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iPlant
All systems

One control layer across every system.

iPlant's controllers monitor and manage irrigation, lighting, climate and nutrient delivery. Conditions are measured continuously and held against target ranges, with remote visibility of how each system is running.

Smart Controllers, Automation & AI
System in context

How the system works

Designed as one operating system, not separate parts.

  1. 01

    Monitoring

    Temperature, humidity and system conditions measured continuously at the growing plane.

  2. 02

    Automation

    Irrigation, nutrient dosing, lighting and ventilation managed against target ranges.

  3. 03

    Remote visibility

    System status is visible without needing to be on site.

  4. 04

    Deployed in the field

    The same control technology runs across research rooms, vertical farms and indoor units.

  5. 05

    AI-assisted optimisation

    Measured conditions feed decision-making that tunes irrigation, lighting and climate toward the target range, with image-based diagnostics in development.

What this changes

Benefits built into the operating model.

The value comes from the way water, space, crops and control are designed to work together — not from adding technology for its own sake.

  • 01

    Water-smart

    Use water more precisely.

    Recirculating hydroponic systems deliver water and nutrients directly to the root zone, reducing avoidable losses compared with open soil irrigation.

    Recirculating delivery

  • 02

    Automated control

    Replace guesswork with visibility.

    Sensors, controllers and remote monitoring help manage irrigation, lighting and environmental conditions while reducing the burden on the operator.

    Sensors + automation

  • 03

    Resource-conscious

    Produce locally, with less dependence.

    Systems are designed around local climate, water, space and operational needs, helping cities build more resilient and shorter food-production chains.

    Designed for MENA conditions

From concept to operation

A practical path to a running system.

  1. 01

    Assess the site

    iPlant reviews the space, climate, water, energy and intended crop or use case.

  2. 02

    Design the system

    The growing method, layout, controls and operating requirements are specified around the real site.

  3. 03

    Build and commission

    The system is installed, tested and configured against the agreed growing plan.

  4. 04

    Train, monitor and support

    Operators are trained and iPlant can continue with monitoring, maintenance and technical support.

Controller sign-in

Already running an iPlant system?

Sign in to your controller dashboard to monitor conditions, adjust schedules and review history from anywhere.

Bring your farming challenge to iPlant.

From compact indoor systems to research facilities and urban farming projects, we design around the climate, space and resources available.