Practical renewable energy technology that reduces costs and helps the environment
Model | LV-IESS-RH10.240Aa-Unit |
---|---|
Nominal Voltage (Vdc) | 51.2 |
Rated Capacity (A) | 200 |
Battery Impedance (mΩ) | ≤ 50 |
Shipment Voltage (Vdc) | 51.2~58.4 |
Limited Charging Voltage (Vdc) | 58.4 |
Battery Weight (Kg) | 95 |
Recommended Charging Method | |
Ambient Temperature (°C) | 0~15 / 15~55 |
Relative Humidity | 65±20% |
Charging Current | Max 0.2C / Max 0.5C |
Limited Charging Voltage (Vdc) | Max 58.4 |
Cut-off Current of CV | 0.025C |
Recommendation Charge/Discharge Current | 0.5C 100A |
Maximum Charge/Discharge Current | 1.0C 200A |
Discharge Cut-off Voltage (Vdc) | 40 |
Working Environment | |
Operating Temperature | Charge 0~55°C / Discharge -20~55°C |
Storage Environment (50% state of charge) | ≤3 Months -20~45°C / >3 Months 25±3°C |
Humidity | 65±20%RH |
Model | LV-IESS-RH14.336Aa-Unit |
---|---|
Nominal Voltage (Vdc) | 51.2 |
Rated Capacity (A) | 280 |
Battery Impedance (mΩ) | ≤ 50 |
Shipment Voltage (Vdc) | 51.2~58.4 |
Limited Charging Voltage (Vdc) | 58.4 |
Battery Weight (Kg) | 115 |
Recommended Charging Method | |
Ambient Temperature (°C) | 0~15 / 15~55 |
Relative Humidity | 65±20% |
Charging Current | Max 0.2C / Max 0.5C |
Limited Charging Voltage (Vdc) | Max 58.4 |
Cut-off Current of CV | 0.025C |
Recommendation Charge/Discharge Current | 0.5C 140A |
Maximum Charge/Discharge Current | 1.0C 280A |
Discharge Cut-off Voltage (Vdc) | 40 |
Working Environment | |
Operating Temperature | Charge 0~55°C / Discharge -20~55°C |
Storage Environment (50% state of charge) | ≤3 Months -20~45°C / >3 Months 25±3°C |
Humidity | 65±20%RH |
The system achieves an incredible level of reliability through its fully modular architecture, which enables multiple levels of redundancy;
It offers unparalleled real-time data in your pocket and on your laptop, enabling you to understand site operations anytime, anywhere;
Eliminate diesel handling, spills and devastating diesel fires. Lack of moving parts makes the system orders of magnitude safer by design;
Remotely monitored by Lithium Valley for any issues. Quick and dedicated service team to support you on site.
Part number | PI050K100P–EU | PI100K200P–EU |
---|---|---|
DC Data | ||
Battery chemistry | Lithium Iron Phosphate (LiFePO4) | |
Cycle life | ≥6000 (@25c, 0.5C/0.5c) | |
Cell spec | 3.2V/100Ah | |
Battery module capacity | 10.24kWh | |
String configuration | 2P160S | |
Number of strings | 1 | 2 |
Rated energy capacity | 102.4kWh | 204.8kWh |
Rated voltage | 512V | |
Voltage range | 448V–584V | |
PV Data | ||
Max. DC input power (W) | 65kW | 130kW |
Max. DC input voltage (V) | 1000Vdc | |
MPPT voltage range (V) | 150–850Vdc | |
Full load DC voltage range (V) | 450–850Vdc | |
No. of MPPT Trackers | 4 | 8 |
AC Output Data | ||
Rated AC output active power | 50kW | 100kW |
Max AC output active power | 55kW | 110kW |
AC output rated current | 75.8A / 72.5A | 151.6A / 145A |
Max. AC output rated current | 83.4A / 79.7A | 166.8A / 159.4A |
Peak power (off-grid) | 1.5 times the rated power, 10s | |
Power factor adjustment range | 0.8 leading to 0.8 lagging | |
Output voltage | 3L/N/PE 220/380, 320/400Vac | |
Output frequency | 50/60Hz | |
Grid type | Three phase | |
Total Harmonic Distortion (THD) | ≤3% (of nominal power) | |
DC Current Injection | <0.5% In | |
Efficiency | ||
Max. Efficiency | 97.60% | |
Euro Efficiency | 97.00% | |
MPPT Efficiency | 99.90% | |
General Data | ||
Dimension (W*D*H) | 1100 x 1100 x 2380 mm | 2100 x 1100 x 2380 mm |
Weight of the whole system | <1.5T | <2.9T |
Degree of protection | IP54 / IP65 (Inverter) | |
Cooling method | HVAC | |
Fire Fighting System | Hot aerosol fire extinguishing | |
Operating temperature range | ~20~40°C | |
Relative humidity | 0~95% (non-condensing) | |
Max working altitude | ≤3,000m (9,842ft) | |
Communication interfaces | CAN / RS485 | |
Inverter Grid Regulation | VDE4105, IEC61727/62116, VDE0126, AS4777.2, CEI 0 21, EN50549-1, G98, G99, C10-11, UNE217002, NBR16149, NBR16150 | |
Standards | UN38.3 / IEC / EN 61000-6-1/2/3/4, EC / EN 62109-1, EC / EN 62109-2 |