| Availability: | |
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| Quantity: | |
| Product Name | WRES-CI-25-113 |
| Total Energy (kWh) | 112. 54 |
| Usable Energy (kWh) | 105.79 |
| Nominal Voltage (Vd.c) | 358.4 |
| Voltage Range (Vd.c) | 313.6 ~ 403.2 |
| Rated Copacity(Ah) | 314 |
| Single Module Specifications | 51.2V 314Ah |
| Max. PV input Power(kW) | 75 |
| MPPT Voltage Range(V) | 200~800 |
| Nominal Output Power To Grid (kW) | 50 |
| Max. Output Power To Grid (kW) | 55 |
| Max. Output Current To Grid (A) | 83 |
| Nominal Grid Voltage (V) | 3L/N/PE; 220/380V;230/400V;240/415V |
| Dimension (W *H* D)(mm) | 750*2200*1100 |
| Weight (KG) | 1120 |
| Certification | CE/UN38.3/MSDS |
| Storage Temperature | -20*C-55℃℃(-4°F-131°F) |
| IP Rating | IP54 |
| Cooling Type | Natural |
| Operating Environment | Indoor (10% ~ 95% (RH) No Condensing) |
| Altitude | ≤2000 m |
1. Significant Electricity Cost Reduction
Peak shaving and load shifting to reduce demand charges
Charge during off-peak, discharge during peak hours
Typical energy cost savings of 20–40%
2. Fast & Predictable ROI
Typical payback period: 3–6 years
Multiple revenue streams:
Energy arbitrage
Demand charge management
Backup power
Grid services (where applicable)
3. Improved Power Reliability & Business Continuity
Millisecond-level response during grid outages
Prevents production downtime and data loss
Ideal for factories, data centers, logistics parks, and retail chains
Advanced Technology & System Advantages
4. Modular & Scalable Design
Standard battery cabinets, all-in-one systems, or containerized solutions
Capacity scalable from 100 kWh to multi-MWh
Easy expansion as load grows
5. High-Safety LFP Battery Technology
Lithium Iron Phosphate (LFP) chemistry
Excellent thermal stability, no thermal runaway propagation
Multi-layer safety design:
BMS, EMS, fire suppression, structural protection
6. High Efficiency & Long Lifetime
System efficiency ≥ 90%
6,000–8,000 cycles
Designed service life of 10–15 years
Smart Energy Management & Integration
7. Intelligent EMS Platform
Real-time monitoring of battery, grid, load, and PV
Multiple operating strategies with automatic optimization
Remote O&M, fault diagnostics, and data analytics
8. PV, EV & Microgrid Ready
Seamless integration with solar PV, EV chargers, and diesel generators
Supports grid-connected, off-grid, and microgrid operation
Ideal for industrial parks and commercial complexes
Global Market Readiness
9. International Certifications & Grid Compliance
IEC, CE, UN38.3, IEC 62619
Country-specific grid compliance available (Germany, Poland, France, etc.)
Suitable for EPC, IPP, and utility-scale C&I projects
10. Turnkey Delivery & Localization Support
EPC / OEM / ODM / turnkey project delivery
Overseas warehousing and local service support
Proven experience in commercial and industrial applications
| Product Name | WRES-CI-25-113 |
| Total Energy (kWh) | 112. 54 |
| Usable Energy (kWh) | 105.79 |
| Nominal Voltage (Vd.c) | 358.4 |
| Voltage Range (Vd.c) | 313.6 ~ 403.2 |
| Rated Copacity(Ah) | 314 |
| Single Module Specifications | 51.2V 314Ah |
| Max. PV input Power(kW) | 75 |
| MPPT Voltage Range(V) | 200~800 |
| Nominal Output Power To Grid (kW) | 50 |
| Max. Output Power To Grid (kW) | 55 |
| Max. Output Current To Grid (A) | 83 |
| Nominal Grid Voltage (V) | 3L/N/PE; 220/380V;230/400V;240/415V |
| Dimension (W *H* D)(mm) | 750*2200*1100 |
| Weight (KG) | 1120 |
| Certification | CE/UN38.3/MSDS |
| Storage Temperature | -20*C-55℃℃(-4°F-131°F) |
| IP Rating | IP54 |
| Cooling Type | Natural |
| Operating Environment | Indoor (10% ~ 95% (RH) No Condensing) |
| Altitude | ≤2000 m |
1. Significant Electricity Cost Reduction
Peak shaving and load shifting to reduce demand charges
Charge during off-peak, discharge during peak hours
Typical energy cost savings of 20–40%
2. Fast & Predictable ROI
Typical payback period: 3–6 years
Multiple revenue streams:
Energy arbitrage
Demand charge management
Backup power
Grid services (where applicable)
3. Improved Power Reliability & Business Continuity
Millisecond-level response during grid outages
Prevents production downtime and data loss
Ideal for factories, data centers, logistics parks, and retail chains
