Integrated high-voltage LiFePO4 battery energy storage system designed
for commercial and industrial applications. Available energy capacities
from 128kWh to 209kWh provide flexible solutions for peak shaving,
solar self-consumption, backup power, load shifting and microgrid applications.
80kVA
Rated Output
128–209kWh
Battery Energy
128kW
Max. PV Input
IP55
Outdoor Protection
All-in-One 80kVA High-Voltage C&I Energy Storage System
The 80kVA high-voltage commercial and industrial battery energy storage
system combines LiFePO4 battery storage, power conversion, battery
management, thermal management, protection and energy control within
an integrated C&I energy storage platform.
Six battery configurations from
128kWh to 209kWh allow EPC contractors,
system integrators and commercial energy users to select the appropriate
energy capacity according to site load, PV generation, backup duration,
electricity tariff and operating strategy.
80kVA C&I BESS Key Features
✓
80kVA C&I Platform
Three-phase energy storage architecture designed for commercial
and industrial power applications.
✓
128–209kWh Capacity
Six battery capacity configurations for different project
load and backup requirements.
✓
High-Voltage LiFePO4
Lithium iron phosphate battery architecture with integrated
battery management and system protection.
✓
128kW PV Input
Supports high-capacity solar integration for commercial
solar-plus-storage applications.
✓
6 MPPT Channels
Flexible PV design with a reference MPPT voltage range
of 150–850Vdc.
✓
IP55 Outdoor Cabinet
Floor-mounted enclosure for commercial and industrial
outdoor energy storage projects.
* Technical parameters are based on the reference configuration.
Final specifications depend on the selected system configuration and project requirements.
Technical Datasheet · PDF Download
80kVA 128–209kWh High-Voltage C&I BESS Datasheet
Download the complete technical datasheet for the 80kVA high-voltage commercial and industrial battery energy storage system, including 128–209kWh LiFePO4 battery configurations, 128kW maximum PV input, 6 MPPT channels, inverter specifications, BMS communication, cabinet dimensions, protection functions and reference standards.
The integrated system architecture combines the main battery energy storage
and power-control components required for commercial and industrial applications.
80kVA high-voltage C&I BESS architecture integrating solar PV, battery storage, EMS monitoring, main distribution, commercial or industrial loads and the utility grid.
Hybrid Inverter
LiFePO4 Battery Modules
Multi-Level BMS
Microgrid Controller
HVAC System
Fire Suppression
Islanding Protection
Outdoor Enclosure
Commercial Solar PV + Battery Energy Storage
The system supports commercial solar-plus-storage applications with up to
128kW maximum PV input, six MPPT channels and a reference
MPPT operating range of 150–850Vdc.
Excess photovoltaic energy can be stored in the battery system and used
later when solar generation decreases, electricity prices increase or
backup power is required.
C&I BESS Peak Shaving & Energy Management
The 80kVA high-voltage C&I BESS can support peak shaving, load shifting, solar self-consumption, backup power, microgrid operation and time-of-use optimization according to the site energy strategy.
C&I battery energy storage applications for peak demand reduction, tariff optimization, solar energy utilization, critical-load backup and microgrid energy management.
Peak Shaving
Discharge stored energy during high-demand periods to reduce
facility peak demand.
Load Shifting
Move electricity consumption between different tariff periods
according to energy cost and operational requirements.
Solar Self-Consumption
Store surplus PV generation and use the energy when solar
production is insufficient.
Backup Power
Provide stored energy for selected commercial or industrial loads
during grid interruptions.
Microgrid
Coordinate PV generation, battery storage, utility supply and
facility loads within a microgrid system.
Time-of-Use Optimization
Charge during lower-cost periods and discharge when electricity
tariffs are higher.
Commercial & Industrial BESS Applications
Factories
Commercial Buildings
Warehouses
Industrial Facilities
Farms
Solar Projects
Microgrids
Backup Power
Typical outdoor installation scenario for an 80kVA 128–209kWh commercial and industrial battery energy storage system at a factory or warehouse with rooftop solar PV.
