Commercial & Industrial Energy Storage Solutions

Commercial & Industrial BESS Solutions

Commercial & Industrial Energy Storage Solutions

Modular LiFePO4 commercial and industrial battery energy storage systems for factories, commercial buildings, solar projects, microgrids, EV charging sites and critical facilities. The product range extends from compact 30kVA / 40–60kWh all-in-one C&I BESS to 125kW liquid-cooled cabinets and 1MWh–5MWh containerized battery storage.

40kWh–5MWh Scalable commercial and industrial battery storage range
Air or liquid cooling Thermal-management options for different project requirements
BMS + PCS + EMS Integrated battery, power-conversion and energy-management architecture
Grid / PV / Generator Flexible integration for solar-plus-storage and microgrid projects
C&I BESS Engineering & Integration

Commercial battery storage engineered around the site load profile

C&I BESS selection should start with site load, peak-demand profile, solar generation, required backup duration, grid conditions and installation environment. Available architectures include compact all-in-one systems, high-voltage modular cabinets, liquid-cooled outdoor BESS and containerized MWh-scale energy storage.

40kWh–5MWh C&I BESS Product Range

Six commercial and industrial BESS platforms

Compare compact all-in-one BESS, high-voltage C&I cabinets, liquid-cooled industrial systems and containerized storage. Each product below links once to its dedicated live product page.

C&I energy storage system product range from 40kWh to 5MWh including mini BESS liquid-cooled cabinets and containerized battery storage
Commercial and industrial BESS range from compact 40–60kWh cabinets to 1MWh–5MWh containerized energy storage.
Compact all-in-one BESS

30kVA / 40–60kWh Mini C&I BESS

Compact three-phase storage for small commercial and light-industrial loads.

  • 40–60kWh configurable energy
  • 30kVA power-conversion platform
  • Peak shaving and solar self-consumption
  • Space-saving integrated cabinet
View 30kVA Mini C&I BESS →
High-voltage all-in-one system

80kVA / 128–209kWh C&I BESS

High-voltage battery storage for commercial buildings and distributed-energy projects.

  • 128–209kWh configurable capacity
  • 80kVA system platform
  • Grid-connected or hybrid operation
  • Scalable battery modules
View 80kVA High-Voltage C&I BESS →
Liquid-cooled C&I BESS

125kW / 232.9kWh Liquid-Cooled BESS

Liquid-cooled all-in-one storage for peak shaving, PV shifting and commercial backup support.

  • 125kW power class
  • 232.9kWh energy class
  • Liquid thermal management
  • C&I outdoor deployment
View 125kW / 232.9kWh BESS →
Liquid-cooled C&I BESS

125kW / 261.2kWh Liquid-Cooled BESS

Outdoor C&I storage for peak shaving, solar energy shifting and load management.

  • 125kW rated power class
  • 261.2kWh energy class
  • Liquid cooling
  • BMS, PCS and EMS integration
View 125kW / 261.2kWh BESS →
High-capacity liquid-cooled BESS

80kVA / 418kWh Liquid-Cooled BESS

Higher-energy storage for longer-duration industrial and solar applications.

  • 80kVA power class
  • 418kWh energy class
  • Liquid-cooled battery cabinet
  • Factory and industrial-park applications
View 80kVA / 418kWh BESS →
Containerized BESS

1MWh–5MWh Container Energy Storage

Containerized battery energy storage for large C&I, microgrid and renewable-energy projects.

  • 1MWh–5MWh project scale
  • High-voltage battery architecture
  • Liquid cooling and system protection
  • Expandable multi-container design
View 1MWh–5MWh Container BESS →
Representative Liquid-Cooled C&I Configuration

Typical 125kW / 261.2kWh liquid-cooled BESS architecture

A 125kW / 261.2kWh cabinet represents a common C&I architecture for peak shaving, PV energy shifting, load management and project-specific backup support.

125kW 261kWh liquid-cooled BESS cabinet internal structure with battery modules BMS control box and fire protection
Typical internal structure of a liquid-cooled commercial and industrial BESS cabinet.
System typeOutdoor all-in-one C&I battery energy storage cabinet
Rated power class125kW
Nominal energy class261.2kWh
Battery chemistryLiFePO4 (LFP)
Thermal managementLiquid cooling
Core subsystemsBattery, BMS, PCS, EMS, protection, cooling, fire protection and auxiliary power
Typical operating goalsPeak shaving, time-of-use shifting, PV self-consumption, load management and backup support subject to project design
Containerized Battery Energy Storage

1MWh–5MWh liquid-cooled container energy storage

For industrial parks, renewable-energy plants, microgrids and high-load commercial sites, containerized BESS provides a scalable high-voltage battery platform with project-specific PCS, EMS, transformer, switchgear and auxiliary-system integration.

