80kVA 418kWh All-in-One Liquid-Cooled C&I BESS
80kVA 418kWh All-in-One Liquid-Cooled C&I BESS
1 / 2

80kVA 418kWh All-in-One Liquid-Cooled C&I BESS

  • LiFePO4 BESS
  • Commercial Energy Storage
  • Industrial Energy Storage
SKU: CI-BESS-80KVA-418KWH-LC
System Capacity:

About this product

Commercial & Industrial Battery Energy Storage System

80kVA 418kWh All-in-One Liquid-Cooled C&I BESS

The 80kVA 418kWh all-in-one liquid-cooled C&I BESS is designed for commercial and industrial energy storage applications requiring high-capacity lithium battery storage, intelligent thermal management and scalable system deployment.

Built around a 418kWh LiFePO4 battery system, the cabinet combines battery modules, liquid cooling, battery management, communication and system safety functions in a compact industrial energy storage platform.

418kWh LiFePO4 314Ah Cells 1331.2V Liquid Cooling IP55 CAN / RS485 / WiFi

418kWh Liquid-Cooled BESS at a Glance

Rated Energy
418kWh
Cell Capacity
314Ah
Battery Chemistry
LiFePO4
Rated Voltage
1331.2V
Cooling Method
Liquid Cooling
Protection Level
IP55

418kWh Liquid-Cooled Commercial & Industrial Energy Storage System

This 418kWh commercial and industrial battery energy storage system uses lithium iron phosphate battery technology and a liquid-cooling architecture for demanding C&I energy storage environments.

The battery platform uses 314Ah LiFePO4 cells, 52S1P modules and a total of 8 battery modules. Rated system voltage is 1331.2V.

The battery cabinet includes electrical boxes, a main control box, a cooling system and a fire protection system, providing a modular platform for industrial and large-scale battery energy storage projects.

80kVA 418kWh Liquid-Cooled C&I BESS System Architecture

Typical engineering architecture showing ESS cabinets, combiner/control cabinet, PCS, transformer, grid connection and EMS communication.

80kVA 418kWh liquid-cooled C&I BESS system architecture with ESS cabinets combiner cabinet PCS transformer grid and EMS
418kWh liquid-cooled battery energy storage system architecture for commercial and industrial projects.

Key Features of the 418kWh Liquid-Cooled C&I BESS

418kWh rated battery energy
314Ah LiFePO4 battery cells
52S1P module configuration
8 battery modules
1331.2V rated battery voltage
140A rated charge/discharge current
280A maximum current at 25±3°C
0.5P rated / 1P maximum output rate
Liquid-cooled thermal management
IP55 cabinet protection
CAN / RS485 / WiFi communication
Modular C&I and utility BESS architecture

418kWh BESS Battery & System Specifications

Rated Energy418kWh
Cell Capacity314Ah
Cell TypeLiFePO4
Module Series & Parallel52S1P
Number of Modules8
Rated Voltage1331.2V
Rated Charge / Discharge Current140A
Maximum Charge / Discharge Current280A (Ta = 25±3°C)
Rated Output Rate0.5P
Maximum Output Rate1P
Charging Temperature0°C to +50°C
Discharging Temperature-20°C to +50°C
Storage HumidityRH ≤85%, no condensation
Storage Temperature-30°C to +45°C
Altitude≤2000m
Dimensions1300W × 1300D × 2340H mm
WeightApprox. 3500kg
IP LevelIP55
Cooling MethodLiquid Cooling
Communication InterfaceCAN / RS485 / WiFi
Coolant50% ethylene glycol aqueous solution

418kWh Liquid-Cooled C&I BESS Applications

Designed for high-capacity commercial and industrial energy storage projects including factories, shopping malls, commercial buildings, hospitals, EV charging infrastructure and PV energy storage.

80kVA 418kWh liquid-cooled C&I BESS applications for factories shopping malls commercial buildings hospitals EV charging and PV
418kWh commercial and industrial battery energy storage applications.
Factory Energy Storage

High-capacity battery storage for industrial facilities and manufacturing sites.

Commercial Building BESS

Liquid-cooled commercial battery storage for office, retail and mixed-use facilities.

Hospital Energy Storage

Energy storage architecture for facilities with critical power requirements.

EV Charging & PV Storage

High-voltage BESS for EV charging infrastructure and PV-connected energy storage projects.

Scalable 418kWh Modular C&I Energy Storage Configuration

A single cabinet provides 418kWh of rated battery energy. For larger commercial, industrial and utility energy storage projects, multiple battery cabinets can be connected through a combiner/control cabinet and PCS.

80kVA 418kWh scalable C&I BESS configuration with multiple ESS cabinets and combiner cabinet
Modular 418kWh battery energy storage configuration for scalable C&I and utility BESS projects.
Scenario Rate DC Configuration PCS Example
C&I 0.5P 10 × 418kWh cabinets + 1 combiner cabinet 1725kW PCS
C&I 0.25P / 0.3P 10 × 418kWh cabinets + 1 combiner cabinet 1200kW PCS
Public Utility 1P 10 × 418kWh cabinets + 1 combiner cabinet 3950kW PCS
Public Utility 0.5P 10 × 418kWh cabinets + 1 combiner cabinet 1725kW PCS
Public Utility 0.25P / 0.3P 10 × 418kWh cabinets + 1 combiner cabinet 1200kW PCS

418kWh BESS Fire Protection and Safety Architecture

The fire-protection architecture uses smoke and temperature detection, a fire alarm controller, audible and visual alarms, BMS alarm signaling and electric aerosol fire-extinguishing devices.

