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TITAN 12V 230Ah Underseat Lithium Leisure Battery

Original price £700.00 - Original price £700.00
Original price
£700.00
£700.00 - £700.00
Current price £700.00
TITAN 230Ah Underseat 12V Lithium Leisure Battery

High-output lithium power shaped for low, restricted spaces

2,944Wh of real, usable energy in a low-profile 188mm sheet-metal case designed for suitable seat bases, bench boxes and shallow lockers. A custom 250A continuous BMS supports 3,000W+ inverter systems, while the 25kg battery provides comparable usable energy to approximately 143kg of lead-acid. Front-face terminals, two communications ports and a built-in hibernation control keep every connection accessible from one side.

2,944Wh / 230Ah 250A Custom BMS 188mm Low-Profile Case Lifetime Warranty
TITAN 12V 230Ah Underseat Lithium Leisure Battery in its low-profile sheet-metal case
2,944WhReal usable energy at 12.8V
250AContinuous BMS discharge
188mmLow-profile case height
>3,000Cycles at 100% DoD

Full 230Ah performance in a low, wide under-seat format.

This model uses the same capacity and 250A output as TITAN’s standard 230Ah battery, but rearranges the pack into a 315mm × 280mm × 188mm case. The front-face layout allows the other three sides to sit close to surrounding structures, subject to adequate restraint, cable clearance and the installation requirements.

  • 2,944Wh usable, with up to 245Ah achievable in practice
  • 250A continuous BMS discharge, with 280A for 5 seconds and 300A for 500ms
  • 188mm high — designed for suitable seat bases, bench boxes and shallow lockers
  • Front-face M8 terminals, two communications ports and built-in hibernation control
  • 25kg — approximately 118kg lighter than the stated lead-acid equivalent
  • Victron CANBUS and RS485, with NMEA2000 available on request
  • Built-in heater for sub-zero charging — Rev 06 operating charge range down to −30°C
  • Lifetime, transferable warranty

TITAN permits mounting on the base, side or end, but not inverted. A heavy-duty tie-down strap kit is included and must be used with an installation that prevents movement under braking or impact.

Front face of the TITAN 230Ah Underseat battery showing the recessed M8 terminals and communications ports

Will it fit your installation?

The “Underseat” name describes the case format, not universal vehicle compatibility. Seat bases and conversion furniture vary substantially, so measure the complete available void and account for terminals, cables, ventilation, restraint hardware and access before ordering.

Motorhome / van seat bases Measure first — confirm the full 315mm × 280mm × 188mm case against the actual seat-base internals
Campervan bench and seat boxes Check space — the low profile may suit installations where height is the limiting factor
Caravan lockers / bed bases Check space — allow for front-facing cables, restraint and inspection access
Marine lockers Check space and installation requirements — protect the battery and connections from unsuitable environmental exposure
Off-grid cabinets Check space — suitable where the wide, low footprint matches the available cabinet or shelf
Dimensions 315mm (L) × 280mm (W) × 188mm (H)
Leisure use only: designed for powering appliances and accessories. Not a starter battery — do not use it to crank an engine. “Underseat” does not guarantee fitment beneath every vehicle seat; the final installation remains vehicle- and conversion-specific.

The cell chemistry: LiFePO₄, prismatic, individually graded

TITAN uses lithium iron phosphate (LiFePO₄) prismatic cells — a highly thermally and chemically stable lithium chemistry. No cobalt, no nickel, no acid and no off-gassing during normal use. Compared with the NMC chemistry commonly used in electric vehicles, LiFePO₄ trades some energy density for substantially longer service life and improved thermal stability.

The sealed pack contains no free-flowing acid. TITAN permits this model to be installed on its base, side or end, but specifically excludes inverted installation. End-of-life batteries must be returned to TITAN or an approved battery-recycling facility.

Cycle life built for long-term use

A cycle is one full discharge plus one full recharge. TITAN publishes the following indicative cycle-life figures, with expected cycle count rising as routine depth of discharge becomes shallower:

  • 100% DoD — more than 3,000 cycles
  • 80% DoD — approximately 6,000 cycles
  • 50% DoD — approximately 12,000 cycles
  • 30% DoD — approximately 15,000+ cycles
The LFP-230-US Rev 06 datasheet explicitly specifies more than 3,000 cycles at 100% DoD. The higher reduced-DoD figures are TITAN’s published projections rather than guaranteed minimums. Actual battery life varies with charge regime, temperature, load profile and storage conditions.

Prismatic, not cylindrical

The long, flat prismatic cells use the rectangular case efficiently from end to end. Cylindrical cells leave gaps between cells and require many more welded connections, whereas the prismatic layout increases usable cell volume and makes module-level servicing more practical.