Exact container size, power rating, usable energy, thermal design, fire-protection strategy and grid interface should be confirmed during project engineering.

1MWh to 5MWh liquid-cooled container battery energy storage system for industrial microgrid and solar storage projects
Containerized BESS for industrial, solar, microgrid and large commercial projects.
BMS + PCS + EMS Integration

How a commercial battery energy storage system is integrated

PV / Grid / Generator
PCS & AC Protection
LFP Battery + BMS
EMS Scheduling
Facility Loads / Grid

The battery and BMS form the DC energy-storage layer, the PCS converts between DC and AC, and the EMS supervises charging, discharging, metering and site-level operating strategy. Electrical and communication compatibility should be reviewed before final system selection.

Commercial Battery Storage Applications

Commercial and industrial energy storage applications

Peak ShavingReduce facility demand peaks and manage grid-import limits.
Solar + BESSIncrease PV self-consumption and shift surplus solar energy.
Factories & Industrial ParksIndustrial load management, peak shaving and backup support.
EV ChargingSupport high-power charging while reducing transformer or grid-capacity pressure.
MicrogridsCoordinate solar, grid, generator, BESS and critical loads.
Engineering & Integration Resources

Review system compatibility, technical guidance and BESS sizing inputs

These live resources support system integration and project review without repeating the same destination multiple times.

Why Deploy C&I Battery Storage?

Why businesses deploy commercial and industrial battery storage

Peak shaving

Discharge during high-demand intervals to reduce facility peak demand where the tariff structure supports it.

Solar self-consumption

Store surplus daytime PV energy for evening loads or periods of low solar production.

Backup support

Support selected critical loads when the PCS, switchgear and controls are engineered for backup operation.

Microgrid integration

Coordinate PV, generators, grid supply and facility loads through a project-specific EMS strategy.

Energy shifting

Charge during lower-cost periods and discharge during higher-price periods subject to local tariff rules.

Power management

Improve site flexibility with monitored battery power, scheduling and configurable operating limits.

Testing & Compliance Resources

Validate the battery platform before project approval

BESS Sizing Inputs

Information required for accurate C&I BESS sizing

Accurate sizing starts with the site load profile, grid conditions, required operating mode and installation environment.

✓ Site country, grid voltage and frequency
✓ Electricity bills and interval load data, if available
✓ Maximum demand, average load and critical-load power
✓ Required backup or charge/discharge duration
✓ Existing or planned solar PV capacity
✓ Transformer, switchgear and SLD information
✓ Indoor / outdoor conditions and available space
✓ Grid-connected, off-grid or hybrid requirement
✓ PCS, EMS and communication requirements
✓ Target quantity, delivery schedule and Incoterm
Commercial & Industrial Energy Storage FAQ

Questions about C&I battery energy storage systems

What is a C&I battery energy storage system?

A C&I BESS stores electrical energy for commercial or industrial facilities and releases it according to a control strategy. Typical uses include peak shaving, solar-energy shifting, backup support and microgrid energy management.

How do I choose between kW and kWh?

kW is instantaneous charging or discharging power; kWh is stored energy. Both must be sized from the site load profile and required duration.

What is the difference between air-cooled and liquid-cooled BESS?

Air cooling can suit smaller or cost-sensitive systems. Liquid cooling generally provides tighter temperature control and may be preferred for higher-energy-density outdoor cabinets or demanding duty cycles.

Can a commercial BESS work with solar PV and a generator?

Yes, when the PCS, EMS, protection and control logic are engineered for the intended PV, generator, grid and load interfaces.

Can a BESS provide UPS-style backup?

Not automatically. Transfer performance depends on topology, PCS mode, switchgear and controls. No-break applications may require a dedicated UPS architecture.

What should be validated before ordering?

Confirm load profile, SLD, grid parameters, operating modes, PCS and EMS functions, communication interfaces, protection coordination, installation environment, compliance, logistics, commissioning and warranty boundaries.

Project-Specific C&I BESS Proposal

Request a project-specific C&I BESS proposal

Send your load profile, grid parameters, solar capacity, backup duration, installation environment and target system size for project review.

Request a BESS Proposal →