Our Solar Services

Hybrid

On-Grid

Off-Grid

Tube-well

Your Solar Solutions Partner

At AnZ Energiez, we don’t just provide solar energy systems – we solve problems. Expect top-tier solar modules paired with a skilled team of certified installers who handle all calculations, analysis, and designs to simplify your transition to solar. Our commitment to excellence extends beyond installation, with unmatched after-sales service that sets us apart.

Hybrid Solar

A hybrid solar system combines the features of both on-grid and off-grid systems. It uses solar panels, a battery bank for energy storage, and remains connected to the grid.

How It Works
  1. Solar panels generate electricity during the day.
  2. Excess energy is stored in batteries for later use (e.g., at night or during outages).
  3. If the solar and battery systems cannot meet the energy demand, the grid provides the backup.
Key Components
  • Solar Panels: Generate electricity from sunlight.
  • Hybrid Inverter: Manages the flow of electricity between the panels, batteries, grid, and appliances.
  • Battery Bank: Stores excess solar energy for use during nighttime or outages.
  • Grid Connection: Provides backup energy when solar and battery resources are insufficient
Advantages
  • Uninterrupted Power Supply: Ensures reliable energy even during outages.
  • Energy Storage: Stores excess energy for later use, reducing dependency on the grid.
  • Cost Savings: Reduces electricity bills through self-consumption and grid backup.
Use Cases
  • Homes and businesses in areas with frequent power outages.
  • Locations with variable electricity rates, taking advantage of stored energy during peak pricing.

On-Grid Solar ​

On-grid systems, also known as grid-tied systems, are connected directly to the utility grid and do not require batteries.

How It Works
  1. Solar panels generate electricity and supply it to the home or business.
  2. Excess energy is exported to the grid, earning credits through net metering.
  3. During low solar generation (e.g., nighttime), energy is drawn from the grid.
Key Components
  • Solar Panels: Generate electricity from sunlight.
  • Grid-Tied Inverter: Converts DC electricity from the panels into AC electricity for home use and grid export.
  • Net Metering System: Tracks the energy exported to and imported from the grid.
Advantages
  • Cost-Effective: No need for batteries, reducing upfront costs.
  • Net Metering Benefits: Earn credits for surplus energy exported to the grid.
  • Low Maintenance: Fewer components lead to simpler maintenance.
Use Cases
  • Urban areas with reliable grid access.
  • Large commercial and industrial facilities looking to reduce energy costs.

Off-Grid Solar ​

Off-grid systems operate independently of the utility grid and rely solely on solar panels and battery storage.

How It Works
  1. Solar panels generate electricity, which is stored in batteries for use.
  2. A charge controller ensures optimal charging of the batteries.
  3. The system supplies power to appliances directly from the batteries.
Key Components
  • Solar Panels: Capture sunlight to generate electricity.
  • Off-Grid Inverter: Converts DC to AC power for appliances.
  • Battery Bank: Stores energy for use during non-sunny hours.
  • Charge Controller: Protects batteries from overcharging or discharging.
Advantages
  • Complete Energy Independence: No reliance on the grid.
  • Reliable Power Supply: Ideal for remote or off-grid locations.
  • Environmentally Friendly: 100% renewable energy usage.
Use Cases
  • Remote areas without grid access.
  • Cabins, farms, or islands.

Tube-well Solar

A solar tubewell system is designed to power water pumps using solar energy, typically for agricultural purposes.

How It Works
  1. Solar panels generate electricity to power the water pump.
  2. Direct current (DC) or alternating current (AC) pumps can be used depending on the setup.
  3. Excess energy can be stored in batteries or used for other purposes.
Key Components
  • Solar Panels: Provide electricity to the pump.
  • Pump Controller(VFDs): Regulates the operation of the pump.
  • Water Pump: Extracts water from underground or surface sources.
Advantages
  • Cost Savings: Eliminates the need for diesel or grid electricity.
  • Sustainable Agriculture: Reliable water supply without environmental harm.
  • Energy Independence: Operates in remote areas with no electricity access.
Use Cases
  • Homes and businesses in areas with frequent power outages.
  • Locations with variable electricity rates, taking advantage of stored energy during peak pricing.

Our Process

Our Projects

What we use to power your future

Get a Quote

Scroll to Top