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BESS 522kWh 832V 624Ah LiFePO4 Battery Container Solar Energy Storage System For Backup Power Plant

Categories Solar Battery Storage System
Brand Name: CTS
Model Number: HV-832-628
Certification: ISO9001/MSDS/UN38.3/CE
Place of Origin: China
MOQ: 2pcs
Price: 48600usd/pcs
Payment Terms: L/C,T/T
Supply Ability: 10pcs/week
Delivery Time: 45 working days
Packaging Details: 10FT container
Nominal Energy: 522kWh, Expandable
Voltage: 832V
Nominal Capacity: 624Ah
Cooling type: Liquid
Size: 10FT
MPPT: Built in 240KW
PCS: Built in 250KW
STS: Built in
EMS: Built in
Fire protection: Built in
Air conditioner: Built in
Dehumidifier: Built in
Power distribution cabinet: Built in
Discharge Rate: 0.5C
Nominal Ac Voltage: Three Phase 400V,split phase optional
Appalications: BESS
Communication Protocol: Modbus
Solar Panel: Mono 550W
Operating Temperature: -20 to 50 degrees Celsius
Cycle life: 6000cycles
Warranty: 5 years
Usage: Solar
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BESS 522kWh 832V 624Ah LiFePO4 Battery Container Solar Energy Storage System For Backup Power Plant

Solar Energy Storage System 522kWh 832V 628Ah LiFePO4 Battery Storage Container For Back Up Power Plant

Cell

LFP Cell

Array Mode

2*261.248kWh Battery Cluster

Total 10*52.249kWh Battery Module

Voltage

832VDC

Working voltage range

728V 936V

Rated charge and discharge rate

0.5P

Protection level

IP67

Cooling method

Liquid cooling

Working Temperature

-20~55


EMS interface
╣PRODUCT DESCRIPTION

High security

Lithium iron phosphate batteries; module-level fire protection unit;system-level fire protection unit.

Long Life Cycle

The cycle times of the battery cell is more than 6000 times the service life of the system can reach more than 15 years

Efficient and balanced BMS technology

high-efficiency equalization technology to eliminate series loss,.sampling chips is the lowest in the industry.

Easy Installation

Standardized product design, installation is extremely simplified,and user deployment is convenient.

Convenient monitoring

Intelligent remote operation and maintenance, real-time monitoring through mobile app, multiple mode control, suitable for various applications.

Efficient thermal management system

Internally integrates a high-efficiency liquid cooling and liquid heating system. which can effectively ensure the consistency of the single cells.


Five Key Advantages of ESS Containers


1. Modular and Scalable Design


The hallmark of ESS containers is their modularity, with standardized sizes that allow seamless scaling from kilowatt-hours (kWh) to megawatt-hours (MWh). This flexibility eliminates the need for costly infrastructure redesigns, making modular energy storage ideal for diverse applications. For instance, a California solar farm in 2023 started with two 2MWh ESS containers and later expanded to 10MWh by adding units, meeting rising demand without delays. Whether powering a small factory or a industrial renewable project, containerized battery storage adapts effortlessly, reducing costs and enabling future growth. The ability to stack or combine ESS containers ensures businesses can scale modular energy storage to match evolving energy needs.


2. Rapid Deployment with Plug-and-Play Integration


In scenarios like disaster recovery or peak demand, speed is critical, and ESS containers deliver with plug-and-play functionality. Pre-integrated with LFP batteries, BMS, and EMS, these containerized battery storage systems are factory-tested and ready for deployment in days. A Texas data center, for example, installed a 1MWh ESS container in just 72 hours during the 2024 summer peaks, ensuring uninterrupted power and avoiding outages that could have cost millions. This rapid setup, a cornerstone of modular energy storage, minimizes labor costs and enables swift responses to market or environmental challenges, making ESS containers a go-to solution for time-sensitive commercial energy storage solutions.


3. Environmental Resilience and Durability


ESS containers are engineered to thrive in harsh environments, from deserts to coastal zones. Built with corrosion-resistant materials and IP54+ ratings, they withstand extreme weather, ensuring reliable operation in challenging conditions. In Australia’s Outback, a 2MWh ESS container powers a remote mining microgrid, enduring 40°C heat and dust storms while maintaining consistent performance. This durability reduces maintenance costs and makes containerized battery storage ideal for off-grid or remote locations. By leveraging robust designs, modular energy storage systems like ESS containers deliver long-term value, supporting sustainable energy projects worldwide.


4. Cost Savings Through Energy Optimization


ESS containers go beyond storage, optimizing energy use to deliver significant cost savings. Through peak shaving—using stored power during high-cost periods—and energy arbitrage—buying low and selling high—businesses can slash electricity bills. A German factory, for instance, deployed a 1.5MWh ESS container to store off-peak energy, cutting costs by 25% annually and achieving payback in under five years. Paired with incentives like the U.S. Investment Tax Credit (ITC), modular energy storage offers compelling ROI for commercial energy storage solutions. By enabling smarter energy management, containerized battery storage empowers businesses to maximize efficiency and profitability.


5. Enhanced Safety and Reliability


Safety is a priority in modular energy storage, and ESS containers are equipped with advanced features to ensure reliability. Water-based fire suppression, smoke/heat detectors, and BMS for real-time monitoring prevent thermal runaway and system failures. In Shanghai, a 5MWh ESS container supports grid stabilization, using LFP batteries with 6000-cycle lifespans and zero degradation for five years. These safety measures, combined with robust software, protect investments and ensure uninterrupted operation. For factories and businesses relying on containerized battery storage, ESS containers provide peace of mind, making them a trusted choice for critical commercial energy storage solutions.

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