When the required alarm conditions are triggered, the fire-control system can activate the extinguishing device and alarm functions and receive status feedback confirming activation.

80kVA 418kWh C&I BESS fire protection system with smoke temperature detection BMS alarm audible visual alarm and aerosol extinguishing
418kWh battery energy storage system fire detection, alarm and aerosol extinguishing logic.

Standards & Certifications

The technical document lists the following standards and certifications for the 418kWh liquid-cooled battery energy storage system:

UL1973 · UL9540A · IEC/EN 62619 · IEC/EN 63056 · IEC/UL 60730 · IEC/EN 61000 · FCC Part 15 · UN38.3

Download the 418kWh Liquid-Cooled BESS Technical Datasheet

View the technical PDF covering battery parameters, system configuration, communication, liquid cooling, installation information and fire-protection logic.

Download 418kWh Liquid-Cooled C&I BESS Datasheet (PDF)

Questions About the 80kVA 418kWh Liquid-Cooled C&I BESS

What battery cells and module configuration are used in the 418kWh C&I BESS?

The system uses 314Ah LiFePO4 cells, a 52S1P module configuration and a total of 8 battery modules.

What is the rated voltage and charge/discharge current of the 418kWh battery system?

Rated battery voltage is 1331.2V. Rated charge/discharge current is 140A, with a listed maximum of 280A at 25±3°C.

How does liquid cooling support the 418kWh commercial battery energy storage system?

The system uses liquid cooling with a 50% ethylene glycol aqueous coolant solution for battery thermal management.

What communication interfaces are available for the 418kWh industrial BESS?

The technical specification lists CAN, RS485 and WiFi communication interfaces.

Can multiple 418kWh ESS cabinets be combined for a larger C&I or utility BESS?

Yes. The technical configuration examples show 10 × 418kWh cabinets connected through a combiner/control cabinet with PCS options for larger C&I and utility projects.

What fire-protection functions are included in the 418kWh liquid-cooled BESS?

The technical document describes smoke and temperature detection, a fire-control host, audible and visual alarm functions and electric aerosol fire-extinguishing devices.

What standards and certifications are listed for the 418kWh C&I energy storage system?

The technical document lists UL1973, UL9540A, IEC/EN 62619, IEC/EN 63056, IEC/UL 60730, IEC/EN 61000, FCC Part 15 and UN38.3.

Commercial & Industrial Energy Storage Project

Request an 80kVA / 418kWh Liquid-Cooled C&I BESS Solution

Tell us your required power, storage capacity, grid conditions, installation environment and project quantity so we can evaluate a suitable commercial, industrial or utility battery energy storage configuration.

Request a Quote
WE ARE MANUFACTURER
20+ Years Building Batteries in Shenzhen
We manufacture and test LiFePO4 battery cells and packs in-house. Our 300+ employee factory supports OEM and ODM projects, with UL, CE, UN38.3, IEC 62619, RoHS and MSDS documentation available for selected models.

How About These

BATTERY FAQS

LiFePO4 Battery Frequently Asked Questions

Answers about lead-acid replacement, system compatibility, OEM battery development, certifications and wholesale orders.
Can LiFePO4 batteries replace lead-acid batteries?

Many LiFePO4 batteries can replace compatible lead-acid deep-cycle batteries in RVs, boats, golf carts and industrial equipment. Before installation, confirm the system voltage, battery dimensions, terminal layout, charger profile, maximum load, cable size, fuse rating and operating temperature.

Are LiFePO4 batteries compatible with existing chargers and inverters?

Most LiFePO4 batteries are compatible with standard 12V, 24V, 36V or 48V inverters when the system voltage and power requirements match. Many modern chargers also include a LiFePO4 charging profile. For lead-acid replacement projects, confirm the charger voltage, inverter rating and maximum load before installation. A compatible charger or DC-to-DC charger may be required if the existing charging equipment does not support LiFePO4 batteries.

Can you provide custom or OEM LiFePO4 batteries?

Yes. OEM and custom battery support can include voltage, capacity, BMS settings, enclosures, terminals, connectors, communication protocols, labels and packaging. Send us the application, electrical requirements, installation dimensions and expected order quantity for review.

What is the minimum order quantity for wholesale or OEM orders?

MOQ depends on the battery model, specification and customization requirements. Standard models may be available for sample testing, while custom enclosures, private labels and OEM production normally require a confirmed order quantity. Contact us with the model and required quantity for details.

What certifications and battery documents are available?

Available certifications and documents depend on the battery model and destination market. Supporting documents may include UN38.3, MSDS, CE, RoHS and product test reports. Confirm the required documents and target market before placing an order.

What are the production lead time and shipping options?

Lead time depends on the battery model, order quantity, customization and testing requirements. Export shipping options are arranged according to the battery specification, destination and order volume. Send us the required quantity, delivery location and target schedule for a project-specific quotation.