Advanced Technology & System Advantages
4. Modular & Scalable Design
Standard battery cabinets, all-in-one systems, or containerized solutions
Capacity scalable from 100 kWh to multi-MWh
Easy expansion as load grows
5. High-Safety LFP Battery Technology
Lithium Iron Phosphate (LFP) chemistry
Excellent thermal stability, no thermal runaway propagation
Multi-layer safety design:
BMS, EMS, fire suppression, structural protection
6. High Efficiency & Long Lifetime
System efficiency ≥ 90%
6,000–8,000 cycles
Designed service life of 10–15 years
Smart Energy Management & Integration
7. Intelligent EMS Platform
Real-time monitoring of battery, grid, load, and PV
Multiple operating strategies with automatic optimization
Remote O&M, fault diagnostics, and data analytics
8. PV, EV & Microgrid Ready
Seamless integration with solar PV, EV chargers, and diesel generators
Supports grid-connected, off-grid, and microgrid operation
Ideal for industrial parks and commercial complexes
Global Market Readiness
9. International Certifications & Grid Compliance
IEC, CE, UN38.3, IEC 62619
Country-specific grid compliance available (Germany, Poland, France, etc.)
Suitable for EPC, IPP, and utility-scale C&I projects
10. Turnkey Delivery & Localization Support
EPC / OEM / ODM / turnkey project delivery
Overseas warehousing and local service support
Proven experience in commercial and industrial applications
Strict selection of high-quality components
Insist on using industry-leading high-quality components and materials.
Strict production control
Standardize workflow, check and maintain equipment regularly.
Strict quality inspection
Insist on using industry-leading high-quality components and materials
Product continuous optimization
Actively collect customers’ opinions and suggestions, and make continuous improvement.
Battery life tracking
Premium cells with proprietary BMS for real-time monitoring. Intelligent maintenance strategies ensure system safety and extended lifespan.
Electrical safety design
Proprietary PCS and PACK with integrated electrical isolation, over-voltage protection, and grounding to prevent failures. Optimized electrical design achieves up to 92% system conversion efficiency.
Design of thermal management system
High-performance thermal materials with aerodynamically optimized ducts and intelligent temperature control reduce self-consumption by 25%. Maintains <5°C thermal differential for system stability.
Structural stability design
Proprietary corrosion/temperature-resistant enclosures with optimized structural design, enhanced shock absorption, and IP54 rating ensure reliable operation in harsh environments.
Operational safety design
Intuitive user interface with emergency power cut-off; Pressure-relief valves prevent explosions by releasing overpressure.
Strict selection of high-quality components
Insist on using industry-leading high-quality components and materials.
Strict production control
Standardize workflow, check and maintain equipment regularly.
Strict quality inspection
Insist on using industry-leading high-quality components and materials
Product continuous optimization
Actively collect customers’ opinions and suggestions, and make continuous improvement.
Battery life tracking
Premium cells with proprietary BMS for real-time monitoring. Intelligent maintenance strategies ensure system safety and extended lifespan.
Electrical safety design
Proprietary PCS and PACK with integrated electrical isolation, over-voltage protection, and grounding to prevent failures. Optimized electrical design achieves up to 92% system conversion efficiency.
Design of thermal management system
High-performance thermal materials with aerodynamically optimized ducts and intelligent temperature control reduce self-consumption by 25%. Maintains <5°C thermal differential for system stability.
Structural stability design
Proprietary corrosion/temperature-resistant enclosures with optimized structural design, enhanced shock absorption, and IP54 rating ensure reliable operation in harsh environments.
Operational safety design
Intuitive user interface with emergency power cut-off; Pressure-relief valves prevent explosions by releasing overpressure.