  • Aluminium cell casings distribute heat across a broad surface area
  • The custom BMS monitors voltage, current and temperature and temporarily disconnects the pack if a protection threshold is reached
  • The heater mat contacts the prismatic cell surfaces directly, supporting more even cold-weather warming

Capacity, without the weight

TITAN’s Wh-based comparison uses approximately five and a half Exide ER550-class 115Ah batteries, nominally totalling around 630Ah of lead-acid. One TITAN 230Ah Underseat provides comparable stated usable energy in a single low-profile case.

Capacity is best compared in Wh (watt-hours), because Ah alone does not account for chemistry, permissible depth of discharge or voltage sag. TITAN states that the full rated LiFePO₄ capacity is usable, whereas lead-acid installations normally preserve a substantial reserve to avoid accelerated damage.

25kg. Not 143kg.

The manufacturer comparison equates to approximately five and a half 26kg ER550-class batteries, or around 143kg of lead-acid. The TITAN Underseat weighs no more than 25kg, an indicative saving of approximately 118kg for comparable stated usable energy.

99% manufacturer-stated electrical efficiency

TITAN states 99% electrical efficiency for this model. Actual whole-system efficiency will also depend on temperature, current, cabling and inverter or charger losses. The product-specific datasheet specifies a recommended charging range of 50A to 150A, with a maximum continuous charge rate of 250A.

3,000W+ inverter capability from a low-profile case

The 250A continuous BMS provides high-output capability for appropriately engineered leisure and off-grid systems:

  • 3,000W+ inverter systems: TITAN lists induction hobs, kettles and other high-demand appliances among the intended use cases
  • Fridges, freezers and pumps: continuous capacity with additional allowance for legitimate starting surges
  • Motor movers and winches: 280A for 5 seconds and 300A for 500ms to accommodate short-duration demand
  • High-current charging: 50A–150A recommended, with a 250A maximum continuous charge limit

High-power systems must use appropriately rated inverters, fuses, isolators, cable sizes and terminations. Installation should be designed around the complete system load, not the BMS rating alone.

The TITAN BMS — matched, not off-the-shelf

The battery management system sits between the cells and the external terminals, continuously controlling safe charge and discharge operation. TITAN uses a custom BMS with parameters tuned to the cells fitted inside this specific pack rather than a generic, off-the-shelf profile.

This tuning allows the cells to operate close to their genuine safe working limits without compromising protection. It can also provide approximately 5–10% additional usable headroom: the 230Ah Underseat model can achieve up to 245Ah. Capacity varies between batches, and the BMS automatically remaps its 100% reading so the app reflects the capacity available in the installed pack.

11 protections, all temporary

The custom BMS protects against over-discharge, over-voltage, under-voltage, over-current, short circuit, high temperature, low temperature and cell-balance faults, among other conditions. The protection states self-reset where appropriate or clear when the cause is removed and the battery is returned to an acceptable operating condition. Premium MOSFETs, oversized heat sinks and correctly sized internal conductors support the 250A continuous rating.

Dual active & passive cell balancing

Passive balancing dissipates small differences between cell voltages, while active balancing moves energy between cells when larger differences appear. TITAN uses both methods: passive balancing begins at a 15mV cell difference, while active balancing starts at 30mV and operates dynamically at 1A–5A. Balancing starts above 3.4V per cell and is most relevant near full charge.

Self-heating for sub-zero charging

LiFePO₄ cells must not accept charge below 0°C without controlled heating. The built-in 85W heater system activates automatically at 0°C or below when an external charger is connected.

  • The heater is supplied primarily by the connected charger and draws approximately 5.8A / 85W
  • If charger current is insufficient, the BMS can supplement the heater with up to 3.6A from the battery
  • The heater never draws from the battery when the charger is disconnected
  • The heater switches off when the cells reach at least 10°C, allowing normal charging to proceed
  • The Rev 06 operating charge range is −30°C to 60°C with the heater enabled
  • Discharging is supported from −20°C to 65°C

Automatic & built-in user hibernation

A deeply discharged lithium battery left connected to parasitic loads for months may become unrecoverable. This model provides two hibernation modes:

  • Automatic: the BMS enters a very-low-power state after approximately 48 hours when cell voltage is below 3.3V, limiting hibernation draw to 800µA or less
  • User-controlled: the on/off control is integrated into the front face, so no separate hibernation cable needs to be routed or stored. Charge and discharge are disabled while the BMS remains available

Automatic hibernation wakes when the battery is placed on charge or reactivated through the supported controls.

