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PROJECT DESCRIPTION

Solar photovoltaic power is stored in a battery through charge controller. Battery  powers a MOSFET based Inverter that develops 50 Hz 220V  AC is then fed to a fence the fence around the farmer field to induce mild shock to encroaching cattle for protecting the crop from damage.

The solar energy is converted to electrical energy by photo-voltaic(PV) cells. This energy is stored in batteries during the day time in order  to be utilized whenever required. This project is designed to use solar energy for protection of farmer field by applying it to the fence through inverter.

A solar inverter, or PV inverter, converts the direct current (DC) output of a photovoltaic  solar panel into a utility frequency alternating current (AC), which can be fed into a commercial electrical grid or used by a local, off-line electrical network.   

  In this project solar energy is stored in the battery from Photo Voltaic cells. This stored energy of  battery is converted to AC supply in off-line mode at 50Hz  frequency using PWM inverter built around an IC with MOSFET gate driver IC to drive a half MOSFET bridge and step-up transformer.  

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Solar photovoltaic power is stored in a battery through charge controller. Battery  powers a MOSFET based Inverter that develops 50 Hz 220V  AC is then fed to a fence the fence around the farmer field to induce mild shock to encroaching cattle for protecting the crop from damage.

The solar energy is converted to electrical energy by photo-voltaic(PV) cells. This energy is stored in batteries during the day time in order  to be utilized whenever required. This project is designed to use solar energy for protection of farmer field by applying it to the fence through inverter.

A solar inverter, or PV inverter, converts the direct current (DC) output of a photovoltaic  solar panel into a utility frequency alternating current (AC), which can be fed into a commercial electrical grid or used by a local, off-line electrical network.   

  In this project solar energy is stored in the battery from Photo Voltaic cells. This stored energy of  battery is converted to AC supply in off-line mode at 50Hz  frequency using PWM inverter built around an IC with MOSFET gate driver IC to drive a half MOSFET bridge and step-up transformer.  

PROJECT HIGHLIGHTS
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Call/mail for Tech Support from 10 am - 7 pm IST.
×
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Call/mail for Tech Support from 10 am - 7 pm IST.
BLOCK DIAGRAM
Farmer Friendly Solar Based Electric Fence for Deterring Cattles
Hardware Requirements
  • Bridge-MOSFETs drive
  • Step up Transformer
  • Voltage regulator
  • MOSFET driver
  • PWM inverter IC
  • Solar Panel
  • Battery
×
  • Bridge-MOSFETs drive
  • Step up Transformer
  • Voltage regulator
  • MOSFET driver
  • PWM inverter IC
  • Solar Panel
  • Battery
OTHER INFORMATION
Battery not included in the kit due to Courier service prohibition. Please buy two NI-CAD LEAD ACID Rechargeable 6V batteries for this project.
×
Battery not included in the kit due to Courier service prohibition. Please buy two NI-CAD LEAD ACID Rechargeable 6V batteries for this project.
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