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Cooling - 50W running - 1.5x start-up surge

How long can an inverter battery run a Table Fan?

A Table Fan draws about 50W, so a 150Ah 12V tubular battery runs one of them for roughly 12 hours 36 minutes on its own. That comes from 630Wh usable energy divided by 50W. Table and pedestal fans sit between BLDC and induction ceiling fans.

What a Table Fan actually draws

Table and pedestal fans sit between BLDC and induction ceiling fans. The 50W figure used across this page is a typical mid-range Indian retail unit — check the nameplate on yours and put the real number into the calculator, because a 10W difference on an appliance you run for six hours is 60Wh out of a budget of only a few hundred.

Category: Cooling. People search for this as pedestal fan, table fan watts — all the same question, and all answered by the same arithmetic.

Runtime on every standard battery size

Usable energy is Ah x 12V x 0.7 efficiency x 0.5 depth of discharge. Divide that by the appliance draw and you have the runtime with nothing else connected.

One Table Fan on each standard battery size
BatteryUsable energyRuntime with one unitRuntime with two
100Ah420Wh8 hours 24 minutes4 hours 12 minutes
120Ah504Wh10 hours 5 minutes5 hours 2 minutes
135Ah567Wh11 hours 20 minutes5 hours 40 minutes
150Ah630Wh12 hours 36 minutes6 hours 18 minutes
165Ah693Wh13 hours 52 minutes6 hours 56 minutes
180Ah756Wh15 hours 7 minutes7 hours 34 minutes
200Ah840Wh16 hours 48 minutes8 hours 24 minutes
220Ah924Wh18 hours 29 minutes9 hours 14 minutes
250Ah1050Wh21 hours10 hours 30 minutes

How many you can run at once

Nothing stops you connecting more units — the limit is runtime, not the inverter, until you hit the surge ceiling below.

How many Table Fan units a 150Ah battery carries
QuantityContinuous drawRuntimeBand
150W12 hours 36 minutesLow load
2100W6 hours 18 minutesLow load
3150W4 hours 12 minutesModerate
4200W3 hours 9 minutesModerate
5250W2 hours 31 minutesModerate
6300W2 hours 6 minutesModerate

Duty cycle: the input most calculators ignore

Very few appliances run flat out for a full hour. A fridge compressor cycles, a mixer runs in bursts, a pump fills a tank and stops. Battery Buddy asks for minutes run per hour and multiplies the wattage by that fraction — which is why its answers are usually longer, and more honest, than a calculator that assumes continuous draw.

Duty cycle changes everything
Minutes run per hourAverage hourly drawRuntime on a 150Ah battery
15 min12.5W50 hours 24 minutes
30 min25W25 hours 12 minutes
40 min33.3W18 hours 54 minutes
45 min37.5W16 hours 48 minutes
60 min50W12 hours 36 minutes

Start-up surge and inverter overload

This is a surge-sensitive appliance. Battery Buddy applies a 1.5x start-up multiplier to a Table Fan, so one unit spikes to about 75W for a second or two at switch-on. Your inverter has to survive everything else already running plus that spike — not just the average load.

Peak demand = total continuous load + the single largest start-up surge. The sizing advisor runs that check automatically for whatever mix you enter.

Frequently asked questions

How many watts does a Table Fan use?

About 50W while running. Table and pedestal fans sit between BLDC and induction ceiling fans. Always confirm against the nameplate rating on your own unit before sizing a battery around it.

How long will a 150Ah battery run a Table Fan?

Roughly 12 hours 36 minutes with nothing else connected: 630Wh usable divided by 50W. Add anything else to the inverter and that time drops proportionally.

Does a Table Fan have a start-up surge?

Battery Buddy applies a 1.5x multiplier, so a single unit peaks near 75W at switch-on before settling to 50W. That spike, not the running load, is what trips undersized inverters.

Can I run a Table Fan on a 100Ah battery?

Yes — one unit runs about 8 hours 24 minutes on a 100Ah 12V battery at 70% efficiency. Whether that is enough depends on how long your outages actually last and what else shares the inverter.

Why is my real runtime shorter than this?

The figures assume 70% system efficiency. An older battery, low electrolyte, corroded terminals or thin cabling all reduce the effective factor. Measure yours with the efficiency estimator and re-run the numbers — it takes one discharge test.

Battery Buddy is free, needs no sign-up, sells no batteries and shows every formula it uses. It is built by Flocci Technologies, an India-first AI-native software studio behind 30+ apps that share one Flocci identity.