Simulated system
12:30
01Solar Residence — intelligent energy
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Simulated residential solar system at TEHRAN 35.7°N: 8.1 kWp across 18 modules, generating 6.45 kW against a household load of 2.12 kW, with the battery at 100 percent.
Drag the scene sideways to turn the building. The view buttons and the time slider below reach the same views and readings without a pointer.
02Live instruments
Every figure on this page comes from one model
The residence above is a working simulation of an 8.1 kWp rooftop system at Tehran's latitude: solar geometry, irradiance in the plane of each roof, module temperature, inverter clipping, then a battery that serves the house before it serves the meter. These are its instruments.
- Engineer
- Design and system engineering
- Build
- Procurement and installation
- Operate
- Commissioning and maintenance
PV array
- Current output
- 6.45 kW
- Today
- 28.2 kWh
- Annual estimate
- 16,538 kWh
- System capacity
- 8.10 kWp
- Modules
- 18
Home
- Current load
- 2.12 kW
- Today
- 14.3 kWh
- Self-consumption
- 72 %
- From solar
- 2.12 kW
- From grid
- 0.00 kW
Battery
- State of charge
- 100 %
- Mode
- Idle
- Power
- 0.00 kW
- Usable capacity
- 10.5 kWh
- Charged today
- 9.2 kWh
Grid
- Direction
- Exporting
- Power
- 4.33 kW
- Exported today
- 7.9 kWh
- Imported today
- 3.2 kWh
- Export limit
- 8.00 kW
System status
- Status
- Online
- Inverter
- Converting
- Rating
- 8.00 kW
- Data source
- Simulation
- System clock
- 12:30
Monthly generation
Estimated generation per calendar month for this system at this latitude.
A working simulation of an 8.1 kWp residential system at 35.7°N — not a live installation. Every figure is computed from solar geometry, irradiance, module temperature and a battery dispatched to the house before the grid.
03The proposition
We don't just install solar panels. We design intelligent energy systems.
A system is not a quantity of modules. It is a capacity matched to a demand, an inverter matched to an array, storage sized for the outages you actually get, and a grid connection that behaves. That is what an assessment settles, and it is what we build.
- Recommended capacity
- Sized against your electricity consumption and the usable area of your building.
- Project cost range
- Costs are given as a range rather than a single figure, because this is a preliminary assessment.
- Financing guidance
- We help you identify and pursue the financing options available to you.
Your recommended array is sized from your consumption and usable area, and drawn exactly like this — in three dimensions, yours to turn.
04Energy path
How solar energy moves
Solar energy moves from generation to storage and consumption.
Sun
Solar panels
Inverter
Battery
Building
Grid
05Scale
One engineering approach, four sizes of project
The same design method, the same monitoring and the same delivery apply from a single roof to a solar farm. Only the numbers change.
01
Residential
Homes and villas, where the roof and the evening peak decide the system.
02
Commercial
Larger roofs with daytime demand, where self-consumption does most of the work.
03
Industrial
Plants and halls with a continuous load and a connection to respect.
04
Utility scale
Ground-mounted solar farms, sized by land, irradiance and grid capacity.
06EPC process
End to end
- 01
Preliminary assessment
- 02
Engineering and design
- 03
Financing assistance
- 04
Procurement
- 05
Construction and installation
- 06
Commissioning
- 07
Operation and maintenance
See what your building can generate
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