5MWh PowerMaster Series Liquid Cooling Energy Storage System

The PVB VoyagerPower 2.0 Liquid Cooling Energy Storage System is an efficient, containerized battery solution with a capacity range from 1MWh to 5MWh.
 
This all-in-one design integrates energy storage batteries, BMS, PCS, EMS, fire protection, liquid cooling unit, and dehumidification air conditioning into a single energy storage container, offering flexible energy management across various applications.
Highlights:
All-In-One Containerized Energy Storage System Design
The containerized battery energy storage system is designed with a prefabricated cabin, enabling flexible deployment and easy transportation without the need for internal wiring or debugging. It offers fast response times, and high reliability, and supports functions such as peak shaving, power capacity expansion, emergency backup, grid balancing, capacity management, and multi-level parallel connections.

Safe & Reliable

Designed with an IP55 protection rating for enhanced safety.

Cost Optimization

Features low operation and maintenance costs.

Efficient & Convenient

Incorporates a modular design with remote configuration support.

VoyagerPower 2.0 LiquidCooling Energy Storage System
Containerized Battery Storage Application Application

Specs of BYHV-5000BLC VoyagerPower 2.0 LiquidCooling Energy Storage System

Specification

Battery Type

LFP 3.2V/314Ah

Battery configuration

(1P104S*4)x12

Battery Capacity

5016kWh

Battery current

1884A

Nominal Voltage

1331.2V

Battery voltage range

1123.2V~1497.6V

Dimensions [W*H*D][mm]

6058*2896*2438

Weight

42000KG

IP Rating

IP65

Anti-corrosion degree

C3(Support C5)

Operating temperature

-30to 55(>45 derating)

Working altitude

3000m

Temperature control

Intelligent Liquid cooling

Fire suppression system

NFPA 69 explosion prevention and Aerosol

Communication protocol

Modbus TCP, MQTT

Standard

IEC62477,IEC61000-6-2,IEC61000-6-4,IEC 62619,UN38.3/UN3536

PVB Data Center Products

FAQs of Solar Energy Storage System Integration

What is solar energy storage?

 

A solar energy storage system captures excess solar energy during the day and stores it for use during peak demand periods. This allows businesses to maximize their use of solar power, reducing reliance on the grid and lowering electricity bills.

What's the installation requirements of the Solar Energy Storage System Integration?

Dry, ventilated space (-30°C to 50°C), free of corrosion & interference. Stable surface with clearance for heat dissipation. Must be grounded & follow installation manual.

How to maintain and care the Solar Energy Storage System Integration?

Regularly inspect connections, insulation, and ventilation. Replace batteries as needed. Clean vents without letting fluids enter equipment.

How can commercial and industrial energy storage support photovoltaic system operation?

Commercial and industrial energy storage systems can store surplus photovoltaic power generated during the day and release electricity during peak demand or when photovoltaic output is insufficient, thereby increasing the proportion of self-consumption of photovoltaic power, enhancing power supply stability, and reducing reliance on the grid.

Can commercial and industrial energy storage help businesses reduce electricity costs?

Yes. By charging during low-price periods and discharging during high-price and high-load periods, the energy storage system can effectively reduce demand charges and overall electricity costs, and demand charges are a significant component of electricity expenses for commercial and industrial users.

Why is liquid cooling important for commercial and industrial energy storage systems?

Liquid cooling systems provide precise temperature control for batteries, reducing thermal stress and improving system operating efficiency and battery consistency, making them particularly suitable for high-load, long-term industrial and commercial applications.

Are commercial and industrial energy storage systems safe in industrial environments?

The system uses lithium iron phosphate (LFP) battery technology and is equipped with multiple safety protection designs, including real-time monitoring by the battery management system (BMS), intelligent liquid cooling temperature control, aerosol fire extinguishing system, and IP55 protection rating enclosure, ensuring safe and reliable operation.

What is the typical lifespan of commercial and industrial energy storage systems?

Based on LFP batteries, the energy storage system can achieve ≥8000 cycles at 80% depth of discharge, and can operate stably for more than 10 years under normal conditions, with low performance degradation and high reliability.

Do commercial and industrial energy storage systems support future capacity expansion?

Yes. The system supports multi-level parallel connection, allowing for flexible capacity expansion based on the growing energy needs of the enterprise, without requiring extensive modifications to the existing power infrastructure.

What's the after-sale service by PVB?

PVB offers a complete after-sale service includes installation, commissioning, maintenance, and battery replacements. Warranty covers repairs/replacements. Paid service available after.

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