Fuse Size Calculator for Camper Wiring

Fuse Size Calculator for Camper Wiring

Size 12V, 24V, and 48V DC fuses from real load current, wire gauge, run length, duty cycle, voltage drop, and common RV fuse families.

Camper Circuit Presets

🔧 Circuit Inputs

Use measured running amps when available.
Enter 0 if there is no motor or inverter surge.
Calculator doubles this for round-trip voltage drop.

Fuse Sizing Results

Recommended fuse
15A
ATO/ATC blade
Minimum ampacity
10.0A
load × duty factor
Derated wire limit
21A
14 AWG copper
Voltage drop
0.31V
2.6% at running load
Ready.

🔌 Copper Wire Comparison Grid

18
AWG, 14A chassis
16
AWG, 18A chassis
14
AWG, 25A chassis
12
AWG, 30A chassis
10
AWG, 40A chassis
8
AWG, 55A chassis
4
AWG, 135A chassis
2/0
AWG, 330A chassis
Grid values are practical camper DC chassis-wiring references for copper conductors with suitable insulation. Always stay within the rating printed on the cable, fuse holder, and connected terminals.

📊 Fuse Family Reference

Fuse familyCommon camper useTypical ratingsBest match
ATO/ATC bladeBranch circuits in 12V fuse blocks1A to 40ALights, pumps, fans, small electronics
MAXI bladeMedium-load DC circuits20A to 120ASmall inverters, compressor loads, feed taps
MIDI/AMI bolt-downCompact high-current protection30A to 200ADC-DC chargers, solar controller outputs
ANL / Class T styleMain battery and inverter feeds35A to 400A+Large inverters and battery bus protection

📏 Wire Ampacity and Resistance Table

Copper wireChassis amp referenceOhms per 1000 ftCommon camper circuit
18 AWG14A6.385Low-current LEDs, sensors
16 AWG18A4.016Lights, USB panels, small fans
14 AWG25A2.525Pumps, fridge branch runs
12 AWG30A1.588Socket circuits, longer pump runs
10 AWG40A0.999Solar output, small charger feeds
8 AWG55A0.628DC-DC charger, subpanel feed
6 AWG75A0.395Medium inverter and charger circuits
4 AWG135A0.249High-output charger or inverter feed

Voltage Drop Planning Table

Target drop12V allowed24V allowedTypical use
3%0.36V0.72VFridge, charging, electronics, long runs
5%0.60V1.20VGeneral branch circuits and pumps
8%0.96V1.92VShort intermittent motor loads
10%1.20V2.40VTolerant lights or simple fans only

🚙 Common Camper Circuit Examples

CircuitTypical running loadCommon fuseUsual wire range
LED cabin lights1A to 4A3A to 7.5A18 to 16 AWG
Fresh water pump5A to 10A10A to 15A14 to 12 AWG
12V compressor fridge4A to 8A10A to 15A14 to 10 AWG
Roof vent fan2A to 5A5A to 10A16 to 14 AWG
Solar controller output20A to 40A30A to 50A10 to 6 AWG
DC-DC charger30A to 60A40A to 80A8 to 4 AWG
1000W inverter at 12V85A to 100A125A to 150A2 to 1/0 AWG

💡 Fuse Sizing Tips

Protect the conductor. The fuse must be no larger than the weakest wire, holder, connector, or bus rating in that circuit, even when the appliance could tolerate a larger fuse.
Use round-trip length for drop. Camper DC circuits lose voltage on both positive and negative conductors, so a 15 ft one-way run behaves like 30 ft of copper resistance.

You don’t need to guess at conversions or coefficients. Just plug in your rainfall and roof size into the calculator above and let it handle the math.

You installed a new light fixture on a camper. It use more than previous fixture did. The wire looks thin for the increased load. Do you plug it in? Panic sets in. That’s not all because that is the primary concern: no fire! But even if you could afford the fancy new compressor fridge, electricity doesn’t care.

How to Choose the Right Fuse and Wire

The fuse isn’t there to protect the appliance from surge; it’s there to prevent the wire from overheating. Most folks gets this part wrong initially. They look at the device and notice it draw eight amps. They grab a ten amp fuse and move on without considering the copper carrying that current. The wire is weakest link in the chain of a circuit. That means if you send too many amps down a wire that’s too small, the insulation won’t last until component blows.

With that in mind, the tool allow you to choose not only the amps of your load, but also the gauge of wire used. It’ll compare the maximum safe current capacity of that piece of copper against what it thinks you need. This is why duty cycle is important. When a motor starts, it may draw thirty amps for a half-second, then settle back down to five amps while running. You can blow fuses based on surge but that leaves you with exposed wiring while it’s running continuously. The tool has an option to switch between continuous (on longer than three hours) and intermittent loads.

Confined areas heats up. RV wiring also suffers from voltage drop. As with any circuit, DC runs drop voltage across a distance, as in, a pipe. Even a fifteen-foot run doesn’t sound long but it’s still a distance for electricity to have to travel, and return. For round-trip calcs, it automatically double it. It then confirms that the size of wire you select won’t cause your voltage to be outside acceptable ranges for sensitive electronics. Too low voltage, and now your USB ports no longer charge phones or your fridge is running inefficiently.

The reference table on page explains this clearly. It shows exactly how much resistance you will add by choosing a thinner, cheaper cable for a long run. Performance also suffers from heat. You can’t throw all your wires into one dark compartment under the floor with them bunched up tight and expect them to breathe. That’s why there is a reduction factor in the tool for that environment. Maybe your wire is rated for 20 amps in open air, but it won’t perform anywhere near that value when you bundle it up in loom and then jam it next to other bundles of cable. Not taking that into account is what causes fires at campgrounds in the summertime.

The selection of fuses is all about fitting. Blade fuses work on small fans and lights. Heavy duty things like inverters use ANL or Class T fuses. Don’t try putting a car fuse on your inverter feed, they will not stand electrical or mechanical abuse. You want to be able to go to bed at night knowing everything is protected.

Every resistor creates heat, every connection point creates resistance. To protect the device, match the wire not the device to the fuse so it fires off BEFORE something gets damaged. If possible, don’t rely on what’s on the box, but on the actual amount of current going to your load. Those maxes on stickers aren’t usually achieved by the manufacturer. Plug them into the tool with the real number and see what they say. Not only will it recommend a fuse size, but it tells you if you’re using wire smaller than necessary for the task. Keep your mind set on protecting conductor first. This protects your camper every season and lets you know you’ve got it running safely.

Fuse Size Calculator for Camper Wiring

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