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Solar Power Plant (ROOFTOPS)

We are the energy saving oriented people who utilize solar energy & being used by innovating Into various solar products.

A quality inspired approach to elevate the ROOFTOPS segment.

Even though setting up solar PV modules is much easier than before, factors like design schedule, material procurement, overall construction etc. can cause problems to your project.

Choosing the apt EPC partner for your project is a crucial part in setting up a solar power plant. Having completed several MW scale Solar PV projects in India and Europe we have through knowledge in designing your solar farm, procuring essential components and constructing the entire infrastructure. We have worked with renowned players in the solar industry and retained them for multiple projects because of the quality of services provided by Aadhi Solar.

Project development

The best engineers who provide consultation, planning and development services

ROOFTOPS contractor

A competent and strategic partner with years of experience in the ROOFTOPS segment

Module manufacturing

Producing & procuring the ideal materials for power plants of all sizes

Operation & maintenance

Undertaking the day-to-day operation & maintenance tasks of the plant


Solar electricity is the energy source for the new millennium, and engineers now have it down to a science. Someday soon, every home could be powered from this clean, renewable resource (with substantial help from other renewable energy sources). Solar electricity is based on a natural phenomenon known as the photoelectric effect. Photoelectricity is simply the emission of electrons from a substance due to its interaction with light. The art of corralling those electrons into an electric current is called photovoltaics (PV). It is this process that drives the basic solar electric system.

  • Sunlight strikes a solar PV panel . Inside that panel are one or more semiconductors that facilitate the creation of an electric current from sunlight.
  • That electricity is sent through wiring to an inverter , where the direct current (DC) is converted into alternating current (AC) compatible with your home appliances and the utility grid.
  • From the inverter, the AC voltage passes through the breaker panel, where it is sent one of two places – either into the home to power electrical devices or to the utility meter on the outside of the home (as excess energy).
  • The utility meter measures the amount of solar electricity as it is sent to the electric grid for use somewhere else. For homes with solar power systems, this meter counts in both directions . That is, when the solar panels are sending energy to the grid, the meter rolls backward, and at night when the grid is providing power to the home, it rolls forward.


Off Grid Solar System convert sunlight into electricity without connecting to local utility grids. They are ideal for areas without public grid access. In some cases, off-grid solar energy systems include storage solutions such as batteries or flywheel energy storage,

which allow excess electricity to be saved for future use.The main components of off-grid systems include solar panels, con-inverters, and batteries.

An off-grid solar energy system can be used as a mobile or back-up power supply for homes, medical clinics, telecommunications stations, meteorological stations, and forest fire stations, especially those located in areas without public

utility grids, such as a remote islands and mountainous regions. In these cases, off-grid solar energy systems replace conventional power generation solutions such as a diesel generators.

  • Solar radiation strikes the PV panels , creating electric current. That current must then pass through a charge controller.
  • The charge controller regulates the voltage running through it so that the batteries will not be damaged from overcharging. It acts sort of like a bottleneck, preventing too much electricity from “spilling” out at once.
  • From the charge controller, the current is sent to the battery bank (most residential solar electric systems require several batteries). Remember that this is still DC electricity.
  • It is from the batteries that power is drawn for use in the home. But first, it must pass through the inverter to become usable AC electricity.
  • Once converted to AC, the electricity is ready for use, passing through the breaker panel, where it is distributed around the house as appliances and light switches are turned on.


Building design and construction process — step by step

Site selection & approval

On the successful site selection & approval of the project, we initiate the process

PV plant designing

Providing bankable solutions for every challenging physical & weather conditions


Continuous improvement through transferring digital skills and ideas

Our Customers

End-to-end services for the solar PV projects provided by Emmvee under one roof

Operation & maintenance

Post project installation we take care of the regular operation & maintenance process