Storage 105kw 215kwh Ess High Voltage Commercial Industrial Cabinet Battery Container 105kw System Bess Solar Energy

Customization: Available
Container Size: L1560mm*D1380mm*H2385mm
Weight: 2600kg

Product Description

Liquid-Cooled C&I Storage | EU Stock Ready

Factories, Retail & Parks • Peak-Valley Arbitrage • Grid Compliant • 3-Year ROI

Energy Storage System Container Cabinet

Basic Specifications

Model NO. Model 233
Nominal Voltage 230V/400V
Warranty 5 years
Nominal Capacity 233kWh
Cycle Life 9000
Battery Type LiFePO4
Grid Connection Hybrid Grid
Communication Can/RS485/Ethernet/4G
Product Name Commercial & Industrial Storage
Cooling Method Intelligent Liquid Cooling
Discharge Depth 95% DoD
On/Off-Grid Switching Time 20ms (Optional)
Protection Level IP54
AC Rated Voltage 230V/400V (±15%)
AC Rated Frequency 50/60 Hz
AC Maximum Current 167A
DC Rated Voltage 768V
Specification L1560 * D1380 * H2385 mm
Origin China
Production Capacity 10000 units

Packaging & Delivery

Package Size 166.00cm * 153.00cm * 260.00cm
Package Gross Weight 2600.00kg

Why Choose Our Solution?

Turn Energy Costs into Profit: The Smart C&I Storage Solution
Stop losing money to volatile energy prices. Our Liquid-Cooled BESS cuts bills and generates new revenue streams with a fast, predictable ROI.

1. Fast Payback (3-3.5 Years)

Achieve break-even in under 4 years in major EU markets. With a 25-year lifespan, that is 20+ years of pure profit.

2. 4-in-1 Revenue Modes

Smart EMS optimized for EPEX markets. Earn from peak-valley arbitrage, negative pricing, VPP, and grid regulation.

3. Zero Penalty Risk

Precision peak shaving prevents load spikes, eliminating costly demand charges and EU grid fines.

4. Maximized Efficiency & Safety

Advanced liquid cooling (≤3°C diff) extends battery life. CE/IEC/UN38.3 Certified for full compliance and safety.

5. Hassle-Free EU Deployment

Plug-and-Play design saves on high European labor costs. Includes local support and a 5-year warranty.

ROI Analysis

ROI Analysis (Based on Typical European Electricity Market Environments)
Whether you are in Frankfurt, London, or Milan, the system adapts to local electricity market rules, transforming static storage into a dynamic profit-generating asset.

Core Revenue Overview

Key Indicator Value Description
System Config 105kW / 233kWh Optimal ratio, balancing power and capacity
Annual Net Revenue €22,000+ Estimated comprehensive revenue based on stacked strategies
Static Payback Period 3 - 3.5 Years Highly competitive payback period in the European market
Lifecycle Revenue Approx. €500,000 Long-term asset appreciation over 25 years

Four-Dimensional Revenue Model (Universal)

Our AI Energy Management System (EMS) has built-in algorithms for mainstream European electricity markets, automatically adapting to local rules to unlock four revenue sources for you:

1. Peak-Valley Arbitrage (Base Revenue)

Universal Logic: Utilize the expanding day-ahead market price spreads across European countries.
System Advantage: The 105kW high power ensures rapid charging during short low-price windows (e.g., midday PV peaks or nighttime valleys). Daily "two-charge, two-discharge" cycles maximize the 233kWh capacity, directly cutting electricity bills.

2. Dynamic Price Response (Advanced Revenue)

Universal Logic: Adapt to real-time fluctuations in European spot markets.
System Advantage: Automatically connects to exchange data (e.g., EPEX, Nord Pool). Discharges during price spikes; charges during low/negative prices. This strategy can boost annual revenue by an extra 15-20% in Europe's current energy climate.

3. Demand Charge Management (Hidden Revenue)

Universal Logic: Address "capacity charges" or "peak penalties" common in European industrial sectors.
System Advantage: When factory loads spike (e.g., heavy equipment startup), the system discharges instantly to shave peaks, smoothing transformer load and avoiding costly seasonal penalties.

