Fuse check for a LiFePO₄ bank

LiFePO₄ fuse size calculator

A battery's amp-hours don't pick its fuse. Start from the current the circuit really carries, keep the fuse under what your cable and equipment can take, then check the exact fuse and holder for DC voltage and fault current.

Checked Sep 11, 2026 · 12 V DC planning · your manual wins

The calculator

Start with the circuit. Then check a fuse.

No fuse selected yet? Enter the current and cable limits you know to see a preliminary sizing baseline. Add the manufacturer's surge guidance for a candidate rating, then open the exact-part checks. Leave unverified inputs blank. Nothing you type here is saved.

You can begin without a fuse part number. A baseline is only a starting constraint; it is not a fuse to buy.

I already have a fuse to check
1. What the circuit carriesRead these off the load's and the chargers' manuals, not off the battery.

What we can calculate so far

Continuous-current baseline
Unknown
Known cable/equipment ceiling
Unknown

Enter both charge and discharge current, including a verified zero where a direction cannot flow. Cable ampacity must already account for conductor size, insulation, temperature, bundling and routing. A size in mm² or AWG alone does not give that limit.

Next, supply the surge duration and manufacturer-backed fuse guidance below. The baseline can rise to carry that surge; it must still fit every cable and equipment ceiling. Exact-part voltage, interrupt rating and placement are separate checks.

How Crimp calculates cable sizes
What the manuals and the cable allowThe fuse protects the cable, so the cable's real ampacity is a hard ceiling.
2. Check an exact fuse and holder

Use a candidate rating to look up possible parts, then enter their actual datasheet evidence here. A family name or a BMS cutoff cannot prove fault interruption. Unknown checks stay unknown, even when a rating can be calculated.

The exact fuse and holderA family name is context. The check needs the part you'll actually buy.
Your bank and where the fuse sitsCapacity is recorded for context only. We never use it to size the fuse.

How the check works

Amp rating and interrupt rating answer different questions.

A fuse can have the right number printed on it and still fail to clear a lithium-bank short safely. Every check below has to pass for the exact part you're holding.

Load

Carry the normal current

Crimp's planning baseline applies 125% headroom to the larger of the charge and discharge current you enter. Your governing standard, the equipment's manual and the fuse's time-current curve still decide the final rating.

Cable

Protect the weakest link

The fuse can't be rated above what your installed cable carries after derating for heat, bundling and routing — or above any lower maximum the equipment sets.

Device

Cover the voltage and the fault current

Both the fuse and its holder need a DC voltage rating that covers your system. The fuse's interrupt rating has to cover the fault current the whole installed bank can deliver at that spot.

Location

Protect at the source

Check where the fuse sits against your standard and the component manuals, including any exception they allow. The BMS is not the branch fuse.

Amp rating

Will it carry the load without cooking the cable?

Interrupt rating (AIC)

Can it open the fault without arcing or welding shut?

Class T often comes up for lithium banks because exact Class T parts carry high published interrupt ratings. It isn't a universal answer: read the voltage and interrupt ratings for the exact fuse at your DC voltage.

Your bank and where the fuse sits

Check the fault source you actually built.

Parallel batteries feed the same short. A per-battery figure can't prove the interrupt rating for a fuse that sees the whole bank.

  1. Name what's on each side of the fuse

    Write down the battery terminal, bus, cable and load on either side of the fuse you're proposing. Decide exactly what that fuse is there to protect.Stop here

  2. Use whole-bank fault data

    With more than one battery, get the fault current for the complete bank at the spot where the fuse sits. Don't multiply amp-hours into a made-up short-circuit number.Stop here

  3. Verify the exact fuse and holder

    Match part numbers, DC voltage, interrupt rating, terminal size, how many cables the stud takes and the torque. A family name isn't a specification.Stop here

  4. Put the fuse at the source

    Follow your standard and the manufacturer's instructions on how close to the battery it sits, enclosed spaces, exposure, and any exception they allow.

  5. Protect parallel cables

    Check whether each battery or string needs its own fuse as well as the bank's main one. Your layout and your standard decide.

Sources

Check against the current datasheets.

Ratings change with series, voltage and certification. Open the current datasheet for the exact fuse, holder, battery and equipment before you commit to the design.