Customized 233kwh Energy Power Commercial Industrial All in One Battery Storage Systems

Customization: Available
Application: Commercial Complex Peak Shaving
Installation: Cabinet Floor-Mounted

Product Description

⚡ Basic Information
Model NO.
233kWh
Energy Capacity
100kWh-500kWh
Power Configuration
100kW-250kW
Cycle Life
9000
Cooling Method
Intelligent Liquid Cooling
Product Name
Energy Storage Container
Battery Type
LiFePO4
Protection Level
IP54
Grid Connection
Hybrid Grid
Certification
CE
How to quickly recoup your investment?

ROI Analysis based on Typical European Electricity Market Environments

Key Indicator Value Description
System Config105kW / 233kWhOptimal ratio, balancing power and capacity
Annual Net Revenue€22,000+Estimated comprehensive revenue based on stacked strategies
Static Payback Period3 - 3.5 YearsHighly competitive payback period in the European market
Lifecycle RevenueApprox. €500,000Long-term asset appreciation over 25 years
📊 Four-Dimensional Revenue Model
📈 Peak-Valley Arbitrage

Utilize day-ahead market price spreads. High power ensures rapid charging during short low-price windows.

📉 Dynamic Price Response

Automatically connects to exchange data (EPEX, Nord Pool) to boost revenue by an extra 15-20%.

🏗️ Demand Charge Management

Address capacity charges by shaving peaks during heavy equipment startup.

🌐 Grid Ancillary Services

Connect to VPP networks for frequency regulation and higher service subsidies.

📦 Product Description

The industrial and commercial energy storage cabinets use an integrated design with high flexibility. This ensures companies can easily expand storage capacity to meet growing demand or operational changes.

⭐ Product Advantages
  • Safe and reliable with C4 anti-corrosion and IP54 protection.
  • Intelligent battery management system (BMS) to extend service life.
  • Multi-layer fire protection (Aerosol + Water Fire Protection).
  • Grid-friendly with 20ms automatic on/off-grid switching.
📋 Technical Parameters
System ParameterCOREY 233CE
Battery CellLFP (LiFePO4) 3.2V 280AhSystem Capacity: 233kWh
Rated Power105kWAccess: 3W+N/3W+N+Pe
Cooling MethodIntelligent Liquid CoolingNoise: ≤75dB
Fire FightingPack-level Aerosol + Cabinet WaterOperating Altitude: 4000m
AC Rated Voltage230V/400V(±15%)Max Current: 167A
Dimensions1560*1380*2385 mmWeight: 2800kg±50kg
DC Rated Voltage832VDischarge Depth: 95%DOD
🏢 Application & Project Cases

Suitable for Factory buildings, commercial buildings, areas with power shortages, and remote off-grid locations.

🏢 Company Profile

Established in 2014, the group specializes in automated intelligent equipment and laser welding technologies for lithium battery modules. We provide one-stop green power station solutions including Turnkey Service, Microgrid Solutions, and Energy Storage Projects. We are committed to promoting clean energy transformation and building stable, zero-carbon power systems globally.

❓ Frequently Asked Questions
Q: What is the main battery chemistry used in this system?
A: The system utilizes high-quality LiFePO4 (Lithium Iron Phosphate) cells, known for their long cycle life of up to 9000 cycles and superior thermal stability.
Q: How does the intelligent liquid cooling system benefit the battery?
A: Liquid cooling provides more uniform temperature control compared to air cooling, significantly extending battery lifespan and ensuring safety during high-power charging and discharging.
Q: Is the system suitable for outdoor installation in coastal areas?
A: Yes, with IP54 protection and C4-level anti-corrosion treatment, the container is designed to withstand harsh outdoor environments, including humid and high-salinity areas.
Q: What is the switching time between grid-connected and off-grid modes?
A: The system supports an optional automatic switching time of less than 20ms, ensuring a seamless power transition for critical loads during grid failure.
Q: Can this energy storage system participate in VPP (Virtual Power Plants)?
A: Absolutely. It features standardized communication interfaces (CAN, RS485, Ethernet, 4G) and protocols (Modbus, IEC61850) for easy integration into VPP networks and grid ancillary services.
Q: What is the typical payback period for industrial users?
A: In typical European energy markets, by using strategies like peak-valley arbitrage and demand charge management, the static payback period is estimated at 3 to 3.5 years.

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