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EasyCalc4UEstimate portable power station capacity from device watts, daily hours, days needed, efficiency, and reserve.
Main result--
Planning detail--
Reserve note--
Use this portable power station size calculator when comparing battery stations for outages, camping, CPAP planning conversations, communications, internet backup, lighting, fans, and small appliance support. It estimates watt-hours needed from device load, daily use, outage days, efficiency, and reserve.
Daily energy = watts x hours per day.
Trip or outage energy = daily energy x days needed.
Adjusted capacity = outage energy / efficiency fraction.
Capacity with reserve = adjusted capacity x (1 + reserve percentage).
A 180 watt combined load running 6 hours per day for 2 days uses 2,160 watt-hours before losses. At 85% efficiency, the adjusted need is about 2,541 watt-hours. With a 20% reserve, the recommended planning capacity is about 3,049 watt-hours, which may mean a large unit or a smaller unit with reliable recharging.
Before relying on the estimate, confirm the equipment manual, fuel or battery limits, ventilation needs, weather protection, cords, transfer method, and local requirements. Fuel-burning generators belong outdoors away from openings because carbon monoxide can be deadly. Electrical connections, transfer switches, high-current batteries, and permanent wiring should be handled under applicable code by qualified people.
This calculator is for planning only. Follow power station manufacturer instructions, battery safety guidance, device manuals, medical-device backup advice where applicable, and local electrical safety requirements.
List each device's watts and hours, then size for watt-hours plus efficiency loss and reserve.
Sometimes. Check compressor surge, running watts, and expected duty cycle against the station's output and capacity.
Reserve helps cover battery aging, cold weather, extra loads, conversion losses, and avoiding a full discharge.
Only if the station supports the panel voltage and wattage, and real sun conditions provide enough input.
Battery stations do not emit engine exhaust, but charging, temperature, placement, and device compatibility still need manufacturer guidance.
Use this result as a screening estimate, then compare it with rated running watts, surge watts, usable watt-hours, fuel availability, recharge time, maintenance, and installation requirements. A backup plan is safer when it starts with fewer essential loads and leaves reserve instead of assuming every rating can be used at the same time.