Modular Design Wres-Ci-25-261-125 Grid-Tied Commercial Battery Energy Storage for Hospital Backup Power

Customization: Available
Power Configuration: 832
Cycle Life: ≥8000 @25℃

Product Description

📊 Basic Information
Model NO.
Commercial Energy Storage Battery
Product Name
C&I Energy Storage
Keywords
Industrial Energy Storage System
Total Energy (Kwh)
261
Usable Energy (Kwh)
245.57
Nominal Voltage (Vd.C)
832
Rated Capacity(Ah)
314
Maximum Efficiency
99%
Corrosion Rating
C4
Production Capacity
50,000 pieces/Year
Grid-Tied Commercial Battery Energy Storage
📘 Product Description

COMMERCIAL & INDUSTRIAL ENERGY STORAGE CABINET

These systems adopt LFP (Lithium Iron Phosphate) batteries, ensuring high safety and reliability—critical for long-term industrial operations. The energy capacity ranges from 112.54 kWh to 241 kWh, with high usable energy ratios, meeting diverse power demand scenarios.

The electrical parameters are optimized for industrial grids. Nominal DC voltage spans 358.4V to 832V, with corresponding voltage ranges to adapt to different grid conditions. Most models feature 100KW rated power and AC 400V rated voltage, compatible with standard industrial power systems.

Designed as grid-tied systems with MPPT (Maximum Power Point Tracking) functionality (voltage range 200~800V), enabling efficient integration with renewable energy sources like solar panels.
⚙️ Key Functions
1. Peak-Valley Tariff Arbitrage: Store electricity during off-peak hours (low tariffs) and discharge during peak periods (high tariffs) to cut operational costs.
2. Reliable Backup Power: Equipped with safe LFP batteries to maintain stable output for critical equipment during grid outages.
3. Renewable Integration: Efficiently store excess solar or wind power, boosting self-consumption and reducing carbon footprints.
4. Grid Adaptability: Wide DC voltage ranges (313.6–949V) ensure stable operation even in fluctuating voltage environments.
📋 Technical Specifications
Parameter Value
Product NameWRES-CI-25-261/125
Total Energy (kWh)261
Usable Energy (kWh)245.57
Nominal Voltage (Vd.c)832
Voltage Range (Vd.c)728~936
Rated Capacity (Ah)314
Max. Output Current To Grid (A)200
Nominal Grid Voltage (V)230/400V, 3L+N+PE
Maximum Efficiency99%
Cycle Life≥8000 @ 25℃
Dimension (W*H*D) (mm)1055*2300*1300
Weight (KG)3180
Functional Advantages

Economic Value: Tailored to business scales, these systems enable effective tariff arbitrage for manufacturing and logistics sectors.

Safety & Reliability: Adopting Lithium Iron Phosphate batteries with excellent thermal stability and long cycle life minimizes downtime risks.

Sustainability: Lower carbon emissions by reducing reliance on fossil-fueled grid power and maximizing on-site renewable energy.

Sustainability Goals
🚀 Core Applications
Main Applications:
  • Manufacturing & Retail peak-valley arbitrage.
  • Backup power for data servers and refrigeration units.
  • Renewable energy consumption for solar/wind arrays.
  • Grid stability support for fluctuating industrial loads.
🚚 Logistics & Transportation
We provide secure transportation services including full-process tracking, custom protective packaging (reinforced wooden crates or steel frames), and rapid issue resolution to ensure energy project success.
Frequently Asked Questions
What is the lifespan of these energy storage batteries?
Lithium iron phosphate (LFP) batteries typically offer 6,000-8,000 charge cycles, which is equivalent to 10-15 years of daily use depending on conditions and maintenance.
Are these batteries suitable for solar systems?
Yes, our batteries are specifically designed for seamless integration with photovoltaic (PV) arrays in residential, commercial, and industrial applications.
Do the batteries include safety protective features?
Absolutely. All units come equipped with a comprehensive Battery Management System (BMS) that provides overcharge, over-discharge, short-circuit, and temperature protection.
How can I monitor the battery performance?
We provide a cloud-based monitoring platform via App and Web, allowing you to track real-time performance, charging status, and system health.
What are the main application scenarios?
Common scenarios include integrated solar-storage-charging systems, peak-valley electricity arbitrage, backup power for emergencies, and support for low-temperature environments.
What are the advantages of your battery cells?
Leveraging upstream integration in cathode materials, we reduce intermediary costs. Our high-quality cells offer superior stability and are typically 5-10% more cost-effective than competitors.

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