, factory-built thorium-based nuclear reactor. Subcritical means the fuel cannot sustain a nuclear chain reaction on its own, which prevents a runaway power excursion.



Ampera uses "solid-state" to describe a design with solid rather than liquid fuel. The proposed fuel uses tristructural isotropic, or TRISO, particles, consisting of a fuel kernel containing thorium, surrounded by multiple ceramic and carbon layers.



Thorium-232 is not fissile. After absorbing a neutron, it ultimately decays through thorium-233 and protactinium-233 into fissile uranium-233. This requires a separate source of neutrons, and Ampera says its design features a proprietary neutron driver to provide a stable external neutron source to start and sustain operation.



In June, Ampera announced it had established an Australian subsidiary to secure thorium supplies, and said it plans to produce the fuel kernels itself.


Ampera also describes the heart of the reactor as as a spherical monolithic gyroid core. A gyroid, as far as we can fathom, is a complex shape that provides a massive surface area relative to its volume, making it well-suited for heat transfer. Its complexity makes it difficult to produce using conventional manufacturing methods, which is where additive manufacturing comes in.



The core is 3D-printed using silicon carbide and designed to operate for up to 30 years without refueling, the firm claims.



Ampera says its planned systems will provide 15 or 30 MWe, depending on the configuration, enough to supply a typical datacenter. Larger configurations are planned.



Matthews said that his company expects to be the first to industrialize factory-built nuclear power with near-term deployment timelines.



When The Register asked about availability, their spokesperson said: "We expect the power generation portion of the system to be available as early as 2027, with the nuclear module being available to customers about



2030 based on regulatory approval."

We also asked how neutrons are generated for startup and operation of the reactor module by the Neutron Driver, but Ampera is keeping this under its hat for now.



As well as datacenters, defense customers will be likely takers if Ampera can produce reliable working reactors. Earlier this year, the US Department of the Air Force (DAF) announced it was looking into microreactors for three of its sites, part of a program aimed at improving energy resilience during grid outages.


These are a bit more developed (at least 2 with TRISO):

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I wouldn't normally expect revealing a nuclear reactor to require showy pyrotechnics on-stage?

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Presumably they can attract a more gullible audience at Tom's Hardware and El Reg than at

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Now people are realising belatedly that reneweable energy not only will not save the planet, but is extremely unreliable expensive and environmentally damaging, the obvious solutions are beginning to get the attention they deserve.

Always do the right thing, once all possible alternatives have failed...

That word/phrase "Startup" indicates they are looking for people to throw money at them - hence the glitter & glitz.

+1. One of the few benefits of an education in the theory of machines is that it avoids having to spend 15 years to discover that something will not work. Ever. And yet there are still people who naively believe that 'renewable energy will save the planet'...

...Because they don't have that education.

BtDtGTTS Sometimes the lost money buys you into an opportunity for a second round investment prior to taking the whole thing public.

-- Future generations will wonder in bemused amazement that the early twenty-first century’s developed world went into hysterical panic over a globally average temperature increase of a few tenths of a degree, and, on the basis of gross exaggerations of highly uncertain computer projections combined into implausible chains of inference, proceeded to contemplate a rollback of the industrial age.

Richard Lindzen

But, as you’ve said before, the Renewables believers doubtless got full Marx…

Of course.

Renewable energy is a convenient lie.

As Germany's plight as shown the more renewables you have the more dependent on Russian gas you are.

So Big Gas likes renewables far far more than nuclear power. Al Gore was Big Gas.

By mandating and subsidising the uptake of windmills and solar panels

*irrespective of their actual effect on global CO2* you can give green companies a license to print money whilst covering yourself in green virtue.

By moving energy more into state control you now have the ability to destroy the economy and make the plebs accept anything you tell them will fix it.

Everybody wins. Except the plebs. But who gives a f*ck about the plebs?

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