RENAC RENA5000 series C&l Hybrid&DG microgrid system applies standardized modules design, enabling quickly delivery and installation, while supporting flexible parallel connection.Self-developed 5S highly fusion, customized software development to adapt to multiple application scenarios.Leverages cutting-edge VSG grid-forming technology,ensuring seamless power coordination between ESS and DG for supplying power.
ESS&DG cooperation
Cell / Pack / Cluster / System Level Protection
Flexible parallel connection
Support 100% off-grid unbalanced
loads, transformerless
| System Model | RENA5000-P125B261 | RENA5000-P250B522 |
| PV Smart Controller | PVS-125K*1 | PVS-125K*2 |
| Max.Recommended PV Power [kWp] | 187.5 | 375 |
| Max.PV Input Current per MPPT[A] | 40 | |
| No. of MPP Trackers/No. of input Strings per Tracker |
10 / 2 | 10*2 / 2 |
| Battery | ||
| Nominal Energy [kWh] | 261 | 522 |
| Voltage Range [V] | 728~949 | |
| Max.Continuous Charging/ DischargingCurrent [A] |
157/157 | 314/314 |
| Max. Generator Input [kW] | 125 | 250 |
| Max. AC Apparent Power [kVA] | 138 | 276 |
RENAC RENA5000 series C&l Hybrid&DG microgrid system applies standardized modules design, enabling quickly delivery and installation, while supporting flexible parallel connection.Self-developed 5S highly fusion, customized software development to adapt to multiple application scenarios.Leverages cutting-edge VSG grid-forming technology,ensuring seamless power coordination between ESS and DG for supplying power.
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Remote data monitoring and control from the app in real-time, with the ability to change settings and firmware upgrades remotely, understand pre-alarm messages and faults and keep track of real-time developments.
Intelligent temperature management is changed in battery temperature during system operation, the system will automatically turn on the air conditioning to adjust the temperature according to the temperature to ensure that the whole module is stable within the operating temperature range.
The highly accurate SOX algorithm, using a combination of the ampere-time integration method and the open-circuit method, provides accurate calculation and calibration of the SOC and accurately displays the real-time dynamic battery SOC condition.