Sandringham Private Game Reserve – Homestead

SOLAR

127.72 KWp

Inverters

300 kW

About the Project

The Homestead at Sandringham required a smaller-scale but reliable hybrid system to supply energy for residential and operational areas. SolarXgen installed a 127.72 kWp solar system with 300 kWh battery storage, providing uninterrupted power for all homestead needs while reducing energy expenses.

The Sigen Hybrid system ensures efficient solar generation with battery support for night-time and backup power requirements, giving the homestead sustainable, reliable energy.

KWP SOLAR

kw Inverters

Feasibility & Design

We assessed energy consumption patterns and operational requirements to determine optimal system sizing.

Procurement & Logistics

Components were sourced from trusted suppliers and delivered efficiently to the site.

Installation & Commissioning

The system was installed and commissioned to ensure seamless solar and battery integration for uninterrupted energy.

Monitoring & Maintenance

Ongoing monitoring ensures the system continues to operate reliably and efficiently for years to come.

Sustainable, Reliable Energy for High-Demand Operations

The Sandringham Homestead system delivers a consistent and dependable energy supply for both residential and operational needs. By combining solar generation with battery storage, the homestead enjoys uninterrupted power for daily activities, essential services, and operational requirements.

Uninterrupted power

Solar and battery system ensures critical operations run without interruption.

Energy cost savings

Reduced reliance on expensive diesel or grid energy.

Enhanced operational resilience

Supports reserve operations in all conditions.

MWh of Clean Energy

kWp – Installed Capacity

Reliable Energy for Your Homestead

SolarXgen provides hybrid solar and battery solutions designed to keep remote sites operational and sustainable.

SolarXgen provides hybrid solar and battery solutions that combine reliability, efficiency, and sustainability for residential or operational areas within remote estates.

✔ Lower energy expenses
✔ Reliable power supply day and night
✔ Reduce environmental impact
✔ Enhance long-term energy resilience