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Magnetic Unit Converter

Convert flux density, magnetic field strength and maximum energy product between magnetic units

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GUK Magnetics

Magnetic Unit Converter

Convert between the units commonly used in magnet datasheets, teslameter readings and RFQs. Enter a value and every equivalent will update automatically.

Equivalents
Select a result to copy it

Need help specifying a magnet? Send us your dimensions, operating conditions and required quantity. Request a quote

Using the converter

How to use the magnetic unit converter

Select the measurement type, enter a value and choose its original unit. The equivalent values update automatically, and any result can be selected to copy it.

01

Select a measurement

Choose flux density, field strength, energy product or field-to-flux conversion in air.

02

Enter the original value

Type the value from your datasheet, instrument reading or technical specification.

03

Review the equivalents

The related units appear immediately. Select a result if you want to copy it.

Quick reference

Common magnetic unit conversions

These are some of the conversions most frequently encountered in permanent magnet datasheets and specifications.

Measurement Conversion
Flux density 1 T = 1,000 mT
Tesla to Gauss 1 T = 10,000 G
Tesla to kilogauss 1 T = 10 kG
Tesla to Weber per square metre 1 T = 1 Wb/m²
Field strength 1 kOe ≈ 79.577 kA/m
Energy product 1 MGOe ≈ 7.958 kJ/m³
Field to flux in air 1 Oe corresponds to 1 G

The relationship between Oersted and Gauss shown above applies only in air or vacuum. It should not be used to calculate flux density inside a magnet, steel component or another magnetic material.

Technical context

Understanding the measurements

B

Flux density

Flux density describes the concentration of magnetic flux through a given area. It is normally expressed in Tesla, millitesla, Gauss or kilogauss.

On a permanent magnet datasheet, remanence—or Br—is a flux-density value. It indicates the residual magnetic flux density after the external magnetising field has been removed.

H

Field strength

Magnetic field strength describes the magnetising or demagnetising field. It is commonly expressed in amperes per metre, kiloamperes per metre, Oersted or kilo-Oersted.

Coercivity values such as HcB and HcJ are normally stated using these units and indicate a material’s resistance to demagnetisation.

BHmax

Energy product

Maximum energy product represents the maximum magnetic energy that can be stored in a magnet material. It is usually expressed in MGOe or kJ/m³.

Neodymium grade numbers broadly relate to maximum energy product in MGOe, but the grade number should not be treated as an exact performance value. Always check the specified BHmax range on the material datasheet.

Practical applications

When conversion is useful

  • Comparing datasheets from different magnet manufacturers
  • Translating between SI and CGS units
  • Preparing an RFQ or technical specification
  • Reviewing coercivity, remanence and energy-product values
  • Interpreting readings from a Gauss meter or teslameter
  • Comparing permanent magnet materials and grades

Need help with a magnet specification?

If you have a drawing, dimensions, material requirement or target performance, send us your specification. We can advise on suitable magnet materials, grades, coatings, temperature requirements and manufacturability.

Submit your specification
Further information

Magnetic unit conversion FAQs

What is the difference between Tesla and Gauss?

Tesla and Gauss are both units of magnetic flux density. One Tesla equals 10,000 Gauss, while one millitesla equals 10 Gauss.

Is Tesla the same as Weber per square metre?

Yes. One Tesla is equivalent to one Weber per square metre.

How do I convert kOe to kA/m?

Multiply the value in kOe by approximately 79.577. For example, 10 kOe is approximately 795.77 kA/m.

How do I convert MGOe to kJ/m³?

Multiply the MGOe value by approximately 7.958. A maximum energy product of 42 MGOe is therefore approximately 334.2 kJ/m³.

Does an N42 magnet have exactly 42 MGOe?

Not necessarily. The grade number broadly corresponds to the material’s maximum energy product, but datasheets normally specify an acceptable BHmax range. The grade name also does not define temperature resistance, coercivity or every other performance characteristic.

Can field strength always be converted directly into flux density?

No. A direct conversion using B = μ₀H is appropriate only for air or vacuum. Inside magnets, steel and other materials, permeability and magnetic behaviour must also be considered.

Can this converter calculate magnet pull force?

No. Pull force depends on factors including magnet dimensions, material, air gap and the surrounding magnetic circuit. Use the GUK Magnetic Force Calculator for an initial estimate.

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