


An RV battery bank has to do more than light the cabin. It may run a refrigerator through the night, support a furnace fan in cold weather, keep devices charged and supply an inverter for appliances away from hookups. A collection of heavy lead-acid batteries can fill a compartment while offering less routinely usable energy than its rated capacity suggests. Epoch LiFePO4 lets you build a bank with more practical energy for the available space, steadier voltage and no flooded-cell watering. Bluetooth-equipped models make it easier to see remaining charge before the next night off-grid.
The Epoch RV Battery Bank Kits collection brings together fifteen individual batteries across 12V, 24V and 48V, plus monitoring accessories. The products shown are building blocks for a planned bank; a battery listing does not automatically include an inverter, charger, cables or fuses. Start with the RV's loads, desired days between charges and existing system voltage, then choose batteries and supporting parts that work together.
A weekend camper may need a single 12V battery for lights, pump and refrigerator controls. A larger motorhome running an inverter, several displays and all-day refrigeration may need more stored energy and output. Estimate daily watt-hours and the inverter's largest continuous and startup demands, then account for solar, shore power, generator and driving time. A bigger amp-hour number is not enough if the battery management system or wiring cannot supply the current the inverter requests.
A single high-capacity Epoch case can sometimes simplify a compartment that held several lead-acid batteries and jumpers. Where multiple batteries are needed, plan the entire bank's footprint, cable routing, service access and weight distribution. Group sizes do not guarantee the case, handles and terminals will fit an old tray. Less installed weight is useful only when the new mounting remains secure during travel.
Keep an existing 12V RV distribution system on a compatible supply, or design the conversion equipment needed when using a 24V or 48V bank. Higher voltage can reduce current for a given inverter power, but the charger, inverter, fuses, disconnects and DC-DC supply for 12V loads must match. These four Bluetooth-equipped examples illustrate a compact bank, a high-energy 12V case and native higher-voltage choices.
| Epoch battery | Energy, size and output | Possible bank role |
|---|---|---|
| 12V 105Ah Essential | 1.34kWh; Group 24; 22.1 pounds; 105A continuous. | Compact 12V bank for modest loads, or a matched multi-battery plan allowed by its manual. |
| 12V 334Ah Essential | 4.28kWh; Group 31; 60 pounds; 200A continuous. | Substantial 12V energy in one case for a suitable inverter and charging setup. |
| 24V 230Ah Essential | 5.89kWh; Group 8D; 84 pounds; 200A continuous. | Native 24V bank in an RV system designed for 24V power conversion. |
| 48V 100Ah V2 Elite | 5.12kWh; Group 8D; 97 pounds; 150A continuous. | Higher-voltage inverter bank with supported Victron communication. |
The 12V 100Ah Eco and 12V 314Ah Eco give simpler LiFePO4 choices without Bluetooth or heating. The 12V 334Ah MC Essential includes communication but has an IP21 enclosure that calls for a dry, protected interior location. Do not assume that every battery in this collection can be connected in series or that all products with the same kilowatt-hours have the same output. Follow the exact model manual and compare the complete electrical plan.
Parallel batteries can increase capacity at a given voltage, while series connections raise voltage where the chosen model permits them. Use matched batteries of the same model, capacity and similar age and state of charge, and follow Epoch's balancing and connection instructions. A well-designed bank uses correctly sized equal-current cable paths, suitable busbars, appropriate fusing and a disconnect. Do not mix lead-acid and lithium within one bank, or take 12V from a midpoint of a higher-voltage series arrangement.
The built-in battery management system helps guard each battery against excessive discharge, overcurrent and unsafe temperatures. It can also disconnect under a fault or an undersized load arrangement. The BMS is part of a dependable system, alongside correctly sized wires, overcurrent protection, inverter settings and a reserve for essentials. Have a qualified RV electrical installer review a large parallel bank or higher-voltage build.
On equipped Epoch models, a phone within Bluetooth range can display state of charge, voltage, current and temperature. Check before using an inverter appliance, after a cloudy solar day or while deciding whether to run the generator. Battery-level Bluetooth readings do not automatically add up several batteries into a system-wide measurement; a shunt or compatible integrated monitor may help show the complete bank. Bluetooth itself is local. Selected V2 Elite models support Victron communication, with remote access requiring the proper connected equipment.
