Neodymium Disc Magnet 12.7mm x 0.79mm N52

Product code: D-D12.7H0.79-N52

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Neodymium Disc Magnet 12.7mm x 0.79mm N52

Product Code D-D12.7H0.79-N52
Pull Force* 0.6440kg
Weight 3 g
Gauss 918
Grade N52
Coating Nickel (Ni)
Direction of Magnetisation Through Height
Dimensions Outside Diameter:12.70mm
*Measured against up to 10mm mild steel.

Neodymium Disc Magnets

Many industries use the unique properties of flat, thin, circular Neodymium Disc magnets in the design of electronic products and electrical equipment that are often the most efficient and most technologically advanced in their field. This super-thin Neodymium Disc magnet has ideal dimensions for this type of technological application. The inclusion of Neodymium magnets in the design of many popular products modernises their operation to a level that is more reliable and far more advanced in performance. Mobile phones and electric motors are examples of technologies that have been greatly improved in both performance and efficiency by incorporating strong Neodymium magnetic power into their operation. While other less expensive and weaker magnetic materials have real value in some applications and environments, it is the unmatched strength of small, powerful Neodymium disc magnets that has largely driven the trend in modern times toward new types of electronic devices that are smarter, smaller and also more efficient. The N52 Grade rare earth material inside this thin, round disc magnet is the strongest grade available.

Neodymium Disc Magnets

Many industries use the unique properties of flat, thin, circular Neodymium Disc magnets in the design of electronic products and electrical equipment that are often the most efficient and most technologically advanced in their field. This super-thin Neodymium Disc magnet has ideal dimensions for this type of technological application. The inclusion of Neodymium magnets in the design of many popular products modernises their operation to a level that is more reliable and far more advanced in performance. Mobile phones and electric motors are examples of technologies that have been greatly improved in both performance and efficiency by incorporating strong Neodymium magnetic power into their operation. While other less expensive and weaker magnetic materials have real value in some applications and environments, it is the unmatched strength of small, powerful Neodymium disc magnets that has largely driven the trend in modern times toward new types of electronic devices that are smarter, smaller and also more efficient. The N52 Grade rare earth material inside this thin, round disc magnet is the strongest grade available.