Electrical

ATV/UTV Battery Runtime Calculator

Estimate battery-only accessory runtime from voltage, amp-hours, starting charge, usable-capacity assumptions, efficiency, and watts or amps.

Your planning inputs

Example assumptions, not recommended discharge limits. Override using the battery manual.

Prefilled values are illustrative. Replace them with your measurements and documented ratings.

YOUR ESTIMATE

Planning results

Enter your values and choose Calculate.

Educational estimate. Verify assumptions and manufacturer instructions.

Before using this estimate

Battery-only runtime is not a guarantee of engine restart or a safe discharge limit. Starting batteries may be unsuitable for prolonged accessory use. Temperature, aging, discharge rate, cutoff voltage, BMS limits, and voltage drop can reduce runtime. Use the battery and machine manuals; this tool does not model charging while the engine runs.

How the calculation works

Nominal energy (Wh) = voltage × amp-hours. Delivered usable energy = nominal energy × starting charge fraction × usable share × efficiency fraction. Load watts = entered watts, or amps × voltage. Runtime hours = delivered usable energy ÷ load watts.

Worked example

At 12 V and 30 Ah, nominal energy is 360 Wh. With 100% starting charge, a 20% usable-share assumption, and 90% delivery efficiency, delivered usable energy is 64.8 Wh. A steady 100 W load gives an estimated 0.648 hours, about 38.9 minutes.

What the battery-type choices mean

The percentages beside each type are illustrative planning defaults, not manufacturer recommendations. Changing a type fills that starting assumption; you can override it. A lithium label alone does not establish its chemistry, permitted discharge, BMS current limit, or compatibility with your charging system.

Why amp-hours can mislead

Ah capacity is specified at a particular discharge rate and endpoint. Heavy loads can produce less usable capacity, especially with lead-acid batteries. The calculation uses a simple energy budget and does not implement a battery-specific discharge curve or Peukert model. Use published battery performance tables when runtime is critical.

Further reading: Trojan’s explanation of rated amp-hour capacity. Follow the documentation for your actual equipment or loan.

Frequently asked questions

Does efficiency include inverter losses?

It can represent your combined delivery-loss assumption. Use an appropriate measured or documented value, and avoid counting the same loss twice.

Can I run a winch from this result?

A continuous-load energy budget does not establish cranking or winch-current capability. Check surge current, wiring, battery limits, and winch duty cycle separately.

Does the result preserve enough power to start?

No. Remaining energy is not equivalent to available cranking current. The tool cannot guarantee a restart.