Shore-power converters and inverter-chargers need settings approved for the selected battery voltage and LiFePO4 charge profile. Solar charge controllers must use compatible limits, and generator charging depends on the AC charger's actual output. Lead-acid equalization or desulfation should not run on the new bank without specific model approval. Size chargers to refill the energy you expect to use; a much larger battery on a small charger may not recover before the next departure.
Engine-alternator or tow-vehicle charging needs deliberate current control. Lithium can accept high current for longer than lead-acid, so a suitable DC-DC charger or other approved arrangement may be needed to protect the charging source and maintain a starting reserve. Heated Epoch models support cold-weather charging only within their published limits and when charging power is available to warm the cells. Check the exact product's temperature rules if the RV will be stored or used below freezing.
A 24V or 48V bank cannot directly replace a 12V supply for RV lights, controls or a water pump. Plan a properly sized DC-DC converter for those circuits and confirm the inverter and chargers are rated for the bank voltage. For air conditioning or other large AC appliances, verify startup demand, inverter output, battery current and planned recharge together; no single battery listing guarantees AC runtime.
Check each product listing for the components actually included before treating it as a kit. A neat bank design is one where capacity, output, chargers and safety devices are specified together, with enough access for inspection after installation.
Epoch LiFePO4 gives RV owners flexible building blocks for a bank with more routinely usable energy than comparable lead-acid storage, less maintenance and Bluetooth visibility on selected models. Compact 12V cases can support a straightforward upgrade; larger 12V, native 24V and 48V models suit more ambitious systems when the rest of the equipment matches. Plan from the RV's energy budget, keep the bank within every component's ratings and protect the loads you depend on overnight.
Explore Epoch RV Battery Bank Kits, or contact Epoch support with your old bank, inverter, charging sources, compartment dimensions and target days off-grid to narrow down a suitable design.
Side-by-side specs
Every battery in this collection uses LiFePO4 chemistry with a built-in battery management system (BMS). Compare stored energy, continuous output, weight, footprint, and price side by side.
15 models · Select a column heading to sort
| Model | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
![]() | 100Ah | 1.28 kWh | 100A | 21 lbs | 10.3 × 6.8 × 9 | 24 | 4,500+ | 6 yr | IP54 | Bluetooth: no | Heated: no | Victron communications: no | Starting & cranking: no |
![]() | 105Ah | 1.34 kWh | 105A | 22.1 lbs | 10.3 × 6.8 × 9 | 24 | 4,000+ | 11 yr | IP54 | Bluetooth: yes | Heated: yes | Victron communications: no | Starting & cranking: no |
![]() | 60Ah | 1.54 kWh | 80A | 30 lbs | 12.3 × 6.8 × 9 | 27 | 6,000+ | 11 yr | IP67 | Bluetooth: yes | Heated: yes | Victron communications: yes | Starting & cranking: no |
![]() | 314Ah | 4.02 kWh | 250A | 57 lbs | 13.8 × 7.6 × 10 | 31 | 4,500+ | 6 yr | IP54 | Bluetooth: no | Heated: no | Victron communications: no | Starting & cranking: no |
![]() | 300Ah | 3.84 kWh | 200A | 58 lbs | 13.8 × 7.6 × 10 | 31 | 4,000+ | 11 yr | IP54 | Bluetooth: yes | Heated: yes | Victron communications: no | Starting & cranking: no |
![]() | 334Ah | 4.28 kWh | 300A | 75 lbs | 15.4 × 8.1 × 11 | Not available | 4,500+ | 11 yr | IP21 | Bluetooth: yes | Heated: yes | Victron communications: yes | Starting & cranking: no |
![]() | 334Ah | 4.28 kWh | 200A | 60 lbs | 13.8 × 7.6 × 10 | 31 | 4,000+ | 11 yr | IP54 | Bluetooth: yes | Heated: yes | Victron communications: no | Starting & cranking: no |
![]() | 300Ah | 3.84 kWh | 300A | 81 lbs | 19.7 × 10.5 × 9.8 | 8D | 6,000+ | 11 yr | IP67 | Bluetooth: yes | Heated: yes | Victron communications: yes | Starting & cranking: yes |
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