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AI Powered Smart Irrigation Booklet

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ಸೂಕ್ಷ್ಮ ನೀರಾವರಿ ಆಟೋಮೇಷನ್

Micro Irrigation Automation

Micro Irrigation Automation

Micro 1

ಸ್ವಯಂಚಾಲಿತ ನೀರಾವರಿ ವ್ಯವಸ್ಥೆ-Flyer 2025

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ಸ್ಮಾರ್ಟ್ ನೀರಾವರಿ ಮತ್ತು ರಸಗೊಬ್ಬರ ನಿರ್ವಹಣಾ ವ್ಯವಸ್ಥೆ-Flyer 2026

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Product Booklets Overview

Booklet Edition

AI Powered Smart Irrigation Booklet

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Product overview flyer

సూక్ష్మ నీటిపారుదల ఆటోమేషన్

Micro Irrigation Automation

Micro Irrigation Automation

Micro

స్మార్ట్ నీటిపారుదల మరియు ఫెర్టిగేషన్ నిర్వహణా వ్యవస్థ-Flyer

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Flocon

Flocon

Complete IoT Solution For Community And Lift Irrigation

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Agtrace

Agtrace

Next Gen Plant Health Analysis Through GIS Imagery

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Polyhouse Automation

Polyhouse

Next Generation Polyhouse Automation System

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Drip Irrigation

Drip

The Complete Drip Irrigation System

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Paddy Sense

Paddy

Control & Manage Pumpsets Through Your Smart Phone

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Product Booklets Overview

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माइक्रो इरिगेशन ऑटोमेशन

Micro Irrigation Automation

Cell Phone Motor Starter

Cell Phone Motor Starter

Control & Manage Pumpsets Through Your Smart Phone

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Micro Irrigation Automation

Micro

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Fertigation Automation

Fertigation

The Complete Fertigation Automation Management System

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Flocon

Flocon

Complete IoT Solution For Community And Lift Irrigation

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Agtrace

Agtrace

Next Gen Plant Health Analysis Through GIS Imagery

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Polyhouse Automation

Polyhouse

Next Generation Polyhouse Automation System

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Drip Irrigation

Drip

The Complete Drip Irrigation System

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Paddy Sense

Paddy

Control & Manage Pumpsets Through Your Smart Phone

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Product Booklets Overview

Booklet Edition

AI Powered Smart Irrigation Booklet

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செல்போன் மோட்டார் ஸ்டார்டர்
Cell Phone Motor Starter
நுண்ணீர் பாசன ஆட்டோமேஷன்
Micro Irrigation Automation

Cell Phone Motor Starter

Cell Phone Motor Starter

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Micro Irrigation Automation

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Technical Document

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Product Booklets Overview

Booklet Edition 1

AI Powered Smart Irrigation Booklets Version 1.0

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Booklet Edition 2

Integrated Smart Irrigation & Fertigation Management System Booklets Version 2.0

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LWMS Corporate Catalogue

Large Water Management System (LWMS) Corporate Catalogue

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User Manual Overview

Dcon Ag AIR

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M1 PRO

MCU

VCN

VCN4

AWS

WL

SOM

ABW

Dcon Ag AIR

Dcon Ag AIR
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SMART

SMART
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MCU

MCU
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VCN
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VCN4

VCN4
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AWS

AWS
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WL

WL
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SOM

SOM
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ABW

ABW
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Product overview flyer

Cell Phone Motor Starter

Micro Irrigation Automation

Flocon

Agtrace

Polyhouse Automation

Fertigation Automation

Drip Irrigation

Paddy Sense

Cell Phone Motor Starter

Cell Phone Motor Starter

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Micro Irrigation Automation

Micro Version 1

Micro Irrigation Automation Overview Flyer

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Micro Version 2

Integrated Smart Irrigation Automation

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Fertigation Automation

Fertigation

Fertigation Automation Overview Flyer

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Flocon

Flocon Version 1

Community & Lift Irrigation

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Flocon Version 2

How our Flocon Ag System Works?

