No-code Industrial AI for mining, metals and minerals.
The constraint shifts shift by shift, mills burn most of your energy, and a tripped critical drive can cost the day's tonnage.
The operating pressures we built around.
Throughput on the constraint
Capacity is set by whichever unit is slowest right now — and it moves.
Energy per ton
Grinding and crushing dominate the site's energy bill.
Wear on critical drives
Mills, conveyors, and crushers fail expensively when they fail unplanned.
The work that pays for itself first.
The platform capabilities that matter most here.
- Prescriptive optimization →
Throughput guidance on the active constraint.
- Anomaly detection →
Mills, crushers, conveyors and critical drives.
- Data Explorer →
Cross-shift comparison for energy and capacity.
Metals producer, Northern Europe
"Operators now know exactly how much further they can safely push the mill this shift."
What we read, how often, and how it gets here.
Historian, DCS/PLC, mill OEM packages, MES
drive amp, mill load, ore feed, vibration, bearing temp, energy meters
1–5s for drives; per-minute for production counters
Read-only Gateway; write-back to mills behind site safety governance.
Reporting and audit, built into the workflow.
ESG and Scope 2 reporting
kWh and CO2 per ton, per line, traceable to setpoint actions.
Worker safety on rotating equipment
Alerts integrated with maintenance and lockout workflows.
Production data integrity
Auditable history of recommendations and operator decisions.
One-pager for mining, metals & minerals teams.
A printable summary covering the use cases, expected KPIs, data needed, and integration notes on this page — written for plant leadership and IT/OT.
See it on your own mining, metals & minerals data.
A 30-minute working session with an industry specialist. Bring one unit and your top KPI — we'll come back with a working model proposal.