Convert Amperes/Meter to Ampere Turns/Meter
Ampere/Meter (A/m) to Ampere Turn/Meter (At/m) magnetic field strength conversion — enter any value below to get an instant result, or use the table for common values.
Results from this calculator are estimates provided for general informational purposes only, based on formulas, rates, and standards commonly accepted as of 2026. Figures may differ slightly from other calculators or professional sources due to rounding methods, differing assumptions, or regional regulations, and rules may change over time. Always consult a qualified professional — such as a financial advisor, healthcare provider, or other relevant specialist — before making decisions based on these results.
Result
1 A/m = 1 At/m
1 Ampere/Meter = 1 Ampere Turns/Meter
1 Ampere Turn/Meter = 1 Amperes/Meter
1 A/m in every supported unit
Conversion chart: Ampere/Meter to Ampere Turns/Meter
Conversion table
| Ampere/Meter (A/m) | Ampere Turn/Meter (At/m) |
|---|---|
| 0.01 A/m | 0.01 At/m |
| 0.1 A/m | 0.1 At/m |
| 1 A/m | 1 At/m |
| 2 A/m | 2 At/m |
| 3 A/m | 3 At/m |
| 5 A/m | 5 At/m |
| 10 A/m | 10 At/m |
| 20 A/m | 20 At/m |
| 50 A/m | 50 At/m |
| 100 A/m | 100 At/m |
| 1000 A/m | 1000 At/m |
Ampere/Meter (A/m)
Definition: The SI unit of magnetic field strength H, equal to the magnetomotive force per unit length of the magnetic circuit's path — one ampere-turn of MMF spread over one meter of path length.
History: It follows directly from the SI base units once the ampere-turn was established as the unit of magnetomotive force; dividing MMF by path length in meters gives field strength in amperes per meter automatically.
Current use: The standard SI unit for specifying the magnetizing field applied to a coil core or magnetic material, used throughout electrical engineering and materials science to describe the field a material experiences before considering its own magnetic response.
Ampere Turn/Meter (At/m)
Definition: Numerically and dimensionally identical to the ampere/meter — writing the unit as "ampere-turn per meter" simply makes explicit that the field strength derives from a coil's ampere-turns spread over a path length.
History: It follows the same derivation as the ampere/meter, just with the numerator written out as ampere-turns to emphasize the coil-and-current origin of the field.
Current use: Used interchangeably with ampere/meter in coil and transformer design documentation, where spelling out "ampere-turn" in the unit name clarifies the calculation being performed.
Supported Units
| Unit | Symbol | In Ampere/Meter |
|---|---|---|
| Kiloampere/Meter | kA/m | 1000 A/m |
| Ampere/Meter | A/m | 1 A/m |
| Ampere Turn/Meter | At/m | 1 A/m |
| Oersted | Oe | 79.577472 A/m |
About These Parameters
- Value
- The amount of magnetic field strength you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from Earth's weak field to the strong fields near industrial electromagnets.
- From Unit
- The unit your input value is currently measured in — a coil design's ampere/meter figure, or a magnetic media datasheet's oersted coercivity rating.
- To Unit
- The unit you want the result converted into. Use the swap button to flip From and To instantly, which is handy when translating a magnetic-media oersted rating into the modern SI ampere/meter or vice versa.
How Magnetic Field Strength Conversion Works
The Formula
Every unit here is defined by a fixed multiplier relative to the ampere/meter. To convert a value from one unit to another:
result = value × (factor of "From" unit ÷ factor of "To" unit)
For Ampere/Meter → Ampere Turn/Meter: multiply by 1. For example, 1 A/m × 1 = 1 At/m.
Field Strength H vs. Flux Density B
It's easy to conflate magnetic field strength with magnetic flux density, but they measure different things. Field strength H is the magnetizing force a coil applies, calculated purely from current and geometry — it doesn't care what material, if any, sits inside the coil. Flux density B is how the field actually turns out once a particular material responds to that magnetizing force (see the related Magnetic Flux Density converter). In empty space the two are simply proportional by a universal constant, but inside an iron or ferrite core, B can be thousands of times larger than H alone would suggest, because the material's own magnetism adds to the field.
The Oersted and Magnetic Recording
The oersted, honoring Hans Christian Ørsted's 1820 discovery that current deflects a compass needle, is defined in the CGS-Gaussian system so that one oersted in vacuum produces exactly one gauss of flux density. Despite being a CGS unit, it never really went away in one specific industry: magnetic tape and hard-disk manufacturers still specify their media's coercivity — how strong a field is needed to flip the tiny magnetic domains that store data — in oersteds on virtually every datasheet, decades after SI units took over elsewhere in engineering.
Example
A magnetic field strength of 1 A/m equals 1 At/m. For scale, Earth's own magnetic field strength is only a fraction of an ampere per meter at the surface, a typical audio cassette tape has a coercivity of a few hundred oersteds, and modern high-density hard-disk media can require well over a thousand oersteds to switch.
Frequently Asked Questions
How many Ampere Turns/Meter are in 1 Ampere/Meter?
1 Ampere/Meter (A/m) equals exactly 1 Ampere Turns/Meter (At/m).
Is magnetic field strength the same as magnetic flux density?
No — they're related but distinct. Field strength (H, ampere/meter) is the magnetizing force applied by a coil's current and geometry alone. Flux density (B, tesla) is how the field actually turns out once a material responds to that force. In vacuum the two are simply proportional; inside a magnetic material like iron, B can be far larger than H alone would predict.
Why do hard drives and tapes still use oersteds?
Habit and industry-wide standardization: coercivity specs for magnetic recording media have been quoted in oersteds since long before most of the world moved to SI units, and switching an entire industry's datasheets and quality-control processes to ampere/meter would offer little practical benefit, so the convention has simply persisted.
How is ampere/meter related to ampere-turns?
Ampere/meter is magnetomotive force (measured in ampere-turns) divided by the length of the magnetic path it acts over. A coil producing 100 ampere-turns of MMF spread over a 0.5 meter magnetic path produces a field strength of 200 ampere/meter. See the related Magnetomotive Force converter for the ampere-turn side of that relationship.
How strong is Earth's magnetic field in these units?
Earth's surface field strength works out to roughly 0.3 to 0.6 ampere per meter depending on location, or about 0.4 to 0.5 gauss in flux-density terms — far weaker than any industrial magnet, but strong enough for compasses and animal magnetoreception to detect reliably.