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AINEGY C&I ESS Battery Cabinet · Air Cooling · IP20

AINEGY 64V314Ah Air-Cooled LiFePO4 Battery Cabinet / IP20

The AINEGY 64V314Ah Air-Cooled LiFePO4 Battery Cabinet is a high-voltage indoor LiFePO4 battery cabinet platform using 64V314Ah cabinet modules, available in 120kWh, 201kWh and 241kWh configurations for PCS-based commercial and industrial energy storage projects.

120–241kWhThree cabinet energy configurations.
384–768VHigh-voltage DC battery platform.
64V314AhCabinet module specification.
Air Cooling / IP20For indoor or protected electrical rooms.
RS485 / CANCommunication interface for PCS matching.
Battery Cabinet OnlyPCS / inverter selected separately.

About AINEGY 64V314Ah C&I ESS Battery Cabinet

AINEGY provides lithium battery energy storage solutions for commercial and industrial applications. This AINEGY 64V314Ah air-cooled LiFePO4 battery cabinet is designed for indoor C&I ESS projects that require high-voltage battery integration, PCS matching and protected-room installation.

The product belongs to the AINEGY C&I ESS battery cabinet portfolio and can be reviewed for commercial solar storage, factory power supply, supermarket backup power, gas station backup, weak-grid sites and emergency backup systems where capacity, PCS compatibility, indoor installation and certification requirements must be evaluated together.

Technical Specifications

Parameter120kWh201kWh241kWh
ModelIYP-CB384314A-HX1IYP-CB640314A-HX1IYP-CB7684314A-HX1
Battery TypeLiFePO4 BatteryLiFePO4 BatteryLiFePO4 Battery
Rated Energy120kWh201kWh241kWh
Nominal Voltage384V640V768V
Module Specification64V314Ah64V314Ah64V314Ah
Module Quantity61012
End-of-Charge Voltage432V720V864V
End-of-Discharge Voltage336V560V672V
Standard Charge Current100A100A100A
Max. Charge Current150A150A150A
Standard Discharge Current100A100A100A
Max. Discharge Current200A200A200A
Max. Peak Current250A250A250A
IP GradeIP20IP20IP20
Work Temperature RangeCharge: 0°C–50°C
Discharge: -15°C–60°C
Charge: 0°C–50°C
Discharge: -15°C–60°C
Charge: 0°C–50°C
Discharge: -15°C–60°C
Charge / Discharge InterfaceWaterproof quick-plug terminalWaterproof quick-plug terminalWaterproof quick-plug terminal
Communication InterfaceRS485 / CANRS485 / CANRS485 / CAN
Shell Material / ColorMetal / White optionalMetal / White optionalMetal / White optional
Size660 × 1200 × 1650mm1160 × 1220 × 1400mm1160 × 1200 × 1620mm
WeightAbout 1250kgAbout 1950kgAbout 2250kg
Parameters are for reference. Final product configuration, dimensions and technical details should be confirmed according to the selected model, project requirements and customization scope.

Selection Notes

  • Match 384V / 640V / 768V nominal voltage with the PCS DC input range.
  • Check the full battery voltage window: 336–432V, 560–720V or 672–864V.
  • Review PCS charging power using 100A standard charge and 150A maximum charge current.
  • Review discharge design using 100A standard discharge, 200A maximum discharge and 250A peak current.
  • Use size and weight to confirm delivery access, lifting plan and indoor installation clearance.

Product Boundary

  • Battery cabinet only.
  • PCS, transformer, PV inverter, outdoor enclosure and AC distribution are not included by default.
  • IP20 is for indoor or protected installation, not direct outdoor exposure.

Configuration Logic

  • Each 64V314Ah cabinet module is about 20.1kWh at nominal voltage.
  • 6 / 10 / 12 modules build the 120kWh, 201kWh and 241kWh configurations.
  • The 640V and 768V options are better suited to projects requiring higher DC voltage than 384V systems.
  • RS485 / CAN communication should be checked with the selected PCS before order confirmation.
AINEGY 64V314Ah air-cooled LiFePO4 battery cabinet energy storage system integration diagram with PCS PV grid generator and loads

System Design & Energy Storage Integration

This battery cabinet is the DC-side battery section of a C&I energy storage system. It is typically matched with a compatible PCS, while PV input, grid connection, generator backup and site loads are designed at system level.

Battery CabinetStores energy through 64V314Ah LiFePO4 cabinet modules in 120kWh–241kWh configurations.
PCSSelected separately according to DC voltage range, battery current limit, system power and BMS communication.
PV / GridPV input, grid connection and AC-side configuration should be confirmed according to project electrical architecture.
GeneratorDiesel generator integration can be reviewed when backup operation or weak-grid operation is required.
LoadsCritical and normal loads should be separated according to backup duration, load priority and site operation requirements.
Final system design depends on PCS voltage range, BMS protocol, electrical protection, site ventilation, load priority and target market requirements. Compatibility should be confirmed before order confirmation.

