Dawnice BESS - Dawnice 125kW/265kWh PV-Storage-Genset Hybrid C&I LiFePO4 Energy Storage - Bs07 265 Es G 125Kw 265Kwh Pv Stora...

Dawnice 125kW/265kWh PV-Storage-Genset Hybrid C&I LiFePO4 Energy Storage

Dawnice BS07-265-ES-G 125kW/265kWh PV-storage-genset hybrid energy storage system integrates solar PV, LiFePO4 battery storage, and diesel generator in one unified system for commercial & industrial applications. Intelligent energy management optimizes solar self-consumption, peak-shaving, and genset runtime reduction, ensuring reliable power for global C&I microgrid and off-grid projects.
6,000–8,000+ Cycles
LiFePO₄ Safety
CE / UL / IEC Certified
Smart EMS
Global Delivery
10yr / 5+5yr Warranty

The BS07-265-ES-G (Nezha Series) is a 125kW/265kWh PV-Storage-Genset hybrid all-in-one system that seamlessly couples solar, diesel generator, and grid, supporting black start for mining, island, and off-grid remote scenarios.

Key Specifications at a Glance: 125kW/265kWh | 1P264S | DC 844.8V | 150kVA Isolation Transformer | IP54 / C4

Key Features

  • Advanced Battery Safety: Three-layer protection architecture, real-time fault diagnosis, multiple thermal runaway protections.
  • Smart Energy Management: High-precision SOC/SOH monitoring, adaptive charge/discharge control, availability ≥99.9%.
  • Multi-Energy Integration: Seamless coupling of solar/diesel/grid, source switching ≤20ms.
  • Flexible Load Management: 3P4W unbalanced load support, dynamic phase compensation.
  • Multi-Mode Operation: Grid-tied / island / hybrid modes, supports black start.

Specifications

Model BS07-265-ES-G
Cell Type LiFePO₄
Configuration 1P264S
Rated Battery Voltage DC 844.8V
Capacity 314Ah
Rated Energy 265.267kWh
Usable Energy (90% DOD) 238.74kWh
Cycle Life ≥8,000 cycles
Warranty 5+5 years
PV Input 120kW (DC 200~900V)
AC Rated Power 125kW, 230/400V, 3W+N+PE
Isolation Transformer 400/400V, 150kVA, efficiency ≥97%
Dimensions (W×D×H) 1758×1476×2135mm
Weight 3350kg
Protection IP54, C4 (C5 optional)
Cooling Smart Air Cooling

Certifications & Safety

UN38.3 / MSDS / IEC62619(CB) / IEC63056(CB) / IEC62040-1(CB) / CE-EMC / IEC62477-1 / IEC60529. Three-layer protection + integrated fire suppression.

Applications

  • Mining / field base microgrids
  • Off-grid / weak-grid multi-energy complement
  • Islands and remote industrial parks

Dawnice Bs07 265 Es G 125kW C&I LiFePO4 Energy Storage System - Main Product View

Dawnice Bs07 265 Es G 125kW C&I LiFePO4 Energy Storage System - Internal Structure and Components
Dawnice Bs07 265 Es G 125kW C&I LiFePO4 Energy Storage System - Official Internal Structure Diagram
Dawnice Bs07 265 Es G 125kW C&I LiFePO4 Energy Storage System - Front Angle Product Photography
Dawnice Bs07 265 Es G 125kW C&I LiFePO4 Energy Storage System - Product Detail Image

FAQ

Q: Does it support diesel generator hybrid?

A: Yes, seamless solar-storage-diesel coupling with automatic source switching.

Q: Does it support black start?

A: Yes, black start capability is supported.

Q: Is it suitable for off-grid operation?

A: Yes, capable of long-term off-grid operation.

Q: What is the warranty?

A: 5+5 years.

Order & Support

For BOM quotations and bulk pricing, please contact us. DDP/FOB/EXW trade terms available with export-grade reinforced wooden crating. Authorized Distributor of Dawnice.

Applications

Factory & Industrial Parks

Reduce electricity costs through peak shaving and TOU arbitrage; protect production from grid outages.

Commercial Buildings & Data Centers

Reliable backup power for zero downtime; optimize demand charges and improve energy efficiency.

EV Charging Stations

Add storage capacity to avoid costly grid upgrades; capture peak-valley arbitrage at charging sites.

Residential & Community

Store solar energy for self-consumption; provide backup power during outages and lower utility bills.

Remote & Off-Grid Microgrids

Stable off-grid power for mines, oilfields, and remote areas; reduce diesel dependency and operating costs.

Renewable Energy Integration

Seamlessly integrate with solar and wind systems; smooth output fluctuations and maximize renewable self-consumption.