Remember that average use does include giant section of the night when nobody's doing anything. So your average daytime use is likely higher than your average overall, especially for anything like stove, HVAC, water heater, dryer Answer from RobinsonCruiseOh on reddit.com
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Unbound Solar
unboundsolar.com › home › solar information › solar battery bank sizing calculator for off-grid
Solar Battery Bank Sizing Calculator for Off-Grid - Unbound Solar
December 6, 2021 - Seasonal Factors - People use more power at different times of the year. The sun produces more power in the summer than in the winter. Budget - Battery bank size is often a compromise between what you want to spend on batteries and how often you'll need to run your backup generator. Our solar battery bank calculator ...
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Mekuva
mekuva.com › calculators › BatteryBackup
Battery Backup calculator
Various different calculators to provide help in predicting the load and power consumption of devices at household or at an industry, Calculator, Stepper motor, Battery, Battery Backup, UPS, Klipper, Rotation Distance, Steps per milimeter, mm, Leadscrew drive, Belt drive, Time, Load, Energy ...
Discussions

Please check my math -- calculations for a simple battery backup?
Remember that average use does include giant section of the night when nobody's doing anything. So your average daytime use is likely higher than your average overall, especially for anything like stove, HVAC, water heater, dryer More on reddit.com
🌐 r/SolarDIY
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April 12, 2024
Enphase Battery Question

You might start with a Kill-A-Watt device to measure things. If that does not give you a good picture, you can step up to a Sense that will monitor and graph your energy usage throughout the day.

Some of your critical stuff can be powered with small UPS systems (I like the APC 1500).

If you want to take the next step, consider a whole house generator that can run your AC etc no problem.

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🌐 r/solar
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August 16, 2022
Is there a good calculator for estimating size of battery and inverter for an off-peak, non-solar system to charge battery during off-peak times and run house during peak times? I’d add solar later.
You need to identify your power consumption during the peak rate time you want to avoid. This will define the storage capacity of your battery system Also identify the circuits that will be powered by battery. This will determine size of your inverter. (For example: air conditioning, water heater, electric range. But not dishwasher, cloths dryer or cloths washer, etc because will not use during peak times More on reddit.com
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July 2, 2022
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SolarMathLab
solarmathlab.com › content › batteries › solar-battery-runtime-calculator.html
Battery Runtime Calculator (Ah, V, Load W) – Estimate Backup Time | SolarMathLab
October 7, 2025 - Free calculator to estimate battery runtime and discharge time from Ah, voltage, and load power. Perfect for solar and inverter systems.
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SolarCalcHub
solarcalchub.com › calculator › battery-backup-time
Battery Backup Time Calculator | Runtime Estimator
Free solar calculators for panel sizing, battery backup, inverter selection, and more.
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Paradise Energy
paradisesolarenergy.com › home › battery calculator
Battery Backup Calculator
February 18, 2026 - Use our battery calculator to determine the ideal backup power needed for unexpected outages.
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Electrical Learner
electricallearner.in › home › battery backup time calculator
Battery Backup Time Calculator » ELCMART
April 15, 2023 - Solar Installation Tools · Calculator · Battery Charge Time Calculator · Battery Backup Time Calculator · Resistor Color Code Calculator · SMD Resistor Code Calculator · Inverter Load Calculator · LED Resistor Calculator | LED Series Resistor Calculator ·
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Reddit
reddit.com › r/solardiy › please check my math -- calculations for a simple battery backup?
r/SolarDIY on Reddit: Please check my math -- calculations for a simple battery backup?
April 12, 2024 -

We don't frequently lose power here, but I was thinking it might be a nice starting point if I picked up an MPPT that could also charge batteries from the grid and began building something that could power the house for around an hour. The calculations seem pretty straightforward, but the amount of battery power I came up with feels ridiculously low so I thought I'd ask for verification.

So on to the math! Based on an average power bill of around 3,000kWh/month, I divided by 30 days and 24 hours to come up with around 4167W of power. Looking on Amazon I am finding 12V 100Ah LifePO4 lithium batteries which provide 1280Wh (under ideal conditions, of course)... so if my math is correct that means I would only need four of these batteries to power the house for a full hour? Surely that can't be right???

I also ran across some pages suggesting the calculations for lithium are different than for lead-acid batteries, but I would think the only thing that matters here is the listed Wh capacity of the batteries?

If the math IS correct, that's still a lot of juice to deal with. I think ideally I would run the batteries in series at 48V. I found a Victron charge controller rated at 150V/45A which would give a little room for surges (4167W / 120V = 35A of average usage), but I would still need the equipment to do the switch-over from mains, and prevent backflow into the mains (or does the switch only provide one connection at a time, preventing this problem?).

Still a lot to consider, but if I were to get this initial setup in place then I should be able to simply start adding solar panels as time and funding allows. Please let me know if I'm on the right track or if I'm making a fundamental mistake in my math. Thanks!

