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
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Product details: Dacpol’s highly efficient Energy Storage Solutions with popular types of lithium-ion technologies LFP and NMC can meet project requirements of varying scale and is suitable for various environmental conditions, making it an ideal solution for grid ancillary services and C&I applications while ensuring reliability and safety.
BASIC TECHNICAL PARAMETERS
Model | Type | Chemistry | Info |
---|---|---|---|
IBW66NMC666M | Master | NMC | 2-pole blow-out power contactor 800A continuous current (as a main switch) |
IBW133NMC666S | Master | – | |
Set 1 x IBW66NMC666M + 2 x IBW133NMC666S | Master + 2 x slave | Amount of cabinets: 3 pcs Built-in 2-pole contactor 800A continuous current with ceramic arc extinguishing chambers |
ADDITIONAL INFORMATION
THE ENERGY STORAGE INCLUDES
SPECIFICATIONS
Parameter | Unit | IBW66NMC666M | IBW133NMC666S | Set 1 x IBW66NMC666M + 2 x IBW133NMC666S |
---|---|---|---|---|
Enegry capacity | kWh | 66.60 | 133.2 | 333 |
Nominal capacity | Ah | 100 | 500 | |
Nominal voltage | V DC | 666 | ||
Cut-off voltage | V DC | 504 | ||
Maximum voltage | V DC | 770 | ||
Discharge current | A | 100 | 200 | 500 |
Charging current | A | 80 | 160 | 400 |
Instantaneous current (5 sec) | A | 300 | 600 | 1500 |
Protection class | Nd | IP 42 | ||
Charging temperature: Recommended: | °C | 0°C to +50°C +10°C to +40°C |
||
Discharge temperature: Recommended: | °C | -20°C to +50°C +10°C to +40°C |
||
Possibility of expansion / scalability | Nd | up to 6 slaves per one master; master systems can also be connected in parallel up to 5MWh | ||
Communication | Nd | Modbus/Can/Eth | ||
Power supply | V DC | 9-36 | ||
Energy metering | kWh / % | SOC | ||
Weight | kg | 600 | 990 | 340 |
Cabinet dimensions | mm | 800x800x2000 (L x W x H) |
OTHER IMPORTANT INFORMATIONS
Due to transport safety regulations, batteries are delivered from factories in a partially discharged state, most often with a load condition in the range of 20% - 30% of electric capacity. A brand new battery in this condition can be stored for a maximum period of 1.5 years without loss of parameters in the recommended, optimal temperature and humidity conditions.
Longer storage is possible under the condition of regular checks of cell parameters and possible maintenance activities, in particular charging to the state of charge with approx. 50% of their capacity and further checking the condition of the batteries at intervals of maximum every 6 months.
The batteries are subject to the aging process and they naturally lose their parameters during use. The typical estimated lifetime of a Li-ion battery is four to ten years or 800-5000 full cycles. Depending on the application, 800-3500 duty cycles are typically achieved. The cycle life can be increased by regularly using the batteries in incomplete cycles, accepting a slightly shorter operating time in each cycle. This means charging to an incomplete level (the end of charging at the level of e.g. 90%, not 100%) and preventing discharging to 0%.
Are you interested in this product? Do you need additional information or individual pricing?
Product details: Dacpol’s highly efficient Energy Storage Solutions with popular types of lithium-ion technologies LFP and NMC can meet project requirements of varying scale and is suitable for various environmental conditions, making it an ideal solution for grid ancillary services and C&I applications while ensuring reliability and safety.
BASIC TECHNICAL PARAMETERS
Model | Type | Chemistry | Info |
---|---|---|---|
IBW66NMC666M | Master | NMC | 2-pole blow-out power contactor 800A continuous current (as a main switch) |
IBW133NMC666S | Master | – | |
Set 1 x IBW66NMC666M + 2 x IBW133NMC666S | Master + 2 x slave | Amount of cabinets: 3 pcs Built-in 2-pole contactor 800A continuous current with ceramic arc extinguishing chambers |
ADDITIONAL INFORMATION
THE ENERGY STORAGE INCLUDES
SPECIFICATIONS
Parameter | Unit | IBW66NMC666M | IBW133NMC666S | Set 1 x IBW66NMC666M + 2 x IBW133NMC666S |
---|---|---|---|---|
Enegry capacity | kWh | 66.60 | 133.2 | 333 |
Nominal capacity | Ah | 100 | 500 | |
Nominal voltage | V DC | 666 | ||
Cut-off voltage | V DC | 504 | ||
Maximum voltage | V DC | 770 | ||
Discharge current | A | 100 | 200 | 500 |
Charging current | A | 80 | 160 | 400 |
Instantaneous current (5 sec) | A | 300 | 600 | 1500 |
Protection class | Nd | IP 42 | ||
Charging temperature: Recommended: | °C | 0°C to +50°C +10°C to +40°C |
||
Discharge temperature: Recommended: | °C | -20°C to +50°C +10°C to +40°C |
||
Possibility of expansion / scalability | Nd | up to 6 slaves per one master; master systems can also be connected in parallel up to 5MWh | ||
Communication | Nd | Modbus/Can/Eth | ||
Power supply | V DC | 9-36 | ||
Energy metering | kWh / % | SOC | ||
Weight | kg | 600 | 990 | 340 |
Cabinet dimensions | mm | 800x800x2000 (L x W x H) |
OTHER IMPORTANT INFORMATIONS
Due to transport safety regulations, batteries are delivered from factories in a partially discharged state, most often with a load condition in the range of 20% - 30% of electric capacity. A brand new battery in this condition can be stored for a maximum period of 1.5 years without loss of parameters in the recommended, optimal temperature and humidity conditions.
Longer storage is possible under the condition of regular checks of cell parameters and possible maintenance activities, in particular charging to the state of charge with approx. 50% of their capacity and further checking the condition of the batteries at intervals of maximum every 6 months.
The batteries are subject to the aging process and they naturally lose their parameters during use. The typical estimated lifetime of a Li-ion battery is four to ten years or 800-5000 full cycles. Depending on the application, 800-3500 duty cycles are typically achieved. The cycle life can be increased by regularly using the batteries in incomplete cycles, accepting a slightly shorter operating time in each cycle. This means charging to an incomplete level (the end of charging at the level of e.g. 90%, not 100%) and preventing discharging to 0%.
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