Residential Energy Storage Solutions
Turnkey home energy storage for backup power, solar self-consumption, and time-of-use savings — modular LiFePO4 systems that installers size to each household and expand later.
The Challenge
Homeowners increasingly want energy independence, but face rising tariffs, grid outages, and solar export that is worth far less than grid import.
- Grid outages leave essential loads without power
- Solar exported to the grid earns little; self-consumption is far more valuable
- Time-of-use tariffs penalise evening peak consumption
- Every home has a different roof, load profile and budget
How the System Works
During the day, solar (or low-cost off-peak grid power) charges the LiFePO4 battery through the hybrid inverter. The energy management system then releases stored energy in the evening and during outages, so the home draws less from the grid exactly when power is expensive or unavailable. Capacity is modular — start with one module and add more as the household grows.
Assess
We size the system to the household load profile, solar array and backup priorities.
Store
Modular LiFePO4 batteries charge from solar or off-peak grid energy via the hybrid inverter.
Optimise
Energy is discharged during peak tariff periods and held in reserve for outages.
Typical System Architecture
A residential system is a single AC bus shared by the grid, solar and battery. The hybrid inverter is the only conversion stage; the BMS protects the pack while the EMS decides when to charge and discharge.
Typical residential single-line topology: sources → hybrid inverter → BMS → battery → home loads.
What Makes Up the System
Each StorXing solution pairs our LiFePO4 storage with the conversion, control and monitoring hardware needed for the application.
Hybrid Inverter (PCS)
Converts between solar, grid and battery power and manages charge/discharge automatically.
Battery Management System
Monitors cell voltage and temperature, balances cells and protects the pack.
LiFePO4 Battery Modules
The storage core — modular packs sized to the household.
Wall / Floor Enclosure
Houses modules safely with cooling and tidy cable management.
Energy Management (EMS)
Sets charge/discharge strategy for self-consumption and backup.
Monitoring & App
Remote visibility of state-of-charge, savings and alerts.

Where This Solution Is Deployed
Real deployment contexts for this solution across residential, commercial and industrial sites.
New-build homes
Whole-home backup and solar self-consumption designed in from day one.
Retrofit & upgrade
Add storage to an existing solar system to lift self-consumption.
Backup priority
Keep lights, fridge and comms running through outages.
Off-grid cabins
Small systems for weekend homes beyond the grid.
Need a configuration for a specific home?
Share the property size, solar array and backup priorities — our engineers size a residential system to match.
Products in This Solution
The products normally specified for this solution. The core system is included by default; expansion products are added as the project grows. Final configuration is confirmed by our engineering team.

Residential Energy Storage
Home energy storage system providing backup power and solar self-consumption for residential sites.
View Product →
Battery Storage Components
Battery modules and BMS building blocks that scale storage capacity across system sizes.
View Product →Industries Served
This solution supports the following industries. Explore each for tailored use cases.
Key Benefits
Backup Power
Keeps essential loads running through grid outages.
Lower Bills
Maximises solar self-consumption and avoids peak tariffs.
Modular
Start with one module and expand capacity over time.
Safe Chemistry
Built on stable LiFePO4 cells designed for the home.
Frequently Asked Questions
Can the system work without solar panels?
Can I expand the capacity after installation?
Which products suit my home?
Design a home energy system
Tell us about the property, solar and backup priorities — we will recommend a residential configuration.