Home & Electrical

Inverter Battery Backup Calculator: Hours of Backup & VA Size

Free tool · Updated October 2, 2026 · By CouponTalk

Calculate

Your result

Enter your measurements to see your result.

Quick answer

Backup time (hours) = battery Ah × battery voltage × number of batteries × efficiency ÷ load in watts. A 150 Ah, 12 V battery running a 300 W load (3 fans, 4 LED lights, a TV) at 80% efficiency gives about 4.8 hours. The inverter VA should be about load ÷ 0.7, so a 300 W load needs at least a 450–600 VA inverter.

How to use this calculator

  1. Add up the watts of everything you want to run: ceiling fan ~75 W, LED bulb ~9 W, LED TV ~60–100 W, router ~10 W.
  2. Enter your battery Ah, voltage and number of batteries.
  3. Choose the battery type; lithium batteries can use more of their capacity.

Reference table

Approximate backup time (lead-acid, 80% efficiency)
Battery200 W300 W500 W800 W
100 Ah (12 V)4.8 h3.2 h1.9 h1.2 h
150 Ah (12 V)7.2 h4.8 h2.9 h1.8 h
200 Ah (12 V)9.6 h6.4 h3.8 h2.4 h

These are typical figures for Indian homes. Check the product spec sheet, and ask an electrician or installer before you buy or fit anything.

Frequently asked questions

How long will a 150Ah battery last?
With a 12 V, 150 Ah battery at 80% efficiency: about 4.8 hours at 300 W, 2.9 hours at 500 W and 1.8 hours at 800 W.
What size inverter do I need?
Divide your total load in watts by 0.7 and pick the next standard size. For 500 W, choose at least a 750–900 VA inverter.
Can an inverter run an AC or fridge?
A fridge can run on a 900 VA+ inverter. A 1.5 ton AC needs a large inverter or solar system, typically 3–5 kVA with a 24 V or 48 V battery bank.

Related calculators

See all tools & calculators → · Read Electrical buying guides →

Latest Electrical guides

View all blogs →

View all blogs

CouponTalk
Logo