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Same Day Dispatch Mon-Fri before 1pm (AEST)
4.9 Customer reviews
30 Day Returns Shop with confidence
Same Day Dispatch Mon-Fri before 1pm (AEST)
4.9 Customer reviews
30 Day Returns Shop with confidence
Same Day Dispatch Mon-Fri before 1pm (AEST)
4.9 Customer reviews
30 Day Returns Shop with confidence

Neodymium Ring Magnet OD5mm x H4mm | Hole 2.5mm | N42UH | High Temperature ≤180ºC | Diametrically magnetized

Product code: R-OD5H4ID2.5-N42UH-SM

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Neodymium Ring Magnet OD5mm x H4mm | Hole 2.5mm | N42UH | High Temperature ≤180ºC | Diametrically magnetized
Product Code R-OD5H4ID2.5-N42UH-SM
Weight 2 g
Grade N42UH
Coating Nickel (NiCuNi)
Dimensions Height:4.00mm
*Measured against up to 10mm mild steel.

This neodymium ring magnets has an outer diameter of 5mm (0.196"), a height of 4mm (0.157"), and an inner diameter (hole) of 2.5mm (0.098"). These magnets are grade N42UH, feature a nickel (Ni) coating, and are magnetised diametrically across the 5mm dimension.

This compact ring magnet is crafted from robust N42 UH grade neodymium, offering exceptional resistance to heat demagnetisation up to 180°C. It features diametrical magnetisation, with the North and South poles positioned on opposite sides along the curved diameter. 

The magnetisation orientation enables the ring to spin freely on a shaft or axle when exposed to a magnetic field. These features are primarily advantageous for advanced, specialised manufacturing and engineering applications rather than for routine or general-purpose holding tasks.

These magnets can be valuable in educational settings for illustrating magnetic fields, as well as for developing innovative art pieces, toys, or experimental devices.

No FAQ available

This neodymium ring magnets has an outer diameter of 5mm (0.196"), a height of 4mm (0.157"), and an inner diameter (hole) of 2.5mm (0.098"). These magnets are grade N42UH, feature a nickel (Ni) coating, and are magnetised diametrically across the 5mm dimension.

This compact ring magnet is crafted from robust N42 UH grade neodymium, offering exceptional resistance to heat demagnetisation up to 180°C. It features diametrical magnetisation, with the North and South poles positioned on opposite sides along the curved diameter. 

The magnetisation orientation enables the ring to spin freely on a shaft or axle when exposed to a magnetic field. These features are primarily advantageous for advanced, specialised manufacturing and engineering applications rather than for routine or general-purpose holding tasks.

These magnets can be valuable in educational settings for illustrating magnetic fields, as well as for developing innovative art pieces, toys, or experimental devices.

No FAQ available