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Agtrace

Agtrace Version 1

Agtrace

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Agtrace Version 2

Ag-trace Getting Started Gude

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Polyhouse Automation

Polyhouse

Polyhouse Automation Overview Flyer

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Drip Irrigation

Drip

Drip Irrigation Overview Flyer

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Paddy Sense

Paddy

Paddy Sense Overview Flyer

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Dcon Ag AIR
Dcon Ag AIR Capable of 10 Pumpsets, 512 Solenoid Valves.
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Dcon Ag SMART
Dcon Ag SMART Capable of 1 Pumpset, 64 Solenoid Valves.
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TCON
TCON Capable of 1 Pumpset, 5 Solenoid Valves / 12 Solenoid Valves.
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    Table of Contents

    Automatic Irrigation System

    Automatic Irrigation System: Stop Wasting Water & Start Farming Smarter

    Modern farming depends heavily on efficient water management. With rising water shortages, increasing labour costs, and changing weather conditions, farmers need better ways to manage irrigation. An Automatic Irrigation System helps farmers automate irrigation, reduce unnecessary water usage, and provide crops with the right amount of water at the right time.

     

    Introduction

    Instead of manually switching pumps and monitoring irrigation for every field, farmers can use automation technology to control motors, valves, irrigation schedules, and other important parameters. This makes farming more convenient while supporting better water management and consistent crop growth.

    Smart irrigation brings better control to the farm.
    Automation can reduce repetitive manual operations while helping farmers manage irrigation schedules, motors, valves, and different field zones more systematically.

    What Is an Automatic Irrigation System?

    An Automatic Irrigation System is a smart irrigation solution that automatically controls water distribution across a farm based on predefined schedules, field requirements, or connected sensors.

    Traditional irrigation often requires farmers or workers to manually start the motor, open valves, monitor water flow, and switch everything off after irrigation. This can become difficult when farms are large or divided into multiple irrigation zones.

    With an automatic system, these operations can be managed through automated controllers. Depending on the system configuration, farmers can control different parts of the irrigation process.

    An automatic irrigation setup can include:

    Irrigation Schedules

    Program irrigation according to the farm’s requirements.

    Motor Control

    Automate compatible pump or motor operation.

    Automatic Valves

    Control different irrigation zones independently.

    Water-Level Monitoring

    Monitor suitable water sources with compatible sensors.

    Pressure Monitoring

    Monitor pressure where supported by the irrigation setup.

    Remote Operation

    Connected systems can support remote irrigation control.

    Soil Moisture

    Compatible sensors can provide additional field information.

    Dry-Run Protection

    Some systems can provide motor protection features.

    Why Is an Automatic Irrigation System Important for Farmers?

    Water is one of the most valuable resources in agriculture. Over-irrigation can waste water, increase electricity consumption, and potentially affect crop health. Under-irrigation can also affect plant growth and productivity.

    An Automatic Irrigation System helps create a more controlled irrigation process by delivering water according to the requirements of the farm.

    1. Reduces Water Wastage

    Manual irrigation can sometimes result in excessive watering because pumps or valves may continue running longer than necessary. Automation allows farmers to set irrigation schedules and control individual irrigation zones.

    2. Reduces Manual Labour

    Large farms may have several irrigation sections, pumps, and valves. Automated controllers can handle repetitive operations based on programmed settings.

    3. Provides Consistent Irrigation

    Different crops and areas of a farm may require different amounts of water. Automation allows irrigation zones to operate according to predefined schedules.

    4. Saves Time for Farmers

    Farmers do not always need to be physically present near the motor or irrigation control panel when compatible remote-control features are available.

    5. Helps Improve Energy Management

    By controlling irrigation schedules and operating motors according to planned requirements, automation can help avoid unnecessary motor operation.

    How Does an Automatic Irrigation System Work?

    An Automatic Irrigation System generally combines an irrigation controller, motor control, valves, and other field devices.


    Set Irrigation Schedule → Start Motor → Open Required Valve → Irrigate Zone → Close Valve → Stop Motor

    For example, a farmer may divide a 10-acre farm into several irrigation zones. Instead of manually opening and closing each valve, the controller can operate the zones according to the programmed irrigation schedule.

    Advanced systems can also integrate sensors and monitoring devices to provide additional information about field conditions.

    Smart Features in Automatic Irrigation

    Automatic Motor Control

    The system can automatically start and stop the irrigation motor according to the selected irrigation schedule.

    Automatic Valve Control

    Multiple valves can be operated individually, allowing farmers to irrigate different sections of the farm according to their requirements.

    Water Level Monitoring

    Water-level monitoring can help farmers understand the availability of water in tanks, reservoirs, or other sources and support better motor operation decisions.

    Dry-Run Protection

    Some irrigation automation systems can provide protection against dry running of the motor, helping reduce the risk of damage when sufficient water is unavailable.

