One platform. Four capabilities today, a full ecosystem to come.
Biocenza launches as an AI scanning and monitoring platform. Robotic harvesting, dairy, and fish are phases the same architecture is designed to grow into.
AI Scanning & Monitoring
The Version 1 product, real time crop scanning, AI detection, and oxygen exchange monitoring for Seolhyang strawberry greenhouses. Sold as a per greenhouse subscription with no equipment to buy.
Real time crop scanning
Replaces the daily manual walk through with continuous camera coverage of every row.
Early pre harvest detection
Tells a farmer what is ripening and when, ahead of the harvest window rather than at it.
Oxygen exchange monitoring
Tracks each plant's oxygen exchange for ongoing eco-monitoring of crop and greenhouse health.
Disease and stress detection
Surfaces early visual signs of disease so a farmer can treat a few plants instead of losing a row.
What a grower actually opens every morning
The scanning platform is not a data dump. It ranks what matters, explains why, and answers questions in plain language.
Live scan
Every connected camera streams into the detection pipeline, with ripeness and health read off each frame as it arrives.
Detection runs on every frame
AI suggestions
Ranked actions drawn from detection confidence, sensor trends and fleet state. Each one shows the reading behind it.
- Isolate and treat three plants in Tunnel 2
- Pick row A1 between Sep 15 and Sep 17
- Increase ventilation in Nonsan Row B
6 open today
Farm assistant
Ask what needs attention, when to harvest, or which cameras are down, and get an answer from your own farm data.
Rules today, model planned
Alerts and harvest planning
Disease risk, environmental drift and harvest windows arrive as alerts you can acknowledge and resolve.
Yield tracked vs. baseline
Microbot fleet
Watch every machine report back to the server brain, with battery, link latency and current task.
6 of 7 units linked
See it with sample data
The full dashboard is open. No account needed.
Robotic Harvesting
A conveyor belt and AI guided robotic arm that harvest within a two to three day precision window, running on the same detection models that power the scanning platform. Two working prototype units are being built now.
See the prototype specVersion 2: Dairy
The same monitoring approach applied to cow health, with automated vaccine tracking. A comparable automated system already running in the US reports benefits of up to $285 per cow per year, so the value is proven before it is built.
Version 3: Fish
Aquaculture, starting with olive flounder, Korea's predominant farmed fish species, alongside Korean rockfish and mullet. This is also where the circular loop closes.