Product Advantages
Model | HV-ESS60-A215K | HV-ESS100-A215K | HV-ESS110-A215K | HV-ESS125-A241K |
Product Materials | LiFeP04 | |||
System Parameter | 60kW/215kWh | 100kW/215kWh | 110kW/215kWh | 125kW/241kWh |
Cooling Method | Air-cooled | |||
Battery Parameters | ||||
Rated Battery Capacity | 215kWh | 215kWh | 215kWh | 241kWh |
Rated System Voltage | 768V | 768V | 768V | 768V |
Battery Type | Lithium Iron Phosphate Battery(LFP) | |||
Cell Capacity | 280Ah | 280Ah | 280Ah | 314Ah |
Max.Charge/Discharge Current | 140A | 140A | 140A | 157A |
Battery Series-parallel Connection | 1P*20S*12S | 1P*20S*12S | 1P*20S*12S | 1P*20S*12S |
Service life | 6000 cycles(15+years) | |||
PV Parameters(Optional;none/50kW/150KW) | ||||
Max.PV Input Voltage | 1000V | |||
Max.PV Power | 60KW | 100KW | 110kW | 120kW |
MPPT Quantity | 2 | |||
MPPT Voltage Range | 150-950V | |||
MPPT Full Load Open Circuit Voltage | 350V-800V | 350V-800V | 350V-800V | 350V-800V |
AC Parameters | ||||
Rated AC Power | 60kW | 100kW | 110kW | 120kW |
Nominal AC Current Rating | 144A | |||
Rated AC Voltage | 400Vac/230Vac,3W+N+PE/3W+PE | |||
DC Side Voltage Range | 580~1000V(3P3W)/670~1000V(3P4W) | |||
DC Side Full Load Voltage Range | 625~950V(3P3W)/670~950V(3P4W) | |||
Rated Frequency | 50Hz/60Hz(±5Hz) | |||
Total Current Harmonic Distortion(THD) | <3%(Rated Power) | |||
Power Factor Adjustable Range | 1 Ahead~+1 Behind | |||
General Parameters | ||||
Protection Level | IP54 | |||
Fire Protection System | Aerosols /Perfluorohexanone/Heptafluoropropane | |||
lsolation Method | Non-isolated(Optional Transformer) | |||
Operating Temperature | -25℃~60℃(>45℃ derating) | |||
Altitude | 3000m(>3000m Derating) | |||
Communication Interface | RS485/CAN2.0/Ethernet/Dry contact | |||
Dimension(L*W*H) | 1850*1100*2300mm | |||
Weight (With Batteries Approx.) | 2350kg | 2400kg | 2450kg | 3090kg |
Certification | ||||
Electric Safety | IEC62619/IEC62477 | |||
EMC(Electromagnetic Compatibility) | IEC61000/EN61000/CE | |||
Grid-connected And Islanded | IEC62116 | |||
Energy Efficiency And The Environment | IEC61683/IEC60068 |
Project | Content | default parameters | Whether can set up |
Overcharge Protection | Alarm voltage | 3600mV | Y |
Protection voltage | 3700mV | Y | |
Protection latency time | 1.0S | Y | |
Over-discharge Protection | Alarm voltage | 2800mV | Y |
Protection voltage | 2700mV | Y | |
Protection latency time | 1.0S | Y | |
Charging Over-current Protection | Alarm current | 105A | Y |
Protection current | 110A | Y | |
Protection latency time | 1.0S | Y | |
Short Circuit Protection | Protection current | ≥350A | Y |
Protection latency time | ≤300uS | Y | |
MOSFET High-temperature Protection | Alarm temperature | 90℃ | Y |
Protection temperature | 115℃ | Y | |
Batteries Temperature Protection | Low temperature charging alarm/protection temperature | 0℃/-5℃ | Y |
High temperature charging alarm/protection temperature | 60℃/65℃ | Y | |
The Environmental Temperature Alarm | Low-temperature alarm/protection temperature | -15℃/-20℃ | Y |
High-temperature alarm/protection temperature | 65℃/75℃ | Y | |
A Serial Port Communication | Isolated RS - 232 / RS - 485 | / | Y |
Bluetooth | Bluetooth function | / | optional |
Charging Current Limiting Function | Charging current limiting current | 20A | optional |
Display Screen | Display function | / | optional |
Build an LED display outside the product group to visualize the overall data and status of the battery pack. You can also DIY the operation functions of the display according to your needs.
Not only can we know whether the remaining available capacity of the battery can meet our demand for the total temporary power consumption, but also know when each single battery and battery pack needs to be replaced and repaired.
Yes, and the stackable battery should be stored in a cool, dry, ventilated environment, to avoid contact with fire and heat sources. Batteries should be stacked so that they're stable and won't be bumped, knocked over, or otherwise damaged.
The best storage temperature is 25 ± 5 ℃, the best humidity is 60 ± 15%.
The parallel connection is better, the parallel voltage remains unchanged, and capacity increases.
The voltage is higher current, heat is faster (the battery also has resistance), so the life is short, parallel connection through the two batteries is independent of the current, will not affect the life.