
Technology
MicroMill Precision™
A fundamentally different approach to grinding.
The Problem With Conventional Grinding
The technology the world relies on to grind, crush, and process materials is over 200 years old. Ball mills use steel media tumbling inside a drum - heavy, slow, and energy-wasteful. Worse, those steel balls transfer heavy metal contamination directly into the output material.
For most industrial applications, that contamination is tolerated. For pharmaceuticals, food processing, and high-purity metals - it's a dealbreaker.
The 200-Year Problem
MicroMill Precision uses no grinding balls, no rods, and no grinding media of any kind.
Instead, material enters a high-speed rotating chamber where it passes between a precision roller and grinding track. A blade system continuously lifts and recirculates the material through the grinding zone - 150+ passes
per cycle, in seconds..
The result is ultra-fine particles ground to exact specifications. Consistently. Regardless of input material.

What Makes It
Different

Media-Free Milling
No grinding media means no heavy metal transfer. This opens pharmaceutical, food-grade, and precious metals markets that conventional mills simply cannot access.

Precision Particle Control
Output is tunable across the 0.1–80 μm range, with the ability to target specific particle bands. Under-grind rate is just 0.5% - conventional mills cannot come close.

Any Material
One machine processes coal, sand, metals, ceramics, organic compounds, and pharmaceutical ingredients. No need for multiple systems.

Compact and Portable
A 135kg unit delivers industrial-scale output. Conventional ball mills doing comparable work weigh tonnes and require dedicated foundations.

Minimal Energy
MicroMill consumes 4 to 10 KW per tonne of product - a fraction of the energy of conventional systems with their massive power draw.

Aerospace DNA
Engineered from the ground up with aerospace-grade reliability, compact architecture, and precision tolerances that conventional grinding equipment was never built to achieve.
By The
Numbers
Input size
Input size: 10mm Ouput: 0.1 μm
Output fineness
Input size: 10 mm Output: 10 μm
Grinding passes
150+ per cycle
Metal contamination
0.05 g/kg (no grinding media)
Energy use
4 to 10 kW per tonne of product
Commercial throughput
1 to 200+ tonnes per hour (scalable)
Under-grind rate
0.5%
Combustion temperature
1,200°C
Burn efficiency


