Natural Cooling IP20 Utility Scale Battery 54kwh Wres-H-25-054

Customization: Available
Cycle Life: 6000 Cycles
Nominal Capacity: 100ah

Product Description

Utility Scale Battery Storage
📊 Basic Specifications
Model
WRES-H-25-054
Battery Type
LiFePO4
Total Energy
53.76 kWh
Rated Capacity
100Ah
Nominal Voltage
537.6V
Voltage Range
470.4V - 604.8V
Recommend DOD
90%
Dimensions
660 * 1267 * 454 mm
Weight
490 kg
IP Rating
IP20
📝 Product Introduction

WRES-H-25-054 53.76kWh High-Voltage Stackable LiFePO4 Battery

The WRES-H-25-054 is a high-capacity Lithium Iron Phosphate (LiFePO4) battery module engineered for utility-scale and large industrial energy storage applications. With a substantial total energy capacity of 53.76kWh and a nominal voltage of 537.6V, it delivers robust and reliable power for grid stabilization, solar integration, peak shaving, and microgrid systems.

🔹 Ultra-High Voltage Architecture

Operating at a nominal 537.6V DC, this battery is optimized for utility-scale high-voltage inverters, dramatically reducing current flow and improving overall system efficiency. It offers 50.53kWh of usable energy at a recommended 90% Depth of Discharge (DOD).

🔹 Advanced Safety & Management

Equipped with a comprehensive Battery Management System (BMS) providing real-time protection against over-voltage, over-current, short circuits, and temperature fluctuations. The cells are UL1973 certified and the unit is CE certified.

📋 Detailed Specifications
Usable Energy (kWh)50.53
Recommend Current (Charge)50A
Recommend Current (Discharge)50A
BMS FeaturesOver-voltage, Short-circuit, Low-voltage, Over Temp Protection, Cell Balance
Installation TypeStackable
CommunicationCAN / RS485
Storage Temperature-20°C to 55°C
Cooling TypeNatural
Operating Altitude≤ 2000m
⭐ Core Advantages
Efficiency
1. High-Voltage Efficiency

The 537.6V DC architecture minimizes resistive losses by up to 75%, enabling thinner cabling and superior system efficiency exceeding 98%.

Capacity
2. 90% Depth of Discharge

Industry-leading 50.53kWh usable energy allows users to utilize nearly all stored power without compromising long-term battery health.

Safety
3. International Safety Standards

Dual certification (UL1973 for cells and CE for unit) ensures compliance with global safety requirements for utility deployments.

Design
4. Modular Stackable Design

Vertical expansion reduces the floor footprint by up to 45%, making it ideal for space-constrained industrial facilities.

🚀 Applications & Logistics
  • Economic Benefits: Leverage peak-valley tariff differences to reduce monthly electricity bills.
  • Stable Power: Reliable emergency backup for seamless off-grid switching during outages.
  • Secure Transport: Reinforced, shockproof, and moisture-resistant packaging for all international shipments.
  • Full Tracking: Real-time shipment status visibility from dispatch to final delivery.
Packaging 1
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Packaging 3
Quality Control 1
Quality Control 2
Factory View
❓ Frequently Asked Questions
What is the expected lifespan of these batteries?
Lithium iron phosphate (LiFePO4) batteries typically offer 6,000-8,000 charge cycles, which equates to approximately 10-15 years of daily use depending on environmental conditions and maintenance.
Is the battery compatible with existing solar inverters?
Yes, these batteries feature high compatibility with various inverters using RS485, CAN, or RS232 protocols. They are supported by most major brands including SMA, Growatt, Solax, Victron, and Deye.
What protective features are included in the BMS?
The integrated Battery Management System (BMS) provides comprehensive protection against overcharge, over-discharge, short-circuit, over-temperature, and overcurrent conditions.
Can I monitor the battery performance remotely?
Yes, we provide a cloud-based monitoring platform accessible via App and Web. You can track real-time charging/discharging status, energy metrics, and overall battery health.
Does installation require professional expertise?
Yes. Due to the high-voltage nature of the system, it is essential to have a certified professional handle the installation to ensure safety and correct integration with your electrical grid.
What application scenarios are these best suited for?
They are ideal for integrated solar-storage systems, peak-valley electricity arbitrage, industrial backup power, and emergency energy support in various environments.

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