High Voltage Rack-Mounted LiFePO₄ Energy Storage Battery
High Voltage LiFePO₄ Rack Battery System (143–215kWh)
Modular Commercial & Industrial Energy Storage with 6000+ Cycle Life
Engineered for solar + storage projects, this HV rack-mounted battery delivers scalable capacity, intelligent BMS protection, and up to 15 units in parallel — backed by a 10-year warranty.
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Description
High Voltage Rack Mounted LiFePO4 Battery System Overview
This is a high-voltage rack-mounted LiFePO₄ (lithium iron phosphate) energy storage battery designed for scalable commercial and industrial energy storage systems. It combines modular expandability with high reliability and intelligent management, ideal for solar and other renewables energy storage scenarios.
Technical Advantages of the High Voltage Rack Mounted LiFePO4 Battery
6000+ Cycle Life for Long-Term Commercial Deployment
Built with high-quality LiFePO₄ cells, this high voltage rack mounted battery delivers over 6000 charge and discharge cycles. The extended lifespan significantly reduces total cost of ownership (TCO) for commercial and industrial energy storage projects.
Advanced Intelligent BMS with Multi-Layer Protection
The integrated Battery Management System (BMS) provides real-time monitoring of voltage, current, temperature, and cell balancing. Multiple protection mechanisms ensure safe operation under various working conditions.
Modular & Scalable Design – Up to 15 Units in Parallel
The system supports flexible capacity expansion with up to 15 units connected in parallel. This modular architecture allows seamless scaling from medium-sized commercial projects to large C&I energy storage installations.
Wide Operating Temperature Range
Charging Temperature: 0℃ to 55℃
Discharging Temperature: -15℃ to 60℃
Designed for diverse environmental conditions, the system maintains stable performance in both high and low temperature regions.
High Safety & Reliable LiFePO₄ Chemistry
Utilizing lithium iron phosphate (LiFePO₄) technology, the battery ensures excellent thermal stability and enhanced safety performance compared to conventional lithium battery chemistries.
Integrated Master Control Architecture
The cabinet integrates a two-level or three-level control architecture with built-in master control, simplifying system management and improving operational stability.
Flexible Communication Interfaces (RS485 / CAN)
Equipped with RS485 and CAN communication ports, the battery system supports seamless integration with mainstream inverters and energy management systems (EMS).
10-Year Warranty for Long-Term Investment Protection
Backed by a 10-year warranty, this high voltage energy storage battery is engineered for long-term commercial reliability and performance assurance.
Technical Specifications of the High Voltage LiFePO4 Battery System
| Specification | Details |
|---|---|
| Battery Type | LiFePO₄ (Lithium Iron Phosphate) |
| Rated Capacity (per unit) | 280 Ah |
| Nominal Energy Range | 143 kWh – 215 kWh (various configurations) |
| Nominal Voltage Options | 512 V, 614 V, 716 V, 768 V |
| Modules per System | 10, 12, 14, or 15 modules |
| End-of-Charge Voltage | Up to 864 V (system dependent) |
| Standard Charge/Discharge Current | 100 A |
| Max. Charge Current | 140 A |
| Max. Discharge Current | 200 A |
| Max. Peak Current | 250 A |
| Communication | RS485 / CAN |
| Operating Temp. (Charge) | 0 ℃ – 55 ℃ |
| Operating Temp. (Discharge) | −15 ℃ – 60 ℃ |
| Physical Dimensions (mm) | |
| 1000 × 800 × 1620 – 2050 (varies by model) | |
| Approx. Weight | |
| 1500 – 2085 kg depending on modules |
Commercial & Industrial Energy Storage Applications
Ideal for:
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Commercial & industrial ESS (Energy Storage Systems)
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Solar energy storage sites
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Backup power systems
-
Smart grid linked storage projects
(Optional system integration with mainstream inverters via RS485/CAN)
FAQ for Commercial & Industrial Buyers
1. What types of projects is this high voltage rack mounted battery suitable for?
This system is designed for commercial and industrial (C&I) energy storage projects, including solar + storage installations, peak shaving, demand charge management, backup power systems, and microgrid applications. The modular design makes it suitable for both medium-scale and large-scale deployments.
2. Can the system be expanded after initial installation?
Yes. The battery supports modular expansion and allows up to 15 units in parallel. This enables flexible capacity scaling as project energy demand grows, reducing upfront investment risk while ensuring long-term scalability.
3. Is the battery compatible with mainstream inverters and EMS systems?
The system supports RS485 and CAN communication protocols, enabling integration with most mainstream hybrid inverters and energy management systems (EMS). Compatibility details can be confirmed based on your inverter model.
4. What safety protections are included in the BMS?
The intelligent Battery Management System (BMS) provides multi-layer protection, including:
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Over-voltage and under-voltage protection
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Over-current protection
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Short-circuit protection
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Over-temperature protection
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Cell balancing management
This ensures safe and stable operation in commercial environments.
5. What is the expected service life of the system?
The battery delivers over 6000 charge-discharge cycles under standard operating conditions. With proper system design and usage, it can provide long-term service for 10+ years in commercial energy storage applications.
6. What environmental conditions can the system operate in?
Charging temperature range: 0℃ to 55℃
Discharging temperature range: -15℃ to 60℃
The system is designed for diverse climate conditions and can operate reliably in both high-temperature and moderate cold environments.
7. What warranty and after-sales support are provided?
The product is backed by a 10-year warranty. Technical support includes system integration assistance, commissioning guidance, and remote troubleshooting support when required.
8. How is transportation and installation handled for large-scale projects?
The rack-mounted cabinet structure is designed for simplified on-site installation. Each unit is pre-assembled and factory-tested before shipment to ensure quality consistency and reduce installation time on site.











