Remote irrigation operations reference environment
Agriculture reference configuration

Remote irrigation operations

A practical control model for scheduled pumps and valves across connected agricultural sites.

Reference profile, not a completed-project claim. This illustrative configuration shows how IA products may be assembled around a representative brief. A licensed professional must confirm the final electrical design, equipment compatibility, quantities and compliance requirements.

Configuration brief

A complete pathway from site conditions to handover.

Profile typeIllustrative agricultural configuration
SiteConnected pump and valve control points
SystemsIrrigation interfaces, service lighting and access
ControlLocal override, schedules and remote authorised operation
Illustrative product schedule

Every module has a defined system role.

Quantities show one discussion-ready configuration. Channel allocation, load suitability and installation location remain subject to project design.

2x
IA ELVDRY4V1

Low-voltage inputs to compatible pump and multi-valve controllers

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1x
IA DRY2V1

Compatible gate and tank-status or alarm interfaces

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1x
IA 10A2CH

Service-area lighting and approved compatible loads

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01

Control architecture

The IA modules in this profile do not replace pump protection, motor starters, safety interlocks or the existing irrigation controller. They provide approved control interfaces to compatible equipment after the electrician or integrator confirms voltage class, relay behaviour, isolation and fail-safe operation.

Local manual operation remains part of the design so essential work can continue if connectivity is unavailable. Remote control is limited to authorised users, and every automated routine is documented with a clear stop or pause pathway.

02

Irrigation routines

The reference configuration separates irrigation into named zones and gives each zone an agreed watering window. A dawn routine can sequence valves through the existing controller, while a rain-pause scene suspends the schedule without deleting it. A manual override is available for testing and unplanned field work.

Operators should confirm site conditions before acting remotely. Automation can reduce repetitive travel, but it does not replace visual inspection, equipment maintenance, water-allocation decisions or environmental judgment. Notifications and status information support those decisions rather than making them automatically.

03

Connectivity and handover

A site survey confirms power, enclosure conditions and reliable network coverage at each control point. Where coverage is marginal, connectivity must be improved before remote operation is treated as dependable. Equipment naming should match the labels already used by the property team.

Handover includes a zone schedule, authorised-user list, manual-isolation procedure and test of each fail-safe condition. The first operating cycle is observed locally, and future changes are introduced one at a time so the team can understand their effect.

Target outcomes

What this configuration is designed to enable.

Repeatable watering routinesFewer manual site visitsFlexible staged deployment

Expansion path

Additional valve groups after field validation

Tank or environmental sensing through compatible interfaces

A second property or equipment area

Seasonal schedule templates reviewed by the operator

Evidence you can verify

Australian-made hardware, local engineering and direct project support.

Australian Made certification mark
Melbourne basedDesign, development and assembly close to Australian projects.
Product-led guidanceHardware, app control and commissioning considered as one system.
Direct supportSales and technical pathways remain available before and after specification.
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