Skip to main content

Solar & Battery Costs in Telangana, India System Prices & Installers

ℹ️ Get quick estimates for solar and battery sizing, costs, and savings in Telangana using these simplified calculators. For more accurate, advanced calculations, use the full Photonik design platform.

Solar Design Telangana


Energy Usage

To choose the right solar system in Telangana, start by understanding your daily electricity consumption. The average household uses around 15 kWh per day, whilst energy efficient properties may use only half that.

Consider reducing your energy consumption first through better insulation and efficient appliances, as this can reduce the solar system size needed and improve your investment returns.

Typical energy usage per person per day in Telangana:

Low (Efficient)
~3 kWh
Medium (average)
~4 kWh
High (intensive)
~6+ kWh

Note: Actual usage varies depending on property size, building efficiency, climate, and appliances.

5 kWh 100 kWh
/kWh
$ /kWh
%

lightbulb Note: These are simplified estimates. For detailed tariff inputs and advanced calculations, use the full Photonik app.


Solar System Sizing

Matching your daily energy needs requires approximately 3.9kW of solar capacity. Optimal sizing ranges from 5.9kW to 7.9kW to accommodate daily and seasonal generation variations.

In Telangana, a 6.6 kW installation produces around 30.0 kWh per day on average, though output ranges from 4.08 kWh/kW/day during December to 4.90 kWh/kW/day in September.

1 kW 20 kW

lightbulb We recommend 6.5 - 8.7kW, generating 50 - 100% more than you use.

A 6.6 kW system in Telangana can generate approximately 0 kWh annually based on local sun conditions.

Solar & Energy Savings


Calculate Heat Pump & EV Savings

Electrify your home by replacing gas heating, petrol vehicles, and other fossil fuel appliances with electric alternatives powered by clean solar energy. This delivers significant additional financial savings and substantial carbon emission reductions. Our calculator helps you compare costs and model the financial impact of switching to electric appliances and vehicles.

How Solar Reduces Your Electricity Bills

The calculations below show how your electricity bills change with solar. Your Old Bill of - per month (- annually) is calculated from your total energy consumption multiplied by the grid electricity rate. Your New Bill of - per month (- annually) accounts for solar generation, the percentage you use directly (self-consumption), remaining grid consumption, and feed-in credits for excess energy exported to the grid. This results in monthly savings of - (- annually).

Battery Storage Telangana


Solar Battery Sizing

Without battery storage, a 6.6 kW system in Telangana achieves approximately 50% energy self-sufficiency, with the remaining 50% supplied by the grid. Installing a 10 kWh battery boosts your energy independence to around 99% per year, cutting grid dependency down to 1%.

To get precise battery savings and payback figures, use the complete Photonik design platform.

0 kWh 30 kWh
lightbulb Tip

A 5kWh battery will make you about 0% self sufficient.

Energy Self Sufficiency Calculator*

*Note: This calculator provides simplified battery self-sufficiency estimates. For accurate per-hour simulations that account for solar generation patterns, consumption timing, battery charging/discharging cycles, and efficiency losses across all seasons, use the full Photonik design tool.

Panel Placement Tool Telangana


This is a simple panel placement tool that lets you quickly estimate panel count for a single roof area. Try Photonik for advanced features:

  • Multiple panel groups
  • Custom roof angles
  • Panel orientation
  • Shade loss calculations
  • Panel selection (1000+ models)
  • Full integration with our design tool

Loading panel placement tool...

Solar & Battery System Cost Telangana


Understanding Solar & Battery System Costs

Solar systems in Telangana are priced around ₹493,284 for a 6.6 kW installation, rising to approximately ₹994,849 when including a 10 kWh battery. Solar systems typically achieve payback in around 8.4 years, whilst adding battery storage extends the payback period but provides greater energy independence.

Cost estimates cover equipment, installation labour, and applicable taxes. Modify the system size and battery storage sliders to explore different investment levels and payback periods.