Handles high inrush currents

Inverters, water pumps, motor movers and compressors can draw very high current for a fraction of a second during start-up. The TITAN BMS is tuned to tolerate legitimate surge loads without unnecessary shutdown, while retaining fast short-circuit protection at approximately 1,200A within 380µs.

Inverter & device communication

Two front-face communications ports allow the battery to exchange data with compatible inverters, chargers and GX devices. The default configuration supports Victron CANBUS, including VE.CAN and BMS.CAN, and is compatible with Victron DVCC. CAN and RS485 communications are built in, while other protocols, including NMEA2000, can be configured on request before dispatch.

Known working with:

  • Victron GX devices (default) — CAN
  • Growatt — CAN
  • Sacolar — CAN
  • Goodwe — CAN
  • Voltronic Power — RS485
  • Sofar — CAN
  • Sorotec — CAN or RS485
  • Deye / SunSynk — CAN or RS485
  • Solis — CAN
  • Luxpower — CAN
  • Pylon Tech — CAN or RS485
  • Sol-Ark — CAN
  • SRNE — RS485
  • MUST — CAN
  • SMA — CAN
  • MEGAREVO — CAN
  • MPP Sola — RS485
  • TBB Power — CAN
  • Senergy — CAN
  • Schneider Electric — CAN
  • Aiswei — CAN
  • SMK — RS485
  • FoxESS — CAN
  • Sungrow — CAN

Protocol cable kits are available separately. Parallel battery communications use Ethernet / CAT5e. Confirm the intended inverter, protocol and multi-battery configuration before ordering so that the setup and cabling can be checked with TITAN.

Measure the void, not the old battery

Under-seat spaces are normally created or modified by the vehicle converter, so they vary even between vehicles sharing the same chassis. Measure the clear installation space against the 315mm × 280mm × 188mm case and allow adequate room for front-facing cables, insulation covers, restraint hardware, ventilation and future service access.

  • Multi-battery systems: TITAN states that up to eight batteries can be paralleled for 1,840Ah and up to four connected in series for a nominal 48V system. The complete bank design, protection and communications configuration must be confirmed before installation
  • Charger: use a dedicated lithium profile where available. AGM or “Sealed” mode is accepted if the charger remains within the required voltage range. Target 14.2V–14.4V; float voltage should remain between 13.3V and 13.9V
  • Split-charge relays & DC-DC chargers: compatible when correctly specified and configured for the installation
  • Terminals: high-performance copper M8 connections on the front face. Two M8 bolts and spring washers are supplied for ring-terminal cabling
  • SAE adapters: hot-stamped brass automotive terminal adapters are available free on request; state this in the order notes if required
  • Terminal orientation: install each ring terminal flat with its crimp barrel and cable pointing away from the case, preventing the eyelet from approaching the adjacent fixing screws
  • Mounting: base, side or end mounting is permitted; do not install the battery upside down. Use the included tie-down kit and secure the battery against movement under braking
  • System protection: use correctly rated fusing, isolation, cabling and restraints appropriate to a battery capable of 250A continuous output

Bluetooth monitoring & the TITAN app

Bluetooth is built in. The free TITAN app for iOS and Android supports 10 languages and displays the battery’s operating data in real time:

  • Live voltage and current in both amps and watts
  • State of charge as a percentage and in Ah
  • Individual cell voltages
  • Internal temperature
  • Estimated time to full or empty
  • Protection trip history
  • Live balancing activity

The app can monitor batteries used in series or parallel and automatically recalculate totals. Whether the system uses one 230Ah Underseat battery or several in a correctly configured bank, the displayed totals reflect the connected batteries.

Lifetime warranty, transferable

TITAN backs its Grade A cell leisure batteries with a warranty that lasts for the lifetime of the battery and can transfer with the vehicle or installation. Groves Batteries Ltd, TITAN’s parent company, has traded continuously since 1948.

The warranty does not cover normal wear. TITAN advises that LiFePO₄ capacity may reduce by approximately 5–10% per decade under normal use. A new 230Ah battery may show up to around 245Ah, with manufacturer-indicative figures of approximately 215Ah after 10 years and 195Ah after 20 years. Actual degradation depends on temperature, depth of discharge, charging and load profile.

The warranty covers premature component failure caused by manufacturing faults. Warranty terms apply, and proof of purchase plus the battery ID will be required. Please contact us first so that we can coordinate diagnosis and any claim with TITAN.

Manufacturer’s illustrative ten-year cost comparison

Using TITAN’s £700 manufacturer price as the comparison basis, the 230Ah Underseat battery equates to approximately £70 per year over 10 years.