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Remember that average use does include giant section of the night when nobody's doing anything. So your average daytime use is likely higher than your average overall, especially for anything like stove, HVAC, water heater, dryer
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You math is correct. 4 100ah 12v batteries will work fine. Wiring them at 48v will work fine. It's crazy how much electricity you are using. The average US home consumes just over 29kwh per day. You are using about 100kwh per day. That's the equivalent of about 3.5 US homes. The main difference with lead acid is that you generally only want to discharge them 50% of the way. If you are only very rarely using them (only as emergency backup) then there's no reason you can't discharge them 100%. Lithium batteries are rated at 100% depth of discharge but even lithium battery companies suggest about 80% depth of discharge to prolong battery life. Again if they are only being used for emergency backup then there's no issues with discharging them all the way to 0% as well. To be clear there are multiple components: An MPPT charge controller takes DC power from your solar panels and charges the batteries at the property current and voltage. An inverter will convert the DC current from your batteries into AC current such as 120v which is what most household appliances use in the US. If you need 240v output then you need an inverter that supports it. Your clothes dryer, electric stove, etc will need 240v. To charge those batteries from the grid (or a generator) you need an AC charger. That will take 120v AC and convert it to 48V dc to charge your batteries. You will also need proper disconnects from the grid when the power is out. There are newer "AIO" or all in one units that combine an MPPT charge controller, inverter, and AC charger into a single unit.
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Kwcalc
kwcalc.com › battery › battery-backup-calculator.html
Battery Backup Calculator – Estimate Your Power Runtime
A Battery Backup Calculator helps you estimate how long your battery will power your devices. Use this simple tool to plan backup time for homes, offices, or solar systems.
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Google Play
play.google.com › store › apps › details
Battery Backup Time Calculator - Apps on Google Play
April 28, 2026 - 🔋 Battery Backup Time Calculator – Fast & Accurate Power Estimator Easily calculate your battery backup time for inverters, UPS systems, and solar setups with this simple and powerful calculator. Whether you want to estimate how long your battery will last during power outages or plan your energy usage, this app gives you instant and reliable results.
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RevoPower
revopower.us › home › off grid calculator
RevoPower Off Grid Calculator
RevoPower Off Grid Calculator, for calculating required inverter power and solar panel input
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Backup Battery Power
backupbatterypower.com › blogs › news › battery-backup-time-calculator-apps-available-for-ios-and-android
Battery Backup Time Calculator Apps Available For iOS And Android – Battery Backup Power, Inc.
August 9, 2019 - Battery Backup Power, Inc. has made its battery backup time calculator available on the Google Play store for Android phones and on the Apple App store for iOS phones. The app will help you input information about the device or devices you would like to place on backup power and then provides a list of compatible products along with backup times.
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Battery Guys
batteryguys.com › pages › solar-battery-backup-calculator
Solar Battery Backup Calculator | Battery Guys
Input values below and click "Calculate" to populate the other values on the page Load Voltage Inverter Efficiency Rating 120 Volt AC Load 240 Volt AC Load 208 Volt AC Load 220 Volt AC Load 75 % Efficient 80 % Efficient 85 % Efficient 90 % Efficient 95 % Efficient Load Amperage Input Amps of electricity needed as measu
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Microtek India
microtek.in › load-calculator
Load Calculator
Our easy to use "Power Consumption Calculator" will help you to know the exact total load requirements for your property · Add your preferred devices
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Livguard
livguard.com › home › blog › inverter and batteries › how to calculate inverter battery backup time
How to Calculate Inverter Battery Backup Time Easily (With Formula)
December 26, 2025 - So, your inverter battery backup time will be around 6 hours for this setup. More load = less backup. It is that simple! Know the basic ones so that you do not go wrong with them: ... A handful of important tips are always useful when you are aiming to see your inverter batteries perform longer. ... If you have ever wondered how much inverter capacity and battery size you really need, Livguard’s Load Calculator is your best friend!
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Google Play
play.google.com › store › apps › details
Inverter Battery Calculator - Apps on Google Play
Check Inverter Battery Backup Time , Battery Charging Time & Current
Rating: 4.1 ​ - ​ 2.1K votes
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Lento India
lentoindia.com › blog › inverter-battery-backup-time-calculator.html
Inverter Battery Backup Time Calculator
This is exactly where an inverter battery backup time calculator becomes essential. Whether you are a homeowner, business owner, installer, or solar professional, understanding how to accurately calculate inverter backup time helps you design a reliable power system, avoid battery damage, and ...
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Invertek energy
invertekenergy.com › home › ups / inverter › how to calculate inverter battery backup time
How To Calculate Inverter Battery Backup Time - Invertekenergy
October 3, 2024 - Learn how to calculate inverter battery backup time with our easy guide. Discover inverter battery backup calculation tips for optimal performance and efficiency.
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YouTube
youtube.com › watch
Battery backup time calculation for UPS and Solar system . how can we calculate battery backup time? - YouTube
#Solarsystem #batterybackup #batterylife #solarpanels #solarplate Muhammad AbdullahWhatsApp & Mobile No 0311-4372204...........................................
Published   September 13, 2022
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Lento India
lentoindia.com › blog › 120ah-battery-backup-time-calculator.html
120Ah Battery Backup Time Calculator
Yes, when paired with correctly sized solar panels and charge controllers. Lithium-ion batteries provide higher usable energy and longer effective backup. A 120Ah Battery Backup Time Calculator is an essential planning tool for anyone installing or upgrading an inverter system.
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Livguard
livguard.com › home › load calculator
Electricity Load Calculator - Calculate Load for Home Inverter
... The Livguard Load Calculator is a personalised Load Calculator that suggests you the best Livguard Inverter and Inverter Battery based on devices you choose, backup hours needed, and average power use.