4. Grid Ancillary Services (Value-Added Revenue)

Universal Logic: Participate in grid balancing mechanisms.
System Advantage: Standardized interfaces allow connection to Virtual Power Plant (VPP) networks. Respond to grid dispatch (e.g., frequency regulation) during idle times for higher service subsidies than simple energy trading.

Product Description

Product Advantages

Safe and reliable Serve as an emergency backup power source to ensure continuous operation.
Flexible configuration Modular design, expansion and customization. Convenient installation.
High efficiency Optimize energy usage and reduce costs.
Intelligent operation & maintenance Reduce operation and maintenance costs, promote green energy consumption.
Grid-friendly Grid-connected/off-grid switching, multiple protection designs.
Energy Storage System Interior Components Layout

Technical Parameters

System Parameter Block Value Specification (Model 233CE)
System Parameter Battery Cell LFP (LiFePO4) 3.2V 280Ah
System Capacity 233kWh
Rated Power 105kW
Access Method 3W+N/3W+N+Pe
Communication CAN/RS485/Ethernet/4G
Communication Standard Modbus TCP, Modbus RTU, CAN2.0, IEC61850, IEC104
Cooling Method Intelligent Liquid Cooling
Fire Fighting Aerosol (pack-level + cluster-level) + Water Fire Protection (cabinet-level)
Operating Altitude 4000m (>2000m, derating operated)
Operating Temperature 0ºC~50ºC (charge), -20ºC~50ºC (discharge), 25ºC±2ºC (optimum)
Relative Humidity 5% ~ 95% RH
Protection Level IP54
Anti-corrosion Level C4
Noise ≤75dB
Weight / Size 2800kg±50kg / L1560mm*D1380mm*H2385mm
AC Side Rated Voltage 230V/400V (±15%)
Rated Frequency 50/60 Hz
Maximum Current 167A
Power Factor ≥0.99 (-1~1)
DC Component <0.5%
THDi <2% (rated power)
THDu <3% (off-grid, linear load)
Charge-Discharge conversion time <100ms
Automatic on-grid and off-grid switching time 20ms (optional)
Anti-backflow Optional
Overload Capability 1.1 times for long-term
DC Side Rated Voltage 832V
Certifications CQCLVRT/HVRT, EN 62477, EN 61000, EN 50549-2, UN38.3, EN 62619, VDE 4105, VDE O126-1-1, XP C15-712-3, UTE C15-712-1, VFR 2019
Certifications Banner
Energy Storage System Interior Details 1
Energy Storage System Interior Details 2
Energy Storage System Internal Structure 3
Energy Storage System Components Layout 4
Energy Storage System Thermal Management 5
Energy Storage System Assembly Line 6

Project Case

Applications

Commercial buildings, factory buildings, remote areas, and areas with power shortages.

Energy Storage System Project Installation Case Study

Frequently Asked Questions (FAQ)

Q:What is the expected lifespan and warranty of this energy storage system?

The system is built on premium LiFePO4 cells offering a high cycle life of up to 9,000 cycles, providing a long-term asset life of up to 25 years. It is backed by a comprehensive 5-year warranty.

Q:What are the main application scenarios for this commercial BESS?

The unit is highly customizable and modular, making it perfect for commercial buildings, manufacturing factories, retail spaces, business parks, and remote areas facing power shortages.

Q:How does the system achieve a static payback period of under 4 years?

The system runs smart algorithms that stack multiple revenue streams: peak-valley arbitrage, response to negative/dynamic market prices, shaving load peaks to avoid demand charges, and participating in grid balancing networks (VPP).

Q:What safety and compliance standards does this system satisfy?

It holds a robust list of certifications for both safety and grid compliance, including UN38.3, EN 62619, EN 62477, VDE 4105, EN 50549-2, and CE compliance standards for smooth European deployments.

Q:How does the liquid cooling system benefit the operations?

The intelligent liquid cooling mechanism maintains internal temperature variation below 3°C. This preserves battery health, ensures stable high-power charge/discharge cycles, and mitigates thermal hazards effectively.

Q:Does the system support backup power operations during grid outages?

Yes, the system is designed to switch automatically between grid-connected and off-grid modes. The optional fast-switching unit drops backup transition times down to 20ms to support critical loads.

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