Scalable High-Voltage BESS for Larger C&I Projects
The 80kVA platform offers multiple battery capacity configurations
from 128kWh to 209kWh for different energy requirements.
For larger projects, the reference inverter architecture supports
parallel expansion of up to 10 inverter sets,
subject to system design, EMS coordination, grid requirements
and protection engineering.
High-Efficiency Power Conversion
98.7%
Maximum Efficiency
98.1%
Euro Efficiency
1.5×
Peak Power for 10 Seconds
High-Voltage LiFePO4 Battery & Cycle Life
The high-voltage battery platform uses LiFePO4 chemistry with integrated
battery management for cell monitoring, balancing, protection and
system-level control.
Reference Cycle Life:
≥10,000 cycles under reference test conditions of approximately
25±2°C, 0.5C charge, 0.5C discharge and 70% end-of-life capacity.
Custom 80kVA C&I BESS Configuration
Commercial and industrial energy storage projects should be configured
according to actual site requirements rather than battery capacity alone.
System configuration can be evaluated according to
required output power, battery energy, grid voltage,
PV capacity, load profile, backup duration, communication requirements,
operating strategy and installation environment.
Project support can include battery sizing, inverter matching,
BMS communication, EMS integration, PV configuration and
overall system architecture evaluation.
Questions About 80kVA 128–209kWh High-Voltage C&I BESS
Key questions about system sizing, backup time, peak shaving,
solar integration, operating modes and project configuration.
How do I choose the right battery capacity for an 80kVA C&I BESS?
Battery capacity should be selected according to the facility load profile,
required backup duration, peak-demand reduction target, solar PV generation
and daily energy consumption.
This 80kVA platform is available in
128kWh, 144kWh, 160kWh, 176kWh, 192kWh and 209kWh
configurations, allowing the battery energy capacity to be matched
to different commercial and industrial applications.
How long can a 128–209kWh C&I battery system provide backup power?
Backup time depends on the actual load, usable battery capacity,
depth of discharge, inverter efficiency and reserve capacity.
As a basic reference, backup duration can be estimated by dividing
usable battery energy by average load power. Final runtime should
be calculated using the site's real load profile and operating conditions.
Can this 80kVA C&I BESS be used for peak shaving and load shifting?
Yes. The battery system can charge during lower-demand or lower-tariff
periods and discharge when facility demand increases.
This allows commercial and industrial facilities to use battery storage
for peak shaving, load shifting and time-of-use optimization,
depending on local electricity tariffs and the site's energy strategy.
Can the C&I BESS integrate with an existing commercial solar PV system?
Yes. The reference configuration supports up to
128kW maximum PV input, with
6 MPPT channels and a reference MPPT operating
range of 150–850Vdc.
The system can store surplus solar generation for later use,
improve PV self-consumption and support commercial
solar-plus-storage applications.
Does the system support grid-connected, off-grid and expandable BESS applications?
The system architecture can support grid-connected, backup and
microgrid-oriented applications depending on inverter configuration,
protection design and control strategy.
For larger commercial and industrial projects, the reference inverter
architecture supports parallel expansion of up to
10 inverter sets. Final parallel configuration should
be confirmed according to project power, EMS coordination and grid requirements.
What information is required to size and configure a C&I BESS?
For accurate system selection, provide the required
system power, battery capacity, grid voltage, PV capacity,
peak load, average load, backup duration, installation environment
and intended operating mode.
If available, provide the site's electricity bill or interval load data.
This helps evaluate a more suitable battery capacity, peak-shaving strategy,
inverter configuration and overall C&I energy storage system design.
Request an 80kVA C&I BESS Solution
Send your system power, battery capacity, grid voltage, PV capacity,
load profile, backup duration and installation environment to receive
a suitable commercial and industrial energy storage configuration.
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.
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.