5kW/5kWh 10kWh Stackable All-in-One Home Energy Storage System for Solar Photovoltaic
The 5kW/5kWh Home Energy Storage Battery is a fully integrated, stackable residential energy solution designed for off-grid solar applications and reliable backup power. Available in 5kWh (100Ah), 10kWh (200Ah), and 15kWh (300Ah) capacities, this system combines a 5kW inverter and high-capacity Lithium Iron Phosphate (LFP) battery into a single, modular unit, eliminating the need for separate components and simplifying installation. Its stackable design allows for seamless capacity expansion, making it ideal for homeowners seeking scalable, sustainable energy storage to reduce grid reliance and embrace off-grid living.
Engineered for safety and long-term durability, the 5kW/5kWh Home Energy Storage Battery features an advanced Battery Management System that provides comprehensive protection against overcharge, over-discharge, short circuits, and thermal runaway. Its premium LFP chemistry ensures inherent thermal stability and resistance to degradation, while a wide operating temperature range (-10~55°C) enables reliable performance in diverse environments, from cold climates to warm regions. Backed by MSDS certification, this home energy storage battery meets global safety and transportation standards, offering peace of mind for homeowners investing in sustainable energy solutions.
As a versatile residential energy solution, the 5kW/5kWh Home Energy Storage Battery seamlessly integrates with solar panel systems to store excess energy for use during peak hours, grid outages, or in off-grid locations. Its stackable design allows for easy expansion to meet growing energy needs, making it suitable for a range of applications, from powering essential appliances in remote cabins to providing backup power for modern homes. Whether you’re looking to live off-grid, prepare for power outages, or reduce your carbon footprint, this 5kW/5kWh Home Energy Storage Battery delivers the efficiency, safety, and reliability needed for modern residential energy needs.