    Remote Monitoring and Control

    IoT-enabled irrigation systems can allow farmers to monitor and control irrigation remotely through connected devices. This can be especially useful for farmers who cannot regularly travel to their fields.

    Automatic Irrigation System for Different Crops

    An Automatic Irrigation System can be used across different types of agricultural applications.

    Coconut Farms

    Manage irrigation across different coconut cultivation zones.

    Banana Plantations

    Automate regular irrigation schedules across plantation sections.

    Mango Orchards

    Control irrigation zones systematically across orchard areas.

    Oil Palm Farms

    Manage irrigation operations across larger plantation areas.

    Vegetable Farms

    Schedule irrigation according to crop and field requirements.

    Fruit Plantations

    Automate irrigation across multiple plantation sections.

    The irrigation setup can be configured according to crop type, farm size, water source, number of irrigation zones, and existing irrigation infrastructure.

    Automatic Irrigation vs Manual Irrigation

    FeatureManual IrrigationAutomatic Irrigation
    Motor OperationManualAutomated
    Valve OperationManualAutomated
    Irrigation SchedulingManualProgrammable
    Labour RequirementHigherLower for repetitive operations
    Remote ControlUsually unavailableAvailable with connected systems
    Water ManagementDepends on manual monitoringMore controlled
    Multi-Zone IrrigationRequires manual operationCan be automated

    The right solution depends on the farm’s size, irrigation method, crop requirements, water availability, and automation needs.

    Choosing the Right Automatic Irrigation System

    Farmers should consider several factors before selecting an irrigation automation solution.

    Farm Size

    A small farm may require a simple controller, while a large farm with multiple irrigation zones may need a more advanced automation system.

    Number of Valves

    The controller should support the required number of irrigation valves and allow future expansion if additional zones are planned.

    Motor Capacity

    The automation system should be compatible with the farm’s motor and electrical setup.

    Irrigation Method

    The system should work with the existing drip, sprinkler, or other irrigation infrastructure.

    Remote Access

    Farmers who want remote operation can consider IoT-enabled solutions with mobile or web-based monitoring.

    Future Expansion

    An expandable system can make it easier to add irrigation zones, sensors, or automation features as the farm grows.

    Smarter Water Management with Mobitech Wireless Solution

    Farmers looking to implement an Automatic Irrigation System can consider modern irrigation automation solutions from Mobitech Wireless Solution.

    Mobitech Wireless provides irrigation automation solutions designed for different agricultural requirements, including motor control, valve automation, wireless communication, monitoring, and remote irrigation management.

    For farms where running cables across large areas is difficult, wireless irrigation automation can help connect field devices with the central controller. This can simplify installation and provide flexible control across different irrigation zones.

    The right configuration depends on the farm size, number of motors and valves, irrigation infrastructure, and the level of automation required.

    Conclusion

    An Automatic Irrigation System can transform the way farmers manage water and irrigation. By automating motors, valves, schedules, and monitoring functions, farmers can reduce repetitive manual work and gain better control over irrigation operations.

    The goal is not simply to automate irrigation but to make water management more organized, efficient, and responsive to farm requirements. As agriculture continues to adopt smart technologies, automatic irrigation can become an important part of modern farming.

    If you are planning to upgrade your farm from manual irrigation to an automated solution, evaluate your farm size, crop requirements, number of irrigation zones, water source, motor capacity, and future expansion needs before selecting the right system.

    Ready to Automate Your Farm?

    Tell us about your farm, crop, motors, valves, and irrigation zones to explore a suitable automatic irrigation solution.

    Talk to Our Team

    If you have any questions about this , kindly fill in the form below.

    Does an Automatic Irrigation System save water?

    Yes. By controlling irrigation schedules, zones, and water distribution more systematically, an Automatic Irrigation System can help avoid unnecessary irrigation and reduce water wastage. Actual water savings depend on the crop, soil, irrigation method, and farm conditions.

    Is an Automatic Irrigation System suitable for large farms?

    Where can I get an Automatic Irrigation System for my farm?

    Farmers can explore irrigation automation solutions from Mobitech Wireless Solution, with configurations available for different farm sizes, motors, valves, irrigation zones, and automation requirements.

    Can an Automatic Irrigation System prevent dry running of the motor?

    Why should farmers automate irrigation?

    What should I check before installing an Automatic Irrigation System?

    Need Help?