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Victron Energy  |  SKU: BAT-LIT-VIC-SMART-24V-200AH  |  Barcode: 8719076054610

MPN: BAT524120610

Victron Energy – 24V/200Ah Smart LiFePO4 Battery

$3,116.78 CAD
Shipping calculated at checkout.

The Victron Energy Smart LiFePO4 (Lithium Iron Phosphate) Battery – 24V/200Ah offers efficient and connected power storage. With advanced LiFePO4 technology and Bluetooth connectivity, this battery allows for convenient monitoring and control of your energy system.

Victron Energy – 24V/200Ah Smart LiFePO4 Battery is backordered and will ship as soon as it is back in stock.


Warranty

This product is covered by a 3 years limited warranty

Delivery and Shipping

Orders are shipped within 2 business days. If a problem prevents us from shipping your order within this time, we will notify you.

Depending on your delivery location, transit time will vary from 1 day to 5 days

Note for US and Internationnal buyers: the customer is responsible for paying any import costs to the shipping carrier, such as duties, import taxes, or brokerage/disbursement fees which may apply upon delivery.

Victron Energy – 24V/200Ah Smart LiFePO4 Battery at a glance

  • Technology

    LiFePO4

  • Group Size

    N/A

  • Dimensions (H x W x D)

    9.3 X 25.6 X 6.4 in
    237 X 650 X 163 mm

  • Weight

    86 lbs / 39 kg

  • Voltage

    24V

  • Capacity (Ah)

    200 Ah

  • Capacity (kWh)

    5.12 kWh

Victron Energy – 24V/200Ah Smart LiFePO4 Battery

Victron Energy Lithium Battery Smart batteries are Lithium Iron Phosphate (LiFePO4) batteries and are available in 12.8 V or 25.6 V in various capacities. They can be connected in series, parallel and series/parallel so that a battery bank can be built for system voltages of 12 V, 24 V or 48 V. The maximum number of batteries in one system is 20, which results in a maximum energy storage of 84 kWh in a 12 V system and up to 102 kWh in a 24 V1) and 48 V1) system.

A single LFP cell has a nominal voltage of 3.2 V. A 12.8 V battery consists of 4 cells connected in series and a 25.6 V battery consists of 8 cells connected in series.

Why lithium-iron-phosphate?

Rugged

A lead-acid battery will fail prematurely due to sulfation:
• If it operates in deficit mode during long periods of time (i.e. if the battery is rarely, or never at all, fully charged).
• If it is left partially charged or worse, fully discharged (yacht or mobile home during wintertime).
A LFP battery:
• Does not need to be fully charged. Service life even slightly improves in case of partial charge instead of a full charge. This is
a major advantage of LFP compared to lead-acid.
• Other advantages are the wide operating temperature range, excellent cycling performance, low internal resistance and
high efficiency (see below).

LFP is therefore the chemistry of choice for demanding applications.

Efficient

• In several applications (especially off-grid solar and/or wind), energy efficiency can be of crucial importance.
• The round-trip energy efficiency (discharge from 100 % to 0 % and back to 100 % charged) of the average lead-acid battery is
80 %.
• The round-trip energy efficiency of a LFP battery is 92 %.
• The charge process of lead-acid batteries becomes particularly inefficient when the 80 % state of charge has been reached,
resulting in efficiencies of 50 % or even less in solar systems where several days of reserve energy is required (battery
operating in 70 % to 100 % charged state).
• In contrast, a LFP battery will still achieve 90 % efficiency under shallow discharge conditions.

Size and weight

• Saves up to 70 % in space
• Saves up to 70 % in weight

Expensive?

• LFP batteries are expensive when compared to lead-acid. But in demanding applications, the high initial cost will be more than compensated by longer service life, superior reliability and excellent efficiency.

Bluetooth

• With Bluetooth cell voltages, temperature and alarm status can be monitored.
• Instant readout: The VictronConnect App can display the most important data on the Device list page without the need to
connect to the product.
• Very useful to localize a (potential) problem, such as cell imbalance.

Six tailored BMS solutions

• There are 6 different BMS models tailored for various applications available for use with the Lithium Battery Smart. The system design and BMS selection guide in the battery manual provides an overview and explains the differences between them and their typical use.

1) To reduce required balancing time, we recommend using a little different batteries in series as possible for the application. 24 V systems are best built using 24 V batteries. And 48 V systems are best built using two 24 V batteries in series. While the alternative, four 12 V
batteries in series, will work, it will require more periodic balancing time.


CYCLE LIFE (capacity ≥ 80 % of nominal)

80 % DoD 2500 cycles
70 % DoD 3000 cycles
50 % DoD 5000 cycles

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