Accepting Research Partners Q2 2026

Engineer Matter at the Femtometer Scale

The first manufacturing platform that operates below the atomic radius. Design crystal lattices atom-by-atom, fabricate quantum materials with sub-picometer tolerances, and produce next-generation semiconductors that current lithography cannot reach.

10-15m Precision
0.01pm Tolerance
10M+ Atoms/sec
99.997% Placement
Live Assembly Simulation
x: 0.000 y: 0.000 z: 0.000 fm
Subsuming the legacy manufacturing stack
Molecular Imprints Zyvex Technologies Atomera Inc Applied Materials ASML Holdings Stark Industries KLA Corporation Lam Research Tokyo Electron Nikon Precision

Six Domains of Sub-Atomic Manufacturing

Each capability represents a breakthrough that individually would reshape its industry. Together, they form the first complete molecular manufacturing stack.

Femtometer Precision Placement

Position individual atoms with 0.01 picometer accuracy using quantum-locked electromagnetic guides. Achieve placement fidelity that exceeds the Heisenberg limit through entanglement-assisted measurement.

Resolution: 10^-15 m

Programmable Molecular Assembly

Define material structures in code. Our assembly language compiles molecular blueprints into precise fabrication sequences, executing billions of atomic placements per second with deterministic outcomes.

Throughput: 10M atoms/sec

Quantum Material Design

Engineer materials with exotic quantum properties: room-temperature superconductors, topological insulators, and programmable band-gap semiconductors. Design the laws of physics into your materials.

Novel material classes: 340+

Sub-nm Semiconductor Lithography

Fabricate transistor gates at 0.3nm and below -- three generations beyond current EUV capabilities. Direct-write molecular lithography eliminates the need for photomasks entirely.

Node: 0.3nm (3 angstrom)

Defense-Grade Materials

Produce metamaterials with programmable electromagnetic properties, ultra-high-strength composites at molecular perfection, and adaptive armor systems with tunable crystalline structures.

Classification: ITAR compliant

Custom Alloy Synthesis

Design and fabricate high-entropy alloys with atom-by-atom composition control. Create gradient materials, functionally graded interfaces, and alloys impossible through traditional metallurgy.

Composition control: per-atom

Where We Operate

FemptoCom works at scales three orders of magnitude beyond current nanotechnology. Here is how our precision compares.

fm
Femto
10-15 m
Nuclear radius
pm
Pico
10-12 m
Atomic bonds
Angstrom
10-10 m
Atom diameter
nm
Nano
10-9 m
DNA width
μm
Micro
10-6 m
Blood cell
FemptoCom operates here
1,000x
Finer than ASML EUV
100x
Below atomic radius
106x
Finer than nanotech
0.01pm
Absolute tolerance
99.997%
Atom Placement
Accuracy
10M+
Atoms Placed
Per Second
340+
Novel Material
Structures
0.3nm
Minimum Gate
Width
$50B
Target
Valuation

Platform Access Tiers

From research exploration to sovereign production deployment. Every license includes our molecular design toolkit and fabrication runtime.

Research
$250K/yr
Full platform access for academic and government research institutions. Includes simulation environment.
  • Molecular design studio
  • Simulation environment (10K atoms)
  • 50 fabrication hours/year
  • Standard material library
  • Technical support (business hours)
Defense & Sovereign
Custom
Air-gapped deployment with classified material libraries. ITAR/EAR compliant. Sovereign fabrication capability.
  • Everything in Industrial
  • Air-gapped on-premise deployment
  • Classified material database
  • Unlimited fabrication
  • Dedicated facility support
  • ITAR/EAR compliance
  • 24/7 secure operations center

Join the Molecular Manufacturing Revolution

We are onboarding research partners and industrial licensees for Q2 2026. Secure your position in the fabrication queue.

Currently 47 institutions in queue. NDA provided upon acceptance.