Victron Energy BAT512110610 12.8V 100Ah Lithium Iron Phosphate (LiFePO4) Rechargeable Lithium Smart Battery with Integrated Cell Balancing and Cell Monitoring

LFP-BMS12.8/100
Victron Energy BAT512110610 12.8V 100Ah Lithium Iron Phosphate (LiFePO4) Rechargeable Lithium Smart Battery with Integrated Cell Balancing and Cell Monitoring

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Model No LFP-BMS12.8/100
Selling Unit EACH
Description Victron Energy BAT512110610 12.8V 100Ah Lithium Iron Phosphate (LiFePO4) Rechargeable Lithium Smart Battery with Integrated Cell Balancing and Cell Monitoring
Original Brand Victron Energy BAT512110610d
Chemistry Lithium Iron Phosphate
Voltage 12.8V
Nominal Capacity 100000mAh
Maximum Continuous
Discharge Current
180000
Brand Victron Energy
Termination M8
Width 321mm
Height 197mm
Length/Breadth/Depth 152mm
Weight 15000g
Weight(kg) 15
Brand Victron Energy

High capacity 12.8V 100Ah Lithium Iron Phosphate (LiFePO4) smart battery module with built-in Bluetooth

With bluetooth capabilities, users can monitor their Victron LiFePO4 battery through the Victron Connect app (available for iOS and Android).

Specifications:

  • Cycle life: 2500 cycles (80% DoD), 3000 cycles (70% DoD), 5000 cycles (50% DoD)
  • Max. continuous discharge current: 180A
  • Recommended continuous discharge current: ≤90A
  • End of discharge voltage: 11V
  • Charge voltage: 14.0V - 14.4V (14.2V recommended)
  • Float voltage: 13.5V
  • Max. charge current: 270A
  • Recommended charge current: ≤45A
  • Operating temperature: -20°C to +50ºC
  • Storage temperature: -45°C to +70ºC
  • Humidity (non-condensing): max. 95%
  • Protection class: IP22

Consider implementing Victron Energy's range of Lithium Iron Phosphate modules in high energy demand applications:

  • More RUGGED compared to lead acid batteries. 

LiFePO4 batteries do not need to be fully charged all the time. A partial charge may even slightly improve service life. In addition, LiFePO4 batteries have a wider operating temperature range, excellent cycling performance, lower internal resistance and higher rate of efficiency than lead acid batteries.

Lead acid batteries will fail prematurely due to sulfation if the battery is rarely, or never at all, fully charged or if the battery is stored for long periods partially or fully discharged. 

  • Higher ENERGY EFFICIENCY than lead acid batteries.
Round trip energy efficiency (discharge from 100% to 0% and back to 100% charged) of LiFePO4 batteries is 92% compared to lead acid batteries at around 80%. In off-grid applications like solar and/or wind, better energy efficiency means less energy loss.
  • SMALLER and LIGHTER than lead acid batteries.
LiFePO4 batteries are up to 70% smaller and 70% lighter than equivalent lead acid batteries.


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