SNM Solutions completed this 15kW Hybrid Solar System installation in DHA Phase 6, Lahore for a residential property looking to generate more electricity from solar energy and reduce dependence on conventional grid power.
The system has been designed around the home’s energy requirements, combining high-efficiency solar panels with a 15kW Solis Hybrid Solar Inverter. A customized GI solar mounting structure was also installed to make effective use of the available rooftop space while providing a strong and reliable foundation for the solar panels.
Installed Solar Equipment
- 15kW Solis Hybrid Solar Inverter
- 715W SNM High Efficiency Solar Panels
- Customized GI Solar Mounting Structure with Rust Pole
- Professional Electrical Installation
- Complete Electrical Protection and Monitoring System
Expected Solar Energy Production
- 60+ Units Per Day
- 1,800+ Units Per Month
- 22,000+ Units Per Year
Project Performance
The solar panels generate electricity during daylight hours to support the property’s regular household energy requirements. By using solar power directly at the property, the residence can reduce its daytime dependence on electricity from the grid.
The 15kW Solis Hybrid Solar Inverter provides greater flexibility in managing the generated solar energy and supports a more controlled approach to household electricity consumption. The hybrid configuration also makes the system suitable for future energy management and backup requirements based on the connected setup.
The customized GI mounting structure was selected to provide a suitable installation arrangement for the rooftop while maintaining the stability and durability required for long term solar system performance.
Key Project Benefits
- 60+ units of estimated daily solar generation
- Reduced dependence on conventional grid electricity
- Lower daytime electricity consumption from the grid
- Better utilization of available rooftop space
- Clean electricity generated directly at the property
- Flexible household energy management
- Strong and customized solar panel mounting
- Potential for greater energy savings over the long term
A Reliable Solar Solution for Residential Energy Needs
The 15kW Hybrid Solar Project in DHA Phase 6, Lahore demonstrates how a properly designed residential solar system can help homeowners generate more of their own electricity while reducing reliance on grid power.
With high efficiency 715W SNM solar panels, a Solis Hybrid Solar Inverter, customized GI mounting, and professional electrical installation, the system provides a practical solution for a home with higher energy requirements.
What this system generates, and what that is actually worth
The design output is 60+ units a day, or about 1800 units a month. What those units are worth depends almost entirely on when they get used, and since 9 February 2026 that gap is wide.
A unit consumed in the house replaces one bought from LESCO at roughly Rs 55. A unit exported earns about Rs 11 under net billing. So a self-consumed unit is worth around five times an exported one, and the same 1800 units can be worth very different amounts:
| How the 1800 units are used | Value per month |
|---|---|
| Everything used in the house as generated | Rs 99,000 |
| 70% self-consumed (loads shifted to daytime, or battery) | Rs 75,000 |
| 40% self-consumed (typical home, nobody in during the day) | Rs 51,000 |
That is a Rs 48,000 a month difference on the same hardware and the same roof. Running the washing machine, water pump, iron and air conditioning during daylight is not a minor optimisation under net billing. It is most of the return.
Figures are the system’s design output at a Rs 55 self-consumption tariff and the Rs 11 export rate. Actual generation varies with season, shading and dust, and your own tariff depends on your slab.
SNM Solutions provides Residential Solar Installation Services in Lahore and across Pakistan, including Hybrid Solar Systems, On Grid Solar Systems, Commercial Solar Projects, and Industrial Solar Solutions. Each project is designed according to the property’s electricity consumption, available space, and specific energy requirements.


