Pickup Winding Turns Calculator

Pickup Winding Turns Calculator

Estimate pickup coil turns, wire length, DC resistance, inductance, capacitance, magnet response, output and winding fill.

🎯 Named Pickup Presets
📏 Units
⚙️ Coil And Electrical Inputs
For humbuckers, enter turns on one coil.
Target Turns Per Coil
turns for target output
Formula: turns × (target mV / estimated mV)^(1 / 1.12)
Total Wire Length
feet of magnet wire
Formula: turns × mean turn length × coil count
Estimated DC Resistance
kOhm at selected copper temperature
Formula: wire ft × ohm per 1000 ft / 1000 × temp factor
Inductance / Capacitance
H and pF pickup estimate
Formula: calibrated base × turns ratio² × geometry and magnet factors

Calculation Breakdown

📊 Pickup / Electrical Spec Grid
Output mV
Resonance kHz
Coil Fill
Layer Est.
Ohm / 1000 ft
Mean Turn
Wire Diameter
Target Gap
Estimates are engineering approximations for guitar pickup planning. Real readings vary with coil shape, winding traverse, insulation build, wax, keeper bars, pole geometry, cable capacitance and meter conditions.
🧵 Magnet Wire Reference
WireBare Dia. InApprox Ohm / 1000 FtTypical Pickup UseTurns Fit
40 AWG0.003141049Low DCR experiments, compact coilsLower count
41 AWG0.002801323Early style single coils, clear neck windsModerate
42 AWG0.002491659Strat, P-90, PAF and many vintage windsStandard
43 AWG0.002222143Tele bridge, hotter singles, mini humbuckersHigh count
44 AWG0.001982593Very hot narrow coils, rail stylesVery high
🧲 Magnet Factor Reference
MagnetOutput FactorInductance FactorTypical VoiceUse Case
Alnico II0.920.96Soft attack, sweet highsVintage neck and PAF style
Alnico III0.840.94Lower pull, open midsEarly Strat and Tele neck
Alnico IV0.960.98Balanced mid focusPAF and roots bridge
Alnico V1.081.02Tight lows, bright snapStrat bridge, Tele bridge
Alnico VIII1.181.05Strong mids, high driveHot humbucker bridge
Ceramic 81.221.08Firm attack, high outputModern high output builds
🎸 Pickup Turn Range Table
Pickup TypeCommon WireTypical TurnsDCR RangeInductance Range
Strat neck / middle42 AWG7,400 to 8,0005.5k to 6.2k2.0H to 2.8H
Strat bridge hot42 or 43 AWG8,500 to 10,0006.5k to 9.5k3.0H to 5.0H
Tele bridge42 or 43 AWG8,000 to 10,5006.8k to 10.5k3.0H to 5.8H
P-90 soapbar42 AWG9,000 to 10,5007.5k to 9.2k5.5H to 7.5H
PAF humbucker42 AWG4,800 to 5,500 per coil7.2k to 8.8k total3.8H to 5.5H
FilterTron style42 or 43 AWG3,800 to 4,800 per coil4.0k to 5.5k total1.5H to 2.8H
📝 Winding Pattern And Tension Table
VariableLower SettingHigher SettingElectrical EffectWatch Point
TurnsBrighter, lower DCRMore output, darker peakDCR and inductance riseCheck bobbin fill
Wire gaugeThicker, lower DCRThinner, higher DCRMore turns fit with 43/44Thin wire breaks easier
ScatterNeater, higher capacitanceLooser, lower capacitanceResonance can shift upwardKeep traverse repeatable
TensionSoft coil, larger packTighter coil, small stretchSmall resistance changeAvoid snapped wire
TemperatureLower DCR readingHigher DCR readingCopper is about 0.393% per °CLog measurement temp
Coil fill tip: If calculated fill rises above about 90%, reduce turns, use thinner wire, or increase winding height. A packed coil is harder to wind consistently and more likely to scrape insulation at the flanges.
Measurement tip: DCR is not output by itself. Use it with wire gauge, turns, magnet type, inductance and capacitance because 43 AWG can read hotter than 42 AWG while using less copper length.

A tool for estimating coil turns, wire length, and electrical specs before you start winding. So this is a handy tool for planning out a pickup on guitar before you begin winding it.

So many times you’re not sure if there are enough turns on a coil or too much. It calculates the wire length, number of turns, resistance, inductance, and output. That way you can see how various designs will stack up and check your ideas different than specific outcomes.

A Tool to Plan Guitar Pickups

There’s one variable: Turns. But that must be put into context. Seven thousand turns of Alnico eight magnets in a Stratocaster neck pickup will sound vintage. Ceramic magnets are strong and efficient, so you need fewer turns to get high output.

So what? We’ve built a simple online tool to calculate those variables. It shows how many turn you need to reach a specific voltage for a given bobbin shape. And we calculate wire length.

Why should that matter? This happens because of the effect on foot-per-turn, as a longer window in the coil raise the DC resistance at a rate not accounted for by adding additional turns. The number of turns you can cram into a given area also depend on the wire gauge. Standard size is 42AWG. However, some guitars like P-90s and Strats is wired with thinner 43 AWG wire, which allows for more turns within the limited space.

The thinner the wire, however, the more prone it is to breaking its enamel coating under the tension required for a good coil. In that case, the goal of making as much output as possible has to be balanced against mechanics of your winding technique. Hand wound coils typically have a lower fill percentage than machine wound coils so they has fewer turns to create different capacitance properties.

The type of magnet also influences the tone independent of the copper wire. Alnico II magnets has a higher softness rating, which is to say they generate less voltage per turn compared to Alnico V magnets. This enables you to use fewer turns to achieve the same perceived level, while maintaining a brighter coil. High output requires fewer turns too when using ceramic magnets that are stronger and more efficient. If used without the right wire gauge they can produce a compressed tone.

These magnetic characteristics is factored into the calculator’s inductance estimates, predicting the resonant peaks. Tonal clarity depends on resonance frequency. The higher it is (above five kilohertz), the more brittle and harsh the sound will be. Muddy tone results from low resonant points.

A chart of coil inductance working with various pot loads provides reference tables. For example, a one-megohm load sounds brighter then a 250-kiloohm volume pot. This interaction explains why vintage wiring can sound darker. The tool adjusts both the winding specs and the pot size.

The copper will have increased resistance because of its own heating while being wound. When you measure the coil’s DC resistance while it is still warm, that resistance value will be higher compared to what it would of been if measured at room temperature. To make this comparison normalised it helps to also record the ambient temperature. If you are matching a pair of humbucker coil so they sound identical, then this is an important step.

A pickup is also a transducer. The electrical figures don’t account for differences in pole piece saturation or how tightly wire is packed onto the bobbin. Treat it more like a road map to get you going in the right direction than an accurate map.

Begin with your desired output level. Calculate based off that number. Wind the coil with the right tension. It’s a blending of math and hand dexterity that produces a consistent tone.

Pickup Winding Turns Calculator

Leave a Comment