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Greenhouse irrigation, fertigation and climate automation

Integrated greenhouse irrigation, EC/pH fertigation and climate controller

A modular greenhouse controller family integrating irrigation programs, EC/pH fertigation, valve and pump control, sensor inputs, event logging, remote access, alarms, and configuration-dependent ventilation, heating, fogging and screening functions.

Technology profileGreenhouse & Protected CultivationGreenhouse automationFertigationIrrigation controlEC/pHClimate control
Illustrative context
Illustrative image

Supplier location

Türkiye

Guide type

Buying guide

Last reviewed

13 Jul 2026

Integrated greenhouse irrigation, fertigation, and climate-control application context.

Independent guide

AgriTech.tr prepared this explanation and comparison guidance.

Planning values

Useful starting points, not a guaranteed final configuration.

4 public sources

Public sources support the technical overview. Current prices, availability, and commercial details still need confirmation.

Greenhouse irrigation, fertigation and climate automation

What this system does

The main technical details to review and confirm when comparing supplier options.

Controller platform

Linux-based industrial computer with local control software, industrial I/O, offline operation, configuration backup, event history, and secure remote access

Operator display

7-inch or 10-inch industrial touch display selected according to I/O count, screen workflow, panel space, visibility, and operator requirements

Valve and I/O baseline

16-valve reference baseline with expansion through CAN or other industrial I/O modules; final count follows the valve, pump, dosing, sensor, and climate schedule

Dosing control

EC/pH feedback with proportional, sensor-driven, or flow-ratio modes; dosing valve or pump method, calibration, interlocks, and fallback are configuration-specific

Remote functions

Role-controlled web and mobile management, live values, alarms, SMS or messaging, logs, reports, remote commands, audit trail, and support access

Key specifications

The main technical details to review and confirm when comparing supplier options.

Controller platform
Linux-based industrial computer with local control software, industrial I/O, offline operation, configuration backup, event history, and secure remote access
Operator display
7-inch or 10-inch industrial touch display selected according to I/O count, screen workflow, panel space, visibility, and operator requirements
Valve and I/O baseline
16-valve reference baseline with expansion through CAN or other industrial I/O modules; final count follows the valve, pump, dosing, sensor, and climate schedule
Dosing control
EC/pH feedback with proportional, sensor-driven, or flow-ratio modes; dosing valve or pump method, calibration, interlocks, and fallback are configuration-specific
Remote functions
Role-controlled web and mobile management, live values, alarms, SMS or messaging, logs, reports, remote commands, audit trail, and support access

Applications

Practical details that help people compare options.

Greenhouse irrigation sequencing by zone, schedule or date

EC/pH-guided nutrient dosing with model-dependent valve control

Pump, booster, clean-water-line and irrigation-valve supervision

Remote greenhouse monitoring, alarms, event history and reports

Model-dependent greenhouse climate and weather-station integration

What to compare

Confirm the supplier, final configuration, certifications, price, delivery, and warranty before you buy.

  1. 1Exact integrated controller family model, hardware revision, display, base and expanded I/O count
  2. 2EC/pH sensor make, range, calibration, dosing logic, accuracy and fail-safe behavior
  3. 3Valve, pump, injector, flow-meter, tank-level and climate-actuator compatibility
  4. 4Local/offline operation, internet recovery, cloud hosting, export and data-retention terms
  5. 5Electrical and hydraulic design, commissioning, training, warranty, service and spare parts
  6. 6Acceptance tests for sensor failure, communications loss, power recovery and manual override

How we researched this

The sources, methods, and context used to prepare this page.

Integrated greenhouse irrigation, EC/pH fertigation and climate controller

This profile defines a sourcing requirement for integrated greenhouse automation controller. Suitable suppliers, origin, availability, and commercial terms are confirmed for the buyer’s project. The sourcing brief is structured around capacity, application, operating environment, required standards, destination, and delivery scope; the exact configuration requires supplier confirmation.

The integrated greenhouse automation controller combines irrigation sequencing, EC/pH fertigation, pumps, clean-water lines, alarms, remote supervision, and optional climate control around an industrial controller and operator interface. It is configured for greenhouse growers and project integrators that need one coordinated control philosophy, signed I/O schedule, hydraulic design, sensor package, alarm matrix, and commissioning plan.

