Product Overview
The 10.24kWh Modular Stacked Energy Storage Battery is an advanced lithium battery energy storage solution engineered for residential, commercial, and renewable energy applications. Featuring a modular stackable structure, an intelligent Battery Management System (BMS), and high-performance lithium iron phosphate (LiFePO4) battery technology, it delivers safe, reliable, and flexible energy storage performance.
Backed by strict international safety certifications (CE, UN38.3, IEC62619, UL9540 compliant) and deployed globally, our system meets rigorous worldwide requirements. With its expandable modular architecture, users can effortlessly customize storage capacity to match specific energy demands. It is the ideal solution for solar energy storage, backup power supply, peak shaving, load shifting, and off-grid microgrid applications.
Combining high safety, long cycle life, hassle-free installation, and seamless compatibility with mainstream solar inverters, this stacked system is a trusted choice for distributors, installers, system integrators, and renewable energy project developers worldwide.
Technical and Physical Specifications
| Parameter | Specification |
| Product Name | 10.24kWh Modular Stacked Energy Storage Battery |
| Battery Type | Lithium Iron Phosphate (LiFePO4) |
| Rated Energy Capacity | 10.24kWh |
| Battery Structure | Modular Stackable Design |
| Battery Management System | Intelligent BMS |
| Communication Interface | CAN / RS485 |
| Cycle Life | Greater than or equal to 6000 Cycles (Typical) |
| Installation Method | Floor Standing / Stacked Installation |
| Expansion Capability | Supported (Multi-module stacking) |
| Application Type | Residential and Commercial Energy Storage |
| Protection Level | Multi-Level Safety Protection |
| Operating Mode | Grid-Tied / Off-Grid / Hybrid Applications |
| Certifications | CE, UN38.3, IEC62619, UL9540 (Available upon request) |
| Physical Dimensions | Customizable / Detailed engineering drawings available |
Product Features and Advantages
Modular Stackable Design
Flexible capacity configuration tailored to varying project scales.
Easy system expansion without replacing existing infrastructure.
Simplified installation process that saves on-site labor time.
Reduced project upgrade costs for end-users.
Ideal for diverse residential and commercial scenarios.
High-Safety LiFePO4 Battery Technology
Excellent thermal stability and minimal risk of thermal runaway.
Superior safety performance under demanding environmental conditions.
Long operational lifespan with stable charging and discharging capabilities.
Intelligent Battery Management System (BMS)
Real-time monitoring of voltage, current, temperature, and State of Charge (SOC).
Multi-level protection against overcharge, over-discharge, over-current, and short-circuits.
Advanced temperature protection and active cell voltage balancing to extend overall system life.
Long Cycle Life and Stable Energy Output
Engineered for long-term storage with a service lifespan of Greater than or equal to 6000 cycles.
Consistent energy output minimizing maintenance overhead and maximizing ROI.
Low total cost of ownership (TCO) for commercial and residential deployments.
Flexible Energy Capacity Expansion
Scalable architecture allowing seamless module combinations as energy needs grow.
Future-ready investment for expanding properties and business sites.
Wide Compatibility with Energy Systems
Compatible Applications: Residential solar storage, commercial peak-shaving, hybrid solutions, backup power, off-grid systems, and microgrids.
Seamless integration with major hybrid and off-grid solar inverters via CAN/RS485 protocols.
Application Scenarios
Residential Solar Storage: Stores daytime excess solar generation to power homes, villas, and smart grids during nighttime or peak tariff hours.
Commercial Energy Storage: Supports retail spaces, offices, and small industrial facilities with peak shaving and intelligent load management.
Renewable Energy Integration: Enhances microgrids, solar farms, and clean energy initiatives by smoothing out intermittent power generation.
Benefits for Global Partners
For Energy Storage Distributors: Stable manufacturing supply chains, strong market potential, flexible configurations, and proven global compliance.
For Solar Installers: Faster, plug-and-play installation, reduced labor overhead, and broad inverter compatibility.
For System Integrators and Developers: Scalable architecture, tailored capacity configurations, robust long-term reliability, and comprehensive engineering support.
Why Choose Our Energy Solutions
We specialize in high-performance lithium battery solutions backed by rigorous quality control, modern manufacturing facilities, and extensive global supply experience. We provide end-to-end technical support, OEM/ODM customization services (including private-label branding and custom packaging), and trusted export compliance.
Frequently Asked Questions
Q: What is the capacity of the system?
A: It delivers a rated energy capacity of 10.24kWh, perfectly sized for residential and light commercial use.
Q: Can the battery capacity be expanded?
A: Yes, the modular stacked design allows additional battery modules to be added seamlessly as your storage requirements grow.
Q: What battery chemistry is utilized?
A: High-safety LiFePO4 (Lithium Iron Phosphate) technology, ensuring high thermal stability and an extended cycle life.
Q: Does it feature an intelligent BMS?
A: Yes, the integrated BMS provides real-time monitoring and multi-layer protection (over-voltage, short-circuit, temperature control, etc.).
Q: What communication protocols are supported?
A: Standard CAN and RS485 interfaces are built-in for hassle-free communication with mainstream inverters.
Q: Are international safety certifications available?
A: Yes, the system meets major global standards including CE, UN38.3, IEC62619, and UL9540 guidelines. Documentation is provided upon request.
Q: Do you offer OEM/ODM services?
A: Yes, we offer comprehensive customization options, including private branding, distinct enclosure design, and specific capacity pairing.







