Battery Energy & Runtime

Battery Watt Calculator

Calculate battery energy in watt-hours (Wh), convert between Ah and Wh, and estimate runtime under any load with depth of discharge.

Calculate Battery Energy

Enter battery voltage, amp-hour rating, load, and depth of discharge to calculate stored energy and runtime.

Results
Total Energy
Wh
Total Energy
kWh
Usable Energy
Wh
Runtime Under Load
hours
Current Draw
A

How to Calculate Battery Watt-Hours

🔋 Battery Chemistry Usable Capacity (DoD) Comparison Chemistry Reference
Flooded Lead-Acid 50% DoD (300 cycles) AGM / Gel Lead-Acid 70% DoD (600 cycles) LiFePO4 Lithium 90% DoD (4,000+ cycles)
Lithium LiFePO4 batteries offer nearly double the usable capacity and 10x the cycle life of traditional lead-acid batteries.
🔋 Battery Energy Storage Simulator Wh = V × Ah
Battery Voltage: 12 V
Amp-Hours (Ah): 100 Ah
Total Stored Energy
1,200 Wh (1.20 kWh)
Usable Lithium Energy (90% DoD)
1,080 Wh
Usable Lead-Acid (50% DoD)
600 Wh

Battery energy in watt-hours (Wh) equals voltage (V) multiplied by amp-hour capacity (Ah): Wh = V × Ah. A 12V 100Ah battery stores 1,200 Wh (1.2 kWh) of energy.

Battery Energy Formula
Wh = Voltage (V) × Capacity (Ah)

Battery Chemistry Comparison

🧪 Battery Chemistry Comparison Lithium vs Lead-Acid
Safe Depth of Discharge
80-90% DoD
Lifespan (Cycles)
3,500 – 6,000 Cycles
Weight per 100Ah @ 12V
11-13 kg (Light)
ChemistryNominal VoltageMax DoDCycle LifeBest For
Lead-Acid (FLA)12V50%300-500Budget backup
AGM12V50%400-800RV, marine
LiFePO412.8V80-100%2,000-5,000Solar, RV, off-grid
Li-ion (NMC)3.7V/cell80-90%500-1,500Laptops, EVs
Li-ion (Tesla PW)~50V100%3,000+Home battery

Battery Runtime Examples

⏱️ 12V 100Ah Battery Runtime Estimator Load vs Hours
LiFePO4 Lithium Runtime (90% DoD)
21.6 Hours
Lead-Acid Runtime (50% DoD)
12.0 Hours
BatteryEnergy (Wh)100W Load300W Load500W Load
12V 50Ah (Lead, 50% DoD)300 Wh usable3.0 hrs1.0 hr0.6 hrs
12V 100Ah (Lead, 50%)600 Wh usable6.0 hrs2.0 hrs1.2 hrs
12.8V 100Ah (LiFePO4, 80%)1,024 Wh usable10.2 hrs3.4 hrs2.0 hrs
48V 100Ah (LiFePO4, 80%)3,840 Wh usable38.4 hrs12.8 hrs7.7 hrs

Frequently Asked Questions About Battery Watt-Hours

How do I convert Ah to Wh?

Multiply amp-hours by voltage: Wh = Ah × V. A 12V 100Ah battery = 1,200 Wh. A 48V 50Ah battery = 2,400 Wh. Always use the nominal voltage of the battery chemistry.

What is depth of discharge (DoD)?

Depth of discharge is the percentage of total battery capacity that has been used. A 100Ah battery at 50% DoD has discharged 50Ah. Lead-acid batteries should not exceed 50% DoD for longevity. LiFePO4 batteries can safely discharge to 80-100% DoD.

How long will a 12V 100Ah battery last?

A 12V 100Ah battery stores 1,200 Wh. At 100W load with 50% DoD (lead-acid): 600 Wh ÷ 100W = 6 hours. With LiFePO4 at 80% DoD: 960 Wh ÷ 100W = 9.6 hours. Runtime depends on battery type, DoD, and load.

What is the difference between Wh and W?

Watts (W) measure instantaneous power — how fast energy is being used right now. Watt-hours (Wh) measure total energy — how much energy is stored or consumed over time. A 100W light running for 5 hours uses 500 Wh of energy.

Does temperature affect battery capacity?

Yes, cold temperatures significantly reduce battery capacity. Lead-acid batteries lose ~20% capacity at 32°F (0°C) and ~40% at 0°F (-18°C). LiFePO4 batteries lose ~10-20% at freezing. Always size batteries with a temperature margin for cold climates.