A 12V fridge does not automatically need a 100Ah battery. Size it from daily energy use and runtime without sufficient charging. A 360Wh/day fridge needs at least 35.2Ah for one day, 70.3Ah for two days or 105.5Ah for three days from a 12.8V LiFePO4 battery, using an 80% planned usable fraction. Select a capacity above the result. The method applies to portable, car, camping, solar and off-grid refrigerators or freezers.
How to Calculate the Battery Size for a 12V Fridge or Freezer
Find Daily Energy Consumption
Use the manufacturer’s Wh per 24 hours figure or measure a representative day. Do not multiply maximum compressor wattage by 24 because it cycles on and off. Freezer mode, ambient temperature, ventilation and door openings affect consumption.
If your data is in watts or amps, first see 12V Fridge Power Consumption: Watts, Amps & Ah per Day.
Define the Required Runtime
Decide how long the fridge must run without sufficient charging: overnight, through cloudy weather, in a parked vehicle or at an off-grid site. Add other loads sharing the battery.
Apply the Formula
Required Battery Ah =
(Daily Energy Use in Wh × Runtime in Days)
÷ Battery Rated Voltage
÷ Planned Usable Fraction
For a 360Wh/day fridge running for two days:
360Wh × 2 ÷ 12.8V ÷ 0.80 = 70.3Ah
The 80% figure is a planning assumption, not a universal LiFePO4 limit. Usable capacity depends on the battery, BMS settings, temperature and service-life target. A 70.3Ah result means choosing the next suitable capacity above it.
12V Fridge and Freezer Battery Size Chart
This chart assumes a 12.8V LiFePO4 battery, 80% planned usable capacity, no sufficient charging during the stated runtime and no other loads.
| Daily energy use | 1 day | 2 days | 3 days |
|---|---|---|---|
| 240Wh | 23.4Ah | 46.9Ah | 70.3Ah |
| 360Wh | 35.2Ah | 70.3Ah | 105.5Ah |
| 480Wh | 46.9Ah | 93.8Ah | 140.6Ah |
| 600Wh | 58.6Ah | 117.2Ah | 175.8Ah |
These are calculated minimums, not universal purchase recommendations. Use measured consumption and round upward. For an existing 100Ah battery, see How Long Will a 100Ah Battery Run a 12V Fridge?.
What Changes in a 24V System?
For the same 360Wh/day load and two-day runtime, a 25.6V LiFePO4 system needs 35.2Ah instead of 70.3Ah at 12.8V. Both provide about 900Wh. A 24V system needs half the Ah, not half the energy. All components must be voltage-compatible; never connect a 12V-only appliance to 25.6V.
How Do Fridge Type and Charging Method Affect Battery Size?
The formula stays the same, but each application changes the inputs:
| Application | Conditions to include |
|---|---|
| Portable/car fridge | Parked runtime, alternator charging, cable drop and vehicle loads |
| Camping fridge/freezer | Off-grid time, shared loads and available charging |
| Solar/off-grid refrigerator | Night use, low sun and daily energy recovery |
| Freezer | Lower setpoint, initial pull-down and ambient heat |
| Remote refrigeration | Longer autonomy and limited maintenance access |
Battery capacity determines runtime; solar panels, alternators and AC chargers determine energy recovery. A 12V fridge solar setup must power the live load and recharge the battery under realistic sunlight and losses. Solar-panel sizing is a separate calculation.
The best battery for a camping fridge or car fridge meets the energy need while matching the appliance, charging method and conditions.
What to Check Before Selecting the Final Battery System
Calculated Ah is only the starting point. Before selecting a 12V fridge battery or portable fridge battery pack, confirm:
- Voltage range, measured Wh/day and required autonomy;
- Compressor startup and maximum current;
- BMS continuous and peak-current ratings;
- Low-voltage cutoff and usable capacity;
- Built-in/external construction and space;
- Cable length, connectors and fuse;
- Solar, alternator, DC-DC or AC interface;
- PMU or MPPT compatibility;
- Operating temperature, certification and quantity.
These checks prevent an adequate Ah rating from failing through voltage drop, current limits, temperature or poor fit.
Need a Battery for Your Fridge or Freezer Project?
SAFTEC supplies standard and custom LiFePO4 solutions for portable, car, camping, solar and off-grid refrigeration. Send the fridge voltage, Wh/day, maximum current, runtime, charging method, space, temperature, certifications and quantity. We can evaluate a standard option or develop a custom battery pack, BMS, enclosure and connection solution. Explore our portable fridge battery solutions.
Button: Send Your Fridge Battery Requirements
Frequently Asked Questions
Will a Higher-Ah Battery Damage a 12V Fridge?
No. More Ah stores more energy; it does not force extra current into the fridge. Voltage, polarity and connections must still match.
Can I Connect Two 12V Batteries in Parallel for Longer Runtime?
Yes, if their chemistry, voltage, capacity, condition and protection are compatible. Follow the manufacturer’s parallel-connection limits.
Can the Battery Charge While Powering the Fridge?
Yes, if the charger, BMS and wiring allow it. The source supplies the fridge first; only remaining output charges the battery.
Should a Car Fridge Use the Starter Battery or a Separate Battery?
For extended parked use, an auxiliary battery protects the starter battery. Use suitable isolation, fusing, cables and charging.