The Deye SUN-5kW-SG01HP3-EU-AM2 is a 5 kW three-phase hybrid inverter with high-voltage battery support, ideal for residential and small commercial properties seeking energy independence and backup power.
Key Technical Specifications
Here are the primary technical specifications for the Deye SUN-5K-SG01HP3-EU-AM2 hybrid inverter, compiled from manufacturer and retailer datasheets:
| Specification | Details |
|---|
| Rated AC Output Power | 5 kW |
| Max. PV Input Power | Up to 6.5 kW |
| Max. Efficiency | 97.6% |
| MPPT Trackers | 2 |
| MPPT Voltage Range | 150 – 850 V |
| Battery Voltage Range | 160 – 700 V (High Voltage) |
| Max. Charge/Discharge Current | 30 A |
| AC Output Voltage | 220/380V, 230/400V (3-phase) |
| Ingress Protection (IP) Rating | IP65 (suitable for outdoor installation) |
| Cooling | Natural convection |
| Dimensions (WxHxD) | 408 x 638 x 237 mm (excluding connectors and brackets) |
| Weight | 30.5 kg |
Features and Benefits
- Hybrid Functionality: This inverter integrates solar generation, battery storage, grid power, and can even support a diesel generator input for versatile energy management.
- Uninterruptible Power Supply (UPS): Provides seamless power backup with an off-grid switchover time of less than 10 milliseconds, ensuring essential loads remain powered during outages.
- High Voltage Battery Support: Works with 160-700V high-voltage batteries, which often results in higher system efficiency and less heat dissipation.
- 100% Unbalanced Output: Capable of delivering full power across single or multiple phases as needed, providing flexibility for varying household or commercial loads.
- Scalability: Up to 10 units of this inverter can be connected in parallel for both on-grid and off-grid applications, allowing the system to grow with your energy needs.
- Smart Monitoring: Features an intelligent monitoring platform with optional WiFi, LAN, or 4G connectivity for remote management, parameter updates, and monitoring via an app.
- Programmable Time-of-Use: Users can program up to 6 different time periods for battery charging and discharging, optimizing energy costs based on time-of-use tariffs.
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