TITAN compares this with two Exide AGM EP2100 batteries costing around £1,040 per bank and an estimated four-year design life. Replacing that bank roughly 2.5 times over the same period equates to approximately £260 per year, before replacement labour is considered.

Manufacturer-indicative saving: around £1,900 over 10 years, before accounting for weight, space, efficiency and maintenance. These figures are illustrative and will vary with battery prices, installation costs and operating conditions.

Module-based repair, not automatic replacement

If a serviceable component fails, TITAN can repair the affected module — such as the BMS, balance board or an individual cell — instead of automatically discarding the complete battery. This can reduce repair cost, material waste and turnaround time.

Full technical specification

Manufacturer part number LFP-230-US
Nominal voltage 12.8V
Capacity 230Ah (2,944Wh) — up to 245Ah achievable
Internal resistance <10mΩ
Electrical efficiency 99% (manufacturer-stated)
Self-discharge <3% per month at 25°C
Cell chemistry LiFePO₄ lithium iron phosphate
Cell type Prismatic, individually graded cells
Cycle life >3,000 cycles at 100% DoD; longer at reduced DoD
BMS continuous discharge 250A
BMS peak discharge 280A for 5 seconds; 300A for 500ms
Maximum continuous charge 250A
Recommended charge current 50A to 150A
Charge voltage 14.2V to 14.4V
Float voltage 13.3V to 13.9V
Pack over-voltage protection 14.4V trip; 14.0V release
Pack under-voltage protection 10.0V trip; 12.0V release
Short-circuit protection 1,200A at 380µs
Manufacturer-stated maximum configuration Up to 4 in series (nominal 48V) and 8 in parallel (1,840Ah); system design must be confirmed
Charge temperature range −30°C to 60°C with heater enabled
Discharge temperature range −20°C to 65°C
Heater activation ≤0°C when connected to a charger
Heater deactivation ≥10°C
Heater consumption 85W ±5% / 5.8A
BMS standby draw ≤23mA idle; ≤46mA with communications active
Hibernation draw ≤800µA after approximately 48 hours at <3.3V per cell
User hibernation control Built into the front face; no separate control cable required
Cell balance method Active & passive (dual)
Inverter communications CAN, RS485 & Victron VE.CAN; NMEA2000 available on request
Victron DVCC compatible Yes, through BMS.CAN
Parallel data link Ethernet / CAT5e
Bluetooth monitoring Built in — free TITAN app for iOS & Android, supporting 10 languages
Dimensions 315mm (L) × 280mm (W) × 188mm (H), ±0.5mm
Weight ≤25kg
Case material Sheet metal, under-seat case format
Permitted mounting orientations Base, side or end; do not install inverted
Terminal type M8 bolt connections on the front face; bolts included
Type approvals UN38.3, CE, RoHS, UKCA, UN ECE R10 (E-Mark), EMC EN 61000-6
Engineering & quality control UK-engineered, with end-pack quality control in Cheltenham by Groves Batteries Ltd
Warranty Lifetime and transferable, subject to manufacturer terms

Included hardware & documentation

  • 1 × TITAN 230Ah Underseat 12V Lithium Leisure Battery
  • 2 × M8 terminal bolts with spring washers
  • 1 × Heavy-duty tie-down strap kit
  • Built-in user hibernation control — no separate cable required

The current LFP-230-US datasheet and TITAN user manual are available digitally. Hot-stamped brass SAE/automotive adapters are free on request. Inverter and protocol-specific communications cable kits are separate accessories.

Important fulfilment, delivery & warranty information

To keep things fully transparent, this product is supplied and fulfilled by one of our trusted UK-based third-party partners. It is not stocked directly at our own premises.

  • Partner-fulfilled product: dispatched directly by the supplier from its own fulfilment operation
  • Heavy-item delivery: at up to 25kg, this battery requires suitable handling. The supplier will select the appropriate delivery method for the destination; times and arrangements depend on stock and carrier availability, and tracking details will be provided when available
  • Manufacturer-backed lifetime warranty: technical diagnosis and module-based repair are supported by TITAN’s engineers in Cheltenham. Please contact us first so that we can coordinate any warranty request in accordance with the manufacturer’s terms
  • Custom communications setup: if you need NMEA2000 or another non-default inverter protocol, state this in the order notes so that compatibility and configuration can be checked before dispatch
  • SAE terminal adapters: if you require round automotive terminals, request the free brass adapters in the order notes
  • Communications cables: protocol-specific cable kits are separate accessories; confirm what your installation requires
  • Support from us: if you experience an issue, contact us first and we will help coordinate the next steps with TITAN where required

Your statutory rights under UK consumer law are not affected. Where applicable, we remain your point of contact for order queries, returns guidance and support coordination.