Greenhouse root-zone intelligence

Root-zone monitoring for smarter greenhouse decisions.

Djonix follows moisture, temperature, EC, salinity, pH and N/P/K sensor signals as a changing root-zone picture — so growers can see trends, context and conditions that deserve attention.

Root-zone dataMoisture, temperature, EC, salinity, pH and N/P/K sensor signals.
Live + historicalCurrent state, changing trends, alerts and context instead of isolated readings.
AI-supportedExplainable recommendations with the ability to abstain when evidence is weak.
Below the surface

The root zone is a changing system.

Root-zone conditions influence how available water and nutrients are to the plant, but a single reading rarely tells the whole story. Djonix is designed to follow how measurements move together over time so the grower can see both the current state and the direction of change.

The selected Djonix multi-sensor reports eight root-zone parameters or sensor signals. Final calibration, validation and agronomic interpretation remain part of product engineering.

Soil moistureShows water availability and drying patterns between irrigation cycles.
Soil temperatureAdds thermal context around the roots and helps explain changes that occur as the root zone warms or cools.
Electrical conductivity (EC)Tracks changes in dissolved-ion concentration. Interpreting EC together with moisture can be more useful than treating either value alone.
SalinitySupports monitoring for persistent salt accumulation patterns.
pHHelps show whether root-zone acidity or alkalinity is drifting away from the selected operating range.
N / P / K sensor signalsProvides nutrient-related sensor trends that Djonix can place beside moisture, EC and pH. These signals require appropriate calibration and validation.
Trend context

Why direction matters as much as the number.

A moisture value may look acceptable at one moment while falling unusually fast. EC may still sit inside an operating range while rising as the substrate dries. A pH reading may only become meaningful when the drift persists across multiple measurement periods.

Djonix is designed around this idea: monitor the state, watch the rate and direction of change, and provide context when several root-zone signals begin to tell the same story.

Combined signal example

Drying + rising EC

When moisture drops and EC rises together, the combined pattern can deserve review sooner than either measurement would on its own. Djonix can surface that relationship as an explanation rather than sending two disconnected threshold alarms.

Better monitoring practice

Data quality comes first.

Placement

Sensor position should represent the root zone you are actually trying to manage. A perfectly accurate reading from the wrong place can still be misleading.

Freshness

Recommendations should consider whether a sensor has reported recently enough to be trusted for a current decision.

Calibration

EC, pH and nutrient-related signals need appropriate calibration and validation before they can support confident agronomic interpretation.

Common questions

Questions growers ask.

Djonix is being developed as an advisory greenhouse monitoring system. Capabilities still requiring validation are described as such rather than presented as finished automation.

What does the Djonix soil sensor measure?

The selected 8-in-1 probe reports soil moisture, soil temperature, EC, salinity, pH and N/P/K sensor signals.

Why monitor EC and moisture together?

They can provide useful context for each other. As a root zone dries, concentration-related readings may change, so the combined trend can be more informative than one snapshot.

Does Djonix claim laboratory-grade NPK measurement?

No. Nutrient-related probe signals require calibration and validation. Djonix presents the selected sensor capabilities transparently while product engineering continues.

Bring intelligence into the greenhouse.

Djonix Founding Edition is €400 instead of the planned €600 retail price and includes 12 months of AI Agronomist.

Reserve the Founding Edition →