Controller architecture and configurable capacity

Area Technical capability Procurement boundary
Control platform Industrial controller, Linux-based operator interface, local control logic, data logging, and remote supervision. Define display size, hardware revision, operating-system support, local storage, backup, user roles, network design, cybersecurity, and offline operation.
Irrigation Sequential and condition-based irrigation, date and crop-stage programs, pump management, valve control, clean-water flushing, and manual operation. Define zones, simultaneous valves, pump duty, pressure and flow measurement, interlocks, surge protection, cable distances, and safe fallback.
Fertigation EC/pH feedback using on/off or proportional dosing valves, sensor-based or flow-ratio dosing, recipes, and alarms. Define sensor ranges, sample conditioning, temperature compensation, calibration, dosing accuracy, wetted materials, chemical compatibility, and fail-safe response.
Connectivity Web and mobile monitoring, user access, event logs, reports, exports, and configurable alarm delivery. Define hosting, account and data ownership, retention, subscription, connectivity fallback, export/API scope, alarm channels, and support access.
Expansion A 16-valve reference baseline expands through CAN-connected or other industrial I/O cards. Define the signed point schedule, spare I/O, cabinet capacity, power budget, addressing, bus topology, and future expansion for the project.

Controller packages use 7-inch or 10-inch industrial operator displays. The base irrigation configuration manages valve sequencing, pumps, clean-water lines, alarms, and remote supervision; expanded packages add proportional EC/pH dosing, additional CAN-based I/O, weather-station integration, and temperature, humidity, radiation, and light sensing. Climate-enabled packages can coordinate vents, fans, heating, cooling, screens, and irrigation from one control philosophy.

Sourcing checklist

The sourcing brief should define crop zones, irrigation blocks, injector count, water sources, drainage, existing pumps and valves, target EC/pH ranges, sensor locations, and required climate actuators before configuration. The project file includes a model-specific bill of materials, electrical single-line diagram, I/O schedule, hydraulic drawing, commissioning protocol, calibration records, spare-parts list, remote-access security design, training scope, and acceptance test. Commissioning simulates internet and sensor loss, stuck valves, empty nutrient tanks, power recovery, alarms, and manual operation.

Control performance is verified through the approved I/O schedule, cause-and-effect matrix, sensor calibration, dynamic dosing tests, communications and power-loss scenarios, manual fallback, and site acceptance protocol. Price, lead time, warranty, compliance documents, training, and international service scope are itemized in the project quotation.

Procurement and project delivery

AgriTech.tr can structure the technical requirement and compare current supplier responses for the buyer’s project. Installation, commissioning, operator training, warranty, spare-parts, and after-sales scope must be confirmed in each supplier quotation. The final scope should be documented against the approved application, capacity, site conditions, destination, and delivery schedule in the selected supplier quotation and contract.

Sources and further reading

The sources, methods, and context used to prepare this page.

How we researched this

  • AgriTech.tr technical catalog and procurement engineering
  • Technical standards and reference sources

Ministry of Agriculture and Forestry: Greenhouse project implementation manual

Technical reference used for system specification, project engineering, and procurement planning.

Ministry of Agriculture and Forestry: Water Efficiency Strategy and Action Plan

Technical reference used for system specification, project engineering, and procurement planning.

FAO: Digital Technologies for Agriculture in Türkiye

Technical reference used for system specification, project engineering, and procurement planning.

Copernicus Data Space: Sentinel-2 mission documentation

Technical reference used for system specification, project engineering, and procurement planning.

Buying guide
Last reviewed
13 Jul 2026
Last updated
13 Jul 2026

What is confirmed—and what to check

See where the information came from and what must still be confirmed with a supplier.

Independent guide

AgriTech.tr prepared this explanation and comparison guidance.

Planning values

Useful starting points, not a guaranteed final configuration.

4 public sources

Public sources support the technical overview. Current prices, availability, and commercial details still need confirmation.

Supplier-provided claims

No supplier-provided claim is represented in this evidence profile.

Document-verified information

No underlying verification record is attached to this listing.

Listing images

Images are illustrative and may not show the final sourced configuration.

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