Why This Battery Cabinet Is Selected

Advantage 01

Higher-Capacity Air-Cooled IP20 Cabinet Platform

This 64V314Ah platform covers 120kWh, 201kWh and 241kWh cabinet configurations, making it suitable for indoor C&I projects that need higher battery capacity than smaller 60–100kWh cabinet classes.

Advantage 02

High-Voltage PCS Matching Range

The 384V, 640V and 768V nominal voltage options give system integrators a wider matching range for high-voltage PCS selection, especially where higher system power or larger battery capacity is required.

Advantage 03

20.1kWh-Class Module Building Block

A 64V314Ah module stores about 20.1kWh at nominal voltage. Using 6, 10 or 12 modules keeps the configuration logic clear and makes model selection easier during project design.

Advantage 04

Designed for Separate PCS-Based ESS Architecture

This product is practical when the project has a selected PCS, electrical room layout, AC distribution plan or system integration scheme, and the battery cabinet needs to be matched as the DC-side energy storage section.

Advantage 05

Indoor IP20 Design with Clear Application Boundary

IP20 defines the cabinet as an indoor or protected-room product. Outdoor sites should review higher IP-rated cabinets or additional enclosure protection instead of using this cabinet directly outdoors.

Advantage 06

Air Cooling for Protected Installation Rooms

For indoor rooms with suitable ventilation and moderate cabinet density, air cooling provides a direct thermal design without liquid-cooling pipework, coolant management or liquid-cooling maintenance planning.

AINEGY 64V314Ah air-cooled LiFePO4 battery cabinet applications for commercial and industrial energy storage systems

Typical Applications

This 120kWh–241kWh battery cabinet is mainly selected for indoor C&I ESS projects where higher battery capacity, PCS matching and protected installation-room deployment are required.

Commercial Solar StorageBattery section for PV storage projects when paired with a compatible PCS.
Factory Power SupplyIndoor battery cabinet integration for factory backup, load support and local energy storage.
Supermarket Backup PowerBattery cabinet option for commercial buildings and retail sites with confirmed load priority.
Gas Station BackupLocal energy storage and backup power support in protected electrical rooms.
Weak-Grid and Island SitesFor mountainous areas, islands or weak-grid locations with complete system design.
Emergency Backup SystemsCan be reviewed for emergency backup projects where battery capacity and PCS compatibility are confirmed.

Certification and Documentation Support

AINEGY products are designed and manufactured with reference to relevant international safety, transport, electrical and material standards. Certification documents are available for certified models, and project-specific certification requirements can be reviewed according to the selected model, configuration and target market.

UL and UL 9540A energy storage safety documentation support
IEC electrical standard documentation support
CE documentation support for certified models
UN38.3 battery transport safety documentation support
MSDS material safety data sheet support
RoHS restricted substance documentation support
EN 50549 grid connection documentation support
IEC 62619 lithium battery safety standard documentation support
VDE regional documentation support
AINEGY invention patent support
AINEGY utility model patent support
AINEGY design patent support

FAQ

What load profile should be reviewed before selecting the AINEGY 64V314Ah IP20 battery cabinet?Provide a 15-minute or hourly load profile where available, including peak load, average load, required backup duration, daily cycling expectation and whether the project target is backup power, peak shaving, solar storage or weak-grid support.
How should the 120kWh, 201kWh and 241kWh configurations be selected?Select the configuration according to required usable energy, discharge duration, PCS power rating, installation space and cabinet weight limit. The 120kWh model uses 384V nominal voltage, the 201kWh model uses 640V, and the 241kWh model uses 768V.
Which PCS data is required to match this AINEGY battery cabinet?Confirm the PCS brand and model, DC voltage operating range, maximum charge current, maximum discharge current, rated power, BMS communication protocol and protection setting requirements before selecting the final cabinet configuration.
What DC voltage window must be checked for PCS compatibility?The PCS must match the selected battery voltage window: 336–432V for the 120kWh configuration, 560–720V for the 201kWh configuration, or 672–864V for the 241kWh configuration.
Is this AINEGY IP20 cabinet suitable for outdoor installation?No. This is an IP20 indoor or protected-room battery cabinet. If the site is outdoor, semi-outdoor, humid, dusty or exposed to water, the project should review a higher IP-rated cabinet or an additional enclosure design.
What installation conditions should be confirmed before ordering?Confirm indoor room conditions, ventilation path, ambient temperature, humidity, floor loading, delivery access, lifting plan, service clearance, cable entry route and whether the site has sufficient protection from dust and water exposure.
How should PV, grid, generator and loads be coordinated with this battery cabinet?This cabinet is the DC-side battery section. PV input, grid connection, diesel generator, transformer, PCS, AC distribution and critical-load separation should be designed at system level according to the project architecture.
What commercial and compliance information should be provided before quotation?Provide destination country, required standards or certificates, project approval documents, order quantity, delivery location, schedule, cabinet color requirement, communication customization needs and after-sales support expectations.

Confirm the Right Battery Cabinet for Your C&I ESS Project

Send your required capacity, PCS model, DC voltage range, communication protocol, installation environment, backup load and target market. AINEGY will help review whether the 120kWh, 201kWh or 241kWh configuration is suitable.