Roadmap

Same physics. Every size.

A phased-array plate is a tiling of transducers. Add channels and area and the build volume scales with it — from a machine on your desk to an industrial cell that builds vehicles or houses. We're shipping the desktop first, and we're shipping it scanning and printing on day one.

Yes, we've heard

This sounds like science fiction. It isn't.

Three things have changed that make this the right decade to build it.

01

Built from known hardware

Every component is off-the-shelf or standard-process: single-crystal piezos, FR4-gold PCBs, relaxor drivers, GaN amplifiers, FPGA control. Nothing here waits on a new physical discovery. The novelty is the arrangement, not the parts.

02

AI has collapsed the design loop

The complete machine is being built as a simulated digital twin whose software interface is the hardware interface — every design revision is tested in physics before it is built. AI writes the firmware, generates the CAD, and runs the twin in minutes instead of months. This is the reason a small company can credibly ship a machine like this now — not five years ago.

03

The production version builds itself

Only the first prototypes come off conventional machine shops. Once the first machine works, it becomes its own factory: every following generation is fabricated inside a previous one, atom-placed instead of milled. The cost curve after generation one is not a manufacturing curve — it's a replication curve.

Roadmap

The machine builds the machine.

Now

01 · Fully simulated digital twin

The entire machine lives first as a physics-correct simulation — acoustic and electromagnetic fields, materials, control loops — with the same interfaces the hardware will have. The design is proven before a part is cut.

Next

02 · v0, built the old way

The first machine comes off conventional machine shops: machined, wired, assembled by hand. Every component in it is off-the-shelf or standard-process. This happens exactly once.

Then

03 · v1, built by v0

The Replicator builds the Replicator. Because parts can be assembled, a small machine is enough to make the pieces of a larger one — so each generation is finer, cheaper, and bigger than the one that made it.

Timeline

What's next.

Now
Digital twin + subsystem hardware

The complete machine is being built and simulated as a physics-gated digital twin — same interfaces as the hardware, moving fast. In parallel, sub-systems are prototyped and tested in hardware: we've built a lot of prototypes and keep building more.

Next
Integrated v0 prototype

The subsystems come together around one build volume. Scan loop first, then the build loop.

Then
Pilot cohort

First units in partner labs and studios. Real jobs, real feedback, quarterly firmware.

Later
v1, built by v0

The first machine made by a machine. Production shifts from a manufacturing curve to a replication curve.

Later still
Workshop & industrial scale

The same boundary, tiled larger — up to volumes that build vehicles and structures.

The company building it.

Stay in the loop

Progress notes, a few times a year.

New papers, machine milestones, and open problems we would like help with. No marketing.

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