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The offered product is a three-phase energy storage system equipped with an E12KT-D22 hybrid inverter and four BP48100PF1-G2 battery pack. The BlueSpark series stands out for its modular design, which significantly simplifies installation and future system expansion. The battery packs and inverter can be stacked on top of each other without the need for additional wiring. You can connect up to 8 batteries to a single inverter. The manufacturer used LFP (LiFePO4) batteries with a usable capacity of 4.6 kWh. The inverter housing features an IP66 protection rating, and the battery housing is IP55 rated, providing the entire system with enhanced resistance against dust and moisture ingress.
When purchasing the product, you will receive one E12KT-D22 inverter and four BP48100PF1-G2 battery module.

Hybrid inverter
The used E12KT-D22 inverter supports a maximum input power of 22 kW and a maximum voltage of 1000 V (nominal 720 V) on the PV input. On the grid output (AC), the nominal power is 12000 W and the nominal voltage is 400 Vac. The inverter achieves an efficiency of up to 97.6%, which minimizes energy losses. The use of two MPPTs allows for improved system operation when managing different sections of panels.
LFP (LiFePO4) battery 4.6 kWh
The used BP48100PF1-G2 battery pack utilizes LFP (LiFePO4) technology and EVE cells. The maximum usable capacity is 4.6 kWh (totaling 23 kWh in this set) at a nominal voltage of 51.2 V. The discharge power can reach up to 4096 W, and the battery efficiency is over 94%. You can use up to 8 battery modules in the entire system.


Savings and smart energy management
The offered product will allow you to reduce electricity costs; when combined with photovoltaic panels, it can drastically reduce energy consumption from the grid. It can also be used in locations without photovoltaics, allowing you to manage energy and, for example, charge the energy storage during off-peak hours (the second tariff zone) when grid electricity is cheaper. The device is compatible with heat pumps and SG Ready.
Easy installation and simple expansion
The battery modules connect to the inverter in a stack, with each module mounted on top of the other. You do not need additional wiring during installation, as the individual components plug into each other in a straightforward way. Future expansion of the entire system is also very simple. Additionally, this design saves space; as the system expands, it only grows upwards rather than outwards.

Specification
| KSTAR BP48100PF1-G2 | |
| General Parameters | |
|---|---|
| Battery type | LFP (LiFePO4) |
| Cell brand | EVE |
| Nominal capacity | 5,12 kWh |
| Usable capacity | 4,6 kWh |
| Maximum Depth of Discharge | 100% |
| Nominal voltage | 51,2 V |
| Operating voltage range | 44,8 ~ 57,6 V |
| DC/DC energy conversion efficiency | > 94% |
| Weight | 51 kg |
| Dimensions (W x H x D) | 725 x 418 x 165 mm |
| IP protection rating | IP65 |
| Warranty | 5-year product warranty, 10-year performance warranty |
| Certificates | Module: IEC/EN 62619; UN38,3; Cell: IEC/EN 62619; UN38,3; UL1973 |
| Operation | |
| Max. continuous charging current | 50 A (single battery) |
| Max. continuous charging power | 2825 W |
| Max. continuous discharging current | 80 A (single battery) |
| Max. continuous discharging power | 4096 W |
| Operating temperature range | -10 to 50℃ (charging); -10 to 50℃ (discharging) |
| Cooling type | Passive cooling |
| Operating humidity | 0 ~ 90% |
| BMS | |
| Max. number of connected modules | Max. 8 |
| Capacity | 100 / 200 / 300 / 400 / 500 / 600 / 700 / 800 Ah |
| Communication | CAN |
| Monitored parameters | System voltage, current, battery voltage, battery temperature, PCB temperature measurement |
| E12KT-D22 | |
| PV Input | |
|---|---|
| Max. DC input power @STC | 22 kW |
| Maximum PV voltage | 1000 V |
| Nominal voltage | 720 V |
| MPPT voltage range | 140 ~ 950 V |
| Full load MPPT voltage range | 350 ~ 800 V |
| Start-up voltage | 200 V |
| Number of MPPTs | 2 |
| Number of strings per MPPT | 1 |
| Max. input current per MPPT | 20 A |
| Maximum short-circuit current per MPPT | 25 A |
| AC Output and Input (Grid) | |
| Max. continuous AC output power | 12000 W |
| Maximum AC apparent power | 13200 VA |
| Maximum continuous input power | 22000 W |
| Nominal AC voltage | 400 Vac |
| Nominal frequency | 50 Hz / 60 Hz (±5 Hz) |
| Nominal output current | 17,4 A |
| Maximum output current | 26,1 A |
| Max. input current | 42 A |
| Power factor (cosΦ) | -0.8 (leading) ~ 0.8 (lagging) |
| THDi | < 3% |
| AC Output (Backup) | |
| Nominal AC output power | 12000 W |
| Maximum AC output power | 12000 VA |
| Rated output current | 17,4 A |
| Max. output current | 26,1 A |
| Nominal output voltage | 400 V |
| Nominal output frequency | 50 Hz / 60 Hz |
| Output THDv (at linear load) | 2% (linear load) |
| DC Terminal (Battery) | |
| Battery type | LFP (LiFePO4) |
| Nominal battery voltage | 51,2 V |
| Charging voltage range | 44 ~ 58 V |
| Max. charge/discharge current | 200 A / 240 A |
| Rated charge/discharge power | 10000 W |
| Battery capacity | 100 ~ 800 Ah |
| Efficiency | |
| Max. PV efficiency | 97,2 % |
| European efficiency (EU) | 95,5 % |
| Protections | |
| DC Switch | YES |
| Anti-islanding protection | YES |
| RCD protection | YES |
| PV reverse polarity protection | YES |
| AC overcurrent protection | YES |
| Overcurrent protection | YES |
| Surge protection | DC Type II; AC Type III |
| Remote shutdown | YES |
| AFCI | Optional |
| General Specification | |
| Dimensions (W x H x D) | 725 × 490 × 245 mm |
| Weight | 43 kg |
| Operating temperature range | -25°C to +60°C (derating occurs above 40°C) |
| Cooling type | Natural convection |
| Maximum operating altitude | ≤ 4000 m |
| Operating humidity | 0 ~ 95% (non-condensing) |
| IP protection rating | IP66 |
| Topology | High frequency isolation |
| Communication | RS-485 / CAN2,0 / WIFI |
| Control / Monitoring | LED / APP / WEBSITE |
| Certificates and standards | IEC/EN62109-1&2; IEC/EN 61000-6-1; IEC/EN 61000-6-2; EN 61000-6-3; IEC/EN 61000-6-4; IEC/EN 61000-3-11; EN 61000-3-12; IEC 60529; IEC 61727; IEC 62116; IEC 60068; IEC 61683; EN 50549-1; EN 50549-10; VDE-AR-N 4105; NC RfG:2018; C10/C11 |





