Residential energy storage company EnergyLIB is expanding into the Australian market, establishing its local arm, EnergyLIB Australia, to meet rapidly growing household demand for flexible and independent power.
The expansion includes the opening of a New South Wales warehouse holding local stock of the company’s LIB HomeStack battery system and LIB Hybrid Inverter.
These products are now available for immediate dispatch across NSW and South East Queensland, including Brisbane and the Gold Coast.
To drive retail growth, EnergyLIB has formally partnered with Autra Batteries Australia, an established local supplier that will provide customer-facing access to EnergyLIB systems.
The direct supply route, local warehousing, and retail arrangement form the first stage of a planned nationwide sales and support network.
The rollout coincides with a surge in Australia’s residential battery sector, buoyed by the federal Cheaper Home Batteries Program.
Under the initiative, installed domestic battery capacity reached 7.4 GWh in its first nine months.
Now supported by an estimated AU$7.2 billion in funding over four years, the program is projected to assist more than two million Australians in installing home batteries by 2030, adding roughly 40 gigawatt-hours of total storage.
“Australia is entering the phase where home batteries stop being an upgrade and start becoming part of the standard home energy system,” said Leon Hu, B2B Sales Director of EnergyLIB.
“We intend to be part of this market for decades. Establishing EnergyLIB Australia, holding local stock in New South Wales and appointing Autra Batteries Australia as our local retail partner are important first steps in building the local infrastructure needed to support that ambition.”
Designed specifically for domestic applications, EnergyLIB’s modular systems feature scalable battery capacities of 16kWh, 32kWh, and 48kWh.
Alongside product availability, EnergyLIB Australia plans to roll out Australian-based technical and after-sales support as its supply network expands into further states.