Sustainable Materials · Smart Construction

Most renewable way to build on the planet

Transforming sawmill waste into engineered bio-based materials — deployed through advanced manufacturing and robotic fabrication.

40%

of global lumber becomes industrial waste every year — with no scalable solution

100%

bio-based formula — no toxic synthetic binders, fillers, or solvents

MIT

affiliated research team pioneering programmable and bio-based materials

The Challenge

Massive wood waste is generated daily, yet no scalable, sustainable method exists to efficiently transform it into high-value products.

Material Science

A three-part bio-based formula

We convert wood waste into engineered, healthy, bio-based composite materials.

Filler component
01 Filler
Reinforcement component
02 Reinforcement
Binder component
03 Binder

Applications

Built for every scale

We use advanced manufacturing and robotic fabrication systems to deploy our products at any scale.

Furniture

Furniture

Interior · Residential · Commercial
Pavilion

Pavilion

Outdoor · Exhibition · Temporary
Construction

Construction

Structural · Large-scale · Permanent

Tested & Certified

Engineered to endure

Water Proof test
Water Proof
Freeze Proof test
Freeze Proof
UV Proof test
UV Proof

Intelligence

Leveraging AI for material science

We use AI to help analyze and optimize material compositions, accelerating the path from wood waste to high-performance bio-based products.

Combined with robotic fabrication, this allows us to consistently produce and deploy materials at scale.

Composite material Material sample Material testing Material analysis

Partnerships & Supporters

MIT DesignX LUMA Arles

The Team

MIT Affiliated Team

Ready to build
something better?

Partner with us to bring sustainable bio-based materials to your next project.

Get In Touch