Dawnice HZEB-HCT HV Rack-Mounted C&I LiFePO4 Energy Storage Battery
The HZEB-HCT Simple Rack is a Dawnice high-voltage rack-mounted battery with modular rack design and flexible expansion, suitable for commercial scenarios requiring rack deployment.
Key Specifications at a Glance: High-Voltage Rack | Modular | Flexible Expansion | DC Side
Key Features
- Standard Rack Deployment: Standard cabinet installation, space-saving.
- Modular Expansion: Add battery modules on demand.
- High Voltage High Efficiency: High-voltage topology for lower line losses.
- BMS Smart Management: Real-time monitoring of each cluster status.
Specifications
| Model | HZEB-HCT Simple Rack |
|---|---|
| Cell Type | LiFePO₄ |
| System | High-Voltage Rack-Mounted |
| Expansion | Modular |
| Warranty | 5+5 years |
| Certifications | UN38.3 / IEC62619 / CE (per official Datasheet) |
Certifications & Safety
BMS protection. Full certifications.
Applications
- Data center backup power
- Commercial and industrial rack deployment
FAQ
Q: What cabinet standard?
A: Compatible with standard 19-inch racks.
Q: How large can it expand?
A: Modular on demand.
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.