Product Overview
The Floor Standing All-in-One Energy Storage System integrates a Grade A Lithium Iron Phosphate (LiFePO4) battery pack, hybrid inverter, Battery Management System (BMS), and intelligent Energy Management System (EMS) into a single, factory-assembled, IP-rated floor-mounted cabinet.
Traditional energy storage setups require separate battery modules, hybrid inverters, external combiner boxes, and lengthy communication cables, which frequently lead to extended on-site installation times and wiring errors. By consolidating these components into a pre-wired, factory-tested enclosure, this system drops on-site installation time to a fraction of traditional methods, reduces external connection points that can fail over time, and fits neatly into residential garages, utility rooms, commercial basements, and retail backrooms.
Core System Architecture & Features
Integrated Design for Streamlined Deployment
The internal layout houses the inverter, battery modules, and DC/AC protection devices within a robust steel cabinet rated for safe indoor/semi-outdoor deployment.
Pre-commissioned wiring: Factory-level assembly eliminates complex field wiring between the inverter and batteries, drastically cutting down labor costs and wiring mistakes on-site.
Compact footprint: The upright floor-standing structure requires zero wall reinforcement and occupies less than 0.5 square meters of floor space, while ensuring safe mechanical stability for higher-capacity configurations.
Grade A LiFePO4 Battery Technology
The energy storage core relies on prismatic Lithium Iron Phosphate cells, chosen for their inherent chemical stability and safety profile under high ambient temperatures.
Cycle Life: Delivers over 6,000 charge and discharge cycles at an 80% Depth of Discharge (DoD), backed by an industry-standard 10-year performance warranty and a design life of up to 15 years.
Thermal Stability: Lower risk of exothermic runaway compared to standard ternary lithium chemistry, ensuring reliable operation in enclosed spaces.
Intelligent Battery Management System (BMS)
Each battery cluster features a dedicated BMS that communicates continuously with the hybrid inverter.
Active balancing: Balances cell voltages during both charging and discharging to prevent premature capacity degradation.
Multi-layer protection: Automatically cuts off power in events of cell over-voltage, deep discharge, short circuits, overcurrent, and extreme temperature deviations.
High-Efficiency Power Conversion
The built-in hybrid inverter converts DC power from the battery and solar panels to AC power with a maximum conversion efficiency of up to 97.6%. Optimized switching topologies minimize thermal dissipation during heavy load shifting, ensuring more harvested solar energy is delivered directly to loads or stored.
Modular Capacity Expansion
Energy demands evolve, and the system's modular architecture accommodates this without requiring a complete hardware replacement. Additional compatible battery modules can be racked and plugged into the existing DC bus, matching future power consumption growth while preserving the initial capital investment.
Intelligent Energy Management & Backup
The integrated EMS automatically coordinates power distribution across four primary nodes: Solar PV generation, the battery bank, the utility grid, and designated loads.
Operating Modes: Supports self-consumption prioritization, peak shaving during high-tariff hours, time-of-use (TOU) scheduling, and strict off-grid/backup operation.
Seamless Backup Switching: In the event of a utility grid failure, the system detects the outage and transfers to backup mode within milliseconds, supplying stable power to critical loads such as refrigerators, communication routers, security systems, lighting, and medical devices.
Technical Specifications & Thermal Management
|
Feature Category |
Specification Highlights |
|
Max. Conversion Efficiency |
Up to 97.6% |
|
Battery Chemistry |
Grade A Prismatic LiFePO4 |
|
Cycle Life & Warranty |
> 6,000 cycles at 80% DoD; 10-Year Limited Warranty |
|
Footprint Requirement |
Less than 0.5 square meters of floor space |
|
Enclosure Rating |
IP20 / IP54 options available for indoor & semi-outdoor deployment |
|
Grid Transition Time |
Seamless, millisecond-level backup switching |
|
Thermal Design |
Optimized internal airflow channels separating power electronics from the battery compartment without energy-intensive air conditioning |
|
Communication Protocols |
CAN, RS485, RS232; optional WiFi, Ethernet, or 4G for remote cloud monitoring (SOC, live power flow, historical data, fault alarms) |
|
Safety Protections |
Integrated DC breakers, AC Surge Protection Devices (SPD), emergency shutdown circuit loops, and isolated internal busbars |
|
International Compliance |
Designed to meet global safety and grid-connection standards (e.g., CE, UL9540, UL1973, IEC62619 compliance options available upon request) |
Customization & OEM/ODM Support
As a direct manufacturer, we provide flexible customization pathways for distributors, regional brands, and EPC contractors:
Electrical Adjustments: Tailored battery capacity configurations and inverter output power ratings.
Visual & Brand Identity: Custom cabinet color matching (RAL color chart), private labeling, laser-etched logo placement, and bespoke packaging design.
Software Tailoring: Customized communication protocols (such as specific Modbus registers) and localized software UI integration.
Export & Logistics Support: Standard export-grade plywood box packaging with damp-proof and anti-collision protection, ensuring safe maritime and air freight transit.
FAQ
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